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Processor-embedded distributed smart disks for I/O-intensive workloads: architectures, performance models and evaluation

机译:面向I / O密集型工作负载的处理器嵌入式分布式智能磁盘:体系结构,性能模型和评估

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Processor-embedded disks, or smart disks, with their network interface controller, can in effect be viewed as processing elements with on-disk memory and secondary storage. The data sizes and access patterns of today's large I/O-intensive workloads require architectures whose processing power scales with increased storage capacity. To address this concern, we propose and evaluate disk-based distributed smart storage architectures. Based on analytically derived performance models, our evaluation with representative workloads show that offloading processing and performing point-to-point data communication improve performance over centralized architectures. Our results also demonstrate that distributed smart disk systems exhibit desirable scalability and can efficiently handle I/O-intensive workloads, such as commercial decision support database (TPC-H) queries, association rules mining, data clustering, and two-dimensional fast Fourier transform, among others. (c) 2004 Elsevier Inc. All rights reserved.
机译:处理器嵌入式磁盘或智能磁盘及其网络接口控制器,可以有效地视为具有磁盘内存和辅助存储的处理元素。当今大型I / O密集型工作负载的数据大小和访问模式要求架构的处理能力随存储容量的增加而扩展。为了解决此问题,我们提出并评估了基于磁盘的分布式智能存储体系结构。基于分析得出的性能模型,我们对代表性工作负载的评估表明,分流处理和执行点对点数据通信可提高集中式体系结构的性能。我们的结果还表明,分布式智能磁盘系统具有理想的可伸缩性,并且可以有效地处理I / O密集型工作负载,例如商业决策支持数据库(TPC-H)查询,关联规则挖掘,数据聚类和二维快速傅里叶变换等等。 (c)2004 Elsevier Inc.保留所有权利。

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