PDES在多核集群上的性能评价

Ketan Bahulkar, Nicole Hofmann, Deepak Jagtap, N. Abu-Ghazaleh, D. Ponomarev
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引用次数: 9

摘要

VLSI和微架构设计的趋势已经迎来了多核时代,芯片上的核心数量预计将随着每一代处理器的发展而增长。很快,每个芯片都将拥有大量紧密集成的处理核心,其通信延迟大大低于传统集群中的通信延迟。由这种微处理器组成的集群在核心之间的延迟是不均匀的:同一芯片上的核心可以比不同芯片上的核心更快地通信,同一机器上的核心可以比不同机器上的核心更快地通信。在本文中,我们使用可参数化修改版本的Phold(一个用于并行仿真的标准基准)来表征PDES模型在双四核机器集群上的性能。我们研究了区域和远程通信模式的各种组合,以量化通信对模拟整体性能的影响。我们发现,通信的数量具有决定性的影响,必须在每个级别上优化这种通信,以最大限度地利用多核平台。我们展示了分区可以显著提高性能。我们还探讨了负载不平衡对应用程序性能的影响,并就如何针对这些不同的环境进行分区提供了重要的见解。我们相信这项研究代表了在这个新兴平台上表征PDES性能空间的重要的第一步。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance Evaluation of PDES on Multi-core Clusters
Trends in VLSI and micro architecture design have ushered in the multi-core era, where the number of cores on a chip is expected to grow with every processor generation. Soon, each chip will have a large number of tightly integrated processing cores with communication latencies substantially lower than those present in conventional clusters. Clusters made of such microprocessors experience non-uniform latencies between cores: cores on the same chip can communicate faster than cores on different chips, cores on the same machine can communicate faster than cores on different machines. In this paper, we characterize the performance of PDES models on a cluster of dual quad-core machines using a parameterizable modified version of Phold, a standard benchmark for parallel simulation. We study various combinations of regional and remote communication patterns to quantify the impact of communication on overall performance of simulation. We discover that the amount of communication has determining impact and it’s essential to optimize this communication at each level to take maximum advantage of multi-core platform. We show that partitioning significantly improves performance. We also explore the impact of load imbalance on application performance and provide critical insight into how to partition for these different environments. We believe that this study represents a significant first step in characterizing the performance space for PDES on this emerging platform.
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