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Fault-Tolerant Topology Generation Method for Application-Specific Network-on-Chips

机译:专用芯片网络的容错拓扑生成方法

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摘要

As the technology sizes of integrated circuits (ICs) scale down rapidly, current transistor densities on chips dramatically increase. While nanometer feature sizes allow denser chip designs in each technology generation, fabricated ICs become more susceptible to wear-outs, causing operation failure. Even a single link failure within an on-chip fabric can halt communication between application blocks, which makes the entire chip useless. In this paper, we aim to make faulty chips designed with network-on-chip (NoC) communication usable. Specifically, we present fault-tolerant irregular topology-generation method for application-specific NoC designs. Designed NoC topology allows different routing path if there is a link failure on the default routing path. Additionally, we present a simulated annealing-based application mapping algorithm aiming to minimize total energy consumption of the NoC design. We compare fault-tolerant topologies with nonfault-tolerant application-specific irregular topologies on energy consumption, performance, and area using multimedia benchmarks and custom-generated graphs. Our results demonstrate that our method is able to determine fault-tolerant topologies with negligible area increase and better energy values. © 1982-2012 IEEE.
机译:随着集成电路(IC)的技术规模迅速缩小,芯片上的电流晶体管密度急剧增加。尽管纳米特征尺寸允许在每一代技术中进行更密集的芯片设计,但制造的IC变得更容易磨损,从而导致操作失败。即使片上结构中的单个链路故障也可能会中断应用程序块之间的通信,这会使整个芯片变得无用。在本文中,我们旨在使通过片上网络(NoC)通信设计的故障芯片可用。具体来说,我们针对特定的NoC设计提出了容错的不规则拓扑生成方法。如果默认路由路径上存在链路故障,则设计的NoC拓扑允许使用不同的路由路径。此外,我们提出了一种基于模拟退火的应用映射算法,旨在最大程度地降低NoC设计的总能耗。我们使用多媒体基准和自定义生成的图形,将能耗,性能和面积方面的容错拓扑与非容错特定于应用程序的不规则拓扑进行比较。我们的结果表明,我们的方法能够确定面积增加可忽略不计且能量值更高的容错拓扑。 ©1982-2012 IEEE。

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