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Connecting Leakage-Resilient Secret Sharing to Practice: Scaling Trends and Physical Dependencies of Prime Field Masking

Faust, Sebastian ; Micheli, Elena ; Orlt, Maximilian ; Masure, Loïc ; Staendert, Francois-Xavier (2024)
Connecting Leakage-Resilient Secret Sharing to Practice: Scaling Trends and Physical Dependencies of Prime Field Masking.
43rd Annual International Conference on the Theory and Applications of Cryptographic Techniques (EUROCRYPT 2024). Zurich, Switzerland (26.05.2024 - 30.05.2024)
doi: 10.1007/978-3-031-58737-5_12
Konferenzveröffentlichung, Bibliographie

Kurzbeschreibung (Abstract)

Symmetric ciphers operating in (small or mid-size) prime fields have been shown to be promising candidates to maintain security against low-noise (or even noise-free) side-channel leakage. In order to design prime ciphers that best trade physical security and implementation efficiency, it is essential to understand how side-channel security evolves with the field size (i.e., scaling trends). Unfortunately, it has also been shown that such a scaling trend depends on the leakage functions and cannot be explained by the standard metrics used to analyze Boolean masking with noise. In this work, we therefore initiate a formal study of prime field masking for two canonical leakage functions: bit leakages and Hamming weight leakages. By leveraging theoretical results from the leakage-resilient secret sharing literature, we explain formally why (1) bit leakages correspond to a worst-case and do not encourage operating in larger fields, and (2) an opposite conclusion holds for Hamming weight leakages, where increasing the prime field modulus p can contribute to a security amplification that is exponential in the number of shares,with log(p) seen as security parameter like the noise variance in Boolean masking. We combine these theoretical results with experimental ones and show that the interest masking in larger prime fields can degrade gracefully when leakage functions slightly deviate from the Hamming weight abstraction, motivating further research towards characterizing (ideally wide) classes of leakage functions offering such guarantees.

Typ des Eintrags: Konferenzveröffentlichung
Erschienen: 2024
Autor(en): Faust, Sebastian ; Micheli, Elena ; Orlt, Maximilian ; Masure, Loïc ; Staendert, Francois-Xavier
Art des Eintrags: Bibliographie
Titel: Connecting Leakage-Resilient Secret Sharing to Practice: Scaling Trends and Physical Dependencies of Prime Field Masking
Sprache: Englisch
Publikationsjahr: 28 April 2024
Verlag: Springer
Buchtitel: Advances in Cryptology – EUROCRYPT 2024
Reihe: Lecture Notes in Computer Science
Band einer Reihe: 14654
Veranstaltungstitel: 43rd Annual International Conference on the Theory and Applications of Cryptographic Techniques (EUROCRYPT 2024)
Veranstaltungsort: Zurich, Switzerland
Veranstaltungsdatum: 26.05.2024 - 30.05.2024
DOI: 10.1007/978-3-031-58737-5_12
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Kurzbeschreibung (Abstract):

Symmetric ciphers operating in (small or mid-size) prime fields have been shown to be promising candidates to maintain security against low-noise (or even noise-free) side-channel leakage. In order to design prime ciphers that best trade physical security and implementation efficiency, it is essential to understand how side-channel security evolves with the field size (i.e., scaling trends). Unfortunately, it has also been shown that such a scaling trend depends on the leakage functions and cannot be explained by the standard metrics used to analyze Boolean masking with noise. In this work, we therefore initiate a formal study of prime field masking for two canonical leakage functions: bit leakages and Hamming weight leakages. By leveraging theoretical results from the leakage-resilient secret sharing literature, we explain formally why (1) bit leakages correspond to a worst-case and do not encourage operating in larger fields, and (2) an opposite conclusion holds for Hamming weight leakages, where increasing the prime field modulus p can contribute to a security amplification that is exponential in the number of shares,with log(p) seen as security parameter like the noise variance in Boolean masking. We combine these theoretical results with experimental ones and show that the interest masking in larger prime fields can degrade gracefully when leakage functions slightly deviate from the Hamming weight abstraction, motivating further research towards characterizing (ideally wide) classes of leakage functions offering such guarantees.

Freie Schlagworte: S7
Fachbereich(e)/-gebiet(e): 20 Fachbereich Informatik
20 Fachbereich Informatik > Softwaretechnik
DFG-Sonderforschungsbereiche (inkl. Transregio)
DFG-Sonderforschungsbereiche (inkl. Transregio) > Sonderforschungsbereiche
DFG-Graduiertenkollegs
DFG-Sonderforschungsbereiche (inkl. Transregio) > Sonderforschungsbereiche > SFB 1119: CROSSING – Kryptographiebasierte Sicherheitslösungen als Grundlage für Vertrauen in heutigen und zukünftigen IT-Systemen
Hinterlegungsdatum: 25 Okt 2024 13:11
Letzte Änderung: 25 Okt 2024 13:11
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