基于算术优化操作链的灵活数据路径综合

S. Xydis, I. Triantafyllou, G. Economakos, K. Pekmestzi
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引用次数: 17

摘要

包含复杂操作模板的数据路径合成已被证明是非常有效的,特别是在数字信号处理(DSP)应用领域。然而,仅报告了操作模板的规范和实现的体系结构级优化。本文介绍了基于模板的数据路径综合中算法级优化的考虑。提出了一种实现DSP内核的高性能体系结构。它基于能够执行大量操作模板的灵活且经过算法优化的组件。本文还提出了一种将DSP内核优化映射到所提出的体系结构上的综合方法。实验结果显示,与先前发布的灵活的基于模板的数据路径相比,该方法在执行时间、有效芯片面积和功耗方面有显著提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Flexible Datapath Synthesis through Arithmetically Optimized Operation Chaining
Datapath synthesis incorporating complex operation templates has been proven extremely efficient especially for the Digital Signal Processing (DSP) application domain.However, only architectural level optimizations have been reported for the specification and implementation of the operation templates. This paper introduces the consideration of arithmetic level optimizations for template based datapath synthesis. A high performance architecture for the implementation of DSP kernels is presented. It is based on flexible and arithmetically optimized components able to perform a large set of operation templates. A synthesis methodology for optimized mapping of DSP kernels onto the proposed architecture is also presented. Experimental results are reported showing significant gains in execution time, active chip area and power dissipation in comparison to previously published flexible template-based data paths.
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