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ZUC-256流密码轻量级硬件设计与实现

Lightweight Hardware Design and Implementations of ZUC-256 Stream Cipher on FPGA

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【作者】 李沐崔益军倪子颖王成华刘伟强

【Author】 LI Mu;CUI Yijun;NI Ziying;WANG Chenghua;LIU Weiqiang;Beijing Institute of Satellite Information Engineering;College of Electronic and Information Engineering/College of Integrated Circuits, Nanjing University of Aeronautics and Astronautics;

【通讯作者】 崔益军;

【机构】 北京卫星信息工程研究所南京航空航天大学电子信息工程学院/集成电路学院

【摘要】 ZUC-256是由中国开发的一种应对于5G通信和量子计算机的流密码,该算法主要包含ZUC-256流密码和一种基于该流密码的完整性算法(EIA3)。本文设计了2种不同的ZUC-256流密码轻量级电路结构,以及1种基于ZUC-256流密码的EIA3算法结构。基于FPGA对设计的电路结构和算法结构进行实现,并进行了性能对比。对比结果表明:本文设计的2种电路结构最高达到了6.72 Gb/s的吞吐率,相较于现有的ZUC-256电路设计在速度上提高了45.24%;本文设计的2种电路相较于之前的ZUC-128占用资源更少,在面积上分别减少38.48%和30.90%;本文设计的EIA3算法结构仅用0.71μs即可对128位的数据进行加密。

【Abstract】 ZUC-256 is a stream cipher developed in China for 5G communication and post-quantum,which mainly includes the ZUC-256 stream cipher and the integrity algorithm(EIA3). This paper designs two kinds of hardware structures of ZUC-256 stream cipher and an EIA3 algorithm structure based on ZUC-256.And then the designed structures are implemented based on PFGA,and their performance is compared.Comparison results show that:The two new ZUC-256 designs reach a throughput of 6.72 Gb/s,which is45.24% faster than the current ZUC-256 design,and they uses fewer resources than the previous ZUC-128design,reducing the area by 38.48% and 30.90%,respectively. And the EIA3 algorithm based on ZUC-256 can complete encryption of 128 bit data within 0.71 μs.

【基金】 国家自然科学基金(62134002,62104107);江苏省自然科学基金(BK20210287);中央高校基本科研业务费专项资金(NS2021031)
  • 【文献出处】 数据采集与处理 ,Journal of Data Acquisition and Processing , 编辑部邮箱 ,2022年03期
  • 【分类号】TN918.4
  • 【下载频次】119
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