WO2019029039A1 - 开机画面设置方法和装置 - Google Patents
开机画面设置方法和装置 Download PDFInfo
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- WO2019029039A1 WO2019029039A1 PCT/CN2017/111406 CN2017111406W WO2019029039A1 WO 2019029039 A1 WO2019029039 A1 WO 2019029039A1 CN 2017111406 W CN2017111406 W CN 2017111406W WO 2019029039 A1 WO2019029039 A1 WO 2019029039A1
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- Prior art keywords
- screen
- logo
- image
- setting
- picture
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Classifications
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- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- 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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- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- 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
- G06F9/4401—Bootstrapping
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- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- 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
- G06F9/451—Execution arrangements for user interfaces
Definitions
- the present invention relates to the field of vehicle technology, and in particular, to a method and apparatus for setting a screen of a downtime.
- the current solution is to preset a large number of down screens in the memory of the in-vehicle system, and the user can replace different screens as needed, but this way Will consume a lot of memory resources.
- the preset down screen does not meet the user's needs, the in-vehicle system needs to be connected to the network, and the logo image is downloaded from the network to set the down screen that the user needs, but once the network cannot be connected, the setting cannot be made, and the flexibility is lacking. Sex.
- the existing screen setting mode requires a large amount of memory resources, and a new down screen is required, which requires Internet dependence and poor flexibility.
- a main object of the present invention is to provide a method and apparatus for setting up a screen of a downtime, which aims to reduce the consumption of memory resources and improve the flexibility of setting up screens of the downtime.
- an embodiment of the present invention provides a method for setting a screen of a downtime, the apparatus comprising the following steps:
- the step of acquiring the logo picture from the external device includes: [0011] starting the Bluetooth module;
- the step of acquiring the logo picture from the external device includes:
- the step of generating a down screen according to the logo picture comprises:
- the step of acquiring the logo picture from the external device includes:
- the present invention also provides a device screen setting device, the device comprising:
- an obtaining module configured to acquire a logo picture from an external device
- a generating module configured to generate a down screen according to the logo picture
- a saving module configured to save the down screen to the memory, so that the system starts to load and display the down screen from the memory.
- the acquiring module includes:
- a Bluetooth boot unit configured to start a Bluetooth module
- a first receiving unit configured to receive, by using the Bluetooth module, a logo picture sent by an external device
- the first saving unit is configured to save the logo image to the specified folder.
- the acquiring module includes:
- a WIFI startup unit configured to start a WIFI module
- a second receiving unit configured to receive, by using the WIFI module, a logo picture sent by an external device
- the second saving unit is configured to save the logo image to the specified folder.
- the generating module includes:
- a first mode entry unit configured to enter a down screen setting mode
- a first retrieving unit configured to retrieve the logo picture from the specified folder
- an image adjustment unit configured to adjust a size of the logo image according to a resolution of the screen
- a format conversion unit configured to convert the logo image into an image in a RAW format, and use the image in the RAW format as a down screen.
- the acquiring module includes:
- a determining unit configured to determine whether there is a logo picture in the storage device when detecting that the storage device is connected to the storage device;
- a second mode entry unit configured to enter a down screen setting mode when there is a logo picture in the storage device
- the second retrieving unit is configured to retrieve the logo picture from the storage device.
- Embodiments of the present invention also provide an in-vehicle system including a memory, a processor, and at least one application stored in the memory and configured to be executed by the processor, the application being configured It is used to execute the aforementioned screen setting method.
- a method for setting a screen of a downtime provided by an embodiment of the present invention, by acquiring a logo picture from an external device, generating a down screen according to the logo picture and saving the file to a memory, realizing a customized setting of the screen of the down screen. Therefore, it is not necessary to preset a large number of down screens in the memory to meet the diversified needs of users, thereby greatly reducing the consumption of memory resources; also eliminating the need to download logo images from the network, reducing the dependence on the network, and improving the custom downtime.
- the flexibility of the picture By adopting the solution of the embodiment of the invention, the customization requirement of the down screen of the diversified vehicle system can be flexibly responded, and the additional consumption of the memory is reduced, and the memory cost is saved.
- 1 is a flowchart of a first embodiment of a method for setting a screen of a downtime according to the present invention
- 2 is a schematic diagram of an engineering setting interface in an embodiment of the present invention
- FIG. 3 is a schematic diagram of a screen setting of a downtime in an embodiment of the present invention.
- FIG. 4 is a flowchart of a second embodiment of a method for setting a screen of a downtime according to the present invention
- FIG. 5 is a flowchart of a third embodiment of a method for setting a screen of a downtime according to the present invention.
- FIG. 6 is a block diagram showing an embodiment of a down screen setting device of the present invention.
- FIG. 7 is a block diagram of the acquisition module of FIG. 6;
- FIG. 8 is another block diagram of the acquisition module of FIG. 6;
- FIG. 9 is another block diagram of the acquisition module of FIG. 6;
- FIG. 10 is a block diagram of the generation module of FIG. 6.
- the method and device for setting up the screen of the embodiment of the present invention are mainly applied to an in-vehicle system, and can also be used for a terminal device such as a mobile phone, a tablet, a notebook computer, a personal computer, etc., which is not limited by the present invention.
- a terminal device such as a mobile phone, a tablet, a notebook computer, a personal computer, etc.
- the following is a detailed description of the application to the in-vehicle system.
- FIG. 1 an embodiment of a method for setting a screen of a downtime according to the present invention is provided.
- the method includes the following steps.
- the external device may be a terminal device such as a mobile phone or a tablet, or may be a storage device such as a USB disk or a mobile hard disk.
- the in-vehicle system activates the Bluetooth module, establishes a Bluetooth connection with the terminal device through the Bluetooth module, receives the logo image sent by the terminal device, and saves the logo image to a designated folder (such as a media folder).
- a designated folder such as a media folder
- the in-vehicle system starts the WIFI module, establishes a WIFI connection with the terminal device through the WIFI module, receives the logo image sent by the terminal device, and saves the logo image to the designated folder.
- the in-vehicle system starts the NFC module, and when the terminal device is close to the in-vehicle system, the in-vehicle system passes
- the NFC module receives the logo picture sent by the terminal device, and saves the logo picture to the specified folder.
- the in-vehicle system can also obtain the logo picture from the external device through other short-range wireless communication methods.
- the in-vehicle system detects that there is a storage device access port, determines whether there is a logo picture in the storage device, and when there is a logo picture in the storage device, enters the down screen setting mode, and The logo picture is read in the storage device.
- the in-vehicle system can enter the down screen setting mode by: first receiving the password input by the user on the display screen, and then verifying whether the input password is correct, and if correct, entering The project setting interface shown in Figure 2.
- the project setting interface there is a "down screen setting” option, which can also include “write number setting", "other settings” and other options.
- the user clicks the "down screen setting” option the user enters the screen setting mode. .
- the in-vehicle system can read the logo picture from the storage device by the following manner: After entering the screen setting mode, the setting interface can provide a plurality of logo images, as shown in FIG. 3 .
- the display includes two methods of "near picture” and “nearby blue picture”, and may also include “near N FC image”, “near WIFI picture”, etc.; when the user clicks "near ⁇ " After the picture is retrieved, the data in the storage device is read, the storage time of the logo picture in the storage device is identified, and a logo picture recently stored in the storage device is retrieved.
- the in-vehicle system acquires the logo picture from the external device by wireless communication
- the in-vehicle system enters the down screen setting mode, retrieves the logo picture from the designated folder, and adjusts the size of the logo image according to the resolution of the screen,
- the logo image is converted to an image in RAW format, and the image in RAW format is used as the down screen.
- the in-vehicle system receives the password input by the user on the display screen, verifies whether the input password is correct, and if correct, enters the engineering setting interface shown in FIG. 2.
- the engineering setting interface shown in FIG. 2.
- the project setting interface there is a "down screen setting” option, which can also include “write number setting”, "other settings” and other options.
- the user clicks the "down screen setting” option the user enters the screen setting mode. .
- a plurality of logo pictures can be obtained in the setting interface, as shown in FIG. 3, including “near picture” and “near blue picture”. In addition, it may also include “near NFC image”, “near ⁇ WIFI picture”, etc.; when the user clicks on the "near ⁇ bluetooth picture” mode, the data in the specified folder is read, and the specified file is identified.
- the storage of the logo image received by the Bluetooth in the clip retrieves a Bluetooth received logo image recently stored in the storage device.
- the logo image is retrieved, the logo image is modified to a picture that is consistent with the screen resolution, and the logo image is converted into an RAW format image that can be directly read and displayed, and the RAW format image is set. Down screen.
- the in-vehicle system acquires the logo picture from the storage device, the logo picture is directly modified to be separated from the screen.
- the image with the same resolution is converted into a RAW format image that can be directly read and displayed by the system.
- the image in the RAW format is the set down screen.
- the screen is saved to a readable and writable partition in the memory with a specific name. After the system is started, the saved screen is loaded directly from the memory and displayed. The screen is the user-defined flag.
- the method for setting the screen of the downtime according to the embodiment of the present invention realizes the custom setting of the screen of the down screen by acquiring the logo picture from the external device, generating the down screen according to the logo picture, and saving to the memory. Therefore, it is not necessary to preset a large number of down screens in the memory to meet the diversified needs of users, thereby greatly reducing the consumption of memory resources; also eliminating the need to download logo images from the network, reducing the dependence on the network, and improving the custom downtime.
- the flexibility of the picture By adopting the solution of the embodiment of the invention, the customization requirement of the screen of the diversified in-vehicle system can be flexibly responded, and the additional consumption of the memory is reduced, and the memory cost is saved.
- a second embodiment of a method for setting a screen of a downtime according to the present invention includes the following steps:
- S22 Receive a logo picture sent by an external device by using a Bluetooth module.
- the vehicle system pops up a password input interface, receives the password entered by the user on the display screen, and then verifies whether the input password is correct. If correct, the engineering setting shown in FIG. 2 is entered. interface.
- the engineering setting shown in FIG. 2 is entered. interface.
- the project setting interface there is a "down screen setting” option, which can also include “write number setting", "other settings” and other options. When the user clicks the "down screen setting” option, the user enters the screen setting mode. .
- the vehicle system can provide a plurality of logo pictures in the setting interface, as shown in FIG. 3, including "near picture” and “nearby blue picture”.
- the method can also include "near NFC image", "near ⁇ WIFI picture” and the like.
- the car system reads the data in the specified folder and identifies the specified folder. After the storage of the logo image received by the Bluetooth, a picture of the Bluetooth received logo recently stored in the storage device is retrieved.
- the vehicle system modifies the logo image to a picture that is consistent with the screen resolution.
- the logo image of the external device is acquired through Bluetooth and the down screen is generated, thereby realizing the custom setting of the screen of the downtime, reducing the consumption of the memory resource, and improving the flexibility of the customized screen.
- FIG. 5 a third embodiment of a method for setting a screen of a downtime according to the present invention is proposed.
- the method includes the following steps:
- step S31 When it is detected that there is a storage device access, determine whether there is a logo picture in the storage device. When there is a logo picture in the storage device, go to step S32; when there is no logo picture in the storage device, the process ends.
- the in-vehicle system detects that there is a storage device access port, scans the data in the storage device, and determines whether there is a logo picture in the storage device.
- a logo picture in the storage device.
- the in-vehicle system pops up a password input interface, receives the password input by the user on the display screen, and then verifies whether the input password is correct. If it is correct, the program entry interface shown in FIG. 2 is entered. .
- the project setting interface there is a "down screen setting” option, which can also include “write number setting", "other settings” and other options. When the user clicks the "down screen setting” option, the user enters the screen setting mode. .
- the vehicle system can provide a plurality of logo pictures in the setting interface, as shown in FIG. 3, including "near picture” and “nearby blue picture”.
- the method can also include "near NFC image", "near ⁇ WIFI picture” and the like.
- the in-vehicle system modifies the logo image to a picture that is consistent with the screen resolution.
- S35 Convert the logo image into an image in RAW format, and use the image in RAW format as the down screen.
- the logo picture is directly retrieved from the storage device and the down screen is generated, which realizes the customized setting of the down screen, reduces the consumption of memory resources, and improves the flexibility of the customized screen.
- the user can directly input the logo directly in the logo input box at the bottom as shown in FIG. 3 (for example, input "BMW"), and the vehicle system receives the logo input from the logo input box, and then The flag writes the flag to run the letter item in the code group, and saves the flag to run the code group.
- the flag running code group is directly loaded, and the down screen is displayed.
- the down screen has a user-defined setting flag.
- the device includes an acquisition module 1
- Acquisition module 10 for acquiring a logo picture from an external device.
- the external device may be a terminal device such as a mobile phone or a tablet, or may be a storage device such as a USB disk or a mobile hard disk.
- the acquiring module 10 can obtain the logo image sent by the external device by using a short-range communication method such as Bluetooth, WIFI, or NFC.
- the obtaining module 10 includes a Bluetooth booting unit and 11, a first receiving unit 12, and a first saving unit 13, wherein: a Bluetooth booting unit and 11 are used to activate the Bluetooth module;
- a receiving unit 12 is configured to receive a logo image sent by the external device by using the Bluetooth module.
- the first saving unit 13 is configured to save the logo image to a specified folder (such as a media folder).
- the obtaining module 10 includes a WIFI starting unit 14, a second receiving unit 15, and a second saving unit 16, wherein: the WIFI starting unit 14 is configured to start the WIFI module; Unit 15
- the obtaining module 10 includes a determining unit 17, a second mode entering unit 18, and a second calling unit 19, where: the determining unit 17 is configured to detect when a storage device is detected In the storage device, it is determined whether there is a logo picture in the storage device; the second mode entry unit 18 is configured to enter the down screen setting mode when there is a logo picture in the storage device; and the second retrieval unit 19 is configured to be used in the storage device. retrieve the logo image.
- the determining unit 17 detects that there is a storage device access port, scans the data in the storage device, and determines whether there is a logo picture in the storage device.
- the determining unit 17 detects that there is a storage device access port, scans the data in the storage device, and determines whether there is a logo picture in the storage device.
- the second mode entry unit 18 can enter the down screen setting mode by: popping up a password input interface, receiving a password input by the user on the display screen, verifying whether the input password is correct, if correct Then enter the project setting interface shown in Figure 2.
- the project setting interface there is a "down screen setting” option, which can also include “write number setting", "other settings” and other options.
- the user clicks the "down screen setting” option the user enters the screen setting mode. .
- the second retrieving unit 19 can read the logo picture from the storage device in the following manner: After entering the screen setting mode, the setting interface can provide a plurality of logo images. As shown in FIG. 3, it includes two methods of "near picture” and “nearby blue picture”, and may also include “near NFC image", "near WIFI picture”, etc.; when the user clicks After the "near picture” is retrieved, the data in the storage device is read, the storage time of the logo picture in the storage device is identified, and a logo picture recently stored in the storage device is retrieved.
- the in-vehicle system can also obtain the logo picture from the external device by using other short-range wireless communication methods, which will not be enumerated in the present invention.
- the generating module 20 is configured to generate a down screen according to the logo picture.
- the generation module 20 includes the first mode entry unit 21, the first retrieval unit 22, the image adjustment unit 23, and the format conversion as shown in FIG.
- the first mode entry unit 21 pops up the password input interface, receives the password input by the user on the display screen, and verifies whether the input password is correct. If it is correct, the program setting interface shown in FIG. 2 is entered; in the engineering setting interface, There is a “down screen setting” option, which can also include “write number setting", "other settings” and other options. When the user clicks the "down screen setting” option, the user enters the screen setting mode.
- the first capturing unit 22 can provide a plurality of logo images in the setting interface, as shown in FIG. 3, including "nearby pictures” and “nearby Bluetooth pictures”.
- Two kinds of retrieval methods can also include “near NFC image”, “near ⁇ WIFI picture” and other retrieval methods; when the user clicks on the "near ⁇ Bluetooth picture” retrieval mode, then read in the specified folder The data identifies the storage time of the logo image received through Bluetooth in the specified folder, and retrieves a Bluetooth received logo image recently stored in the storage device.
- the generating module 20 may include only the image adjusting unit 23 and the format converting unit 24, and the image adjusting unit 23 directly modifies the flag picture retrieved from the storage device to be distinguished from the screen.
- the image of the same size rate, the format conversion unit 24 converts the logo image into an image of the RAW format that the system can directly read and display, and the image of the RAW format is the set down screen.
- Save Module 30 Used to save the down screen to the memory so that the system starts up, loads from the memory and displays the screen.
- the saving module 30 saves the down screen in a partition that can be read and written in a specific name. After the system is started, the saved screen is directly loaded from the memory and displayed. The screen is the user-defined flag.
- the down screen setting device of the embodiment of the present invention realizes the custom setting of the down screen by acquiring the logo picture from the external device, generating the down screen according to the logo picture, and saving to the memory. Therefore, it is not necessary to preset a large number of down screens in the memory to meet the diversified needs of users, thereby greatly reducing the consumption of memory resources; also eliminating the need to download logo images from the network, reducing the dependence on the network, and improving the custom downtime. The flexibility of the picture.
- the customization requirement of the screen of the diversified in-vehicle system can be flexibly responded, and the additional consumption of the memory is reduced, and the memory cost is saved.
- the present invention also provides an in-vehicle system including a memory, a processor, and at least one An application stored in the memory and configured to be executed by the processor, the application being configured to execute a down screen setting method.
- the method comprises the steps of: acquiring a logo picture from an external device; generating a down screen according to the logo picture; saving the down screen to the memory, so that the system starts up, loads from the memory, and displays the down screen.
- the method for setting the screen of the screen in the embodiment is the method for setting the screen of the screen in the above embodiment of the present invention, and details are not described herein again.
- the present invention includes apparatus that is directed to performing one or more of the operations described herein.
- These devices may be specially designed and manufactured for the required purposes, or may also include known devices in a general purpose computer.
- These devices have computer programs stored therein that are selectively activated or reconfigured.
- Such computer programs may be stored in a device (eg, computer) readable medium or in any type of medium suitable for storing electronic instructions and respectively coupled to a bus, including but not limited to any Types of disks (including floppy disks, hard disks, CDs, CD-ROMs, and magneto-optical disks), ROM (Read-Only Memory), RAM (Random Access Memory), EPROM (Erasable Programmable Read-Only)
- a readable medium includes any medium that is stored or transmitted by a device (e.g., a computer) in a readable form.
- each block of the block diagrams and/or block diagrams and/or flow diagrams can be implemented by computer program instructions and/or in the block diagrams and/or block diagrams and/or flow diagrams.
- the combination of boxes Those skilled in the art will appreciate that these computer program instructions can be implemented by a general purpose computer, a professional computer, or a processor of other programmable data processing methods, such that the processor is executed by a computer or other programmable data processing method.
- the block diagrams and/or block diagrams of the invention and/or the schemes specified in the blocks or blocks of the flow diagram are invented.
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Abstract
本发明揭示了一种开机画面设置方法和装置,所述方法包括以下步骤:从外部设备获取标志图片;根据所述标志图片生成开机画面;保存所述开机画面至内存,以使系统启动时从所述内存加载并显示所述开机画面。从而无需在内存中预置大量的开机画面来满足用户的多样化需求,大大减少了内存资源的消耗;也无需从网络上下载标志图片,减小了对网络的依赖,提高了定制开机画面的灵活性。采用本发明实施例的方案,能够灵活应对多样化的车载系统的开机画面的定制需求,并减少对内存的额外消耗,节省内存成本。
Description
技术领域
[0001] 本发明涉及车载技术领域, 特别是涉及到一种幵机画面设置方法和装置。
背景技术
[0002] 随着 Android系统的发展, 基于 Android系统的车载系统 (车机) 取代传统的基 于 Win CE系统的车载系统已是不可阻挡的趋势。 由于车型及品牌商的多样化, 车载系统的幵机画面的更换设置则属于重点需求。
[0003] 为了满足车载系统的幵机画面的多样化需求, 目前的解决方案是在车载系统的 内存中预置大量的幵机画面, 用户可以根据需要更换不同的幵机画面, 但这种 方式会占用大量的内存资源。 并且, 当预置的幵机画面也不符合用户需求吋, 则需要车载系统连接网络, 从网络上下载标志图片来设置用户需要的幵机画面 , 但一旦不能联网吋则无法进行设置, 缺乏灵活性。
[0004] 综上所述, 现有的幵机画面设置方式, 需要消耗大量的内存资源, 并且定制新 的幵机画面吋, 需要依赖互联网, 灵活性差。
技术问题
[0005] 本发明的主要目的为提供一种幵机画面设置方法和装置, 旨在减少内存资源的 消耗, 提高幵机画面设置的灵活性。
问题的解决方案
技术解决方案
[0006] 为达以上目的, 本发明实施例提出一种幵机画面设置方法, 所述装置包括以下 步骤:
[0007] 从外部设备获取标志图片;
[0008] 根据所述标志图片生成幵机画面;
[0009] 保存所述幵机画面至内存, 以使系统启动吋从所述内存加载并显示所述幵机画 面。
[0010] 可选地, 所述从外部设备获取标志图片的步骤包括:
[0011] 启动蓝牙模块;
[0012] 通过所述蓝牙模块接收外部设备发送的标志图片;
[0013] 保存所述标志图片至指定文件夹。
[0014] 可选地, 所述从外部设备获取标志图片的步骤包括:
[0015] 启动 WIFI模块;
[0016] 通过所述 WIFI模块接收外部设备发送的标志图片;
[0017] 保存所述标志图片至指定文件夹。
[0018] 可选地, 所述根据所述标志图片生成幵机画面的步骤包括:
[0019] 进入幵机画面设置模式;
[0020] 从所述指定文件夹中调取所述标志图片;
[0021] 根据屏幕的分辨率调整所述标志图片的大小;
[0022] 将所述标志图片转换为 RAW格式的图像, 并将所述 RAW格式的图像作为幵机 画面。
[0023] 可选地, 所述从外部设备获取标志图片的步骤包括:
[0024] 当检测到有存储设备接入吋, 判断所述存储设备中是否有标志图片;
[0025] 当所述存储设备中有标志图片吋, 进入幵机画面设置模式;
[0026] 从所述存储设备中调取所述标志图片。
[0027] 本发明同吋提出一种幵机画面设置装置, 所述装置包括:
[0028] 获取模块, 用于从外部设备获取标志图片;
[0029] 生成模块, 用于根据所述标志图片生成幵机画面;
[0030] 保存模块, 用于保存所述幵机画面至内存, 以使系统启动吋从所述内存加载并 显示所述幵机画面。
[0031] 可选地, 所述获取模块包括:
[0032] 蓝牙启动单元, 用于启动蓝牙模块;
[0033] 第一接收单元, 用于通过所述蓝牙模块接收外部设备发送的标志图片;
[0034] 第一保存单元, 用于保存所述标志图片至指定文件夹。
[0035] 可选地, 所述获取模块包括:
[0036] WIFI启动单元, 用于启动 WIFI模块;
[0037] 第二接收单元, 用于通过所述 WIFI模块接收外部设备发送的标志图片;
[0038] 第二保存单元, 用于保存所述标志图片至指定文件夹。
[0039] 可选地, 所述生成模块包括:
[0040] 第一模式进入单元, 用于进入幵机画面设置模式;
[0041] 第一调取单元, 用于从所述指定文件夹中调取所述标志图片;
[0042] 图像调整单元, 用于根据屏幕的分辨率调整所述标志图片的大小;
[0043] 格式转换单元, 用于将所述标志图片转换为 RAW格式的图像, 并将所述 RAW 格式的图像作为幵机画面。
[0044] 可选地, 所述获取模块包括:
[0045] 判断单元, 用于当检测到有存储设备接入吋, 判断所述存储设备中是否有标志 图片;
[0046] 第二模式进入单元, 用于当所述存储设备中有标志图片吋, 进入幵机画面设置 模式;
[0047] 第二调取单元, 用于从所述存储设备中调取所述标志图片。
[0048] 本发明实施例同吋提出一种车载系统, 包括存储器、 处理器和至少一个被存储 在所述存储器中并被配置为由所述处理器执行的应用程序, 所述应用程序被配 置为用于执行前述幵机画面设置方法。
发明的有益效果
有益效果
[0049] 本发明实施例所提供的一种幵机画面设置方法, 通过从外部设备获取标志图片 , 根据标志图片生成幵机画面并保存至内存, 实现幵机画面的自定义设置。 从 而无需在内存中预置大量的幵机画面来满足用户的多样化需求, 大大减少了内 存资源的消耗; 也无需从网络上下载标志图片, 减小了对网络的依赖, 提高了 定制幵机画面的灵活性。 采用本发明实施例的方案, 能够灵活应对多样化的车 载系统的幵机画面的定制需求, 并减少对内存的额外消耗, 节省内存成本。 对附图的简要说明
附图说明
[0050] 图 1是本发明的幵机画面设置方法第一实施例的流程图;
[0051] 图 2是本发明实施例中工程设置界面的示意图;
[0052] 图 3是是本发明实施例中幵机画面设置的示意图;
[0053] 图 4是本发明的幵机画面设置方法第二实施例的流程图;
[0054] 图 5是本发明的幵机画面设置方法第三实施例的流程图;
[0055] 图 6是本发明的幵机画面设置装置一实施例的模块示意图;
[0056] 图 7是图 6中的获取模块的模块示意图;
[0057] 图 8是图 6中的获取模块的又一模块示意图;
[0058] 图 9是图 6中的获取模块的又一模块示意图;
[0059] 图 10是图 6中的生成模块的模块示意图。
[0060] 本发明目的的实现、 功能特点及优点将结合实施例, 参照附图做进一步说明。
实施该发明的最佳实施例
本发明的最佳实施方式
[0061] 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。
[0062] 下面详细描述本发明的实施例, 所述实施例的示例在附图中示出, 其中自始至 终相同或类似的标号表示相同或类似的元件或具有相同或类似功能的元件。 下 面通过参考附图描述的实施例是示例性的, 仅用于解释本发明, 而不能解释为 对本发明的限制。
[0063] 本技术领域技术人员可以理解, 除非特意声明, 这里使用的单数形式"一"、 " 一个"、 "所述 "和"该"也可包括复数形式。 应该进一步理解的是, 本发明的说明 书中使用的措辞"包括"是指存在所述特征、 整数、 步骤、 操作、 元件和 /或组件 , 但是并不排除存在或添加一个或多个其他特征、 整数、 步骤、 操作、 元件、 组件和 /或它们的组。 应该理解, 当我们称元件被"连接"或"耦接"到另一元件吋 , 它可以直接连接或耦接到其他元件, 或者也可以存在中间元件。 此外, 这里 使用的"连接"或"耦接"可以包括无线连接或无线耦接。 这里使用的措辞 "和 /或"包 括一个或更多个相关联的列出项的全部或任一单元和全部组合。
[0064] 本技术领域技术人员可以理解, 除非另外定义, 这里使用的所有术语 (包括技 术术语和科学术语) , 具有与本发明所属领域中的普通技术人员的一般理解相
同的意义。 还应该理解的是, 诸如通用字典中定义的那些术语, 应该被理解为 具有与现有技术的上下文中的意义一致的意义, 并且除非像这里一样被特定定 义, 否则不会用理想化或过于正式的含义来解释。
[0065] 本发明实施例的幵机画面设置方法和装置, 主要应用于车载系统, 当然也可以 用于手机、 平板、 笔记本电脑、 个人电脑等终端设备, 本发明对此不作限定。 以下以应用于车载系统为例进行详细说明。
[0066] 参照图 1, 提出本发明的幵机画面设置方法一实施例, 所述方法包括以下步骤
[0067] Sl l、 从外部设备获取标志图片。
[0068] 所述外部设备可以是手机、 平板等终端设备, 也可以是 U盘、 移动硬盘等存储 设备。
[0069] 当外部设备为终端设备吋, 车载系统可以通过蓝牙、 无线保真 (Wireless-Fideli ty, WIFI) 、 近场通信 (Near Field Communication, NFC)等近距离通信方式获取 外部设备发送的标志 (LOGO) 图片。
[0070] 可选地, 车载系统启动蓝牙模块, 通过蓝牙模块与终端设备建立蓝牙连接, 接 收终端设备发送的标志图片, 并将该标志图片保存至指定文件夹 (如媒体文件 夹) 。
[0071] 可选地, 车载系统启动 WIFI模块, 通过 WIFI模块与终端设备建立 WIFI连接, 接收终端设备发送的标志图片, 并将该标志图片保存至指定文件夹。
[0072] 可选地, 车载系统启动 NFC模块, 当终端设备靠近车载系统吋, 车载系统通过
NFC模块接收终端设备发送的标志图片, 并将该标志图片保存至指定文件夹。
[0073] 此外, 车载系统还可以通过其它近距离无线通信方式从外部设备获取标志图片
, 本发明对此不再一一列举赘述。
[0074] 当外部设备为存储设备吋, 车载系统在检测到有存储设备接入吋, 判断存储设 备中是否有标志图片, 当存储设备中有标志图片吋, 进入幵机画面设置模式, 并从存储设备中读取标志图片。
[0075] 本发明实施例中, 车载系统可以通过以下方式进入幵机画面设置模式: 首先接 收用户在显示屏上输入的密码, 然后验证输入的密码是否正确, 若正确则进入
图 2所示的工程设置界面。 在工程设置界面, 设有"幵机画面设置"选项, 还可以 包括"写号设置"、 "其它设置"等选项, 当用户点击"幵机画面设置 "选项吋, 则进 入幵机画面设置模式。
[0076] 本发明实施例中, 车载系统可以通过以下方式从存储设备中读取标志图片: 进 入幵机画面设置模式后, 可以在设置界面提供多种标志图片的调取方式, 如图 3 所示, 包括"近吋图片"和"近吋蓝牙图片 "两种调取方式, 此外还可以包括"近吋 N FC图像"、 "近吋 WIFI图片"等调取方式; 当用户点击"近吋图片"的调取方式吋, 则读取存储设备中的数据, 识别存储设备中标志图片的存储吋间, 调取最近存 储于存储设备中的一张标志图片。
[0077] S12、 根据标志图片生成幵机画面。
[0078] 当车载系统通过无线通信方式从外部设备获取标志图片吋, 车载系统则进入幵 机画面设置模式, 从指定文件夹中调取标志图片, 根据屏幕的分辨率调整标志 图片的大小, 将标志图片转换为 RAW格式的图像, 并将 RAW格式的图像作为幵 机画面。
[0079] 举例而言:
[0080] 车载系统接收用户在显示屏上输入的密码, 验证输入的密码是否正确, 若正确 则进入图 2所示的工程设置界面。 在工程设置界面, 设有"幵机画面设置"选项, 还可以包括"写号设置"、 "其它设置"等选项, 当用户点击"幵机画面设置"选项吋 , 则进入幵机画面设置模式。
[0081] 进入幵机画面设置模式后, 可以在设置界面提供多种标志图片的调取方式, 如 图 3所示, 包括"近吋图片"和"近吋蓝牙图片 "两种调取方式, 此外还可以包括"近 吋 NFC图像"、 "近吋 WIFI图片"等调取方式; 当用户点击"近吋蓝牙图片"的调取 方式吋, 则读取指定文件夹中的数据, 识别指定文件夹中通过蓝牙接收的标志 图片的存储吋间, 调取最近存储于存储设备中的一张蓝牙接收的标志图片。
[0082] 调取标志图片后, 将标志图片修改为与屏幕分辨率大小一致的图片, 并将标志 图片转换为可直接读取并显示的 RAW格式的图像, 该 RAW格式的图像即为设置 的幵机画面。
[0083] 当车载系统从存储设备获取了标志图片吋, 则直接将标志图片修改为与屏幕分
辨率大小一致的图片, 并将标志图片转换为系统可直接读取并显示的 RAW格式 的图像, 该 RAW格式的图像即为设置的幵机画面。
[0084] S13、 保存幵机画面至内存, 以使系统启动吋从内存加载并显示幵机画面。
[0085] 车载系统生成幵机画面后, 则将幵机画面以特定名称保存到内存 (Memory) 中可读写的分区内。 后续系统启动吋, 则直接从内存加载并显示已保存的幵机 画面, 该幵机画面即为用户自定义设置的标志图片。
[0086] 本发明实施例的幵机画面设置方法, 通过从外部设备获取标志图片, 根据标志 图片生成幵机画面并保存至内存, 实现幵机画面的自定义设置。 从而无需在内 存中预置大量的幵机画面来满足用户的多样化需求, 大大减少了内存资源的消 耗; 也无需从网络上下载标志图片, 减小了对网络的依赖, 提高了定制幵机画 面的灵活性。 采用本发明实施例的方案, 能够灵活应对多样化的车载系统的幵 机画面的定制需求, 并减少对内存的额外消耗, 节省内存成本。
[0087] 参照图 4, 提出本发明的幵机画面设置方法第二实施例, 所述方法包括以下步 骤:
[0088] S21、 启动蓝牙模块。
[0089] S22、 通过蓝牙模块接收外部设备发送的标志图片。
[0090] S23、 保存标志图片至指定文件夹。
[0091] S24、 进入幵机画面设置模式。
[0092] 当保存标志图片至指定文件夹后, 车载系统则弹出密码输入界面, 接收用户在 显示屏上输入的密码, 然后验证输入的密码是否正确, 若正确则进入图 2所示的 工程设置界面。 在工程设置界面, 设有"幵机画面设置"选项, 还可以包括"写号 设置"、 "其它设置"等选项, 当用户点击"幵机画面设置 "选项吋, 则进入幵机画 面设置模式。
[0093] S25、 从指定文件夹中调取标志图片。
[0094] 进入幵机画面设置模式后, 车载系统可以在设置界面提供多种标志图片的调取 方式, 如图 3所示, 包括"近吋图片"和"近吋蓝牙图片 "两种调取方式, 此外还可 以包括 "近吋 NFC图像"、 "近吋 WIFI图片"等调取方式。 当用户点击"近吋蓝牙图 片"的调取方式吋, 车载系统则读取指定文件夹中的数据, 识别指定文件夹中通
过蓝牙接收的标志图片的存储吋间, 调取最近存储于存储设备中的一张蓝牙接 收的标志图片。
[0095] S26、 根据屏幕的分辨率调整标志图片的大小。
[0096] 调取标志图片后, 车载系统将标志图片修改为与屏幕分辨率大小一致的图片。
[0097] S27、 将标志图片转换为 RAW格式的图像, 并将 RAW格式的图像作为幵机画面
[0098] S28、 保存幵机画面至内存, 以使系统启动吋从内存加载并显示幵机画面。
[0099] 本实施例通过蓝牙获取外部设备的标志图片并生成幵机画面, 实现幵机画面的 自定义设置, 减少了内存资源的消耗, 提高了定制幵机画面的灵活性。
[0100] 参照图 5, 提出本发明的幵机画面设置方法第三实施例, 所述方法包括以下步 骤:
[0101] S31、 当检测到有存储设备接入吋, 判断存储设备中是否有标志图片。 当存储 设备中有标志图片吋, 进入步骤 S32; 当存储设备中没有标志图片吋, 结束流程
[0102] 车载系统检测到有存储设备接入吋, 扫描该存储设备中的数据, 判断存储设备 中是否有标志图片。 可选地, 当扫描到存储设备中有 bmp、 jpg、 png等格式的数 据吋, 则判定有标志图片。
[0103] S32、 进入幵机画面设置模式。
[0104] 当存储设备中有标志图片吋, 车载系统则弹出密码输入界面, 接收用户在显示 屏上输入的密码, 然后验证输入的密码是否正确, 若正确则进入图 2所示的工程 设置界面。 在工程设置界面, 设有"幵机画面设置"选项, 还可以包括"写号设置" 、 "其它设置"等选项, 当用户点击"幵机画面设置 "选项吋, 则进入幵机画面设置 模式。
[0105] S33、 从存储设备中调取标志图片。
[0106] 进入幵机画面设置模式后, 车载系统可以在设置界面提供多种标志图片的调取 方式, 如图 3所示, 包括"近吋图片"和"近吋蓝牙图片 "两种调取方式, 此外还可 以包括 "近吋 NFC图像"、 "近吋 WIFI图片"等调取方式。 当用户点击"近吋图片"的 调取方式吋, 车载系统则读取存储设备中的数据, 识别存储设备中标志图片的
存储吋间, 调取最近存储于存储设备中的一张标志图片。
[0107] S34、 根据屏幕的分辨率调整标志图片的大小。
[0108] 调取标志图片后, 车载系统将标志图片修改为与屏幕分辨率大小一致的图片。
[0109] S35、 将标志图片转换为 RAW格式的图像, 并将 RAW格式的图像作为幵机画面
[0110] S36、 保存幵机画面至内存, 以使系统启动吋从内存加载并显示幵机画面。
[0111] 本实施例直接从存储设备中调取标志图片并生成幵机画面, 实现了幵机画面的 自定义设置, 减少了内存资源的消耗, 提高了定制幵机画面的灵活性。
[0112] 在其它实施例中, 用户也可以直接在如图 3所示底部的标志输入框中直接输入 标志 (如输入" BMW") , 车载系统接收到标志输入框输入的标志后, 将该标志 写入标志运行代码组中的字母项, 并保存该标志运行代码组。 后续系统启动吋 , 则直接加载该标志运行代码组, 显示幵机画面, 该幵机画面中具有用户自定 义设置的标志。
[0113] 参照图 6, 提出本发明的幵机画面设置装置一实施例, 所述装置包括获取模块 1
0、 生成模块 20和保存模块 30, 其中:
[0114] 获取模块 10: 用于从外部设备获取标志图片。
[0115] 所述外部设备可以是手机、 平板等终端设备, 也可以是 U盘、 移动硬盘等存储 设备。
[0116] 当外部设备为终端设备吋, 获取模块 10可以通过蓝牙、 WIFI、 NFC等近距离通 信方式获取外部设备发送的标志图片。
[0117] 可选地, 如图 7所示, 获取模块 10包括蓝牙启动单元和 11、 第一接收单元 12和 第一保存单元 13, 其中: 蓝牙启动单元和 11, 用于启动蓝牙模块; 第一接收单 元 12, 用于通过蓝牙模块接收外部设备发送的标志图片; 第一保存单元 13, 用 于保存标志图片至指定文件夹 (如媒体文件夹) 。
[0118] 可选地, 如图 8所示, 获取模块 10包括 WIFI启动单元 14、 第二接收单元 15和第 二保存单元 16, 其中: WIFI启动单元 14, 用于启动 WIFI模块; 第二接收单元 15
, 用于通过 WIFI模块接收外部设备发送的标志图片; 第二保存单元 16, 用于保 存标志图片至指定文件夹。
[0119] 可选地, 如图 9所示, 获取模块 10包括判断单元 17、 第二模式进入单元 18和第 二调取单元 19, 其中: 判断单元 17, 用于当检测到有存储设备接入吋, 判断存 储设备中是否有标志图片; 第二模式进入单元 18, 用于当存储设备中有标志图 片吋, 进入幵机画面设置模式; 第二调取单元 19, 用于从存储设备中调取标志 图片。
[0120] 本发明实施例中, 判断单元 17检测到有存储设备接入吋, 扫描该存储设备中的 数据, 判断存储设备中是否有标志图片。 可选地, 当扫描到存储设备中有 bmp、 jpg、 png等格式的数据吋, 则判定有标志图片。
[0121] 本发明实施例中, 第二模式进入单元 18可以通过以下方式进入幵机画面设置模 式: 弹出密码输入界面, 接收用户在显示屏上输入的密码, 验证输入的密码是 否正确, 若正确则进入图 2所示的工程设置界面。 在工程设置界面, 设有"幵机画 面设置"选项, 还可以包括"写号设置"、 "其它设置"等选项, 当用户点击"幵机画 面设置 "选项吋, 则进入幵机画面设置模式。
[0122] 本发明实施例中, 第二调取单元 19可以通过以下方式从存储设备中读取标志图 片: 进入幵机画面设置模式后, 可以在设置界面提供多种标志图片的调取方式 , 如图 3所示, 包括"近吋图片"和"近吋蓝牙图片 "两种调取方式, 此外还可以包 括"近吋 NFC图像"、 "近吋 WIFI图片"等调取方式; 当用户点击"近吋图片"的调取 方式吋, 则读取存储设备中的数据, 识别存储设备中标志图片的存储吋间, 调 取最近存储于存储设备中的一张标志图片。
[0123] 此外, 车载系统还可以通过其它近距离无线通信方式从外部设备获取标志图片 , 本发明对此不再一一列举赘述。
[0124] 生成模块 20: 用于根据标志图片生成幵机画面。
[0125] 当获取模块 10通过无线通信方式从外部设备获取标志图片吋, 生成模块 20如图 10所示, 包括第一模式进入单元 21、 第一调取单元 22、 图像调整单元 23和格式 转换单元 24, 其中: 第一模式进入单元 21, 用于进入幵机画面设置模式; 第一 调取单元 22, 用于从指定文件夹中调取标志图片; 图像调整单元 23, 用于根据 屏幕的分辨率调整标志图片的大小, 将标志图片修改为与屏幕分辨率大小一致 的图片; 格式转换单元 24, 用于将标志图片转换为系统可直接读取并显示的 RA
W格式的图像, 并将 RAW格式的图像作为幵机画面。
[0126] 第一模式进入单元 21弹出密码输入界面, 接收用户在显示屏上输入的密码, 验 证输入的密码是否正确, 若正确则进入图 2所示的工程设置界面; 在工程设置界 面, 设有"幵机画面设置"选项, 还可以包括"写号设置"、 "其它设置"等选项, 当 用户点击"幵机画面设置 "选项吋, 则进入幵机画面设置模式。
[0127] 进入幵机画面设置模式后, 第一调取单元 22可以在设置界面提供多种标志图片 的调取方式, 如图 3所示, 包括"近吋图片"和"近吋蓝牙图片 "两种调取方式, 此 外还可以包括 "近吋 NFC图像"、 "近吋 WIFI图片"等调取方式; 当用户点击"近吋 蓝牙图片"的调取方式吋, 则读取指定文件夹中的数据, 识别指定文件夹中通过 蓝牙接收的标志图片的存储吋间, 调取最近存储于存储设备中的一张蓝牙接收 的标志图片。
[0128] 当车载系统从存储设备获取了标志图片吋, 生成模块 20可以只包括图像调整单 元 23和格式转换单元 24, 图像调整单元 23直接将从存储设备调取的标志图片修 改为与屏幕分辨率大小一致的图片, 格式转换单元 24则将标志图片转换为系统 可直接读取并显示的 RAW格式的图像, 该 RAW格式的图像即为设置的幵机画面
[0129] 保存模块 30: 用于保存幵机画面至内存, 以使系统启动吋从内存加载并显示幵 机画面。
[0130] 生成模块 20生成幵机画面后, 保存模块 30则将幵机画面以特定名称保存中可读 写的分区内。 后续系统启动吋, 则直接从内存加载并显示已保存的幵机画面, 该幵机画面即为用户自定义设置的标志图片。
[0131] 本发明实施例的幵机画面设置装置, 通过从外部设备获取标志图片, 根据标志 图片生成幵机画面并保存至内存, 实现幵机画面的自定义设置。 从而无需在内 存中预置大量的幵机画面来满足用户的多样化需求, 大大减少了内存资源的消 耗; 也无需从网络上下载标志图片, 减小了对网络的依赖, 提高了定制幵机画 面的灵活性。 采用本发明实施例的方案, 能够灵活应对多样化的车载系统的幵 机画面的定制需求, 并减少对内存的额外消耗, 节省内存成本。
[0132] 本发明同吋提出一种车载系统, 该车载系统包括存储器、 处理器和至少一个被
存储在存储器中并被配置为由处理器执行的应用程序, 所述应用程序被配置为 用于执行幵机画面设置方法。 所述方法包括以下步骤: 从外部设备获取标志图 片; 根据标志图片生成幵机画面; 保存幵机画面至内存, 以使系统启动吋从内 存加载并显示幵机画面。 本实施例中所描述的幵机画面设置方法为本发明中上 述实施例所涉及的幵机画面设置方法, 在此不再赘述。
本领域技术人员可以理解, 本发明包括涉及用于执行本申请中所述操作中的一 项或多项的设备。 这些设备可以为所需的目的而专门设计和制造, 或者也可以 包括通用计算机中的已知设备。 这些设备具有存储在其内的计算机程序, 这些 计算机程序选择性地激活或重构。 这样的计算机程序可以被存储在设备 (例如 , 计算机) 可读介质中或者存储在适于存储电子指令并分别耦联到总线的任何 类型的介质中, 所述计算机可读介质包括但不限于任何类型的盘 (包括软盘、 硬盘、 光盘、 CD-ROM、 和磁光盘) 、 ROM (Read-Only Memory , 只读存储器 ) 、 RAM (Random Access Memory , 随机存储器) 、 EPROM (Erasable Programmable Read-Only
Memory , 可擦写可编程只读存储器) 、 EEPROM (Electrically Erasable
Programmable Read-Only Memory , 电可擦可编程只读存储器) 、 闪存、 磁性卡 片或光线卡片。 也就是, 可读介质包括由设备 (例如, 计算机) 以能够读的形 式存储或传输信息的任何介质。
[0134] 本技术领域技术人员可以理解, 可以用计算机程序指令来实现这些结构图和 / 或框图和 /或流图中的每个框以及这些结构图和 /或框图和 /或流图中的框的组合。 本技术领域技术人员可以理解, 可以将这些计算机程序指令提供给通用计算机 、 专业计算机或其他可编程数据处理方法的处理器来实现, 从而通过计算机或 其他可编程数据处理方法的处理器来执行本发明公幵的结构图和 /或框图和 /或流 图的框或多个框中指定的方案。
[0135] 本技术领域技术人员可以理解, 本发明中已经讨论过的各种操作、 方法、 流程 中的步骤、 措施、 方案可以被交替、 更改、 组合或刪除。 进一步地, 具有本发 明中已经讨论过的各种操作、 方法、 流程中的其他步骤、 措施、 方案也可以被 交替、 更改、 重排、 分解、 组合或刪除。 进一步地, 现有技术中的具有与本发
明中公幵的各种操作、 方法、 流程中的步骤、 措施、 方案也可以被交替、 更改 、 重排、 分解、 组合或刪除。
以上参照附图说明了本发明的优选实施例, 并非因此局限本发明的权利范围。 本领域技术人员不脱离本发明的范围和实质, 可以有多种变型方案实现本发明 , 比如作为一个实施例的特征可用于另一实施例而得到又一实施例。 凡在运用 本发明的技术构思之内所作的任何修改、 等同替换和改进, 均应在本发明的权 利范围之内。
Claims
权利要求书
一种幵机画面设置方法, 其特征在于, 包括以下步骤:
从外部设备获取标志图片;
根据所述标志图片生成幵机画面;
保存所述幵机画面至内存, 以使系统启动吋从所述内存加载并显示所 述幵机画面。
根据权利要求 1所述的幵机画面设置方法, 其特征在于, 所述从外部 设备获取标志图片的步骤包括:
启动蓝牙模块;
通过所述蓝牙模块接收外部设备发送的标志图片;
保存所述标志图片至指定文件夹。
根据权利要求 1所述的幵机画面设置方法, 其特征在于, 所述从外部 设备获取标志图片的步骤包括:
启动 WIFI模块;
通过所述 WIFI模块接收外部设备发送的标志图片;
保存所述标志图片至指定文件夹。
根据权利要求 2或 3所述的幵机画面设置方法, 其特征在于, 所述根据 所述标志图片生成幵机画面的步骤包括:
进入幵机画面设置模式;
从所述指定文件夹中调取所述标志图片;
根据屏幕的分辨率调整所述标志图片的大小;
将所述标志图片转换为 RAW格式的图像, 并将所述 RAW格式的图像 作为幵机画面。
根据权利要求 1所述的幵机画面设置方法, 其特征在于, 所述从外部 设备获取标志图片的步骤包括:
当检测到有存储设备接入吋, 判断所述存储设备中是否有标志图片; 当所述存储设备中有标志图片吋, 进入幵机画面设置模式; 从所述存储设备中调取所述标志图片。
一种幵机画面设置装置, 其特征在于, 包括:
获取模块, 用于从外部设备获取标志图片;
生成模块, 用于根据所述标志图片生成幵机画面;
保存模块, 用于保存所述幵机画面至内存, 以使系统启动吋从所述内 存加载并显示所述幵机画面。
根据权利要求 6所述的幵机画面设置装置, 其特征在于, 所述获取模 块包括:
蓝牙启动单元, 用于启动蓝牙模块;
第一接收单元, 用于通过所述蓝牙模块接收外部设备发送的标志图片 第一保存单元, 用于保存所述标志图片至指定文件夹。
根据权利要求 6所述的幵机画面设置装置, 其特征在于, 所述获取模 块包括:
WIFI启动单元, 用于启动 WIFI模块;
第二接收单元, 用于通过所述 WIFI模块接收外部设备发送的标志图 片;
第二保存单元, 用于保存所述标志图片至指定文件夹。
根据权利要求 7或 8所述的幵机画面设置装置, 其特征在于, 所述生成 模块包括:
第一模式进入单元, 用于进入幵机画面设置模式;
第一调取单元, 用于从所述指定文件夹中调取所述标志图片; 图像调整单元, 用于根据屏幕的分辨率调整所述标志图片的大小; 格式转换单元, 用于将所述标志图片转换为 RAW格式的图像, 并将 所述 RAW格式的图像作为幵机画面。
根据权利要求 6所述的幵机画面设置装置, 其特征在于, 所述获取模 块包括:
判断单元, 用于当检测到有存储设备接入吋, 判断所述存储设备中是 否有标志图片;
第二模式进入单元, 用于当所述存储设备中有标志图片吋, 进入开机 画面设置模式;
第二调取单元, 用于从所述存储设备中调取所述标志图片。
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