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DABC-NV: A buffer cache architecture for mobile systems with heterogeneous flash memories

机译:DABC-NV:具有异构闪存的移动系统的缓冲区缓存体系结构

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摘要

Flash memory is widely used in mobile consumer electronics devices due to its good properties such as small size, shock resistance, and low-power consumption. However, the cost of flash memory is still high to accommodate ever-growing mobile applications and multimedia contents. Using MLC (multilevel cell) technologies is an efficient solution to extend the storage capacity, but it degrades the performance of flash memory significantly compared to the original storage based on SLC (single-level cell) technologies. To bridge the characteristics of the two technologies, this paper presents a new buffer cache management scheme that uses both MLC and SLC together and considers their heterogeneous characteristics. By allocating cache space based on the characteristics of each storage media as well as I/O operation types and reference history of buffered blocks, the proposed scheme improves the I/O performance of mobile systems by 24% on average and up to 180% compared to the CLOCK algorithm. Moreover, it guarantees high reliability of file data by adopting recently emerging non-volatile RAMs in a certain portion of the buffer cache.
机译:闪存由于其良好的特性(如小尺寸,抗冲击性和低功耗)而广泛用于移动消费电子设备。然而,闪存的成本仍然很高,以适应不断增长的移动应用和多媒体内容。使用MLC(多级单元)技术是扩展存储容量的有效解决方案,但与基于SLC(单级单元)技术的原始存储相比,它会大大降低闪存的性能。为了桥接这两种技术的特性,本文提出了一种同时使用MLC和SLC并考虑其异构特性的新的缓冲区高速缓存管理方案。通过根据每种存储介质的特性以及I / O操作类型和缓冲块的参考历史记录分配缓存空间,该方案将移动系统的I / O性能平均提高了24%,相比之下提高了180%时钟算法。此外,它通过在缓冲区高速缓存的特定部分采用最新出现的非易失性RAM来保证文件数据的高可靠性。

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