Files
openthread/tests/nexus/test_reed_address_solicit_rejected.cpp
Abtin Keshavarzian 7874555efb [mle] separate router and leader upgrade thresholds (#13227)
This commit separates the single `ROUTER_UPGRADE_THRESHOLD` into two
distinct concepts: a local threshold for role transitions (used by a
REED deciding when to upgrade) and a leader threshold (used by the
Leader deciding whether to accept a router upgrade request).

This prepares for adding support for a new Router Config feature,
where the local threshold can be changed while the threshold used
when the device acts as a leader must remain the spec-defined value.

To preserve backward compatibility with existing tests and tools,
`otThreadSetRouterUpgradeThreshold` continues to set both thresholds
simultaneously.

Several Nexus test scenarios have been updated to explicitly set
the new leader threshold alongside the local router threshold.
2026-06-22 17:32:35 -07:00

137 lines
4.9 KiB
C++

/*
* Copyright (c) 2026, The OpenThread Authors.
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*
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* names of its contributors may be used to endorse or promote products
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*
* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
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*/
#include <stdarg.h>
#include <stdio.h>
#include <string.h>
#include "platform/nexus_core.hpp"
#include "platform/nexus_node.hpp"
namespace ot {
namespace Nexus {
void TestReedAddressSolicitRejected(void)
{
Core nexus;
Node &leader = nexus.CreateNode();
Node &reed = nexus.CreateNode();
leader.SetName("Leader");
reed.SetName("REED");
nexus.AdvanceTime(0);
// Leader sets RouterUpgradeThreshold to 1 to reject further routers
leader.Get<Mle::Mle>().SetRouterUpgradeThreshold(1);
leader.Get<Mle::Mle>().SetLeaderUpgradeThreshold(1);
Log("Step 1: Form network and join REED");
AllowLinkBetween(leader, reed);
leader.Form();
nexus.AdvanceTime(13 * 1000);
VerifyOrQuit(leader.Get<Mle::Mle>().IsLeader());
reed.Join(leader);
nexus.AdvanceTime(10 * 1000);
VerifyOrQuit(reed.Get<Mle::Mle>().IsChild());
Log("Step 2: REED adds a service and registers it");
{
uint32_t enterpriseNumber = 123;
NetworkData::ServiceData serviceData;
NetworkData::ServerData serverData;
uint8_t serviceDataBytes[] = {0x12, 0x34};
uint8_t serverDataBytes[] = {0xab, 0xcd};
serviceData.Init(serviceDataBytes, sizeof(serviceDataBytes));
serverData.Init(serverDataBytes, sizeof(serverDataBytes));
SuccessOrQuit(reed.Get<NetworkData::Local>().AddService(enterpriseNumber, serviceData, true, serverData));
reed.Get<NetworkData::Notifier>().HandleServerDataUpdated();
}
// REED sends a Server Data Notification to the leader, the leader
// updates its network data and broadcasts the update to the
// network. We advance time enough to ensure all these steps are
// completed.
nexus.AdvanceTime(15 * 1000);
Log("Step 3: Verify REED has the Service ALOC");
{
bool hasAloc = false;
for (const Ip6::Netif::UnicastAddress &addr : reed.Get<ThreadNetif>().GetUnicastAddresses())
{
if (addr.GetAddress().GetIid().IsAnycastServiceLocator() &&
(addr.GetAddress().GetIid().GetLocator() == 0xfc10))
{
hasAloc = true;
break;
}
}
VerifyOrQuit(hasAloc, "REED should have the Service ALOC");
}
Log("Step 4: Force REED to try to become a router");
reed.Get<Mle::Mle>().SetRouterUpgradeThreshold(16);
reed.Get<Mle::Mle>().SetRouterSelectionJitter(120);
// We advance time enough to cover jitter and router upgrade attempt.
nexus.AdvanceTime(130 * 1000);
Log("Step 5: Verify REED remains a child and still has the Service ALOC");
VerifyOrQuit(reed.Get<Mle::Mle>().IsChild(), "REED should remain a child");
{
bool hasAloc = false;
for (const Ip6::Netif::UnicastAddress &addr : reed.Get<ThreadNetif>().GetUnicastAddresses())
{
if (addr.GetAddress().GetIid().IsAnycastServiceLocator() &&
(addr.GetAddress().GetIid().GetLocator() == 0xfc10))
{
hasAloc = true;
break;
}
}
VerifyOrQuit(hasAloc, "REED should still have the Service ALOC");
}
nexus.SaveTestInfo("test_reed_address_solicit_rejected.json");
}
} // namespace Nexus
} // namespace ot
int main(void)
{
ot::Nexus::TestReedAddressSolicitRejected();
printf("All tests passed\n");
return 0;
}