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    • 1. 发明专利
    • Storage control device, storage control method and storage control program
    • 存储控制设备,存储控制方法和存储控制程序
    • JP2014067313A
    • 2014-04-17
    • JP2012213273
    • 2012-09-26
    • Fujitsu Ltd富士通株式会社
    • WATANABE TAKASHIDAIKOKUYA HIDEJIROIKEUCHI KAZUHIKOMAEDA CHIKASHIKUBOTA NORIHIDEITO JUNKOBAYASHI KENJITSUKAHARA RYOTA
    • G06F3/06
    • G06F11/2094G06F11/1092G06F2211/1059
    • PROBLEM TO BE SOLVED: To restore a storage group in which a failure has occurred in another storage during rebuild processing.SOLUTION: A storage system 100 is configured to, when the storage information of disks 111 to 114 after the creation of a snap shot is updated, start recording the storage position of the update object storage information in a tracking bit map 122. A storage control device 101 is configured to, when a disk 114 is turned into a first degeneration disk, restore the update object storage information of the disk 114 first in an HS 115 on the basis of the tracking bit map 122. The storage control device 101 is configured to, when the disk 113 is turned into the degeneration disk during the execution of normal rebuild processing, interrupt the normal rebuild processing. Then, the storage control device 101 is configured to restore the storage information of the disk 114 in the HS 115 on the basis of a backup volume 121 and the tracking bit map 122 as cooperative rebuild processing.
    • 要解决的问题:在重建处理期间恢复在另一个存储器中发生故障的存储组。解决方案:存储系统100被配置为当创建快照之后磁盘111到114的存储信息是 更新后,开始将更新对象存储信息的存储位置记录在跟踪位图122中。存储控制装置101被配置为当盘114变为第一退化盘时,恢复盘的更新对象存储信息 114根据跟踪位图122首先在HS 115中。存储控制装置101被配置为当在执行正常重建处理期间盘113变成退化盘时,中断正常重建处理。 然后,存储控制装置101被配置为基于备份卷121和跟踪位图122将HS 115中的盘114的存储信息恢复为协作重建处理。
    • 3. 发明专利
    • Storage system, storage controller and storage control method
    • 存储系统,存储控制器和存储控制方法
    • JP2013045118A
    • 2013-03-04
    • JP2011180125
    • 2011-08-22
    • Fujitsu Ltd富士通株式会社
    • IKEUCHI KAZUHIKODAIKOKUYA HIDEJIROWATANABE TAKASHIKUBOTA NORIHIDEITO JUNKOBAYASHI KENJITSUKAHARA RYOTA
    • G06F3/06G06F12/00
    • G06F11/2087G06F11/1092
    • PROBLEM TO BE SOLVED: To restore redundancy of data in a RAID group to which a storage device that has experienced failure belongs.SOLUTION: An RLU#1 is constituted by the respective storage areas of storage devices 21-24, and an RLM#2 is constituted by the respective storage areas of storage devices 25-28. An access control part 11 manages each of the RLUs#1, #2 so that data is made redundant by using parity and the parity is arranged by being dispersed to a plurality of storage devices. When the storage device 24 fails, a restoration control part 12 generates the data which is recorded in the failed storage device 24 among pieces of data of the RLU#1, and stores the generated data in a parity area in which the parity is recorded of the RLU#2.
    • 要解决的问题:恢复经历故障的存储设备所属的RAID组中的数据冗余。 解决方案:RLU#1由存储装置21-24的各个存储区域构成,并且RLM#2由存储装置25-28的相应存储区域构成。 访问控制部分11管理RLU#1,#2中的每一个,使得通过使用奇偶校验使数据冗余,并且通过分散到多个存储设备来布置奇偶校验。 当存储装置24发生故障时,恢复控制部分12在RLU#1的数据中生成记录在故障存储装置24中的数据,并将生成的数据存储在其中记录了奇偶校验的奇偶校验区域 RLU#2。 版权所有(C)2013,JPO&INPIT
    • 5. 发明专利
    • Layout method and apparatus for lsi arranging cell with timing priority
    • 用于具有时序优先权的LSI安排单元的布局方法和装置
    • JP2003044536A
    • 2003-02-14
    • JP2001228373
    • 2001-07-27
    • Fujitsu Ltd富士通株式会社
    • NAGASAKA MITSUAKIMIURA DAISUKEOKAMOTO MASAYUKIHONDA HIROYUKIARAKAWA TOSHIOYOSHIDA SHUJIYOSHIDA KENJIKOBAYASHI KENJI
    • G06F17/50H01L21/82
    • G06F17/5068
    • PROBLEM TO BE SOLVED: To provide a layout method and apparatus as much capable as possible of wiring automatically after a cell arrangement with timing priority.
      SOLUTION: In a layout method for LSI with a plurality of cells, cells are arranged automatically based on the net list including data on cells and their connections and on the timing conditions, and global wiring processing is performed to analyze a degree of complexity of wiring after an optimizing processing for timing to arrange a plurality of cells in a chip then within a small area in which determined it is hard to perform detailed wiring processing because of a high degree of complexity of wiring, and the detailed wiring processing is performed to the rearranged cells. Since the re-arrangement processing of cells is performed only in the small areas, it is possible to reduce in the degree of complexity while keeping the optimized status of timing of cells, so that it is reduced in possibility to cause a wiring impossibility due to the detailed wiring processing in the future.
      COPYRIGHT: (C)2003,JPO
    • 要解决的问题:提供一种在具有定时优先级的单元布置之后尽可能多地布线的布局方法和装置。 解决方案:在具有多个单元的LSI的布局方法中,基于包括关于单元及其连接的数据的网表自动布置单元,并且在定时条件下,执行全局布线处理以分析布线的复杂程度 在对芯片中的多个单元进行优化处理之后,在由于布线复杂度高而难以进行详细布线处理的小区域内进行详细布线处理, 重排细胞。 由于仅在小区域中进行单元的重新配置处理,所以可以在保持单元的定时优化状态的同时降低复杂度,从而可能导致由于 未来的详细布线处理。
    • 10. 发明专利
    • Storage apparatus, storage apparatus control program and storage apparatus control method
    • 存储设备,存储设备控制程序和存储设备控制方法
    • JP2011215682A
    • 2011-10-27
    • JP2010080272
    • 2010-03-31
    • Fujitsu Ltd富士通株式会社
    • KOBAYASHI KENJITAKAHASHI HIDEOKUBOTA NORIHIDEITO JUNDAIKOKUYA HIDEJIROIKEUCHI KAZUHIKOMAEDA CHIKASHI
    • G06F3/06G06F12/00G06F13/10
    • G06F11/1096
    • PROBLEM TO BE SOLVED: To restrain the increase of a load of a storage medium, and to reduce a time duration before completing the formatting, in access to the storage medium before logical formatting thereof is completed.SOLUTION: A management information storage unit 1c stores management information indicating whether or not the logical formatting is performed about a storage area of each storage medium 1b1-1b4. An access unit 1a writes an unformatting identifier into a stripe set in each storage medium 1b1-1b4 when formatting each storage medium 1b1-1b4, read existing data stored in a storage area constituting the stripe of a target of access when performing access of writing of new data to the storage area constituting the stripe, and writes the new data or format data into the storage area of the stripe of the target of the access when detecting the unformatting identifier from the read existing data.
    • 要解决的问题:为了限制存储介质的负载的增加,并且在完成格式化之前减少在完成格式化之前的持续时间,在其逻辑格式化完成之前访问存储介质。解决方案:管理信息存储单元1c存储 指示是否对每个存储介质1b1-1b4的存储区域执行逻辑格式化的管理信息。 访问单元1a在格式化每个存储介质1b1-1b4时将非格式化标识符写入每个存储介质1b1-1b4中的条带集中,读取存储在构成访问目标的条带的存储区域中的现有数据, 将新数据提供给构成条带的存储区域,并且当从所读取的现有数据检测到非格式化标识符时,将新数据或格式数据写入到访问目标条带的存储区域中。