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Consider the representative task of designing a distributed coin-tossing protocol for nn processors such that the probability of heads is X0∈[0,1]X0∈[0,1], and an adversary can reset one processor to ...
4-round non-malleable zero knowledge (NMZK): Goyal et al. in FOCS 2014 showed the first 4-round one-one NMZK argument from one-way functions (OWFs). Their construction requires the prover to know the ...
Recently, in a breakthrough result, Haitner and Tsfadia [STOC 2014] constructed an O(log3(r)/r)O(log3⁡(r)/r)-fair (almost optimal) three-party coin-tossing protocol. Their work brings forth a co...
It is well known that it is impossible for two parties to toss a coin fairly (Cleve, STOC 1986). This result implies that it is impossible to securely compute with fairness any function that can be us...
The ability to collectively toss a common coin among $n$ parties in the presence of faults is an important primitive in the arsenal of randomized distributed protocols. In the case of dishonest majori...
The ability to collectively toss a common coin among $n$ parties in the presence of faults is an important primitive in the arsenal of randomized distributed protocols. In the case of dishonest majori...
In this paper we show that any two-party functionality can be securely computed in a constant number of rounds, where security is obtained against (polynomial-time) malicious adversaries that may ar...

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