首页> 外文会议>Supercomputing, 1998. SC98. IEEE/ACM Conference on >Fine-Grain Cycle Stealing for Networks of Workstations
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Fine-Grain Cycle Stealing for Networks of Workstations

机译:工作站网络的细粒度循环窃取

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Studies have shown that a significant fraction of the time, workstations are idle. In this paper we present a new scheduling policy called Linger-Longer that exploits the fine-grained availability of workstations to run sequential and parallel jobs. We present a two-level workload characterization study and use it to simulate a cluster of workstations running our new policy. We compare two variations of our policy to two previous policies: Immediate- Eviction and Pause-and-Migrate. Our study shows that the Linger-Longer policy can improve the throughput of foreign jobs on cluster by 60% with only a 0.5% slowdown of foreground jobs. For parallel computing, we showed that the Linger-Longer policy outperforms reconfiguration strategies when the processor utilization by the local process is 20% or less in both synthetic bulk synchronous and real data-parallel applications
机译:研究表明,在相当大部分的时间内,工作站处于空闲状态。在本文中,我们提出了一种称为Linger-Longer的新调度策略,该策略利用工作站的细粒度可用性来运行顺序和并行作业。我们提出了两级工作负载表征研究,并使用它来模拟运行我们的新策略的工作站集群。我们将政策的两个变体与之前的两个政策进行比较:立即撤离和暂停并迁移。我们的研究表明,Linger-Longer策略可以将群集上的外国作业的吞吐量提高60%,而前台作业的速度仅降低0.5%。对于并行计算,我们表明,在合成批量同步和实际数据并行应用程序中,当本地进程的处理器利用率为20%或更少时,Linger-Longer策略的性能优于重新配置策略。

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