Data path refinement algorithm in high-level synthesis based on dynamic programming

A. Rahimi, S. Mohammadi, Aidin Foroughi
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Abstract

As CMOS technology scales down into the deep-submicron domain, the cost of design, complexity and customization for Systems-On-Chip (SoCs) is rapidly increasing due to the inefficiency of traditional CAD tools. In this paper we present a new interactive refinement algorithm in high-level synthesis, based on dynamic programming, which maximizes resource optimization in data path. We start by quantifying the properties of the given application C code in terms of control data flow graph (CDFG), available parallelism and other metrics. We then apply designer guided constraints to a data path refinement algorithm for an initial data path. It attempts to reduce the number of the most expensive components while meeting the constraints. The experimental results show that not only the refined data path outperforms data paths refined by other heuristic methods, but also presents lower cost, less overhead and can be generated in less time.
基于动态规划的高级综合数据路径优化算法
随着CMOS技术进入深亚微米领域,由于传统CAD工具的低效率,系统级芯片(soc)的设计成本、复杂性和定制化正在迅速增加。本文提出了一种基于动态规划的高级综合交互式优化算法,使数据路径上的资源优化最大化。我们首先根据控制数据流图(CDFG)、可用并行性和其他度量来量化给定应用程序C代码的属性。然后,我们将设计器引导的约束应用于初始数据路径的数据路径优化算法。它试图在满足限制条件的同时减少最昂贵组件的数量。实验结果表明,改进后的数据路径不仅优于其他启发式方法改进后的数据路径,而且成本更低、开销更小、生成时间更短。
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