Towards A Formally Verified Fully Homomorphic Encryption Compute Engine
Jeremy Casas, Zhenkun Yang, Wen Wang, Jin Yang, Adwait Godbole
摘要
We present a scalable approach for formally verifying the correctness of the Compute Engine (CE) against its ISA (Instruction Set Architecture) specification in an FHE (Fully Homomorphic Encryption) accelerator, critical to many applications where safety and security of information is of vital importance. It combines algorithmic verification of the micro-architecture modules in the CE against their functional specifications and implementation verification of the CE hardware against its micro-architecture algorithmic specifications. The correctness of the CE is guaranteed by treating micro-architecture modules as semantic-preserving program transformations and leveraging the composability of the semantic-preserving properties well established in compiler design and verification.
问问这篇 Paper
问问你的智能体。
Lune 读过与它相关的顶会 Paper,每个回答都会注明依据哪几篇。
相关 Paper
- AutoFHE: An Automatic Hardware Generation Framework for Domain-Specific FHE AcceleratorsYibo Du, Cangyuan Li, Bing Li, Mengdi Wang 等ISCA 2026
- F1: A Fast and Programmable Accelerator for Fully Homomorphic EncryptionNikola Samardzic, Axel Feldmann, Aleksandar Krastev, Srinivas Devadas 等MICRO 2021 · 被引用 294 次
- HACLxN: Verified Generic SIMD Crypto (for all your favourite platforms)Marina Polubelova, Karthikeyan Bhargavan, Jonathan Protzenko, Benjamin Beurdouche 等CCS 2020 · 被引用 17 次
- Falcon: Algorithm-Hardware Co-Design for Efficient Fully Homomorphic Encryption AcceleratorLiang Kong, Xianglong Deng, Guang Fan, Shengyu Fan 等ASPLOS 2026
- UFC: A Unified Accelerator for Fully Homomorphic EncryptionMinxuan Zhou, Yujin Nam, Xuan Wang, Youhak Lee 等MICRO 2024 · 被引用 19 次
