从MPI应用程序中提取关键路径图

M. Schulz
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引用次数: 52

摘要

关键路径是并行程序运行时的基本特征之一。它标识没有等待延迟的最长执行序列。换句话说,关键路径是对其他节点施加等待操作而自身不会停止的全局执行路径。因此,它指示了整个运行时,了解应用程序的运行时和消息行为以及目标优化非常重要。我们已经开发了一个工具集,可以识别MPI应用程序的关键路径,提取它,然后生成相应程序执行图的图形表示,以将其可视化。为了实现这一点,我们拦截所有MPI库调用,使用这些信息构建执行图的相关子集,然后从中提取关键路径。我们已经将我们的技术应用于几个科学基准测试,并成功地为运行在多达128个处理器上的应用程序生成了关键路径图
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Extracting Critical Path Graphs from MPI Applications
The critical path is one of the fundamental runtime characteristics of a parallel program. It identifies the longest execution sequence without wait delays. In other words, the critical path is the global execution path that inflicts wait operations on other nodes without itself being stalled. Hence, it dictates the overall runtime and knowing it is important to understand an application's runtime and message behavior and to target optimizations. We have developed a toolset that identifies the critical path of MPI applications, extracts it, and then produces a graphical representation of the corresponding program execution graph to visualize it. To implement this, we intercept all MPI library calls, use the information to build the relevant subset of the execution graph, and then extract the critical path from there. We have applied our technique to several scientific benchmarks and successfully produced critical path diagrams for applications running on up to 128 processors
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