+ #
+ # MTU exceeded
+ #
+ p_mtu = (Ether(src=self.pg0.remote_mac,
+ dst=self.pg0.local_mac) /
+ IP(src=self.pg0.remote_ip4,
+ dst=self.pg1.remote_ip4,
+ ttl=10, flags='DF') /
+ UDP(sport=1234, dport=1234) /
+ Raw(b'\xa5' * 2000))
+
+ self.vapi.sw_interface_set_mtu(self.pg1.sw_if_index, [1500, 0, 0, 0])
+
+ rx = self.send_and_expect(self.pg0, p_mtu * NUM_PKTS, self.pg0)
+ rx = rx[0]
+ icmp = rx[ICMP]
+
+ self.assertEqual(icmptypes[icmp.type], "dest-unreach")
+ self.assertEqual(icmpcodes[icmp.type][icmp.code],
+ "fragmentation-needed")
+ self.assertEqual(icmp.src, self.pg0.remote_ip4)
+ self.assertEqual(icmp.dst, self.pg1.remote_ip4)
+
+ self.vapi.sw_interface_set_mtu(self.pg1.sw_if_index, [2500, 0, 0, 0])
+ rx = self.send_and_expect(self.pg0, p_mtu * NUM_PKTS, self.pg1)
+
+ # Reset MTU for subsequent tests
+ self.vapi.sw_interface_set_mtu(self.pg1.sw_if_index, [9000, 0, 0, 0])
+
+ #
+ # source address 0.0.0.0 and 25.255.255.255 and for-us
+ #
+ p_s0 = (Ether(src=self.pg0.remote_mac,
+ dst=self.pg0.local_mac) /
+ IP(src="0.0.0.0",
+ dst=self.pg0.local_ip4) /
+ ICMP(id=4, seq=4) /
+ Raw(load=b'\x0a' * 18))
+ rx = self.send_and_assert_no_replies(self.pg0, p_s0 * 17)
+
+ p_s0 = (Ether(src=self.pg0.remote_mac,
+ dst=self.pg0.local_mac) /
+ IP(src="255.255.255.255",
+ dst=self.pg0.local_ip4) /
+ ICMP(id=4, seq=4) /
+ Raw(load=b'\x0a' * 18))
+ rx = self.send_and_assert_no_replies(self.pg0, p_s0 * 17)
+
+
+class TestIPDirectedBroadcast(VppTestCase):
+ """ IPv4 Directed Broadcast """
+
+ @classmethod
+ def setUpClass(cls):
+ super(TestIPDirectedBroadcast, cls).setUpClass()
+
+ @classmethod
+ def tearDownClass(cls):
+ super(TestIPDirectedBroadcast, cls).tearDownClass()
+
+ def setUp(self):
+ super(TestIPDirectedBroadcast, self).setUp()
+
+ self.create_pg_interfaces(range(2))
+
+ for i in self.pg_interfaces:
+ i.admin_up()
+
+ def tearDown(self):
+ super(TestIPDirectedBroadcast, self).tearDown()
+ for i in self.pg_interfaces:
+ i.admin_down()
+
+ def test_ip_input(self):
+ """ IP Directed Broadcast """
+
+ #
+ # set the directed broadcast on pg0 first, then config IP4 addresses
+ # for pg1 directed broadcast is always disabled
+ self.vapi.sw_interface_set_ip_directed_broadcast(
+ self.pg0.sw_if_index, 1)
+
+ p0 = (Ether(src=self.pg1.remote_mac,
+ dst=self.pg1.local_mac) /
+ IP(src="1.1.1.1",
+ dst=self.pg0._local_ip4_bcast) /
+ UDP(sport=1234, dport=1234) /
+ Raw(b'\xa5' * 2000))
+ p1 = (Ether(src=self.pg0.remote_mac,
+ dst=self.pg0.local_mac) /
+ IP(src="1.1.1.1",
+ dst=self.pg1._local_ip4_bcast) /
+ UDP(sport=1234, dport=1234) /
+ Raw(b'\xa5' * 2000))
+
+ self.pg0.config_ip4()
+ self.pg0.resolve_arp()
+ self.pg1.config_ip4()
+ self.pg1.resolve_arp()
+
+ #
+ # test packet is L2 broadcast
+ #
+ rx = self.send_and_expect(self.pg1, p0 * NUM_PKTS, self.pg0)
+ self.assertTrue(rx[0][Ether].dst, "ff:ff:ff:ff:ff:ff")
+
+ self.send_and_assert_no_replies(self.pg0, p1 * NUM_PKTS,
+ "directed broadcast disabled")
+
+ #
+ # toggle directed broadcast on pg0
+ #
+ self.vapi.sw_interface_set_ip_directed_broadcast(
+ self.pg0.sw_if_index, 0)
+ self.send_and_assert_no_replies(self.pg1, p0 * NUM_PKTS,
+ "directed broadcast disabled")
+
+ self.vapi.sw_interface_set_ip_directed_broadcast(
+ self.pg0.sw_if_index, 1)
+ rx = self.send_and_expect(self.pg1, p0 * NUM_PKTS, self.pg0)
+
+ self.pg0.unconfig_ip4()
+ self.pg1.unconfig_ip4()
+
+
+class TestIPLPM(VppTestCase):
+ """ IPv4 longest Prefix Match """
+
+ @classmethod
+ def setUpClass(cls):
+ super(TestIPLPM, cls).setUpClass()
+
+ @classmethod
+ def tearDownClass(cls):
+ super(TestIPLPM, cls).tearDownClass()
+
+ def setUp(self):
+ super(TestIPLPM, self).setUp()
+
+ self.create_pg_interfaces(range(4))
+
+ for i in self.pg_interfaces:
+ i.admin_up()
+ i.config_ip4()
+ i.resolve_arp()
+
+ def tearDown(self):
+ super(TestIPLPM, self).tearDown()
+ for i in self.pg_interfaces:
+ i.admin_down()
+ i.unconfig_ip4()
+
+ def test_ip_lpm(self):
+ """ IP longest Prefix Match """
+
+ s_24 = VppIpRoute(self, "10.1.2.0", 24,
+ [VppRoutePath(self.pg1.remote_ip4,
+ self.pg1.sw_if_index)])
+ s_24.add_vpp_config()
+ s_8 = VppIpRoute(self, "10.0.0.0", 8,
+ [VppRoutePath(self.pg2.remote_ip4,
+ self.pg2.sw_if_index)])
+ s_8.add_vpp_config()
+
+ p_8 = (Ether(src=self.pg0.remote_mac,
+ dst=self.pg0.local_mac) /
+ IP(src="1.1.1.1",
+ dst="10.1.1.1") /
+ UDP(sport=1234, dport=1234) /
+ Raw(b'\xa5' * 2000))
+ p_24 = (Ether(src=self.pg0.remote_mac,
+ dst=self.pg0.local_mac) /
+ IP(src="1.1.1.1",
+ dst="10.1.2.1") /
+ UDP(sport=1234, dport=1234) /
+ Raw(b'\xa5' * 2000))
+
+ self.logger.info(self.vapi.cli("sh ip fib mtrie"))
+ rx = self.send_and_expect(self.pg0, p_8 * NUM_PKTS, self.pg2)
+ rx = self.send_and_expect(self.pg0, p_24 * NUM_PKTS, self.pg1)
+
+
+class TestIPv4Frag(VppTestCase):
+ """ IPv4 fragmentation """
+
+ @classmethod
+ def setUpClass(cls):
+ super(TestIPv4Frag, cls).setUpClass()
+
+ cls.create_pg_interfaces([0, 1])
+ cls.src_if = cls.pg0
+ cls.dst_if = cls.pg1
+
+ # setup all interfaces
+ for i in cls.pg_interfaces:
+ i.admin_up()
+ i.config_ip4()
+ i.resolve_arp()
+
+ @classmethod
+ def tearDownClass(cls):
+ super(TestIPv4Frag, cls).tearDownClass()
+
+ def test_frag_large_packets(self):
+ """ Fragmentation of large packets """
+
+ self.vapi.cli("adjacency counters enable")
+
+ p = (Ether(dst=self.src_if.local_mac, src=self.src_if.remote_mac) /
+ IP(src=self.src_if.remote_ip4, dst=self.dst_if.remote_ip4) /
+ UDP(sport=1234, dport=5678) / Raw())
+ self.extend_packet(p, 6000, "abcde")
+ saved_payload = p[Raw].load
+
+ nbr = VppNeighbor(self,
+ self.dst_if.sw_if_index,
+ self.dst_if.remote_mac,
+ self.dst_if.remote_ip4).add_vpp_config()
+
+ # Force fragmentation by setting MTU of output interface
+ # lower than packet size
+ self.vapi.sw_interface_set_mtu(self.dst_if.sw_if_index,
+ [5000, 0, 0, 0])
+
+ self.pg_enable_capture()
+ self.src_if.add_stream(p)
+ self.pg_start()
+
+ # Expecting 3 fragments because size of created fragments currently
+ # cannot be larger then VPP buffer size (which is 2048)
+ packets = self.dst_if.get_capture(3)
+
+ # we should show 3 packets thru the neighbor
+ self.assertEqual(3, nbr.get_stats()['packets'])
+
+ # Assume VPP sends the fragments in order
+ payload = b''
+ for p in packets:
+ payload_offset = p.frag * 8
+ if payload_offset > 0:
+ payload_offset -= 8 # UDP header is not in payload
+ self.assert_equal(payload_offset, len(payload))
+ payload += p[Raw].load
+ self.assert_equal(payload, saved_payload, "payload")
+
+
+class TestIPReplace(VppTestCase):
+ """ IPv4 Table Replace """
+
+ @classmethod
+ def setUpClass(cls):
+ super(TestIPReplace, cls).setUpClass()
+
+ @classmethod
+ def tearDownClass(cls):
+ super(TestIPReplace, cls).tearDownClass()
+
+ def setUp(self):
+ super(TestIPReplace, self).setUp()
+
+ self.create_pg_interfaces(range(4))
+
+ table_id = 1
+ self.tables = []
+
+ for i in self.pg_interfaces:
+ i.admin_up()
+ i.config_ip4()
+ i.resolve_arp()
+ i.generate_remote_hosts(2)
+ self.tables.append(VppIpTable(self, table_id).add_vpp_config())
+ table_id += 1
+
+ def tearDown(self):
+ super(TestIPReplace, self).tearDown()
+ for i in self.pg_interfaces:
+ i.admin_down()
+ i.unconfig_ip4()
+
+ def test_replace(self):
+ """ IP Table Replace """
+
+ N_ROUTES = 20
+ links = [self.pg0, self.pg1, self.pg2, self.pg3]
+ routes = [[], [], [], []]
+
+ # load up the tables with some routes
+ for ii, t in enumerate(self.tables):
+ for jj in range(N_ROUTES):
+ uni = VppIpRoute(
+ self, "10.0.0.%d" % jj, 32,
+ [VppRoutePath(links[ii].remote_hosts[0].ip4,
+ links[ii].sw_if_index),
+ VppRoutePath(links[ii].remote_hosts[1].ip4,
+ links[ii].sw_if_index)],
+ table_id=t.table_id).add_vpp_config()
+ multi = VppIpMRoute(
+ self, "0.0.0.0",
+ "239.0.0.%d" % jj, 32,
+ MRouteEntryFlags.MFIB_ENTRY_FLAG_NONE,
+ [VppMRoutePath(self.pg0.sw_if_index,
+ MRouteItfFlags.MFIB_ITF_FLAG_ACCEPT),
+ VppMRoutePath(self.pg1.sw_if_index,
+ MRouteItfFlags.MFIB_ITF_FLAG_FORWARD),
+ VppMRoutePath(self.pg2.sw_if_index,
+ MRouteItfFlags.MFIB_ITF_FLAG_FORWARD),
+ VppMRoutePath(self.pg3.sw_if_index,
+ MRouteItfFlags.MFIB_ITF_FLAG_FORWARD)],
+ table_id=t.table_id).add_vpp_config()
+ routes[ii].append({'uni': uni,
+ 'multi': multi})
+
+ #
+ # replace the tables a few times
+ #
+ for kk in range(3):
+ # replace_begin each table
+ for t in self.tables:
+ t.replace_begin()
+
+ # all the routes are still there
+ for ii, t in enumerate(self.tables):
+ dump = t.dump()
+ mdump = t.mdump()
+ for r in routes[ii]:
+ self.assertTrue(find_route_in_dump(dump, r['uni'], t))
+ self.assertTrue(find_mroute_in_dump(mdump, r['multi'], t))
+
+ # redownload the even numbered routes
+ for ii, t in enumerate(self.tables):
+ for jj in range(0, N_ROUTES, 2):
+ routes[ii][jj]['uni'].add_vpp_config()
+ routes[ii][jj]['multi'].add_vpp_config()
+
+ # signal each table replace_end
+ for t in self.tables:
+ t.replace_end()
+
+ # we should find the even routes, but not the odd
+ for ii, t in enumerate(self.tables):
+ dump = t.dump()
+ mdump = t.mdump()
+ for jj in range(0, N_ROUTES, 2):
+ self.assertTrue(find_route_in_dump(
+ dump, routes[ii][jj]['uni'], t))
+ self.assertTrue(find_mroute_in_dump(
+ mdump, routes[ii][jj]['multi'], t))
+ for jj in range(1, N_ROUTES - 1, 2):
+ self.assertFalse(find_route_in_dump(
+ dump, routes[ii][jj]['uni'], t))
+ self.assertFalse(find_mroute_in_dump(
+ mdump, routes[ii][jj]['multi'], t))
+
+ # reload all the routes
+ for ii, t in enumerate(self.tables):
+ for r in routes[ii]:
+ r['uni'].add_vpp_config()
+ r['multi'].add_vpp_config()
+
+ # all the routes are still there
+ for ii, t in enumerate(self.tables):
+ dump = t.dump()
+ mdump = t.mdump()
+ for r in routes[ii]:
+ self.assertTrue(find_route_in_dump(dump, r['uni'], t))
+ self.assertTrue(find_mroute_in_dump(mdump, r['multi'], t))
+
+ #
+ # finally flush the tables for good measure
+ #
+ for t in self.tables:
+ t.flush()
+ self.assertEqual(len(t.dump()), 5)
+ self.assertEqual(len(t.mdump()), 1)
+
+
+class TestIPCover(VppTestCase):
+ """ IPv4 Table Cover """
+
+ @classmethod
+ def setUpClass(cls):
+ super(TestIPCover, cls).setUpClass()
+
+ @classmethod
+ def tearDownClass(cls):
+ super(TestIPCover, cls).tearDownClass()
+
+ def setUp(self):
+ super(TestIPCover, self).setUp()
+
+ self.create_pg_interfaces(range(4))
+
+ table_id = 1
+ self.tables = []
+
+ for i in self.pg_interfaces:
+ i.admin_up()
+ i.config_ip4()
+ i.resolve_arp()
+ i.generate_remote_hosts(2)
+ self.tables.append(VppIpTable(self, table_id).add_vpp_config())
+ table_id += 1
+
+ def tearDown(self):
+ super(TestIPCover, self).tearDown()
+ for i in self.pg_interfaces:
+ i.admin_down()
+ i.unconfig_ip4()
+
+ def test_cover(self):
+ """ IP Table Cover """
+
+ # add a loop back with a /32 prefix
+ lo = VppLoInterface(self)
+ lo.admin_up()
+ a = VppIpInterfaceAddress(self, lo, "127.0.0.1", 32).add_vpp_config()
+
+ # add a neighbour that matches the loopback's /32
+ nbr = VppNeighbor(self,
+ lo.sw_if_index,
+ lo.remote_mac,
+ "127.0.0.1").add_vpp_config()
+
+ # add the default route which will be the cover for /32
+ r = VppIpRoute(self, "0.0.0.0", 0,
+ [VppRoutePath("127.0.0.1",
+ lo.sw_if_index)],
+ register=False).add_vpp_config()
+
+ # add/remove/add a longer mask cover
+ r = VppIpRoute(self, "127.0.0.0", 8,
+ [VppRoutePath("127.0.0.1",
+ lo.sw_if_index)]).add_vpp_config()
+ r.remove_vpp_config()
+ r.add_vpp_config()
+
+ # remove the default route
+ r.remove_vpp_config()