Proof-of-Stake Sidechains
Peter Gazi, Aggelos Kiayias, Dionysis Zindros
摘要
Sidechains have long been heralded as the key enabler of blockchain scalability and interoperability. However, no modeling of the concept or a provably secure construction has so far been attempted. We provide the first formal definition of what a sidechain system is and how assets can be moved between sidechains securely. We put forth a security definition that augments the known transaction ledger properties of persistence and liveness to hold across multiple ledgers and enhance them with a new "firewall" security property which safeguards each blockchain from its sidechains, limiting the impact of an otherwise catastrophic sidechain failure. We then provide a sidechain construction that is suitable for proof-of-stake (PoS) sidechain systems. As an exemplary concrete instantiation we present our construction for an epoch-based PoS system consistent with Ouroboros (Crypto 2017), the PoS blockchain protocol used in Cardano which is one of the largest pure PoS systems by market capitalisation, and we also comment how the construction can be adapted for other protocols such as Ouroboros Praos (Eurocrypt 2018), Ouroboros Genesis (CCS 2018), Snow White and Algorand. An important feature of our construction is merged-staking that prevents "goldfinger" attacks against a sidechain that is only carrying a small amount of stake. An important technique for pegging chains that we use in our construction is cross-chain certification which is facilitated by a novel cryptographic primitive we introduce called ad-hoc threshold multisignatures (ATMS) which may be of independent interest. We show how ATMS can be securely instantiated by regular and aggregate digital signatures as well as succinct arguments of knowledge such as STARKs and bulletproofs with varying degrees of storage efficiency.
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引用它的顶会 Paper12
- XCLAIM: Trustless, Interoperable, Cryptocurrency-Backed AssetsAlexei Zamyatin, Dominik Harz, Joshua Lind, Panayiotis Panayiotou 等S&P 2019 · 被引用 222 次
- HyperService: Interoperability and Programmability Across Heterogeneous BlockchainsZhuotao Liu, Yangxi Xiang, Jian Shi, Peng Gao 等CCS 2019 · 被引用 128 次
- SoK: Security and Privacy of Blockchain InteroperabilityAndré Augusto, Rafael Belchior, Miguel Correia, André Vasconcelos 等S&P 2024 · 被引用 90 次
- Blockchain CensorshipAnton Wahrstätter, Jens Ernstberger, Aviv Yaish, Liyi Zhou 等WWW 2024 · 被引用 60 次
- A Treasury System for Cryptocurrencies: Enabling Better Collaborative IntelligenceBingsheng Zhang, Roman Oliynykov, Hamed BalogunNDSS 2019 · 被引用 33 次
它引用的顶会 Paper4
- A Secure Sharding Protocol For Open BlockchainsLoi Luu, Viswesh Narayanan, Chaodong Zheng, Kunal Baweja 等CCS 2016 · 被引用 1,392 次
- 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
- OmniLedger: A Secure, Scale-Out, Decentralized Ledger via ShardingEleftherios Kokoris-Kogias, Philipp Jovanovic, Linus Gasser, Nicolas Gailly 等S&P 2018 · 被引用 1,145 次
- Ouroboros Genesis: Composable Proof-of-Stake Blockchains with Dynamic AvailabilityChristian Badertscher, Peter Gazi, Aggelos Kiayias, Alexander Russell 等CCS 2018 · 被引用 306 次
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