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Configuring and Scheduling an Eager-Writing Disk Array for a Transaction Processing Workload

机译:为事务处理工作负载配置和计划热切写入磁盘阵列

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Transaction processing applications such as those exemplified by the TPC-C benchmark are among the most demanding I/O applications for conventional storage systems. Two complementary techniques exist to improve the performance of these systems. Eager-writing allows the free block that is closest to a disk head to be selected for servicing a write request, and mirroring allows the closest replica to be selected for servicing a read request. Applied individually, the effectiveness of each of these techniques is limited. An eager-writing disk array (EW-Array) combines these two complementary techniques. In such a system, eager-writing enables low-cost replica propagation so that the system can provide excellent performance for both read and write operations while maintaining a high degree of reliability. To fully realize the potential of an EW-Array. we must answer at least two key questions. First, since both eager-writing and mirroring rely on extra capacity to deliver performance improvements, how do we satisfy competing resource demands given a fixed amount of total disk space? Second, since eager-writing allows data to be dynamically located, how do we exploit this high degree of location independence in an intelligent disk scheduler? In this paper, we address these two key questions and compare the resulting EW-Array prototype performance against that of conventional approaches. The experimental results demonstrate that the eager-writing disk array is an effective approach to providing scalable performance for an important class of transaction processing applications.
机译:诸如TPC-C基准测试所例举的事务处理应用程序是常规存储系统最苛刻的I / O应用程序之一。存在两种互补的技术来改善这些系统的性能。渴望写允许选择最接近磁盘头的空闲块来满足写请求,而镜像允许选择最接近的副本来满足读请求。单独应用,每种技术的有效性都受到限制。紧急写入磁盘阵列(EW-Array)结合了这两种互补技术。在这样的系统中,热切写入使低成本的副本传播成为可能,从而该系统可以为读取和写入操作提供出色的性能,同时保持高度的可靠性。充分发挥EW阵列的潜力。我们必须回答至少两个关键问题。首先,由于急切写入和镜像都依靠额外的容量来提高性能,因此,在总磁盘空间固定的情况下,我们如何满足竞争性资源需求?其次,由于渴望写入允许动态定位数据,我们如何在智能磁盘调度程序中利用这种高度的位置独立性?在本文中,我们解决了这两个关键问题,并将所得的EW-Array原型性能与传统方法进行了比较。实验结果表明,热切写入磁盘阵列是为一类重要的事务处理应用程序提供可伸缩性能的有效方法。

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