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    • 54. 发明授权
    • Maintaining and using nexus information on a host, port and device connection
    • 维护和使用主机,端口和设备连接上的连接信息
    • US07694038B2
    • 2010-04-06
    • US10991662
    • 2004-11-17
    • Matthew Joseph KalosRichard Anthony Ripberger
    • Matthew Joseph KalosRichard Anthony Ripberger
    • G06F13/00
    • G06F13/387
    • Provided are a method, system, and program maintaining and using nexus information on a host, port and device connection. A login is received from a host port on a storage controller port, wherein the host port has been configured on the storage controller to access one or more devices. An entry is added to a host-storage controller ports data structure for the host port and storage controller port involved in the login. At least one pointer is initialized in the entry in the host-storage controller ports data structure to point to at least one entry in at least one intermediate data structure. One pointer is initialized in each entry in one intermediate data structure addressed by one initialized pointer in the host-storage controller ports data structure to point to a nexi data structure having a plurality of entries.
    • 提供了在主机,端口和设备连接上维护和使用线索信息的方法,系统和程序。 从存储控制器端口上的主机端口接收登录,其中主机端口已经在存储控制器上配置以访问一个或多个设备。 将一个条目添加到主机 - 存储控制器端口数据结构中,用于登录中涉及的主机端口和存储控制器端口。 至少一个指针在主机 - 存储控制器端口数据结构中的条目中初始化,以指向至少一个中间数据结构中的至少一个条目。 在一个中间数据结构中的每个条目中初始化一个指针,该中间数据结构由主机 - 存储控制器端口数据结构中的一个初始化指针寻址,以指向具有多个条目的nexi数据结构。
    • 55. 发明授权
    • Spare device management
    • 备件管理
    • US07661012B2
    • 2010-02-09
    • US11292747
    • 2005-12-01
    • Matthew Joseph KalosRobert Akira KuboRichard Anthony Ripberger
    • Matthew Joseph KalosRobert Akira KuboRichard Anthony Ripberger
    • G06F11/00
    • G06F11/2094
    • Provided are techniques for spare device management. Candidate devices are sorted into spare coverage groups by type. One or more candidate devices having closest fitting characteristics of a desired type are identified from the spare coverage groups. The identified one or more candidate devices are assigned to be spare devices for the spare coverage group. It is determined whether a desired number of spare devices have been assigned to the spare coverage group. In response to determining that the desired number of spare devices have not been assigned, a spare device having the closest fitting characteristics for every predetermined number of candidate devices having the closest fitting characteristics is assigned, until the desired number of spare devices having the closest fitting characteristics are assigned.
    • 提供了备用设备管理的技术。 候选设备按类型分为备用覆盖组。 从备用覆盖组中识别具有期望类型的最接近特征的一个或多个候选设备。 所识别的一个或多个候选设备被分配为备用覆盖组的备用设备。 确定是否已将所需数量的备用设备分配给备用覆盖组。 响应于确定尚未分配期望数量的备用设备,分配具有最接近拟合特性的每个预定数量的候选设备具有最接近的拟合特性的备用设备,直到具有最接近配件的所需数量的备用设备 特征被分配。
    • 57. 发明申请
    • ALLOCATION OF HETEROGENEOUS STORAGE DEVICES TO SPARES AND STORAGE ARRAYS
    • 异质储存装置分配到储存阵列和储存阵列
    • US20090063768A1
    • 2009-03-05
    • US11849888
    • 2007-09-04
    • Matthew Joseph KalosRobert Akira KuboRichard Anthony Ripberger
    • Matthew Joseph KalosRobert Akira KuboRichard Anthony Ripberger
    • G06F12/02
    • G06F3/0607G06F3/0631G06F3/0689G06F11/2094
    • A plurality of storage devices of a plurality of types is provided. A plurality of criteria is associated for each of the plurality of storage devices, based on characteristics of the plurality of storage devices, wherein the plurality of criteria can be used to determine whether a selected storage device is a compatibility spare for a storage device in a storage device array, and whether the selected storage device is an availability spare for the storage device in the storage device array. A determination is made by a spare management application, based on at least the plurality of criteria and at least one optimality condition, of a first set of storage devices selected from the plurality of storage devices to be allocated to a plurality of storage device arrays, and of a second set of storage devices selected from the plurality of storage devices to be allocated as spares for the plurality of storage device arrays. An allocation is made of the first set of storage devices to the plurality of storage device arrays. An allocation made of the second set of storage devices as spares for the plurality of storage device array.
    • 提供多种类型的多个存储装置。 基于多个存储设备的特性,多个标准与多个存储设备中的每一个相关联,其中可以使用多个标准来确定所选择的存储设备是否是用于存储设备中的存储设备的兼容性备用 存储设备阵列,以及所选择的存储设备是否是存储设备阵列中的存储设备的可用性备用。 至少基于从多个存储设备中选择的要分配给多个存储设备阵列的第一组存储设备的标准和至少一个最优条件,备用管理应用进行确定, 以及从所述多个存储装置中选择的作为所述多个存储装置阵列的备件分配的第二组存储装置。 将第一组存储设备分配给多个存储设备阵列。 由第二组存储装置作为多个存储装置阵列的备件进行分配。
    • 60. 发明授权
    • Apparatus, system, and method for adapter fastload
    • 适配器快速装载的装置,系统和方法
    • US07313681B2
    • 2007-12-25
    • US10717822
    • 2003-11-20
    • James Chien-Chiung ChenBrian Jeffrey CorcoranMatthew Joseph KalosRicardo Sedillos Padilla
    • James Chien-Chiung ChenBrian Jeffrey CorcoranMatthew Joseph KalosRicardo Sedillos Padilla
    • G06F9/00G06F9/24G06F15/177
    • G06F8/65
    • An apparatus, system, and method are disclosed for fastload code update on a communications adapter. The apparatus includes an image load module, a memory initialization module, and an image overlay module. The image load module is configured to load a copy of a new code image in a memory on the communications adapter. The memory also concurrently stores a copy of an old code image used by the communications adapter. The memory initialization module is configured to invoke the new code image to perform a memory initialization operation. The memory initialization module may perform the memory initialization operation concurrently with ongoing I/O requests possibly accepted, but not necessarily processed, by the old code image. The image overlay module is configured to overlay the old code image with the new code image. The fastload code update minimizes the time that the communications adapter is off-line to overlay the old code image with the new code image and reinitialize the communications adapter.
    • 公开了用于通信适配器上的快速加载代码更新的装置,系统和方法。 该装置包括图像加载模块,存储器初始化模块和图像覆盖模块。 图像加载模块被配置为将新代码图像的副本加载到通信适配器上的存储器中。 存储器还同时存储通信适配器使用的旧代码映像的副本。 存储器初始化模块被配置为调用新的代码图像以执行存储器初始化操作。 存储器初始化模块可以与可能接受但不一定由旧代码映像处理的正在进行的I / O请求同时执行存储器初始化操作。 图像叠加模块被配置为使用新的代码图像覆盖旧的代码图像。 快速代码更新最大限度地缩短通信适配器离线覆盖旧代码图像与新代码映像并重新初始化通信适配器的时间。