CN112437326A - Video display method and device, electronic equipment and computer readable storage medium - Google Patents

Video display method and device, electronic equipment and computer readable storage medium Download PDF

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Publication number
CN112437326A
CN112437326A CN202011322261.7A CN202011322261A CN112437326A CN 112437326 A CN112437326 A CN 112437326A CN 202011322261 A CN202011322261 A CN 202011322261A CN 112437326 A CN112437326 A CN 112437326A
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China
Prior art keywords
video
interface
live
playing
window
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CN202011322261.7A
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Chinese (zh)
Inventor
林刘生
杜林�
孙新晨
邱俊琪
黄泳祺
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Guangzhou Huya Technology Co Ltd
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Guangzhou Huya Technology Co Ltd
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Priority to CN202011322261.7A priority Critical patent/CN112437326A/en
Publication of CN112437326A publication Critical patent/CN112437326A/en
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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N21/00Selective content distribution, e.g. interactive television or video on demand [VOD]
    • H04N21/20Servers specifically adapted for the distribution of content, e.g. VOD servers; Operations thereof
    • H04N21/21Server components or server architectures
    • H04N21/218Source of audio or video content, e.g. local disk arrays
    • H04N21/2187Live feed
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N21/00Selective content distribution, e.g. interactive television or video on demand [VOD]
    • H04N21/40Client devices specifically adapted for the reception of or interaction with content, e.g. set-top-box [STB]; Operations thereof
    • H04N21/43Processing of content or additional data, e.g. demultiplexing additional data from a digital video stream; Elementary client operations, e.g. monitoring of home network or synchronising decoder's clock; Client middleware
    • H04N21/4302Content synchronisation processes, e.g. decoder synchronisation
    • H04N21/4307Synchronising the rendering of multiple content streams or additional data on devices, e.g. synchronisation of audio on a mobile phone with the video output on the TV screen
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N21/00Selective content distribution, e.g. interactive television or video on demand [VOD]
    • H04N21/40Client devices specifically adapted for the reception of or interaction with content, e.g. set-top-box [STB]; Operations thereof
    • H04N21/43Processing of content or additional data, e.g. demultiplexing additional data from a digital video stream; Elementary client operations, e.g. monitoring of home network or synchronising decoder's clock; Client middleware
    • H04N21/431Generation of visual interfaces for content selection or interaction; Content or additional data rendering
    • H04N21/4312Generation of visual interfaces for content selection or interaction; Content or additional data rendering involving specific graphical features, e.g. screen layout, special fonts or colors, blinking icons, highlights or animations
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N21/00Selective content distribution, e.g. interactive television or video on demand [VOD]
    • H04N21/40Client devices specifically adapted for the reception of or interaction with content, e.g. set-top-box [STB]; Operations thereof
    • H04N21/43Processing of content or additional data, e.g. demultiplexing additional data from a digital video stream; Elementary client operations, e.g. monitoring of home network or synchronising decoder's clock; Client middleware
    • H04N21/431Generation of visual interfaces for content selection or interaction; Content or additional data rendering
    • H04N21/4312Generation of visual interfaces for content selection or interaction; Content or additional data rendering involving specific graphical features, e.g. screen layout, special fonts or colors, blinking icons, highlights or animations
    • H04N21/4316Generation of visual interfaces for content selection or interaction; Content or additional data rendering involving specific graphical features, e.g. screen layout, special fonts or colors, blinking icons, highlights or animations for displaying supplemental content in a region of the screen, e.g. an advertisement in a separate window
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N21/00Selective content distribution, e.g. interactive television or video on demand [VOD]
    • H04N21/40Client devices specifically adapted for the reception of or interaction with content, e.g. set-top-box [STB]; Operations thereof
    • H04N21/43Processing of content or additional data, e.g. demultiplexing additional data from a digital video stream; Elementary client operations, e.g. monitoring of home network or synchronising decoder's clock; Client middleware
    • H04N21/443OS processes, e.g. booting an STB, implementing a Java virtual machine in an STB or power management in an STB
    • H04N21/4438Window management, e.g. event handling following interaction with the user interface
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N21/00Selective content distribution, e.g. interactive television or video on demand [VOD]
    • H04N21/40Client devices specifically adapted for the reception of or interaction with content, e.g. set-top-box [STB]; Operations thereof
    • H04N21/47End-user applications
    • H04N21/485End-user interface for client configuration
    • H04N21/4858End-user interface for client configuration for modifying screen layout parameters, e.g. fonts, size of the windows

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  • Engineering & Computer Science (AREA)
  • Multimedia (AREA)
  • Signal Processing (AREA)
  • Human Computer Interaction (AREA)
  • Software Systems (AREA)
  • Databases & Information Systems (AREA)
  • Business, Economics & Management (AREA)
  • Marketing (AREA)
  • Two-Way Televisions, Distribution Of Moving Picture Or The Like (AREA)
  • User Interface Of Digital Computer (AREA)

Abstract

The application discloses a video display method, a video display device, electronic equipment and a computer-readable storage medium, wherein the video display method is applied to a mobile intelligent terminal and comprises the following steps: when the first interface is displayed through the first window, whether a display instruction of a second interface is received or not is judged; and if the display instruction is received, displaying the second interface through a second window, and keeping displaying the first interface through the first window. By the scheme, diversified video watching requirements of users can be met.

Description

Video display method and device, electronic equipment and computer readable storage medium
Technical Field
The present application relates to the field of internet technologies, and in particular, to a video display method, electronic device, and computer-readable storage medium.
Background
With the technical development of the mobile intelligent terminal, the demands of users are changing, and the users may want to watch different videos at the same time. Taking live webcast as an example, live webcast refers to a playing mode in which live webcast data can be viewed on an exchange platform through a network. The live data may be multimedia data such as video, audio, and/or text. The network live broadcast application based on various mobile devices such as mobile phones and tablets is widely popularized, so that users can watch live broadcast data anytime and anywhere through the mobile devices.
For example, when a user is watching one live room using a mobile device, the user wants to watch other live rooms simultaneously. However, when playing live data through a mobile device, when a user needs to watch other live data in a live network application, only the currently played live data can be terminated, thereby affecting the watching effect of the user.
Disclosure of Invention
The technical problem mainly solved by the application is to provide a video display method, a video display device, an electronic device and a computer readable storage medium, which can meet diversified video watching requirements of users.
In order to solve the above problem, a first aspect of the present application provides a video display method, where the video display method is applied to a mobile intelligent terminal, and the video display method includes: when the first interface is displayed through the first window, whether a display instruction of a second interface is received or not is judged; and if the display instruction is received, displaying the second interface through a second window, and keeping displaying the first interface through the first window.
In order to solve the above problem, a second aspect of the present application provides a video display apparatus comprising: the judging module is used for judging whether a display instruction of a second interface is received or not when the first interface is displayed through the first window; and the display module is used for displaying the second interface through a second window and keeping displaying the first interface through the first window if the display instruction is received.
In order to solve the above problem, a third aspect of the present application provides a mobile intelligent terminal, which includes a memory and a processor coupled to each other, where the processor is configured to execute program instructions stored in the memory to implement the video display method of the first aspect.
In order to solve the above-mentioned problems, a fourth aspect of the present application provides a computer-readable storage medium having stored thereon program instructions that, when executed by a processor, implement the video display method of the first aspect described above.
The invention has the beneficial effects that: different from the prior art, the video display method is applied to the mobile intelligent terminal, whether a display instruction of a second interface is received or not is judged when a first interface is displayed through a first window, and if the display instruction of the second interface is received, the second interface is displayed through the second window and the first interface is kept displayed through the first window. The mobile intelligent terminal of the application displays the first interface through the second window while displaying the second interface through the first window, and the first interface and the second interface can be simultaneously seen by a user in a mode that the first window and the second window coexist, so that the effect of opening more videos can be realized, and for the user, the user can watch videos without a single selection question, and the diversified video watching requirements of the user can be met.
Drawings
FIG. 1a is a schematic flow chart of a first embodiment of a video display method according to the present application;
FIG. 1b is a schematic flow chart of a second embodiment of a video display method according to the present application;
FIG. 1c is a schematic flow chart of a third embodiment of a video display method according to the present application;
FIG. 2 is a schematic diagram of a screen display interface in a first implementation scenario of the video display method of the present application;
FIG. 3 is a schematic view of live broadcast switching in a second implementation scenario of the video display method of the present application;
fig. 4 is a schematic view of live broadcast switching in a third implementation scenario of the video display method of the present application;
fig. 5 is a schematic view of live broadcast switching in a fourth implementation scenario of the video display method of the present application;
FIG. 6 is a schematic diagram of a screen display interface displaying effect in a fifth implementation scenario of the video display method of the present application;
fig. 7 is a schematic flowchart of live broadcast switching in a sixth implementation scenario of the video display method of the present application;
FIG. 8 is a block diagram of an embodiment of a video display apparatus according to the present application;
FIG. 9 is a block diagram of another embodiment of a video display apparatus according to the present application;
FIG. 10 is a block diagram of an embodiment of a mobile intelligent terminal according to the present application;
FIG. 11 is a block diagram of an embodiment of a computer-readable storage medium of the present application.
Detailed Description
The following describes in detail the embodiments of the present application with reference to the drawings attached hereto.
In the following description, for purposes of explanation and not limitation, specific details are set forth such as particular system structures, interfaces, techniques, etc. in order to provide a thorough understanding of the present application.
The terms "system" and "network" are often used interchangeably herein. The term "and/or" herein is merely an association describing an associated object, meaning that three relationships may exist, e.g., a and/or B, may mean: a exists alone, A and B exist simultaneously, and B exists alone. In addition, the character "/" herein generally indicates that the former and latter related objects are in an "or" relationship. Further, the term "plurality" herein means two or more than two.
Referring to fig. 1a, fig. 1a is a schematic flow chart of a video display method according to a first embodiment of the present application. The video display method is mainly applied to the mobile intelligent terminal, and the mobile intelligent terminal can be an electronic device using video playing application, such as a mobile phone, a tablet and the like; specifically, the method may include the steps of:
step S101: and when the first interface is displayed through the first window, judging whether a display instruction of a second interface is received.
Step S102: and if a display instruction is received, displaying the second interface through the second window, and keeping displaying the first interface through the first window.
In this embodiment, the mobile intelligent terminal displays the first interface through the first window while displaying the second interface through the second window, and the user can see the first interface and the second interface simultaneously in a mode that the first window and the second window coexist, so that an effect of opening more videos can be realized.
Referring to fig. 1b, fig. 1b is a schematic flow chart of a video display method according to a second embodiment of the present application. In this embodiment, the mobile intelligent terminal may use a live webcast application, the first window is a full-screen display window, and the second window is a floating window. Specifically, the step S101 may include the step S111: and when the first interface is displayed in a full screen mode, judging whether a display instruction of a second interface is received.
With the rapid development of the webcast application, more and more users watch the webcast video by using the webcast application, and the webcast application can provide various types of webcasts for the users. The floating window is displayed in a manner of floating on the main page of the screen of the mobile intelligent terminal, for example, if the main page of the screen is a live broadcast room list page, the floating window floats on the live broadcast room list page to cover a part of area of the live broadcast room list page, but normal operation and display of the live broadcast room list page are not influenced, a user can perform related operation on the live broadcast room list page, and a first live broadcast video in the floating window is not influenced. In this embodiment, when the mobile intelligent terminal displays the first interface in a full screen manner, whether a display instruction related to the second interface is received needs to be monitored in real time, for example, when the full screen manner is that a live broadcast room list page is displayed, a user selects a favorite live broadcast room on the live broadcast room list page, if the user operates to click the live broadcast room, a display instruction of the second interface serving as the live broadcast room interface is generated, that is, the mobile intelligent terminal receives the display instruction of the second interface.
The step S102 may include the step S112: and if the display instruction is received, the second interface is played through the floating window, and the first interface is played in a full-screen display mode.
When the first interface is displayed in a full screen mode, if the display instruction of the second interface is received, the main page of the screen keeps displaying the first interface unchanged, meanwhile, the mobile intelligent terminal can establish the floating window to play the second interface, in the process, the display of the first interface is not stopped, the watching effect of the first interface is guaranteed, and the first interface and the second interface can be seen simultaneously. It can be understood that, when the first interface is a live broadcast room listing page and the second interface is a live broadcast room display interface, namely when the live broadcast room listing page is displayed in a full screen mode, a user selects a certain live broadcast room in the live broadcast room listing page to generate a display instruction of the live broadcast room display interface, whether the content of the live broadcast room is interested by the user is judged in advance, the live broadcast room display interface can be played through a suspension window at the moment, therefore, the user can preview the content of a live broadcast picture of the live broadcast room through the suspension window, whether the live broadcast content in the live broadcast room is interested is judged, and the efficiency of searching the interested live broadcast content by the user can be improved.
Referring to fig. 1c, fig. 1c is a schematic flow chart of a video display method according to a third embodiment of the present application. In this embodiment, the mobile intelligent terminal may use a live webcast application, the first window is a floating window, the second window is a full-screen display window, the first interface is an interface for a first live video, and the second interface is an interface for a second live video. Specifically, the step S101 may include the step S121: and when the first live video is played through the floating window, judging whether a playing instruction of the second live video is received.
In this embodiment, when the first live broadcast video is played in the floating window, whether a play instruction about the second live broadcast video is received needs to be monitored in real time, that is, when the user watches the first live broadcast video in the floating window, other live broadcasts that the user likes can be searched on a list page of the live broadcasts at the same time, if the user operates to click the second live broadcast, a play instruction of the second live broadcast video is generated, and the mobile intelligent terminal receives the play instruction of the second live broadcast video.
The step S102 may include the step S122: and if the playing instruction is received, displaying an interface for playing the second live video in a full screen mode, and keeping playing the first live video through the floating window.
In the existing live webcast application, when a user watches live webcast, other live webcast videos may need to be searched, and at this time, the current live webcast video can be played in a floating window manner, and when the current live webcast video is played in the floating window, the current live webcast video can be returned to a live webcast room list page of the live webcast application, so that the user can conveniently search other live webcast videos when watching live webcast; however, when the user selects an interested live broadcast room to watch in the live broadcast room list page, the user needs to exit the currently played live broadcast video and enter the new live broadcast room, and cannot watch the original live broadcast video continuously, which results in poor experience of watching the live broadcast video. In order to improve the experience of a user in watching a live video, in the embodiment of the application, when a first live video is played through a floating window, if it is judged that a playing instruction of a second live video is received, a main page of a screen enters an interface of a second live video from a list page of a live room, so that a mobile intelligent terminal can display the interface of the second live video in a full screen mode, the floating window can keep playing the first live video, in the process, the first live video is not played in a break mode, the watching effect of the first live video is guaranteed, and the first live video and the second live video can be watched at the same time.
According to the scheme, the mobile intelligent terminal plays the first live broadcast video through the suspension window when displaying the interface of the second live broadcast video in a full screen mode, the mode that the full screen display play and the suspension window play coexist is adopted, so that a user can see the first live broadcast video and the second live broadcast video simultaneously, the effect of opening more live broadcast rooms can be achieved, the live broadcast is not a single selection question any more for the user, and the diversified live broadcast watching requirements of the user can be met.
In one implementation scenario, the floating window is provided with a fixed button that can be used to lock the floating window while the floating window is playing the first live video. The step S122 may include: if the playing instruction is received, judging whether the floating window playing the first direct playing video is in a locked state; if so, displaying an interface for playing the second live video in a full screen mode, and keeping playing the first live video through the floating window; otherwise, closing the floating window, and playing the second live broadcast video by using full-screen playing. Referring to fig. 2, fig. 2 is a schematic view of a screen display interface in a first implementation scenario of a video display method of the present application, and it can be understood that, when a first live video is played through a floating window 21, a user may select to open the fixed button 210 or close the fixed button 210, when a play instruction of a second live video is received, if the user selects to open the fixed button 210 so as to enable the floating window 21 to be in a locked state, a main page 22 of a screen enters an interface of the second live broadcast room from a live broadcast room list page at this time, and the floating window 21 is not closed, and if the user selects to close the fixed button 210 so as to enable the floating window 21 to be in an unlocked state, the main page 22 of the screen enters the interface of the second live broadcast room from the live broadcast room list page at this time, and the floating window 21 is closed. A fixed button 210 is added on the interface of the floating window 21, after the floating window 21 is clicked and fixed, the floating window 21 can be kept to enter a second live broadcast room to watch a second live broadcast video while the first live broadcast video is played, and the effect that the floating window 21 playing the first live broadcast video and the display interface playing the second live broadcast video coexist is achieved.
It can be understood that the mobile intelligent terminal supports simultaneous play of at least two paths of live broadcast data, namely, video stream addresses corresponding to different live broadcast rooms can be played simultaneously, therefore, in the process of specifically processing live broadcast data, stream pulling, decoding and rendering modules need to support the condition of multiple instances, and therefore when a suspension window plays live broadcast data of one live broadcast room, if other live broadcast rooms need to be entered, a new live broadcast video player can be created to play the live broadcast data of a new live broadcast room. Specifically, when the floating window is playing the video of the live broadcast room a, the fixed button is clicked, and at this time, when entering the live broadcast room B, the video player of the floating window is firstly disconnected from the live broadcast room a, and the notification of the line and code rate change of the live broadcast room a corresponding to the floating window is not concerned; and muting the live video played by the floating window to avoid two sounds at the same time, then creating and displaying another video player, acquiring parameters such as the stream name, the line, the code rate and the like of the live broadcast room B, assembling the video stream address, pulling the stream and playing the video of the live broadcast room B on the main page of the screen.
In an implementation scenario, the step S122 may include: displaying an interface for playing the second live video in a full screen manner; and setting the floating window on the upper layer of the interface of the second live broadcast video to play the first live broadcast video, and closing the sound of the first live broadcast video. Referring to fig. 2, it can be understood that, when the first live video is played through the floating window 21, if the user selects to lock the floating window 21, after receiving a playing instruction of the second live video, the interface of the second live video is played in a full screen manner on the main page 22 of the screen, and at this time, the floating window 21 is playing the first live video and is in a locked state; since the area of the floating window 21 is usually smaller than the area of the full-screen page, for example, the area may be half of the area of the full-screen page or smaller, and the size may be adjusted according to actual needs, that is, the interface of the first live video is smaller than the area of the interface of the second live video. Therefore, in order to ensure that a user can watch the first live video and the second live video simultaneously, the suspension window 21 can be arranged on the upper layer of the interface of the second live video, the suspension window 21 is suspended on the interface of the second live video and covers the partial area of the second live video, but the normal watching of the second live video is not influenced, but at the moment, because the first live video and the second live video are played at the same time, in order to avoid the interference of the sound of the two live videos, the sound of the first live video can be selected to be closed, and the sound of the second live video is reserved.
In other embodiments, after the operation signal acting on the floating window is acquired, the display attribute of the floating window may be further adjusted according to the operation signal, where the display attribute may include a size, a color, a transparency, a position, and the like of the floating window, and for example, the floating window may be moved and zoomed, which may satisfy that a user adjusts and controls the floating window, thereby facilitating the user to view other live video content besides the floating window.
In an implementation scenario, after step S122, the video display method may further include: receiving a closing instruction of the second live video; and closing an interface for displaying the second live video in a full screen mode based on the closing instruction, keeping the floating window to play the first live video, and opening the sound of the first live video. Referring to fig. 3, fig. 3 is a schematic view illustrating live broadcast switching in a second implementation scenario of a video display method of the present application, it can be understood that, when a mobile intelligent terminal displays an interface for playing a second live video in a full screen on a main page 32 of a screen, and a floating window 31 keeps playing a first live video, a user may not be interested in content of the second live video, and therefore wants to close the second live video, if a user operates to close the second live broadcast, a close instruction for closing the second live video is generated, the mobile intelligent terminal receives the close instruction of the second live video, so that the main page 32 of the screen exits from the interface of the second live video to a live broadcast list page, at this time, only the floating window 31 keeps playing the first live video, so that sound of the first live video can be opened, and in this process, the first live video is not interrupted from playing, and the sound of the first live video is restored.
In another implementation scenario, after step S122, the video display method may further include: receiving a first operation instruction for the floating window; and displaying an interface for playing the first direct-playing video in a full screen manner, and closing the floating window. Referring to fig. 4, fig. 4 is a schematic view of live broadcast switching in a third implementation scenario of the video display method of the present application, it can be understood that, in the process that the user displays the interface playing the second live video in full screen on the main page 42 of the screen by the mobile intelligent terminal, and the floating window 41 keeps playing the first live video, if a first operation is performed on the floating window 41, such as the user clicking a first live video interface played by the floating window 41, the mobile intelligent terminal receives a first operation instruction to the floating window 41, so that the main page 42 of the screen is converted from the interface of the second live video to the interface of playing the first live video in a full-screen display mode, the floating window 41 is closed, that is, the user can close the floating window 41 by clicking the floating window 41 and the like in the first operation mode at any time, and switch back to the interface for displaying the first live video in full screen.
In another implementation scenario, after step S122, the video display method may further include: receiving a second operation instruction for the floating window; and displaying an interface for playing the first live video in a full screen mode, and playing the second live video through the floating window. Referring to fig. 5, fig. 5 is a schematic view illustrating live broadcast switching in a fourth implementation scenario of the video display method of the present application, it can be understood that, when the mobile intelligent terminal displays an interface for playing a second live video in a full screen on the main page 52 of the screen, and the floating window 51 keeps playing the first live video, if a second operation is performed on the floating window 51, for example, the floating window 51 is provided with a switch button 511, and a user clicks the switch button 511 of the floating window 51, the mobile intelligent terminal receives a second operation instruction on the floating window 51, so that the main page 52 of the screen is switched from the interface for displaying the second live video in the full screen to the interface for playing the first live video, and the interface played by the floating window 51 is switched from the first live video to the second live video, at this time, sound of the first live video can be turned on, and the sound of the second live video is turned off, that is, the user can switch the content played in the full screen display and the content played in the floating window 51 to each other by clicking the switching button 511 of the floating window 51 and other second operations at any time.
In an embodiment, the floating window of the present application may further have a plurality of display modes, and may set corresponding display modes for different live broadcast types, and each display mode may include a corresponding display brightness parameter and/or a display color parameter, so that the display brightness mode and/or the display color mode may be adjusted according to different live broadcast types. For example, the display requirement of a live broadcast of a singing dance and the like on a character of the live broadcast is high, the display requirement of a live broadcast of a game and the like on a game picture is high, and the display parameters of game content and the character are different to a certain extent, so that the display mode can be adjusted according to the type of the live broadcast video played by the floating window, the corresponding relation between the type of the live broadcast video and the display mode is obtained, and then the floating window is adjusted to the display mode corresponding to the type of the live broadcast video. In addition, after the display mode is adjusted, fine adjustment can be further performed according to the influence of other factors.
In an implementation scenario, before step S121, the video display method may further include: receiving a floating window playing instruction when an interface for playing the first direct playing video is displayed in a full screen mode; and closing the interface for displaying the first direct playing video in a full screen mode, and executing the step S121. It can be understood that, when the mobile intelligent terminal only plays the first live video in the first live broadcast room, it may be that an interface for playing the first live video is displayed in a full screen on a main page of a screen, and then a user clicks a floating window playing button set in the full screen display interface, that is, the mobile intelligent terminal receives a floating window playing instruction, and then the interface for playing the first live video in the full screen display mode can be closed, and a floating window is created, and the first live video is played through the floating window.
Referring to fig. 6, fig. 6 is a schematic diagram illustrating a display effect of a screen display interface in a fifth embodiment of the video display method of the present application. In an embodiment, a first live video and a second live video in the application are live videos of different live rooms; for example, the first live broadcast video is the live broadcast video of the chess anchor live broadcast room, the second live broadcast video is the live broadcast video of the beauty anchor live broadcast room, therefore, the mobile intelligent terminal uses the suspension window to play the first live broadcast video when displaying the interface of the second live broadcast video in a full screen mode, so that the user can watch the chess anchor and play chess while watching the beauty anchor and dance, the multi-open effect of the live broadcast room is realized, the diversified watching demands of the live broadcast audience end user can be met, and the watching of the live broadcast is not a single choice question any more. In another embodiment, the first live video and the second live video are live videos of different viewing angles in the same live broadcast room; for example, the first live video is a live video at a first visual angle of a live broadcast room of a game anchor, and the second live video is a live video at a second visual angle of the live broadcast room of the game anchor, so that the mobile intelligent terminal plays the first live video by using the floating window while displaying an interface for playing the second live video in a full screen manner, so that a user can browse live pictures at other visual angles while watching a game anchor game, and the diversified watching demands of the user at a live audience can be met by adopting a mode of coexisting full screen display playing and floating window playing.
Referring to fig. 7, fig. 7 is a schematic view of a live broadcast switching process in a sixth implementation scenario of the video display method of the present application, in an application scenario, where the mobile intelligent terminal is a mobile phone, and when a user clicks on a live broadcast list page to enter a live broadcast room to watch a live broadcast video, a screen of the mobile phone displays the live broadcast video in a full screen manner, where the live broadcast picture and a chat picture may be included. When the user selects to return to the live list page from the live broadcast room, whether to enter a floating window playing mode can be configured and judged; if the live broadcast room does not enter the floating window mode, destroying the live broadcast room interface and returning to a live broadcast list page; and if the floating window playing mode is entered when the live broadcast room returns to the live broadcast list page, a floating window is created, at the moment, the original live broadcast room interface displayed in full screen on the mobile phone screen is hidden and returns to the live broadcast list page, and the live broadcast video of the live broadcast room is played in the floating window. In addition, when a user clicks to enter another live broadcast room to watch live broadcast video in a live broadcast list page, whether a floating window is playing at the moment is judged; if not, directly creating the other live broadcast room, and displaying the live broadcast video of the other live broadcast room in a full screen mode on a mobile phone screen; if yes, further judging whether the played floating window is in a fixed state; it can be understood that a fixed button is arranged on the interface of the floating window, and the floating window can be fixed or not fixed selectively; if the floating window is in the non-fixed mode, closing the floating window; if the floating window is in the fixed mode, the live video played by the floating window is muted; and then, if the mobile phone screen displays the live video of one live broadcast room in full screen at the moment, directly replacing the full screen display with the live video of the other live broadcast room, and if the mobile phone screen does not display the live video of one live broadcast room in full screen at the moment, directly creating the other live broadcast room, and displaying the live video of the other live broadcast room in full screen on the mobile phone screen. According to the scheme, when the mobile phone displays the interface of the live video of one live broadcast room in a full screen mode, the floating window can be selected to play the live video of the other live broadcast room, the mode that the full screen display play and the floating window play coexist is adopted, so that a user can see different live videos simultaneously, the effect of multiple opening of the live broadcast room can be realized, and the diversified live broadcast watching requirements of the user can be met.
Referring to fig. 8, fig. 8 is a schematic diagram of a frame of a video display device according to an embodiment of the present application. The video display device 80 includes: a determining module 800, configured to determine whether a display instruction of a second interface is received when a first interface is displayed through a first window; a display module 802, configured to display the second interface through the second window if the display instruction is received, and keep displaying the first interface through the first window.
According to the scheme, when the first interface is displayed through the first window, whether a display instruction of the second interface is received or not is judged through the judging module 800, and when the display instruction of the second interface is received, the display module 802 displays the second interface through the second window, the first interface is kept to be displayed through the first window, and the first interface and the second interface can be simultaneously seen by a user in a mode that the first window and the second window coexist, so that the effect of multiple video opening can be achieved.
In some embodiments, the first window is a full screen display window and the second window is a floating window; the determining module 800 may specifically be configured to: and when the first interface is displayed in a full screen mode, whether a display instruction of a second interface is received or not is judged. At this time, the display module 802 may be specifically configured to: and if the display instruction is received, the second interface is played through the floating window, and the first interface is played in a full-screen display mode.
In some embodiments, the first window is a floating window, the second window is a full-screen display window, the first interface is an interface for a first live video, and the second interface is an interface for a second live video; the determining module 800 may specifically be configured to: and when the first live video is played through the floating window, judging whether a playing instruction of the second live video is received. At this time, the display module 802 may be specifically configured to: and if the playing instruction is received, displaying an interface for playing the second live video in a full screen mode, and keeping playing the first live video through the floating window.
In some embodiments, the display module 802 may be specifically configured to: if the playing instruction is received, judging whether the floating window playing the first direct playing video is in a locked state; if so, displaying an interface for playing the second live video in a full screen mode, and keeping playing the first live video through the floating window; otherwise, closing the floating window, and playing the second live broadcast video by using full-screen playing.
In some embodiments, the display module 802 may be specifically configured to: displaying an interface for playing the second live video in a full screen manner; and setting the floating window on the upper layer of the interface of the second live broadcast video to play the first live broadcast video, and closing the sound of the first live broadcast video.
Referring to fig. 9, fig. 9 is a schematic diagram of a frame of a video display device according to an embodiment of the present application. Further, in some embodiments, the video display apparatus 80 further includes a switching module 804, and after the displaying module 802 performs the steps of setting the floating window on an upper layer of the interface of the second live video, playing the first live video, and turning off the sound of the first live video, the switching module 804 is configured to: receiving a closing instruction of the second live video; and closing an interface for displaying the second live video in a full screen mode based on the closing instruction, keeping the floating window to play the first live video, and opening the sound of the first live video.
In some embodiments, the switching module 804 may be further configured to: receiving a first operation instruction for the floating window; and displaying an interface for playing the first direct-playing video in a full screen manner, and closing the floating window.
In some embodiments, the switching module 804 may be further configured to: receiving a second operation instruction for the floating window; and displaying an interface for playing the first live video in a full screen mode, and playing the second live video through the floating window.
In some embodiments, before playing the first live video through the floating window, the switching module 804 may be further configured to: receiving a floating window playing instruction when an interface for playing the first direct playing video is displayed in a full screen mode; and closing the interface for displaying the first direct-playing video in a full screen mode, and displaying the first direct-playing video through the floating window.
Referring to fig. 10, fig. 10 is a schematic diagram of a framework of an embodiment of a mobile intelligent terminal according to the present application. The mobile intelligent terminal 100 comprises a memory 101 and a processor 102 which are coupled to each other, and the processor 102 is configured to execute program instructions stored in the memory 101 to implement the steps of any of the video display method embodiments described above. In a specific implementation scenario, the mobile intelligent terminal 100 may include, but is not limited to: microcomputer, server.
In particular, the processor 102 is configured to control itself and the memory 101 to implement the steps of any of the above-described embodiments of the video display method. Processor 102 may also be referred to as a CPU (Central Processing Unit). The processor 102 may be an integrated circuit chip having signal processing capabilities. The Processor 102 may also be a general purpose Processor, a Digital Signal Processor (DSP), an Application Specific Integrated Circuit (ASIC), a Field Programmable Gate Array (FPGA) or other Programmable logic device, discrete Gate or transistor logic, discrete hardware components. A general purpose processor may be a microprocessor or the processor may be any conventional processor or the like. Additionally, the processor 102 may be commonly implemented by integrated circuit chips.
According to the scheme, the processor plays the first live video through the floating window when the main page of the screen displays the interface of the second live video in a full screen mode, the mode that the full screen display play and the floating window play coexist is adopted, so that a user can see the first live video and the second live video simultaneously, the effect of opening more than one live room can be achieved, the user can see the live broadcast and no longer select questions, and the diversified live broadcast watching requirements of the user can be met.
Referring to fig. 11, fig. 11 is a block diagram illustrating an embodiment of a computer-readable storage medium according to the present application. The computer readable storage medium 110 stores program instructions 1100 executable by the processor, the program instructions 1100 for implementing the steps of any of the video display method embodiments described above.
In the several embodiments provided in the present application, it should be understood that the disclosed method and apparatus may be implemented in other manners. For example, the above-described apparatus embodiments are merely illustrative, and for example, a division of a module or a unit is merely one type of logical division, and an actual implementation may have another division, for example, a unit or a component may be combined or integrated with another system, or some features may be omitted, or not implemented. In addition, the shown or discussed mutual coupling or direct coupling or communication connection may be an indirect coupling or communication connection of devices or units through some interfaces, and may be in an electrical, mechanical or other form.
Units described as separate parts may or may not be physically separate, and parts displayed as units may or may not be physical units, may be located in one place, or may be distributed on network elements. Some or all of the units can be selected according to actual needs to achieve the purpose of the embodiment.
In addition, functional units in the embodiments of the present application may be integrated into one processing unit, or each unit may exist alone physically, or two or more units are integrated into one unit. The integrated unit can be realized in a form of hardware, and can also be realized in a form of a software functional unit.
The integrated unit, if implemented in the form of a software functional unit and sold or used as a stand-alone product, may be stored in a computer readable storage medium. Based on such understanding, the technical solution of the present application may be substantially implemented or contributed to by the prior art, or all or part of the technical solution may be embodied in a software product, which is stored in a storage medium and includes instructions for causing a computer device (which may be a personal computer, a server, a network device, or the like) or a processor (processor) to execute all or part of the steps of the method according to the embodiments of the present application. And the aforementioned storage medium includes: a U-disk, a removable hard disk, a Read-Only Memory (ROM), a Random Access Memory (RAM), a magnetic disk or an optical disk, and other various media capable of storing program codes.

Claims (13)

1. A video display method is applied to a mobile intelligent terminal and is characterized by comprising the following steps:
when the first interface is displayed through the first window, whether a display instruction of a second interface is received or not is judged;
and if the display instruction is received, displaying the second interface through a second window, and keeping displaying the first interface through the first window.
2. The video display method according to claim 1, wherein the first window is a full-screen display window, and the second window is a floating window;
when the first interface is displayed through the first window, whether a display instruction of a second interface is received is judged, including:
when the first interface is displayed in a full screen mode, whether a display instruction of a second interface is received or not is judged;
if the display instruction is received, displaying the second interface through a second window, and keeping displaying the first interface through the floating window, including:
and if the display instruction is received, the second interface is played through the floating window, and the first interface is played in a full-screen display mode.
3. The video display method according to claim 1, wherein the first window is a floating window, the second window is a full-screen display window, the first interface is an interface of a first live video, and the second interface is an interface of a second live video;
when the first interface is displayed through the first window, whether a display instruction of a second interface is received is judged, including:
when the first live video is played through the floating window, whether a playing instruction of a second live video is received or not is judged;
if the display instruction is received, displaying the second interface through a second window, and keeping displaying the first interface through the floating window, including:
and if the playing instruction is received, displaying an interface for playing the second live video in a full screen mode, and keeping playing the first live video through the floating window.
4. The video display method according to claim 3, wherein if the play instruction is received, displaying an interface for playing the second live video in a full screen manner, and keeping playing the first live video through the floating window, includes:
if the playing instruction is received, judging whether the floating window playing the first direct playing video is in a locked state;
if so, displaying an interface for playing the second live video in a full screen mode, and keeping playing the first live video through the floating window; otherwise, closing the floating window, and playing the second live broadcast video by using full-screen playing.
5. The video display method according to claim 3 or 4, wherein if the play instruction is received, displaying an interface for playing the second live video in a full screen mode, and keeping playing the first live video through the floating window, includes:
displaying an interface for playing the second live video in a full screen manner; and
and setting the floating window on the upper layer of the interface of the second live broadcast video to play the first live broadcast video, and closing the sound of the first live broadcast video.
6. The video display method according to claim 5, wherein after the floating window is disposed on an upper layer of the interface to play the first live video and the sound of the first live video is turned off, the video display method further comprises:
receiving a closing instruction of the second live video;
and closing an interface for displaying the second live video in a full screen mode based on the closing instruction, keeping the floating window to play the first live video, and opening the sound of the first live video.
7. The video display method according to claim 5, wherein after the floating window is disposed on an upper layer of the interface to play the first live video and the sound of the first live video is turned off, the video display method further comprises:
receiving a first operation instruction for the floating window;
and displaying an interface for playing the first direct-playing video in a full screen manner, and closing the floating window.
8. The video display method according to claim 5, wherein after the floating window is disposed on an upper layer of the interface to play the first live video and the sound of the first live video is turned off, the video display method further comprises:
receiving a second operation instruction for the floating window;
and displaying an interface for playing the first live video in a full screen mode, and playing the second live video through the floating window.
9. The video display method according to claim 3, wherein before the playing of the first live video through the floating window, the video display method comprises:
receiving a floating window playing instruction when an interface for playing the first direct playing video is displayed in a full screen mode;
and closing the interface for displaying the first direct-playing video in a full screen mode, and executing the step of displaying the first direct-playing video through the floating window.
10. The video display method according to claim 2 or 3, wherein the first live video and the second live video are live videos of different live rooms; or the first live video and the second live video are live videos of different view angles in the same live broadcast room.
11. A video display apparatus, comprising:
the judging module is used for judging whether a display instruction of a second interface is received or not when the first interface is displayed through the first window;
and the display module is used for displaying the second interface through a second window and keeping displaying the first interface through the first window if the display instruction is received.
12. A mobile intelligent terminal, comprising a memory and a processor coupled to each other, wherein the processor is configured to execute program instructions stored in the memory to implement the video display method according to any one of claims 1 to 10.
13. A computer readable storage medium having stored thereon program instructions which, when executed by a processor, implement the video display method of any of claims 1 to 10.
CN202011322261.7A 2020-11-23 2020-11-23 Video display method and device, electronic equipment and computer readable storage medium Pending CN112437326A (en)

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Application publication date: 20210302