Catena: Efficient Non-equivocation via Bitcoin
Alin Tomescu, Srinivas Devadas
摘要
We present Catena, an efficiently-verifiable Bitcoin witnessing scheme. Catena enables any number of thin clients, such as mobile phones, to efficiently agree on a log of application-specific statements managed by an adversarial server. Catena implements a log as an OP_RETURN transaction chain andprevents forks in the log by leveraging Bitcoin's security againstdouble spends. Specifically, if a log server wants to equivocate ithas to double spend a Bitcoin transaction output. Thus, Catena logs are as hard to fork as the Bitcoin blockchain: an adversarywithout a large fraction of the network's computational power cannot fork Bitcoin and thus cannot fork a Catena log either. However, different from previous Bitcoin-based work, Catena decreases the bandwidth requirements of log auditors from 90GB to only tens of megabytes. More precisely, our clients only need to download all Bitcoin block headers (currently less than35 MB) and a small, 600-byte proof for each statement in a block. We implement Catena in Java using the bitcoinj library and use itto extend CONIKS, a recent key transparency scheme, to witnessits public-key directory in the Bitcoin blockchain where it can beefficiently verified by auditors. We show that Catena can secure many systems today, such as public-key directories, Tor directory servers and software transparency schemes.
问问这篇 Paper
问问你的智能体。
Lune 读过与它相关的顶会 Paper,每个回答都会注明依据哪几篇。
引用它的顶会 Paper13
- XRD: Scalable Messaging System with Cryptographic PrivacyAlbert Kwon, David Lu, Srinivas DevadasNSDI 2020 · 被引用 87 次
- Transparency Logs via Append-Only Authenticated DictionariesAlin Tomescu, Vivek Bhupatiraju, Dimitrios Papadopoulos, Charalampos Papamanthou 等CCS 2019 · 被引用 69 次
- Merkle2: A Low-Latency Transparency Log SystemYuncong Hu, Kian Hooshmand, Harika Kalidhindi, Seung Jin Yang 等S&P 2021 · 被引用 51 次
- Ghostor: Toward a Secure Data-Sharing System from Decentralized TrustYuncong Hu, Sam Kumar, Raluca Ada PopaNSDI 2020 · 被引用 48 次
- MUSES: Efficient Multi-User Searchable Encrypted DatabaseTung Le, Rouzbeh Behnia, Jorge Guajardo, Thang HoangUSENIX Security 2024 · 被引用 11 次
相关 Paper
- CHAINIAC: Proactive Software-Update Transparency via Collectively Signed Skipchains and Verified BuildsKirill Nikitin, Eleftherios Kokoris-Kogias, Philipp Jovanovic, Nicolas Gailly 等USENIX Security 2017 · 被引用 144 次
- Redactable Blockchain in the Permissionless SettingDominic Deuber, Bernardo Magri, Sri Aravinda Krishnan ThyagarajanS&P 2019 · 被引用 153 次
- Keeping Authorities "Honest or Bust" with Decentralized Witness CosigningEwa Syta, Iulia Tamas, Dylan Visher, David Isaac Wolinsky 等S&P 2016 · 被引用 285 次
- Transparency Overlays and ApplicationsMelissa Chase, Sarah MeiklejohnCCS 2016 · 被引用 58 次
- CoChain: High Concurrency Blockchain Sharding via Consensus on ConsensusMingzhe Li, You Lin, Jin Zhang, Wei WangINFOCOM 2023 · 被引用 42 次
