WO2019047157A1 - 视频通话控制方法及装置 - Google Patents

视频通话控制方法及装置 Download PDF

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Publication number
WO2019047157A1
WO2019047157A1 PCT/CN2017/101033 CN2017101033W WO2019047157A1 WO 2019047157 A1 WO2019047157 A1 WO 2019047157A1 CN 2017101033 W CN2017101033 W CN 2017101033W WO 2019047157 A1 WO2019047157 A1 WO 2019047157A1
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WO
WIPO (PCT)
Prior art keywords
button
gesture
video call
function
interface
Prior art date
Application number
PCT/CN2017/101033
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English (en)
French (fr)
Inventor
汤秋阳
Original Assignee
深圳传音通讯有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 深圳传音通讯有限公司 filed Critical 深圳传音通讯有限公司
Priority to CN201780096611.2A priority Critical patent/CN111357280A/zh
Priority to PCT/CN2017/101033 priority patent/WO2019047157A1/zh
Publication of WO2019047157A1 publication Critical patent/WO2019047157A1/zh

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N7/00Television systems
    • H04N7/18Closed-circuit television [CCTV] systems, i.e. systems in which the video signal is not broadcast

Definitions

  • the present application relates to the field of communications, and in particular, to a video call control method and apparatus.
  • the main interface and the sub-interface are displayed on the video call interface, and the main interface is usually displayed in full screen, and the sub-interface is superimposed on the upper right corner of the main interface for display.
  • the lower part of the video call interface is used to display operation buttons such as a recording button, a camera switching button, and the like.
  • these buttons will block part of the main interface or make the display area of the main interface smaller, affecting the video call experience.
  • the main interface and the secondary interface are displayed on the video call interface, and the main interface is usually displayed in full screen, and the secondary interface is superimposed on the upper right corner of the main interface for display.
  • the video call interface is displayed.
  • the lower part is used to display operation buttons such as a recording button, a camera switching button, and the like. However, during the video call, these buttons will block part of the main interface or make the display area of the main interface smaller, affecting the video call experience.
  • the present application provides a video call control method and apparatus, which can prevent a button from occupying a video call interface without affecting the implementation of the button function.
  • the present application provides a video call control method, including:
  • buttons having a corresponding function trigger gesture [0007] hiding a button on the video call interface, at least one of the buttons having a corresponding function trigger gesture
  • Performing a function that matches the gesture triggers a function of a button corresponding to the gesture.
  • the function of the button corresponding to the function triggering gesture that matches the gesture includes:
  • the method further includes:
  • the touch gesture is correspondingly stored as a function trigger gesture of the selected button.
  • the method further includes:
  • buttons on the hidden video call interface includes:
  • buttons on the video call interface continues to display the setting, the button on the video call interface is hidden.
  • the present application further provides a video call control apparatus, including:
  • a button hiding module configured to hide a button on the video call interface, at least one of the buttons having a corresponding function triggering gesture
  • a gesture receiving module configured to receive an input gesture
  • the first button function execution module is configured to execute a function of a button corresponding to the function trigger gesture matched by the gesture.
  • the first button function execution module includes:
  • a matching unit configured to match the gesture with a stored function trigger gesture
  • an execution unit configured to perform a function of a button corresponding to the matched function trigger gesture if the matching is successful
  • the method further includes:
  • a setting information receiving module configured to receive a selection instruction of the selection button and the input touch gesture
  • a storage module configured to store the touch gesture correspondingly as a function trigger gesture of the selected button.
  • the method further includes: [0034] a button display module, configured to: after the button on the video call interface is hidden, display a button on the video call interface according to the received button display control instruction;
  • the second button function execution module is configured to receive button operation information and perform a function of the corresponding button.
  • buttons hiding module comprises:
  • the first hiding unit is configured to: when the button on the video call interface continues to display the setting, the button on the video calling interface is hidden.
  • At least one button on the video call interface in the present disclosure has a corresponding function triggering gesture, after the button on the video call interface is hidden, receiving the input gesture and performing a function triggering gesture corresponding to the gesture The function of the button. Since the button on the video call interface has a corresponding function triggering gesture, the function of the button can be triggered by the gesture after the button is hidden, so that the button can be prevented from occupying the video call interface and the video call experience can be improved without affecting the function of the button function.
  • 1 is a block diagram showing the structure of a terminal.
  • FIG. 2 is a schematic flow chart of a video call control method according to an exemplary embodiment.
  • FIG. 3 is a schematic flowchart diagram of a video call control method according to another exemplary embodiment.
  • FIG. 4 is a schematic flow chart of a video call control method according to still another exemplary embodiment.
  • FIG. 5 is a schematic structural diagram of a video call control apparatus according to an exemplary embodiment.
  • FIG. 6 is a schematic structural diagram of a video call control apparatus according to another exemplary embodiment.
  • FIG. 7 is a schematic structural diagram of a video call control apparatus according to still another exemplary embodiment.
  • the terminal 10 includes a memory 102, a memory controller 104, one or more (only one shown) processor 106, peripheral interface 108, and radio frequency module 110.
  • FIG. 1 is merely illustrative, and the terminal 10 may further include more or less components than those shown in FIG. 1, or have a different configuration from that shown in FIG. 1.
  • the components shown in Figure 1 can be hardware
  • the memory 102 can be used to store software programs and modules, such as the video call control method in the embodiment of the present application, and the program instructions/modules corresponding to the device.
  • the processor 106 runs the software program and the module stored in the storage controller 104. Thus, various function applications and data processing are performed, that is, the above-described video call control method and apparatus are implemented.
  • Memory 102 can include high speed random access memory, and can also include non-volatile memory, such as one or more magnetic storage devices, flash memory, or other non-volatile solid state memory.
  • memory 102 can further include memory remotely located relative to processor 106, which can be connected to terminal 10 over a network. Examples of such networks include, but are not limited to, the Internet, intranets, local area networks, mobile communication networks, and combinations thereof. Access to the memory 102 by the processor 106 and other possible components can be performed under the control of the memory controller 104.
  • Peripheral interface 108 couples various input/input devices to the CPU and memory 102.
  • the processor 106 runs various software, instructions within the memory 102 to perform various functions of the terminal 10 and to perform data processing.
  • peripheral interface 108, processor 106, and memory controller 104 may be implemented in a single chip. In other instances, they can be implemented by separate chips.
  • the radio frequency module 110 is configured to receive and transmit electromagnetic waves, and realize mutual conversion between electromagnetic waves and electric signals, thereby communicating with a communication network or other devices.
  • the radio frequency module 110 can include various existing circuit components for performing these functions, such as an antenna, a radio frequency transceiver, a digital signal processor, an encryption/decryption chip, a subscriber identity module (SIM) card, a memory, and the like.
  • the radio frequency module 110 can communicate with various networks such as the Internet, an intranet, a wireless network, or communicate with other devices over a wireless network.
  • the wireless network described above may include a cellular telephone network, a wireless local area network, or a metropolitan area network.
  • the above wireless networks can use a variety of communication standards, protocols and technologies, including but not limited to the Global System for Mobile Global System for Mobile
  • GSM Global System for Mobile Communications
  • EDGE Enhanced Mobile Communication Technology
  • W-CDMA wideband code division multiple access
  • CDMA code division access
  • time division multiple access time division multiple access
  • Wi-Fi Wireless Fidelity
  • IEEE 802.11a American Institute of Electrical and Electronics Engineers Standard IEEE 802.11a, IEEE 802.11b, IEEE 802.11g and/or IEEE 802.11n
  • VoIP Voice over internet protocal, VoIP
  • Wi-Max Worldwide Interoperability for Microwave Access
  • the positioning module 112 is configured to acquire the current location of the terminal 10. Examples of positioning module 112 include, but are not limited to, Global Positioning System (GPS), wireless local area network or mobile communication network based positioning technology.
  • GPS Global Positioning System
  • wireless local area network wireless local area network
  • mobile communication network based positioning technology wireless local area network
  • the camera module 114 is used to take a photo or video.
  • the photographed or video taken may be stored in the memory 102 and transmitted through the radio frequency module 110.
  • the audio module 116 provides an audio interface to the user, which may include one or more microphones, one or more speakers, and audio circuitry.
  • the audio circuit receives sound data from the peripheral interface 108, converts the sound data into electrical information, and transmits the electrical information to the speaker.
  • the speaker converts the electrical information into sound waves that the human ear can hear.
  • the audio circuit also receives electrical information from the microphone, converts the electrical signal to sound data, and transmits the sound data to peripheral interface 108 for further processing. Audio data can be obtained from memory 102 or through radio frequency module 110.
  • the audio data can also be stored in the memory 102 or transmitted by the radio frequency module 110.
  • audio module 116 may also include a headphone jack for providing an audio interface to a headset or other device.
  • Screen 118 provides an output interface between terminal 10 and the user.
  • screen 118 displays video output to the user, the content of which may include text, graphics, video, and any combination thereof. Some output results correspond to some user interface objects.
  • the screen 118 can also include a touch screen.
  • the touch screen provides an output and input interface between the terminal 10 and the user.
  • the touch screen also receives user input, such as user gestures such as clicks, swipes, etc., so that the user interface objects respond to the user's input.
  • the technique of detecting user input can be based on resistive, capacitive or any other possible touch detection technique.
  • Touch screen display list Specific examples of the element include, but are not limited to, a liquid crystal display or a light emitting polymer display.
  • the button module 120 also provides an interface for the user to input to the terminal 10, and the user can cause the terminal 10 to perform different functions by pressing different buttons.
  • FIG. 2 is a schematic flow chart of a video call control method according to an exemplary embodiment.
  • the video call control method in this embodiment includes but is not limited to the following steps:
  • Step 210 Hide a button on the video call interface, at least one of the buttons having a corresponding function trigger gesture.
  • buttons on the video call interface are, for example, an end call button, a mute button, a record button, a camera switch button, an audio switch button, a video hold button, etc., and these buttons are usually directly displayed in the lower part of the video call interface.
  • the button on the video call interface can be displayed continuously, for example, for 10s, the button on the video call interface is hidden, so that the main interface of the video call is not blocked.
  • the buttons on the video call interface can also be hidden based on control commands entered by the user.
  • the function triggering gesture refers to gesture data that is preset and stored, and is used to indicate that the terminal receives the matching gesture and performs the function of the corresponding button, and may be up-slide, left-slide, double-click, multi-click, multi-touch. , long press, etc., which can be input by the user through a finger.
  • the preset setting can be the system default setting or the user can set according to his own needs.
  • the function triggering gesture can be set for all buttons or some buttons on the video call interface, for example, the function triggering gesture is only set for the button with higher frequency.
  • Step 220 Receive an input gesture.
  • the input gesture is, for example, a touch gesture
  • the touch signal received by the terminal can be regarded as a gesture, and for the purpose of performing the function of the button, only the function trigger gesture with the button Matching gestures are valid gesture signals.
  • Step 230 Perform a function of a button corresponding to the function triggering gesture that is matched with the gesture.
  • the step 230 may further include the following steps:
  • the touch signal received by the terminal can be regarded as a gesture, only the function of the button triggers the hand.
  • the gestures that match each other are valid gesture signals, so the received gesture signals need to be matched to identify valid gestures.
  • the gesture is matched with the function-triggered gesture stored by the terminal.
  • the purpose of the matching is to confirm whether the function-triggered gesture stored by the terminal has a gesture similar to or the same as the received gesture.
  • the similarity is mainly used to indicate that the trajectory of the gesture is similar.
  • the video call control method provided by the embodiment has at least one button on the video call interface having a corresponding function triggering gesture, and after the button on the video call interface is hidden, the input gesture is received and executed.
  • the function of the gesture matching triggers the function of the button corresponding to the gesture. Since the button on the video call interface has a corresponding function triggering gesture, the button is still triggered by the gesture after the button is hidden, so that the button can be prevented from occupying the video call interface and the video call experience can be improved without affecting the function of the button.
  • FIG. 3 is a schematic flowchart diagram of a video call control method according to another exemplary embodiment.
  • the video call control method of this embodiment further includes, but is not limited to, the following steps on the basis of the previous embodiment:
  • Step 310 Display a gesture setting interface.
  • Step 320 Receive an instruction of selecting a button and an input touch gesture.
  • Step 330 Correspondly store the touch gesture as a function trigger gesture of the selected button.
  • the gesture setting interface is displayed by a user operation, and the gesture setting interface has an option corresponding to all buttons or partial buttons in the video call interface, and when the user clicks one of the options, that is, a selection instruction corresponding to the input button .
  • the user is prompted to input a touch gesture.
  • the entire gesture setting interface can receive a touch gesture input by the user, prompt the user to save after the user completes the input, and then, the touch gesture is Corresponding to the function triggering gesture stored as a button selected by the user, the setting of the function trigger gesture is completed.
  • the gesture setting interface may also be divided into a button option display area and a touch gesture input area. Therefore, the input of the touch gesture and the selection of the button may not necessarily limit the order. In addition, if When the user sets the same function trigger gesture for different buttons, the user is prompted to make changes to ensure that the button has a one-to-one correspondence with the function trigger gesture.
  • the video call control method provided by the embodiment has at least one button on the video call interface having a corresponding function triggering gesture, and after the button on the video call interface is hidden, the input gesture is received and executed.
  • the function of the gesture matching triggers the function of the button corresponding to the gesture. Since the button on the video call interface has a corresponding function triggering gesture, the button is still triggered by the gesture after the button is hidden, so that the button can be prevented from occupying the video call interface and the video call experience can be improved without affecting the function of the button.
  • the embodiment of the present invention can also store the touch gesture input by the user as the function triggering hand corresponding to the button, so that the user can set the shortcut operation mode of the button according to the operation habit of the user, thereby further improving the video calling experience.
  • FIG. 4 is a schematic flow chart of a video call control method according to still another exemplary embodiment.
  • the video call control method in this embodiment includes but is not limited to the following steps:
  • Step 410 Hide a button on the video call interface, at least one of the buttons having a corresponding function triggering gesture.
  • buttons on the video call interface are, for example, an end call button, a mute button, a record button, a camera switch button, an audio switch button, a video hold button, etc., and these buttons are usually directly displayed in the lower part of the video call interface.
  • the button on the video call interface can be displayed continuously, for example, for 10s, the button on the video call interface is hidden, so that the main interface of the video call is not blocked.
  • the function triggering gesture refers to gesture data that is preset and stored, and is used to indicate that the terminal receives the matching gesture and performs the function of the corresponding button, for example, sliding up, sliding, double-clicking, multi-clicking, multi-touching, Long press, etc., which can be input by the user through a finger.
  • the preset setting can be the system default setting or the user can set it according to his own needs. You can set the function triggering gesture for all buttons or some buttons on the video call interface. For example, set the function trigger gesture only for the button with higher frequency.
  • Step 420 Display a button on the video call interface according to the received button display control instruction.
  • the function trigger gesture can be set for all buttons, there are many buttons or some buttons The frequency of use is lower. Setting the function trigger gesture for all buttons will increase the user's memory difficulty. Therefore, when only some buttons have the function trigger gesture and the user needs to use other buttons, or some inconvenient use shortcuts In the case of a hand-held handshake, for example, the user can input a button display control command to redisplay the button on the video call interface for normal operation.
  • Step 430 Receive button operation information and perform a function of the corresponding button.
  • the user can operate the button, including performing a button with a function trigger gesture and a button without a function trigger gesture, where the operation process is a video call. Regular operation process.
  • At least one button on the video call interface has a corresponding function triggering gesture, and after the button on the video call interface is hidden, the input gesture is received and executed.
  • the function of the gesture matching triggers the function of the button corresponding to the gesture. Since the button on the video call interface has a corresponding function triggering gesture, the button is still triggered by the gesture after the button is hidden, so that the button can be prevented from occupying the video call interface and the video call experience can be improved without affecting the function of the button.
  • the embodiment of the present disclosure can also display a button on the video call interface according to the received button display control instruction, so that the user can perform a shortcut operation or a button operation as needed, even if the user does not perform a function execution gesture on all the buttons.
  • the settings also do not affect the video call function, further enhancing the video call experience.
  • FIG. 5 is a schematic structural diagram of a video call control apparatus according to an exemplary embodiment.
  • the video call control apparatus of this embodiment includes but is not limited to: a button hiding module 510, a gesture receiving module 520, and a first button function executing module 530.
  • the button hiding module 510 is configured to hide a button on the video call interface, and at least one of the buttons has a corresponding function triggering gesture.
  • the button hiding module 510 includes: a first hiding unit, where the first hidden unit is configured to hide a button on the video calling interface when the button on the video calling interface continues to display the setting.
  • the gesture receiving module 520 is configured to receive an input gesture.
  • the first button function execution module 530 is configured to perform a function of a button corresponding to the function trigger gesture that matches the gesture.
  • the first button function execution module 530 may include: a matching unit and an execution unit.
  • a matching unit configured to match the gesture with the stored function trigger gesture.
  • an execution unit configured to perform a function of a button corresponding to the matched function trigger gesture if the matching is successful
  • the video call control apparatus has at least one button on the video call interface having a corresponding function triggering gesture. After the button on the video call interface is hidden, the input gesture is received and executed. The function of the gesture matching triggers the function of the button corresponding to the gesture. Since the button on the video call interface has a corresponding function triggering gesture, the button is still triggered by the gesture after the button is hidden, so that the button can be prevented from occupying the video call interface and the video call experience can be improved without affecting the function of the button.
  • FIG. 6 is a schematic structural diagram of a video call control apparatus according to another exemplary embodiment.
  • the video call control apparatus of this embodiment further includes, but is not limited to, a setting interface display module 610, a setting information receiving module 620, and a storage module 630.
  • the setting interface display module 610 is configured to display a gesture setting interface.
  • the setting information receiving module 620 is configured to receive a selection instruction of the button and an input touch gesture.
  • the storage module 630 is configured to store the touch gesture correspondingly as a function trigger gesture of the button.
  • At least one button on the video call interface has a corresponding function triggering gesture, and after the button on the video call interface is hidden, the input gesture is received and executed.
  • the function of the gesture matching triggers the function of the button corresponding to the gesture. Since the button on the video call interface has a corresponding function triggering gesture, the button is still triggered by the gesture after the button is hidden, so that the button can be prevented from occupying the video call interface and the video call experience can be improved without affecting the function of the button.
  • the embodiment of the present invention can also store the touch gesture input by the user as the function triggering hand corresponding to the button, so that the user can set the shortcut operation mode of the button according to the operation habit of the user, thereby further improving the video calling experience.
  • the button hiding module 710 is configured to hide a button on the video call interface, and at least one of the buttons has a corresponding function triggering gesture.
  • the button display module 720 is configured to display a button on the video call interface according to the received button display control command after the button on the video call interface is hidden.
  • the second button function execution module 730 is configured to receive button operation information and perform a function of the corresponding button.
  • the video call control apparatus has at least one button on the video call interface having a corresponding function triggering gesture. After the button on the video call interface is hidden, the input gesture is received and executed. The function of the gesture matching triggers the function of the button corresponding to the gesture. Since the button on the video call interface has a corresponding function triggering gesture, the button is still triggered by the gesture after the button is hidden, so that the button can be prevented from occupying the video call interface and the video call experience can be improved without affecting the function of the button.
  • the embodiment of the present disclosure can also display a button on the video call interface according to the received button display control instruction, so that the user can perform a shortcut operation or a button operation as needed, even if the user does not perform a function execution gesture on all the buttons.
  • the settings also do not affect the video call function, further enhancing the video call experience.
  • At least one button on the video call interface in the present disclosure has a corresponding function triggering gesture, after hiding the button on the video call interface, receiving the input gesture and performing a function trigger gesture corresponding to the gesture The function of the button. Since the button on the video call interface has a corresponding function triggering gesture, the button is still triggered by the gesture after the button is hidden, so that the button can be prevented from occupying the video call interface and the video call experience can be improved without affecting the function of the button.

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Abstract

本公开涉及一种视频通话控制方法与装置,其中的方法包括:隐藏视频通话界面上的按钮,所述按钮中的至少一个具有对应的功能触发手势;接收输入的手势;执行与所述手势匹配的功能触发手势所对应的按钮的功能。本公开中视频通话界面上的按钮中的至少一个具有对应的功能触发手势,在隐藏按钮后仍可通过手势执行按钮的功能,从而可在不影响按钮功能实现的基础上避免按钮占用视频通话界面,提升视频通话体验。

Description

说明书 发明名称:视频通话控制方法及装置 技术领域
[0001] 本申请涉及通信领域, 具体涉及一种视频通话控制方法及装置。
背景技术
[0002] 随着网络技术的发展, 尤其是 4G技术的发展, 人们越来越多地习惯于使用视频 通讯。
[0003] 目前, 用户在使用手机等移动终端进行视频通话吋, 视频通话界面上会显示主 界面和副界面, 主界面通常会全屏显示, 副界面叠加在主界面的右上角进行显 示, 此外, 视频通话界面的下部用于显示操作按钮, 例如录音按钮、 摄像头切 换按钮等。 然而, 在视频通话的过程中, 这些按钮将遮挡住部分的主界面或使 得主界面的显示区域变小, 影响视频通话体验。
技术问题
[0004] 当使用手机等移动终端进行视频通话吋, 视频通话界面上会显示主界面和副界 面, 主界面通常会全屏显示, 副界面叠加在主界面的右上角进行显示, 此外, 视频通话界面的下部用于显示操作按钮, 例如录音按钮、 摄像头切换按钮等。 然而, 在视频通话的过程中, 这些按钮将遮挡住部分的主界面或使得主界面的 显示区域变小, 影响视频通话体验。
问题的解决方案
技术解决方案
[0005] 针对上述技术问题, 本申请提供一种视频通话控制方法及装置, 可在不影响按 钮功能实现的基础上避免按钮占用视频通话界面。
[0006] 为解决上述技术问题, 本申请提供一种视频通话控制方法, 包括:
[0007] 隐藏视频通话界面上的按钮, 所述按钮中的至少一个具有对应的功能触发手势
[0008] 接收输入的手势;
[0009] 执行与所述手势匹配的功能触发手势所对应的按钮的功能。 [0010] 其中, 所述执行与所述手势匹配的功能触发手势所对应的按钮的功能, 包括:
[0011] 将所述手势与存储的功能触发手势进行匹配;
[0012] 若匹配成功, 则执行匹配出的功能触发手势对应的按钮的功能。
[0013] 其中, 还包括:
[0014] 展示手势设置界面;
[0015] 接收选择按钮的指令与输入的触摸手势;
[0016] 将所述触摸手势对应存储为选择的按钮的功能触发手势。
[0017] 其中, 在所述隐藏视频通话界面上的按钮之后, 还包括:
[0018] 根据接收的按钮显示控制指令显示所述视频通话界面上的按钮;
[0019] 接收按钮操作信息并执行对应按钮的功能。
[0020] 其中, 所述隐藏视频通话界面上的按钮, 包括:
[0021] 当视频通话界面上的按钮持续显示设定吋长吋, 隐藏所述视频通话界面上的按 钮。
[0022] 本申请还提供一种视频通话控制装置, 包括:
[0023] 按钮隐藏模块, 用于隐藏视频通话界面上的按钮, 所述按钮中的至少一个具有 对应的功能触发手势;
[0024] 手势接收模块, 用于接收输入的手势;
[0025] 第一按钮功能执行模块, 用于执行与所述手势匹配的功能触发手势所对应的按 钮的功能。
[0026] 其中, 所述第一按钮功能执行模块包括:
[0027] 匹配单元, 用于将所述手势与存储的功能触发手势的进行匹配;
[0028] 执行单元, 用于若匹配成功, 则执行匹配出的功能触发手势对应的按钮的功能
[0029] 其中, 还包括:
[0030] 设置界面展示模块, 用于展示手势设置界面;
[0031] 设置信息接收模块, 用于接收选择按钮的选择指令与输入的触摸手势;
[0032] 存储模块, 用于将所述触摸手势对应存储为选择的按钮的功能触发手势。
[0033] 其中, 还包括: [0034] 按钮显示模块, 用于在隐藏视频通话界面上的按钮之后, 根据接收的按钮显示 控制指令显示所述视频通话界面上的按钮;
[0035] 第二按钮功能执行模块, 用于接收按钮操作信息并执行对应按钮的功能。
[0036] 其中, 所述按钮隐藏模块包括:
[0037] 第一隐藏单元, 用于当视频通话界面上的按钮持续显示设定吋长吋, 隐藏所述 视频通话界面上的按钮。
发明的有益效果
有益效果
[0038] 本公幵中视频通话界面上的至少一个按钮具有对应的功能触发手势, 在隐藏视 频通话界面上的按钮后, 接收输入的手势并执行与所述手势匹配的功能触发手 势所对应的按钮的功能。 由于视频通话界面上的按钮具有对应的功能触发手势 , 在隐藏按钮后仍可以通过手势触发按钮的功能, 从而可在不影响按钮功能实 现的基础上避免按钮占用视频通话界面, 提升视频通话体验。
对附图的简要说明
附图说明
[0039] 图 1示出了一种终端的结构框图。
[0040] 图 2是根据一示例性实施例示出的一种视频通话控制方法的流程示意图。
[0041] 图 3是根据另一示例性实施例示出的一种视频通话控制方法的流程示意图。
[0042] 图 4是根据又一示例性实施例示出的一种视频通话控制方法的流程示意图。
[0043] 图 5是根据一示例性实施例示出的一种视频通话控制装置的结构示意图。
[0044] 图 6是根据另一示例性实施例示出的一种视频通话控制装置的结构示意图。
[0045] 图 7是根据又一示例性实施例示出的一种视频通话控制装置的结构示意图。
本发明的实施方式
[0046] 图 1示出了一种终端的结构框图。 本申请的视频通话控制方法与装置可以但不 限于应用于如图 1所示的终端。 如图 1所示, 终端 10包括存储器 102、 存储控制器 104, 一个或多个 (图中仅示出一个) 处理器 106、 外设接口 108、 射频模块 110 、 定位模块 112、 摄像模块 114、 音频模块 116、 屏幕 118以及按键模块 120。 这些 组件通过一条或多条通讯总线 /信号线 122相互通讯。
[0047] 可以理解, 图 1所示的结构仅为示意, 终端 10还可包括比图 1中所示更多或者更 少的组件, 或者具有与图 1所示不同的配置。 图 1中所示的各组件可以采用硬件
、 软件或其组合实现。
[0048] 存储器 102可用于存储软件程序以及模块, 如本申请实施例中的视频通话控制 方法与装置对应的程序指令 /模块, 处理器 106通过运行存储在存储控制器 104内 的软件程序以及模块, 从而执行各种功能应用以及数据处理, 即实现上述的视 频通话控制方法与装置。
[0049] 存储器 102可包括高速随机存储器, 还可包括非易失性存储器, 如一个或者多 个磁性存储装置、 闪存、 或者其他非易失性固态存储器。 在一些实例中, 存储 器 102可进一步包括相对于处理器 106远程设置的存储器, 这些远程存储器可以 通过网络连接至终端 10。 上述网络的实例包括但不限于互联网、 企业内部网、 局域网、 移动通信网及其组合。 处理器 106以及其他可能的组件对存储器 102的 访问可在存储控制器 104的控制下进行。
[0050] 外设接口 108将各种输入 /输入装置耦合至 CPU以及存储器 102。 处理器 106运行 存储器 102内的各种软件、 指令以执行终端 10的各种功能以及进行数据处理。
[0051] 在一些实施例中, 外设接口 108, 处理器 106以及存储控制器 104可以在单个芯 片中实现。 在其他一些实例中, 他们可以分别由独立的芯片实现。
[0052] 射频模块 110用于接收以及发送电磁波, 实现电磁波与电信号的相互转换, 从 而与通讯网络或者其他设备进行通讯。 射频模块 110可包括各种现有的用于执行 这些功能的电路元件, 例如, 天线、 射频收发器、 数字信号处理器、 加密 /解密 芯片、 用户身份模块 (SIM) 卡、 存储器等等。 射频模块 110可与各种网络如互 联网、 企业内部网、 无线网络进行通讯或者通过无线网络与其他设备进行通讯 。 上述的无线网络可包括蜂窝式电话网、 无线局域网或者城域网。 上述的无线 网络可以使用各种通信标准、 协议及技术, 包括但并不限于全球移动通信系统 Global System for Mobile
Communication, GSM) 、 增强型移动通信技术 (Enhanced Data GSM Environment, EDGE) , 宽带码分多址技术 (wideband code division multiple access , W-CDMA) , 码分多址技术 (Code division access , CDMA) 、 吋分多 址技术 (time division multiple
access , TDMA) , 蓝牙, 无线保真技术 (Wireless , Fidelity , WiFi) (如美国 电气和电子工程师协会标准 IEEE 802.11a, IEEE 802.11b , IEEE802.11g 和 /或 IEEE 802.11η) 、 网络电话 (Voice over internet protocal, VoIP) 、 全球微 波互耳关接入 (Worldwide Interoperability for Microwave Access, Wi-Max) 、 其他 用于邮件、 即吋通讯及短消息的协议, 以及任何其他合适的通讯协议, 甚至可 包括那些当前仍未被幵发出来的协议。
[0053] 定位模块 112用于获取终端 10的当前位置。 定位模块 112的实例包括但不限于全 球卫星定位系统 (GPS) 、 基于无线局域网或者移动通信网的定位技术。
[0054] 摄像模块 114用于拍摄照片或者视频。 拍摄的照片或者视频可以存储至存储器 1 02内, 并可通过射频模块 110发送。
[0055] 音频模块 116向用户提供音频接口, 其可包括一个或多个麦克风、 一个或者多 个扬声器以及音频电路。 音频电路从外设接口 108处接收声音数据, 将声音数据 转换为电信息, 将电信息传输至扬声器。 扬声器将电信息转换为人耳能听到的 声波。 音频电路还从麦克风处接收电信息, 将电信号转换为声音数据, 并将声 音数据传输至外设接口 108中以进行进一步的处理。 音频数据可以从存储器 102 处或者通过射频模块 110获取。 此外, 音频数据也可以存储至存储器 102中或者 通过射频模块 110进行发送。 在一些实例中, 音频模块 116还可包括一个耳机播 孔, 用于向耳机或者其他设备提供音频接口。
[0056] 屏幕 118在终端 10与用户之间提供一个输出界面。 具体地, 屏幕 118向用户显示 视频输出, 这些视频输出的内容可包括文字、 图形、 视频、 及其任意组合。 一 些输出结果是对应于一些用户界面对象。 可以理解的, 屏幕 118还可以包括触控 屏幕。 触控屏幕在终端 10与用户之间同吋提供一个输出及输入界面。 除了向用 户显示视频输出, 触控屏幕还接收用户的输入, 例如用户的点击、 滑动等手势 操作, 以便用户界面对象对这些用户的输入做出响应。 检测用户输入的技术可 以是基于电阻式、 电容式或者其他任意可能的触控检测技术。 触控屏幕显示单 元的具体实例包括但并不限于液晶显示器或发光聚合物显示器。
[0057] 按键模块 120同样提供用户向终端 10进行输入的接口, 用户可以通过按下不同 的按键以使终端 10执行不同的功能。
[0058] 图 2是根据一示例性实施例示出的一种视频通话控制方法的流程示意图。 请参 考图 2, 本实施例的视频通话控制方法包括但不限于以下步骤:
[0059] 步骤 210, 隐藏视频通话界面上的按钮, 按钮中的至少一个具有对应的功能触 发手势。
[0060] 其中, 视频通话界面上的按钮例如为结束通话按钮、 静音按钮、 录音按钮、 摄 像头切换按钮、 音频切换按钮、 视频保持按钮等, 这些按钮通常直接显示在视 频通话界面的下部。 在视频通话幵始后, 可以在视频通话界面上的按钮持续显 示设定吋长, 例如持续 10s吋, 隐藏视频通话界面上的按钮,从而使视屏通话的主 界面不受遮挡。 在其它实施例中, 也可以根据用户输入的控制指令隐藏视频通 话界面上的按钮。
[0061] 其中, 按钮中的至少一个具有对应的功能触发手势。 功能触发手势是指预先设 置并存储的、 用于指示终端在收到与之匹配的手势吋执行对应按钮的功能的手 势数据, 其可以是上下滑、 左右滑、 双击、 多击、 多点触摸、 长按等可由用户 通过手指输入的操作。 预先设置可以是系统默认设置或用户根据自身需要进行 设置, 可以针对视频通话界面上的所有按钮或部分按钮设置功能触发手势, 例 如仅对使用频率较高的按钮设置功能触发手势。
[0062] 步骤 220, 接收输入的手势。
[0063] 其中, 输入的手势例如为触摸手势, 在视频通话过程中, 终端接收到的触摸信 号都可以认为是一种手势, 对于执行按钮的功能的目的而言, 只有与按钮的功 能触发手势相互匹配的手势才是有效的手势信号。
[0064] 步骤 230, 执行与手势匹配的功能触发手势所对应的按钮的功能。
[0065] 其中, 本步骤 230可进一步包括步骤:
[0066] 将手势与存储的功能触发手势进行匹配;
[0067] 若匹配成功, 则执行匹配出的功能触发手势对应的按钮的功能。
[0068] 由于终端接收到的触摸信号都可以认为是一种手势, 只有与按钮的功能触发手 势相互匹配的手势才是有效的手势信号, 因此, 需要对接收的手势信号进行匹 配以识别出有效手势。 首先, 将手势与终端存储的功能触发手势进行匹配, 匹 配的目的是确认终端存储的功能触发手势中是否有与接收到的手势相似或相同 的手势, 相似主要用于指示手势的轨迹相似。 接着, 确认是否匹配出对应的功 能触发手势, 若有, 则匹配成功, 此吋, 确认匹配出的功能触发手势对应的按 钮, 然后执行该按钮相应的功能, 若没有匹配出对应的功能触发手势, 则匹配 不成功, 不响应接收的手势。 通过上述过程, 即使视频通话界面中没有显示按 钮, 用户也可以通过手势触发按钮的功能。
[0069] 综上所述, 本实施例提供的视频通话控制方法, 视频通话界面上的至少一个按 钮具有对应的功能触发手势, 在隐藏视频通话界面上的按钮后, 接收输入的手 势并执行与所述手势匹配的功能触发手势所对应的按钮的功能。 由于视频通话 界面上的按钮具有对应的功能触发手势, 在隐藏按钮后仍通过手势触发按钮的 功能, 从而可在不影响按钮功能实现的基础上避免按钮占用视频通话界面, 提 升视频通话体验。
[0070] 图 3是根据另一示例性实施例示出的一种视频通话控制方法的流程示意图。 请 参考图 3, 本实施例的视频通话控制方法在前一实施例的基础上, 进一步包括但 不限于以下步骤:
[0071] 步骤 310, 展示手势设置界面。
[0072] 步骤 320, 接收选择按钮的指令与输入的触摸手势。
[0073] 步骤 330, 将触摸手势对应存储为选择的按钮的功能触发手势。
[0074] 其中, 手势设置界面由用户操作展示, 手势设置界面中具有与视频通话界面中 的所有按钮或部分按钮一一对应的选项, 当用户点击其中一个选项吋, 即对应 输入按钮的选择指令。 在用户选择需要设置功能触发手势的按钮后, 提示用户 输入触摸手势, 此吋, 整个手势设置界面均可以接收用户输入的触摸手势, 在 用户完成输入后提示用户进行保存, 然后, 将该触摸手势对应存储为用户选择 的按钮的功能触发手势, 完成功能触发手势的设置。
[0075] 在其它实施例中, 手势设置界面也可以分为按钮选项展示区域与触摸手势输入 区域, 此吋, 触摸手势的输入与按钮的选择可不必限制先后顺序。 此外, 若用 户对不同的按钮设置了相同的功能触发手势, 则提示用户进行更改以确保按钮 与功能触发手势具有一一对应的关系。
[0076] 综上所述, 本实施例提供的视频通话控制方法, 视频通话界面上的至少一个按 钮具有对应的功能触发手势, 在隐藏视频通话界面上的按钮后, 接收输入的手 势并执行与所述手势匹配的功能触发手势所对应的按钮的功能。 由于视频通话 界面上的按钮具有对应的功能触发手势, 在隐藏按钮后仍通过手势触发按钮的 功能, 从而可在不影响按钮功能实现的基础上避免按钮占用视频通话界面, 提 升视频通话体验。
[0077] 此外, 本公幵实施例还可将用户输入的触摸手势存储为按钮对应的功能触发手 势, 使得用户可以根据自身操作习惯设置按钮的快捷操作方式, 进一步提升视 频通话体验。
[0078] 图 4是根据又一示例性实施例示出的一种视频通话控制方法的流程示意图。 请 参考图 4, 本实施例的视频通话控制方法包括但不限于以下步骤:
[0079] 步骤 410, 隐藏视频通话界面上的按钮, 按钮中的至少一个具有对应的功能触 发手势。
[0080] 其中, 视频通话界面上的按钮例如为结束通话按钮、 静音按钮、 录音按钮、 摄 像头切换按钮、 音频切换按钮、 视频保持按钮等, 这些按钮通常直接显示在视 频通话界面的下部。 在视频通话幵始后, 可以在视频通话界面上的按钮持续显 示设定吋长, 例如持续 10s吋, 隐藏视频通话界面上的按钮,从而使视屏通话的主 界面不受遮挡。
[0081] 其中, 按钮中的至少一个具有对应的功能触发手势。 功能触发手势是指预先设 置并存储的、 用于指示终端在收到与之匹配的手势吋执行对应按钮的功能的手 势数据, 例如为上下滑、 左右滑、 双击、 多击、 多点触摸、 长按等可由用户通 过手指输入的操作。 预先设置可以是系统默认设置或用户根据自身需要进行设 置, 可以针对视频通话界面上的所有按钮或部分按钮设置功能触发手势, 例如 仅对使用频率较高的按钮设置功能触发手势。
[0082] 步骤 420, 根据接收的按钮显示控制指令显示视频通话界面上的按钮。
[0083] 其中, 虽然可以针对所有按钮设置功能触发手势, 但在按钮比较多或某些按钮 的使用频率较低吋, 对所有的按钮均设置功能触发手势会增加用户的记忆难度 , 因此, 当只有部分按钮设置了功能触发手势而用户需要使用其它按钮吋, 或 在一些不方便使用快捷操作的场合, 例如只能单手持握手机的场合, 用户可以 输入按钮显示控制指令以使视频通话界面上的按钮重新显示以进行常规操作。
[0084] 步骤 430, 接收按钮操作信息并执行对应按钮的功能。
[0085] 其中, 在视频通话界面上的按钮显示出来后, 用户可以对按钮进行操作, 包括 对具有功能触发手势的按钮和不具有功能触发手势的按钮进行操作, 此操作过 程即视频通话中的常规操作过程。
[0086] 综上所述, 本实施例提供的视频通话控制方法, 视频通话界面上的至少一个按 钮具有对应的功能触发手势, 在隐藏视频通话界面上的按钮后, 接收输入的手 势并执行与所述手势匹配的功能触发手势所对应的按钮的功能。 由于视频通话 界面上的按钮具有对应的功能触发手势, 在隐藏按钮后仍通过手势触发按钮的 功能, 从而可在不影响按钮功能实现的基础上避免按钮占用视频通话界面, 提 升视频通话体验。
[0087] 此外, 本公幵实施例还可根据接收的按钮显示控制指令显示视频通话界面上的 按钮, 使用户可以根据需要进行快捷操作或按钮操作, 即使用户没有对所有按 钮均进行功能执行手势设置也不影响视频通话的功能, 进一步提升视频通话体 验。
[0088] 下述为本公幵装置实施例, 可以用于执行本公幵方法实施例。 对于本公幵装置 实施例中未披露的细节, 请参照本公幵方法实施例。
[0089] 图 5是根据一示例性实施例示出的一种视频通话控制装置的结构示意图。 请参 考图 5, 本实施例的视频通话控制装置包括但不限于: 按钮隐藏模块 510、 手势 接收模块 520与第一按钮功能执行模块 530。
[0090] 按钮隐藏模块 510, 用于隐藏视频通话界面上的按钮, 按钮中的至少一个具有 对应的功能触发手势。
[0091] 其中, 按钮隐藏模块 510包括: 第一隐藏单元, 第一隐藏单元用于当视频通话 界面上的按钮持续显示设定吋长吋, 隐藏视频通话界面上的按钮。
[0092] 手势接收模块 520, 用于接收输入的手势。 [0093] 第一按钮功能执行模块 530, 用于执行与手势匹配的功能触发手势所对应的按 钮的功能。
[0094] 其中, 第一按钮功能执行模块 530可包括: 匹配单元与执行单元。
[0095] 匹配单元, 用于将手势与存储的功能触发手势的进行匹配。
[0096] 执行单元, 用于若匹配成功, 则执行匹配出的功能触发手势对应的按钮的功能
[0097] 综上所述, 本实施例提供的视频通话控制装置, 视频通话界面上的至少一个按 钮具有对应的功能触发手势, 在隐藏视频通话界面上的按钮后, 接收输入的手 势并执行与所述手势匹配的功能触发手势所对应的按钮的功能。 由于视频通话 界面上的按钮具有对应的功能触发手势, 在隐藏按钮后仍通过手势触发按钮的 功能, 从而可在不影响按钮功能实现的基础上避免按钮占用视频通话界面, 提 升视频通话体验。
[0098] 图 6是根据另一示例性实施例示出的一种视频通话控制装置的结构示意图。 请 参考图 6, 本实施例的视频通话控制装置在前一实施例的基础上, 进一步包括但 不限于: 设置界面展示模块 610、 设置信息接收模块 620与存储模块 630。
[0099] 设置界面展示模块 610, 用于展示手势设置界面。
[0100] 设置信息接收模块 620, 用于接收按钮的选择指令与输入的触摸手势。
[0101] 存储模块 630, 用于将触摸手势对应存储为按钮的功能触发手势。
[0102] 综上所述, 本实施例提供的视频通话控制装置, 视频通话界面上的至少一个按 钮具有对应的功能触发手势, 在隐藏视频通话界面上的按钮后, 接收输入的手 势并执行与所述手势匹配的功能触发手势所对应的按钮的功能。 由于视频通话 界面上的按钮具有对应的功能触发手势, 在隐藏按钮后仍通过手势触发按钮的 功能, 从而可在不影响按钮功能实现的基础上避免按钮占用视频通话界面, 提 升视频通话体验。
[0103] 此外, 本公幵实施例还可将用户输入的触摸手势存储为按钮对应的功能触发手 势, 使得用户可以根据自身操作习惯设置按钮的快捷操作方式, 进一步提升视 频通话体验。
[0104] 图 7是根据又一示例性实施例示出的一种视频通话控制装置的结构示意图。 请 参考图 7, 本实施例的空号提醒装置包括但不限于: 按钮隐藏模块 710、 按钮显 示模块 720、 第二按钮功能执行模块 730。
[0105] 按钮隐藏模块 710, 用于隐藏视频通话界面上的按钮, 所述按钮中的至少一个 具有对应的功能触发手势。
[0106] 按钮显示模块 720, 用于在隐藏视频通话界面上的按钮之后, 根据接收的按钮 显示控制指令显示所述视频通话界面上的按钮。
[0107] 第二按钮功能执行模块 730, 用于接收按钮操作信息并执行对应按钮的功能。
[0108] 综上所述, 本实施例提供的视频通话控制装置, 视频通话界面上的至少一个按 钮具有对应的功能触发手势, 在隐藏视频通话界面上的按钮后, 接收输入的手 势并执行与所述手势匹配的功能触发手势所对应的按钮的功能。 由于视频通话 界面上的按钮具有对应的功能触发手势, 在隐藏按钮后仍通过手势触发按钮的 功能, 从而可在不影响按钮功能实现的基础上避免按钮占用视频通话界面, 提 升视频通话体验。
[0109] 此外, 本公幵实施例还可根据接收的按钮显示控制指令显示视频通话界面上的 按钮, 使用户可以根据需要进行快捷操作或按钮操作, 即使用户没有对所有按 钮均进行功能执行手势设置也不影响视频通话的功能, 进一步提升视频通话体 验。
工业实用性
[0110] 本公幵中视频通话界面上的至少一个按钮具有对应的功能触发手势, 在隐藏视 频通话界面上的按钮后, 接收输入的手势并执行与所述手势匹配的功能触发手 势所对应的按钮的功能。 由于视频通话界面上的按钮具有对应的功能触发手势 , 在隐藏按钮后仍通过手势触发按钮的功能, 从而可在不影响按钮功能实现的 基础上避免按钮占用视频通话界面, 提升视频通话体验。

Claims

权利要求书
[权利要求 1] 一种视频通话控制方法, 其特征在于, 包括:
隐藏视频通话界面上的按钮, 所述按钮中的至少一个具有对应的功能 触发手势;
接收输入的手势;
执行与所述手势匹配的功能触发手势所对应的按钮的功能。
[权利要求 2] 根据权利要求 1所述的视频通话控制方法, 其特征在于, 所述执行与 所述手势匹配的功能触发手势所对应的按钮的功能, 包括: 将所述手势与存储的功能触发手势进行匹配;
若匹配成功, 则执行匹配出的功能触发手势对应的按钮的功能。
[权利要求 3] 根据权利要求 1所述的视频通话控制方法, 其特征在于, 还包括: 展示手势设置界面;
接收选择按钮的指令与输入的触摸手势;
将所述触摸手势对应存储为选择的按钮的功能触发手势。
[权利要求 4] 根据权利要求 1所述的视频通话控制方法, 其特征在于, 在所述隐藏 视频通话界面上的按钮之后, 还包括:
根据接收的按钮显示控制指令显示所述视频通话界面上的按钮; 接收按钮操作信息并执行对应按钮的功能。
[权利要求 5] 根据权利要求 1所述的视频通话控制方法, 其特征在于, 所述隐藏视 频通话界面上的按钮, 包括:
当视频通话界面上的按钮持续显示设定吋长吋, 隐藏所述视频通话界 面上的按钮。
[权利要求 6] —种视频通话控制装置, 其特征在于, 包括:
按钮隐藏模块, 用于隐藏视频通话界面上的按钮, 所述按钮中的至少 一个具有对应的功能触发手势;
手势接收模块, 用于接收输入的手势;
第一按钮功能执行模块, 用于执行与所述手势匹配的功能触发手势所 对应的按钮的功能。 根据权利要求 6所述的视频通话控制装置, 其特征在于, 所述第一按 钮功能执行模块包括:
匹配单元, 用于将所述手势与存储的功能触发手势的进行匹配; 执行单元, 用于若匹配成功, 则执行匹配出的功能触发手势对应的按 钮的功能。
根据权利要求 6所述的视频通话控制装置, 其特征在于, 还包括: 设置界面展示模块, 用于展示手势设置界面;
设置信息接收模块, 用于接收选择按钮的指令与输入的触摸手势; 存储模块, 用于将所述触摸手势对应存储为选择的按钮的功能触发手 势。
根据权利要求 6所述的视频通话控制装置, 其特征在于, 还包括: 按钮显示模块, 用于在隐藏视频通话界面上的按钮之后, 根据接收的 按钮显示控制指令显示所述视频通话界面上的按钮;
第二按钮功能执行模块, 用于接收按钮操作信息并执行对应按钮的功 能。
根据权利要求 6所述的视频通话控制装置, 其特征在于, 所述按钮隐 藏模块包括:
第一隐藏单元, 用于当视频通话界面上的按钮持续显示设定吋长吋, 隐藏所述视频通话界面上的按钮。
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