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Performance-directed Energy Management using BOS

机译:使用BOS进行绩效导向的能源管理

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One of the major challenges in today's computing world is energy management in portable devices and servers. Power management is essential to increase battery life. High end server systems use large clusters of machines that consume enormous amount of power. Past research has devised both software and hardware techniques to memory energy management but has overlooked the performance of applications in such environments. The result is that some of these techniques slowed down an application by 835%. In this paper, we look at software techniques for memory energy management without compromising on performance. The paper conceives of a new approach called BOS - Ballooning in the OS inspired from the VMware ESX server. The BOS approach consists of a kernel daemon which continuously monitors the accesses to memory chips and disk I/O. Based on the profiled information, the BOS daemon decides about powering down/up chips. Powering down is emulated within the kernel using mechanisms such as page migration and invisible buddy. Results indicate that chips with more allocated pages may not always be the most frequently accessed ones. A study has been done analyzing the effect of decreased memory size on disk activity and based on the study, a threshold based policy is proposed which is found to settle in the operating point for a simple applicaton. A single page migration incurs a cost of approximately 13μs and is one of the bottlenecks in the BOS approach.
机译:当今计算世界的主要挑战之一是便携式设备和服务器中的能源管理。电源管理对于延长电池寿命至关重要。高端服务器系统使用消耗大量电能的大型机器集群。过去的研究已经将软件和硬件技术设计用于内存能量管理,但忽略了此类环境中应用程序的性能。结果是其中一些技术使应用程序速度降低了835%。在本文中,我们着眼于不影响性能的内存能量管理软件技术。本文构思了一种新的方法,称为BOS-受VMware ESX服务器启发的OS中的气球增长。 BOS方法由内核守护程序组成,该守护程序连续监视对内存芯片和磁盘I / O的访问。根据配置文件的信息,BOS守护程序决定关闭/打开芯片电源。使用页面迁移和隐形伙伴等机制在内核中模拟掉电。结果表明,分配了更多页面的芯片可能并不总是访问频率最高的芯片。已经完成了一项研究,分析了减小的内存大小对磁盘活动的影响,并基于该研究,提出了一种基于阈值的策略,该策略可以在操作点找到一个简单的应用程序。单页迁移会产生大约13μs的成本,并且是BOS方法的瓶颈之一。

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