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Performance analysis of buffer coherency policies in a multisystem data sharing environment

机译:多系统数据共享环境中缓冲区一致性策略的性能分析

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Six buffer coherency policies for a multisystem transaction processing environment are compared. These policies differ in their basic approaches on how and when the invalidated pages are identified or if the updated pages are propagated to the buffers of the remote nodes. They can be classified as detection, notification (of invalid pages), and (update) propagation oriented approaches. The policies trade off CPU overhead of coherency messages with buffer hit probability in different ways, resulting in a tradeoff of response time and maximum throughput. The main contribution is to develop analytical models to predict buffer hit probabilities under various buffer coherency policies assuming the LRU replacement policy and the independent reference model (IRM). The buffer models are validated using simulation models and show excellent agreement. Integrated analytic models capturing buffer hit probability and CPU overhead are developed to predict the overall response times under these coherency policies. The difference in buffer hit probabilities amongst various policies are found to be very sensitive to the skewness of the data access.
机译:比较了用于多系统事务处理环境的六个缓冲区一致性策略。这些策略的基本方法不同,在于如何以及何时标识无效页面,或者是否将更新的页面传播到远程节点的缓冲区。它们可以分类为检测,通知(无效页面)和(更新)面向传播的方法。该策略以不同方式权衡具有缓冲区命中率的一致性消息的CPU开销,从而权衡响应时间和最大吞吐量。假设LRU替换策略和独立参考模型(IRM),主要贡献在于开发分析模型来预测各种缓冲区一致性策略下的缓冲区命中率。缓冲区模型已使用仿真模型进行了验证,并显示出极好的一致性。开发了捕获缓冲区命中率和CPU开销的集成分析模型,以预测这些一致性策略下的总体响应时间。发现各种策略之间的缓冲区命中概率差异对数据访问的偏斜非常敏感。

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