Performance aspects of switched SCI systems

M. Liebhart
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引用次数: 2

Abstract

The Scalable Coherent Interface (SCI) defines a high-speed interconnect that provides a coherent distributed shared memory system. With the use of switches separate rings can be connected to form large topology-independent configurations. It has been realized that congestion in SCI systems generates additional retry traffic which reduces the available communication bandwidth. This paper investigates additional flow control mechanisms for overloaded switches. They are based on a supplementary retry delay and show a significant throughput gain. Furthermore two different management schemes for the output buffers are investigated. Computer simulations are used to compare the models and to determine system parameters.
切换SCI系统的性能方面
可扩展的相干接口(SCI)定义了一种高速互连,提供了一个相干的分布式共享内存系统。通过使用交换机,可以将不同的环连接起来,形成与拓扑无关的大型配置。人们已经意识到,SCI系统中的拥塞会产生额外的重试流量,从而减少了可用的通信带宽。本文研究了过载开关的附加流量控制机制。它们基于补充的重试延迟,并显示出显著的吞吐量增益。此外,还研究了两种不同的输出缓冲区管理方案。计算机模拟用于比较模型和确定系统参数。
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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