Configurable Mixed-Radix Number Theoretic Transform Architecture for Lattice-Based Cryptography

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초록

Lattice-based cryptography continues to dominate in the second-round finalists of the National Institute of Standards and Technology post-quantum cryptography standardization process. Computational efficiency is primarily considered to evaluate promising candidates for final round selection. In lattice-based cryptosystems, polynomial multiplication is the most expensive computation and critical to improve the performance. This paper proposes an efficient number theoretic transform (NTT) architecture to accelerate the polynomial multiplication. The proposed design applies mixed-radix multi-path delay feedback architecture and flexibly adopts various polynomial sizes. Configurable NTT design is realized to perform forward and inverse NTT computations on a unified hardware, which is then used to develop an efficient polynomial multiplier. The proposed architectures were successfully accelerated on several Xilinx FPGA platforms to directly compare with state-of-the-art works. The implementation results show that the proposed NTT architectures have comparable area-time product and demonstrate 1.7 similar to 17x performance improvement, and the proposed polynomial multipliers achieve higher performance compared with previous works. Experimental results confirmed the proposed design's applicability for high-speed large-scale data cryptoprocessors.

키워드

Lattice-based cryptographynumber theoretic transformmixed-radixmulti-path delay feedbackpost-quantum cryptography
제목
Configurable Mixed-Radix Number Theoretic Transform Architecture for Lattice-Based Cryptography
저자
Phap Duong-NgocLee, Hanho
DOI
10.1109/ACCESS.2022.3145988
발행일
2022
유형
Article
저널명
IEEE Access
10
페이지
12732 ~ 12741