WO2014173345A1 - 一种可接入移动宽带网的用户终端配置方法及装置 - Google Patents

一种可接入移动宽带网的用户终端配置方法及装置 Download PDF

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Publication number
WO2014173345A1
WO2014173345A1 PCT/CN2014/077882 CN2014077882W WO2014173345A1 WO 2014173345 A1 WO2014173345 A1 WO 2014173345A1 CN 2014077882 W CN2014077882 W CN 2014077882W WO 2014173345 A1 WO2014173345 A1 WO 2014173345A1
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Prior art keywords
module
uefi
side device
wireless communication
configuration
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PCT/CN2014/077882
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English (en)
French (fr)
Inventor
刘源源
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中兴通讯股份有限公司
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Publication of WO2014173345A1 publication Critical patent/WO2014173345A1/zh

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L41/00Arrangements for maintenance, administration or management of data switching networks, e.g. of packet switching networks
    • H04L41/08Configuration management of networks or network elements
    • H04L41/0803Configuration setting
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F9/00Arrangements for program control, e.g. control units
    • G06F9/06Arrangements for program control, e.g. control units using stored programs, i.e. using an internal store of processing equipment to receive or retain programs
    • G06F9/44Arrangements for executing specific programs
    • G06F9/4401Bootstrapping
    • G06F9/4411Configuring for operating with peripheral devices; Loading of device drivers
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L67/00Network arrangements or protocols for supporting network services or applications
    • H04L67/2866Architectures; Arrangements
    • H04L67/30Profiles
    • H04L67/303Terminal profiles

Definitions

  • the invention relates to the technical field of the Unified Extensible Firmware Interface (UEFI), and proposes a user terminal configuration for accessing a mobile broadband network for a tablet, a notebook computer and a desktop computer with a built-in mobile broadband network adapter.
  • UEFI Unified Extensible Firmware Interface
  • the UEFI standard is a detailed description standard for a new type of interface.
  • UEFI is configured to automatically load the operating system from a pre-booted operating environment onto an operating system, making booting simple and time-saving.
  • PCFI-based PCs and tablet PCs using Windows and Linux are becoming more popular.
  • Figure 1 shows the basic architecture of UEFI.
  • the embodiments of the present invention provide a mobile broadband access User terminal configuration method and device of the network.
  • a user terminal configuration method for accessing a mobile broadband network including:
  • the primary CPU side device of the user terminal notifies the wireless communication side device of the user terminal to switch to the adapted USB interface;
  • the main CPU side device communicates with the wireless communication side device by using the switched adapted USB interface to obtain a current configuration of the wireless communication side device;
  • the main CPU side device generates a reconfiguration command for reconfiguring the current configuration according to the input information of the user, and sends the reconfiguration command to the wireless communication side device;
  • the wireless communication side device modifies the current configuration according to the reconfiguration instruction.
  • the primary CPU side device includes a UEFI startup configuration module, a UEFI driver communication module, a UEFI command parsing module, a UEFI service logic module, and a UEFI display module.
  • the wireless communication side device is a 3G ⁇ 4G wireless module built in the user terminal or a 3G ⁇ 4G wireless module externally inserted in the user terminal.
  • the wireless communication side device includes a startup detection module, a USB gadget (Gadget) drive communication module, and a wireless module function configuration module.
  • the main CPU side device notifying the wireless communication side device to switch to the adapted USB interface includes:
  • the UEFI startup configuration module sends notification information to the startup detection module by means of a universal input/output GPIO notification or a communication handshake;
  • the startup detection module After receiving the notification information, the startup detection module notifies the USB Gadget driver notification module to switch to the adaptation USB interface.
  • the main CPU-side device communicates with the wireless communication-side device by using the switched adaptive USB interface, and obtaining the current configuration of the wireless communication-side device includes:
  • the UEFI command parsing module utilizes the switched adaptive USB interface to the wireless module
  • the block function configuration module sends a status query request
  • the wireless module function configuration module After receiving the status query request, the wireless module function configuration module sends the current status command of the wireless communication side device to the UEFI command parsing module through the switched adapted USB interface;
  • the UEFI command parsing module obtains the current configuration of the wireless communication side device by parsing the received current status command.
  • the main CPU side device generates a reconfiguration command for reconfiguring the current configuration according to the input information of the user, where the UEFI command parsing module sends the wireless module to the wireless communication side device by using the switched adapted USB interface.
  • Function configuration module
  • the main CPU side unit is configured to notify the wireless communication side unit to switch to the adapted USB interface during startup booting by using the UEFI, and communicate with the wireless communication side unit by using the switched adapted USB interface to obtain the wireless communication side. a current configuration of the unit; generating a reconfiguration command for reconfiguring the current configuration according to the input information of the user, and transmitting the reconfiguration command to the wireless communication side unit;
  • the wireless communication side unit is configured to modify the current configuration according to the reconfiguration command.
  • the main CPU side unit includes: a UEFI startup configuration module, a UEFI driver communication module, and a UEFI command parsing module;
  • the wireless communication side unit includes: a startup detection module, a USB Gadget driver communication module, and a wireless module function configuration module;
  • the UEFI startup configuration module is configured to send notification information to the startup detection module by means of a GPIO notification or a communication handshake;
  • the startup detection module is configured to notify the USB Gadget driver notification module to switch to the adaptation USB interface after receiving the notification information;
  • the UEFI command parsing module is configured to send a status query request to the wireless module function configuration module by using the switched adaptive USB interface; and obtain a current status of the wireless communication side unit by parsing the received current status command Configuring; and transmitting, by using the switched adaptive USB interface, a reconfiguration command to the wireless module function configuration module;
  • the wireless module function configuration module is configured to: after receiving the status query request, send the current status command of the wireless communication side unit to the UEFI command parsing module through the switched adapted USB interface; After the configuration command, the current configuration is modified; the UEFI driving communication module is configured to generate a reconfiguration command for reconfiguring the current configuration according to the input information of the user.
  • a user terminal comprising a user terminal configuration device accessible to a mobile broadband network as described above.
  • a computer storage medium comprising a set of instructions that, when executed, cause at least one processor to perform the accessible move as described in the claims User terminal configuration method for broadband network.
  • the embodiment of the present invention provides a secure and consistent interface for different users on the same device or different users under the same operating system to access the mobile broadband network adapter, and solves different operating systems on the same device in the prior art. Or the configuration of the mobile broadband network adapter is affected by different users on the same operating system, thereby causing inconvenience in accessing the mobile broadband network adapter, thereby improving the security and user experience of the device.
  • FIG. 1 is a flowchart of a method for configuring a user terminal that can access a mobile broadband network according to an embodiment of the present invention
  • FIG. 2 is a schematic diagram of a configuration apparatus of a user terminal that can access a mobile broadband network according to an embodiment of the present invention
  • FIG. 3 is a schematic diagram of another apparatus for configuring a user terminal that can access a mobile broadband network according to an embodiment of the present disclosure
  • FIG. 4 is a schematic diagram of a built-in 3G ⁇ 4G wireless module according to an embodiment of the present invention.
  • FIG. 5 is a schematic diagram of an extrapolation 3G ⁇ 4G wireless module according to an embodiment of the present invention.
  • FIG. 6 is a schematic diagram of a user terminal configuration of a UEFI-based accessible mobile broadband network according to an embodiment of the present invention. detailed description
  • the device referred to in the embodiment of the present invention includes: a UEFI smart phone, a tablet computer, a PDA (Personal Digital Assistant), a notebook computer, and a desktop computer.
  • This type of mobile terminal has the following hardware features: ⁇ Start booting with UEFI; built-in 3G/4G wireless module or extrapolation 3G/4G wireless module.
  • FIG. 1 is a flowchart of a method for configuring a user terminal that can access a mobile broadband network according to an embodiment of the present invention.
  • the user terminal includes a main CPU side device and a wireless communication side device configured to access a mobile broadband network, such as As shown in Figure 1, the method includes the following steps:
  • Step S101 The primary CPU side device notifies the wireless communication side device to switch to the adapted USB interface during startup booting by using UEFI;
  • Step S102 The main CPU side device communicates with the wireless communication side device by using the switched adapted USB interface to obtain a current configuration of the wireless communication side device.
  • Step S103 The main CPU side device generates a reconfiguration command for reconfiguring the current configuration according to the input information of the user, and sends the reconfiguration command to the wireless communication side device.
  • Step S104 The wireless communication side device modifies the current configuration according to the reconfiguration command.
  • the main CPU side device in the embodiment of the present invention includes: a UEFI startup configuration module, a UEFI driver communication module, a UEFI command parsing module, a UEFI service logic module, and a UEFI display module.
  • the wireless communication side device is a 3G ⁇ 4G wireless module built in the user terminal or a 3G ⁇ 4G wireless module externally inserted in the user terminal, and the wireless communication side device includes: a startup detection module, a USB Gadget Drive communication module and wireless module function configuration module.
  • the step of the main CPU side device in the embodiment of the present invention notifying the wireless communication side device to switch to the adaptation USB interface includes: the UEFI startup configuration module of the main CPU side device passes a general purpose input/output (GPIO) notification or a communication handshake The method is configured to send the notification information to the startup detection module of the wireless communication device. After receiving the notification information, the startup detection module notifies the USB Gadget driver notification module of the wireless communication device to switch to the adaptation USB interface.
  • GPIO general purpose input/output
  • the main CPU side device communicates with the wireless communication side device by using the switched adaptive USB interface
  • the step of obtaining the current configuration of the wireless communication device includes: UEFI command of the primary CPU side device
  • the parsing module sends a status query request to the wireless module function configuration module of the wireless communication side device by using the switched adaptive USB interface; after the wireless module function configuration module receives the status query request, the wireless communication side device
  • the current state command is sent to the UEFI command parsing module through the switched adapted USB interface; the UEFI command parsing module obtains the current configuration of the wireless communication device by parsing the received current state command.
  • the primary CPU side device generates a reconfiguration command for reconfiguring the current configuration according to the input information of the user, where the UEFI command parsing module utilizes the switched
  • the USB interface is configured to send a reconfiguration command to the wireless module function configuration module of the wireless communication side device.
  • the user terminal includes a main CPU side device and a wireless device configured to access a mobile broadband network.
  • the communication side device includes: a switching USB interface module 201, configured to notify the wireless communication side device to switch to the adapted USB interface during startup booting with the UEFI; the communication module 202 is configured to be
  • the main CPU-side device communicates with the wireless communication-side device by using the switched adaptive USB interface to obtain a current configuration of the wireless communication-side device.
  • the configuration command module 203 is configured to be configured by the primary CPU-side device according to user input.
  • the information generates a reconfiguration command for reconfiguring the current configuration, and sends the reconfiguration command to the wireless communication device; and the configuration module 204 is configured to configure the wireless communication device to perform the current configuration according to the reconfiguration command. Modify; where UEFI is a unified and extensible firmware interface.
  • the switching USB interface module 201 includes: a sending notification information unit configured to start the UEFI startup configuration module of the main CPU side device to the wireless communication side device by means of a universal input/output GPIO notification or a communication handshake The detecting module sends the notification information, and the switching unit is configured to notify the USB Gadget driving notification module of the wireless communication side device to switch to the adaptation USB interface after receiving the notification information.
  • the communication module 202 includes: a sending status query requesting unit, configured by the UEFI command parsing module of the main CPU side device to use the switched adapted USB interface to configure a wireless module function module of the wireless communication side device Sending a status query request; the processing unit, configured to: after receiving the status query request, the wireless module function configuration module sends the current status command of the wireless communication side device to the UEFI command parsing through the switched adapted USB interface Obtaining a current configuration unit, configured to: the UEFI command parsing module obtains a current configuration command of the wireless communication side device by parsing the received current status command.
  • FIG. 3 is a schematic diagram of another apparatus for configuring a user terminal that can access a mobile broadband network according to an embodiment of the present invention. As shown in FIG. 3, the configuration apparatus includes: a main CPU side unit 31 and a wireless communication side unit 32. ; among them,
  • the main CPU side unit 31 is configured to notify the wireless communication side unit 32 to switch to the adaptation USB interface during startup booting with the UEFI; to communicate with the wireless communication side unit 32 by using the switched adapted USB interface to obtain the wireless communication The current configuration of the side unit 32; generating a reconfiguration command to reconfigure the current configuration according to the input information of the user, and transmitting to the wireless communication side unit 32;
  • the wireless communication side unit 32 is configured to modify the current configuration according to the reconfiguration command.
  • the main CPU side unit 31 includes: a UEFI startup configuration module 311, a UEFI driver communication module 312, and a UEFI command parsing module 313;
  • the wireless communication side unit 32 is a 3G ⁇ 4G wireless module built in the user terminal or a 3G ⁇ 4G wireless module externally inserted in the user terminal. As shown in FIG. 3, the wireless communication side unit 32 includes: The detection module 321 , the USB Gadget driver communication module 322 , and the wireless module function configuration module 323 are activated.
  • the UEFI startup configuration module 311 is configured to send notification information to the startup detection module 321 by means of a general-purpose input/output (GPIO) notification or a communication handshake.
  • GPIO general-purpose input/output
  • the startup detection module 321, configured to notify the USB Gadget driver notification module 322 to switch to the adaptation USB interface after receiving the notification information.
  • the UEFI command parsing module 313 is configured to send a status query request to the wireless module function configuration module 323 by using the switched adapted USB interface; and obtain the current status of the wireless communication side unit 32 by parsing the received current status command.
  • the wireless module function configuration module 323 is configured to send the current state command of the wireless communication side unit 32 to the UEFI through the switched adapted USB interface after receiving the status query request. Let the parsing module 313.
  • the UEFI driver communication module 312 is configured to generate a reconfiguration command for reconfiguring the current configuration according to the input information of the user;
  • the UEFI command parsing module 313 is further configured to send the reconfiguration command to the wireless module function configuration module 323 by using the switched adapted USB interface;
  • the wireless module function configuration module 323 is configured to ⁇ ' tamper with the current configuration.
  • the UEFI boot configuration module, the UEFI driver communication module, and the UEFI command parsing module may be configured by a central processing unit (CPU) in a user terminal that can access the mobile broadband network, and a digital signal processor (DSP). , Digital Singnal Processor ) or Field-Programmable Gate Array (FPGA) implementation; the startup detection module, the USB Gadget driver communication module, and the wireless module function configuration module can be configured in a user terminal that can access the mobile broadband network.
  • CPU, DSP or FPGA is combined with circuit implementation.
  • the embodiment of the present invention further provides a user terminal, including the basic structure of the user terminal configuration device that can access the mobile broadband network shown in FIG. 3, and various modifications and equivalents thereof, which are not described herein.
  • FIG. 4 is a schematic diagram of a built-in 3G ⁇ 4G wireless module provided by an embodiment of the present invention; as shown in FIG. 4, the following features are provided: a central processing unit (CPU) with 3G or 4G functions, eMMC storage Chip, Double Rate Synchronous Dynamic Random Access Memory (DDR), Wi-Fi module, Micro Secure Digital Memory Card (SD).
  • CPU central processing unit
  • DDR Double Rate Synchronous Dynamic Random Access Memory
  • SD Micro Secure Digital Memory Card
  • the CPU unit is configured to run an embedded operating system, and provides a protocol stack for 3G/4G network access, configured to manage memory, process scheduling, file management, 3G/4G protocol stack management and access; eMMC storage chip as a main
  • the storage medium is configured to save the files required by the operating system and also to store the user files;
  • the DDR memory is used as the memory unit of the processor to participate in the operation and management of the embedded operating system;
  • the Wi-Fi module is configured to provide the wireless local area network (WLAN).
  • Wireless LAN Connect, set up a wireless LAN, complete wireless LAN coverage, and have a station function that can connect to other Wi-Fi access points (AP, Access Point) provides the Wi-Fi hotspot access function of the device different from 3G ⁇ 4G wireless access Internet Internet; the micro SD card is mainly used as a supplement to the flash media storage, and can be used to store user data.
  • AP Access Point
  • FIG. 5 is a schematic diagram of an extrapolation 3G ⁇ 4G wireless module according to an embodiment of the present invention.
  • the main CPU side device provides a Wide Area Network (WAN) connection.
  • LAN completes wireless LAN coverage, and has a station function that can be connected to other Wi-Fi APs.
  • This type of device only provides Internet connection through the external 3G/4G wireless module, and manages the WLAN by itself; the other type of device does not provide 3G/4G WAN access and WLAN access, 3G/4G Internet connection and WLAN connection.
  • 3G/4G wireless module responsible by the 3G/4G wireless module.
  • FIG. 6 is a schematic diagram of a user terminal configuration of a UEFI-based accessible mobile broadband network according to an embodiment of the present invention.
  • the method includes a primary CPU side device and a wireless communication side device configured to access the mobile broadband network.
  • the primary CPU side device includes a UEFI startup configuration module, a UEFI driver communication module, a UEFI command parsing module, a UEFI service logic module, and a UEFI display module.
  • the wireless communication side device configured to access the mobile broadband network includes The detection module, the USB Gadget driver communication module, and the wireless module function configuration module are activated.
  • the UEFI startup configuration module of the main CPU side device is configured to notify the startup detection module of the 3G/4G wireless module when the system starts to stop at the UEFI, such as by means of GPIO notification, or actively initiates a communication handshake with the 3G/4G wireless module;
  • the UEFI-driven communication module of the side device is configured to establish a channel of the upper layer service and the underlying hardware on the main CPU side device;
  • the UEFI command parsing module of the main CPU side device packages the command sent by the UEFI service logic module of the main CPU side device to the wireless communication side device And simultaneously parsing the command sent by the wireless communication side device received by the UEFI driver communication module, and sending the command to the UEFI service logic module;
  • the UEFI service logic module stores the service logic configured by all the wireless communication side devices, and the wireless communication side device
  • the communication interaction acquires the configuration and function of the wireless communication side device, and controls the configuration items and contents of the UEFI display module. Displayed on the screen; the
  • the startup detection module of the wireless communication side device learns that it needs to enter the device configuration state by acquiring the GPIO status or the communication handshake with the main CPU side device, and notifies the USB Gadget driving communication module of the wireless communication side device.
  • the USB Gadget driver communication module switches to a suitable USB gadget function interface capable of communicating with the main CPU side device, and notifies the wireless communication function configuration module of the wireless communication side device that the function configuration module is ready;
  • the wireless module function configuration module can communicate with the device side of the main CPU side through a suitable USB gadget function interface.
  • the user intercepts the normal startup of the device when the device boots to UEFI, and stops at the UEFI configuration interface.
  • the UEFI startup configuration module notifies the startup detection module of the wireless communication device by means of GPIO notification or communication handshake, and the startup detection module of the 3G ⁇ 4G wireless module notifies the USB Gadget driver communication module to switch to the appropriate USB Gadget function.
  • the interface notifies the wireless module function configuration module to enter the waiting state.
  • the UEFI boot configuration module notifies the UEFI drive communication module to switch to the appropriate USB function interface to communicate with the wireless communication side device.
  • the configuration menu of the UEFI display module invokes the UEFI service logic module, and the UEFI service logic module initiates a status query through the UEFI command parsing module to learn the 3G ⁇ 4G wireless module.
  • Device capabilities and device configuration display it on the interface, and provide the user with the configured interface.
  • the user is required to enter the Supervisor Password, which has the same administrator password as the traditional UEFI setup menu, but this password also manages the user's configuration of the wireless network adapter.
  • the user modifies the configuration of the wireless communication side device through the UEFI configuration menu.
  • the user modifies the configuration on the interface, and sends the configuration command to the wireless communication device through the interactive command.
  • the wireless communication device After receiving the configuration command, the wireless communication device returns the configuration result to the UEFI command parsing module through the interactive command.
  • the UEFI command parsing module parses the message and sends the command.
  • the UEFI service logic module notifies the UEFI display module of the processing result, and displays the configuration result on the screen.
  • a setting of the user may cause multiple configuration changes. These configurations can be reported to the main CPU side device by multiple commands.
  • the UEFI command parsing module parses the data one by one, and then sends it to the UEFI service logic module for processing.
  • the UEFI display module is notified that the user configuration has changed.
  • the user exits the UEFI configuration menu and starts normally.
  • the normal startup does not call the UEFI startup configuration module, so neither the primary CPU side device nor the wireless communication side device is a USB function interface that is normally started, and the related startup configuration process is not triggered.
  • the embodiment of the invention provides a consistent user terminal configuration interface and user interface for accessing the mobile broadband network for all users on one device, which enhances the security and user experience of the device.
  • embodiments of the present invention can be provided as a method, system, or computer program product. Accordingly, the present invention may take the form of a hardware embodiment, a software embodiment, or an embodiment of a combination of software and hardware. Moreover, the invention can be embodied in 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 present invention is directed to a method, apparatus (system), and computer program in accordance with an embodiment of the present invention.
  • the flow chart and/or block diagram of the product is described. It will be understood that each flow and/or block of the flowchart illustrations and/or FIG.
  • These computer program instructions can be provided to a general purpose computer, a special purpose computer, an embedded processor or other programmable data processing device processor to produce a machine such that a flow or a block diagram of a flow or a block diagram or A device that has multiple functions specified in the box.
  • 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.

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Abstract

本发明公开了一种可接入移动宽带网的用户终端配置方法、装置、用户终端及计算机存储介质,所述方法包括:在利用统一可扩展固件接口 (UEFI)进行启动引导期间,用户终端的主CPU侧设备通知所述无线通信侧设备切换到适配USB接口;所述用户终端的主CPU侧设备利用所切换的适配USB接口与所述无线通信侧设备通信,获得所述无线通信侧设备的当前配置;所述主CPU侧设备根据用户的输入信息生成对所述当前配置进行重新配置的再配置指令,并发送给所述无线通信侧设备;所述无线通信侧设备按照所述再配置指令,对所述当前配置进行修改。

Description

一种可接入移动宽带网的用户终端配置方法及装置 技术领域
本发明涉及统一可扩展固件接口 (UEFI, Unified Extensible Firmware Interface )功能技术领域, 针对内置移动宽带网络适配器的平板电脑、 笔记 本电脑、 台式电脑, 提出了一种可接入移动宽带网的用户终端配置方法及 装置。 背景技术
互联网技术日新月异, 目前随着 3G技术的普及以及 4G技术的不断进 步, 几乎所有的移动终端都具有上网功能。 目前移动办公已经不是什么新 鲜事了, 基于 Windows操作系统的笔记本和平板电脑等设备, 都能提供高 速数据服务。 这类设备通常通过硬件接口连接一个移动宽带网络适配器, 软件上集成预先定义好的接口进行通信, 实现高速上网。
UEFI标准是一种全新类型接口的详细描述标准。 UEFI 配置为操作系 统自动从预启动的操作环境加载到一种操作系统上, 从而使开机程序化繁 为简,节省时间。 目前基于 UEFI的使用 Windows和 Linux的 PC和平板电 脑设备正在逐步流行。 图 1为 UEFI的基本架构。
这类设备的移动宽带网络适配器配置往往比较麻烦。 同一设备上可能 安装了几个截然不同的操作系统( Windows, UBU TU Linux、 SUSE Linux、 Mac OS等等); 即便是在一个 Windows操作系统上, 不同用户拥有的权限 不同, 但往往都能对网络适配器进行配置, 造成了使用的不便。 发明内容
为解决现有存在的技术问题, 本发明实施例提供一种可接入移动宽带 网的用户终端配置方法及装置。
根据本发明实施例的一个方面, 提供了一种可接入移动宽带网的用户 终端配置方法, 包括:
在利用 UEFI进行启动引导期间, 用户终端的主 CPU侧设备通知所述 用户终端的无线通信侧设备切换到适配 USB接口;
所述主 CPU侧设备利用所切换的适配 USB接口与所述无线通信侧设备 通信, 获得所述无线通信侧设备的当前配置;
所述主 CPU侧设备根据用户的输入信息生成对所述当前配置进行重新 配置的再配置指令, 并发送给所述无线通信侧设备;
所述无线通信侧设备按照所述再配置指令, 对所述当前配置进行修改。 所述主 CPU侧设备包括 UEFI启动配置模块、 UEFI驱动通信模块、 UEFI 命令解析模块、 UEFI业务逻辑模块以及 UEFI显示模块。
所述无线通信侧设备是内置在所述用户终端的 3G\4G无线模块或外插 在所述用户终端的 3G\4G无线模块。
所述无线通信侧设备包括启动检测模块、 USB 小工具(Gadget )驱动 通信模块以及无线模块功能配置模块。
所述主 CPU侧设备通知所述无线通信侧设备切换到适配 USB接口包 括:
所述 UEFI启动配置模块通过通用输入 /输出 GPIO通知或通信握手的方 式向所述启动检测模块发送通知信息;
所述启动检测模块收到所述通知信息后,通知所述 USB Gadget驱动通 知模块切换到适配 USB接口。
所述主 CPU侧设备利用所切换的适配 USB接口与所述无线通信侧设备 通信, 获得所述无线通信侧设备的当前配置包括:
所述 UEFI命令解析模块利用所切换的适配 USB接口, 向所述无线模 块功能配置模块发送状态查询请求;
所述无线模块功能配置模块接收到状态查询请求后, 将所述无线通信 侧设备的当前状态命令通过所切换的适配 USB接口发送到所述 UEFI命令 解析模块;
所述 UEFI命令解析模块通过解析所接收到的当前状态命令,获得所述 无线通信侧设备的当前配置。
所述主 CPU侧设备根据用户的输入信息生成对所述当前配置进行重新 配置的再配置指令, 所述 UEFI命令解析模块利用所切换的适配 USB接口 发送给所述无线通信侧设备的无线模块功能配置模块。
根据本发明实施例的另一方面, 提供了一种可接入移动宽带网的用户 终端配置装置, 包括: 主 CPU侧单元及无线通信侧单元; 其中,
所述主 CPU侧单元, 配置为在利用 UEFI进行启动引导期间, 通知无 线通信侧单元切换到适配 USB接口;利用所切换的适配 USB接口与无线通 信侧单元通信, 获得所述无线通信侧单元的当前配置; 根据用户的输入信 息生成对所述当前配置进行重新配置的再配置指令, 并发送给所述无线通 信侧单元;
所述无线通信侧单元, 配置为按照所述再配置指令, 对所述当前配置 进行修改。
所述主 CPU侧单元包括: UEFI启动配置模块、 UEFI驱动通信模块、 及 UEFI命令解析模块; 所述无线通信侧单元包括: 启动检测模块、 USB Gadget驱动通信模块以及无线模块功能配置模块; 其中,
所述 UEFI启动配置模块, 配置为通过 GPIO通知或通信握手的方式向 所述启动检测模块发送通知信息;
所述启动检测模块,配置为收到所述通知信息后,通知所述 USB Gadget 驱动通知模块切换到适配 USB接口; 所述 UEFI命令解析模块, 配置为利用所切换的适配 USB接口, 向所 述无线模块功能配置模块发送状态查询请求; 通过解析所收到的当前状态 命令, 获得所述无线通信侧单元的当前配置; 并利用所切换的适配 USB接 口将再配置指令发送给所述无线模块功能配置模块;
所述无线模块功能配置模块, 配置为收到状态查询请求后, 将所述无 线通信侧单元的当前状态命令通过所切换的适配 USB 接口发送到所述 UEFI命令解析模块; 并在收到再配置指令后, 对所述当前配置进行修改; 所述 UEFI驱动通信模块,配置为才艮据用户的输入信息生成所述当前配 置进行重新配置的再配置指令。
根据本发明实施例的另一方面, 提供了一种用户终端, 所述用户终端 包括如上述的可接入移动宽带网的用户终端配置装置。
根据本发明实施例的另一方面, 提供了一种计算机存储介质, 所述计 算机存储介质包括一组指令, 当执行所述指令时, 引起至少一个处理器执 行如权利要求上述的可接入移动宽带网的用户终端配置方法。
与现有技术相比较, 本发明实施例的有益效果在于:
本发明实施例为同一设备上的不同操作系统或同一操作系统下不同用 户对移动宽带网络适配器的访问提供了一种安全、 一致的接口, 解决了现 有技术中同一设备上的不同操作系统, 或同一操作系统上不同用户对移动 宽带网络适配器的配置互相影响, 从而造成对移动宽带网络适配器的访问 不便的问题, 提升了设备的安全性和用户体验。 附图说明
在附图 (其不一定是按比例绘制的) 中, 相似的附图标记可在不同的 视图中描述相似的部件。 具有不同字母后缀的相似附图标记可表示相似部 件的不同示例。 附图以示例而非限制的方式大体示出了本文中所讨论的各 个实施例。 图 1 是本发明实施例提供的一种可接入移动宽带网的用户终端配置方 法流程图;
图 2是本发明实施例提供的一种可接入移动宽带网的用户终端配置装 置示意图;
图 3是本发明实施例提供的另一种可接入移动宽带网的用户终端配置 装置示意图;
图 4是本发明实施例提供的内置 3G\4G无线模块的示意图;
图 5是本发明实施例提供的外插 3G\4G无线模块的示意图;
图 6是本发明实施例提供的基于 UEFI的可接入移动宽带网的用户终端 配置示意图。 具体实施方式
以下结合附图对本发明的优选实施例进行详细说明, 应当理解, 以下 所说明的优选实施例仅配置为说明和解释本发明, 并不配置为限定本发明。
在本发明的各种实施例中:
本发明实施例所指设备包括: 釆用 UEFI的智能手机、 平板电脑、 掌上 电脑(PDA, Personal Digital Assistant ), 笔记本电脑和台式电脑等。 这类移 动终端具有以下硬件特征: 釆用 UEFI进行启动引导; 内置 3G/4G无线模 块或外插 3G/4G无线模块。
图 1 显示了本发明实施例提供的一种可接入移动宽带网的用户终端配 置方法流程图, 所述用户终端包括主 CPU侧设备和配置为接入移动宽带网 的无线通信侧设备, 如图 1所示, 该方法包括以下步骤:
步骤 S101 : 在利用 UEFI进行启动引导期间, 所述主 CPU侧设备通知 所述无线通信侧设备切换到适配 USB接口;
步骤 S102: 所述主 CPU侧设备利用所切换的适配 USB接口与所述无 线通信侧设备通信, 获得所述无线通信侧设备的当前配置; 步骤 S103:所述主 CPU侧设备根据用户的输入信息生成对所述当前配 置进行重新配置的再配置指令, 并发送给所述无线通信侧设备;
步骤 S104: 所述无线通信侧设备按照所述再配置指令, 对所述当前配 置进行修改。
其中, 本发明实施例所述主 CPU侧设备包括: UEFI启动配置模块、 UEFI驱动通信模块、 UEFI命令解析模块、 UEFI业务逻辑模块以及 UEFI 显示模块。
其中, 所述无线通信侧设备是内置在所述用户终端的 3G\4G无线模块 或外插在所述用户终端的 3G\4G无线模块, 所述无线通信侧设备包括: 启 动检测模块、 USB Gadget驱动通信模块以及无线模块功能配置模块。
本发明实施例所述主 CPU侧设备通知所述无线通信侧设备切换到适配 USB接口的步骤包括: 所述主 CPU侧设备的 UEFI启动配置模块通过通用 输入 /输出 (GPIO )通知或通信握手的方式向所述无线通信侧设备的启动检 测模块发送通知信息; 所述启动检测模块收到所述通知信息后, 通知所述 无线通信侧设备的 USB Gadget驱动通知模块切换到适配 USB接口。
本发明实施例所述主 CPU侧设备利用所切换的适配 USB接口与所述无 线通信侧设备通信, 获得所述无线通信侧设备的当前配置的步骤包括: 所 述主 CPU侧设备的 UEFI命令解析模块利用所切换的适配 USB接口, 向所 述无线通信侧设备的无线模块功能配置模块发送状态查询请求; 所述无线 模块功能配置模块收到状态查询请求后, 将所述无线通信侧设备的当前状 态命令通过所切换的适配 USB接口发送到所述 UEFI命令解析模块; 所述 UEFI命令解析模块通过解析所收到的当前状态命令, 获得所述无线通信侧 设备的当前配置。
本发明实施例所述主 CPU侧设备根据用户的输入信息生成对所述当前 配置进行重新配置的再配置指令,所述 UEFI命令解析模块利用所切换的适 配 USB接口将再配置指令发送给所述无线通信侧设备的无线模块功能配置 模块。
图 2显示了本发明实施例提供的一种可接入移动宽带网的用户终端配 置装置示意图, 如图 2所示, 所述用户终端包括主 CPU侧设备和配置为接 入移动宽带网的无线通信侧设备, 包括: 切换 USB接口模块 201, 配置为 在利用 UEFI进行启动引导期间, 所述主 CPU侧设备通知所述无线通信侧 设备切换到适配 USB接口; 通信模块 202, 配置为所述主 CPU侧设备利用 所切换的适配 USB接口与所述无线通信侧设备通信, 获得所述无线通信侧 设备的当前配置; 生成配置指令模块 203, 配置为所述主 CPU侧设备根据 用户的输入信息生成对所述当前配置进行重新配置的再配置指令, 并发送 给所述无线通信侧设备; 修改配置模块 204, 配置为所述无线通信侧设备按 照所述再配置指令, 对所述当前配置进行修改; 其中, UEFI是统一可扩展 固件接口。
其中, 所述切换 USB接口模块 201包括: 发送通知信息单元, 配置为 所述主 CPU侧设备的 UEFI启动配置模块通过通用输入 /输出 GPIO通知或 通信握手的方式向所述无线通信侧设备的启动检测模块发送通知信息; 切 换单元, 配置为所述启动检测模块收到所述通知信息后, 通知所述无线通 信侧设备的 USB Gadget驱动通知模块切换到适配 USB接口。
其中, 所述通信模块 202 包括: 发送状态查询请求单元, 配置为所述 主 CPU侧设备的 UEFI命令解析模块利用所切换的适配 USB接口, 向所述 无线通信侧设备的无线模块功能配置模块发送状态查询请求; 处理单元, 配置为所述无线模块功能配置模块接收到状态查询请求后, 将所述无线通 信侧设备的当前状态命令通过所切换的适配 USB接口发送到所述 UEFI命 令解析模块; 获取当前配置单元, 配置为所述 UEFI命令解析模块通过解析 所接收到的当前状态命令, 获得所述无线通信侧设备的当前配置。 图 3 为显示了本发明实施例提供的另一种可接入移动宽带网的用户终 端配置装置示意图, 如图 3所示, 所述配置装置包括: 主 CPU侧单元 31 及无线通信侧单元 32; 其中,
主 CPU侧单元 31, 配置为在利用 UEFI进行启动引导期间, 通知无线 通信侧单元 32切换到适配 USB接口; 利用所切换的适配 USB接口与无线 通信侧单元 32通信, 获得所述无线通信侧单元 32的当前配置; 根据用户 的输入信息生成对所述当前配置进行重新配置的再配置指令, 并发送给无 线通信侧单元 32;
无线通信侧单元 32, 配置为按照所述再配置指令, 对所述当前配置进 行修改。
其中, 如图 3所示, 所述主 CPU侧单元 31包括: UEFI启动配置模块 311、 UEFI驱动通信模块 312、 及 UEFI命令解析模块 313;
所述无线通信侧单元 32是内置在所述用户终端的 3G\4G无线模块或外 插在所述用户终端的 3G\4G无线模块, 如图 3所示, 所述无线通信侧单元 32包括: 启动检测模块 321、 USB Gadget驱动通信模块 322以及无线模块 功能配置模块 323。
其中, UEFI启动配置模块 311, 配置为通过通用输入 /输出 (GPIO )通 知或通信握手的方式向启动检测模块 321发送通知信息;
启动检测模块 321, 配置为收到所述通知信息后, 通知 USB Gadget驱 动通知模块 322切换到适配 USB接口。
UEFI命令解析模块 313, 配置为利用所切换的适配 USB接口, 向无线 模块功能配置模块 323发送状态查询请求; 并通过解析所收到的当前状态 命令, 获得所述无线通信侧单元 32的当前配置;
无线模块功能配置模块 323, 配置为收到状态查询请求后, 将所述无线 通信侧单元 32的当前状态命令通过所切换的适配 USB接口发送到 UEFI命 令解析模块 313。
UEFI驱动通信模块 312, 配置为才艮据用户的输入信息生成所述当前配 置进行重新配置的再配置指令;
所述 UEFI命令解析模块 313, 还配置利用所切换的适配 USB接口将 再配置指令发送给无线模块功能配置模块 323;
无线模块功能配置模块 323, 配置为对所述当前配置进行 ^ί'爹改。
实际应用时, UEFI启动配置模块、 UEFI驱动通信模、 及 UEFI命令解 析模块可由可接入移动宽带网的用户终端配置装置中的中央处理器 ( 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; 启动 检测模块、 USB Gadget驱动通信模块以及无线模块功能配置模块可由可接 入移动宽带网的用户终端配置装置中的 CPU、 DSP或 FPGA结合电路实现。
本发明实施例还提供了一种用户终端, 包括图 3 所示的可接入移动宽 带网的用户终端配置装置的基本结构及其各种变形和等同替换, 不做赘述。
图 4显示了本发明实施例提供的内置 3G\4G无线模块的示意图; 如图 4所示, 具有如下特征: 带有 3G或 4G功能的中央处理器(CPU, Central Processing Unit )单元、 eMMC存储芯片、 双倍速率同步动态随机存储器 ( DDR, Double Data Rate )、 Wi-Fi模块、 微(micro )安全数码卡 ( SD, Secure Digital memory card )。 其中, CPU单元配置为运行嵌入式操作系统, 提供 3G/4G网络接入的协议栈, 配置为管理内存、 进程调度、 文件管理、 3G/4G协议栈管理及接入; eMMC存储芯片作为主要的存储介质, 配置为 保存操作系统所需文件, 同时也提供用户文件的存储; DDR内存作为处理 器的内存单元参与嵌入式操作系统的运行和管理; Wi-Fi模块配置为提供无 线局域网 (WLAN, Wireless LAN )连接、 组建无线局域网、 完成无线局域 网覆盖, 同时又具有站点(station )功能, 可以连接到其他的 Wi-Fi接入点 ( AP, Access Point )上,提供该设备不同于 3G\4G无线接入互联网 Internet 的 Wi-Fi热点接入功能; micro SD卡主要作为 flash介质存储的补充, 可以 用来存放用户的数据。
图 5显示了本发明实施例提供的外插 3G\4G无线模块的示意图, 如图 4所示, 分为两类, 一类其主 CPU侧设备提供广域网 (WAN, Wide Area Network )连接, 组建局域网, 完成无线局域网覆盖, 同时可具有 station功 能, 可连接到其它 Wi-Fi AP上。 这类设备只通过外插的 3G/4G无线模块提 供 Internet连接, 自己管理 WLAN; 另一类设备主 CPU自身不提供 3G/4G WAN接入和 WLAN接入, 3G/4G Internet连接和 WLAN连接全部由 3G/4G 无线模块负责。
图 6是本发明实施例提供的基于 UEFI的可接入移动宽带网的用户终端 配置示意图, 如图 6所示, 包括主 CPU侧设备和配置为接入移动宽带网的 无线通信侧设备。 具体地说, 所述主 CPU侧设备包括 UEFI启动配置模块、 UEFI驱动通信模块、 UEFI命令解析模块、 UEFI业务逻辑模块和 UEFI显 示模块; 所述配置为接入移动宽带网的无线通信侧设备包括启动检测模块、 USB Gadget驱动通信模块和无线模块功能配置模块。
主 CPU侧设备的 UEFI启动配置模块配置为在系统启动停止在 UEFI 时通知 3G/4G无线模块的启动检测模块, 如通过 GPIO 通知、 或主动与 3G/4G无线模块发起通信握手等方式; 主 CPU侧设备的 UEFI驱动通信模 块配置为在主 CPU侧设备建立上层业务和底层硬件的通道;主 CPU侧设备 的 UEFI命令解析模块打包主 CPU侧设备的 UEFI业务逻辑模块发给无线通 信侧设备的命令,同时解析 UEFI驱动通信模块收到的无线通信侧设备传来 的命令, 并送给 UEFI业务逻辑模块处理; UEFI业务逻辑模块存放了所有 无线通信侧设备配置的业务逻辑, 通过和无线通信侧设备的通信交互获取 到无线通信侧设备的配置和功能,同时控制 UEFI显示模块将配置项和内容 显示到屏幕上; UEFI显示模块接收显示数据并将其显示到屏幕上。
无线通信侧设备的启动检测模块通过获取 GPIO状态或与主 CPU侧设 备通信握手等方式, 得知需要进入设备配置状态, 并通知无线通信侧设备 的 USB Gadget驱动通信模块。 USB Gadget驱动通信模块获取到启动检测 模块发来的通知消息后, 切换到能够和主 CPU侧设备通信的合适的 USB gadget 功能接口, 并通知无线通信侧设备的无线模块功能配置模块已准备 好; 无线模块功能配置模块收到 USB gadget驱动通信模块发来的消息后, 通过合适的 USB gadget功能接口就能和主 CPU侧设备侧进行通信。
本发明实施例整个配置过程包括如下步骤:
第一步、 用户在设备启动到 UEFI时拦截设备的正常启动, 停在 UEFI 配置界面。
第二步、 UEFI启动配置模块通过 GPIO通知、 或通信握手的方式通知 无线通信侧设备的启动检测模块, 3 G\4G 无线模块的启动检测模块通知 USB Gadget驱动通信模块切换到合适的 USB Gadget功能接口, 同时通知 无线模块功能配置模块进入等待状态。 在主 CPU侧设备, UEFI启动配置 模块通知 UEFI驱动通信模块切换到合适的 USB功能接口, 以便和无线通 信侧设备通信。
第三步、当用户成功输入管理员密码( Supervisor Password )之后, UEFI 显示模块的配置菜单会调用 UEFI业务逻辑模块, UEFI业务逻辑模块通过 UEFI命令解析模块发起状态查询,得知 3G\4G无线模块的设备能力和设备 配置, 将其显示在界面上, 并提供给用户配置的接口。
此时,要求用户输入 Supervisor Password,这个管理员密码和传统 UEFI 设置菜单的管理员密码功能一样, 但是这个密码还管理了用户对无线网络 适配器的配置。
首先通过交互命令查询无线通信侧设备的配置和能力, 如是否使用无 线通信侧设备、 是否支持语音电话、 短信、 配置 WAN连接和 WLAN连接 等, 包括各配置下的详细用户配置信息。 当具体的配置项不支持或功能被 用户屏蔽时, 将这些配置项置灰。
第四步、 用户通过 UEFI配置菜单对无线通信侧设备的配置进行修改。 用户修改界面上的配置, 通过交互命令发给无线通信侧设备设置命令, 无线通信侧设备收到配置命令后将配置结果通过交互命令返回给 UEFI命 令解析模块, UEFI命令解析模块将消息解析后发送给 UEFI业务逻辑模块, UEFI业务逻辑模块将处理结果通知 UEFI显示模块, 将配置结果显示到屏 幕上。
对于主动上报的配置修改, 用户的一个设置可能引起多个配置改变, 这些配置可以以多条命令上报给主 CPU侧设备, UEFI命令解析模块会逐 个解析, 交给 UEFI业务逻辑模块处理, 然后上报给 UEFI显示模块通知用 户配置已改变。
第五步、用户退出 UEFI配置菜单,正常启动。正常启动不会调用 UEFI 启动配置模块, 因此无论是主 CPU侧设备还是无线通信侧设备都是正常启 动使用的 USB功能接口, 也不会触发相关的启动配置流程。
综上所述, 本发明实施例具有以下技术效果:
本发明实施例为一台设备上的所有用户提供了一致的可接入移动宽带 网的用户终端配置接口和用户界面, 增强了设备的安全性和用户体验。
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, 本发明可釆用硬件实施例、 软件实施例、 或结 合软件和硬件方面的实施例的形式。 而且, 本发明可釆用在一个或多个其 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 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。
尽管上文对本发明进行了详细说明, 但是本发明不限于此, 本技术领 域技术人员可以根据本发明的原理进行各种修改。 因此, 凡按照本发明原 理所作的修改, 都应当理解为落入本发明的保护范围。

Claims

权利要求书
1、 一种可接入移动宽带网的用户终端配置方法, 包括:
在利用统一可扩展固件接口 UEFI 进行启动引导期间, 用户终端的主 CPU侧设备通知所述用户终端的无线通信侧设备切换到适配 USB接口; 所述主 CPU侧设备利用所切换的适配 USB接口与所述无线通信侧设备 通信, 获得所述无线通信侧设备的当前配置;
所述主 CPU侧设备根据用户的输入信息生成对所述当前配置进行重新 配置的再配置指令, 并发送给所述无线通信侧设备;
所述无线通信侧设备按照所述再配置指令, 对所述当前配置进行修改。
2、 根据权利要求 1所述的方法, 其中, 所述主 CPU侧设备包括 UEFI 启动配置模块、 UEFI驱动通信模块、 UEFI命令解析模块、 UEFI业务逻辑 模块以及 UEFI显示模块。
3、 根据权利要求 2所述的方法, 其中, 所述无线通信侧设备是内置在 所述用户终端的 3G\4G无线模块或外插在所述用户终端的 3G\4G无线模 块。
4、 根据权利要求 3所述的方法, 其中, 所述无线通信侧设备包括启动 检测模块、 USB Gadget驱动通信模块以及无线模块功能配置模块。
5、 根据权利要求 4所述的方法, 其中, 所述主 CPU侧设备通知所述 无线通信侧设备切换到适配 USB接口包括:
所述 UEFI启动配置模块通过通用输入 /输出 GPIO通知或通信握手的方 式向所述启动检测模块发送通知信息;
所述启动检测模块收到所述通知信息后, 通知所述 USB小工具 Gadget 驱动通知模块切换到适配 USB接口。
6、 根据权利要求 5所述的方法, 其中, 所述主 CPU侧设备利用所切 换的适配 USB接口与所述无线通信侧设备通信, 获得所述无线通信侧设备 的当前配置包括:
所述 UEFI命令解析模块利用所切换的适配 USB接口, 向所述无线模 块功能配置模块发送状态查询请求;
所述无线模块功能配置模块接收到状态查询请求后, 将所述无线通信 侧设备的当前状态命令通过所切换的适配 USB接口发送到所述 UEFI命令 解析模块;
所述 UEFI命令解析模块通过解析所接收到的当前状态命令,获得所述 无线通信侧设备的当前配置。
7、 根据权利要求 6所述的方法, 其中, 所述主 CPU侧设备根据用户 的输入信息生成对所述当前配置进行重新配置的再配置指令, 所述 UEFI 命令解析模块利用所切换的适配 USB接口发送给所述无线模块功能配置模 块。
8、 一种可接入移动宽带网的用户终端配置装置, 包括: 主 CPU侧单 元及无线通信侧单元; 其中,
所述主 CPU侧单元, 配置为在利用 UEFI进行启动引导期间, 通知无 线通信侧单元切换到适配 USB接口;利用所切换的适配 USB接口与无线通 信侧单元通信, 获得所述无线通信侧单元的当前配置; 根据用户的输入信 息生成对所述当前配置进行重新配置的再配置指令, 并发送给所述无线通 信侧单元;
所述无线通信侧单元, 配置为按照所述再配置指令, 对所述当前配置 进行修改。
9、根据权利要求 8所述的装置, 其中, 所述主 CPU侧单元包括: UEFI 启动配置模块、 UEFI驱动通信模块、 及 UEFI命令解析模块; 所述无线通 信侧单元包括: 启动检测模块、 USB Gadget驱动通信模块以及无线模块功 能配置模块; 其中, 所述 UEFI启动配置模块, 配置为通过 GPIO通知或通信握手的方式向 所述启动检测模块发送通知信息;
所述启动检测模块,配置为收到所述通知信息后,通知所述 USB Gadget 驱动通知模块切换到适配 USB接口;
所述 UEFI命令解析模块, 配置为利用所切换的适配 USB接口, 向所 述无线模块功能配置模块发送状态查询请求; 通过解析所收到的当前状态 命令, 获得所述无线通信侧单元的当前配置; 并利用所切换的适配 USB接 口将再配置指令发送给所述无线模块功能配置模块;
所述无线模块功能配置模块, 配置为收到状态查询请求后, 将所述无 线通信侧单元的当前状态命令通过所切换的适配 USB 接口发送到所述 UEFI命令解析模块; 并在收到再配置指令后, 对所述当前配置进行修改; 所述 UEFI驱动通信模块,配置为才艮据用户的输入信息生成所述当前配 置进行重新配置的再配置指令。
10、 一种用户终端, 所述用户终端包括如权利要求 8或 9所述的可接 入移动宽带网的用户终端配置装置。
11、 一种计算机存储介质, 所述计算机存储介质包括一组指令, 当执 行所述指令时, 引起至少一个处理器执行如权利要求 1至 7任一项所述的 可接入移动宽带网的用户终端配置方法。
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