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题名Yet Another Improvement of Plantard Arithmetic for Faster Kyber on Low-End 32-bit IoT Devices
作者
发表日期2024
发表期刊IEEE Transactions on Information Forensics and Security
ISSN/eISSN1556-6013
卷号19页码:3800-3813
摘要

In 2022, the National Institute of Standards and Technology (NIST) made an announcement regarding the standardization of Post-Quantum Cryptography (PQC) candidates. Out of all the Key Encapsulation Mechanism (KEM) schemes, the CRYSTAL-Kyber emerged as the sole winner. This paper presents another improved version of Plantard arithmetic that could speed up Kyber implementations on two low-end 32-bit IoT platforms (ARM Cortex-M3 and RISC-V) without SIMD extensions. Specifically, we further enlarge the input range of the Plantard arithmetic without modifying its computation steps. After tailoring the Plantard arithmetic for Kyber's modulus, we show that the input range of the Plantard multiplication by a constant is at least {2.14times } larger than the original design in TCHES2022. Then, two optimization techniques for efficient Plantard arithmetic on Cortex-M3 and RISC-V are presented. We show that the Plantard arithmetic supersedes both Montgomery and Barrett arithmetic on low-end 32-bit platforms. With the enlarged input range and the efficient implementation of the Plantard arithmetic on these platforms, we propose various optimization strategies for NTT/INTT. We minimize or entirely eliminate the modular reduction of coefficients in NTT/INTT by taking advantage of the larger input range of the proposed Plantard arithmetic on low-end 32-bit platforms. Furthermore, we propose two memory optimization strategies that reduce 23.50%28.31% stack usage for the speed-version Kyber implementation when compared to its counterpart on Cortex-M4. The proposed optimizations make the speed-version implementation more feasible on low-end IoT devices. Thanks to the aforementioned optimizations, our NTT/INTT implementation shows considerable speedups compared to the state-of-the-art work. Overall, we demonstrate the applicability of the speed-version Kyber implementation on memory-constrained IoT platforms and set new speed records for Kyber on these platforms.

关键词Cortex-M3 Kyber Plantard arithmetic Post-quantum cryptography RISC-V
DOI10.1109/TIFS.2024.3371369
URL查看来源
收录类别SCIE
语种英语English
WOS研究方向Computer Science ; Engineering
WOS类目Computer Science, Theory & Methods ; Engineering, Electrical & Electronic
WOS记录号WOS:001214653000037
Scopus入藏号2-s2.0-85186993061
引用统计
被引频次:11[WOS]   [WOS记录]     [WOS相关记录]
文献类型期刊论文
条目标识符https://repository.uic.edu.cn/handle/39GCC9TT/11672
专题理工科技学院
通讯作者Chen, Donglong
作者单位
1.BNU-HKBU United International College,Guangdong Provincial Key Laboratory of Interdisciplinary Research and Application for Data Science,Zhuhai,519088,China
2.Hong Kong Baptist University,Department of Computer Science,Hong Kong
3.Nanjing University of Aeronautics and Astronautics,College of Computer Science and Technology,Nanjing,210016,China
4.Zhejiang Lab,Hangzhou,310000,China
5.City University of Hong Kong,Department of Electrical Engineering,Hong Kong
6.Iǧdir University,Department of Computer Engineering,Iǧdir,76000,Turkey
7.University of California,Santa Barbara,Department of Computer Science,Santa Barbara,93106,United States
第一作者单位北师香港浸会大学
通讯作者单位北师香港浸会大学
推荐引用方式
GB/T 7714
Huang, Junhao,Zhao, Haosong,Zhang, Jipenget al. Yet Another Improvement of Plantard Arithmetic for Faster Kyber on Low-End 32-bit IoT Devices[J]. IEEE Transactions on Information Forensics and Security, 2024, 19: 3800-3813.
APA Huang, Junhao., Zhao, Haosong., Zhang, Jipeng., Dai, Wangchen., Zhou, Lu., .. & Chen, Donglong. (2024). Yet Another Improvement of Plantard Arithmetic for Faster Kyber on Low-End 32-bit IoT Devices. IEEE Transactions on Information Forensics and Security, 19, 3800-3813.
MLA Huang, Junhao,et al."Yet Another Improvement of Plantard Arithmetic for Faster Kyber on Low-End 32-bit IoT Devices". IEEE Transactions on Information Forensics and Security 19(2024): 3800-3813.
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