d9b0c6fbf7
Drop pycodestyle for code style checking in favor of black. Black is much faster, stable PEP8 compliant code style checker offering also automatic formatting. It aims to be very stable and produce smallest diffs. It's used by many small and big projects. Running checkstyle with black takes a few seconds with a terse output. Thus, test-checkstyle-diff is no longer necessary. Expand scope of checkstyle to all python files in the repo, replacing test-checkstyle with checkstyle-python. Also, fixstyle-python is now available for automatic style formatting. Note: python virtualenv has been consolidated in test/Makefile, test/requirements*.txt which will eventually be moved to a central location. This is required to simply the automated generation of docker executor images in the CI. Type: improvement Change-Id: I022a326603485f58585e879ac0f697fceefbc9c8 Signed-off-by: Klement Sekera <klement.sekera@gmail.com> Signed-off-by: Dave Wallace <dwallacelf@gmail.com>
349 lines
9.6 KiB
Python
349 lines
9.6 KiB
Python
#!/usr/bin/env python3
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from socket import inet_pton, inet_ntop, AF_INET, AF_INET6
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import unittest
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from framework import VppTestCase, VppTestRunner
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from vpp_ip import DpoProto
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from vpp_ip_route import (
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VppIpRoute,
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VppRoutePath,
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VppMplsLabel,
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VppIpTable,
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FibPathProto,
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)
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from vpp_acl import AclRule, VppAcl
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from scapy.packet import Raw
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from scapy.layers.l2 import Ether
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from scapy.layers.inet import IP, UDP
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from scapy.layers.inet6 import IPv6
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from ipaddress import IPv4Network, IPv6Network
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from vpp_object import VppObject
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NUM_PKTS = 67
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def find_abf_policy(test, id):
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policies = test.vapi.abf_policy_dump()
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for p in policies:
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if id == p.policy.policy_id:
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return True
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return False
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def find_abf_itf_attach(test, id, sw_if_index):
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attachs = test.vapi.abf_itf_attach_dump()
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for a in attachs:
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if id == a.attach.policy_id and sw_if_index == a.attach.sw_if_index:
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return True
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return False
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class VppAbfPolicy(VppObject):
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def __init__(self, test, policy_id, acl, paths):
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self._test = test
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self.policy_id = policy_id
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self.acl = acl
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self.paths = paths
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self.encoded_paths = []
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for path in self.paths:
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self.encoded_paths.append(path.encode())
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def add_vpp_config(self):
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self._test.vapi.abf_policy_add_del(
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1,
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{
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"policy_id": self.policy_id,
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"acl_index": self.acl.acl_index,
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"n_paths": len(self.paths),
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"paths": self.encoded_paths,
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},
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)
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self._test.registry.register(self, self._test.logger)
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def remove_vpp_config(self):
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self._test.vapi.abf_policy_add_del(
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0,
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{
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"policy_id": self.policy_id,
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"acl_index": self.acl.acl_index,
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"n_paths": len(self.paths),
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"paths": self.encoded_paths,
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},
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)
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def query_vpp_config(self):
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return find_abf_policy(self._test, self.policy_id)
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def object_id(self):
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return "abf-policy-%d" % self.policy_id
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class VppAbfAttach(VppObject):
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def __init__(self, test, policy_id, sw_if_index, priority, is_ipv6=0):
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self._test = test
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self.policy_id = policy_id
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self.sw_if_index = sw_if_index
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self.priority = priority
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self.is_ipv6 = is_ipv6
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def add_vpp_config(self):
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self._test.vapi.abf_itf_attach_add_del(
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1,
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{
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"policy_id": self.policy_id,
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"sw_if_index": self.sw_if_index,
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"priority": self.priority,
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"is_ipv6": self.is_ipv6,
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},
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)
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self._test.registry.register(self, self._test.logger)
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def remove_vpp_config(self):
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self._test.vapi.abf_itf_attach_add_del(
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0,
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{
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"policy_id": self.policy_id,
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"sw_if_index": self.sw_if_index,
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"priority": self.priority,
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"is_ipv6": self.is_ipv6,
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},
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)
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def query_vpp_config(self):
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return find_abf_itf_attach(self._test, self.policy_id, self.sw_if_index)
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def object_id(self):
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return "abf-attach-%d-%d" % (self.policy_id, self.sw_if_index)
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class TestAbf(VppTestCase):
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"""ABF Test Case"""
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@classmethod
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def setUpClass(cls):
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super(TestAbf, cls).setUpClass()
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@classmethod
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def tearDownClass(cls):
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super(TestAbf, cls).tearDownClass()
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def setUp(self):
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super(TestAbf, self).setUp()
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self.create_pg_interfaces(range(5))
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for i in self.pg_interfaces[:4]:
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i.admin_up()
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i.config_ip4()
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i.resolve_arp()
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i.config_ip6()
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i.resolve_ndp()
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def tearDown(self):
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for i in self.pg_interfaces:
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i.unconfig_ip4()
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i.unconfig_ip6()
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i.admin_down()
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super(TestAbf, self).tearDown()
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def test_abf4(self):
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"""IPv4 ACL Based Forwarding"""
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#
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# We are not testing the various matching capabilities
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# of ACLs, that's done elsewhere. Here ware are testing
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# the application of ACLs to a forwarding path to achieve
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# ABF
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# So we construct just a few ACLs to ensure the ABF policies
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# are correctly constructed and used. And a few path types
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# to test the API path decoding.
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#
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#
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# Rule 1
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#
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rule_1 = AclRule(
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is_permit=1,
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proto=17,
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ports=1234,
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src_prefix=IPv4Network("1.1.1.1/32"),
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dst_prefix=IPv4Network("1.1.1.2/32"),
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)
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acl_1 = VppAcl(self, rules=[rule_1])
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acl_1.add_vpp_config()
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#
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# ABF policy for ACL 1 - path via interface 1
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#
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abf_1 = VppAbfPolicy(
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self, 10, acl_1, [VppRoutePath(self.pg1.remote_ip4, self.pg1.sw_if_index)]
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)
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abf_1.add_vpp_config()
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#
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# Attach the policy to input interface Pg0
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#
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attach_1 = VppAbfAttach(self, 10, self.pg0.sw_if_index, 50)
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attach_1.add_vpp_config()
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#
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# fire in packet matching the ACL src,dst. If it's forwarded
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# then the ABF was successful, since default routing will drop it
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#
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p_1 = (
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Ether(src=self.pg0.remote_mac, dst=self.pg0.local_mac)
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/ IP(src="1.1.1.1", dst="1.1.1.2")
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/ UDP(sport=1234, dport=1234)
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/ Raw(b"\xa5" * 100)
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)
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self.send_and_expect(self.pg0, p_1 * NUM_PKTS, self.pg1)
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#
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# Attach a 'better' priority policy to the same interface
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#
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abf_2 = VppAbfPolicy(
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self, 11, acl_1, [VppRoutePath(self.pg2.remote_ip4, self.pg2.sw_if_index)]
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)
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abf_2.add_vpp_config()
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attach_2 = VppAbfAttach(self, 11, self.pg0.sw_if_index, 40)
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attach_2.add_vpp_config()
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self.send_and_expect(self.pg0, p_1 * NUM_PKTS, self.pg2)
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#
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# Attach a policy with priority in the middle
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#
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abf_3 = VppAbfPolicy(
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self, 12, acl_1, [VppRoutePath(self.pg3.remote_ip4, self.pg3.sw_if_index)]
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)
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abf_3.add_vpp_config()
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attach_3 = VppAbfAttach(self, 12, self.pg0.sw_if_index, 45)
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attach_3.add_vpp_config()
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self.send_and_expect(self.pg0, p_1 * NUM_PKTS, self.pg2)
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#
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# remove the best priority
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#
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attach_2.remove_vpp_config()
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self.send_and_expect(self.pg0, p_1 * NUM_PKTS, self.pg3)
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#
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# Attach one of the same policies to Pg1
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#
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attach_4 = VppAbfAttach(self, 12, self.pg1.sw_if_index, 45)
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attach_4.add_vpp_config()
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p_2 = (
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Ether(src=self.pg1.remote_mac, dst=self.pg1.local_mac)
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/ IP(src="1.1.1.1", dst="1.1.1.2")
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/ UDP(sport=1234, dport=1234)
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/ Raw(b"\xa5" * 100)
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)
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self.send_and_expect(self.pg1, p_2 * NUM_PKTS, self.pg3)
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#
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# detach the policy from PG1, now expect traffic to be dropped
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#
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attach_4.remove_vpp_config()
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self.send_and_assert_no_replies(self.pg1, p_2 * NUM_PKTS, "Detached")
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#
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# Swap to route via a next-hop in the non-default table
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#
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table_20 = VppIpTable(self, 20)
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table_20.add_vpp_config()
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self.pg4.set_table_ip4(table_20.table_id)
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self.pg4.admin_up()
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self.pg4.config_ip4()
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self.pg4.resolve_arp()
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abf_13 = VppAbfPolicy(
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self,
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13,
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acl_1,
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[
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VppRoutePath(
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self.pg4.remote_ip4, 0xFFFFFFFF, nh_table_id=table_20.table_id
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)
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],
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)
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abf_13.add_vpp_config()
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attach_5 = VppAbfAttach(self, 13, self.pg0.sw_if_index, 30)
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attach_5.add_vpp_config()
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self.send_and_expect(self.pg0, p_1 * NUM_PKTS, self.pg4)
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self.pg4.unconfig_ip4()
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self.pg4.set_table_ip4(0)
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def test_abf6(self):
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"""IPv6 ACL Based Forwarding"""
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#
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# Simple test for matching IPv6 packets
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#
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#
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# Rule 1
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#
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rule_1 = AclRule(
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is_permit=1,
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proto=17,
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ports=1234,
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src_prefix=IPv6Network("2001::2/128"),
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dst_prefix=IPv6Network("2001::1/128"),
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)
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acl_1 = VppAcl(self, rules=[rule_1])
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acl_1.add_vpp_config()
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#
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# ABF policy for ACL 1 - path via interface 1
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#
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abf_1 = VppAbfPolicy(self, 10, acl_1, [VppRoutePath("3001::1", 0xFFFFFFFF)])
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abf_1.add_vpp_config()
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attach_1 = VppAbfAttach(self, 10, self.pg0.sw_if_index, 45, is_ipv6=True)
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attach_1.add_vpp_config()
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#
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# a packet matching the rule
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#
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p = (
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Ether(src=self.pg0.remote_mac, dst=self.pg0.local_mac)
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/ IPv6(src="2001::2", dst="2001::1")
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/ UDP(sport=1234, dport=1234)
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/ Raw(b"\xa5" * 100)
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)
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#
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# packets are dropped because there is no route to the policy's
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# next hop
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#
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self.send_and_assert_no_replies(self.pg1, p * NUM_PKTS, "no route")
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#
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# add a route resolving the next-hop
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#
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route = VppIpRoute(
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self,
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"3001::1",
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32,
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[VppRoutePath(self.pg1.remote_ip6, self.pg1.sw_if_index)],
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)
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route.add_vpp_config()
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#
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# now expect packets forwarded.
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#
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self.send_and_expect(self.pg0, p * NUM_PKTS, self.pg1)
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if __name__ == "__main__":
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unittest.main(testRunner=VppTestRunner)
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