矩阵转置交通模式下的高性能分层环面网络

M. Rahman, S. Horiguchi
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引用次数: 16

摘要

互连网络对大规模并行计算机的性能起着至关重要的作用。分层互连网络通过探索大规模并行计算机通信模式中的局部性,以低成本提供高性能。层次化环面网络(HTN)是由多个基本模块组成的二维环面网络,其中基本模块为三维环面网络,而三维环面网络在更高层次的网络中是分层互联的。已有研究表明,HTN的静态网络性能良好。在均匀流量模式下,对动态通信性能进行了评价,但在矩阵转置等非均匀流量模式下,还没有对动态通信性能进行评价。本文提出了一种基于3个虚拟信道的HTN无死锁路由算法,并利用该算法对矩阵转置流量下网络的动态通信性能进行了评价。我们通过计算机仿真评估了HTN、H3D-mesh、TESH和mesh网络的动态通信性能。我们发现HTN的动态通信性能优于H3D-mesh、TESH和mesh网络。
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High performance hierarchical torus network under matrix transpose traffic patterns
Interconnection networks play a crucial role in the performance of massively parallel computers. Hierarchical interconnection networks provide high performance at low cost by exploring the locality that exists in the communication patterns of massively parallel computers. A hierarchical torus network (HTN) is a 2D-torus network of multiple basic modules, in which the basic modules are 3D-torus networks that are hierarchically interconnected for higher level networks. The static network performance of the HTN has already been studied and has been shown to be good. Dynamic communication performance has been evaluated under uniform traffic patterns but not under a nonuniform traffic, such as matrix transpose traffic patterns. In this paper, we present a deadlock-free routing algorithm for the HTN using 3 virtual channels and evaluate the network's dynamic communication performance under matrix transpose traffic, using the proposed routing algorithm. We evaluate the dynamic communication performance of HTN, H3D-mesh, TESH, and mesh networks by computer simulation. We find that the dynamic communication performance of HTN is better than that of the H3D-mesh, TESH, and mesh networks.
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