Further Results on Efficient Implementations of Block Cipher Linear Layers
Author:
Affiliation:
1. LASEC, École Polytechnique Fédérale de Lausanne
2. Sony Corporation
3. Graduate School of Applied Informatics, University of Hyogo
Publisher
Institute of Electronics, Information and Communications Engineers (IEICE)
Subject
Applied Mathematics,Electrical and Electronic Engineering,Computer Graphics and Computer-Aided Design,Signal Processing
Link
https://www.jstage.jst.go.jp/article/transfun/E104.A/1/E104.A_2020CIP0013/_pdf
Reference41 articles.
1. [1] M.R. Albrecht, B. Driessen, E.B. Kavun, G. Leander, C. Paar, and T. Yalçin, “Block ciphers — Focus on the linear layer (feat. PRIDE),” Advances in Cryptology-CRYPTO 2014-34th Annual Cryptology Conference, Santa Barbara, CA, USA, Aug. 2014, Proceedings, Part I, pp.57-76, 2014. 10.1007/978-3-662-44371-2_4
2. [2] D. Augot and M. Finiasz, “Direct construction of recursive MDS diffusion layers using shortened BCH codes, Fast Software Encryption-21st International Workshop, FSE 2014, London, UK, March 2014. Revised Selected Papers, pp.3-17, 2014. 10.1007/978-3-662-46706-0_1
3. [3] R. Avanzi, “The QARMA block cipher family. Almost MDS matrices over rings with zero divisors, nearly symmetric even-mansour constructions with non-involutory central rounds, and search heuristics for low-latency s-boxes,” IACR Trans. Symmetric Cryptol., vol.2017, no.1, pp.4-44, 2017. 10.46586/tosc.v2017.i1.4-44
4. [4] S. Banik, A. Bogdanov, T. Isobe, K. Shibutani, H. Hiwatari, T. Akishita, and F. Regazzoni, “Midori: A block cipher for low energy,” ASIACRYPT (2), T. Iwata and J.H. Cheon, eds., volume 9453 of Lecture Notes in Computer Science, pp.411-436, Springer, 2015. 10.1007/978-3-662-48800-3_17
5. [5] S. Banik, A. Bogdanov, and F. Regazzoni, “Exploring energy efficiency of lightweight block ciphers,” SAC, O. Dunkelman and L. Keliher, eds., volume 9566 of Lecture Notes in Computer Science, pp.178-194, Springer, 2015. 10.1007/978-3-319-31301-6_10
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