diff --git a/tests/scripts/thread-cert/Cert_5_1_11_REEDAttachLinkQuality.py b/tests/scripts/thread-cert/Cert_5_1_11_REEDAttachLinkQuality.py index 668dfcc75..e016596f3 100755 --- a/tests/scripts/thread-cert/Cert_5_1_11_REEDAttachLinkQuality.py +++ b/tests/scripts/thread-cert/Cert_5_1_11_REEDAttachLinkQuality.py @@ -31,33 +31,60 @@ import unittest import mle import thread_cert +from pktverify.consts import MLE_ADVERTISEMENT, MLE_PARENT_REQUEST, MLE_PARENT_RESPONSE, MLE_CHILD_ID_REQUEST, SOURCE_ADDRESS_TLV, MODE_TLV, TIMEOUT_TLV, CHALLENGE_TLV, RESPONSE_TLV, LINK_LAYER_FRAME_COUNTER_TLV, ADDRESS16_TLV, LEADER_DATA_TLV, NETWORK_DATA_TLV, TLV_REQUEST_TLV, SCAN_MASK_TLV, CONNECTIVITY_TLV, LINK_MARGIN_TLV, VERSION_TLV, ADDRESS_REGISTRATION_TLV +from pktverify.packet_verifier import PacketVerifier +from pktverify.null_field import nullField LEADER = 1 REED = 2 ROUTER2 = 3 ROUTER1 = 4 +# Test Purpose and Description: +# ----------------------------- +# The purpose of this test case is to validate that DUT will +# attach to a REED with the highest link quality, when routers +# with the highest link quality are not available. +# +# Test Topology: +# ------------- +# Leader +# / \ +# Router2 REED1 +# \ /(better link_quality) +# Router1[DUT] +# +# DUT Types: +# ---------- +# Router + class Cert_5_1_11_REEDAttachLinkQuality(thread_cert.TestCase): + USE_MESSAGE_FACTORY = False + TOPOLOGY = { LEADER: { + 'name': 'LEADER', 'mode': 'rdn', 'panid': 0xface, 'allowlist': [REED, ROUTER2] }, REED: { + 'name': 'REED_1', 'mode': 'rdn', 'panid': 0xface, 'router_upgrade_threshold': 0, 'allowlist': [LEADER, ROUTER1] }, ROUTER2: { + 'name': 'ROUTER_2', 'mode': 'rdn', 'panid': 0xface, 'router_selection_jitter': 1, 'allowlist': [LEADER, (ROUTER1, -85)] }, ROUTER1: { + 'name': 'ROUTER_1', 'mode': 'rdn', 'panid': 0xface, 'router_selection_jitter': 1, @@ -83,77 +110,108 @@ class Cert_5_1_11_REEDAttachLinkQuality(thread_cert.TestCase): self.assertEqual(self.nodes[ROUTER1].get_state(), 'router') self.assertEqual(self.nodes[REED].get_state(), 'router') - leader_messages = self.simulator.get_messages_sent_by(LEADER) - reed_messages = self.simulator.get_messages_sent_by(REED) - router1_messages = self.simulator.get_messages_sent_by(ROUTER1) - router2_messages = self.simulator.get_messages_sent_by(ROUTER2) + def verify(self, pv): + pkts = pv.pkts + pv.summary.show() - # 1 - Leader. REED1, Router2 - leader_messages.next_mle_message(mle.CommandType.ADVERTISEMENT) + LEADER = pv.vars['LEADER'] + REED_1 = pv.vars['REED_1'] + ROUTER_1 = pv.vars['ROUTER_1'] + ROUTER_2 = pv.vars['ROUTER_2'] - reed_messages.next_mle_message(mle.CommandType.PARENT_REQUEST) - leader_messages.next_mle_message(mle.CommandType.PARENT_RESPONSE) + # Step 1: Verify ROUTER_2 and Leader are sending MLE advertisements. + pkts.filter_wpan_src64(LEADER).\ + filter_mle_cmd(MLE_ADVERTISEMENT).\ + must_next() + pv.verify_attached('ROUTER_2') - reed_messages.next_mle_message(mle.CommandType.CHILD_ID_REQUEST) - leader_messages.next_mle_message(mle.CommandType.CHILD_ID_RESPONSE) + # Step 3: The DUT sends a MLE Parent Request with an IP hop limit of + # 255 to the Link-Local All Routers multicast address (FF02::2). + # The following TLVs MUST be present in the MLE Parent Request: + # - Challenge TLV + # - Mode TLV + # - Scan Mask TLV + # If the DUT sends multiple MLE Parent Requests + # - The first one MUST be sent only to all Routers + # - Subsequent ones MAY be sent to all Routers and REEDS + # - Version TLV + # If the first MLE Parent Request was sent to all Routers and + # REEDS, the test fails. - router2_messages.next_mle_message(mle.CommandType.PARENT_REQUEST) - leader_messages.next_mle_message(mle.CommandType.PARENT_RESPONSE) + pkts.filter_wpan_src64(ROUTER_1).\ + filter_LLARMA().\ + filter_mle_cmd(MLE_PARENT_REQUEST).\ + filter(lambda p: { + CHALLENGE_TLV, + MODE_TLV, + SCAN_MASK_TLV, + VERSION_TLV + } <= set(p.mle.tlv.type) and\ + p.ipv6.hlim == 255 and\ + p.mle.tlv.scan_mask.r == 1 and\ + p.mle.tlv.scan_mask.e == 0 + ).\ + must_next() - router2_messages.next_mle_message(mle.CommandType.CHILD_ID_REQUEST) - leader_messages.next_mle_message(mle.CommandType.CHILD_ID_RESPONSE) + # Step 5: The DUT MUST send a MLE Parent Request with an IP hop limit of + # 255 to the Link-Local All Routers multicast address (FF02::2). + # The following TLVs MUST be present in the MLE Parent Request: + # - Challenge TLV + # - Mode TLV + # - Scan Mask TLV + # - The Scan Mask TLV MUST be sent to Routers And REEDs + # - Version TLV + # - msg = router2_messages.next_coap_message("0.02") - msg.assertCoapMessageRequestUriPath("/a/as") + pkts.filter_wpan_src64(ROUTER_1).\ + filter_LLARMA().\ + filter_mle_cmd(MLE_PARENT_REQUEST).\ + filter(lambda p: { + CHALLENGE_TLV, + MODE_TLV, + SCAN_MASK_TLV, + VERSION_TLV + } <= set(p.mle.tlv.type) and\ + p.ipv6.hlim == 255 and\ + p.mle.tlv.scan_mask.r == 1 and\ + p.mle.tlv.scan_mask.e == 1 + ).\ + must_next() - msg = leader_messages.next_coap_message("2.04") + # Step 6: The DUT MUST initiate the attach process with REED_1 by + # sending an MLE Child ID Request; if not, the test fails. + # The following TLVs MUST be present in the MLE Child ID Request: + # - Link-layer Frame Counter TLV + # - Mode TLV + # - Response TLV + # - Timeout TLV + # - TLV Request TLV + # - Address16 TLV + # - Network Data TLV + # - Route64 TLV (optional) + # - Version TLV + # - MLE Frame Counter TLV (optional) + # The following TLV MUST NOT be present in the MLE Child ID Request: + # - Address Registration TLV - router2_messages.next_mle_message(mle.CommandType.ADVERTISEMENT) - - # 3 - Router1 - msg = router1_messages.next_mle_message(mle.CommandType.PARENT_REQUEST) - msg.assertSentWithHopLimit(255) - msg.assertSentToDestinationAddress("ff02::2") - msg.assertMleMessageContainsTlv(mle.Mode) - msg.assertMleMessageContainsTlv(mle.Challenge) - msg.assertMleMessageContainsTlv(mle.ScanMask) - msg.assertMleMessageContainsTlv(mle.Version) - - scan_mask_tlv = msg.get_mle_message_tlv(mle.ScanMask) - self.assertEqual(1, scan_mask_tlv.router) - self.assertEqual(0, scan_mask_tlv.end_device) - - # 4 - Router2 - msg = router2_messages.next_mle_message(mle.CommandType.PARENT_RESPONSE) - msg.assertSentToNode(self.nodes[ROUTER1]) - - # 5 - Router1 - msg = router1_messages.next_mle_message(mle.CommandType.PARENT_REQUEST) - msg.assertSentWithHopLimit(255) - msg.assertSentToDestinationAddress("ff02::2") - msg.assertMleMessageContainsTlv(mle.Mode) - msg.assertMleMessageContainsTlv(mle.Challenge) - msg.assertMleMessageContainsTlv(mle.ScanMask) - msg.assertMleMessageContainsTlv(mle.Version) - - scan_mask_tlv = msg.get_mle_message_tlv(mle.ScanMask) - self.assertEqual(1, scan_mask_tlv.router) - self.assertEqual(1, scan_mask_tlv.end_device) - - # 6 - Router1 - msg = router1_messages.next_mle_message(mle.CommandType.CHILD_ID_REQUEST) - msg.assertMleMessageContainsTlv(mle.LinkLayerFrameCounter) - msg.assertMleMessageContainsTlv(mle.Mode) - msg.assertMleMessageContainsTlv(mle.Response) - msg.assertMleMessageContainsTlv(mle.Timeout) - msg.assertMleMessageContainsTlv(mle.TlvRequest) - msg.assertMleMessageContainsTlv(mle.Version) - msg.assertMleMessageContainsOptionalTlv(mle.MleFrameCounter) - msg.assertMleMessageDoesNotContainTlv(mle.AddressRegistration) - msg.assertSentToNode(self.nodes[REED]) - - msg = reed_messages.next_mle_message(mle.CommandType.CHILD_ID_RESPONSE) - msg.assertSentToNode(self.nodes[ROUTER1]) + _pkt = pkts.filter_wpan_src64(ROUTER_1).\ + filter_wpan_dst64(REED_1).\ + filter_mle_cmd(MLE_CHILD_ID_REQUEST).\ + filter(lambda p: { + LINK_LAYER_FRAME_COUNTER_TLV, + MODE_TLV, + RESPONSE_TLV, + TIMEOUT_TLV, + TLV_REQUEST_TLV, + ADDRESS16_TLV, + NETWORK_DATA_TLV, + VERSION_TLV + } <= set(p.mle.tlv.type) and\ + p.mle.tlv.addr16 is nullField and\ + p.thread_nwd.tlv.type is nullField + ).\ + must_next() + _pkt.must_not_verify(lambda p: (ADDRESS_REGISTRATION_TLV) in p.mle.tlv.type) if __name__ == '__main__':