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DORA: Distributed Oracle Agreement with Simple Majority

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arxiv 2305.03903 v2 pith:IUFROZXC submitted 2023-05-06 cs.DC

classification cs.DC
keywords agreementnodesoraclecoherentdistributedinformationmajoritymultiple
verification ladder T0 review T1 audit T2 compute T3 formal

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abstract

Oracle networks feeding off-chain information to a blockchain are required to solve a distributed agreement problem since these networks receive information from multiple sources and at different times. We make a key observation that in most cases, the value obtained by oracle network nodes from multiple information sources are in close proximity. We define a notion of agreement distance and leverage the availability of a state machine replication (SMR) service to solve this distributed agreement problem with an honest simple majority of nodes instead of the conventional requirement of an honest super majority of nodes. Values from multiple nodes being in close proximity, therefore, forming a coherent cluster, is one of the keys to its efficiency. Our asynchronous protocol also embeds a fallback mechanism if the coherent cluster formation fails. Through simulations using real-world exchange data from seven prominent exchanges, we show that even for very small agreement distance values, the protocol would be able to form coherent clusters and therefore, can safely tolerate up to $1/2$ fraction of Byzantine nodes. We also show that, for a small statistical error, it is possible to choose the size of the oracle network to be significantly smaller than the entire system tolerating up to a $1/3$ fraction of Byzantine failures. This allows the oracle network to operate much more efficiently and horizontally scale much better.

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Cited by 3 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Distributed Download from an External Data Source in Asynchronous Faulty Settings

    cs.DC 2025-09 conditional novelty 7.0 of 10

    First asynchronous solutions for the Download problem: optimal deterministic crash-tolerant protocols, near-optimal randomized Byzantine-tolerant protocols, and a new Ω(n/2) lower bound for β ≥ 1/2.

  2. Distributed Download from an External Data Source in Faulty Majority Settings

    cs.DC 2024-12 conditional novelty 7.0 of 10

    A randomized algorithm achieves O(n log n/(γk)) per-peer queries for Byzantine-resilient Download with any fault fraction β<1, plus dynamic-adversary and crash-fault protocols and a single-round lower bound.

  3. IntraLayer: A Platform of Digital Finance Platforms

    q-fin.GN 2024-12 unverdicted novelty 3.0 of 10

    IntraLayer is a proposed decentralized hub that aggregates data, value, and liquidity across blockchains, but the paper provides only an unsolved framework rather than a working result.

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