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A Scalable Implementation of Fully Homomorphic Encryption Built on NTRU

机译:基于NTRU的全同态加密的可扩展实现

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In this paper we report on our work to design, implement and evaluate a Fully Homomorphic Encryption (FHE) scheme. Our FHE scheme is an NTRU-like cryptosystem, with additional support for efficient key switching and modulus reduction operations to reduce the frequency of bootstrapping operations. Ciphertexts in our scheme are represented as matrices of 64-bit integers. The basis of our design is a layered software services stack to provide high-level FHE operations supported by lower-level lattice-based primitive implementations running on a computing substrate. We implement and evaluate our FHE scheme to run on a commodity CPU-based computing environment. We implemented our FHE scheme to run in a compiled C environment and use parallelism to take advantage of multi-core processors. We provide experimental results which show that our FHE implementation provides at least an order of magnitude improvement in runtime as compared to recent publicly known evaluation results of other FHE software implementations.
机译:在本文中,我们报告了我们在设计,实现和评估全同态加密(FHE)方案方面的工作。我们的FHE方案是一种类似于NTRU的密码系统,并额外支持有效的密钥切换和模数减少操作,以减少自举操作的频率。我们方案中的密文表示为64位整数矩阵。我们设计的基础是分层的软件服务堆栈,可提供由在计算基板上运行的基于较低层次的基于格的原始实现所支持的高层FHE操作。我们实施并评估我们的FHE方案,以在基于CPU的商用计算环境上运行。我们实现了FHE方案以在编译的C环境中运行,并使用并行性来利用多核处理器。我们提供的实验结果表明,与其他FHE软件实现的最新公开评估结果相比,我们的FHE实现在运行时至少提高了一个数量级。

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