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Generic Compiler for Publicly Verifiable Covert Multi-Party Computation

机译:公开可验证隐蔽多方计算的通用编译器

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Covert security has been introduced as a compromise between semi-honest and malicious security. In a nutshell, covert security guarantees that malicious behavior can be detected by the honest parties with some probability, but in case detection fails all bets are off. While the security guarantee offered by covert security is weaker than full-fledged malicious security, it comes with significantly improved efficiency. An important extension of covert security introduced by Asharov and Orlandi (ASIACRYPT'12) is public verifiability, which allows the honest parties to create a publicly verifiable certificate of malicious behavior. Public verifiability significantly strengthen covert security as the certificate allows punishment via an external party, e.g., a judge. Most previous work on publicly verifiable covert (PVC) security focuses on the two-party case, and the multi-party case has mostly been neglected. In this work, we introduce a novel compiler for multi-party PVC secure protocols with no private inputs. The class of supported protocols includes the preprocessing of common multi-party computation protocols that are designed in the offline-online model. Our compiler leverages time-lock encryption to offer high probability of cheating detection (often also called deterrence factor) independent of the number of involved parties. Moreover, in contrast to the only earlier work that studies PVC in the multi-party setting (CRYPTO'20), we provide the first full formal security analysis.
机译:在半诚实和恶意安全之间引入了隐蔽安全性作为妥协。简而言之,隐秘安全保证了诚实的缔约方可以通过一些概率来检测恶意行为,但在案例检测失败所有投注都关闭。虽然隐秘安全提供的安全保证弱于全面的恶意安全性,但它具有显着提高的效率。 Asharov和Orlandi(AsianCrypt'12)引入的隐秘安全的一个重要延伸是公共可验证,允许诚实的缔约方创建一个公开可核实的恶意行为证书。公共验证性显着加强秘密安全,因为证书允许通过外部方惩罚,例如,判断。最先前的公开可验证隐蔽(PVC)安全的工作重点是双方案例,多党案大多被忽视。在这项工作中,我们为没有私有输入的多方PVC安全协议介绍了一个新颖的编译器。支持的协议类包括预处理在联机在线模型中设计的常见多方计算协议。我们的编译器利用时锁加密来提供与涉及方的数量无关的作弊检测(通常也称为威慑因素)。此外,与研究PVC在多方设置(Crypto'20)中的唯一早期工作相反,我们提供了第一个完整的正式安全分析。

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