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Co-Optimizing Storage Space Utilization and Performance for Key-Value Solid State Drives

机译:共同优化键值固态硬盘的存储空间利用率和性能

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摘要

Growing demand for key-value store applications is building a strong momentum for the commercialization of key-value hard disk drives. To achieve better performance, flash-based solid state drive is the next ideal candidate for commercialization in the foreseeable future. However, the existing fixed-sized management strategies of flash-based devices would potentially result in low storage space utilization when managing variable-sized key-value data. In addition, the low storage space utilization would further lead to the degradation of device performance, due to low invalid data space reclamation efficiency. The space utilization issue motivates this paper to propose a key-value flash translation layer design to improve storage space utilization as well as the performance of the key-value solid state drives. A series of experiments was conducted to evaluate the proposed design, and the experiment results of space utilization and device performance are very encouraging.
机译:对键值存储应用程序的需求不断增长,为键值硬盘驱动器的商业化奠定了强大的动力。为了获得更好的性能,基于闪存的固态驱动器是可预见的未来商业化的下一个理想选择。但是,在管理可变大小的键值数据时,基于闪存的设备的现有固定大小的管理策略可能会导致存储空间利用率低。另外,由于无效数据空间回收效率低,低存储空间利用率将进一步导致设备性能下降。空间利用率问题促使本文提出了一种键值闪存转换层设计,以提高存储空间利用率以及键值固态驱动器的性能。进行了一系列实验以评估所提出的设计,并且空间利用和设备性能的实验结果令人鼓舞。

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