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Combining compiler and operating system support for energy efficient I/O on embedded platforms

机译:结合编译器和操作系统支持,以实现嵌入式平台上的节能I / O

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Mobile and embedded platforms have experienced dramatic advances in capabilities, largely due to the development of associated peripheral devices for storage and communication. The incorporation of these I/O devices has increased the overall power envelope of these platforms. In fact, system-level power consumption of mobile platforms is often dominated by peripheral devices. Since battery technologies alone have been unable to provide the lifetimes required by many platforms, in order to conserve energy, most devices provide the ability to transition into low power states during idle periods. The resulting energy savings are heavily dependent upon the lengths and number of idle periods experienced by a device. This paper presents an infrastructure designed to take advantage of device low power states by increasing the burstiness of device accesses and idle periods to provide a reduced power profile, and thereby an improvement in battery life. Our approach combines compiler-based source modifications with operating system support to implement a dynamic solution for enhanced energy consumption. We evaluate our infrastructure on an XScale-based embedded platform with a Linux implementation.
机译:移动和嵌入式平台在功能上经历了巨大的进步,这在很大程度上归功于用于存储和通信的相关外围设备的发展。这些I / O设备的加入增加了这些平台的整体功率范围。实际上,移动平台的系统级功耗通常由外围设备控制。由于仅电池技术无法提供许多平台所需的寿命,因此为了节省能源,大多数设备都提供了在空闲期间转换为低功率状态的能力。节省的能源在很大程度上取决于设备所经历的空闲时间的长度和数量。本文提出了一种基础架构,旨在通过增加设备访问的突发性和空闲周期来利用设备低功耗状态,以提供降低的功耗,从而延长电池寿命。我们的方法将基于编译器的源代码修改与操作系统支持相结合,以实现动态解决方案以提高能耗。我们在具有Linux实现的基于XScale的嵌入式平台上评估基础架构。

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