Parallelizing the H.264 decoder on the cell BE architecture

Yongjin Cho, Seungkyun Kim, Jaejin Lee, Heonshik Shin
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引用次数: 10

Abstract

In this paper, we propose parallelization and optimization techniques of the H.264 decoder for the Cell BE processor. We exploit both frame-level parallelism and macroblock pipelining. The major bottleneck in achieving the real-time performance is the entropy decoding stage, CABAC. Our decoder eliminates this bottleneck by exploiting the frame-level parallelism available in the entropy decoding stage. A macroblock software cache and a prefetching technique for the cache are used to facilitate macroblock pipelining. In addition, an asynchronous macroblock buffering technique is used to eliminate the effect of load imbalance between pipeline stages. We evaluate the effectiveness of our approach by implementing a parallel H.264 decoder on an IBM Cell blade server. The evaluation results indicate that our parallel H.264 decoder (with CABAC entropy decoding) on a single Cell BE processor meets the real-time requirement of the full HD standard at level 4.0. Moreover, our decoder also satisfies the real-time requirement at level 4.1 when an additional Cell BE processor is used.
在cell BE架构上并行化H.264解码器
本文提出了用于Cell BE处理器的H.264解码器的并行化和优化技术。我们利用了帧级并行性和宏块流水线。实现实时性能的主要瓶颈是熵解码阶段(CABAC)。我们的解码器通过利用熵解码阶段可用的帧级并行性来消除这一瓶颈。宏块软件缓存和缓存的预取技术用于促进宏块流水线。此外,采用异步宏块缓冲技术消除了管道各阶段之间负载不平衡的影响。我们通过在IBM Cell刀片服务器上实现并行H.264解码器来评估我们方法的有效性。测试结果表明,我们的并行H.264解码器(CABAC熵解码)在单个Cell BE处理器上满足4.0级全高清标准的实时性要求。此外,当使用额外的Cell BE处理器时,我们的解码器也满足4.1级的实时要求。
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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