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On coupling multiple systems with a global buffer

机译:将多个系统与全局缓冲区耦合时

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摘要

We conduct a performance study of coupling multiple systems with a global buffer, and present several results obtained from a multiple-system simulator. This simulator has been run against three workloads, and the coupled system behavior with these three different inputs is studied. Several statistics, including those on local and global buffer hits, page writes to the global buffer, cross-invalidations, and castouts are reported. Their relationship to the degree of data skew is explored. Moreover, in addition to the update-caching approach, a design alternative for the use of a global buffer, namely read-caching, is explored. In read-caching, not only updated pages but also pages read by each node are kept in the global buffer, thereby facilitating other nodes access to the same pages at the cost of a higher global buffer usage. Also investigated is the case of no-caching, i.e., without using a global buffer. Several simulation results are presented and analyzed.
机译:我们进行了将多个系统与全局缓冲区耦合的性能研究,并介绍了从多系统模拟器获得的一些结果。该模拟器已针对三种工作负载运行,并且研究了这三种不同输入的耦合系统行为。报告了一些统计信息,包括有关本地和全局缓冲区命中的统计信息,对全局缓冲区的页面写入,交叉无效和废除率。探索了它们与数据偏斜程度的关系。此外,除了更新缓存方法之外,还探索了一种使用全局缓冲区的设计替代方案,即读取缓存。在读取缓存中,不仅更新的页面而且每个节点读取的页面都保留在全局缓冲区中,从而以提高全局缓冲区使用率的代价,使其他节点可以访问相同的页面。还研究了无缓存的情况,即不使用全局缓冲区的情况。给出并分析了几种仿真结果。

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