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    • 3. 发明授权
    • Multiple contexts in a redirect on write file system
    • 写入文件系统中重定向的多个上下文
    • US08626713B2
    • 2014-01-07
    • US12963146
    • 2010-12-08
    • Janet E. AdkinsJoon ChangDavid J. CraftManoj N. KumarAndrew N. Solomon
    • Janet E. AdkinsJoon ChangDavid J. CraftManoj N. KumarAndrew N. Solomon
    • G06F17/30
    • G06F17/30227
    • A method includes initiating committing to persistent storage of a current consistency snapshot of a plurality of data objects in a redirect-on-write file system. Each of the plurality of data objects has a first copy of at least two copies of the data having a first context of at least two contexts. The method includes receiving, during committing to storage of the current consistency snapshot, an update to a data object of the plurality of data objects. The method also includes responsive to receipt of the update to the data object, creating a second copy of data of the data object from the first copy. The second copy of the data has a second context of the at least two contexts. The method includes responsive to receipt of the update to the data object, updating, based on the update, the second copy of the data of the data object.
    • 一种方法包括启动在写入重定向文件系统中的多个数据对象的当前一致性快照的持久存储。 多个数据对象中的每一个具有具有至少两个上下文的第一上下文的数据的至少两个副本的第一副本。 该方法包括在提交存储当前一致性快照期间接收对多个数据对象的数据对象的更新。 该方法还包括响应于对数据对象的更新的接收,从第一副本创建数据对象的数据的第二副本。 数据的第二副本具有至少两个上下文的第二上下文。 该方法包括响应于对数据对象的更新的接收,基于更新更新数据对象的数据的第二副本。
    • 4. 发明申请
    • MULTIPLE CONTEXTS IN A REDIRECT ON WRITE FILE SYSTEM
    • 写入文件系统中重复的多个内容
    • US20120150804A1
    • 2012-06-14
    • US12963146
    • 2010-12-08
    • Janet E. AdkinsJoon ChangDavid J. CraftManoj N. KumarAndrew N. Solomon
    • Janet E. AdkinsJoon ChangDavid J. CraftManoj N. KumarAndrew N. Solomon
    • G06F17/30
    • G06F17/30227
    • A method includes initiating committing to persistent storage of a current consistency snapshot of a plurality of data objects in a redirect-on-write file system. Each of the plurality of data objects has a first copy of at least two copies of the data having a first context of at least two contexts. The method includes receiving, during committing to storage of the current consistency snapshot, an update to a data object of the plurality of data objects. The method also includes responsive to receipt of the update to the data object, creating a second copy of data of the data object from the first copy. The second copy of the data has a second context of the at least two contexts. The method includes responsive to receipt of the update to the data object, updating, based on the update, the second copy of the data of the data object.
    • 一种方法包括启动在写入重定向文件系统中的多个数据对象的当前一致性快照的持久存储。 多个数据对象中的每一个具有具有至少两个上下文的第一上下文的数据的至少两个副本的第一副本。 该方法包括在提交存储当前一致性快照期间接收对多个数据对象的数据对象的更新。 该方法还包括响应于对数据对象的更新的接收,从第一副本创建数据对象的数据的第二副本。 数据的第二副本具有至少两个上下文的第二上下文。 该方法包括响应于对数据对象的更新的接收,基于更新更新数据对象的数据的第二副本。
    • 7. 发明授权
    • Handling file operations with low persistent storage space
    • 处理具有低持久存储空间的文件操作
    • US08402008B2
    • 2013-03-19
    • US12879887
    • 2010-09-10
    • Janet E. AdkinsMatthew T. BrandyberryDavid J. CraftManoj N. KumarAndrew N. Solomon
    • Janet E. AdkinsMatthew T. BrandyberryDavid J. CraftManoj N. KumarAndrew N. Solomon
    • G06F7/00G06F17/00
    • G06F17/30088
    • In some embodiments, a file management unit located in the operating system detects a write operation that writes the data blocks within the consistency snapshot (in main memory) to the persistent storage. The file management unit can then determine that all transactions have been completed before the write operation begins. In some instances, the file management unit then attempts to write the data blocks within the consistency snapshot to the persistent storage. The file management unit can then receive a notification that the write operation did not successfully write the data blocks from the consistency snapshot to the persistent storage. In some embodiments, the write operation is not successful because there are fewer free data blocks in the persistent storage than needed for writing the data blocks within the consistency snapshot to persistent storage. The file management can then wait a period of time. After the file management unit has waited for a period of time, it can make another attempt to write the data blocks within the consistency snapshot to the persistent storage.
    • 在一些实施例中,位于操作系统中的文件管理单元检测将持续存储器内的一致性快照(主存储器)内的数据块写入的写入操作。 然后,文件管理单元可以在写操作开始之前确定所有事务已经完成。 在某些情况下,文件管理单元然后尝试将一致性快照内的数据块写入持久存储器。 文件管理单元然后可以接收到写入操作没有成功地将数据块从一致性快照写入永久存储器的通知。 在一些实施例中,写入操作不成功,因为永久存储器中的空闲数据块比将一致性快照中的数据块写入永久存储器所需要的少。 然后,文件管理可以等待一段时间。 文件管理单元等待一段时间后,可以再次尝试将一致性快照中的数据块写入永久存储。
    • 8. 发明申请
    • HANDLING FILE OPERATIONS WITH LOW PERSISTENT STORAGE SPACE
    • 处理文件存储空间不足的文件
    • US20120066190A1
    • 2012-03-15
    • US12879887
    • 2010-09-10
    • Janet E. AdkinsMatthew T. BrandyberryDavid J. CraftManoj N. KumarAndrew N. Solomon
    • Janet E. AdkinsMatthew T. BrandyberryDavid J. CraftManoj N. KumarAndrew N. Solomon
    • G06F17/00
    • G06F17/30088
    • In some embodiments, a file management unit located in the operating system detects a write operation that writes the data blocks within the consistency snapshot (in main memory) to the persistent storage. The file management unit can then determine that all transactions have been completed before the write operation begins. In some instances, the file management unit then attempts to write the data blocks within the consistency snapshot to the persistent storage. The file management unit can then receive a notification that the write operation did not successfully write the data blocks from the consistency snapshot to the persistent storage. In some embodiments, the write operation is not successful because there are fewer free data blocks in the persistent storage than needed for writing the data blocks within the consistency snapshot to persistent storage. The file management can then wait a period of time. After the file management unit has waited for a period of time, it can make another attempt to write the data blocks within the consistency snapshot to the persistent storage.
    • 在一些实施例中,位于操作系统中的文件管理单元检测将持续存储器内的一致性快照(主存储器)内的数据块写入的写入操作。 然后,文件管理单元可以在写操作开始之前确定所有事务已经完成。 在某些情况下,文件管理单元然后尝试将一致性快照内的数据块写入持久存储器。 文件管理单元然后可以接收到写入操作没有成功地将数据块从一致性快照写入永久存储器的通知。 在一些实施例中,写入操作不成功,因为永久存储器中的空闲数据块比将一致性快照中的数据块写入持久存储所需要的少。 然后,文件管理可以等待一段时间。 文件管理单元等待一段时间后,可以再次尝试将一致性快照中的数据块写入永久存储。
    • 9. 发明授权
    • Distributed file hierarchy management in a clustered redirect-on-write file system
    • 集群的重定向文件系统中的分布式文件层次结构管理
    • US08495112B2
    • 2013-07-23
    • US12879717
    • 2010-09-10
    • Janet E. AdkinsJoon ChangDavid J. CraftGokul B. KandirajuManoj N. Kumar
    • Janet E. AdkinsJoon ChangDavid J. CraftGokul B. KandirajuManoj N. Kumar
    • G06F17/30
    • G06F17/30094G06F17/302
    • Management of a file hierarchy for a clustered file system can be distributed across nodes of the cluster. A cluster file hierarchy is accessed to determine location of a file in response to a request to write to a file. A first node maintains the cluster file hierarchy. It is determined that management of a fileset object, which represents a fileset that includes the file, has been delegated to a second node based, at least in part, on said accessing the cluster file hierarchy. A node file hierarchy maintained by the second node is accessed responsive to determining the delegation. The cluster file hierarchy represents filesets of the clustered file system and the node hierarchy represents a subset of one or more of the filesets. Location of the file is determined based, at least in part, on said accessing the node file hierarchy.
    • 集群文件系统的文件层次结构的管理可以分布在集群的节点上。 访问集群文件层次结构以确定文件的位置以响应写入文件的请求。 第一个节点维护群集文件层次结构。 至少部分地基于对所述群集文件层次结构的访问,确定表示包括该文件的文件集的文件集对象的管理已委托给第二节点。 响应于确定委托而访问由第二节点维护的节点文件层次结构。 集群文件层次结构表示集群文件系统的文件集,节点层次结构表示一个或多个文件集的子集。 至少部分地基于访问节点文件层级来确定文件的位置。