DISTRIBUTING CAPACITY SLICES ACROSS STORAGE SYSTEM NODES
    1.
    发明申请
    DISTRIBUTING CAPACITY SLICES ACROSS STORAGE SYSTEM NODES 有权
    分布式存储系统编号的分配容量

    公开(公告)号:US20150355863A1

    公开(公告)日:2015-12-10

    申请号:US14695608

    申请日:2015-04-24

    Applicant: NetApp, Inc.

    Abstract: Various systems and methods are described for configuring a data storage system. In one embodiment, a plurality of actual capacities of a plurality of storage devices of the data storage system are identified and divided into a plurality of capacity slices. The plurality of capacity slices are combined into a plurality of chunks of capacity slices, each having a combination of characteristics of the underlying physical storage devices. The chunks of capacity slices are then mapped to a plurality of logical storage devices. A group of the plurality of logical storage devices is then organized into a redundant array of logical storage devices.

    Abstract translation: 描述了用于配置数据存储系统的各种系统和方法。 在一个实施例中,数据存储系统的多个存储设备的多个实际容量被识别并分成多个容量片。 多个容量片被组合成多个容量片段,每个片段具有底层物理存储设备的特征的组合。 然后将容量片的块块映射到多个逻辑存储设备。 然后将一组多个逻辑存储设备组织成逻辑存储设备的冗余阵列。

    METHODS FOR MANAGING DISTRIBUTED SNAPSHOT FOR LOW LATENCY STORAGE AND DEVICES THEREOF

    公开(公告)号:US20190034092A1

    公开(公告)日:2019-01-31

    申请号:US15659886

    申请日:2017-07-26

    Applicant: NetApp, Inc.

    Abstract: Methods, non-transitory computer readable media, and computing devices that manages distributed snapshot for low latency storage includes accessing one or more snapshots from one or more solid state devices (SSD), wherein the obtained one or more snapshots are stored in a snapshot allocated capacity of the one or more SSD. A data transfer operation is initiated from a primary storage to a secondary storage using the accessed one or more snapshots. It is determined if the initiated data transfer operation is completed and when it is determined to be completed, the obtained one or more snapshots stored in the snapshot allocated capacity of the one or more SSD are deleted.

    Background checking for lost writes and data corruption
    3.
    发明授权
    Background checking for lost writes and data corruption 有权
    后台检查丢失的写入和数据损坏

    公开(公告)号:US09329799B2

    公开(公告)日:2016-05-03

    申请号:US14196735

    申请日:2014-03-04

    Applicant: NetApp, Inc.

    CPC classification number: G06F3/0656 G06F3/0608 G06F3/067 G06F11/1004

    Abstract: Examples described herein include a system for storing data. The data storage system stores data in one or more storage locations of a storage drive and generates context information that identifies the data associated with each of the one or more storage locations. The context information is stored in a data buffer, and may include at least one of: an index node, a file block number, or a generation count. Further, the data buffer may be a FIFO circular buffer. The data storage system then uses the context information in the data buffer to verify the data stored in the one or more storage locations during an idle time of the storage drive.

    Abstract translation: 本文描述的示例包括用于存储数据的系统。 数据存储系统将数据存储在存储驱动器的一个或多个存储位置中,并且生成识别与一个或多个存储位置中的每一个相关联的数据的上下文信息。 上下文信息存储在数据缓冲器中,并且可以包括索引节点,文件块号或生成计数中的至少一个。 此外,数据缓冲器可以是FIFO循环缓冲器。 然后,数据存储系统使用数据缓冲器中的上下文信息来在存储驱动器的空闲时间期间验证存储在一个或多个存储位置中的数据。

    BACKGROUND CHECKING FOR LOST WRITES AND DATA CORRUPTION
    5.
    发明申请
    BACKGROUND CHECKING FOR LOST WRITES AND DATA CORRUPTION 有权
    背景检查丢失的写入和数据损坏

    公开(公告)号:US20150254020A1

    公开(公告)日:2015-09-10

    申请号:US14196735

    申请日:2014-03-04

    Applicant: NetApp, Inc.

    CPC classification number: G06F3/0656 G06F3/0608 G06F3/067 G06F11/1004

    Abstract: Examples described herein include a system for storing data. The data storage system stores data in one or more storage locations of a storage drive and generates context information that identifies the data associated with each of the one or more storage locations. The context information is stored in a data buffer, and may include at least one of: an index node, a file block number, or a generation count. Further, the data buffer may be a FIFO circular buffer. The data storage system then uses the context information in the data buffer to verify the data stored in the one or more storage locations during an idle time of the storage drive.

    Abstract translation: 本文描述的示例包括用于存储数据的系统。 数据存储系统将数据存储在存储驱动器的一个或多个存储位置中,并且生成识别与一个或多个存储位置中的每一个相关联的数据的上下文信息。 上下文信息存储在数据缓冲器中,并且可以包括索引节点,文件块号或生成计数中的至少一个。 此外,数据缓冲器可以是FIFO循环缓冲器。 然后,数据存储系统使用数据缓冲器中的上下文信息来在存储驱动器的空闲时间期间验证存储在一个或多个存储位置中的数据。

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