Differential analysis of the NBC algorithm based on mixed integer linear programming model

IF 1.5 Q3 COMPUTER SCIENCE, INFORMATION SYSTEMS Security and Privacy Pub Date : 2023-01-20 DOI:10.1002/spy2.297
Lan Zhang, Bin Yu, Liangsheng He
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Abstract

This paper mainly studies mixed integer linear programming (MILP)‐based cryptanalysis on round‐reduced NBC algorithm with generalized Feistel structure. First, each component of the algorithm is equivalently described by linear inequality equations, and the propagation rules of differential characteristics and linear approximation are described, and an automatic search algorithm model of differential mode and linear mask mode based on MILP is established, and the minimum number of active S‐boxes and the corresponding differential mode and linear mask mode paths are obtained. Second, according to the NBC algorithm's 16‐bit block pull‐wire position permutation characteristics, the optimal full diffusion rounds of NBC‐128 algorithm and NBC‐256 algorithm are obtained by using approximate matrix multiplication theory to be six and eight respectively. Finally, based on the optimal number of full diffusion rounds of the algorithm, an automatic search algorithm model of impossible differential cryptanalysis is established, and the set of input differential patterns is traversed to obtain 11‐round impossible differential distinguishers of NBC‐128 algorithm and 14‐round impossible differential distinguishers of NBC‐256 algorithm respectively.
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基于混合整数线性规划模型的NBC算法的差分分析
本文主要研究了基于混合整数线性规划(MILP)的广义Feistel结构的轮约NBC算法的密码分析。首先,用线性不等式方程等效描述了该算法的各个组成部分,描述了差分特性和线性逼近的传播规律,建立了基于MILP的差分模式和线性掩模模式自动搜索算法模型,得到了最小有效S盒数以及相应的差分模式和线性掩模模式路径。其次,根据NBC算法的16位分组拉线位置置换特性,利用近似矩阵乘法理论得到NBC‐128算法和NBC‐256算法的最优全扩散轮数分别为6和8。最后,基于算法的最优满扩散轮数,建立了不可能差分密码分析的自动搜索算法模型,遍历输入的差分模式集,分别得到NBC‐128算法的11轮不可能差分区分符和NBC‐256算法的14轮不可能差分区分符。
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