Le Mans: Dynamic and Fluid MPC for Dishonest Majority
Rahul Rachuri, Peter Scholl
Abstract
Most MPC protocols require the set of parties to be active for the entire duration of the computation. Deploying MPC for use cases such as complex and resource-intensive scientific computations increases the barrier of entry for potential participants. The model of Fluid MPC (Crypto 2021) tackles this issue by giving parties the flexibility to participate in the protocol only when their resources are free. As such, the set of parties is dynamically changing over time.
In this work, we extend Fluid MPC, which only considered an honest majority, to the setting where the majority of participants at any point in the computation may be corrupt. We do this by presenting variants of the SPDZ protocol, which support dynamic participants. Firstly, we describe a universal preprocessing for SPDZ, which allows a set of n parties to compute some correlated randomness, such that later on, any subset of the parties can use this to take part in an online secure computation. We complement this with a Dynamic SPDZ online phase, designed to work with our universal preprocessing, as well as a protocol for securely realising the preprocessing. Our preprocessing protocol is designed to efficiently use pseudorandom correlation generators, thus, the parties' storage and communication costs can be almost independent of the function being evaluated.
We then extend this to support a fluid online phase, where the set of parties can dynamically evolve during the online phase. Our protocol achieves maximal fluidity and security with abort, similarly to the previous, honest majority construction. Achieving this requires a careful design and techniques to guarantee a small state complexity, allowing us to switch between committees efficiently.
Ask about this paper
Your agent reads all of it.
Lune indexed this paper to the last equation, along with the top-tier papers that cite it. Ask a question and the answer quotes them.
Your agent calls
Luneget_paper_fulltext
Free to start. No credit card required.
Terminal
Install the CLIlune papers fulltext adb80ffa-5b4f-4d97-84a3-45494cb7835eCited by top-tier papers6
- Correlated Pseudorandomness from Expand-Accumulate CodesElette Boyle, Geoffroy Couteau, Niv Gilboa, Yuval Ishai et al.CRYPTO 2022 · 66 citations
- TurboPack: Honest Majority MPC with Constant Online CommunicationDaniel Escudero, Vipul Goyal, Antigoni Polychroniadou, Yifan SongCCS 2022 · 25 citations
- Helium: Scalable MPC among Lightweight Participants and under ChurnChristian Mouchet, Sylvain Chatel, Apostolos Pyrgelis, Carmela TroncosoCCS 2024 · 2 citations
- Committed Vector Oblivious Linear Evaluation and Its ApplicationsYunqing Sun, Hanlin Liu, Kang Yang, Yu Yu et al.CCS 2025
- DMM: Distributed Matrix Mechanism for Differentially-Private Federated Learning Based on Constant-Overhead Linear Secret ResharingAlexander Bienstock, Ujjwal Kumar, Antigoni PolychroniadouICML 2025
Builds on10
- MASCOT: Faster Malicious Arithmetic Secure Computation with Oblivious TransferMarcel Keller, Emmanuela Orsini, Peter SchollCCS 2016 · 487 citations
- Efficient Two-Round OT Extension and Silent Non-Interactive Secure ComputationElette Boyle, Geoffroy Couteau, Niv Gilboa, Yuval Ishai et al.CCS 2019 · 238 citations
- Compressing Vector OLEElette Boyle, Geoffroy Couteau, Niv Gilboa, Yuval IshaiCCS 2018 · 220 citations
- Wolverine: Fast, Scalable, and Communication-Efficient Zero-Knowledge Proofs for Boolean and Arithmetic CircuitsChenkai Weng, Kang Yang, Jonathan Katz, Xiao WangS&P 2021 · 205 citations
- Efficient Pseudorandom Correlation Generators from Ring-LPNElette Boyle, Geoffroy Couteau, Niv Gilboa, Yuval Ishai et al.CRYPTO 2020 · 113 citations
Related papers
- On Linear Communication Complexity for (Maximally) Fluid MPCAlexander Bienstock, Daniel Escudero, Antigoni PolychroniadouCRYPTO 2023 · 14 citations
- Fluid MPC: Secure Multiparty Computation with Dynamic ParticipantsArka Rai Choudhuri, Aarushi Goel, Matthew Green, Abhishek Jain et al.CRYPTO 2021 · 50 citations
- SuperPack: Dishonest Majority MPC with Constant Online CommunicationDaniel Escudero, Vipul Goyal, Antigoni Polychroniadou, Yifan Song et al.EUROCRYPT 2023 · 15 citations
- Sharing Transformation and Dishonest Majority MPC with Packed Secret SharingVipul Goyal, Antigoni Polychroniadou, Yifan SongCRYPTO 2022 · 31 citations
- Preprocessing for Life: Dishonest-Majority MPC with a Trusted or Untrusted DealerElette Boyle, Niv Gilboa, Matan Hamilis, Yuval Ishai et al.S&P 2025
