TrustBoost: Boosting Trust among Interoperable Blockchains
Peiyao Sheng, Xuechao Wang, Sreeram Kannan, Kartik Nayak, Pramod Viswanath
摘要
Currently there exist many blockchains with weak trust guarantees, limiting applications and participation. Existing solutions to boost the trust using a stronger blockchain, e.g., via checkpointing, requires the weaker blockchain to give up sovereignty. In this paper, we propose a family of protocols in which multiple blockchains interact to create a combined ledger with boosted trust. We show that even if several of the interacting blockchains cease to provide security guarantees, the combined ledger continues to be secureour TrustBoost protocols achieve the optimal threshold of tolerating the insecure blockchains. This optimality, along with the necessity of blockchain interactions, is formally shown within the classic shared memory model, tackling the long standing open challenge of solving consensus in the presence of both Byzantine objects and processes. Furthermore, our proposed construction of TrustBoost simply operates via smart contracts and require no change to the underlying consensus protocols of the participating blockchains, a form of "consensus on top of consensus". The protocols are lightweight and can be used on specific (e.g., high value) transactions; we demonstrate the practicality by implementing and deploying TrustBoost as cross-chain smart contracts in the Cosmos ecosystem using approximately 3,000 lines of Rust code, made available as open source [52] . Our evaluation shows that using 10 Cosmos chains in a local testnet, TrustBoost has a gas cost of roughly $2 with a latency of 2 minutes per request, which is in line with the cost on a high security chain such as Bitcoin or Ethereum. CCS CONCEPTS • Security and privacy → Distributed systems security.
问问这篇 Paper
智能体会读完全文。
Lune 把这篇 Paper 索引到了每一个公式,引用它的顶会 Paper 也一样。你提问,回答直接引用原文。
引用它的顶会 Paper5
- Interchain Timestamping for Mesh SecurityErtem Nusret Tas, Runchao Han, David Tse, Mingchao YuCCS 2023 · 被引用 13 次
- Random Beacons in Monte Carlo: Efficient Asynchronous Random Beacon without Threshold CryptographyAkhil Bandarupalli, Adithya Bhat, Saurabh Bagchi, Aniket Kate 等CCS 2024 · 被引用 6 次
- Cross-Consensus Reliable Broadcast and its ApplicationsYue Huang, Xin Wang, Haibin Zhang, Sisi DuanNDSS 2026 · 被引用 2 次
- Picsou: Enabling Replicated State Machines to Communicate EfficientlyReginald Frank, Micah Murray, Chawinphat Tankuranand, Junseo Yoo 等OSDI 2025 · 被引用 1 次
- Optimistic, Signature-Free Reliable Broadcast and Its ApplicationsNibesh Shrestha, Qianyu Yu, Aniket Kate, Giuliano Losa 等CCS 2025
它引用的顶会 Paper4
- Universal Atomic Swaps: Secure Exchange of Coins Across All BlockchainsSri Aravinda Krishnan Thyagarajan, Giulio Malavolta, Pedro Moreno-SanchezS&P 2022 · 被引用 112 次
- ResilientDB: Global Scale Resilient Blockchain FabricSuyash Gupta, Sajjad Rahnama, Jelle Hellings, Mohammad SadoghiVLDB 2020 · 被引用 100 次
- Interchain Timestamping for Mesh SecurityErtem Nusret Tas, Runchao Han, David Tse, Mingchao YuCCS 2023 · 被引用 13 次
- Bitcoin-Enhanced Proof-of-Stake Security: Possibilities and ImpossibilitiesErtem Nusret Tas, David Tse, Fangyu Gai, Sreeram Kannan 等S&P 2023
相关 Paper
- LightCross: Sharding with Lightweight Cross-Shard Execution for Smart ContractsXiaodong Qi, Yi LiINFOCOM 2024 · 被引用 22 次
- zkBridge: Trustless Cross-chain Bridges Made PracticalTiancheng Xie, Jiaheng Zhang, Zerui Cheng, Fan Zhang 等CCS 2022 · 被引用 131 次
- Bitcontracts: Supporting Smart Contracts in Legacy BlockchainsKarl Wüst, Loris Diana, Kari Kostiainen, Ghassan Karame 等NDSS 2021
- Minotaur: Multi-Resource Blockchain ConsensusMatthias Fitzi, Xuechao Wang, Sreeram Kannan, Aggelos Kiayias 等CCS 2022 · 被引用 5 次
- Kronos: A Secure and Generic Sharding Blockchain Consensus with Optimized OverheadYizhong Liu, Andi Liu, Yuan Lu, Zhuocheng Pan 等NDSS 2025
