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Analysis of system performance by changing the ring architecture on the dual ring CC-NUMA system

机译:通过在双环CC-NUMA系统上改变环形架构来分析系统性能

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Since NUAM architecture has to access remote memory, the interconnection network determines the performance of the CC-NUAM system. Bus, which has been used as a popular interconnection network, has many limits in a large-scale system because of the limited physical scalability and bandwidth. The dual ring interconnection network, composed of high-speed point-to-point links, is made to resolve the defects of the bus for the large-scale system. However, it also has a problem, in that the response latency is rapidly increased when many nodes are attached to the snooping based CC-NUAM system with the dual ring. In this paper, we propose a chordal ring architecture in order to overcome the problem of the dual ring on a snooping based CC-NUMA system, and design an efficient link controller adapted to this architecture. We will also analyze the effects of chordal ring architecture on the system performance and the response latency by using a probability-driven simulator.
机译:由于Nuam架构必须访问远程存储器,因此互连网络确定CC-Nuam系统的性能。已被用作流行互连网络的总线,由于物理可扩展性和带宽有限,具有大规模系统中的许多限制。由高速点对点链路组成的双环互连网络,以解决大型系统的总线的缺陷。然而,它还存在问题,因为当许多节点连接到具有双环的窥探的CC-Nuam系统时,响应延迟快速增加。在本文中,我们提出了十字环架构,以克服基于窥探的CC-Numa系统的双环的问题,并设计适用于此架构的有效链路控制器。我们还将通过使用概率驱动的模拟器分析Chordal Ring架构对系统性能和响应延迟的影响。

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