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Practical Password-Based Authentication Protocol for Secret Sharing Based Multiparty Computation

机译:实用的基于密码的身份验证协议,用于基于秘密共享的多方计算

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The speed of secret sharing (SS)-based multiparty computation (MPC) has recently increased greatly, and several efforts to implement and use it have been put into practice. Authentication of clients is one critical mechanism for implementing SS-based MPC successfully in practice. We propose a password-based authentication protocol for SS-based MPC. Our protocol is secure in the presence of secure channels, and it is optimized for practical use with SS-based MPC in the following ways. 1.Threshold security: Our protocol is secure in the honest majority, which is necessary and sufficient since most practical results on SS-based MPC are secure in the same environment. 2.Establishing distinct channels: After our protocol, a client has distinct secure and two-way authenticated channels to each server, which is necessary for SS-based MPC and different from the usual setting. 3.Ease of implementation: Our protocol consists of SS and operations involving SS, which can be reused from an implementation of SS-based MPC. Furthermore, we implemented our protocol with an optimization for the realistic network and confirm that the protocol is practical. A client received the result within 2 s even when the network delay was 200 ms, which is almost the delay that occurs between Japan and Europe.
机译:最近,基于秘密共享(SS)的多方计算(MPC)的速度已大大提高,并且已经为实现和使用它进行了一些努力。客户端身份验证是在实践中成功实现基于SS的MPC的一种重要机制。我们为基于SS的MPC提出了一种基于密码的身份验证协议。在存在安全通道的情况下,我们的协议是安全的,并且已通过以下方式针对基于SS的MPC进行实际使用进行了优化。 1.阈值安全性:我们的协议在大多数情况下都是安全的,这是必要且充分的,因为基于SS的MPC的大多数实际结果在相同的环境中都是安全的。 2.建立不同的通道:按照我们的协议,客户端对每个服务器都有不同的安全通道和双向身份验证通道,这对于基于SS的MPC是必需的,并且与通常的设置不同。 3.易于实现:我们的协议由SS和涉及SS的操作组成,可以从基于SS的MPC的实现中重复使用。此外,我们通过针对实际网络的优化实现了我们的协议,并确认该协议是可行的。即使网络延迟为200毫秒,也几乎在日本和欧洲之间发生的延迟,客户端仍会在2 s内收到结果。

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