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Maximizing Throughput on a Dragonfly Network

机译:最大化蜻蜓网络的吞吐量

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摘要

Interconnection networks are a critical resource for large supercomputers. The dragonfly topology, which provides a low network diameter and large bisection bandwidth, is being explored as a promising option for building multi-Petaflop's and Exaflop's systems. Unlike the extensively studied torus networks, the best choices of message routing and job placement strategies for the dragonfly topology are not well understood. This paper aims at analyzing the behavior of a machine built using a dragonfly network for various routing strategies, job placement policies, and application communication patterns. Our study is based on a novel model that predicts traffic on individual links for direct, indirect, and adaptive routing strategies. We analyze results for individual communication patterns and some common parallel job workloads. The predictions presented in this paper are for a 100+ Petaflop's prototype machine with 92,160 high radix routers and 8.8 million cores.
机译:互连网络是大型超级计算机的重要资源。蜻蜓拓扑提供了低的网络直径和较大的二等分带宽,正在被探索为构建多Petaflop和Exaflop系统的有前途的选择。与广泛研究的环面网络不同,对于蜻蜓拓扑的消息路由和工作安排策略的最佳选择还没有得到很好的理解。本文旨在分析使用蜻蜓网络构建的机器的行为,该机器具有各种路由策略,作业放置策略和应用程序通信模式。我们的研究基于一种新颖的模型,该模型可以预测直接,间接和自适应路由策略在单个链路上的流量。我们分析单个通信模式和一些常见的并行作业工作量的结果。本文中的预测是针对100+ Petaflop的原型机,该原型机具有92,160个高基数路由器和880万个内核。

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