HAETAE: Shorter Lattice-Based Fiat-Shamir Signatures

Abstract: We present HAETAE (Hyperball bimodAl modulE rejecTion signAture schemE), a new lattice-based signature scheme. Like the NIST-selected Dilithium signature scheme, HAETAE is based on the Fiat-Shamir with Aborts paradigm, but our design choices target an improved complexity/compactness compromise that is highly relevant for many space-limited application scenarios. We primarily focus on reducing signature and verification key sizes so that signatures fit into one TCP or UDP datagram while preserving a high level of security against a variety of attacks. As a result, our scheme has signature and verification key sizes up to 39% and 25% smaller, respectively, compared than Dilithium. We provide a portable, constanttime reference implementation together with an optimized implementation using AVX2 instructions and an implementation with reduced stack size for the Cortex-M4. Moreover, we describe how to efficiently protect HAETAE against implementation attacks such as side-channel analysis.... https://tches.iacr.org/index.php/TCHES/article/view/11669

Standort
Deutsche Nationalbibliothek Frankfurt am Main
Umfang
Online-Ressource
Sprache
Englisch

Erschienen in
HAETAE: Shorter Lattice-Based Fiat-Shamir Signatures ; volume:2024 ; number:3 ; year:2024
IACR transactions on cryptographic hardware and embedded systems ; 2024, Heft 3 (2024)

Urheber
Cheon, Jung Hee
Choe, Hyeongmin
Devevey, Julien
Güneysu, Tim
Hong, Dongyeon
Krausz, Markus
Land, Georg
Möller, Marc
Stehlé, Damien
Yi, MinJune

DOI
10.46586/tches.v2024.i3.25-75
URN
urn:nbn:de:101:1-2407241856360.025530379624
Rechteinformation
Open Access; Der Zugriff auf das Objekt ist unbeschränkt möglich.
Letzte Aktualisierung
14.08.2025, 10:47 MESZ

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Beteiligte

  • Cheon, Jung Hee
  • Choe, Hyeongmin
  • Devevey, Julien
  • Güneysu, Tim
  • Hong, Dongyeon
  • Krausz, Markus
  • Land, Georg
  • Möller, Marc
  • Stehlé, Damien
  • Yi, MinJune

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