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    • 4. 发明授权
    • Media foundation topology
    • 媒体基础拓扑
    • US07774375B2
    • 2010-08-10
    • US10608868
    • 2003-06-27
    • Eric RudolphKirt DebiqueGeoffrey T. DunbarSohail Baig MohammedBrian D. CritesRobin C. B. SpeedMei L. Wilson
    • Eric RudolphKirt DebiqueGeoffrey T. DunbarSohail Baig MohammedBrian D. CritesRobin C. B. SpeedMei L. Wilson
    • G06F17/30
    • H04L65/604H04L29/06027
    • A multimedia processing system and methods provide flexibility and modularity by separating data flow information from maintaining of stream state for multimedia components. The system includes a media processor component to process received media data, a media session to determine a timeline for events to occur for performing media processing and a topology loader component to load a topology that describes a flow for the received media data to enable processing via an extensible symbolic abstraction of media objects. The topology loader ensures that events described in the topology occur. The system also includes core layer components such as media sink components to determine a media stream for output from the multimedia processing system and a media source component coupled to supply media data for processing. The topology created in the system symbolically provides data flow information, independent of maintaining a streaming state of control information.
    • 多媒体处理系统和方法通过将数据流信息与维持多媒体组件的流状态分开来提供灵活性和模块化。 该系统包括用于处理接收到的媒体数据的媒体处理器组件,用于确定用于执行媒体处理的事件的时间线的媒体会话,以及拓扑加载器组件来加载描述所接收的媒体数据的流的拓扑,以便能够经由 媒体对象的可扩展符号抽象。 拓扑加载器确保拓扑中描述的事件发生。 该系统还包括诸如媒体接收器组件的核心层组件,以确定用于从多媒体处理系统输出的媒体流和耦合到供应媒体数据进行处理的媒体源组件。 在系统中创建的拓扑符号地提供数据流信息,与维护控制信息的流状态无关。
    • 7. 发明授权
    • Demultiplexer application programming interface
    • 解复用器应用编程接口
    • US07882510B2
    • 2011-02-01
    • US10635730
    • 2003-08-06
    • Kirt DebiqueRobin C. B. SpeedC. Alan LudwigGeoffrey T. Dunbar
    • Kirt DebiqueRobin C. B. SpeedC. Alan LudwigGeoffrey T. Dunbar
    • G06F3/00G06F9/46G06F13/00
    • G06F9/54
    • A set of interfaces and data structures (i.e., a demultiplexer API) represents a demultiplexer of multimedia data. The data structure utilizes a number of fields, each containing an element of a command. In one embodiment, at least seven commands are formed for proper operation of the demultiplexer, including Initialize, SetPresentationDescriptor, GetPresentationDescriptor, GetPendingPresentationDescriptor, ProcessInput, ProcessOutput, and Flush commands. The demultiplexer API allows the consumer to use muxed stream data such as DV in a uniform manner to generate elementary stream data such as audio and video (compressed or uncompressed) and allows demultiplexers to be used as an independent component.
    • 一组接口和数据结构(即解复用器API)表示多媒体数据的解复用器。 数据结构使用多个字段,每个字段都包含命令的元素。 在一个实施例中,形成用于解复用器的正确操作的至少七个命令,包括Initialize,SetPresentationDescriptor,GetPresentationDescriptor,GetPendingPresentationDescriptor,ProcessInput,ProcessOutput和Flush命令。 解复用器API允许消费者以均匀的方式使用诸如DV的多路复用数据流数据来生成诸如音频和视频(压缩或未压缩)的基本流数据,并且允许解复用器被用作独立的组件。
    • 10. 发明授权
    • Resource manager architecture utilizing a policy manager
    • 资源管理器架构利用策略管理器
    • US07844972B2
    • 2010-11-30
    • US11276394
    • 2006-02-27
    • Jayachandran RajaJai SrinivasanMukund SankaranarayanDavid S. BakinSean C. McDowellRobin C. B. Speed
    • Jayachandran RajaJai SrinivasanMukund SankaranarayanDavid S. BakinSean C. McDowellRobin C. B. Speed
    • G06F9/46G06F15/173
    • G06F9/5027G06F2209/5021
    • Resource management architectures implemented in computer systems to manage resources are described. In one embodiment, a general architecture includes a resource manager and multiple resource providers that support one or more resource consumers such as a system component or application. Each provider is associated with a resource and acts as the manager for the resource when interfacing with the resource manager. The resource manager arbitrates access to the resources provided by the resource providers on behalf of the consumers. A policy manager sets various policies that are used by the resource manager to allocate resources. One policy is a priority-based policy that distinguishes among which applications and/or users have priority over others to use the resources. A resource consumer creates an “activity” at the resource manager and builds one or more “configurations” that describe various sets of preferred resources required to perform the activity. Each resource consumer can specify one or more configurations for each activity. If multiple configurations are specified, the resource consumer can rank them according to preference. This allows the resource consumers to be dynamically changed from one configuration to another as operating conditions change.
    • 描述了在计算机系统中实现的管理资源的资源管理架构。 在一个实施例中,一般架构包括资源管理器和支持一个或多个资源消费者(诸如系统组件或应用程序)的多个资源提供者。 当与资源管理器进行接口时,每个提供者都与资源相关联并充当该资源的管理器。 资源管理员代表消费者对资源提供者提供的资源的访问进行仲裁。 策略管理器设置资源管理器使用的各种策略来分配资源。 一个策略是一个基于优先级的策略,区分哪些应用程序和/或用户优先于其他应用程序和/或用户来使用资源。 资源消费者在资源管理器中创建“活动”,并构建一个或多个描述执行活动所需的各种首选资源集的“配置”。 每个资源消费者可以为每个活动指定一个或多个配置。 如果指定了多个配置,资源消费者可以根据喜好对其进行排名。 这允许在操作条件改变时资源消费者从一个配置动态地改变另一个配置。