EDBT 2026 Demo / reviewers in the wild / expert
Aner Ben-Efraim
dblp:140/7897
· DBLP profile ↗
9ranked-venue papers
7as first author
4since 2021 · last 2026
0009-0000-0334-7761ORCID · corroborated
Domains — the database's venue-derived domains; a paper can count in several
Security and privacy · 9 · 7 first-author · 4 since 2021Theory of computation · 1
| Year | Publication | Venue | Position |
|---|---|---|---|
| 2026 | MYao: Efficient Multiparty "Yao" Garbled Circuits with Row Reduction and Half GatesabstractGarbled circuits are a powerful and important cryptographic primitive, introduced by Yao [FOCS 1986] for secure two-party computation. Beaver, Micali and Rogaway (BMR) [STOCS 1990] extended the garbled circuit technique to construct the first constant-round secure multiparty computation (MPC) protocol. In the BMR protocol, the garbled circuit size grows linearly and the online computation time grows quadratically with the number of parties. Previous solutions to avoid this relied on key-homomorphic PRFs, incurring a large garbled circuit size and slow online computation time. Aner Ben-Efraim, Lior Breitman, Jonathan Bronshtein, Olga Nissenbaum, Eran Omri |
AsiaCCS | 1 |
| 2022 | PSImple: Practical Multiparty Maliciously-Secure Private Set IntersectionabstractPrivate set intersection (PSI) protocols allow a set of mutually distrustful parties, each holding a private set of items, to compute the intersection over all their sets, such that no other information is revealed. PSI has a wide variety of applications including online advertising (e.g., efficacy computation), security (e.g., botnet detection, intrusion detection), proximity testing (e.g., COVID-19 contact tracing), and more. Private set intersection is a rapidly developing area and there exist many highly efficient protocols. However, almost all of these protocols are for the case of two parties or for semi-honest security. In particular, despite the high interest in this problem, prior to our work there has been no concretely efficient, maliciously secure multiparty PSI protocol. Aner Ben-Efraim, Olga Nissenbaum, Eran Omri, Anat Paskin-Cherniavsky |
AsiaCCS | 1 |
| 2021 | Large Scale, Actively Secure Computation from LPN and Free-XOR Garbled Circuits
Aner Ben-Efraim, Kelong Cong, Eran Omri, Emmanuela Orsini, Nigel P. Smart, Eduardo Soria-Vazquez |
EUROCRYPT (3) | 1 |
| 2021 | Common information, matroid representation, and secret sharing for matroid ports
Michael Bamiloshin, Aner Ben-Efraim, Oriol Farràs, Carles Padró |
Des. Codes Cryptogr. | 2 |
| 2019 | Turbospeedz: Double Your Online SPDZ! Improving SPDZ Using Function Dependent Preprocessing
Aner Ben-Efraim, Michael Nielsen 0007, Eran Omri |
ACNS | 1 |
| 2018 | On Multiparty Garbling of Arithmetic Circuits
Aner Ben-Efraim |
ASIACRYPT (3) | 1 |
| 2017 | Efficient Scalable Constant-Round MPC via Garbled Circuits
Aner Ben-Efraim, Yehuda Lindell, Eran Omri |
ASIACRYPT (2) | 1 |
| 2016 | Optimizing Semi-Honest Secure Multiparty Computation for the InternetabstractIn the setting of secure multiparty computation, a set of parties with private inputs wish to compute some function of their inputs without revealing anything but their output. Over the last decade, the efficiency of secure two-party computation has advanced in leaps and bounds, with speedups of some orders of magnitude, making it fast enough to be of use in practice. In contrast, progress on the case of multiparty computation (with more than two parties) has been much slower, with very little work being done. Currently, the only implemented efficient multiparty protocol has many rounds of communication (linear in the depth of the circuit being computed) and thus is not suited for Internet-like settings where latency is not very low. In this paper, we construct highly efficient constant-round protocols for the setting of multiparty computation for semi-honest adversaries. Our protocols work by constructing a multiparty garbled circuit, as proposed in BMR (Beaver et al., STOC 1990). Our first protocol uses oblivious transfer and constitutes the first concretely-efficient constant-round multiparty protocol for the case of no honest majority. Our second protocol uses BGW, and is significantly more efficient than the FairplayMP protocol (Ben-David et al., CCS 2008) that also uses BGW. Aner Ben-Efraim, Yehuda Lindell, Eran Omri |
CCS | 1 |
| 2014 | Multi-linear Secret-Sharing Schemes
Amos Beimel, Aner Ben-Efraim, Carles Padró, Ilya Tyomkin |
TCC | 2 |