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    • 85. 发明授权
    • Apparatus and method to configure, format, and test, a data storage subsystem product
    • 用于配置,格式化和测试数据存储子系统产品的装置和方法
    • US07451354B2
    • 2008-11-11
    • US11326650
    • 2006-01-06
    • Matthew J. KalosRobert A. KuboMichael P. Vageline
    • Matthew J. KalosRobert A. KuboMichael P. Vageline
    • G06F11/00
    • G06F3/0629G06F3/0607G06F3/0683
    • An apparatus and method are disclosed to configure, format, and test, a data storage subsystem product. The method supplies a data storage subsystem product comprising one or more host computer ports, a processor, one or more data storage device ports, and one or more data storage devices interconnected to the one or more data storage device ports. The method further supplies a configuration appliance comprising a storage configuration. The method connects the configuration appliance to one of the one or more storage device ports, boots up the data storage subsystem product, discovers the configuration appliance by the data storage subsystem product, imports storage configuration data into the data storage subsystem product, formats the one or more data storage device, and tests the input and output data transfer rates for the data storage subsystem product, wherein the formatting and testing are initiated concurrently.
    • 公开了一种用于配置,格式化和测试数据存储子系统产品的装置和方法。 该方法提供包括一个或多个主计算机端口,处理器,一个或多个数据存储设备端口以及与一个或多个数据存储设备端口互连的一个或多个数据存储设备的数据存储子系统产品。 该方法还提供包括存储配置的配置设备。 该方法将配置设备连接到一个或多个存储设备端口之一,启动数据存储子系统产品,通过数据存储子系统产品发现配置设备,将存储配置数据导入数据存储子系统产品,格式化 或更多数据存储设备,并测试数据存储子系统产品的输入和输出数据传输速率,其中格式化和测试同时启动。
    • 86. 发明授权
    • Priority initialization system
    • 优先级初始化系统
    • US07383404B2
    • 2008-06-03
    • US11050545
    • 2005-02-03
    • Jeffery M. BarnesSusan K. CandelariaNicholas D. FiferMatthew J. KalosEdwin K. Scott
    • Jeffery M. BarnesSusan K. CandelariaNicholas D. FiferMatthew J. KalosEdwin K. Scott
    • G06F12/00G06F13/00G06F13/28G06F15/16G06F9/00G06F9/24G06F15/177
    • G06F3/0632G06F3/0605G06F3/0689G06F9/4411
    • A computer storage system includes a supervisor algorithm to detect a host computer's initiator logging in. The supervisor algorithm identifies data storage devices associated with the newly logged-on initiator and tags logical unit number control blocks (“LUNCBs”) as having priority in an initiation process. The supervisor algorithm assigns a task control block to each of the identified data storage devices and invokes a logical unit number (“LUN”) initialization algorithm. If the supervisor algorithm was invoked during an initial microcode load (“IML”) event, the LUN initialization algorithm initializes each of the identified data storage devices. However, if the supervisor algorithm was invoked during a warmstart procedure, the LUN initialization algorithm first checks to make sure the LUNCB was not mistakenly written too. If not, the LUN initialization algorithm terminates without initializing the associated data storage device. Otherwise, the associated data storage device is initialized and the LUN initialization algorithm terminates.
    • 计算机存储系统包括用于检测主计算机的发起者登录的监督器算法。主管程序识别与新登录的发起者相关联的数据存储设备,并将逻辑单元号控制块(“LUNCB”)标记为在启动中具有优先权 处理。 管理员算法将任务控制块分配给每个识别的数据存储设备,并调用逻辑单元号(“LUN”)初始化算法。 如果在初始微代码加载(“IML”)事件期间调用了管理程序算法,则LUN初始化算法会初始化每个标识的数据存储设备。 但是,如果在启动过程中调用了Supervisor算法,则LUN初始化算法首先检查LUNCB是否也被错误地写入。 如果没有,则LUN初始化算法将在不初始化关联的数据存储设备的情况下终止。 否则,关联的数据存储设备被初始化并且LUN初始化算法终止。
    • 87. 发明授权
    • Wireless-boot diskless mobile computing
    • 无线启动无盘移动计算
    • US07281068B2
    • 2007-10-09
    • US10891559
    • 2004-07-15
    • Mark C. DavisMatthew J. KalosRichard V. Kisley
    • Mark C. DavisMatthew J. KalosRichard V. Kisley
    • G06F13/00G06F15/177H04L9/14
    • G06F21/575H04L63/0428H04L63/06
    • A disk management server (“DMS”), to manage a remote storage device; a wireless communication network; and a mobile computer create a system for secure remote booting of a mobile computer's operating system. To facilitate access to remote boot code, a multiple connection disk management server utilizes a trusted connection to negotiate communication security and an untrusted connection for transferring data once communication security has been established. The trusted connection is established through a physically securable interface, such as a wired network or line-of-site wireless network, e.g., infrared. Successful negotiation of communication security produces a security key that can be utilized to secure information exchange over the untrusted network. The untrusted connection may utilize any standard wireless communication protocol such as IEEE 802.11b.
    • 磁盘管理服务器(“DMS”),用于管理远程存储设备; 无线通信网络; 并且移动计算机创建用于移动计算机的操作系统的安全远程启动的系统。 为了便于访问远程启动代码,多连接磁盘管理服务器利用可信连接来协商通信安全性,以及一旦建立了通信安全性就传输数据的不可信连接。 可信连接通过物理上可安全的接口建立,例如有线网络或现场无线网络,例如红外线。 通信安全性的成功协商产生一个安全密钥,可以用来保护不可信网络的信息交换。 不可信的连接可以利用任何标准的无线通信协议,如IEEE 802.11b。