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Fault-tolerant adaptive routing under an unconstrained set of node and link failures for many-core systems-on-chip

机译:无约束的节点和链路故障集下的多核片上系统的容错自适应路由

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摘要

An online fault tolerant routing algorithm for 2D mesh Networks-on-Chip is presented in this work. It combines an adaptive routing algorithm with neighbor fault-awareness and a new traffic-balancing metric. To be able to cope with runtime permanent and temporary failures that may result in message corruption, message loss or deadlocks, the routing algorithm is enhanced with packet retransmission and a new message recovery scheme. Simulation results, for various network sizes, different traffic patterns, under an unconstrained number of node and link faults, temporary and/or permanent, demonstrate the scalability and efficiency of the proposed algorithm to tolerate multiple failures likely encountered in deep submicron technologies. As the experiments have shown, the proposed algorithm maintains high reliability of more than 97.68% for a 2D mesh network of 16 × 16 and in the presence of 384 simultaneous link faults. For the same network and in the extreme scenario of 103 routers being simultaneously faulty, the obtained reliability is more than 93.40%.
机译:这项工作提出了一种用于二维网状片上网络的在线容错路由算法。它结合了自适应路由算法,邻居故障感知和新的流量平衡指标。为了能够处理可能导致消息损坏,消息丢失或死锁的运行时永久性和临时性故障,路由算法通过数据包重传和新的消息恢复方案得到了增强。针对各种网络规模,不同流量模式,不受限制的临时和/或永久性节点和链路故障,仿真结果证明了所提出算法的可扩展性和效率,可以承受深亚微米技术中可能遇到的多种故障。如实验所示,对于16×16的2D网格网络,在存在384个同时发生的链路故障的情况下,该算法可保持97.68%以上的高可靠性。对于同一网络,在极端情况下同时发生103个路由器故障的情况下,获得的可靠性超过93.40%。

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