FPGA-based Accelerator for Post-Quantum Signature Scheme SPHINCS-256

Author:

Amiet Dorian,Curiger Andreas,Zbinden Paul

Abstract

In recent years, a substantial amount of research has been conducted and progress made in the area of quantum computers. Small functional prototypes have already been reported. If they scale as expected, they will eventually be able to break current public-key cryptosystems. The goal of post-quantum cryptography is to develop cryptographic systems that are secure against attacks originating from both quantum and classical computers. Frequently referred post-quantum signature schemes are based on the security of hash functions. A promising candidate in this group is SPHINCS-256. This paper presents the first FPGA-based hardware accelerator for SPHINCS-256. It can be implemented on an entry-level FPGA, occupying roughly 19,000 LUTs, 38,000 FFs and 36 BRAMs. On a Kintex-7 Xilinx FPGA, signing takes 1.53 milliseconds, and verification needs only 65 microseconds. Area and throughput of the accelerator are in a range that outperform today’s widely used RSA signature scheme. The performance can even keep up with ECDSA accelerators. Hence, SPHINCS-256 is a hot candidate to replace RSA and ECDSA in a post-quantum world.

Publisher

Universitatsbibliothek der Ruhr-Universitat Bochum

Subject

General Earth and Planetary Sciences,General Environmental Science

Cited by 7 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. An Efficient Hardware/Software Co-Design for FALCON on Low-End Embedded Systems;IEEE Access;2024

2. Accelerating SLH-DSA by Two Orders of Magnitude with a Single Hash Unit;Lecture Notes in Computer Science;2024

3. Hash-based Digital Signatures- A tutorial review;2023 IEEE International Conference on Public Key Infrastructure and its Applications (PKIA);2023-09-08

4. A Hard Crystal - Implementing Dilithium on Reconfigurable Hardware;Smart Card Research and Advanced Applications;2022

5. Streaming SPHINCS+ for Embedded Devices Using the Example of TPMs;Progress in Cryptology - AFRICACRYPT 2022;2022

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