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Input space adaptive design: a high-level methodology for energy and performance optimization

机译:输入空间自适应设计:能源和性能优化的高级方法

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This paper presents a high-level design methodology, called input space adaptive design, and new design automation algorithms for optimizing energy consumption and performance. An input space adaptive design exploits the well-known fact that the quality of hardware circuits and software programs can be significantly optimized by employing algorithms and implementation architectures that adapt to the input statistics. We propose a methodology for such designs which includes identifying parts of the behavior to be optimized, selecting appropriate input sub-spaces, transforming the behavior, and verifying the equivalence of the original and optimized designs. Experimental results indicate that such designs can reduce energy consumption by up to 70.6% (average of 55.4%), and simultaneously improve performance by up to 85.1% (average of 58.1%), leading to a reduction in the energy-delay product by up to 95.6% (average of 80.7%), compared to well-optimized designs that do not employ such techniques.
机译:本文提出了一种高级设计方法,称为输入空间自适应设计,以及用于优化能耗和性能的新型设计自动化算法。输入空间自适应设计利用了众所周知的事实,即可以通过采用适应输入统计数据的算法和实现架构来显着优化硬件电路和软件程序的质量。我们提出了一种针对此类设计的方法,其中包括确定要优化的行为的各个部分,选择适当的输入子空间,转换行为以及验证原始设计和优化设计的等效性。实验结果表明,这样的设计可以减少多达70.6%的能耗(平均55.4%),并同时提高多达85.1%(平均58.1%)的性能,从而使能耗减少的产品最多减少5%。与未采用此类技术的经过优化的设计相比,这一比例达到了95.6%(平均为80.7%)。

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