Area-Efficient Architectures for Large Integer and Quadruple Precision Floating Point Multipliers

M. Jaiswal, R. Cheung
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引用次数: 13

Abstract

Large integer multiplication and floating point multiplication are the two dominating operations for many scientific and cryptographic applications. Large integer multipliers generally have linearly but high area requirement according to a given bit-width. High precision requirements of a given application lead to the use of quadruple precision arithmetic, however its operation is dominated by large integer multiplication of the mantissa product. In this paper, we propose a hardware efficient approach for implementing a fully pipelined large integer multipliers, and further extending it to Quadruple Precision (QP) floating point multiplication. The proposed design uses less hardware resources in terms of DSP48 blocks and slices, while attaining high performance. Promising results are obtained when compared our designs with the best reported large integer multipliers and also QP floating point multiplier in literatures. For instance, our results have demonstrated a significant improvement for the proposed QP multiplier, for over 50% improvement in terms of the DSP48 block usage with a penalty of slight additional slices, when compared to the best result in the literature on a Virtex-4 device.
大整数和四倍精度浮点乘法器的面积高效架构
大整数乘法和浮点乘法是许多科学和密码学应用程序的两种主要操作。根据给定的位宽,大整数乘法器通常具有线性但高的面积要求。给定应用程序的高精度要求导致使用四倍精度算法,但其操作主要是尾数乘积的大整数乘法。在本文中,我们提出了一种硬件高效的方法来实现全流水线大整数乘法器,并进一步将其扩展到四倍精度(QP)浮点乘法。提出的设计在DSP48块和片方面使用较少的硬件资源,同时获得高性能。将我们的设计与文献中报道的最佳大整数乘法器和QP浮点乘法器进行比较,得到了令人满意的结果。例如,我们的结果表明,与文献中在Virtex-4设备上的最佳结果相比,提议的QP乘法器有了显着的改进,在DSP48块使用方面有了50%以上的改进,只损失了少量额外的切片。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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