Data Node Encrypted File System: Efficient Secure Deletion for Flash Memory

Joel Reardon, Srdjan Capkun, D. Basin
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引用次数: 93

Abstract

We propose the Data Node Encrypted File System (DNEFS), which uses on-the-fly encryption and decryption of file system data nodes to efficiently and securely delete data on flash memory systems. DNEFS is a generic modification of existing flash file systems or controllers that enables secure data deletion while preserving the underlying systems' desirable properties: application-independence, fine-grained data access, wear-levelling, and efficiency. We describe DNEFS both abstractly and in the context of the flash file system UBIFS. We propose UBIFSec, which integrates DNEFS into UBIFS. We implement UBIFSec by extending UBIFS's Linux implementation and we integrate UBIFSec in the Android operating system running on a Google Nexus One smartphone. We show that it is efficient and usable; Android OS and applications (including video and audio playback) run normally on top of UBIFSec. To the best of our knowledge, this work presents the first comprehensive and fully-implemented secure deletion solution that works within the specification of flash memory.
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数据节点加密文件系统:高效安全删除闪存
我们提出了数据节点加密文件系统(DNEFS),它利用文件系统数据节点的动态加密和解密来高效安全地删除闪存系统上的数据。DNEFS是对现有flash文件系统或控制器的一种通用修改,可以在保留底层系统所需属性的同时安全删除数据:应用程序独立性、细粒度数据访问、损耗均衡和效率。我们既抽象地描述DNEFS,也在flash文件系统uifs的上下文中描述DNEFS。我们提出了uifsec,它将DNEFS集成到uifs中。我们通过扩展uifs的Linux实现来实现uifsec,我们将uifsec集成到运行在Google Nexus One智能手机上的Android操作系统中。我们证明了它是高效和可用的;Android操作系统和应用程序(包括视频和音频播放)在uifsec上正常运行。据我们所知,这项工作提出了第一个全面和完全实现的安全删除解决方案,在闪存规范内工作。
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