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    • 3. 发明授权
    • Storage system for data encryption
    • 存储系统进行数据加密
    • US08200965B2
    • 2012-06-12
    • US12581933
    • 2009-10-20
    • Akira FujibayashiMakio Mizuno
    • Akira FujibayashiMakio Mizuno
    • H04L9/00
    • H04L63/0428G06F11/1076G06F11/1435G06F11/2069G06F21/6218G06F2201/84G06F2221/2107
    • A storage system including a host interface connected via a network to a host computer; a disk interface connected to a disk drive; a memory module that stores control information of a cache memory for an access to the disk drive and the storage system; a processor that controls the storage system; a network that interconnects the host interface, the disk interface, the memory module, and the processor; and an encryption module that encrypts data read/written by the host computer, in which the processor reads data from an area of the disk drive from the memory module, decrypts the read data with a corresponding encryption key, encrypts the decrypted data with a different encryption key, and writes the encrypted data in a different area.
    • 一种存储系统,包括经由网络连接到主计算机的主机接口; 连接到磁盘驱动器的磁盘接口; 存储模块,其存储用于访问所述磁盘驱动器和所述存储系统的高速缓冲存储器的控制信息; 控制存储系统的处理器; 互连主机接口,磁盘接口,存储器模块和处理器的网络; 以及加密由主机计算机读取/写入的数据的加密模块,其中处理器从存储器模块从磁盘驱动器的区域读取数据,用相应的加密密钥解密读取的数据,用不同的密钥对解密的数据进行加密 加密密钥,并将加密数据写入不同的区域。
    • 5. 发明授权
    • Method for controlling electric power of computer system
    • 计算机系统电力控制方法
    • US08020016B2
    • 2011-09-13
    • US11857794
    • 2007-09-19
    • Keisuke HatasakiYoshifumi TakamotoAkira Fujibayashi
    • Keisuke HatasakiYoshifumi TakamotoAkira Fujibayashi
    • G06F1/16G06F1/32G06F11/30
    • G06F1/3215G06F1/3221G06F1/3228G06F1/329Y02D10/154Y02D10/24
    • To reduce the electric power consumption in a computer system having at least one server and at least one data processing apparatus, the data processing apparatus includes an electric power consumption state control module by which electric power consumption of the data processing apparatus can be changed, obtains a use relationship between each server and each processing apparatus included in the computer system, monitors a change in a state of the server, searches for a related data processing apparatus in the use relationship with the server, obtains a state of at least one related server in the use relationship with the related data processing apparatus, determines whether an electric power consumption state of the related data processing apparatus is to be changed or not based on the state of the related server, and changes the electric power consumption state of the related data processing apparatus.
    • 为了减少具有至少一个服务器和至少一个数据处理装置的计算机系统的电力消耗,数据处理装置包括能够改变数据处理装置的电力消耗的电力消耗状态控制模块,获得 每个服务器与包括在计算机系统中的每个处理装置之间的使用关系监视服务器状态的变化,在与服务器的使用关系中搜索相关数据处理装置,获得至少一个相关服务器的状态 在与相关数据处理装置的使用关系中,基于相关服务器的状态确定相关数据处理装置的电力消耗状态是否变化,并且改变相关数据的电力消耗状态 处理装置。
    • 7. 发明授权
    • Method and apparatus for increasing an amount of memory on demand when monitoring remote mirroring performance
    • 监控远程镜像性能时,增加需求量的内存量的方法和装置
    • US07917721B2
    • 2011-03-29
    • US12732416
    • 2010-03-26
    • Akira Fujibayashi
    • Akira Fujibayashi
    • G06F12/00
    • G06F3/0659G06F3/0613G06F3/065G06F3/0653G06F3/0656G06F3/067G06F11/2074G06F12/0866
    • A method and storage system for increasing an amount of memory in a queuing area on. The storage system includes first and second storage subsystems connected to each other via a path. A primary volume in the first storage subsystem and a remote secondary volume in the second storage subsystem are mirrored and operated in the asynchronous mode. A queuing area having memory is provided in the second storage subsystem for temporarily storing data transferred to the second storage subsystem from the first storage subsystem in response to a write input/output (I/O) issued by a host to write data in the primary volume. Data temporarily stored in the memory is retrieved and stored in the remote secondary volume. An unused area of the queuing area is monitored and the memory increased if the unused area becomes less than a predetermined amount.
    • 一种用于增加排队区域内存储量的方法和存储系统。 存储系统包括通过路径彼此连接的第一和第二存储子系统。 第一个存储子系统中的主卷和第二个存储子系统中的远程辅助卷被镜像并以异步模式运行。 具有存储器的排队区域被提供在第二存储子系统中,用于响应于由主机发出的写入数据写入主要数据的I / O来临时存储从第一存储子系统传送到第二存储子系统的数据 卷。 临时存储在存储器中的数据被检索并存储在远程辅助卷中。 监视排队区域的未使用区域,如果未使用区域小于预定量,则存储器增加。
    • 8. 发明授权
    • Highly reliable storage system and internal network thereof
    • 高度可靠的存储系统及其内部网络
    • US07877633B2
    • 2011-01-25
    • US12778389
    • 2010-05-12
    • Shuji NakamuraAkira FujibayashiMutsumi Hosoya
    • Shuji NakamuraAkira FujibayashiMutsumi Hosoya
    • G06F11/20
    • G06F11/2092G06F11/0727G06F11/0775G06F11/201
    • The disk controller has a plurality of channel control units, a plurality of cache memories, a plurality of disk control units, and a plurality of internal switch units. Each channel control unit or disk control unit sends to one of the cache memory units a request packet requesting execution of processing. The cache memory unit sends a response packet in response to the received request packet. Each internal switch unit monitors the request packet sent from the channel control unit or disk control unit, and judges whether or not the response packet to the request packet has passed through the internal switch unit within a first given time period since the passage of the request packet. In the case where the response packet has not passed through the internal switch unit within the first given time period, the internal switch unit sends a failure notification.
    • 盘控制器具有多个通道控制单元,多个高速缓冲存储器,多个盘控制单元和多个内部开关单元。 每个通道控制单元或盘控制单元向高速缓冲存储器单元之一发送请求执行处理的请求包。 高速缓冲存储器单元响应于接收到的请求分组发送响应分组。 每个内部交换单元监视从信道控制单元或磁盘控制单元发送的请求分组,并且在请求通过之后的第一给定时间段内判断对请求分组的响应分组是否已经通过内部交换单元 包。 在第一给定时间段内没有通过内部交换机单元的情况下,内部交换单元发送故障通知。
    • 10. 发明授权
    • Method and apparatus for seamless management for disaster recovery
    • 用于灾难恢复的无缝管理方法和装置
    • US07865768B2
    • 2011-01-04
    • US12652408
    • 2010-01-05
    • Akira Fujibayashi
    • Akira Fujibayashi
    • G06F11/00
    • G06F17/30581G06F11/008G06F11/20G06F11/2069G06F11/2094H04L1/22Y10S707/99953
    • A method, apparatus, article of manufacture, and system are presented for establishing redundant computer resources. According to one embodiment, in a system including a plurality of processor devices and a plurality of storage devices, the processor devices, the storage devices and the management server being connected via a network, the method comprises storing device information relating to the processor devices and the storage devices and topology information relating to topology of the network, identifying at least one primary computer resource, selecting at least one secondary computer resource suitable to serve as a redundant resource corresponding to the at least one primary computer resource based on the device information and the topology information, and assigning the at least one secondary computer resource as a redundant resource corresponding to the at least one primary computer resource.
    • 提出了一种建立冗余计算机资源的方法,装置,制造和系统。 根据一个实施例,在包括多个处理器设备和多个存储设备的系统中,经由网络连接的处理器设备,存储设备和管理服务器,所述方法包括存储与处理器设备有关的设备信息,以及 与所述网络的拓扑有关的存储设备和拓扑信息,识别至少一个主计算机资源,基于所述设备信息,选择适合于用作与所述至少一个主计算机资源相对应的冗余资源的至少一个辅助计算机资源;以及 所述拓扑信息,以及将所述至少一个辅助计算机资源分配为与所述至少一个主计算机资源相对应的冗余资源。