Polynomial multiplication on embedded vector architectures

Author:

Becker Hanno,Bermudo Mera Jose Maria,Karmakar Angshuman,Yiu Joseph,Verbauwhede Ingrid

Abstract

High-degree, low-precision polynomial arithmetic is a fundamental computational primitive underlying structured lattice based cryptography. Its algorithmic properties and suitability for implementation on different compute platforms is an active area of research, and this article contributes to this line of work: Firstly, we present memory-efficiency and performance improvements for the Toom-Cook/Karatsuba polynomial multiplication strategy. Secondly, we provide implementations of those improvements on Arm® Cortex®-M4 CPU, as well as the newer Cortex-M55 processor, the first M-profile core implementing the M-profile Vector Extension (MVE), also known as Arm® Helium™ technology. We also implement the Number Theoretic Transform (NTT) on the Cortex-M55 processor. We show that despite being singleissue, in-order and offering only 8 vector registers compared to 32 on A-profile SIMD architectures like Arm® Neon™ technology and the Scalable Vector Extension (SVE), by careful register management and instruction scheduling, we can obtain a 3× to 5× performance improvement over already highly optimized implementations on Cortex-M4, while maintaining a low area and energy profile necessary for use in embedded market. Finally, as a real-world application we integrate our multiplication techniques to post-quantum key-encapsulation mechanism Saber

Publisher

Universitatsbibliothek der Ruhr-Universitat Bochum

Subject

General Earth and Planetary Sciences,General Environmental Science

Cited by 3 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. High-speed SABER key encapsulation mechanism in 65nm CMOS;Journal of Cryptographic Engineering;2023-03-29

2. DPCrypto: Acceleration of Post-Quantum Cryptography Using Dot-Product Instructions on GPUs;IEEE Transactions on Circuits and Systems I: Regular Papers;2022-09

3. Efficient Multiplication of Somewhat Small Integers Using Number-Theoretic Transforms;Advances in Information and Computer Security;2022

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