具有片上缓冲约束的流媒体应用的速率分析

A. Maxiaguine, S. Künzli, S. Chakraborty, L. Thiele
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引用次数: 43

摘要

在将流(如多媒体或网络数据包处理)应用程序映射到指定的体系结构时,一个重要的问题是确定对于任何给定映射,体系结构可以支持的输入流速率。这受制于典型的约束,例如片上缓冲区不应该溢出,指定的播放缓冲区(提供音频或视频设备)不应该下溢,以便保持音频/视频输出的质量。这个问题的主要困难来自流处理算法的执行时间的高度可变性,以及要处理的流的突发性质。我们提出了流媒体应用的速率分析的数学框架,并通过MPEG-2解码器应用的详细案例研究说明了其可行性。当集成到自动化设计空间探索的工具中时,这样的分析可以用于不同流处理架构的快速性能评估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Rate analysis for streaming applications with on-chip buffer constraints
While mapping a streaming (such as multimedia or network packet processing) application onto a specified architecture, an important issue is to determine the input stream rates that can be supported by the architecture for any given mapping. This is subject to typical constraints such as on-chip buffers should not overflow, and specified play out buffers (which feed audio or video devices) should not underflow, so that the quality of the audio/video output is maintained. The main difficulty in this problem arises from the high variability in execution times of stream processing algorithms, coupled with the bursty nature of the streams to be processed. We present a mathematical framework for such a rate analysis for streaming applications, and illustrate its feasibility through a detailed case study of a MPEG-2 decoder application. When integrated into a tool for automated design-space exploration, such an analysis can be used for fast performance evaluation of different stream processing architectures.
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