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Cryptology ePrint Archive

Fast Isogeny Evaluation on Binary Curves Quick Draw Queries: Lightweight Searchable Public-key Ciphertexts with Hidden Structures via Non-Interactive Key Exchange A Constructive Treatment of Authentication Boolean Arithmetic over $\mathbb{F}_2$ from Group Commutators HAWK with Hint: Algebraic Key Recovery from Side-Channel Leakage Post-Quantum Secure k-Times Traceable Ring Signature A Key Schedule Design and Evaluation under Boundary Round-Key Leakage 2G2T: Constant-Size, Statistically Sound MSM Outsourcing Proximity Signatures Breaking Optimized HQC: The First Cache-Timing Full Decryption Oracle Key-Recovery Attack in Post-Quantum Cryptography Efficient Partially Blind Signatures from Isogenies Evaluating PQC KEMs, Combiners, and Cascade Encryption via Adaptive IND-CPA Testing Using Deep Learning High-Throughput Side-Channel-Protected Stream Cipher Hardware for 6G Systems Efficient e = 3 Threshold RSA via Integer Coordinates for Intel SGX Zeal: PIR for Non-Cooperative Databases VEIL: Lightweight Zero-Knowledge for Hash-Based Multilinear Proof Systems Witness-Indistinguishable Arguments of Knowledge and One-Way Functions The many faces of Schnorr: a touch-up Open Problems in List Decoding and Correlated Agreement Compressed Key Exchange Protocol from Orientations of Large Discriminant Using AVX-512 SPLASH: SPeculative Leakage-Adaptive Secure Hardware An Efficient Identity-Based Blind Signature Scheme from SM9 Efficient Batch Threshold Encryption Using Partial Fraction Techniques A note on the Unsuitability of LIGA for Linkable Ring Signatures: The perils of non-commutativity Verification Facade: Masquerading Insecure Cryptographic Implementations as Verified Code Cryptographic Implications of Worst-Case Hardness of Time-Bounded Kolmogorov Complexity Efficient Merkle-Tree Consistent Accumulator FLOSS: Fast Linear Online Secret-Shared Shuffling Which Privacy Blanket is Optimal in the Shuffle Model? Applications of Bruhat-Chevalley-Renner Decomposition to Metric-Aware Code-Based Cryptography
Cryptanalysis of the Sharafi–Daghigh digital signature sc...
Nour-eddine Rahmani, Mohammed I University · 2026-04-19 · via Cryptology ePrint Archive

Paper 2026/767

Cryptanalysis of the Sharafi–Daghigh digital signature scheme

Taoufik Serraj, Mohammed I University

Abdelmalek Azizi, SupMTI

Abstract

This paper is devoted to the study of the Ring-LWE-based digital signature scheme proposed by Sharafi and Daghigh, especially, the cryptanalysis of this scheme. The Sharafi and Daghigh’s scheme is inspired by the Lindner–Peikert encryption paradigm and adopts a hash-and-sign approach via the Fiat–Shamir transformation. The security claims rely on the assumed hardness of the Ring LWE and Ring-SIS problems, whose definitions and properties are well studied in last two decades. We demonstrate that this scheme is not secure and generalise our analysis to the analogous scheme in the plain-LWE setting.

BibTeX

@misc{cryptoeprint:2026/767,
      author = {Nour-eddine Rahmani and Taoufik Serraj and Abdelmalek Azizi},
      title = {Cryptanalysis of the Sharafi–Daghigh digital signature scheme},
      howpublished = {Cryptology {ePrint} Archive, Paper 2026/767},
      year = {2026},
      url = {https://eprint.iacr.org/2026/767}
}