CryptoPIM: In-memory Acceleration for Lattice-based Cryptographic Hardware
Hamid Nejatollahi, Saransh Gupta, Mohsen Imani, Tajana Simunic Rosing, Rosario Cammarota, Nikil D. Dutt
摘要
Quantum computers promise to solve hard mathematical problems such as integer factorization and discrete logarithms in polynomial time, making standardized public-key cryptosystems insecure. Lattice-Based Cryptography (LBC) is a promising post-quantum public key cryptographic protocol that could replace standardized public key cryptography, thanks to the inherent post-quantum resistant properties, efficiency, and versatility. A key mathematical tool in LBC is the Number Theoretic Transform (NTT), a common method to compute polynomial multiplication. It is the most compute-intensive routine and requires acceleration for practical deployment of LBC protocols. In this paper, we propose CryptoPIM, a high-throughput Processing In-Memory (PIM) accelerator for NTT-based polynomial multiplier with the support of polynomials with degrees up to 32k. Compared to the fastest FPGA implementation of an NTT-based multiplier, CryptoPIM achieves on average 31x throughput improvement with the same energy and only 28% performance reduction, thereby showing promise for practical deployment of LBC.
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- NTT-PIM: Row-Centric Architecture and Mapping for Efficient Number-Theoretic Transform on PIMJaewoo Park, Sugil Lee, Jongeun LeeDAC 2023 · 被引用 18 次
- On Error Correction for Nonvolatile Processing-In-MemoryHüsrev Cilasun, Salonik Resch, Zamshed I. Chowdhury, Masoud Zabihi 等ISCA 2024 · 被引用 11 次
- PIMnet: A Domain-Specific Network for Efficient Collective Communication in Scalable PIMHyojun Son, Gilbert Jonatan, Xiangyu Wu, Haeyoon Cho 等HPCA 2025 · 被引用 7 次
- ModSRAM: Algorithm-Hardware Co-Design for Large Number Modular Multiplication in SRAMJonathan Hao-Cheng Ku, Junyao Zhang, Haoxuan Shan, Saichand Samudrala 等DAC 2024 · 被引用 1 次
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