Side-channel attack-resistant AES S-box with hidden subfield inversion and glitch-free masking

Author:

Li Xiangyu,Jiao Pengyuan,Yang Chaoqun

Abstract

Abstract A side-channel attack (SCA)-resistant AES S-box implementation is proposed, which is an improvement from the power-aware hiding (PAH) S-box but with higher security and a smaller area. We use the composite field approach and apply the PAH method to the inversion in the nonlinear kernel and a masking method to the other parts. In addition, a delay-matched enable control technique is used to suppress glitches in the masked parts. The evaluation results show that its area is contracted to 63.3% of the full PAH S-box, and its power-delay product is much lower than that of the masking implementation. The leakage assessment using simulation power traces concludes that it has no detectable leakage under t-test and that it at least can thwart the moment-correlation analysis using 665 000 noiseless traces.

Publisher

IOP Publishing

Subject

Materials Chemistry,Electrical and Electronic Engineering,Condensed Matter Physics,Electronic, Optical and Magnetic Materials

Reference20 articles.

1. EM analysis in the IoT context: Lessons learned from an attack on thread;Dinu;IACR Trans Cryptogr Hardw Embed Syst,2018

2. AES-128 based secure low power communication for LoRaWAN IoT environments;Tsai;IEEE Access,2018

3. Key updating for leakage resiliency with application to AES modes of operation;Taha;IEEE Trans Inform Forensic Secur,2015

4. Pushing the limits: A very compact and a threshold implementation of AES;Moradi;Adv Cryptol - EUROCRYPT 2011,2011

5. Constructing TI-friendly substitution boxes using shift-invariant permutations;Gao;Cryptographers Track RSA Conference,2019

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1. A Novel Lightweight Block Encryption Algorithm Based on Combined Chaotic System;Journal of Information Security and Applications;2022-09

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