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    • 53. 发明授权
    • Establishing communications across virtual enclosure boundaries
    • 跨虚拟机箱边界建立通信
    • US07761738B2
    • 2010-07-20
    • US11470856
    • 2006-09-07
    • John C. ElliottRobert A. KuboGregg S. Lucas
    • John C. ElliottRobert A. KuboGregg S. Lucas
    • G06F11/00
    • G06F1/187G06F11/2015G06F11/2089
    • A high density storage enclosure houses first and second pluralities of hard disk drives (HDDs). The enclosure may be partitioned into a plurality of virtual enclosures, the first plurality of HDDs being associated with a first virtual enclosure and the second plurality of HDDs being associated with a second virtual enclosure. In the event of a failure within one of the virtual enclosures, an SES in the failed virtual enclosure is isolated from the rest of the virtual enclosure. Then, an inter-enclosure link may be enabled between the failed virtual enclosure and another virtual enclosure. The isolated SES processor may then be accessed to obtain data associated with the failure and to execute commands associated with a recovery process.
    • 高密度存储机箱容纳第一和第二多个硬盘驱动器(HDD)。 所述外壳可以被划分成多个虚拟外壳,所述第一多个HDD与第一虚拟外壳相关联,并且所述第二多个HDD与第二虚拟外壳相关联。 如果虚拟机箱之一发生故障,故障虚拟机箱中的SES与虚拟机箱的其余部分隔离。 然后,可以在故障虚拟机箱和另一个虚拟机箱之间启用机柜间链路。 然后可以访问隔离的SES处理器以获得与故障相关联的数据并执行与恢复过程相关联的命令。
    • 55. 发明授权
    • RAID array data member copy offload in high density packaging
    • RAID阵列数据成员在高密度封装中复制卸载
    • US07673167B2
    • 2010-03-02
    • US11671539
    • 2007-02-06
    • John C. ElliottRobert A. KuboGregg S. Lucas
    • John C. ElliottRobert A. KuboGregg S. Lucas
    • G06F11/00
    • G06F3/0647G06F3/061G06F3/0689G06F11/1092G06F11/1096G06F2211/1023
    • A computer-implemented method replaces a redundant array of independent disks (RAID) array member storage device configured in high density packaging. The high density packaging includes a plurality of field-replaceable units (FRUs). Each FRU has an associated plurality of storage devices. A first spare storage device of a first FRU is captured. The first FRU is dedicated as a plurality of spare storage devices by a RAID controller. A small computer system interface (SCSI) enclosure services (SES) processor (SESP) is initialized to read data from the RAID array member storage device and transfer the data to the first spare storage device. The first spare storage device and the RAID array member storage device are co-resident within a serial attached small computer system interface (SAS) expander local port domain.
    • 计算机实现的方法代替以高密度封装配置的独立磁盘(RAID)阵列成员存储设备的冗余阵列。 高密度封装包括多个现场可更换单元(FRU)。 每个FRU具有相关联的多个存储设备。 捕获第一FRU的第一备用存储装置。 第一个FRU由RAID控制器专用作多个备用存储设备。 小型计算机系统接口(SCSI)机箱服务(SES)处理器(SESP)被初始化以从RAID阵列成员存储设备读取数据并将数据传送到第一备用存储设备。 第一个备用存储设备和RAID阵列成员存储设备共同驻留在串行连接的小型计算机系统接口(SAS)扩展器本地端口域中。
    • 57. 发明申请
    • System and method of maximization of storage capacity in a configuration limited system
    • 配置有限系统中存储容量最大化的系统和方法
    • US20090187707A1
    • 2009-07-23
    • US12018330
    • 2008-01-23
    • Linda V. BenhaseJohn C. ElliottRobert A. KuboGregg S. Lucas
    • Linda V. BenhaseJohn C. ElliottRobert A. KuboGregg S. Lucas
    • G06F13/14G06F12/00
    • G06F3/0632G06F3/0607G06F3/0689
    • A method, system and computer-usable medium are disclosed for providing management of serial attached small computer system interface (SAS) storage devices. A host computer comprises a storage controller connected to a SAS port expander comprising a plurality of ports that are logically assigned to target storage devices. The device ports of all storage devices physically attached to the SAS port expander are bypassed to remove their logical SAS expander port assignments. The storage controller unbypasses the device ports, allowing it to recognize the presence of all physically attached storage devices. The recognized storage devices are inventoried and storage devices that are not logically assigned a SAS expander port are designated as being spare storage devices. SAS expander ports are logically assigned to the non-spare storage devices and SAS storage operations are performed.
    • 公开了用于提供串行连接的小型计算机系统接口(SAS)存储设备的管理的方法,系统和计算机可用介质。 主计算机包括连接到SAS端口扩展器的存储控制器,其包括逻辑地分配给目标存储设备的多个端口。 物理连接到SAS端口扩展器的所有存储设备的设备端口都被绕过以去除其逻辑SAS扩展器端口分配。 存储控制器取消设备端口的旁路,允许它识别所有物理连接的存储设备的存在。 识别的存储设备是库存的,并且没有逻辑地分配SAS扩展器端口的存储设备被指定为备用存储设备。 SAS扩展器端口被逻辑地分配给非备用存储设备,并且执行SAS存储操作。
    • 58. 发明授权
    • Apparatus and method to reconfigure a storage array
    • 重新配置存储阵列的装置和方法
    • US07418623B2
    • 2008-08-26
    • US11281307
    • 2005-11-16
    • John C. ElliottShah Mohammad Rezaul IslamRobert A. KuboGregg S. Lucas
    • John C. ElliottShah Mohammad Rezaul IslamRobert A. KuboGregg S. Lucas
    • G06F11/00
    • G06F11/1662G06F3/0605G06F3/0617G06F3/0632G06F3/0689G06F11/2094
    • A method is disclosed to reconfigure a storage array. The method supplies a data storage and retrieval system comprising (N) data storage device assemblies, wherein each of those (N) data storage device assemblies comprises (M) data storage devices, wherein (N) is greater than or equal to 2, and wherein (M) is greater than or equal to 2. The method configures those (N) data storage device assemblies to comprise a spare data storage device assembly and a first storage array comprising the remaining (N−1) data storage device assemblies. In the event Applicants' method detects a failed data storage device disposed in the first storage array, then the method forms a second storage array comprising the first storage array, except the failed data storage device, in combination with a data storage device disposed in the spare data storage device assembly.
    • 公开了一种重新配置存储阵列的方法。 该方法提供包括(N)个数据存储设备组件的数据存储和检索系统,其中每个数据存储设备组件包括(M)数据存储设备,其中(N)大于或等于2,以及 其中(M)大于或等于2.该方法将这些(N)数据存储设备组件配置为包括备用数据存储设备组件和包括剩余(N-1)个数据存储设备组件的第一存储阵列。 如果申请人的方法检测到设置在第一存储阵列中的故障数据存储装置,则该方法与除了故障数据存储装置之外的数据存储装置组合形成包括第一存储阵列的第二存储阵列 备用数据存储设备组装。
    • 60. 发明申请
    • RECONFIGURABLE FC-AL STORAGE LOOPS IN A DATA STORAGE SYSTEM
    • 数据存储系统中可重新配置的FC-AL存储器
    • US20080126733A1
    • 2008-05-29
    • US11470907
    • 2006-09-07
    • John C. ElliottRobert A. KuboGregg S. Lucas
    • John C. ElliottRobert A. KuboGregg S. Lucas
    • G06F12/06
    • G06F3/0658G06F3/0607G06F3/0635G06F3/0689
    • Data storage systems and methods and computer program product for managing data storage systems are provided. The system includes at least first and second storage enclosures, each having a plurality of hard disks configured as first and second arrays of disks and an intra-enclosure path between the first and second arrays. The intra-enclosure path is disabled during normal operation of the storage system. Inter-enclosure paths respectively link the first arrays in the first and second storage enclosures and the second arrays in the first and second storage enclosures and are enabled during normal operation of the storage system. The system also includes a controller having a first path to the first array in the first enclosure and a second path to the second array in the first enclosure whereby, during normal operation of the system, the first arrays in the first and second enclosures are configured as a first storage loop and the second arrays in the first and second enclosures are configured as a second storage loop. The controller is configured to detect a failure in the first array of the first enclosure and to enable the intra-enclosure path between the first and second arrays in the second enclosure whereby the second storage loop is reconfigured to include the first array in the second enclosure.
    • 提供了用于管理数据存储系统的数据存储系统和方法以及计算机程序产品。 该系统至少包括第一和第二存储外壳,每个具有被配置为第一和第二盘阵列的多个硬盘以及第一和第二阵列之间的内部机箱路径。 在存储系统的正常操作期间,机箱内路径被禁用。 机柜间路径分别链接第一和第二存储箱中的第一阵列和第一和第二存储箱中的第二阵列,并且在存储系统的正常操作期间被启用。 该系统还包括具有到第一外壳中的第一阵列的第一路径的控制器和在第一外壳中的第二阵列的第二路径,由此在系统的正常操作期间,第一和第二外壳中的第一阵列被配置 作为第一存储循环,并且第一和第二外壳中的第二阵列被配置为第二存储循环。 所述控制器被配置为检测所述第一外壳的所述第一阵列中的故障并且使得所述第二外壳中的所述第一和第二阵列之间的所述内部机箱路径能够被重新配置,以将所述第二阵列包括在所述第二外壳中的所述第一阵列 。