Prouff and Rivain's Formal Security Proof of Masking, Revisited - Tight Bounds in the Noisy Leakage Model
Loïc Masure, François-Xavier Standaert
Abstract
Masking is a counter-measure that can be incorporated to software and hardware implementations of block ciphers to provably secure them against side-channel attacks. The security of masking can be proven in different types of threat models. In this paper, we are interested in directly proving the security in the most realistic threat model, the so-called noisy leakage adversary, that captures well how real-world sidechannel adversaries operate. Direct proofs in this leakage model have been established by Prouff & Rivain at Eurocrypt 2013, Dziembowski et al. at Eurocrypt 2015, and Prest et al. at Crypto 2019. These proofs are complementary to each other, in the sense that the weaknesses of one proof are fixed in at least one of the others, and conversely. These weaknesses concerned in particular the strong requirements on the noise level and the security parameter to get meaningful security bounds, and some requirements on the type of adversary covered by the proof -i.e., chosen or random plaintexts. This suggested that the drawbacks of each security bound could actually be proof artifacts. In this paper, we solve these issues, by revisiting Prouff & Rivain's approach.
Ask about this paper
Your agent reads all of it.
Lune indexed this paper to the last equation, along with the top-tier papers that cite it. Ask a question and the answer quotes them.
Your agent calls
Luneget_paper_fulltext
Free to start. No credit card required.
Terminal
Install the CLIlune papers fulltext c06a61ae-b9ee-4ecc-a5d1-6d8c7fe4e99fCited by top-tier papers3
- Connecting Leakage-Resilient Secret Sharing to Practice: Scaling Trends and Physical Dependencies of Prime Field MaskingSebastian Faust, Loïc Masure, Elena Micheli, Maximilian Orlt et al.EUROCRYPT 2024 · 8 citations
- Formal Security Proofs via Doeblin Coefficients: - Optimal Side-Channel Factorization from Noisy Leakage to Random ProbingJulien Béguinot, Wei Cheng, Sylvain Guilley, Olivier RioulCRYPTO 2024 · 7 citations
- Bypassing the Random-Probing Model in Masking Security ProofsJulien Béguinot, Gianluca Brian, Loïc MasureCRYPTO 2026 · 1 citation
Builds on5
- Strong Non-Interference and Type-Directed Higher-Order MaskingGilles Barthe, Sonia Belaïd, François Dupressoir, Pierre-Alain Fouque et al.CCS 2016 · 302 citations
- Random Probing Security: Verification, Composition, Expansion and New ConstructionsSonia Belaïd, Jean-Sébastien Coron, Emmanuel Prouff, Matthieu Rivain et al.CRYPTO 2020 · 30 citations
- Towards Tight Random Probing SecurityGaëtan Cassiers, Sebastian Faust, Maximilian Orlt, François-Xavier StandaertCRYPTO 2021 · 22 citations
- On the Power of Expansion: More Efficient Constructions in the Random Probing ModelSonia Belaïd, Matthieu Rivain, Abdul Rahman TalebEUROCRYPT 2021 · 22 citations
- On the Success Rate of Side-Channel Attacks on Masked Implementations: Information-Theoretical Bounds and Their Practical UsageAkira Ito, Rei Ueno, Naofumi HommaCCS 2022 · 18 citations
Related papers
- From Random Probing to Noisy Leakages Without Field-Size DependenceGianluca Brian, Stefan Dziembowski, Sebastian FaustEUROCRYPT 2024 · 6 citations
- A Formal Security Proof of Masking - Reduction from Strong Noisy Leakage to Probing Model Without Random Probing and Application to LR PrimitiveRei Ueno, Akiko Inoue, Kazuhiko Minematsu, Akira Ito et al.CRYPTO 2026
- Secure Wire Shuffling in the Probing ModelJean-Sébastien Coron, Lorenzo SpignoliCRYPTO 2021 · 13 citations
- PERSEUS - Probabilistic Evaluation of Random Probing SEcurity Using Efficient SamplingSonia Belaïd, Gaëtan CassiersEUROCRYPT 2026
- Glitch-Stopping Circuits: Hardware Secure Masking without RegistersZhenda Zhang, Svetla Petkova-Nikova, Ventzislav NikovCCS 2024 · 2 citations
