CN103178983A - Method and device for configuring shortest path first protocol interface area identifications - Google Patents

Method and device for configuring shortest path first protocol interface area identifications Download PDF

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Publication number
CN103178983A
CN103178983A CN2011104417481A CN201110441748A CN103178983A CN 103178983 A CN103178983 A CN 103178983A CN 2011104417481 A CN2011104417481 A CN 2011104417481A CN 201110441748 A CN201110441748 A CN 201110441748A CN 103178983 A CN103178983 A CN 103178983A
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microwave equipment
interface
area
configuration
area sign
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欧林宝
聂旭飞
范勇
刘为
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ZTE Corp
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ZTE Corp
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Abstract

The invention provides a method and a device for configuring shortest path first protocol interface area identifications. The method includes that a first microwave device receives neighbor hop information from a second microwave device, wherein the neighbor hop information carries an interface area identification of the second microwave device; and the first microwave device configures an interface area identification of the first microwave device according to the interface area identification of the second microwave device. By means of the technical scheme of the method and the device, problems that massive labor power, time resources and the like are consumed due to the fact that an interface of each microwave device is required to be configured with areas which the interface belongs to in related technologies are solved, so that effects of greatly reducing installation and configuration time and improving engineering installation efficiency are further achieved.

Description

Collocation method and the device of OSPF interface area sign
Technical field
The present invention relates to the communications field, in particular to collocation method and the device of a kind of SPF (Open Shortest Path First is referred to as OSPF) protocol interface area identification.
Background technology
Microwave equipment is to be used for the new generation of wireless communication equipment of return network (backhaul network) in mobile communications network, be mainly used in wireless access network base station (Base Transceiver Station, referred to as BTS) to base station controller (Base Station Controller, referred to as BSC) or the transfer of data of Node B (NodeB) between the radio network controller (Radio Network Controller is referred to as RNC).Usually in non-flat-bottomed land, the place of be difficult for laying optical fiber, adopt wave point forwarded hop-by-hop user data.Microwave equipment converges user data from multiple directions to BSC, so the networking mode that usually adopts is tree structure, specifically as shown in Figure 1.
Microwave equipment need to use the mode of inband network management to carry out network management, except the function of two layer service data retransmissions, also needs to provide the function of three layers of routing forwarding in whole return network, thereby ensures the normal transmission of network management data.Because the number of devices of Commercial deployment is larger, the general employing used extensively and supports that carrying out route than the ospf protocol of macroreticular scale calculates.
For size and the raising route computational speed that reduces the connection status database (Link State DataBase is referred to as LSDB) in whole autonomous system, ospf protocol support area division.A plurality of interfaces of every microwave equipment might belong to different zones, and at this moment, this microwave equipment is the intersection point in two zones, also are Area Border Router (AreaBorderRouter is referred to as ABR).
As mentioned above, general Commercial deployment microwave equipment quantity used is larger, generally has several thousand.Unavoidably configuration, particularly ospf protocol also need according to Networking Design with each interface and the area configurations under it once to expend a large amount of manpowers and time resource to each microwave equipment at the initial configuration erection stage.
For the problems referred to above in correlation technique, effective solution is proposed not yet at present.
Summary of the invention
In correlation technique, due to the problems such as a large amount of manpowers and time resource that expend that need to cause for its affiliated area of interface configuration of every microwave equipment, the invention provides collocation method and the device of a kind of SPF (OSPF) protocol interface area identification, to address the above problem at least.
According to an aspect of the present invention, a kind of collocation method of ospf protocol interface area sign is provided, comprise: the first microwave equipment receives the adjacent hop-information that comes from the second microwave equipment, wherein, carries the interface area sign of described the second microwave equipment in described adjacent hop-information; Described the first microwave equipment is according to the interface area sign of described first microwave equipment of interface area sign configuration of described the second microwave equipment.
Above-mentioned the first microwave equipment is according to the interface area sign of described first microwave equipment of interface area sign configuration of described the second microwave equipment, comprise: if the equal configuring area sign not of the total interface of described the first microwave equipment, described the first microwave equipment is the described area identification that described total interface all configures reception.
Above-mentioned the first microwave equipment is according to the interface area sign of described first microwave equipment of interface area sign configuration of described the second microwave equipment, comprise: if in the total interface of described the first microwave equipment, part of interface has been configured area identification, but receive not configuring area sign of described adjacent interface of jumping message, the described area identification that described the first microwave equipment receives for the interface configuration that receives described adjacent hop-information.
Above-mentioned the first microwave equipment is according to the interface area sign of described first microwave equipment of interface area sign configuration of described the second microwave equipment, comprise: if the total interface of described the first microwave equipment has been configured area identification, described the first microwave equipment does not reconfigure the area identification of described total interface.
The interface of above-mentioned the first microwave equipment is for eating dishes without rice or wine to converge by a plurality of the logic interfacing that forms; Described the first microwave equipment is according to the interface area sign of described first microwave equipment of interface area sign configuration of described the second microwave equipment, comprise: if the equal configuring area sign not of the total interface under described logic interfacing, described the first microwave equipment is the described area identification that described logic interfacing configuration receives.
Also carry running state information in above-mentioned adjacent hop-information; Said method also comprises: whether normally described the first microwave equipment receives backward described the second microwave equipment of described running status message and sends response message to determine the operation of described the first microwave equipment.
Above-mentioned the first microwave equipment also comprises before receiving and coming from the adjacent hop-information of the second microwave equipment: the affiliated area identification of each interface that configures described the second microwave equipment; Described the second microwave equipment passes through, and the interface of configuring area sign sends described adjacent hop-information to described the first microwave equipment.
According to a further aspect in the invention, a kind of inking device of ospf protocol interface area sign is provided, be arranged in the first microwave equipment, comprise: receiver module, be used for receiving the adjacent hop-information that comes from the second microwave equipment, wherein, carry the interface area sign of described the second microwave equipment in described adjacent hop-information; Configuration module is used for the interface area sign according to described first microwave equipment of interface area sign configuration of described the second microwave equipment.
Above-mentioned configuration module one of is used in the following manner the interface area sign of described the first microwave equipment of configuration: if the equal configuring area sign not of the total interface of described the first microwave equipment all configures the described area identification of reception for described total interface; If in the total interface of described the first microwave equipment, part of interface has been configured area identification, but receives not configuring area sign of described adjacent interface of jumping message, the described area identification that receives for the interface configuration that receives described adjacent hop-information; If the total interface of described the first microwave equipment has been configured area identification, do not reconfigure the area identification of described total interface.
Also carry running state information in above-mentioned adjacent hop-information; Described device also comprises: whether normally sending module is used for sending response message to determine the operation of described the first microwave equipment to described the second microwave equipment after described receiver module receives described running status message.
By the present invention, employing jumps according to the neighbour who receives the technological means that the area identification that carries in message configures the area identification of local microenvironment wave device interface automatically, solved in correlation technique, due to the problems such as a large amount of manpowers and time resource that expend that need to cause for its affiliated area of interface configuration of every microwave equipment, and then reached greatly to reduce and install setup time, improve the effect of project installation efficient.
Description of drawings
Accompanying drawing described herein is used to provide a further understanding of the present invention, consists of the application's a part, and illustrative examples of the present invention and explanation thereof are used for explaining the present invention, do not consist of improper restriction of the present invention.In the accompanying drawings:
Fig. 1 is the schematic network structure according to the employing ospf protocol networking of correlation technique;
Fig. 2 is the flow chart according to the collocation method of the ospf protocol interface area sign of the embodiment of the present invention;
Fig. 3 is the structured flowchart according to the inking device of the ospf protocol interface area sign of the embodiment of the present invention;
Fig. 4 is the structural representation of the inking device of ospf protocol interface area sign according to the preferred embodiment of the invention;
Spread condition schematic diagram when Fig. 5 is nothing configuration initial according to the local microenvironment wave device of the embodiment of the present invention;
Fig. 6 has configured for the part of interface according to the local microenvironment wave device of the embodiment of the present invention but the interface that the receives adjacent hop-information spread condition schematic diagram during the configuring area sign;
Fig. 7 is for according to the interface of the local microenvironment wave device of the embodiment of the present invention also spread condition schematic diagram during the configuring area sign of configuring area sign and the interface that receives adjacent hop-information;
Fig. 8 divides schematic diagram according to zone between the non-backbone area of the embodiment of the present invention.
Embodiment
Hereinafter also describe in conjunction with the embodiments the present invention in detail with reference to accompanying drawing.Need to prove, in the situation that do not conflict, embodiment and the feature in embodiment in the application can make up mutually.
Fig. 2 is the flow chart according to the collocation method of the ospf protocol interface area sign of the embodiment of the present invention.As shown in Figure 2, the method comprises:
Step S202, the first microwave equipment receives the adjacent hop-information that comes from the second microwave equipment, wherein, carries the interface area sign of described the second microwave equipment in described adjacent hop-information;
Step S204, the first microwave equipment is according to the interface area sign of interface area sign configuration first microwave equipment of described the second microwave equipment.
By above-mentioned treatment step, because the first microwave equipment can be jumped according to the neighbour from the second microwave equipment the message area identification of configuration the first microwave equipment automatically, again every equipment is carried out the situation of configuration separately with respect to needing in correlation technique, owing to not needing that every equipment is configured, after only needing to configure the ospf interface on a small amount of ABR, just can realize the operation of multizone ospf protocol, greatly reduce and install setup time, improve project installation efficient.
In step S204, the first microwave equipment can have following several situation according to the scheme of the interface area sign of described first microwave equipment of interface area sign configuration of described the second microwave equipment:
(1) if the equal configuring area sign not of the total interface of described the first microwave equipment, described the first microwave equipment is the described area identification that described total interface all configures reception;
(2) if in the total interface of described the first microwave equipment, part of interface has been configured area identification, but receive not configuring area sign of described adjacent interface of jumping message, the described area identification that described the first microwave equipment receives for the interface configuration that receives described adjacent hop-information;
(3) if the total interface of described the first microwave equipment has been configured area identification, described the first microwave equipment does not reconfigure the area identification of described total interface;
(4) if the interface of described the first microwave equipment of above-mentioned microwave equipment for eating dishes without rice or wine to converge by a plurality of the logic interfacing that forms, be that above-mentioned the first microwave equipment has adopted the technology of converging, for example adopted the link aggregate control protocol (Link Aggregation Control Protocol is referred to as LACP) based on the IEEE802.3ad standard.In this case, if the equal configuring area sign not of the total interface under described logic interfacing, described the first microwave equipment is the described area identification that described logic interfacing configuration receives.
In a preferred embodiment of the present invention, in order to guarantee that area identification can normal configuration, can also send test post to opposite equip. and determine whether normally operation of opposite equip., in the present embodiment, also can carry running state information (being above-mentioned test post) in above-mentioned adjacent hop-information; Whether normally described the first microwave equipment receives backward described the second microwave equipment of described running status message and sends response message to determine the operation of described the first microwave equipment.
In a specific embodiment of the present invention, before the first microwave equipment receives and comes from the adjacent hop-information of the second microwave equipment, need to the interface that above-mentioned the second microwave equipment carries out be configured, specifically can comprise following processing procedure: the affiliated area identification of each interface that configures described the second microwave equipment; The second microwave equipment passes through, and the interface of configuring area sign sends described adjacent hop-information to described the first microwave equipment.
Need to prove, " first " " second " in above-described embodiment and preferred embodiment etc. do not consist of the restriction to above-described embodiment only for sake of convenience, and above-mentioned " first " " second " can exchange.The configuration that in above-described embodiment, docking port carries out area identification in addition can be understood as interface configuration to be OSPF (agreement) interface and to be this interface configuration area identification.
A kind of inking device of ospf protocol interface area sign also is provided in the present embodiment, and this device had carried out repeating no more of explanation for realizing above-described embodiment and preferred implementation, and the below describes relating to module in this device.As used below, the combination of software and/or the hardware of predetermined function can be realized in term " module ".Although the described device of following examples is preferably realized with software, hardware, perhaps the realization of the combination of software and hardware also may and be conceived.
Fig. 3 is the structured flowchart according to the inking device of the ospf protocol interface area sign of the embodiment of the present invention.Need to prove, this device is arranged in the first microwave equipment.As shown in Figure 3, this device comprises:
Receiver module 30 is connected to configuration module 32, is used for receiving the adjacent hop-information that comes from the second microwave equipment, wherein, carries the interface area sign of described the second microwave equipment in described adjacent hop-information;
Configuration module 32 is used for the interface area sign according to described first microwave equipment of interface area sign configuration of described the second microwave equipment.
Preferably, above-mentioned configuration module 32 one of is used in the following manner the interface area sign of described the first microwave equipment of configuration:
If the total interface of described the first microwave equipment is configuring area sign not all, all configure the described area identification of reception for described total interface;
If in the total interface of described the first microwave equipment, part of interface has been configured area identification, but receives not configuring area sign of described adjacent interface of jumping message, the described area identification that receives for the interface configuration that receives described adjacent hop-information;
If the total interface of described the first microwave equipment has been configured area identification, do not reconfigure the area identification of described total interface;
In addition, embodiment is similar with aforesaid way, if the interface of described the first microwave equipment of above-mentioned microwave equipment is for eating dishes without rice or wine to converge by a plurality of the logic interfacing that forms, be that above-mentioned the first microwave equipment has adopted the technology of converging, for example adopted the link aggregate control protocol (LACP) based on the IEEE802.3ad standard.In this case, if the equal configuring area sign not of the total interface under described logic interfacing, described the first microwave equipment is the described area identification that described logic interfacing configuration receives.
Preferably, also carry running state information in above-mentioned adjacent hop-information; As shown in Figure 4, said apparatus also comprises: sending module 34, be connected to described receiver module 30, be used for sending response message to determine the whether normally operation of described the first microwave equipment to described the second microwave equipment after described receiver module receives described running status message.
As mentioned above, " first " " second " in above-described embodiment and preferred embodiment etc. do not consist of the restriction to above-described embodiment only for sake of convenience, and above-mentioned " first " " second " can exchange.The configuration that in above-described embodiment, docking port carries out area identification in addition can be understood as interface configuration to be OSPF (agreement) interface and to be this interface configuration area identification.
Describe below in conjunction with preferred embodiment, following preferred embodiment combines above-mentioned enforcement and preferred implementation thereof.In order to improve installation rate, the main design idea of following examples is, automatically generates relevant interface, and the area identification under the interface on this equipment of the automatic inundation of adjacent hop-information that sends over according to neighbouring device.Just can enable ospf protocol like this on the basis of minimal configuration, and guarantee the work in correct zone of each interface.Need to prove, in following examples, this equipment is equivalent to the first microwave equipment in above-described embodiment, and neighbouring device is equivalent to the second microwave equipment in above-described embodiment.
Embodiment 1
The present embodiment provides a kind of method of automatic diffusion zone sign, just can realize that at the interface that only configures a small amount of border router follow-up equipment normally moves ospf protocol under the multizone condition getting final product the whole network under the smallest default configuration condition.
To achieve these goals, the technical scheme of the present embodiment employing is as follows:
At first, judge whether board type is the veneer of eating dishes without rice or wine, if the veneer of eating dishes without rice or wine generates the point-to-point interface of eating dishes without rice or wine automatically.
Return network generally uses the tree network structure, finally converges to root node.Every microwave equipment has a plurality of transmission directions of eating dishes without rice or wine (being a plurality of veneers of eating dishes without rice or wine).This equipment is received after adjacent hop-information (neighbouring device connects the self-defined information of transmission by eating dishes without rice or wine) automatically according to user configured board type, automatically generate the interface of the point-to-point type of eating dishes without rice or wine of OSPF, and be kept in database, then ospf protocol automatically can bring into operation, regularly send the Hello bag to neighbours, avoid manual intervention.
Secondly, the adjacent hop-information that sends according to neighbouring device is set the zone of this equipment under eating dishes without rice or wine.
Can set up adjacent hop-information sendaisle after two device starts, adopt keepalive mechanism (namely determining whether normally operation of opposite equip. by regularly send and receive response message to neighbouring device) to confirm whether neighbor router (being neighbouring device) also normally moves.Add the area identification of the veneer corresponding interface of eating dishes without rice or wine of above-mentioned neighbor router in adjacent hop-information, the ospf area identification information just can be shared between neighbouring device so.Specifically can comprise following flow process:
1, configure the affiliated area identification of each interface of some equipment;
2, after follow-up newly-increased device power, the adjacent Path Setup of jumping of eating dishes without rice or wine.The interface sending zone identification information that is connected to the equipment that newly adds of configuration interface equipment;
If also do not configure any interface on 3 new equipments, automatically generate ospf interface, and total interface all is configured to the same area, area identification comes from adjacent hop-information.By that analogy, this equipment continues from other interface to adjacent equipment interface floodplain domain identifier information again.As shown in Figure 5, in such cases, when receiving on new equipment that area identification (areaID) is 1, the area identification with the total interface on this equipment is configured to 1;
If the interface of configuration has been arranged on 4 new equipments, but the interface that receives adjacent hop-information configuring area sign not, only revise in the case the area identification of receiving interface, not to other interface inundations.As shown in Figure 6, in such cases, when receiving on new equipment that area identification (areaID) is 2, the area identification that will receive the interface of adjacent hop-information is configured to 2;
If the interface of configuration has been arranged on 5 new equipments, and the interface that receives adjacent hop-information had configured area identification, do not revise the affiliated area of configuration interface, do not expand to other interfaces yet, as shown in Figure 7, in such cases, when receiving on new equipment that area identification (areaID) is 2, do not reconfigure the area identification of the total interface of this equipment.
Adopt the technique scheme of the present embodiment, after can the configuring area border router (quantity seldom), make newly added equipment keep the smallest default configuration, any option that does not namely need to configure OSPF just can make OSPF normally operate under the mode of operation in a plurality of zones automatically.
Embodiment 2
The present embodiment provides a kind of method of automatic diffusion zone sign, between the method support backbone and non-backbone area, between non-backbone and non-backbone area, spread two kinds of zone boundaries.
OSPF supports the virtual connections function, is used for guaranteeing that each non-backbone area all logically is connected with backbone area.Upper two interfaces of intersection point ABR between non-backbone area just belong to respectively two non-backbone areas at this moment.
In such cases, according to the described scheme of embodiment 1 still diffusion zone sign automatically, repeat no more herein.As shown in Figure 8, two interfaces of Area Border Router ABR3 belong to respectively zone 2 (Area2) and zone 3 (Area3), and this equipment need to first configure ospf interface and area identification thereof at the deployment initial stage.During to its diffusion zone identification information, will be prevented from ABR3 when zone other routers of 2, thus diffusion-restricted in zone 2.And also can diffuse normal in zone 3 inside area identification information and automatically generate ospf interface.
Embodiment 3
The present embodiment provides a kind of method of automatic diffusion zone sign, and the area identification of supporting to eat dishes without rice or wine to converge scene spreads automatically.
The microwave equipment of most is in order to increase transmission bandwidth, increase Systems balanth and the availability of eating dishes without rice or wine and the load balancing function to be provided, all adopted some to converge technology, for example based on the link aggregate control protocol of IEEE802.3ad standard, allow a plurality of eating dishes without rice or wine of binding, make them be called a logic interfacing, form the relation of redundancy backup between physical interface, and can realize the function of load balancing.
If a plurality of when eating dishes without rice or wine to pool a logic port, when carrying out route calculating for ospf protocol, only carry out the calculating of route for the logic port after converging, under so this scene, the transmission of adjacent hop-information and opposite end receive that the processing procedure after adjacent hop-information is as follows:
Transmitting terminal, the user has configured the ospf interface that converges mouth by network management system, specified this to converge a mouthful affiliated area identification, need to notify its neighbours with this area identification, because the adjacent hop-information of eating dishes without rice or wine is to send on the single link of eating dishes without rice or wine, need to all sends this area identification on these all member ports that converge mouthful and eat dishes without rice or wine to the opposite end of its adjacency.
Receiving terminal, if received the area identification that neighbours send, at first need to judge whether the port that receives area identification belongs to the member of certain aggregation group, if it belongs to the member of certain aggregation group really, need to judge under logic port corresponding to the aggregation group at its place and whether have ospf interface, if there is no, need to configure its ospf interface on aggregation port.
By the technical scheme of above-mentioned the present embodiment, when extensive Commercial deployment is disposed microwave equipment, after only needing to configure the ospf interface on a small amount of ABR, just can realize the operation of multizone ospf protocol, do not need again every equipment to be configured.Greatly reduce and install setup time, improve project installation efficient
Embodiment 4
The present embodiment provides a kind of method of automatic diffusion zone sign, just can realize that at the interface that only configures a small amount of border router follow-up equipment normally moves ospf protocol under the multizone condition getting final product the whole network under the smallest default configuration condition.
The scale of jumping equipment take certain Commercial deployment 5000 is as example, and the ospf area can be divided into 50, and every zone is 100 equipment approximately.Dispose according to the following steps:
Steps A: gone out the division of network area by network planning personnel according to the demand planning of office side, determine network topology structure, and the ospf area sign.Wherein the backbone area sign is necessary for 0.0.0.0;
Step B: the network design personnel install master control veneer, the veneer of eating dishes without rice or wine, then starting device.
Step C: according to the area identification that distributes, configure the area identification of the upper all directions of 50 zone boundary routing device ABR, i.e. the ospf interface of each interface on the manual configuration edge device.First on the polymerization terminal device if LACP polymerization interface needs, configure the relevant polymerization interface of LACP, then configure a certain end ospf interface;
Step D: can AutoLink after the Board Power up of eating dishes without rice or wine of neighbouring device, understand the adjacent hop-information of transmission after link successfully.Identify the ospf area of edge device by adjacent hop-information from the beginning of eating dishes without rice or wine of ABR the microwave equipment that is diffused into intra-zone this moment;
Step e: the intra-zone microwave equipment can automatically generate the OSPF point-to-point interface of eating dishes without rice or wine, then by eating dishes without rice or wine, regional number is diffused to other internal routers in the zone;
Step F: the equipment of intra-zone according to actual conditions and certain strategy, generates the ospf interface of equipment interface after receiving and spreading the area identification of coming automatically.Till this inundation is diffused into the other border router in zone always;
Step G:OSPF interface regularly sends hello packet after generating, and ospf protocol brings into operation.
In another embodiment, also provide a kind of software, this software be used for to be carried out the technical scheme that above-described embodiment and preferred implementation are described.
In another embodiment, also provide a kind of storage medium, stored above-mentioned software in this storage medium, this storage medium includes but not limited to: CD, floppy disk, hard disk, scratch pad memory etc.
obviously, those skilled in the art should be understood that, above-mentioned each module of the present invention or each step can realize with general calculation element, they can concentrate on single calculation element, perhaps be distributed on the network that a plurality of calculation elements form, alternatively, they can be realized with the executable program code of calculation element, thereby, they can be stored in storage device and be carried out by calculation element, and in some cases, can carry out step shown or that describe with the order that is different from herein, perhaps they are made into respectively each integrated circuit modules, perhaps a plurality of modules in them or step being made into the single integrated circuit module realizes.Like this, the present invention is not restricted to any specific hardware and software combination.
The above is only the preferred embodiments of the present invention, is not limited to the present invention, and for a person skilled in the art, the present invention can have various modifications and variations.Within the spirit and principles in the present invention all, any modification of doing, be equal to replacement, improvement etc., within all should being included in protection scope of the present invention.

Claims (10)

1. the collocation method of a SPF ospf protocol interface area sign, is characterized in that, comprising:
The first microwave equipment receives the adjacent hop-information that comes from the second microwave equipment, wherein, carries the interface area sign of described the second microwave equipment in described adjacent hop-information;
Described the first microwave equipment is according to the interface area sign of described first microwave equipment of interface area sign configuration of described the second microwave equipment.
2. method according to claim 1, is characterized in that, described the first microwave equipment comprises according to the interface area sign of described first microwave equipment of interface area sign configuration of described the second microwave equipment:
If the total interface of described the first microwave equipment is configuring area sign not all, described the first microwave equipment is the described area identification that described total interface all configures reception.
3. method according to claim 1, is characterized in that, described the first microwave equipment comprises according to the interface area sign of described first microwave equipment of interface area sign configuration of described the second microwave equipment:
If in the total interface of described the first microwave equipment, part of interface has been configured area identification, but receive not configuring area sign of described adjacent interface of jumping message, the described area identification that described the first microwave equipment receives for the interface configuration that receives described adjacent hop-information.
4. method according to claim 1, is characterized in that, described the first microwave equipment comprises according to the interface area sign of described first microwave equipment of interface area sign configuration of described the second microwave equipment:
If the total interface of described the first microwave equipment has been configured area identification, described the first microwave equipment does not reconfigure the area identification of described total interface.
5. method according to claim 1, is characterized in that, the interface of described the first microwave equipment is for eating dishes without rice or wine to converge by a plurality of the logic interfacing that forms; Described the first microwave equipment comprises according to the interface area sign of described first microwave equipment of interface area sign configuration of described the second microwave equipment:
If the total interface under described logic interfacing is configuring area sign not all, described the first microwave equipment is the described area identification that described logic interfacing configuration receives.
6. the described method of according to claim 1 to 5 any one, is characterized in that, also carries running state information in described adjacent hop-information; Described method also comprises:
Whether normally described the first microwave equipment receives backward described the second microwave equipment of described running status message and sends response message to determine the operation of described the first microwave equipment.
7. the described method of according to claim 1 to 5 any one, is characterized in that, described the first microwave equipment also comprises before receiving and coming from the adjacent hop-information of the second microwave equipment:
Configure the affiliated area identification of each interface of described the second microwave equipment;
Described the second microwave equipment passes through, and the interface of configuring area sign sends described adjacent hop-information to described the first microwave equipment.
8. the inking device of a SPF ospf protocol interface area sign, be arranged in the first microwave equipment, it is characterized in that, comprising:
Receiver module is used for receiving the adjacent hop-information that comes from the second microwave equipment, wherein, carries the interface area sign of described the second microwave equipment in described adjacent hop-information;
Configuration module is used for the interface area sign according to described first microwave equipment of interface area sign configuration of described the second microwave equipment.
9. device according to claim 8, is characterized in that, described configuration module one of is used in the following manner the interface area sign of described the first microwave equipment of configuration:
If the total interface of described the first microwave equipment is configuring area sign not all, all configure the described area identification of reception for described total interface;
If in the total interface of described the first microwave equipment, part of interface has been configured area identification, but receives not configuring area sign of described adjacent interface of jumping message, the described area identification that receives for the interface configuration that receives described adjacent hop-information;
If the total interface of described the first microwave equipment has been configured area identification, do not reconfigure the area identification of described total interface.
10. according to claim 8 or 9 described devices, is characterized in that, also carries running state information in described adjacent hop-information; Described device also comprises:
Whether normally sending module is used for sending response message to determine the operation of described the first microwave equipment to described the second microwave equipment after described receiver module receives described running status message.
CN2011104417481A 2011-12-26 2011-12-26 Method and device for configuring shortest path first protocol interface area identifications Pending CN103178983A (en)

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CN103327643A (en) * 2012-03-22 2013-09-25 中兴通讯股份有限公司 Microwave network elements and method and device for transmitting information between microwave network elements
CN104852849A (en) * 2015-05-04 2015-08-19 华为技术有限公司 OSPF configuration method and related device
WO2018028499A1 (en) * 2016-08-09 2018-02-15 中兴通讯股份有限公司 Method and device for configuring ospf area number
CN110601985A (en) * 2019-09-17 2019-12-20 北京东土军悦科技有限公司 Interface configuration information switching method, device, equipment and storage medium
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CN103327643A (en) * 2012-03-22 2013-09-25 中兴通讯股份有限公司 Microwave network elements and method and device for transmitting information between microwave network elements
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CN113824579A (en) * 2020-06-19 2021-12-21 华为技术有限公司 Interface configuration method of equipment in campus network and network equipment

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