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Outsourcing Secure Two-Party Computation as a Black Box

机译:将安全的双方计算作为黑匣子

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Secure multiparty computation (SMC) offers a technique to preserve functionality and data privacy in mobile applications. Current protocols that make this costly cryptographic construction feasible on mobile devices securely outsource the bulk of the computation to a Cloud provider. However, these outsourcing techniques are built on specific secure computation assumptions and tools, and applying new SMC ideas to the outsourced setting requires the protocols to be completely rebuilt and proven secure. In this work, we develop a generic technique for lifting any secure two-party computation protocol into an outsourced two-party SMC protocol. By augmenting the function being evaluated with auxiliary consistency checks, we can create an outsourced protocol with low overhead cost. Our implementation and evaluation show that in the best case, our outsourcing additions execute within the confidence intervals of two servers running the same computation, and incur approximately the same communication cost. In addition, the mobile device itself requires minimal communication exchanged over a single round. This work demonstrates that efficient outsourcing is possible with any underlying SMC scheme, and implements an outsourcing protocol that is efficient and directly applicable to current and future SMC techniques.
机译:安全多方计算(SMC)提供了一种在移动应用程序中保存功能和数据隐私的技术。当前的协议使得这种昂贵的加密结构在移动设备上可行安全地将大部分的大部分外包给云提供商。但是,这些外包技术是基于特定的安全计算假设和工具,并将新的SMC想法应用于外包设置,要求协议完全重建和经过验证的安全。在这项工作中,我们开发了一种将任何安全双方计算协议提升到外包双方SMC协议的通用技术。通过增强辅助一致性检查评估的功能,我们可以创建一个具有低开销成本的外包协议。我们的实施和评估表明,在最佳情况下,我们的外包添加在运行相同计算的两个服务器的置信区间内执行,并产生大约相同的通信成本。另外,移动设备本身需要在单个圆形中交换最小的通信。这项工作表明,可以使用任何潜在的SMC方案进行有效的外包,并实现了一种外包协议,该协议是高效,直接适用于当前和未来的SMC技术。

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