Dynamic proofs of retrievability with low server storage
Gaspard Anthoine, Jean-Guillaume Dumas, Mélanie de Jonghe, Aude Maignan, Clément Pernet, Michael Hanling, Daniel S. Roche
摘要
Proofs of Retrievability (PoRs) are protocols which allow a client to store data remotely and to efficiently ensure, via audits, that the entirety of that data is still intact. A dynamic PoR system also supports efficient retrieval and update of any small portion of the data. We propose new, simple protocols for dynamic PoR that are designed for practical efficiency, trading decreased persistent storage for increased server computation, and show in fact that this tradeoff is inherent via a lower bound proof of time-space for any PoR scheme. Notably, ours is the first dynamic PoR which does not require any special encoding of the data stored on the server, meaning it can be trivially composed with any database service or with existing techniques for encryption or redundancy. Our implementation and deployment on Google Cloud Platform demonstrates our solution is scalable: for example, auditing a 1TB file takes 16 minutes at a monetary cost of just $0.23 USD. We also present several further enhancements, reducing the amount of client storage, or the communication bandwidth, or allowing public verifiability, wherein any untrusted third party may conduct an audit.
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- Mirror: Enabling Proofs of Data Replication and Retrievability in the CloudFrederik Armknecht, Ludovic Barman, Jens-Matthias Bohli, Ghassan O. KarameUSENIX Security 2016 · 被引用 53 次
- PIEs: Public Incompressible Encodings for Decentralized StorageEthan Cecchetti, Ben Fisch, Ian Miers, Ari JuelsCCS 2019 · 被引用 18 次
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