b9ef2739dd
This reverts commit c8efa29b6f9a91381897b54f1147daf922ed7164. Change-Id: I1d5c5773d5f86a63073e255336bd9de628e26179 Signed-off-by: Klement Sekera <ksekera@cisco.com>
363 lines
12 KiB
Python
363 lines
12 KiB
Python
#!/usr/bin/env python
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import unittest
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from framework import VppTestCase, VppTestRunner
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from vpp_papi_provider import QOS_SOURCE
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from vpp_ip_route import VppIpRoute, VppRoutePath
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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 scapy.contrib.mpls import MPLS
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class TestQOS(VppTestCase):
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""" QOS Test Case """
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def setUp(self):
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super(TestQOS, self).setUp()
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self.create_pg_interfaces(range(5))
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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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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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super(TestQOS, self).tearDown()
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def test_qos_ip(self):
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""" QoS Mark IP """
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#
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# for table 1 map the n=0xff possible values of input QoS mark,
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# n to 1-n
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#
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output = [chr(0)] * 256
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for i in range(0, 255):
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output[i] = chr(255 - i)
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os = ''.join(output)
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rows = [{'outputs': os},
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{'outputs': os},
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{'outputs': os},
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{'outputs': os}]
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self.vapi.qos_egress_map_update(1, rows)
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#
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# For table 2 (and up) use the value n for everything
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#
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output = [chr(2)] * 256
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os = ''.join(output)
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rows = [{'outputs': os},
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{'outputs': os},
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{'outputs': os},
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{'outputs': os}]
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self.vapi.qos_egress_map_update(2, rows)
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output = [chr(3)] * 256
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os = ''.join(output)
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rows = [{'outputs': os},
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{'outputs': os},
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{'outputs': os},
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{'outputs': os}]
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self.vapi.qos_egress_map_update(3, rows)
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output = [chr(4)] * 256
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os = ''.join(output)
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rows = [{'outputs': os},
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{'outputs': os},
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{'outputs': os},
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{'outputs': os}]
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self.vapi.qos_egress_map_update(4, rows)
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self.vapi.qos_egress_map_update(5, rows)
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self.vapi.qos_egress_map_update(6, rows)
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self.vapi.qos_egress_map_update(7, rows)
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self.logger.info(self.vapi.cli("sh qos eg map"))
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#
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# Bind interface pgN to table n
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#
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self.vapi.qos_mark_enable_disable(self.pg1.sw_if_index,
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QOS_SOURCE.IP,
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1,
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1)
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self.vapi.qos_mark_enable_disable(self.pg2.sw_if_index,
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QOS_SOURCE.IP,
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2,
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1)
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self.vapi.qos_mark_enable_disable(self.pg3.sw_if_index,
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QOS_SOURCE.IP,
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3,
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1)
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self.vapi.qos_mark_enable_disable(self.pg4.sw_if_index,
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QOS_SOURCE.IP,
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4,
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1)
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#
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# packets ingress on Pg0
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#
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p_v4 = (Ether(src=self.pg0.remote_mac, dst=self.pg0.local_mac) /
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IP(src=self.pg0.remote_ip4, dst=self.pg1.remote_ip4, tos=1) /
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UDP(sport=1234, dport=1234) /
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Raw(chr(100) * 65))
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p_v6 = (Ether(src=self.pg0.remote_mac, dst=self.pg0.local_mac) /
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IPv6(src=self.pg0.remote_ip6, dst=self.pg1.remote_ip6,
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tc=1) /
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UDP(sport=1234, dport=1234) /
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Raw(chr(100) * 65))
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#
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# Since we have not yet enabled the recording of the input QoS
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# from the input iP header, the egress packet's ToS will be unchanged
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#
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rx = self.send_and_expect(self.pg0, p_v4 * 65, self.pg1)
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for p in rx:
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self.assertEqual(p[IP].tos, 1)
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rx = self.send_and_expect(self.pg0, p_v6 * 65, self.pg1)
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for p in rx:
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self.assertEqual(p[IPv6].tc, 1)
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#
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# Enable QoS recrding on IP input for pg0
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#
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self.vapi.qos_record_enable_disable(self.pg0.sw_if_index,
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QOS_SOURCE.IP,
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1)
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#
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# send the same packets, this time expect the input TOS of 1
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# to be mapped to pg1's egress value of 254
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#
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rx = self.send_and_expect(self.pg0, p_v4 * 65, self.pg1)
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for p in rx:
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self.assertEqual(p[IP].tos, 254)
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rx = self.send_and_expect(self.pg0, p_v6 * 65, self.pg1)
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for p in rx:
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self.assertEqual(p[IPv6].tc, 254)
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#
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# different input ToS to test the mapping
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#
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p_v4[IP].tos = 127
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rx = self.send_and_expect(self.pg0, p_v4 * 65, self.pg1)
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for p in rx:
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self.assertEqual(p[IP].tos, 128)
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p_v6[IPv6].tc = 127
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rx = self.send_and_expect(self.pg0, p_v6 * 65, self.pg1)
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for p in rx:
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self.assertEqual(p[IPv6].tc, 128)
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p_v4[IP].tos = 254
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rx = self.send_and_expect(self.pg0, p_v4 * 65, self.pg1)
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for p in rx:
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self.assertEqual(p[IP].tos, 1)
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p_v6[IPv6].tc = 254
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rx = self.send_and_expect(self.pg0, p_v6 * 65, self.pg1)
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for p in rx:
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self.assertEqual(p[IPv6].tc, 1)
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#
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# send packets out the other interfaces to test the maps are
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# correctly applied
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#
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p_v4[IP].dst = self.pg2.remote_ip4
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rx = self.send_and_expect(self.pg0, p_v4 * 65, self.pg2)
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for p in rx:
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self.assertEqual(p[IP].tos, 2)
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p_v4[IP].dst = self.pg3.remote_ip4
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rx = self.send_and_expect(self.pg0, p_v4 * 65, self.pg3)
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for p in rx:
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self.assertEqual(p[IP].tos, 3)
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p_v6[IPv6].dst = self.pg3.remote_ip6
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rx = self.send_and_expect(self.pg0, p_v6 * 65, self.pg3)
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for p in rx:
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self.assertEqual(p[IPv6].tc, 3)
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#
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# remove the map on pg2 and pg3, now expect an unchanged IP tos
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#
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self.vapi.qos_mark_enable_disable(self.pg2.sw_if_index,
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QOS_SOURCE.IP,
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2,
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0)
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self.vapi.qos_mark_enable_disable(self.pg3.sw_if_index,
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QOS_SOURCE.IP,
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3,
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0)
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self.logger.info(self.vapi.cli("sh int feat pg2"))
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p_v4[IP].dst = self.pg2.remote_ip4
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rx = self.send_and_expect(self.pg0, p_v4 * 65, self.pg2)
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for p in rx:
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self.assertEqual(p[IP].tos, 254)
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p_v4[IP].dst = self.pg3.remote_ip4
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rx = self.send_and_expect(self.pg0, p_v4 * 65, self.pg3)
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for p in rx:
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self.assertEqual(p[IP].tos, 254)
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#
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# still mapping out of pg1
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#
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p_v4[IP].dst = self.pg1.remote_ip4
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rx = self.send_and_expect(self.pg0, p_v4 * 65, self.pg1)
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for p in rx:
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self.assertEqual(p[IP].tos, 1)
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#
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# disable the input recording on pg0
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#
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self.vapi.qos_record_enable_disable(self.pg0.sw_if_index,
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QOS_SOURCE.IP,
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0)
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#
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# back to an unchanged TOS value
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#
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rx = self.send_and_expect(self.pg0, p_v4 * 65, self.pg1)
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for p in rx:
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self.assertEqual(p[IP].tos, 254)
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#
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# disable the egress map on pg1 and pg4
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#
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self.vapi.qos_mark_enable_disable(self.pg1.sw_if_index,
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QOS_SOURCE.IP,
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1,
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0)
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self.vapi.qos_mark_enable_disable(self.pg4.sw_if_index,
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QOS_SOURCE.IP,
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4,
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0)
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#
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# unchanged Tos on pg1
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#
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rx = self.send_and_expect(self.pg0, p_v4 * 65, self.pg1)
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for p in rx:
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self.assertEqual(p[IP].tos, 254)
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#
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# clean-up the masp
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#
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self.vapi.qos_egress_map_delete(1)
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self.vapi.qos_egress_map_delete(4)
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self.vapi.qos_egress_map_delete(2)
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self.vapi.qos_egress_map_delete(3)
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self.vapi.qos_egress_map_delete(5)
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self.vapi.qos_egress_map_delete(6)
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self.vapi.qos_egress_map_delete(7)
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def test_qos_mpls(self):
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""" QoS Mark MPLS """
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#
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# 255 QoS for all input values
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#
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output = [chr(255)] * 256
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os = ''.join(output)
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rows = [{'outputs': os},
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{'outputs': os},
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{'outputs': os},
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{'outputs': os}]
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self.vapi.qos_egress_map_update(1, rows)
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#
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# a route with 1 MPLS label
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#
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route_10_0_0_1 = VppIpRoute(self, "10.0.0.1", 32,
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[VppRoutePath(self.pg1.remote_ip4,
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self.pg1.sw_if_index,
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labels=[32])])
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route_10_0_0_1.add_vpp_config()
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#
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# a route with 3 MPLS labels
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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(self.pg1.remote_ip4,
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self.pg1.sw_if_index,
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labels=[63, 33, 34])])
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route_10_0_0_3.add_vpp_config()
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#
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# enable IP QoS recording on the input Pg0 and MPLS egress marking
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# on Pg1
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#
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self.vapi.qos_record_enable_disable(self.pg0.sw_if_index,
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QOS_SOURCE.IP,
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1)
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self.vapi.qos_mark_enable_disable(self.pg1.sw_if_index,
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QOS_SOURCE.MPLS,
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1,
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1)
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#
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# packet that will get one label added and 3 labels added resp.
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#
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p_1 = (Ether(src=self.pg0.remote_mac, dst=self.pg0.local_mac) /
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IP(src=self.pg0.remote_ip4, dst="10.0.0.1", tos=1) /
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UDP(sport=1234, dport=1234) /
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Raw(chr(100) * 65))
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p_3 = (Ether(src=self.pg0.remote_mac, dst=self.pg0.local_mac) /
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IP(src=self.pg0.remote_ip4, dst="10.0.0.3", tos=1) /
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UDP(sport=1234, dport=1234) /
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Raw(chr(100) * 65))
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rx = self.send_and_expect(self.pg0, p_1 * 65, self.pg1)
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#
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# only 3 bits of ToS value in MPLS make sure tos is correct
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# and the label and EOS bit have not been corrupted
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#
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for p in rx:
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self.assertEqual(p[MPLS].cos, 7)
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self.assertEqual(p[MPLS].label, 32)
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self.assertEqual(p[MPLS].s, 1)
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rx = self.send_and_expect(self.pg0, p_3 * 65, self.pg1)
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for p in rx:
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self.assertEqual(p[MPLS].cos, 7)
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self.assertEqual(p[MPLS].label, 63)
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self.assertEqual(p[MPLS].s, 0)
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h = p[MPLS].payload
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self.assertEqual(h[MPLS].cos, 7)
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self.assertEqual(h[MPLS].label, 33)
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self.assertEqual(h[MPLS].s, 0)
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h = h[MPLS].payload
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self.assertEqual(h[MPLS].cos, 7)
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self.assertEqual(h[MPLS].label, 34)
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self.assertEqual(h[MPLS].s, 1)
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#
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# cleanup
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#
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self.vapi.qos_record_enable_disable(self.pg0.sw_if_index,
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QOS_SOURCE.IP,
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0)
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self.vapi.qos_mark_enable_disable(self.pg1.sw_if_index,
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QOS_SOURCE.MPLS,
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1,
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0)
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self.vapi.qos_egress_map_delete(1)
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if __name__ == '__main__':
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unittest.main(testRunner=VppTestRunner)
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