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    • 92. 发明授权
    • Fast display initialization and light up
    • 快速显示初始化并点亮
    • US07705842B2
    • 2010-04-27
    • US11330955
    • 2006-01-11
    • Ruston PanabakerCenk ErganJack Creasey
    • Ruston PanabakerCenk ErganJack Creasey
    • G06F3/038G06F1/26G09G5/00
    • G09G3/2092G06F1/3218G09G3/3406G09G2320/08G09G2330/022G09G2330/026
    • Described is a technology by which a computer display may quickly resume outputting video data following its awakening from a deep sleep state. Displayed settings are maintained in a memory, such as a memory of the display, while the display is in a sleep state. The settings are associated with a token maintained by a host computer system and display. Upon a need to awaken the display to output video data, the host computer system and the display communicate the token, whereby the display may confirm whether maintained settings are still valid for actual use with the host's video signals. If still valid, the display restores the maintained display settings as actual display settings. The restoring of previously maintained display settings is ordinarily significantly faster than conventional mechanisms that are presently used to configure a display upon wakeup, resulting in the user perceiving a near-instantaneous wakeup of a display.
    • 描述了一种技术,通过该技术,计算机显示器可以在从深睡眠状态唤醒之后快速恢复输出视频数据。 当显示器处于睡眠状态时,显示的设置保持在存储器中,例如显示器的存储器。 这些设置与主计算机系统维护的令牌和显示相关联。 当需要唤醒显示器以输出视频数据时,主计算机系统和显示器传送令牌,由此显示器可以确认维护的设置是否仍然对主机的视频信号的实际使用是有效的。 如果仍然有效,则显示屏将维护的显示设置恢复为实际显示设置。 以前保持的显示设置的恢复通常明显快于在唤醒时目前用于配置显示器的常规机制,导致用户感知到显示器的近瞬时唤醒。
    • 93. 发明申请
    • MANAGING CACHE DATA AND METADATA
    • 管理缓存数据和元数据
    • US20100070747A1
    • 2010-03-18
    • US12271400
    • 2008-11-14
    • Mehmet IyigunYevgeniy BakMichael FortinDavid FieldsCenk ErganAlexander Kirshenbaum
    • Mehmet IyigunYevgeniy BakMichael FortinDavid FieldsCenk ErganAlexander Kirshenbaum
    • G06F17/30G06F9/00
    • G06F12/0866G06F12/0804G06F12/0862G06F12/0871G06F12/14G06F2212/1016G06F2212/1032G06F2212/1052G06F2212/2022G06F2212/222G06F2212/466
    • Embodiments of the invention provide techniques for managing cache metadata providing a mapping between addresses on a storage medium (e.g., disk storage) and corresponding addresses on a cache device at data items are stored. In some embodiments, cache metadata may be stored in a hierarchical data structure comprising a plurality of hierarchy levels. Only a subset of the plurality of hierarchy levels may be loaded to memory, thereby reducing the memory “footprint” of cache metadata and expediting the process of restoring the cache metadata during startup operations. Startup may be further expedited by using cache metadata to perform operations associated with reboot. Thereafter, as requests to read data items on the storage medium are processed using cache metadata to identify addresses at which the data items are stored in cache, the identified addresses may be stored in memory. When the computer is later shut down, instead of having to transfer the entirety of the cache metadata from memory to storage, only the subset of the plurality of hierarchy levels and/or the identified addresses previously loaded to memory may be transferred (e.g., to the cache device), thereby expediting the shutdown of the computer.
    • 本发明的实施例提供了用于管理提供存储介质(例如,磁盘存储)上的地址之间的映射以及数据项上的高速缓存设备上的相应地址的缓存元数据的技术。 在一些实施例中,高速缓存元数据可以存储在包括多个层次级别的分层数据结构中。 可以仅将多个层次级别的子集加载到存储器,从而减少高速缓存元数据的存储器“占用空间”,并且加快在启动操作期间恢复高速缓存元数据的过程。 通过使用缓存元数据来执行与重新启动相关的操作,可以进一步加快启动。 此后,当使用高速缓存元数据来处理读取存储介质上的数据项的请求时,识别数据项被存储在高速缓存中的地址,所识别的地址可被存储在存储器中。 当计算机稍后关闭时,不是必须将整个高速缓存元数据从存储器传送到存储器,所以只有先前加载到存储器的多个层次级别和/或已识别的地址的子集可以被传送(例如, 缓存设备),从而加速计算机的关闭。
    • 94. 发明申请
    • CROSS-PLATFORM COMPATIBILITY FRAMEWORK FOR COMPUTER APPLICATIONS
    • 用于计算机应用的交叉平台兼容性框架
    • US20090235284A1
    • 2009-09-17
    • US12048626
    • 2008-03-14
    • Justin SteventonYuqing LiErik V. DayNikhil BhatiaCenk ErganUdayasimha ShivaswamyErik Kochhar
    • Justin SteventonYuqing LiErik V. DayNikhil BhatiaCenk ErganUdayasimha ShivaswamyErik Kochhar
    • G06F9/44
    • G06F8/65G06F9/44505G06F9/4486
    • A computer with a platform that reduces cross-platform compatibility issues associated with executable computer components. A context for a component to be executed on a computer is detected. The context may be detected by searching metadata associated with the component and locating the context therein. If the context is not found in the metadata, then a context may be inferred in other ways, such as from a subsystem major/minor version. Execution of the component invokes one or more components of a computer operating system that provides a platform for executing operations that support execution of the component. Branch components present in the platform are used to select behaviors for the operations based at least in part on the detected context of the component. By providing a context-based selection from any of multiple targeted behaviors for an operation performed by the platform, cross-platform compatibility is improved.
    • 具有减少与可执行计算机组件相关的跨平台兼容性问题的平台的计算机。 检测要在计算机上执行的组件的上下文。 可以通过搜索与组件相关联的元数据并在其中定位上下文来检测上下文。 如果在元数据中找不到上下文,则可以以其他方式推断上下文,例如从子系统主要/次要版本。 组件的执行调用计算机操作系统的一个或多个组件,该组件提供用于执行支持组件执行的操作的平台。 存在于平台中的分支组件用于至少部分地基于检测到的组件的上下文来选择用于操作的行为。 通过从由平台执行的操作的多个目标行为中提供基于上下文的选择,提高了跨平台兼容性。