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The effects of communication parameters on end performance of shared virtual memory clusters

机译:通信参数对共享虚拟内存群集的最终性能的影响

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Recently there has been a lot of effort in providing cost-effective Shared Memory systems by employing software only solutions on clusters of high-end workstations coupled with high-bandwidth, low-latency commodity networks. Much of the work so far has focused on improving protocols, and there has been some work on restructuring applications to perform better on SVM systems. The result of this progress has been the promise for good performance on a range of applications at least in the 16-32 processor range. New system area networks and network interfaces provide significantly lower overhead, lower latency and higher bandwidth communication in clusters, inexpensive SMPs have become common as the nodes of these clusters, and SVM protocols are now quite mature. With this progress, it is now useful to examine what are the important system bottlenecks that stand in the way of effective parallel performance; in particular, which parameters of the communication architecture are most important to improvefurther relative to processor speed, which ones are already adequate on modern systems for most applications, and how will this change with technology in the future. Such information can assist system designers in determining where to focus their energies in improving performance, and users in determining what system characteristics are appropriate for their applications.We find that the most important system cost to improve is the overhead of generating and delivering interrupts. Improving network interface (and I/O bus) bandwidth relative to processor speed helps some bandwidth-bound applications, but currently available ratios of bandwidth to processor speed are already adequate for many others. Surprisingly, neither the processor overhead for handling messages nor the occupancy of the communication interface in preparing and pushing packets through the network appear to require much improvement.
机译:最近,在高端工作站集群上结合纯带宽,低延迟商品网络,采用仅软件解决方案,为提供经济高效的共享内存系统付出了很多努力。到目前为止,许多工作都集中在改进协议上,并且在重组应用程序以使其在SVM系统上具有更好的性能方面也有一些工作。这一进步的结果是有望在至少16-32处理器范围内的一系列应用程序中获得良好的性能。新的系统区域网络和网络接口在群集中提供了显着更低的开销,更低的延迟和更高的带宽通信,廉价的SMP作为这些群集的节点已变得很普遍,并且SVM协议现在已经相当成熟。随着这一进展,现在有必要检查阻碍有效并行性能的重要系统瓶颈是什么;特别是,通信体系结构中的哪些参数对于进一步提高处理器速度最重要,对于现代系统而言,哪些参数已经足够用于大多数应用,以及将来随着技术的发展将如何改变这些参数。这些信息可以帮助系统设计人员确定将精力集中在改善性能上,并帮助用户确定适合其应用的系统特性。我们发现,最重要的系统开销是产生和传递中断的开销。相对于处理器速度而言,改善网络接口(和I / O总线)带宽有助于某些带宽受限的应用程序,但是当前可用的带宽与处理器速度之比已经足以满足许多其他需求。令人惊讶的是,用于处理消息的处理器开销或在通过网络准备和推送数据包时通信接口的占用似乎都不需要很大的改进。

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