Bandwidth-Efficient Zero-Knowledge Proofs For Threshold ECDSA

Author:

Cui Handong1,Chan Kwan Yin1,Yuen Tsz Hon1,Kang Xin2,Chu Cheng-Kang2

Affiliation:

1. Department of Computer Science, The University of Hong Kong , Hong Kong SAR , China

2. Digital Identity and Trustworthiness Laboratory, Huawei Singapore Research Center , Singapore

Abstract

Abstract In most threshold Elliptic Curve Digital Signature Algorithm (ECDSA) signatures using additively homomorphic encryption, the zero-knowledge (ZK) proofs related to the ciphertext or the message space are the bottleneck in terms of bandwidth as well as computation time. In this paper, we propose a compact ZK proof for relations related to the Castagnos–Laguillaumie (CL) encryption, which is 33% shorter and 29% faster than the existing work in PKC 2021. We also give new ZK proofs for relations related to homomorphic operations over the CL ciphertext. These new ZK proofs are useful to construct a bandwidth-efficient universal composable-secure threshold ECDSA without compromising the proactive security and the non-interactivity. In particular, we lowered the communication and computation cost of the key refresh algorithm in the Paillier-based counterpart from $O(n^3)$ to $O(n^2)$. Considering a 5-signer setting, the bandwidth is better than the Paillier-based counterpart for up to 99, 95 and 35% for key generation, key refreshment and pre-signing, respectively.

Funder

Huawei Singapore Research Centre Project

Publisher

Oxford University Press (OUP)

Subject

General Computer Science

Reference18 articles.

1. A public-key cryptosystem suitable for digital multisignatures;Itakura;NEC Research & Development,1983

2. Fast multiparty threshold ECDSA with fast trustless setup;Gennaro,2018

3. Bandwidth-efficient threshold EC-DSA;Castagnos,2020

4. One round threshold ECDSA with identifiable abort;Gennaro;Cryptology,2020

5. Compact zero-knowledge proofs for threshold ECDSA with trustless setup;Yuen,2021

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