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引用次数: 3

摘要

线性密码分析是一种基于识别密码的线性近似的密码分析的一般形式。它是对分组密码使用最广泛的两种攻击之一。为了抵抗差分密码分析,分组密码中采用了输出位数较大的s盒,如CAST-128和CAST-256使用了8 × 32 s盒。此外,为了抵抗线性密码分析,s盒通常是基于弯曲函数构造的,并且s盒是非满射映射。因此,对于大型非满射s盒,由于计算时间难以接受,难以识别输入掩码为零、输出掩码为非零的最佳线性逼近。在本文中,我们将给出一种有效的计算方法,利用并行计算在实际时间内找到非满射大s盒的最佳线性逼近。这种计算方法有助于估计具有这种s盒的分组密码的某种线性密码分析的抗扰性。
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How to search linear approximation for large non-surjective S-box
Linear cryptanalysis is a general form of cryptanalysis based on identifying the linear approximations of a cipher. It is one of the two most widely used attacks on block ciphers. In order to resist the differential cryptanalysis, the S-box with large output bit number is applied in block cipher, for example CAST-128 and CAST-256 use the 8 × 32 S-boxes. In addition, the S-boxes are often constructed based on bent functions to resist the linear cryptanalysis and the S-boxes are non-surjective mapping. Therefore, for the large non-surjective S-box, to identify the best linear approximation with zero input mask and nonzero output mask is difficult due to the unaccepted computation time. In this paper, we will give an efficient computing method to find such best linear approximations for the non-surjective large S-boxes using parallel computation in practical time. This computing method can help to estimate the resistant property for some kind of linear cryptanalysis of block ciphers with this kind of S-box.
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