Memory Optimization Techniques for Computing Discrete Logarithms in Compressed SIKE

Author:

Hutchinson Aaron,Karabina Koray,Pereira Geovandro

Publisher

Springer International Publishing

Reference15 articles.

1. Avizienis, A.: Signed-digit number representations for fast parallel arithmetic. IEEE Trans. Electron. Comput. EC-10, 389–400 (1961)

2. Azarderakhsh, R., et al.: Supersingular isogeny key encapsulation. In: Submission to the 3rd Round of the NIST Post-Quantum Standardization project (2020)

3. Azarderakhsh, R., et al.: Supersingular isogeny key encapsulation. Submission to the 2nd Round of the NIST Post-Quantum Standardization project (2019)

4. Azarderakhsh, R., et al.: Supersingular Isogeny Key Encapsulation. SIKE Team (2020). https://sike.org/

5. Azarderakhsh, R., Jao, D., Kalach, K., Koziel, B., Leonardi, C.: Key compression for isogeny-based cryptosystems. In: Proceedings of the 3rd ACM International Workshop on ASIA Public-Key Cryptography, pp. 1–10 (2016)

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1. Compressed M-SIDH: an instance of compressed SIDH-like schemes with isogenies of highly composite degrees;Designs, Codes and Cryptography;2024-03-05

2. Faster Public-Key Compression of SIDH With Less Memory;IEEE Transactions on Computers;2023-09-01

3. Faster Key Generation of Supersingular Isogeny Diffie-Hellman;IEICE Transactions on Fundamentals of Electronics, Communications and Computer Sciences;2022-12-01

4. Compressed SIKE Round 3 on ARM Cortex-M4;Lecture Notes of the Institute for Computer Sciences, Social Informatics and Telecommunications Engineering;2021

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