275 lines
12 KiB
Python
275 lines
12 KiB
Python
# Copyright 2019 Rackspace US Inc. All rights reserved.
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#
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# Licensed under the Apache License, Version 2.0 (the "License"); you may
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# not use this file except in compliance with the License. You may obtain
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# a copy of the License at
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#
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# http://www.apache.org/licenses/LICENSE-2.0
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#
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# Unless required by applicable law or agreed to in writing, software
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# distributed under the License is distributed on an "AS IS" BASIS, WITHOUT
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# WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the
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# License for the specific language governing permissions and limitations
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# under the License.
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import base64
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import socket
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from cryptography.hazmat.primitives import serialization
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from OpenSSL.crypto import X509
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from OpenSSL import SSL
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from oslo_log import log as logging
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from oslo_utils import uuidutils
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from tempest import config
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from tempest.lib.common.utils import data_utils
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from tempest.lib import decorators
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from octavia_lib.common import constants as lib_consts
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from octavia_tempest_plugin.common import barbican_client_mgr
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from octavia_tempest_plugin.common import cert_utils
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from octavia_tempest_plugin.common import constants as const
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from octavia_tempest_plugin.tests import test_base
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from octavia_tempest_plugin.tests import waiters
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CONF = config.CONF
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LOG = logging.getLogger(__name__)
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class TLSWithBarbicanTest(test_base.LoadBalancerBaseTestWithCompute):
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@classmethod
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def skip_checks(cls):
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super(TLSWithBarbicanTest, cls).skip_checks()
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if not CONF.loadbalancer_feature_enabled.terminated_tls_enabled:
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raise cls.skipException('[loadbalancer-feature-enabled] '
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'"terminated_tls_enabled" is False in '
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'the tempest configuration. TLS tests '
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'will be skipped.')
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if not CONF.validation.run_validation:
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raise cls.skipException('Traffic tests will not work without '
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'run_validation enabled.')
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if not getattr(CONF.service_available, 'barbican', False):
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raise cls.skipException('TLS with Barbican tests require the '
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'barbican service.')
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@classmethod
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def resource_setup(cls):
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"""Setup resources needed by the tests."""
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super(TLSWithBarbicanTest, cls).resource_setup()
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# Create a CA self-signed cert and key
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cls.ca_cert, ca_key = cert_utils.generate_ca_cert_and_key()
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LOG.debug('CA Cert: %s' % cls.ca_cert.public_bytes(
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serialization.Encoding.PEM))
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LOG.debug('CA private Key: %s' % ca_key.private_bytes(
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encoding=serialization.Encoding.PEM,
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format=serialization.PrivateFormat.TraditionalOpenSSL,
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encryption_algorithm=serialization.NoEncryption()))
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LOG.debug('CA public Key: %s' % ca_key.public_key().public_bytes(
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encoding=serialization.Encoding.PEM,
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format=serialization.PublicFormat.SubjectPublicKeyInfo))
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# Create a server cert and key
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cls.server_uuid = uuidutils.generate_uuid()
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server_cert, server_key = cert_utils.generate_server_cert_and_key(
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cls.ca_cert, ca_key, cls.server_uuid)
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LOG.debug('Server Cert: %s' % server_cert.public_bytes(
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serialization.Encoding.PEM))
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LOG.debug('Server private Key: %s' % server_key.private_bytes(
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encoding=serialization.Encoding.PEM,
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format=serialization.PrivateFormat.TraditionalOpenSSL,
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encryption_algorithm=serialization.NoEncryption()))
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server_public_key = server_key.public_key()
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LOG.debug('Server public Key: %s' % server_public_key.public_bytes(
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encoding=serialization.Encoding.PEM,
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format=serialization.PublicFormat.SubjectPublicKeyInfo))
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# Create the pkcs12 bundle
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pkcs12 = cert_utils.generate_pkcs12_bundle(server_cert, server_key)
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LOG.debug('Server PKCS12 bundle: %s' % base64.b64encode(pkcs12))
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# Load the secret into the barbican service under the
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# os_roles_lb_member tenant
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barbican_mgr = barbican_client_mgr.BarbicanClientManager(
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cls.os_roles_lb_member)
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cls.secret_ref = barbican_mgr.store_secret(pkcs12)
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cls.addClassResourceCleanup(barbican_mgr.delete_secret, cls.secret_ref)
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# Set the barbican ACL if the Octavia API version doesn't do it
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# automatically.
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if not cls.mem_lb_client.is_version_supported(
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cls.api_version, '2.1'):
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user_list = cls.os_admin.users_v3_client.list_users(
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name=CONF.load_balancer.octavia_svc_username)
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msg = 'Only one user named "{0}" should exist, {1} found.'.format(
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CONF.load_balancer.octavia_svc_username,
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len(user_list['users']))
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assert 1 == len(user_list['users']), msg
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barbican_mgr.add_acl(cls.secret_ref, user_list['users'][0]['id'])
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# Setup a load balancer for the tests to use
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lb_name = data_utils.rand_name("lb_member_lb1-tls")
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lb_kwargs = {const.PROVIDER: CONF.load_balancer.provider,
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const.NAME: lb_name}
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# TODO(johnsom) Update for IPv6
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cls._setup_lb_network_kwargs(lb_kwargs, 4)
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lb = cls.mem_lb_client.create_loadbalancer(**lb_kwargs)
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cls.lb_id = lb[const.ID]
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cls.addClassResourceCleanup(
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cls.mem_lb_client.cleanup_loadbalancer,
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cls.lb_id)
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waiters.wait_for_status(cls.mem_lb_client.show_loadbalancer,
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cls.lb_id, const.PROVISIONING_STATUS,
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const.ACTIVE,
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CONF.load_balancer.lb_build_interval,
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CONF.load_balancer.lb_build_timeout)
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if CONF.validation.connect_method == 'floating':
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port_id = lb[const.VIP_PORT_ID]
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result = cls.lb_mem_float_ip_client.create_floatingip(
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floating_network_id=CONF.network.public_network_id,
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port_id=port_id)
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floating_ip = result['floatingip']
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LOG.info('lb1_floating_ip: {}'.format(floating_ip))
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cls.addClassResourceCleanup(
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waiters.wait_for_not_found,
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cls.lb_mem_float_ip_client.delete_floatingip,
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cls.lb_mem_float_ip_client.show_floatingip,
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floatingip_id=floating_ip['id'])
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cls.lb_vip_address = floating_ip['floating_ip_address']
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else:
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cls.lb_vip_address = lb[const.VIP_ADDRESS]
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pool_name = data_utils.rand_name("lb_member_pool1-tls")
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pool_kwargs = {
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const.NAME: pool_name,
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const.PROTOCOL: const.HTTP,
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const.LB_ALGORITHM: const.LB_ALGORITHM_ROUND_ROBIN,
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const.LOADBALANCER_ID: cls.lb_id,
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}
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pool = cls.mem_pool_client.create_pool(**pool_kwargs)
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cls.pool_id = pool[const.ID]
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cls.addClassResourceCleanup(
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cls.mem_pool_client.cleanup_pool,
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cls.pool_id,
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lb_client=cls.mem_lb_client, lb_id=cls.lb_id)
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waiters.wait_for_status(cls.mem_lb_client.show_loadbalancer,
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cls.lb_id, const.PROVISIONING_STATUS,
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const.ACTIVE,
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CONF.load_balancer.build_interval,
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CONF.load_balancer.build_timeout)
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# Set up Member 1 for Webserver 1
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member1_name = data_utils.rand_name("lb_member_member1-tls")
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member1_kwargs = {
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const.POOL_ID: cls.pool_id,
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const.NAME: member1_name,
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const.ADMIN_STATE_UP: True,
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const.ADDRESS: cls.webserver1_ip,
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const.PROTOCOL_PORT: 80,
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}
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if cls.lb_member_1_subnet:
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member1_kwargs[const.SUBNET_ID] = cls.lb_member_1_subnet[const.ID]
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member1 = cls.mem_member_client.create_member(
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**member1_kwargs)
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cls.addClassResourceCleanup(
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cls.mem_member_client.cleanup_member,
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member1[const.ID], pool_id=cls.pool_id,
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lb_client=cls.mem_lb_client, lb_id=cls.lb_id)
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waiters.wait_for_status(
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cls.mem_lb_client.show_loadbalancer, cls.lb_id,
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const.PROVISIONING_STATUS, const.ACTIVE,
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CONF.load_balancer.check_interval,
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CONF.load_balancer.check_timeout)
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# Set up Member 2 for Webserver 2
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member2_name = data_utils.rand_name("lb_member_member2-tls")
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member2_kwargs = {
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const.POOL_ID: cls.pool_id,
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const.NAME: member2_name,
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const.ADMIN_STATE_UP: True,
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const.ADDRESS: cls.webserver2_ip,
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const.PROTOCOL_PORT: 80,
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}
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if cls.lb_member_2_subnet:
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member2_kwargs[const.SUBNET_ID] = cls.lb_member_2_subnet[const.ID]
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member2 = cls.mem_member_client.create_member(
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**member2_kwargs)
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cls.addClassResourceCleanup(
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cls.mem_member_client.cleanup_member,
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member2[const.ID], pool_id=cls.pool_id,
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lb_client=cls.mem_lb_client, lb_id=cls.lb_id)
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waiters.wait_for_status(
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cls.mem_lb_client.show_loadbalancer, cls.lb_id,
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const.PROVISIONING_STATUS, const.ACTIVE,
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CONF.load_balancer.check_interval,
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CONF.load_balancer.check_timeout)
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@decorators.idempotent_id('887ece26-0f7b-4933-89ab-5bb00b106ee0')
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def test_basic_tls_traffic(self):
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listener_name = data_utils.rand_name("lb_member_listener1-tls")
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listener_kwargs = {
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const.NAME: listener_name,
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const.PROTOCOL: lib_consts.PROTOCOL_TERMINATED_HTTPS,
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const.PROTOCOL_PORT: '443',
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const.LOADBALANCER_ID: self.lb_id,
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const.DEFAULT_POOL_ID: self.pool_id,
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const.DEFAULT_TLS_CONTAINER_REF: self.secret_ref,
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}
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listener = self.mem_listener_client.create_listener(**listener_kwargs)
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self.listener_id = listener[const.ID]
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self.addCleanup(
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self.mem_listener_client.cleanup_listener,
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self.listener_id,
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lb_client=self.mem_lb_client, lb_id=self.lb_id)
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waiters.wait_for_status(self.mem_lb_client.show_loadbalancer,
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self.lb_id, const.PROVISIONING_STATUS,
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const.ACTIVE,
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CONF.load_balancer.build_interval,
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CONF.load_balancer.build_timeout)
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# Test HTTPS listener load balancing.
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# Note: certificate validation tests will follow this test
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self.check_members_balanced(self.lb_vip_address, protocol='https',
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verify=False)
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def _verify_cb(connection, x509, errno, errdepth, retcode):
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"""Callback for certificate validation."""
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# don't validate names of root certificates
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if errdepth != 0:
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return True
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if errno == 0:
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# Make sure the certificate is the one we generated
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self.assertEqual('{}.example.com'.format(self.server_uuid),
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x509.get_subject().commonName)
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else:
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LOG.error('Certificate with CN: {0} failed validation with '
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'OpenSSL verify errno {1}'.format(
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x509.get_subject().commonName, errno))
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return False
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return True
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context = SSL.Context(SSL.SSLv23_METHOD)
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context.set_verify(SSL.VERIFY_PEER | SSL.VERIFY_FAIL_IF_NO_PEER_CERT,
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_verify_cb)
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ca_store = context.get_cert_store()
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ca_store.add_cert(X509.from_cryptography(self.ca_cert))
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sock = socket.socket()
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sock = SSL.Connection(context, sock)
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sock.connect((self.lb_vip_address, 443))
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# Validate the certificate is signed by the ca_cert we created
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sock.do_handshake()
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