, Volume 25, Issue 4, pp 680-722
First online:
Secure Two-Party Computation via Cut-and-Choose Oblivious Transfer
- Yehuda LindellAffiliated withDept. of Computer Science, Bar-Ilan University Email author
- , Benny PinkasAffiliated withDept. of Computer Science, Bar-Ilan University
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Protocols for secure two-party computation enable a pair of parties to compute a function of their inputs while preserving security properties such as privacy, correctness and independence of inputs. Recently, a number of protocols have been proposed for the efficient construction of two-party computation secure in the presence of malicious adversaries (where security is proven under the standard simulation-based ideal/real model paradigm for defining security). In this paper, we present a protocol for this task that follows the methodology of using cut-and-choose to boost Yao’s protocol to be secure in the presence of malicious adversaries. Relying on specific assumptions (DDH), we construct a protocol that is significantly more efficient and far simpler than the protocol of Lindell and Pinkas (Eurocrypt 2007) that follows the same methodology. We provide an exact, concrete analysis of the efficiency of our scheme and demonstrate that (at least for not very small circuits) our protocol is more efficient than any other known today.
Keywords
Secure two-party computation Malicious adversaries Cut-and-choose Concrete efficiency- Title
- Secure Two-Party Computation via Cut-and-Choose Oblivious Transfer
- Journal
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Journal of Cryptology
Volume 25, Issue 4 , pp 680-722
- Cover Date
- 2012-10
- DOI
- 10.1007/s00145-011-9107-0
- Print ISSN
- 0933-2790
- Online ISSN
- 1432-1378
- Publisher
- Springer-Verlag
- Additional Links
- Topics
- Keywords
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- Secure two-party computation
- Malicious adversaries
- Cut-and-choose
- Concrete efficiency
- Industry Sectors
- Authors
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Yehuda Lindell
(1)
-
Benny Pinkas
(1)
-
Yehuda Lindell
- Author Affiliations
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- 1. Dept. of Computer Science, Bar-Ilan University, Ramat-Gan, Israel