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    • 3. 发明授权
    • Integrating energy budgets for power management
    • 整合电力管理的能源预算
    • US08433931B2
    • 2013-04-30
    • US12465362
    • 2009-05-13
    • David BurgNathan Steven ObrVladimir Sadovsky
    • David BurgNathan Steven ObrVladimir Sadovsky
    • G06F1/26
    • G06F1/26G06F1/3206G06F1/3215G06F1/3287
    • Power consumption of a device (e.g., flash storage driver, hard drive, etc.) connected to a host computer system is managed to promote efficient power usage and improved service. Communication between a host computer system (e.g., an operating system) and a device is enabled so that the host system can ascertain a power footprint of the device. Taking the power footprint of the device into consideration, along with the power consumption of the system as a whole (e.g., including the power consumption needs of other devices), a power manager can provide a power budget to the device based upon an informed decision. This allows for improved system power management through a coordination of the device's power consumption by the host system, specifically during operation allowing device performance to be enhanced for the task at hand.
    • 连接到主计算机系统的设备(例如,闪存驱动器,硬盘驱动器等)的功耗被管理以促进有效的电力使用和改进的服务。 启动主计算机系统(例如,操作系统)与设备之间的通信,使得主机系统能够确定设备的功率足迹。 考虑到设备的功率消耗以及整个系统的功耗(例如,包括其他设备的功耗需求),功率管理器可以基于知情决策向设备提供功率预算 。 这允许通过主机系统协调设备的功率消耗来改进系统功率管理,特别是在操作期间,允许为手头的任务增强设备性能。
    • 4. 发明申请
    • INTEGRATING ENERGY BUDGETS FOR POWER MANAGEMENT
    • 整合能源管理能源预算
    • US20100292854A1
    • 2010-11-18
    • US12465362
    • 2009-05-13
    • David BurgNathan Steven ObrVladimir Sadovsky
    • David BurgNathan Steven ObrVladimir Sadovsky
    • G06F1/28
    • G06F1/26G06F1/3206G06F1/3215G06F1/3287
    • Power consumption of a device (e.g., flash storage driver, hard drive, etc.) connected to a host computer system is managed to promote efficient power usage and improved service. Communication between a host computer system (e.g., an operating system) and a device is enabled so that the host system can ascertain a power footprint of the device. Taking the power footprint of the device into consideration, along with the power consumption of the system as a whole (e.g., including the power consumption needs of other devices), a power manager can provide a power budget to the device based upon an informed decision. This allows for improved system power management through a coordination of the device's power consumption by the host system, specifically during operation allowing device performance to be enhanced for the task at hand.
    • 连接到主计算机系统的设备(例如,闪存驱动器,硬盘驱动器等)的功耗被管理以促进有效的电力使用和改进的服务。 启动主计算机系统(例如,操作系统)与设备之间的通信,使得主机系统能够确定设备的功率足迹。 考虑到设备的功率消耗以及整个系统的功耗(例如,包括其他设备的功耗需求),功率管理器可以基于知情决策向设备提供功率预算 。 这允许通过主机系统协调设备的功率消耗来改进系统功率管理,特别是在操作期间,允许为手头的任务增强设备性能。
    • 5. 发明申请
    • Sessions for Direct Attached Storage Devices
    • 直接连接存储设备的会话
    • US20110289282A1
    • 2011-11-24
    • US12833140
    • 2010-07-09
    • Nathan Steven ObrVladimir Sadovsky
    • Nathan Steven ObrVladimir Sadovsky
    • G06F12/00
    • G06F9/4411
    • A mechanism and a storage device are provided for registering a component of a computing device, with a user-removably attached storage device and managing sessions between the component and the storage device. The storage device may record time information regarding a beginning and an ending of an activity session with the component. The storage device may determine whether at least a logical block address range of a storage device medium, registered by the component, may have been modified by a different component, since a last session with the component. When the storage device indicates to the component that at least the logical block address range of the medium has not been modified since the last session, the component may trust contents of the medium. The computing device may provide time information to the storage device, such that the storage device may determine whether management operations are to be performed.
    • 提供了一种机构和存储设备,用于将计算设备的组件与用户可移除地连接的存储设备进行注册,并在组件和存储设备之间管理会话。 存储设备可以记录关于与组件的活动会话的开始和结束的时间信息。 存储设备可以确定由组件注册的存储设备介质的至少一个逻辑块地址范围是否可能被不同的组件修改。 当存储装置向组件指示至少自上次会话以来媒体的逻辑块地址范围未被修改时,组件可以信任媒体的内容。 计算设备可以向存储设备提供时间信息,使得存储设备可以确定是否要执行管理操作。
    • 6. 发明授权
    • Reporting of intra-device failure data
    • 报告设备内故障数据
    • US08990634B2
    • 2015-03-24
    • US12939056
    • 2010-11-03
    • Vladimir SadovskyVincent Orgovan, Jr.Nathan Steven ObrScott Chao-Chueh Lee
    • Vladimir SadovskyVincent Orgovan, Jr.Nathan Steven ObrScott Chao-Chueh Lee
    • G06F11/00G06F11/07
    • G06F11/0778G06F11/0748
    • Methods and a computing device are disclosed. A computing device may include a managed device having embedded firmware. When a failure occurs with respect to the managed device, drivers within the computing device may collect failure data from a driver stack of the computing device and from the managed device. The computing device may send the collected failure data to one or more second computing devices to be stored and analyzed. The computing device may include a health monitor for periodically collecting telemetry data from the computing device and the managed device. When the health monitor becomes aware of conditions indicative of a possible impending failure, the health monitor may trigger collection of sickness telemetry data from the computing device and the managed device. Collected data from the managed device may be made available to a vendor of the managed device.
    • 公开了方法和计算设备。 计算设备可以包括具有嵌入式固件的被管理设备。 当相对于受管设备发生故障时,计算设备内的驱动器可以从计算设备的驱动器堆栈和被管理设备收集故障数据。 计算设备可以将收集的故障数据发送到要存储和分析的一个或多个第二计算设备。 计算设备可以包括用于周期性地从计算设备和被管理设备收集遥测数据的健康监视器。 当健康监视器意识到可能即将发生故障的状况时,健康监视器可以触发从计算设备和被管理设备收集疾病遥测数据。 被管理设备的收集的数据可以被管理设备的供应商使用。
    • 7. 发明申请
    • Reporting of Intra-Device Failure Data
    • 报告设备内部故障数据
    • US20120110344A1
    • 2012-05-03
    • US12939056
    • 2010-11-03
    • Vladimir SadovskyVincent Orgovan, JR.Nathan Steven ObrScott Chao-Chueh Lee
    • Vladimir SadovskyVincent Orgovan, JR.Nathan Steven ObrScott Chao-Chueh Lee
    • G06F11/07G06F21/24
    • G06F11/0778G06F11/0748
    • Methods and a computing device are disclosed. A computing device may include a managed device having embedded firmware. When a failure occurs with respect to the managed device, drivers within the computing device may collect failure data from a driver stack of the computing device and from the managed device. The computing device may send the collected failure data to one or more second computing devices to be stored and analyzed. The computing device may include a health monitor for periodically collecting telemetry data from the computing device and the managed device. When the health monitor becomes aware of conditions indicative of a possible impending failure, the health monitor may trigger collection of sickness telemetry data from the computing device and the managed device. Collected data from the managed device may be made available to a vendor of the managed device.
    • 公开了方法和计算设备。 计算设备可以包括具有嵌入式固件的被管理设备。 当相对于受管设备发生故障时,计算设备内的驱动器可以从计算设备的驱动器堆栈和被管理设备收集故障数据。 计算设备可以将收集的故障数据发送到要存储和分析的一个或多个第二计算设备。 计算设备可以包括用于周期性地从计算设备和被管理设备收集遥测数据的健康监视器。 当健康监视器意识到可能即将发生故障的状况时,健康监视器可以触发从计算设备和被管理设备收集疾病遥测数据。 被管理设备的收集的数据可以被管理设备的供应商使用。
    • 9. 发明授权
    • Data integrity units in nonvolatile memory
    • 非易失性存储器中的数据完整性单元
    • US08566689B2
    • 2013-10-22
    • US12603593
    • 2009-10-22
    • Shiv K. RajpalVladimir SadovskyRobin A. Alexander
    • Shiv K. RajpalVladimir SadovskyRobin A. Alexander
    • G06F11/10
    • G06F11/0751G06F11/073G06F11/1004
    • An integrity unit can be calculated from a first data unit, and a first storage device can be requested to store the first data unit. A second storage device, which can be separate from and/or a different type of device from the first storage device, can be requested to store metadata, which includes the integrity unit, in nonvolatile memory. Also, a second data unit can be received from the first storage device in response to a request for the first data unit. The integrity unit can be received from the second storage device, and the second data unit and the integrity unit can be analyzed to determine whether the second data unit matches the first data unit. Alternatively, a first integrity unit can be stored in a metadata region of a nonvolatile memory block, where the block also stores the data from which the first integrity unit was calculated.
    • 可以从第一数据单元计算完整性单元,并且可以请求第一存储设备来存储第一数据单元。 可以请求可以与第一存储设备分开的和/或不同类型的设备的第二存储设备将包括完整性单元的元数据存储在非易失性存储器中。 此外,响应于对第一数据单元的请求,可以从第一存储设备接收第二数据单元。 可以从第二存储装置接收完整性单元,并且可以分析第二数据单元和完整性单元,以确定第二数据单元是否与第一数据单元匹配。 或者,第一完整性单元可以存储在非易失性存储器块的元数据区域中,其中块还存储计算第一完整性单元的数据。