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    • 5. 发明申请
    • File server and file management method
    • 文件服务器和文件管理方法
    • US20100199035A1
    • 2010-08-05
    • US12385537
    • 2009-04-10
    • Toshiaki MatsuoNobuo BeniyamaTakato Kusama
    • Toshiaki MatsuoNobuo BeniyamaTakato Kusama
    • G06F17/30
    • G06F3/0644G06F3/0625G06F3/0685H04N21/2312H04N21/2323H04N21/84H04N21/8456Y02D10/154
    • A file server achieving sufficient power-saving effect is provided. The file server is capable of operating an on-line storage medium (in a state in which reading/writing can be started immediately in response to a file read/write request) and an off-line storage medium (which has to be started up upon receiving a read/write request). Upon reception of a stream file write request, the file server's processing unit acquires bit rate information from the stream file, calculates the file's splitting position from the bit rate information and startup time of the off-line storage medium, and stores a first part (up to the splitting position) in the on-line storage medium while storing the remaining second part in the off-line storage medium. Upon reception of a stream file read request, the processing unit reads out the first part while starting up the off-line storage medium and reading out the second part.
    • 提供了一种实现充分省电效果的文件服务器。 文件服务器能够操作在线存储介质(在可以根据文件读/写请求立即开始读/写的状态)和离线存储介质(必须启动的情况下) 在收到读/写请求时)。 在接收到流文件写入请求时,文件服务器的处理单元从流文件获取比特率信息,从离线存储介质的比特率信息和启动时间计算文件的分离位置,并存储第一部分 直到分割位置),同时将剩余的第二部分存储在离线存储介质中。 在接收到流文件读取请求时,处理单元在启动离线存储介质并读出第二部分的同时读出第一部分。
    • 6. 发明授权
    • File server and file management method
    • 文件服务器和文件管理方法
    • US08108440B2
    • 2012-01-31
    • US12385537
    • 2009-04-10
    • Toshiaki MatsuoNobuo BeniyamaTakato Kusama
    • Toshiaki MatsuoNobuo BeniyamaTakato Kusama
    • G06F7/00
    • G06F3/0644G06F3/0625G06F3/0685H04N21/2312H04N21/2323H04N21/84H04N21/8456Y02D10/154
    • A file server achieving sufficient power-saving effect is provided. The file server is capable of operating an on-line storage medium (in a state in which reading/writing can be started immediately in response to a file read/write request) and an off-line storage medium (which has to be started up upon receiving a read/write request). Upon reception of a stream file write request, the file server's processing unit acquires bit rate information from the stream file, calculates the file's splitting position from the bit rate information and startup time of the off-line storage medium, and stores a first part (up to the splitting position) in the on-line storage medium while storing the remaining second part in the off-line storage medium. Upon reception of a stream file read request, the processing unit reads out the first part while starting up the off-line storage medium and reading out the second part.
    • 提供了一种实现充分省电效果的文件服务器。 文件服务器能够操作在线存储介质(在可以响应于文件读/写请求立即开始读/写的状态)和离线存储介质(必须启动的情况下) 在收到读/写请求时)。 在接收到流文件写入请求时,文件服务器的处理单元从流文件获取比特率信息,从离线存储介质的比特率信息和启动时间计算文件的分离位置,并存储第一部分 直到分割位置),同时将剩余的第二部分存储在离线存储介质中。 在接收到流文件读取请求时,处理单元在启动离线存储介质并读出第二部分的同时读出第一部分。
    • 10. 发明授权
    • Storage management system, storage hierarchy management method, and management server capable of rearranging storage units at appropriate time
    • 存储管理系统,存储层次管理方法和管理服务器,能够在适当的时间重新排列存储单元
    • US08396917B2
    • 2013-03-12
    • US12719818
    • 2010-03-08
    • Tomoaki KakedaTakato KusamaNobuo Beniyama
    • Tomoaki KakedaTakato KusamaNobuo Beniyama
    • G06F15/173
    • G06F3/0649G06F3/0604G06F3/061G06F3/0685
    • According to the present invention, it is possible to rearrange an arrangement unit on an appropriate storage device at a more appropriate timing in a complex computer system. A computer system according to the present invention includes a plurality of storage devices of different performance, and provides a virtual volume, the storage devices allocating a segment of the plurality of storage areas to an arrangement unit, which constitutes the target of a virtual volume, in accordance with the arrival of a write request from the business server, and managing, on the business server, an execution time and a predicted execution time of a job to be executed, and a time at which the storage area segment was allocated to the arrangement unit, inferring the relationship of the arrangement unit and the job from the job execution time and the time at which the storage area segment was allocated, and changing the storage area segment allocated to this arrangement unit to another storage area segment at a time decided based on the specified relationship and the predicted execution time.
    • 根据本发明,可以在复杂的计算机系统中以更合适的时机将布置单元重新布置在适当的存储设备上。 根据本发明的计算机系统包括具有不同性能的多个存储装置,并且提供虚拟卷,所述存储装置将所述多个存储区域的一部分分配给构成虚拟卷的目标的布置单元, 根据来自业务服务器的写入请求的到来,在业务服务器上管理要执行的作业的执行时间和预测执行时间,以及将存储区域段分配给 从作业执行时间和分配存储区域段的时间推断出排列单元与作业的关系,并将分配给该排列单元的存储区段划分为另一个存储区段 基于指定的关系和预计执行时间。