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Multi-disk Scheduling for High-Performance RAID-0 Devices

机译:高性能RAID-0设备的多磁盘调度

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High-Performance I/O subsystems have become a must for multimedia systems, such as video servers [15,16,18]. The proposing of the Intelligent I/O (I2O) specifications [11] provides hardware vendors an operating-system-independent architecture in building their solutions for high-performance I/O subsystems. This paper targets one of the most important performance issues in building an I2O RAID-0 device, which is an important I2O implementation. We explore multi-disk scheduling for I2O requests, which are usually associated with soft deadlines to enforce quality-of-service requirements. The idea of Least-Remaining-Request-Size-First (LRSF) is proposed for the request-level multi-disk scheduling with the objective to improve the response-time requirements of I/O sub-systems. The proposed scheduling algorithm is then extended to resolve the starvation problem and for SCAN-like disk services. Finally, we exploit pre-fetching for I2O RAID-0 devices to further improve their performance. The proposed methodologies are verified by a series of experiments using realistic and randomly generated workloads.
机译:高性能I / O子系统已成为多媒体系统,如视频服务器[15,16,18]一绝。该智能I的提出/ O(I2O)规范[11]提供了硬件构建他们的解决方案用于高性能I / O子系统厂商一个操作系统无关的体系结构。本文的目标在建立一个I2O RAID-0设备,这是一个重要I2O实施的最重要的性能问题之一。我们探索多磁盘调度I2O请求,这通常与软期限相关的执行质量的服务要求。最不剩余 - 请求 - 大小 - 第一(LRSF)的思想,提出了用于与目标请求级多磁盘调度,以提高I的响应时间需求/ O子系统。随后提出的调度算法扩展来解决饥饿问题和SCAN-如磁盘服务。最后,我们利用预取为I2O RAID-0的设备,以进一步提高其性能。所提出的方法通过一系列的使用实际和随机生成的工作负荷的实验验证。

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