Locking performance in a shared nothing parallel database machine

B. P. Jenq, B. C. Twichell, T. Keller
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引用次数: 38

Abstract

A quantitative performance study of two-phase locking in a parallel database machine using a simulation-based methodology is presented. The DBSIM simulation methodology uses a Petri-net model at the higher level and a queuing network model at the lower level. The Petri net model captures the characteristics of parallelism and synchronization at the workload level, while the queuing network model captures queuing aspects of the system at the physical resource level. Transactions in a workload are specified using a performance-oriented specification language based on the transaction component graph: a data-flow graph with database operators. The transaction specifications are translated into Petri-net representations to drive the simulation experiments. Results of an analysis of a two-phase locking strategy with machine sizes ranging from 4 to 256 processors are presented.<>
无共享并行数据库机器中的锁定性能
采用基于仿真的方法对并行数据库机的两相锁性能进行了定量研究。DBSIM模拟方法在较高级别使用Petri-net模型,在较低级别使用排队网络模型。Petri网模型在工作负载级别捕获并行性和同步性的特征,而排队网络模型在物理资源级别捕获系统的排队方面。工作负载中的事务使用基于事务组件图的面向性能的规范语言来指定:事务组件图是带有数据库操作符的数据流图。事务规范被转换成Petri-net表示来驱动仿真实验。本文给出了一种机器大小从4到256个处理器的两相锁定策略的分析结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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