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Title:
DIFA-Rent: Division Property Based Fault Attacks on DEFAULT and BAKSHEESH
Authors: Shibam Ghosh, Anup Kumar Kundu, Dhiman Saha
Abstract:Fault attacks have historically been one of the most popular gray-box attacks in Cryptographic literature.
In such attacks, an attacker tries to inject perturbations while executing a cipher and exploit the faulty outputs to recover the key.
While the efficiency of such an attack is measured by number of faults required and size of the reduced key-space, another pivotal temporal parameter in the point of fault injection which has not received considerable attention.
In this work, we plug this gap for a special class of ciphers namely DEFAULT and BAKSHEESH which boast of an SBox with one or more linear structures (LS).
We make new observations which lead to the improvement of Division Property based fault attacks (DIFA) introduced by Kundu et al. in ACNS 2023.
We show that these linear structures are particularly responsible for giving the higher fault penetration in these ciphers.
We improve the state-of-the-art for BAKSHEESH from 30 to 28 rounds and for DEFAULT from 75 to 72 using the single round random nibble fault model.
While for BAKSHEESH we are able to uniquely recover the key, for DEFAULT, we are able to reduce the key-space to 2^{64}.
This leads to the best fault attacks on BAKSHEESH and DEFAULT in terms of number of rounds penetrated for fault injection.
Our work reiterates the fact that a property induced (in this case LS in SBox)) for some particular Cryptographic purposes (like fault attack resistance) may manifest orthogonally for another (increasing fault penetration) and thus adds value to block cipher design space exploration and fault attack counter-measure development.
ePrint: https://eprint.iacr.org/2025/2053
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