The More the Merrier: Reducing the Cost of Large Scale MPC
S. Dov Gordon, Daniel Starin, Arkady Yerukhimovich
Abstract
Secure multi-party computation (MPC) allows multiple parties to perform secure joint computations on their private inputs. Today, applications for MPC are growing with thousands of parties wishing to build federated machine learning models or trusted setups for blockchains. To address such scenarios we propose a suite of novel MPC protocols that maximize throughput when run with large numbers of parties. In particular, our protocols have both communication and computation complexity that decrease with the number of parties. Our protocols build on prior protocols based on packed secret-sharing, introducing new techniques to build more efficient computation for general circuits. Specifically, we introduce a new approach for handling linear attacks that arise in protocols using packed secret-sharing and we propose a method for unpacking shared multiplication triples without increasing the asymptotic costs. Compared with prior work, we avoid the overhead required when generically compiling circuits of size for use in a SIMD computation, and we improve over folklore ``committee-based'' solutions by a factor of , the statistical security parameter. In practice, our protocol is up to faster than any known construction, under a reasonable set of parameters.
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Cited by top-tier papers4
- Le Mans: Dynamic and Fluid MPC for Dishonest MajorityRahul Rachuri, Peter SchollCRYPTO 2022 · 42 citations
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- TurboPack: Honest Majority MPC with Constant Online CommunicationDaniel Escudero, Vipul Goyal, Antigoni Polychroniadou, Yifan SongCCS 2022 · 25 citations
- zkSaaS: Zero-Knowledge SNARKs as a ServiceSanjam Garg, Aarushi Goel, Abhishek Jain, Guru-Vamsi Policharla et al.USENIX Security 2023
Builds on5
- MASCOT: Faster Malicious Arithmetic Secure Computation with Oblivious TransferMarcel Keller, Emmanuela Orsini, Peter SchollCCS 2016 · 487 citations
- Global-Scale Secure Multiparty ComputationXiao Wang, Samuel Ranellucci, Jonathan KatzCCS 2017 · 220 citations
- A Framework for Constructing Fast MPC over Arithmetic Circuits with Malicious Adversaries and an Honest-MajorityYehuda Lindell, Ariel NofCCS 2017 · 106 citations
- Two-Thirds Honest-Majority MPC for Malicious Adversaries at Almost the Cost of Semi-HonestJun Furukawa, Yehuda LindellCCS 2019 · 34 citations
- Stormy: Statistics in Tor by Measuring SecurelyRyan Wails, Aaron Johnson, Daniel Starin, Arkady Yerukhimovich et al.CCS 2019 · 2 citations
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