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Design of Flash-Based DBMS: An In-Page Logging Approach

机译:基于Flash的DBMS设计:页内记录方法

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The popularity of high-density flash memory as data storage media has increased steadily for a wide spectrum of computing devices such as PDA's, MP3 players, mobile phones and digital cameras. More recently, computer manufacturers started launching new lines of mobile or portable computers that did away with magnetic disk drives altogether, replacing them with tens of gigabytes of NAND flash memory. Like EEPROM and magnetic disk drives, flash memory is non-volatile and retains its contents even when the power is turned off. As its capacity increases and price drops, flash memory will compete more successfully with lower-end, lowercapacity disk drives. It is thus not inconceivable to consider running a full database system on the flash-only computing platforms or running an embedded database system on the lightweight computing devices. In this paper, we present a new design called inpage logging (IPL) for flash memory based database servers. This new design overcomes the limitations of flash memory such as high write latency, and exploits unique characteristics of flash memory to achieve the best attainable performance for flash-based database servers. We show empirically that the IPL approach can yield considerable performance benefit over traditional design for disk-based database servers. We also show that the basic design of IPL can be elegantly extended to support transactional database recovery.
机译:对于诸如PDA,MP3播放器,移动电话和数码相机之类的各种计算设备,高密度闪存作为数据存储介质的普及率一直在稳定增长。最近,计算机制造商开始推出新的移动或便携式计算机产品线,这些产品完全取消了磁盘驱动器,而用数十GB的NAND闪存代替。像EEPROM和磁盘驱动器一样,闪存是非易失性的,即使关闭电源也可以保留其内容。随着容量的增加和价格的下降,闪存将与低端,低容量的磁盘驱动器更成功地竞争。因此,考虑在仅闪存的计算平台上运行完整的数据库系统或在轻量级的计算设备上运行嵌入式数据库系统并不是不可思议的。在本文中,我们为基于闪存的数据库服务器提出了一种称为页内记录(IPL)的新设计。这项新设计克服了闪存的局限性,例如高写入延迟,并利用闪存的独特特性为基于闪存的数据库服务器实现了最佳的性能。我们凭经验表明,与基于磁盘的数据库服务器的传统设计相比,IPL方法可以带来可观的性能优势。我们还表明,可以很好地扩展IPL的基本设计,以支持事务数据库恢复。

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