Improved Fast Correlation Attacks on the Sosemanuk Stream Cipher

IF 1.7 Q3 COMPUTER SCIENCE, SOFTWARE ENGINEERING IACR Transactions on Symmetric Cryptology Pub Date : 2023-12-08 DOI:10.46586/tosc.v2023.i4.83-111
Bin Zhang, Ruitao Liu, Xinxin Gong, Lin Jiao
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Abstract

In this paper, we present a new algorithm for fast correlation attacks on stream ciphers with improved cryptanalysis results on the Sosemanuk stream cipher, one of the 7 finalists in the eSTREAM project in 2008. The new algorithm exploits the direct sum construction of covering codes in decoding phase which approximates the random vectors to a nearest codeword in a linear code. The new strategy provides large flexibility for the adversary and could reduce the time/memory/data complexities significantly. As a case study, we carefully revisit Sosemanuk and demonstrate a state recovery attack with a time complexity of 2134.8, which is 220 times faster than achievable before by the same kind of attack and is the fastest one among all known attacks so far. Our result indicates an inefficiency in longer keys than 135 bits and depicts that the security margin of Sosemanuk is around 28 for the 128-bit security for the first time.
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改进索塞马努克流密码的快速相关性攻击
本文提出了一种对流密码进行快速相关攻击的新算法,并改进了对 2008 年 eSTREAM 项目 7 个入围项目之一的 Sosemanuk 流密码的密码分析结果。新算法利用了覆盖码在解码阶段的直接和构造,它将随机向量近似为线性码中的最近码字。新策略为对手提供了极大的灵活性,并能显著降低时间/内存/数据复杂度。作为一个案例研究,我们仔细地重新研究了 Sosemanuk,并演示了一种时间复杂度为 2134.8 的状态恢复攻击,这比以前同类攻击所能达到的时间复杂度快 220 倍,是迄今为止所有已知攻击中最快的一种。我们的结果表明,长度超过 135 位的密钥效率较低,并首次描述了 128 位安全性的索塞曼纽克安全系数约为 28。
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来源期刊
IACR Transactions on Symmetric Cryptology
IACR Transactions on Symmetric Cryptology Mathematics-Applied Mathematics
CiteScore
5.50
自引率
22.90%
发文量
37
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