Optimal Configuration for N-Dimensional Twin Torus Networks

Francisco J. Andújar, Juan A. Villar, J. L. Sánchez, F. J. Alfaro, J. Duato
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Abstract

Torus topology is one of the most common topologies used in the current largest supercomputers. Although 3D torus is widely used, recently some supercomputers in the Top500 list have been built using networks with topologies of five or six dimensions. To obtain an nD torus, 2n ports per node are needed. These ports can be offered by a single or several cards per node. In the second case, there are multiple ways of assigning the dimension and direction of the card ports. In a previous work we proposed the 3D Twin (3DT) torus which uses two 4-port cards per node, and obtained the optimal port configuration. This paper extends and generalizes that work in order to obtain the optimal port configuration when n dimensions are considered. Thus, the nDT torus topology is presented and defined, and a detailed formal analysis leads to the optimal port configuration. Finally, performance results are included.
n维双环面网络的最优配置
环面拓扑是目前大型超级计算机中最常用的拓扑结构之一。虽然3D环面被广泛使用,但最近Top500榜单中的一些超级计算机已经使用具有五维或六维拓扑结构的网络来构建。为了得到一个nD环面,每个节点需要2n个端口。这些端口可以由每个节点的单个或多个卡提供。在第二种情况下,有多种方法来分配卡端口的尺寸和方向。在之前的工作中,我们提出了每个节点使用两个4端口卡的3D Twin (3DT)环面,并获得了最优端口配置。为了得到考虑n维时的最优端口配置,本文对上述工作进行了推广和推广。因此,提出并定义了nDT环面拓扑,并进行了详细的形式化分析,得出了最佳端口配置。最后,给出了性能结果。
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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