Window-consistent replication for real-time applications

J. Rexford, A. Mehra, J. Dolter, F. Jahanian
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引用次数: 2

Abstract

Two widely-studied approaches for structuring fault-tolerant services are the state-machine and the primary-backup replication schemes. For a large class of soft and hard real-time applications, the degree of consistency among servers can be exploited to design replication protocols with predictable timing behavior. This is particularly useful in applications such as automated process control, in which one can trade off the quality or precision for timely availability of data. This paper presents the architecture and prototype implementation of a primary-backup replication service that employs window consistency semantics between the primary data repository and the backups. A client registers a data object with the service by declaring the consistency requirements for the data, in terms of a time window. The primary ensures that each backup site maintains a version of the object that was valid on the primary within the preceding time window by scheduling update messages to the backups. Decoupling the transmission of updates to the backups from the processing of client requests permits the primary to handle a higher rate of operations and provide more timely service to clients. The non-blocking semantics free the client from waiting for updates to the backups to complete. Furthermore, real-time scheduling of update messages can guarantee controlled inconsistency between the primary and backup repositories.<>
用于实时应用程序的窗口一致复制
构建容错服务的两种广泛研究的方法是状态机和主备份复制方案。对于一大类软实时和硬实时应用程序,可以利用服务器之间的一致性程度来设计具有可预测定时行为的复制协议。这在自动化过程控制等应用程序中特别有用,在这些应用程序中,可以权衡质量或精度以获得及时的数据可用性。本文介绍了在主数据存储库和备份之间采用窗口一致性语义的主备份复制服务的体系结构和原型实现。客户端通过声明数据的一致性需求(按时间窗口)向服务注册数据对象。主站点通过将更新消息调度到备份,确保每个备份站点维护前一个时间窗口内主站点上有效的对象版本。将更新到备份的传输与客户端请求的处理分离,允许主服务器处理更高的操作速率,并向客户端提供更及时的服务。非阻塞语义将客户机从等待备份更新完成中解放出来。此外,更新消息的实时调度可以保证主备份存储库之间可控的不一致性。
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