Differential Trail Search in Cryptographic Primitives with Big-Circle Chi: Application to Subterranean

IF 1.7 Q3 COMPUTER SCIENCE, SOFTWARE ENGINEERING IACR Transactions on Symmetric Cryptology Pub Date : 2022-06-10 DOI:10.46586/tosc.v2022.i2.253-288
Alireza Mehrdad, S. Mella, Lorenzo Grassi, J. Daemen
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引用次数: 4

Abstract

Proving upper bounds for the expected differential probability (DP) of differential trails is a standard requirement when proposing a new symmetric primitive. In the case of cryptographic primitives with a bit-oriented round function, such as Keccak, Xoodoo and Subterranean, computer assistance is required in order to prove strong upper bounds on the probability of differential trails. The techniques described in the literature make use of the fact that the non-linear step of the round function is an S-box layer. In the case of Keccak and Xoodoo, the S-boxes are instances of the chi mapping operating on l-bit circles with l equal to 5 and 3 respectively. In that case the differential propagation properties of the non-linear layer can be evaluated efficiently by the use of pre-computed difference distribution tables.Subterranean 2.0 is a recently proposed cipher suite that has exceptionally good energy-efficiency when implemented in hardware (ASIC and FPGA). The non-linear step of its round function is also based on the chi mapping, but operating on an l = 257-bit circle, comprising all the state bits. This making the brute-force approach proposed and used for Keccak and Xoodoo infeasible to apply. Difference propagation through the chi mapping from input to output can be treated using linear algebra thanks to the fact that chi has algebraic degree 2. However, difference propagation from output to input is problematic for big-circle chi. In this paper, we tackle this problem, and present new techniques for the analysis of difference propagation for big-circle chi.We implemented these techniques in a dedicated program to perform differential trail search in Subterranean. Thanks to this, we confirm the maximum DP of 3-round trails found by the designers, we determine the maximum DP of 4-round trails and we improve the upper bounds for the DP of trails over 5, 6, 7 and 8 rounds.
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具有大圆Chi的密码基元差分轨迹搜索:在地下的应用
证明微分轨迹的期望微分概率(DP)的上界是提出新的对称原语时的标准要求。对于像kecak, Xoodoo和subterrean这样具有位导向圆函数的密码原语,需要计算机辅助来证明微分轨迹概率的强上界。文献中描述的技术利用了圆形函数的非线性阶跃是s盒层这一事实。在Keccak和Xoodoo的例子中,s盒是分别在l = 5和3的l位圆上操作的chi映射的实例。在这种情况下,可以使用预先计算的差分分布表有效地评估非线性层的差分传播特性。subterrean 2.0是最近提出的密码套件,在硬件(ASIC和FPGA)中实现时具有非常好的能效。其圆函数的非线性步长也是基于chi映射,但是操作在一个l = 257位的圆上,包含了所有的状态位。这使得kecak和Xoodoo提出并使用的暴力破解方法无法应用。由于chi的代数次为2,通过chi映射从输入到输出的差分传播可以用线性代数来处理。然而,对于大圆chi,从输出到输入的差分传播是有问题的。本文针对这一问题,提出了分析大圆chi差分传播的新方法。我们在一个专门的程序中实现了这些技术,以在地下执行差分轨迹搜索。由此,我们确认了设计师发现的3轮轨迹的最大DP,确定了4轮轨迹的最大DP,并改进了5、6、7、8轮轨迹的DP上限。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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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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