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Characterizing the Performance of FlashMemory Storage Devices and Its Impact on Algorithm Design

机译:表征闪存存储设备的性能及其对算法设计的影响

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Initially used in digital audio players, digital cameras, mobile phones, and USB memory sticks, flash memory may become the dominant form of end-user storage in mobile computing, either completely replacing the magnetic hard disks or being an additional secondary storage. We study the design of algorithms and data structures that can exploit the flash memory devices better. For this, we characterize the performance of NAND flash based storage devices, including many solid state disks. We show that these devices have better random read performance than hard disks, but much worse random write performance. We also analyze the effect of misalignments, aging and past I/O patterns etc. on the performance obtained on these devices. We show that despite the similarities between flash memory and RAM (fast random reads) and between flash disk and hard disk (both are block based devices), the algorithms designed in the RAM model or the external memory model do not realize the full potential of the flash memory devices. We later give some broad guidelines for designing algorithms which can exploit the comparative advantages of both a flash memory device and a hard disk, when used together.
机译:闪存最初用于数字音频播放器,数码相机,移动电话和USB记忆棒中,它可能会成为移动计算中最终用户存储的主要形式,可以完全取代磁硬盘,也可以作为辅助存储。我们研究了可以更好地利用闪存设备的算法和数据结构的设计。为此,我们描述了基于NAND闪存的存储设备(包括许多固态磁盘)的性能。我们证明这些设备的随机读取性能比硬盘好,但随机写入性能却差得多。我们还分析了未对准,老化和过去的I / O模式等对这些设备获得的性能的影响。我们表明,尽管闪存和RAM(快速随机读取)之间以及闪存和硬盘(都是基于块的设备)之间存在相似性,但在RAM模型或外部存储器模型中设计的算法并不能充分发挥其潜力。闪存设备。稍后,我们提供了一些广泛的设计算法准则,这些算法可以结合使用闪存设备和硬盘的比较优势。

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