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Code Transformations for Embedded Reconfigurable Computing Architectures

机译:嵌入式可重新配置计算架构的代码转换

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Embedded Systems permeate all aspects of our daily life, from the ubiquitous mobile devices (e.g., PDAs and smart-phones) to play-stations, set-top boxes, household appliances, and in every electronic system, be it large or small (e.g., in cars, wrist-watches). Most embedded systems are characterized by stringent design constraints such as reduced memory and computing capacity, severe power and energy restrictions, weight and space limitations, most importantly, very short life spans and thus strict design cycles. Reconfiguration has emerged as a key technology for embedded systems as it offers the promise of increased system performance and component number reduction. Reconfigurable components can be customized or specialized (even dynamically) to the task at hand, thereby executing specific tasks more efficiently leading to possible reductions of the weight and power. In this article, we introduce and discuss compilation techniques for reconfigurable embedded systems. We present specific compiler techniques focusing on source-level code transformations highlighting their potential and the applicability of generative programming techniques to this compilation domain.
机译:嵌入式系统渗透我们日常生活的各个方面,从无处不在的移动设备(例如,PDA和智能手机)到播放站,机顶盒,家用电器和每个电子系统,都是大或小的(例如在汽车,手表中)。大多数嵌入式系统的特点是严格的设计约束,如降低的存储器和计算能力,严重的力量和能量限制,重量和空间限制,最重要的是,寿命非常短,因此严格的设计周期。重新配置已成为嵌入式系统的关键技术,因为它提供了提高系统性能和组件数量减少的承诺。可以将可重构的组件定制或专用(甚至是动态地)到手的任务,从而更有效地执行特定任务,从而可以降低重量和功率。在本文中,我们介绍并讨论可重新配置嵌入式系统的编译技术。我们呈现了专注于源级代码转换的特定编译技术,突出显示了它们的潜力和生成编程技术对此编译域的适用性。

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