Single Node On-Line Simulation of MPI Applications with SMPI

Pierre-Nicolas Clauss, Mark Stillwell, S. Genaud, F. Suter, H. Casanova, M. Quinson
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引用次数: 53

Abstract

Simulation is a popular approach for predicting the performance of MPI applications for platforms that are not at one's disposal. It is also a way to teach the principles of parallel programming and high-performance computing to students without access to a parallel computer. In this work we present SMPI, a simulator for MPI applications that uses on-line simulation, i.e., the application is executed but part of the execution takes place within a simulation component. SMPI simulations account for network contention in a fast and scalable manner. SMPI also implements an original and validated piece-wise linear model for data transfer times between cluster nodes. Finally SMPI simulations of large-scale applications on large-scale platforms can be executed on a single node thanks to techniques to reduce the simulation's compute time and memory footprint. These contributions are validated via a large set of experiments in which SMPI is compared to popular MPI implementations with a view to assess its accuracy, scalability, and speed.
基于SMPI的MPI应用的单节点在线仿真
模拟是预测MPI应用程序在非个人控制平台上的性能的一种流行方法。这也是一种向没有并行计算机的学生教授并行编程和高性能计算原理的方法。在这项工作中,我们提出了SMPI,一个用于MPI应用程序的模拟器,它使用在线模拟,即应用程序被执行,但部分执行发生在模拟组件中。SMPI模拟以快速和可扩展的方式考虑网络争用。SMPI还为集群节点之间的数据传输时间实现了一个原始的、经过验证的分段线性模型。最后,大规模平台上大规模应用程序的SMPI模拟可以在单个节点上执行,这要归功于减少模拟计算时间和内存占用的技术。这些贡献通过大量实验得到验证,在这些实验中,SMPI与流行的MPI实现进行了比较,以评估其准确性、可伸缩性和速度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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