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Memory Access Reduced Software Implementation of H.264/AVC Sub-pixel Motion Estimation Using Differential Data Encoding

机译:使用差分数据编码的H.264 / AVC亚像素运动估计的内存访问减少的软件实现

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We studied an efficient software implementation of H.264/AVC sub-pixel motion estimation (ME) algorithm on a VLIW-SIMD digital signal processor, TMS320C6416. The sub-pixel ME algorithm demands large memory accesses while the required arithmetic operations are fairly simple. Although the CPU clock cycles for arithmetic operations can be reduced much by employing sub-word operations and applying software pipelining techniques, the limited memory bandwidth of the architecture restricts the overall performance. Moreover, aggressive VLIW-SIMD optimization results in the degradation of the performance by causing excessive CPU stalls during memory accesses. In this paper, we relieved the memory bandwidth requirements for creating quarter-pixel images by reducing the precision of image data, from 8 bits to 4 bits. As a result, the amount of memory accesses is much reduced at the cost of some increase of the arithmetic operations, which contributes to the balance of arithmetic and memory access operations. The experimental result shows that the memory stall cycles are decreased by 80% and the speed-up of 260% is obtained. The bit rate of the encoded video stream is increased slightly, about 2% on the average, due to the effects of quantization.
机译:我们研究了在VLIW-SIMD数字信号处理器TMS320C6416上H.264 / AVC亚像素运动估计(ME)算法的有效软件实现。亚像素ME算法需要大量的存储器访问,而所需的算术运算却相当简单。尽管通过采用子字运算和应用软件流水线技术可以大大减少用于算术运算的CPU时钟周期,但体系结构的有限内存带宽限制了整体性能。此外,激进的VLIW-SIMD优化会在内存访问期间引起过多的CPU停顿,从而导致性能下降。在本文中,我们通过将图像数据的精度从8位降低到4位,减轻了创建四分之一像素图像的内存带宽要求。结果,以某些增加算术运算为代价大大减少了存储器访问量,这有助于算术和存储器访问运算之间的平衡。实验结果表明,存储器停顿周期减少了80%,加速达到了260%。由于量化的影响,编码视频流的比特率略有增加,平均约为2%。

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