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Efficient State-based CRDTs by Delta-Mutation

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arxiv 1410.2803 v2 pith:U2COSQGR submitted 2014-10-10 cs.DC cs.DBcs.DScs.PF

classification cs.DCcs.DBcs.DScs.PF
keywords crdtsdeltastate-basedcrdtintroducestateconsistencydatatypes
verification ladder T0 review T1 audit T2 compute T3 formal
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CRDTs are distributed data types that make eventual consistency of a distributed object possible and non ad-hoc. Specifically, state-based CRDTs ensure convergence through disseminating the en- tire state, that may be large, and merging it to other replicas; whereas operation-based CRDTs disseminate operations (i.e., small states) assuming an exactly-once reliable dissemination layer. We introduce Delta State Conflict-Free Replicated Datatypes ({\delta}-CRDT) that can achieve the best of both worlds: small messages with an incremental nature, as in operation-based CRDTs, disseminated over unreliable communication channels, as in traditional state-based CRDTs. This is achieved by defining {\delta}-mutators to return a delta-state, typically with a much smaller size than the full state, that is joined to both: local and remote states. We introduce the {\delta}-CRDT framework, and we explain it through establishing a correspondence to current state-based CRDTs. In addition, we present an anti-entropy algorithm that ensures causal consistency, and we introduce two {\delta}-CRDT specifications of well-known replicated datatypes.

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