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    • 2. 发明授权
    • Detecting cable length in a storage subsystem with wide ports
    • 检测具有宽端口的存储子系统中的电缆长度
    • US07949489B2
    • 2011-05-24
    • US11828687
    • 2007-07-26
    • Brian James CagnoGregg Steven LucasThomas Stanley Truman
    • Brian James CagnoGregg Steven LucasThomas Stanley Truman
    • G01R13/00
    • G01B7/02
    • A mechanism detects cable length in a storage subsystem with wide ports. The mechanism uses in-situ bidirectional cable wrapping for determining different cable lengths. The mechanism under-margins transmitter output to failure for each external port and even for each PHY within a wide port. Based on the transition point from “good” wrap to “bad” wrap, the cable length may be determined. The transition point identifies if the cable is long or short, at which point the optimum tuning parameters can accordingly be set. A calibration mechanism calibrates the high speed transmitter/receiver pair characteristics, and, thus, optimizes the transmission performance between subsystems. The calibration mechanism mitigates the need for frequent error correction and does not incur the performance degradation associated with error correction techniques.
    • 机构检测具有宽端口的存储子系统中的电缆长度。 该机构使用原位双向电缆缠绕来确定不同的电缆长度。 发射机的输出功率低于每个外部端口的故障,甚至是宽端口内的每个PHY。 基于从“良好”包装到“不良”包装的转换点,可以确定电缆长度。 转换点标识电缆是长还是短,此时可以设置最佳调谐参数。 校准机构校准高速发射机/接收机对特性,从而优化子系统之间的传输性能。 校准机制减轻了频繁纠错的需要,并且不会引起与纠错技术相关的性能下降。
    • 3. 发明授权
    • Consistent data storage subsystem configuration replication in accordance with port enablement sequencing of a zoneable switch
    • 一致的数据存储子系统配置复制按照可分区交换机的端口启用排序
    • US07917660B2
    • 2011-03-29
    • US11837985
    • 2007-08-13
    • Linda Van Patten BenhaseJohn Charles ElliottRobert Akira KuboGregg Steven Lucas
    • Linda Van Patten BenhaseJohn Charles ElliottRobert Akira KuboGregg Steven Lucas
    • G06F3/00H04L12/28
    • G06F15/161
    • Consistency for replicating data storage subsystem configurations in accordance with a “golden” configuration file. A data storage subsystem comprises a blade system configured to support a plurality of blades and a storage system, each arranged in a predetermined slot of the blade system, and at least one zoneable switch whose zoning is disabled at power on. A management module operates the blade system to power on all slots. The storage system, in accordance with a “golden” configuration file, transfers port enablement sequencing to the switch, and the switch enables and zones ports in sequence to allow the server blades to see the storage system in accordance with the port enablement sequence. The storage system is configured with the “golden” configuration file to log on the server blades in accordance with the port enablement sequence to logically configure the server blades in accordance with the “golden” configuration file.
    • 根据“黄金”配置文件复制数据存储子系统配置的一致性。 数据存储子系统包括:刀片系统,被配置为支撑多个刀片和存储系统,每个刀片和存储系统布置在刀片系统的预定槽中,以及至少一个可分区开关,其分区在上电时禁用。 管理模块操作刀片系统以打开所有插槽。 根据“黄金”配置文件的存储系统将端口启用顺序传送到交换机,并且交换机依次启用和分区端口,以允许服务器刀片根据端口启用顺序查看存储系统。 存储系统配置有“黄金”配置文件,以根据端口启用顺序登录服务器刀片,以根据“黄金”配置文件逻辑配置服务器刀片。
    • 7. 发明授权
    • Switched FC-AL fault tolerant topology
    • 交换FC-AL容错拓扑
    • US07539891B2
    • 2009-05-26
    • US10871811
    • 2004-06-18
    • Gregg Steven LucasCarl Evan Jones
    • Gregg Steven LucasCarl Evan Jones
    • G06F11/00
    • H04L12/437
    • A computer system uses a Fiber Channel Arbitrated Loop (FC-AL) network to communicate with mass storage devices. The FC-AL network provides alternative communication paths to the mass storage devices. The FC-AL communication network includes a first (60) FC-AL controller within the FC-AL switch (50). A first FC-AL mass storage drive (56) has second (80) and third (82) FC-AL controllers. A first output of the first FC-AL controller is coupled to a first input of the second FC-AL controller, and a second output of the first FC-AL controller is coupled to a first input of the third FC-AL controller. A second FC-AL mass storage drive (94) has fourth (96) and fifth (98) FC-AL controllers. A first output of the second FC-AL controller is coupled to a first input of the fourth FC-AL controller, and a first output of the third FC-AL controller is coupled to a first input of the fifth FC-AL controller. The alternative communication paths to the mass storage devices reduces incident of disk drive access failure.
    • 计算机系统使用光纤通道仲裁环路(FC-AL)网络与大容量存储设备进行通信。 FC-AL网络为大容量存储设备提供备用通信路径。 FC-AL通信网络包括FC-AL开关(50)内的第一(60)FC-AL控制器。 第一FC-AL大容量存储驱动器(56)具有第二(80)和第三(82)FC-AL控制器。 第一FC-AL控制器的第一输出耦合到第二FC-AL控制器的第一输入,并且第一FC-AL控制器的第二输出耦合到第三FC-AL控制器的第一输入端。 第二FC-AL大容量存储驱动器(94)具有第四(96)和第五(98)FC-AL控制器。 第二FC-AL控制器的第一输出耦合到第四FC-AL控制器的第一输入,并且第三FC-AL控制器的第一输出耦合到第五FC-AL控制器的第一输入端。 到大容量存储设备的替代通信路径减少磁盘驱动器访问故障的事件。