FAILOVER SYSTEM AND METHOD
    121.
    发明申请
    FAILOVER SYSTEM AND METHOD 审中-公开
    FAILOVER系统和方法

    公开(公告)号:WO2014197963A1

    公开(公告)日:2014-12-18

    申请号:PCT/CA2013/000903

    申请日:2013-10-23

    Applicant: TSX INC.

    Abstract: A failover system, server, method, and computer readable medium are provided. The system includes a primary server for communicating with a client machine and a backup server. The primary server includes a primary session manager, a primary dispatcher a primary order processing engine and a primary verification engine. The method involves receiving an input message, obtaining deterministic information, processing the input message and replicating the input message along with the deterministic information.

    Abstract translation: 提供故障切换系统,服务器,方法和计算机可读介质。 该系统包括用于与客户机和备份服务器通信的主服务器。 主服务器包括主会话管理器,主分派器,主订单处理引擎和主验证引擎。 该方法包括接收输入消息,获得确定性信息,处理输入消息以及复制输入消息以及确定性信息。

    ストレージ装置及び記憶領域検証方法
    125.
    发明申请
    ストレージ装置及び記憶領域検証方法 审中-公开
    存储设备和存储区域验证方法

    公开(公告)号:WO2014147816A1

    公开(公告)日:2014-09-25

    申请号:PCT/JP2013/058292

    申请日:2013-03-22

    Abstract:  記憶ドライブのエラーチェックとしてドライブ全面のベリファイを行う方法があるが、記憶ドライブの大容量化に伴い記憶領域の使用前にエラーチェックが実行されない場合がある。本発明では、データの使用量を推定し、推定量に相当する記憶領域を定期的にベリファイする。データの使用前に先回りして、使用される記憶領域のベリファイを行うことで、全面チェックを行わなくてもエラーの発生を防止する。

    Abstract translation: 虽然存在用于验证整个驱动器表面以检查存储驱动器错误的方法,但是由于存储驱动器的容量增加,存在在使用存储区之前不执行错误检查的情况。 在本发明中,估计数据使用量,并且周期性地验证对应于估计体积的存储区域。 通过主动验证要使用的存储区域,在使用数据之前,即使不检查整个表面,也会阻止发生错误。

    EDGE VIRTUAL BRIDGING STATION WITH PRIMARY AND SECONDARY PHYSICAL NETWORK CARDS
    126.
    发明申请
    EDGE VIRTUAL BRIDGING STATION WITH PRIMARY AND SECONDARY PHYSICAL NETWORK CARDS 审中-公开
    边缘虚拟桥梁与主要和次要的物理网络卡

    公开(公告)号:WO2014067468A1

    公开(公告)日:2014-05-08

    申请号:PCT/CN2013/086276

    申请日:2013-10-31

    Inventor: WU, Qiang

    Abstract: According to an example, an Edge Virtual Bridging (EVB) station is configured with a VM, an ER and multiple physical network cards. The VM is configured with multiple virtual network cards and each virtual network card has one VSI. Each VSI is connected with one of the physical network cards via the ER. One of the physical network cards is configured as a primary physical network card, and another is configured as a secondary physical network card. A VSI corresponding to the primary physical network card is configured as a primary virtual interface, and a VSI corresponding to the secondary physical network card is configured as a secondary virtual interface. After determining the primary physical network card failed, the secondary physical network card is configured as a new primary physical network card, and the secondary virtual is configured as a new primary virtual interface.

    Abstract translation: 根据一个示例,边缘虚拟桥接(EVB)站配置有VM,ER和多个物理网卡。 VM配置有多个虚拟网卡,每个虚拟网卡都有一个VSI。 每个VSI通过ER连接到一个物理网卡。 其中一个物理网卡被配置为主物理网卡,另一个配置为辅助物理网卡。 将与主要物理网卡相对应的VSI配置为主虚拟接口,将与辅助物理网卡对应的VSI配置为辅助虚拟接口。 确定主要物理网卡失败后,将备用物理网卡配置为新的主要物理网卡,将辅助虚拟机配置为新的主虚拟接口。

    INFORMATION PROCESSING DEVICE, INFORMATION PROCESSING METHOD, AND STORAGE MEDIUM STORING PROGRAM FOR EXECUTING INFORMATION PROCESSING METHOD
    127.
    发明申请
    INFORMATION PROCESSING DEVICE, INFORMATION PROCESSING METHOD, AND STORAGE MEDIUM STORING PROGRAM FOR EXECUTING INFORMATION PROCESSING METHOD 审中-公开
    信息处理装置,信息处理方法和用于执行信息处理方法的存储媒体存储程序

    公开(公告)号:WO2013156844A1

    公开(公告)日:2013-10-24

    申请号:PCT/IB2013/000717

    申请日:2013-04-18

    Inventor: HIRANO, Kanji

    Abstract: An information processing device includes: a plurality of processing units configured to execute software components each having a priority level; an abnormality determination unit configured to determine whether any one of the plurality of processing units has an abnormality; and a changing unit configured to, when the abnormality determination unit has determined that any one of the processing units has an abnormality, execute control such that the processing unit not determined to have an abnormality processes the software component supposed to be executed by the processing unit determined to have an abnormality. The changing unit is configured to process the software component having the priority level higher than or equal to a reference level among the software components supposed to be executed by the processing unit determined to have an abnormality.

    Abstract translation: 信息处理设备包括:多个处理单元,被配置为执行各自具有优先级的软件组件; 异常确定单元,被配置为确定所述多个处理单元中的任一个是否具有异常; 以及改变单元,被配置为当所述异常确定单元已经确定任何一个所述处理单元具有异常时,执行控制使得所述未被确定为具有异常的所述处理单元处理由所述处理单元应该执行的软件组件 确定有异常。 改变单元被配置为处理由被确定为具有异常的处理单元执行的软件组件中具有高于或等于参考水平的优先级的软件组件。

    METHOD AND SYSTEM FOR A STORAGE AREA NETWORK
    128.
    发明申请
    METHOD AND SYSTEM FOR A STORAGE AREA NETWORK 审中-公开
    存储区域网络的方法和系统

    公开(公告)号:WO2010037147A3

    公开(公告)日:2011-12-29

    申请号:PCT/US2009058905

    申请日:2009-09-29

    Inventor: CANDELARIA JAMES

    Abstract: In a system and method for a storage area network (SAN), a first controller receives a write request for a SAN and communicates with a first nested storage array module (NSAM), the first NSAM manages storage of data onto a shelf and presents the shelf as a logical unit, a buffer stores a portion of a write request from the first controller and aggregates data from the write request for the shelf, from a shelf with a second NSAM, the second NSAM provides a portion of data from the buffer to a third NSAM, the third NSAM manages storage of the portion of data from the buffer to a physical storage unit, and a second controller coupled to the first controller handles requests for the SAN in response to a failure of the first controller.

    Abstract translation: 在用于存储区域网络(SAN)的系统和方法中,第一控制器接收对SAN的写入请求并与第一嵌套存储阵列模块(NSAM)进行通信,第一NSAM管理数据到架子上的存储,并呈现 货架作为逻辑单元,缓冲器存储来自第一控制器的写入请求的一部分,并从具有第二NSAM的货架中聚集来自架子的写入请求的数据,第二NSAM从缓冲器提供一部分数据 第三NSAM,第三NSAM管理从缓冲器到物理存储单元的部分数据的存储,并且耦合到第一控制器的第二控制器响应于第一控制器的故障处理对SAN的请求。

    METHOD AND SYSTEM FOR A STORAGE AREA NETWORK
    129.
    发明申请
    METHOD AND SYSTEM FOR A STORAGE AREA NETWORK 审中-公开
    存储区域网络的方法和系统

    公开(公告)号:WO2010037147A2

    公开(公告)日:2010-04-01

    申请号:PCT/US2009/058905

    申请日:2009-09-29

    Abstract: In a system and method for a storage area network (SAN), a first controller receives a write request for a SAN and communicates with a first nested storage array module (NSAM), the first NSAM manages storage of data onto a shelf and presents the shelf as a logical unit, a buffer stores a portion of a write request from the first controller and aggregates data from the write request for the shelf, from a shelf with a second NSAM, the second NSAM provides a portion of data from the buffer to a third NSAM, the third NSAM manages storage of the portion of data from the buffer to a physical storage unit, and a second controller coupled to the first controller handles requests for the SAN in response to a failure of the first controller.

    Abstract translation: 在用于存储区域网络(SAN)的系统和方法中,第一控制器接收对SAN的写入请求并与第一嵌套存储阵列模块(NSAM)进行通信,所述第一NSAM管理数据到架子上的存储, 货架作为逻辑单元,缓冲器存储来自第一控制器的写入请求的一部分,并从具有第二NSAM的货架聚集来自架子的写入请求的数据,第二NSAM从缓冲器提供一部分数据 第三NSAM,第三NSAM管理从缓冲器到物理存储单元的部分数据的存储,并且耦合到第一控制器的第二控制器响应于第一控制器的故障处理对SAN的请求。

    가상 머신 클러스터 모니터링 방법 및 모니터링 시스템

    公开(公告)号:KR101888029B1

    公开(公告)日:2018-09-11

    申请号:KR1020160104238

    申请日:2016-08-17

    Inventor: 류후

    Abstract: 본발명은가상머신클러스터모니터링방법및 모니터링시스템을개시한다. 상기방법의일 구체적실시예는, 제1 물리머신은제1 기설정된시간을간격으로가상머신클러스터중의가상머신에가상머신상태파라미터조회인스트럭션을송신하는단계; 가상머신은조회인스트럭션의수신에응답하여제1 물리머신에응답정보를송신하는단계; 제1 물리머신은응답정보가제2 기설정된시간동안중단됨에응답하여가상머신에고장이발생한것으로확정하고, 고장이발생한가상머신이기설정된재부팅조건에만족되는지를판단하여고장이발생한가상머신이기설정된재부팅조건에만족될경우고장이발생한가상머신을가동시키는제2 물리머신에가상머신재부팅인스트럭션을송신하는단계; 및제2 물리머신은가상머신재부팅인스트럭션에의해고장이발생한가상머신을재부팅시키는단계;를포함한다. 이러한실시예는가상머신에대한모니터링을실현하고, 가상머신에고장이발생할경우자동으로복구할수 있으므로가상머신클러스터의사용가능성을향상시키고서비스의중단시간을단축시킨다.

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