活动磁盘集群的功率感知代码调度

S. Son, Guangyu Chen, M. Kandemir
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引用次数: 0

摘要

在本文中,我们将磁盘上的应用程序级处理的思想进一步提升到一个层次,并关注一种称为活动磁盘集群(CAD)的体系结构,其中存储系统包含一个并行的“活动磁盘”网络。每个单独的活动磁盘(包括嵌入式处理器、磁盘、缓存、内存和互连)可以执行一些应用程序级别的处理;但更重要的是,活动磁盘可以共同执行并行输入/输出(I/O)和处理,从而不仅减少了通信延迟,还减少了I/O延迟和计算时间。CAD体系结构对下一代软件系统的各个层次提出了许多挑战,包括编程模型、操作和运行时系统、应用映射、编译、并行化和性能建模以及评估。在本文中,我们专门关注活动磁盘集群所需的代码调度支持。更具体地说,我们以最小化磁盘系统上的功耗为目标来解决代码调度问题。实验结果表明,所提出的调度方法在降低功耗方面非常成功,并且比所测试的其他三种调度方案产生更好的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Power-aware code scheduling for clusters of active disks
In this paper, we take the idea of application-level processing on disks to one level further, and focus on an architecture, called cluster of active disks (CAD), where the storage system contains a network of parallel "active disks". Each individual active disk (which includes an embedded processor, disk(s), caches, memory, and interconnect) can perform some application level processing; but, more importantly, the active disks can collectively perform parallel input/output (I/O) and processing, thereby reducing not just the communication latency but I/O latency and computation time as well. The CAD architecture poses many challenges for the next generation software systems at all levels including programming models, operating and runtime systems, application mapping, compilation, parallelization and performance modeling, and evaluation. In this paper, we focus exclusively on code scheduling support required for clusters of active disks. More specifically, we address the problem of code scheduling with the goal of minimizing the power consumption on the disk system. Our experiments indicate that the proposed scheduling approach is very successful in reducing power and generates better results than three other alternate scheduling schemes tested.
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