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Cryptology ePrint Archive

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An Efficient Framework for Collusion Resistant Multiparty...
Robin Jadoul · 2025-05-27 · via Cryptology ePrint Archive

Paper 2025/965

An Efficient Framework for Collusion Resistant Multiparty FHE

Barry van Leeuwen, KU Leuven

Oliver Zajonc, KU Leuven

Abstract

Multiparty fully homomorphic encryption (MPFHE) is a generalization of (multi-key) fully homomorphic encryption ((MK)FHE) that lives on the cusp between multiparty computation (MPC) and FHE, enabling a computation over encrypted data using multiple keys. However, contrary to MKFHE, it seeks to reduce the noise inflation based on the number of parties by allowing the parties to first compute shared data in MPC before executing the computation in FHE. However, many works use specific constructions reliant on the behaviour of a particular scheme and do not consider security against colluding servers and parties. In this work, we present a new framework that is secure against collusion between servers and parties and allows the use of a broad spectrum of MPC and FHE protocols, while eliminating the noise inflation based on the participating number of parties. We then show a case study of this using the FINAL scheme and show that we reduce the required key material by 40-99.9% compared to the MKFHE FINAL scheme, FINALLY, 8-71% compared to the static AKÖ scheme, and 65-70% compared to the Park-Rovira scheme. Moreover, we reduce the bootstrapping time for the AKÖ, Park-Rovira, and KMS schemes by 75-99.7%.

Note: Major revision

BibTeX

@misc{cryptoeprint:2025/965,
      author = {Robin Jadoul and Barry van Leeuwen and Oliver Zajonc},
      title = {An Efficient Framework for Collusion Resistant Multiparty {FHE}},
      howpublished = {Cryptology {ePrint} Archive, Paper 2025/965},
      year = {2025},
      url = {https://eprint.iacr.org/2025/965}
}