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A resilient on-chip router design through data path salvaging

机译:通过挽救数据路径的弹性片上路由器设计

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Very large scale integrated circuits typically employ Network-on-Chip (NoC) as the backbone for on-chip communication. As technology advances into the nanometer regime, NoCs become more and more susceptible to permanent faults such as manufacturing defects, device wear-out, which hinder the correct operations of the entire system. Therefore, effective fault-tolerant techniques are essential to improve the reliability of NoCs. Prior work mainly focuses on introducing redundancies, which can't achieve satisfactory reliability and also involve large hardware overhead, especially for data path components. In this paper, we propose fine-grained data path salvaging techniques by splitting data path components, i.e., links, input buffers and crossbar into slices, instead of introducing redundancies. As long as there is one fault-free slice for each component, the router can be functional. Experimental results show that the proposed solution achieves quite high reliability with graceful performance degradation even under high fault rate.
机译:超大规模集成电路通常采用片上网络(NoC)作为片上通信的主干。随着技术进入纳米技术领域,NoC越来越容易受到永久性故障(例如制造缺陷,设备磨损)的影响,这些故障会妨碍整个系统的正常运行。因此,有效的容错技术对于提高NoC的可靠性至关重要。先前的工作主要集中在引入冗余上,这些冗余不能实现令人满意的可靠性,并且还涉及大量的硬件开销,尤其是对于数据路径组件。在本文中,我们通过将数据路径组件(即链接,输入缓冲区和交叉开关)拆分为多个切片而不是引入冗余来提出细粒度的数据路径抢救技术。只要每个组件都有一个无故障片,路由器就可以正常工作。实验结果表明,所提出的解决方案即使在高故障率下,也具有相当高的可靠性,并且性能下降。

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