WO2021114874A1 - 一种数据处理方法及计算机可读存储介质 - Google Patents

一种数据处理方法及计算机可读存储介质 Download PDF

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Publication number
WO2021114874A1
WO2021114874A1 PCT/CN2020/122045 CN2020122045W WO2021114874A1 WO 2021114874 A1 WO2021114874 A1 WO 2021114874A1 CN 2020122045 W CN2020122045 W CN 2020122045W WO 2021114874 A1 WO2021114874 A1 WO 2021114874A1
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Prior art keywords
network
scheduling
information
access
service device
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PCT/CN2020/122045
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English (en)
French (fr)
Inventor
徐浩
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平安科技(深圳)有限公司
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Publication of WO2021114874A1 publication Critical patent/WO2021114874A1/zh

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L67/00Network arrangements or protocols for supporting network services or applications
    • H04L67/50Network services
    • H04L67/60Scheduling or organising the servicing of application requests, e.g. requests for application data transmissions using the analysis and optimisation of the required network resources
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L41/00Arrangements for maintenance, administration or management of data switching networks, e.g. of packet switching networks
    • H04L41/08Configuration management of networks or network elements
    • H04L41/0803Configuration setting
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L45/00Routing or path finding of packets in data switching networks
    • H04L45/66Layer 2 routing, e.g. in Ethernet based MAN's
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L45/00Routing or path finding of packets in data switching networks
    • H04L45/74Address processing for routing
    • H04L45/745Address table lookup; Address filtering
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L61/00Network arrangements, protocols or services for addressing or naming
    • H04L61/09Mapping addresses
    • H04L61/25Mapping addresses of the same type
    • H04L61/2503Translation of Internet protocol [IP] addresses
    • H04L61/2521Translation architectures other than single NAT servers
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L61/00Network arrangements, protocols or services for addressing or naming
    • H04L61/45Network directories; Name-to-address mapping
    • H04L61/4505Network directories; Name-to-address mapping using standardised directories; using standardised directory access protocols
    • H04L61/4511Network directories; Name-to-address mapping using standardised directories; using standardised directory access protocols using domain name system [DNS]
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L67/00Network arrangements or protocols for supporting network services or applications
    • H04L67/50Network services
    • H04L67/60Scheduling or organising the servicing of application requests, e.g. requests for application data transmissions using the analysis and optimisation of the required network resources
    • H04L67/63Routing a service request depending on the request content or context

Definitions

  • This application relates to the field of communication technology, and in particular to a data processing method and a computer-readable storage medium.
  • the Internet is a global network formed by the interconnection of numerous networks.
  • the Internet Exchange Point (IXP) is a new foreign network exchange model. It is the point of interaction between different networks to communicate with each other, and it realizes that operators, that is, between Internet Service Providers (Internet Service Providers, ISPs), Internet content providers (Internet content providers) The exchange of visits between Content Provider (ICP) and ICP and between ISP and ICP, so that the exchange of content between the peers of each IXP is realized.
  • IXP Internet Exchange Point
  • the Internet exchange platform can realize the peer-to-peer interconnection of the marginal gateway protocol BGP, thereby realizing the direct connection between the ISP and the ICP, thereby improving the quality of the content of the terminal network users accessing the ICP, and for the ICP users through the content
  • the exchange platform is easier to monitor the quality of its own business network, and is no longer affected by the complex networks of the three major operators. From the perspective of the cost of ICP and ISP: On the one hand, it saves the bandwidth of some ISPs to access the Internet; on the other hand, ICP reduces the cost of the three major operators. Therefore, the network architecture of IXP is used in small and medium ISPs and medium and large ICP companies.
  • the embodiments of the present application provide a data processing method and a computer-readable storage medium, which can improve the efficiency of service provisioning.
  • an embodiment of the present application provides a data processing method, including: a network service device receives a network configuration request submitted by a terminal device, the network configuration request carries network configuration information, and the network configuration information includes an access mode, Access object list and scheduling mode; when the access mode is the three-layer switching, the network service device obtains configuration data for the service device according to the network configuration information, and sends the configuration data to the Service equipment; The service equipment receives the configuration data, and completes the configuration of the Border Gateway Protocol BGP according to the configuration data, so that the first network device pointed to by the network configuration request is connected to the access object list indicated The route between the second network devices of the incoming target is opened; the network service device obtains the scheduling information indicated by the scheduling mode, and sends the scheduling information to the terminal device, and the scheduling information is used to implement the first Access of a network device to the second network device.
  • an embodiment of the present application provides a computer-readable storage medium that stores a computer program, and the computer program is executed by a processor to implement the following method: receiving a network configuration submitted by a terminal device Request, the network configuration request carries network configuration information, and the network configuration information includes an access mode, a list of access objects, and a scheduling mode; when the access mode is Layer 3 switching, the network configuration information is used to obtain the The configuration data of the service device, and deliver the configuration data to the service device, so that the service device completes the configuration of the Border Gateway Protocol BGP according to the configuration data, so that the first network to which the network configuration request is directed A route is opened between the device and the second network device of the access object indicated by the access object list; the scheduling information indicated by the scheduling mode is acquired, and the scheduling information is sent to the terminal device, the scheduling information Used to implement the access of the first network device to the second network device; or implement any method executed by the service device in the claims, or implement any method executed by the scheduling platform in the claims .
  • the embodiments of the present application provide a network service device, including a processor, a memory, and a computer program stored on the memory and capable of running on the processor, and the computer program is used by the processor.
  • the following method is implemented during execution: receiving a network configuration request submitted by a terminal device, the network configuration request carrying network configuration information, the network configuration information including an access mode, a list of access objects, and a scheduling mode; in the access mode:
  • the configuration data for the service device is obtained according to the network configuration information, and the configuration data is delivered to the service device, so that the service device completes the configuration of the Border Gateway Protocol BGP according to the configuration data , So that the route between the first network device pointed to by the network configuration request and the second network device of the access object indicated by the access object list is opened; the scheduling information indicated by the scheduling mode is obtained, and the The scheduling information is sent to the terminal device, and the scheduling information is used to implement the access of the first network device to the second network device.
  • an embodiment of the present application provides a business device, including a processor, a memory, and a computer program stored on the memory and capable of running on the processor, the computer program being executed by the processor
  • the configuration data is the network configuration request submitted by the terminal device received by the network service device, and when the access mode included in the configuration request is Layer 3 switching, according to the network configuration request
  • the configuration information obtains the configuration data of the service device and sends it to the service device;
  • the network configuration request carries network configuration information, and the network configuration information includes the access mode, access object list, and scheduling mode;
  • the configuration data completes the configuration of the Border Gateway Protocol BGP, so that the route between the first network device pointed to by the network configuration request and the second network device of the access object indicated by the access object list is opened, and all
  • the network service device sends the scheduling information indicated by the scheduling mode to the terminal device, where the scheduling information is used to implement the access of the first network device to the second network device.
  • the embodiments of the present application provide a scheduling platform, including a processor, a memory, and a computer program stored on the memory and capable of running on the processor, and the computer program is executed by the processor
  • the following method is implemented: receiving a user corresponding to the network service provider ISP using a user terminal to send an access request to the content of the access object indicated in the access object list; according to the access request to the access object indicated in the access object list Carry out content scheduling.
  • an embodiment of the present application provides a terminal device, including a processor, a memory, and a computer program stored on the memory and capable of running on the processor, the computer program being executed by the processor
  • submit a network configuration request to a network service device the network configuration request carries network configuration information, and the network configuration information includes an access mode, a list of access objects, and a scheduling method
  • the network configuration information acquires configuration data for the service device, and delivers the configuration data to the service device, so that the service device completes the configuration of the Border Gateway Protocol BGP according to the configuration data, so that the network
  • the route between the first network device pointed to by the configuration request and the second network device of the access object indicated by the access object list is opened, and the network service device is caused to send the scheduling information indicated by the scheduling mode to the A terminal device; receiving the scheduling information, where the scheduling information is used to implement the access of the first network device to the second network device.
  • an embodiment of the present application provides a data processing system, including: a network service device, a terminal device, and a business device.
  • the network service device establishes communication with the terminal device and the business device, respectively;
  • the terminal device is configured to submit a network configuration request to the network service device, the network configuration request carries network configuration information, and the network configuration information includes an access mode, a list of access objects, and a scheduling mode;
  • the network service device Used to receive a network configuration request submitted by the terminal device, and when the access mode is Layer 3 switching, obtain configuration data for the service device according to the network configuration information, and send the configuration data to the service device
  • the service device is used to receive the configuration data, and complete the configuration of the Border Gateway Protocol BGP according to the configuration data, so that the network configuration request points to the first network device and the access object indicated by the access object list
  • the routing between the second network devices is opened; the network service device is also used to obtain the scheduling information indicated by the scheduling mode, and send the scheduling information to the terminal device, so as to
  • This application realizes the self-service provisioning of peer-to-peer interconnection services between the ISP and the corresponding access object or between the ICP and the corresponding access object. This process automatically delivers services without the intervention of engineers, thereby effectively improving the efficiency of service provisioning. .
  • FIG. 1 is a schematic flowchart of a data processing method provided by an embodiment of the present application.
  • FIG. 2 is a schematic flowchart of another data processing method provided by an embodiment of the present application.
  • FIG. 3 is a schematic diagram of a network architecture of a data processing system provided by an embodiment of the present application.
  • the technical solution of this application can be applied to the fields of smart city, blockchain and/or big data technology to realize convenient business opening.
  • the data involved in this application such as configuration data, can be stored in a database, or can be stored in a blockchain, which is not limited in this application.
  • FIG. 1 is a schematic flowchart of a data processing method provided in an application embodiment.
  • the method may include the following steps.
  • a network service device receives a network configuration request submitted by a terminal device, where the network configuration request carries network configuration information, and the network configuration information includes an access mode, an access object list, and a scheduling mode.
  • the network service equipment can be a network service provider (Network Service Provider, NSP) platform, which can implement the functions of the IXP platform.
  • NSP Network Service Provider
  • the NSP platform can be implemented based on OPENSTACK, enabling the neutron component.
  • the network service device may include one or more service devices.
  • the terminal device may be a terminal device corresponding to the ISP or a terminal device corresponding to the ICP.
  • the terminal device can be an intelligent terminal such as a notebook computer and a desktop computer.
  • the access mode can be Layer 2 switching or Layer 3 switching.
  • the network service device if the access mode is Layer 2 switching, the network service device does not need to deliver configuration data to the business device; if the access mode is Layer 3 switching, the network service device needs to deliver configuration data to the business device.
  • the business equipment can be a business platform and can include one or more switches.
  • the list of access objects may include the first identification information of the access objects.
  • the access object can be one or more.
  • the access object list may include the first identification information of the object that the ISP wants to access, such as the name or number, and the object that the ISP wants to access may be other ISPs or one or more ICP.
  • the access object list may include the first identification information of the object that the ICP wants to access, such as a name or a number. The ICP wants to access one or more ISPs.
  • the scheduling method may include any one of the following: routing, Internet Protocol (Internet Protocol, IP) scheduling, and Domain Name System (Domain Name System, DNS) scheduling.
  • the scheduling method here can be the access object, such as the scheduling method that ICP can provide.
  • the scheduling method here can be that the ICP can be the access object.
  • Incoming objects such as the scheduling method provided by the ISP.
  • the terminal device when the terminal device is a terminal device corresponding to the ISP, the terminal device can submit a network configuration request to the network service device through the ISP portal, and the network service device can access the network configuration request submitted by the terminal device.
  • the network configuration information may be the network configuration information set by the terminal device through the ISP portal.
  • the terminal device When the terminal device is a terminal device corresponding to the ICP, the terminal device can submit a network configuration request to the network service device through the ICP portal, and the network service device receives the network configuration request submitted by the terminal device.
  • the network configuration information may be the network configuration information set by the terminal device through the ICP portal.
  • the network configuration information may also include routing information and BGP parameters.
  • the routing information is the routing information of the ISP, such as the IP address of the ISP.
  • the BGP parameters are the parameters used by the ISP to establish BGP neighbors. Specifically, they can be the parameters provided by the ISP to establish BGP neighbors between the network equipment corresponding to the ISP and the business equipment, such as Autonomous System (AS) number. , Bidirectional Forwarding Detection (Bidirectional Forwarding Detection, BFD) parameters, BGP password.
  • the network configuration information may include ISP category in addition to routing information and BGP parameters.
  • the type of ISP can be large, medium or small, and the embodiment of the application does not limit the type of ISP.
  • the aforementioned routing information can also be replaced with a community value, that is, the routing information of an ISP can be replaced with a community value of the ISP.
  • the community value is an optional transmission attribute, which can be used to identify the corresponding route, which can simplify the routing strategy.
  • the terminal device is the terminal device corresponding to the ISP.
  • the terminal device can access the network service device and open the ISP portal, that is, the portal page provided by the ISP Portal.
  • the user corresponding to the terminal device can set the network configuration information of the ISP based on the portal page, and send a network configuration request to the network service device through the ISP portal, and the network service device can receive the network configuration request sent by the terminal device.
  • the network service device may query the database for the presence of the second identification information of the ISP when receiving the request for accessing the portal page sent by the terminal device corresponding to the ISP through the ISP portal.
  • the second identification information here is mainly used to distinguish it from the aforementioned first identification information of the access object.
  • the second identification information may include any one of the following: ISP category and BGP parameters.
  • the portal page including the configuration items of the second identification information of the ISP can be returned to the terminal device, so that the terminal device can be configured based on the second identification information of the ISP
  • the item configures information such as the second identification information of the ISP.
  • the network configuration information may also include routing information and BGP parameters.
  • the routing information here is the routing information of the ICP, such as the IP address of the ICP.
  • the BGP parameters here are the parameters of the ICP used to establish BGP neighbors. Specifically, the ICP can provide the ICP with the parameters required by the network equipment corresponding to the ICP to establish BGP neighbors with the service equipment, such as AS number, BFD parameters, and BGP password.
  • the network configuration information may also include ICP categories.
  • the ICP category can be business or non-business, or it can also be an e-commerce website, Internet advertising website, game website, online transaction website or tour guide website, etc.
  • the embodiments of this application do not limit the ICP category.
  • the aforementioned routing information can also be replaced with a community value, that is, the routing information of ICP can be replaced with a community value of ICP.
  • the terminal device is the terminal device corresponding to the ICP, and the terminal device can access the network service device and open the ICP portal, that is, the portal page provided by the ICP Portal.
  • the user corresponding to the terminal device can set the network configuration information of the ICP based on the portal page, and send a network configuration request to the network service device through the ICP portal, and the network service device can receive the network configuration request sent by the terminal device.
  • the network service device may query the database for the existence of the second identification information of the ICP when receiving the access request to the portal page sent by the terminal device corresponding to the ICP through the ICP portal.
  • the second identification information here is mainly used to distinguish it from the aforementioned first identification information of the access object.
  • the second identification information may include any of the following: ICP type and BGP parameters.
  • the portal page including the configuration items of the second identification information of the ICP can be returned to the terminal device, so that the terminal device can be configured based on the second identification information of the ICP
  • the item configures information such as the second identification information of the ICP.
  • the network service device obtains configuration data for the service device according to the network configuration information, and delivers the configuration data to the service device.
  • the network service device may determine that the access mode is Layer 3 exchange according to the network configuration information Obtain the configuration data of the service device, and deliver the configuration data to the service device.
  • the terminal device indicated by the network configuration request may be the network device corresponding to the aforementioned ISP.
  • the network device to which the network configuration request is directed It may be a network device corresponding to the aforementioned ICP.
  • the network service device may query the database for the routing information of the access object indicated by the access object list, and generate configuration data including the routing information of the access object indicated by the access object list as the counter service The configuration data of the device.
  • the network service device may query the database for routing information of the access object indicated by the access object list, and generate information including the indication of the access object list.
  • the routing information of the access object, the routing information included in the network configuration information, and the configuration data of BGP parameters are used as configuration data for the service device.
  • the service device receives the configuration data, and completes the configuration of Border Gateway Protocol BGP according to the configuration data, so that the first network device pointed to by the network configuration request and the access indicated by the access object list The route between the target's second network device is opened up.
  • the network service device may also send the routing information of the service device, such as IP address and other information to the terminal device, so that the first network device pointed to by the network configuration request (for the aforementioned network configuration request Network equipment) can establish a BGP connection with the service equipment according to the routing information of the service equipment to realize the second network equipment of the access object indicated by the access object list (the network equipment of the access object indicated by the access object list) The process of getting through between routes.
  • the service device may send a prompt message indicating that the connection is successful to the terminal device after detecting that the network device to which the network configuration request is directed has completed the BGP configuration.
  • the service device can also establish a BGP connection with the second network device of the access object indicated by the access object list in the above manner, so as to realize the process of routing through with the first network device pointed to by the network configuration request.
  • the service device may add a community value to the route of the access object indicated by the access object list. Or, in the case that neither the ISP route nor the route of the access object has a community value, the service device can mark the ISP and the route of the access object indicated by the access object list with a community value. In an embodiment, the service device may store the community value obtained in the foregoing manner in a database.
  • the business device can send the community value to the terminal device through the network service device, so that the local DNS server of the ISP can make a routing strategy based on the community value, so that the user corresponding to the ISP can access the information indicated in the access object list.
  • the access process can be realized through the local DNS server.
  • the network service device obtains the scheduling information indicated by the scheduling mode, and sends the scheduling information to the terminal device, where the scheduling information is used to implement the first network device to the second network device Access.
  • the scheduling information may be scheduling information of the access object indicated by the access object list.
  • the scheduling information may be routing information of the access object indicated by the access object list.
  • the scheduling information may be the DNS IP address of the access object indicated by the access object list.
  • the scheduling method is DNS scheduling, the scheduling information may be the generic domain name of the content of the access object indicated by the access object list and the DNS IP address of the access object indicated by the access object list.
  • the network service device can record the corresponding relationship between the access object, the scheduling mode, and the scheduling information.
  • the network service device can record the access object, the scheduling mode, and the described access object indicated by the access object list.
  • the correspondence relationship determines the corresponding scheduling information as the scheduling information indicated by the scheduling mode, and sends the scheduling information to the terminal device, so as to realize the access of the first network device to the second network device.
  • the service device may obtain the scheduling information indicated by the scheduling mode included in the configuration data, and send the scheduling information indicated by the scheduling mode to the first network device to Realize the access of the first network device to the second network device.
  • the scheduling information included in the configuration data may be obtained by the network service device.
  • the network service device receives the network configuration request submitted by the terminal device, the network configuration request carries network configuration information, and the network configuration information includes the access mode, the list of access objects, and the scheduling mode;
  • the network service device When the access mode is Layer 3 switching, it obtains configuration data for the service device according to the network configuration information, and sends the configuration data to the service device;
  • the service device completes the configuration of the Border Gateway Protocol BGP according to the configuration data to make the network configuration request
  • the route between the first network device pointed to and the second network device of the access object indicated by the access object list is opened; the network service device obtains the scheduling information indicated by the scheduling mode and sends it to the terminal device, so as to realize the first network device to the second network device.
  • This process can realize ISP and ICP self-opening of peer-to-peer interconnection services, and automatically deliver services without the intervention of engineers, thereby improving the efficiency of service activation, and completing ISP and ISP more safely, conveniently and quickly Data exchange between ISP and ICP.
  • FIG. 2 is a schematic flowchart of another data processing method provided by an embodiment of this application.
  • the method may specifically include the following steps.
  • the network service device receives a network configuration request submitted by a terminal device, where the network configuration request carries network configuration information, and the network configuration information includes an access mode, an access object list, and a scheduling mode.
  • the network service device obtains configuration data for the service device according to the network configuration information, and delivers the configuration data to the service device.
  • the service device receives the configuration data, and completes the configuration of Border Gateway Protocol BGP according to the configuration data, so that the first network device pointed to by the network configuration request and the access indicated by the access object list The route between the target's second network device is opened up.
  • the network service device obtains the scheduling information indicated by the scheduling mode, and sends the scheduling information to the terminal device, where the scheduling information is used to implement the first network device to the second network device Access.
  • step S201 to step S204 may refer to step S101 to step S104 in the embodiment of FIG. 1, and details are not described in this embodiment of the present application.
  • the network service device acquires the scheduling information indicated by the scheduling mode when the access mode is Layer 2 switching.
  • the network service device returns the scheduling information to the terminal device.
  • the network service device may obtain the scheduling information indicated by the scheduling mode when the access mode is the two-layer switching, and return the scheduling information to the terminal device.
  • the scheduling information may be routing information of the access object indicated by the access object list.
  • the scheduling information may be the DNS IP address of the access object indicated by the access object list.
  • the scheduling method is DNS scheduling, the scheduling information may be the generic domain name of the content of the access object indicated by the access object list and the DNS IP address of the access object indicated by the access object list.
  • the process of the network service device delivering the configuration data to the service device may be for the network service device to deliver the configuration data to the service device via a software-defined network SDN platform in the south direction.
  • the network service device can specifically send the configuration data to the switch in the service device by the SDN platform through the netconf protocol in the south direction.
  • the SDN platform can be integrated in the network service equipment, or it can exist independently of the network service equipment.
  • the network configuration information when the network configuration information is the network configuration information set through the ISP portal, the network configuration information may also include indication information of whether to use the scheduling platform.
  • the dispatch platform may include one or more dispatch servers.
  • the dispatch platform may include DNS servers and network address translation (Network Address Translation). Address Translation (NAT) server, DNS server is used for domain name resolution, and NAT server is used for address translation.
  • NAT Network Address Translation
  • the process for the network service device to obtain the scheduling information indicated by the scheduling mode is specifically when the network configuration information includes information indicating that the scheduling platform is not used ,
  • the network service device obtains the scheduling information of the access object indicated by the access object list; the network service device returns the scheduling information of the access object indicated by the access object list to the scheduling information of the access object and determines that the scheduling information is indicated by the scheduling mode Scheduling information.
  • the scheduling mode includes at least one of the following: routing, IP scheduling, and DNS scheduling.
  • the scheduling information indicated by the scheduling mode is the routing information of the access object indicated by the access object list ;
  • the scheduling mode is IP scheduling
  • the scheduling information indicated by the scheduling mode is the DNS IP address of the access object indicated in the access object list;
  • the scheduling mode is DNS scheduling
  • the scheduling information indicated by the scheduling mode is the access object The generic domain name of the content of the access object indicated by the list and the DNS IP address of the access object indicated by the access object list.
  • the network device corresponding to the ISP can schedule the address library of the ICP through the API interface.
  • IP and DNS export to the corresponding equipment of the ICP to facilitate access to the ICP.
  • the network service device when the network configuration information includes the indication information of using the scheduling platform, the network service device obtains the scheduling information of the scheduling platform, and determines the scheduling information of the scheduling platform as the scheduling information indicated by the scheduling mode.
  • the scheduling mode includes at least one of the following: routing, IP scheduling, and DNS scheduling.
  • the scheduling information indicated by the scheduling mode is the routing information of the scheduling platform; when the scheduling mode is IP scheduling , The scheduling information indicated by the scheduling mode is the DNS IP address of the scheduling platform.
  • the scheduling mode is DNS scheduling, the scheduling information indicated by the scheduling mode is the generic domain name of the scheduling platform and the DNS IP address of the scheduling platform.
  • the user corresponding to the ISP can use the user terminal to send an access request to the content of the access object to the local DNS server, and then use the local DNS The server accesses the service device and accesses the access object indicated by the access object list via the service device. This process does not need to go through the scheduling platform.
  • the scheduling platform when the ISP uses the scheduling platform, the user corresponding to the ISP can use the user terminal to send an access request to the content of the access object list access object to the scheduling platform, so that the scheduling platform Realize content scheduling. That is, the scheduling platform can receive the access request for the access object indicated in the access object list sent by the user corresponding to the ISP using the user terminal, and perform content scheduling according to the access request.
  • the process of the scheduling platform for content scheduling according to the access request may be as follows: the scheduling platform resolves the generic domain name of the content according to the domain name carried in the access request, and uses the service device of the access object indicated by the access object list, such as The ICP DNS server resolves the IP address used to access the content, and then sends it to the user terminal via the dispatch platform or the service device (whether it is sent via the service device depends on the set access mode), and the user terminal uses this IP address And the business equipment accesses the equipment corresponding to the ICP. Or, the scheduling platform forwards the access request to the device corresponding to the ICP.
  • the ICP DNS server resolves the IP address used to access the content, and then sends it to the user terminal via the dispatch platform or the service device (whether it is sent via the service device depends on the set access mode), and the user terminal uses this IP address
  • the scheduling platform forwards the access request to the device corresponding to the ICP.
  • the service device can issue a static route to the scheduling platform.
  • the scheduling platform can perform a static route to the egress, such as the NAP egress.
  • the scheduling platform can configure NAT in the border leaf, and report the egress IP of the scheduling platform to the ICP through the interface of the address library of the scheduling ICP, thereby completing IP scheduling.
  • the scheduling method is DNS scheduling
  • the DNS policy is issued to the scheduling platform through the NSP platform, and the ICP domain name list is sent to the scheduling platform as follows to complete the DNS scheduling.
  • the network service device can also obtain the scheduling information indicated by the scheduling mode when the access mode is Layer 2 switching, and send the scheduling information indicated by the scheduling mode to the terminal device.
  • the process can realize the self-service start-up process of the business, and improve the efficiency of business opening.
  • the scheduling platform of the embodiment of the present application can make it easier for the ISP to obtain the content of the ICP, reduce the cost of the ISP and the ICP, and improve the intranetization of the ISP, thereby maximizing the benefits of the ISP and the ICP.
  • ISP and ICP can more autonomously control their own content traffic, thereby providing better access quality. ICP can also better monitor the ISP's user dynamics and solve faults quickly and self-helply.
  • FIG. 3 is a schematic diagram of a network architecture of a data processing system provided in this solution.
  • the data processing system may include: a network service device 10, a terminal device 20, and a business device 30.
  • the network service device 10 may establish communication with the terminal device 20 and the service device 30 respectively.
  • the terminal device 20 may submit a network configuration request to the network service device 10.
  • the terminal device corresponding to the ISP can submit a network configuration request to the network service device through the ISP portal.
  • the network service device 10 receives a network configuration request submitted by the terminal device 20.
  • the network configuration request carries network configuration information.
  • the network configuration information includes an access mode, a list of access objects, and a scheduling mode.
  • the access mode is three-layer switching, the network service device 10 obtains configuration data for the service device 30 according to the network configuration information, and delivers the configuration data to the service device 30.
  • the service device 30 receives the configuration data, and completes the configuration of the Border Gateway Protocol BGP according to the configuration data, so that the first network device pointed to by the network configuration request and the second network device of the access object indicated by the access object list Inter-routing is opened up.
  • the network service device 10 obtains the scheduling information indicated by the scheduling mode, and sends the scheduling information to the terminal device 20 to realize the access of the first network device to the second network device. Through the self-service distribution of the configuration, the service can be improved. Opening efficiency.
  • the embodiments of the present application also provide a network service device, including a processor, a memory, and a computer program stored on the memory and capable of running on the processor.
  • the computer program can be executed by the processor.
  • the method of implementing the above-mentioned embodiment may be implemented: receiving a network configuration request submitted by a terminal device, where the network configuration request carries network configuration information, and the network configuration information includes an access mode, an access object list, and a scheduling mode; in the access mode
  • the configuration data for the service device is obtained according to the network configuration information, and the configuration data is delivered to the service device, so that the service device completes the Border Gateway Protocol BGP according to the configuration data.
  • the embodiment of the present application also provides a business device, including a processor, a memory, and a computer program stored on the memory and capable of running on the processor, and the computer program can be implemented when executed by the processor.
  • the method of the above embodiment can be implemented: receiving the configuration data, where the configuration data is a network configuration request submitted by a terminal device received by a network service device, and when the access mode included in the configuration request is Layer 3 switching, according to all
  • the network configuration information obtains configuration data for the service device and sends it to the service device;
  • the network configuration request carries network configuration information, and the network configuration information includes the access mode, access object list, and scheduling mode Complete the configuration of the Border Gateway Protocol BGP according to the configuration data, so that the first network device pointed to by the network configuration request and the second network device of the access object indicated by the access object list are routed through, and
  • the network service device is caused to send the scheduling information indicated by the scheduling mode to the terminal device, where the scheduling information is used to implement the access of the first network device to the second
  • the embodiments of the present application also provide a scheduling platform, including a processor, a memory, and a computer program stored on the memory and capable of running on the processor, and the computer program can be implemented when executed by the processor.
  • a scheduling platform including a processor, a memory, and a computer program stored on the memory and capable of running on the processor, and the computer program can be implemented when executed by the processor.
  • the method of the above embodiment can be implemented: receiving a user corresponding to the network service provider ISP using a user terminal to send an access request to the content of the access object indicated by the access object list; Access request for content scheduling.
  • An embodiment of the present application also provides a terminal device, including a processor, a memory, and a computer program stored on the memory and capable of running on the processor, and the computer program can be implemented when executed by the processor.
  • the method of the above embodiment can be implemented: submit a network configuration request to a network service device, the network configuration request carries network configuration information, and the network configuration information includes an access mode, a list of access objects, and a scheduling mode; so that the network service The device obtains configuration data for the service device according to the network configuration information, and delivers the configuration data to the service device, so that the service device completes the configuration of the Border Gateway Protocol BGP according to the configuration data, so that all The route between the first network device pointed to by the network configuration request and the second network device of the access object indicated by the access object list is opened, and the network service device is caused to send the scheduling information indicated by the scheduling mode to The terminal device; receiving the scheduling information, where the scheduling information is used to implement the access of the first network device to the second network device.
  • the network service equipment, business equipment, scheduling platform, and terminal equipment may also correspondingly execute the remaining steps in the foregoing method.
  • the network service equipment, business equipment, scheduling platform, and terminal equipment may also correspondingly execute the remaining steps in the foregoing method.
  • a computer-readable storage medium stores a computer program, and the computer program can implement the method in the above-mentioned embodiment when the computer program is executed by a processor.
  • the computer program includes program instructions, and when the program instructions are executed by a processor, the implementation described in the method described in FIG. 1 or FIG. 2 provided in the embodiment of the present application is implemented.
  • the following method can be implemented: receiving a network configuration request submitted by a terminal device, where the network configuration request carries network configuration information, and the network configuration information includes an access mode, a list of access objects, and a scheduling mode; in the access mode
  • the configuration data for the service device is obtained according to the network configuration information, and the configuration data is delivered to the service device, so that the service device completes the Border Gateway Protocol BGP according to the configuration data.
  • the scheduling information indicated by the scheduling mode is obtained, and the The scheduling information is sent to the terminal device, and the scheduling information is used to implement the access of the first network device to the second network device; and/or implement the method executed by the service device in the foregoing method; and /Or, implement the method executed by the scheduling platform in the foregoing method; and/or implement the method executed by the terminal device in the foregoing method.
  • the executable instruction can also implement other steps of the method in the foregoing embodiment when executed by the processor, which will not be repeated here.
  • the medium involved in this application such as a computer-readable storage medium, may be non-volatile or volatile.
  • the computer-readable storage medium may be an internal storage unit of the device (which may be a network service device, a business device, or a scheduling platform) described in any of the foregoing embodiments, such as a hard disk or a memory.
  • the computer-readable storage medium may also be an external storage device, such as a plug-in hard disk, a smart memory card (Smart Media Card, SMC), a Secure Digital (SD) card, and a flash memory card equipped on the device. (Flash Card) and so on.
  • the computer-readable storage medium may also include both an internal storage unit and an external storage device.
  • the computer-readable storage medium is used to store the computer program and other programs and data required by the device.
  • the computer-readable storage medium can also be used to temporarily store data that has been output or will be output.
  • the program can be stored in a computer-readable storage medium. When executed, it may include the procedures of the above-mentioned method embodiments.
  • the computer-readable storage medium may be a magnetic disk, an optical disc, a read-only memory (Read-Only Memory, ROM), or a random access memory (Random Access). Memory, RAM) etc.

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Abstract

本申请实施例提供了一种数据处理方法及计算机可读存储介质,该方法包括:网络服务设备接收终端设备提交的网络配置请求,网络配置请求携带网络配置信息,网络配置信息包括接入模式、接入对象列表和调度方式;网络服务设备在接入模式为三层交换时,根据网络配置信息获取对业务设备的配置数据,并将配置数据下发到业务设备;业务设备根据配置数据完成边界网关协议BGP的配置,以使网络配置请求指向的第一网络设备与接入对象列表指示的接入对象的第二网络设备之间路由打通;网络服务设备获取调度方式指示的调度信息,并将调度信息发送至终端设备以实现第一网络设备对第二网络设备的访问。采用本申请可以提升业务开通效率。

Description

一种数据处理方法及计算机可读存储介质
本申请要求于2020年7月24日提交中国专利局、申请号为202010728861.7,发明名称为“一种数据处理方法及计算机可读存储介质”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本申请涉及通信技术领域,尤其涉及一种数据处理方法及计算机可读存储介质。
背景技术
互联网是由众多的网络相互连接而形成的全球性网络,互联网交换中心(Internet Exchange Point,IXP)是一个国外新型的网络交换模型。它是不同网络之间相互通信的交互点,其实现了运营商,即互联网服务提供商(Internet Service Provider,ISP)之间,互联网内容提供商(Internet Content Provider,ICP)和ICP之间以及ISP和ICP之间的互访,从而各个IXP的对等体之间实现了内容的交换。发明人意识到,互联网交换平台可以实现边际网关协议BGP的对等互联,从而实现了ISP,ICP之间通过直连线路访问,进而提高了终端网络用户访问ICP的内容质量,对于ICP用户通过内容交换平台的更容易监控自己的业务网络质量,不再受复杂的三大运营商的网络影响。从ICP和ISP的成本角度看:一方面节省部分ISP访问互联网的带宽,另一方面ICP减少了三大运营商的成本。因此IXP的网络架构在中小ISP和中大型的ICP公司中使用。
然而,发明人发现,现有的IXP的平台,业务开通存在用户无法自助,开通后,ISP对于内容流量的调度不理想问题。用户通过申请IXP的接入后,需要工程师手动下发配置,导致业务开通周期长,业务开通效率低。
技术问题
本申请实施例提供了一种数据处理方法及计算机可读存储介质,可以提升业务开通的效率。
技术解决方案
第一方面,本申请实施例提供了一种数据处理方法,包括:网络服务设备接收终端设备提交的网络配置请求,所述网络配置请求携带网络配置信息,所述网络配置信息包括接入模式、接入对象列表和调度方式;所述网络服务设备在所述接入模式为三层交换时,根据所述网络配置信息获取对业务设备的配置数据,并将所述配置数据下发到所述业务设备;所述业务设备接收所述配置数据,并根据所述配置数据完成边界网关协议BGP的配置,以使所述网络配置请求指向的第一网络设备与所述接入对象列表指示的接入对象的第二网络设备之间路由打通;所述网络服务设备获取所述调度方式指示的调度信息,并将所述调度信息发送至所述终端设备,所述调度信息用于实现所述第一网络设备对所述第二网络设备的访问。
第二方面,本申请实施例提供了一种计算机可读存储介质,所述计算机可读存储介质存储计算机程序,所述计算机程序被处理器执行,以实现以下方法:接收终端设备提交的网络配置请求,所述网络配置请求携带网络配置信息,所述网络配置信息包括接入模式、接入对象列表和调度方式;在所述接入模式为三层交换时,根据所述网络配置信息获取对业务设备的配置数据,并将所述配置数据下发到所述业务设备,使得所述业务设备根据所述配置数据完成边界网关协议BGP的配置,以使所述网络配置请求指向的第一网络设备与所述接入对象列表指示的接入对象的第二网络设备之间路由打通;获取所述调度方式指示的调度信息,并将所述调度信息发送至所述终端设备,所述调度信息用于实现所述第一网络设备对所述第二网络设备的访问;或实现权利要求中所述业务设备执行的任一项方法,或实现权利要求中所述调度平台执行的任一项方法。
第三方面,本申请实施例提供了一种网络服务设备,包括处理器、存储器及存储在所述存储器上并能够在所述处理器上运行的计算机程序,所述计算机程序被所述处理器执行时实现以下方法:接收终端设备提交的网络配置请求,所述网络配置请求携带网络配置信息,所述网络配置信息包括接入模式、接入对象列表和调度方式;在所述接入模式为三层交换时,根据所述网络配置信息获取对业务设备的配置数据,并将所述配置数据下发到所述业务设备,使得所述业务设备根据所述配置数据完成边界网关协议BGP的配置,以使所述网络配置请求指向的第一网络设备与所述接入对象列表指示的接入对象的第二网络设备之间路由打通;获取所述调度方式指示的调度信息,并将所述调度信息发送至所述终端设备,所述调度信息用于实现所述第一网络设备对所述第二网络设备的访问。
第四方面,本申请实施例提供了一种业务设备,包括处理器、存储器及存储在所述存储器上并能够在所述处理器上运行的计算机程序,所述计算机程序被所述处理器执行时实现以下方法:接收所述配置数据,所述配置数据是网络服务设备接收到终端设备提交的网络配置请求,并在所述配置请求包括的接入模式为三层交换时,根据所述网络配置信息获取对业务设备的配置数据并下发到所述业务设备的;所述网络配置请求携带网络配置信息,所述网络配置信息包括所述接入模式、接入对象列表和调度方式;根据所述配置数据完成边界网关协议BGP的配置,以使所述网络配置请求指向的第一网络设备与所述接入对象列表指示的接入对象的第二网络设备之间路由打通,并使得所述网络服务设备将所述调度方式指示的调度信息发送至所述终端设备,所述调度信息用于实现所述第一网络设备对所述第二网络设备的访问。
第五方面,本申请实施例提供了一种调度平台,包括处理器、存储器及存储在所述存储器上并能够在所述处理器上运行的计算机程序,所述计算机程序被所述处理器执行时实现以下方法:接收网络服务提供商ISP对应的用户使用用户终端发送对接入对象列表指示的接入对象的内容的访问请求;根据所述对接入对象列表指示的接入对象的访问请求进行内容调度。
第六方面,本申请实施例提供了一种终端设备,包括处理器、存储器及存储在所述存储器上并能够在所述处理器上运行的计算机程序,所述计算机程序被所述处理器执行时实现以下方法:向网络服务设备提交网络配置请求,所述网络配置请求携带网络配置信息,所述网络配置信息包括接入模式、接入对象列表和调度方式;以使所述网络服务设备根据所述网络配置信息获取对业务设备的配置数据,并将所述配置数据下发到所述业务设备,使得所述业务设备根据所述配置数据完成边界网关协议BGP的配置,以使所述网络配置请求指向的第一网络设备与所述接入对象列表指示的接入对象的第二网络设备之间路由打通,并使得所述网络服务设备将所述调度方式指示的调度信息发送至所述终端设备;接收所述调度信息,所述调度信息用于实现所述第一网络设备对所述第二网络设备的访问。
第七方面,本申请实施例提供了一种数据处理系统,包括:网络服务设备、终端设备和业务设备,所述网络服务设备分别与所述终端设备和所述业务设备建立通信;其中,所述终端设备,用于向所述网络服务设备提交网络配置请求,所述网络配置请求携带网络配置信息,所述网络配置信息包括接入模式、接入对象列表和调度方式;所述网络服务设备,用于接收所述终端设备提交的网络配置请求,在该接入模式为三层交换时,根据该网络配置信息获取对所述业务设备的配置数据,并将该配置数据下发到业务设备;所述业务设备,用于接收该配置数据,并根据该配置数据完成边界网关协议BGP的配置,以使该网络配置请求指向的第一网络设备与该接入对象列表指示的接入对象的第二网络设备之间路由打通;所述网络服务设备,还用于获取该调度方式指示的调度信息,并将该调度信息发送至所述终端设备,以实现该第一网络设备对该第二网络设备的访问。
有益效果
本申请实现了ISP与对应的接入对象之间或ICP与对应的接入对象之间自助开通对等互联的服务,该过程无需工程师干预自动的下发业务,从而有效的提升了业务开通的效率。
附图说明
图1是本申请实施例提供的一种数据处理方法的流程示意图。
图2是本申请实施例提供的另一种数据处理方法的流程示意图。
图3是本申请实施例提供的一种数据处理系统的网络架构示意图。
本发明的实施方式
下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行描述。
本申请的技术方案可应用于智慧城市、区块链和/或大数据技术领域,以实现业务的便捷开通。可选的,本申请涉及的数据如配置数据等可存储于数据库中,或者可以存储于区块链中,本申请不做限定。
请参阅图1,为申请实施例提供的一种数据处理方法的流程示意图,该方法可以包括以下步骤。
S101、网络服务设备接收终端设备提交的网络配置请求,所述网络配置请求携带网络配置信息,所述网络配置信息包括接入模式、接入对象列表和调度方式。
其中,网络服务设备,如可以为网络服务提供商(Network Service Provider,NSP)平台,它可以实现IXP平台的功能。所述的NSP平台可以基于OPENSTACK实现,启用neutron组件。网络服务设备可以包括一个或多个服务设备。终端设备可为ISP对应的终端设备或ICP对应的终端设备。终端设备可以为笔记本电脑、台式电脑等智能终端。
其中,所述的接入模式可以为二层交换或三层交换。本申请实施例中,如果接入模式为二层交换,网络服务设备无需下发配置数据至业务设备;如果接入模式为三层交换,网络服务设备需下发配置数据至业务设备。业务设备为可以为业务平台,可以包括一台或多台交换机。
其中,所述的接入对象列表可以包括接入对象的第一标识信息。该接入对象可以为一个或多个。具体的,如果终端设备为ISP对应的终端设备,接入对象列表可以包括ISP希望接入的对象的第一标识信息,如名称或编号,ISP希望接入的对象可以为其它ISP或一个或多个ICP。如果终端设备为ICP对应的终端设备,接入对象列表可以包括ICP希望接入的对象的第一标识信息,如名称或编号。ICP希望接入的对象可以为一个或多个ISP。
其中,所述的调度方式可以包括以下任一项:路由、网络协议(Internet Protocal,IP)调度、域名系统(Domain Name System,DNS)调度。如果终端设备为ISP对应的终端设备,此处的调度方式可以为接入对象,如ICP能够提供的调度方式,如果终端设备为ICP对应的终端设备,此处的调度方式可以为ICP能够为接入对象,如ISP提供的调度方式。
在一个实施例中,当终端设备为ISP对应的终端设备时,终端设备可以通过ISP门户,ISP Portal提交网络配置请求至网络服务设备,网络服务设备可以接入终端设备提交的该网络配置请求。相应地,网络配置信息可以为终端设备通过ISP门户设置的网络配置信息。当终端设备为ICP对应的终端设备时,终端设备可以通过ICP门户,ICP Portal提交网络配置请求至网络服务设备,网络服务设备接收终端设备提交的该网络配置请求。相应地,网络配置信息可以为终端设备通过ICP门户设置的网络配置信息。
在一个实施例中,如果网络配置信息为终端设备通过ISP门户设置的网络配置信息,则该网络配置信息还可以包括路由信息和BGP参数。此处的路由信息为ISP的路由信息,如ISP的IP地址。此处的BGP参数为ISP的用于建立BGP邻居的参数,具体可为ISP提供的用于ISP对应的网络设备与业务设备建立BGP邻居所需的参数,如自治系统(Autonomous System,AS)号、双向转发检测(Bidirectional Forwarding Detection,BFD)参数、BGP密码。在一个实施例中,该网络配置信息除了包括路由信息和BGP参数之外,还可以包括ISP类别。ISP类别可以为大型、中型或小型,本申请实施例对于ISP的类型不做限制。在一个实施例中,上述提及的路由信息也可以替换为community值,即ISP的路由信息可以替换为ISP的community值。所述的community值是可选传输属性,它可以用于标识相应的路由,能够简化路由策略。
在一个应用场景中,终端设备为ISP对应的终端设备,终端设备可以接入网络服务设备,并打开ISP门户,即ISP Portal提供的门户页面。终端设备对应的用户可以基于该门户页面设置ISP的网络配置信息,并通过ISP门户发送网络配置请求提交至网络服务设备,网络服务设备可以接收终端设备发送的网络配置请求。
在一个实施例中,网络服务设备可以在接收到ISP对应的终端设备通过ISP门户发送的对门户页面的访问请求时,查询数据库中是否存在ISP的第二标识信息。此处的第二标识信息主要是为了区别于前述提及的接入对象的第一标识信息的。该第二标识信息如可以包括以下任一项:ISP的类别和BGP参数。当查询到数据中存在ISP的第二标识信息时,返回包括ISP的第二标识信息的门户页面至终端设备,从而避免出现用户重复配置的情况。相应地,当查询到数据库中不存在ISP的第二标识信息时,可以返回包括ISP的第二标识信息的配置项的门户页面至终端设备,以便终端设备基于该ISP的第二标识信息的配置项配置ISP的第二标识信息等信息。
在一个实施例中,如果网络配置信息为终端设备通过ICP门户设置的网络配置信息,则该网络配置信息还可以包括路由信息和BGP参数。此处的路由信息为ICP的路由信息,如ICP的IP地址。此处的BGP参数为ICP的用于建立BGP邻居的参数,具体可为ICP提供用于ICP对应的网络设备与业务设备建立BGP邻居所需的参数,如AS号、BFD参数、BGP密码。在一个实施例中,该网络配置信息除了可以包括路由信息和BGP参数之外,还可以包括ICP类别。ICP类别如可以经营性或非经营性,或还可以为电商网站、互联网广告类网站、游戏类网站、在线交易类网站或导游类网站等,本申请实施例对ICP类别不做限制。在一个实施例中,上述提及的路由信息也可以替换为community值,即ICP的路由信息可以替换为ICP的community值。
在一个应用场景中,终端设备为ICP对应的终端设备,终端设备可以接入网络服务设备,并打开ICP门户,即ICP Portal提供的门户页面。终端设备对应的用户可以基于该门户页面设置ICP的网络配置信息,并通过ICP门户发送网络配置请求提交至网络服务设备,网络服务设备可以接收终端设备发送的网络配置请求。
在一个实施例中,网络服务设备可以在接收到ICP对应的终端设备通过ICP门户发送的对门户页面的访问请求时,查询数据库中是否存在ICP的第二标识信息。此处的第二标识信息主要是为了区别于前述提及的接入对象的第一标识信息的。该第二标识信息如可以包括以下任一项:ICP的类别和BGP参数。当查询到数据中存在ICP的第二标识信息时,返回包括ICP的第二标识信息的门户页面至终端设备,从而避免出现用户重复配置的情况。相应地,当查询到数据库中不存在ICP的第二标识信息时,可以返回包括ICP的第二标识信息的配置项的门户页面至终端设备,以便终端设备基于该ICP的第二标识信息的配置项配置ICP的第二标识信息等信息。
S102、所述网络服务设备在所述接入模式为三层交换时,根据所述网络配置信息获取对业务设备的配置数据,并将所述配置数据下发到所述业务设备。
本申请实施例中,为了实现网络配置请求指向的网络设备与接入对象列表指示的接入对象之间的互联互通,网络服务设备可以在确定接入模式为三层交换时,根据网络配置信息获取对业务设备的配置数据,并将该配置数据下发到业务设备。当终端设备为ISP对应的终端设备时,该网络配置请求指示的终端设备可以为前述提及的ISP对应的网络设备,当终端设备为ICP对应的终端设备时,该网络配置请求指向的网络设备可以为前述提及的ICP对应的网络设备。该过程实现了无需工程师干预的自动下发业务,能够提升业务开通效率。
在一个实施例中,网络服务设备可以从数据库中查询出接入对象列表指示的接入对象的路由信息,并生成包括该接入对象列表指示的接入对象的路由信息的配置数据作为对业务设备的配置数据。
在一个实施例中,当网络配置信息包括路由信息和BGP参数时,网络服务设备可以从数据库中查询出接入对象列表指示的接入对象的路由信息,并生成包括该接入对象列表指示的接入对象的路由信息、该网络配置信息包括的路由信息和BGP参数的配置数据作为对业务设备的配置数据。
S103、所述业务设备接收所述配置数据,并根据所述配置数据完成边界网关协议BGP的配置,以使所述网络配置请求指向的第一网络设备与所述接入对象列表指示的接入对象的第二网络设备之间路由打通。
本申请实施例中,网络服务设备还可以将业务设备的路由信息,如IP地址等信息发送至终端设备,从而使得网络配置请求指向的第一网络设备(为前述提及的网络配置请求指向的网络设备)可以根据该业务设备的路由信息与业务设备建立BGP连接,以实现与接入对象列表指示的接入对象的第二网络设备(为接入对象列表指示的接入对象的网络设备)之间路由打通的过程。在一个实施例中,业务设备可以在检测到网络配置请求指向的网络设备完成BGP的配置后,发送连接成功的提示信息至终端设备。相应地,业务设备也可以采用上述方式与接入对象列表指示的接入对象的第二网络设备建立BGP连接,以实现与网络配置请求指向的第一网络设备之间路由打通的过程。
在一个实施例中,以网络配置信息为终端设备通过ISP门户设置的网络配置信息为例。在接入对象列表指示的接入对象的路由没有community值的情况下,业务设备可以为接入对象列表指示的接入对象的路由打上community值。或,在ISP的路由以及接入对象的路由均没有community值的情况下,业务设备可以为ISP以及接入对象列表指示的接入对象的路由均打上community值。在一个实施例中,业务设备可以将采用上述方式得到的community值存储至数据库。在一个实施例中,业务设备可以通过网络服务设备将community值发送至终端设备,以便ISP本地的DNS服务器能够基于community值做路由策略,这样就使得ISP对应的用户在访问接入对象列表指示的接入对象的内容时,可以通过本地的DNS服务器来实现访问过程。
S104、所述网络服务设备获取所述调度方式指示的调度信息,并将所述调度信息发送至所述终端设备,所述调度信息用于实现所述第一网络设备对所述第二网络设备的访问。
其中,调度信息可以为接入对象列表指示的接入对象的调度信息。当调度方式为路由时,调度信息可以为接入对象列表指示的接入对象的路由信息。当调度方式为IP调度时,调度信息可以为接入对象列表指示的接入对象的DNS IP地址。当调度方式为DNS调度时,调度信息可以为接入对象列表指示的接入对象的的内容的泛域名以及所述接入对象列表指示的接入对象的DNS IP地址。
本申请实施例中,网络服务设备可以记录接入对象、调度方式以及调度信息三者之间的对应关系,网络服务设备可以根据该接入对象列表指示的接入对象、调度方式以及所述的对应关系确定出对应的调度信息作为调度方式指示的调度信息,并将该调度信息发送至终端设备,以实现第一网络设备对第二网络设备的访问。
在一个实施例中,当配置数据包括调度方式指示的调度信息时,业务设备可以获取配置数据包括的该调度方式指示的调度信息,并将调度方式指示的调度信息发送至第一网络设备,以实现第一网络设备对第二网络设备的访问。在一个实施例中,该配置数据包括的调度信息可以是网络服务设备获取的。
可见,图1所示的实施例中,网络服务设备接收终端设备提交的网络配置请求,网络配置请求携带网络配置信息,网络配置信息包括接入模式、接入对象列表和调度方式;网络服务设备在接入模式为三层交换时,根据网络配置信息获取对业务设备的配置数据,并将配置数据下发到业务设备;业务设备根据配置数据完成边界网关协议BGP的配置,以使网络配置请求指向的第一网络设备与接入对象列表指示的接入对象的第二网络设备之间路由打通;网络服务设备获取调度方式指示的调度信息以发送至终端设备,从而实现第一网络设备对第二网络设备的访问,该过程能够实现ISP、ICP自助开通对等互联的服务,无需工程师干预自动的下发业务,从而提高了业务开通的效率,能够更加安全、方便以及快捷地完成ISP与ISP之间,或ISP与ICP之间的数据交互。
请参阅图2,为本申请实施例提供的另一种数据处理方法的流程示意图。该方法具体可以包括以下步骤。
S201、网络服务设备接收终端设备提交的网络配置请求,所述网络配置请求携带网络配置信息,所述网络配置信息包括接入模式、接入对象列表和调度方式。
S202、所述网络服务设备在所述接入模式为三层交换时,根据所述网络配置信息获取对业务设备的配置数据,并将所述配置数据下发到所述业务设备。
S203、所述业务设备接收所述配置数据,并根据所述配置数据完成边界网关协议BGP的配置,以使所述网络配置请求指向的第一网络设备与所述接入对象列表指示的接入对象的第二网络设备之间路由打通。
S204、所述网络服务设备获取所述调度方式指示的调度信息,并将所述调度信息发送至所述终端设备,所述调度信息用于实现所述第一网络设备对所述第二网络设备的访问。
其中,步骤S201-步骤S204可以参见图1实施例中的步骤S101-步骤S104,本申请实施例在此不做赘述。
S205、所述网络服务设备在接入模式为二层交换时,获取所述调度方式指示的调度信息。
S206、所述网络服务设备将所述调度信息返回至所述终端设备。
本申请实施例中,网络服务设备可以在接入模式为二层交换时,获取调度方式指示的调度信息,并将该调度信息返回至终端设备。当调度方式为路由时,调度信息可以为接入对象列表指示的接入对象的路由信息。当调度方式为IP调度时,调度信息可以为接入对象列表指示的接入对象的DNS IP地址。当调度方式为DNS调度时,调度信息可以为接入对象列表指示的接入对象的内容的泛域名以及所述接入对象列表指示的接入对象的DNS IP地址。
在一个实施例中,所述网络服务设备将该配置数据下发到该业务设备的过程可以为该网络服务设备南向通过软件定义网络SDN平台将该配置数据下发到该业务设备。在一个实施例中,网络服务设备具体可以南向由SDN平台通过netconf协议将配置数据下发到业务设备中的交换机。SDN平台可以集成在网络服务设备中,也可以独立于网络服务设备存在。
在一个实施例中,当该网络配置信息为通过ISP门户设置网络配置信息时,该网络配置信息还可以包括是否使用调度平台的指示信息。其中,调度平台可以包括一个或多个调度服务器,例如,该调度平台可以包括DNS服务器和网络地址转换(Network Address Translation,NAT)服务器,DNS服务器用于域名解析, NAT服务器用于地址转换。
在一个实施例中,当该网络配置信息为通过ISP门户设置的网络配置信息时,网络服务设备获取该调度方式指示的调度信息的过程具体为当网络配置信息包括不使用调度平台的指示信息时,网络服务设备获取该接入对象列表指示的接入对象的调度信息;网络服务设备将该接入对象列表指示的接入对象的调度信息返回接入对象的调度信息确定为该调度方式指示的调度信息。其中,所述的调度方式包括以下至少一项:路由、IP调度、DNS调度。
在一个实施例中,在网络配置信息还包括不使用调度平台的指示信息的情况下,当调度方式为路由时,调度方式指示的调度信息为该接入对象列表指示的接入对象的路由信息;当调度方式为IP调度时,调度方式指示的调度信息为该接入对象列表指示的接入对象的DNS IP地址;当调度方式为DNS调度时,调度方式指示的调度信息为该接入对象列表指示的接入对象的内容的泛域名以及该接入对象列表指示的接入对象的DNS IP地址。
住一个实施例中,当网络配置请求指向的第一网络设备为ISP对应的网络设备,接入对象列表指示的接入对象为ICP时,ISP对应的网络设备可以通过API接口调度ICP的地址库,报备ISP的IP和DNS出口给ICP对应的设备,以便于对ICP进行访问。
在一个实施例中,当网络配置信息包括使用调度平台的指示信息时,网络服务设备获取调度平台的调度信息,并将调度平台的调度信息确定为该调度方式指示的调度信息。其中,所述的调度方式包括以下至少一项:路由、IP调度、DNS调度。
在一个实施例中,在网络配置信息还包括使用调度平台的指示信息的情况下,当调度方式为路由时,调度方式指示的调度信息为该调度平台的路由信息;当调度方式为IP调度时,调度方式指示的调度信息为该调度平台的DNS IP地址。当调度方式为DNS调度时,调度方式指示的调度信息为该调度平台的泛域名和该调度平台的DNS IP地址。
下面将对在不使用调度平台的情况下,如何对接入对象进行访问的其中一种方式简要说明。在一个实施例中,以ISP为例,在ISP不使用调度设备的情况下,ISP对应的用户可以使用用户终端发送对接入对象的内容的访问请求到本地的DNS服务器,然后通过本地的DNS服务器接入到业务设备,经由业务设备访问到接入对象列表指示的接入对象,该过程无需经过调度平台。
下面将对在使用调度平台的情况下,如何对接入对象进行访问的其中一种方式进行简要说明。在一个实施例中,以ISP为例,在ISP使用调度平台的情况下,ISP对应的用户可以使用用户终端发送对接入对象列表接入对象的内容的访问请求到调度平台,从而由调度平台实现内容的调度。即,调度平台可以接收ISP对应的用户使用用户终端发送的对接入对象列表指示的接入对象的访问请求,并根据访问请求进行内容调度。
在一个实施例中,调度平台根据访问请求进行内容调度的过程可以为:调度平台根据访问请求携带的域名解析出内容的泛域名,并经由接入对象列表指示的接入对象的服务设备,如ICP的DNS服务器解析出用于访问该内容的IP地址,然后经由调度平台或业务设备发送(是否经由业务设备发送,根据设置的接入模式而定)至用户终端,由用户终端根据这个IP地址以及业务设备访问ICP对应的设备。或,调度平台转发访问请求至ICP对应的设备。
在一个实施例中,如果调度方式为IP调度,业务设备可以下发静态路由到调度平台,调度平台在接收到业务设备下发的静态路由后,可以做静态路由到出口,如NAP出口。以接入列表指示的接入对象为ICP为例,调度平台可以在border leaf 中配置NAT,通过调度ICP的地址库的接口,报备调度平台的出口IP给ICP,从而完成IP调度。如果调度方式为DNS调度,则通过NSP平台下发DNS策略到调度平台,以如下发ICP的域名列表至调度平台,从而完成DNS调度。
可见,图2所示的实施例中,网络服务设备还可以在接入模式为二层交换的模式下,获取调度方式指示的调度信息,并将调度方式指示的调度信息发送至终端设备,该过程能够实现业务的自助开通过程,提升业务开通效率。此外本申请实施例的调度平台可以使ISP更容易取得ICP的内容,降低了ISP和ICP的成本,使ISP的内网化提高,从而实现了ISP和ICP的利益的最大化。另外通过内容交互的平台,ISP和ICP可以更加自主的控制自己的内容流量,从而提供更好的访问质量,ICP也可以更好监控ISP的用户动态,自助快捷的解决故障。
请参阅图3,为本方案提供的一种数据处理系统的网络架构示意图。该数据处理系统可以包括:网络服务设备10、终端设备20和业务设备30。网络服务设备10可以分别与终端设备20和业务设备30建立通信。
终端设备20可以向网络服务设备10提交网络配置请求。例如,ISP对应的终端设备可以通过ISP门户向网络服务设备提交网络配置请求。网络服务设备10接收终端设备20提交的网络配置请求,该网络配置请求携带网络配置信息,该网络配置信息包括接入模式、接入对象列表和调度方式。网络服务设备10在该接入模式为三层交换时,根据该网络配置信息获取对业务设备30的配置数据,并将该配置数据下发到业务设备30。业务设备30接收该配置数据,并根据该配置数据完成边界网关协议BGP的配置,以使该网络配置请求指向的第一网络设备与该接入对象列表指示的接入对象的第二网络设备之间路由打通。网络服务设备10获取该调度方式指示的调度信息,并将该调度信息发送至终端设备20,以实现该第一网络设备对该第二网络设备的访问,通过配置的自助下发,能够提升业务开通效率。
本申请实施例还提供了一种网络服务设备,包括处理器、存储器及存储在所述存储器上并能够在所述处理器上运行的计算机程序,所述计算机程序被所述处理器执行时可实现上述实施例的方法。例如,可实现以下方法:接收终端设备提交的网络配置请求,所述网络配置请求携带网络配置信息,所述网络配置信息包括接入模式、接入对象列表和调度方式;在所述接入模式为三层交换时,根据所述网络配置信息获取对业务设备的配置数据,并将所述配置数据下发到所述业务设备,使得所述业务设备根据所述配置数据完成边界网关协议BGP的配置,以使所述网络配置请求指向的第一网络设备与所述接入对象列表指示的接入对象的第二网络设备之间路由打通;获取所述调度方式指示的调度信息,并将所述调度信息发送至所述终端设备,所述调度信息用于实现所述第一网络设备对所述第二网络设备的访问。
本申请实施例还提供了一种业务设备,包括处理器、存储器及存储在所述存储器上并能够在所述处理器上运行的计算机程序,所述计算机程序被所述处理器执行时可实现上述实施例的方法。例如,可实现以下方法:接收所述配置数据,所述配置数据是网络服务设备接收到终端设备提交的网络配置请求,并在所述配置请求包括的接入模式为三层交换时,根据所述网络配置信息获取对业务设备的配置数据并下发到所述业务设备的;所述网络配置请求携带网络配置信息,所述网络配置信息包括所述接入模式、接入对象列表和调度方式;根据所述配置数据完成边界网关协议BGP的配置,以使所述网络配置请求指向的第一网络设备与所述接入对象列表指示的接入对象的第二网络设备之间路由打通,并使得所述网络服务设备将所述调度方式指示的调度信息发送至所述终端设备,所述调度信息用于实现所述第一网络设备对所述第二网络设备的访问。
本申请实施例还提供了一种调度平台,包括处理器、存储器及存储在所述存储器上并能够在所述处理器上运行的计算机程序,所述计算机程序被所述处理器执行时可实现上述实施例的方法。例如,可实现以下方法:接收网络服务提供商ISP对应的用户使用用户终端发送对接入对象列表指示的接入对象的内容的访问请求;根据所述对接入对象列表指示的接入对象的访问请求进行内容调度。
本申请实施例还提供了一种终端设备,包括处理器、存储器及存储在所述存储器上并能够在所述处理器上运行的计算机程序,所述计算机程序被所述处理器执行时可实现上述实施例的方法。例如,可实现以下方法:向网络服务设备提交网络配置请求,所述网络配置请求携带网络配置信息,所述网络配置信息包括接入模式、接入对象列表和调度方式;以使所述网络服务设备根据所述网络配置信息获取对业务设备的配置数据,并将所述配置数据下发到所述业务设备,使得所述业务设备根据所述配置数据完成边界网关协议BGP的配置,以使所述网络配置请求指向的第一网络设备与所述接入对象列表指示的接入对象的第二网络设备之间路由打通,并使得所述网络服务设备将所述调度方式指示的调度信息发送至所述终端设备;接收所述调度信息,所述调度信息用于实现所述第一网络设备对所述第二网络设备的访问。
可选的,该网络服务设备、业务设备、调度平台、终端设备还可对应执行上述方法中的其余步骤,具体可参照上述实施例的相关描述,此处不赘述。
在本申请的另一实施例中提供一种计算机可读存储介质,所述计算机可读存储介质存储有计算机程序,所述计算机程序被处理器执行时可实现上述实施例中的方法。可选的,所述计算机程序包括程序指令,所述程序指令被处理器执行时实现本申请实施例提供的图1或图2所述的方法实施所描述的实现方式。例如,可以实现以下方法:接收终端设备提交的网络配置请求,所述网络配置请求携带网络配置信息,所述网络配置信息包括接入模式、接入对象列表和调度方式;在所述接入模式为三层交换时,根据所述网络配置信息获取对业务设备的配置数据,并将所述配置数据下发到所述业务设备,使得所述业务设备根据所述配置数据完成边界网关协议BGP的配置,以使所述网络配置请求指向的第一网络设备与所述接入对象列表指示的接入对象的第二网络设备之间路由打通;获取所述调度方式指示的调度信息,并将所述调度信息发送至所述终端设备,所述调度信息用于实现所述第一网络设备对所述第二网络设备的访问;和/或,实现上述方法中所述业务设备执行的方法;和/或,实现上述方法中所述调度平台执行的方法;和/或,实现上述方法中所述终端设备执行的方法。
可选的,该可执行指令使处理器执行时还可实现上述实施例中方法的其他步骤,这里不再赘述。进一步可选的,本申请涉及的介质如计算机可读存储介质可以是非易失性的,也可以是易失性的。
可选的,所述计算机可读存储介质可以是前述任一实施例所述的设备(可以为网络服务设备、业务设备或调度平台)的内部存储单元,例如硬盘或内存。所述计算机可读存储介质也可以是外部存储设备,例如所述的设备上配备的插接式硬盘,智能存储卡(Smart Media Card,SMC),安全数字(Secure Digital,SD)卡,闪存卡(Flash Card)等。进一步地,所述计算机可读存储介质还可以既包括内部存储单元也包括外部存储设备。所述计算机可读存储介质用于存储所述计算机程序以及所述设备所需的其他程序和数据。所述计算机可读存储介质还可以用于暂时地存储已经输出或者将要输出的数据。
本领域普通技术人员可以理解实现上述实施例方法中的全部或部分流程,是可以通过计算机程序来指令相关的硬件来完成,所述的程序可存储于一计算机可读存储介质中,该程序在执行时,可包括如上述各方法的实施例的流程。其中,所述的计算机可读存储介质可为磁碟、光盘、只读存储记忆体(Read-Only Memory,ROM)或随机存储记忆体(Random Access Memory,RAM)等。
以上所揭露的仅为本申请的部分实施例而已,当然不能以此来限定本申请之权利范围,本领域普通技术工作人员可以理解实现上述实施例的全部或部分流程,并依本申请权利要求所作的等同变化,仍属于本申请所涵盖的范围。

Claims (20)

  1. 一种数据处理方法,其中,包括:
    网络服务设备接收终端设备提交的网络配置请求,所述网络配置请求携带网络配置信息,所述网络配置信息包括接入模式、接入对象列表和调度方式;
    所述网络服务设备在所述接入模式为三层交换时,根据所述网络配置信息获取对业务设备的配置数据,并将所述配置数据下发到所述业务设备;
    所述业务设备接收所述配置数据,并根据所述配置数据完成边界网关协议BGP的配置,以使所述网络配置请求指向的第一网络设备与所述接入对象列表指示的接入对象的第二网络设备之间路由打通;
    所述网络服务设备获取所述调度方式指示的调度信息,并将所述调度信息发送至所述终端设备,所述调度信息用于实现所述第一网络设备对所述第二网络设备的访问。
  2. 根据权利要求1所述的方法,其中,所述网络服务设备将所述配置数据下发到所述业务设备,包括:
    所述网络服务设备南向通过软件定义网络SDN平台将所述配置数据下发到所述业务设备。
  3. 根据权利要求1或2所述的方法,其中,所述网络配置信息还包括路由信息和BGP参数,所述网络服务设备获取对业务设备的配置数据,包括:
    所述网络服务设备从数据库中查询出所述接入对象列表指示的接入对象的路由信息;
    所述网络服务设备生成包括所述接入对象列表指示的接入对象的路由信息、所述网络配置信息中的路由信息和所述网络配置信息中的BGP参数的配置数据作为对业务设备的配置数据。
  4. 根据权利要求1所述的方法,其中,所述方法还包括:
    所述网络服务设备在接入模式为二层交换时,获取所述调度方式指示的调度信息;
    所述网络服务设备将所述调度信息返回至所述终端设备。
  5. 根据权利要求1所述的方法,其中,所述网络配置信息为所述终端设备通过网络服务提供商ISP门户设置的网络配置信息或为终端设备通过网络内容提供商ICP门户设置的网络配置信息;
    当所述网络配置信息为通过ISP门户设置的网络配置信息时,所述网络服务设备获取所述调度方式指示的调度信息,包括:
    当网络配置信息包括不使用调度平台的指示信息时,网络服务设备获取所述接入对象列表指示的接入对象的调度信息;
    所述网络服务设备将所述接入对象列表指示的接入对象的调度信息确定为所述调度方式指示的调度信息。
  6. 根据权利要求5所述的方法,其中,所述方法还包括:
    当网络配置信息包括使用调度平台的指示信息时,所述网络服务设备获取调度平台的调度信息;
    所述网络服务设备将所述调度平台的调度信息确定为所述调度方式指示的调度信息。
  7. 根据权利要求5所述的方法,其中,所述调度方式包括以下任一项:路由、IP调度、DNS调度;
    当所述调度方式为路由时,所述调度方式指示的调度信息为所述接入对象列表指示的接入对象的路由信息;
    当所述调度方式为IP调度时,所述调度方式指示的调度信息为所述接入对象列表指示的接入对象的DNS IP地址;
    当所述调度方式为DNS调度时,所述调度方式指示的调度信息为所述接入对象列表指示的接入对象的内容的泛域名以及所述接入对象列表指示的接入对象的DNS IP地址。
  8. 根据权利要求6所述的方法,其中,所述调度方式包括以下任一项:路由、IP调度、DNS调度;
    当所述调度方式为路由时,所述调度方式指示的调度信息为所述调度平台的路由信息;
    当所述调度方式为IP调度时,所述调度方式指示的调度信息为所述调度平台的DNS IP 地址;
    当所述调度方式为DNS调度时,所述调度方式指示的调度信息为所述调度平台的泛域名和所述调度平台的DNS IP地址。
  9. 根据权利要求6或8所述的方法,其中,所述方法还包括:
    所述调度平台接收ISP对应的用户使用用户终端发送对所述接入对象列表指示的接入对象的内容的访问请求到调度设备;
    所述调度平台根据所述对接入对象列表指示的接入对象的访问请求进行内容调度。
  10. 一种计算机可读存储介质,其中,所述计算机可读存储介质存储计算机程序,所述计算机程序被处理器执行,以实现以下方法:
    接收终端设备提交的网络配置请求,所述网络配置请求携带网络配置信息,所述网络配置信息包括接入模式、接入对象列表和调度方式;在所述接入模式为三层交换时,根据所述网络配置信息获取对业务设备的配置数据,并将所述配置数据下发到所述业务设备,使得所述业务设备根据所述配置数据完成边界网关协议BGP的配置,以使所述网络配置请求指向的第一网络设备与所述接入对象列表指示的接入对象的第二网络设备之间路由打通;获取所述调度方式指示的调度信息,并将所述调度信息发送至所述终端设备,所述调度信息用于实现所述第一网络设备对所述第二网络设备的访问;或者,
    实现如权利要求1-9任一项中所述业务设备执行的方法;或者,
    实现如权利要求1-9任一项中所述调度平台执行的方法;或者,
    实现如权利要求1-9任一项中所述终端设备执行的方法。
  11. 根据权利要求10所述的计算机可读存储介质,其中,所述将所述配置数据下发到所述业务设备时,具体实现:
    南向通过软件定义网络SDN平台将所述配置数据下发到所述业务设备。
  12. 根据权利要求10或11所述的计算机可读存储介质,其中,所述网络配置信息还包括路由信息和BGP参数,所述获取对业务设备的配置数据时,具体实现:
    从数据库中查询出所述接入对象列表指示的接入对象的路由信息;
    生成包括所述接入对象列表指示的接入对象的路由信息、所述网络配置信息中的路由信息和所述网络配置信息中的BGP参数的配置数据作为对业务设备的配置数据。
  13. 根据权利要求10所述的计算机可读存储介质,其中,所述计算机程序被处理器执行时,还用于实现:
    在接入模式为二层交换时,获取所述调度方式指示的调度信息;
    将所述调度信息返回至所述终端设备。
  14. 根据权利要求10所述的计算机可读存储介质,其中,所述网络配置信息为所述终端设备通过网络服务提供商ISP门户设置的网络配置信息或为终端设备通过网络内容提供商ICP门户设置的网络配置信息;
    当所述网络配置信息为通过ISP门户设置的网络配置信息时,所述获取所述调度方式指示的调度信息时,具体实现:
    当网络配置信息包括不使用调度平台的指示信息时,获取所述接入对象列表指示的接入对象的调度信息;
    将所述接入对象列表指示的接入对象的调度信息确定为所述调度方式指示的调度信息。
  15. 根据权利要求14所述的计算机可读存储介质,其中,所述计算机程序被处理器执行时,还用于实现:
    当网络配置信息包括使用调度平台的指示信息时,获取调度平台的调度信息;
    将所述调度平台的调度信息确定为所述调度方式指示的调度信息。
  16. 一种网络服务设备,其中,包括处理器、存储器及存储在所述存储器上并能够在所述处理器上运行的计算机程序,所述计算机程序被所述处理器执行时实现以下方法:
    接收终端设备提交的网络配置请求,所述网络配置请求携带网络配置信息,所述网络配置信息包括接入模式、接入对象列表和调度方式;
    在所述接入模式为三层交换时,根据所述网络配置信息获取对业务设备的配置数据,并将所述配置数据下发到所述业务设备,使得所述业务设备根据所述配置数据完成边界网关协议BGP的配置,以使所述网络配置请求指向的第一网络设备与所述接入对象列表指示的接入对象的第二网络设备之间路由打通;
    获取所述调度方式指示的调度信息,并将所述调度信息发送至所述终端设备,所述调度信息用于实现所述第一网络设备对所述第二网络设备的访问。
  17. 一种业务设备,其中,包括处理器、存储器及存储在所述存储器上并能够在所述处理器上运行的计算机程序,所述计算机程序被所述处理器执行时实现以下方法:
    接收所述配置数据,所述配置数据是网络服务设备接收到终端设备提交的网络配置请求,并在所述配置请求包括的接入模式为三层交换时,根据所述网络配置信息获取对业务设备的配置数据并下发到所述业务设备的;所述网络配置请求携带网络配置信息,所述网络配置信息包括所述接入模式、接入对象列表和调度方式;
    根据所述配置数据完成边界网关协议BGP的配置,以使所述网络配置请求指向的第一网络设备与所述接入对象列表指示的接入对象的第二网络设备之间路由打通,并使得所述网络服务设备将所述调度方式指示的调度信息发送至所述终端设备,所述调度信息用于实现所述第一网络设备对所述第二网络设备的访问。
  18. 一种调度平台,其中,包括处理器、存储器及存储在所述存储器上并能够在所述处理器上运行的计算机程序,所述计算机程序被所述处理器执行时实现以下方法:
    接收网络服务提供商ISP对应的用户使用用户终端发送对接入对象列表指示的接入对象的内容的访问请求;
    根据所述对接入对象列表指示的接入对象的访问请求进行内容调度。
  19. 一种终端设备,其中,包括处理器、存储器及存储在所述存储器上并能够在所述处理器上运行的计算机程序,所述计算机程序被所述处理器执行时实现以下方法:
    向网络服务设备提交网络配置请求,所述网络配置请求携带网络配置信息,所述网络配置信息包括接入模式、接入对象列表和调度方式;以使所述网络服务设备根据所述网络配置信息获取对业务设备的配置数据,并将所述配置数据下发到所述业务设备,使得所述业务设备根据所述配置数据完成边界网关协议BGP的配置,以使所述网络配置请求指向的第一网络设备与所述接入对象列表指示的接入对象的第二网络设备之间路由打通,并使得所述网络服务设备将所述调度方式指示的调度信息发送至所述终端设备;
    接收所述调度信息,所述调度信息用于实现所述第一网络设备对所述第二网络设备的访问。
  20. 一种数据处理系统,其中,包括:网络服务设备、终端设备和业务设备,所述网络服务设备分别与所述终端设备和所述业务设备建立通信;其中,
    所述终端设备,用于向所述网络服务设备提交网络配置请求,所述网络配置请求携带网络配置信息,所述网络配置信息包括接入模式、接入对象列表和调度方式;
    所述网络服务设备,用于接收所述终端设备提交的网络配置请求,在该接入模式为三层交换时,根据该网络配置信息获取对所述业务设备的配置数据,并将该配置数据下发到业务设备;
    所述业务设备,用于接收该配置数据,并根据该配置数据完成边界网关协议BGP的配置,以使该网络配置请求指向的第一网络设备与该接入对象列表指示的接入对象的第二网络设备之间路由打通;
    所述网络服务设备,还用于获取该调度方式指示的调度信息,并将该调度信息发送至所述终端设备,以实现该第一网络设备对该第二网络设备的访问。
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