cbe25aab3b
Type: feature - ip-neighbour: generic neighbour handling; APIs, DBs, event handling, aging - arp: ARP protocol implementation - ip6-nd; IPv6 neighbor discovery implementation; separate ND, MLD, RA - ip6-link; manage link-local addresses - l2-arp-term; events separated from IP neighbours, since they are not the same. vnet retains just enough education to perform ND/ARP packet construction. arp and ip6-nd to be moved to plugins soon. Change-Id: I88dedd0006b299344f4c7024a0aa5baa6b9a8bbe Signed-off-by: Neale Ranns <nranns@cisco.com>
278 lines
9.5 KiB
Python
278 lines
9.5 KiB
Python
#!/usr/bin/env python3
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import unittest
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import socket
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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 VppIpRoute, VppRoutePath, VppMplsRoute, \
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VppIpTable, VppMplsTable, VppMplsLabel
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from vpp_mpls_tunnel_interface import VppMPLSTunnelInterface
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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, ICMP
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from scapy.layers.inet6 import IPv6, ICMPv6TimeExceeded
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from scapy.contrib.mpls import MPLS
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def verify_filter(capture, sent):
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if not len(capture) == len(sent):
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# filter out any IPv6 RAs from the capture
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for p in capture:
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if p.haslayer(IPv6):
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capture.remove(p)
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return capture
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def verify_mpls_stack(tst, rx, mpls_labels):
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# the rx'd packet has the MPLS label popped
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eth = rx[Ether]
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tst.assertEqual(eth.type, 0x8847)
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rx_mpls = rx[MPLS]
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for ii in range(len(mpls_labels)):
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tst.assertEqual(rx_mpls.label, mpls_labels[ii].value)
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tst.assertEqual(rx_mpls.cos, mpls_labels[ii].exp)
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tst.assertEqual(rx_mpls.ttl, mpls_labels[ii].ttl)
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if ii == len(mpls_labels) - 1:
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tst.assertEqual(rx_mpls.s, 1)
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else:
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# not end of stack
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tst.assertEqual(rx_mpls.s, 0)
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# pop the label to expose the next
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rx_mpls = rx_mpls[MPLS].payload
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class TestSRMPLS(VppTestCase):
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""" SR-MPLS Test Case """
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@classmethod
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def setUpClass(cls):
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super(TestSRMPLS, cls).setUpClass()
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@classmethod
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def tearDownClass(cls):
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super(TestSRMPLS, cls).tearDownClass()
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def setUp(self):
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super(TestSRMPLS, self).setUp()
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# create 2 pg interfaces
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self.create_pg_interfaces(range(4))
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# setup both interfaces
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# assign them different tables.
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table_id = 0
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self.tables = []
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tbl = VppMplsTable(self, 0)
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tbl.add_vpp_config()
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self.tables.append(tbl)
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for i in self.pg_interfaces:
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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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i.enable_mpls()
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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.disable_mpls()
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i.admin_down()
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super(TestSRMPLS, self).tearDown()
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def create_stream_ip4(self, src_if, dst_ip, ip_ttl=64, ip_dscp=0):
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self.reset_packet_infos()
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pkts = []
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for i in range(0, 257):
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info = self.create_packet_info(src_if, src_if)
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payload = self.info_to_payload(info)
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p = (Ether(dst=src_if.local_mac, src=src_if.remote_mac) /
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IP(src=src_if.remote_ip4, dst=dst_ip,
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ttl=ip_ttl, tos=ip_dscp) /
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UDP(sport=1234, dport=1234) /
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Raw(payload))
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info.data = p.copy()
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pkts.append(p)
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return pkts
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def verify_capture_labelled_ip4(self, src_if, capture, sent,
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mpls_labels, ip_ttl=None):
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try:
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capture = verify_filter(capture, sent)
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self.assertEqual(len(capture), len(sent))
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for i in range(len(capture)):
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tx = sent[i]
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rx = capture[i]
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tx_ip = tx[IP]
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rx_ip = rx[IP]
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verify_mpls_stack(self, rx, mpls_labels)
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self.assertEqual(rx_ip.src, tx_ip.src)
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self.assertEqual(rx_ip.dst, tx_ip.dst)
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if not ip_ttl:
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# IP processing post pop has decremented the TTL
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self.assertEqual(rx_ip.ttl + 1, tx_ip.ttl)
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else:
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self.assertEqual(rx_ip.ttl, ip_ttl)
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except:
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raise
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def verify_capture_tunneled_ip4(self, src_if, capture, sent, mpls_labels):
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try:
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capture = verify_filter(capture, sent)
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self.assertEqual(len(capture), len(sent))
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for i in range(len(capture)):
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tx = sent[i]
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rx = capture[i]
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tx_ip = tx[IP]
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rx_ip = rx[IP]
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verify_mpls_stack(self, rx, mpls_labels)
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self.assertEqual(rx_ip.src, tx_ip.src)
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self.assertEqual(rx_ip.dst, tx_ip.dst)
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# IP processing post pop has decremented the TTL
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self.assertEqual(rx_ip.ttl + 1, tx_ip.ttl)
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except:
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raise
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def test_sr_mpls(self):
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""" SR MPLS """
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#
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# A simple MPLS xconnect - neos label in label out
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#
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route_32_eos = VppMplsRoute(self, 32, 0,
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[VppRoutePath(self.pg0.remote_ip4,
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self.pg0.sw_if_index,
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labels=[VppMplsLabel(32)])])
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route_32_eos.add_vpp_config()
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#
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# A binding SID with only one label
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#
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self.vapi.sr_mpls_policy_add(999, 1, 0, [32])
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#
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# A labeled IP route that resolves thru the binding SID
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#
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ip_10_0_0_1 = VppIpRoute(self, "10.0.0.1", 32,
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[VppRoutePath("0.0.0.0",
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0xffffffff,
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nh_via_label=999,
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labels=[VppMplsLabel(55)])])
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ip_10_0_0_1.add_vpp_config()
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tx = self.create_stream_ip4(self.pg1, "10.0.0.1")
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rx = self.send_and_expect(self.pg1, tx, self.pg0)
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self.verify_capture_labelled_ip4(self.pg0, rx, tx,
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[VppMplsLabel(32),
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VppMplsLabel(55)])
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#
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# An unlabeled IP route that resolves thru the binding SID
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#
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ip_10_0_0_1 = VppIpRoute(self, "10.0.0.2", 32,
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[VppRoutePath("0.0.0.0",
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0xffffffff,
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nh_via_label=999)])
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ip_10_0_0_1.add_vpp_config()
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tx = self.create_stream_ip4(self.pg1, "10.0.0.2")
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rx = self.send_and_expect(self.pg1, tx, self.pg0)
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self.verify_capture_labelled_ip4(self.pg0, rx, tx,
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[VppMplsLabel(32)])
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self.vapi.sr_mpls_policy_del(999)
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#
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# this time the SID has many labels pushed
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#
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self.vapi.sr_mpls_policy_add(999, 1, 0, [32, 33, 34])
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tx = self.create_stream_ip4(self.pg1, "10.0.0.1")
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rx = self.send_and_expect(self.pg1, tx, self.pg0)
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self.verify_capture_labelled_ip4(self.pg0, rx, tx,
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[VppMplsLabel(32),
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VppMplsLabel(33),
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VppMplsLabel(34),
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VppMplsLabel(55)])
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tx = self.create_stream_ip4(self.pg1, "10.0.0.2")
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rx = self.send_and_expect(self.pg1, tx, self.pg0)
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self.verify_capture_labelled_ip4(self.pg0, rx, tx,
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[VppMplsLabel(32),
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VppMplsLabel(33),
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VppMplsLabel(34)])
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#
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# Resolve an MPLS tunnel via the SID
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#
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mpls_tun = VppMPLSTunnelInterface(
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self,
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[VppRoutePath("0.0.0.0",
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0xffffffff,
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nh_via_label=999,
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labels=[VppMplsLabel(44),
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VppMplsLabel(46)])])
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mpls_tun.add_vpp_config()
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mpls_tun.admin_up()
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#
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# add an unlabelled route through the new tunnel
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#
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route_10_0_0_3 = VppIpRoute(self, "10.0.0.3", 32,
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[VppRoutePath("0.0.0.0",
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mpls_tun._sw_if_index)])
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route_10_0_0_3.add_vpp_config()
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self.logger.info(self.vapi.cli("sh mpls tun 0"))
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self.logger.info(self.vapi.cli("sh adj 21"))
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tx = self.create_stream_ip4(self.pg1, "10.0.0.3")
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rx = self.send_and_expect(self.pg1, tx, self.pg0)
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self.verify_capture_tunneled_ip4(self.pg0, rx, tx,
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[VppMplsLabel(32),
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VppMplsLabel(33),
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VppMplsLabel(34),
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VppMplsLabel(44),
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VppMplsLabel(46)])
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#
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# add a labelled route through the new tunnel
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#
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route_10_0_0_3 = VppIpRoute(self, "10.0.0.4", 32,
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[VppRoutePath("0.0.0.0",
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mpls_tun._sw_if_index,
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labels=[VppMplsLabel(55)])])
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route_10_0_0_3.add_vpp_config()
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tx = self.create_stream_ip4(self.pg1, "10.0.0.4")
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rx = self.send_and_expect(self.pg1, tx, self.pg0)
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self.verify_capture_tunneled_ip4(self.pg0, rx, tx,
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[VppMplsLabel(32),
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VppMplsLabel(33),
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VppMplsLabel(34),
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VppMplsLabel(44),
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VppMplsLabel(46),
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VppMplsLabel(55)])
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self.vapi.sr_mpls_policy_del(999)
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if __name__ == '__main__':
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unittest.main(testRunner=VppTestRunner)
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