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Understanding the Impact of Dynamic Power Capping on Application Progress

机译:了解动态功率上限对应用进度的影响

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Electrical power has become an important design constraint in high-performance computing (HPC) systems. On future HPC machines, power is likely to be a budgeted resource and thus managed dynamically. Power management software needs to reliably measure application performance at runtime in order to respond effectively to changes in application behavior. Execution time tells us little about how the science in the application is progressing toward an application-defined end goal. To the best of our knowledge, no study has defined or categorized online application progress in the context of power management. Based on semi-structured interviews with HPC application-specialists, we define an online notion of progress—an application-specific metric that can be monitored at runtime to provide a sense of the rate at which application science is being performed. Using instrumentation, we characterize and categorize the progress of various production scientific applications and benchmarks. We propose a model of the impact of dynamic power capping on application progress. By experimental evaluation, we show that our model accurately captures the general behavior of the progress of different classes of applications under a power cap. We believe that such a model is an important first step toward the design of more dynamic power management policies for HPC systems.
机译:电力已经成为高性能计算(HPC)系统中的重要设计约束。在未来的HPC计算机上,电源可能是预算资源,因此可以动态管理。电源管理软件需要在运行时可靠地衡量应用程序性能,以便有效地响应应用程序行为的变化。执行时间几乎没有告诉我们应用程序中的科学如何朝着应用程序定义的最终目标发展。据我们所知,还没有研究在电源管理的背景下对在线应用程序的进度进行定义或分类。基于对HPC应用程序专家的半结构化访谈,我们定义了一种在线进度概念-一种可以在运行时进行监视的特定于应用程序的指标,以了解应用程序科学的执行速度。使用仪器,我们可以对各种生产科学应用和基准的进度进行表征和分类。我们提出了一个动态功率上限对应用进度的影响的模型。通过实验评估,我们证明了我们的模型可以准确地捕获功率限制下不同类别应用程序进度的一般行为。我们认为,这种模型是为HPC系统设计更动态的电源管理策略的重要第一步。

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