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Toward millions of file system IOPS on low-cost, commodity hardware

机译:对数百万个文件系统IOPS在低成本,商品硬件上

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We describe a storage system that removes I/O bottlenecks to achieve more than one million IOPS based on a user-space file abstraction for arrays of commodity SSDs. The file abstraction refactors I/O scheduling and placement for extreme parallelism and non-uniform memory and I/O. The system includes a set-associative, parallel page cache in the user space. We redesign page caching to eliminate CPU overhead and lock-contention in non-uniform memory architecture machines. We evaluate our design on a 32 core NUMA machine with four, eight-core processors. Experiments show that our design delivers 1.23 million 512-byte read IOPS. The page cache realizes the scalable IOPS of Linux asynchronous I/O (AIO) and increases user-perceived I/O performance linearly with cache hit rates. The parallel, set-associative cache matches the cache hit rates of the global Linux page cache under real workloads.
机译:我们描述了一个存储系统,可根据商品SSD阵列的用户空间文件抽象删除I / O瓶颈以实现超过一百万的IOPS。文件抽象重构I / O调度和放置极端并行性和非统一内存和I / O.该系统包括用户空间中的SET-Companiative,并行页面缓存。我们重新设计了页面缓存,以消除非统一内存架构机器中的CPU开销和锁争用。我们在具有四个八个核心处理器的32台核心NUMA机器上评估我们的设计。实验表明,我们的设计提供了123万512字节读取IOPS。页面缓存实现了Linux异步I / O(AIO)的可伸缩IOPS,并随着缓存命中率线性地增加了用户感知的I / O性能。并行,SET关联缓存与实际工作负载下全局Linux页面缓存的缓存命中率匹配。

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