WO2014094285A1 - 点到点业务处理的方法及设备 - Google Patents

点到点业务处理的方法及设备 Download PDF

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Publication number
WO2014094285A1
WO2014094285A1 PCT/CN2012/087099 CN2012087099W WO2014094285A1 WO 2014094285 A1 WO2014094285 A1 WO 2014094285A1 CN 2012087099 W CN2012087099 W CN 2012087099W WO 2014094285 A1 WO2014094285 A1 WO 2014094285A1
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WO
WIPO (PCT)
Prior art keywords
point
information
processing
service
service packet
Prior art date
Application number
PCT/CN2012/087099
Other languages
English (en)
French (fr)
Inventor
段海峰
Original Assignee
华为技术有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 华为技术有限公司 filed Critical 华为技术有限公司
Priority to CN201280002490.8A priority Critical patent/CN103229484B/zh
Priority to RU2015129523A priority patent/RU2630182C2/ru
Priority to PCT/CN2012/087099 priority patent/WO2014094285A1/zh
Priority to EP12890316.8A priority patent/EP2938023B1/en
Publication of WO2014094285A1 publication Critical patent/WO2014094285A1/zh

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L12/00Data switching networks
    • H04L12/28Data switching networks characterised by path configuration, e.g. LAN [Local Area Networks] or WAN [Wide Area Networks]
    • H04L12/46Interconnection of networks
    • H04L12/4633Interconnection of networks using encapsulation techniques, e.g. tunneling
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L12/00Data switching networks
    • H04L12/02Details
    • H04L12/14Charging, metering or billing arrangements for data wireline or wireless communications
    • H04L12/1453Methods or systems for payment or settlement of the charges for data transmission involving significant interaction with the data transmission network
    • H04L12/1471Methods or systems for payment or settlement of the charges for data transmission involving significant interaction with the data transmission network splitting of costs
    • H04L12/1478Methods or systems for payment or settlement of the charges for data transmission involving significant interaction with the data transmission network splitting of costs the splitting involving only the communication parties
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L12/00Data switching networks
    • H04L12/28Data switching networks characterised by path configuration, e.g. LAN [Local Area Networks] or WAN [Wide Area Networks]
    • H04L12/46Interconnection of networks
    • H04L12/4641Virtual LANs, VLANs, e.g. virtual private networks [VPN]

Definitions

  • the present invention relates to the field of communications and, more particularly, to point-to-point service processing techniques. Background technique
  • GPRS General Packet Radio Service
  • GGSN Gateway GPRS Support Node
  • A sends a message to B, which can only control A (including access control, bandwidth control, etc.) and billing (including traffic billing, duration billing, or pay-per-view billing, etc.).
  • A sends a message to B, which can only control A (including access control, bandwidth control, etc.) and billing (including traffic billing, duration billing, or pay-per-view billing, etc.).
  • the NAS device of the current network is not flexible enough for the user control processing or charging processing of the point-to-point service.
  • the embodiments of the present invention provide a point-to-point service processing method, a network side communication network, a NAS device, and a point-to-point service bidirectional processing device, which improves flexibility in performing control processing or charging processing on a point-to-point service user. degree.
  • the first aspect provides a point-to-point service processing method, including: the network side communication network receives the service packet, and determines the service according to the address in the terminal address pool according to the source end and the opposite end address of the service packet.
  • the ⁇ 3 ⁇ 4 text is a point-to-point service text;
  • the network side communication network identifies information of the transmission location of the point-to-point service message, and according to the information of the transmission location, the source end and the point-to-point service packet are One or all of the peer ends perform control processing or charging processing, where the information of the transmission location includes physical port information, virtual local area network information, or tunnel information for transmitting the point-to-point service text.
  • the network side communication network includes a network access server NAS device and a bidirectional processing device; the network side communication network receives the service packet, and the source end and the opposite end address of the service packet are both Determining, by the address in the terminal address pool, the service message is a point-to-point service packet, including: the NAS device receiving the service packet, according to the source end of the service packet The address of the peer end is the address in the terminal address pool, and the service text is determined to be a point-to-point service.
  • the network side communication network identifies the information of the transmission location of the point-to-point service text, and according to the information of the transmission location,
  • the point-to-point service packet performs control processing or charging processing on one or all of the source end and the peer end, and the method includes: the NAS device identifies the information of the transmission location as the first location information, and determines the point-to-point service.
  • the packet is sent from the terminal side, and the point-to-point service packet is forwarded to the bidirectional processing device.
  • the bidirectional processing device receives the point-to-point service packet forwarded by the NAS device, and identifies the information of the transmission location as the second location information.
  • the NAS device receives the point-to-point service packet forwarded by the two-way processing device, and identifies that the information of the transmission location is the third location information, and determines that the source device is already Performing control processing or billing processing, forwarding the point-to-point service to the two-way processing device again; the two-way processing device receives the point-to-point service forwarded by the NAS device, identifying the transmission location
  • the information is the fourth location information, and the point-to-point service packet is determined to enter the two-way processing device for the second time, and the peer end is controlled or billed for the point-to-point service packet, and then the point is The point service packet is forwarded to the NAS device; the NAS device receives the point-to-point service packet forwarded by the two-
  • the network side communication network includes a NAS device, a network device, and a bidirectional processing device; the network side communication network receives the service packet, and the source end and the opposite end address of the service packet are both The address in the terminal address pool determines that the service is a point-to-point service packet, and the method includes: the NAS device receives the service packet, and the source address and the peer address of the service packet are all in the terminal address pool.
  • the address determines that the service text is a point-to-point service message; the network side communication network identifies information of a transmission location of the point-to-point service message, and according to the information of the transmission location, the point-to-point service packet is And performing control processing or charging processing on one or all of the source end and the peer end, the method includes: the NAS device identifies the information of the transmission location as the first location information, and determines that the point-to-point service packet is from the terminal side, and the point is The service packet is forwarded to the network device; the network device receives the point-to-point service packet forwarded by the NAS device, and identifies the information of the transmission location as the second location information.
  • the two-way processing device receives the point-to-point service message forwarded by the network device, and identifies the transmission location
  • the information is the third location information, determining the point The point-to-point service "3 ⁇ 4" enters the two-way processing device for the first time, performs control processing or charging processing on the source end for the point-to-point service text, and then forwards the point-to-point service packet to the network device; Receiving, by the device, the point-to-point service message forwarded by the two-way processing device, identifying that the information of the transmission location is the fourth location information, determining that the source end has performed control processing or charging processing, and the point-to-point service packet is used.
  • the bidirectional processing device receives the point-to-point service text forwarded by the network device, and the information identifying the transmission location is the fifth location information, and determining that the point-to-point service packet is the second entry
  • the two-way processing device performs control processing or charging processing on the peer end for the point-to-point service packet, and then forwards the point-to-point service packet to the network device; the network device receives the forwarding by the two-way processing device
  • the point-to-point service packet identifies the information of the transmission location as the sixth location information, and determines that the source end and the peer end have been controlled.
  • the billing process forwards the point-to-point service packet to the NAS device; the NAS device receives the point-to-point service packet forwarded by the network device, and identifies the information of the transmission location as the seventh location information, and determines the The point-to-point service packet is sent from the network device, and the point-to-point service packet is sent to the peer end.
  • the network side communication network includes a NAS device; and the network side communication network is configured to: the point-to-point service according to the information of the transmission location, and the one of the source end and the opposite end Or performing all the control processing or the charging processing, the method includes: determining, by the NAS device, the point-to-point service text from the terminal side according to the information of the transmission location, and performing control processing on the source end for the point-to-point service Fee processing.
  • the method further includes: when the NAS device determines that the address of the peer end is an address managed by the NAS device, and performs control processing on the peer end for the point-to-point service After the fee processing, the point-to-point service packet is forwarded to the peer end, or when the address of the peer end is an address managed by another NAS device, the point-to-point service packet is forwarded to the other NAS device.
  • the network side communication network includes a NAS device, and the network side communication network is configured to: the point-to-point service according to the information of the transmission location, and the one of the source end and the opposite end Or the control processing or the charging processing is performed, the method includes: determining, by the NAS device, the point-to-point service text from the network side according to the information of the transmission location, and performing control processing on the peer end for the point-to-point service Processing the fee, and then forwarding the point-to-point service message to the pair End.
  • a network side communication network including: a network access server NAS device and a bidirectional processing device, wherein the NAS device is in communication with the bidirectional processing device; the NAS device is configured to receive a service packet, according to the service
  • the source and the peer address of the packet are the addresses in the terminal address pool, and the service>3 ⁇ 4 text is the point-to-point service>3 ⁇ 4 text, and the information of the transmission location of the point-to-point service is identified, according to the transmission.
  • the location information, the point-to-point service text is forwarded, where the information of the transmission location includes physical port information, virtual local area network information or tunnel information for transmitting the point-to-point service message; the two-way processing device is configured to identify the transmission location
  • the information according to the information of the transmission location, performs control processing or charging processing on the one or all of the source end and the opposite end for the point-to-point service message.
  • the NAS device is specifically configured to identify the information of the transmission location as the first location information, determine that the point-to-point service packet is from the terminal side, and forward the point-to-point service packet to the
  • the bidirectional processing device receives the point-to-point service text forwarded by the bidirectional processing device, identifies the information of the transmission location as the third location information, and determines that the source end has been subjected to control processing or charging processing, and The point-to-point service message is forwarded to the two-way processing device again, or the point-to-point service message forwarded by the two-way processing device is received, and the information of the transmission location is identified as the fifth location information, and the source end is determined to be
  • the peer end performs control processing or charging processing, and sends the point-to-point service packet to the opposite end.
  • the bidirectional processing device includes: a receiving module, configured to receive the point-to-point service packet forwarded by the NAS device.
  • the identification module, the information for identifying the transmission location is the second location information, and determining that the point-to-point service text is the first time entering the two-way processing device.
  • the first sub-processing module of the bidirectional processing device is triggered, or the information identifying the transmission location is the fourth location information, and the point-to-point service text is determined to be the second time entering the bidirectional processing device, and the bidirectional processing device is triggered.
  • a second sub-processing module configured to perform control processing or charging processing on the source end for the point-to-point service packet, and then forward the point-to-point service packet to the NAS device;
  • the binary processing module is configured to perform control processing or charging processing on the peer end for the point-to-point service packet, and then forward the point-to-point service packet to the NAS device.
  • a network side communication network including: a network access server NAS device, a network device, and a bidirectional processing device, wherein the bidirectional processing device is communicably connected to the NAS device by using the network device; the NAS device is configured to receive The service packet is determined to be a point-to-point service according to the address in the terminal address pool of the source and the peer address of the service packet.
  • the information of the transmission location of the point-to-point service text is forwarded, and the point-to-point service text is forwarded according to the information of the transmission location, where the information of the transmission location includes physical port information for transmitting the point-to-point service text, and a virtual local area network Information or tunnel information;
  • the network device is configured to identify the information of the transmission location, and forward the point-to-point service text according to the information of the transmission location;
  • the bidirectional processing device is configured to identify information of the transmission location, according to the transmission location The information is controlled or billed by the source end and the peer end for the point-to-point service message.
  • the NAS device is specifically configured to identify the information of the transmission location as the first location information, determine that the point-to-point service packet is from the terminal side, and forward the point-to-point service packet to the The network device, or receiving the point-to-point service packet forwarded by the network device, identifying the information of the transmission location as the seventh location information, determining that the point-to-point service packet is from the network device, and determining the point-to-point The service packet is sent to the peer end; the network device is specifically configured to receive the point-to-point service text forwarded by the NAS device, identify the information of the transmission location as the second location information, and determine that the point-to-point service packet is from the The NAS device forwards the point-to-point service packet to the two-way processing device, or receives the point-to-point service packet forwarded by the two-way processing device, and identifies the information of the transmission location as the fourth location information, and determines that the The source end performs control processing or charging processing, and forward
  • the point-to-point service packet is forwarded, and the information identifying the transmission location is the sixth location information, and it is determined that the source end and the peer end have been subjected to control processing or charging processing, and the point-to-point service packet is used.
  • the bidirectional processing device includes: a receiving module, configured to receive the point-to-point service packet forwarded by the network device; and an identifying module, configured to identify the information of the transmission location as third location information, determine the The point-to-point service text is the first time entering the two-way processing device, triggering the first sub-processing module of the bi-directional processing device, or identifying the information of the transmission location as the fifth location information, and determining the point-to-point service text as the second time Entering the bidirectional processing device, triggering a second sub-processing module of the bidirectional processing device; the first sub-processing module is configured to perform control processing or charging processing on the source end for the point-to-point service packet, and then the point is The service packet is forwarded
  • the fourth aspect provides a network access server NAS device, including: a service packet processing module, configured to receive a service packet, where the source end and the opposite end address of the service packet are addresses in the terminal address pool. Determining that the service message is a point-to-point service message; the identification module is configured to identify information of a transmission location of the point-to-point service >3 ⁇ 4 text, where the information of the transmission location includes transmitting the point The physical port information, the virtual local area network information, or the tunnel information of the service packet, the processing module, configured to: according to the information about the transmission location identified by the identification module, the source end and the opposite end for the point-to-point service packet One or all of them perform control processing or billing processing.
  • a service packet processing module configured to receive a service packet, where the source end and the opposite end address of the service packet are addresses in the terminal address pool. Determining that the service message is a point-to-point service message; the identification module is configured to identify information of a transmission location of the point-to-point service
  • the processing module is configured to determine, according to the information about the transmission location, the point-to-point service text from the terminal side, and perform control processing on the source end for the point-to-point service Billing processing.
  • the processing module is specifically configured to determine, when the address of the peer end is an address managed by the NAS device, for the point-to-point service report Performing control processing or accounting processing on the peer end, and then forwarding the point-to-point service packet to the peer end, or determining that the address of the peer end is an address managed by another NAS device, the point-to-point service The message is forwarded to the other NAS device.
  • the processing module is specifically configured to determine, according to the information of the transmission location, that the point-to-point service "3 ⁇ 4 text from the network side, for the point-to-point service" to control the peer end Processing or charging processing, and then forwarding the point-to-point service packet to the peer end.
  • the fifth aspect provides a two-way processing device for a point-to-point service, including: a receiving module, configured to receive a point-to-point service packet forwarded by a network side device; and an identifying module, configured to receive the point according to the receiving module a service packet to identify a transmission location of the point-to-point service packet, where the information of the transmission location includes physical port information, virtual local area network information, or tunnel information for transmitting the point-to-point service packet; And performing control processing or charging processing on the source end and the peer end of the point-to-point service packet for the point-to-point service packet according to the information about the transmission location identified by the identification module, and then The point-to-point service packet is forwarded to the network side device.
  • the identifying module is specifically configured to: according to the point-to-point service packet received by the receiving module, identify the information of the transmission location, and determine that the point-to-point service packet enters the two-way for the first time.
  • the processing device triggers the first sub-processing module in the processing module, or identifies the information of the transmission location according to the point-to-point service packet received by the receiving module, and determines that the point-to-point service packet is the second time Entering the bidirectional processing device, triggering a second sub-processing module in the processing module;
  • the processing module specifically includes: a first sub-processing module, configured to perform control processing or charging on the source end for the point-to-point service packet Processing, and then forwarding the point-to-point service packet to the network side device;
  • the second sub-processing module is configured to perform control processing or charging processing on the peer end for the point-to-point service packet, and then the point is The service packet is forwarded to the network side device.
  • the bidirectional processing device is located in a network access server NAS device, and the service packet processing in the NAS device
  • the module communication connection, the network side device is a service message processing module in the NAS device.
  • the bidirectional processing device is communicatively coupled to the NAS device, and the network side device is the NAS device.
  • the bidirectional processing device is communicably connected to the NAS device by using a network device, where the network side device is the network device.
  • the embodiment of the present invention performs control processing on one or all of the source end and the opposite end for the point-to-point service packet by identifying the information of the transmission location of the point-to-point service text according to the information of the transmission location.
  • the billing process can improve the flexibility of control processing or billing processing for users of the point-to-point service.
  • Figures la, lb and lc are schematic representations of the system architecture of a data service network in accordance with an embodiment of the present invention.
  • FIG. 2 is a schematic flow chart of a method for point-to-point service processing according to an embodiment of the present invention.
  • 3 is another schematic flow diagram of a method of point-to-point service processing in accordance with an embodiment of the present invention.
  • FIG. 4 is a schematic diagram of interaction of a method of point-to-point service processing according to an embodiment of the present invention.
  • FIG. 5 is still another schematic flowchart of a method of point-to-point service processing according to an embodiment of the present invention.
  • FIG. 6 is another interaction diagram of a method of point-to-point service processing according to an embodiment of the present invention.
  • FIG. 7 is a schematic block diagram of a network side communication network according to an embodiment of the present invention.
  • FIG. 8 is a schematic block diagram of a network side communication network according to another embodiment of the present invention.
  • 9 is a schematic block diagram of a NAS device in accordance with an embodiment of the present invention.
  • FIG. 10 is a schematic block diagram of a two-way processing apparatus in accordance with an embodiment of the present invention. detailed description
  • Figure la, Figure lb and Figure lc are schematic diagrams of the system architecture of the data service network in the embodiment.
  • the user accesses the server through a network (called a NAS device, Network Access Server), for example, a broadband remote access server (Broadband Remote Access Server, called "BRAS”), gateway GPRS support.
  • a network called a NAS device, Network Access Server
  • BRAS Broadband Remote Access Server
  • GGSN Packet Data Serving Node
  • Packet Data Serving Node Packet Data Serving Node
  • the NAS device and the bidirectional processing device can be directly connected by communication; referring to Figure 1c, a network device such as a switch or a router can also be deployed between the NAS device and the bidirectional processing device. That is, the device that forwards the packet to the bidirectional processing device in the embodiment of the present invention may be a NAS device, or may be a network device deployed between the NAS device and the bidirectional processing device.
  • a system constituted by a network device such as a NAS device, a bidirectional processing device, a network device, and a data service platform mentioned above is referred to as a network side communication network.
  • FIG. 2 is a schematic flow diagram of a method 100 of point-to-point service processing in accordance with an embodiment of the present invention. As shown in FIG. 2, the method 100 includes:
  • the network side communication network receives the service packet, and determines that the service text is a point-to-point service according to the address in the terminal address pool of the source end and the peer end of the service packet;
  • the network side communication network identifies information about a transmission location of the point-to-point service packet, and controls one or all of the source end and the opposite end according to the information of the transmission location. Processing or charging processing, wherein the information of the transmission location includes physical port information, virtual local area network information or tunnel information for transmitting the point-to-point service.
  • the information of the transmission location refers to the location of the communication network that the service packet passes during the communication transmission process, and the present invention should not be limited in any way.
  • the network-side communication network allocates different identifiers for the location of the service packet during the transmission of the service packet, so that the device that receives the service packet in the network determines the previous hop network device of the service packet; And determining, according to the previous hop network device of the service packet, in combination with the related control and charging policy, whether to control or control one or all of the source end and the opposite end for the point-to-point service packet or Billing processing.
  • the information about the transmission location may be the physical port information of the transmission point-to-point service, the virtual local area network (Virtual Local Area Network), such as the VLAN ID of the VLAN, or the tunnel (Tunnel).
  • Information such as the tunnel ID of the tunnel. More specifically, the VLAN information is carried in the data packet, and the physical port information and tunnel information are identified and distinguished by the connected physical link. It refers to a communication network port with a physical meaning, such as an Ethernet interface or a fiber interface that receives service packets.
  • a VLAN refers to a virtual local area network formed by a network device that receives service packets and a network device that sends the service packets. According to the VLAN ID, the identification of the uplink VLAN and the downlink VLAN is different, so that the transmission direction of the service packet can be distinguished.
  • the tunnel refers to the tunnel information of the service packet. Inside the device, the tunnel ID is generally used to distinguish.
  • control process includes access control for accessing or denying access to the service accessed by the user, or bandwidth control, etc.; the charging process includes performing traffic accounting, time-based charging, or secondary to the service accessed by the user. Billing, or billing of the three combinations.
  • the service accessed by the user may be controlled and charged, or only the control or only the charging may be performed, which is not limited by the present invention.
  • the technical solution of the embodiments of the present invention can be applied not only to a scenario where two users (one source to one peer) perform point-to-point services, but also to a point-to-point service scenario initiated between multiple users, because many The message interaction between users can be finally converted into multiple scenarios of business interaction between the two parties.
  • the point-to-point service processing method of the embodiment of the present invention by identifying the information of the transmission location of the point-to-point service packet, according to the information of the transmission location, the source and the peer end for the point-to-point service text
  • One or all of the control processing or the accounting processing can perform control processing or charging processing for both the point-to-point services.
  • the foregoing step S120 may include multiple different processes: determining, according to the information of the transmission location, that the point-to-point service message is from the terminal side (source end) and has not undergone any control processing or charging processing, according to The source address in the service packet is combined with the source control and charging policy to control or charge the source end, and determine the next hop of the service packet.
  • the next hop may be different according to the network architecture. Is the two-way processing device itself in the NAS device, which may be sent by the NAS device to the two-way processing device); or
  • the peer address is combined with the control and charging policy of the peer end to perform corresponding control and accounting processing for the peer end, and determine the next hop of the service text;
  • the point-to-point service packet is from the network side, and the corresponding control and charging policy is performed for the source end and the opposite end, and the service packet is sent to the opposite end.
  • the different situations described above may be variously decomposed or combined due to different network architectures, and the implementation of the embodiments of the present invention is not affected as a whole.
  • the above method by using the "information of the transmission location" as one of the conditions, understands the processing progress, transmission location or process phase of the service packet, and combines the relevant control and charging policies to implement the point-to-point service.
  • the two parties perform the control and charging confirmation and processing. Compared with the source address in the service packet and the related control and charging policy, the two parties can implement complex service control flexibly or efficiently. Or billing.
  • the network side communication network includes a NAS device and a bidirectional processing device, such as the network architecture shown in FIG.
  • S110 includes:
  • the NAS device receives the service packet, and determines that the service text is a point-to-point service according to an address in the terminal address pool of the source end and the peer end of the service packet;
  • S120 includes:
  • the NAS device identifies the information of the transmission location as the first location information, determines that the point-to-point service packet is from the terminal side, and forwards the point-to-point service packet to the bidirectional processing device;
  • the bidirectional processing device Receiving the point-to-point service text forwarded by the NAS device, identifying the information of the transmission location as the second location information, and determining that the point-to-point service text is the first time to enter the The bidirectional processing device performs control processing or charging processing on the source end for the point-to-point service packet, and then forwards the point-to-point service packet to the NAS device;
  • the NAS device receives the point-to-point service text forwarded by the two-way processing device, identifies the information of the transmission location as the third location information, and determines that the source end has been subjected to control processing or charging processing, and the point is Point service packets are forwarded again to the two-way processing device;
  • the bidirectional processing device receives the point-to-point service text forwarded by the NAS device, identifies the information of the transmission location as the fourth location information, and determines that the point-to-point service text enters the two-way processing device for a second time,
  • the point-to-point service>3 ⁇ 4 text performs control processing or billing processing on the peer end, and then forwards the point-to-point service packet to the NAS device;
  • the NAS device receives the point-to-point service message forwarded by the two-way processing device, identifies that the information of the transmission location is the fifth location information, and determines that the source end and the peer end have been subjected to control processing or charging processing.
  • the point-to-point service "3 ⁇ 4" is sent to the peer.
  • FIG 4 is a schematic diagram of a method in the communication system shown in Figure lb.
  • a two-way processing device is deployed behind the NAS device to perform charging processing or control processing on the point-to-point service.
  • the user A initiates a point-to-point service call to the user B through the NAS device as an example.
  • the NAS device receives (for example, receives from physical port 1, or VLAN1, or Tunnel 1) A data protocol (Internet Protocol, called "IP”) sent to B, according to the source end of the text.
  • IP Internet Protocol
  • the address of the peer is the address in the terminal address pool.
  • the packet is determined to be a point-to-point service packet.
  • the NAS device identifies the information of the transmission location as the first location information. For example, the physical port that receives the packet is the physical port 1, or the VLAN ID of the packet is VLAN 1, or the tunnel that receives the packet is Tunnell), determining that the point-to-point service packet is from the terminal side, and forwarding the point-to-point service packet to the bidirectional processing device (for example, routing to the bidirectional processing device through physical port 2 or VLAN 2 or Tunnel 2).
  • the bidirectional processing device receives (eg, receives from the physical port 22 corresponding to the physical port 2, or the VLAN 2, or the tunnel 2) the point-to-point service packet forwarded by the NAS device, and identifies the information of the transmission location as the second location.
  • Information for example, the physical port that receives the packet is the physical port 22, or the VLAN ID carried in the packet is VLAN 2, or the packet is received.
  • the tunnel is a tunnel 2), and the point-to-point service text is determined to be the first time to enter the two-way processing device, and the source end is controlled or billed for the point-to-point service packet, that is, the source IP address of the packet is extracted.
  • Performing corresponding control processing or accounting processing as a user indication (in the example, performing control processing or charging processing on A), and then forwarding the point-to-point service packet to the NAS device, for example, through physical port 3 or VLAN 3 or Tunnel 3 is forwarded to the NAS device.
  • the NAS device receives (eg, receives from the physical port 33 corresponding to the physical port 3, or the VLAN 3, or the tunnel 3) the point-to-point service packet forwarded by the two-way processing device, and identifies that the information of the transmission location is the third location.
  • the information (for example, the physical port that receives the packet is the physical port 33, or the VLAN ID of the packet is VLAN 3, or the tunnel that receives the packet is Tunnel3), and the packet is determined to be from the bidirectional processing device.
  • the source end performs control processing or charging processing, and needs to be forwarded again to the bidirectional processing device for processing, and the point-to-point service packet is forwarded again to the bidirectional processing device (for example, forwarding through physical port 4 or VLAN 4 or Tunnel 4 again) Give a two-way processing device).
  • the bidirectional processing device receives (eg, receives from the physical port 44 corresponding to the physical port 4, or the VLAN 4, or the tunnel 4) the point-to-point service packet forwarded by the NAS device, and identifies the information of the transmission location as the fourth location.
  • the information for example, the physical port that receives the packet is the physical port 44, or the VLAN ID of the packet is VLAN 4, or the tunnel that receives the packet is Tunnel 4), and the point-to-point service packet is determined to be the second.
  • the NAS device receives (eg, receives from the physical port 55 corresponding to the physical port 5, or the VLAN 5, or the Tunnel 5) the point-to-point service packet forwarded by the two-way processing device, and identifies that the information of the transmission location is the fifth location.
  • the information (for example, the physical port that receives the packet is the physical port 55, or the VLAN ID of the packet is VLAN 5, or the tunnel that receives the packet is Tunnel 5), and the message is determined to be from the bidirectional processing device.
  • the source end and the peer end perform control processing or charging processing, and send the point-to-point service to the opposite end, that is, user B.
  • the NAS device determines that the packet is from the network side, that is, the packet is forwarded by another NAS device, the packet is not forwarded to the bidirectional processing device, and the packet is directly sent to the peer end (because The other NAS device side has already performed control processing or billing processing). Therefore, in the point-to-point service processing method of the embodiment of the present invention, the NAS device forwards the point-to-point service packet to the bidirectional processing device twice by deploying the bidirectional processing device to perform control processing or charging processing on the point-to-point service.
  • the bidirectional processing device performs control processing or charging processing on the source end when receiving the packet for the first time according to the information of the transmission location, and performs control processing or charging processing on the peer end when receiving the packet for the second time.
  • the control processing or billing processing is performed on both sides of the point-to-point service without performing major modifications and major upgrades on the NAS device.
  • the network side communication network includes a NAS device, a network device, and a bidirectional processing device, such as the network architecture shown in FIG.
  • S110 includes:
  • the NAS device receives the service packet, and determines that the service text is a point-to-point service according to an address in the terminal address pool of the source end and the peer end of the service packet;
  • S120 includes:
  • the NAS device identifies the information of the transmission location as the first location information, and determines that the point-to-point service packet is sent from the terminal side, and forwards the point-to-point service packet to the network device.
  • the network device receives the point-to-point service packet forwarded by the NAS device, identifies the information of the transmission location as the second location information, and determines that the point-to-point service packet is from the NAS device, and the point-to-point service is used.
  • the message is forwarded to the two-way processing device;
  • the bidirectional processing device receives the point-to-point service packet forwarded by the network device, identifies the information of the transmission location as the third location information, and determines that the point-to-point service text is the first time entering the bidirectional processing device, for the point Go to the service > 3 ⁇ 4 text to perform control processing or charging processing on the source end, and then forward the point-to-point service packet to the network device;
  • the network device receives the point-to-point service packet forwarded by the two-way processing device, and identifies the information of the transmission location as the fourth location information, and determines that the source end has been subjected to control processing or charging processing, and the point is determined.
  • the point-to-point service message is forwarded again to the two-way processing device;
  • the bidirectional processing device receives the point-to-point service packet forwarded by the network device, identifies the information of the transmission location as the fifth location information, and determines that the point-to-point service text enters the two-way processing device for a second time.
  • the point-to-point service packet is subjected to control processing or charging processing to the peer end, and then the point-to-point service packet is forwarded to the network device;
  • the network device receives the point-to-point service packet forwarded by the two-way processing device, and identifies the information of the transmission location as the sixth location information, and determines that the source end and the peer end have been subjected to control processing or charging processing. Forwarding the point-to-point service packet to the NAS device; S133, the NAS device receives the point-to-point service packet forwarded by the network device, identifies the information of the transmission location as the seventh location information, and determines that the point-to-point service text is from the network device, and the point-to-point service is 3 ⁇ 4 text is sent to the opposite end.
  • FIG 6 is a schematic diagram of a method in the communication system shown in Figure lc.
  • a bidirectional processing device is deployed behind the NAS device to perform charging processing or control processing on the point-to-point service
  • a network device is deployed between the NAS device and the bidirectional processing device.
  • the user A initiates a point-to-point service call to the user B through the NAS device as an example.
  • the NAS device receives (for example, receives the physical port 1 or the VLAN 1 or the tunnel 1) the IP data packet sent by the A to the B.
  • the source and the peer address of the packet are the addresses in the terminal address pool. It is determined that the 4 ⁇ text is a point-to-point business.
  • the NAS device identifies the information of the transmission location as the first location information. For example, the physical port that receives the packet is the physical port 1, or the VLAN ID of the packet is VLAN 1, or the tunnel that receives the packet is Tunnell), determines that the point-to-point service packet is sent from the terminal side, and forwards the point-to-point service packet to the network device (for example, routing to the network device through physical port 2 or VLAN 2 or Tunnel 2).
  • the network device receives (eg, receives from the physical port 22 corresponding to the physical port 2, or the VLAN 2, or the tunnel 2) the point-to-point service packet forwarded by the NAS device, and identifies the information of the transmission location as the second location information.
  • the physical port that receives the packet is the physical port 22, or the VLAN ID of the packet is VLAN 2, or the tunnel that receives the packet is Tunnel 2
  • the point-to-point service packet is determined to be from the NAS device.
  • forwarding the point-to-point service packet to the bidirectional processing device for example, forwarding to the bidirectional processing device through physical port 3 or VLAN 3 or Tunnel 3.
  • the user-side IP address pool or the IP address range can be configured on the network device.
  • the network device determines that the IP address of the source and the peer is the user-side IP address.
  • the bidirectional processing device receives (eg, receives from the physical port 33 corresponding to the physical port 3, or the VLAN 3, or the tunnel 3) the point-to-point service packet forwarded by the network device, and identifies the information of the transmission location as the third location.
  • Information for example, the physical port that receives the packet is the physical port 33, or the VLAN ID carried in the packet is VLAN 3, or the packet is received.
  • the tunnel is a tunnel 3), and the point-to-point service text is determined to enter the two-way processing device for the first time, and the source end is controlled or billed for the point-to-point service packet, that is, the source IP address of the packet is extracted.
  • the network device receives (eg, receives from the physical port 44 corresponding to the physical port 4, or the VLAN 4, or the tunnel 4) the point-to-point service packet forwarded by the two-way processing device, and identifies that the information of the transmission location is the fourth location.
  • the information for example, the physical port that receives the packet is the physical port 44, or the VLAN ID of the packet is VLAN 4, or the tunnel that receives the packet is Tunnel 4), and the packet is determined to be from the bidirectional processing device.
  • the source end performs control processing or charging processing, and needs to be forwarded again to the bidirectional processing device for processing, and the point-to-point service packet is forwarded again to the bidirectional processing device (for example, forwarding through physical port 5 or VLAN 5 or Tunnel 5 again) Give a two-way processing device).
  • the bidirectional processing device receives (eg, receives from the physical port 55 corresponding to the physical port 5, or the VLAN 5, or the tunnel 5) the point-to-point service packet forwarded by the network device, and identifies the information of the transmission location as the fifth location.
  • the information for example, the physical port that receives the packet is the physical port 55, or the VLAN ID of the packet is VLAN 5, or the tunnel that receives the packet is Tunnel 5), and the point-to-point service packet is determined to be the second.
  • the network device receives (eg, receives from the physical port 66 corresponding to the physical port 6, or the VLAN 6, or the tunnel 6) the point-to-point service packet forwarded by the two-way processing device, and identifies the information of the transmission location as the sixth location.
  • the information for example, the physical port that receives the packet is the physical port 66, or the VLAN ID of the packet is VLAN 6, or the tunnel that receives the packet is Tunnel6), and the packet is determined to be from the bidirectional processing device.
  • the source end and the peer end perform control processing or charging processing, and forward the point-to-point service packet to the NAS device (for example, forwarding to the NAS device through physical port 7 or VLAN 7 or Tunnel 7).
  • the NAS device receives (for example, from a physical port 77 corresponding to physical port 7, or
  • VLAN7, or Tunnel7 receives) the point-to-point service packet forwarded by the network device, identifying the The information of the transmission location is the seventh location information.
  • the physical port that receives the packet is the physical port 77, or the VLAN ID of the packet is VLAN 7, or the tunnel that receives the packet is Tunnel7.
  • the point-to-point service packet is sent to the peer end, that is, user B.
  • the packet is not forwarded to the network device (because the control processing or charging processing has been performed on the other NAS device side).
  • the point-to-point service processing method of the embodiment of the present invention performs a control processing or a charging process on a point-to-point service by deploying a two-way processing device, and deploys a network device between the NAS device and the two-way processing device to be point-to-point.
  • the service packet is forwarded twice to the bidirectional processing device.
  • the bidirectional processing device performs control processing or charging processing on the source end when receiving the packet for the first time according to the information of the transmission location, and receives the packet for the second time.
  • the peer end performs control processing or billing processing, and can perform control processing or billing processing on both sides of the point-to-point service without major modification and large upgrade of the NAS device, and can also reduce the configuration of the NAS device. pressure.
  • the bidirectional processing device may be deployed separately or in combination with the gateway device.
  • the bidirectional processing device may be a separate device or a gateway device.
  • the network side communication network includes a NAS device, such as the network architecture shown in FIG.
  • the S120 includes:
  • the NAS device determines that the point-to-point service packet is from the terminal side according to the information of the transmission location, and performs control processing or charging processing on the source end for the point-to-point service text.
  • S120 further includes:
  • the peer device When the NAS device determines that the address of the peer is the address managed by the NAS device, the peer device performs control processing or charging processing on the peer-to-peer service packet, and then forwards the point-to-point service packet to the pair. End, or, when it is determined that the address of the peer is an address managed by another NAS device, the point-to-point service packet is forwarded to the other NAS device.
  • the existing NAS device in order to implement control processing or charging processing on both sides of the point-to-point service, the existing NAS device is modified.
  • the NAS device receives the service packet, and determines that the service packet is a point-to-point service packet according to the address of the source address and the peer address of the service, and the point-to-point service is identified.
  • the control process or the accounting process is performed, that is, the source IP address of the packet is extracted as a user identifier for control processing or accounting processing, and it is determined whether the peer address is an address managed by the NAS device, and if the peer address is The address managed by the NAS device is subjected to control processing or accounting processing, that is, the destination IP address of the packet is extracted as a user identifier for control processing or accounting processing, and then the packet is forwarded to the peer end. Or, if the peer address is an address managed by another NAS device, forward the packet to the other NAS device.
  • S120 includes:
  • the NAS device determines that the point-to-point service packet is from the network side according to the information of the transmission location, performs control processing or charging processing on the peer-to-peer service text, and then forwards the point-to-point service packet. Give the opposite end.
  • the packet is from the network side, that is, the packet is forwarded by another NAS device, because the source device has performed control processing or accounting processing on the other NAS device side, only the packet needs to be processed.
  • the peer end performs control processing or charging processing, that is, extracts the destination IP address of the packet as a user identifier for control processing or accounting processing, and then forwards the packet to the peer end.
  • the NAS device performs control processing or accounting processing on the source end and the opposite end respectively, so that control processing or charging processing can be implemented on both sides of the point-to-point service.
  • the size of the sequence numbers of the above processes does not mean the order of execution, and the order of execution of each process should be determined by its function and internal logic, and should not be taken to the embodiments of the present invention.
  • the implementation process constitutes any limitation.
  • FIG. 1 to FIG. 6 The method for point-to-point service processing according to an embodiment of the present invention is described in detail above with reference to FIG. 1 to FIG. 6.
  • a network side communication network, a NAS device, and a network device according to an embodiment of the present invention will be described with reference to FIG. 7 to FIG.
  • a two-way processing device for point-to-point services will be described in detail above with reference to FIG. 1 to FIG. 6.
  • FIG. 7 shows a schematic block diagram of a network side communication network 200 in accordance with an embodiment of the present invention.
  • the network side communication network 200 includes: a NAS device 210 and a bidirectional processing device 220, and the NAS device 210 is communicably connected to the bidirectional processing device 220;
  • the NAS device 210 is configured to receive a service packet, and determine that the service is a point-to-point service >3 ⁇ 4 text according to the address in the terminal address pool of the source address and the peer address of the service packet, and identify the point to
  • the information about the transmission location of the service packet is forwarded according to the information of the transmission location, where the information of the transmission location includes physical port information, virtual local area network information or a tunnel for transmitting the point-to-point service text. information;
  • the bidirectional processing device 220 is configured to identify the information of the transmission location, and perform control processing or charging processing on the source end and the peer end for the point-to-point service packet according to the information of the transmission location.
  • the network side communication network of the embodiment of the present invention controls one or both of the source end and the opposite end according to the information of the transmission position by identifying the information of the transmission location of the point-to-point service packet according to the information of the transmission location.
  • the processing or billing process can implement control processing or billing processing for users of the point-to-point service flexibly or efficiently.
  • the NAS 210 device is specifically configured to identify the information of the transmission location as the first location information, determine that the point-to-point service packet is from the terminal side, and forward the point-to-point service packet to the two-way processing device, or Receiving the point-to-point service packet forwarded by the two-way processing device, identifying the information of the transmission location as the third location information, determining that the source end has been subjected to control processing or charging processing, and the point-to-point service report is Forwarding to the two-way processing device, or receiving the point-to-point service packet forwarded by the two-way processing device, identifying the information of the transmission location as the fifth location information, determining that the source end and the opposite end have been performed. Control processing or billing processing, sending the point-to-point service "3 ⁇ 4" to the peer;
  • the two-way processing device 220 includes:
  • the receiving module 221 is configured to receive the point-to-point service packet forwarded by the NAS device, and the identifying module 222 is configured to identify the information of the transmission location as the second location information, and determine that the point-to-point service is the first entry.
  • the bidirectional processing device triggers the first sub-processing module 223 of the bidirectional processing device, or identifies the information of the transmission location as the fourth location information, and determines that the point-to-point service text enters the bidirectional processing device for the second time, triggering The second sub-processing module 224 of the bidirectional processing device;
  • the first sub-processing module 223 is configured to perform control processing or charging processing on the source end for the point-to-point service text, and then forward the point-to-point service packet to the NAS device;
  • the second sub-processing module 224 is configured to perform control processing or charging processing on the peer end for the point-to-point service, and then forward the point-to-point service packet to the NAS device.
  • the network side communication network 200 may correspond to the system illustrated in FIG. 1b, and the above and other operations and/or functions of the respective modules in the network side communication network 200 are respectively implemented in order to implement FIGS. 2 to 4
  • the corresponding process of each method, for the sake of cleaning, will not be repeated here.
  • the network-side communication network in the embodiment of the present invention performs the control processing or the accounting processing on the point-to-point service by deploying the two-way processing device, and the NAS device forwards the point-to-point service packet twice to the two-way processing.
  • the device, the bidirectional processing device performs control processing or charging processing on the source end when receiving the message for the first time according to the information of the transmission location, and performs control processing or charging processing on the opposite end when the second time receives the message. It is possible to perform control processing or billing processing on both sides of the point-to-point service without performing major modifications and major upgrades on the NAS device.
  • FIG. 8 shows a schematic block diagram of a network side communication network 300 in accordance with an embodiment of the present invention.
  • the network side communication network 300 includes: a NAS device 310, a network device 320, and a two-way processing device 330.
  • the two-way processing device 330 is communicably connected to the NAS device 310 through the network device 320.
  • the NAS device 310 is configured to receive the service packet, and determine that the service text is a point-to-point service according to the address of the source address and the peer address of the service packet, and identify the point-to-point service.
  • the information of the transmission location of the packet is forwarded according to the information of the transmission location, where the information of the transmission location includes physical port information, virtual local area network information or tunnel information for transmitting the point-to-point service text;
  • the network device 320 is configured to identify the information of the transmission location, and forward the point-to-point service text according to the information of the transmission location;
  • the bidirectional processing device 330 is configured to identify the information of the transmission location, and perform control processing or charging processing on the source end and the peer end for the point-to-point service packet according to the information of the transmission location.
  • the network side communication network of the embodiment of the present invention controls one or both of the source end and the opposite end according to the information of the transmission position by identifying the information of the transmission location of the point-to-point service packet according to the information of the transmission location.
  • the processing or billing process enables more flexible or efficient implementation of control processing or billing processing for users of the point-to-point service.
  • the NAS device 310 is configured to identify the information of the transmission location as the first location information, determine that the point-to-point service packet is from the terminal side, and forward the point-to-point service packet to the network device, or Receiving the point-to-point service packet forwarded by the network device, identifying the information of the transmission location as the seventh location information, determining that the point-to-point service packet is from the network device, and the point-to-point service>3 ⁇ 4 To the opposite end;
  • the network device 320 is specifically configured to receive the point-to-point service packet forwarded by the NAS device, identify the information of the transmission location as the second location information, and determine that the point-to-point service text is from the NAS device, and the point-to-point Forwarding the service message to the two-way processing device, or receiving the point-to-point service text forwarded by the two-way processing device, and identifying the information of the transmission location as the fourth location information,
  • the source end has been subjected to control processing or billing processing, and the point-to-point service>3 ⁇ 4 text is forwarded again to the bidirectional processing device, or the point-to-point service message forwarded by the bidirectional processing device is received, and the identification is performed.
  • the information of the transmission location is the sixth location information, and it is determined that the source end and the peer end have been subjected to control processing or charging processing, and the point-to-point service packet is forwarded to the NAS device;
  • the two-way processing device 330 includes:
  • the receiving module 331 is configured to receive the point-to-point service packet forwarded by the network device, and the identifying module 332 is configured to identify the information of the transmission location as the third location information, and determine that the point-to-point service is the first entry.
  • the bidirectional processing device triggers the first sub-processing module 333 of the bidirectional processing device, or identifies the information of the transmission location as the fifth location information, and determines that the point-to-point service text enters the bidirectional processing device for the second time, triggering The second sub-processing module 334 of the bidirectional processing device;
  • the first sub-processing module 333 is configured to perform control processing or charging processing on the source end for the point-to-point service text, and then forward the point-to-point service packet to the network device;
  • the second sub-processing module 334 is configured to perform control processing or charging processing on the peer end for the point-to-point service text, and then forward the point-to-point service packet to the network device.
  • the network side communication network 300 may correspond to the system illustrated in FIG. 1c, and the above and other operations and/or functions of the respective modules in the network side communication network 300 respectively implement FIG. 2, FIG. 5 and FIG. The corresponding process of each method in 6 is not repeated here.
  • the network side communication network in the embodiment of the present invention performs a control processing or a charging process on the point-to-point service by deploying the two-way processing device, and deploys the network device between the NAS device and the two-way processing device to send the point-to-point service packet twice.
  • the bidirectional processing device forwarding to the bidirectional processing device, the bidirectional processing device performs control processing or charging processing on the source end when receiving the packet for the first time according to the information of the transmission location, and controls the opposite end when receiving the packet for the second time.
  • billing processing it is possible to simultaneously perform control processing or billing processing on both sides of the point-to-point service without major modifications and major upgrades of the NAS device, and also reduce the configuration pressure of the NAS device.
  • FIG. 9 is a schematic block diagram of a NAS device 400 in accordance with an embodiment of the present invention. As shown in FIG. 9, the NAS device 400 includes:
  • the service packet processing module 410 is configured to receive the service packet, and determine that the service text is a point-to-point service according to the address of the source address and the peer address of the service packet.
  • the identification module 420 Information for identifying a transmission location of the point-to-point service packet, where The information of the transmission location includes physical port information, virtual local area network information or tunnel information for transmitting the point-to-point service message;
  • the processing module 430 is configured to perform control processing or charging processing on the one or all of the source end and the opposite end according to the information of the transmission location identified by the identification module 420.
  • the processing module 430 is specifically configured to determine, according to the information about the transmission location, the point-to-point service text from the terminal side, and perform control processing or charging processing on the source end for the point-to-point service text.
  • the processing module 430 is specifically configured to: when the address of the peer end is an address managed by the NAS device, perform control processing or charging processing on the peer end for the point-to-point service text, and then the point-to-point The service packet is forwarded to the peer, or the address of the peer is determined to be other.
  • the point-to-point service packet is forwarded to the other NAS device.
  • the processing module 430 is specifically configured to determine, according to the information about the transmission location, that the point-to-point service is from the network side, and perform control processing or charging processing on the peer end for the point-to-point service text, and then The point-to-point service packet is forwarded to the peer end.
  • the NAS device in the embodiment of the present invention can perform control processing or charging processing on both sides of the point-to-point service by performing control processing or charging processing on the source end and the opposite end respectively.
  • FIG. 10 is a schematic block diagram of a two-way processing apparatus 500 for point-to-point traffic in accordance with an embodiment of the present invention. As shown in FIG. 10, the two-way processing apparatus 500 includes:
  • the receiving module 510 is configured to receive a point-to-point service packet forwarded by the network side device.
  • the identification module 520 is configured to identify, according to the point-to-point service packet received by the receiving module 510, information about a transmission location of the point-to-point service text, where the information of the transmission location includes transmitting the point-to-point service packet Physical port information, virtual local area network information, or tunnel information;
  • the processing module 530 is configured to perform control processing on one or all of the source end and the opposite end of the point-to-point service packet according to the information of the transmission location identified by the identification module 520. The fee processing, and then forwarding the point-to-point service packet to the network side device.
  • the identifying module 520 is specifically configured to: according to the point-to-point service text received by the receiving module 510, identify the information of the transmission location, determine that the point-to-point service text is the first time entering the bidirectional processing device, and trigger the processing.
  • the processing module 530 specifically includes:
  • the first sub-processing module 531 is configured to perform control processing or charging processing on the source end for the point-to-point service text, and then forward the point-to-point service packet to the network side device;
  • the second sub-processing module 532 is configured to perform control processing or charging processing on the peer end for the peer-to-peer service text, and then forward the point-to-point service packet to the network side device.
  • the two-way processing device 500 is located in the NAS device of the network access server, and is in communication with the service packet processing module in the NAS device, where the network side device is a service packet processing module in the NAS device.
  • the bidirectional processing device 500 is communicatively coupled to the NAS device, and the network side device is the NAS device.
  • the bidirectional processing device 500 is communicatively coupled to the NAS device through a network device, and the network side device is the network device.
  • the two-way processing device of the point-to-point service by identifying the information of the transmission location of the point-to-point service>3 ⁇ 4 text, according to the information of the transmission location, the point-to-point service report for the point-to-point service text Control processing or billing processing is performed on one or both of the source end and the peer end of the text, so that control processing or billing processing can be performed on both sides of the point-to-point service.
  • the term "and/or” is merely an association describing the associated object, indicating that there may be three relationships.
  • a and / or B can mean: There are three cases of A, B and A and B, and B alone.
  • the character "/" in this article generally indicates that the contextual object is an "or" relationship.
  • the units described as separate components may or may not be physically separate, and the components displayed as units may or may not be physical units, that is, may be located in one place, or may be distributed to multiple network units. Some or all of the units may be selected according to actual needs to achieve the objectives of the embodiments of the present invention.
  • each functional unit in each embodiment of the present invention may be integrated into one processing unit, or each unit may exist physically separately, or two or more units may be integrated into one unit.
  • the above integrated unit can be implemented in the form of hardware or in the form of a software functional unit.
  • the integrated unit if implemented in the form of a software functional unit and sold or used as a standalone product, may be stored in a computer readable storage medium.
  • the technical solution of the present invention contributes in essence or to the prior art, or all or part of the technical solution may be embodied in the form of a software product stored in a storage medium.
  • a number of instructions are included to cause a computer device (which may be a personal computer, server, or network device, etc.) to perform all or part of the steps of the methods described in various embodiments of the present invention.
  • the foregoing storage medium includes: a U disk, a removable hard disk, a read-only memory (ROM), a random access memory (RAM), a magnetic disk or an optical disk, and the like, which can store program codes. .

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Abstract

本发明公开了一种点到点业务处理的方法及设备。该方法包括:网络侧通信网络接收业务报文,根据该业务报文的源端和对端的地址均为终端地址池中的地址确定该业务报文为点到点业务报文;该网络侧通信网络识别该点到点业务报文的传输位置的信息,根据该传输位置的信息,针对该点到点业务报文对该源端和该对端之一或者全部进行控制处理或者计费处理,其中,该传输位置的信息包括传输该点到点业务报文的物理端口信息、虚拟局域网信息或者隧道信息。本发明实施例的点到点业务处理的方法及设备能够提高对点到点业务的用户进行控制处理或者计费处理的灵活度。

Description

点到点业务处理的方法及设备 技术领域
本发明涉及通信领域, 并且更具体地, 涉及点到点业务处理技术。 背景技术
在数据业务网络中, 如果几个终端用户发起点到点的业务 (P2P: Peer To Peer,点到点),譬如用户 A和用户 B都通过网关通用分组无线业务( General Packet Radio Service, 筒称为 "GPRS" ) 支持节点 ( Gateway GPRS Support Node, 筒称为 "GGSN" )激活数据业务并发起点到点的下载业务, 当前无 法对这种点到点业务报文接收者进行控制处理或计费处理, 只能对报文的发 起者进行控制处理或计费处理。 譬如 A发给 B的报文, 只能对 A进行控制 (包括访问控制、 带宽控制等等)和计费(包括流量计费、 时长计费或者按 次计费等等)。 筒而言之, 现网的 NAS设备对点到点业务的用户控制处理或 计费处理的方案不够灵活。 发明内容
本发明实施例提供了一种点到点业务处理的方法、 网络侧通信网络、 NAS设备和点到点业务的双向处理装置,提高对点到点业务的用户进行控制 处理或计费处理的灵活度。
第一方面, 提供了一种点到点业务处理的方法, 包括: 网络侧通信网络 接收业务报文,根据该业务报文的源端和对端的地址均为终端地址池中的地 址确定该业务^¾文为点到点业务 文; 该网络侧通信网络识别该点到点业务 报文的传输位置的信息, 根据该传输位置的信息, 针对该点到点业务报文对 该源端和该对端之一或者全部进行控制处理或者计费处理, 其中, 该传输位 置的信息包括传输该点到点业务 文的物理端口信息、虚拟局域网信息或者 隧道信息。
在第一种可能的实现方式中, 该网络侧通信网络包括网络接入服务器 NAS设备和双向处理装置; 该网络侧通信网络接收业务报文,根据该业务报 文的源端和对端的地址均为终端地址池中的地址确定该业务 文为点到点 业务报文, 包括: 该 NAS设备接收该业务报文, 根据该业务报文的源端和 对端的地址均为终端地址池中的地址确定该业务 文为点到点业务4艮文; 该 网络侧通信网络识别该点到点业务 文的传输位置的信息,根据该传输位置 的信息,针对该点到点业务报文对该源端和该对端之一或者全部进行控制处 理或者计费处理, 包括: 该 NAS设备识别该传输位置的信息为第一位置信 息, 确定该点到点业务报文来自终端侧, 将该点到点业务报文转发给该双向 处理装置; 该双向处理装置接收该 NAS设备转发的该点到点业务报文, 识 别该传输位置的信息为第二位置信息,确定该点到点业务 文为首次进入该 双向处理装置, 针对该点到点业务报文对该源端进行控制处理或者计费处 理, 然后将该点到点业务报文转发给该 NAS设备; 该 NAS设备接收该双向 处理装置转发的该点到点业务报文, 识别该传输位置的信息为第三位置信 息, 确定已经对该源端进行了控制处理或者计费处理, 将该点到点业务 "¾文 再次转发给该双向处理装置; 该双向处理装置接收该 NAS设备转发的该点 到点业务"¾文, 识别该传输位置的信息为第四位置信息, 确定该点到点业务 报文为第二次进入该双向处理装置,针对该点到点业务报文对该对端进行控 制处理或者计费处理,然后将该点到点业务报文转发给该 NAS设备;该 NAS 设备接收该双向处理装置转发的该点到点业务报文,识别该传输位置的信息 为第五位置信息, 确定已经对该源端和该对端进行了控制处理或者计费处 理, 将该点到点业务 >¾文发向该对端。
在第二种可能的实现方式中, 该网络侧通信网络包括 NAS设备、 网络 设备和双向处理装置; 该网络侧通信网络接收业务报文, 根据该业务报文的 源端和对端的地址均为终端地址池中的地址确定该业务 4艮文为点到点业务 报文, 包括: 该 NAS设备接收该业务报文, 根据该业务报文的源端和对端 的地址均为终端地址池中的地址确定该业务 文为点到点业务 4艮文; 该网络 侧通信网络识别该点到点业务报文的传输位置的信息,根据该传输位置的信 息,针对该点到点业务报文对该源端和该对端之一或者全部进行控制处理或 者计费处理, 包括: 该 NAS设备识别该传输位置的信息为第一位置信息, 确定该点到点业务报文来自终端侧, 将该点到点业务报文转发给该网络设 备; 该网络设备接收该 NAS设备转发的该点到点业务报文, 识别该传输位 置的信息为第二位置信息, 确定该点到点业务报文来自该 NAS设备, 将该 点到点业务报文转发给该双向处理装置; 该双向处理装置接收该网络设备转 发的该点到点业务 文, 识别该传输位置的信息为第三位置信息, 确定该点 到点业务"¾文为首次进入该双向处理装置,针对该点到点业务 文对该源端 进行控制处理或者计费处理, 然后将该点到点业务报文转发给该网络设备; 该网络设备接收该双向处理装置转发的该点到点业务 文,识别该传输位置 的信息为第四位置信息, 确定已经对该源端进行了控制处理或者计费处理, 将该点到点业务报文再次转发给该双向处理装置; 该双向处理装置接收该网 络设备转发的该点到点业务 文, 识别该传输位置的信息为第五位置信息, 确定该点到点业务报文为第二次进入该双向处理装置,针对该点到点业务报 文对该对端进行控制处理或者计费处理, 然后将该点到点业务报文转发给该 网络设备; 该网络设备接收该双向处理装置转发的该点到点业务报文, 识别 该传输位置的信息为第六位置信息,确定已经对该源端和该对端进行了控制 处理或者计费处理, 将该点到点业务报文转发给该 NAS设备; 该 NAS设备 接收该网络设备转发的该点到点业务报文,识别该传输位置的信息为第七位 置信息, 确定该点到点业务报文来自该网络设备, 将该点到点业务报文发向 该对端。
在第三种可能的实现方式中, 该网络侧通信网络包括 NAS设备; 该网 络侧通信网络根据该传输位置的信息,针对该点到点业务 "¾文对该源端和该 对端之一或者全部进行控制处理或者计费处理, 包括: 该 NAS设备根据该 传输位置的信息确定该点到点业务 文来自终端侧,针对该点到点业务 "¾文 对该源端进行控制处理或者计费处理。
在第四种可能的实现方式中, 结合第一方面的第三种可能的实现方式, 该网络侧通信网络根据该传输位置的信息,针对该点到点业务 文对该源端 和该对端之一或者全部进行控制处理或者计费处理, 进一步包括: 该 NAS 设备确定该对端的地址是该 NAS设备管理的地址时, 针对该点到点业务才艮 文对该对端进行控制处理或者计费处理, 然后将该点到点业务报文转发给该 对端, 或者, 确定该对端的地址是其他 NAS设备管理的地址时, 将该点到 点业务报文转发给该其他 NAS设备。
在第五种可能的实现方式中, 该网络侧通信网络包括 NAS设备; 该网 络侧通信网络根据该传输位置的信息,针对该点到点业务 "¾文对该源端和该 对端之一或者全部进行控制处理或者计费处理, 包括: 该 NAS设备根据该 传输位置的信息确定该点到点业务 文来自网络侧,针对该点到点业务 "¾文 对该对端进行控制处理或者计费处理, 然后将该点到点业务报文转发给该对 端。
第二方面, 提供了一种网络侧通信网络, 包括: 网络接入服务器 NAS 设备和双向处理装置, 该 NAS设备与该双向处理装置通信连接; 该 NAS设 备用于接收业务报文,根据该业务报文的源端和对端的地址均为终端地址池 中的地址确定该业务>¾文为点到点业务 >¾文,识别该点到点业务 "¾文的传输 位置的信息, 根据该传输位置的信息, 转发该点到点业务 文, 其中, 该传 输位置的信息包括传输该点到点业务报文的物理端口信息、虚拟局域网信息 或者隧道信息; 该双向处理装置用于识别该传输位置的信息, 根据该传输位 置的信息,针对该点到点业务报文对该源端和该对端之一或者全部进行控制 处理或者计费处理。
在第一种可能的实现方式中, 该 NAS设备具体用于识别该传输位置的 信息为第一位置信息, 确定该点到点业务报文来自终端侧, 将该点到点业务 报文转发给该双向处理装置, 或者, 接收该双向处理装置转发的该点到点业 务 文, 识别该传输位置的信息为第三位置信息, 确定已经对该源端进行了 控制处理或者计费处理, 将该点到点业务报文再次转发给该双向处理装置, 或者, 接收该双向处理装置转发的该点到点业务报文, 识别该传输位置的信 息为第五位置信息,确定已经对该源端和该对端进行了控制处理或者计费处 理, 将该点到点业务报文发向该对端; 该双向处理装置包括: 接收模块, 用 于接收该 NAS设备转发的该点到点业务报文; 识别模块, 用于识别该传输 位置的信息为第二位置信息,确定该点到点业务 文为首次进入该双向处理 装置, 触发该双向处理装置的第一分处理模块, 或者, 识别该传输位置的信 息为第四位置信息, 确定该点到点业务 文为第二次进入该双向处理装置, 触发该双向处理装置的第二分处理模块; 第一分处理模块, 用于针对该点到 点业务报文对该源端进行控制处理或者计费处理, 然后将该点到点业务报文 转发给该 NAS设备; 第二分处理模块, 用于针对该点到点业务报文对该对 端进行控制处理或者计费处理, 然后将该点到点业务报文转发给该 NAS设 备。
第三方面, 提供了一种网络侧通信网络, 包括: 网络接入服务器 NAS 设备、 网络设备和双向处理装置,该双向处理装置通过该网络设备与该 NAS 设备通信连接; 该 NAS设备用于接收业务报文, 根据该业务报文的源端和 对端的地址均为终端地址池中的地址确定该业务 文为点到点业务4艮文,识 别该点到点业务 文的传输位置的信息, 根据该传输位置的信息, 转发该点 到点业务 文, 其中, 该传输位置的信息包括传输该点到点业务 文的物理 端口信息、 虚拟局域网信息或者隧道信息; 该网络设备用于识别该传输位置 的信息, 根据该传输位置的信息, 转发该点到点业务 文; 该双向处理装置 用于识别该传输位置的信息, 根据该传输位置的信息, 针对该点到点业务报 文对该源端和该对端之一或者全部进行控制处理或者计费处理。
在第一种可能的实现方式中, 该 NAS设备具体用于识别该传输位置的 信息为第一位置信息, 确定该点到点业务报文来自终端侧, 将该点到点业务 报文转发给该网络设备, 或者, 接收该网络设备转发的该点到点业务报文, 识别该传输位置的信息为第七位置信息,确定该点到点业务报文来自该网络 设备, 将该点到点业务报文发向该对端; 该网络设备具体用于接收该 NAS 设备转发的该点到点业务 文, 识别该传输位置的信息为第二位置信息, 确 定该点到点业务报文来自该 NAS设备, 将该点到点业务报文转发给该双向 处理装置, 或者, 接收该双向处理装置转发的该点到点业务报文, 识别该传 输位置的信息为第四位置信息,确定已经对该源端进行了控制处理或者计费 处理, 将该点到点业务报文再次转发给该双向处理装置, 或者, 接收该双向 处理装置转发的该点到点业务报文, 识别该传输位置的信息为第六位置信 息, 确定已经对该源端和该对端进行了控制处理或者计费处理, 将该点到点 业务报文转发给该 NAS设备; 该双向处理装置包括: 接收模块, 用于接收 该网络设备转发的该点到点业务报文; 识别模块, 用于识别该传输位置的信 息为第三位置信息, 确定该点到点业务 文为首次进入该双向处理装置, 触 发该双向处理装置的第一分处理模块, 或者, 识别该传输位置的信息为第五 位置信息, 确定该点到点业务 文为第二次进入该双向处理装置, 触发该双 向处理装置的第二分处理模块; 第一分处理模块, 用于针对该点到点业务报 文对该源端进行控制处理或者计费处理, 然后将该点到点业务报文转发给该 网络设备; 第二分处理模块, 用于针对该点到点业务报文对该对端进行控制 处理或者计费处理, 然后将该点到点业务报文转发给该网络设备。
第四方面, 提供了一种网络接入服务器 NAS设备, 包括: 业务报文处 理模块, 用于接收业务报文, 根据该业务报文的源端和对端的地址均为终端 地址池中的地址确定该业务报文为点到点业务报文; 识别模块, 用于识别该 点到点业务 >¾文的传输位置的信息, 其中, 该传输位置的信息包括传输该点 到点业务报文的物理端口信息、 虚拟局域网信息或者隧道信息; 处理模块, 用于根据该识别模块识别的该传输位置的信息,针对该点到点业务报文对该 源端和该对端之一或者全部进行控制处理或者计费处理。
在第一种可能的实现方式中, 该处理模块具体用于根据该传输位置的信 息确定该点到点业务 文来自终端侧,针对该点到点业务 "¾文对该源端进行 控制处理或者计费处理。
在第二种可能的实现方式中, 结合第四方面的第一种可能的实现方式, 该处理模块具体用于确定该对端的地址是该 NAS设备管理的地址时, 针对 该点到点业务报文对该对端进行控制处理或者计费处理, 然后将该点到点业 务报文转发给该对端, 或者, 确定该对端的地址是其他 NAS设备管理的地 址时, 将该点到点业务报文转发给该其他 NAS设备。
在第三种可能的实现方式中, 该处理模块具体用于根据该传输位置的信 息确定该点到点业务 "¾文来自网络侧,针对该点到点业务 "¾文对该对端进行 控制处理或者计费处理, 然后将该点到点业务报文转发给该对端。
第五方面, 提供了一种点到点业务的双向处理装置, 包括:接收模块, 用 于接收网络侧设备转发的点到点业务报文; 识别模块, 用于根据该接收模块 接收的该点到点业务报文,识别该点到点业务报文的传输位置的信息,其中, 该传输位置的信息包括传输该点到点业务报文的物理端口信息、虚拟局域网 信息或者隧道信息; 处理模块, 用于根据该识别模块识别的该传输位置的信 息,针对该点到点业务报文对该点到点业务报文的源端和对端之一或者全部 进行控制处理或者计费处理, 然后将该点到点业务报文转发给该网络侧设 备。
在第一种可能的实现方式中, 该识别模块具体用于根据该接收模块接收 的该点到点业务报文, 识别该传输位置的信息, 确定该点到点业务报文为首 次进入该双向处理装置, 触发该处理模块中的第一分处理模块, 或者, 根据 该接收模块接收的该点到点业务报文, 识别该传输位置的信息, 确定该点到 点业务报文为第二次进入该双向处理装置,触发该处理模块中的第二分处理 模块; 该处理模块具体包括: 第一分处理模块, 用于针对该点到点业务报文 对该源端进行控制处理或者计费处理, 然后将该点到点业务报文转发给该网 络侧设备; 第二分处理模块, 用于针对该点到点业务报文对该对端进行控制 处理或者计费处理, 然后将该点到点业务报文转发给该网络侧设备。 在第二种可能的实现方式中, 结合第五方面或第五方面的第一种可能的 实现方式, 该双向处理装置位于网络接入服务器 NAS设备中, 与该 NAS设 备中的业务报文处理模块通信连接, 该网络侧设备为该 NAS设备中的业务 报文处理模块。
在第三种可能的实现方式中, 结合第五方面或第五方面的第一种可能的 实现方式, 该双向处理装置与 NAS设备通信连接, 该网络侧设备为该 NAS 设备。
在第四种可能的实现方式中, 结合第五方面或第五方面的第一种可能的 实现方式, 该双向处理装置通过网络设备与 NAS设备通信连接, 该网络侧 设备为该网络设备。
基于上述技术方案, 本发明实施例通过识别点到点业务 文的传输位置 的信息, 根据该传输位置的信息, 针对点到点业务报文对源端和对端之一或 者全部进行控制处理或者计费处理, 能够提高对点到点业务的用户进行控制 处理或者计费处理的灵活度。 附图说明
为了更清楚地说明本发明实施例的技术方案, 下面将对本发明实施例中 所需要使用的附图作筒单地介绍, 显而易见地, 下面描述中的附图仅仅是本 发明的一些实施例, 对于本领域普通技术人员来讲, 在不付出创造性劳动的 前提下, 还可以根据这些附图获得其他的附图。
图 la、图 lb和图 lc是根据本发明实施例的数据业务网络的系统架构示 意图。
图 2是根据本发明实施例的点到点业务处理的方法的示意性流程图。 图 3 是根据本发明实施例的点到点业务处理的方法的另一示意性流程 图。
图 4是根据本发明实施例的点到点业务处理的方法的交互示意图。
图 5 是根据本发明实施例的点到点业务处理的方法的又一示意性流程 图。
图 6是根据本发明实施例的点到点业务处理的方法的另一交互示意图。 图 7是根据本发明实施例的网络侧通信网络的示意性框图。
图 8是根据本发明另一实施例的网络侧通信网络的示意性框图。 图 9是根据本发明实施例的 NAS设备的示意性框图。
图 10是根据本发明实施例的双向处理装置的示意性框图。 具体实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行 清楚、 完整地描述, 显然, 所描述的实施例是本发明的一部分实施例, 而不 是全部实施例。 基于本发明中的实施例, 本领域普通技术人员在没有作出创 造性劳动的前提下所获得的所有其他实施例, 都应属于本发明保护的范围。
图 la、 图 lb和图 lc为实施方式中数据业务网络的系统架构示意图。 在 数据业务网络中,用户通过网络接入服务器(筒称 NAS设备, Network Access Server ), 例如, 宽带远程接入月良务器( Broadband Remote Access Server, 筒 称为 "BRAS" ), 网关 GPRS支持节点 ( gateway GPRS support node, 筒称 为 "GGSN" )、 分组数据服务节点 (Packet Data Serving Node , 筒称为 "PDSN" ) , 激活数据业务并接收数据业务服务。
在本发明实施例中, 可以通过提供新的 NAS设备 (包含双向处理装置, 参考图 la ),也可以通过部署与 NAS设备通信连接的双向处理装置(参考图 lb, 图 lc )来对点到点业务的双方, 即源端和对端, 进行计费处理或者控制 处理。 图 lb中, NAS设备和双向处理装置可以直接通信连接; 参考图 1 c , NAS 设备和双向处理装置之间也可以部署网络设备, 例如交换机或者路由 器。也就是说,本发明实施例中向双向处理装置转发报文的设备可以是 NAS 设备, 也可以是部署在 NAS设备和双向处理装置之间的网络设备。
为了使方案清楚, 将前文提到的 NAS设备、 双向处理装置、 网络设备 以及数据业务平台等网络侧的设备构成的系统称为网络侧通信网络。
图 2是根据本发明实施例的点到点业务处理的方法 100 的示意性流程 图。 如图 2所示, 该方法 100包括:
S110, 网络侧通信网络接收业务报文, 根据该业务报文的源端和对端的 地址均为终端地址池中的地址确定该业务 文为点到点业务 4艮文;
S120, 该网络侧通信网络识别该点到点业务报文的传输位置的信息, 根 据该传输位置的信息,针对该点到点业务报文对该源端和该对端之一或者全 部进行控制处理或者计费处理, 其中, 该传输位置的信息包括传输该点到点 业务 "¾文的物理端口信息、 虚拟局域网信息或者隧道信息。 在本发明实施例中,传输位置的信息是指业务报文在通信传输过程中经 过的通信网络的位置, 不应对本发明实施例构成任何限定。 网络侧通信网络 中为业务报文传输过程中经过的位置分配不同的标识, 以便于通过这些标 识, 网络中接收该业务报文的设备确定该业务报文的前一跳网络设备; 更进 一步的,可以根据业务报文的前一跳网络设备,结合有关的控制与计费策略, 确定是否针对该点到点业务报文对所述源端和所述对端之一或者全部进行 控制处理或者计费处理。
上述传输位置的信息可以是传输点到点业务"¾文的物理端口信息、虚拟 局域网 (Virtual Local Area Network, 筒称为 "VLAN" )信息, 例如 VLAN 的标识 VLAN ID, 或者, 隧道(Tunnel )信息, 例如隧道的标识 Tunnel ID。 更为具体的, VLAN信息是在数据报文中携带的, 物理端口信息以及隧道信 息是通过连接的物理链路来识别并区分的。 为方便理解, 物理端口指的是具 有物理意义的通信网络端口, 例如接收业务报文的以太网接口或者光纤接 口; VLAN指的是接收业务报文的网络设备与发送该业务报文的网络设备构 成的虚拟局域网,一般根据 VLAN ID来区分,具体而言,针对上行的 VLAN 和下行的 VLAN分配的标识是不一样的, 这样能区分业务报文的传输走向; Tunnel指的是接收业务报文的隧道信息, 在网络设备内部, 一般使用 Tunnel ID来区分。
本领域技术人员可以理解的是, 在上述控制处理或者计费处理过程中, 需要根据的信息至少包括针对该源端的控制与计费策略,针对该对端的控制 与计费策略, 或者上述两种控制与计费策略进行综合决策后的策略。 在各发 明实施例中,控制处理包括对用户访问的业务进行允许访问或者拒绝访问的 访问控制, 或带宽控制等; 计费处理包括对用户访问的业务进行流量计费, 时长计费或者按次计费, 或者三者组合的计费等。 在本发明实施例中, 可以 对用户访问的业务进行控制和计费, 也可以只进行控制或者只进行计费, 本 发明对此并不限定。
本各明实施例的技术方案不但可以应用于两个用户(一个源端到一个对 端)进行点到点业务的场景,还适用于多个用户之间发起的点到点业务场景, 因为多用户之间的报文交互最终都能转换成多个双方业务交互的场景。
本发明实施例的点到点业务处理的方法,通过识别点到点业务报文的传 输位置的信息, 根据该传输位置的信息, 针对点到点业务 文对源端和对端 之一或者全部进行控制处理或者计费处理, 能够实现对点到点业务的双方进 行控制处理或者计费处理。
具体来讲, 上述步骤 S120可以包括多种不同的处理: 根据该传输位置 的信息, 确定该点到点业务报文来自终端侧(源端)且未经过任何控制处理 或者计费处理, 则根据业务报文中的源端地址, 结合源端的控制与计费策略 进行针对源端的控制或者计费处理, 并确定该业务 文的下一跳(该下一跳 根据网络架构的不同会不同, 可能是 N A S设备中的双向处理装置自身, 可 能是 N A S设备发送给双向处理装置); 或者,
根据该传输位置的信息, 确定该点到点业务报文来自网络侧, 已经且只 结合源端的控制与计费策略进行了针对源端的控制或者计费的处理, 则根据 该业务报文中的对端地址, 结合对端的控制与计费策略进行针对对端的对应 的控制与计费处理, 并确定该业务 文的下一跳; 或者,
根据该传输位置的信息, 确定该点到点业务报文来自网络侧, 已经针对 源端和对端进行了对应的控制与计费策略, 则将业务报文发送给对端。
上述不同的情况可以因为网络架构的不同进行各种分解或者合并,整体 上不影响本发明实施方式的实现。 筒而言之, 上述方法, 通过将 "传输位置 的信息 "作为条件之一, 了解业务报文的处理进度、传输位置或者流程阶段, 结合相关控制与计费策略, 实现针对点到点业务的双方进行控制与计费的确 认与处理, 相对于现有技术中仅根据业务报文中的源端地址, 结合相关控制 与计费策略的方法, 能进一步灵活的或者高效的实现复杂的业务控制或者计 费。
因此, 可选地, 作为本发明的一个实施例, 该网络侧通信网络包括 NAS 设备和双向处理装置, 例如图 lb所示的网络架构;
在该网络架构下, 如图 3所示, S110包括:
S111 , 该 NAS设备接收该业务报文, 根据该业务报文的源端和对端的 地址均为终端地址池中的地址确定该业务 文为点到点业务 4艮文;
S120包括:
S121 , 该 NAS设备识别该传输位置的信息为第一位置信息, 确定该点 到点业务报文来自终端侧, 将该点到点业务报文转发给该双向处理装置; S122, 该双向处理装置接收该 NAS设备转发的该点到点业务 文, 识 别该传输位置的信息为第二位置信息,确定该点到点业务 文为首次进入该 双向处理装置, 针对该点到点业务报文对该源端进行控制处理或者计费处 理, 然后将该点到点业务报文转发给该 NAS设备;
5123 , 该 NAS设备接收该双向处理装置转发的该点到点业务 文, 识 别该传输位置的信息为第三位置信息,确定已经对该源端进行了控制处理或 者计费处理, 将该点到点业务报文再次转发给该双向处理装置;
5124, 该双向处理装置接收该 NAS设备转发的该点到点业务 文, 识 别该传输位置的信息为第四位置信息,确定该点到点业务 文为第二次进入 该双向处理装置,针对该点到点业务 >¾文对该对端进行控制处理或者计费处 理, 然后将该点到点业务报文转发给该 NAS设备;
S125, 该 NAS设备接收该双向处理装置转发的该点到点业务 文, 识 别该传输位置的信息为第五位置信息,确定已经对该源端和该对端进行了控 制处理或者计费处理, 将该点到点业务"¾文发向该对端。
下面结合图 4详细描述本发明实施例。 应注意, 这只是为了帮助本领域 技术人员更好地理解本发明实施例, 而非限制本发明实施例的范围。
图 4为一个图 lb所示通信系统中的方法示意图。该实施方式中,在 NAS 设备后面部署双向处理装置来对点到点业务进行计费处理或者控制处理。
该实施方式中以用户 A通过 NAS设备向用户 B发起点到点的业务呼叫 为例。
401 , NAS设备接收(例如, 从物理端口 1 , 或者 VLAN1 , 或者 Tunnel 1 接收 ) A发给 B的互联网协议( Internet Protocol , 筒称为 "IP" )数据报文, 根据该 文的源端和对端的地址均为终端地址池中的地址确定该 文为点 到点业务报文。
402, NAS设备识别该传输位置的信息为第一位置信息 (例如, 识别接 收该报文的物理端口为物理端口 1 ,或者该报文携带的 VLAN ID为 VLAN1 , 或者接收该报文的 Tunnel为 Tunnell ), 确定该点到点业务报文来自终端侧, 将该点到点业务报文转发给该双向处理装置 (例如, 通过物理端口 2 或者 VLAN2或者 Tunnel2路由至双向处理装置)。
403 , 双向处理装置接收(例如, 从与物理端口 2对应的物理端口 22, 或者 VLAN2, 或者 Tunnel2接收 )该 NAS设备转发的该点到点业务报文, 识别该传输位置的信息为第二位置信息(例如, 识别接收该报文的物理端口 为物理端口 22, 或者该报文携带的 VLAN ID为 VLAN2, 或者接收该报文 的 Tunnel为 Tunnel2 ), 确定该点到点业务 文为首次进入该双向处理装置, 针对该点到点业务报文对该源端进行控制处理或者计费处理, 即提取该报文 的源 IP地址作为用户标示进行相应的控制处理或计费处理(实例中是对 A 进行控制处理或计费处理 ),然后将该点到点业务报文转发给该 NAS设 例 如, 通过物理端口 3或者 VLAN3或者 Tunnel3转发给 NAS设备)。
404, NAS设备接收(例如, 从与物理端口 3对应的物理端口 33, 或者 VLAN3 , 或者 Tunnel3接收)该双向处理装置转发的该点到点业务报文, 识 别该传输位置的信息为第三位置信息(例如, 识别接收该报文的物理端口为 物理端口 33, 或者该报文携带的 VLAN ID为 VLAN3, 或者接收该报文的 Tunnel为 Tunnel3 ) , 确定该报文来自双向处理装置, 已经对该源端进行了控 制处理或者计费处理, 需要再次转发给双向处理装置进行处理, 将该点到点 业务报文再次转发给该双向处理装置 (例如, 通过物理端口 4或者 VLAN4 或者 Tunnel4再次转发给双向处理装置)。
405, 双向处理装置接收(例如, 从与物理端口 4对应的物理端口 44, 或者 VLAN4, 或者 Tunnel4接收 )该 NAS设备转发的该点到点业务报文, 识别该传输位置的信息为第四位置信息(例如, 识别接收该报文的物理端口 为物理端口 44, 或者该报文携带的 VLAN ID为 VLAN4, 或者接收该报文 的 Tunnel为 Tunnel4 ), 确定该点到点业务报文为第二次进入该双向处理装 置, 针对该点到点业务 文对该对端进行控制处理或者计费处理, 即提取该 报文的目的 IP地址作为用户标示进行相应控制处理或计费处理(实例中是 对 B进行控制处理或计费处理 ),然后将该点到点业务报文转发给该 NAS设 备(例如, 通过物理端口 5或者 VLAN5或者 Tunnel5转发给 NAS设备)。
406, NAS设备接收(例如, 从与物理端口 5对应的物理端口 55, 或者 VLAN5 , 或者 Tunnel5接收)该双向处理装置转发的该点到点业务报文, 识 别该传输位置的信息为第五位置信息(例如, 识别接收该报文的物理端口为 物理端口 55, 或者该报文携带的 VLAN ID为 VLAN5, 或者接收该报文的 Tunnel为 Tunnel5 ) , 确定该 文来自双向处理装置, 已经对该源端和该对端 进行了控制处理或者计费处理,将该点到点业务 "¾文发向该对端,即用户 B。
可选地, 若 NAS设备确定该报文来自网络侧, 即该报文是其他 NAS设 备转发过来的, 则不用将报文转发给双向处理装置, 直接将该报文发向对端 (因为在其他 NAS设备侧已经进行了控制处理或计费处理)。 因此, 本发明实施例的点到点业务处理的方法, 通过部署双向处理装置 对点到点业务进行控制处理或计费处理, NAS设备将点到点业务报文两次转 发给双向处理装置, 双向处理装置根据传输位置的信息, 第一次接收到该报 文时对源端进行控制处理或计费处理, 第二次接收到该报文时对对端进行控 制处理或计费处理, 能够在不对 NAS设备进行大的改造和大的升级的前提 下同时对点到点业务的双方进行控制处理或计费处理。
可选地, 作为本发明的又一个实施例, 该网络侧通信网络包括 NAS设 备、 网络设备和双向处理装置, 例如图 lc所示的网络架构;
在该网络架构下, 如图 5所示, S110包括:
S111 , 该 NAS设备接收该业务报文, 根据该业务报文的源端和对端的 地址均为终端地址池中的地址确定该业务 文为点到点业务 4艮文;
S120包括:
S126, 该 NAS设备识别该传输位置的信息为第一位置信息, 确定该点 到点业务报文来自终端侧, 将该点到点业务报文转发给该网络设备;
S127, 该网络设备接收该 NAS设备转发的该点到点业务报文, 识别该 传输位置的信息为第二位置信息,确定该点到点业务报文来自该 NAS设备, 将该点到点业务报文转发给该双向处理装置;
5128 , 该双向处理装置接收该网络设备转发的该点到点业务报文, 识别 该传输位置的信息为第三位置信息,确定该点到点业务 文为首次进入该双 向处理装置, 针对该点到点业务>¾文对该源端进行控制处理或者计费处理, 然后将该点到点业务报文转发给该网络设备;
5129, 该网络设备接收该双向处理装置转发的该点到点业务报文, 识别 该传输位置的信息为第四位置信息,确定已经对该源端进行了控制处理或者 计费处理, 将该点到点业务报文再次转发给该双向处理装置;
S131 , 该双向处理装置接收该网络设备转发的该点到点业务报文, 识别 该传输位置的信息为第五位置信息,确定该点到点业务 文为第二次进入该 双向处理装置, 针对该点到点业务报文对该对端进行控制处理或者计费处 理, 然后将该点到点业务报文转发给该网络设备;
S132, 该网络设备接收该双向处理装置转发的该点到点业务报文, 识别 该传输位置的信息为第六位置信息,确定已经对该源端和该对端进行了控制 处理或者计费处理, 将该点到点业务报文转发给该 NAS设备; S133, 该 NAS设备接收该网络设备转发的该点到点业务报文, 识别该 传输位置的信息为第七位置信息, 确定该点到点业务 文来自该网络设备, 将该点到点业务"¾文发向该对端。
下面结合图 6详细描述本发明实施例。 应注意, 这只是为了帮助本领域 技术人员更好地理解本发明实施例, 而非限制本发明实施例的范围。
图 6为一个图 lc所示通信系统中的方法示意图。该实施方式中,在 NAS 设备后面部署双向处理装置来对点到点业务进行计费处理或者控制处理, 并 在 NAS设备和双向处理装置之间部署网络设备。
该实施方式中以用户 A通过 NAS设备向用户 B发起点到点的业务呼叫 为例。
601 , NAS设备接收(例如, 从物理端口 1 , 或者 VLAN1 , 或者 Tunnel 1 接收) A发给 B的 IP数据报文, 根据该报文的源端和对端的地址均为终端 地址池中的地址确定该4艮文为点到点业务 4艮文。
602, NAS设备识别该传输位置的信息为第一位置信息 (例如, 识别接 收该报文的物理端口为物理端口 1 ,或者该报文携带的 VLAN ID为 VLAN1 , 或者接收该报文的 Tunnel为 Tunnell ), 确定该点到点业务报文来自终端侧, 将该点到点业务报文转发给该网络设备(例如,通过物理端口 2或者 VLAN2 或者 Tunnel2路由至网络设备)。
603, 网络设备接收(例如, 从与物理端口 2对应的物理端口 22, 或者 VLAN2, 或者 Tunnel2接收)该 NAS设备转发的该点到点业务报文, 识别 该传输位置的信息为第二位置信息(例如, 识别接收该报文的物理端口为物 理端口 22,或者该报文携带的 VLAN ID为 VLAN2,或者接收该报文的 Tunnel 为 Tunnel2 ), 确定该点到点业务报文来自该 NAS设备, 将该点到点业务报 文转发给该双向处理装置(例如,通过物理端口 3或者 VLAN3或者 Tunnel3 转发到双向处理装置)。 可选地, 可在网络设备上配置用户侧 IP地址池或者 IP地址范围, 网络设备通过源端和对端的 IP均为用户侧 IP地址来判断为点 到点业务报文。
604, 双向处理装置接收(例如, 从与物理端口 3对应的物理端口 33, 或者 VLAN3, 或者 Tunnel3接收)该网络设备转发的该点到点业务报文, 识别该传输位置的信息为第三位置信息(例如, 识别接收该报文的物理端口 为物理端口 33, 或者该报文携带的 VLAN ID为 VLAN3, 或者接收该报文 的 Tunnel为 Tunnel3 ), 确定该点到点业务 文为首次进入该双向处理装置, 针对该点到点业务报文对该源端进行控制处理或者计费处理, 即提取该报文 的源 IP地址作为用户标示进行相应的控制处理或计费处理(实例中是对 A 进行控制处理或计费处理 ),然后将该点到点业务报文转发给该网络设备(例 如, 通过物理端口 4或者 VLAN4或者 Tunnel4转发给网络设备)。
605 , 网络设备接收(例如, 从与物理端口 4对应的物理端口 44, 或者 VLAN4, 或者 Tunnel4接收)该双向处理装置转发的该点到点业务报文, 识 别该传输位置的信息为第四位置信息(例如, 识别接收该报文的物理端口为 物理端口 44, 或者该报文携带的 VLAN ID为 VLAN4, 或者接收该报文的 Tunnel为 Tunnel4 ), 确定该报文来自双向处理装置, 已经对该源端进行了控 制处理或者计费处理, 需要再次转发给双向处理装置进行处理, 将该点到点 业务报文再次转发给该双向处理装置 (例如, 通过物理端口 5或者 VLAN5 或者 Tunnel5再次转发给双向处理装置)。
606, 双向处理装置接收(例如, 从与物理端口 5对应的物理端口 55 , 或者 VLAN5 , 或者 Tunnel5接收)该网络设备转发的该点到点业务报文, 识别该传输位置的信息为第五位置信息(例如, 识别接收该报文的物理端口 为物理端口 55 , 或者该报文携带的 VLAN ID为 VLAN5 , 或者接收该报文 的 Tunnel为 Tunnel5 ), 确定该点到点业务报文为第二次进入该双向处理装 置, 针对该点到点业务 文对该对端进行控制处理或者计费处理, 即提取该 报文的目的 IP地址作为用户标示进行相应控制处理或计费处理(实例中是 对 B进行控制处理或计费处理), 然后将该点到点业务报文转发给该网络设 备(例如, 通过物理端口 6或者 VLAN6或者 Tunnel6转发给网络设备)。
607, 网络设备接收(例如, 从与物理端口 6对应的物理端口 66, 或者 VLAN6, 或者 Tunnel6接收)该双向处理装置转发的该点到点业务报文, 识 别该传输位置的信息为第六位置信息(例如, 识别接收该报文的物理端口为 物理端口 66, 或者该报文携带的 VLAN ID为 VLAN6, 或者接收该报文的 Tunnel为 Tunnel6 ), 确定该报文来自双向处理装置, 已经对该源端和该对端 进行了控制处理或者计费处理,将该点到点业务报文转发给该 NAS设备(例 如, 通过物理端口 7或者 VLAN7或者 Tunnel7转发给 NAS设备 )。
608 , NAS设备接收(例如, 从与物理端口 7对应的物理端口 77, 或者
VLAN7 , 或者 Tunnel7接收)该网络设备转发的该点到点业务报文, 识别该 传输位置的信息为第七位置信息(例如, 识别接收该报文的物理端口为物理 端口 77,或者该报文携带的 VLAN ID为 VLAN7,或者接收该报文的 Tunnel 为 Tunnel7 ), 确定该点到点业务报文来自该网络设备, 将该点到点业务报文 发向该对端, 即用户 B。
可选地, 若 NAS设备确定该报文来自网络侧, 则不用将报文转发给网 络设备 (因为在其他 NAS设备侧已经进行了控制处理或计费处理)。
因此, 本发明实施例的点到点业务处理的方法, 通过部署双向处理装置 对点到点业务进行控制处理或计费处理, 并在 NAS设备和双向处理装置之 间部署网络设备将点到点业务报文两次转发给双向处理装置, 双向处理装置 根据传输位置的信息, 第一次接收到该报文时对源端进行控制处理或计费处 理, 第二次接收到该报文时对对端进行控制处理或计费处理, 能够在不对 NAS 设备进行大的改造和大的升级的前提下同时对点到点业务的双方进行 控制处理或计费处理, 而且还能减轻 NAS设备的配置压力。
应理解, 在本发明实施例中, 双向处理装置可以单独部署, 也可以和网 关设备合设, 换句话说, 双向处理装置可以是单独的设备, 也可以是网关设 备。
可选地, 作为本发明的又一个实施例, 该网络侧通信网络包括 NAS设 备, 例如图 la所示的网络架构;
在该网络架构下, S120包括:
该 NAS设备根据该传输位置的信息确定该点到点业务报文来自终端侧, 针对该点到点业务 文对该源端进行控制处理或者计费处理。
可选地, S120进一步包括:
该 NAS设备确定该对端的地址是该 NAS设备管理的地址时,针对该点 到点业务报文对该对端进行控制处理或者计费处理, 然后将该点到点业务报 文转发给该对端, 或者, 确定该对端的地址是其他 NAS设备管理的地址时, 将该点到点业务报文转发给该其他 NAS设备。
具体而言, 在本发明实施例中, 为了实现对点到点业务的双方进行控制 处理或计费处理, 对现有的 NAS设备进行改造。 NAS设备接收业务报文, 才艮据该业务 4艮文的源端和对端的地址均为终端地址池中的地址确定该业务 报文为点到点业务报文, 进而识别该点到点业务报文的传输位置的信息, 根 据该传输位置的信息确定该报文是否来自终端侧, 若来自终端侧, 则对该源 端进行控制处理或计费处理, 即提取该报文的源 IP地址作为用户标识进行 控制处理或计费处理, 并判断该对端地址是否是该 NAS设备管理的地址, 若该对端地址是该 NAS设备管理的地址, 则对该对端进行控制处理或计费 处理, 即提取该报文的目的 IP地址作为用户标示进行控制处理或计费处理, 然后将该报文转发给该对端, 或者, 若该对端地址是其他 NAS设备管理的 地址, 则将该报文转发给该其他 NAS设备。
可选地, S120包括:
该 NAS设备根据该传输位置的信息确定该点到点业务报文来自网络侧, 针对该点到点业务 文对该对端进行控制处理或者计费处理, 然后将该点到 点业务报文转发给该对端。
具体而言, 若该报文来自网络侧, 即该报文是其他 NAS设备转发过来 的, 因为在其他 NAS设备侧已经对源端进行了控制处理或计费处理, 因此 只需对该报文的对端进行控制处理或计费处理, 即提取该报文的目的 IP地 址作为用户标示进行控制处理或计费处理, 然后将该报文转发给该对端。
因此, 本发明实施例的点到点业务处理的方法, 通过 NAS设备分别对 源端和对端进行控制处理或计费处理, 能够实现对点到点业务的双方进行控 制处理或计费处理。
应理解, 在本发明的各种实施例中, 上述各过程的序号的大小并不意味 着执行顺序的先后, 各过程的执行顺序应以其功能和内在逻辑确定, 而不应 对本发明实施例的实施过程构成任何限定。
上文中结合图 1至图 6, 详细描述了根据本发明实施例的点到点业务处 理的方法, 下面将结合图 7至图 10,描述根据本发明实施例的网络侧通信网 络、 NAS设备和点到点业务的双向处理装置。
图 7示出了根据本发明实施例的网络侧通信网络 200的示意性框图。如 图 7所示,该网络侧通信网络 200包括: NAS设备 210和双向处理装置 220, 该 NAS设备 210与该双向处理装置 220通信连接;
该 NAS设备 210用于接收业务报文, 根据该业务报文的源端和对端的 地址均为终端地址池中的地址确定该业务>¾文为点到点业务 >¾文,识别该点 到点业务报文的传输位置的信息, 根据该传输位置的信息, 转发该点到点业 务 文, 其中, 该传输位置的信息包括传输该点到点业务 文的物理端口信 息、 虚拟局域网信息或者隧道信息; 该双向处理装置 220用于识别该传输位置的信息,根据该传输位置的信 息,针对该点到点业务报文对该源端和该对端之一或者全部进行控制处理或 者计费处理。
本发明实施例的网络侧通信网络,通过识别点到点业务报文的传输位置 的信息, 根据该传输位置的信息, 针对点到点业务报文对源端和对端之一或 者全部进行控制处理或者计费处理, 能够灵活的或者高效的实现对点到点业 务的用户进行控制处理或者计费处理。
可选地, 该 NAS210设备具体用于识别该传输位置的信息为第一位置信 息, 确定该点到点业务报文来自终端侧, 将该点到点业务报文转发给该双向 处理装置, 或者, 接收该双向处理装置转发的该点到点业务报文, 识别该传 输位置的信息为第三位置信息,确定已经对该源端进行了控制处理或者计费 处理, 将该点到点业务报文再次转发给该双向处理装置, 或者, 接收该双向 处理装置转发的该点到点业务报文, 识别该传输位置的信息为第五位置信 息, 确定已经对该源端和该对端进行了控制处理或者计费处理, 将该点到点 业务 "¾文发向该对端;
该双向处理装置 220包括:
接收模块 221 , 用于接收该 NAS设备转发的该点到点业务报文; 识别模块 222, 用于识别该传输位置的信息为第二位置信息, 确定该点 到点业务"¾文为首次进入该双向处理装置,触发该双向处理装置的第一分处 理模块 223, 或者, 识别该传输位置的信息为第四位置信息, 确定该点到点 业务 文为第二次进入该双向处理装置,触发该双向处理装置的第二分处理 模块 224;
第一分处理模块 223, 用于针对该点到点业务 文对该源端进行控制处 理或者计费处理, 然后将该点到点业务报文转发给该 NAS设备;
第二分处理模块 224, 用于针对该点到点业务 "¾文对该对端进行控制处 理或者计费处理, 然后将该点到点业务报文转发给该 NAS设备。
根据本发明实施例的网络侧通信网络 200可对应于图 lb所示的系统, 并且网络侧通信网络 200 中的各个模块的上述和其它操作和 /或功能分别为 了实现图 2至图 4中的各个方法的相应流程, 为了筒洁, 在此不再赘述。
本发明实施例的网络侧通信网络,通过部署双向处理装置对点到点业务 进行控制处理或计费处理, NAS设备将点到点业务报文两次转发给双向处理 装置, 双向处理装置根据传输位置的信息, 第一次接收到该报文时对源端进 行控制处理或计费处理, 第二次接收到该 文时对对端进行控制处理或计费 处理, 能够在不对 NAS设备进行大的改造和大的升级的前提下同时对点到 点业务的双方进行控制处理或计费处理。
图 8示出了根据本发明实施例的网络侧通信网络 300的示意性框图。如 图 8所示, 该网络侧通信网络 300包括: NAS设备 310、 网络设备 320和双 向处理装置 330, 该双向处理装置 330通过该网络设备 320与该 NAS设备 310通信连接;
该 NAS设备 310用于接收业务报文, 根据该业务报文的源端和对端的 地址均为终端地址池中的地址确定该业务 文为点到点业务 4艮文,识别该点 到点业务报文的传输位置的信息, 根据该传输位置的信息, 转发该点到点业 务 文, 其中, 该传输位置的信息包括传输该点到点业务 文的物理端口信 息、 虚拟局域网信息或者隧道信息;
该网络设备 320用于识别该传输位置的信息, 根据该传输位置的信息, 转发该点到点业务 文;
该双向处理装置 330用于识别该传输位置的信息,根据该传输位置的信 息,针对该点到点业务报文对该源端和该对端之一或者全部进行控制处理或 者计费处理。
本发明实施例的网络侧通信网络,通过识别点到点业务报文的传输位置 的信息, 根据该传输位置的信息, 针对点到点业务报文对源端和对端之一或 者全部进行控制处理或者计费处理, 能够更灵活或者高效地实现对点到点业 务的用户进行控制处理或者计费处理。
可选地, 该 NAS设备 310具体用于识别该传输位置的信息为第一位置 信息, 确定该点到点业务报文来自终端侧, 将该点到点业务报文转发给该网 络设备, 或者, 接收该网络设备转发的该点到点业务报文, 识别该传输位置 的信息为第七位置信息, 确定该点到点业务报文来自该网络设备, 将该点到 点业务 >¾文发向该对端;
该网络设备 320具体用于接收该 NAS设备转发的该点到点业务报文, 识别该传输位置的信息为第二位置信息,确定该点到点业务 文来自该 NAS 设备, 将该点到点业务报文转发给该双向处理装置, 或者, 接收该双向处理 装置转发的该点到点业务 文, 识别该传输位置的信息为第四位置信息, 确 定已经对该源端进行了控制处理或者计费处理,将该点到点业务 >¾文再次转 发给该双向处理装置,或者,接收该双向处理装置转发的该点到点业务报文, 识别该传输位置的信息为第六位置信息,确定已经对该源端和该对端进行了 控制处理或者计费处理, 将该点到点业务报文转发给该 NAS设备;
该双向处理装置 330包括:
接收模块 331 , 用于接收该网络设备转发的该点到点业务报文; 识别模块 332, 用于识别该传输位置的信息为第三位置信息, 确定该点 到点业务"¾文为首次进入该双向处理装置,触发该双向处理装置的第一分处 理模块 333 , 或者, 识别该传输位置的信息为第五位置信息, 确定该点到点 业务 文为第二次进入该双向处理装置,触发该双向处理装置的第二分处理 模块 334;
第一分处理模块 333 , 用于针对该点到点业务 文对该源端进行控制处 理或者计费处理, 然后将该点到点业务报文转发给该网络设备;
第二分处理模块 334, 用于针对该点到点业务 文对该对端进行控制处 理或者计费处理, 然后将该点到点业务报文转发给该网络设备。
根据本发明实施例的网络侧通信网络 300可对应于图 lc所示的系统, 并且网络侧通信网络 300 中的各个模块的上述和其它操作和 /或功能分别为 了实现图 2、 图 5和图 6中的各个方法的相应流程, 为了筒洁, 在此不再赘 述。
本发明实施例的网络侧通信网络,通过部署双向处理装置对点到点业务 进行控制处理或计费处理, 并在 NAS设备和双向处理装置之间部署网络设 备将点到点业务报文两次转发给双向处理装置, 双向处理装置根据传输位置 的信息, 第一次接收到该报文时对源端进行控制处理或计费处理, 第二次接 收到该报文时对对端进行控制处理或计费处理, 能够在不对 NAS设备进行 大的改造和大的升级的前提下同时对点到点业务的双方进行控制处理或计 费处理, 而且还能减轻 NAS设备的配置压力。
图 9是根据本发明实施例的 NAS设备 400的示意性框图。如图 9所示, 该 NAS设备 400包括:
业务报文处理模块 410, 用于接收业务报文, 根据该业务报文的源端和 对端的地址均为终端地址池中的地址确定该业务 文为点到点业务4艮文; 识别模块 420, 用于识别该点到点业务报文的传输位置的信息, 其中, 该传输位置的信息包括传输该点到点业务报文的物理端口信息、虚拟局域网 信息或者隧道信息;
处理模块 430, 用于根据该识别模块 420识别的该传输位置的信息, 针 对该点到点业务报文对该源端和该对端之一或者全部进行控制处理或者计 费处理。
可选地, 该处理模块 430具体用于根据该传输位置的信息确定该点到点 业务 文来自终端侧,针对该点到点业务 文对该源端进行控制处理或者计 费处理。
可选地, 该处理模块 430具体用于确定该对端的地址是该 NAS设备管 理的地址时, 针对该点到点业务 文对该对端进行控制处理或者计费处理, 然后将该点到点业务报文转发给该对端, 或者, 确定该对端的地址是其他
NAS设备管理的地址时, 将该点到点业务报文转发给该其他 NAS设备。
可选地, 该处理模块 430具体用于根据该传输位置的信息确定该点到点 业务 "¾文来自网络侧,针对该点到点业务 文对该对端进行控制处理或者计 费处理, 然后将该点到点业务报文转发给该对端。
本发明实施例的 NAS设备, 通过分别对源端和对端进行控制处理或计 费处理, 能够实现对点到点业务的双方进行控制处理或计费处理。
图 10是根据本发明实施例的点到点业务的双向处理装置 500的示意性 框图。 如图 10所示, 该双向处理装置 500包括:
接收模块 510, 用于接收网络侧设备转发的点到点业务报文;
识别模块 520, 用于根据该接收模块 510接收的该点到点业务报文, 识 别该点到点业务 文的传输位置的信息, 其中, 该传输位置的信息包括传输 该点到点业务报文的物理端口信息、 虚拟局域网信息或者隧道信息;
处理模块 530, 用于根据该识别模块 520识别的该传输位置的信息, 针 对该点到点业务报文对该点到点业务报文的源端和对端之一或者全部进行 控制处理或者计费处理, 然后将该点到点业务报文转发给该网络侧设备。
可选地, 该识别模块 520具体用于根据该接收模块 510接收的该点到点 业务 文, 识别该传输位置的信息, 确定该点到点业务 文为首次进入该双 向处理装置, 触发该处理模块 530中的第一分处理模块 531 , 或者, 根据该 接收模块 510接收的该点到点业务报文, 识别该传输位置的信息, 确定该点 到点业务"¾文为第二次进入该双向处理装置,触发该处理模块 530中的第二 分处理模块 532;
该处理模块 530具体包括:
第一分处理模块 531 , 用于针对该点到点业务 文对该源端进行控制处 理或者计费处理, 然后将该点到点业务报文转发给该网络侧设备;
第二分处理模块 532, 用于针对该点到点业务 文对该对端进行控制处 理或者计费处理, 然后将该点到点业务报文转发给该网络侧设备。
可选地, 该双向处理装置 500位于网络接入服务器 NAS设备中, 与该 NAS设备中的业务报文处理模块通信连接, 该网络侧设备为该 NAS设备中 的业务报文处理模块。
可选地, 该双向处理装置 500与 NAS设备通信连接, 该网络侧设备为 该 NAS设备。
可选地, 该双向处理装置 500通过网络设备与 NAS设备通信连接, 该 网络侧设备为该网络设备。
本发明实施例的点到点业务的双向处理装置,通过识别点到点业务 >¾文 的传输位置的信息, 根据该传输位置的信息, 针对该点到点业务 文对该点 到点业务报文的源端和对端之一或者全部进行控制处理或者计费处理, 能够 实现对点到点业务的双方进行控制处理或计费处理。
应理解, 在本发明实施例中, 术语 "和 /或"仅仅是一种描述关联对象的 关联关系, 表示可以存在三种关系。 例如, A和 /或 B , 可以表示: 单独存在 A, 同时存在 A和 B, 单独存在 B这三种情况。 另外, 本文中字符 "/" , 一 般表示前后关联对象是一种 "或" 的关系。
本领域普通技术人员可以意识到, 结合本文中所公开的实施例描述的各 示例的单元及算法步骤, 能够以电子硬件、 计算机软件或者二者的结合来实 现, 为了清楚地说明硬件和软件的可互换性, 在上述说明中已经按照功能一 般性地描述了各示例的组成及步骤。这些功能究竟以硬件还是软件方式来执 行, 取决于技术方案的特定应用和设计约束条件。 专业技术人员可以对每个 特定的应用来使用不同方法来实现所描述的功能,但是这种实现不应认为超 出本发明的范围。
所属领域的技术人员可以清楚地了解到, 为了描述的方便和筒洁, 上述 描述的系统、 装置和单元的具体工作过程, 可以参考前述方法实施例中的对 应过程, 在此不再赘述。 在本申请所提供的几个实施例中, 应该理解到, 所揭露的系统、 装置和 方法, 可以通过其它的方式实现。 例如, 以上所描述的装置实施例仅仅是示 意性的, 例如, 所述单元的划分, 仅仅为一种逻辑功能划分, 实际实现时可 以有另外的划分方式, 例如多个单元或组件可以结合或者可以集成到另一个 系统, 或一些特征可以忽略, 或不执行。 另外, 所显示或讨论的相互之间的 耦合或直接耦合或通信连接可以是通过一些接口、装置或单元的间接耦合或 通信连接, 也可以是电的, 机械的或其它的形式连接。
所述作为分离部件说明的单元可以是或者也可以不是物理上分开的,作 为单元显示的部件可以是或者也可以不是物理单元, 即可以位于一个地方, 或者也可以分布到多个网络单元上。可以根据实际的需要选择其中的部分或 者全部单元来实现本发明实施例方案的目的。
另外, 在本发明各个实施例中的各功能单元可以集成在一个处理单元 中, 也可以是各个单元单独物理存在, 也可以是两个或两个以上单元集成在 一个单元中。 上述集成的单元既可以采用硬件的形式实现, 也可以采用软件 功能单元的形式实现。
所述集成的单元如果以软件功能单元的形式实现并作为独立的产品销 售或使用时, 可以存储在一个计算机可读取存储介质中。 基于这样的理解, 本发明的技术方案本质上或者说对现有技术做出贡献的部分, 或者该技术方 案的全部或部分可以以软件产品的形式体现出来,该计算机软件产品存储在 一个存储介质中, 包括若干指令用以使得一台计算机设备(可以是个人计算 机, 服务器, 或者网络设备等)执行本发明各个实施例所述方法的全部或部 分步骤。 而前述的存储介质包括: U盘、 移动硬盘、 只读存储器(ROM, Read-Only Memory )、 随机存取存储器 ( RAM, Random Access Memory )、 磁碟或者光盘等各种可以存储程序代码的介质。
以上所述, 仅为本发明的具体实施方式, 但本发明的保护范围并不局限 于此, 任何熟悉本技术领域的技术人员在本发明揭露的技术范围内, 可轻易 想到各种等效的修改或替换, 这些修改或替换都应涵盖在本发明的保护范围 之内。 因此, 本发明的保护范围应以权利要求的保护范围为准。

Claims

权利要求
1. 一种点到点业务处理的方法, 包括:
网络侧通信网络接收业务报文,根据所述业务报文的源端和对端的地址 均为终端地址池中的地址确定所述业务 "¾文为点到点业务 文;
所述网络侧通信网络识别所述点到点业务报文的传输位置的信息,根据 所述传输位置的信息,针对所述点到点业务报文对所述源端和所述对端之一 或者全部进行控制处理或者计费处理, 其中, 所述传输位置的信息包括传输 所述点到点业务 "¾文的物理端口信息、 虚拟局域网信息或者隧道信息。
2. 根据权利要求 1所述的方法, 所述网络侧通信网络包括网络接入服 务器 NAS设备和双向处理装置;
所述网络侧通信网络接收业务报文,根据所述业务报文的源端和对端的 地址均为终端地址池中的地址确定所述业务>¾文为点到点业务4艮文, 包括: 所述 NAS设备接收所述业务报文, 根据所述业务报文的源端和对端的 地址均为终端地址池中的地址确定所述业务>¾文为点到点业务4艮文;
所述网络侧通信网络识别所述点到点业务报文的传输位置的信息,根据 所述传输位置的信息,针对所述点到点业务报文对所述源端和所述对端之一 或者全部进行控制处理或者计费处理, 包括:
所述 NAS设备识别所述传输位置的信息为第一位置信息, 确定所述点 到点业务报文来自终端侧, 将所述点到点业务报文转发给所述双向处理装 置;
所述双向处理装置接收所述 NAS设备转发的所述点到点业务报文, 识 别所述传输位置的信息为第二位置信息,确定所述点到点业务 文为首次进 入所述双向处理装置,针对所述点到点业务 >¾文对所述源端进行控制处理或 者计费处理, 然后将所述点到点业务报文转发给所述 NAS设备;
所述 NAS设备接收所述双向处理装置转发的所述点到点业务报文, 识 别所述传输位置的信息为第三位置信息,确定已经对所述源端进行了控制处 理或者计费处理, 将所述点到点业务报文再次转发给所述双向处理装置; 所述双向处理装置接收所述 NAS设备转发的所述点到点业务报文, 识 别所述传输位置的信息为第四位置信息,确定所述点到点业务 文为第二次 进入所述双向处理装置,针对所述点到点业务报文对所述对端进行控制处理 或者计费处理, 然后将所述点到点业务报文转发给所述 NAS设备; 所述 NAS设备接收所述双向处理装置转发的所述点到点业务"¾文, 识 别所述传输位置的信息为第五位置信息,确定已经对所述源端和所述对端进 行了控制处理或者计费处理, 将所述点到点业务 文发向所述对端。
3. 根据权利要求 1所述的方法, 所述网络侧通信网络包括 NAS设备、 网络设备和双向处理装置;
所述网络侧通信网络接收业务报文,根据所述业务报文的源端和对端的 地址均为终端地址池中的地址确定所述业务>¾文为点到点业务4艮文, 包括: 所述 NAS设备接收所述业务报文, 根据所述业务报文的源端和对端的 地址均为终端地址池中的地址确定所述业务>¾文为点到点业务4艮文;
所述网络侧通信网络识别所述点到点业务报文的传输位置的信息,根据 所述传输位置的信息,针对所述点到点业务报文对所述源端和所述对端之一 或者全部进行控制处理或者计费处理, 包括:
所述 NAS设备识别所述传输位置的信息为第一位置信息, 确定所述点 到点业务报文来自终端侧, 将所述点到点业务报文转发给所述网络设备; 所述网络设备接收所述 NAS设备转发的所述点到点业务报文, 识别所 述传输位置的信息为第二位置信息,确定所述点到点业务报文来自所述 NAS 设备, 将所述点到点业务报文转发给所述双向处理装置;
所述双向处理装置接收所述网络设备转发的所述点到点业务报文,识别 所述传输位置的信息为第三位置信息,确定所述点到点业务 文为首次进入 所述双向处理装置,针对所述点到点业务 文对所述源端进行控制处理或者 计费处理, 然后将所述点到点业务报文转发给所述网络设备;
所述网络设备接收所述双向处理装置转发的所述点到点业务 >¾文 ,识别 所述传输位置的信息为第四位置信息,确定已经对所述源端进行了控制处理 或者计费处理, 将所述点到点业务报文再次转发给所述双向处理装置;
所述双向处理装置接收所述网络设备转发的所述点到点业务 >¾文,识别 所述传输位置的信息为第五位置信息,确定所述点到点业务报文为第二次进 入所述双向处理装置,针对所述点到点业务 >¾文对所述对端进行控制处理或 者计费处理, 然后将所述点到点业务报文转发给所述网络设备;
所述网络设备接收所述双向处理装置转发的所述点到点业务 >¾文 ,识别 所述传输位置的信息为第六位置信息,确定已经对所述源端和所述对端进行 了控制处理或者计费处理, 将所述点到点业务报文转发给所述 NAS设备; 所述 NAS设备接收所述网络设备转发的所述点到点业务报文, 识别所 述传输位置的信息为第七位置信息,确定所述点到点业务 文来自所述网络 设备, 将所述点到点业务报文发向所述对端。
4. 根据权利要求 1所述的方法, 所述网络侧通信网络包括 NAS设备; 所述网络侧通信网络根据所述传输位置的信息,针对所述点到点业务报 文对所述源端和所述对端之一或者全部进行控制处理或者计费处理, 包括: 所述 NAS设备根据所述传输位置的信息确定所述点到点业务报文来自 终端侧, 针对所述点到点业务 "¾文对所述源端进行控制处理或者计费处理。
5. 根据权利要求 4所述的方法, 所述网络侧通信网络根据所述传输位 置的信息,针对所述点到点业务报文对所述源端和所述对端之一或者全部进 行控制处理或者计费处理, 进一步包括:
所述 NAS设备确定所述对端的地址是所述 NAS设备管理的地址时,针 对所述点到点业务 "¾文对所述对端进行控制处理或者计费处理, 然后将所述 点到点业务报文转发给所述对端, 或者, 确定所述对端的地址是其他 NAS 设备管理的地址时, 将所述点到点业务报文转发给所述其他 NAS设备。
6. 根据权利要求 1所述的方法, 所述网络侧通信网络包括 NAS设备; 所述网络侧通信网络根据所述传输位置的信息,针对所述点到点业务报 文对所述源端和所述对端之一或者全部进行控制处理或者计费处理, 包括: 所述 NAS设备根据所述传输位置的信息确定所述点到点业务报文来自 网络侧, 针对所述点到点业务 "¾文对所述对端进行控制处理或者计费处理, 然后将所述点到点业务报文转发给所述对端。
7. 一种网络侧通信网络, 包括: 网络接入服务器 NAS设备和双向处理 装置, 所述 NAS设备与所述双向处理装置通信连接;
所述 NAS设备用于接收业务报文, 根据所述业务报文的源端和对端的 地址均为终端地址池中的地址确定所述业务 文为点到点业务 文,识别所 述点到点业务报文的传输位置的信息, 根据所述传输位置的信息, 转发所述 点到点业务报文, 其中, 所述传输位置的信息包括传输所述点到点业务报文 的物理端口信息、 虚拟局域网信息或者隧道信息;
所述双向处理装置用于识别所述传输位置的信息,根据所述传输位置的 信息,针对所述点到点业务报文对所述源端和所述对端之一或者全部进行控 制处理或者计费处理。
8. 根据权利要求 7所述的网络侧通信网络, 所述 NAS设备具体用于识 别所述传输位置的信息为第一位置信息,确定所述点到点业务 文来自终端 侧, 将所述点到点业务报文转发给所述双向处理装置, 或者, 接收所述双向 处理装置转发的所述点到点业务 文,识别所述传输位置的信息为第三位置 信息, 确定已经对所述源端进行了控制处理或者计费处理, 将所述点到点业 务报文再次转发给所述双向处理装置, 或者, 接收所述双向处理装置转发的 所述点到点业务 文, 识别所述传输位置的信息为第五位置信息, 确定已经 对所述源端和所述对端进行了控制处理或者计费处理,将所述点到点业务报 文发向所述对端;
所述双向处理装置包括:
接收模块, 用于接收所述 NAS设备转发的所述点到点业务报文; 识别模块, 用于识别所述传输位置的信息为第二位置信息, 确定所述点 到点业务"¾文为首次进入所述双向处理装置,触发所述双向处理装置的第一 分处理模块, 或者, 识别所述传输位置的信息为第四位置信息, 确定所述点 到点业务 >¾文为第二次进入所述双向处理装置,触发所述双向处理装置的第 二分处理模块;
第一分处理模块,用于针对所述点到点业务 文对所述源端进行控制处 理或者计费处理, 然后将所述点到点业务报文转发给所述 NAS设备;
第二分处理模块,用于针对所述点到点业务 文对所述对端进行控制处 理或者计费处理, 然后将所述点到点业务报文转发给所述 NAS设备。
9. 一种网络侧通信网络, 包括: 网络接入服务器 NAS设备、 网络设备 和双向处理装置, 所述双向处理装置通过所述网络设备与所述 NAS设备通 信连接;
所述 NAS设备用于接收业务报文, 根据所述业务报文的源端和对端的 地址均为终端地址池中的地址确定所述业务 文为点到点业务 文,识别所 述点到点业务报文的传输位置的信息, 根据所述传输位置的信息, 转发所述 点到点业务报文, 其中, 所述传输位置的信息包括传输所述点到点业务报文 的物理端口信息、 虚拟局域网信息或者隧道信息;
所述网络设备用于识别所述传输位置的信息, 根据所述传输位置的信 息, 转发所述点到点业务 文;
所述双向处理装置用于识别所述传输位置的信息,根据所述传输位置的 信息,针对所述点到点业务报文对所述源端和所述对端之一或者全部进行控 制处理或者计费处理。
10. 根据权利要求 9所述的网络侧通信网络, 所述 NAS设备具体用于 识别所述传输位置的信息为第一位置信息,确定所述点到点业务 文来自终 端侧, 将所述点到点业务报文转发给所述网络设备, 或者, 接收所述网络设 备转发的所述点到点业务 文, 识别所述传输位置的信息为第七位置信息, 确定所述点到点业务报文来自所述网络设备,将所述点到点业务报文发向所 述对端;
所述网络设备具体用于接收所述 NAS设备转发的所述点到点业务报文, 识别所述传输位置的信息为第二位置信息,确定所述点到点业务 文来自所 述 NAS设备, 将所述点到点业务报文转发给所述双向处理装置, 或者, 接 收所述双向处理装置转发的所述点到点业务>¾文,识别所述传输位置的信息 为第四位置信息, 确定已经对所述源端进行了控制处理或者计费处理, 将所 述点到点业务报文再次转发给所述双向处理装置, 或者, 接收所述双向处理 装置转发的所述点到点业务报文, 识别所述传输位置的信息为第六位置信 息, 确定已经对所述源端和所述对端进行了控制处理或者计费处理, 将所述 点到点业务报文转发给所述 NAS设备;
所述双向处理装置包括:
接收模块, 用于接收所述网络设备转发的所述点到点业务报文; 识别模块, 用于识别所述传输位置的信息为第三位置信息, 确定所述点 到点业务"¾文为首次进入所述双向处理装置,触发所述双向处理装置的第一 分处理模块, 或者, 识别所述传输位置的信息为第五位置信息, 确定所述点 到点业务 "¾文为第二次进入所述双向处理装置,触发所述双向处理装置的第 二分处理模块;
第一分处理模块,用于针对所述点到点业务 文对所述源端进行控制处 理或者计费处理, 然后将所述点到点业务报文转发给所述网络设备;
第二分处理模块,用于针对所述点到点业务 文对所述对端进行控制处 理或者计费处理, 然后将所述点到点业务报文转发给所述网络设备。
11. 一种网络接入服务器 NAS设备, 包括:
业务报文处理模块, 用于接收业务报文, 根据所述业务报文的源端和对 端的地址均为终端地址池中的地址确定所述业务 文为点到点业务 文; 识别模块, 用于识别所述点到点业务报文的传输位置的信息, 其中, 所 述传输位置的信息包括传输所述点到点业务"¾文的物理端口信息、虚拟局域 网信息或者隧道信息;
处理模块, 用于根据所述识别模块识别的所述传输位置的信息, 针对所 述点到点业务报文对所述源端和所述对端之一或者全部进行控制处理或者 计费处理。
12. 根据权利要求 11所述的 NAS设备, 所述处理模块具体用于根据所 述传输位置的信息确定所述点到点业务 文来自终端侧,针对所述点到点业 务 "¾文对所述源端进行控制处理或者计费处理。
13. 根据权利要求 12所述的 NAS设备, 所述处理模块具体用于确定所 述对端的地址是所述 NAS设备管理的地址时, 针对所述点到点业务报文对 所述对端进行控制处理或者计费处理, 然后将所述点到点业务报文转发给所 述对端, 或者, 确定所述对端的地址是其他 NAS设备管理的地址时, 将所 述点到点业务报文转发给所述其他 NAS设备。
14. 根据权利要求 11所述的 NAS设备, 所述处理模块具体用于根据所 述传输位置的信息确定所述点到点业务 "¾文来自网络侧,针对所述点到点业 务 文对所述对端进行控制处理或者计费处理, 然后将所述点到点业务 文 转发给所述对端。
15. 一种点到点业务的双向处理装置, 包括:
接收模块, 用于接收网络侧设备转发的点到点业务报文;
识别模块, 用于根据所述接收模块接收的所述点到点业务报文, 识别所 述点到点业务报文的传输位置的信息, 其中, 所述传输位置的信息包括传输 所述点到点业务 "¾文的物理端口信息、 虚拟局域网信息或者隧道信息; 处理模块, 用于根据所述识别模块识别的所述传输位置的信息, 针对所 述点到点业务报文对所述点到点业务报文的源端和对端之一或者全部进行 控制处理或者计费处理, 然后将所述点到点业务报文转发给所述网络侧设 备。
16. 根据权利要求 15的双向处理装置, 所述识别模块具体用于根据所 述接收模块接收的所述点到点业务报文, 识别所述传输位置的信息, 确定所 述点到点业务报文为首次进入所述双向处理装置,触发所述处理模块中的第 一分处理模块, 或者, 根据所述接收模块接收的所述点到点业务报文, 识别 所述传输位置的信息,确定所述点到点业务 文为第二次进入所述双向处理 装置, 触发所述处理模块中的第二分处理模块;
所述处理模块具体包括:
第一分处理模块,用于针对所述点到点业务 文对所述源端进行控制处 理或者计费处理, 然后将所述点到点业务报文转发给所述网络侧设备; 第二分处理模块,用于针对所述点到点业务 文对所述对端进行控制处 理或者计费处理, 然后将所述点到点业务报文转发给所述网络侧设备。
17. 根据权利要求 15或者 16的双向处理装置, 所述双向处理装置位于 网络接入服务器 NAS设备中, 与所述 NAS设备中的业务报文处理模块通信 连接, 所述网络侧设备为所述 NAS设备中的业务报文处理模块。
18. 根据权利要求 15或者 16 的双向处理装置, 所述双向处理装置与 NAS设备通信连接, 所述网络侧设备为所述 NAS设备。
19. 根据权利要求 15或者 16的双向处理装置, 所述双向处理装置通过 网络设备与 NAS设备通信连接, 所述网络侧设备为所述网络设备。
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