...
首页> 外文期刊>Signal Processing. Image Communication: A Publication of the the European Association for Signal Processing >Data-parallel intra decoding for block-based image and video coding on massively parallel architectures
【24h】

Data-parallel intra decoding for block-based image and video coding on massively parallel architectures

机译:大规模并行架构上的基于数据并行帧内解码,用于基于块的图像和视频编码

获取原文
获取原文并翻译 | 示例
           

摘要

With the increasing number of processor cores available in modern computing architectures, task or data parallelism is required to maximally exploit the available hardware and achieve optimal processing speed. Current state-of-the-art data-parallel processing methods for decoding image and video bitstreams are limited in parallelism by dependencies introduced by the coding tools and the number of synchronization points introduced by these dependencies, only allowing task or coarse-grain data parallelism. In particular, entropy decoding and data prediction are bottleneck coding tools for parallel image and video decoding. We propose a new data-parallel processing scheme for block-based intra sample and coefficient prediction that allows fine-grain parallelism and is suitable for integration in current and future state-of-the-art image and video codecs. Our prediction scheme enables maximum concurrency, independent of slice or tile configuration, while minimizing synchronization points. This paper describes our data-parallel processing scheme for one- and two-dimensional prediction and investigates its application to block-based image and video codecs using JPEG XR and H.264/AVC Intra as a starting point. We show how our scheme enables faster decoding than the state-of-the-art wavefront method with speedup factors of up to 21.5 and 7.9 for JPEG XR and H.264/AVC Intra coding tools respectively. Using the H.264/AVC Intra coding tool, we discuss the requirements of the algorithm and the impact on decoded image quality when these requirements are not met. Finally, we discuss the impact on coding rate in order to allow for optimal parallel intra decoding.
机译:随着现代计算体系结构中可用处理器内核数量的增加,需要任务或数据并行性以最大程度地利用可用硬件并实现最佳处理速度。当前,用于解码图像和视频比特流的最新数据并行处理方法在并行性方面受到编码工具引入的依赖关系以及这些依赖关系引入的同步点数量的限制,仅允许任务或粗粒度数据并行处理。特别地,熵解码和数据预测是用于并行图像和视频解码的瓶颈编码工具。我们为基于块的帧内样本和系数预测提出了一种新的数据并行处理方案,该方案允许细粒度的并行性,并适合集成在当前和将来的最新图像和视频编解码器中。我们的预测方案可实现最大并发性,而与片或片配置无关,同时将同步点减至最少。本文介绍了我们用于一维和二维预测的数据并行处理方案,并研究了其在以JPEG XR和H.264 / AVC Intra为起点的基于块的图像和视频编解码器中的应用。我们展示了我们的方案如何比最先进的波阵面方法更快地解码,对于JPEG XR和H.264 / AVC帧内编码工具,其加速因子分别高达21.5和7.9。使用H.264 / AVC帧内编码工具,我们讨论了算法的要求以及不满足这些要求时对解码图像质量的影响。最后,我们讨论了对编码率的影响,以便实现最佳的并行帧内解码。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号