CN110378996A - Server threedimensional model generation method and generating means - Google Patents

Server threedimensional model generation method and generating means Download PDF

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Publication number
CN110378996A
CN110378996A CN201910476266.6A CN201910476266A CN110378996A CN 110378996 A CN110378996 A CN 110378996A CN 201910476266 A CN201910476266 A CN 201910476266A CN 110378996 A CN110378996 A CN 110378996A
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server
model
information
initial
port
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CN110378996B (en
Inventor
黄佳佳
周泰斌
奚洪磊
薛大立
宓群超
陈晓雷
赖欢欢
戚峰
朱乐超
徐欢
施正钗
潘鹏
刘津源
姚海蛟
潘伟
余知真
郑洪波
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Wenzhou Power Supply Co of State Grid Zhejiang Electric Power Co Ltd
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Wenzhou Power Supply Co of State Grid Zhejiang Electric Power Co Ltd
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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06TIMAGE DATA PROCESSING OR GENERATION, IN GENERAL
    • G06T17/00Three dimensional [3D] modelling, e.g. data description of 3D objects

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Abstract

This disclosure relates to a kind of server threedimensional model generation method and generating means.This method comprises: by obtaining destination port information in the realtime graphic of server;It include initial port model in the initial server threedimensional model according to the facility information of server by determining initial server threedimensional model in database;Target port model is determined according to the destination port information;And the initial server threedimensional model is updated to generate destination server model by the target port model.This disclosure relates to server threedimensional model generation method and generating means, can when the port information of server is changed, fast and accurately automatically generate with update port information server threedimensional model.

Description

Server threedimensional model generation method and generating means
Technical field
This disclosure relates to computer information processing field, in particular to a kind of server threedimensional model generation method And generating means.
Background technique
Three-dimensional visualization technique is more and more applied to computer room O&M field, generates three using graph visualization technology Frame is tieed up, then by pulling in corresponding model to three-dimensional framework in 3 d model library, to form three-dimensional scenic, passes through the party The virtual emulation of the Space, Places such as workshop, computer room may be implemented in method;This method is also to carry out electric power using three-dimensional visualization mode The universal method that computer room is built passes through the virtual emulation of threedimensional model built to realize computer room.
The threedimensional model that the monitoring of computer room three-dimensional visualization is related to mainly has environmental model, autonomous device model, and rack is set Standby model, that is, the information technoloy equipment being installed in rack.Wherein, chassis equipment mainly includes interchanger, server etc..For large size IDC (Internet data center), server apparatus occupies absolute majority, and the autonomous devices such as the cabinet that compares, air-conditioning, server is set It is standby to have plug and play slot position, including power card, Ethernet card, display card etc..Computer room three-dimension visible sysem is to service The management of device device model needs to include slot position management, board management, adaptation management etc. content from the angle of integrality, and Subcard is also equipped with above some boards, it is therefore desirable to the threedimensional models such as slot position, board, subcard is further built, by configuring text Incidence relation between part model gets up server apparatus model and slot position, board, subcard model interaction, thus constitute female, son, The hierarchical relationships such as grandson.
But when board, subcard variation occur for server apparatus, i.e., corresponding computer room Three-dimensional Visualization Management System When server apparatus model generates isomery demand, incidence relation, the positional relationship of manually changing configuration file is needed to safeguard clothes The integrality for device device model system of being engaged in.Manual association's mode usually brings many unnecessary mistakes, and therefore, it is necessary to a kind of new Server threedimensional model generation method, device, electronic equipment and computer-readable medium.
Summary of the invention
In view of this, the disclosure provides a kind of server threedimensional model generation method and generating means, it can be in server Port information when being changed, fast and accurately automatically generate with the server threedimensional model for updating port information.
According to the one side of the disclosure, a kind of server threedimensional model generation method is proposed, this method comprises: by server Realtime graphic in obtain destination port information;According to the facility information of server by determining that initial server is three-dimensional in database Model includes initial port model in the initial server threedimensional model;Target side is determined according to the destination port information Mouth mold type;And the initial server threedimensional model is updated to generate destination service by the target port model Device threedimensional model.
In a kind of exemplary embodiment of the disclosure, further includes: set by initial target port information, the server Standby information and graph visualization technology generate the initial server threedimensional model.
In a kind of exemplary embodiment of the disclosure, by initial target port information, the facility information of the server Generating the initial server threedimensional model with graph visualization technology includes: as described in initial target port information generation Initial port model;The initial server threedimensional model is generated by the facility information of the server;And according to described first Beginning destination port information and the facility information are by the initial port model interaction to the initial server threedimensional model.
In a kind of exemplary embodiment of the disclosure, the initial end mouth mold is generated by the initial target port information Type includes: by extracting port information, port number information in the initial target port information;And according to the port Information, port number information generate the initial port model by port model library.
It, will according to the initial target port information and the facility information in a kind of exemplary embodiment of the disclosure The initial port model interaction to the initial server threedimensional model includes: by extracting in the initial target port information It is subordinate to slot position information;And according to slot position information and the facility information of being subordinate to by the initial port model interaction to institute State the setting position of initial server threedimensional model.
In a kind of exemplary embodiment of the disclosure, by obtaining destination port information packet in the realtime graphic of server It includes: by obtaining two-dimentional textures information in the realtime graphic of server;It is subordinate to slot position information according to two-dimentional textures acquisition of information, it is described Being subordinate to slot position information includes that type of slots and slot position are numbered;And the target side message is generated by the slot position information that is subordinate to Breath.
In a kind of exemplary embodiment of the disclosure, according to the facility information of server by determining initial clothes in database Business device threedimensional model includes: that the device name in the facility information according to server is three-dimensional by initial server determining in database Model;And/or according to the mapped file in the facility information of server by determining initial server threedimensional model in database.
In a kind of exemplary embodiment of the disclosure, target port model packet is determined according to the destination port information It includes: zoom factor is determined according to the destination port information;And target is determined according to the destination port information, zoom factor Port model.
In a kind of exemplary embodiment of the disclosure, determine that zoom factor includes: root according to the destination port information Type of slots is determined according to the destination port information;Slot position center is determined according to the type of slots;According to the type of slots The zoom factor is determined with the slot position center.
In a kind of exemplary embodiment of the disclosure, the type of slots includes horizontal type of slots and perpendicular type of slots; Determine that the zoom factor comprises determining that horizontal type of slots and perpendicular type of slots according to the type of slots and the slot position center Corresponding translot position center and vertical slot position center;The first zoom factor is determined by horizontal type of slots and translot position center;By perpendicular Type of slots and vertical slot position center determine the second zoom factor;And it is by first zoom factor and second scaling Number determines the zoom factor.
It is three-dimensional to the initial server by the target port model in a kind of exemplary embodiment of the disclosure It includes: to replace the initial server three-dimensional with the target port model that model, which is updated to generate destination server model, Initial port model in model;And the target port model and the initial server threedimensional model are associated life At the destination server model.
According to the one side of the disclosure, a kind of server threedimensional model generating means are proposed, which includes: image information Module, for obtaining destination port information in the realtime graphic by server;Server model module, for according to server Facility information includes initial port in the initial server threedimensional model by determining initial server threedimensional model in database Model;Target port module, for determining target port model according to the destination port information;And model modification module, For being updated the initial server threedimensional model to generate destination server model by the target port model.
In a kind of exemplary embodiment of the disclosure, which is characterized in that further include: model construction module, for by first Beginning destination port information, the facility information of the server and graph visualization technology generate the initial server three-dimensional mould Type.
According to the server threedimensional model generation method and generating means of the disclosure, by being obtained in the realtime graphic of server Destination port information;Target port model is determined according to the destination port information;By the target port model to initial Server threedimensional model is updated in a manner of generating destination server threedimensional model, can be in the port information quilt of server When change, fast and accurately automatically generate with the server threedimensional model for updating port information.
Detailed description of the invention
Fig. 1 is the system scenarios block diagram of a kind of server threedimensional model generation method that an implementation exemplifies and device.
Fig. 2 is the flow chart for implementing a kind of server threedimensional model generation method exemplified according to one.
Fig. 3 is a kind of flow chart of the server threedimensional model generation method shown according to another embodiment.
Fig. 4 is a kind of flow chart of the server threedimensional model generation method shown according to another embodiment.
Fig. 5 is the schematic diagram for implementing a kind of server threedimensional model generation method exemplified according to one.
Fig. 6 is a kind of block diagram of the server threedimensional model generating means shown according to another embodiment.
Specific embodiment
Example embodiment is described more fully with reference to the drawings.It will be understood by those skilled in the art that attached drawing is The schematic diagram of example embodiment necessary to module or process in attached drawing not necessarily implement the disclosure, therefore cannot be used In the protection scope of the limitation disclosure.
The disclosure inventors have found that when server apparatus occur board, subcard variation when, i.e., corresponding computer room 3D is visual When changing the server apparatus model generation isomery demand of management system, need manually to change incidence relation, the position of configuration file Relationship carrys out the integrality of safeguard service device device model system.Moreover, each board, subcard equipment have port, i.e., also Need specific port model matching in 3D environment.
Existing server apparatus model is theoretically realized from the layer-by-layer modeling of server physical structure, assembling The accuracy of management is needed when constructing computer room topology using server as root node building, grandson's equipment, and above each equipment Also need to have port information;In 3D environment management server equipment, the slot position coordinate matching board according to server is needed Model, board slot position coordinate matching subcard model, and further match each board, the port model in subcard equipment;It is sending out In the case where raw server model isomery, need to change configuration information, increase board model, subcard model, port information etc..
The above method realizes that the management of server apparatus 3D model increases computer room Visualized management system model management, money The complexity of source function makes the quantity of 3D device model increase several times than the quantity of server model itself, makes 3D computer room Visualized management system EMS memory occupation increases, and operation complexity improves, and model maintenance is cumbersome.
In the application of actual computer room 3D Visualized management system, especially in the management system of IDC, to server apparatus Regulatory requirement in fact in terms of its port and in terms of the attribute of port (optical port, power port, hard disk), to have several subcards, Belong to which slot position and be not concerned with, and operation maintenance personnel is in the case where occurring server 3D model isomery, to allocation models slot position, Board, port configuration relation operation when often forget about or operation error, keep the model accuracy of 3D Visualized management system difficult To be protected.
In view of predicament in the prior art, the disclosure goes out from the practicability for meeting computer room 3D visualizationization management system Hair, proposes a kind of server threedimensional model generation method, is applicable to establish the threedimensional model of dynamic heterogeneous server in machine room Server apparatus model composition is reduced to server apparatus+port two-stage mode, when generation server model isomery situation by method When, slot position region is searched for by the textures of Analysis server model and distributes port position automatically;It is further advanced by server BMC substrate management control system realizes the automatic realization of server 3D model isomery using port monitoring scanning and Model Matching.
Content of this disclosure is described in detail below by way of specific embodiment.
Fig. 1 is the system field of a kind of server threedimensional model generation method shown according to an exemplary embodiment and device Scape block diagram.
As shown in Figure 1, system architecture 100 may include monitoring device 101,102,103, network 104 and server 105. Network 104 between monitoring device 101,102,103 and server 105 to provide the medium of communication link.Network 104 can be with Including various connection types, such as wired, wireless communication link or fiber optic cables etc..
Monitoring device 101,102,103 is interacted by network 104 with server 105, to receive or send message etc..Monitoring Various telecommunication customer end applications etc. can be installed in equipment 101,102,103.
Monitoring device 101,102,103 can be the various electronic equipments with video monitoring function, including but not limited to Camera, timing video camera etc..
Server 105 can be to provide the server of various services, such as monitoring device 101,102,103 is proposed The back-stage management server that real time picture is supported.Back-stage management server can analyze the real time picture received Deng processing, processing result (threedimensional model for updating server) is generated.
Server 105 can be for example by obtaining destination port information in the realtime graphic of server;Server 105 can such as root According to the facility information of server by determining initial server threedimensional model in database, wrapped in the initial server threedimensional model Include initial port model;Server 105 for example can determine target port model according to the destination port information;Server 105 For example the initial server threedimensional model can be updated to generate destination server three by the target port model Dimension module.
Server 105 can also be for example by initial target port information, the facility information and graph visualization of the server Technology generates the initial server threedimensional model.
Server 105 can be the server of an entity, also may be, for example, multiple server compositions, needs to illustrate It is that server threedimensional model generation method provided by the embodiment of the present disclosure can be executed by server 105, correspondingly, service Device threedimensional model generating means can be set in server 105.And monitoring site server sends the device one of realtime graphic As be located at monitoring device 101,102,103 in.
Fig. 2 is a kind of flow chart of server threedimensional model generation method shown according to an exemplary embodiment.Service Device threedimensional model generation method 20 includes at least step S202 to S208.
As shown in Fig. 2, in S202, by obtaining destination port information in the realtime graphic of server.Can include: by servicing Two-dimentional textures information is obtained in the realtime graphic of device;It is subordinate to slot position information according to two-dimentional textures acquisition of information, it is described to be subordinate to slot position Information includes that type of slots and slot position are numbered;And the destination port information is generated by the slot position information that is subordinate to.
In one embodiment, BMC (Baseboard Management Controller, substrate management control can be passed through System) realtime graphic for obtaining server is scanned to the port monitoring of server master board.Wherein, BMC is a special service Processor, it monitors a computer using sensor, and the sensor of BMC is used to measure internal physical variable, such as: temperature Degree, humidity, supply voltage, fan speed, messaging parameter and operating system function, if any one has exceeded in these variables Except the range of specified limitation, BMC can generate status information and notify administrator.
In one embodiment, two-dimentional textures information can be determined by the identification to realtime graphic, and then determines slot position class Type and slot position are numbered.
It is described first according to the facility information of server by determining initial server threedimensional model in database in S204 It include initial port model in beginning server threedimensional model.Can include: according to the device name in the facility information of server by Initial server threedimensional model is determined in database;And/or according to the mapped file in the facility information of server by database Middle determining initial server threedimensional model.
In S206, target port model is determined according to the destination port information.Can include: according to the target port Information determines zoom factor;And target port model is determined according to the destination port information, zoom factor.
In one embodiment, determine that zoom factor includes: according to the target port according to the destination port information Information determines type of slots;Slot position center is determined according to the type of slots;According to the type of slots and the slot position center Determine the zoom factor.
In one embodiment, the type of slots includes horizontal type of slots and perpendicular type of slots;According to the slot position class Type and the slot position center determine the zoom factor comprise determining that horizontal type of slots with perpendicular type of slots corresponding translot position center With vertical slot position center;The first zoom factor is determined by horizontal type of slots and translot position center;Pass through perpendicular type of slots and vertical slot Position center determines the second zoom factor;And the scaling is determined by first zoom factor and second zoom factor Coefficient.
In S208, the initial server threedimensional model is updated to generate mesh by the target port model Mark server threedimensional model.Can include: it is replaced with the target port model initial in the initial server threedimensional model Port model;And the target port model and the initial server threedimensional model are associated and generate the target clothes Business device model.
Model generates system and is associated with universal port model library, has Ethernet power port, Ethernet light in port model library The port models such as mouth, hard disk.The isomery port type of server apparatus is transferred from port model library corresponding with quantity information Port model.By the 2D textures of image recognition scanning server equipment, the type of slots and slot number of 2D textures are scanned, benefit Port model is assigned in corresponding slot position with the slot position information that is subordinate to of equipment.
According to the server threedimensional model generation method of the disclosure, carried out by server B MC substrate management control system Monitoring, Analysis server model is textures search slot position region and in such a way that port position is distributed automatically in slot position region, energy Enough realize regenerating for server 3D model.
It will be clearly understood that the present disclosure describes how to form and use particular example, but the principle of the disclosure is not limited to These exemplary any details.On the contrary, the introduction based on disclosure disclosure, these principles can be applied to many other Embodiment.
Fig. 3 is a kind of flow chart of the server threedimensional model generation method shown according to another exemplary embodiment.Fig. 3 Shown in server threedimensional model generation method 30 be " true according to the destination port information to S206 in process shown in Fig. 2 Set the goal port model " detailed description.
As shown in figure 3, determining type of slots according to the destination port information in S302.The type of slots includes Horizontal type of slots and perpendicular type of slots.
In S304, slot position center is determined according to the type of slots.It more specifically comprises determining that horizontal type of slots and erects Type of slots corresponds to translot position center and vertical slot position center.
In S306, the zoom factor is determined according to the type of slots and the slot position center.More specifically include: The first zoom factor is determined by horizontal type of slots and translot position center;Second is determined by perpendicular type of slots and vertical slot position center Zoom factor;And the zoom factor is determined by first zoom factor and second zoom factor.
In S308, target port model is determined according to the destination port information, zoom factor.
For translot position (the long L of slot position is greater than the high H of slot position):
S1=L/ (L1+L2+ ... Ln) (1-1)
In formula 1-1, L is that slot position is long, and L1 to Ln is that this is subordinate to the length of each port of the slot position, the measurement unit of each number It is pixel.S1 indicates port original scale ratio.
S=S1/R (1-2)
S in formula 1-2 is zoom factor, and R is constant, such as R==2, indicates that all of the port is long after S times of scaling Degree summation (L1+L2+...+Ln) accounts for the 1/R of slot position total length.
The case where for vertical slot position (the long L of slot position is less than the high H of slot position), calculating scaling is carried out using the height of slot position and each port Coefficient S, calculation method are identical as formula 1-1 and 1-2.
For translot position, the abscissa Xn (n=1,2 ...) of each port center coordinate are as follows:
Xn=L- (L1+L2+Ln-1) * S+1/2*Ln*S (2-1)
In formula 2-1, S is the zoom factor in formula 1-2, and Ln is the length of each port.
The ordinate Yn of each port center coordinate are as follows:
Yn=1/2*H (2-2)
Realize that each port is laterally uniform.
The case where for vertical slot position (the long L of slot position be less than the high H of slot position), each port center coordinate ordinate Yn (n=1, 2 ...) are as follows:
Yn=H- (H1+H2+Hn-1) * S+1/2*Hn*S (3-1)
In formula 2-1, S is the zoom factor in formula 1-2, and Yn is the height of each port.
The abscissa Xn of each port center coordinate are as follows:
Xn=1/2*L (3-2)
Realize that each port is longitudinally uniformly distributed by above zoom factor distribution.
Fig. 4 is a kind of flow chart of the server threedimensional model generation method shown according to another exemplary embodiment.Fig. 4 Shown in server threedimensional model generation method 40 be to " by initial target port information, the server facility information with The detailed description of the graph visualization technology generation initial server threedimensional model ".
As shown in figure 4, generating the initial port model by the initial target port information in S402.
In one embodiment, generating the initial port model by the initial target port information includes: by described Port information, port number information are extracted in initial target port information;And according to the port information, port Quantity information generates the initial port model by port model library.
In S404, the initial server threedimensional model is generated by the facility information of the server.
In S406, according to the initial target port information and the facility information by the initial port model interaction To the initial server threedimensional model.
In one embodiment, according to the initial target port information and the facility information by the initial end mouth mold It includes: to be subordinate to slot position information by extracting in the initial target port information that type, which is associated with to the initial server threedimensional model,; And according to slot position information and the facility information of being subordinate to by the initial port model interaction to the initial server The setting position of threedimensional model.
Fig. 5 is a kind of schematic diagram of the server threedimensional model generation method shown according to another exemplary embodiment.Fig. 5 It is the detailed description to server threedimensional model generation method in the disclosure.
It wherein, can to the slot position for constituting server 3D model isomery part when constructing the 2D textures of server 3D model It is realized with well-regulated graphic element, the slot position of a certain type, slot is such as drawn with the circular arc chamfering rectangle of uniform color and width Position number is with uniformly font in the top indicia of slot position figure.
The server 3D model parent of type title is constructed, model pinup picture is deposited using the textures above drawn It is stored in common apparatus model library.
It can also be for example, having isomery port information category in certain server apparatus that computer room 3D visualization system shows or manages Property, comprising port type, quantity, it is subordinate to slot position information.
Wherein, isomery port information can be handled as follows:
1) information and management system whether be computer room 3D Visualized management system be it is unrelated, can store in computer room 3D In the resource management module of Visualized management system, also it can store in third party's resource management system.
2) information belongs to the equipment essential information of each system resource management, exists generally in the form of TXT the text field.
When needing the load server equipment in computer room 3D visualization system, application server model parent is visual in 3D Example in change system.When needing the port of presence server equipment in three dimensions in computer room 3D visualization system, carry out Following processing:
1) model construction system is associated with universal port model library, has Ethernet power port, Ethernet in port model library The port models such as optical port, hard disk.
2) corresponding port is transferred with quantity information from port model library according to the isomery port type of server apparatus Model.
3) the 2D textures for passing through image recognition scanning server equipment, scan the type of slots and slot number of 2D textures, The port model transferred is assigned in corresponding slot position.
It will be appreciated by those skilled in the art that realizing that all or part of the steps of above-described embodiment is implemented as being executed by CPU Computer program.When the computer program is executed by CPU, above-mentioned function defined by the above method that the disclosure provides is executed Energy.The program can store in a kind of computer readable storage medium, which can be read-only memory, magnetic Disk or CD etc..
Further, it should be noted that above-mentioned attached drawing is only the place according to included by the method for disclosure exemplary embodiment Reason schematically illustrates, rather than limits purpose.It can be readily appreciated that above-mentioned processing shown in the drawings is not indicated or is limited at these The time sequencing of reason.In addition, be also easy to understand, these processing, which can be, for example either synchronously or asynchronously to be executed in multiple modules.
Following is embodiment of the present disclosure, can be used for executing embodiments of the present disclosure.It is real for disclosure device Undisclosed details in example is applied, embodiments of the present disclosure is please referred to.
Fig. 6 is a kind of block diagram of the server threedimensional model generating means shown according to another exemplary embodiment.Such as Fig. 6 Shown, server threedimensional model generating means 60 include: image information module 602, server model module 604, target port Module 606 and model modification module 608, server threedimensional model generating means 60 may also include that model construction module 610.
Image information module 602, for obtaining destination port information in the realtime graphic by server;Can include: by taking It is engaged in obtaining two-dimentional textures information in the realtime graphic of device;It is subordinate to slot position information according to two-dimentional textures acquisition of information, it is described to be subordinate to slot Position information includes that type of slots and slot position are numbered;And the destination port information is generated by the slot position information that is subordinate to.
Server model module 604 is used for the facility information according to server by determining that initial server is three-dimensional in database Model includes initial port model in the initial server threedimensional model;Can include: according in the facility information of server Device name is by determining initial server threedimensional model in database;And/or according to the mapping text in the facility information of server Part is by determining initial server threedimensional model in database.
Target port module 606 is used to determine target port model according to the destination port information;Can include: according to institute It states destination port information and determines zoom factor;And target port model is determined according to the destination port information, zoom factor.
Model modification module 608 is used to carry out more the initial server threedimensional model by the target port model Newly to generate destination server model.Can include: it is replaced in the initial server threedimensional model with the target port model Initial port model;And the target port model and the initial server threedimensional model are associated described in generation Destination server model.
Model construction module 610 is used for visual by initial target port information, the facility information of the server and figure Change technology generates the initial server threedimensional model.Can include: the initial end is generated by the initial target port information Mouth mold type;The initial server threedimensional model is generated by the facility information of the server;And according to the initial target Port information and the facility information are by the initial port model interaction to the initial server threedimensional model.
According to the server threedimensional model generating means of the disclosure, by obtaining target side message in the realtime graphic of server Breath;Target port model is determined according to the destination port information;By the target port model to initial server three-dimensional Model is updated in a manner of generating destination server threedimensional model, can be when the port information of server is changed, fastly It is fast accurately to automatically generate with the server threedimensional model for updating port information.
Server threedimensional model generation method and generating means described in the disclosure at least have the advantages that
Without building slot position model, board model, subcard model to server device type, reduce the visualization of 3D computer room The model quantity of management system;
Without specially to server setting slot position, board, subcard model configuration file, Heterogeneous Information is both from money The general-purpose attribute field of source control module, can be unrelated with computer room 3D visualization system.
Isomate process (server model renewal process) can be specific by obtaining to server B MC substrate management control system The Heterogeneous Information of server is realized automatically.The efficiency if 3D computer room Visualized management system integrates BMC substrate management management function It is higher.
It is particularly shown and described the exemplary embodiment of the disclosure above.It should be appreciated that the present disclosure is not limited to Detailed construction, set-up mode or implementation method described herein;On the contrary, disclosure intention covers included in appended claims Various modifications and equivalence setting in spirit and scope.

Claims (10)

1. a kind of server threedimensional model generation method characterized by comprising
By obtaining destination port information in the realtime graphic of server;
According to the facility information of server by determining initial server threedimensional model, the initial server three-dimensional mould in database It include initial port model in type;
Target port model is determined according to the destination port information;And
The initial server threedimensional model is updated by the target port model to generate destination server three-dimensional Model.
2. the method as described in claim 1, which is characterized in that further include:
The initial server is generated by initial target port information, the facility information of the server and graph visualization technology Threedimensional model.
3. method according to claim 2, which is characterized in that believed by the equipment of initial target port information, the server Breath generates the initial server threedimensional model with graph visualization technology
The initial port model is generated by the initial target port information;
The initial server threedimensional model is generated by the facility information of the server;And
According to the initial target port information and the facility information by the initial port model interaction to the initial clothes Business device threedimensional model.
4. method as claimed in claim 3, which is characterized in that generate the initial port by the initial target port information Model includes:
By extracting port information, port number information in the initial target port information;And
The initial port model is generated by port model library according to the port information, port number information.
5. the method as described in claim 1, which is characterized in that by obtaining destination port information packet in the realtime graphic of server It includes:
By obtaining two-dimentional textures information in the realtime graphic of server;
It is subordinate to slot position information according to two-dimentional textures acquisition of information, the slot position information that is subordinate to includes that type of slots and slot position are numbered; And
The destination port information is generated by the slot position information that is subordinate to.
6. the method as described in claim 1, which is characterized in that initial by being determined in database according to the facility information of server Server threedimensional model includes:
According to the device name in the facility information of server by determining initial server threedimensional model in database;And/or
According to the mapped file in the facility information of server by determining initial server threedimensional model in database.
7. the method as described in claim 1, which is characterized in that determine target port model packet according to the destination port information It includes:
Zoom factor is determined according to the destination port information;And
Target port model is determined according to the destination port information, zoom factor.
8. the method as described in claim 1, which is characterized in that determine that zoom factor includes: according to the destination port information
Type of slots is determined according to the destination port information;
Slot position center is determined according to the type of slots;
The zoom factor is determined according to the type of slots and the slot position center.
9. method according to claim 8, which is characterized in that the type of slots includes horizontal type of slots and vertical slot position class Type;
Determine that the zoom factor includes: with the slot position center according to the type of slots
Determine horizontal type of slots translot corresponding with perpendicular type of slots position center and vertical slot position center;
The first zoom factor is determined by horizontal type of slots and translot position center;
The second zoom factor is determined by perpendicular type of slots and vertical slot position center;And
The zoom factor is determined by first zoom factor and second zoom factor.
10. a kind of server threedimensional model generating means characterized by comprising
Image information module, for obtaining destination port information in the realtime graphic by server;
Server model module, for the facility information according to server by determining initial server threedimensional model in database, It include initial port model in the initial server threedimensional model;
Target port module, for determining target port model according to the destination port information;And
Model modification module, for being updated the initial server threedimensional model with life by the target port model At destination server model.
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