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Lightweight MDS Involution Matrices

机译:轻量级MDS对合矩阵

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摘要

In this article, we provide new methods to look for lightweight MDS matrices, and in particular involutory ones. By proving many new properties and equivalence classes for various MDS matrices constructions such as circulant, Hadamard, Cauchy and Hadamard-Cauchy, we exhibit new search algorithms that greatly reduce the search space and make lightweight MDS matrices of rather high dimension possible to find. We also explain why the choice of the irreducible polynomial might have a significant impact on the lightweightness, and in contrary to the classical belief, we show that the Hamming weight has no direct impact. Even though we focused our studies on involutory MDS matrices, we also obtained results for non-involutory MDS matrices. Overall, using Hadamard or Hadamard-Cauchy constructions, we provide the (involutory or non-involutory) MDS matrices with the least possible XOR gates for the classical dimensions 4 × 4, 8 × 8, 16 × 16 and 32 × 32 in GF(2~4) and GF(2~8). Compared to the best known matrices, some of our new candidates save up to 50 % on the amount of XOR gates required for an hardware implementation. Finally, our work indicates that involutory MDS matrices are really interesting building blocks for designers as they can be implemented with almost the same number of XOR gates as non-involutory MDS matrices, the latter being usually non-lightweight when the inverse matrix is required.
机译:在本文中,我们提供了寻找轻量级MDS矩阵(尤其是非强制性MDS矩阵)的新方法。通过证明各种MDS矩阵构造(例如循环,Hadamard,Cauchy和Hadamard-Cauchy)的许多新性质和等价类,我们展示了新的搜索算法,该算法大大减少了搜索空间,并使轻量级的MDS矩阵可以找到。我们还解释了为什么不可约多项式的选择可能会对轻量级产生重大影响,并且与经典观点相反,我们证明了汉明权重没有直接影响。即使我们将研究重点放在了非强制性MDS矩阵上,我们也获得了非强制性MDS矩阵的结果。总体而言,使用Hadamard或Hadamard-Cauchy构造,我们为(非或非非自愿)MDS矩阵提供了最小的XOR门,以GF(4)的经典尺寸为4×4、8×8、16×16和32×32 2〜4)和GF(2〜8)。与最知名的矩阵相比,我们的一些新候选方案可节省多达50%的硬件实现所需的XOR门数量。最后,我们的工作表明,对于设计人员来说,非强制性MDS矩阵是真正有趣的构建基块,因为它们可以使用与非非强制性MDS矩阵几乎相同数量的XOR门来实现,当需要逆矩阵时,后者通常是非轻量级的。

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