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    • 3. 发明申请
    • COMPUTER SYSTEM AND PERFORMANCE ASSURANCE METHOD
    • 计算机系统和性能保证方法
    • WO2012066597A1
    • 2012-05-24
    • PCT/JP2010/006753
    • 2010-11-18
    • HITACHI, LTD.HATASAKI, KeisukeKANEDA, Yasunori
    • HATASAKI, KeisukeKANEDA, Yasunori
    • G06F9/455
    • G06F9/455G06F2009/45579
    • Proposed are a computer system and a performance assurance method capable of stabilizing the I/O performance of a plurality of logical partitions sharing a network path. One or more sets of an application logical partition for executing processing according to a user's application and an I/O logical partition for controlling execution or wait of I/O processing of the application logical partition are built in a physical server, a network path that is shared by a plurality of application logical partitions and its maximum performance are detected, a share value of each application logical partition sharing the relevant network path is calculated based on the detected maximum performance of the network path and a pre-designated required performance of each application logical partition, a period of time for the corresponding application logical partition to execute or cause the I/O processing to wait, in a unit time, to each I/O logical partition is set based on the calculation result, and I/O logical partition controls the execution or wait of the I/O processing by the relevant logical partition so that the corresponding application logical partition executes or causes the I/O processing to wait in the set period of time.
    • 提出了能够稳定共享网络路径的多个逻辑分区的I / O性能的计算机系统和性能保证方法。 用于根据用户应用执行处理的一个或多个应用逻辑分区和用于控制应用逻辑分区的I / O处理的执行或等待的I / O逻辑分区被构建在物理服务器中,网络路径 由多个应用逻辑分区共享并检测其最大性能,基于检测到的网络路径的最大性能和预先指定的每个应用逻辑分区的所需性能来计算共享相关网络路径的每个应用逻辑分区的共享值 应用逻辑分区,相应应用程序逻辑分区执行或使I / O处理在单位时间内基于计算结果设置到每个I / O逻辑分区的一段时间,以及I / O 逻辑分区控制相关逻辑分区的执行或等待I / O处理,以使相应的应用逻辑分区ex 放行或使I / O处理在设定的时间段内等待。
    • 4. 发明申请
    • COMPUTER SYSTEM, AND METHOD FOR MANAGING RESOURCE POOL INFORMATION
    • 计算机系统和管理资源池信息的方法
    • WO2013069051A1
    • 2013-05-16
    • PCT/JP2011/006238
    • 2011-11-08
    • HITACHI, LTD.AMANO, TakashiNAGAMI, AkihisaKANEDA, YasunoriNAKAJIMA, Noriko
    • AMANO, TakashiNAGAMI, AkihisaKANEDA, YasunoriNAKAJIMA, Noriko
    • G06F9/44
    • G06F9/4416H04L29/12207H04L61/20H04L61/6045H04L67/1097
    • A computer system is provided that is capable of reducing an administrator's operational errors by connecting a new server to a SAN and automating a SAN boot setting, and capable of lightening the administrator's task of checking for a wrong connection by detecting a wrong connection made when a new server is connected to an SNW connection device. Once a new server connected to a PnP SAN starts with a boot program obtained from a boot management server, the new server transmits configuration information on the new server to a resource management server. In response to a request from the resource management server, a storage device refers to PnP SAN information to transmit SAN information on a storage network connection device to which the new server is connected. The resource management server determines to add the new server to a resource group on the basis of the SAN information and requirement information. The resource management server sets the storage device and the new server for SAN-booting the new server. (See figure 1)
    • 提供一种计算机系统,其能够通过将新服务器连接到SAN并自动执行SAN引导设置来减少管理员的操作错误,并且能够通过检测错误的连接来减轻管理员检查错误连接的任务 新服务器连接到SNW连接设备。 一旦连接到PnP SAN的新服务器从从引导管理服务器获取的引导程序开始,新服务器将新服务器上的配置信息传输到资源管理服务器。 响应于资源管理服务器的请求,存储设备参考PnP SAN信息,以在连接新服务器的存储网络连接设备上传输SAN信息。 资源管理服务器根据SAN信息和需求信息确定将新服务器添加到资源组。 资源管理服务器设置SAN的存储设备和新服务器,引导新的服务器。 (见图1)
    • 9. 发明申请
    • METHOD AND DEVICE FOR ELIMINATING PATCH DUPLICATION
    • 消除PATCH DUPLICATION的方法和装置
    • WO2012035575A1
    • 2012-03-22
    • PCT/JP2010/005594
    • 2010-09-14
    • HITACHI, LTD.AMANO, TakashiKANEDA, YasunoriTANAKA, ToruNAKAJIMA, Noriko
    • AMANO, TakashiKANEDA, YasunoriTANAKA, ToruNAKAJIMA, Noriko
    • G06F9/445G06F9/455
    • G06F9/45533G06F8/658
    • A first computer is provided that executes a plurality of virtual machines (VMs), a storage device, and a second computer is provided that applies patches to OSs (operating systems) operating upon the VMs to the VMs. The storage device holds storage regions (golden images (GIs)) that store data of the OSs operating upon the VMs at certain time instants, a storage region (i.e. a storage pool) that stores patches applied to the OSs of the VMs after those certain time instants, and snapshots of the GIs. Patches applied to the OSs of the VMs accessed in the snapshots are stored in the storage pool. The second computer selects, as a GI to be a source of acquisition of snapshots, a GI to which are applied patches of a combination that can be created from patches applied to the OS of some VM, and deletes patches that are patches applied to the selected GI, and that moreover, among the patches applied to that VM, are stored in the storage pool.
    • 提供了执行第一计算机,其执行多个虚拟机(VM),存储设备和第二计算机,其向所述VM提供对在VM上操作的OS(操作系统)的修补程序。 存储装置保存存储在特定时刻在VM上运行的OS的数据的存储区域(黄金图像(GI)),存储区域(即,存储池),其存储在那些确定之后应用于VM的OS的补丁 时间和地理标志的快照。 应用于快照中访问的VM的操作系统的修补程序将存储在存储池中。 第二台计算机将GI作为获取快照的源,选择可应用于某些VM的操作系统的补丁创建的组合的补丁,并删除应用于 选择的GI,并且此外,在应用于该VM的补丁之中,存储在存储池中。