WO2016061952A1 - Ethernet service configuration method and apparatus, and storage medium - Google Patents

Ethernet service configuration method and apparatus, and storage medium Download PDF

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Publication number
WO2016061952A1
WO2016061952A1 PCT/CN2015/072656 CN2015072656W WO2016061952A1 WO 2016061952 A1 WO2016061952 A1 WO 2016061952A1 CN 2015072656 W CN2015072656 W CN 2015072656W WO 2016061952 A1 WO2016061952 A1 WO 2016061952A1
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service
ethernet service
ethernet
pseudowire
protection
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PCT/CN2015/072656
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French (fr)
Chinese (zh)
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夏振宇
李发献
刘晓艳
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中兴通讯股份有限公司
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Publication of WO2016061952A1 publication Critical patent/WO2016061952A1/en

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    • 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

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  • the present invention relates to a related art of Ethernet service configuration, and in particular, to an Ethernet service configuration method, apparatus, and storage medium.
  • Ethernet service structure is loose, with many layers and complex parameters. When configuring an Ethernet service, it often takes a lot of time and is inefficient, which is not conducive to the rapid deployment of 4G services.
  • the entire process of Ethernet service configuration is divided into two parts: pseudowire structure construction and parameter configuration. It is also these two parts that bring the efficiency bottleneck in the configuration.
  • the focus of the pseudowire structure construction process is to select the service layer tunnel. You need to manually select a service layer tunnel for each pseudowire. If it is a multi-segment pseudowire, you need to select a service layer tunnel for each segment. Due to the large number of pseudowires that need to be configured, the configuration workload is very large and error-prone; the parameter configuration includes pseudowire parameters, protection parameters, OAM parameters, etc., and the number is astonishing. Configuring a correct value for each parameter is a huge challenge that takes a lot of time and checks for proper configuration multiple times. Therefore, the existing Ethernet service configuration has low efficiency, poor flexibility, and low reliability.
  • embodiments of the present invention are expected to provide an Ethernet service configuration method and apparatus, and
  • the storage medium can improve the efficiency of Ethernet service configuration, and has high flexibility and reliability.
  • the embodiment of the invention provides a method for configuring an Ethernet service, where the method includes:
  • the parameter is configured according to the service parameter template corresponding to the service model of the Ethernet service.
  • the determining a service model of the Ethernet service includes: determining a service model of the Ethernet service according to a topology of the Ethernet service.
  • the method further includes: setting a routing policy of the Ethernet service;
  • the routing policy includes: route mandatory, route prohibited, complete protection, and protection as much as possible.
  • the routing calculation and the pseudowire construction according to the determined service model include:
  • Determining the A endpoint and the Z endpoint of the Ethernet service performing route calculation in the shortest path manner according to the A endpoint and the Z endpoint and the set service model, and performing pseudowire construction according to the calculated route.
  • the service model includes: a line type, a network type, and a tree type;
  • the line type includes: no protection, closed protection, open protection, open two-node interconnection DNI protection;
  • the network type includes: a fully interconnected, layered virtual private local area network service H-VPLS;
  • the tree type includes: a basic tree type and a double root tree type.
  • An embodiment of the present invention further provides an Ethernet service configuration apparatus, where the apparatus includes: a determining module, a pseudowire building module, and a parameter configuration module;
  • the determining module is configured to determine a service model of an Ethernet service
  • the pseudowire building module is configured to perform route calculation and pseudowire construction according to the determined service model
  • the parameter configuration module is configured to perform parameter configuration on the Ethernet service according to a service parameter template corresponding to the service model of the Ethernet service, when the configuration of the pseudowire is completed.
  • the determining module is configured to determine a service model of the Ethernet service according to a topology of the Ethernet service.
  • the device further includes: a setting module configured to set a routing policy of the Ethernet service;
  • the routing policy includes: route mandatory, route prohibited, complete protection, and protection as much as possible.
  • the pseudowire setup module is configured to determine an A endpoint and a Z endpoint of the Ethernet service, and perform route calculation in a shortest path according to the A endpoint and the Z endpoint and the set service model, and Pseudowire construction is performed based on the calculated route.
  • the service model includes: a line type, a network type, and a tree type;
  • the line types include: unprotected, closed protection, open protection, open DNI protection;
  • the network type includes: full interconnection and H-VPLS;
  • the tree type includes: a basic tree type and a double root tree type.
  • the embodiment of the present invention further provides a computer storage medium, where the computer storage medium stores a computer program for performing an Ethernet service configuration method according to an embodiment of the present invention.
  • the Ethernet service configuration method, apparatus, and storage medium provided by the embodiments of the present invention determine a service model of an Ethernet service; perform route calculation and pseudowire construction according to the determined service model; and determine, when the pseudowire construction is completed,
  • the service parameter template corresponding to the service model of the Ethernet service performs parameter configuration on the Ethernet service.
  • FIG. 1 is a schematic flowchart of a method for configuring an Ethernet service according to an embodiment of the present invention
  • FIG. 2 is a schematic diagram of an Ethernet service model according to an embodiment of the present invention.
  • FIG. 3 is a schematic flowchart of a method for configuring an Ethernet service according to Embodiment 2 of the present invention
  • FIG. 4 is a schematic structural diagram of a structure of an Ethernet service configuration apparatus according to an embodiment of the present invention.
  • the service model of the Ethernet service is determined; the route calculation and the pseudowire construction are performed according to the determined service model; and when the pseudowire setup is completed, the service parameter template corresponding to the service model of the Ethernet service is determined. And parameterizing the Ethernet service.
  • FIG. 1 is a schematic flowchart of a method for configuring an Ethernet service according to an embodiment of the present invention. As shown in FIG. 1 , the process of configuring an Ethernet service in this embodiment includes:
  • Step 101 Determine a service model of an Ethernet service.
  • the service model is divided according to an engineering application scenario
  • the business model includes: a line type, a network type, and a tree type;
  • the line type includes: unprotected, closed protection, open protection, and open dual node interconnection (DNI, Dual Node Interconnection) protection;
  • DNI Dual Node Interconnection
  • the network type includes: Full Mesh and Hierarchy of Virtual Private Lan Service (H-VPLS);
  • the tree type includes: a basic tree type and a double root tree type; as shown in FIG. 2 is a schematic diagram of an Ethernet service model according to an embodiment of the present invention
  • the step includes: the administrator determines the service model of the Ethernet service according to the topology of the Ethernet service, and inputs the determined service model into the network element management system (EMS, through the human-machine interaction interface).
  • EMS determines the service model of the Ethernet service according to the input information; for example, the Ethernet service includes an A endpoint and a Z endpoint, and the A endpoint to the Z endpoint are connected by a straight line, and the service model can be determined as No protection; the Ethernet service includes one A endpoint and two Z endpoints. The A endpoint is connected to the two Z endpoints by a straight line, and there is no intersection between the two lines.
  • the service model can be determined to be open protection; here, the A The endpoint is the source endpoint and the Z endpoint is the sink endpoint.
  • the topology of the Ethernet service and its corresponding service model can be seen in Figure 2.
  • Step 102 Perform route calculation and pseudowire construction according to the determined service model.
  • the step includes: the administrator determines the A endpoint and the Z endpoint of the Ethernet service, and inputs the A endpoint and the Z endpoint into the EMS through the human-machine interaction interface; the EMS determines the A endpoint and the Z endpoint according to the input information, and according to the A
  • the endpoint and the Z endpoint and the set service model perform route calculation in the shortest path manner, and perform pseudowire construction according to the calculated route; thus, it can automatically find a route and select a service layer tunnel for each end-to-end pseudowire. Eliminating the hassle of manually selecting a tunnel by the user;
  • the shortest path is the shortest path between any two nodes in the Ethernet service.
  • the method may further include: setting a routing policy of the Ethernet service; thus, calculating a route according to the determined service model, taking into account the route separation in the protection scenario, and satisfying the engineering scenario.
  • the application more precise routing customization, ensures the controllable, adjustable and flexible configuration of the Ethernet service configuration process;
  • the routing policy includes: route mandatory, route prohibited, complete protection, and protection as much as possible.
  • Step 103 When it is determined that the pseudowire setup is complete, perform parameter configuration on the Ethernet service according to the service parameter template corresponding to the service model of the Ethernet service.
  • the determining the pseudowire construction completion comprises: determining, by the EMS, the frame structure of the constructed pseudowire When the service model of the Ethernet service is the same, it is considered that the pseudowire construction has been completed;
  • the service parameter template corresponding to the service model of the Ethernet service is preset, and the service parameter template may be a unified service parameter template set for all service types, that is, regardless of the service model of the Ethernet service. In either case, a service parameter template is used; or a corresponding service parameter template set for the line type, the network type, and the tree type, for example, determining that the service model of the Ethernet service belongs to a line type.
  • Select the service parameter template corresponding to the line type it can also be eight services: unprotected, closed protection, open protection, open DNI protection, full interconnection, H-VPLS, basic tree and dual root tree. If the Ethernet service is open protection, the service parameter template corresponding to the open protection is selected;
  • the parameter configuration of the Ethernet service includes: configuring the pseudowire parameters, protection parameters, service parameters, and operation, management, and maintenance (OAM) parameters of the Ethernet service.
  • OAM operation, management, and maintenance
  • FIG. 3 is a schematic flowchart of a method for configuring an Ethernet service according to Embodiment 2 of the present invention. As shown in FIG. 3, the process of configuring an Ethernet service in this embodiment includes:
  • Step 301 Determine a service model of an Ethernet service.
  • the service model is divided according to an engineering application scenario
  • the business model includes: a line type, a network type, and a tree type;
  • the line type includes: no protection, closed protection, open protection, and open DNI protection;
  • the mesh type includes: Full Mesh and H-VPLS;
  • the tree type includes: a basic tree type and a double root tree type; as shown in FIG. 2 is a schematic diagram of an Ethernet service model according to an embodiment of the present invention
  • the step includes: determining a service model of the Ethernet service according to the topology of the Ethernet service; for example, the Ethernet service includes an A endpoint and a Z endpoint, and between the A endpoint and the Z endpoint.
  • the service model is unprotected; the Ethernet service includes one A endpoint and two Z endpoints, and the A endpoint is connected to the two Z endpoints by a straight line, and there is no intersection between the two straight lines, and the service can be determined.
  • the model is open protection; the topology of the Ethernet service and its corresponding business model can be seen in Figure 2.
  • the service model of the Ethernet service is determined to be open protection.
  • Step 302 Set a routing policy of the Ethernet service.
  • the routing policy includes: route mandatory, route prohibited, complete protection, and protection as much as possible.
  • the route protection policy is set to be completely protected.
  • Step 303 Perform route calculation and pseudowire construction according to the determined service model.
  • the step includes: the EMS determines the A endpoint and the Z endpoint of the Ethernet service, performs route calculation in the shortest path manner according to the A endpoint and the Z endpoint, and the set service model, and performs pseudowire according to the calculated route. Build; in this way, it can automatically find routing for each end-to-end pseudowire, select service layer tunnel, and save the user's trouble of manually selecting the tunnel;
  • the shortest path is the shortest path between two nodes in the Ethernet service.
  • Step 304 When it is determined that the pseudowire is set up, perform parameter configuration on the Ethernet service according to the service parameter template corresponding to the service model of the Ethernet service.
  • the determining the pseudowire construction completion comprises: determining that the pseudowire construction is completed when the framework structure of the constructed pseudowire is the same as the service model of the Ethernet service;
  • the service parameter template corresponding to the service model of the Ethernet service is preset, and the service parameter template may be a unified service parameter template set for all service types, that is, regardless of the service model of the Ethernet service. Which is the use of a business parameter template;
  • the corresponding service parameter template set for the service type of the line type, the network type, and the tree type for example, determining that the service model of the Ethernet service belongs to a line type, and selecting a service parameter template corresponding to the line type; It is a corresponding service parameter template set for eight types of services: unprotected, closed protection, open protection, open DNI protection, full interconnection, H-VPLS, basic tree, and dual root tree type; When the Ethernet service is open protection, select a service parameter template corresponding to the open protection;
  • Performing parameter configuration on the Ethernet service includes: performing pseudowire parameters, protection parameters, service parameters, and operations, and configuration of OAM parameters on the Ethernet service.
  • the Ethernet service configuration apparatus of the embodiment of the present invention includes: a determining module 41, a pseudowire building module 42, and a parameter configuration module 43; ,
  • the determining module 41 is configured to determine a service model of an Ethernet service
  • the pseudowire building module 42 is configured to perform route calculation and pseudowire construction according to the determined service model
  • the parameter configuration module 43 is configured to perform parameter configuration on the Ethernet service according to a service parameter template corresponding to the service model of the Ethernet service when the configuration of the pseudowire is completed.
  • the determining module 41 determines the service model of the Ethernet service, and the determining module 41 determines the service model of the Ethernet service according to the topology of the Ethernet service; for example, the Ethernet service includes an A endpoint and a Z The endpoints, and the A endpoints to the Z endpoints are connected by a straight line to determine that the service model is unprotected; the Ethernet service includes one A endpoint and two Z endpoints, and the A endpoints are respectively connected to the two Z endpoints by a straight line, and There is no cross between the two lines; the topology of the Ethernet service and its corresponding service model can be seen in Figure 2.
  • the apparatus further includes a setting module 44 configured to set a routing policy of the Ethernet service
  • the routing policy includes: a route must pass, a route is prohibited, a complete protection, and a protection as much as possible. Protection.
  • the pseudowire building module 42 performs route calculation and pseudowire construction according to the determined service model, including:
  • the pseudowire building module 42 determines the A endpoint and the Z endpoint of the Ethernet service, performs routing calculation in the shortest path manner according to the A endpoint and the Z endpoint, and the set service model, and performs routing according to the calculated route. Pseudo-wire construction; in this way, it can automatically find routing and select service layer tunnel for each end-to-end pseudowire, eliminating the trouble of users manually selecting the tunnel;
  • the shortest path is the shortest path between any two nodes in the Ethernet service.
  • the service model includes: a line type, a network type, and a tree type;
  • the line type includes: no protection, closed protection, open protection, and open DNI protection;
  • the network type includes: full interconnection and H-VPLS;
  • the tree type includes: a basic tree type and a double root tree type.
  • the service parameter template corresponding to the service model of the Ethernet service is preset, and the service parameter template may be a unified service parameter template set for all service types, that is, What is the service model of the Ethernet service, which uses a service parameter template; it can also be a corresponding service parameter template set for the line type, the network type, and the tree type, for example, determining the Ethernet service.
  • the business model belongs to the line type, and selects the service parameter template corresponding to the line type; it can also be unprotected, closed protection, open protection, open DNI protection, full interconnection, H-VPLS, basic tree and double If the Ethernet service is open protection, the service parameter template corresponding to the open protection is selected;
  • Performing parameter configuration on the Ethernet service includes: performing pseudowire parameters, protection parameters, service parameters, and operations, and configuration of OAM parameters on the Ethernet service.
  • the determining module, the pseudowire building module, the parameter configuration module and the setting module in the Ethernet service configuration device proposed in the embodiment of the present invention may be implemented by a processor, and may also be implemented by a specific logic circuit;
  • the device may be a processor on a mobile terminal or a server.
  • the processor may be a central processing unit (CPU), a microprocessor (MPU), a digital signal processor (DSP), or a field programmable gate array (FPGA). )Wait.
  • Ethernet service configuration method if the foregoing Ethernet service configuration method is implemented in the form of a software function module and sold or used as a standalone product, it may also be stored in a computer readable storage medium.
  • the technical solution of the embodiments of the present invention may be embodied in the form of a software product in essence or in the form of a software product stored in a storage medium, including a plurality of instructions.
  • a computer device (which may be a personal computer, server, or network device, etc.) is caused to perform all or part of the methods described in various embodiments of the present invention.
  • the foregoing storage medium includes various media that can store program codes, such as a USB flash drive, a mobile hard disk, a read only memory (ROM), a magnetic disk, or an optical disk.
  • program codes such as a USB flash drive, a mobile hard disk, a read only memory (ROM), a magnetic disk, or an optical disk.
  • the embodiment of the present invention further provides a computer storage medium, wherein the computer storage medium stores a computer program, and the computer program is used to execute the foregoing Ethernet service configuration method in the embodiment of the present invention.

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Abstract

Disclosed is an Ethernet service configuration method. The method comprises: determining a service model of an Ethernet service (101); performing route calculation and pseudo-wire setup according to the determined service model (102); and when it is determined that the pseudo-wire setup is completed, performing parameter configuration on the Ethernet service according to a service parameter template corresponding to the service model of the Ethernet service (103). Also disclosed are an Ethernet service configuration apparatus and a storage medium.

Description

一种以太网业务配置方法、装置及存储介质Ethernet service configuration method, device and storage medium 技术领域Technical field
本发明涉及以太网业务配置的相关技术,尤其涉及一种以太网业务配置方法、装置及存储介质。The present invention relates to a related art of Ethernet service configuration, and in particular, to an Ethernet service configuration method, apparatus, and storage medium.
背景技术Background technique
随着通讯技术的迅猛发展,第四代移动通信技术(4G,the 4th Generation mobile communication)网络开始大面积建设,移动运营商都在角逐4G移动市场。在短时间内需要开通大量的4G长期演进(LTE,Long Term Evolution)以太网业务,以满足4G市场的蓬勃发展。With the rapid development of communication technology, the 4th generation mobile communication technology (4G, 4th Generation mobile communication) network began to be built on a large scale, and mobile operators are competing for the 4G mobile market. In a short period of time, a large number of 4G Long Term Evolution (LTE) Ethernet services need to be opened to meet the booming 4G market.
以太网业务结构松散,层次多、参数复杂,配置一条以太网业务,往往要耗费大量的时间,效率低下,非常不利于4G业务的快速部署。以太网业务配置的整个过程分为两个部分:伪线结构搭建和参数配置。也正是这两个部分带来了配置上的效率瓶颈。The Ethernet service structure is loose, with many layers and complex parameters. When configuring an Ethernet service, it often takes a lot of time and is inefficient, which is not conducive to the rapid deployment of 4G services. The entire process of Ethernet service configuration is divided into two parts: pseudowire structure construction and parameter configuration. It is also these two parts that bring the efficiency bottleneck in the configuration.
伪线结构搭建过程的重点是选择服务层隧道。需要手工为每条伪线选择一根服务层隧道,如果是多段伪线就需要为每一段都选择一根服务层隧道。由于需要配置的伪线数量大,配置工作量非常大,而且容易出错;参数配置包括伪线参数、保护参数、OAM参数等,数量之多让人惊骇。为每个参数配置一个正确的值,是一个巨大的挑战,既耗费大量时间,还要多次检查是否配置正确。因此,现有以太网业务配置的效率低下、灵活性差、可靠性低。The focus of the pseudowire structure construction process is to select the service layer tunnel. You need to manually select a service layer tunnel for each pseudowire. If it is a multi-segment pseudowire, you need to select a service layer tunnel for each segment. Due to the large number of pseudowires that need to be configured, the configuration workload is very large and error-prone; the parameter configuration includes pseudowire parameters, protection parameters, OAM parameters, etc., and the number is astounding. Configuring a correct value for each parameter is a huge challenge that takes a lot of time and checks for proper configuration multiple times. Therefore, the existing Ethernet service configuration has low efficiency, poor flexibility, and low reliability.
发明内容Summary of the invention
有鉴于此,本发明实施例期望提供一种以太网业务配置方法、装置及 存储介质,能够提高以太网业务配置的效率,且灵活性高、可靠性好。In view of this, embodiments of the present invention are expected to provide an Ethernet service configuration method and apparatus, and The storage medium can improve the efficiency of Ethernet service configuration, and has high flexibility and reliability.
为达到上述目的,本发明实施例的技术方案是这样实现的:To achieve the above objective, the technical solution of the embodiment of the present invention is implemented as follows:
本发明实施例提供了一种以太网业务配置方法,所述方法包括:The embodiment of the invention provides a method for configuring an Ethernet service, where the method includes:
确定以太网业务的业务模型;Determining the business model of the Ethernet service;
依据确定的业务模型进行路由计算及伪线搭建;Perform route calculation and pseudowire construction according to the determined service model;
确定伪线搭建完成时,依据与所述以太网业务的业务模型对应的业务参数模板,对所述以太网业务进行参数配置。When the configuration of the pseudowire is completed, the parameter is configured according to the service parameter template corresponding to the service model of the Ethernet service.
上述方案中,所述确定以太网业务的业务模型包括:依据以太网业务的拓扑形态确定以太网业务的业务模型。In the foregoing solution, the determining a service model of the Ethernet service includes: determining a service model of the Ethernet service according to a topology of the Ethernet service.
上述方案中,所述依据确定的业务模型进行路由计算及伪线搭建之前,所述方法还包括:设置所述以太网业务的路由策略;In the above solution, before the routing calculation and the pseudowire construction are performed according to the determined service model, the method further includes: setting a routing policy of the Ethernet service;
其中,所述路由策略包括:路由必经、路由禁止、完全保护及尽量保护。The routing policy includes: route mandatory, route prohibited, complete protection, and protection as much as possible.
上述方案中,所述依据确定的业务模型进行路由计算及伪线搭建包括:In the above solution, the routing calculation and the pseudowire construction according to the determined service model include:
确定所述以太网业务的A端点和Z端点,依据所述A端点和Z端点及设置的业务模型,以最短路径的方式进行路由计算,并依据计算得到的路由进行伪线搭建。Determining the A endpoint and the Z endpoint of the Ethernet service, performing route calculation in the shortest path manner according to the A endpoint and the Z endpoint and the set service model, and performing pseudowire construction according to the calculated route.
上述方案中,所述业务模型包括:线型、网型及树型;其中,In the above solution, the service model includes: a line type, a network type, and a tree type;
所述线型包括:无保护、封闭式保护、开放式保护、开放式双节点互连DNI保护;The line type includes: no protection, closed protection, open protection, open two-node interconnection DNI protection;
所述网型包括:全互连、分层虚拟专用局域网服务H-VPLS;The network type includes: a fully interconnected, layered virtual private local area network service H-VPLS;
所述树型包括:基本树型和双根树型。The tree type includes: a basic tree type and a double root tree type.
本发明实施例还提供了一种以太网业务配置装置,所述装置包括:确定模块、伪线搭建模块及参数配置模块;其中,An embodiment of the present invention further provides an Ethernet service configuration apparatus, where the apparatus includes: a determining module, a pseudowire building module, and a parameter configuration module;
所述确定模块,配置为确定以太网业务的业务模型; The determining module is configured to determine a service model of an Ethernet service;
所述伪线搭建模块,配置为依据确定的业务模型进行路由计算及伪线搭建;The pseudowire building module is configured to perform route calculation and pseudowire construction according to the determined service model;
所述参数配置模块,配置为确定伪线搭建完成时,依据与所述以太网业务的业务模型对应的业务参数模板,对所述以太网业务进行参数配置。The parameter configuration module is configured to perform parameter configuration on the Ethernet service according to a service parameter template corresponding to the service model of the Ethernet service, when the configuration of the pseudowire is completed.
上述方案中,所述确定模块,配置为依据以太网业务的拓扑形态确定以太网业务的业务模型。In the above solution, the determining module is configured to determine a service model of the Ethernet service according to a topology of the Ethernet service.
上述方案中,所述装置还包括:设置模块,配置为设置所述以太网业务的路由策略;In the above solution, the device further includes: a setting module configured to set a routing policy of the Ethernet service;
其中,所述路由策略包括:路由必经、路由禁止、完全保护及尽量保护。The routing policy includes: route mandatory, route prohibited, complete protection, and protection as much as possible.
上述方案中,所述伪线搭建模块,配置为确定所述以太网业务的A端点和Z端点,依据所述A端点和Z端点及设置的业务模型,以最短路径的方式进行路由计算,并依据计算得到的路由进行伪线搭建。In the above solution, the pseudowire setup module is configured to determine an A endpoint and a Z endpoint of the Ethernet service, and perform route calculation in a shortest path according to the A endpoint and the Z endpoint and the set service model, and Pseudowire construction is performed based on the calculated route.
上述方案中,所述业务模型包括:线型、网型及树型;其中,In the above solution, the service model includes: a line type, a network type, and a tree type;
所述线型包括:无保护、封闭式保护、开放式保护、开放式DNI保护;The line types include: unprotected, closed protection, open protection, open DNI protection;
所述网型包括:全互连及H-VPLS;The network type includes: full interconnection and H-VPLS;
所述树型包括:基本树型和双根树型。The tree type includes: a basic tree type and a double root tree type.
本发明实施例还提供了一种计算机存储介质,所述计算机存储介质存储有计算机程序,该计算机程序用于执行本发明实施例的以太网业务配置方法。The embodiment of the present invention further provides a computer storage medium, where the computer storage medium stores a computer program for performing an Ethernet service configuration method according to an embodiment of the present invention.
本发明实施例所提供的以太网业务配置方法、装置及存储介质,确定以太网业务的业务模型;依据确定的业务模型进行路由计算及伪线搭建;确定伪线搭建完成时,依据与所述以太网业务的业务模型对应的业务参数模板,对所述以太网业务进行参数配置。如此,解决了现有技术中伪线搭建的手工操作的麻烦和低效问题,大大提升了以太网业务配置的效率;同 时,使用业务参数模板提高了参数的配置效率,令用户从繁重的重复操作中解脱出来。The Ethernet service configuration method, apparatus, and storage medium provided by the embodiments of the present invention determine a service model of an Ethernet service; perform route calculation and pseudowire construction according to the determined service model; and determine, when the pseudowire construction is completed, The service parameter template corresponding to the service model of the Ethernet service performs parameter configuration on the Ethernet service. In this way, the troubles and inefficiencies of the manual operation of the pseudowire construction in the prior art are solved, and the efficiency of the Ethernet service configuration is greatly improved; When using the business parameter template, the parameter configuration efficiency is improved, and the user is freed from heavy repeated operations.
附图说明DRAWINGS
图1为本发明实施例一以太网业务配置方法流程示意图;1 is a schematic flowchart of a method for configuring an Ethernet service according to an embodiment of the present invention;
图2所示为本发明实施例以太网业务模型示意图;2 is a schematic diagram of an Ethernet service model according to an embodiment of the present invention;
图3为本发明实施例二以太网业务配置方法流程示意图;3 is a schematic flowchart of a method for configuring an Ethernet service according to Embodiment 2 of the present invention;
图4为本发明实施例以太网业务配置装置组成结构示意图。FIG. 4 is a schematic structural diagram of a structure of an Ethernet service configuration apparatus according to an embodiment of the present invention.
具体实施方式detailed description
在本发明实施例中,确定以太网业务的业务模型;依据确定的业务模型进行路由计算及伪线搭建;确定伪线搭建完成时,依据与所述以太网业务的业务模型对应的业务参数模板,对所述以太网业务进行参数配置。In the embodiment of the present invention, the service model of the Ethernet service is determined; the route calculation and the pseudowire construction are performed according to the determined service model; and when the pseudowire setup is completed, the service parameter template corresponding to the service model of the Ethernet service is determined. And parameterizing the Ethernet service.
图1为本发明实施例一以太网业务配置方法流程示意图,如图1所示,本实施例以太网业务配置方法流程包括:1 is a schematic flowchart of a method for configuring an Ethernet service according to an embodiment of the present invention. As shown in FIG. 1 , the process of configuring an Ethernet service in this embodiment includes:
步骤101:确定以太网业务的业务模型;Step 101: Determine a service model of an Ethernet service.
这里,所述业务模型为依据工程应用场景进行划分的;Here, the service model is divided according to an engineering application scenario;
所述业务模型包括:线型、网型及树型;The business model includes: a line type, a network type, and a tree type;
其中,所述线型包括:无保护、封闭式保护、开放式保护及开放式双节点互连(DNI,Dual Node Interconnection)保护;The line type includes: unprotected, closed protection, open protection, and open dual node interconnection (DNI, Dual Node Interconnection) protection;
所述网型包括:全互连(Full Mesh)及分层虚拟专用局域网服务(H-VPLS,Hierarchy of Virtual Private Lan Service);The network type includes: Full Mesh and Hierarchy of Virtual Private Lan Service (H-VPLS);
所述树型包括:基本树型和双根树型;如图2所示为本发明实施例以太网业务模型示意图;The tree type includes: a basic tree type and a double root tree type; as shown in FIG. 2 is a schematic diagram of an Ethernet service model according to an embodiment of the present invention;
本步骤包括:管理员依据以太网业务的拓扑形态确定以太网业务的业务模型,将确定的业务模型通过人机交互界面输入网元管理系统(EMS, Element Management System);EMS依据输入的信息确定以太网业务的业务模型;例如:以太网业务包括一个A端点和一个Z端点,且A端点到Z端点之间通过一条直线连通,可确定业务模型为无保护;以太网业务包括一个A端点和两个Z端点,A端点分别和两个Z端点通过直线相连,且两条直线间无交叉,可确定业务模型为开放式保护;这里,所述A端点为源端点,Z端点为宿端点;以太网业务的拓扑形态及其对应的业务模型可参见图2。The step includes: the administrator determines the service model of the Ethernet service according to the topology of the Ethernet service, and inputs the determined service model into the network element management system (EMS, through the human-machine interaction interface). Element Management System); EMS determines the service model of the Ethernet service according to the input information; for example, the Ethernet service includes an A endpoint and a Z endpoint, and the A endpoint to the Z endpoint are connected by a straight line, and the service model can be determined as No protection; the Ethernet service includes one A endpoint and two Z endpoints. The A endpoint is connected to the two Z endpoints by a straight line, and there is no intersection between the two lines. The service model can be determined to be open protection; here, the A The endpoint is the source endpoint and the Z endpoint is the sink endpoint. The topology of the Ethernet service and its corresponding service model can be seen in Figure 2.
步骤102:依据确定的业务模型进行路由计算及伪线搭建;Step 102: Perform route calculation and pseudowire construction according to the determined service model.
本步骤包括:管理员确定所述以太网业务的A端点和Z端点,将A端点和Z端点通过人机交互界面输入EMS;EMS依据输入的信息确定A端点和Z端点,并依据所述A端点和Z端点及设置的业务模型,以最短路径的方式进行路由计算,并依据计算得到的路由进行伪线搭建;如此,可自动为每一个端到端的伪线寻找路由、选择服务层隧道,省去用户手工选择隧道的麻烦;The step includes: the administrator determines the A endpoint and the Z endpoint of the Ethernet service, and inputs the A endpoint and the Z endpoint into the EMS through the human-machine interaction interface; the EMS determines the A endpoint and the Z endpoint according to the input information, and according to the A The endpoint and the Z endpoint and the set service model perform route calculation in the shortest path manner, and perform pseudowire construction according to the calculated route; thus, it can automatically find a route and select a service layer tunnel for each end-to-end pseudowire. Eliminating the hassle of manually selecting a tunnel by the user;
其中,所述最短路径的方式为以太网业务中的任意两个节点间的路径最短的方式。The shortest path is the shortest path between any two nodes in the Ethernet service.
在一实施例中,本步骤之前,所述方法还可以包括:设置所述以太网业务的路由策略;如此,依据确定的业务模型计算出路由的同时兼顾保护场景中的路由分离,满足工程场景的应用,更加精确的对路由进行定制,确保了以太网业务配置过程的可控、可调及配置的灵活性;In an embodiment, before the step, the method may further include: setting a routing policy of the Ethernet service; thus, calculating a route according to the determined service model, taking into account the route separation in the protection scenario, and satisfying the engineering scenario. The application, more precise routing customization, ensures the controllable, adjustable and flexible configuration of the Ethernet service configuration process;
其中,所述路由策略包括:路由必经、路由禁止、完全保护及尽量保护。The routing policy includes: route mandatory, route prohibited, complete protection, and protection as much as possible.
步骤103:确定伪线搭建完成时,依据与所述以太网业务的业务模型对应的业务参数模板,对所述以太网业务进行参数配置;Step 103: When it is determined that the pseudowire setup is complete, perform parameter configuration on the Ethernet service according to the service parameter template corresponding to the service model of the Ethernet service.
这里,所述确定伪线搭建完成包括:EMS确定搭建的伪线的框架结构 与所述以太网业务的业务模型相同时,认为伪线搭建已完成;Here, the determining the pseudowire construction completion comprises: determining, by the EMS, the frame structure of the constructed pseudowire When the service model of the Ethernet service is the same, it is considered that the pseudowire construction has been completed;
与所述以太网业务的业务模型对应的业务参数模板为预先设置的,所述业务参数模板既可以是为所有业务类型设定的统一的业务参数模板,即无论所述以太网业务的业务模型是哪种,都使用一种业务参数模板;还可以是为线型、网型及树型三种业务类型设定的对应的业务参数模板,如确定所述以太网业务的业务模型属于线型,选择与线型对应的业务参数模板;还可以是为无保护、封闭式保护、开放式保护、开放式DNI保护、全互连、H-VPLS、基本树型和双根树型八种业务类型分别设定的对应的业务参数模板;如确定所述以太网业务为开放式保护时,选择与开放式保护对应的业务参数模板;The service parameter template corresponding to the service model of the Ethernet service is preset, and the service parameter template may be a unified service parameter template set for all service types, that is, regardless of the service model of the Ethernet service. In either case, a service parameter template is used; or a corresponding service parameter template set for the line type, the network type, and the tree type, for example, determining that the service model of the Ethernet service belongs to a line type. Select the service parameter template corresponding to the line type; it can also be eight services: unprotected, closed protection, open protection, open DNI protection, full interconnection, H-VPLS, basic tree and dual root tree. If the Ethernet service is open protection, the service parameter template corresponding to the open protection is selected;
对所述以太网业务进行参数配置包括:对所述以太网业务进行伪线参数、保护参数、业务参数以及操作、管理和维护(OAM,Operation Administration and Maintenance)参数的配置。The parameter configuration of the Ethernet service includes: configuring the pseudowire parameters, protection parameters, service parameters, and operation, management, and maintenance (OAM) parameters of the Ethernet service.
图3为本发明实施例二以太网业务配置方法流程示意图,如图3所示,本实施例以太网业务配置方法流程包括:FIG. 3 is a schematic flowchart of a method for configuring an Ethernet service according to Embodiment 2 of the present invention. As shown in FIG. 3, the process of configuring an Ethernet service in this embodiment includes:
步骤301:确定以太网业务的业务模型;Step 301: Determine a service model of an Ethernet service.
这里,所述业务模型为依据工程应用场景进行划分的;Here, the service model is divided according to an engineering application scenario;
所述业务模型包括:线型、网型及树型;The business model includes: a line type, a network type, and a tree type;
其中,所述线型包括:无保护、封闭式保护、开放式保护及开放式DNI保护;The line type includes: no protection, closed protection, open protection, and open DNI protection;
所述网型包括:Full Mesh及H-VPLS;The mesh type includes: Full Mesh and H-VPLS;
所述树型包括:基本树型和双根树型;如图2所示为本发明实施例以太网业务模型示意图;The tree type includes: a basic tree type and a double root tree type; as shown in FIG. 2 is a schematic diagram of an Ethernet service model according to an embodiment of the present invention;
本步骤包括:依据以太网业务的拓扑形态确定以太网业务的业务模型;例如:以太网业务包括一个A端点和一个Z端点,且A端点到Z端点之间 通过一条直线连通,可确定业务模型为无保护;以太网业务包括一个A端点和两个个Z端点,A端点分别和两个Z端点通过直线相连,且两条直线间无交叉,可确定业务模型为开放式保护;以太网业务的拓扑形态及其对应的业务模型可参见图2。The step includes: determining a service model of the Ethernet service according to the topology of the Ethernet service; for example, the Ethernet service includes an A endpoint and a Z endpoint, and between the A endpoint and the Z endpoint. Through a straight line connection, it can be determined that the service model is unprotected; the Ethernet service includes one A endpoint and two Z endpoints, and the A endpoint is connected to the two Z endpoints by a straight line, and there is no intersection between the two straight lines, and the service can be determined. The model is open protection; the topology of the Ethernet service and its corresponding business model can be seen in Figure 2.
在本实施例中,确定以太网业务的业务模型为开放式保护。In this embodiment, the service model of the Ethernet service is determined to be open protection.
步骤302:设置所述以太网业务的路由策略;Step 302: Set a routing policy of the Ethernet service.
这里,所述路由策略包括:路由必经、路由禁止、完全保护及尽量保护。Here, the routing policy includes: route mandatory, route prohibited, complete protection, and protection as much as possible.
设置所述以太网业务的路由策略,更加精确的对路由进行定制,确保了以太网业务配置过程的可控、可调及配置的灵活性;Setting the routing policy of the Ethernet service to customize the routing more accurately, ensuring controllable, adjustable, and flexible configuration of the Ethernet service configuration process;
在本实施例中设置路由保护策略为完全保护。In this embodiment, the route protection policy is set to be completely protected.
步骤303:依据确定的业务模型进行路由计算及伪线搭建;Step 303: Perform route calculation and pseudowire construction according to the determined service model.
本步骤包括:EMS确定所述以太网业务的A端点和Z端点,依据所述A端点和Z端点及设置的业务模型,以最短路径的方式进行路由计算,并依据计算得到的路由进行伪线搭建;如此,可自动为每一个端到端的伪线寻找路由、选择服务层隧道,省去用户手工选择隧道的麻烦;The step includes: the EMS determines the A endpoint and the Z endpoint of the Ethernet service, performs route calculation in the shortest path manner according to the A endpoint and the Z endpoint, and the set service model, and performs pseudowire according to the calculated route. Build; in this way, it can automatically find routing for each end-to-end pseudowire, select service layer tunnel, and save the user's trouble of manually selecting the tunnel;
其中,所述最短路径的方式为以太网业务中的两个节点间的路径最短的方式。The shortest path is the shortest path between two nodes in the Ethernet service.
步骤304:确定伪线搭建完成时,依据与所述以太网业务的业务模型对应的业务参数模板,对所述以太网业务进行参数配置;Step 304: When it is determined that the pseudowire is set up, perform parameter configuration on the Ethernet service according to the service parameter template corresponding to the service model of the Ethernet service.
这里,所述确定伪线搭建完成包括:确定搭建的伪线的框架结构与所述以太网业务的业务模型相同时,认为伪线搭建已完成;Here, the determining the pseudowire construction completion comprises: determining that the pseudowire construction is completed when the framework structure of the constructed pseudowire is the same as the service model of the Ethernet service;
与所述以太网业务的业务模型对应的业务参数模板为预先设置的,所述业务参数模板既可以是为所有业务类型设定的统一的业务参数模板,即无论所述以太网业务的业务模型是哪种,都使用一种业务参数模板;还可 以是为线型、网型及树型三种业务类型设定的对应的业务参数模板,如确定所述以太网业务的业务模型属于线型,选择与线型对应的业务参数模板;还可以是为无保护、封闭式保护、开放式保护、开放式DNI保护、全互连、H-VPLS、基本树型和双根树型八种业务类型分别设定的对应的业务参数模板;如确定所述以太网业务为开放式保护时,选择与开放式保护对应的业务参数模板;The service parameter template corresponding to the service model of the Ethernet service is preset, and the service parameter template may be a unified service parameter template set for all service types, that is, regardless of the service model of the Ethernet service. Which is the use of a business parameter template; The corresponding service parameter template set for the service type of the line type, the network type, and the tree type, for example, determining that the service model of the Ethernet service belongs to a line type, and selecting a service parameter template corresponding to the line type; It is a corresponding service parameter template set for eight types of services: unprotected, closed protection, open protection, open DNI protection, full interconnection, H-VPLS, basic tree, and dual root tree type; When the Ethernet service is open protection, select a service parameter template corresponding to the open protection;
对所述以太网业务进行参数配置包括:对所述以太网业务进行伪线参数、保护参数、业务参数以及操作、OAM参数的配置。Performing parameter configuration on the Ethernet service includes: performing pseudowire parameters, protection parameters, service parameters, and operations, and configuration of OAM parameters on the Ethernet service.
图4为本发明实施例以太网业务配置装置组成结构示意图,如图4所示,本发明实施例以太网业务配置装置组成包括:确定模块41、伪线搭建模块42及参数配置模块43;其中,4 is a schematic structural diagram of an Ethernet service configuration apparatus according to an embodiment of the present invention. As shown in FIG. 4, the Ethernet service configuration apparatus of the embodiment of the present invention includes: a determining module 41, a pseudowire building module 42, and a parameter configuration module 43; ,
所述确定模块41,配置为确定以太网业务的业务模型;The determining module 41 is configured to determine a service model of an Ethernet service;
所述伪线搭建模块42,配置为依据确定的业务模型进行路由计算及伪线搭建;The pseudowire building module 42 is configured to perform route calculation and pseudowire construction according to the determined service model;
所述参数配置模块43,配置为确定伪线搭建完成时,依据与所述以太网业务的业务模型对应的业务参数模板,对所述以太网业务进行参数配置。The parameter configuration module 43 is configured to perform parameter configuration on the Ethernet service according to a service parameter template corresponding to the service model of the Ethernet service when the configuration of the pseudowire is completed.
在一实施例中,所述确定模块41确定以太网业务的业务模型包括:确定模块41依据以太网业务的拓扑形态确定以太网业务的业务模型;例如:以太网业务包括一个A端点和一个Z端点,且A端点到Z端点之间通过一条直线连通,可确定业务模型为无保护;以太网业务包括一个A端点和两个个Z端点,A端点分别和两个Z端点通过直线相连,且两条直线间无交叉;以太网业务的拓扑形态及其对应的业务模型可参见图2。In an embodiment, the determining module 41 determines the service model of the Ethernet service, and the determining module 41 determines the service model of the Ethernet service according to the topology of the Ethernet service; for example, the Ethernet service includes an A endpoint and a Z The endpoints, and the A endpoints to the Z endpoints are connected by a straight line to determine that the service model is unprotected; the Ethernet service includes one A endpoint and two Z endpoints, and the A endpoints are respectively connected to the two Z endpoints by a straight line, and There is no cross between the two lines; the topology of the Ethernet service and its corresponding service model can be seen in Figure 2.
在一实施例中,所述装置还包括设置模块44,配置为设置所述以太网业务的路由策略;In an embodiment, the apparatus further includes a setting module 44 configured to set a routing policy of the Ethernet service;
其中,所述路由策略包括:路由必经、路由禁止、完全保护及尽量保 护。The routing policy includes: a route must pass, a route is prohibited, a complete protection, and a protection as much as possible. Protection.
在一实施例中,所述伪线搭建模块42依据确定的业务模型进行路由计算及伪线搭建包括:In an embodiment, the pseudowire building module 42 performs route calculation and pseudowire construction according to the determined service model, including:
所述伪线搭建模块42确定所述以太网业务的A端点和Z端点,依据所述A端点和Z端点及设置的业务模型,以最短路径的方式进行路由计算,并依据计算得到的路由进行伪线搭建;如此,可自动为每一个端到端的伪线寻找路由、选择服务层隧道,省去用户手工选择隧道的麻烦;The pseudowire building module 42 determines the A endpoint and the Z endpoint of the Ethernet service, performs routing calculation in the shortest path manner according to the A endpoint and the Z endpoint, and the set service model, and performs routing according to the calculated route. Pseudo-wire construction; in this way, it can automatically find routing and select service layer tunnel for each end-to-end pseudowire, eliminating the trouble of users manually selecting the tunnel;
其中,所述最短路径的方式为以太网业务中的任意两个节点间的路径最短的方式。The shortest path is the shortest path between any two nodes in the Ethernet service.
在一实施例中,所述业务模型包括:线型、网型及树型;In an embodiment, the service model includes: a line type, a network type, and a tree type;
其中,所述线型包括:无保护、封闭式保护、开放式保护及开放式DNI保护;The line type includes: no protection, closed protection, open protection, and open DNI protection;
所述网型包括:全互连及H-VPLS;The network type includes: full interconnection and H-VPLS;
所述树型包括:基本树型和双根树型。The tree type includes: a basic tree type and a double root tree type.
在一实施例中,与所述以太网业务的业务模型对应的业务参数模板为预先设置的,所述业务参数模板既可以是为所有业务类型设定的统一的业务参数模板,即无论所述以太网业务的业务模型是哪种,都使用一种业务参数模板;还可以是为线型、网型及树型三种业务类型设定的对应的业务参数模板,如确定所述以太网业务的业务模型属于线型,选择与线型对应的业务参数模板;还可以是为无保护、封闭式保护、开放式保护、开放式DNI保护、全互连、H-VPLS、基本树型和双根树型八种业务类型分别设定的对应的业务参数模板;如确定所述以太网业务为开放式保护时,选择与开放式保护对应的业务参数模板;In an embodiment, the service parameter template corresponding to the service model of the Ethernet service is preset, and the service parameter template may be a unified service parameter template set for all service types, that is, What is the service model of the Ethernet service, which uses a service parameter template; it can also be a corresponding service parameter template set for the line type, the network type, and the tree type, for example, determining the Ethernet service. The business model belongs to the line type, and selects the service parameter template corresponding to the line type; it can also be unprotected, closed protection, open protection, open DNI protection, full interconnection, H-VPLS, basic tree and double If the Ethernet service is open protection, the service parameter template corresponding to the open protection is selected;
对所述以太网业务进行参数配置包括:对所述以太网业务进行伪线参数、保护参数、业务参数以及操作、OAM参数的配置。 Performing parameter configuration on the Ethernet service includes: performing pseudowire parameters, protection parameters, service parameters, and operations, and configuration of OAM parameters on the Ethernet service.
本发明实施例中提出的以太网业务配置装置中的确定模块、伪线搭建模块、参数配置模块及设置模块都可以通过处理器来实现,当然也可通过具体的逻辑电路实现;其中所述处理器可以是移动终端或服务器上的处理器,在实际应用中,处理器可以为中央处理器(CPU)、微处理器(MPU)、数字信号处理器(DSP)或现场可编程门阵列(FPGA)等。The determining module, the pseudowire building module, the parameter configuration module and the setting module in the Ethernet service configuration device proposed in the embodiment of the present invention may be implemented by a processor, and may also be implemented by a specific logic circuit; The device may be a processor on a mobile terminal or a server. In practical applications, the processor may be a central processing unit (CPU), a microprocessor (MPU), a digital signal processor (DSP), or a field programmable gate array (FPGA). )Wait.
本发明实施例中,如果以软件功能模块的形式实现上述以太网业务配置方法,并作为独立的产品销售或使用时,也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,本发明实施例的技术方案本质上或者说对现有技术做出贡献的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。而前述的存储介质包括:U盘、移动硬盘、只读存储器(Read Only Memory,ROM)、磁碟或者光盘等各种可以存储程序代码的介质。这样,本发明实施例不限制于任何特定的硬件和软件结合。In the embodiment of the present invention, if the foregoing Ethernet service configuration method is implemented in the form of a software function module and sold or used as a standalone product, it may also be stored in a computer readable storage medium. Based on such understanding, the technical solution of the embodiments of the present invention may be embodied in the form of a software product in essence or in the form of a software product stored in a storage medium, including a plurality of instructions. A computer device (which may be a personal computer, server, or network device, etc.) is caused to perform all or part of the methods described in various embodiments of the present invention. The foregoing storage medium includes various media that can store program codes, such as a USB flash drive, a mobile hard disk, a read only memory (ROM), a magnetic disk, or an optical disk. Thus, embodiments of the invention are not limited to any specific combination of hardware and software.
相应地,本发明实施例还提供一种计算机存储介质,该计算机存储介质中存储有计算机程序,该计算机程序用于执行本发明实施例的上述以太网业务配置方法。Correspondingly, the embodiment of the present invention further provides a computer storage medium, wherein the computer storage medium stores a computer program, and the computer program is used to execute the foregoing Ethernet service configuration method in the embodiment of the present invention.
以上所述仅为本发明的较佳实施例而已,并非用于限定本发明的保护范围。 The above is only the preferred embodiment of the present invention and is not intended to limit the scope of the present invention.

Claims (11)

  1. 一种以太网业务配置方法,所述方法包括:An Ethernet service configuration method, the method includes:
    确定以太网业务的业务模型;Determining the business model of the Ethernet service;
    依据确定的业务模型进行路由计算及伪线搭建;Perform route calculation and pseudowire construction according to the determined service model;
    确定伪线搭建完成时,依据与所述以太网业务的业务模型对应的业务参数模板,对所述以太网业务进行参数配置。When the configuration of the pseudowire is completed, the parameter is configured according to the service parameter template corresponding to the service model of the Ethernet service.
  2. 根据权利要求1所述方法,其中,所述确定以太网业务的业务模型包括:依据以太网业务的拓扑形态确定以太网业务的业务模型。The method according to claim 1, wherein the determining a service model of the Ethernet service comprises: determining a service model of the Ethernet service according to a topology of the Ethernet service.
  3. 根据权利要求1或2所述方法,其中,所述依据确定的业务模型进行路由计算及伪线搭建之前,所述方法还包括:设置所述以太网业务的路由策略;The method according to claim 1 or 2, wherein before the routing calculation and the pseudowire construction according to the determined service model, the method further comprises: setting a routing policy of the Ethernet service;
    其中,所述路由策略包括:路由必经、路由禁止、完全保护及尽量保护。The routing policy includes: route mandatory, route prohibited, complete protection, and protection as much as possible.
  4. 根据权利要求1或2所述方法,其中,所述依据确定的业务模型进行路由计算及伪线搭建包括:The method according to claim 1 or 2, wherein said routing calculation and pseudowire construction according to the determined service model comprises:
    确定所述以太网业务的A端点和Z端点,依据所述A端点和Z端点及设置的业务模型,以最短路径的方式进行路由计算,并依据计算得到的路由进行伪线搭建。Determining the A endpoint and the Z endpoint of the Ethernet service, performing route calculation in the shortest path manner according to the A endpoint and the Z endpoint and the set service model, and performing pseudowire construction according to the calculated route.
  5. 根据权利要求1或2所述方法,其中,所述业务模型包括:线型、网型及树型;其中,The method according to claim 1 or 2, wherein the service model comprises: a line type, a network type, and a tree type; wherein
    所述线型包括:无保护、封闭式保护、开放式保护、开放式双节点互连DNI保护;The line type includes: no protection, closed protection, open protection, open two-node interconnection DNI protection;
    所述网型包括:全互连、分层虚拟专用局域网服务H-VPLS;The network type includes: a fully interconnected, layered virtual private local area network service H-VPLS;
    所述树型包括:基本树型和双根树型。The tree type includes: a basic tree type and a double root tree type.
  6. 一种以太网业务配置装置,所述装置包括:确定模块、伪线搭建模 块及参数配置模块;其中,An Ethernet service configuration device, the device comprising: a determining module, pseudo-line modeling Block and parameter configuration module; among them,
    所述确定模块,配置为确定以太网业务的业务模型;The determining module is configured to determine a service model of an Ethernet service;
    所述伪线搭建模块,配置为依据确定的业务模型进行路由计算及伪线搭建;The pseudowire building module is configured to perform route calculation and pseudowire construction according to the determined service model;
    所述参数配置模块,配置为确定伪线搭建完成时,依据与所述以太网业务的业务模型对应的业务参数模板,对所述以太网业务进行参数配置。The parameter configuration module is configured to perform parameter configuration on the Ethernet service according to a service parameter template corresponding to the service model of the Ethernet service, when the configuration of the pseudowire is completed.
  7. 根据权利要求6所述装置,其中,所述确定模块,配置为依据以太网业务的拓扑形态确定以太网业务的业务模型。The apparatus according to claim 6, wherein the determining module is configured to determine a service model of the Ethernet service according to a topology of the Ethernet service.
  8. 根据权利要求6或7所述装置,其中,所述装置还包括:设置模块,配置为设置所述以太网业务的路由策略;The device according to claim 6 or 7, wherein the device further comprises: a setting module configured to set a routing policy of the Ethernet service;
    其中,所述路由策略包括:路由必经、路由禁止、完全保护及尽量保护。The routing policy includes: route mandatory, route prohibited, complete protection, and protection as much as possible.
  9. 根据权利要求6或7所述装置,其中,所述伪线搭建模块,配置为确定所述以太网业务的A端点和Z端点,依据所述A端点和Z端点及设置的业务模型,以最短路径的方式进行路由计算,并依据计算得到的路由进行伪线搭建。The device according to claim 6 or 7, wherein the pseudowire building module is configured to determine an A endpoint and a Z endpoint of the Ethernet service, and the shortest according to the A endpoint and the Z endpoint and the set service model The route is calculated in the path mode, and the pseudowire construction is performed according to the calculated route.
  10. 根据权利要求6或7所述装置,其中,所述业务模型包括:线型、网型及树型;其中,The apparatus according to claim 6 or 7, wherein the service model comprises: a line type, a network type, and a tree type; wherein
    所述线型包括:无保护、封闭式保护、开放式保护、开放式DNI保护;The line types include: unprotected, closed protection, open protection, open DNI protection;
    所述网型包括:全互连及H-VPLS;The network type includes: full interconnection and H-VPLS;
    所述树型包括:基本树型和双根树型。The tree type includes: a basic tree type and a double root tree type.
  11. 一种计算机存储介质,所述计算机存储介质中存储有计算机可执行指令,该计算机可执行指令用于执行权利要求1至5任一项所述的以太网业务配置方法。 A computer storage medium storing computer executable instructions for performing the Ethernet service configuration method according to any one of claims 1 to 5.
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