WO2016086559A1 - 集中配置方法及装置、存储介质 - Google Patents
集中配置方法及装置、存储介质 Download PDFInfo
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- WO2016086559A1 WO2016086559A1 PCT/CN2015/075731 CN2015075731W WO2016086559A1 WO 2016086559 A1 WO2016086559 A1 WO 2016086559A1 CN 2015075731 W CN2015075731 W CN 2015075731W WO 2016086559 A1 WO2016086559 A1 WO 2016086559A1
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- G06F9/00—Arrangements for program control, e.g. control units
- G06F9/06—Arrangements for program control, e.g. control units using stored programs, i.e. using an internal store of processing equipment to receive or retain programs
- G06F9/44—Arrangements for executing specific programs
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- the present invention relates to the field of communications technologies, and in particular, to a centralized configuration method and apparatus, and a storage medium.
- GSM Global System for Mobile Communications
- the centralized configuration system needs to pre-store the function information table, configure the step table, configure the context relationship table, set the shared parameter table, and then select the function to be configured to read the required data configuration information from the data source, and then generate Configuration commands; their operations are complicated and the configuration is difficult.
- the present invention provides a centralized configuration method and apparatus.
- a centralized configuration method provided by the present invention includes the following steps:
- a configuration command is generated according to a preset configuration command rule according to a difference between the modified configuration data set and the configuration data set in the baseline configuration area.
- generating a configuration command according to a preset configuration command rule according to the difference between the modified configuration data set and the configuration data set in the baseline configuration area includes:
- the generating the configuration command according to the preset configuration command rule according to the difference between the configuration data set in the offline configuration area and the configuration data set in the baseline configuration area includes:
- the difference object information is obtained in a streaming manner, and a configuration command is generated according to the difference object information.
- the generating a comparison script according to the object description information of the preset model object is specifically: generating, according to the group information and the object description information preset in the preset model object, a packet for comparing each packet Comparison script for objects in .
- the acquiring the difference object information in a streaming manner, and before generating the configuration command according to the difference object information further includes:
- the object information is a step of generating a configuration command based on the difference object information.
- a centralized configuration device includes:
- a configuration area creation module configured to create a baseline configuration area and an offline configuration area; the baseline configuration area and the offline configuration area are provided with the same configuration data set generated according to the preset configuration model;
- a data transmission module configured to derive a configuration data set from an offline configuration area
- Modifying a module configured to modify the configuration data set according to an operation instruction of the user
- the processing module is configured to generate a configuration command according to a preset configuration command rule according to a difference between the modified configuration data set and the configuration data set in the baseline configuration area.
- the processing module includes:
- the processing unit is configured to import the modified configuration data set into the offline configuration area, perform a conflict check with the configuration data set in the offline configuration area, and perform automatic conflict resolution and differential merge when the check fails;
- the command generating unit is configured to generate a configuration command according to a preset configuration command rule according to a difference between the configuration data set in the offline configuration area and the configuration data set in the baseline configuration area.
- the command generating unit includes:
- a script generation subunit configured to generate a comparison script according to the object description information of the preset model object
- Querying a subunit configured to query, according to the comparison script, difference object information between a configuration data set in the offline configuration area and a configuration data set in the baseline configuration area;
- the command generation subunit acquires the difference object information in a streaming manner, and generates a configuration command according to the difference object information.
- the script generation subunit is further configured to generate, according to the group information and the object description information preset in the preset model object, a comparison script for comparing objects in the group for each group.
- the command generating unit further includes:
- the verification subunit is configured to verify the legality of the packet with the difference object information
- the determining subunit is configured to determine whether each group in which the difference object information exists has passed the legality verification
- the command generating sub-unit is further configured to: when each group having the difference object information passes the legality verification, obtain the difference object information in a streaming manner, and generate a configuration command according to the difference object information; When the packets fail to pass the legality verification, the modification operation interface of the packet that does not pass the legality verification is output, so that the user can modify the configuration data set in the packet until the legality verification of the packet passes, and the flow is obtained.
- the difference object information generates a configuration command according to the difference object information.
- a storage medium having stored therein a computer program configured to perform the aforementioned centralized configuration method.
- the embodiment of the present invention creates a baseline configuration area and an offline configuration area; and derives a configuration data set from the offline configuration area; and modifies the configuration data set according to the operation instruction of the user; and according to the modified configuration data set and the baseline configuration area
- the configuration data is generated according to the preset configuration command rules. Then, the configuration command is implemented on the device to update the configuration data of the device.
- the present invention reduces the difficulty of configuration by comparing the modified configuration data set with the initial configuration data set after the configuration data set is modified.
- FIG. 1 is a schematic flow chart of an embodiment of a centralized configuration method according to the present invention.
- FIG. 2 is a schematic flowchart of refinement of generating a configuration command in an embodiment of a centralized configuration method according to the present invention
- FIG. 3 is a schematic diagram showing a refinement process of an embodiment of the configuration command generation in FIG. 2;
- FIG. 4 is a schematic diagram showing a refinement process of another embodiment of the configuration command generation in FIG. 2;
- FIG. 5 is a schematic diagram of functional modules of an embodiment of a centralized configuration apparatus according to the present invention.
- FIG. 6 is a schematic diagram of a refinement function module of the processing module in FIG. 5;
- FIG. 7 is a schematic diagram of a refinement function module of an embodiment of the command generation unit of FIG. 6;
- FIG. 8 is a schematic diagram of a refinement function module of another embodiment of the command generation unit of FIG. 6.
- FIG. 8 is a schematic diagram of a refinement function module of another embodiment of the command generation unit of FIG. 6.
- the present invention provides a centralized configuration method.
- the centralized configuration method includes:
- Step S10 creating a baseline configuration area and an offline configuration area; the baseline configuration area and the offline configuration area are provided with the same configuration data set generated according to the preset configuration model;
- the centralized configuration method provided in this embodiment is mainly applied to device data configuration.
- the configuration data set set in the above-mentioned baseline configuration area and offline configuration area can be set according to the actual needs. For example, when the current device configuration data needs to be updated, the current scene configuration data set of the device can be copied to the current scene configuration data set of the device.
- the configuration mode corresponding to the configuration data in the baseline configuration area and the offline configuration area is the configuration model corresponding to the current scene configuration of the device. If you need to create a new device configuration, you can create an empty configuration set directly by configuration model.
- Step S20 exporting a configuration data set from an offline configuration area
- Step S30 modifying the configuration data set according to an operation instruction of the user
- the user can directly export the configuration data set from the offline configuration area and then modify the configuration data set according to the exported configuration data set.
- the configuration data set is description information about the object, including the configured object, the configuration item of each object, and the configuration attribute corresponding to each configuration item.
- the foregoing modification includes adding, deleting, or modifying a configuration item of the foregoing object; for example, one configuration item may be added or deleted, or one or more configuration attributes of a configuration item in an object may be modified.
- the configuration data set can be displayed through an operation interface, and the configuration data set can be modified in batches by the user in the script language, or on the operation interface. Manually modify the configuration items in the configuration data set.
- Step S40 Generate a configuration command according to a preset configuration command rule according to the difference between the modified configuration data set and the configuration data set in the baseline configuration area.
- the difference between the modified configuration data set and the configuration data set in the baseline configuration area is compared, and the configuration item modified by the user is obtained.
- the configuration command is generated according to the configuration item modified by the user.
- the configuration command is a script file
- the script file is a modification command for modifying the configuration data set of the baseline configuration area to the modified configuration data set of the user.
- the embodiment of the present invention creates a baseline configuration area and an offline configuration area; and derives a configuration data set from the offline configuration area; and modifies the configuration data set according to the operation instruction of the user; and according to the modified configuration data set and the baseline configuration area
- the configuration data is generated according to the preset configuration command rules. Then, the configuration command is implemented on the device to update the configuration data of the device.
- the present invention reduces the difficulty of configuration by comparing the modified configuration data set with the initial configuration data set after the configuration data set is modified.
- the foregoing step S40 includes:
- Step S41 Import the modified configuration data set into the offline configuration area, perform a conflict check with the configuration data set in the offline configuration area, and perform automatic conflict resolution and differential merge when the check fails;
- Step S42 Generate a configuration command according to a preset configuration command rule according to a difference between a configuration data set in the offline configuration area and a configuration data set in the baseline configuration area.
- the modified configuration data set is re-imported into the offline configuration data area, and then the profile ratio is invoked.
- the data conflict check and conflict resolution are performed by the module.
- the profile comparison is invoked to generate the dynamic incremental script to obtain the configuration command.
- the modified configuration data is re-imported into the offline configuration area, and the conflicting check is performed with the configuration data set in the offline configuration area, so that multiple people can be configured at the same time.
- the offline configuration area and the baseline configuration area are created according to the current scenario configuration of the device.
- the device After the user exports the configuration data set in the offline configuration area, the device needs to automatically update its configuration according to different scenarios, thereby enabling the offline configuration area.
- the configuration data set is modified; or multiple users modify the same record of the same configuration item, the modification may be different attributes, or may be the same attribute; or different operations may be performed on the same record, there may be differences or Conflicts, this time using conflict checking or differential merging, can solve this problem, thus supporting multi-user concurrent operations.
- the foregoing step S42 includes:
- Step S421 generating a comparison script according to the object description information of the preset model object
- Step S422 querying, according to the comparison script, difference object information between the configuration data set in the offline configuration area and the configuration data set in the baseline configuration area;
- Step S423 the difference object information is obtained in a streaming manner, and a configuration command is generated according to the difference object information.
- the profile comparison mechanism may be adopted, the interpreter mode is adopted, the SQL comparison script is generated according to the description information of the configuration model, and then the SQL comparison script is executed to obtain the configuration data set and the baseline configuration in the offline configuration area.
- the difference object information between the data sets is configured in the zone.
- the generating the comparison script according to the object description information of the preset model object is preferably: generating, according to the grouping information and the object description information preset in the preset model object, a comparison for each group.
- a comparison script for objects in a group For example, each object may be classified according to object description information, or the types of each description item may be grouped.
- each group corresponds to a comparison script, and multiple comparison scripts can be executed concurrently.
- the line then stores the comparison result (difference object information) executed by each comparison script into the cache.
- the comparison result is extracted from the cache by streaming, and the script file corresponding to the configuration command is generated according to the comparison result.
- the command generation uses the pipeline filter mode, the memory it occupies is basically negligible.
- the pipeline filter mode is not suitable for associating complex data processing.
- this embodiment adopts the MAP-REDUCE mode, which can process configuration commands with strict sequence requirements; and the memory consumption is low, and the high concurrent mode can be used to improve efficiency. At the same time, its concurrency parameters can be hot-matched, so that the scalability is very good.
- the method further includes:
- Step S424 performing legality verification on the packet with the difference object information
- Step S425 it is determined whether each packet having the difference object information passes the legality verification; if yes, step S423 is performed; otherwise, step S426 is performed;
- Step S426 outputting a modification operation interface of the packet that does not pass the legality verification, so that the user modifies the configuration data set in the packet until the packet validity verification passes, and proceeds to step S423.
- the verification of the legality is specifically performed to verify the integrity of the difference object configuration item. For example, if a configuration item includes five configuration attributes, if only three configuration attributes are given, the Legality verification. At this time, the operation interface is outputted for the user to modify the configuration attribute. After the user modifies the configuration attribute, the conflict check or the difference merge may be performed again, and the legality information is obtained, and the difference object information is obtained in a streaming manner. And generating a configuration command according to the difference object information.
- the validity of the data is ensured by using legality verification, and the integrity of the configuration is ensured when the configuration is updated, thereby improving the stability of the system operation.
- the legality verification is performed only on the packets having differences, the speed of data processing is improved.
- the present invention also provides a centralized configuration device.
- the present invention provides The centralized configuration device provided includes:
- the configuration area creating module 10 is configured to create a baseline configuration area and an offline configuration area; the baseline configuration area and the offline configuration area are provided with the same configuration data set generated according to the preset configuration model;
- the centralized configuration apparatus provided in this embodiment is mainly applied to device data configuration.
- the configuration data set set in the above-mentioned baseline configuration area and offline configuration area can be set according to the actual needs. For example, when the current device configuration data needs to be updated, the current scene configuration data set of the device can be copied to the current scene configuration data set of the device.
- the configuration mode corresponding to the configuration data in the baseline configuration area and the offline configuration area is the configuration model corresponding to the current scene configuration of the device. If you need to create a new device configuration, you can create an empty configuration set directly by configuration model.
- the data transmission module 20 is configured to derive a configuration data set from an offline configuration area
- the modifying module 30 is configured to modify the configuration data set according to an operation instruction of the user;
- the user can directly export the configuration data set from the offline configuration area and then modify the configuration data set according to the exported configuration data set.
- the configuration data set is description information about the object, including the configured object, the configuration item of each object, and the configuration attribute corresponding to each configuration item.
- the foregoing modification includes adding, deleting, or modifying a configuration item of the foregoing object; for example, one configuration item may be added or deleted, or one or more configuration attributes of a configuration item in an object may be modified.
- the configuration data set can be displayed through an operation interface.
- the user can modify the configuration data set in batches through the script language, or manually modify the configuration items in the configuration data set on the operation interface. .
- the processing module 40 is configured to generate a configuration command according to a preset configuration command rule according to a difference between the modified configuration data set and the configuration data set in the baseline configuration area.
- the difference between the modified configuration data set and the configuration data set in the baseline configuration area is compared, and the configuration item modified by the user is obtained. Then, a configuration command is generated according to the configuration item modified by the user.
- the configuration command is a script file
- the script file is Modify the configuration data set of the baseline configuration area to the modification command of the user-modified configuration data set.
- the configuration command is sent to the device that needs to be updated (that is, the deployment is implemented on the device). After the configuration command is executed, the configuration data of the device can be updated.
- the embodiment of the present invention creates a baseline configuration area and an offline configuration area; and derives a configuration data set from the offline configuration area; and modifies the configuration data set according to the operation instruction of the user; and according to the modified configuration data set and the baseline configuration area
- the configuration data is generated according to the preset configuration command rules. Then, the configuration command is implemented on the device to update the configuration data of the device.
- the present invention reduces the difficulty of configuration by comparing the modified configuration data set with the initial configuration data set after the configuration data set is modified.
- the processing module 40 includes:
- the processing unit 41 is configured to import the modified configuration data set into the offline configuration area, perform a conflict check with the configuration data set in the offline configuration area, and perform automatic conflict resolution and differential merge when the check fails;
- the command generating unit 42 is configured to generate a configuration command according to a preset configuration command rule according to a difference between the configuration data set in the offline configuration area and the configuration data set in the baseline configuration area.
- the modified configuration data set is re-imported into the offline configuration data area, and then the data comparison check and conflict resolution are performed by calling the profile comparison module.
- the profile comparison is called to perform dynamic incremental script generation to obtain the configuration command.
- the modified configuration data is re-imported into the offline configuration area, and the conflicting check is performed with the configuration data set in the offline configuration area, so that multiple people can be configured at the same time. For example, according to the current scene configuration of the device The offline configuration area and the baseline configuration area are created.
- the device After the user exports the configuration data set in the offline configuration area, the device needs to automatically update its configuration according to different scenarios, so that the configuration data set in the offline configuration area is modified. Or multiple users modify the same record of the same configuration item. The modification may be different attributes or the same attribute. Or different operations may be performed on the same record. There may be differences or conflicts. Or the difference merge, you can solve this problem, thus supporting multi-user concurrent operations.
- the command generating unit 42 includes:
- the script generation subunit 421 is configured to generate a comparison script according to the object description information of the preset model object
- the query subunit 422 is configured to query, according to the comparison script, difference object information between the configuration data set in the offline configuration area and the configuration data set in the baseline configuration area;
- the command generation sub-unit 423 acquires the difference object information in a streaming manner, and generates a configuration command according to the difference object information.
- the profile comparison mechanism may be adopted, the interpreter mode is adopted, the SQL comparison script is generated according to the description information of the configuration model, and then the SQL comparison script is executed to obtain the configuration data set and the baseline configuration in the offline configuration area.
- the difference object information between the data sets is configured in the zone.
- the script generating subunit is further configured to generate, according to the grouping information preset in the preset model object and the object description information, a comparison script for comparing objects in the group for each group. For example, each object may be classified according to object description information, or the types of each description item may be grouped.
- each grouping corresponds to a comparison script, and a plurality of comparison scripts can be executed concurrently, and then the comparison result (difference object information) executed by each comparison script is stored in the cache. Finally, the comparison result is extracted from the cache by streaming, and the script file corresponding to the configuration command is generated according to the comparison result.
- the command generation uses the pipeline filter mode, the memory it occupies is basically negligible. Generally speaking, the pipeline filter The mode is not suitable for association with complex data processing. However, this embodiment uses the MAP-REDUCE mode to process configuration commands with strict sequence requirements. The memory consumption is low, and the high-concurrency mode can be used to improve efficiency. At the same time, the concurrent parameters can be hot. Match, so the flexibility is very good.
- the command generating unit 42 further includes:
- the verification subunit 424 is configured to perform legality verification on the packet with the difference object information
- the determining sub-unit 425 is configured to determine whether each group in which the difference object information exists has passed the legality verification
- the command generating sub-unit 423 is further configured to: when each group having the difference object information passes the legality verification, obtain the difference object information in a streaming manner, and generate a configuration command according to the difference object information; When the packets of the information fail to pass the legality verification, the modification operation interface of the packet that does not pass the legality verification is output, so that the user can modify the configuration data set in the packet until the legality verification of the packet passes, in a streaming manner. Obtaining the difference object information, and generating a configuration command according to the difference object information.
- the verification of the legality is specifically performed to verify the integrity of the difference object configuration item. For example, if a configuration item includes five configuration attributes, if only three configuration attributes are given, the Legality verification. At this time, the operation interface is outputted for the user to modify the configuration attribute. After the user modifies the configuration attribute, the conflict check or the difference merge may be performed again, and the legality information is obtained, and the difference object information is obtained in a streaming manner. And generating a configuration command according to the difference object information.
- the validity of the data is ensured by using legality verification, and the integrity of the configuration is ensured when the configuration is updated, thereby improving the stability of the system operation.
- the legality verification is performed only on the packets having differences, the speed of data processing is improved.
- the embodiment of the invention further describes a storage medium in which a computer program is stored, the computer program being configured to perform the centralized configuration method of the foregoing embodiments.
- the present invention creates a baseline configuration area and an offline configuration area; derives a configuration data set from the offline configuration area; modifies the configuration data set according to a user operation instruction; and configures data according to the modified configuration data set and the baseline configuration area
- the difference between the sets is generated according to the preset configuration command rules; then the configuration command is implemented to the device, and the configuration data of the device can be updated.
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Abstract
本发明公开了一种集中配置方法,所述集中配置方法包括以下步骤:创建基线配置区和离线配置区;所述基线配置区和离线配置区内设有根据预置配置模型生成的相同配置数据集;从离线配置区导出配置数据集;根据用户的操作指令,修改所述配置数据集;根据修改后的配置数据集与所述基线配置区中配置数据集之间的差异按照预设的配置命令规则生成配置命令。本发明还公开了一种集中配置装置及存储介质。本发明降低了配置的难度。
Description
本发明涉及通讯技术领域,尤其涉及集中配置方法及装置、存储介质。
全球移动通信系统(GSM,Global System for Mobile Communications)是一个很复杂的系统,需要一个支持大数据量的配置系统,包括不同产品,不同制式及各种服务。现有技术中,集中配置系统需要预先存贮功能信息表,配置步骤表,配置上下文关系表,设置共享参数表,然后选择需要配置的功能从数据源中读取所需数据配置信息,再生成配置命令;其操作复杂,配置难度较高。
发明内容
为解决上述技术问题,本发明提供一种集中配置方法及装置。
本发明提供的一种集中配置方法包括以下步骤:
创建基线配置区和离线配置区;所述基线配置区和离线配置区内设有根据预置配置模型生成的相同配置数据集;
从离线配置区导出配置数据集;
根据用户的操作指令,修改所述配置数据集;
根据修改后的配置数据集与所述基线配置区中配置数据集之间的差异按照预设的配置命令规则生成配置命令。
作为一种实现方式,根据修改后的配置数据集与基线配置区中配置数据集之间的差异按照预设的配置命令规则生成配置命令包括:
将修改后的配置数据集导入离线配置区,与所述离线配置区中的配置
数据集进行冲突检查,当检查不通过自动做冲突解决和差异合并;
根据所述离线配置区中的配置数据集与所述基线配置区中配置数据集之间的差异按照预设的配置命令规则生成配置命令。
作为一种实现方式,所述根据离线配置区中的配置数据集与所述基线配置区中配置数据集之间的差异按照预设的配置命令规则生成配置命令包括:
根据所述预置模型对象的对象描述信息生成比较脚本;
根据所述比较脚本查询所述离线配置区中的配置数据集与所述基线配置区中配置数据集之间的差异对象信息;
以流式方式获取所述差异对象信息,根据所述差异对象信息生成配置命令。
作为一种实现方式,所述根据预置模型对象的对象描述信息生成比较脚本具体为:根据预置模型对象中预置的分组信息和对象描述信息,对应每一分组生成一用于比较该分组中对象的比较脚本。
作为一种实现方式,所述以流式方式获取所述差异对象信息,根据所述差异对象信息生成配置命令之前还包括:
对存在差异对象信息的分组进行合法性验证;
判断存在差异对象信息的各分组是否通过合法性验证;
若是,则执行所述以流式方式获取所述差异对象信息,根据所述差异对象信息生成配置命令的步骤;
若否,则输出未通过合法性验证对应的分组的修改操作界面,以供用户修改该分组中的配置数据集,直至该分组合法性验证通过时,执行所述以流式方式获取所述差异对象信息,根据所述差异对象信息生成配置命令的步骤。
一种集中配置装置包括:
配置区创建模块,配置为创建基线配置区和离线配置区;所述基线配置区和离线配置区内设有根据预置配置模型生成的相同配置数据集;
数据传输模块,配置为从离线配置区导出配置数据集;
修改模块,配置为根据用户的操作指令,修改所述配置数据集;
处理模块,配置为根据修改后的配置数据集与所述基线配置区中配置数据集之间的差异按照预设的配置命令规则生成配置命令。
作为一种实现方式,所述处理模块包括:
处理单元,配置为将修改后的配置数据集导入离线配置区,与所述离线配置区中的配置数据集进行冲突检查,当检查不通过自动做冲突解决和差异合并;
命令生成单元,配置为根据所述离线配置区中的配置数据集与所述基线配置区中配置数据集之间的差异按照预设的配置命令规则生成配置命令。
作为一种实现方式,所述命令生成单元包括:
脚本生成子单元,配置为根据所述预置模型对象的对象描述信息生成比较脚本;
查询子单元,配置为根据所述比较脚本查询所述离线配置区中的配置数据集与所述基线配置区中配置数据集之间的差异对象信息;
命令生成子单元,以流式方式获取所述差异对象信息,根据所述差异对象信息生成配置命令。
作为一种实现方式,所述脚本生成子单元还配置为根据预置模型对象中预置的分组信息和对象描述信息,对应每一分组生成一用于比较该分组中对象的比较脚本。
作为一种实现方式,所述命令生成单元还包括:
验证子单元,配置为对存在差异对象信息的分组进行合法性验证;
判断子单元,配置为判断存在差异对象信息的各分组是否通过合法性验证;
所述命令生成子单元还配置为,当存在差异对象信息的各分组通过合法性验证时,以流式方式获取所述差异对象信息,根据所述差异对象信息生成配置命令;当存在差异对象信息的各分组未通过合法性验证时,输出未通过合法性验证对应的分组的修改操作界面,以供用户修改该分组中的配置数据集,直至该分组合法性验证通过时,以流式方式获取所述差异对象信息,根据所述差异对象信息生成配置命令。
一种存储介质,所述存储介质中存储有计算机程序,所述计算机程序配置为执行前述的集中配置方法。
本发明实施例通过创建基线配置区和离线配置区;从离线配置区导出配置数据集;根据用户的操作指令,修改所述配置数据集;根据修改后的配置数据集与所述基线配置区中配置数据集之间的差异按照预设的配置命令规则生成配置命令;然后将配置命令署实施到设备,即可实现设备的配置数据更新。由于本发明在修改配置数据集后,将修改后的配置数据集与初始的配置数据集进行比较生产配置命令;相对与现有技术,本发明实施例降低了配置的难度。
图1为本发明集中配置方法一实施例的流程示意图;
图2为本发明集中配置方法一实施例中生成配置命令的细化流程示意图;
图3为图2中配置命令生成的一实施例细化流程示意图;
图4为图2中配置命令生成的另一实施例细化流程示意图;
图5为本发明集中配置装置一实施例的功能模块示意图;
图6为图5中处理模块的细化功能模块示意图;
图7为图6中命令生成单元一实施例的细化功能模块示意图;
图8为图6中命令生成单元另一实施例的细化功能模块示意图。
应当理解,此处所描述的具体实施例仅仅用以解释本发明,并不用于限定本发明。
本发明提供一种集中配置方法,参照图1,在一实施例中,该集中配置方法包括:
步骤S10,创建基线配置区和离线配置区;所述基线配置区和离线配置区内设有根据预置配置模型生成的相同配置数据集;
本实施例提供的集中配置方法主要应用于对设备数据配置。上述基线配置区和离线配置区内设置的配置数据集可根据实际需要进行设置,例如,需要更新当前设备配置数据时,则可根据设备当前场景配置进行创建,即将设备当前场景配置数据集复制至基线配置区和离线配置区内即可,基线配置区和离线配置区内的配置数据对应的配置模型为设备当前场景配置对应的配置模型。如果需要全新创建一个设备配置,可以直接创建按照配置模型创建一个空配置集。
步骤S20,从离线配置区导出配置数据集;
步骤S30,根据用户的操作指令,修改所述配置数据集;
用户可从离线配置区直接导出配置数据集,然后根据导出的配置数据集对配置数据集进行修改。具体地,该配置数据集为对对象的描述信息,其包括配置的对象、每个对象的配置项、每个配置项对应的配置属性。上述修改包括对上述对象的配置项进行增加、删除或修改;例如可以增加或删除一条配置项,也可以修改一对象中配置项的一个或多个配置属性。例如,从离线配置区导出配置数据集后,可通过一操作界面显示配置数据集,用户可通过脚本语言对配置数据集进行批量修改,也可以在该操作界面上
手动修改配置数据集内配置项。
步骤S40,根据修改后的配置数据集与所述基线配置区中配置数据集之间的差异按照预设的配置命令规则生成配置命令。
本实施例中,比较上述修改后的配置数据集与所述基线配置区中配置数据集之间的差异,得到用户本次修改的配置项。然后,根据用户修改的配置项,生成配置命令,具体地,该配置命令为脚本文件,该脚本文件为将基线配置区的配置数据集修改为用户修改后的配置数据集的修改命令。当生成该配置命令后,将该配置命令下发到需要更新设备的中(即部署实施到设备上),当设备执行该配置命令后,即可实现设备的配置数据进行更新。
本发明实施例通过创建基线配置区和离线配置区;从离线配置区导出配置数据集;根据用户的操作指令,修改所述配置数据集;根据修改后的配置数据集与所述基线配置区中配置数据集之间的差异按照预设的配置命令规则生成配置命令;然后将配置命令署实施到设备,即可实现设备的配置数据更新。由于本发明在修改配置数据集后,将修改后的配置数据集与初始的配置数据集进行比较生产配置命令;相对与现有技术,本发明实施例降低了配置的难度。
进一步地,参照图2,基于上述实施例,本实施例中,上述步骤S40包括:
步骤S41,将修改后的配置数据集导入离线配置区,与所述离线配置区中的配置数据集进行冲突检查,当检查不通过自动做冲突解决和差异合并;
步骤S42,根据所述离线配置区中的配置数据集与所述基线配置区中配置数据集之间的差异按照预设的配置命令规则生成配置命令。
本实施例中,当用户对导出的离线配置区中的配置数据集进行修改后,将修改后的配置数据集重新导入离线配置数据区,然后通过调用Profile比
较模块进行数据冲突检查及冲突解决,当冲突检查通过后调用Profile比较进行动态增量脚本生成,以得到配置命令。本实施例中,由于修改后的配置数据重新导入离线配置区,并与所述离线配置区中的配置数据集进行冲突检查,从而可以实现多人同时进行配置。例如,根据设备当前场景配置进行创建的上述离线配置区和基线配置区,当用户导出上述离线配置区内的配置数据集后,设备需要根据不同场景在线自动更新自身配置,从而使得离线配置区内的配置数据集被修改;或者多个用户对同一配置项的同一记录做了修改,修改的可能是不同属性,也可能是相同属性;或者对同一条记录做了不同操作,那可能存在差异或者冲突,这个时候利用冲突检查或者差异合并,就可以解决这种问题,从而支持多用户并发操作。
进一步地,参照图3,基于上述实施例,本实施例中,上述步骤S42包括:
步骤S421,根据所述预置模型对象的对象描述信息生成比较脚本;
步骤S422,根据所述比较脚本查询所述离线配置区中的配置数据集与所述基线配置区中配置数据集之间的差异对象信息;
步骤S423,以流式方式获取所述差异对象信息,根据所述差异对象信息生成配置命令。
例如,本实施例中,可以采用Profile比较机制,采取解释器模式,根据配置模型的描述信息生成SQL比较脚本,然后执行该SQL比较脚本,得到离线配置区中的配置数据集与所述基线配置区中配置数据集之间的差异对象信息。具体地,本实施例中,上述根据预置模型对象的对象描述信息生成比较脚本优选为:根据预置模型对象中预置的分组信息和对象描述信息,对应每一分组生成一用于比较该分组中对象的比较脚本。例如,可以根据对象描述信息对各对象进行分类,或者对各描述项的类型进行分组。由于采用分组的形式,每一分组对应一比较脚本,多个比较脚本可并发执
行,然后将各比较脚本执行的比较结果(差异对象信息)储存至缓存中。最后通过流式方式从缓存中提取比较结果,根据比较结果生成配置命令对应的脚本文件。由于命令生成采用管道过滤器模式,其占用的内存基本可以忽略。通常来说,管道过滤器模式不适合关联复杂的数据处理,但是本实施例采用MAP-REDUCE模式,可以处理有严格顺序要求的配置命令生成;且内存消耗低,可以采用高并发方式提高效率,同时,其并发参数可以热配,从而伸缩性很好。
进一步地,参照图4,基于上述实施例,本实施例中,上述步骤S423之前还包括:
步骤S424,对存在差异对象信息的分组进行合法性验证;
步骤S425,判断存在差异对象信息的各分组是否通过合法性验证;若是则执行步骤S423;否则执行步骤S426;
步骤S426,输出未通过合法性验证对应的分组的修改操作界面,以供用户修改该分组中的配置数据集,直至该分组合法性验证通过时,转入执行步骤S423。
本实施例中上述合法性验证具体为对差异对象配置项的完整性进行验证,例如某一配置项包括5个配置属性,若,在修改时,仅给出了3个配置属性,则无法通过合法性验证。此时,则输出以操作界面,以供用户进行修改配置属性,在用户修改配置属性后,可重新进行冲突检查或者差异合并,直至合法性验证通过时,以流式方式获取所述差异对象信息,根据所述差异对象信息生成配置命令。本实施例中,通过采用合法性验证,从而保证了数据的合法性,在进行配置更新时,保证了配置的完整性,从而提高了系统运行的稳定性。此外,由于仅对存在差异的分组进行合法性验证,从而提高了数据处理的速度。
本发明还提供一种集中配置装置,参照图5,在一实施例中,本发明提
供的集中配置装置包括:
配置区创建模块10,配置为创建基线配置区和离线配置区;所述基线配置区和离线配置区内设有根据预置配置模型生成的相同配置数据集;
本实施例提供的集中配置装置主要应用于对设备数据配置。上述基线配置区和离线配置区内设置的配置数据集可根据实际需要进行设置,例如,需要更新当前设备配置数据时,则可根据设备当前场景配置进行创建,即将设备当前场景配置数据集复制至基线配置区和离线配置区内即可,基线配置区和离线配置区内的配置数据对应的配置模型为设备当前场景配置对应的配置模型。如果需要全新创建一个设备配置,可以直接创建按照配置模型创建一个空配置集。
数据传输模块20,配置为从离线配置区导出配置数据集;
修改模块30,配置为根据用户的操作指令,修改所述配置数据集;
用户可从离线配置区直接导出配置数据集,然后根据导出的配置数据集对配置数据集进行修改。具体地,该配置数据集为对对象的描述信息,其包括配置的对象、每个对象的配置项、每个配置项对应的配置属性。上述修改包括对上述对象的配置项进行增加、删除或修改;例如可以增加或删除一条配置项,也可以修改一对象中配置项的一个或多个配置属性。例如,从离线配置区导出配置数据集后,可通过一操作界面显示配置数据集,用户可通过脚本语言对配置数据集进行批量修改,也可以在该操作界面上手动修改配置数据集内配置项。
处理模块40,配置为根据修改后的配置数据集与所述基线配置区中配置数据集之间的差异按照预设的配置命令规则生成配置命令。
本实施例中,比较上述修改后的配置数据集与所述基线配置区中配置数据集之间的差异,得到用户本次修改的配置项。然后,根据用户修改的配置项,生成配置命令,具体地,该配置命令为脚本文件,该脚本文件为
将基线配置区的配置数据集修改为用户修改后的配置数据集的修改命令。当生成该配置命令后,将该配置命令下发到需要更新设备的中(即部署实施到设备上),当设备执行该配置命令后,即可实现设备的配置数据进行更新。
本发明实施例通过创建基线配置区和离线配置区;从离线配置区导出配置数据集;根据用户的操作指令,修改所述配置数据集;根据修改后的配置数据集与所述基线配置区中配置数据集之间的差异按照预设的配置命令规则生成配置命令;然后将配置命令署实施到设备,即可实现设备的配置数据更新。由于本发明在修改配置数据集后,将修改后的配置数据集与初始的配置数据集进行比较生产配置命令;相对与现有技术,本发明实施例降低了配置的难度。
进一步地,参照图6,基于上述实施例,本实施例中,上述处理模块40包括:
处理单元41,配置为将修改后的配置数据集导入离线配置区,与所述离线配置区中的配置数据集进行冲突检查,当检查不通过自动做冲突解决和差异合并;
命令生成单元42,配置为根据所述离线配置区中的配置数据集与所述基线配置区中配置数据集之间的差异按照预设的配置命令规则生成配置命令。
本实施例中,当用户对导出的离线配置区中的配置数据集进行修改后,将修改后的配置数据集重新导入离线配置数据区,然后通过调用Profile比较模块进行数据冲突检查及冲突解决,当冲突检查通过后调用Profile比较进行动态增量脚本生成,以得到配置命令。本实施例中,由于修改后的配置数据重新导入离线配置区,并与所述离线配置区中的配置数据集进行冲突检查,从而可以实现多人同时进行配置。例如,根据设备当前场景配置
进行创建的上述离线配置区和基线配置区,当用户导出上述离线配置区内的配置数据集后,设备需要根据不同场景在线自动更新自身配置,从而使得离线配置区内的配置数据集被修改;或者多个用户对同一配置项的同一记录做了修改,修改的可能是不同属性,也可能是相同属性;或者对同一条记录做了不同操作,那可能存在差异或者冲突,这个时候利用冲突检查或者差异合并,就可以解决这种问题,从而支持多用户并发操作。
进一步地,参照图7,基于上述实施例,本实施例中,上述命令生成单元42包括:
脚本生成子单元421,配置为根据所述预置模型对象的对象描述信息生成比较脚本;
查询子单元422,配置为根据所述比较脚本查询所述离线配置区中的配置数据集与所述基线配置区中配置数据集之间的差异对象信息;
命令生成子单元423,以流式方式获取所述差异对象信息,根据所述差异对象信息生成配置命令。
例如,本实施例中,可以采用Profile比较机制,采取解释器模式,根据配置模型的描述信息生成SQL比较脚本,然后执行该SQL比较脚本,得到离线配置区中的配置数据集与所述基线配置区中配置数据集之间的差异对象信息。具体地,本实施例中,上述脚本生成子单元还配置为根据预置模型对象中预置的分组信息和对象描述信息,对应每一分组生成一用于比较该分组中对象的比较脚本。例如,可以根据对象描述信息对各对象进行分类,或者对各描述项的类型进行分组。由于采用分组的形式,每一分组对应一比较脚本,多个比较脚本可并发执行,然后将各比较脚本执行的比较结果(差异对象信息)储存至缓存中。最后通过流式方式从缓存中提取比较结果,根据比较结果生成配置命令对应的脚本文件。由于命令生成采用管道过滤器模式,其占用的内存基本可以忽略。通常来说,管道过滤器
模式不适合关联复杂的数据处理,但是本实施例采用MAP-REDUCE模式,可以处理有严格顺序要求的配置命令生成;且内存消耗低,可以采用高并发方式提高效率,同时,其并发参数可以热配,从而伸缩性很好。
进一步地,参照图8,基于上述实施例,本实施例中,上述命令生成单元42还包括:
验证子单元424,配置为对存在差异对象信息的分组进行合法性验证;
判断子单元425,配置为判断存在差异对象信息的各分组是否通过合法性验证;
所述命令生成子单元423还配置为,当存在差异对象信息的各分组通过合法性验证时,以流式方式获取所述差异对象信息,根据所述差异对象信息生成配置命令;当存在差异对象信息的各分组未通过合法性验证时,输出未通过合法性验证对应的分组的修改操作界面,以供用户修改该分组中的配置数据集,直至该分组合法性验证通过时,以流式方式获取所述差异对象信息,根据所述差异对象信息生成配置命令。
本实施例中上述合法性验证具体为对差异对象配置项的完整性进行验证,例如某一配置项包括5个配置属性,若,在修改时,仅给出了3个配置属性,则无法通过合法性验证。此时,则输出以操作界面,以供用户进行修改配置属性,在用户修改配置属性后,可重新进行冲突检查或者差异合并,直至合法性验证通过时,以流式方式获取所述差异对象信息,根据所述差异对象信息生成配置命令。本实施例中,通过采用合法性验证,从而保证了数据的合法性,在进行配置更新时,保证了配置的完整性,从而提高了系统运行的稳定性。此外,由于仅对存在差异的分组进行合法性验证,从而提高了数据处理的速度。
本发明实施例还记载了一种存储介质,所述存储介质中存储有计算机程序,所述计算机程序配置为执行前述各实施例的集中配置方法。
以上仅为本发明的优选实施例,并非因此限制本发明的专利范围,凡是利用本发明说明书及附图内容所作的等效结构或等效流程变换,或直接或间接运用在其他相关的技术领域,均同理包括在本发明的专利保护范围内。
本发明通过创建基线配置区和离线配置区;从离线配置区导出配置数据集;根据用户的操作指令,修改所述配置数据集;根据修改后的配置数据集与所述基线配置区中配置数据集之间的差异按照预设的配置命令规则生成配置命令;然后将配置命令署实施到设备,即可实现设备的配置数据更新。
Claims (11)
- 一种集中配置方法,所述集中配置方法包括以下步骤:创建基线配置区和离线配置区;所述基线配置区和离线配置区内设有根据预置配置模型生成的相同配置数据集;从离线配置区导出配置数据集;根据用户的操作指令,修改所述配置数据集;根据修改后的配置数据集与所述基线配置区中配置数据集之间的差异按照预设的配置命令规则生成配置命令。
- 如权利要求1所述的集中配置方法,其中,根据修改后的配置数据集与基线配置区中配置数据集之间的差异按照预设的配置命令规则生成配置命令包括:将修改后的配置数据集导入离线配置区,与所述离线配置区中的配置数据集进行冲突检查,当检查不通过自动做冲突解决和差异合并;根据所述离线配置区中的配置数据集与所述基线配置区中配置数据集之间的差异按照预设的配置命令规则生成配置命令。
- 如权利要求2所述的集中配置方法,其中,所述根据离线配置区中的配置数据集与所述基线配置区中配置数据集之间的差异按照预设的配置命令规则生成配置命令包括:根据所述预置模型对象的对象描述信息生成比较脚本;根据所述比较脚本查询所述离线配置区中的配置数据集与所述基线配置区中配置数据集之间的差异对象信息;以流式方式获取所述差异对象信息,根据所述差异对象信息生成配置命令。
- 如权利要求3所述的集中配置方法,其中,所述根据预置模型对象的对象描述信息生成比较脚本具体为:根据预置模型对象中预置的分组信 息和对象描述信息,对应每一分组生成一用于比较该分组中对象的比较脚本。
- 如权利要求4所述的集中配置方法,其中,所述以流式方式获取所述差异对象信息,根据所述差异对象信息生成配置命令之前还包括:对存在差异对象信息的分组进行合法性验证;判断存在差异对象信息的各分组是否通过合法性验证;若是,则执行所述以流式方式获取所述差异对象信息,根据所述差异对象信息生成配置命令的步骤;若否,则输出未通过合法性验证对应的分组的修改操作界面,以供用户修改该分组中的配置数据集,直至该分组合法性验证通过时,执行所述以流式方式获取所述差异对象信息,根据所述差异对象信息生成配置命令的步骤。
- 一种集中配置装置,所述集中配置装置包括:配置区创建模块,配置为创建基线配置区和离线配置区;所述基线配置区和离线配置区内设有根据预置配置模型生成的相同配置数据集;数据传输模块,配置为从离线配置区导出配置数据集;修改模块,配置为根据用户的操作指令,修改所述配置数据集;处理模块,配置为根据修改后的配置数据集与所述基线配置区中配置数据集之间的差异按照预设的配置命令规则生成配置命令。
- 如权利要求6所述的集中配置装置,其中,所述处理模块包括:处理单元,配置为将修改后的配置数据集导入离线配置区,与所述离线配置区中的配置数据集进行冲突检查,当检查不通过自动做冲突解决和差异合并;命令生成单元,配置为根据所述离线配置区中的配置数据集与所述基线配置区中配置数据集之间的差异按照预设的配置命令规则生成配置命 令。
- 如权利要求7所述的集中配置模块,其中,所述命令生成单元包括:脚本生成子单元,配置为根据所述预置模型对象的对象描述信息生成比较脚本;查询子单元,配置为根据所述比较脚本查询所述离线配置区中的配置数据集与所述基线配置区中配置数据集之间的差异对象信息;命令生成子单元,以流式方式获取所述差异对象信息,根据所述差异对象信息生成配置命令。
- 如权利要求8所述的集中配置装置,其中,所述脚本生成子单元还配置为根据预置模型对象中预置的分组信息和对象描述信息,对应每一分组生成一用于比较该分组中对象的比较脚本。
- 如权利要求9所述的集中配置装置,其中,所述命令生成单元还包括:验证子单元,配置为对存在差异对象信息的分组进行合法性验证;判断子单元,配置为判断存在差异对象信息的各分组是否通过合法性验证;所述命令生成子单元还配置为,当存在差异对象信息的各分组通过合法性验证时,以流式方式获取所述差异对象信息,根据所述差异对象信息生成配置命令;当存在差异对象信息的各分组未通过合法性验证时,输出未通过合法性验证对应的分组的修改操作界面,以供用户修改该分组中的配置数据集,直至该分组合法性验证通过时,以流式方式获取所述差异对象信息,根据所述差异对象信息生成配置命令。
- 一种存储介质,所述存储介质中存储有计算机程序,所述计算机程序配置为执行权利要求1至5任一项所述的集中配置方法。
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