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TTN: A High Performance Hierarchical Interconnection Network for Massively Parallel Computers

机译:TTN:适用于大规模并行计算机的高性能层次互连网络

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摘要

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 Tori connected Torus Network (TTN) is a 2D-torus network of multiple basic modules, in which the basic modules are 2D-torus networks that are hierarchically interconnected for higher-level networks. This paper addresses the architectural details of the TTN and explores aspects such as node degree, network diameter, cost, average distance, arc connectivity, bisection width, and wiring complexity. We also present a deadlock-free routing algorithm for the TTN using four virtual channels and evaluate the network's dynamic communication performance using the proposed routing algorithm under uniform and various non-uniform traffic patterns. We evaluate the dynamic communication performance of TTN, TESH, MH3DT, mesh, and torus networks by computer simulation. It is shown that the TTN possesses several attractive features, including constant node degree, small diameter, low cost, small average distance, moderate (neither too low, nor too high) bisection width, and high throughput and very low zero load latency, which provide better dynamic communication performance than that of other conventional and hierarchical networks.
机译:互连网络在大规模并行计算机的性能中起着至关重要的作用。分层互连网络通过探索大型并行计算机的通信模式中存在的局部性,以低成本提供高性能。连接Tori的Torus网络(TTN)是由多个基本模块组成的2D-torus网络,其中,基本模块是2D-torus网络,它们为更高级别的网络分层互连。本文讨论了TTN的体系结构细节,并探讨了诸如节点度,网络直径,成本,平均距离,弧连接性,对分宽度和布线复杂性等方面。我们还提出了使用四个虚拟通道的TTN的无死锁路由算法,并使用该路由算法在统一和各种非统一流量模式下评估了网络的动态通信性能。我们通过计算机仿真评估TTN,TESH,MH3DT,网格和环形网络的动态通信性能。结果表明,TTN具有几个吸引人的特征,包括恒定的节点度,小直径,低成本,平均距离小,中等(既不太低也不太高)对分宽度,高吞吐量和非常低的零负载等待时间,提供比其他常规和分层网络更好的动态通信性能。

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