Paper 2025/2078

Feasibility of Broadcast with Dynamic Committees

Gabriel Dettling, Lucerne University of Applied Sciences and Arts
Chen-Da Liu-Zhang, Lucerne University of Applied Sciences and Arts
Elisaweta Masserova, Carnegie Mellon University
Matthieu Rambaud, Télécom ParisTech
Antoine Urban, DFNS
Abstract

A significant number of works have considered the problem of multi-party computation over dynamic committees in synchronous networks, including YOSO MPC [Crypto'21], Fluid MPC [Crypto'21], SCALES MPC [TCC'22] and Layered MPC [Crypto'23]. However, prior works assume that every party has access to an ideal synchronous broadcast channel towards the next committee. While this assumption is partly justified due to the seminal work of Garay [WDAG'94] stating that deterministic broadcast with dynamic committees is impossible, it is open whether there are randomized solutions. We answer this question in the affirmative, by providing a complete characterization of broadcast with dynamic committees. We use the formalization introduced in the Layered MPC setting and achieve the following results for layered broadcast: - A statistically secure protocol tolerating $t<n/3$ corruptions with no setup. - A computationally secure protocol tolerating $t<n/2$ corruptions, assuming only a bulletin-board PKI for signatures. - A matching impossibility result showing that broadcast is impossible for $t \geq n/2$ corruptions. Using our broadcast, we achieve the following polynomial-time results: - YOSO MPC protocols without broadcast (statistical for $t<n/3$ without setup; and computational for $t<n/2$ assuming a plain PKI for signatures). - Assuming plain PKIs for signatures and public-key encryption, a Layered MPC protocol without broadcast for $t<n/2$. - Assuming homomorphic commitments, a Layered MPC without broadcast for $(t+1)^2 \le n$. To achieve this, we introduce a secure-message-transmission protocol for $(t+1)^2 \le n$ which has linear communication in $\ell$ and polynomial communication in $n$ when transmitting a message across $\ell$ layers. This result is of independent interest.

Metadata
Available format(s)
PDF
Category
Cryptographic protocols
Publication info
Published elsewhere. Major revision. CRYPTO 2026
Keywords
MPCdynamic committeesbroadcastYOSOFluidPASSOmobile corruptions
Contact author(s)
gabriel dettling @ hslu ch
chendaliu @ gmail com
elisawem @ andrew cmu edu
matthieu rambaud @ telecom-paris fr
antoine urban @ gmail com
History
2026-06-08: last of 6 revisions
2025-11-10: received
See all versions
Short URL
https://ia.cr/2025/2078
License
Creative Commons Attribution
CC BY

BibTeX

@misc{cryptoeprint:2025/2078,
      author = {Gabriel Dettling and Chen-Da Liu-Zhang and Elisaweta Masserova and Matthieu Rambaud and Antoine Urban},
      title = {Feasibility of Broadcast with Dynamic Committees},
      howpublished = {Cryptology {ePrint} Archive, Paper 2025/2078},
      year = {2025},
      url = {https://eprint.iacr.org/2025/2078}
}
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