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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
Efficient High-Order Masking of FrodoKEM’s CDT-Based Gaus...
Elie Eid · 2025-07-17 · via Cryptology ePrint Archive

Paper 2025/1308

Efficient High-Order Masking of FrodoKEM’s CDT-Based Gaussian Sampler

Aurélien Greuet, IDEMIA Secure Transactions, Cryptography & Security Labs

Nathan Reboud, IDEMIA Secure Transactions, Cryptography & Security Labs

Rina Zeitoun, IDEMIA Secure Transactions, Cryptography & Security Labs

Abstract

FrodoKEM is a conservative lattice-based KEM based on the Learning With Errors problem. While it was not selected for NIST standardization, it remains a strong candidate for high-security applications and is recommended by several national agencies, including BSI, ANSSI, and the EUCC. Its reliance on CDT-based Gaussian sampling presents a significant challenge for side-channel secure implementations. While recent work by Gérard and Guerreau [GG25] has shown that masking FrodoKEM is feasible, the Gaussian sampler remains a major bottleneck, accounting for between 34% and 65% of the execution time. In this work, we introduce a new high-order masking gadget for CDT sampling, provably secure in the ISW probing model and significantly more efficient than previous approaches. We instantiate and evaluate our design on a real-world setup to assess its side-channel resistance in the context of FrodoKEM, using a complete first-order masked implementation on Cortex-M3, which reflects the most relevant practical threat model. Compared with [GG25] at first order, the cost of the sampler is reduced by at least 82% and the number of random generations by at least 69%. Higher-order security is also fully supported through a generic C implementation, with some selected gadgets hand-optimized in assembly to improve efficiency.

BibTeX

@misc{cryptoeprint:2025/1308,
      author = {Elie Eid and Aurélien Greuet and Nathan Reboud and Rina Zeitoun},
      title = {Efficient High-Order Masking of {FrodoKEM}’s {CDT}-Based Gaussian Sampler},
      howpublished = {Cryptology {ePrint} Archive, Paper 2025/1308},
      year = {2025},
      url = {https://eprint.iacr.org/2025/1308}
}