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The Reliability of Modern File Systems in the face of SSD Errors

机译:在SSD错误面前现代文件系统的可靠性

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As solid state drives (SSDs) are increasingly replacing hard disk drives, the reliability of storage systems depends on the failure modes of SSDs and the ability of the file system layered on top to handle these failure modes. While the classical paper on IRON File Systems provides a thorough study of the failure policies of three file systems common at the time, we argue that 13 years later it is time to revisit file system reliability with SSDs and their reliability characteristics in mind, based on modern file systems that incorporate journaling, copy-on-write, and log-structured approaches and are optimized for flash. This article presents a detailed study, spanning ext4, Btrfs, and F2FS, and covering a number of different SSD error modes. We develop our own fault injection framework and explore over 1,000 error cases. Our results indicate that 16% of these cases result in a file system that cannot be mounted or even repaired by its system checker. We also identify the key file system metadata structures that can cause such failures, and, finally, we recommend some design guidelines for file systems that are deployed on top of SSDs.
机译:作为固态驱动器(SSD)越来越多地替换硬盘驱动器,存储系统的可靠性取决于SSD的故障模式以及文件系统在顶部分层以处理这些故障模式的功能。虽然铁文件系统上的古典论文在当时的三个文件系统的失败策略提供了彻底的研究,但我们认为13年后是时候重新审视文件系统可靠性以及他们的可靠性特征,基于使用日记,编写写入和日志结构方法的现代文件系统,并针对Flash进行了优化。本文介绍了一个详细的研究,跨越EXT4,BTRF和F2FS,并覆盖了许多不同的SSD错误模式。我们开发自己的故障注入框架并探索超过1,000个错误情况。我们的结果表明,16%的这些情况导致文件系统无法安装或甚至由其系统检查器修复。我们还确定可能导致此类故障的关键文件系统元数据结构,最后,我们为在SSD顶部部署的文件系统推荐了一些设计指南。

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