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Pel reconstruction on FPGA-augmented TriMedia

机译:在FPGA增强的TriMedia上进行Pel重构

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This paper presents a TriMedia processor extended with three reconfigurable designs for entropy decoding (ED), inverse quantization (IQ), and two-dimensional (2-D) inverse discrete cosine transform (IDCT), and assesses the performance gain that is provided by such extensions when performing MPEG2-compliant pel reconstruction. We first describe an extension of the TriMedia architecture, which consists of a multiple-context field programmable gate array (FPGA)-based reconfigurable functional unit (RFU), a configuration unit managing the reconfiguration of the RFU, and their associated instructions. Then, we address the computation of the ED, IQ, and 2-D IDCT tasks, and propose to provide reconfigurable hardware support for a variable-length decoder that can decode two symbols per call (VLD-2), an inverse quantizer that can dequantize four coefficients per call (IQ-4), and an 1-D IDCT (1-D IDCT). The most important aspects concerning the implementation of the FPGA-mapped VLD-2, IQ-4, and 1-D IDCT units, as well as the organization of the software routines calling these FPGA-mapped computing units are outlined. Experimental results indicate that by configuring each of the VLD-2, IQ-4, and 1-D IDCT units on a different FPGA context, and by activating the contexts as needed, the FPGA-augmented TriMedia can perform MPEG2-compliant pel reconstruction with an average speed-up of 1.4× over the standard TriMedia.
机译:本文提出了一种TriMedia处理器,该处理器扩展了三种可重构设计,分别用于熵解码(ED),逆量化(IQ)和二维(2-D)逆离散余弦变换(IDCT),并评估了由执行符合MPEG2的pel重建时的此类扩展。我们首先描述TriMedia体系结构的扩展,它由基于多上下文现场可编程门阵列(FPGA)的可重配置功能单元(RFU),管理RFU的重配置的配置单元及其相关指令组成。然后,我们处理ED,IQ和2-D IDCT任务的计算,并建议为可变长度解码器提供可重新配置的硬件支持,该可变长度解码器可以在每次调用时解码两个符号(VLD-2),该逆量化器可以每次呼叫量化四个系数(IQ-4)和一维IDCT(1-D IDCT)。概述了与FPGA映射的VLD-2,IQ-4和1-D IDCT单元的实现有关的最重要方面,以及调用这些FPGA映射的计算单元的软件例程的组织。实验结果表明,通过在不同的FPGA上下文中配置VLD-2,IQ-4和1-D IDCT单元中的每一个,并根据需要激活上下文,FPGA增强的TriMedia可以执行MPEG2兼容的pel重建,平均速度比标准TriMedia高1.4倍。

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