W. Elwasif, R. Whitfield, J. M. Park, M. Cianciosa
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引用次数: 2

摘要

我们介绍了在NERSC Cori超级计算机上使用容器扩展大量耦合I/O绑定工作负载的经验。我们描述了使用集成等离子体模拟器(IPS)的分层仿真结构的设计,该结构可以使用相同的耦合抽象和API在系统、节点和核心层灵活地执行耦合仿真。分层设计允许使用容器有效地执行节点级执行,同时不会影响系统级的模拟结构。我们通过展示耦合聚变等离子体模拟应用程序的实验结果来证明该方法的可行性,这些实验结果说明了使用容器部署节点级工作负载对性能的影响,并结合用户可挂载的XFS文件系统来改善Lustre并行文件系统上的负载。我们还展示了生产运行的结果,显示了集成模拟能够扩展到数百个Cori Haswell节点,并且几乎没有开销。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Containers for Massive Ensemble of I/O Bound Hierarchical Coupled Simulations
We present our experience using containers to scale up a massive ensemble of coupled I/O bound workloads on the NERSC Cori supercomputer. We describe the design of a hierarchical simulation structure using the Integrated Plasma Simulator (IPS) that enables the flexible execution of coupled simulations at the system, node, and core level using the same coupling abstraction and API. The hierarchical design allows for the node-level execution to be efficiently executed using containers while not impacting the structure of the simulation at the system level. We demonstrate the viability of the approach by presenting experimental results from applications in coupled fusion plasma simulations that illustrate the performance impact of using containers to deploy the node-level workloads, in conjunction with the user mountable XFS file systems to ameliorate the load on the Lustre parallel file system. We also present results from production runs showing the ability of the ensemble simulations to scale to hundreds of Cori Haswell nodes, with little or no overhead.
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