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    • 2. 发明授权
    • Storage capacity management system in dynamic area provisioning storage
    • 动态区域配置存储中的存储容量管理系统
    • US08296544B2
    • 2012-10-23
    • US12752343
    • 2010-04-01
    • Nobuo BeniyamaHiroshi NojimaAkihiko Sakaguchi
    • Nobuo BeniyamaHiroshi NojimaAkihiko Sakaguchi
    • G06F12/00
    • G06F3/0665G06F3/0608G06F3/0644G06F3/067
    • Provided is a capacity monitoring method used for a computer system including one or more application computers, one or more storage systems, and a management computer. The storage system includes a physical disk and a disk controller. In the capacity monitoring method, a storage area of the physical disk belongs to a storage pool, the storage system provides a volume, and the management computer monitors a used capacity of the storage pool, judges whether or not a storage capacity required for operating the application computer for a predetermined time period is present in the storage pool based upon an increasing speed of the used capacity of the storage pool to be monitored, and executes a predetermined process operation when the storage capacity required for operating the application computer for the predetermined time period is not present in the storage pool. Accordingly, the storage pool is properly operated and managed.
    • 提供了一种用于包括一个或多个应用计算机,一个或多个存储系统和管理计算机的计算机系统的容量监视方法。 存储系统包括物理磁盘和磁盘控制器。 在容量监视方法中,物理盘的存储区属于存储池,存储系统提供卷,管理计算机监视存储池的使用容量,判断操作所需的存储容量 基于要监视的存储池的使用容量的增加速度,存储池中存在预定时间段的应用计算机,并且当在预定时间内操作应用计算机所需的存储容量时执行预定的处理操作 期间不存在于存储池中。 因此,存储池被正确地操作和管理。
    • 5. 发明申请
    • STORAGE CAPACITY MANAGEMENT SYSTEM IN DYNAMIC AREA PROVISIONING STORAGE
    • 动态能力存储管理系统存储
    • US20100191906A1
    • 2010-07-29
    • US12752343
    • 2010-04-01
    • Nobuo BENIYAMAHiroshi NojimaAkihiko Sakaguchi
    • Nobuo BENIYAMAHiroshi NojimaAkihiko Sakaguchi
    • G06F12/00G06F12/02
    • G06F3/0665G06F3/0608G06F3/0644G06F3/067
    • Provided is a capacity monitoring method used for a computer system including one or more application computers, one or more storage systems, and a management computer. The storage system includes a physical disk and a disk controller. In the capacity monitoring method, a storage area of the physical disk belongs to a storage pool, the storage system provides a volume, and the management computer monitors a used capacity of the storage pool, judges whether or not a storage capacity required for operating the application computer for a predetermined time period is present in the storage pool based upon an increasing speed of the used capacity of the storage pool to be monitored, and executes a predetermined process operation when the storage capacity required for operating the application computer for the predetermined time period is not present in the storage pool. Accordingly, the storage pool is properly operated and managed.
    • 提供了一种用于包括一个或多个应用计算机,一个或多个存储系统和管理计算机的计算机系统的容量监视方法。 存储系统包括物理磁盘和磁盘控制器。 在容量监视方法中,物理盘的存储区属于存储池,存储系统提供卷,管理计算机监视存储池的使用容量,判断操作所需的存储容量 基于要监视的存储池的使用容量的增加速度,存储池中存在预定时间段的应用计算机,并且当在预定时间内操作应用计算机所需的存储容量时执行预定的处理操作 期间不存在于存储池中。 因此,存储池被正确地操作和管理。
    • 6. 发明授权
    • Inter-processor communication method using a shared cache memory in a storage system
    • 使用存储系统中的共享高速缓冲存储器的处理器间通信方法
    • US07500059B2
    • 2009-03-03
    • US11442116
    • 2006-05-30
    • Akihiko Sakaguchi
    • Akihiko Sakaguchi
    • G06F12/00
    • G06F12/0871G06F3/0601G06F12/084G06F2003/0691G06F2212/6012
    • When communications among a plurality of processors employed in a network storage system are required, any of the processors initiating a communication on the transmission side issues a request to an I/O processing apparatus, which is used for controlling a disk unit and a disk cache common to the processors, in order to allocate an area in the common disk cache as a communication buffer. At such a request, the I/O processing apparatus allocates a specific area in the common disk cache as a communication buffer and gives a notice of the allocation to the requesting processors on the transmission side. Receiving the notice, the transmission-side processors write data to be transferred into the specific area of the disk cache and, then, the reception-side processors fetch the transferred data from the specific area.
    • 当需要在网络存储系统中使用的多个处理器之间进行通信时,在发送侧发起通信的任何一个处理器向用于控制盘单元和盘缓存的I / O处理装置发出请求 为了将公共磁盘缓存中的区域分配为通信缓冲器,对于处理器是共同的。 在这种请求下,I / O处理装置将公共磁盘高速缓存中的特定区域分配为通信缓冲器,并向发送侧的请求处理器发出分配通知。 接收通知时,发送方处理器将要传送到磁盘高速缓存的特定区域的数据写入,然后接收侧处理器从特定区域取出传送的数据。
    • 9. 发明申请
    • File management method in a distributed storage system
    • 分布式存储系统中的文件管理方法
    • US20050027718A1
    • 2005-02-03
    • US10834866
    • 2004-04-30
    • Akihiko SakaguchiMasaaki Iwasaki
    • Akihiko SakaguchiMasaaki Iwasaki
    • G06F12/00G06F7/00G06F17/30
    • G06F17/30067Y10S707/99938Y10S707/99955
    • This invention enables a file to be accessed even during replication while maintaining its consistency. The replication is done among a plurality of distributed storage devices, a file is searched, in response to an access request from a client machine #11, from GUID management databases 13, 23 each of which stores a relationship between a GUID of a file stored in a storage device #0 (#1) and a device ID of a storage device containing an original file. When the storage device #1 does not have the demanded file, a device ID (#0) of a storage device containing its original file is searched from the GUID management database based on a GUID of the file C, and the file C demanded by this the storage device #0 is accessed.
    • 本发明使得即使在复制期间也可以访问文件,同时保持其一致性。 在多个分布式存储设备之间进行复制,响应于来自客户端机器#11的访问请求,从GUID管理数据库13,23搜索文件,每个GUID管理数据库存储存储的文件的GUID之间的关系 在存储装置#0(#1)和包含原始文件的存储装置的装置ID中。 当存储装置#1没有请求文件时,根据文件C的GUID和从文件C所要求的文件C,从GUID管理数据库中搜索包含其原始文件的存储装置的装置ID(#0) 这可以访问存储设备#0。