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Realistic Task Parallelization of the H.264 Decoding Algorithm for Multiprocessors

机译:用于多处理器的H.264解码算法的现实任务并行化

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摘要

There is a phenomenon that hardware technology has developed ahead of software technology in recent years. Companies lack of software techniques that can fully utilize the modern multi-core computing resources, mainly due to the difficulty of investigating the inherent parallelism inside a software. This problem exists in products ranging from energy-sensitive smartphones to performance-eager data centers. In this paper, we present a case study on the parallelization of the complex industry standard H.264 HDTV decoder application in multi-core systems. An optimal schedule of the tasks is obtained and implemented by a carefully-defined software parallelization framework (SPF). The parallel software framework is proposed together with a set of rules to direct parallel software programming (PSPR). A pre-processing phase based on the rules is applied to the source code to make the SPF applicable. The task-level parallel version of the H.264 decoder is implemented and tested extensively on a workstation running Linux. Significant performance improvement is observed for a set of benchmarks composed of 720p videos. The SPF and the PSPR will together serve as a reference for future parallel software implementations and direct the development of automated tools.
机译:近年来,存在硬件技术领先于软件技术的现象。公司缺乏能够充分利用现代多核计算资源的软件技术,这主要是由于难以调查软件内部固有的并行性。从对能源敏感的智能手机到渴望性能的数据中心,产品中都存在此问题。在本文中,我们将对复杂行业标准H.264 HDTV解码器在多核系统中的并行化应用进行案例研究。通过精心定义的软件并行化框架(SPF)获得并实施任务的最佳计划。提出了并行软件框架以及一组指导并行软件编程(PSPR)的规则。基于规则的预处理阶段将应用于源代码以使SPF适用。 H.264解码器的任务级并行版本已在运行Linux的工作站上进行了广泛的测试。对于由720p视频组成的一组基准,观察到了显着的性能改善。 SPF和PSPR将共同作为将来并行软件实现的参考,并指导自动化工具的开发。

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