Bit-Sliced Binary Normal Basis Multiplication

B. Brumley, D. Page
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引用次数: 2

Abstract

The performance of many cryptographic primitives is reliant on efficient algorithms and implementation techniques for arithmetic in binary fields. While dedicated hardware support for said arithmetic is an emerging trend, the study of software-only implementation techniques remains important for legacy or non-equipped processors. One such technique is that of software-based bit-slicing. In the context of binary fields, this is an interesting option since there is extensive previous work on bit-oriented designs for arithmetic in hardware, such designs are intuitively well suited to bit-slicing in software. In this paper we harness previous work, using it to investigate bit-sliced, software-only implementation arithmetic for binary fields, over a range of practical field sizes and using a normal basis representation. We apply our results to demonstrate significant performance improvements for a stream cipher, and over the frequently employed Ning-Yin approach to normal basis implementation in software.
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位切片二进制正基乘法
许多密码原语的性能依赖于有效的算法和二进制字段的算术实现技术。虽然对上述算法的专用硬件支持是一种新兴趋势,但研究纯软件实现技术对于遗留或未配备的处理器仍然很重要。其中一种技术就是基于软件的位切片技术。在二进制字段的上下文中,这是一个有趣的选择,因为之前有大量关于硬件中算法的面向位设计的工作,这种设计直观地非常适合于软件中的位切片。在本文中,我们利用以前的工作,使用它来研究二进制字段的位切片,仅软件实现算法,在一系列实际字段大小和使用正常基表示。我们将我们的结果应用于流密码的显着性能改进,并将经常使用的宁阴方法应用于软件中的正常基实现。
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