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    • 21. 发明授权
    • Storage system
    • 存储系统
    • US08943286B1
    • 2015-01-27
    • US14330182
    • 2014-07-14
    • Hitachi, Ltd.
    • Yutaka WatanabeHideo SaitoTomohiro Kawaguchi
    • G06F3/06G06F11/14
    • G06F3/0604G06F3/0605G06F3/0647G06F3/0665G06F3/067G06F3/0689G06F11/1458G06F11/2064G06F11/2076G06F2003/0692G06F2201/815
    • A storage system includes a first storage apparatus including a first logical volume and a second storage apparatus including a second logical volume. The first and second logical volumes are set as a High Availability pair and associated with a virtual volume. When receiving a write request to the virtual volume, the storage system manages storage area in the first logical volume regarding to the write request as storage area during data duplication, writes data in duplicate, in order from the first logical volume to the second logical volume. When receiving a read request to the virtual volume, the first storage apparatus waits for completion of the data duplication and reads data from the first logical volume if the storage area is during the data duplication, and the first storage apparatus reads data from the first logical volume if the storage area is not during the data duplication.
    • 存储系统包括包括第一逻辑卷的第一存储装置和包括第二逻辑卷的第二存储装置。 第一个和第二个逻辑卷被设置为高可用性对并与虚拟卷相关联。 当接收到对虚拟卷的写入请求时,存储系统将数据复制期间关于写入请求的第一逻辑卷中的存储区域作为存储区域进行管理,按照从第一逻辑卷到第二逻辑卷的顺序重写数据 。 当接收到虚拟卷的读取请求时,如果存储区域在数据复制期间,则第一存储装置等待数据复制的完成并从第一逻辑卷读取数据,并且第一存储装置从第一逻辑读取数据 如果存储区不在数据复制期间,则为卷。
    • 22. 发明申请
    • Replication of Data Between Mirrored Data Sites
    • 镜像数据站点之间的数据复制
    • US20150019491A1
    • 2015-01-15
    • US13939106
    • 2013-07-10
    • Tad HuntJohn Howe
    • Tad HuntJohn Howe
    • G06F17/30
    • G06F17/30174G06F11/1443G06F11/2023G06F11/2064G06F11/2079G06F11/2094G06F11/2097G06F17/30575G06F2201/855H04L67/1095
    • Computer-implemented methods and systems for replication of data between mirrored data sites are provided. An exemplary method may comprise receiving a data object at a mirrored data site, the mirrored data site including one or more data nodes. The data objects are replicated to the one or more data nodes internally. Then, a data object reference associated with the data object is generated. The reference referring to the data object is queued for transmission to all other mirrored data sites. The data object reference associated with the data object is transmitted to the other mirrored data sites. When the data object is received at each mirrored data site, it is replicated to one or more data nodes within the site. After transmitting the data object, the data object reference is discarded.
    • 提供了用于在镜像数据站点之间复制数据的计算机实现的方法和系统。 示例性方法可以包括在镜像数据站点处接收数据对象,镜像数据站点包括一个或多个数据节点。 数据对象在内部复制到一个或多个数据节点。 然后,生成与数据对象相关联的数据对象引用。 参考数据对象的引用被排队等待传输到所有其他镜像数据站点。 与数据对象相关联的数据对象引用被发送到其他镜像数据站点。 当在每个镜像数据站点接收到数据对象时,它被复制到站点内的一个或多个数据节点。 发送数据对象后,丢弃数据对象引用。
    • 24. 发明授权
    • Data mirroring using batch boundaries
    • 数据镜像使用批量边界
    • US08850073B1
    • 2014-09-30
    • US11742549
    • 2007-04-30
    • John Wilkes
    • John Wilkes
    • G06F15/16G06F13/00
    • G06F11/2074G06F11/2064G06F11/2066G06F2201/835
    • Provided are, among other things, systems, methods and techniques for controlling data synchronization. Local data-writing operations, made across a number of logical storage units on different data-storage devices, are divided into batches, the batches corresponding to different time segments. The data-writing operations, together with an indication of boundaries between the batches, are transmitted to a remote data-storage location. The boundaries between the batches are determined by at least one of: (1) identifying a period of time of sufficient duration during which no data-writing operations were performed and declaring a point during said period of time as one of the boundaries, (2) obtaining agreement from a plurality of entities, and (3) declaring the boundaries at pre-scheduled points in time.
    • 除其他之外,提供用于控制数据同步的系统,方法和技术。 通过不同数据存储设备上的多个逻辑存储单元进行的本地数据写入操作分为批次,批次对应于不同的时间段。 数据写入操作以及批次之间的边界的指示被发送到远程数据存储位置。 批次之间的边界由以下至少之一确定:(1)识别在该时间段内没有执行数据写入操作并且在所述时间段内将点指定为边界之一的足够持续时间的时间段(2 )从多个实体获得协议,和(3)在预先计划的时间点上声明边界。
    • 25. 发明申请
    • METHOD AND SYSTEM FOR DATA MIGRATION
    • 用于数据移动的方法和系统
    • US20140289557A1
    • 2014-09-25
    • US14296877
    • 2014-06-05
    • TENCENT TECHNOLOGY (SHENZHEN) COMPANY LIMITED
    • Zhihao ZhouMing TianLi Liu
    • G06F11/14
    • G06F11/1435G06F11/2064G06F11/2082G06F11/2089G06F17/303
    • A method and a system for data migration are described, the method for data migration including: slicing data in an original system to obtain a data slice; importing the data slice into a new system; and redoing, in the new system, respective data corresponding to at least one pre-recorded write request according to a sequence number order of the at least one pre-recorded write request, wherein the at least one pre-recorded write request above is to simultaneously write to both the original system and the new system. In the method and the system, data in an original system can be seamlessly imported to a new system without forbidding writes to the original system, and the data in the new system can be recovered to the latest by a redo technique. Without any awareness of users, the data migration can be achieved in the background.
    • 描述了一种用于数据迁移的方法和系统,用于数据迁移的方法包括:在原始系统中分割数据以获得数据切片; 将数据切片导入新系统; 并且在所述新系统中,根据所述至少一个预先记录的写入请求的序列号顺序重新对应于至少一个预先记录的写入请求的相应数据,其中上述至少一个预先记录的写入请求是 同时写入原系统和新系统。 在该方法和系统中,原始系统中的数据可以无缝导入到新系统,而不会对原始系统进行写入,新系统中的数据可以通过重做技术恢复到最新状态。 没有用户意识,可以在后台实现数据迁移。
    • 27. 发明申请
    • METHOD AND APPARATUS FOR EFFICIENT REMOTE COPY
    • 用于有效远程复制的方法和装置
    • US20140208048A1
    • 2014-07-24
    • US13747586
    • 2013-01-23
    • Akira DEGUCHI
    • Akira DEGUCHI
    • G06F3/06
    • G06F12/00G06F11/2064G06F11/2074G06F2201/855
    • According to one aspect of the invention, a storage system comprises: a plurality of storage devices; and a controller operable to manage a secondary volume, of a remote copy pair with a primary volume of another storage system, and corresponding to a portion of the plurality of storage devices. The secondary volume has a function for storing data included in journal data sent from said another storage system according to a remote copy procedure. The controller is operable to handle the journal data to be stored temporarily in a third volume corresponding to another portion of the plurality of storage devices before storing the data of the journal data to the secondary volume, if a relationship between the journal data and another journal data, which has smaller sequence number than sequence number of the journal data and is sent from said another storage system to the storage system, has a condition.
    • 根据本发明的一个方面,一种存储系统包括:多个存储装置; 以及控制器,其可操作以管理具有另一存储系统的主卷的远程副本对的副卷,并且对应于所述多个存储设备的一部分。 副卷具有根据远程复制过程存储从所述另一存储系统发送的日志数据中包含的数据的功能。 如果日志数据与另一个日志之间的关系,则控制器可操作地将临时存储的临时数据临时存储在与多个存储设备的另一部分相对应的第三卷中,然后将日志数据的数据存储到辅助卷 具有比日志数据的序列号小的序列号并且从所述另一存储系统发送到存储系统的数据具有条件。
    • 30. 发明授权
    • System and method for secure and reliable multi-cloud data replication
    • 用于安全可靠的多云数据复制的系统和方法
    • US08762642B2
    • 2014-06-24
    • US12695250
    • 2010-01-28
    • John W. BatesMark Aldred
    • John W. BatesMark Aldred
    • G06F12/00
    • H04L63/0428G06F3/0614G06F3/0623G06F3/065G06F3/067G06F11/2064G06F11/2076G06F11/2087G06F12/0804G06F12/0866G06F2201/82G06F2212/263H04L9/088H04L9/0891H04L9/0894H04L9/321H04L63/10H04L67/1095H04L67/1097H04L67/2852H04L67/2857H04L67/288H04L67/289
    • A multi-cloud data replication method includes providing a data replication cluster comprising at least a first host node and at least a first online storage cloud. The first host node is connected to the first online storage cloud via a network and comprises a server, a cloud array application and a local cache. The local cache comprises a buffer and a first storage volume comprising data cached in one or more buffer blocks of the local cache's buffer. Next, requesting authorization to perform cache flush of the cached first storage volume data to the first online storage cloud. Upon receiving approval of the authorization, encrypting the cached first storage volume data in each of the one or more buffer blocks with a data private key. Next, assigning metadata comprising at lest a unique identifier to each of the one or more buffer blocks and then encrypting the metadata with a metadata private key. Next, transmitting the one or more buffer blocks with the encrypted first storage volume data to the first online cloud storage. Next, creating a sequence of updates of the metadata, encrypting the sequence with the metadata private key and then transmitting the sequence of metadata updates to the first online storage cloud.
    • 多云数据复制方法包括提供包括至少第一主机节点和至少第一在线存储云的数据复制集群。 第一主机节点经由网络连接到第一在线存储云,并且包括服务器,云阵列应用和本地高速缓存。 本地高速缓存包括缓冲器和第一存储卷,其包括缓存在本地高速缓冲存储器的缓冲器的一个或多个缓冲器块中的数据。 接下来,请求授权将高速缓存的第一存储卷数据刷新到第一在线存储云。 在获得授权的批准之后,用数据私钥对一个或多个缓冲区块中的每一个缓存的第一存储卷数据进行加密。 接下来,将包含唯一标识符的元数据分配给一个或多个缓冲器块中的每一个,然后用元数据私钥对元数据进行加密。 接下来,将具有加密的第一存储卷数据的一个或多个缓冲块发送到第一在线云存储。 接下来,创建元数据的更新序列,用元数据私钥加密序列,然后将元数据更新序列发送到第一在线存储云。