English

Perfectly Secure Synchronous MPC with Asynchronous Fallback Guarantees Against General Adversaries

Cryptography and Security 2022-08-15 v1 Distributed, Parallel, and Cluster Computing Information Theory math.IT

Abstract

In this work, we study perfectly-secure multi-party computation (MPC) against general (non-threshold) adversaries. Known protocols in a synchronous network are secure against Q(3)Q^{(3)} adversary structures, while in an asynchronous network, known protocols are secure against Q(4)Q^{(4)} adversary structures. A natural question is whether there exists a single protocol which remains secure against Q(3)Q^{(3)} and Q(4)Q^{(4)} adversary structures in a synchronous and in an asynchronous network respectively, where the parties are not aware of the network type. We design the first such best-of-both-worlds protocol against general adversaries. Our result generalizes the result of Appan, Chandramouli and Choudhury (PODC 2022), which presents a best-of-both-worlds perfectly-secure protocol against threshold adversaries. To design our protocol, we present two important building blocks which are of independent interest. The first building block is a best-of-both-worlds perfectly-secure Byzantine agreement (BA) protocol for Q(3)Q^{(3)} adversary structures, which remains secure both in a synchronous, as well as an asynchronous network. The second building block is a best-of-both-worlds perfectly-secure verifiable secret-sharing (VSS) protocol, which remains secure against Q(3)Q^{(3)} and Q(4)Q^{(4)} adversary structures in a synchronous network and an asynchronous network respectively.

Keywords

Cite

@article{arxiv.2208.06223,
  title  = {Perfectly Secure Synchronous MPC with Asynchronous Fallback Guarantees Against General Adversaries},
  author = {Ananya Appan and Anirudh Chandramouli and Ashish Choudhury},
  journal= {arXiv preprint arXiv:2208.06223},
  year   = {2022}
}

Comments

56 pages, 11 figures. arXiv admin note: text overlap with arXiv:2201.12194

R2 v1 2026-06-25T01:39:51.417Z