Program counter based techniques for dynamic power management

C. Gniady, Y. C. Hu, Yung-Hsiang Lu
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引用次数: 53

Abstract

Reducing energy consumption has become one of the major challenges in designing future computing systems. We propose a novel idea of using program counters to predict I/O activities in the operating system. We present a complete design of program-counter access predictor (PCAP) that dynamically learns the access patterns of applications and predicts when an I/O device can be shut down to save energy. PCAP uses path-based correlation to observe a particular sequence of program counters leading to each idle period, and predicts future occurrences of that idle period. PCAP differs from previously proposed shutdown predictors in its ability to: (1) correlate I/O operations to particular behavior of the applications and users, (2) carry prediction information across multiple executions of the applications, and (3) attain better energy savings while incurring low mispredictions.
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基于程序计数器的动态电源管理技术
降低能耗已成为设计未来计算系统的主要挑战之一。我们提出了一个使用程序计数器来预测操作系统中的I/O活动的新想法。我们提出了一个完整的程序计数器访问预测器(PCAP)的设计,它可以动态学习应用程序的访问模式,并预测何时可以关闭I/O设备以节省能源。PCAP使用基于路径的相关性来观察导致每个空闲期的特定程序计数器序列,并预测该空闲期的未来出现情况。PCAP与之前提出的关闭预测器的不同之处在于:(1)将I/O操作与应用程序和用户的特定行为相关联,(2)在应用程序的多次执行中携带预测信息,以及(3)在产生低错误预测的同时实现更好的节能。
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