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Fault-Tolerant Routing for Irregular-Topology-Based Network-on-Chips

机译:基于不规则拓扑的片上网络的容错路由

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The designers favor irregular topologies for Network-on-Chip (NoC) architectures due to their lower energy consumptions, lower latencies, and higher throughputs than their regular counterparts. However irregular topologies generally allow only a single path between two communicating nodes. A permanent link failure in the fabrication process may make the entire chip useless because there is no alternative routing option for the transmitted data. In this study, we present a fault-tolerant routing generation algorithm that determines several alternative routing options for irregular-topology-based NoC, which has at least two alternative paths between all of its router pairs. The routing alternatives apply the shortest path routing to minimize the latency and energy consumption and they are stored in routing tables. While the designed NoC with no link failure uses the default optimized routing, we power up the corresponding routing table by external pins of the chip in case of a link failure. The objective of our algorithm is to minimize the number of routing options and to minimize the energy consumption of the alternative routings. Experiments on MP3 Encoder benchmark application show that our method determines routing options covering all single link failure with tolerable area, latency, and energy increase.
机译:设计人员倾向于使用片上网络(NoC)体系结构的不规则拓扑结构,因为它们比常规结构具有更低的能耗,更低的延迟和更高的吞吐量。但是,不规则拓扑通常只允许两个通信节点之间的一条路径。制造过程中的永久性链接故障可能会使整个芯片变得无用,因为没有替代的路由选项可用于传输数据。在这项研究中,我们提出了一种容错路由生成算法,该算法确定了基于不规则拓扑的NoC的几种替代路由选项,该NoC在其所有路由器对之间至少具有两条替代路径。路由选择采用最短路径路由以最大程度地减少等待时间和能耗,它们存储在路由表中。尽管设计的无链接故障NoC使用默认的优化路由,但如果发生链接故障,我们将通过芯片的外部引脚为相应的路由表供电。我们算法的目的是最大程度地减少路由选择的数量,并最大程度地减少替代路由的能耗。在MP3编码器基准测试应用程序上进行的实验表明,我们的方法确定的路由选项涵盖了所有单链路故障,并具有可容忍的面积,延迟和能量增加。

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