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Fast Garbling of Circuits Under Standard Assumptions

机译:标准假设下的快速电路盗用

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Protocols for secure computation enable mutually distrustful parties to jointly compute on their private inputs without revealing anything, but the result. Over recent years, secure computation has become practical and considerable effort has been made to make it more and more efficient. A highly important tool in the design of two-party protocols is Yao's garbled circuit construction (Yao 1986), and multiple optimizations on this primitive have led to performance improvements in orders of magnitude over the last years. However, many of these improvements come at the price of making very strong assumptions on the underlying cryptographic primitives being used (e.g., that AES is secure for related keys, that it is circular-secure, and even that it behaves like a random permutation when keyed with a public fixed key). The justification behind making these strong assumptions has been that otherwise it is not possible to achieve fast garbling and thus fast secure computation. In this paper, we take a step back and examine whether it is really the case that such strong assumptions are needed. We provide new methods for garbling that are secure solely under the assumption that the primitive used (e.g., AES) is a pseudorandom function. Our results show that in many cases, the penalty incurred is not significant, and so a more conservative approach to the assumptions being used can be adopted.
机译:用于安全计算的协议使互不信任的各方可以共同计算其私有输入,而不会泄露任何结果,但不会泄露结果。近年来,安全计算已变得实用,并且已经做出了相当大的努力以使其越来越高效。在两方协议的设计中,一个非常重要的工具是Yao的电路乱码(Yao 1986),并且在此原语上的多次优化导致性能在过去几年中提高了几个数量级。但是,许多这些改进是以对所使用的基础加密原语做出非常强烈的假设为代价的(例如,AES对于相关密钥是安全的,它是循环安全的,甚至在行为时也表现为随机排列)使用公共固定密钥进行加密)。做出这些强有力的假设背后的理由是,否则不可能实现快速存储和快速安全的计算。在本文中,我们退后一步,研究是否确实需要这种强有力的假设。我们仅在所使用的图元(例如AES)是伪随机函数的假设下提供了安全的新方法。我们的结果表明,在许多情况下,所产生的惩罚并不重要,因此可以对所使用的假设采用更保守的方法。

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