Achieving Guaranteed Output Delivery MPC with Constant Rounds and Linear Communication in Minicrypt
Junru Li, Yifan Song
2026年份
摘要
In this work, we study the communication complexity of constant-round MPC with guaranteed output delivery (GOD) in Minicrypt. We construct the first MPC protocol in this setting with linear communication complexity of bits under the assumption of a random oracle, where is the circuit size, is the circuit depth, is the number of input wires, and is the security parameter.
In comparison, the previously best-known construction with linear communication ($O(|C|n)$), presented by Goyal et al. (CRYPTO 2020), requires $O(D+n^2)$ round complexity. When targeting $O(D)$ round complexity, the best-known result by Agarwal et al. (ASIACRYPT 2024) still requires $O(|C|n^3)$ communication complexity. More communication is needed to achieve constant round complexity, even with non-black-box use of the underlying cryptographic primitives.
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