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    • 2. 发明申请
    • Apparatus and method for dynamically binding binary code and virtual forwarding component of network processor
    • 动态绑定二进制码和网络处理器的虚拟转发组件的装置和方法
    • US20070130309A1
    • 2007-06-07
    • US11503599
    • 2006-08-14
    • Hyun YunKyeong DooKwang SongBong Kim
    • Hyun YunKyeong DooKwang SongBong Kim
    • G06F15/173
    • H04L12/66
    • The present apparatus classifies the network system into a forwarding plane and a control plane, arranges a service combination controller at the control plane, arranges a service connection agent at the forwarding plane, and defines an application program and a binary code of a network processor as a component for each service. Therefore, if a new service addition request occurs in the system, the service combination controller transmits a service addition message to the service connection agent of the forwarding plane, and the service connection agent performs a binding process between the pre-defined functional component and the binary code of a network processor. If a new service request associated with a device including a specific network service occurs, only the new service function is added to a common platform, such that the resultant system can be made commercially available, resulting in reduction of a product development time.
    • 本装置将网络系统分为转发平面和控制平面,在控制平面上配置业务组合控制器,在转发平面上安排业务连接代理,并将网络处理器的应用程序和二进制码定义为 每个服务的组件。 因此,如果在系统中发生新的服务添加请求,则服务组合控制器向转发平面的服务连接代理发送服务添加消息,并且服务连接代理在预定义的功能组件和 网络处理器的二进制码。 如果发生与包括特定网络服务的设备相关联的新的服务请求,则仅将新的服务功能添加到公共平台,使得所得到的系统可以被商业化,从而减少产品开发时间。
    • 4. 发明申请
    • Apparatus and method for performing packet scheduling using adaptation round robin
    • 使用自适应轮询进行分组调度的装置和方法
    • US20070133561A1
    • 2007-06-14
    • US11633740
    • 2006-12-05
    • Hong NamKwang SongBong Kim
    • Hong NamKwang SongBong Kim
    • H04L12/56
    • H04L47/621H04L47/50H04L47/527H04L47/6225H04L49/254
    • A packet scheduling apparatus and method using an adaptation round-robin method is disclosed. In order to schedule services of a plurality of flows over a high-speed communication network in which the flows share a single link, the packet scheduling method includes the steps of: a) receiving various-sized packets, and storing the received packets while being classified according to flows on the basis of packet flow information of individual packets; b) if a flow to be serviced is transitioned from an idle mode to an active mode, adding an identifier (ID) of the corresponding flow to the tail of an active flow list; c) if the corresponding flow's, ID is located at the top of the active flow list, providing a head packet of the corresponding flow; d) increasing a service count by a predetermined number corresponding to the size of the serviced packet, and establishing a maximum service count; e) providing the next packet in consideration of the service count of the service flow and a next-packet size; and f) if the service count of the corresponding flow and the next-packet size are higher than the maximum service count, providing the next flow. Therefore, service fairness and low latency are implemented.
    • 公开了一种使用自适应循环方法的分组调度装置和方法。 为了通过流共享单个链路的高速通信网络调度多个流的业务,该分组调度方法包括以下步骤:a)接收各种大小的分组,并在接收到的分组的同时存储 根据单个包的包流信息,根据流分类; b)如果要服务的流程从空闲模式转换到活动模式,则将相应流的标识符(ID)添加到活动流列表的尾部; c)如果对应流的ID位于活动流列表的顶部,则提供相应流的头包; d)将服务计数增加与服务分组的大小对应的预定数量,并建立最大服务计数; e)考虑服务流的服务计数和下一个分组大小来提供下一个分组; 以及f)如果相应的流量和下一个分组大小的服务计数高于最大服务计数,则提供下一个流程。 因此,实现了服务公平性和低延迟。