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Efficient Recovery from False State in Distributed Routing Algorithms

机译:从分布式路由算法中的假状态高效恢复

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Malicious and misconfigured nodes can inject incorrect state into a distributed system, which can then be propagated system-wide as a result of normal network operation. Such false state can degrade the performance of a distributed system or render it unusable. For example, in the case of network routing algorithms, false state corresponding to a node incorrectly declaring a cost of 0 to all destinations (maliciously or due to misconfiguration) can quickly spread through the network. This causes other nodes to (incorrectly) route via the misconfigured node, resulting in suboptimal routing and network congestion. We propose three algorithms for efficient recovery in such scenarios and prove the correctness of each of these algorithms. Through simulation, we evaluate our algorithms - in terms of message and time overhead - when applied to removing false state in distance vector routing. Our analysis shows that over topologies where link costs remain fixed and for the same topologies where link costs change, a recovery algorithm based on system-wide checkpoints and a rollback mechanism yields superior performance when using the poison reverse optimization.
机译:恶意和错误配置的节点可以将不正确的状态注入分布式系统,然后可以由于正常的网络操作而被系统宽传播。这种虚假状态可以降低分布式系统的性能,或者使其无法使用。例如,在网络路由算法的情况下,对应于不正确的节点对应于所有目的地的节点(恶意或误解)的节点相对应的错误状态可以快速传播到所有目的地。这使得其他节点(错误地)通过错误配置的节点(不正确)路由,从而导致次优路由和网络拥塞。我们提出了三种算法,以便在这种情况下有效恢复,并证明每个算法的正确性。通过仿真,我们在消息和时间开销方面评估我们的算法 - 应用于删除距离矢量路由中的假状态。我们的分析表明,通过链路成本保持固定的拓扑,并且对于链路成本变化的相同拓扑,基于系统范围的检查点和回滚机制的恢复算法产生了卓越的性能。

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