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    • 3. 发明申请
    • Auxiliary display system architecture
    • 辅助显示系统架构
    • US20050243021A1
    • 2005-11-03
    • US10838174
    • 2004-05-03
    • Juan PerezCurt SteebMatthew RhotenAndrew FullerChristopher SchoppaAdrian Chandley
    • Juan PerezCurt SteebMatthew RhotenAndrew FullerChristopher SchoppaAdrian Chandley
    • G06F3/14G09G5/00
    • G06F3/1438G06F1/1613G06F1/1632G06F1/165G06F9/451G09G5/001
    • Described is an architecture by which application programs can provide data to auxiliary display devices of essentially any type for display to a user. A defined application layer (e.g., accessed via interfaces) allows programs to provide data to a service that controls the output of data to an auxiliary display device, and returns navigational data to the application upon appropriate user interaction with the device via actuators. Enumeration allows applications to discover the capabilities of a device, while arbitration determines which application has input-output rights to the device. The architecture further provides a protocol layer including pluggable protocol proxies that allow various types of displays to serve as an auxiliary display. This platform-like model allows program developers the ability provide programs that leverage auxiliary displays when available, and provides display manufacturers the ability to provide displays with extensible capabilities.
    • 描述了应用程序可以向基本上任何类型的辅助显示设备提供数据以供显示给用户的架构。 定义的应用层(例如,经由接口访问)允许程序向控制向辅助显示设备输出数据的服务提供数据,并且通过经由致动器的适当的用户与设备交互来将导航数据返回给应用。 枚举允许应用程序发现设备的功能,而仲裁确定哪个应用程序具有设备的输入输出权限。 该架构还提供了一种协议层,包括可插拔协议代理,允许各种类型的显示器用作辅助显示器。 这种类似平台的模型允许程序开发人员提供可用时利用辅助显示器的程序,并为显示器制造商提供可扩展功能的显示器的能力。
    • 9. 发明申请
    • Computing device limiting mechanism
    • 计算设备限制机制
    • US20070136570A1
    • 2007-06-14
    • US11515410
    • 2006-08-31
    • Alexander FrankWilliam WesterinenCurt SteebZhangwei Xu
    • Alexander FrankWilliam WesterinenCurt SteebZhangwei Xu
    • G06F15/177G06F9/00
    • G06F21/575G06F21/572G06F2221/2105G06Q20/085G06Q30/0283G06Q30/0284
    • Described is a technology by which a computing device is booted into a normal mode of operation or a limited mode of operation, depending on whether the computing device was operating correctly (e.g., with respect to policy) prior to a reboot. The reboot may be forced. Examples of incorrect state include an overdue payment on a leased computer, or improper execution of certain important software. A metering mechanism evaluates the state of the computing device, and when an incorrect state is detected, configures the computing device for operation in the limited mode, by setting the computing device to boot via one boot path (e.g., a limited-mode BIOS) instead of another boot path (e.g., a normal-mode BIOS). A BIOS selector switches to the limited BIOS on the next reboot, wherein the computing device is restricted to the limited mode of operation (regardless of subsequent reboots) until the correct state is restored.
    • 描述了根据计算设备在重新启动之前是否正确地操作(例如,关于策略)是否将计算设备引导到正常操作模式或有限操作模式的技术。 重启可能会被强制。 错误状态的示例包括租用计算机上的逾期付款或某些重要软件的不当执行。 计量机构评估计算装置的状态,并且当检测到不正确的状态时,通过将计算装置通过一个引导路径(例如,限制模式BIOS)来设置计算装置来配置在限制模式中操作的计算装置, 而不是另一个引导路径(例如,普通模式BIOS)。 BIOS选择器在下一次重新启动时切换到有限的BIOS,其中计算设备被限制到有限的操作模式(不管后续重新启动),直到恢复正确的状态。