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    • 1. 发明申请
    • A METHOD AND DEVICE TO PERFORM EVENT THRESHOLDING IN A FIRMWARE ENVIRONMENT UTILIZING A SCALABLE SLIDING TIME WINDOW
    • 一种利用可扩展的滑动时间窗口在固定环境中执行事件阈值的方法和装置
    • WO2014138354A1
    • 2014-09-12
    • PCT/US2014/021072
    • 2014-03-06
    • INSYDE SOFTWARE CORP.EDRICH, David
    • EDRICH, David
    • G06F9/06G06F11/30
    • G06F11/0793G06F11/0706
    • A scalable method of determining in a firmware environment if the rate of occurrence of a detectable specified type of system event that occurs to a system component or discrete functional unit, has met a criteria with respect to a pre-selected threshold. When the meeting of the threshold criteria is detected, a previously defined action associated with the threshold criteria for the particular event can be invoked by the firmware. Embodiments may establish a sliding time window that includes a currently detected type of system event and extends back a set duration in the past. Any occurrences of the specified event taking place earlier than the established time window may be discarded while occurrences of the events during the specified time window are added together with the newly detected event and compared to a threshold value to see if the threshold criteria has been met.
    • 在固件环境中确定发生到系统组件或离散功能单元的可检测的指定类型的系统事件的发生率是否已经达到关于预选阈值的标准的可扩展方法。 当检测到阈值标准的会议时,可以由固件调用与特定事件的阈值标准相关联的先前定义的动作。 实施例可以建立滑动时间窗口,其包括当前检测到的类型的系统事件并且延伸过去的设定持续时间。 在规定的时间窗口之前发生的事件的发生与新检测到的事件一起被添加在一起,并且与阈值进行比较以查看是否已经达到了阈值标准 。
    • 4. 发明申请
    • METHOD AND DEVICE FOR ADVANCED CONFIGURATION AND POWER INTERFACE (ACPI) SLEEP STATE SUPPORT USING CPU-ONLY RESET
    • 使用仅CPU复位的高级配置和功率接口(ACPI)休眠状态支持的方法和设备
    • WO2014066478A1
    • 2014-05-01
    • PCT/US2013/066334
    • 2013-10-23
    • INSYDE SOFTWARE CORP.LEWIS, Timothy, A.
    • LEWIS, Timothy, A.
    • G06F9/24
    • G06F1/3246G06F1/32G06F9/4418Y02D50/20
    • A mechanism for firmware to gain control from the operating system of an Advanced Configuration and Power Interface (ACPI)-compliant computing device during sleep-state transitions even if the computing device lacks a dedicated means for such a change to occur is discussed. Embodiments of the present invention report a CPU-only reset register in place of a sleep control register for an ACPI-compliant computing device in which an operating system is attempting a sleep-state transition. A CPU reset value is substituted for a sleep type value in a sleep-state object and written to the CPU-only reset register that was reported instead of the sleep control register thereby triggering a CPU-only reset. Firmware code operating at a known CPU reset vector may perform specified processing and then authorize a transition to the originally requested sleep-state.
    • 讨论了固件在休眠状态转换期间从高级配置和电源接口(ACPI)兼容的计算设备的操作系统获得控制的机制,即使计​​算设备缺少用于发生这种改变的专用装置。 本发明的实施例报告CPU仅重置寄存器,代替用于符合ACPI的计算设备的睡眠控制寄存器,其中操作系统正在尝试睡眠状态转换。 CPU复位值代替睡眠状态对象中的睡眠类型值,并将其写入仅报告的CPU专用复位寄存器,而不是休眠控制寄存器,从而触发仅CPU复位。 在已知的CPU复位向量操作的固件代码可以执行指定的处理,然后授权转换到最初请求的休眠状态。
    • 6. 发明申请
    • SECURE OPTION ROM CONTROL
    • 安全选项ROM控制
    • WO2013059782A1
    • 2013-04-25
    • PCT/US2012/061301
    • 2012-10-22
    • INSYDE SOFTWARE CORP.WESTERN, TrevorBOBZIN, Jeffery, Jay
    • WESTERN, TrevorBOBZIN, Jeffery, Jay
    • G06F21/22G06F9/22G06F11/32
    • G06F21/57
    • A mechanism for controlling the execution of Option ROM code on a Unified Extensible Firmware Interface (UEFI)-compliant computing device is discussed. A security policy enforced by the firmware may be configured by the computing platform designer/IT administrator to take different actions for different types of detected expansion cards or other devices due to the security characteristics of Option ROM drivers associated with the expansion card or device. The security policy may specify whether authorized signed UEFI Option ROM drivers, unauthorized but signed UEFI Option ROM drivers, unsigned UEFI Option ROM drivers and legacy Option ROM drivers are allowed to execute on the UEFI-compliant computing device.
    • 讨论了在统一的可扩展固件接口(UEFI)兼容计算设备上控制Option ROM代码执行的机制。 由固件执行的安全策略可由计算平台设计人员/ IT管理员配置,以对不同类型的检测到的扩展卡或其他设备采取不同的操作,这是由于与扩展卡或设备相关的Option ROM驱动程序的安全特性。 安全策略可以指定是否允许授权签名的UEFI选件ROM驱动程序,未经授权但签名的UEFI选件ROM驱动程序,未签名的UEFI选件ROM驱动程序和传统Option ROM驱动程序在符合UEFI的计算设备上执行。