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Program Energy-Hotspot Detection and Removal: A Static Analysis Approach

机译:程序能量热点的检测和消除:一种静态分析方法

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The major energy-hungry components in today’s battery-operated embedded devices are mostly peripheral modules like LTE, WiFi, GPS, etc. Inefficient use of these modules causes energy hotspots, namely segments of the embedded software in which the module wastes energy. We study two such hotspots in the current paper, and provide the corresponding detection and removal algorithms based on static analysis techniques. The program code hotspots occur due to unnecessary releasing and re-acquiring of a module (which puts the module in power saving mode for a while) and misplaced acquiring of the module (which makes the module or processor to waste energy in idle mode). The detections are performed according to some relation between extreme (worst-case/best-case) execution times of some program segments and time/energy specifications of the module. The experimental results on our benchmarks show about 28 percent of energy reduction after the hotspot removals.
机译:当今,电池供电的嵌入式设备中主要的耗能组件主要是外围模块,例如LTE,WiFi,GPS等。这些模块的使用效率不高会引起能源热点,即嵌入式软件的某些模块在其中浪费能量。我们在本文中研究了两个这样的热点,并基于静态分析技术提供了相应的检测和去除算法。程序代码热点的出现是由于不必要地释放和重新获取模块(这会使模块处于省电模式一段时间)和放错位置获取模块(这会使模块或处理器在空闲模式下浪费能量)。根据某些程序段的极端(最坏情况/最佳情况)执行时间与模块的时间/能量规格之间的某种关系来执行检测。我们基准测试的结果表明,去除热点后,能源消耗减少了约28%。

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