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Secure multiparty computation (MPC) enables a set of parties to securely carry out a joint computation of their private inputs without revealing anything but the output. Protocols for semi-honest adve...
We present two new, highly efficient, protocols for securely generating a distributed RSA key pair in the two-party setting. One protocol is semi-honestly secure and the other maliciously secure. Both...
Protocols for secure multiparty computation enable a set of parties to compute a function of their inputs without revealing anything but the output. The security properties of the protocol must be pre...
Protocols for secure multiparty computation enable a set of parties to compute a function of their inputs without revealing anything but the output. The security properties of the protocol must be pre...
Private set intersection (PSI) refers to a special case of secure two-party computation in which the parties each have a set of items and compute the intersection of these sets without revealing any a...
We propose a new protocol for two-party computation, secure against malicious adversaries, that is significantly faster than prior work in the single-execution (i.e., non-amortized) setting. In partic...
In this paper, we describe a new protocol for secure three-party computation of any functionality, with an honest majority and a \textit{malicious} adversary. Our protocol has both an information-theo...
We consider the following problem: Assuming that Alice and Bob have an integer interval [a, e] and an integer b respectively, for a commitment c to b, Alice and Bob jointly check whether b is within...
Noisy channels are a powerful resource for cryptography as they can be used to obtain information-theoretically secure key agreement, commitment and oblivious transfer protocols, among others. Obliv...
Oblivious transfer (OT) is one of the most fundamental primitives in cryptography and is widely used in protocols for secure two-party and multi-party computation. As secure computation becomes more...
Recently, several new techniques were presented to dramatically improve key parts of secure two-party computation (2PC) protocols that use the cut-and-choose paradigm on garbled circuits for 2PC wit...
We present a method to compile Yao's two-player garbled circuit protocol into one that is secure against malicious adversaries that relies on witness indistinguishability. Our approach can enjoy lower...
We present two practical frameworks for $h$-out-of-$n$ oblivious transfer ($OT^{n}_{h}$). The first one is secure against covert adversaries who are not always willing to cheat at any price. The secur...
We present two practical frameworks for $h$-out-of-$n$ oblivious transfer ($OT^{n}_{h}$). The first one is secure against covert adversaries who are not always willing to cheat at any price. The secur...
In secure computation, a set of parties wish to jointly compute some function of their private inputs while preserving security properties like privacy, correctness and more. The two main adversary mo...

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