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Addressing Transient and Permanent Faults in NoC With Efficient Fault-Tolerant Deflection Router

机译:利用高效的容错偏转路由器解决NoC中的暂时性和永久性故障

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Continuing decrease in the feature size of integrated circuits leads to increases in susceptibility to transient and permanent faults. This paper proposes a fault-tolerant solution for a bufferless network-on-chip, including an on-line fault-diagnosis mechanism to detect both transient and permanent faults, a hybrid automatic repeat request, and forward error correction link-level error control scheme to handle transient faults and a reinforcement-learning-based fault-tolerant deflection routing (FTDR) algorithm to tolerate permanent faults without deadlock and livelock. A hierarchical-routing-table-based algorithm (FTDR-H) is also presented to reduce the area overhead of the FTDR router. Synthesized results show that, compared with the FTDR router, the FTDR-H router can reduce the area by 27% in an 8$,times,$8 network. Simulation results demonstrate that under synthetic workloads, in the presence of permanent link faults, the throughput of an 8 $,times,$8 network with FTDR and FTDR-H algorithms are 14% and 23% higher on average than that with the fault-on-neighbor (FoN) aware deflection routing algorithm and the cost-based deflection routing algorithm, respectively. Under real application workloads, the FTDR-H algorithm achieves 20% less hop counts on average than that of the FoN algorithm. For transient faults, the performance of the FTDR router can achieve graceful degradation even at a high fault rate. We also implement the fault-tolerant deflection router which can achieve 400 MHz in TSMC 65-nm technology.
机译:集成电路的特征尺寸的持续减小导致对瞬态和永久故障的敏感性增加。本文提出了一种无缓冲片上网络的容错解决方案,包括在线故障诊断机制以检测瞬时和永久性故障,混合自动重发请求以及前向纠错链路级错误控制方案。处理瞬态故障,以及基于增强学习的容错偏转路由(FTDR)算法来容忍永久性故障,而无死锁和活锁。还提出了一种基于分层路由表的算法(FTDR-H),以减少FTDR路由器的区域开销。综合结果表明,与FTDR路由器相比,FTDR-H路由器在8 $,times,$ 8网络。仿真结果表明,在合成工作负载下,如果存在永久性链路故障,则8 $,times,$ 的吞吐量使用FTDR和FTDR-H算法的8个网络的平均网络分别比使用基于邻居故障(FoN)的偏转路由算法和基于成本的偏转路由算法分别高14%和23%。在实际应用程序工作负载下,FTDR-H算法的跳数平均比FoN算法少20%。对于瞬态故障,即使故障率很高,FTDR路由器的性能也可以正常降低。我们还实现了可在台积电65纳米技术中达到400 MHz的容错偏转路由器。

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