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This commit renames all nexus test files and updates corresponding configuration and source files to include a '1_1_' prefix. The '1_1' prefix represents the Thread 1.1 test plan. This change prepares the nexus test suite for the addition of tests from the Thread 1.2, 1.3, and 1.4 test plans, ensuring a clear and organized structure for multi-version specification testing. Changes include: - Renaming test_<num>.cpp to test_1_1_<num>.cpp. - Renaming verify_<num>.py to verify_1_1_<num>.py. - Updating CMakeLists.txt to reflect new test names. - Updating run_nexus_tests.sh for default tests and variants. - Updating hardcoded JSON output filenames in C++ test sources. - Updating testcase name identification in Python verification scripts.
205 lines
7.7 KiB
Python
205 lines
7.7 KiB
Python
#!/usr/bin/env python3
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#
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# Copyright (c) 2026, 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 sys
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import os
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# Add the current directory to sys.path to find verify_utils
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CUR_DIR = os.path.dirname(os.path.abspath(__file__))
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sys.path.append(CUR_DIR)
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import verify_utils
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from pktverify import consts, errors
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def verify(pv):
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# 5.2.1 REED Attach
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#
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# 5.2.1.1 Topology
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# - Leader
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# - Router_1 (DUT)
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# - REED_1
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# - MED_1
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#
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# 5.2.1.2 Purpose & Description
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# The purpose of this test case is to show that the DUT is able to attach a REED and forward address solicits
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# two hops away from the Leader.
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#
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# Spec Reference | V1.1 Section | V1.3.0 Section
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# ---------------------------------------------|-----------------|---------------
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# Attaching to a Parent / Router ID Assignment | 4.7.1 / 5.9.10 | 4.5.1 / 5.9.10
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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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LEADER_RLOC16 = pv.vars['LEADER_RLOC16']
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DUT = pv.vars['DUT']
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DUT_RLOC16 = pv.vars['DUT_RLOC16']
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REED_1 = pv.vars['REED_1']
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MED_1 = pv.vars['MED_1']
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# Step 1: Router_1 (DUT)
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# - Description: Attach to Leader and sends properly formatted MLE advertisements.
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# - Pass Criteria:
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# - The DUT MUST send properly formatted MLE Advertisements.
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# - MLE Advertisements MUST be sent with an IP Hop Limit of 255 to the Link-Local All Nodes multicast address
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# (FF02::1).
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# - The following TLVs MUST be present in MLE Advertisements:
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# - Source Address TLV
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# - Leader Data TLV
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# - Route64 TLV
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print("Step 1: Router_1 (DUT)")
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pkts.filter_wpan_src64(DUT).\
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filter_LLANMA().\
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filter_mle_cmd(consts.MLE_ADVERTISEMENT).\
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filter(lambda p: {
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consts.SOURCE_ADDRESS_TLV,
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consts.LEADER_DATA_TLV,
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consts.ROUTE64_TLV
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} <= set(p.mle.tlv.type) and\
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p.ipv6.hlim == 255).\
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must_next()
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# Step 2: REED_1
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# - Description: Attach REED_1 to DUT; REED_1 automatically sends MLE Parent Request.
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# - Pass Criteria: N/A
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print("Step 2: REED_1")
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pkts.filter_wpan_src64(REED_1).\
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filter_LLARMA().\
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filter_mle_cmd(consts.MLE_PARENT_REQUEST).\
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must_next()
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# Step 3: Router_1 (DUT)
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# - Description: Automatically sends an MLE Parent Response.
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# - Pass Criteria:
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# - The DUT MUST respond with a MLE Parent Response.
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# - The following TLVs MUST be present in the MLE Parent Response:
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# - Challenge TLV
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# - Connectivity TLV
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# - Leader Data TLV
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# - Link-layer Frame Counter TLV
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# - Link Margin TLV
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# - Response TLV
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# - Source Address TLV
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# - Version TLV
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# - MLE Frame Counter TLV (optional)
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print("Step 3: Router_1 (DUT)")
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pkts.filter_wpan_src64(DUT).\
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filter_wpan_dst64(REED_1).\
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filter_mle_cmd(consts.MLE_PARENT_RESPONSE).\
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filter(lambda p: {
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consts.CHALLENGE_TLV,
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consts.CONNECTIVITY_TLV,
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consts.LEADER_DATA_TLV,
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consts.LINK_LAYER_FRAME_COUNTER_TLV,
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consts.LINK_MARGIN_TLV,
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consts.RESPONSE_TLV,
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consts.SOURCE_ADDRESS_TLV,
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consts.VERSION_TLV
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} <= set(p.mle.tlv.type)).\
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must_next()
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# Step 4: Router_1 (DUT)
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# - Description: Automatically sends an MLE Child ID Response.
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# - Pass Criteria:
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# - The DUT MUST send a MLE Child ID Response.
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# - The following TLVs MUST be present in the Child ID Response:
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# - Address16 TLV
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# - Leader Data TLV
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# - Network Data TLV
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# - Source Address TLV
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# - Route64 TLV (optional)
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print("Step 4: Router_1 (DUT)")
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pkts.filter_wpan_src64(DUT).\
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filter_wpan_dst64(REED_1).\
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filter_mle_cmd(consts.MLE_CHILD_ID_RESPONSE).\
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filter(lambda p: {
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consts.ADDRESS16_TLV,
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consts.LEADER_DATA_TLV,
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consts.NETWORK_DATA_TLV,
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consts.SOURCE_ADDRESS_TLV
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} <= set(p.mle.tlv.type)).\
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must_next()
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# Step 6, 7 & 8: MED_1 join and REED_1 upgrade/forwarding
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# - Description: MED_1 joins REED_1 (Step 6) and REED_1 upgrades to a router (Step 7/8).
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# - Pass Criteria: Both events must occur, but Step 6 may happen before or after Step 7/8.
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print("Step 6, 7 & 8: MED_1 join and REED_1 upgrade/forwarding")
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# Find Step 6 (MED_1 Parent Request) without advancing main index yet.
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pkts6 = pkts.copy()
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pkts6.filter_wpan_src64(MED_1).\
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filter_mle_cmd(consts.MLE_PARENT_REQUEST).\
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must_next()
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idx6 = pkts6.index
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# Find Step 7 (Address Solicit) and Step 8 (Forwarding) sequence.
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pkts78 = pkts.copy()
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_pkt_sol = pkts78.filter_wpan_src64(REED_1).\
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filter_wpan_dst16(DUT_RLOC16).\
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filter_coap_request(consts.ADDR_SOL_URI).\
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must_next()
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pkts78.filter_wpan_src16(DUT_RLOC16).\
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filter_wpan_dst16(LEADER_RLOC16).\
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filter_coap_request(consts.ADDR_SOL_URI).\
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must_next()
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pkts78.filter_wpan_src16(LEADER_RLOC16).\
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filter_wpan_dst16(DUT_RLOC16).\
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filter_coap_ack(consts.ADDR_SOL_URI).\
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must_next()
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pkts78.filter_wpan_src16(DUT_RLOC16).\
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filter_wpan_dst16(_pkt_sol.wpan.src16).\
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filter_coap_ack(consts.ADDR_SOL_URI).\
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must_next()
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idx78 = pkts78.index
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# Advance main pkts index to the end of all these events.
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pkts.index = (max(idx6[0], idx78[0]), max(idx6[1], idx78[1]))
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# Step 9: Leader
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# - Description: Harness verifies connectivity by instructing the device to send an ICMPv6 Echo Request to REED_1.
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# - Pass Criteria:
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# - REED_1 responds with ICMPv6 Echo Reply.
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print("Step 9: Leader")
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_pkt_ping = pkts.filter_ping_request().\
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filter_wpan_src64(LEADER).\
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must_next()
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pkts.filter_ping_reply(identifier=_pkt_ping.icmpv6.echo.identifier).\
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filter_wpan_src64(REED_1).\
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must_next()
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if __name__ == '__main__':
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verify_utils.run_main(verify)
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