评估实时文档编辑的crdt

Mehdi Ahmed-Nacer, C. Ignat, G. Oster, Hyun-Gul Roh, Pascal Urso
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引用次数: 78

摘要

如今,实时编辑系统正在流行起来。Etherpad或Google Docs等工具使分散在不同地点的多个作者能够协作编写共享文档。在这样的系统中,需要一种复制机制来确保合并对同一文档执行的并发更改时的一致性。当前的编辑系统使用操作转换(OT),这是一种用于并发文档编辑的传统复制机制。最近,交换复制数据类型(crdt)作为一类新的复制机制被引入,其并发操作被设计为本机交换。crdt,如WOOT、Logoot、Treedoc和RGAs,有望成为协作编辑系统中复制机制的替代品。本文论证了crdt在实时协同编辑中的适用性。为了反映分散式协作的趋势,这种协作可以抵抗审查,容忍失败,并让用户控制文档,我们从实时点对点协作中收集编辑日志。我们介绍了通过在各种crdt上重播这些编辑日志和在同一环境中实现的OT算法获得的实验结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluating CRDTs for real-time document editing
Nowadays, real-time editing systems are catching on. Tools such as Etherpad or Google Docs enable multiple authors at dispersed locations to collaboratively write shared documents. In such systems, a replication mechanism is required to ensure consistency when merging concurrent changes performed on the same document. Current editing systems make use of operational transformation (OT), a traditional replication mechanism for concurrent document editing. Recently, Commutative Replicated Data Types (CRDTs) were introduced as a new class of replication mechanisms whose concurrent operations are designed to be natively commutative. CRDTs, such as WOOT, Logoot, Treedoc, and RGAs, are expected to be substitutes of replication mechanisms in collaborative editing systems. This paper demonstrates the suitability of CRDTs for real-time collaborative editing. To reflect the tendency of decentralised collaboration, which can resist censorship, tolerate failures, and let users have control over documents, we collected editing logs from real-time peer-to-peer collaborations. We present our experiment results obtained by replaying those editing logs on various CRDTs and an OT algorithm implemented in the same environment.
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