English

What can Information Guess? Guessing Advantage vs. R\'enyi Entropy for Small Leakages

Information Theory 2024-01-31 v1 math.IT

Abstract

We leverage the Gibbs inequality and its natural generalization to R\'enyi entropies to derive closed-form parametric expressions of the optimal lower bounds of ρ\rhoth-order guessing entropy (guessing moment) of a secret taking values on a finite set, in terms of the R\'enyi-Arimoto α\alpha-entropy. This is carried out in an non-asymptotic regime when side information may be available. The resulting bounds yield a theoretical solution to a fundamental problem in side-channel analysis: Ensure that an adversary will not gain much guessing advantage when the leakage information is sufficiently weakened by proper countermeasures in a given cryptographic implementation. Practical evaluation for classical leakage models show that the proposed bounds greatly improve previous ones for analyzing the capability of an adversary to perform side-channel attacks.

Keywords

Cite

@article{arxiv.2401.17057,
  title  = {What can Information Guess? Guessing Advantage vs. R\'enyi Entropy for Small Leakages},
  author = {Julien Béguinot and Olivier Rioul},
  journal= {arXiv preprint arXiv:2401.17057},
  year   = {2024}
}