Methods for implementing the Kuznyechik algorithm on FPGAs

I. I. Kalistru, M. Borodin, A. Rybkin, R. A. Gladko
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引用次数: 1

Abstract

Increased volumes and speed of data transmission over computer networks, and also the need to protect the transmitted data, require accordingly to increase the speed of cryptographic data processing. One of the ways to achieve high performance is implementation of FPGAs-based cryptographic equipment. Therewith, to cut the cost of equipment, it is important that encryption modules shall consume a minimum possible hardware resources. The work aims to find the most compact high-speed solution for FPGA-based Kuznyechik block cipher. Several methods for hardware implementation of linear transformation, which is used in Kuznyechik cipher, have been reviewed. Various aspects of implementation of these methods taking into account the architecture of target FPGAs are investigated. We also consider aspects of the FPGA implementation of nonlinear transformation, which is used in Kuznyechik block cipher. Resource consumption by various implemented solutions of linear transformation has been estimated. A relatively compact high-speed implemented solution of Kuznyechik block cipher has been obtained and tested on the real equipment. The achieved values of speed for iterative and fully pipelined implementations of the algorithm have been presented.
在FPGA上实现Kuznyechik算法的方法
计算机网络上数据传输量和速度的增加,以及保护传输数据的需要,相应地需要提高加密数据处理的速度。实现高性能的方法之一是实现基于FPGA的加密设备。因此,为了降低设备成本,重要的是加密模块应消耗尽可能少的硬件资源。该工作旨在为基于FPGA的Kuznyechik分组密码找到最紧凑的高速解决方案。介绍了库兹涅奇克密码中线性变换的几种硬件实现方法。考虑到目标FPGA的架构,研究了这些方法的实现的各个方面。我们还考虑了用于Kuznyechik分组密码的非线性变换的FPGA实现。已经估计了线性变换的各种实现的解决方案的资源消耗。获得了一个相对紧凑的Kuznyechik分组密码的高速实现方案,并在实际设备上进行了测试。已经给出了该算法的迭代和完全流水线实现的速度值。
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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