Bounding the length of impossible differentials for SPN block ciphers

Author:

Wang QianORCID,Jin Chenhui

Publisher

Springer Science and Business Media LLC

Subject

Applied Mathematics,Computer Science Applications

Reference20 articles.

1. Banik S., Bogdanov A., Isobe T., Shibutani K., Hiwatari H., Akishita T., Regazzoni F.: Midori: a block cipher for low energy. In: T. Iwata, J.H. Cheon (eds.) Advances in Cryptology - ASIACRYPT 2015 - 21st International Conference on the Theory and Application of Cryptology and Information Security, Auckland, New Zealand, November 29 - December 3, 2015, Proceedings, Part II. Lecture Notes in Computer Science, vol. 9453, pp. 411–436. Springer, Berlin (2015).

2. Beierle C., Jean J., Kölbl S., Leander G., Moradi A., Peyrin T., Sasaki Y., Sasdrich P., Sim S.M.: The SKINNY family of block ciphers and its low-latency variant MANTIS. In: M. Robshaw, J. Katz (eds.) Advances in Cryptology - CRYPTO 2016 - 36th Annual International Cryptology Conference, Santa Barbara, CA, USA, August 14-18, 2016, Proceedings, Part II. Lecture Notes in Computer Science, vol. 9815, pp. 123–153. Springer, Berlin (2016).

3. Biham E., Biryukov A., Shamir A.: Cryptanalysis of Skipjack reduced to 31 rounds using impossible differentials. In: J. Stern (ed.) Advances in Cryptology - EUROCRYPT ’99, International Conference on the Theory and Application of Cryptographic Techniques, Prague, Czech Republic, May 2-6, 1999, Proceeding. Lecture Notes in Computer Science, vol. 1592, pp. 12–23. Springer, Berlin (1999).

4. Boura C., Coggia D.: Efficient MILP modelings for sboxes and linear layers of SPN ciphers. IACR Trans. Symmetric Cryptol. 2020(3), 327–361 (2020).

5. Boura C., Lallemand V., Naya-Plasencia M., Suder V.: Making the impossible possible. J. Cryptol. 31(1), 101–133 (2018).

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1. Finding All Impossible Differentials When Considering the DDT;Lecture Notes in Computer Science;2024

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