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On Achieving “Best-in-the-Multiverse” MPC

  • Anasuya Acharya
  • , Carmit Hazay
  • , Muthuramakrishnan Venkitasubramaniam
  • Aarhus University
  • Georgetown University

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Abstract

The notion of Best-of-Both-Worlds introduced in the work of Ishai et al. (CRYPTO 2006) investigated whether an MPC protocol can simultaneously provide two incomparable security guarantees: guaranteed output delivery against an honest majority and security with abort against a dishonest majority and provided tight upper and lower bounds in the presence of computationally bounded, i.e., PPT adversaries. Another line of works starting from the work of Chaum (CRYPTO 1989) considered protocols that simultaneously achieved security against an unbounded adversary corrupting a minority of the parties and security against arbitrary corruption by a PPT adversary. In this work, we generalize previous work to investigate a fundamental challenge of designing an MPC in a multiverse where security is specified with respect to (1) GOD, (2) fairness, (3) security w.r.t. unbounded adversaries, and (4) security with abort. The work of Lucas et al. (PODC 2010) resolved this question when considering threshold adversaries; however, the case of general adversary structures remains open. Our main result completely characterizes when a protocol can simultaneously achieve all properties. Namely, given adversary structures ZGOD,Zfair,ZS and ZC, we provide tight upper and lower bounds for when an MPC protocol can provide GOD, fairness, and security with abort respectively for unbounded and PPT adversaries w.r.t. these adversary structures.

Original languageEnglish
Title of host publicationTheory of Cryptography - 23rd International Conference, TCC 2025, Proceedings
EditorsBenny Applebaum, Huijia (Rachel) Lin
PublisherSpringer Science and Business Media Deutschland GmbH
Pages119-151
Number of pages33
ISBN (Print)9783032122865
DOIs
StatePublished - 2026
Event23rd International Conference on Theory of Cryptography, TCC 2025 - Aarhus, Denmark
Duration: 1 Dec 20255 Dec 2025

Publication series

NameLecture Notes in Computer Science
Volume16268 LNCS
ISSN (Print)0302-9743
ISSN (Electronic)1611-3349

Conference

Conference23rd International Conference on Theory of Cryptography, TCC 2025
Country/TerritoryDenmark
CityAarhus
Period1/12/255/12/25

Bibliographical note

Publisher Copyright:
© International Association for Cryptologic Research 2026.

Keywords

  • Feasibility
  • General Adversary
  • Secure Multiparty Computation

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