Leaking Arbitrarily Many Secrets: Any-out-of-Many Proofs and Applications to RingCT Protocols
Tianyu Zheng, Shang Gao, Yubo Song, Bin Xiao
摘要
Ring Confidential Transaction (RingCT) protocol is an effective cryptographic component for preserving the privacy of cryptocurrencies. However, existing RingCT protocols are instantiated from one-out-of-many proofs with only one secret, leading to low efficiency and weak anonymity when handling transactions with multiple inputs. Additionally, current partial knowledge proofs with multiple secrets are neither secure nor efficient to be applied in a RingCT protocol.In this paper, we propose a novel any-out-of-many proof, a logarithmic-sized zero-knowledge proof scheme for showing the knowledge of arbitrarily many secrets out of a public list. Unlike other partial knowledge proofs that have to reveal the number of secrets [ACF21], our approach proves the knowledge of multiple secrets without leaking the exact number of them. Furthermore, we improve the efficiency of our method with a generic inner-product transformation to adopt the Bulletproofs compression [BBB+18], which reduces the proof size to 2⌈log2(N)⌉+9.Based on our proposed proof scheme, we further construct a compact RingCT protocol for privacy cryptocurrencies, which can provide a logarithmic-sized communication complexity for transactions with multiple inputs. More importantly, as the only known RingCT protocol instantiated from the partial knowledge proofs, our protocol can achieve the highest anonymity level compared with other approaches like Omniring [LRR+19]. For other applications, such as multiple ring signatures, our protocol can also be applied with some modifications. We believe our techniques are also applicable in other privacy-preserving scenarios, such as multiple ring signatures and coin-mixing in the blockchain.
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引用它的顶会 Paper3
- BulletCT: Towards More Scalable Ring Confidential Transactions With Transparent SetupNan Wang, Qianhui Wang, Dongxi Liu, Muhammed F. Esgin 等USENIX Security 2025
- Just One Bit Vector: Complement-Free Ring Confidential Transactions with Transparent SetupHao Gao, Qianhong Wu, Bo Qin, Fudong Wu 等USENIX Security 2026
- Lether: Practical Post-Quantum Account-Based Private Blockchain PaymentsHongxiao Wang, Muhammed F. Esgin, Ron Steinfeld, Siu-Ming YiuCCS 2026
它引用的顶会 Paper6
- Bulletproofs: Short Proofs for Confidential Transactions and MoreBenedikt Bünz, Jonathan Bootle, Dan Boneh, Andrew Poelstra 等S&P 2018 · 被引用 1,285 次
- Sonic: Zero-Knowledge SNARKs from Linear-Size Universal and Updatable Structured Reference StringsMary Maller, Sean Bowe, Markulf Kohlweiss, Sarah MeiklejohnCCS 2019 · 被引用 412 次
- MatRiCT: Efficient, Scalable and Post-Quantum Blockchain Confidential Transactions ProtocolMuhammed F. Esgin, Raymond K. Zhao, Ron Steinfeld, Joseph K. Liu 等CCS 2019 · 被引用 104 次
- Compressing Proofs of k-Out-Of-n Partial KnowledgeThomas Attema, Ronald Cramer, Serge FehrCRYPTO 2021 · 被引用 42 次
- Many-out-of-Many Proofs and Applications to Anonymous ZetherBenjamin E. DiamondS&P 2021 · 被引用 38 次
相关 Paper
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- SwiftRange: A Short and Efficient Zero-Knowledge Range Argument For Confidential Transactions and MoreNan Wang, Sid Chi-Kin Chau, Dongxi LiuS&P 2024 · 被引用 13 次
