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Research Article | Open Access

Meet-in-the-middle differential fault analysis on Midori

Chunyan An1,2( )Wei Bai1,2Donglei Zhang1,2
State Grid Smart Grid Research Institute Co., Ltd., Beijing 102209, China
Electric Power Intelligent Sensing Technology Laboratory of State Grid Corporation, Beijing 102209, China
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Abstract

Midori is a lightweight block cipher designed by Banik et al. and presented at the ASIACRYPT 2015 conference. According to the block size, it consists of two algorithms, denoted as Midori-64 and Midori-128. Midori generates 8-bit S-Boxes from 4-bit S-Boxes and applies almost MDS matrices instead of MDS matrices. In this paper, we introduce the meet-in-the-middle fault attack model in the 4-round cell-oriented fault propagation trail and reduce the key space in the last round by 2 45.71 and 2 39.86 for Midori-64 and Midori-128, respectively. For Midori-64, we reduce the time complexity from 2 80 to 2 28 , 2 32 and 2 56 for the different single fault injection approaches. For Midori-128, we provide a 4-round fault attack method, which slightly increases the complexity compared to previous attacks. Our results indicate that the first and last four rounds of Midori must be protected to achieve its security.

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Electronic Research Archive
Pages 6820-6832

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Cite this article:
An C, Bai W, Zhang D. Meet-in-the-middle differential fault analysis on Midori. Electronic Research Archive, 2023, 31(11): 6820-6832. https://doi.org/10.3934/era.2023344

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Received: 25 June 2023
Revised: 16 October 2023
Accepted: 17 October 2023
Published: 15 November 2023
©2023 the Author(s), licensee AIMS Press.

This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0)