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Undetected disk errors in RAID arrays

机译:RAID阵列中未检测到的磁盘错误

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Though remarkably reliable, disk drives do fail occasionally. Most failures can be detected immediately; moreover, such failures can be modeled and addressed using technologies such as RAID (Redundant Arrays of Independent Disks). Unfortunately, disk drives can experience errors that are undetected by the drive—which we refer to as undetected disk errors (UDEs). These errors can cause silent data corruption that may go completely undetected (until a system or application malfunction) or may be detected by software in the storage I/O stack. Continual increases in disk densities or in storage array sizes and more significantly the introduction of desktop-class drives in enterprise storage systems are increasing the likelihood of UDEs in a given system. Therefore, the incorporation of UDE detection (and correction) into storage systems is necessary to prevent increasing numbers of data corruption and data loss events. In this paper, we discuss the causes of UDEs and their effects on data integrity. We describe some of the basic techniques that have been applied to address this problem at various software layers in the I/O stack and describe a family of solutions that can be integrated into the RAID subsystem.
机译:尽管非常可靠,但是磁盘驱动器确实偶尔会出现故障。大多数故障可以立即被发现;此外,可以使用RAID(独立磁盘冗余阵列)之类的技术来建模和解决此类故障。不幸的是,磁盘驱动器可能会遇到驱动器无法检测到的错误,我们将其称为未检测到的磁盘错误(UDE)。这些错误可能会导致无提示的数据损坏,这些损坏可能会完全未被发现(直到系统或应用程序出现故障),或者可能被存储I / O堆栈中的软件检测到。磁盘密度或存储阵列大小的不断增加,更重要的是,在企业存储系统中引入台式机级驱动器,增加了在给定系统中使用UDE的可能性。因此,必须将UDE检测(和更正)合并到存储系统中,以防止数据损坏和数据丢失事件数量增加。在本文中,我们讨论了UDE的原因及其对数据完整性的影响。我们描述了一些已应用于I / O堆栈中各个软件层上的用于解决此问题的基本技术,并描述了可以集成到RAID子系统中的一系列解决方案。

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