ByteFS is a file system for memory-semantic SSDs that adaptively mixes byte and block I/O and uses an SSD-side write log, improving throughput by up to 2.7x and cutting write traffic by up to 5.1x in the authors' tests.
Analyzing IO Amplification in Linux File Systems
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abstract
We present the first systematic analysis of read, write, and space amplification in Linux file systems. While many researchers are tackling write amplification in key-value stores, IO amplification in file systems has been largely unexplored. We analyze data and metadata operations on five widely-used Linux file systems: ext2, ext4, XFS, btrfs, and F2FS. We find that data operations result in significant write amplification (2-32X) and that metadata operations have a large IO cost. For example, a single rename requires 648 KB write IO in btrfs. We also find that small random reads result in read amplification of 2-13X. Based on these observations, we present the CReWS conjecture about the relationship between IO amplification, consistency, and storage space utilization. We hope this paper spurs people to design future file systems with less IO amplification, especially for non-volatile memory technologies.
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ByteFS: System Support for (CXL-based) Memory-Semantic Solid-State Drives
ByteFS is a file system for memory-semantic SSDs that adaptively mixes byte and block I/O and uses an SSD-side write log, improving throughput by up to 2.7x and cutting write traffic by up to 5.1x in the authors' tests.