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Memory-access-aware data structure transformations for embedded software with dynamic data accesses

机译:具有动态数据访问功能的嵌入式软件的内存访问感知数据结构转换

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Embedded systems are evolving from traditional, stand-alone devices to devices that participate in Internet activity. The days of simple, manifest embedded software [e.g. a simple finite-impulse response (FIR) algorithm on a digital signal processor (DSP] are over. Complex, nonmanifest code, executed on a variety of embedded platforms in a distributed manner, characterizes next generation embedded software. One dominant niche, which we concentrate on, is embedded, multimedia software. The need is present to map large scale, dynamic, multimedia software onto an embedded system in a systematic and highly optimized manner. The objective of this paper is to introduce high-level, systematically applicable, data structure transformations and to show in detail the practical feasibility of our optimizations on three real-life multimedia case studies. We derive Pareto tradeoff points in terms of accesses versus memory footprint and obtain significant gains in execution time and power consumption with respect to the initial implementation choices. Our approach is a first step to systematically applying high-level data structure transformations in the context of memory-efficient and low-power multimedia systems.
机译:嵌入式系统正在从传统的独立设备发展为参与Internet活动的设备。简单明了的嵌入式软件的时代[例如一种简单的数字信号处理器(DSP)上的有限冲激响应(FIR)算法已经结束,复杂的非清单代码以分布式的方式在各种嵌入式平台上执行,这是下一代嵌入式软件的特征。专注于嵌入式多媒体软件,因此有必要以系统化,高度优化的方式将大规模,动态的多媒体软件映射到嵌入式系统上,本文的目的是介绍可系统应用的高级数据结构转换,并详细说明我们在三个现实生活中的多媒体案例研究中进行优化的实际可行性,我们从访问量与内存占用量的角度推导了帕累托折衷点,并且相对于最初的实现,获得了显着的执行时间和功耗上的收益我们的方法是在m的背景下系统地应用高级数据结构转换的第一步高效,低功耗的多媒体系统。

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