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    • 2. 发明申请
    • STORAGE SYSTEM AND ITS CONTROL METHOD
    • 存储系统及其控制方法
    • US20110191554A1
    • 2011-08-04
    • US12665285
    • 2009-07-17
    • Kosuke SakaiKoji NagataYoshiyuki Noborikawa
    • Kosuke SakaiKoji NagataYoshiyuki Noborikawa
    • G06F12/16
    • G06F3/065G06F3/0613G06F3/0689
    • Proposed are a highly reliable storage system and its control method capable of accelerating the processing speed of the copy processing seen from the host device.With the storage system and its control method which stores a command issued from a host device in a command queue and executes the command stored in the command queue in the order that the command was stored in command queue, a copy queue is set for temporarily retaining a copy command among the commands issued from the host device in the memory, the copy command among the commands is moved from the host device stored in the command queue to the copy queue and an execution completion reply of copy processing according to the command is sent to the host device as a sender of the command, and the copy command that was moved to the copy queue is executed in the background in the order that the copy command was stored in the copy queue.
    • 提出了一种高可靠性的存储系统及其控制方法,能够加速从主机设备看到的复制处理的处理速度。 使用存储系统及其控制方法,其存储从主机设备在命令队列中发出的命令,并以命令存储在命令队列中的顺序执行存储在命令队列中的命令,设置复制队列以暂时保留 在存储器中从主机设备发出的命令中的复制命令之间,命令中的复制命令从存储在命令队列中的主机设备移动到复制队列,并且发送根据该命令的复制处理的执行完成答复 作为命令的发送者到主机设备,并且移动到复制队列的复制命令在后台按照拷贝命令存储在复制队列中的顺序被执行。
    • 3. 发明授权
    • Storage system and a control method for accelerating the speed of copy processing
    • 存储系统和加快复印处理速度的控制方法
    • US08352681B2
    • 2013-01-08
    • US12665285
    • 2009-07-17
    • Kosuke SakaiKoji NagataYoshiyuki Noborikawa
    • Kosuke SakaiKoji NagataYoshiyuki Noborikawa
    • G06F13/00
    • G06F3/065G06F3/0613G06F3/0689
    • Proposed are a highly reliable storage system and its control method capable of accelerating the processing speed of the copy processing seen from the host device.With the storage system and its control method which stores a command issued from a host device in a command queue and executes the command stored in the command queue in the order that the command was stored in command queue, a copy queue is set for temporarily retaining a copy command among the commands issued from the host device in the memory, the copy command among the commands is moved from the host device stored in the command queue to the copy queue and an execution completion reply of copy processing according to the command is sent to the host device as a sender of the command, and the copy command that was moved to the copy queue is executed in the background in the order that the copy command was stored in the copy queue.
    • 提出了一种高可靠性的存储系统及其控制方法,能够加速从主机设备看到的复制处理的处理速度。 使用存储系统及其控制方法,其存储从主机设备在命令队列中发出的命令,并以命令存储在命令队列中的顺序执行存储在命令队列中的命令,设置复制队列以暂时保留 在存储器中从主机设备发出的命令中的复制命令之间,命令中的复制命令从存储在命令队列中的主机设备移动到复制队列,并且发送根据该命令的复制处理的执行完成答复 作为命令的发送者到主机设备,并且移动到复制队列的复制命令在后台按照拷贝命令存储在复制队列中的顺序被执行。
    • 6. 发明授权
    • Storage system and data control method therefor
    • 存储系统及其数据控制方法
    • US08886869B2
    • 2014-11-11
    • US13059000
    • 2011-02-02
    • Yoshiyuki NoborikawaShigeo Homma
    • Yoshiyuki NoborikawaShigeo Homma
    • G06F12/00G06F3/06G06F11/14
    • G06F12/0246G06F3/0616G06F3/0652G06F3/0688G06F11/1448G06F2212/7202
    • A package controller of a flash package, upon receiving an update data write request with respect to a first logical storage area corresponding to a first LU that is treated as a backup target, manages a first physical storage area as a backup storage area in a state where pre-update data is maintained, newly allocates a second physical storage area to the first logical storage area, and writes the update data to the second physical storage area. The package controller, upon receiving an update data write request with respect to a second logical storage area corresponding to a second LU that is treated as a non-backup target, manages a third physical storage area allocated to the second logical storage area as an invalid storage area, and writes the update data to a fourth physical storage area newly allocated to the second logical storage area. The package controller performs control so as to use the first physical storage area to provide backup data for the first LU, and delete pre-update data stored in the third physical storage area.
    • 闪存包的包控制器在接收到对应于被视为备份目标的第一LU的第一逻辑存储区域的更新数据写入请求时,将第一物理存储区域管理为状态的备份存储区域 在维护预更新数据的情况下,向第一逻辑存储区域新分配第二物理存储区域,并将更新数据写入到第二物理存储区域。 包控制器在接收到对应于作为非备份目标的第二LU的第二逻辑存储区域的更新数据写入请求时,将分配给第二逻辑存储区域的第三物理存储区域管理为无效 存储区域,并将更新数据写入新分配给第二逻辑存储区域的第四物理存储区域。 包控制器执行控制以便使用第一物理存储区域来提供用于第一LU的备份数据,并且删除存储在第三物理存储区域中的更新前数据。
    • 7. 发明申请
    • STORAGE SYSTEM AND DATA CONTROL METHOD THEREFOR
    • 存储系统及其数据控制方法
    • US20120198130A1
    • 2012-08-02
    • US13059000
    • 2011-02-02
    • Yoshiyuki NoborikawaShigeo Homma
    • Yoshiyuki NoborikawaShigeo Homma
    • G06F12/16
    • G06F12/0246G06F3/0616G06F3/0652G06F3/0688G06F11/1448G06F2212/7202
    • A package controller of a flash package, upon receiving an update data write request with respect to a first logical storage area corresponding to a first LU that is treated as a backup target, manages a first physical storage area as a backup storage area in a state where pre-update data is maintained, newly allocates a second physical storage area to the first logical storage area, and writes the update data to the second physical storage area. The package controller, upon receiving an update data write request with respect to a second logical storage area corresponding to a second LU that is treated as a non-backup target, manages a third physical storage area allocated to the second logical storage area as an invalid storage area, and writes the update data to a fourth physical storage area newly allocated to the second logical storage area. The package controller performs control so as to use the first physical storage area to provide backup data for the first LU, and delete pre-update data stored in the third physical storage area.
    • 闪存包的包控制器在接收到对应于被视为备份目标的第一LU的第一逻辑存储区域的更新数据写入请求时,将第一物理存储区域管理为状态的备份存储区域 在维护预更新数据的情况下,向第一逻辑存储区域新分配第二物理存储区域,并将更新数据写入到第二物理存储区域。 包控制器在接收到对应于作为非备份目标的第二LU的第二逻辑存储区域的更新数据写入请求时,将分配给第二逻辑存储区域的第三物理存储区域管理为无效 存储区域,并将更新数据写入新分配给第二逻辑存储区域的第四物理存储区域。 包控制器执行控制以便使用第一物理存储区域来提供用于第一LU的备份数据,并且删除存储在第三物理存储区域中的更新前数据。
    • 9. 发明申请
    • STORAGE SYSTEM COMPRISING NONVOLATILE SEMICONDUCTOR STORAGE DEVICE, AND STORAGE CONTROL METHOD
    • 包含非易失性半导体存储器件的存储系统和存储控制方法
    • US20130246686A1
    • 2013-09-19
    • US13502434
    • 2012-03-19
    • Yoshiyuki NoborikawaYoshihiro Oikawa
    • Yoshiyuki NoborikawaYoshihiro Oikawa
    • G06F12/02
    • G06F3/0604G06F3/0632G06F3/0688
    • A higher-level system of a nonvolatile semiconductor storage device (hereinafter, semiconductor device) displays a GUI (Graphical User Interface), which receives a parameter group (one or more parameters) for controlling the processing of the semiconductor device. The higher-level system stores at least one of the parameters of the parameter group inputted to the GUI, and sends a command comprising the parameter group to the semiconductor device. The semiconductor device stores at least one of the parameters of the parameter group included in this command. The higher-level system and the semiconductor device each execute processing in accordance with the stored parameter. The semiconductor device sends, to the higher-level system, information of a log related to the processing executed in accordance with the stored parameter. The higher-level system displays feedback information on the basis of multiple times of logs. A user can change a desired parameter on the basis of this feedback information.
    • 非易失性半导体存储装置(以下称为半导体装置)的高级系统显示GUI(图形用户界面),其接收用于控制半导体装置的处理的参数组(一个或多个参数)。 上级系统存储输入到GUI的参数组的参数中的至少一个,并将包括参数组的命令发送到半导体器件。 半导体装置存储包括在该命令中的参数组的参数中的至少一个。 上级系统和半导体装置各自根据存储的参数进行处理。 半导体装置向上级系统发送与根据所存储的参数执行的处理有关的日志的信息。 上级系统根据多次日志显示反馈信息。 用户可以基于该反馈信息来改变期望的参数。