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Tightly Coupled Accelerators Architecture for Minimizing Communication Latency among Accelerators

机译:紧密耦合的加速器架构,可最大程度地减少加速器之间的通信延迟

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In recent years, heterogeneous clusters using accelerators have been widely used in high performance computing systems. In such clusters, inter-node communication among accelerators requires several memory copies via CPU memory, and the communication latency causes severe performance degradation. In order to address this problem, we propose the Tightly Coupled Accelerators (TCA) architecture to reduce the communication latency between accelerators over different nodes. In addition, we promote the HA-PACS project at the Center for Computational Sciences, University of Tsukuba, in order to build up the HA-PACS base cluster system, as a commodity GPU cluster, and to develop an experimental system based on the TCA architecture as a proprietary interconnection network connecting accelerators beyond the nodes. In the present paper, we describe the TCA architecture and the design and implementation of PEACH2 for realizing the TCA architecture. We also evaluate the functionality and the basic performance of the PEACH2 chip, and the results demonstrate that the PEACH2 chip has sufficient maximum performance with 93% of the theoretical peak performance and a latency between adjacent nodes of approximately 0.8usec.
机译:近年来,使用加速器的异构集群已广泛用于高性能计算系统中。在这样的群集中,加速器之间的节点间通信需要通过CPU内存复制多个内存,并且通信延迟会导致严重的性能下降。为了解决此问题,我们提出了紧密耦合加速器(TCA)架构,以减少不同节点上加速器之间的通信延迟。此外,我们在筑波大学计算科学中心推广了HA-PACS项目,以建立作为商品GPU集群的HA-PACS基础集群系统,并开发基于TCA的实验系统作为专有互连网络的体系结构,将加速器连接到节点之外。在本文中,我们描述了TCA架构以及用于实现TCA架构的PEACH2的设计和实现。我们还评估了PEACH2芯片的功能和基本性能,结果表明PEACH2芯片具有足够的最大性能,其理论峰值性能为93%,相邻节点之间的延迟约为0.8usec。

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