Algebraic techniques in the memory size computation of multimedia processing applications

Hongwei Zhu, Karthik Cbandramouli, Yan Yue, F. Balasa
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引用次数: 1

Abstract

In real-time multimedia processing systems a very large part of the power consumption is due to the data storage and data transfer. Moreover, the area cost is often largely dominated by memories. Hence, the optimization of the memory architecture is a crucial step in the design methodology for this type of applications. In deriving an optimized memory architecture, memory size computation is an important step in the data transfer and storage exploration stage. This work investigates non-scalar methods for computing the memory size in real-time multimedia algorithms. The approach is based on more recent algebraic techniques specific to the data-flow analysis used in modem compilers. In contrast with previous works which utilize only approximate methods due to the size of the problems (in terms of number of scalars) and single-assignment specifications, this research aims to obtain exact determinations even for large applications.
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代数技术在多媒体处理中内存大小计算中的应用
在实时多媒体处理系统中,很大一部分功耗来自于数据的存储和传输。此外,面积成本通常主要由存储器控制。因此,在这类应用程序的设计方法中,内存架构的优化是至关重要的一步。在导出优化的存储器结构时,存储器大小的计算是数据传输和存储探索阶段的重要步骤。本文研究了实时多媒体算法中计算内存大小的非标量方法。该方法基于现代编译器中使用的数据流分析的最新代数技术。与以往的工作相比,由于问题的规模(就标量数量而言)和单一分配规范,仅使用近似方法,本研究旨在即使对于大型应用也能获得精确的确定。
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