arXiv Open Access 2023

TPU as Cryptographic Accelerator

Rabimba Karanjai Sangwon Shin and Wujie Xiong Xinxin Fan Lin Chen +6 lainnya
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Abstrak

Cryptographic schemes like Fully Homomorphic Encryption (FHE) and Zero-Knowledge Proofs (ZKPs), while offering powerful privacy-preserving capabilities, are often hindered by their computational complexity. Polynomial multiplication, a core operation in these schemes, is a major performance bottleneck. While algorithmic advancements and specialized hardware like GPUs and FPGAs have shown promise in accelerating these computations, the recent surge in AI accelerators (TPUs/NPUs) presents a new opportunity. This paper explores the potential of leveraging TPUs/NPUs to accelerate polynomial multiplication, thereby enhancing the performance of FHE and ZKP schemes. We present techniques to adapt polynomial multiplication to these AI-centric architectures and provide a preliminary evaluation of their effectiveness. We also discuss current limitations and outline future directions for further performance improvements, paving the way for wider adoption of advanced cryptographic tools.

Topik & Kata Kunci

Penulis (11)

R

Rabimba Karanjai

S

Sangwon Shin

a

and Wujie Xiong

X

Xinxin Fan

L

Lin Chen

T

Tianwei Zhang

T

Taeweon Suh

W

Weidong Shi

V

Veronika Kuchta

F

Francesco Sica

L

Lei Xu

Format Sitasi

Karanjai, R., Shin, S., Xiong, a.W., Fan, X., Chen, L., Zhang, T. et al. (2023). TPU as Cryptographic Accelerator. https://arxiv.org/abs/2307.06554

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Informasi Jurnal
Tahun Terbit
2023
Bahasa
en
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arXiv
Akses
Open Access ✓