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Recovery analysis of data sharing systems under deferred dirty page propagation policies

机译:延迟脏页传播策略下数据共享系统的恢复分析

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摘要

In a multinode data sharing environment, different buffer coherency control schemes based on various lock retention mechanisms can be designed to exploit the concept of deferring the propagation or writing of dirty pages to disk to improve normal performance. Two types of deferred write policies are considered. One policy only propagates dirty pages to disk at the times when dirty pages are flushed out of the buffer under LRU buffer replacement. The other policy also performs writes at the times when dirty pages are transferred across nodes. The dirty page propagation policy can have significant implications on the database recovery time. In this paper, we provide an analytical modeling framework for the analysis of the recovery times under the two deferred write policies. We demonstrate how these policies can be mapped onto a unified analytic modeling framework. The main challenge in the analysis is to obtain the pending update count distribution which can be used to determine the average numbers of log records and data I/Os needed to be applied during recovery. The analysis goes beyond previous work on modeling buffer hit probability in a data sharing system where only the average buffer composition, not the distribution, needs to be estimated, and recovery analysis in a single node environment where the complexities on tracking the propagation of dirty pages across nodes and the buffer invalidation effect do not appear.
机译:在多节点数据共享环境中,可以设计基于各种锁保留机制的不同缓冲区一致性控制方案,以利用推迟将脏页传播或写入磁盘的概念来提高正常性能。考虑了两种类型的延迟写入策略。在LRU缓冲区更换下,从缓冲区中清除脏页时,一种策略仅将脏页传播到磁盘。另一个策略还在跨节点传输脏页时执行写操作。脏页传播策略可能会对数据库恢复时间产生重大影响。在本文中,我们提供了一个分析建模框架,用于分析两种延迟写入策略下的恢复时间。我们演示了如何将这些策略映射到统一的分析建模框架。分析中的主要挑战是获得挂起的更新计数分布,该分布可用于确定恢复期间需要应用的日志记录和数据I / O的平均数量。该分析超出了以前在数据共享系统中建模缓冲区命中率模型的工作范围,在该数据共享系统中,仅需要估计平均缓冲区组成而不是分布,以及在单节点环境中进行恢复分析,在该环境中,跟踪脏页传播的复杂性跨节点,缓冲区无效效果不会出现。

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