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A Novel Reconfigurable Processor Using Dynamically Partitioned SIMD for Multimedia Applications

机译:一种使用动态分区SIMD的新型可重配置处理器,用于多媒体应用

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In this paper, we propose a novel reconfigurable processor using dynamically partitioned single-instruction multiple-data (DP-SIMD) which is able to process multimedia data. The SIMD processor and parallel SIMD (P-SIMD) processor, which is composed of a number of SIMD processors, are usually used these days. But these processors are inefficient because all processing units (PUs) should process the same operations all the time. Moreover, the PUs can process different operations only when every SIMD group operation is predefined. We propose a processor control method which can partition parallel processors into multiple SIMD-based processors dynamically to enhance efficiency. For performance evaluation of the proposed method, we carried out the inverse transform, inverse quantization, and motion compensation operations of H.264 using processors based on SIMD, P-SIMD, and DP-SIMD. Experimental results show that the DP-SIMD control method is more efficient than SIMD and P-SIMD control methods by about 15% and 14%, respectively.
机译:在本文中,我们提出了一种使用动态分区单指令多数据(DP-SIMD)的新型可重构处理器,该处理器能够处理多媒体数据。最近,通常使用SIMD处理器和由许多SIMD处理器组成的并行SIMD(P-SIMD)处理器。但是这些处理器效率低下,因为所有处理单元(PU)始终应处理相同的操作。此外,仅当预定义每个SIMD组操作时,PU才能处理不同的操作。我们提出了一种处理器控制方法,该方法可以将并行处理器动态划分为多个基于SIMD的处理器,以提高效率。为了评估所提出方法的性能,我们使用了基于SIMD,P-SIMD和DP-SIMD的处理器对H.264进行了逆变换,逆量化和运动补偿操作。实验结果表明,DP-SIMD控制方法比SIMD和P-SIMD控制方法的效率分别高出约15%和14%。

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