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Authors: Yan Yan 1 ; Elisabeth Oswald 1 and Srinivas Vivek 2

Affiliations: 1 University of Klagenfurt, Klagenfurt, Austria ; 2 IIIT Bangalore, India

Keyword(s): ARX Construction, Side-channel Analysis, Hamming Weight, Chosen Plaintext Attack.

Abstract: In the last few years a new design paradigm, the so-called ARX (modular addition, rotation, exclusive-or) ciphers, have gained popularity in part because of their non-linear operation’s seemingly ‘inherent resilience’ against Differential Power Analysis (DPA) Attacks: the non-linear modular addition is not only known to be a poor target for DPA attacks, but also the computational complexity of DPA-style attacks grows exponentially with the operand size and thus DPA-style attacks quickly become practically infeasible. We however propose a novel DPA-style attack strategy that scales linearly with respect to the operand size in the chosen-message attack setting.

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Paper citation in several formats:
Yan, Y.; Oswald, E. and Vivek, S. (2021). An Analytic Attack against ARX Addition Exploiting Standard Side-channel Leakage. In Proceedings of the 7th International Conference on Information Systems Security and Privacy - ICISSP; ISBN 978-989-758-491-6; ISSN 2184-4356, SciTePress, pages 89-97. DOI: 10.5220/0010223600890097

@conference{icissp21,
author={Yan Yan. and Elisabeth Oswald. and Srinivas Vivek.},
title={An Analytic Attack against ARX Addition Exploiting Standard Side-channel Leakage},
booktitle={Proceedings of the 7th International Conference on Information Systems Security and Privacy - ICISSP},
year={2021},
pages={89-97},
publisher={SciTePress},
organization={INSTICC},
doi={10.5220/0010223600890097},
isbn={978-989-758-491-6},
issn={2184-4356},
}

TY - CONF

JO - Proceedings of the 7th International Conference on Information Systems Security and Privacy - ICISSP
TI - An Analytic Attack against ARX Addition Exploiting Standard Side-channel Leakage
SN - 978-989-758-491-6
IS - 2184-4356
AU - Yan, Y.
AU - Oswald, E.
AU - Vivek, S.
PY - 2021
SP - 89
EP - 97
DO - 10.5220/0010223600890097
PB - SciTePress