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    • 1. 发明授权
    • Pathname caching and protection of the root directory in a nested multilayer directory structure
    • 路径名缓存和保护嵌套多层目录结构中的根目录
    • US08166005B2
    • 2012-04-24
    • US10945653
    • 2004-09-21
    • Peter C. BixbyXiaoye JiangUday K. GuptaSorin Faibish
    • Peter C. BixbyXiaoye JiangUday K. GuptaSorin Faibish
    • G06F7/00G06F11/00
    • G06F17/30067Y10S707/966
    • Servers in a storage system store a nested multilayer directory structure, and a global index that is an abstract of the directory structure. The global index identifies respective portions of the directory structure that are stored in respective ones of the servers, and the global index identifies paths through the directory structure linking the respective portions. Upon performing a top-down search of the directory structure in response to a client request and finding that a portion of it is offline, the global index is searched to discover portions of the directory structure that are located below the offline portion. The global index may also identify the respective server storing each of the respective portions of the directory structure, and may indicate whether or not each of the respective portions of the directory structure is known to be offline.
    • 存储系统中的服务器存储嵌套的多层目录结构,以及作为目录结构的抽象的全局索引。 全局索引标识存储在相应服务器中的目录结构的各个部分,并且全局索引通过链接相应部分的目录结构来标识路径。 在响应于客户机请求并发现其一部分脱机时对目录结构进行自顶向下搜索时,搜索全局索引以发现位于离线部分下方的目录结构的部分。 全局索引还可以标识存储目录结构的各个部分的相应服务器,并且可以指示目录结构的各个部分中的每一个是否已知脱机。
    • 6. 发明授权
    • Metadata pipelining and optimization in a file server
    • 文件服务器中的元数据流水线和优化
    • US07822728B1
    • 2010-10-26
    • US11557941
    • 2006-11-08
    • Richard G. ChandlerStephen A. FridellaSorin FaibishUday K. GuptaXiaoye Jiang
    • Richard G. ChandlerStephen A. FridellaSorin FaibishUday K. GuptaXiaoye Jiang
    • G06F7/00G06F17/00
    • G06F17/30171Y10S707/99938
    • A read-write access to a file in a file server includes an initial metadata access step, an asynchronous read or write of file data, and a metadata commit step. In order to parallelize access to a range locking database, an inode and indirect file block mapping database, and a pre-allocation data base, operations are pipelined within the metadata access step and also within the metadata commit step. The pipelined operations within the metadata access step include a first stage of range locking, a second stage of reading block mapping metadata, and a third stage of reading and updating a pre-allocation map for write access. The pipelined operations within the metadata commit step include a first stage of releasing range locks, a second stage of accessing old block metadata for write access, and a third stage of updating metadata and flushing the pre-allocation map for write access.
    • 对文件服务器中的文件的读写访问包括初始元数据访问步骤,文件数据的异步读取或写入以及元数据提交步骤。 为了并行访问范围锁定数据库,inode和间接文件块映射数据库以及预分配数据库,操作在元数据访问步骤内以及元数据提交步骤中流水线化。 元数据访问步骤中的流水线操作包括范围锁定的第一阶段,读取块映射元数据的第二阶段以及读取和更新用于写访问的预分配映射的第三阶段。 元数据提交步骤中的流水线操作包括释放范围锁的第一阶段,访问用于写入访问的旧块元数据的第二阶段,以及更新元数据的第三阶段以及刷新用于写访问的预分配映射。
    • 10. 发明授权
    • Asymmetric data storage system for high performance and grid computing
    • 用于高性能和网格计算的非对称数据存储系统
    • US08589550B1
    • 2013-11-19
    • US11551943
    • 2006-10-23
    • Sorin FaibishUday K. Gupta
    • Sorin FaibishUday K. Gupta
    • G06F15/173G06F17/30
    • G06F3/0662G06F3/061G06F3/0659G06F3/067G06F2206/1012
    • A data processing system includes compute nodes, at least one metadata server, iSCSI storage access servers, and data storage devices. The metadata server services requests from the compute nodes for file mapping information identifying iSCSI LUNs and logical blocks of file data. The storage access servers service iSCSI I/O requests from the compute nodes, and report server loading to the metadata server. A Gigabit Ethernet IP network transfers read and write data between the compute nodes and the storage access servers. The storage access servers are linked to the data storage devices for parallel access to iSCSI LUNs of the file data in the data storage devices. The metadata server is programmed for server load balancing by indicating to the compute nodes respective ones of the storage access servers that should be used for access to the iSCSI LUNs.
    • 数据处理系统包括计算节点,至少一个元数据服务器,iSCSI存储访问服务器和数据存储设备。 来自计算节点的元数据服务器服务请求用于识别iSCSI LUN和文件数据的逻辑块的文件映射信息。 存储访问服务器从计算节点服务iSCSI I / O请求,并将服务器加载到元数据服务器。 千兆以太网IP网络在计算节点和存储访问服务器之间传输读写数据。 存储访问服务器链接到数据存储设备,用于并行访问数据存储设备中文件数据的iSCSI LUN。 通过向计算节点指示应该用于访问iSCSI LUN的各个存储访问服务器,元数据服务器被编程用于服务器负载平衡。