Age-based packet arbitration in large-radix k-ary n-cubes

D. Abts, D. Weisser
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引用次数: 54

Abstract

As applications scale to increasingly large processor counts, the interconnection network is frequently the limiting factor in application performance. In order to achieve application scalability, the interconnect must maintain high bandwidth while minimizing variation in packet latency. As the offered load in the network increases with growing problem sizes and processor counts, so does the expected maximum packet latency in the network, directly impacting performance of applications with any synchronized communication. Age-based packet arbitration reduces the variance in packet latency as well as average latency. This paper describes the Cray XT router packet aging algorithm which allows globally fair arbitration by incorporating "age" in the packet output arbitration. We describe the parameters of the aging algorithm and how to arrive at appropriate settings. We show that an efficient aging algorithm reduces both the average packet latency and the variance in packet latency on communication-intensive benchmarks.
大基数k元n-立方体中基于年龄的数据包仲裁
随着应用程序扩展到越来越大的处理器数量,互连网络经常成为应用程序性能的限制因素。为了实现应用程序的可伸缩性,互连必须保持高带宽,同时尽量减少数据包延迟的变化。随着问题大小和处理器数量的增加,网络中提供的负载也会增加,网络中预期的最大数据包延迟也会增加,这会直接影响具有任何同步通信的应用程序的性能。基于年龄的数据包仲裁减少了数据包延迟和平均延迟的差异。本文描述了Cray XT路由器数据包老化算法,该算法通过在数据包输出仲裁中加入“年龄”来实现全局公平仲裁。我们描述了老化算法的参数以及如何达到适当的设置。在通信密集型基准测试中,我们证明了一种有效的老化算法可以降低平均数据包延迟和数据包延迟方差。
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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