Shaduf: Non-Cycle Payment Channel Rebalancing
Zhonghui Ge, Yi Zhang, Yu Long, Dawu Gu
Abstract
—A leading approach to enhancing the performance and scalability of permissionless blockchains is to use the payment channel, which allows two users to perform off-chain payments with almost unlimited frequency. By linking payment channels together to form a payment channel network, users connected by a path of channels can perform off-chain payments rapidly. However, payment channels risk encountering fund depletion, which threatens the availability of both the payment channel and network. The most recent method needs a cycle-based channel rebalancing procedure, which requires a fair leader and users with rebalancing demands forming directed cycles in the network. Therefore, its large-scale applications are restricted. In this work, we introduce Shaduf, a novel non-cycle off-chain rebalancing protocol that offers a new solution for users to shift coins between channels directly without relying on the cycle setting. Shaduf can be applied to more general rebalancing scenarios. We provide the details of Shaduf and formally prove its security under the Universal Composability framework. Our prototype demonstrates its feasibility and the experimental evaluation shows that Shaduf enhances the Lighting Network performance in payment success ratio and volume. Moreover, our protocol prominently reduces users’ deposits in channels while maintaining the same amount of payments.
Ask about this paper
Your agent reads all of it.
Lune indexed this paper to the last equation, along with the top-tier papers that cite it. Ask a question and the answer quotes them.
Cited by top-tier papers2
- Horcrux: Synthesize, Split, Shift and Stay Alive; Preventing Channel Depletion via Universal and Enhanced Multi-hop PaymentsAnqi Tian, Peifang Ni, Yingzi Gao, Jing XuNDSS 2025
- On the Atomicity and Efficiency of Blockchain Payment ChannelsDi Wu, Shoupeng Ren, Yuman Bai, Lipeng He et al.USENIX Security 2025
Builds on16
- TumbleBit: An Untrusted Bitcoin-Compatible Anonymous Payment HubEthan Heilman, Leen Alshenibr, Foteini Baldimtsi, Alessandra Scafuro et al.NDSS 2017 · 322 citations
- Concurrency and Privacy with Payment-Channel NetworksGiulio Malavolta, Pedro Moreno-Sanchez, Aniket Kate, Matteo Maffei et al.CCS 2017 · 307 citations
- Anonymous Multi-Hop Locks for Blockchain Scalability and InteroperabilityGiulio Malavolta, Pedro Moreno-Sanchez, Clara Schneidewind, Aniket Kate et al.NDSS 2019 · 305 citations
- Bolt: Anonymous Payment Channels for Decentralized CurrenciesMatthew Green, Ian MiersCCS 2017 · 281 citations
- Revive: Rebalancing Off-Blockchain Payment NetworksRami Khalil, Arthur GervaisCCS 2017 · 259 citations
Related papers
- Thora: Atomic and Privacy-Preserving Multi-Channel UpdatesLukas Aumayr, Kasra Abbaszadeh, Matteo MaffeiCCS 2022 · 20 citations
- Blitz: Secure Multi-Hop Payments Without Two-Phase CommitsLukas Aumayr, Pedro Moreno-Sanchez, Aniket Kate, Matteo MaffeiUSENIX Security 2021 · 63 citations
- Atomic Multi-Channel Updates with Constant Collateral in Bitcoin-Compatible Payment-Channel NetworksChristoph Egger, Pedro Moreno-Sanchez, Matteo MaffeiCCS 2019 · 108 citations
- Utility-aware Payment Channel Network RebalanceWangze Ni, Pengze Chen, Lei Chen, Peng Cheng et al.VLDB 2024 · 3 citations
- Bitcoin-Compatible Virtual ChannelsLukas Aumayr, Matteo Maffei, Oguzhan Ersoy, Andreas Erwig et al.S&P 2021 · 62 citations
