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Slack Space Recycling: Delaying On-Demand Cleaning in LFS for Performance and Endurance

机译:空闲空间回收:延迟按需清洁LFS以提高性能和耐用性

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The Log-structured File System (LFS) transforms random writes to a huge sequential one to provide superior write performance on storage devices. However, LFS inherently suffers from overhead incurred by cleaning segments. Specifically, when file system utilization is high and the system is busy, write performance of LFS degenerates significantly due to high cleaning cost. Also, in the newer flash memory based SSD storage devices, cleaning leads to reduced SSD lifetime as it incurs more writes. In this paper, we propose an enhancement to the original LFS to alleviate the performance degeneration due to cleaning when the system is busy. The new scheme, which we call Slack Space Recycling (SSR), allows LFS to delay on-demand cleaning during busy hours such that cleaning may be done when the load is much lighter. Specifically, it writes modified data directly to invalid areas (slack space) of used segments instead of cleaning on-demand, pushing back cleaning for later. SSR also has the added benefit of increasing the lifetime of the now popular SSD storage devices. We implement the new SSR-LFS file system in Linux and perform a large set of experiments. The results of these experiments show that the SSR scheme significantly improves performance of LFS for a wide range of storage utilization settings and that the lifetime of SSDs is extended considerably.
机译:日志结构文件系统(LFS)将随机写入转换为巨大的顺序写入,以在存储设备上提供卓越的写入性能。但是,LFS固有地遭受了清理段所产生的开销。具体来说,当文件系统利用率高且系统繁忙时,由于高清洁成本,LFS的写入性能会大大降低。同样,在更新的基于闪存的SSD存储设备中,清洁会导致SSD寿命减少,因为它会引起更多写入操作。在本文中,我们提出了对原始LFS的增强,以减轻由于系统忙时进行清洁而导致的性能下降。新方案称为“闲置空间回收(SSR)”,它允许LFS在繁忙时间延迟按需清洁,以便在负载轻得多时进行清洁。具体来说,它将修改后的数据直接写入使用过的段的无效区域(空闲空间),而不是按需清洗,从而将清洗推迟回去。 SSR还具有增加当前流行的SSD存储设备寿命的附加好处。我们在Linux中实现了新的SSR-LFS文件系统,并进行了大量实验。这些实验的结果表明,对于广泛的存储利用率设置,SSR方案显着提高了LFS的性能,并且SSD的寿命大大延长了。

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