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    • 41. 发明申请
    • PERSONAL COMPUTER SYSTEM FOR MOBILE TERMINAL USER AND OPERATION METHOD THEREOF
    • 用于移动终端用户的个人计算机系统及其操作方法
    • WO2012023790A2
    • 2012-02-23
    • PCT/KR2011006023
    • 2011-08-17
    • HONG WOON SIG
    • HONG WOON SIG
    • G06F1/32G06F13/14G06F15/16
    • H04L12/5695G06F9/5011H04L47/70H04M1/72525
    • A personal computer system for a mobile terminal user and an operation method thereof are provided. The personal computer system includes multiple main boards on which at least one software is run, multiple storage devices that are each configured to store at least one software to be used by a mobile terminal user allocated to the storage device, and a relay board system configured to select one main board in standby mode from among the multiple main boards and connect the selected main board to one storage device that is allocated to a mobile terminal user among the multiple storage devices in response to an access request from the mobile terminal user to run software, and to disconnect the selected main board to the storage device allocated to the mobile terminal user in response to a request for termination of use of the selected main board from the mobile terminal user.
    • 提供了一种用于移动终端用户的个人计算机系统及其操作方法。 个人计算机系统包括在其上运行至少一个软件的多个主板,多个存储设备,每个存储设备被配置为存储要由分配给存储设备的移动终端用户使用的至少一个软件;以及配置为 从多个主板中选择待机模式中的一个主板,并响应于来自移动终端用户运行的访问请求将所选择的主板连接到多个存储设备中分配给移动终端用户的一个存储设备 软件,并且响应于从移动终端用户终止使用所选择的主板的请求,将所选择的主板断开到分配给移动终端用户的存储设备。
    • 43. 发明申请
    • METHOD, SYSTEM, AND APPARATUS FOR PROCESSING VIDEO AND/OR GRAPHICS DATA USING MULTIPLE PROCESSORS WITHOUT LOSING STATE INFORMATION
    • 使用多个处理器处理视频和/或图形数据的方法,系统和设备,而不会丢失状态信息
    • WO2011109613A3
    • 2011-11-17
    • PCT/US2011027019
    • 2011-03-03
    • ATI TECHNOLOGIES ULCBLINZER PAUL
    • BLINZER PAUL
    • G06F9/48G06F1/32G06F9/50G06T15/00G09G5/36
    • G06F9/5011G06F1/3203G06F2209/507G06T1/20G09G5/363G09G2330/021G09G2360/06
    • Method, system, and apparatus provides for the processing of video and/or graphics data using a combination of first graphics processing circuitry and second graphics processing circuitry without losing state information while transferring the processing between the first and second graphics processing circuitry. The video and/or graphics data to be processed may be, for example, supplied by an application running on a processor such as host processor. In one example, an apparatus includes at least one GPU that includes a plurality of single instruction multiple data (SEVID) execution units. The GPU is operative to execute a native function code module. The apparatus also includes at least a second GPU that includes a plurality of SEVID execution units having a same programming model as the plurality of SEVID execution units on the first GPU. Furthermore, the first and second GPUs are operative to execute the same native function code module. The native code function module causes the first GPU to provide state information for the at least second GPU in response to a notification from a first processor, such as a host processor, that a transition from a current operational mode to a desired operational mode is desired (e.g., one GPU is stopped and the other GPU is started). The second GPU is operative to obtain the state information provided by the first GPU and use the state information via the same native function code module to continue processing where the first GPU left off. The first processor is operatively coupled to the at least first and at least second GPUs.
    • 方法,系统和装置使用第一图形处理电路和第二图形处理电路的组合来处理视频和/或图形数据,而不会在第一和第二图形处理电路之间转移处理时丢失状态信息。 要处理的视频和/或图形数据可以例如由在诸如主机处理器的处理器上运行的应用程序提供。 在一个示例中,装置包括至少一个GPU,其包括多个单指令多数据(SEVID)执行单元。 GPU可操作来执行本地功能代码模块。 该装置还包括至少第二GPU,其包括具有与第一GPU上的多个SEVID执行单元相同的编程模型的多个SEVID执行单元。 此外,第一和第二GPU可操作以执行相同的本机功能代码模块。 本地代码功能模块使得第一GPU响应于来自诸如主机处理器的第一处理器的通知而提供至少第二GPU的状态信息,期望从当前操作模式转换到期望的操作模式 (例如,一个GPU停止,另一个GPU启动)。 第二GPU可操作以获得由第一GPU提供的状态信息,并通过相同的本地功能代码模块使用状态信息来继续处理第一GPU离开的处理。 第一处理器可操作地耦合到至少第一和至少第二GPU。
    • 44. 发明申请
    • METHOD, SYSTEM, AND APPARATUS FOR PROCESSING VIDEO AND/OR GRAPHICS DATA USING MULTIPLE PROCESSORS WITHOUT LOSING STATE INFORMATION
    • 使用多个处理器而不丢失状态信息处理视频和/或图形数据的方法,系统和设备
    • WO2011109613A2
    • 2011-09-09
    • PCT/US2011/027019
    • 2011-03-03
    • ATI TECHNOLOGIES ULCBLINZER, Paul
    • BLINZER, Paul
    • G06F9/48
    • G06F9/5011G06F1/3203G06F2209/507G06T1/20G09G5/363G09G2330/021G09G2360/06
    • Method, system, and apparatus provides for the processing of video and/or graphics data using a combination of first graphics processing circuitry and second graphics processing circuitry without losing state information while transferring the processing between the first and second graphics processing circuitry. The video and/or graphics data to be processed may be, for example, supplied by an application running on a processor such as host processor. In one example, an apparatus includes at least one GPU that includes a plurality of single instruction multiple data (SEVID) execution units. The GPU is operative to execute a native function code module. The apparatus also includes at least a second GPU that includes a plurality of SEVID execution units having a same programming model as the plurality of SEVID execution units on the first GPU. Furthermore, the first and second GPUs are operative to execute the same native function code module. The native code function module causes the first GPU to provide state information for the at least second GPU in response to a notification from a first processor, such as a host processor, that a transition from a current operational mode to a desired operational mode is desired (e.g., one GPU is stopped and the other GPU is started). The second GPU is operative to obtain the state information provided by the first GPU and use the state information via the same native function code module to continue processing where the first GPU left off. The first processor is operatively coupled to the at least first and at least second GPUs.
    • 方法,系统和设备使用第一图形处理电路和第二图形处理电路的组合来提供对视频和/或图形数据的处理,而不丢失状态信息,同时在第一和第二图形处理电路之间传送处理 第二图形处理电路。 待处理的视频和/或图形数据可以例如由运行在诸如主机处理器之类的处理器上的应用来提供。 在一个示例中,装置包括至少一个GPU,其包括多个单指令多数据(SEVID)执行单元。 GPU可操作来执行本地功能代码模块。 该装置还包括至少第二GPU,其包括具有与第一GPU上的多个SEVID执行单元相同的编程模型的多个SEVID执行单元。 此外,第一和第二GPU可操作来执行相同的本地功能代码模块。 响应于来自诸如主机处理器的第一处理器的通知,本机代码功能模块使得第一GPU为至少第二GPU提供状态信息,即期望从当前操作模式到期望操作模式的转变 (例如,一个GPU停止,另一个GPU启动)。 第二GPU可操作以获得由第一GPU提供的状态信息并且经由相同的本地功能代码模块使用状态信息来继续处理第一GPU停止的地方。 第一处理器可操作地耦合到至少第一和至少第二GPU。
    • 50. 发明申请
    • METHOD AND APPARATUS FOR DYNAMIC PROVISIONING IN DATA PROCESSING ENVIRONMENT
    • 数据处理环境中动态提供的方法和装置
    • WO2009132272A2
    • 2009-10-29
    • PCT/US2009/041665
    • 2009-04-24
    • INTERNATIONAL BUSINESS MACHINES CORPORATIONKARVE, Alexei, ArunMOHINDRA, AjayRENDAHL, Randy, AllanSEGAL, Alla
    • KARVE, Alexei, ArunMOHINDRA, AjayRENDAHL, Randy, AllanSEGAL, Alla
    • G06F9/00
    • G06F9/5011
    • Techniques are disclosed for the dynamic introduction of new components to be used during provisioning of solutions in data processing system environments such as service delivery environments. For example, in a provisioning system that manages provisioning of components in a data processing system, an automated method of dynamically provisioning one or more new components in the data processing system comprises the provisioning system performing the following steps. The provisioning system accepts a registration of a new component during a runtime period of the data processing system, wherein the new component has not been previously registered in the data processing system prior to the runtime period, and further wherein the registration comprises obtaining information relating to at least one of one or more prerequisites and a configuration associated with the new component. The provisioning system causes a modification to the data processing system by enabling use of the registered new component therein.
    • 公开了用于在诸如服务递送环境的数据处理系统环境中提供解决方案期间要使用的新组件的动态引入的技术。 例如,在管理数据处理系统中的组件供应的供应系统中,在数据处理系统中动态地配置一个或多个新组件的自动化方法包括供应系统执行以下步骤。 所述供应系统在所述数据处理系统的运行时段期间接受新组件的注册,其中所述新组件在所述运行时间段之前尚未先前在所述数据处理系统中注册,并且其中所述注册包括获得与 一个或多个先决条件和与新组件关联的配置中的至少一个。 配置系统通过使能其中登记的新组件来对数据处理系统进行修改。