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Accelerating Scalar Conversion for Koblitz Curve Cryptoprocessors on Hardware Platforms

机译:在硬件平台上加速Koblitz曲线加密处理器的标量转换

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Koblitz curves are a class of computationally efficient elliptic curves where scalar multiplications can be accelerated using NAF representations of scalars. However, conversion from an integer scalar to a short NAF is a costly operation. In this paper, we improve the recently proposed scalar conversion scheme based on division by . We apply two levels of optimizations in the scalar conversion architecture. First, we reduce the number of long integer subtractions during the scalar conversion. This optimization reduces the computation cost and also simplifies the critical paths present in the conversion architecture. Then we implement pipelines in the architecture. The pipeline splitting increases the operating frequency without increasing the number of cycles. We have provided detailed experimental results to support our claims made in this paper.
机译:Koblitz曲线是一类计算有效的椭圆曲线,其中标量乘法可以使用标量的NAF表示来加速。但是,从整数标量转换为较短的NAF是一项昂贵的操作。在本文中,我们改进了最近提出的基于除法的标量转换方案。我们在标量转换体系结构中应用了两个级别的优化。首先,我们减少标量转换期间的长整数减法数。这种优化降低了计算成本,还简化了转换体系结构中存在的关键路径。然后,我们在体系结构中实现管道。流水线分割会增加工作频率,而不会增加循环数。我们提供了详细的实验结果来支持我们在本文中提出的主张。

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