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    • 101. 发明公开
    • A METHOD OF TRANSFERRING FRAGMENTATION MESSAGE, A SYSTEM OF COMMUNICATION AND A TUNNEL DEVICE
    • 一个消息的传输方法拆分系统中的通信设备和隧道
    • EP2088717A1
    • 2009-08-12
    • EP07800960.2
    • 2007-08-15
    • Huawei Technologies Co., Ltd.
    • JU, Liedan
    • H04L12/56
    • H04L29/1249H04L29/12509H04L29/12537H04L29/12924H04L47/10H04L61/2567H04L61/2578H04L61/6063H04L63/029H04L69/16H04L69/166H04L69/22H04L69/326
    • A method for transmitting fragmented packets, a communication system and tunnel equipment are disclosed herein to enable fragmented packets to traverse the NAT or firewall. The method includes: the first tunnel equipment receives an IP fragmented packet and converts it into a non-fragmented packet, and transmits the non-fragmented packet to the second tunnel equipment through a UDP tunnel. The system includes: a first tunnel equipment, a second tunnel equipment, and a UDP tunnel which connects the first tunnel equipment with the second tunnel equipment. The first funnel equipment is adapted to: receive an IP fragmented packet and convert it into a non-fragmented packet, and transmit the non-fragmented packet to the second tunnel equipment through a UDP tunnel. The second tunnel equipment is adapted to receive the packet from the first tunnel equipment. In addition, a tunnel equipment is disclosed herein. Through the present invention, fragmented packets can traverse the firewall.
    • 一种用于发送分段的数据包的方法,通信系统和隧道设备是盘在游离缺失,以使碎片包到穿越NAT或防火墙。 该方法包括:第一隧道设备接收IP分片包并将其转换成一个非片段分组,并通过一个UDP隧道传送非片段数据包发送到第二隧道设备。 该系统包括:第一隧道设备,第二隧道设备,并且其第一隧道设备与所述第二设备的隧道连接一UDP隧道。 第一漏斗设备是angepasst以:接收IP分片包,并将其转换成一个非片段分组,并通过一个UDP隧道传送所述非片段数据包发送到第二隧道设备。 第二隧道设备angepasst从第一隧道设备接收分组。 此外,隧道设备在盘游离缺失。 通过本发明,分段的数据包可穿越防火墙。
    • 104. 发明公开
    • THE METHOD, SYSTEM AND APPARATUS FOR TRANSFERRING SYSLOG MESSAGE
    • VERFAHREN,SYSTEM UNDGERÄTZURÜBERTRAGUNGEINER SYSLOG-NACHRICHT
    • EP1881668A4
    • 2008-08-06
    • EP06840586
    • 2006-12-19
    • HUAWEI TECH CO LTD
    • MIAO FUYOU
    • H04L29/06
    • H04L41/069H04L41/28H04L63/0428H04L63/104H04L69/03H04L69/326
    • A method, system and apparatus for transferring SYSLOG message, the method mainly includes: the sender for sending SYSLOG message sends the security transmission upgrade indication information to the receiver; after the receiver receives said security transmission indication information, the security transmission connection is established between the sender and the receiver on the current used transmission layer link, the SYSLOG message is transferred between the sender and the receiver using said security transmission connection. The system mainly includes: the message sender and the message receiver. The present invention enables SYSLOG message to switch freely between the security transmission and transfer layer transmission, saves the system resource, and provides the security protection for the sensitive information.
    • 一种传输SYSLOG消息的方法,系统及装置,所述方法主要包括:发送SYSLOG消息的发送方向接收方发送安全传输升级指示信息; 在接收方接收到所述安全传输指示信息后,在当前使用的传输层链路上的发送方和接收方之间建立安全传输连接,SYSLOG消息利用所述安全传输连接在发送方和接收方之间传输。 该系统主要包括:消息发送方和消息接收方。 本发明使SYSLOG消息能够在安全传输和传输层传输之间自由切换,节省系统资源,并为敏感信息提供安全保护。
    • 108. 发明公开
    • Method, server and computer readable medium, wherein an application server, part of a real time data provider, produces transactional messages and streamed messages
    • 提供方法,服务器和计算机可读介质,其特征在于,是一个实时数据提供者的事务消息与一个数据流消息的一部分的应用服务器
    • EP1628457A3
    • 2006-12-27
    • EP05255075.3
    • 2005-08-17
    • Wecomm Limited
    • Sturrock, OliverWentford, Timothy JohnRussell, Peter George Fisher
    • H04L29/08H04L1/16
    • H04L1/1607H04L69/16H04L69/162H04L69/165H04L69/18H04L69/326H04L69/327H04W28/06H04W76/10H04W80/06
    • An application server, part of real time data provider 101, produces transactional messages 2811,2812,2813 and 2814 and streamed messages 2815,2816,2817 and 2818. Process 1102 on real time data provider 101 sends these messages to a terminal such as PDA 511 in the form of datagrams. Transactional messages 2811 to 2814 are split and sent as part of datagram 2819,2820 and 2821. For example, datagram 2819 may consist of a part of message 2811, a part of message 2812 and a part of message 2814. Streamed messages 2815 to 2818 are not split. Thus datagram 2825 consists of the whole of messages 2815 and 2816. Datagram 2826 consists of message 2817. The whole of message 2818 cannot also fit into the datagram, and so it is sent even though it is not at the maximum size. Datagram 2827 contains message 2818. Thus transactional messages may be split over at least two datagrams, while streamed messages must be contained within a datagram.
      Another difference in the treatment of transactional and streamed data is the method of acknowledgement. Thus each of transactional datagrams 2819 to 2821 is individually acknowledged using acknowledgements 2822,2823 and 2824. However, streamed datagrams 2825 to 2827 may be acknowledged by PDA 511 using a single extended acknowledgement 2828, unless they are control datagrams that have a field such as SYN 1202, RESET 1208 or FINISH 1209 set, in which case they are individually acknowledged.
      Thus a first station, such as server 502, transmits packets of data or datagrams to a second station such as PDA 511, wherein each of said packets conveys information of either at least a first information type or a second information type thereby giving each an information type. Each packet is transmitted using at least a first transmission process or a second transmission process, and for each packet a transmission process is selected in response to an indication of the information type of the information conveyed by the data packet.