Understanding the Duplex and Its Security

IF 1.7 Q3 COMPUTER SCIENCE, SOFTWARE ENGINEERING
Bart Mennink
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引用次数: 5

Abstract

At SAC 2011, Bertoni et al. introduced the keyed duplex construction as a tool to build permutation based authenticated encryption schemes. The construction was generalized to full-state absorption by Mennink et al. (ASIACRYPT 2015). Daemen et al. (ASIACRYPT 2017) generalized it further to cover much more use cases, and proved security of this general construction, and Dobraunig and Mennink (ASIACRYPT 2019) derived a leakage resilience security bound for this construction. Due to its generality, the full-state keyed duplex construction that we know today has plethora applications, but the flip side of the coin is that the general construction is hard to grasp and the corresponding security bounds are very complex. Consequently, the state-of-the-art results on the full-state keyed duplex construction are not used to the fullest. In this work, we revisit the history of the duplex construction, give a comprehensive discussion of its possibilities and limitations, and demonstrate how the two security bounds (of Daemen et al. and Dobraunig and Mennink) can be interpreted in particular applications of the duplex.
了解双工及其安全性
在SAC 2011上,Bertoni等人介绍了键控双工构造作为构建基于排列的身份验证加密方案的工具。Mennink等人(ASIACRYPT 2015)将这种结构推广到全态吸收。Daemen等人(ASIACRYPT 2017)进一步推广了它,以涵盖更多的用例,并证明了这种一般结构的安全性,Dobraunig和Mennink (ASIACRYPT 2019)推导了这种结构的泄漏弹性安全边界。由于其通用性,我们今天所知道的全状态键控双工结构有大量的应用,但硬币的另一面是,一般结构很难掌握,相应的安全界限非常复杂。因此,在全状态键控双工结构上的最新成果没有得到充分利用。在这项工作中,我们回顾了双工结构的历史,对其可能性和局限性进行了全面的讨论,并演示了如何在双工的特定应用中解释两个安全边界(Daemen等人以及Dobraunig和Mennink)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
IACR Transactions on Symmetric Cryptology
IACR Transactions on Symmetric Cryptology Mathematics-Applied Mathematics
CiteScore
5.50
自引率
22.90%
发文量
37
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