Lune

EUROCRYPT2026Top-tier venue

New Upper and Lower Bounds for Perfectly Secure MPC

Ivan Damgård, Shravani Patil, Arpita Patra, Lawrence Roy

2026Year

Abstract

We consider perfectly secure MPC for nn players and tt malicious corruptions. We ask whether requiring only security with abort (rather than guaranteed output delivery, GOD) can help to achieve protocols with better resilience, communication complexity or round complexity. We show that for resilience and communication complexity, abort security does not help, one still needs 3t<n3t< n for a synchronous network and 4t<n4t< n in the asynchronous case. And, in both cases, a communication overhead of O(n)O(n) bits per gate is necessary.

When O(n)O(n) overhead is inevitable, one can explore if this overhead can be pushed to the preprocessing phase and the online phase can be achieved with O(1)O(1) overhead. This result was recently achieved in the synchronous setting, in fact, with GOD guarantee. We show this same result in the asynchronous setting. This was previously open since the main standard approach to getting constant overhead in a synchronous on-line phase fails in the asynchronous setting. In particular, this shows that we do not need to settle for abort security to get an asynchronous perfectly secure protocol with overheads O(n)O(n) and O(1)O(1).

Lastly, in the synchronous setting, we show that perfect secure MPC with abort requires only 2 rounds, in contrast to protocols with GOD that require 4 rounds.

Ask about this paper

Ask your agent about it.

Lune has read the top-tier papers around this one, so every answer names the papers it rests on.

Questions to start from

Your agent calls

Lunesearch_papers

Ask in Lune

Free to start. No credit card required.

lune papers get e5b7c212-2629-46af-a9af-80de2aac2757

Related papers

Dusk over the sea between two cliffs drawn in fine vertical lines