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Patch-Based Data Management for Dual-Copy Buffers in RAID-Enabled SSDs

机译:启用RAID的SSD中的双复制缓冲区的基于补丁的数据管理

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While a dual-copy redundant array of independent disk (RAID) buffering can remove single point of failure in the buffer of RAID-enabled solid-state drives (SSDs), it loses a half of buffer space efficiency as a result. This article introduces a patch-based data management scheme for dual-copy buffers in RAIDenabled SSDs, for better improving buffer use efficiency. Different from conventional methods that caches data/parity chunks in the RAID buffer, it caches the modified portions of data chunks (called data patches) and then employs a cost-evaluation model to direct patch data replacement. Besides, in order to correctly respond to applications' read/write requests, we design the patch-based read/write mode by taking the original dirty data chunks and relevant up-to-date patches into account. Through a series of simulation tests on several realistic disk traces, we illustrate that patch-based data management can work for RAID-enabled SSDs to enhance buffer use efficiency, and then yield better I/O performance. Especially, our proposal can noticeably reduce the I/O latency by 39.1% and the number of block erases by 3.9% on average, in contrast to state-of-the-art approaches.
机译:虽然独立磁盘(RAID)缓冲的双复制冗余阵列可以在RAID的固态驱动器(SSD)的缓冲区中除去单个故障,但它会导致一半的缓冲空间效率。本文介绍了一种基于补丁的数据管理方案,用于raidenabled SSD中的双复制缓冲区,以更好地提高缓冲区使用效率。与RAID缓冲区中的数据/奇偶校验块缓存的传统方法不同,它缓存了数据块的修改部分(称为数据补丁),然后采用成本评估模型来直接替换补丁数据替换。此外,为了正确响应应用程序的读/写请求,我们通过将原始脏数据块和相关的最新修补程序考虑到了基于补丁的读/写模式。通过在多个现实磁盘迹线上进行一系列仿真测试,我们说明了基于补丁的数据管理可以为RAID的SSD工作,以增强缓冲区使用效率,然后产生更好的I / O性能。特别是,与最先进的方法相比,我们的提案明显将I / O潜伏量减少39.1%,平均块掉的数量平均为3.9%。

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