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Enforcing Input Correctness via Certification in Garbled Circuit Evaluation

机译:通过乱码电路评估中的认证实施输入正确性

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Secure multi-party computation allows a number of participants to securely evaluate a function on their private inputs and has a growing number of applications. Two standard adversarial models that treat the participants as semi-honest or malicious, respectively, are normally considered for showing security of constructions in this framework. In this work, we go beyond the standard security model in the presence of malicious participants and treat the problem of enforcing correct inputs to be entered into the computation. We achieve this by having a certification authority certify user's information, which is consequently used in secure two-party computation based on garbled circuit evaluation. The focus of this work on enforcing correctness of garbler's inputs via certification, as prior work already allows one to achieve this goal for circuit evaluator's input. Thus, in this work, we put forward a novel approach for certifying user's input and tying certification to garbler's input used during secure function evaluation based on garbled circuits. Our construction achieves notable performance of adding only one (standard) signature verification and O(nρ) symmetric key/hash operations to the cost of garbled circuit evaluation in the malicious model via cut-and-choose, in which ρ circuits are garbled and n is the length of the garbler's input in bits. Security of our construction is rigorously proved in the standard model.
机译:安全多方计算允许许多参与者在其私有输入上安全地评估功能,并且具有越来越多的应用程序。两种标准对抗分别将参与者视为半诚实或恶意的模型,通常考虑显示该框架中的建筑安全性。在这项工作中,我们超出了恶意参与者存在的标准安全模型,并处理强制执行正确输入的问题。我们通过认证机构认证用户信息来实现这一目标,因此基于乱码的电路评估的安全双方计算。这项工作的重点是通过认证执行Tarbler的输入的正确性,如前的工作已经允许人们实现电路评估器的输入目标。因此,在这项工作中,我们提出了一种新颖的方法来证明用户的输入和将认证绑定,以基于乱码电路在安全功能评估期间使用的装饰输入。我们的建筑在通过切割和选择的情况下实现了仅添加一个(标准)签名验证和O(nρ)对称键/哈希操作,以使恶意模型中的乱码电路评估成本增加,其中ρ电路是乱码的,n是装饰器输入的长度。在标准模型中严格证明了我们建造的安全性。

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