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Performance of a Cluster of PCI Based UltraSparc Workstatios Interconnected with SCI

机译:基于PCI基于PCI的Ultrasparc工作站的性能与SCI相互连接

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SCI is based on unidirectional point-to-point links forming ringlets that can be connected with switches to allow further scaling. This paper presents performance results from running on a number of differently configured SCI clusters. The SCI technology used is Dolphin's second genration PCI/SCI adapter based on teh LC-2 LinkController chip as well as a new 4 port, LC-2 based switch. Nodes are Ultrasparcs runnign Solaris 2.5.1 as the operating system. Results show latenices down to 2.9 #mu#sec for remote stores, and bandwidths up to 80 Mbytes/s into a single system. Network throughput of more than 270 Mbytes/s is demonstrated. Results indicate that the new LC-2 eliminates a nuber of problems iwht the earlier LC-1 chip in addition to increasing peak performance. With its flexible buildign blocks this technology should also make it possible to construct systems iwth a large number of nodes, pushing I/O adapter ased SCI interconnects forward as a promising system area network technology.
机译:SCI基于形成可以与交换机连接的铃声的单向点对点链路,以允许进一步缩放。 本文介绍了在许多不同配置的SCI集群上运行的性能结果。 使用的SCI技术是基于TEH LC-2 LinkController芯片的Dolphin的第二个Geniration PCI / SCI适配器以及新的4端口LC-2基于交换机。 节点是UltraSPARCS Runnign Solaris 2.5.1作为操作系统。 结果将LateNices展示到2.9#Mu#Sec用于远程存储,带宽高达80 MB,进入单个系统。 展示了超过270 MBYTES / s的网络吞吐量。 结果表明,除了提高峰值性能外,新的LC-2除了提高峰值性能外,还消除了早期的LC-1芯片的问题核心。 由于其灵活的Busignign块,该技术还应能够构建系统IWTH大量节点,推动I / O适配器的SCI互连作为一个有前途的系统区域网络技术。

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