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Friet: An Authenticated Encryption Scheme with Built-in Fault Detection

机译:Friet:具有内置故障检测功能的认证加密方案

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In this work we present a duplex-based authenticated encryption scheme Friet based on a new permutation called Friet-P. We designed FRIET-P with a novel approach for cryptographic permutations and block ciphers that takes fault-attack resistance into account and that we introduce in this paper. In this method, we build a permutation f_C to be embedded in a larger one, f. First, we define f as a sequence of steps that all abide a chosen error-correcting code C, i.e., that map C-codewords to C-codewords. Then, we embed f_C in f by first encoding its input to an element of C, applying f and then decoding back from C. This last step detects a fault when the output of f is not in C. We motivate the design of the permutation we use in Friet and report on performance in soft- and hardware. We evaluate the fault-detection capabilities of the software and simulated hardware implementations with attacks. Finally, we perform a leakage evaluation.
机译:在这项工作中,我们提出了一种基于双工的认证加密方案Friet,该方案基于一个称为Friet-P的新置换。我们使用一种新颖的方法来设计FRIET-P,用于密码排列和分组密码,其中考虑了故障攻击的抵抗力,并将在本文中进行介绍。在此方法中,我们构建了一个置换f_C嵌入到较大的f中。首先,我们将f定义为一系列步骤,这些步骤均遵守所选的纠错码C,即将C代码字映射到C代码字。然后,通过将f_C的输入编码到C的元素,应用f,然后从C解码,将f_C嵌入到f中。当f的输出不在C中时,最后一步检测到错误。我们在Friet中使用并报告软件和硬件的性能。我们评估软件的故障检测能力以及带有攻击的模拟硬件实现。最后,我们执行泄漏评估。

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