Insured MPC: Efficient Secure Computation with Financial Penalties
- Carsten Baum,
- ,
- Rafael Dowsley
- Aarhus University,
Research Output:
Conference Article in Proceeding or Book/Report chapter
Article in proceedings
Peer-reviewOpen access
Publication Information
Output type
Research Output:
Conference Article in Proceeding or Book/Report chapter
Article in proceedings
Peer-reviewOriginal language
EnglishPages from-to (Number of pages)
Pages 404-420Publication milestones
- Published - 2020
Publication status
Published - 2020
Publisher
Springer, United States, GermanyBook series
- Book series name: Lecture Notes in Computer Science
Volume: 12059
ISSN: 0302-9743
ISBN (Print)
978-3-030-51279-8ISBN (Electronic)
978-3-030-51280-4Publication IDs
- Scopus: 85089209887
Host publication title
Financial Cryptography and Data Security. FC 2020.Host publication editors
- Joseph Bonneau
- Nadia Heninger
Abstract
Fairness in Secure Multiparty Computation (MPC) is known to be impossible to achieve in the presence of a dishonest majority. Previous works have proposed combining MPC protocols with cryptocurrencies in order to financially punish aborting adversaries, providing an incentive for parties to honestly follow the protocol. The focus of existing work is on proving that this approach is possible and unfortunately they present monolithic and mostly inefficient constructions. In this work, we put forth the first UC secure modular construction of “Insured MPC”, where either the output of the private computation (which describes how to distribute funds) is fairly delivered or a proof that a set of parties has misbehaved is produced, allowing for financial punishments. Moreover, both the output and the proof of cheating are publicly verifiable, allowing third parties to independently validate an execution. We present an efficient compiler that implements Insured MPC from an MPC protocol with certain properties, a standard (non-private) Smart Contract and a publicly verifiable homomorphic commitment scheme. As an intermediate step, we propose the first construction of a publicly verifiable homomorphic commitment scheme with composability guarantees.
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Citations
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Captures
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Access to documents
Accepted author manuscript, 809.38 KB
Related Event
Title
International Conference Financial Cryptography and Data Security
Event type
ConferenceDegree of recognition
International eventDate
10/02/2020 - 14/02/2020Location
Kota KinabaluMalaysia
