An efficient SAT-based algorithm for finding short cycles in cryptographic algorithms

E. Dubrova, M. Teslenko
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引用次数: 3

Abstract

The absence of short cycles is a desirable property for cryptographic algorithms that are iterated. Furthermore, as demonstrated by the cryptanalysis of A5, short cycles can be exploited to reduce the complexity of an attack. We present an algorithm which uses a SAT-based bounded model checking for finding all short cycles of a given length. The existing Boolean Decision Diagram (BDD) based algorithms for finding cycles have limited capacity due to the excessive memory requirements of BDDs. The simulation-based algorithms can be applied to larger problem instances, however, they cannot guarantee the detection of all cycles of a given length. The same holds for general-purpose SAT-based model checkers. The presented algorithm can handle cryptographic algorithms with very large state spaces, including important ciphers such as Trivium and Grain-128. We found that these ciphers contain short cycles whose existence, to our best knowledge, was previously unknown. This potentially opens new possibilities for cryptanalysis.
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一种有效的基于sat的短周期密码算法
对于迭代的密码算法来说,缺少短周期是一个理想的特性。此外,正如A5的密码分析所证明的那样,可以利用短周期来降低攻击的复杂性。我们提出了一种算法,该算法使用基于sat的有界模型检查来查找给定长度的所有短周期。现有的基于布尔决策图(BDD)的循环查找算法由于BDD对内存的需求过大而容量有限。基于仿真的算法可以应用于更大的问题实例,但不能保证检测给定长度的所有循环。这同样适用于通用的基于sat的模型检查器。该算法可以处理具有非常大状态空间的加密算法,包括Trivium和Grain-128等重要密码。我们发现这些密码包含短周期,据我们所知,它们的存在以前是未知的。这为密码分析开辟了新的可能性。
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