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A circuit-driven design methodology for video signal-processing datapath elements

机译:一种用于视频信号处理数据路径元素的电路驱动设计方法

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The programmable video signal processor (VSP) is an important category of processors for multimedia systems. Programmable video processors combine the flexibility of programmability with special architectural features that improve performance on video processing applications. VSPs are typically multiple processors with several processing elements (PEs) and a parallel memory system. This paper focuses on the architectural design of the PE's in a video processor and shows how technology and circuit parameters influence the structure of the datapath and, hence, the overall architecture of a programmable VSP. We emphasize the need to consider technological and circuit-level issues during the design of a system architecture and present a method whereby the conceptual organization of the PEs-the number of PEs, pipelining of the datapath, size of the register file, and number of register ports-can be evaluated in terms of a target set of applications before a detailed design is undertaken. We use motion-estimation and discrete cosine transform as example applications to illustrate how various technology parameters affect the architectural design choices. We show that the design of the register file and the datapath-pipeline depth can drastically affect PE utilization and, therefore, the number of PEs required for different applications. Our results demonstrate that pursuing the fastest cycle time can greatly increase the silicon area which must be devoted to PEs, due to both increased pipeline latency and reduced register file bandwidth.
机译:可编程视频信号处理器(VSP)是多媒体系统处理器的重要类别。可编程视频处理器将可编程的灵活性与特殊的体系结构功能相结合,可提高视频处理应用程序的性能。 VSP通常是具有多个处理元件(PE)和并行存储系统的多个处理器。本文着重介绍视频处理器中PE的体系结构设计,并说明技术和电路参数如何影响数据路径的结构,从而影响可编程VSP的整体体系结构。我们强调需要在系统体系结构的设计过程中考虑技术和电路级别的问题,并提出一种方法,通过这些方法,PE的概念性组织-PE的数量,数据路径的流水线化,寄存器文件的大小以及寄存器端口-可以在进行详细设计之前根据目标应用程序进行评估。我们以运动估计和离散余弦变换为例,说明各种技术参数如何影响建筑设计选择。我们表明,寄存器文件的设计和数据路径流水线深度会极大地影响PE利用率,因此会影响不同应用程序所需的PE数量。我们的结果表明,由于增加了流水线延迟和减少了寄存器文件带宽,追求最快的循环时间可以大大增加必须专用于PE的硅面积。

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