HPC Job Mapping over Reconfigurable Wireless Links

Yao Hu, I. Fujiwara, M. Koibuchi
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引用次数: 7

Abstract

Wireless supercomputers and datacenters with 60GHz radio or free-space optics (FSO) have been proposed so that a diverse application workload can be better supported by changing network topologies by swapping the endpoints of wireless links. In this study we proposed the use of such wireless links for the purpose of improving job mapping. We investigated various trade-offs of the number of wireless links, time overhead of wireless link reconfiguration, topology embedding and job sizes. Our simulation results demonstrate that the wired job mapping heavily degrades the system utilization of supercomputers and datacenters under a conventional fixed network topology. By contrast, wireless interconnection networks can have an ideal job mapping by directly reconnecting non-neighboring computing nodes. It improves the system utilization by up to 17.7% for user jobs on a supercomputer and thus can shorten the whole service time especially for dealing with dozens of intensively incoming jobs. Furthermore, we confirmed that either workload or scheduling policy does not impact the fact that the ideal job mapping on wireless supercomputers outperforms that on wired networks in terms of system utilization and whole service time. Finally, our evaluation shows that a constrained and reasonable more use of partial wireless links can achieve shorter queuing length and time.
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基于可重构无线链路的HPC作业映射
采用60GHz无线电或自由空间光学(FSO)的无线超级计算机和数据中心已经被提出,以便通过交换无线链路的端点来改变网络拓扑结构,从而更好地支持各种应用工作负载。在这项研究中,我们建议使用这种无线链路来改善工作映射。我们研究了无线链路数量、无线链路重构的时间开销、拓扑嵌入和作业大小的各种权衡。仿真结果表明,在传统的固定网络拓扑下,有线作业映射严重降低了超级计算机和数据中心的系统利用率。相比之下,无线互连网络可以通过直接重新连接非相邻的计算节点来实现理想的作业映射。对于超级计算机上的用户作业,它将系统利用率提高了17.7%,因此可以缩短整个服务时间,特别是在处理数十个密集传入作业时。此外,我们证实,工作负载或调度策略都不会影响无线超级计算机上的理想作业映射在系统利用率和整个服务时间方面优于有线网络的事实。最后,我们的评估表明,有约束和合理地更多地使用部分无线链路可以实现更短的排队长度和时间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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