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ResilientDB: Global Scale Resilient Blockchain Fabric

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arxiv 2002.00160 v2 pith:O54SQNYD submitted 2020-02-01 cs.DB cs.DC

classification cs.DBcs.DC
keywords consensusblockchaingeo-scalegeobftreplicasprotocolsresilientacross
verification ladder T0 review T1 audit T2 compute T3 formal
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Recent developments in blockchain technology have inspired innovative new designs in resilient distributed and database systems. At their core, these blockchain applications typically use Byzantine fault-tolerant consensus protocols to maintain a common state across all replicas, even if some replicas are faulty or malicious. Unfortunately, existing consensus protocols are not designed to deal with geo-scale deployments in which many replicas spread across a geographically large area participate in consensus. To address this, we present the Geo-Scale Byzantine FaultTolerant consensus protocol (GeoBFT). GeoBFT is designed for excellent scalability by using a topological-aware grouping of replicas in local clusters, by introducing parallelization of consensus at the local level, and by minimizing communication between clusters. To validate our vision of high-performance geo-scale resilient distributed systems, we implement GeoBFT in our efficient ResilientDB permissioned blockchain fabric. We show that GeoBFT is not only sound and provides great scalability, but also outperforms state-of-the-art consensus protocols by a factor of six in geo-scale deployments.

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  1. SpendableStore: A UTXO-based Decentralized Data Store

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    A UTXO-based hybrid store embeds CRUD data objects in spendable outputs, supports multi-object transactions under Future Now Snapshot Isolation, and shows up to 16× higher throughput than BlockchainDB on a public Mainnet.

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