Memory access profiling for HEVC encoders

Ana Mativi, Eduarda Monteiro, S. Bampi
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引用次数: 6

Abstract

In this work we present a framework that profiles HEVC (High Efficiency Video Coding) encoders modules focusing on cache memory performance and energy. This framework considers the HEVC reference software (HM) and analyzes the impact of some coding parameters on the cache hierarchy. HEVC was proposed in 2013, presenting new video coding techniques to deal with the demand for higher resolutions. The tools included in the HEVC increase significantly the computational effort and energy consumption required to encode videos when compared to its predecessor, H.264/AVC. For this analysis we used the proposed framework MAP-HEVC (Memory Access Profiling for HEVC) considering seven different video coding configurations and four video resolutions. In the prediction module, the results showed that using Full Search (FS) results in 75% more accesses than using Test Zonal (TZ) Search. The results also suggest that using 16×16 search ranges is a very viable option to reduce the memory accesses achieving a better compression. For the residual coding, the Rate-Distortion Optimized Quantization (RDOQ) was evaluated and our analysis showed that this tool adds 10% more accesses to the memory.
内存访问剖析HEVC编码器
在这项工作中,我们提出了一个框架,介绍了HEVC(高效视频编码)编码器模块,重点关注缓存内存性能和能量。该框架考虑了HEVC参考软件(HM),分析了一些编码参数对缓存层次结构的影响。HEVC于2013年提出,提出了新的视频编码技术来满足更高分辨率的需求。与之前的H.264/AVC相比,HEVC中包含的工具显著增加了编码视频所需的计算量和能耗。在这个分析中,我们使用了提出的框架MAP-HEVC(内存访问分析HEVC),考虑了七种不同的视频编码配置和四种视频分辨率。在预测模块中,结果表明,使用Full Search (FS)的访问次数比使用Test Zonal Search (TZ)的访问次数多75%。结果还表明,使用16×16搜索范围是一个非常可行的选择,可以减少内存访问,从而实现更好的压缩。对于剩余编码,评估了率失真优化量化(RDOQ),我们的分析表明,该工具增加了10%的内存访问。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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