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High-throughput block cipher implementations with SIMD

delete2022-11-01
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PRE
AI
R
Runqing Xu
向泽军 封面图
向泽军 (Zejun Xiang) *
D
Da Lin
S
Shasha Zhang
D
Debiao He
X
Xiangyong Zeng
DOI:10.1016/j.jisa.2022.103333delete
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摘要

摘要

En 中文
The development of new technologies has put forward higher requirements for the performance and security of block ciphers. To meet the needs of these situations, Bitslicing is one of the block cipher implementation techniques which can provide high efficiency and resistance to cache-timing attacks. The S-box is usually the most time-consuming component for Bitsliced implementations. In this paper, we present techniques to optimize the S-box implementation and derive the most compact representations available for Bitslicing. Then we show that the efficiency of linear layers can be further improved by introducing a state-of-the-art technique. As a result, our implementations have significant advantages over previous implementations. The throughputs of our AES and SM4 implementations achieve 27068Mbps and 30026Mbps on i5-11335G7, both exceeding the throughput of AES-NI on the same platform.
Keyword:
Bitslice
SIMD
High-throughput
AES
SM4
Fast software implementation

期刊

Journal of Information Security and Applications 封面图
Journal of Information Security and Applications
IF:
3.7
论文数:
1.9K
被引数:
4.9K

机构

H
hubei university
学者数:
1.1W
论文数: 7.0K
被引数: 7
W
wuhan university
学者数:
8.1W
论文数: 5.8W
被引数: 70
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