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Secure Outsourcing of Lattice Basis Reduction

机译:确保晶格基础减少的外包

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In the recent twenty years, lattice basis reduction algorithm, such as the celebrated LLL (A.K. Lenstra-H.W. Lenstra Jr.-L. Lovasz) algorithm plays an important role in the public-key schemes design and cryptanalysis. To assess the security of the public-key cryptosystems by lattice reduction algorithms, the most time-consuming part is running the lattice reduction algorithm on the corresponding lattice with high dimension or big coefficients. In this paper, we investigate secure outsourcing for lattice basis reduction for the first time. We propose a lattice basis reduction scheme such that the clients can outsource their main computation workloads to the untrusted cloud servers. We employ rounding technique and unimodular transformation matrix for privacy protection before sending the target lattice basis to the cloud. The results returned from the cloud need to be decrypted and verified to satisfy reduction conditions. The experimental results indicate that our scheme is correct, efficient and feasible.
机译:在最近的二十年中,格基础上减少算法,如著名的LLL(A.K.伦斯特拉-H.W。伦斯特拉Jr.-L. Lovasz)算法起着公钥方案设计和密码分析具有重要作用。为了评估由晶格简化算法的公钥密码体制的安全性,最耗时的部分是运行在具有高尺寸或大系数对应的点阵晶格简化算法。在本文中,我们探讨晶格基准缩减首次安全外包。我们提出了一个格子基准缩减方案,使得客户可以外包他们的主要计算工作负载迁移到云不可信服务器。发送目标网格基础到云之前,我们采用四舍五入的隐私保护技术和单模变换矩阵。从云需要返回的结果进行解密和验证,以满足还原条件。实验结果表明,我们的方案是正确的,有效的和可行的。

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