避免并行应用中的能源浪费

V. Korthikanti, G. Agha
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引用次数: 10

摘要

我们提出了一种分析算法的方法,以减少执行应用程序时的能源浪费。我们的方法基于三个观察。首先,单芯的功率和频率之间的关系近似为三次。因此,为了节省能源,可以在核心上运行较慢的应用程序。在并行架构的情况下,还必须考虑内核之间交互的影响(对性能和能耗的影响)。其次,多核架构正在开发中,通过允许核心以较低的频率运行来积极管理功耗。这意味着多核架构上的并行应用程序可以使用以不同频率运行的可变数量的核心来执行,这既会影响应用程序的性能,也会影响执行应用程序所需的能量。最后,在更快地运行应用程序方面有一定的好处(正效用),而在能源消耗方面有一定的成本(负效用)。消耗对整体效用没有贡献的能源是浪费能源。性能和能耗之间的精确权衡取决于并行算法的结构和相关的实用程序。我们描述了一种做这种权衡的方法,并用几个并行算法来说明它。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Avoiding energy wastage in parallel applications
We propose a methodology to analyze algorithms in order to reduce energy waste in executing applications. Our methodology is based on three observations. First, the relation between power and frequency of a single core is approximately cubic. Thus it may be possible to run an application slower on a core in order to save energy. In the case of a parallel architecture, one has to also factor the effect (on performance and energy consumption) of the interaction between cores. Second, multicore architectures which aggressively manage power consumption by allowing cores to be operated at reduced frequencies are being developed. This means that parallel applications on a multicore architecture can be executed using a variable number of cores running at different frequencies-affecting both the performance of the application and the energy required to execute it. Lastly, there is a certain benefit (positive utility) in running an application faster and a cost (negative utility) in terms of the energy consumed. Expending energy that does not contribute to the overall utility wastes the energy. The precise trade-off between performance and energy consumption depends on the structure of a parallel algorithm and the associated utilities. We describe a methodology to do this trade-off and illustrate it with several parallel algorithms.
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