WO2018006599A1 - 无线网关设备及其实现方法 - Google Patents

无线网关设备及其实现方法 Download PDF

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WO2018006599A1
WO2018006599A1 PCT/CN2017/073412 CN2017073412W WO2018006599A1 WO 2018006599 A1 WO2018006599 A1 WO 2018006599A1 CN 2017073412 W CN2017073412 W CN 2017073412W WO 2018006599 A1 WO2018006599 A1 WO 2018006599A1
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management
module
execution
result
command
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PCT/CN2017/073412
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English (en)
French (fr)
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白洁
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中兴通讯股份有限公司
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  • the present invention relates to the field of wireless communications, and in particular, to a wireless gateway device and a method for implementing the same.
  • CPE Customer Premise Equipment
  • LTE Long Term Evolution
  • the CPE device can implement the network connection management function and other functions such as SMS.
  • To implement the network connection management function you need to use the Jungo architecture system through the virtual network port of the CPE module.
  • SMS and other functions the CPE module needs to add a virtual serial port.
  • the embodiment of the present invention is to provide a wireless gateway device and a method for implementing the same, so that the CPE device does not need to add a virtual serial port when implementing functions such as short messages.
  • a wireless gateway device of the embodiment of the invention includes: a management module and a virtual network port driver a module and a management execution module, wherein the management execution module includes a sub-function execution module that executes different commands,
  • the management module is configured to generate a first management command according to the user requirement information, according to the preset data format, and send the first management command to the management execution module through the virtual network port driving module;
  • the management execution module is configured to receive the first management command sent by the management module by using the virtual network port drive module, parse the first management command, and determine to perform the first management according to the analysis result.
  • the sub-function execution module of the command sends the first management command to the sub-function execution module for execution.
  • the management execution module is further configured to generate an execution result according to the preset data format according to the execution status of the sub-function execution module, and drive the execution result through the virtual network port. Sending the module to the management module;
  • the management module is further configured to receive, by the virtual network port driving module, the execution result sent by the management execution module, where the execution result is generated according to the preset data format; and the execution result is performed Parsing, determining whether the execution result is a final result, and when determining that the execution result is a final result, the execution result is fed back to the user.
  • the management module is further configured to notify the management module to generate a second management command according to the preset data format according to the information in the execution result when determining that the execution result is not a final result. .
  • the preset data format includes a last command ILC identifier
  • the management module is further configured to determine, according to the ILC identifier, whether the execution result is a final result.
  • the preset data format includes an auxiliary function AF identifier
  • the management execution module is further configured to determine a sub-function execution module that executes the first management command according to the AF identifier.
  • the management module and the management execution module may use a central processing unit (CPU), a digital signal processor (DSP, Digital Singnal Processor), or a programmable logic array (FPGA, Field-Programmable) when performing processing. Gate Array) implementation.
  • CPU central processing unit
  • DSP digital signal processor
  • FPGA programmable logic array
  • a method for implementing a wireless gateway device includes: receiving a first management command, where the first management command is generated according to a preset data format;
  • the method further includes: generating an execution result according to the preset data format according to the execution situation.
  • a method for implementing a wireless gateway device includes: generating a first management command according to a user requirement information according to a preset data format; and transmitting the first management command.
  • the method as described above further includes:
  • the execution result is parsed to determine whether the execution result is a final result, and when it is determined that the execution result is a final result, the execution result is fed back to the user.
  • the preset data format includes a last command ILC identifier
  • determining whether the execution result is a final result comprises: determining, according to the ILC identifier, whether the execution result is a final result.
  • the method as described above further comprising: when determining that the execution result is not the final result, generating a second management command according to the preset data format according to the information in the execution result.
  • the wireless gateway device and the implementation method thereof are provided by the embodiment of the present invention, and the device includes a management module, a virtual network port driving module, and a management execution module, and the management module generates a first management command according to the user requirement information according to the preset data format, and The first management command is sent to the management execution module through the virtual network port driver module; the management execution module receives the management through the virtual network port driver module.
  • the first management command sent by the module parses the first management command, determines a sub-function execution module that executes the first management command according to the parsing result, and sends the first management command to the sub-function execution module for execution; thus, the CPE device is When implementing SMS and other functions, there is no need to add another virtual serial port, which saves equipment resources, greatly reduces development and maintenance costs, and avoids reliance on the Jungo architecture.
  • FIG. 1 is a schematic structural diagram of an implementation system of a multifunctional wireless gateway device according to an embodiment of the present invention
  • FIG. 2 is another schematic structural diagram of an implementation system of a multifunctional wireless gateway device according to an embodiment of the present invention
  • FIG. 3 is a schematic structural diagram of a data format according to an embodiment of the present invention.
  • FIG. 1 is a schematic structural diagram of an implementation system of a multi-function wireless gateway device according to an embodiment of the present invention.
  • the system provided in this embodiment includes: a management module, a virtual network port drive module, and a management execution module, wherein the management execution module includes a sub-function execution module 1 , a sub-function execution module 2 , . Execute module N.
  • the management module is configured to generate a first management command according to the user requirement information, according to the preset data format, and send the first management command to the management execution module through the virtual network port driver module;
  • the management execution module is configured to receive the first management command sent by the management module by using the virtual network port driver module, parse the first management command, determine a sub-function execution module that executes the first management command according to the parsing result, and send the first management command Execute the subfunction execution module.
  • the management execution module is further configured to generate an execution result according to a preset data format according to the execution status of the sub-function execution module, and send the execution result to the management module through the virtual network port driver module;
  • the management module is further configured to receive, by using the virtual network port driver module, an execution result sent by the management execution module, where the execution result is generated according to a preset data format; parsing the execution result, determining whether the execution result is a final result, and determining the execution result When the final result is obtained, the execution result is fed back to the user.
  • the management module when it is determined that the execution result is not the final result, the management module generates the second management command according to the information in the execution result according to the preset data format.
  • the preset data format includes an last command (Is Last Command, ILC for short) identifier, and the management module is specifically configured to determine whether the execution result is a final result according to the ILC identifier; the preset data format further includes an auxiliary function ( The primary function (abbreviated as AF) identifier, the management execution module is specifically configured to determine a sub-function execution module that executes the first management command according to the AF identifier.
  • AF The primary function
  • FIG. 2 is another schematic structural diagram of an implementation system of a multifunctional wireless gateway device according to an embodiment of the present invention.
  • the management module includes a management command generation module, a management result analysis module, and a management result feedback module.
  • the management execution module includes a management command analysis module, a management command execution module, and a management result generation module.
  • the management command execution module includes a sub-function execution module that executes different commands.
  • the management command generating module generates a first management command, and sends the first management command to the virtual network port driver module; the virtual network port driver module receives the first management command and sends the command to the management command parsing module; the management command parsing module receives The first management command parses the first management command, determines a sub-function execution module that executes the first management command according to the parsing result, and sends the first management command to the sub-function execution module for execution; the management result generating module is configured according to the sub-function Execution module execution execution result is generated, and the generated execution result is sent to the virtual network port driver module; the virtual network port driver module receives the execution result and sends the execution result to the management result parsing module; the management result parsing module receives the execution result, and the execution result Analyze to determine whether the execution result is the final result required.
  • the execution result is passed through the management node. If the feedback module is fed back to the user, if not the final result, the notification management module continues to execute all the above processes according to the information in the execution result and the second management command according to the preset data format.
  • the sub-function execution module includes a short message sub-function execution module, a personal identification number (PIN) sub-function execution module, and the like.
  • the management command parsing module parses the first management command, the first step is determined according to the parsing result. What function is required for a management command, for example, to complete the short message sending function, it is determined that the sub-function execution module is a short message sub-function execution module, and the first management command is sent to the short-message function execution module for execution.
  • the wireless gateway device determines the sub-function execution module that executes the management command by parsing the management command, and sends the management command to the determined sub-function execution module for execution, thereby completing the virtual serial port that needs to be completed.
  • FIG. 3 is a schematic structural diagram of a preset data format according to an embodiment of the present invention.
  • the identifier in the middle includes the DF identifier, the ILC identifier, the Len identifier, the MF identifier, the AF identifier, the MT identifier, the TID identifier, the OM identifier, the Len1 identifier, the Result identifier, the Len2 identifier, the RV identifier, the C/R identifier, the Len3 identifier, and the Value identifier. ,among them,
  • DF ID It is called a Data Flag, which is 4 bytes, indicating that the following data is a management command or an execution result.
  • ILC ID 1 byte, indicating whether this command is the last command required to implement this function.
  • Len identifier short for Length, which is 2 bytes, indicating the length of the entire management command or execution result, but does not include DF and ILC.
  • MF full name is the main function (Major Function), each occupying 1 Bytes. Since the system implements multiple functions, it is necessary to record which main function is served by the management command and what auxiliary functions are currently being performed, so that the management execution module determines which sub-function execution module is currently required to execute the command. Specifically, since we don't know the status of the SIM card beforehand, we need to check the status of the SIM card before sending text messages or before networking. Then the SIM card operation in the data packet is AF, and the networking and SMS are two MF. After the management command parsing module receives the command, it determines the AF, and according to the sub-function specified in the AF, sends the command to the sub-function module to execute the command. If a management command does not have the AF, the AF of the management command is filled in with the same content as the MF. .
  • MT identifier The full name information type (Message Type), which is 1 byte, indicates the type of result returned by the management execution module.
  • TID ID Transaction Identification, which is 1 byte, indicates the first interactive round of MF. However, the starting TID of different AFs is 1.
  • OM ID The full operation mode (Operation Mode), which occupies 1 byte, indicates whether the AF operation mode is query or setup.
  • Len1 identifier short for Length1, which is 2 bytes, indicating the length of subsequent data.
  • Result identifier 1 byte, indicating whether the execution result is successful. If it is a management command, this byte also needs to be filled out.
  • Len2 identifier short for Length2, which is 2 bytes, indicating the length of the result value
  • RV identifier The full result value (Result Value), which is 2 bytes of Len, indicates whether the execution result succeeds or fails. If the result is a failure, the RV also contains the reason for the failure, that is, the error code returned. If it is a management command, this byte also needs to be filled out.
  • Result Value The full result value (Result Value), which is 2 bytes of Len, indicates whether the execution result succeeds or fails. If the result is a failure, the RV also contains the reason for the failure, that is, the error code returned. If it is a management command, this byte also needs to be filled out.
  • C/R identifier The full name command or the result (Command/Result), which occupies 1 byte. If the management command or the execution result has specific content, it indicates the specific content.
  • Len3 identifier short for Length3, which is 2 bytes, indicating the content of the management command or The length of the result content of the execution.
  • Value identifier 3 bytes in Len, indicating the content of the management command or execution result.
  • Len identifier the Len1 identifier, the Len2 identifier, and the Len3 identifier are both 2 bytes, a high byte and a low byte. When their length is a single digit, for example, 6, it indicates When it is 0, when their length is two digits, for example, 18, it is represented as 18.
  • the system of the present invention provides an embodiment of a short message sending function in a SIM card PIN open state and an embodiment of a short message sending in a SIM card PIN locked state. It is assumed that the identifiers of the data formats in the embodiment are defined as follows:
  • ILC ID A value of 1 indicates that this command is the last command implemented by the function. A value of 0 indicates that other commands are required to implement the function.
  • the value of the MT identifier is defined in Table 2 below:
  • the value of the Result ID is defined as 1, the execution result is successful, and the value of the Result ID is also defined as 1.
  • RV identifier The values of the RV identifier are defined in Table 5 below:
  • the value of the C/R identifier, the value of the Len3 identifier, and the value of the Value identifier under the PIN query operation are defined as follows:
  • the value of the C/R identifier, the value of the Len3 identifier, and the value of the Value identifier under the PIN setting operation are defined as follows:
  • the management module generates a first management command according to the preset data format, and sends the first management command to the management execution module through the virtual network port driver module. Assume that the command is F L A G 1 1 Len3+7 2 2 0 1 2 0 len3+8 1 0 2 0 0 1 0 len3;
  • the management execution module receives the command and parses the command. According to the value of the AF identifier of 2, it is determined that the command is to send a short message according to Table 1. Therefore, it is determined that the execution of the command is a short message sub-function execution module, and the command is sent to the short message.
  • the sub-function execution module performs execution;
  • the management execution module After the short message sub-function execution module successfully sends the short message, the management execution module generates the execution result according to the preset data format according to the execution condition of the short message sub-function execution module, and sends the execution result to the management module through the virtual network port drive module, and the execution result is F L A G 1 1 4 2 2 1 1 2 0 5 1 0 2 0 0;
  • the management module receives the execution result and parses the execution result, and determines that the command is the last command according to the value of the ILC identifier, and returns the execution result to the user.
  • the management module enters the first management command according to the preset data format, and sends it to the management execution module through the virtual network port driver module.
  • the command is a query command for the PIN code status, which is F L A G 1 4 2 1 0 1 1 0 5 1 0 2 0 0;
  • the first 4 bytes of the command are DF identifiers, which are filled with FLAG; the 5th byte is the ILC identifier, because the final function is SMS, this is the PIN query, not the final command, so the value is 0; 7 bytes is the Len flag, indicating that the length of the command is 14 (excluding the DF flag and ILC identification part); the 8th byte is the MF flag, because MF is SMS, so the value is 2 (refer to Table 1); The byte is the AF flag, because AF is PIN, so the value is 1 (refer to Table 1); the 10th byte is the MT identifier, because it is a management command, so the value is 0 (refer to Table 2); The byte is the TID identifier, the value 1 indicates that the main function is the first command of the short message function; the 12th byte is the OM identifier, because it is the PIN query command, so the value is 1 (refer to Table 3); And 14 bytes is the Le
  • the length occupied is 2; the 18th and 19th bytes are the RV identifier. Because it is a management command, it is padded to 0 0 (refer to Table 5); the PIN query has no specific command content, so the command is cut off at this time.
  • the management execution module receives the command and parses the command, and confirms that the command is used for the PIN operation in the short message function according to the value of the MF identifier and the AF identifier, and then confirms that the command is a PIN query according to the value of the OM identifier, so it is determined to execute the command.
  • the command is a PIN sub-function execution module, and the management command is sent to the PIN sub-function execution module for execution.
  • the management execution module After the PIN sub-function execution module performs the PIN status query, the management execution module generates an execution result according to the preset data format according to the execution status of the PIN sub-function execution module, and sends the execution result to the management module through the virtual network port drive module, and the execution result is F.
  • L A G 0 1 8 2 1 1 1 1 0 9 1 0 2 0 0 1 0 1 1.
  • the management module receives the execution result and parses the execution result, and confirms that the message reply is not the last management command of the function implementation according to the fifth byte, that is, the value of the ILC identifier; according to the eighth and ninth bytes, that is, MF
  • the value of the identifier and the AF identifier confirms that the message is a PIN operation in the short message function; according to the 10th byte, that is, the value of the MT identifier, it is confirmed that the message is a reply of the management execution module; according to the 11th byte, that is, the TID identifier
  • the value confirms that the command is the first command for the PIN query by the main function; according to the 12th byte, that is, the value of the OM identifier, the message is determined to be replied to the PIN query; according to the 20th byte, ie C/R
  • the value of the identifier determines the specific content of the execution result as a query; the length of the execution result content
  • the management module generates a PIN input command and sends it to the management execution module through the virtual network port driver module.
  • the content of the PIN command that needs to be entered is 1 2 3 4, so the command is F L A G 0 2 1 2 1 0 2 2 1 2 1 0 2 0 0 1 0 4 1 2 3 4.
  • the management execution module receives the command and parses the command, confirms that the command is a PIN setting command of inputting 1 2 3 4, and sends the command to the PIN sub-function execution module for execution.
  • the management execution module After the PIN sub-function execution module performs the PIN command input, the management execution module generates an execution result according to the preset data format according to the execution status of the PIN sub-function execution module, and sends the execution result to the management module through the virtual network port drive module, and the execution result is F.
  • L A G 0 1 4 2 1 1 2 2 0 5 1 0 2 0 0.
  • the management module receives the execution result and parses the execution result, and confirms that the PIN has been successfully input. However, according to the value of the ILC identifier, the command is not the last management command for implementing the short message sending function, and the management module is notified to continue to generate the next command.
  • the management module generates a short message sending command, and sends it to the management execution module through the virtual network port driving module.
  • the command is F L A G 1 1 Len3+7 2 2 0 1 2 0 len3+8 1 0 2 0 0 1 0 len3 (behind is Len 3 bytes of short message content).
  • the management execution module receives the command and parses the command, and confirms that the command is a short message command according to the value of the MF identifier. Therefore, it is determined that the command is executed by the short message sub-function execution module, and the command is sent to the short message sub-function execution module for execution.
  • the management execution module After the short message sub-function execution module successfully sends the short message, the management execution module generates an execution result according to the execution condition of the short message sub-function execution module, and sends the execution result to the management module through the virtual network port drive module, and the execution result is F L A G 1 1 4 2 2 1 1 2 0 5 1 0 2 0 0,;
  • the management module receives the execution result and parses the execution result, determines that the command is the last command according to the value of the ILC identifier, and feeds back the execution result to the user.
  • the technical solution provided by this embodiment can not only save equipment resources, but also greatly reduce development and Maintain costs while avoiding reliance on the Jungo architecture.
  • the management module, the virtual network port driver module, and the management execution module may be configured by a central processing unit (CPU), a microprocessor (MPU), and a digital signal processor located in the wireless gateway device. (Digital Signal Processor, DSP) or Field Programmable Gate Array (FPGA) implementation.
  • CPU central processing unit
  • MPU microprocessor
  • DSP Digital Signal Processor
  • FPGA Field Programmable Gate Array
  • Receiving a first management command, and the first management command is generated according to a preset data format
  • the first management command is parsed, and the first management command is executed according to the parsing result.
  • the sub-function execution module executes the first management command, and further includes: generating an execution result according to the preset data format according to the execution situation.
  • the method for implementing the wireless gateway device provided by the embodiment includes: generating a first management command according to the user requirement information according to the preset data format;
  • the method further includes: receiving an execution result, and executing the result according to a preset data format; parsing the execution result, determining whether the execution result is a final result, and executing when the execution result is a final result, performing The results are fed back to the user.
  • the preset data format includes an ILC identifier
  • determining whether the execution result is a final result includes: determining, according to the ILC identifier, whether the execution result is a final result.
  • the method further includes: when determining that the execution result is not the final result, generating the second management command according to the preset data format according to the information in the execution result.
  • the implementation method of the wireless gateway device provided in this embodiment is implemented based on the wireless gateway device provided in the foregoing embodiment, and the implementation principle and technical effects are similar, and details are not described herein again.
  • embodiments of the present invention can be provided as a method, system, or computer program product. Accordingly, the present invention may employ hardware embodiments, software embodiments, or junctions. In the form of an embodiment of the software and hardware aspects. Moreover, the invention can take the form of a computer program product embodied on one or more computer-usable storage media (including but not limited to disk storage and optical storage, etc.) including computer usable program code.
  • the computer program instructions can also be stored in a computer readable memory that can direct a computer or other programmable data processing device to operate in a particular manner, such that the instructions stored in the computer readable memory produce an article of manufacture comprising the instruction device.
  • the apparatus implements the functions specified in one or more blocks of a flow or a flow and/or block diagram of the flowchart.
  • These computer program instructions can also be loaded onto a computer or other programmable data processing device such that a series of operational steps are performed on a computer or other programmable device to produce computer-implemented processing for execution on a computer or other programmable device.
  • the instructions provide steps for implementing the functions specified in one or more of the flow or in a block or blocks of a flow diagram.
  • the management module generates a first management command according to the user requirement information according to the preset data format, and sends the first management command to the management through the virtual network port driver module.
  • the execution module sends the first management command sent by the management module through the virtual network port driver module, parses the first management command, and determines a sub-function execution module that executes the first management command according to the analysis result, and the first management command is executed. It is sent to the sub-function execution module for execution; thus, the CPE device does not need to add another virtual serial port when implementing functions such as SMS, thereby saving equipment resources, greatly reducing development and maintenance costs, and avoiding dependence on the Jungo architecture. .

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Abstract

本发明实施例提供一种无线网关设备,该设备包括:管理模块、虚拟网口驱动模块和管理执行模块,管理模块根据用户需求信息、按照预设数据格式生成第一管理命令,并将第一管理命令通过虚拟网口驱动模块发送给管理执行模块;管理执行模块通过虚拟网口驱动模块接收管理模块发送的第一管理命令,对第一管理命令进行解析,根据解析结果确定执行第一管理命令的子功能执行模块,将第一管理命令发送给子功能执行模块进行执行。本发明实施例同时还提供一种无线网关设备的实现方法。

Description

无线网关设备及其实现方法 技术领域
本发明涉及无线通讯领域,尤其涉及一种无线网关设备及其实现方法。
背景技术
智能手机、平板电脑、笔记本等移动终端与无线网关设备建立连接后就可以访问互联网。传统的无线网关设备是通过有线宽带来访问互联网的,客户终端设备(Customer Premise Equipment,简称CPE)是一种可以通过无线信号访问互联网的网关设备,在有3G/4G信号覆盖的地方,无需连接网线,只需连接电源,就可以访问互联网,使用和携带都很方便。在美国、日本等国家,CPE已经成为4G商用的主要设备,随着长期演进技术(Long Term Evolution,简称LTE)业务在国内的开展,未来几年基于CPE的无线网络业务由于具备速度快、安装简易等优势,必将取代目前的宽带业务。
CPE设备可以实现网络连接管理功能和短信等其他功能,实现网络连接管理功能时需要通过CPE模块的虚拟网口使用Jungo架构系统,而在实现短信等功能时则需要CPE模块添加虚拟串口。
这样就需要完成虚拟串口的相关工作,不但耗费设备资源,而且需要投入很多的人力进行开发和维护,降低了设备的可靠性。
发明内容
有鉴于此,本发明实施例期望提供一种无线网关设备及其实现方法,以使CPE设备在实现短信等功能时不再需要添加虚拟串口。
本发明实施例的技术方案是这样实现的:
本发明实施例的一种无线网关设备,包括:管理模块、虚拟网口驱动 模块和管理执行模块,其中,所述管理执行模块包括执行不同命令的子功能执行模块,
所述管理模块,配置为根据用户需求信息、按照预设数据格式生成第一管理命令,并将所述第一管理命令通过虚拟网口驱动模块发送给所述管理执行模块;
所述管理执行模块,配置为通过所述虚拟网口驱动模块接收所述管理模块发送的所述第一管理命令;对所述第一管理命令进行解析,根据解析结果确定执行所述第一管理命令的子功能执行模块,将所述第一管理命令发送给所述子功能执行模块进行执行。
如上所述的设备,所述管理执行模块,还配置为根据所述子功能执行模块的执行情况,按照所述预设数据格式生成执行结果,并将所述执行结果通过所述虚拟网口驱动模块发送给所述管理模块;
所述管理模块,还配置为通过所述虚拟网口驱动模块接收所述管理执行模块发送的所述执行结果,其中,所述执行结果按照所述预设数据格式生成;对所述执行结果进行解析,判断所述执行结果是否为最终结果,在判断所述执行结果是最终结果时,将所述执行结果反馈给用户。
如上所述的设备,所述管理模块还配置为在判断所述执行结果不是最终结果时,通知所述管理模块根据所述执行结果中的信息、按照所述预设数据格式生成第二管理命令。
如上所述的设备,所述预设数据格式包含是最后一条命令ILC标识,所述管理模块还配置为根据所述ILC标识判断所述执行结果是否为最终结果。
如上所述的设备,所述预设数据格式包含辅助功能AF标识,所述管理执行模块还配置为根据所述AF标识确定执行所述第一管理命令的子功能执行模块。
所述管理模块、所述管理执行模块在执行处理时,可以采用中央处理器(CPU,Central Processing Unit)、数字信号处理器(DSP,Digital Singnal Processor)或可编程逻辑阵列(FPGA,Field-Programmable Gate Array)实现。
本发明实施例的一种无线网关设备的实现方法,包括:接收第一管理命令,所述第一管理命令按照预设数据格式生成;
对所述第一管理命令进行解析,根据解析结果执行所述第一管理命令。
如上所述的方法,在根据解析结果执行所述第一管理命令后,还包括:根据执行情况,按照所述预设数据格式生成执行结果。
本发明实施例的一种无线网关设备的实现方法,包括:根据用户需求信息、按照预设数据格式生成第一管理命令;发送所述第一管理命令。
如上所述的方法,还包括:
接收执行结果,所述执行结果按照所述预设数据格式生成;
对所述执行结果进行解析,判断所述执行结果是否为最终结果,在判断所述执行结果是最终结果时,将所述执行结果反馈给用户。
如上所述的方法,所述预设数据格式包含是最后一条命令ILC标识,判断所述执行结果是否为最终结果包括:根据所述ILC标识判断所述执行结果是否为最终结果。
如上所述的方法,还包括:在判断所述执行结果不是最终结果时,根据所述执行结果中的信息、按照所述预设数据格式生成第二管理命令。
本发明实施例提供的无线网关设备及其实现方法,该设备包括管理模块、虚拟网口驱动模块和管理执行模块,管理模块根据用户需求信息、按照预设数据格式生成第一管理命令,并将第一管理命令通过虚拟网口驱动模块发送给管理执行模块;管理执行模块通过虚拟网口驱动模块接收管理 模块发送的第一管理命令,对第一管理命令进行解析,根据解析结果确定执行第一管理命令的子功能执行模块,将第一管理命令发送给子功能执行模块进行执行;如此,CPE设备在实现短信等功能时不需要再另外添加虚拟串口,从而节省了设备资源,大大降低了开发和维护成本,同时也避免了对Jungo架构的依赖。
附图说明
图1为本发明实施例提供的多功能无线网关设备的实现系统的结构示意图;
图2为本发明实施例提供的多功能无线网关设备的实现系统的另一结构示意图;
图3为本发明实施例提供的数据格式结构示意图。
具体实施方式
图1为本发明实施例提供的多功能无线网关设备的实现系统的结构示意图。如图1所示,本实施例提供的系统包括:管理模块、虚拟网口驱动模块和管理执行模块,其中,管理执行模块包括子功能执行模块1,子功能执行模块2,……,子功能执行模块N。
管理模块配置为根据用户需求信息、按照预设数据格式生成第一管理命令,并将第一管理命令通过虚拟网口驱动模块发送给管理执行模块;
管理执行模块配置为通过虚拟网口驱动模块接收管理模块发送的第一管理命令;对第一管理命令进行解析,根据解析结果确定执行第一管理命令的子功能执行模块,将第一管理命令发送给子功能执行模块进行执行。
本发明实施例一实施方式中,管理执行模块还配置为根据子功能执行模块的执行情况,按照预设数据格式生成执行结果,并将执行结果通过虚拟网口驱动模块发送给管理模块;
管理模块,还配置为通过虚拟网口驱动模块接收管理执行模块发送的执行结果,其中,执行结果按照预设数据格式生成;对执行结果进行解析,判断执行结果是否为最终结果,在判断执行结果是最终结果时,将执行结果反馈给用户。
需要说明的是,在判断执行结果不是最终结果时,管理模块根据执行结果中的信息、按照预设数据格式生成第二管理命令。
还需要说明的是,预设数据格式包含是最后一条命令(Is Last Command,简称ILC)标识,管理模块具体配置为根据ILC标识判断执行结果是否为最终结果;预设数据格式还包含辅助功能(Major Function,简称AF)标识,管理执行模块具体配置为根据AF标识确定执行第一管理命令的子功能执行模块。
图2为本发明实施例提供的多功能无线网关设备的实现系统的另一结构示意图。如图2所示,在另一种实现方式中,管理模块包括管理命令生成模块、管理结果解析模块和管理结果反馈模块;管理执行模块包括管理命令解析模块、管理命令执行模块和管理结果生成模块,其中管理命令执行模块包括执行不同命令的子功能执行模块。
具体的,管理命令生成模块生成第一管理命令,并将第一管理命令发送给虚拟网口驱动模块;虚拟网口驱动模块接收第一管理命令并发送给管理命令解析模块;管理命令解析模块接收第一管理命令,对第一管理命令进行解析,根据解析结果确定执行第一管理命令的子功能执行模块,将第一管理命令发送给该子功能执行模块进行执行;管理结果生成模块根据子功能执行模块的执行情况生成执行结果,再将生成的执行结果发送给虚拟网口驱动模块;虚拟网口驱动模块接收执行结果并发送给管理结果解析模块;管理结果解析模块接收执行结果,对执行结果进行解析,判断该执行结果是不是需要的最终结果,如果是最终结果,则将执行结果通过管理结 果反馈模块反馈给用户,如果不是最终结果,则通知管理模块根据执行结果中的信息、按照预设数据格式生成第二管理命令,继续执行上述所有流程。
需要说明的是,子功能执行模块包括短信子功能执行模块、个人标识号(Personal Identification Number,简称PIN)子功能执行模块等,管理命令解析模块对第一管理命令解析后,根据解析结果确定第一管理命令需要完成的是什么功能,比如要完成的是短信发送功能,就确定子功能执行模块是短信子功能执行模块,将第一管理命令发送给短信子功能执行模块进行执行。
本实施例提供的无线网关设备通过对管理命令解析,确定执行管理命令的子功能执行模块,并将管理命令发送给确定的子功能执行模块进行执行,从而完成了原本需要添加虚拟串口才能完成的功能,节省了设备资源,大大降低了开发和维护成本,同时也避免了对Jungo架构的依赖。
需要说明的是,本实施例中管理命令和执行结果采用相同的预设数据格式生成,图3为本发明实施例提供的预设数据格式的结构示意图,如图3所示,预设数据格式中的标识包含DF标识、ILC标识、Len标识、MF标识、AF标识、MT标识、TID标识、OM标识、Len1标识、Result标识、Len2标识、RV标识、C/R标识、Len3标识以及Value标识,其中,
DF标识:全称为数据标记(Data Flag),占4个字节,表示后面的数据是管理命令或执行结果。
ILC标识:占1个字节,表示本命令是否为实现该功能需要的最后一条命令。
Len标识:长度Length的简写,占2个字节,表示整个管理命令或执行结果的长度,但不包含DF和ILC两部分。
MF标识和AF标识:MF全称分别为主功能(Major Function),各占1 个字节。由于该系统实现的是多个功能,所以需要记录管理命令是服务于哪个主功能以及当前正在进行什么辅助功能,以便管理执行模块确定当前需要哪个子功能执行模块执行命令。具体来说,由于我们事先不知道SIM卡状态,所以无论是发短信前还是联网前,我们都需要去查询一下SIM卡状态,那么数据包中SIM卡操作就是AF,联网和短信就是两个MF,管理命令解析模块接收到命令后判断AF,根据AF中指定的子功能,将命令发给该子功能模块执行命令,如果一个管理命令没有AF,则该管理命令的AF填写和MF相同的内容。
MT标识:全称信息类型(Message Type),占1个字节,表示管理执行模块返回的结果类型。
TID标识:全称业务编号(Transaction Identification),占1个字节,表示MF的第几个交互回合,但是,不同AF的开始TID均为1。
OM标识:全称操作模式(Operation Mode),占1个字节,表示AF的操作方式是查询还是设置等操作。
Len1标识:长度Length1的简写,占2个字节,表示后续数据的长度。
Result标识:占1个字节,表示执行结果是否成功。如果是管理命令,该字节也需要填写。
Len2标识:长度Length2的简写,占2个字节,表示结果值所占的长度;
RV标识:全称结果值(Result Value),占Len2个字节,表示执行结果成功还是失败,如果结果是失败的话,RV中还包含失败的原因,即返回的错误代码。如果是管理命令,该字节也需要填写。
C/R标识:全称命令还是结果(Command/Result),占1个字节,如果管理命令或者执行结果有具体内容,表示具体内容。
Len3标识:长度Length3的简写,占2个字节,表示管理命令内容或 执行结果内容的长度。
Value标识:占Len3个字节,表示管理命令或执行结果的内容。
还需要说明的是,Len标识、Len1标识、Len2标识、Len3标识均是占2个字节,一个高位字节和一个低位字节,当他们的长度为一位数时,例如6,则表示为0 6,当他们的长度为二位数时,例如18,则表示为1 8。
本发明系统提供一个SIM卡PIN开启状态下短信发送功能的实施例和一个SIM卡PIN锁定状态下短信发送的实施例,假设实施例中数据格式的各标识定义如下:
DF标识:四个字节用FLAG来填充;
ILC标识:值为1表示此条命令是该功能实现的最后一条命令,值为0表示还需要其它命令才能实现该功能;
PIN、短信(Short Messaging Service,简称SMS)功能的MF标识和AF标识的值定义如下表1:
表1
  MF标识 AF标识
PIN 1 1
SMS 2 2
MT标识的值定义如下表2:
表2
  MT标识
请求答复 1
主动通知 2
PIN相关操作的OM标识的值定义如下表3:
表3
  OM标识
PIN查询 1
PIN设置 2
SMS相关操作的OM标识的值定义如下表4:
表4
  OM标识
SMS查询 1
SMS设置 2
如果是管理命令,Result标识的值定义为1,执行结果成功,Result标识的值定义也为1。
RV标识的值定义如下表5:
表5
  RV标识 失败原因
管理命令 0 0
执行结果成功 0 0
执行结果失败 1 错误代码
PIN查询操作下的C/R标识的值、Len3标识的值和Value标识的值定义如下表6:
表6
Figure PCTCN2017073412-appb-000001
PIN设置操作下的C/R标识的值、Len3标识的值和Value标识的值定义如下表7:
表7
PIN设置 C/R标识 Len3标识 Value标识
输入PIN 1 PIN的长度 PIN的内容
输入PUK 2 PUK的长度 PUK的内容
SMS设置操作下的C/R标识的值、Len3标识的值和Value标识的值定义如下表8:
表8
SM设置 C/R标识 Len3标识 Value标识
发送 1 SMS的长度 SMS的内容
本发明系统提供的SIM卡PIN开启状态下短信发送的实施例,具体流 程如下:
假设用户需求是发送短信,并假定此时PIN是开启状态,不需要进行PIN状态查询。管理模块按照预设数据格式生成第一管理命令,并通过虚拟网口驱动模块发送给管理执行模块。假定该命令为F L A G 1 1 Len3+7 2 2 0 1 2 0 len3+8 1 0 2 0 0 1 0 len3;
管理执行模块接收命令并对命令进行解析,根据AF标识的值为2,结合表1确定该命令是要进行短信发送,因此确定执行该命令的是短信子功能执行模块,将该命令发往短信子功能执行模块进行执行;
短信子功能执行模块成功发送短信后,管理执行模块根据短信子功能执行模块的执行情况,按照预设数据格式生成执行结果,并通过虚拟网口驱动模块发送给管理模块,执行结果为F L A G 1 1 4 2 2 1 1 2 0 5 1 0 2 0 0;
管理模块接收执行结果并对执行结果进行解析,根据ILC标识的值为1确定该命令是最后一条命令,将执行结果反馈给用户。
本发明系统提供的SIM卡PIN锁定状态下短信发送的实施例,具体流程如下:
假设用户需求是发送短信,在发送短信前要先查询PIN状态,管理模块按照预设数据格式先生成第一管理命令,并通过虚拟网口驱动模块发送给管理执行模块。该命令是PIN码状态的查询命令,为F L A G 1 4 2 1 0 1 1 0 5 1 0 2 0 0;
该命令的前4个字节是DF标识,用FLAG是填充;第5个字节是ILC标识,因为最终功能是短信,此时是PIN查询,不是最终命令,所以值为0;第6和7字节是Len标识,表示命令的长度为14(不包括DF标识和ILC标识部分);第8个字节是MF标识,因为MF为SMS,所以值为2(参考表1);第9个字节是AF标识,因为AF为PIN,所以值为1(参考表1);第10个字节是MT标识,因为是管理命令,所以值为0(参考表2);第11 个字节是TID标识,值为1代表主功能是短信功能的第一条命令;第12个字节是OM标识,因为是进行PIN查询命令,所以值为1(参考表3);第13和14字节是Len1标识,表示后续数据的长度为5,第15个字节是Result标识,值为1表示该命令是管理命令;第16、17个字节是Len2标识,表示执行结果值所占的长度为2;第18、19个字节是RV标识,因为是管理命令,所以填充为0 0(参考表5);PIN查询没有具体命令内容,所以此时命令截止。
管理执行模块接收命令并对上述命令进行解析,根据MF标识和AF标识的值确认该命令是用于短信功能中的PIN操作,再根据OM标识的值确认该命令是PIN查询,因此确定执行该命令的是PIN子功能执行模块,将该管理命令发给PIN子功能执行模块进行执行。
PIN子功能执行模块在进行PIN状态查询后,管理执行模块根据PIN子功能执行模块的执行情况,按照预设数据格式生成执行结果,并通过虚拟网口驱动模块发送给管理模块,执行结果为F L A G 0 1 8 2 1 1 1 1 0 9 1 0 2 0 0 1 0 1 1。
管理模块接收执行结果并对执行结果进行解析,根据第5个字节,即ILC标识的值确认该消息答复不是此次功能实现的最后一条管理命令;根据第8、9个字节,即MF标识和AF标识的值确认该消息是短信功能中的PIN操作;根据第10个字节,即MT标识的值确认这条消息是管理执行模块的答复;根据第11个字节,即TID标识的值确认该命令是主功能为PIN查询的第一条命令;根据第12个字节,即OM标识的值确定该消息是答复给PIN查询的;根据第20个字节,即C/R标识的值确定执行结果的具体内容为查询;根据第21、22个字节,即Len3标识的值确定执行结果内容的长度为1;根据第23个字节,即Value标识的值确定此时需要输入PIN(参考表6)。
管理模块生成PIN输入命令,并通过虚拟网口驱动模块发送给管理执行模块。假设需要输入的PIN命令的内容为1 2 3 4,因此该命令为F L A G 0 2 1 2 1 0 2 2 1 2 1 0 2 0 0 1 0 4 1 2 3 4。
管理执行模块接收命令并对命令进行解析,确认该命令是输入1 2 3 4 的PIN设置命令,将该命令发给PIN子功能执行模块进行执行。
PIN子功能执行模块在进行PIN命令输入后,管理执行模块根据PIN子功能执行模块的执行情况,按照预设数据格式生成执行结果,并通过虚拟网口驱动模块发送给管理模块,执行结果为F L A G 0 1 4 2 1 1 2 2 0 5 1 0 2 0 0。
管理模块接收执行结果并对执行结果进行解析,确认PIN已经输入成功,但根据ILC标识的值确定该命令不是实现短信发送功能的最后一条管理命令,通知管理模块继续生成下一条命令。
此时,PIN已经变为Ready状态,也就是说PIN已经是开启状态,因此管理模块生成短信发送命令,并通过虚拟网口驱动模块发送给管理执行模块。该命令为F L A G 1 1 Len3+7 2 2 0 1 2 0 len3+8 1 0 2 0 0 1 0 len3(后面是Len3个字节的短信内容)。
管理执行模块接收命令并对命令进行解析,根据MF标识的值确认该命令是发送短信命令,因此确定执行该命令的是短信子功能执行模块,将该命令发给短信子功能执行模块进行执行。
短信子功能执行模块成功发送短信后,管理执行模块根据短信子功能执行模块的执行情况生成执行结果,并通过虚拟网口驱动模块发送给管理模块,执行结果为F L A G 1 1 4 2 2 1 1 2 0 5 1 0 2 0 0,;
管理模块接收执行结果并对执行结果进行解析,根据ILC标识的的值确定该命令是最后一条命令,将执行结果反馈给用户。
本实施例提供的技术方案,不但可以节省设备资源,大大降低开发和 维护成本,同时也避免对Jungo架构的依赖。
在实际应用中,管理模块、虚拟网口驱动模块和管理执行模块均可由位于无线网关设备的中央处理器(Central Processing Unit,CPU)、微处理器(Micro Processor Unit,MPU)、数字信号处理器(Digital Signal Processor,DSP)或现场可编程门阵列(Field Programmable Gate Array,FPGA)等实现。
本实施例提供的无线网关设备的实现方法,包括:
接收第一管理命令,第一管理命令按照预设数据格式生成;
对第一管理命令进行解析,根据解析结果执行第一管理命令。
本发明实施例一实施方式中,子功能执行模块执行第一管理命令,还包括:根据执行情况,按照预设数据格式生成执行结果。
本实施例提供的无线网关设备的实现方法,包括:根据用户需求信息、按照预设数据格式生成第一管理命令;
发送第一管理命令。
本发明实施例一实施方式中,还包括:接收执行结果,执行结果按照预设数据格式生成;对执行结果进行解析,判断执行结果是否为最终结果,在判断执行结果是最终结果时,将执行结果反馈给用户。
本发明实施例一实施方式中,预设数据格式中包含ILC标识,判断执行结果是否为最终结果包括:根据ILC标识判断执行结果是否为最终结果。
本发明实施例一实施方式中,还包括:在判断执行结果不是最终结果时,根据执行结果中的信息、按照预设数据格式生成第二管理命令。
本实施例提供的无线网关设备的实现方法,基于上述实施例提供的无线网关设备实现,其实现原理和技术效果类似,此处不再赘述。
本领域内的技术人员应明白,本发明的实施例可提供为方法、系统、或计算机程序产品。因此,本发明可采用硬件实施例、软件实施例、或结 合软件和硬件方面的实施例的形式。而且,本发明可采用在一个或多个其中包含有计算机可用程序代码的计算机可用存储介质(包括但不限于磁盘存储器和光学存储器等)上实施的计算机程序产品的形式。
本发明是参照根据本发明实施例的方法、设备(系统)、和计算机程序产品的流程图和/或方框图来描述的。应理解可由计算机程序指令实现流程图和/或方框图中的每一流程和/或方框、以及流程图和/或方框图中的流程和/或方框的结合。可提供这些计算机程序指令到通用计算机、专用计算机、嵌入式处理机或其他可编程数据处理设备的处理器以产生一个机器,使得通过计算机或其他可编程数据处理设备的处理器执行的指令产生用于实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能的装置。
这些计算机程序指令也可存储在能引导计算机或其他可编程数据处理设备以特定方式工作的计算机可读存储器中,使得存储在该计算机可读存储器中的指令产生包括指令装置的制造品,该指令装置实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能。
这些计算机程序指令也可装载到计算机或其他可编程数据处理设备上,使得在计算机或其他可编程设备上执行一系列操作步骤以产生计算机实现的处理,从而在计算机或其他可编程设备上执行的指令提供用于实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能的步骤。
以上,仅为本发明的较佳实施例而已,并非用于限定本发明的保护范围。
工业实用性
采用本发明实施例,管理模块根据用户需求信息、按照预设数据格式生成第一管理命令,并将第一管理命令通过虚拟网口驱动模块发送给管理 执行模块;管理执行模块通过虚拟网口驱动模块接收管理模块发送的第一管理命令,对第一管理命令进行解析,根据解析结果确定执行第一管理命令的子功能执行模块,将第一管理命令发送给子功能执行模块进行执行;如此,CPE设备在实现短信等功能时不需要再另外添加虚拟串口,从而节省了设备资源,大大降低了开发和维护成本,同时也避免了对Jungo架构的依赖。

Claims (11)

  1. 一种无线网关设备,所述设备包括:管理模块、虚拟网口驱动模块和管理执行模块,其中,所述管理执行模块包括执行不同命令的子功能执行模块,
    所述管理模块,配置为根据用户需求信息、按照预设数据格式生成第一管理命令,并将所述第一管理命令通过虚拟网口驱动模块发送给所述管理执行模块;
    所述管理执行模块,配置为通过所述虚拟网口驱动模块接收所述管理模块发送的所述第一管理命令;对所述第一管理命令进行解析,根据解析结果确定执行所述第一管理命令的子功能执行模块,将所述第一管理命令发送给所述子功能执行模块进行执行。
  2. 根据权利要求1所述的设备,其中,所述管理执行模块,还配置为根据所述子功能执行模块的执行情况,按照所述预设数据格式生成执行结果,并将所述执行结果通过所述虚拟网口驱动模块发送给所述管理模块;
    所述管理模块,还配置为通过所述虚拟网口驱动模块接收所述管理执行模块发送的所述执行结果,其中,所述执行结果按照所述预设数据格式生成;对所述执行结果进行解析,判断所述执行结果是否为最终结果,在判断所述执行结果是最终结果时,将所述执行结果反馈给用户。
  3. 根据权利要求2所述的设备,其中,所述管理模块还配置为在判断所述执行结果不是最终结果时,通知所述管理模块根据所述执行结果中的信息、按照所述预设数据格式生成第二管理命令。
  4. 根据权利要求2所述的设备,其中,所述预设数据格式包含是最后一条命令ILC标识,所述管理模块还配置为根据所述ILC标识判断所述执行结果是否为最终结果。
  5. 根据权利要求1所述的设备,其中,所述预设数据格式包含辅助功 能AF标识,所述管理执行模块还配置为根据所述AF标识确定执行所述第一管理命令的子功能执行模块。
  6. 一种无线网关设备的实现方法,所述方法包括:
    接收第一管理命令,所述第一管理命令按照预设数据格式生成;
    对所述第一管理命令进行解析,根据解析结果执行所述第一管理命令。
  7. 根据权利要求6所述的方法,其中,在根据解析结果执行所述第一管理命令后,还包括:根据执行情况,按照所述预设数据格式生成执行结果。
  8. 一种无线网关设备的实现方法,所述方法包括:
    根据用户需求信息、按照预设数据格式生成第一管理命令;
    发送所述第一管理命令。
  9. 根据权利要求8所述的方法,其中,所述方法还包括:
    接收执行结果,所述执行结果按照所述预设数据格式生成;
    对所述执行结果进行解析,判断所述执行结果是否为最终结果,在判断所述执行结果是最终结果时,将所述执行结果反馈给用户。
  10. 根据权利要求9所述的方法,其中,所述预设数据格式包含是最后一条命令ILC标识,判断所述执行结果是否为最终结果包括:根据所述ILC标识判断所述执行结果是否为最终结果。
  11. 根据权利要求9所述的方法,其中,所述方法还包括:
    在判断所述执行结果不是最终结果时,根据所述执行结果中的信息、按照所述预设数据格式生成第二管理命令。
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