粗粒度可重构阵列DSP体系结构的动态上下文管理

Yanliang Liu, Pengyu Dai, Xin'an Wang, Xing Zhang, Lai Wei, Yan Zhou, Yachun Sun
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引用次数: 1

摘要

针对粗粒度可重构阵列DSP架构,提出了一种新的动态上下文管理方案,有效地降低了功耗,加快了可重构进程。该技术允许在后台加载配置数据,而不会中断常规执行,使计算与重新配置重叠。如果下一个配置出现在一个备用上下文中,则可以切换存储的配置,从而大大减少重新配置的开销。该技术在H.264离散余弦变换(DCT)的ReMAP(可重构多媒体阵列处理器)中得到了验证,其性能比其他DSP和多媒体扩展架构高出1.2倍至6.2倍。ReMAP采用中芯国际0.18um CMOS工艺制作,主要用于多媒体应用1。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dynamic context management for coarse-grained reconfigurable array DSP architecture
This paper proposes a novel technique of dynamic context management scheme for coarse-grained reconfigurable array DSP architecture, which effectively reduces the power consumption and speedup reconfigurable process. The technique permits background loading of configuration data without interrupting the regular execution, overlapping computation with reconfiguration. And stored configurations can be switched dramatically reducing reconfiguration overhead if the next configuration is present in one of the alternate contexts. The proposed technique has been verified in ReMAP (Reconfigurable Multi-media Array Processors) with the Discrete Cosine Transform (DCT) of H.264 and its performance exceed other DSP and multimedia extension architectures by 1.2x to 6.2x. ReMAP was fabricated with SMIC's 0.18um CMOS process mainly for multi-media applications1.
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