OS-based Resource Accounting for Asynchronous Resource Use in Mobile Systems

Farshad Ghanei, Pranav Tipnis, Kyle Marcus, Karthik Dantu, Steven Y. Ko, Lukasz Ziarek
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引用次数: 7

Abstract

One essential functionality of a modern operating system is to accurately account for the resource usage of the underlying hardware. This is especially important for computing systems that operate on battery power, since energy management requires accurately attributing resource uses to processes. However, components such as sensors, actuators and specialized network interfaces are often used in an asynchronous fashion, and makes it difficult to conduct accurate resource accounting. For example, a process that makes a request to a sensor may not be running on the processor for the full duration of the resource usage; and current mechanisms of resource accounting fail to provide accurate accounting for such asynchronous uses. This paper proposes a new mechanism to accurately account for the asynchronous usage of resources in mobile systems. Our insight is that by accurately relating the user requests with kernel requests to device and corresponding device responses, we can accurately attribute resource use to the requesting process. Our prototype implemented in Linux demonstrates that we can account for the usage of asynchronous resources such as GPS and WiFi accurately.
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基于操作系统的移动系统异步资源使用资源计费
现代操作系统的一个基本功能是准确地说明底层硬件的资源使用情况。这对于使用电池供电的计算系统尤其重要,因为能源管理需要准确地将资源使用归属于进程。然而,诸如传感器、执行器和专用网络接口之类的组件通常以异步方式使用,因此很难进行准确的资源核算。例如,向传感器发出请求的进程可能在资源使用的整个持续时间内不会在处理器上运行;目前的资源核算机制无法为这种异步使用提供准确的核算。本文提出了一种新的机制来准确地解释移动系统中资源的异步使用。我们的见解是,通过准确地将用户请求与对设备的内核请求和相应的设备响应联系起来,我们可以准确地将资源使用归因于请求进程。我们在Linux中实现的原型表明,我们可以准确地说明GPS和WiFi等异步资源的使用情况。
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