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Practical Parameters forSomewhatHomomorphic Encryption Schemes on Binary Circuits

机译:二进制电路上的某种同态加密方案的实用参数

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Post-quantum cryptography gets increasing attention lately, as we have to prepare alternative cryptographic solutions that will resist attacks from quantum computers. A very large effort is being done to replace the usual primitives such as encryption, signature or authentication. This effort also pulls new cryptographic features such as Somewhat or Fully Homomorphic Encryption schemes, based on lattices. Since their introduction in 2009, lots of the burden has been overcome and real applications now become possible. However many papers suffer from the fast constant pace of evolution on the attack side, so their parameter analysis is usually incomplete or obsolete. In this work we present a thorough study of two schemes that have proven their worth: FV and SHIELD, providing a deep analysis of how to setup and size their parameters, to ensure both correctness and security. Our overall aim is to provide easy-to-use guidelines for implementation purposes.
机译:由于我们必须准备替代的加密解决方案来抵御来自量子计算机的攻击,因此后量子密码学最近受到越来越多的关注。正在付出巨大的努力来替换常用的原语,例如加密,签名或身份验证。这项工作还拉动了基于晶格的新加密功能,例如“某种”或“完全同态加密”方案。自2009年推出以来,已经克服了许多负担,现在可以实现实际应用。但是,许多论文都受到攻击方不断快速发展的困扰,因此其参数分析通常不完整或过时。在这项工作中,我们将对两种已证明其价值的方案进行深入研究:FV和SHIELD,对如何设置和调整其参数的深度分析,以确保正确性和安全性。我们的总体目标是为实施目的提供易于使用的指南。

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