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Scaling applications to massively parallel machines using Projections performance analysis tool

机译:使用Projections性能分析工具将应用程序扩展到大规模并行计算机

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Some of the most challenging applications to parallelize scalably are the ones that present a relatively small amount of computation per iteration. Multiple interacting performance challenges must be identified and solved to attain high parallel efficiency in such cases. We present case studies involving NAMD, a parallel classic molecular dynamics application for large biomolecular systems, and CPAIMD, Car-Parrinello ab initio molecular dynamics application, and efforts to scale them to large number of processors. Both applications are implemented in Charm++, and the performance analysis was carried out using Projections, the performance visualization/analysis tool associated with Charm++. We showcase a series of optimizations facilitated by Projections. The resultant performance of NAMD led to a Gordon Bell award at SC 2002 with unprecedented speedup on 3000 processors with terafiops level peak performance. We also explore the techniques for applying the performance visualization/analysis tool on future generation extreme-scale parallel machines and discuss the scalability issues with Projections.
机译:可伸缩并行化的一些最具挑战性的应用程序是每次迭代只显示相对少量的计算的应用程序。在这种情况下,必须确定并解决多个相互影响的性能挑战,以实现较高的并行效率。我们目前的案例研究涉及NAMD(大型生物分子系统的并行经典分子动力学应用程序)和CPAIMD,Car-Parrinello从头算分子动力学应用程序,并努力将其扩展到大量处理器。这两个应用程序都是在Charm ++中实现的,并且性能分析是使用Projections(与Charm ++关联的性能可视化/分析工具)进行的。我们展示了Projections促进的一系列优化。 NAMD的最终性能在2002年SC大会上获得了Gordon Bell奖,以3000台处理器的前所未有的速度提速,达到了千亿级的峰值性能。我们还将探索在下一代超大型并行计算机上应用性能可视化/分析工具的技术,并讨论Projections的可伸缩性问题。

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