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Leveraging ACPI _PSS data to Estimate Energy of Processor Core between ACPI-Cpufreq and Intel P-State Driver on Low-End Intel Pentium Celeron N2830

机译:利用ACPI _PSS数据估算低端Intel Pentium Celeron N2830上ACPI-Cpufreq和Intel P-State驱动程序之间的处理器核心能量

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摘要

ABSTRACT. Measuring energy of processor core which consumed by a program is a prerequisite when we want to optimize source code of a program in order to gain efficiency of energy. However, it???s difficult to find tools to measure energy of processor core especially on low-end processor. In this paper we offer a simple energy estimation as an alternative tool by leveraging an object in ACPI (Advanced Configuration and Power Interface) specification called _PSS (Performance Supported States) which contains information about power of each processor core in each state of its performance states (P-States). To estimate the energy of processor core, we integrate power of each processor core during run time of a program. A program was run repetitively in different conditions on minicomputer Intel DN2820FYK which consists of low-end processor Intel Pentium Celeron N2830. We collected frequency of cores while running the program. We then mapped the frequency into power based on _PSS information to construct graph of power vs. time as a base to estimate the energy by using trapezoid method of integration. Since the processor behavior is also determined by a driver, we compared the effect of drivers between driver ACPI-cpufreq and driver Intel-P-State toward energy consumed. We also made some experiments by implementing combinations of policy, frequency, feature of boosts and load. In this paper, we find out that by leveraging _PSS data, we can easily estimate energy of processor core. We also find out that by using driver Intel P-State, it will be better and easier to estimate energy rather than using ACPI-cpufreq.
机译:抽象。当我们要优化程序的源代码以获取能量效率时,测量程序消耗的处理器内核的能量是前提条件。但是,很难找到工具来测量处理器内核的能量,尤其是在低端处理器上。在本文中,我们通过利用称为_PSS(性能支持状态)的ACPI(高级配置和电源接口)规范中的对象,提供了一种简单的能源估算作为替代工具,该对象包含有关每个处理器内核处于其性能状态的状态的信息。 (P国)。为了估算处理器内核的能量,我们在程序运行时集成了每个处理器内核的功率。在由低端处理器英特尔奔腾Celeron N2830组成的微型计算机Intel DN2820FYK上,在不同条件下重复运行了一个程序。我们在运行程序时收集了内核的频率。然后,我们基于_PSS信息将频率映射到功率,以构建功率与时间的关系图,以此为基础,使用梯形积分方法估算能量。由于处理器的行为也取决于驱动程序,因此我们比较了驱动程序ACPI-cpufreq和驱动程序Intel-P-State之间的驱动程序效果与能耗之间的关系。我们还通过实现策略,频率,提升和负载功能的组合进行了一些实验。在本文中,我们发现通过利用_PSS数据,我们可以轻松估算处理器内核的能量。我们还发现,与使用ACPI-cpufreq相比,使用驱动程序Intel P-State估计能量会更好,更容易。

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