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Routing and Fault Tolerance in Z-Fat Tree

机译:Z胖树中的路由和容错

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Fat tree topologies have been extensively used as interconnection networks for high performance computing, cluster and data center systems, with their most recent variants able to fairly extend and scale to accommodate higher processing power. While each progressive and evolved fat-tree topology includes some extra advancements, these networks do not fully address all the issues of large scale HPC. We propose a topology called Zoned-Fat tree ( Z-Fat tree,) which is a further extension to the fat trees. The extension relates to the provision of extra degree of connectivity to utilize the extra ports per switches (routing nodes), that are, in some cases, not utilized by the architectural constraints of other variants of fat trees, and hence increases the bisection bandwidth, reduces the latency and supplies additional paths for fault tolerance. To support and profit from the extra links, we propose an adaptive low latency routing for up traffic which is based on a series of leading direction bits predefined at the source; furthermore we suggest a deterministic routing by implementing a dynamic round robin algorithm that overtakes D-mod-K in same cases and guarantees the utilization of all the extra links. We also propose a fault tolerance algorithm, named recoil-and-reroute which makes use of the extra links to ensure higher message delivery even in the presence of faulty links and switches.
机译:胖树拓扑已被广泛用作高性能计算,群集和数据中心系统的互连网络,它们的最新变体能够合理扩展和扩展以适应更高的处理能力。尽管每个渐进和演化的胖树拓扑都包含一些额外的进步,但是这些网络并不能完全解决大规模HPC的所有问题。我们提出了一种称为“区域脂肪树”(Z-Fat tree)的拓扑,这是对脂肪树的进一步扩展。扩展涉及提供额外程度的连通性,以利用每个交换机(路由节点)的额外端口,在某些情况下,胖树的其他变体的体系结构约束未使用这些额外端口,因此增加了对分带宽,减少等待时间,并提供更多的容错路径。为了支持额外的链路并从中获利,我们提出了一种针对上行流量的自适应低延迟路由,该路由基于在源处预定义的一系列前导比特;此外,我们建议通过实施动态轮循算法来确定性路由,该算法在相同情况下会超过D-mod-K并保证所有额外链接的利用率。我们还提出了一种容错算法,称为反冲和重新路由,该算法利用额外的链接来确保即使在存在错误的链接和交换机的情况下也可以确保更高的消息传递。

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