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Improving energy efficiency of asymmetric chip multithreaded multiprocessors through reduced OS noise scheduling

机译:通过减少OS噪声调度来提高非对称芯片多线程多处理器的能源效率

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The performance of the emerging chip multithreaded symmetric multiprocessors (SMPs) is of great importance to the high performance computing community. However, the growing power consumption of such systems is of increasing concern, and techniques that can be used to increase the overall system power efficiency while sustaining the performance are very desirable. Operating system (OS) noise can have a dramatic effect on the system performance. Effectively handling the smaller OS tasks while simultaneously preserving application thread synchronicity leads to gains in the overall system efficiency. Recently, under a fixed power budget, asymmetric multiprocessors (AMP) have been proposed to improve the performance of multithreaded applications. An AMP in this context is a multiprocessor system in which its processors are not operating at the same frequency. This paper proposes two simple scheduling methods that reduce the impact of OS noise, while simultaneously taking advantage of an opportunity to increase the overall machine energy efficiency on AMP servers. Prototyping AMPs on a commercial 2-way dual-core Hyper-Threaded (HT) Intel Xeon SMP server, using real power measurements across six SPEC OpenMP applications, indicates that the first proposed scheduler performs better on average for HT-enabled systems, whereas the second scheduler is superior on average for HT-disabled systems.
机译:新兴的芯片多线程对称多处理器(SMP)的性能对于高性能计算社区至关重要。但是,这种系统日益增长的功耗越来越引起人们的关注,并且非常需要可用于在维持性能的同时提高整体系统功率效率的技术。操作系统(OS)噪声可能会对系统性能产生重大影响。有效地处理较小的OS任务,同时保持应用程序线程同步性,可以提高整体系统效率。最近,在固定功率预算下,已经提出了非对称多处理器(AMP)来提高多线程应用程序的性能。在这种情况下,AMP是一个多处理器系统,在该系统中,其处理器工作频率不同。本文提出了两种简单的调度方法,这些方法可减少OS噪声的影响,同时利用提高AMP服务器总体机器能效的机会。使用跨六个SPEC OpenMP应用程序的实际功率测量结果,对商用2路双核超线程(HT)Intel Xeon SMP服务器上的AMP进行原型制作表明,第一个建议的调度程序在启用HT的系统上平均表现更好,而对于禁用HT的系统,第二个调度程序平均要优越。

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