基于flash的固态硬盘逐文件安全删除

Tianran Xiao, Wei Tong, Xia Lei, Jingning Liu, Bo Liu
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引用次数: 2

摘要

由于就地更新特性,文件更新操作会在固态硬盘(ssd)中生成许多无效的闪存页。如果不安全地删除这些无效的flash页,它们将处于“丢失”状态,导致敏感信息泄露。但是,实时删除这些无效页面会大大降低SSD的性能。为了实现非实时的安全删除,我们提出了一种基于文件的安全删除(PSD)方案。PSD为每个文件分配GUID (global unique identifier),以便快速定位到无效的数据块,并使用Security-TRIM命令安全地删除这些无效的数据块。此外,我们还提出了一种用于多级单元(MLC)闪存的PSD-MLC方案。PSD-MLC将文件的数据块按成对的页面进行分布,避免了成对页面之间的编程串扰的影响。我们在不同的闪存介质硬件平台上对我们的方案进行了评估,结果证明PSD和PSD- mlc对SSD的性能影响很小。关闭缓存和开启缓存时,与未做安全删除操作相比,PSD特性使SSD吞吐量分别降低1.3%和1.8%。PSD-MLC使SSD吞吐量分别降低9.5%和10.0%。
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Per-File Secure Deletion for Flash-Based Solid State Drives
File update operations generate many invalid flash pages in Solid State Drives (SSDs) because of the-of-place update feature. If these invalid flash pages are not securely deleted, they will be left in the “missing” state, resulting in leakage of sensitive information. However, deleting these invalid pages in real time greatly reduces the performance of SSD. In this paper, we propose a Per-File Secure Deletion (PSD) scheme for SSD to achieve non-real-time secure deletion. PSD assigns a globally unique identifier (GUID) to each file to quickly locate the invalid data blocks and uses Security-TRIM command to securely delete these invalid data blocks. Moreover, we propose a PSD-MLC scheme for Multi-Level Cell (MLC) flash memory. PSD-MLC distributes the data blocks of a file in pairs of pages to avoid the influence of programming crosstalk between paired pages. We evaluate our schemes on different hardware platforms of flash media, and the results prove that PSD and PSD-MLC only have little impact on the performance of SSD. When the cache is disabled and enabled, compared with the system without the secure deletion, PSD decreases SSD throughput by 1.3% and 1.8%, respectively. PSD-MLC decreases SSD throughput by 9.5% and 10.0%, respectively.
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