Towards Automating Cryptographic Hardware Implementations: A Case Study of HQC

Author:

Aguilar-Melchor Carlos,Deneuville Jean-Christophe,Dion Arnaud,Howe James,Malmain Romain,Migliore Vincent,Nawan Mamuri,Nawaz Kashif

Publisher

Springer Nature Switzerland

Reference18 articles.

1. Aguilar Melchor, C., et al.: HQC (2020). updated 06/06/2021) NIST Round 3 submission for Post-Quantum Cryptography

2. Aguilar Melchor, C., Blazy, O., Deneuville, J.C., Gaborit, P., Zémor, G.: Efficient encryption from random quasi-cyclic codes. CoRR abs/1612.05572 (2016)

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

4. Alagic, G., et al.: NIST IR 8413: status report on the third round of the NIST post-quantum cryptography standardization process (2022)

5. Alekhnovich, M.: More on average case vs approximation complexity. In: 44th Annual IEEE Symposium on Foundations of Computer Science, 2003. Proceedings, 298–307. IEEE (2003)

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1. A Versatile and Unified HQC Hardware Accelerator;Lecture Notes in Computer Science;2024

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