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On Reverse-Engineering S-Boxes with Hidden Design Criteria or Structure

机译:在具有隐藏设计标准或结构的逆向工程S箱上

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S-Boxes are the key components of many cryptographic primitives and designing them to improve resilience to attacks such as linear or differential cryptanalysis is well understood. In this paper, we investigate techniques that can be used to reverse-engineer S-box design and illustrate those by studying the S-Box F of the Skipjack block cipher whose design process so far remained secret. We first show that the linear properties of F are far from random and propose a design criteria, along with an algorithm which generates S-Boxes very similar to that of Skipjack. Then we consider more general S-box decomposition problems and propose new methods for decomposing S-Boxes built from arithmetic operations or as a Feistel Network of up to 5 rounds. Finally, we develop an S-box generating algorithm which can fix a large number of DDT entries to the values chosen by the designer. We demonstrate this algorithm by embedding images into the visual representation of S-box's DDT.
机译:S盒是许多加密基元的关键组成部分,并设计它们以改善攻击的攻击性,诸如线性或差异密码分析的攻击。 在本文中,我们研究了可用于逆向工程师S盒设计的技术,并通过研究迄今为止其设计过程的Skipjack块密码的S盒F来说明这些技术。 首先表明F的线性属性远远无随机,并提出设计标准,以及一种算法,该算法产生与Skipjack非常相似的S箱。 然后,我们考虑更多的S盒分解问题,并提出了用于分解由算术运算构建的S盒的新方法,或者是最多5轮的Feistel网络。 最后,我们开发了一个S-Box生成算法,可以将大量DDT条目固定到设计者选择的值。 我们通过将图像嵌入到S-Box DDT的视觉表示中来展示该算法。

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