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[thread-cert] add case 9.2.6 DatasetDissemination using pktverify (#5972)
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#!/usr/bin/env python3
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#
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# Copyright (c) 2020, The OpenThread Authors.
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# All rights reserved.
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#
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# Redistribution and use in source and binary forms, with or without
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# modification, are permitted provided that the following conditions are met:
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# 1. Redistributions of source code must retain the above copyright
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# notice, this list of conditions and the following disclaimer.
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# 2. Redistributions in binary form must reproduce the above copyright
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# notice, this list of conditions and the following disclaimer in the
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# documentation and/or other materials provided with the distribution.
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# 3. Neither the name of the copyright holder nor the
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# names of its contributors may be used to endorse or promote products
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# derived from this software without specific prior written permission.
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#
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# THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
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# AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
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# IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
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# ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE
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# LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
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# CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
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# SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
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# INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
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# CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
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# ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
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# POSSIBILITY OF SUCH DAMAGE.
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#
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import unittest
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import command
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import config
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import mesh_cop
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import thread_cert
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from pktverify.consts import MLE_CHILD_ID_RESPONSE, MLE_CHILD_UPDATE_REQUEST, MLE_DATA_RESPONSE, MLE_DATA_REQUEST, MGMT_COMMISSIONER_SET_URI, MGMT_ACTIVE_SET_URI, MGMT_PENDING_SET_URI, TLV_REQUEST_TLV, SOURCE_ADDRESS_TLV, LEADER_DATA_TLV, NETWORK_DATA_TLV, ACTIVE_TIMESTAMP_TLV, PENDING_TIMESTAMP_TLV, ACTIVE_OPERATION_DATASET_TLV, PENDING_OPERATION_DATASET_TLV, NM_COMMISSIONER_SESSION_ID_TLV, NM_BORDER_AGENT_LOCATOR_TLV, NM_ACTIVE_TIMESTAMP_TLV, NM_NETWORK_NAME_TLV, NM_NETWORK_MASTER_KEY_TLV, NM_CHANNEL_TLV, NM_CHANNEL_MASK_TLV, NM_EXTENDED_PAN_ID_TLV, NM_NETWORK_MESH_LOCAL_PREFIX_TLV, NM_PAN_ID_TLV, NM_PSKC_TLV, NM_SECURITY_POLICY_TLV, NM_DELAY_TIMER_TLV, NM_STEERING_DATA_TLV, NWD_COMMISSIONING_DATA_TLV, LEADER_ALOC
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from pktverify.packet_verifier import PacketVerifier
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from pktverify.layer_fields import nullField
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CHANNEL_INIT = 19
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PANID_INIT = 0xface
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TIMESTAMP_INIT = 10
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CHANNEL_SECOND = 21
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COMM_ACTIVE_TIMESTAMP = 15
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COMM_ACTIVE_NET_NAME = 'Thread'
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COMM_ACTIVE_PSKC = '10b95765596ab9d0b86cebdd0fa24da3'
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COMM_PENDING_TIMESTAMP = 30
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COMM_PENDING_ACTIVE_TIMESTAMP = 75
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COMM_DELAY_TIMER = 60000
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COMMISSIONER = 1
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LEADER = 2
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ROUTER = 3
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MED = 4
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SED = 5
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# Test Purpose and Description:
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# -----------------------------
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# DUT as Leader:
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# The purpose of this test case is to verify that the Leader device properly
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# collects and disseminates Operational Datasets through a Thread network.
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# DUT as Router:
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# The purpose of this test case is to show that the Router device correctly
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# sets the Commissioning information propagated by the Leader device and sends
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# it properly to devices already attached to it.
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# DUT as MED/SED:
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# MED - requires full network data
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# SED - requires only stable network data
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# Set on Leader: Active TimeStamp = 10s
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#
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# Test Topology:
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# -------------
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# Commissioner
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# |
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# Leader
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# |
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# Router
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# / \
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# MED SED
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#
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# DUT Types:
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# ----------
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# Leader
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# Router
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# MED
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# SED
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class Cert_9_2_06_DatasetDissemination(thread_cert.TestCase):
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SUPPORT_NCP = False
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TOPOLOGY = {
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COMMISSIONER: {
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'name': 'COMMISSIONER',
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'active_dataset': {
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'timestamp': TIMESTAMP_INIT,
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'panid': PANID_INIT,
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'channel': CHANNEL_INIT
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},
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'mode': 'rdn',
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'router_selection_jitter': 1,
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'allowlist': [LEADER]
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},
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LEADER: {
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'name': 'LEADER',
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'active_dataset': {
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'timestamp': TIMESTAMP_INIT,
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'panid': PANID_INIT,
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'channel': CHANNEL_INIT
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},
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'mode': 'rdn',
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'router_selection_jitter': 1,
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'allowlist': [COMMISSIONER, ROUTER]
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},
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ROUTER: {
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'name': 'ROUTER',
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'active_dataset': {
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'timestamp': TIMESTAMP_INIT,
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'panid': PANID_INIT,
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'channel': CHANNEL_INIT
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},
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'mode': 'rdn',
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'router_selection_jitter': 1,
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'allowlist': [LEADER, MED, SED]
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},
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MED: {
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'name': 'MED',
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'channel': CHANNEL_INIT,
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'is_mtd': True,
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'mode': 'rn',
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'panid': PANID_INIT,
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'allowlist': [ROUTER]
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},
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SED: {
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'name': 'SED',
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'channel': CHANNEL_INIT,
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'is_mtd': True,
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'mode': '-',
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'panid': PANID_INIT,
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'timeout': config.DEFAULT_CHILD_TIMEOUT,
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'allowlist': [ROUTER]
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},
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}
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def test(self):
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self.nodes[LEADER].start()
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self.simulator.go(5)
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self.assertEqual(self.nodes[LEADER].get_state(), 'leader')
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self.nodes[COMMISSIONER].start()
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self.simulator.go(5)
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self.assertEqual(self.nodes[COMMISSIONER].get_state(), 'router')
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self.simulator.get_messages_sent_by(LEADER)
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self.nodes[COMMISSIONER].commissioner_start()
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self.simulator.go(3)
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leader_messages = self.simulator.get_messages_sent_by(LEADER)
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msg = leader_messages.next_coap_message('2.04', assert_enabled=True)
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self.nodes[ROUTER].start()
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self.simulator.go(5)
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self.assertEqual(self.nodes[ROUTER].get_state(), 'router')
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self.nodes[MED].start()
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self.simulator.go(5)
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self.assertEqual(self.nodes[MED].get_state(), 'child')
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self.nodes[SED].start()
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self.simulator.go(5)
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self.assertEqual(self.nodes[SED].get_state(), 'child')
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commissioner_session_id_tlv = command.get_sub_tlv(msg.coap.payload, mesh_cop.CommissionerSessionId)
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steering_data_tlv = mesh_cop.SteeringData(bytes([0xff]))
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# Step 2
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self.nodes[COMMISSIONER].commissioner_mgmtset_with_tlvs([steering_data_tlv, commissioner_session_id_tlv])
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self.simulator.go(10)
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# Step 7
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self.nodes[COMMISSIONER].send_mgmt_active_set(
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active_timestamp=COMM_ACTIVE_TIMESTAMP,
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network_name=COMM_ACTIVE_NET_NAME,
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binary='0410' + COMM_ACTIVE_PSKC,
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)
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self.simulator.go(10)
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# Step 18
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self.nodes[COMMISSIONER].send_mgmt_pending_set(
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pending_timestamp=COMM_PENDING_TIMESTAMP,
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active_timestamp=COMM_PENDING_ACTIVE_TIMESTAMP,
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delay_timer=COMM_DELAY_TIMER,
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channel=CHANNEL_SECOND,
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)
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self.simulator.go(120)
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self.collect_rlocs()
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ed_rloc = self.nodes[MED].get_rloc()
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sed_rloc = self.nodes[SED].get_rloc()
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leader_rloc = self.nodes[LEADER].get_rloc()
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router_rloc = self.nodes[ROUTER].get_rloc()
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for rloc in (leader_rloc, router_rloc, ed_rloc, sed_rloc):
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self.assertTrue(self.nodes[COMMISSIONER].ping(rloc))
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self.simulator.go(10)
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def verify(self, pv):
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pkts = pv.pkts
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pv.summary.show()
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LEADER = pv.vars['LEADER']
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COMMISSIONER = pv.vars['COMMISSIONER']
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ROUTER = pv.vars['ROUTER']
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MED = pv.vars['MED']
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SED = pv.vars['SED']
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LEADER_RLOC = pv.vars['LEADER_RLOC']
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COMMISSIONER_RLOC = pv.vars['COMMISSIONER_RLOC']
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ROUTER_RLOC = pv.vars['ROUTER_RLOC']
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MED_RLOC = pv.vars['MED_RLOC']
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SED_RLOC = pv.vars['SED_RLOC']
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# Step 1: Ensure the topology is formed correctly
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for node in ('COMMISSIONER', 'ROUTER'):
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pv.verify_attached(node, 'LEADER')
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for node in ('MED', 'SED'):
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pv.verify_attached(node, 'ROUTER', 'MTD')
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_pkt = pkts.last()
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# Step 3: Leader sends MGMT_COMMISSIONER_SET.rsp to the Commissioner:
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# CoAP Response Code
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# 2.04 Changed
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# CoAP Payload
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# - State TLV (value = Accept)
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pkts.filter_coap_ack(MGMT_COMMISSIONER_SET_URI).\
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filter_wpan_src64(LEADER).\
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filter_ipv6_dst(COMMISSIONER_RLOC).\
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must_next().\
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must_verify(lambda p: p.thread_meshcop.tlv.state == 1)
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# Step 4: Leader MUST multicast MLE Data Response to the Link-Local
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# All Nodes multicast address (FF02::1) with the new information
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# including the following TLVs:
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# - Source Address TLV
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# - Leader Data TLV:
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# Data Version field incremented
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# Stable Version field NOT incremented
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# - Network Data TLV:
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# - Commissioner Data TLV:
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# Stable flag set to 0
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# Border Agent Locator TLV
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# Commissioner Session ID TLV
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# Steering Data TLV
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# - Active Timestamp TLV
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pkts.filter_mle_cmd(MLE_DATA_RESPONSE). \
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filter_wpan_src64(LEADER). \
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filter_LLANMA(). \
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filter(lambda p: p.mle.tlv.active_tstamp == TIMESTAMP_INIT and \
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(p.mle.tlv.leader_data.data_version -
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_pkt.mle.tlv.leader_data.data_version) % 256 <= 127 and \
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p.mle.tlv.leader_data.stable_data_version ==
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_pkt.mle.tlv.leader_data.stable_data_version and \
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p.thread_nwd.tlv.stable == [0] and \
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NWD_COMMISSIONING_DATA_TLV in p.thread_nwd.tlv.type and \
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NM_COMMISSIONER_SESSION_ID_TLV in p.thread_meshcop.tlv.type and \
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NM_STEERING_DATA_TLV in p.thread_meshcop.tlv.type and \
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NM_BORDER_AGENT_LOCATOR_TLV in p.thread_meshcop.tlv.type
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). \
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must_next()
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idx_start = pkts.index
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# Step 5: Router MUST multicast MLE Data Response to the Link-Local
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# All Nodes multicast address (FF02::1) with the new information
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# including the following TLVs:
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# - Source Address TLV
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# - Leader Data TLV:
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# Data Version field incremented
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# Stable Version field NOT incremented
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# - Network Data TLV:
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# - Commissioner Data TLV:
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# Stable flag set to 0
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# Border Agent Locator TLV
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# Commissioner Session ID TLV
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# Steering Data TLV
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# - Active Timestamp TLV
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pkts.filter_mle_cmd(MLE_DATA_RESPONSE). \
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filter_wpan_src64(ROUTER). \
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filter_LLANMA(). \
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filter(lambda p: p.mle.tlv.active_tstamp == TIMESTAMP_INIT and \
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(p.mle.tlv.leader_data.data_version -
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_pkt.mle.tlv.leader_data.data_version) % 256 <= 127 and \
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p.mle.tlv.leader_data.stable_data_version ==
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_pkt.mle.tlv.leader_data.stable_data_version and \
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p.thread_nwd.tlv.stable == [0] and \
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NWD_COMMISSIONING_DATA_TLV in p.thread_nwd.tlv.type and \
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NM_COMMISSIONER_SESSION_ID_TLV in p.thread_meshcop.tlv.type and \
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NM_STEERING_DATA_TLV in p.thread_meshcop.tlv.type and \
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NM_BORDER_AGENT_LOCATOR_TLV in p.thread_meshcop.tlv.type
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). \
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must_next()
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# Step 8: Leader sends MGMT_ACTIVE_SET.rsp to the Commissioner:
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# CoAP Response Code
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# 2.04 Changed
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# CoAP Payload
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# - State TLV (value = Accept)
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pkts.filter_coap_ack(MGMT_ACTIVE_SET_URI). \
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filter_wpan_src64(LEADER). \
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filter_ipv6_dst(COMMISSIONER_RLOC). \
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must_next(). \
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must_verify(lambda p: p.thread_meshcop.tlv.state == 1)
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idx_end = pkts.index
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# Step 6: Router MUST NOT send a unicast MLE Data Response or MLE Child
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# Update Request to SED_1
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pkts.range(idx_start, idx_end).\
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filter_mle_cmd(MLE_DATA_RESPONSE).\
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filter_wpan_src64(ROUTER).\
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filter_wpan_dst64(SED).\
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must_not_next()
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# Step 9: Leader MUST multicast MLE Data Response to the Link-Local
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# All Nodes multicast address (FF02::1) with the new information
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# including the following TLVs:
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# - Source Address TLV
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# - Leader Data TLV:
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# Data Version field incremented
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# Stable Version field incremented
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# - Network Data TLV:
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# - Commissioner Data TLV:
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# Stable flag set to 0
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# Border Agent Locator TLV
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# Commissioner Session ID TLV
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# Steering Data TLV
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# - Active Timestamp TLV: 15s
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_pkt9 = pkts.filter_mle_cmd(MLE_DATA_RESPONSE). \
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filter_wpan_src64(LEADER). \
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filter_LLANMA(). \
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filter(lambda p: p.mle.tlv.active_tstamp == COMM_ACTIVE_TIMESTAMP and \
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(p.mle.tlv.leader_data.data_version -
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_pkt.mle.tlv.leader_data.data_version) % 256 <= 127 and \
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(p.mle.tlv.leader_data.stable_data_version -
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_pkt.mle.tlv.leader_data.stable_data_version) % 256 <= 127 and \
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p.thread_nwd.tlv.stable == [0] and \
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NWD_COMMISSIONING_DATA_TLV in p.thread_nwd.tlv.type and \
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NM_COMMISSIONER_SESSION_ID_TLV in p.thread_meshcop.tlv.type and \
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NM_STEERING_DATA_TLV in p.thread_meshcop.tlv.type and \
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NM_BORDER_AGENT_LOCATOR_TLV in p.thread_meshcop.tlv.type
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). \
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must_next()
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# Step 10: Router MUST send a unicast MLE Data Request to the Leader, including the
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# following TLVs:
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# - TLV Request TLV:
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# - Network Data TLV
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# - Active Timestamp TLV
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pkts.filter_wpan_src64(ROUTER).\
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filter_wpan_dst64(LEADER).\
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filter_mle_cmd(MLE_DATA_REQUEST).\
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filter(lambda p: {
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TLV_REQUEST_TLV,
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NETWORK_DATA_TLV,
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ACTIVE_TIMESTAMP_TLV
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} <= set(p.mle.tlv.type) and\
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p.thread_meshcop.tlv.type is nullField
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).\
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must_next()
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# Step 11: Leader sends a MLE Data Response to Router_1 including the following TLVs:
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# - Source Address TLV
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# - Leader Data TLV
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# Data version numbers should be
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# the same as the ones sent in the
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# multicast data response in step 9
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# - Network Data TLV
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# - Commissioner Data TLV:
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# Stable flag set to 0
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# Border Agent Locator TLV
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# Commissioner Session ID TLV
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# Steering Data TLV
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# - Active Timestamp TLV: <new value>
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# - Active Operational Dataset TLV
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# - Network Name TLV <new value>
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# - Channel TLV
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# - PAN ID TLV
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# - PSKc TLV
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# MUST NOT contain the Active Timestamp TLV
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pkts.filter_mle_cmd(MLE_DATA_RESPONSE). \
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filter_wpan_src64(LEADER). \
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filter_wpan_dst64(ROUTER). \
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filter(lambda p: {
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SOURCE_ADDRESS_TLV,
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LEADER_DATA_TLV,
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ACTIVE_TIMESTAMP_TLV,
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ACTIVE_OPERATION_DATASET_TLV
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} <= set(p.mle.tlv.type) and \
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{
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NM_COMMISSIONER_SESSION_ID_TLV,
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NM_BORDER_AGENT_LOCATOR_TLV,
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NM_STEERING_DATA_TLV
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} <= set(p.thread_meshcop.tlv.type) and \
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p.mle.tlv.leader_data.data_version ==
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_pkt9.mle.tlv.leader_data.data_version and \
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p.mle.tlv.leader_data.stable_data_version ==
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_pkt9.mle.tlv.leader_data.stable_data_version and \
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NWD_COMMISSIONING_DATA_TLV in p.thread_nwd.tlv.type and \
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NM_ACTIVE_TIMESTAMP_TLV not in p.thread_meshcop.tlv.type and \
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p.thread_nwd.tlv.stable == [0] and \
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p.mle.tlv.active_tstamp == COMM_ACTIVE_TIMESTAMP and \
|
||||
p.thread_meshcop.tlv.channel == [CHANNEL_INIT] and \
|
||||
p.thread_meshcop.tlv.net_name == [COMM_ACTIVE_NET_NAME] and \
|
||||
p.thread_meshcop.tlv.pskc == COMM_ACTIVE_PSKC and \
|
||||
p.thread_meshcop.tlv.pan_id == [PANID_INIT]
|
||||
). \
|
||||
must_next()
|
||||
|
||||
# Step 12: Router MUST multicast MLE Data Response to the Link-Local
|
||||
# All Nodes multicast address (FF02::1) with the new information
|
||||
# including the following TLVs:
|
||||
# - Source Address TLV
|
||||
# - Leader Data TLV:
|
||||
# Data version numbers should be
|
||||
# the same as the ones sent in the
|
||||
# multicast data response in step 9
|
||||
# - Network Data TLV:
|
||||
# - Commissioner Data TLV:
|
||||
# Stable flag set to 0
|
||||
# Border Agent Locator TLV
|
||||
# Commissioner Session ID TLV
|
||||
# Steering Data TLV
|
||||
# - Active Timestamp TLV: 15s
|
||||
with pkts.save_index():
|
||||
pkts.filter_mle_cmd(MLE_DATA_RESPONSE). \
|
||||
filter_wpan_src64(ROUTER). \
|
||||
filter_LLANMA(). \
|
||||
filter(lambda p: p.mle.tlv.active_tstamp == COMM_ACTIVE_TIMESTAMP and \
|
||||
p.mle.tlv.leader_data.data_version ==
|
||||
_pkt9.mle.tlv.leader_data.data_version and \
|
||||
p.mle.tlv.leader_data.stable_data_version ==
|
||||
_pkt9.mle.tlv.leader_data.stable_data_version and \
|
||||
p.thread_nwd.tlv.stable == [0] and \
|
||||
NWD_COMMISSIONING_DATA_TLV in p.thread_nwd.tlv.type and \
|
||||
NM_COMMISSIONER_SESSION_ID_TLV in p.thread_meshcop.tlv.type and \
|
||||
NM_STEERING_DATA_TLV in p.thread_meshcop.tlv.type and \
|
||||
NM_BORDER_AGENT_LOCATOR_TLV in p.thread_meshcop.tlv.type
|
||||
). \
|
||||
must_next()
|
||||
|
||||
# Step 13: MED MUST send a unicast MLE Data Request to the Router, including the
|
||||
# following TLVs:
|
||||
# - TLV Request TLV:
|
||||
# - Network Data TLV
|
||||
# - Active Timestamp TLV
|
||||
|
||||
# Step 14: Router sends a MLE Data Response to MED including the following TLVs:
|
||||
# - Source Address TLV
|
||||
# - Leader Data TLV
|
||||
# Data version numbers should be
|
||||
# the same as the ones sent in the
|
||||
# multicast data response in step 9
|
||||
# - Network Data TLV
|
||||
# - Commissioner Data TLV:
|
||||
# Stable flag set to 0
|
||||
# Border Agent Locator TLV
|
||||
# Commissioner Session ID TLV
|
||||
# Steering Data TLV
|
||||
# - Active Timestamp TLV: <new value>
|
||||
# - Active Operational Dataset TLV
|
||||
# - Network Name TLV <new value>
|
||||
# - Channel TLV
|
||||
# - PAN ID TLV
|
||||
# MUST NOT contain the Active Timestamp TLV
|
||||
with pkts.save_index():
|
||||
pkts.filter_wpan_src64(MED). \
|
||||
filter_wpan_dst64(ROUTER). \
|
||||
filter_mle_cmd(MLE_DATA_REQUEST). \
|
||||
filter(lambda p: {
|
||||
TLV_REQUEST_TLV,
|
||||
NETWORK_DATA_TLV,
|
||||
ACTIVE_TIMESTAMP_TLV
|
||||
} <= set(p.mle.tlv.type) and \
|
||||
p.thread_meshcop.tlv.type is nullField
|
||||
). \
|
||||
must_next()
|
||||
|
||||
pkts.filter_mle_cmd(MLE_DATA_RESPONSE). \
|
||||
filter_wpan_src64(ROUTER). \
|
||||
filter_wpan_dst64(MED). \
|
||||
filter(lambda p: {
|
||||
SOURCE_ADDRESS_TLV,
|
||||
LEADER_DATA_TLV,
|
||||
ACTIVE_TIMESTAMP_TLV,
|
||||
ACTIVE_OPERATION_DATASET_TLV
|
||||
} <= set(p.mle.tlv.type) and \
|
||||
{
|
||||
NM_COMMISSIONER_SESSION_ID_TLV,
|
||||
NM_BORDER_AGENT_LOCATOR_TLV,
|
||||
NM_STEERING_DATA_TLV
|
||||
} <= set(p.thread_meshcop.tlv.type) and \
|
||||
p.mle.tlv.leader_data.data_version ==
|
||||
_pkt9.mle.tlv.leader_data.data_version and \
|
||||
p.mle.tlv.leader_data.stable_data_version ==
|
||||
_pkt9.mle.tlv.leader_data.stable_data_version and \
|
||||
NWD_COMMISSIONING_DATA_TLV in p.thread_nwd.tlv.type and \
|
||||
NM_ACTIVE_TIMESTAMP_TLV not in p.thread_meshcop.tlv.type and \
|
||||
p.thread_nwd.tlv.stable == [0] and \
|
||||
p.mle.tlv.active_tstamp == COMM_ACTIVE_TIMESTAMP and \
|
||||
p.thread_meshcop.tlv.channel == [CHANNEL_INIT] and \
|
||||
p.thread_meshcop.tlv.net_name == [COMM_ACTIVE_NET_NAME] and \
|
||||
p.thread_meshcop.tlv.pskc == COMM_ACTIVE_PSKC and \
|
||||
p.thread_meshcop.tlv.pan_id == [PANID_INIT]
|
||||
). \
|
||||
must_next()
|
||||
|
||||
# Step 15: Router MUST send MLE Child Update Request or MLE Data Response
|
||||
# to SED, including the following TLVs:
|
||||
# - Source Address TLV
|
||||
# - Leader Data TLV:
|
||||
# Data version numbers should be
|
||||
# the same as the ones sent in the
|
||||
# multicast data response in step 9
|
||||
# - Network Data TLV
|
||||
# - Active Timestamp TLV: 15s
|
||||
pkts.filter_wpan_src64(ROUTER). \
|
||||
filter_wpan_dst64(SED). \
|
||||
filter_mle_cmd2(MLE_CHILD_UPDATE_REQUEST, MLE_DATA_RESPONSE). \
|
||||
filter(lambda p: p.mle.tlv.active_tstamp == COMM_ACTIVE_TIMESTAMP and \
|
||||
p.mle.tlv.leader_data.data_version ==
|
||||
_pkt9.mle.tlv.leader_data.data_version and \
|
||||
p.mle.tlv.leader_data.stable_data_version ==
|
||||
_pkt9.mle.tlv.leader_data.stable_data_version and \
|
||||
NETWORK_DATA_TLV in p.mle.tlv.type and\
|
||||
SOURCE_ADDRESS_TLV in p.mle.tlv.type
|
||||
). \
|
||||
must_next()
|
||||
|
||||
# Step 16: SED MUST send a unicast MLE Data Request to the Router, including the
|
||||
# following TLVs:
|
||||
# - TLV Request TLV:
|
||||
# - Network Data TLV
|
||||
# - Active Timestamp TLV
|
||||
pkts.filter_wpan_src64(SED). \
|
||||
filter_wpan_dst64(ROUTER). \
|
||||
filter_mle_cmd(MLE_DATA_REQUEST). \
|
||||
filter(lambda p: {
|
||||
TLV_REQUEST_TLV,
|
||||
NETWORK_DATA_TLV,
|
||||
ACTIVE_TIMESTAMP_TLV
|
||||
} <= set(p.mle.tlv.type) and \
|
||||
p.thread_meshcop.tlv.type is nullField
|
||||
). \
|
||||
must_next()
|
||||
|
||||
# Step 17: Router sends a MLE Data Response to SED including the following TLVs:
|
||||
# - Source Address TLV
|
||||
# - Leader Data TLV
|
||||
# Data version numbers should be
|
||||
# the same as the ones sent in the
|
||||
# multicast data response in step 9
|
||||
# - Network Data TLV
|
||||
# - Active Timestamp TLV: <15s>
|
||||
# - Active Operational Dataset TLV
|
||||
# - Network Name TLV <new value>
|
||||
# - Channel TLV
|
||||
# - PAN ID TLV
|
||||
# MUST NOT contain the Active Timestamp TLV
|
||||
pkts.filter_mle_cmd(MLE_DATA_RESPONSE). \
|
||||
filter_wpan_src64(ROUTER). \
|
||||
filter_wpan_dst64(SED). \
|
||||
filter(lambda p: {
|
||||
SOURCE_ADDRESS_TLV,
|
||||
LEADER_DATA_TLV,
|
||||
ACTIVE_TIMESTAMP_TLV,
|
||||
ACTIVE_OPERATION_DATASET_TLV
|
||||
} <= set(p.mle.tlv.type) and \
|
||||
p.mle.tlv.leader_data.data_version ==
|
||||
_pkt9.mle.tlv.leader_data.data_version and \
|
||||
p.mle.tlv.leader_data.stable_data_version ==
|
||||
_pkt9.mle.tlv.leader_data.stable_data_version and \
|
||||
NM_ACTIVE_TIMESTAMP_TLV not in p.thread_meshcop.tlv.type and \
|
||||
p.mle.tlv.active_tstamp == COMM_ACTIVE_TIMESTAMP and \
|
||||
p.thread_meshcop.tlv.channel == [CHANNEL_INIT] and \
|
||||
p.thread_meshcop.tlv.net_name == [COMM_ACTIVE_NET_NAME] and \
|
||||
p.thread_meshcop.tlv.pskc == COMM_ACTIVE_PSKC and \
|
||||
p.thread_meshcop.tlv.pan_id == [PANID_INIT]
|
||||
). \
|
||||
must_next()
|
||||
|
||||
# Step 19: Leader sends MGMT_PENDING_SET.rsp to the Commissioner:
|
||||
# CoAP Response Code
|
||||
# 2.04 Changed
|
||||
# CoAP Payload
|
||||
# - State TLV (value = Accept)
|
||||
pkts.filter_coap_ack(MGMT_PENDING_SET_URI). \
|
||||
filter_wpan_src64(LEADER). \
|
||||
filter_ipv6_dst(COMMISSIONER_RLOC). \
|
||||
must_next(). \
|
||||
must_verify(lambda p: p.thread_meshcop.tlv.state == 1)
|
||||
|
||||
# Step 20: Leader MUST multicast MLE Data Response to the Link-Local
|
||||
# All Nodes multicast address (FF02::1) with the new information
|
||||
# including the following TLVs:
|
||||
# - Source Address TLV
|
||||
# - Leader Data TLV:
|
||||
# Data Version field incremented
|
||||
# Stable Version field incremented
|
||||
# - Network Data TLV:
|
||||
# - Commissioner Data TLV:
|
||||
# Stable flag set to 0
|
||||
# Border Agent Locator TLV
|
||||
# Commissioner Session ID TLV
|
||||
# Steering Data TLV
|
||||
# - Active Timestamp TLV
|
||||
# - Pending Timestamp TLV
|
||||
_pkt20 = pkts.filter_mle_cmd(MLE_DATA_RESPONSE). \
|
||||
filter_wpan_src64(LEADER). \
|
||||
filter_LLANMA(). \
|
||||
filter(lambda p: {
|
||||
SOURCE_ADDRESS_TLV,
|
||||
LEADER_DATA_TLV,
|
||||
ACTIVE_TIMESTAMP_TLV,
|
||||
PENDING_TIMESTAMP_TLV
|
||||
} <= set(p.mle.tlv.type) and \
|
||||
{
|
||||
NM_COMMISSIONER_SESSION_ID_TLV,
|
||||
NM_BORDER_AGENT_LOCATOR_TLV,
|
||||
NM_STEERING_DATA_TLV
|
||||
} <= set(p.thread_meshcop.tlv.type) and \
|
||||
(p.mle.tlv.leader_data.data_version -
|
||||
_pkt9.mle.tlv.leader_data.data_version) % 256 <= 127 and \
|
||||
(p.mle.tlv.leader_data.stable_data_version -
|
||||
_pkt9.mle.tlv.leader_data.stable_data_version) % 256 <= 127 and \
|
||||
p.thread_nwd.tlv.stable == [0] and \
|
||||
NWD_COMMISSIONING_DATA_TLV in p.thread_nwd.tlv.type
|
||||
). \
|
||||
must_next()
|
||||
|
||||
# Step 21: Router MUST send a unicast MLE Data Request to the Leader, including the
|
||||
# following TLVs:
|
||||
# - TLV Request TLV:
|
||||
# - Network Data TLV
|
||||
# - Active Timestamp TLV
|
||||
pkts.filter_wpan_src64(ROUTER). \
|
||||
filter_wpan_dst64(LEADER). \
|
||||
filter_mle_cmd(MLE_DATA_REQUEST). \
|
||||
filter(lambda p: {
|
||||
TLV_REQUEST_TLV,
|
||||
NETWORK_DATA_TLV,
|
||||
ACTIVE_TIMESTAMP_TLV
|
||||
} <= set(p.mle.tlv.type) and \
|
||||
p.thread_meshcop.tlv.type is nullField
|
||||
). \
|
||||
must_next()
|
||||
|
||||
# Step 22: Leader sends a MLE Data Response to Router including the following TLVs:
|
||||
# - Source Address TLV
|
||||
# - Leader Data TLV
|
||||
# - Network Data TLV
|
||||
# - Commissioner Data TLV:
|
||||
# Stable flag set to 0
|
||||
# Border Agent Locator TLV
|
||||
# Commissioner Session ID TLV
|
||||
# Steering Data TLV
|
||||
# - Active Timestamp TLV
|
||||
# - Pending Timestamp TLV
|
||||
# - Pending Operational Dataset TLV
|
||||
|
||||
pkts.filter_mle_cmd(MLE_DATA_RESPONSE). \
|
||||
filter_wpan_src64(LEADER). \
|
||||
filter_wpan_dst64(ROUTER). \
|
||||
filter(lambda p: {
|
||||
SOURCE_ADDRESS_TLV,
|
||||
LEADER_DATA_TLV,
|
||||
ACTIVE_TIMESTAMP_TLV,
|
||||
PENDING_TIMESTAMP_TLV,
|
||||
PENDING_OPERATION_DATASET_TLV
|
||||
} <= set(p.mle.tlv.type) and \
|
||||
{
|
||||
NM_COMMISSIONER_SESSION_ID_TLV,
|
||||
NM_BORDER_AGENT_LOCATOR_TLV,
|
||||
NM_STEERING_DATA_TLV
|
||||
} <= set(p.thread_meshcop.tlv.type) and \
|
||||
p.thread_nwd.tlv.stable == [0] and \
|
||||
NWD_COMMISSIONING_DATA_TLV in p.thread_nwd.tlv.type and \
|
||||
p.mle.tlv.active_tstamp == COMM_ACTIVE_TIMESTAMP and \
|
||||
p.mle.tlv.pending_tstamp == COMM_PENDING_TIMESTAMP and \
|
||||
p.thread_meshcop.tlv.delay_timer < COMM_DELAY_TIMER and \
|
||||
p.thread_meshcop.tlv.active_tstamp == COMM_PENDING_ACTIVE_TIMESTAMP and \
|
||||
p.thread_meshcop.tlv.channel == [CHANNEL_SECOND] and \
|
||||
p.thread_meshcop.tlv.pan_id == [PANID_INIT]
|
||||
). \
|
||||
must_next()
|
||||
|
||||
# Step 23: Router MUST multicast MLE Data Response to the Link-Local
|
||||
# All Nodes multicast address (FF02::1) with the new information
|
||||
# including the following TLVs:
|
||||
# - Source Address TLV
|
||||
# - Leader Data TLV:
|
||||
# Data version numbers should be
|
||||
# the same as the ones sent in the
|
||||
# multicast data response in step 20
|
||||
# - Network Data TLV:
|
||||
# - Commissioner Data TLV:
|
||||
# Stable flag set to 0
|
||||
# Border Agent Locator TLV
|
||||
# Commissioner Session ID TLV
|
||||
# Steering Data TLV
|
||||
# - Active Timestamp TLV: 15s
|
||||
# - Pending Timestamp TLV: 30s
|
||||
with pkts.save_index():
|
||||
pkts.filter_mle_cmd(MLE_DATA_RESPONSE). \
|
||||
filter_wpan_src64(ROUTER). \
|
||||
filter_LLANMA(). \
|
||||
filter(lambda p: {
|
||||
NM_COMMISSIONER_SESSION_ID_TLV,
|
||||
NM_BORDER_AGENT_LOCATOR_TLV,
|
||||
NM_STEERING_DATA_TLV
|
||||
} <= set(p.thread_meshcop.tlv.type) and \
|
||||
p.mle.tlv.active_tstamp == COMM_ACTIVE_TIMESTAMP and \
|
||||
p.mle.tlv.pending_tstamp == COMM_PENDING_TIMESTAMP and \
|
||||
p.mle.tlv.leader_data.data_version ==
|
||||
_pkt20.mle.tlv.leader_data.data_version and \
|
||||
p.mle.tlv.leader_data.stable_data_version ==
|
||||
_pkt20.mle.tlv.leader_data.stable_data_version and \
|
||||
p.thread_nwd.tlv.stable == [0] and \
|
||||
NWD_COMMISSIONING_DATA_TLV in p.thread_nwd.tlv.type and \
|
||||
NM_COMMISSIONER_SESSION_ID_TLV in p.thread_meshcop.tlv.type and \
|
||||
NM_STEERING_DATA_TLV in p.thread_meshcop.tlv.type and \
|
||||
NM_BORDER_AGENT_LOCATOR_TLV in p.thread_meshcop.tlv.type
|
||||
). \
|
||||
must_next()
|
||||
|
||||
# Step 24: MED MUST send a unicast MLE Data Request to the Router, including the
|
||||
# following TLVs:
|
||||
# - TLV Request TLV:
|
||||
# - Network Data TLV
|
||||
# - Active Timestamp TLV
|
||||
|
||||
# Step 25: Router sends a MLE Data Response to MED including the following TLVs:
|
||||
# - Source Address TLV
|
||||
# - Leader Data TLV
|
||||
# Data version numbers should be
|
||||
# the same as the ones sent in the
|
||||
# multicast data response in step 20
|
||||
# - Network Data TLV
|
||||
# - Commissioner Data TLV:
|
||||
# Stable flag set to 0
|
||||
# Border Agent Locator TLV
|
||||
# Commissioner Session ID TLV
|
||||
# Steering Data TLV
|
||||
# - Active Timestamp TLV
|
||||
# - Pending Timestamp TLV
|
||||
# - Pending Operational Dataset TLV
|
||||
# - Network Name TLV
|
||||
# - Channel TLV
|
||||
# - PAN ID TLV
|
||||
with pkts.save_index():
|
||||
pkts.filter_wpan_src64(MED). \
|
||||
filter_wpan_dst64(ROUTER). \
|
||||
filter_mle_cmd(MLE_DATA_REQUEST). \
|
||||
filter(lambda p: {
|
||||
TLV_REQUEST_TLV,
|
||||
NETWORK_DATA_TLV,
|
||||
ACTIVE_TIMESTAMP_TLV
|
||||
} <= set(p.mle.tlv.type) and \
|
||||
p.thread_meshcop.tlv.type is nullField
|
||||
). \
|
||||
must_next()
|
||||
|
||||
pkts.filter_mle_cmd(MLE_DATA_RESPONSE). \
|
||||
filter_wpan_src64(ROUTER). \
|
||||
filter_wpan_dst64(MED). \
|
||||
filter(lambda p: {
|
||||
SOURCE_ADDRESS_TLV,
|
||||
LEADER_DATA_TLV,
|
||||
ACTIVE_TIMESTAMP_TLV,
|
||||
PENDING_TIMESTAMP_TLV,
|
||||
PENDING_OPERATION_DATASET_TLV
|
||||
} <= set(p.mle.tlv.type) and \
|
||||
{
|
||||
NM_COMMISSIONER_SESSION_ID_TLV,
|
||||
NM_BORDER_AGENT_LOCATOR_TLV,
|
||||
NM_STEERING_DATA_TLV
|
||||
} <= set(p.thread_meshcop.tlv.type) and \
|
||||
p.mle.tlv.leader_data.data_version ==
|
||||
_pkt20.mle.tlv.leader_data.data_version and \
|
||||
p.mle.tlv.leader_data.stable_data_version ==
|
||||
_pkt20.mle.tlv.leader_data.stable_data_version and \
|
||||
p.thread_nwd.tlv.stable == [0]
|
||||
). \
|
||||
must_next()
|
||||
|
||||
# Step 26: Router MUST send MLE Child Update Request or MLE Data Response
|
||||
# to SED, including the following TLVs:
|
||||
# - Source Address TLV
|
||||
# - Leader Data TLV:
|
||||
# Data version numbers should be
|
||||
# the same as the ones sent in the
|
||||
# multicast data response in step 20
|
||||
# - Network Data TLV
|
||||
# - Active Timestamp TLV: 15s
|
||||
# - Pending Timestamp TLV: 30s
|
||||
pkts.filter_wpan_src64(ROUTER). \
|
||||
filter_wpan_dst64(SED). \
|
||||
filter_mle_cmd2(MLE_CHILD_UPDATE_REQUEST, MLE_DATA_RESPONSE). \
|
||||
filter(lambda p: p.mle.tlv.active_tstamp ==
|
||||
COMM_ACTIVE_TIMESTAMP and \
|
||||
p.mle.tlv.pending_tstamp ==
|
||||
COMM_PENDING_TIMESTAMP and \
|
||||
p.mle.tlv.leader_data.data_version ==
|
||||
_pkt20.mle.tlv.leader_data.data_version and \
|
||||
p.mle.tlv.leader_data.stable_data_version ==
|
||||
_pkt20.mle.tlv.leader_data.stable_data_version and \
|
||||
NETWORK_DATA_TLV in p.mle.tlv.type
|
||||
). \
|
||||
must_next()
|
||||
|
||||
# Step 27: SED MUST send a unicast MLE Data Request to the Router, including the
|
||||
# following TLVs:
|
||||
# - TLV Request TLV:
|
||||
# - Network Data TLV
|
||||
# - Active Timestamp TLV
|
||||
pkts.filter_wpan_src64(SED). \
|
||||
filter_wpan_dst64(ROUTER). \
|
||||
filter_mle_cmd(MLE_DATA_REQUEST). \
|
||||
filter(lambda p: {
|
||||
TLV_REQUEST_TLV,
|
||||
NETWORK_DATA_TLV,
|
||||
ACTIVE_TIMESTAMP_TLV
|
||||
} <= set(p.mle.tlv.type) and \
|
||||
p.thread_meshcop.tlv.type is nullField
|
||||
). \
|
||||
must_next()
|
||||
|
||||
# Step 28: Router sends a MLE Data Response to SED including the following TLVs:
|
||||
# - Source Address TLV
|
||||
# - Leader Data TLV
|
||||
# Data version numbers should be
|
||||
# the same as the ones sent in the
|
||||
# multicast data response in step 20
|
||||
# - Network Data TLV
|
||||
# - Active Timestamp TLV: 15s
|
||||
# - Pending Timestamp TLV: 30s
|
||||
# - Pending Operational Dataset TLV
|
||||
# - Network Name TLV
|
||||
# - Channel TLV
|
||||
# - PAN ID TLV
|
||||
pkts.filter_mle_cmd(MLE_DATA_RESPONSE). \
|
||||
filter_wpan_src64(ROUTER). \
|
||||
filter_wpan_dst64(SED). \
|
||||
filter(lambda p: {
|
||||
SOURCE_ADDRESS_TLV,
|
||||
LEADER_DATA_TLV,
|
||||
ACTIVE_TIMESTAMP_TLV,
|
||||
PENDING_TIMESTAMP_TLV,
|
||||
PENDING_OPERATION_DATASET_TLV
|
||||
} <= set(p.mle.tlv.type) and \
|
||||
p.mle.tlv.leader_data.data_version ==
|
||||
_pkt20.mle.tlv.leader_data.data_version and \
|
||||
p.mle.tlv.leader_data.stable_data_version ==
|
||||
_pkt20.mle.tlv.leader_data.stable_data_version and \
|
||||
p.mle.tlv.active_tstamp == COMM_ACTIVE_TIMESTAMP and \
|
||||
p.mle.tlv.pending_tstamp == COMM_PENDING_TIMESTAMP
|
||||
). \
|
||||
must_next()
|
||||
|
||||
# Step 30: The DUT MUST respond with an ICMPv6 Echo Reply
|
||||
for DUT_RLOC in (LEADER_RLOC, ROUTER_RLOC, MED_RLOC, SED_RLOC):
|
||||
_pkt = pkts.filter_ping_request().\
|
||||
filter_ipv6_src_dst(COMMISSIONER_RLOC, DUT_RLOC).\
|
||||
must_next()
|
||||
pkts.filter_ping_reply(identifier=_pkt.icmpv6.echo.identifier).\
|
||||
filter_ipv6_src_dst(DUT_RLOC, COMMISSIONER_RLOC).\
|
||||
must_next()
|
||||
|
||||
|
||||
if __name__ == '__main__':
|
||||
unittest.main()
|
||||
@@ -116,6 +116,7 @@ EXTRA_DIST = \
|
||||
Cert_9_2_03_ActiveDatasetGet.py \
|
||||
Cert_9_2_04_ActiveDataset.py \
|
||||
Cert_9_2_05_ActiveDataset.py \
|
||||
Cert_9_2_06_DatasetDissemination.py \
|
||||
Cert_9_2_07_DelayTimer.py \
|
||||
Cert_9_2_08_PersistentDatasets.py \
|
||||
Cert_9_2_09_PendingPartition.py \
|
||||
@@ -302,6 +303,7 @@ check_SCRIPTS = \
|
||||
Cert_9_2_03_ActiveDatasetGet.py \
|
||||
Cert_9_2_04_ActiveDataset.py \
|
||||
Cert_9_2_05_ActiveDataset.py \
|
||||
Cert_9_2_06_DatasetDissemination.py \
|
||||
Cert_9_2_07_DelayTimer.py \
|
||||
Cert_9_2_08_PersistentDatasets.py \
|
||||
Cert_9_2_09_PendingPartition.py \
|
||||
|
||||
Reference in New Issue
Block a user