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A multi-mode energy-efficient double-precision floating-point multiplier

机译:多模式节能双精度浮点乘法器

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Energy-efficiency is among the most important goals of the current IC industry. To achieve this goal each subcomponent of a chip must be optimized for energy). Even though a tremendous amount of research has been dedicated to optimizing floating-point multipliers (FPM) for better performance, efforts are continuously being made to further enhance them, indicating their importance in the computing world. Hence a multi-mode operating energy-efficient FPM is introduced in this work. This double-precision multiplier dynamically adapts to three modes of operations based on the effective precision of the inputs: low-precision, asymmetric, and full modes, where a 24×24, 24×53, or 53×53 fraction multiplication is required, respectively. Due to the highly frequent occurrence of low-precision operands (i.e., the least significant bits of the fraction are zeros), switching between these modes saves energy by avoiding unnecessary bitlevel computations. Results show up to 25% and 21% savings in dynamic energy and total energy, respectively. A two-tier 3DIC FPM design is also proposed to further enhance the performance of the multi-mode FPM.
机译:能源效率是目前IC行业最重要的目标之一。为了实现这一目标,必须针对能量优化芯片的每个子组件)。尽管巨大的研究致力于优化浮点乘子(FPM)以实现更好的性能,但仍然努力进一步增强它们,表明他们在计算世界中的重要性。因此,在这项工作中引入了一种多模式操作节能FPM。这种双精度乘法器根据输入的有效精度动态适应三种操作模式:低精度,不对称和全模式,其中需要24×24,24×53或53×53分倍数,分别。由于高精度频繁发生的低精度操作数(即,部分的零件的最低有效位),通过避免不必要的位尺寸计算,这些模式之间的切换可节省能量。结果分别显示动态能源和总能量高达25%和21%。还提出了一种双层3DIC FPM设计,以进一步增强多模FPM的性能。

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