Exploring the Advantages and Challenges of Fermat NTT in FHE Acceleration
Andrey Kim, Ahmet Can Mert, Anisha Mukherjee, Aikata, Maxim Deryabin, Sunmin Kwon, HyungChul Kang, Sujoy Sinha Roy
Abstract
Recognizing the importance of a fast and resource-efficient polynomial multiplication in homomorphic encryption, in this paper, we design a multiplier-less number theoretic transform using a Fermat number as an auxiliary modulus. To make this algorithm scalable with the degree of polynomial, we apply a univariate to multivariate polynomial ring transformation. We develop an accelerator architecture for fully homomorphic encryption using these algorithmic techniques for efficient multivariate polynomial multiplication. For practical homomorphic encryption application benchmarks, the hardware accelerator achieves a 1,200 speed-up compared to software implementations. Finally, we conclude the paper by discussing the advantages and limitations of the proposed polynomial multiplication method.
Ask about this paper
Ask your agent about it.
Lune has read the top-tier papers around this one, so every answer names the papers it rests on.
Your agent calls
Lunesearch_papers
Free to start. No credit card required.
Terminal
Install the CLIlune papers get 024151d4-c1e8-494e-9efa-db6c1fd0d3bbRelated papers
- An NTT/INTT Accelerator with Ultra-High Throughput and Area Efficiency for FHEZhaojun Lu, Weizong Yu, Peng Xu, Wei Wang et al.DAC 2024 · 3 citations
- An Efficient and Scalable Hardware Architecture for Number Theoretic Transform on FPGA with Design AutomationYilan Zhu, Geng Yang, Xingyu Tian, Dilshan Kumarathunga et al.HPCA 2026 · 1 citation
- MATCHA: a fast and energy-efficient accelerator for fully homomorphic encryption over the torusLei Jiang, Qian Lou, Nrushad JoshiDAC 2022 · 58 citations
- BP-NTT: Fast and Compact in-SRAM Number Theoretic Transform with Bit-Parallel Modular MultiplicationJingyao Zhang, Mohsen Imani, Elaheh SadrediniDAC 2023 · 23 citations
- An Enhanced Data Packing Method for General Matrix Multiplication in Brakerski/Fan-Vercauteren SchemeXiangchen Meng, Yan Tan, Zijun Jiang, Yangdi LyuDAC 2025
