A toolbox for software optimization of QC-MDPC code-based cryptosystems

Author:

Drucker Nir,Gueron Shay

Publisher

Springer Science and Business Media LLC

Subject

Computer Networks and Communications,Software

Reference48 articles.

1. Aguilar, C., Blazy, O., Deneuville, J.C., Gaborit, P., Zémor, G.: Efficient encryption from random quasi-cyclic codes. IEEE Trans. Inf. Theory 64(5), 3927–3943 (2018)

2. Aragon, N., Barreto, P.S.L.M., Bettaieb, S., Bidoux, L., Blazy, O., Deneuville, J.-C., Gaborit, P., Gueron, S., Guneysu, T., Melchor, C.A., Misoczki, R., Persichetti, E., Sendrier, N., Tillich, J.P., Zémor, G.: BIKE: Bit Flipping Key Encapsulation. https://bikesuite.org/spec.html (2017). Retrieved 8 Jan 2019

3. Baldi, M., Chiaraluce, F., Garello, R.: On the usage of quasi-cyclic low-density parity-check codes in the McEliece cryptosystem. In: 2006 First International Conference on Communications and Electronics, pp. 305–310 (2006). https://doi.org/10.1109/CCE.2006.350824

4. Baldi, M., Chiaraluce, F., Garello, R., Mininni, F.: Quasi-cyclic low-density parity-check codes in the McEliece cryptosystem. In: 2007 IEEE International Conference on Communications, pp. 951–956 (2007). https://doi.org/10.1109/ICC.2007.161

5. Baldi, M., Bodrato, M., Chiaraluce, F.: A new analysis of the McEliece cryptosystem based on QC-LDPC codes. In: Security and Cryptography for Networks, pp. 246–262 (2008)

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1. A provably masked implementation of BIKE Key Encapsulation Mechanism;IACR Communications in Cryptology;2024-04-09

2. Fast computation of cyclic convolutions and their applications in code-based asymmetric encryption schemes;Modeling and Analysis of Information Systems;2023-12-11

3. SoK: On Efficacy of the BGF Decoder for QC-MDPC-based Quantum-Safe Cryptosystems;Proceedings of the 10th ACM Asia Public-Key Cryptography Workshop;2023-07-10

4. Weak-Key Analysis for BIKE Post-Quantum Key Encapsulation Mechanism;IEEE Transactions on Information Forensics and Security;2023

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