/* * Copyright (c) 2026, The OpenThread Authors. * All rights reserved. * * Redistribution and use in source and binary forms, with or without * modification, are permitted provided that the following conditions are met: * 1. Redistributions of source code must retain the above copyright * notice, this list of conditions and the following disclaimer. * 2. Redistributions in binary form must reproduce the above copyright * notice, this list of conditions and the following disclaimer in the * documentation and/or other materials provided with the distribution. * 3. Neither the name of the copyright holder nor the * names of its contributors may be used to endorse or promote products * derived from this software without specific prior written permission. * * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE * ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE * LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE * POSSIBILITY OF SUCH DAMAGE. */ #include #include "platform/nexus_core.hpp" #include "platform/nexus_node.hpp" namespace ot { namespace Nexus { /** * Time to advance for a node to form a network and become leader, in milliseconds. */ static constexpr uint32_t kFormNetworkTime = 10 * 1000; /** * Time to advance for a node to join as a router, in milliseconds. */ static constexpr uint32_t kAttachToRouterTime = 200 * 1000; /** * Time to advance for the network to stabilize, in milliseconds. */ static constexpr uint32_t kStabilizationTime = 10 * 1000; /** * MLR Timeout Minimum value in seconds. */ static constexpr uint32_t kMlrTimeoutMin = 300; /** * MLR Timeout value to use in seconds. */ static constexpr uint32_t kMlrTimeout = kMlrTimeoutMin + 30; /** * Multicast address MA1. */ static const char kMulticastAddr1[] = "ff04::1234:777a:1"; void TestMatnTc23(void) { /** * 5.10.19 MATN-TC-23: Automatic re-registration by Thread Device * * 5.10.19.1 Topology * - BR_1 * - BR_2 * - TD (DUT) * * 5.10.19.2 Purpose & Description * The purpose of this test case is to verify that a Thread Device DUT can re-register its multicast address * before the MLR timeout expires. See also MATN-TC-05 which tests the BBR function in a similar situation. * * Spec Reference | V1.2 Section | V1.3.0 Section * -----------------|--------------|--------------- * Multicast | 5.10.19 | 5.10.19 */ Core nexus; Node &br1 = nexus.CreateNode(); Node &br2 = nexus.CreateNode(); Node &td = nexus.CreateNode(); Ip6::Address ma1; br1.SetName("BR_1"); br2.SetName("BR_2"); td.SetName("TD"); SuccessOrQuit(ma1.FromString(kMulticastAddr1)); nexus.AdvanceTime(0); SuccessOrQuit(Instance::SetGlobalLogLevel(kLogLevelNote)); /** * Step 0 * - Device: N/A * - Description: Topology formation - BR_1, BR_2, TD (DUT) * - Pass Criteria: * - N/A */ Log("Step 0: Topology formation - BR_1, BR_2, TD (DUT)"); AllowLinkBetween(br1, br2); AllowLinkBetween(br1, td); AllowLinkBetween(br2, td); br1.Form(); nexus.AdvanceTime(kFormNetworkTime); VerifyOrQuit(br1.Get().IsLeader()); br1.Get().Init(1, true); br1.Get().Init(); SuccessOrQuit(br1.Get().SetEnabled(true)); br1.Get().SetEnabled(true); br2.Join(br1, Node::kAsFtd); nexus.AdvanceTime(kAttachToRouterTime); VerifyOrQuit(br2.Get().IsRouter()); br2.Get().Init(1, true); br2.Get().Init(); SuccessOrQuit(br2.Get().SetEnabled(true)); br2.Get().SetEnabled(true); td.Join(br1, Node::kAsFtd); nexus.AdvanceTime(kAttachToRouterTime); VerifyOrQuit(td.Get().IsRouter()); nexus.AdvanceTime(kStabilizationTime); VerifyOrQuit(br1.Get().IsPrimary()); VerifyOrQuit(br2.Get().GetState() == BackboneRouter::Local::kStateSecondary); nexus.AddTestVar("MA1", kMulticastAddr1); nexus.AddTestVar("MLR_TIMEOUT", kMlrTimeout); /** * Step 1 * - Device: BR_1 * - Description: Harness instructs the device to configure the value of the MLR timeout in the BBR Dataset of * BR_1 to be (MLR_TIMEOUT_MIN + 30) seconds and distribute the BBR Dataset in network data. Wait until TD * has received the new network data. * - Pass Criteria: * - N/A */ Log("Step 1: BR_1 configures MLR timeout and distributes BBR Dataset."); { BackboneRouter::Config bbrConfig; br1.Get().GetConfig(bbrConfig); bbrConfig.mMlrTimeout = kMlrTimeout; SuccessOrQuit(br1.Get().SetConfig(bbrConfig)); SuccessOrQuit(br1.Get().AddService(BackboneRouter::Local::kForceRegistration)); } nexus.AdvanceTime(kStabilizationTime); /** * Step 2 * - Device: TD (DUT) * - Description: The DUT must be configured to register the multicast address, MA1. This causes the DUT to * automatically send out MLR.req. * - Pass Criteria: * - The DUT MUST unicast an MLR.req CoAP request to BR_1: coap://[]:MM/n/mr * - Where the payload contains one TLV only with at least one address MA1 inside (there may be more * addresses): IPv6 Addresses TLV: the MA1 */ Log("Step 2: TD (DUT) registers multicast address, MA1."); SuccessOrQuit(td.Get().SubscribeExternalMulticast(ma1)); nexus.AdvanceTime(kStabilizationTime); /** * Step 3 * - Device: BR_1 * - Description: Automatically responds with MLR.rsp with status ST_MLR_SUCCESS. * - Pass Criteria: * - N/A */ Log("Step 3: BR_1 responds with MLR.rsp."); // Handled automatically. /** * Step 4 * - Device: TD (DUT) * - Description: Within (MLR_TIMEOUT_MIN + 30) seconds of step 3, the DUT automatically re-registers for * multicast address, MA1. * - Pass Criteria: * - The DUT MUST unicast an MLR.req CoAP request to BR_1: coap://[]:MM/n/mr * - Where the payload contains one TLV only with at least one address MA inside: IPv6 Addresses TLV: the * multicast address MA1 * - The MLR.req CoAP request MUST be sent within (MLR_TIMEOUT_MIN + 30) seconds of step 3 */ Log("Step 4: TD (DUT) automatically re-registers for MA1."); nexus.AdvanceTime(kMlrTimeout * 1000); /** * Step 5 * - Device: BR_1 * - Description: Automatically responds with MLR.rsp and status ST_MLR_SUCCESS. * - Pass Criteria: * - N/A */ Log("Step 5: BR_1 responds with MLR.rsp."); // Handled automatically. nexus.SaveTestInfo("test_1_2_MATN_TC_23.json", &br1); } } // namespace Nexus } // namespace ot int main(void) { ot::Nexus::TestMatnTc23(); printf("All tests passed\n"); return 0; }