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    • 11. 发明申请
    • MANAGEMENT SERVER, MANAGEMENT METHOD, AND MANAGEMENT PROGRAM FOR VIRTUAL HARD DISK
    • 虚拟硬盘的管理服务器,管理方法和管理程序
    • US20120221611A1
    • 2012-08-30
    • US13390949
    • 2010-06-16
    • Kentaro WatanabeMineyoshi Masuda
    • Kentaro WatanabeMineyoshi Masuda
    • G06F17/30
    • G06F3/0644G06F3/0608G06F3/0643G06F3/0664G06F3/0671
    • A file system corresponding to virtual hard disk files is identified, and a file size of the virtual hard disk files after optimization is calculated from the size of the volume in use of the file system so that a volume size can be ensured by the optimization is calculated. Specifically, a management server performs the above-described processing, and has the following structure. The management server is connected to a physical server that is virtually composed of virtual servers including virtual had disks. The management server comprises a volume acquiring unit that acquires the volume in use of a first file system on the virtual hard disks; a file size acquiring unit that acquires the file size of virtual hard disk files corresponding to the first file system; and a calculating unit that calculates an optimized file size of the virtual hard disk files on the basis of a difference between the acquired volume in use and the file size.
    • 识别与虚拟硬盘文件相对应的文件系统,根据使用文件系统的卷的大小计算优化后的虚拟硬盘文件的文件大小,以便可以通过优化确保卷大小 计算。 具体而言,管理服务器进行上述处理,具有以下结构。 管理服务器连接到由虚拟服务器虚拟组成的物理服务器,包括虚拟磁盘。 管理服务器包括:体积获取单元,其在虚拟硬盘上获取使用第一文件系统的卷; 文件大小获取单元,其获取与所述第一文件系统相对应的虚拟硬盘文件的文件大小; 以及计算单元,其基于所获取的使用量和文件大小之间的差异来计算虚拟硬盘文件的优化文件大小。
    • 12. 发明授权
    • Method of searching for a file with a directory identified from a file path as a start point
    • 以从文件路径识别的目录为起点搜索文件的方法
    • US07831591B2
    • 2010-11-09
    • US12039445
    • 2008-02-28
    • Mineyoshi Masuda
    • Mineyoshi Masuda
    • G06F7/00G06F17/30
    • G06F17/30106
    • There is provided a file search method executed in a file search apparatus for searching for a file relevant to an application, the file search apparatus having an interface, a processor coupled to the interface, and a memory coupled to the processor. The file search method comprising the steps of: obtaining process information which includes an execution start time and file path of the application; identifying, from the obtained file path, a directory that serves as a start point in a search for a file relevant to the application; and searching, with the identified directory as the start point, for a file accessed after the execution start time of the application.
    • 提供了一种在文件搜索装置中执行的用于搜索与应用相关的文件的文件搜索方法,具有接口的文件搜索装置,耦合到该接口的处理器和耦合到该处理器的存储器。 所述文件搜索方法包括以下步骤:获取包括所述应用的执行开始时间和文件路径的处理信息; 从所获得的文件路径中识别用作搜索与应用相关的文件的起始点的目录; 并且将所识别的目录作为开始点,搜索在应用程序的执行开始时间之后访问的文件。
    • 13. 发明申请
    • Load distribution method and client-server system
    • 负载分配方式和客户端 - 服务器系统
    • US20050038890A1
    • 2005-02-17
    • US10782971
    • 2004-02-23
    • Mineyoshi MasudaToshiaki TaruiTatsuo Higuchi
    • Mineyoshi MasudaToshiaki TaruiTatsuo Higuchi
    • H04L29/06H04L29/08G06F15/16G06F15/173
    • H04L67/1008H04L29/06H04L67/1002H04L67/1023H04L2029/06054
    • A load distribution method is adopted by a client-server system comprising a plurality of clients 100 and a server cluster 1100, which includes a plurality of servers 800 each used for processing requests made by the clients 100 and allows the number of the servers 800 to be changed dynamically. Each of the clients 100 detects the number of servers 800 composing the server cluster 1100, sets an allocation of requests transmissible out to a newly added server 900 at a value small in comparison with that set for each of the other servers 800 right after detecting an increase in server count and then transmits out requests to the servers on the basis of the set allocation. It is thus possible to provide the clients 100 and the server-cluster system 1100 with the load distribution method suitable for a cluster reconfiguration technology for changing the number of servers composing the server-cluster system 1100 in accordance with an increase and a decrease in demand for a service.
    • 包括多个客户机100和服务器集群1100的客户端 - 服务器系统采用负载分配方法,其包括多个服务器800,每个服务器800用于处理由客户端100做出的请求,并且允许服务器800的数量 动态变化。 每个客户端100检测组成服务器集群1100的服务器800的数量,将传输的请求的分配设置为与在针对每个其他服务器800的检测到 增加服务器数量,然后根据设置的分配向服务器发出请求。 因此,可以向客户端100和服务器集群系统1100提供适合于集群重新配置技术的负载分配方法,用于根据需求的增加和减少来改变组成服务器集群系统1100的服务器的数量 为了服务。
    • 14. 发明申请
    • MONITORING COMPUTER AND METHOD
    • 监控计算机和方法
    • US20140317286A1
    • 2014-10-23
    • US14358745
    • 2011-12-15
    • Mineyoshi MasudaKiyomi Wada
    • Mineyoshi MasudaKiyomi Wada
    • G06F11/34
    • G06F11/34G06F11/3051G06F11/3055G06F11/328G06F11/3409G06F11/3452G06F11/3476
    • To achieve a balance between reduction of a disk capacity required to maintain measurement data and retention of necessary measurement data to analyze events. A monitoring computer stores measurement data about a monitoring target computer at a plurality of points in time in a storage device, specifies an event, which has occurred at the monitoring target computer, and event occurrence time based on the measurement data, and selects part of the measurement data at the plurality of points in time as a deletion target in consideration of the measurement data which should not be deleted, based on a capacity of the storage device or a predetermined retention period of the measurement data, and a deletion exception period calculated from the event occurrence time.
    • 实现减少维护测量数据所需的磁盘容量和保留必要的测量数据以分析事件之间的平衡。 监视计算机在存储装置中存储多个时间点上的关于监视目标计算机的测量数据,基于测量数据指定在监视目标计算机发生的事件和事件发生时间,并且选择部分 基于存储装置的容量或测量数据的预定保持期,考虑到不应该被删除的测量数据的多个时间点的测量数据作为删除目标,以及计算出的删除异常时段 从事件发生时间。
    • 15. 发明授权
    • Monitoring system and monitoring method
    • 监控系统及监控方式
    • US07890620B2
    • 2011-02-15
    • US11194614
    • 2005-08-02
    • Mineyoshi MasudaNorihiro KobayashiTomohiro Morimura
    • Mineyoshi MasudaNorihiro KobayashiTomohiro Morimura
    • G06F15/173G06F11/00H04L12/26
    • H04L43/12G06F11/3447G06F11/3495G06F2201/815G06F2201/86G06F2201/885H04L41/042H04L41/046
    • The monitoring technology capable of reducing total monitoring cost without degrading the monitoring capability in accordance with the configuration of the large-scale service system and quickly comprehending the state of the service system after the configuration change. A monitoring system in which information processing apparatuses constituting the service system are objects to be monitored has a monitoring manager program and a plurality of monitoring agent programs, and objects to be monitored having the same performance characteristics are sorted into the same groups. In each of the groups, parties where monitoring is carried out at a short monitoring interval and parties where the monitoring is carried out at a long monitoring interval are provided. The performance of objects to be monitored in the party of the long monitoring interval is estimated from the performance of the objects to be monitored in the party of the short monitoring interval.
    • 监控技术能够降低总体监控成本,而不会根据大型服务体系的配置降低监控能力,并在配置更改后快速了解业务系统的状态。 构成服务系统的信息处理装置是要被监视的对象的监视系统具有监视管理程序和多个监视代理程序,并且将具有相同性能特征的被监视对象分类为相同的组。 在每个组中,提供在短监视间隔进行监视的各方以及以较长监视间隔进行监视的各方。 在长监视间隔的一方中要监视的对象的性能根据短监视间隔的一方要监视的对象的性能进行估计。
    • 16. 发明申请
    • Monitoring system and monitoring method
    • 监控系统及监控方式
    • US20060277295A1
    • 2006-12-07
    • US11194614
    • 2005-08-02
    • Mineyoshi MasudaNorihiro KobayashiTomohiro Morimura
    • Mineyoshi MasudaNorihiro KobayashiTomohiro Morimura
    • G06F15/173
    • H04L43/12G06F11/3447G06F11/3495G06F2201/815G06F2201/86G06F2201/885H04L41/042H04L41/046
    • The monitoring technology capable of reducing total monitoring cost without degrading the monitoring capability in accordance with the configuration of the large-scale service system and quickly comprehending the state of the service system after the configuration change. A monitoring system in which information processing apparatuses constituting the service system are objects to be monitored has a monitoring manager program and a plurality of monitoring agent programs, and objects to be monitored having the same performance characteristics are sorted into the same groups. In each of the groups, parties where monitoring is carried out at a short monitoring interval and parties where the monitoring is carried out at a long monitoring interval are provided. The performance of objects to be monitored in the party of the long monitoring interval is estimated from the performance of the objects to be monitored in the party of the short monitoring interval.
    • 监控技术能够降低总体监控成本,而不会根据大型服务体系的配置降低监控能力,并在配置更改后快速了解业务系统的状态。 其中构成服务系统的信息处理装置是要被监视的对象的监视系统具有监视管理程序和多个监视代理程序,并且具有相同性能特征的被监视对象被分类到相同的组中。 在每个组中,提供在短监视间隔进行监视的各方以及以较长监视间隔进行监视的各方。 在长监视间隔的一方中要监视的对象的性能根据短监视间隔的一方要监视的对象的性能进行估计。