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    • 3. 发明授权
    • Apparatus system and method for deterministically transferring data by rebooting to a data transfer kernel
    • 用于通过重新启动到数据传输内核来确定性地传送数据的装置系统和方法
    • US09047231B2
    • 2015-06-02
    • US10686878
    • 2003-10-16
    • Yu-Cheng HsuRichard Anthony Ripberger
    • Yu-Cheng HsuRichard Anthony Ripberger
    • G06F21/00G06F11/14
    • G06F11/1441
    • A data saving device, system, and method rapidly and deterministically saves data of a computer system. The device may mark data that must be saved when the computer is shut down. In certain embodiments, a boot control module detects a condition requiring a rapid deterministic data saving operation, such as a power failure and reboots the computer, deterministically terminating all existing processes. Additionally, the boot control module loads a data transfer kernel in place of a standard operating kernel used for normal operation. The data transfer kernel supports a set of processes exclusively dedicated to saving data. The data transfer kernel configures the computer and storage devices for the data transfer and saves the marked data with a minimum of interruptions from other processes. Also, the data transfer kernel may shut down the computer and the storage devices after transferring data.
    • 数据保存设备,系统和方法快速且确定地保存计算机系统的数据。 设备可能会标记计算机关闭时必须保存的数据。 在某些实施例中,引导控制模块检测需要快速确定性的数据保存操作(例如电源故障并重新引导计算机)的条件,确定性地终止所有现有的过程。 此外,引导控制模块加载数据传输内核来代替用于正常操作的标准操作内核。 数据传输内核支持专门用于保存数据的一组进程。 数据传输内核配置计算机和存储设备进行数据传输,并以最少的其他进程中断来保存标记的数据。 此外,数据传输内核可以在传输数据后关闭计算机和存储设备。
    • 4. 发明授权
    • Logical partitioning in redundant systems
    • 冗余系统中的逻辑分区
    • US07653830B2
    • 2010-01-26
    • US11622961
    • 2007-01-12
    • Yu-Cheng HsuRichard Anthony Ripberger
    • Yu-Cheng HsuRichard Anthony Ripberger
    • G06F11/00
    • G06F11/2056G06F3/0617G06F3/065G06F11/2069
    • A plurality of processing nodes in a storage system are partitioned into a plurality of logical processing units, wherein the plurality of logical processing units can respond to I/O requests from a host coupled to the storage system. At least two logical processing units are grouped, wherein data in a first storage coupled to a first logical processing unit of the least two logical processing units is mirrored by data in a second storage coupled to the second logical processing unit of the at least two logical processing units. In response to a failure of the first logical processing unit, an I/O request from the host is responded to via the second logical processing unit.
    • 存储系统中的多个处理节点被划分为多个逻辑处理单元,其中多个逻辑处理单元可以响应来自耦合到存储系统的主机的I / O请求。 至少两个逻辑处理单元被分组,其中耦合到所述至少两个逻辑处理单元的第一逻辑处理单元的第一存储器中的数据被耦合到所述至少两个逻辑处理单元的第二逻辑处理单元的第二存储器中的数据镜像 处理单位。 响应于第一逻辑处理单元的故障,经由第二逻辑处理单元响应来自主机的I / O请求。
    • 6. 发明授权
    • Logical partitioning in redundant systems
    • 冗余系统中的逻辑分区
    • US07185223B2
    • 2007-02-27
    • US10675323
    • 2003-09-29
    • Yu-Cheng HsuRichard Anthony Ripberger
    • Yu-Cheng HsuRichard Anthony Ripberger
    • G06F11/00
    • G06F11/2056G06F3/0617G06F3/065G06F11/2069
    • Provided are a method, system, and article of manufacture, wherein a plurality of processing nodes in a storage system are partitioned into a plurality of logical processing units, and wherein the plurality of logical processing units can respond to I/O requests from a host coupled to the storage system. At least two logical processing units are grouped, wherein data in a first storage coupled to a first logical processing unit of the least two logical processing units is mirrored by data in a second storage coupled to the second logical processing unit of the at least two logical processing units. In response to a failure of the first logical processing unit, an I/O request from the host is responded to via the second logical processing unit.
    • 提供了一种方法,系统和制品,其中存储系统中的多个处理节点被划分为多个逻辑处理单元,并且其中所述多个逻辑处理单元可以响应来自主机的I / O请求 耦合到存储系统。 至少两个逻辑处理单元被分组,其中耦合到所述至少两个逻辑处理单元的第一逻辑处理单元的第一存储器中的数据被耦合到所述至少两个逻辑处理单元的第二逻辑处理单元的第二存储器中的数据镜像 处理单位。 响应于第一逻辑处理单元的故障,经由第二逻辑处理单元响应来自主机的I / O请求。
    • 8. 发明授权
    • Configuring shared devices over a fabric
    • 通过布局配置共享设备
    • US07676558B2
    • 2010-03-09
    • US10987381
    • 2004-11-12
    • Timothy Roy BlockYu-Cheng HsuJohn Norbert McCauleySean Patrick RileyWilliam Griswold ShermanCheng-Chung Song
    • Timothy Roy BlockYu-Cheng HsuJohn Norbert McCauleySean Patrick RileyWilliam Griswold ShermanCheng-Chung Song
    • G06F15/13
    • H04L41/08H04L41/0803H04L43/0811
    • Provided are a method, system, and program for configuring shared devices over a fabric. A module in a first processing complex configures a first part of a fabric enabling communication with a set of devices accessible through the first part of the fabric. The module detects a located device accessible through a second part of the fabric, wherein a second processing complex is designated to configure the second part of the fabric and the located device. The module determines whether the second processing complex is available in response to detecting the uninitialized device. The module passes to a device driver in the first processing complex an uninitialized property for the located device. The device driver requests the module to configure the second part of the fabric to enable access to the located device over the second part of the fabric in response to determining that the located device has the uninitialized property.
    • 提供了一种用于通过结构配置共享设备的方法,系统和程序。 第一处理复合体中的模块配置结构的第一部分,使得能够通过该结构的第一部分可访问的一组设备进行通信。 模块检测通过织物的第二部分可访问的定位设备,其中指定第二处理复合体以配置织物的第二部分和定位的设备。 该模块响应于检测到未初始化的设备来确定第二处理复合体是否可用。 该模块在第一个处理组合中传递给设备驱动程序,用于定位设备的未初始化属性。 所述设备驱动程序响应于确定所述定位的设备具有未初始化的属性,请求所述模块配置所述结构的所述第二部分以允许通过所述结构的第二部分访问所述定位的设备。