嵌入式Linux的驱动级NAND闪存I/O性能和功耗建模

Pierre Olivier, Jalil Boukhobza, E. Senn
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引用次数: 4

摘要

本文提出了一种模拟NAND快闪记忆体I/O运算的效能与功耗的方法。本研究的重点是运行Linux操作系统(OS)的嵌入式系统,配备裸闪存芯片(如智能手机,平板电脑,路由器等)。裸机闪存芯片完全由Linux操作系统通过一些特定的闪存文件系统进行管理。事实上,嵌入式Linux已成为许多嵌入式系统的实际操作系统,并且预测I/O操作的性能和能耗对于许多应用程序领域(如多媒体和嵌入式数据库)至关重要。该模型是在驱动层设计的,每个基本的NAND闪存键操作都是建模的。作为一个案例研究,所提出的方法在一个测试硬件/软件平台上得到了应用和验证。建模方法依赖于通用的、可重用的参数提取过程和工具。他们的目的是表征闪存功耗和性能,以便专门为各种平台的模型。这项工作是对所有嵌入式Linux I/O存储层次(从应用层到存储介质)的性能和功耗进行建模的第一步。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modeling driver level NAND flash memory I/O performance and power consumption for embedded Linux
This paper presents a methodology for modeling performance and power consumption of NAND flash memory I/O operations. This study focuses on embedded systems executing the Linux Operating System (OS), equipped with bare flash chips (e.g, smartphones, tablets, routers, etc). Bare flash chips are fully managed by the Linux OS through some specific flash file systems. Indeed, embedded Linux became the de facto OS for many embedded systems, and predicting the performance and energy consumption of I/O operations is critical for many application domains such as multimedia and embedded databases. The presented model is designed at the driver level, and each elementary NAND flash key-operation is modeled. As a case study, the methodology presented was applied and validated on a test hardware / software platform. The modeling methodology relies on a generic and reusable parameter extraction process and tools. Their purpose is to characterize flash power consumption and performance in order to specialize the model for various platforms. This work is a first step toward modeling the performance and the power consumption for all the embedded Linux I/O storage hierarchy: from the applicative layer and down to the storage media.
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