SCALABLE NON-UNIFORM STORAGE SIZES
    3.
    发明申请
    SCALABLE NON-UNIFORM STORAGE SIZES 审中-公开
    可扩展的非均匀存储大小

    公开(公告)号:US20160299707A1

    公开(公告)日:2016-10-13

    申请号:US15180787

    申请日:2016-06-13

    Abstract: A plurality of storage nodes cooperating as a storage cluster is provided. Each of the plurality of storage nodes has storage memory. Each storage node of the plurality of storage nodes is configurable to direct erasure coded striping of data of one of an Mode or data segment across the plurality of storage nodes of the storage cluster, with at least one storage node of the plurality of storage nodes having a differing amount of storage capacity of the storage memory from an amount of storage capacity of another storage node in the plurality of storage nodes. A method of storing data in a storage cluster is also provided.

    Abstract translation: 提供了作为存储簇协作的多个存储节点。 多个存储节点中的每一个具有存储存储器。 多个存储节点中的每个存储节点可配置为直接对多个存储簇的多个存储节点之间的模式或数据段之一的数据进行擦除编码条带化,多个存储节点中的至少一个存储节点具有 存储存储器的存储容量与多个存储节点中的另一存储节点的存储容量的量不同。 还提供了一种在存储群集中存储数据的方法。

    Utilizing data transfer estimates for active management of a storage environment

    公开(公告)号:US12254205B1

    公开(公告)日:2025-03-18

    申请号:US17228007

    申请日:2021-04-12

    Abstract: Utilizing data transfer estimates for active management of a storage environment, including: determining an estimated data transfer time from a source storage environment to a destination storage environment; determining whether the estimated data transfer time exceeds a threshold; and performing, in response to the estimated data transfer time exceeding the threshold, a remedial action associated with data transfers between the source storage environment and the destination storage environment.

    Heterogenous memory accommodating multiple erasure codes

    公开(公告)号:US12066895B2

    公开(公告)日:2024-08-20

    申请号:US18175422

    申请日:2023-02-27

    Abstract: A method for proactively rebuilding user data in a plurality of storage nodes of a storage cluster is provided. The method includes distributing user data and metadata throughout the plurality of storage nodes such that the plurality of storage nodes can read the user data, using erasure coding, despite loss of two of the storage nodes. The method includes determining that one of the storage nodes is unreachable and determining to rebuild the user data for the one of the storage nodes that is unreachable. The method includes reading the user data across a remainder of the plurality of storage nodes, using the erasure coding and writing the user data across the remainder of the plurality of storage nodes, using the erasure coding. A plurality of storage nodes within a single chassis that can proactively rebuild the user data stored within the storage nodes is also provided.

    DATA REBUILD INDEPENDENT OF ERROR DETECTION

    公开(公告)号:US20210397525A1

    公开(公告)日:2021-12-23

    申请号:US17357191

    申请日:2021-06-24

    Abstract: A method for proactively rebuilding user data in a plurality of storage nodes of a storage cluster in a single chassis is provided. The method includes distributing user data and metadata throughout the plurality of storage nodes such that the plurality of storage nodes can read the user data, using erasure coding, despite loss of two of the plurality of storage nodes. The method includes determining to rebuild the user data for one of the plurality of storage nodes in the absences of an error condition. The method includes rebuilding the user data for the one of the plurality of storage nodes. A plurality of storage nodes within a single chassis that can proactively rebuild the user data stored within the storage nodes is also provided.

    REBUILDING DATA ACROSS STORAGE NODES
    10.
    发明申请

    公开(公告)号:US20170116074A1

    公开(公告)日:2017-04-27

    申请号:US15315676

    申请日:2015-06-04

    CPC classification number: G06F11/1076

    Abstract: A method for proactively rebuilding user data in a plurality of storage nodes of a storage cluster is provided. The method includes distributing user data and metadata throughout the plurality of storage nodes such that the plurality of storage nodes can read the user data, using erasure coding, despite loss of two of the storage nodes. The method includes determining that one of the storage nodes is unreachable and determining to rebuild the user data for the one of the storage nodes that is unreachable. The method includes reading the user data across a remainder of the plurality of storage nodes, using the erasure coding and writing the user data across the remainder of the plurality of storage nodes, using the erasure coding. A plurality of storage nodes within a single chassis that can proactively rebuild the user data stored within the storage nodes is also provided.

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