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Symbolic Malleable Zero-Knowledge Proofs

机译:符号可延展的零知识证明

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Zero-knowledge (ZK) proofs have become a central building block for a variety of modern security protocols. Modern ZK constructions, such as the Groth-Sahai proof system, offer novel types of cryptographic flexibility: a participant is able to re-randomize existing ZK proofs to achieve, for instance, message unlink ability in anonymity protocols, she can hide public parts of a ZK proof statement to meet her specific privacy requirements, and she can logically compose ZK proofs in order to construct new proof statements. ZK proof systems that permit these transformations are called malleable. However, since these transformations are accessible also to the adversary, analyzing the security of these protocols requires one to cope with a much more comprehensive attacker model -- a challenge that automated protocol analysis thus far has not been capable of dealing with. In this work, we introduce the first symbolic abstraction of malleable ZK proofs. We further prove the computational soundness of our abstraction with respect to observational equivalence, which enables the computationally sound verification of privacy properties. Finally, we show that our symbolic abstraction is suitable for ProVerif, a state-of-the-art cryptographic protocol verifier, by verifying an improved version of the anonymous webs of trust protocol.
机译:零知识(ZK)证明已成为各种现代安全协议的重要组成部分。诸如Groth-Sahai证明系统之类的现代ZK构造提供了新型的加密灵活性:参与者能够重新随机化现有ZK证明,以实现例如匿名协议中的消息取消链接能力,她可以隐藏公共部分。满足她的特定隐私要求的ZK证明声明,并且她可以在逻辑上撰写ZK证明以构造新的证明声明。允许这些转换的ZK证明系统称为可延展的。但是,由于攻击者也可以访问这些转换,因此分析这些协议的安全性需要一个应对更全面的攻击者模型的工具,这是迄今为止自动化协议分析无法应对的挑战。在这项工作中,我们介绍了可延展ZK证明的第一个符号抽象。我们进一步证明了我们的抽象在观察等效性方面的计算正确性,这使得可以对隐私属性进行计算合理的验证。最后,我们通过验证信任协议匿名网络的改进版本,证明我们的符号抽象适用于ProVerif,这是一种最新的加密协议验证程序。

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