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    • 1. 发明授权
    • ICC-NCQ command scheduling for shingle-written magnetic recording (SMR) Drives
    • 用于瓦楞纸磁记录(SMR)驱动器的ICC-NCQ命令调度
    • US08874875B2
    • 2014-10-28
    • US13537293
    • 2012-06-29
    • Zvonimir Z. BandicCyril Guyot
    • Zvonimir Z. BandicCyril Guyot
    • G06F12/10G06F12/02
    • G06F12/0292G06F12/0253G06F12/08G06F12/0875G06F12/10G11B5/012
    • ICC-NCQ priority and deadline information in conjunction with an estimation of command access time that is specific to SMR drives are used improve command queue optimization. Estimated completion times are determined based on the internal subcommands that the drive has to execute to complete the host read or write command taking into account whether all or part of the data will be or already is stored in write-twice cache, E-region and/or I-region. The command processor selects the next command for execution based on calculated access times with adjusted priority based on the specified deadline for the command. As the deadline approaches, the priority of the command increases. For high priority data writes as specified by a host, an optimized storage plan is selected as appropriate using the “write-twice cache” (WTC) region, E-region or I-region.
    • 使用ICC-NCQ优先级和截止日期信息以及特定于SMR驱动器的命令访问时间的估计来改进命令队列优化。 估计的完成时间是基于驱动器执行的内部子命令来确定的,以完成主机读或写命令,考虑到全部或部分数据是否已经存储在二次写入高速缓存,E区和 /或I区域。 命令处理器根据计划的访问次数,根据指定的最终期限,选择下一个执行命令,并以调整的优先级。 随着截止日期的到来,命令的优先级增加。 对于由主机指定的高优先级数据写入,使用“两倍写入高速缓存”(WTC)区域,E区域或I区域,适当地选择优化的存储方案。
    • 7. 发明申请
    • Trustworthy timestamps on data storage devices
    • 数据存储设备上值得信赖的时间戳
    • US20120110343A1
    • 2012-05-03
    • US12925807
    • 2010-10-29
    • Zvonimir Z. BandicCyril GuyotTimothy Kohchih Tsai
    • Zvonimir Z. BandicCyril GuyotTimothy Kohchih Tsai
    • G06F12/14
    • G06F21/80G06F2221/2101G06F2221/2151H04L9/0894H04L9/3242H04L9/3297
    • Secure timestamps created by a data storage device are described. Metadata timestamp is created for each recorded unit of data (such as a sector) The HDD performs the time-stamping in a secure manner. The timestamp is made secure by performing a secure operation (i.e. one that can only be performed by the HDD) using the data and timestamp. The secure operation uses a secure key that is built-in to the storage device and is not readable outside of the device. In some embodiments the secure operation is encryption using the secure key. In other embodiments the secure operation is a hash code function (such as a Hash-based Message Authentication Code (HMAC) function) that uses the secure key to generate a hash code using at least the recorded data and the timestamp as input. The hash code is then included in the metadata that is recorded for the data unit.
    • 描述由数据存储设备创建的安全时间戳。 为每个记录的数据单元(例如扇区)创建元数据时间戳。HDD以安全的方式执行时间戳。 通过使用数据和时间戳执行安全操作(即只能由HDD执行的)来使时间戳变得安全。 安全操作使用存储设备内置的安全密钥,并且不能在设备外部读取。 在一些实施例中,安全操作是使用安全密钥的加密。 在其他实施例中,安全操作是使用安全密钥使用至少所记录的数据和时间戳作为输入来生成散列码的散列码功能(例如基于哈希的消息认证码(HMAC)功能))。 然后将哈希码包括在为数据单元记录的元数据中。