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FT-RUFT: A Performance and Fault-Tolerant Efficient Indirect Topology

机译:FT-RUFT:一种性能和容错高效的间接拓扑

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Although performance is a key design issue of interconnection networks, fault-tolerance is becoming more important due to the large amount of components of large machines. In this paper, we focus on designing a simple indirect topology with both good performance and fault-tolerance properties. The idea is to take full advantage of the network resources consumed by the topology. To do that, starting from the RUFT topology, which is a simple UMIN topology that does not tolerate any link fault, we first duplicate injection and ejection links connecting these extra links in a particular way. The resulting topology tolerates 3 network link faults and also slightly increases performance with marginal increase in the network hardware cost. Most important, contrary to most of the available topologies, the topology is able to tolerate also faults in the links that connect to end-nodes. We also propose another topology that also duplicates network links, achieving 2x performance improvements and tolerating up to 7 network link faults. These results are better than the ones obtained by a BMIN with a similar amount of resources.
机译:尽管性能是互连网络的关键设计问题,但是由于大型机器的大量组件,容错能力变得越来越重要。在本文中,我们专注于设计具有良好性能和容错特性的简单间接拓扑。这个想法是要充分利用拓扑消耗的网络资源。为此,从RUFT拓扑开始,RUFT拓扑是一个简单的UMIN拓扑,不容忍任何链路故障,我们首先以特定方式复制连接这些额外链路的注入和弹出链路。最终的拓扑可以容忍3个网络链路故障,并且随着网络硬件成本的少量增加而略微提高了性能。最重要的是,与大多数可用拓扑相反,该拓扑还能够容忍连接到终端节点的链路中的故障。我们还提出了另一种拓扑结构,该拓扑结构也可以复制网络链路,从而使性能提高了2倍,并且最多可以容忍7个网络链路故障。这些结果比具有相似资源量的BMIN获得的结果更好。

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