WO2019237662A1 - 显示界面控制方法以及装置、设备及存储介质 - Google Patents

显示界面控制方法以及装置、设备及存储介质 Download PDF

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Publication number
WO2019237662A1
WO2019237662A1 PCT/CN2018/117410 CN2018117410W WO2019237662A1 WO 2019237662 A1 WO2019237662 A1 WO 2019237662A1 CN 2018117410 W CN2018117410 W CN 2018117410W WO 2019237662 A1 WO2019237662 A1 WO 2019237662A1
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WIPO (PCT)
Prior art keywords
display
area
layout
display screen
display area
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PCT/CN2018/117410
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English (en)
French (fr)
Inventor
田楠
Original Assignee
广州视源电子科技股份有限公司
广州视臻信息科技有限公司
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Publication of WO2019237662A1 publication Critical patent/WO2019237662A1/zh

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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F9/00Arrangements for program control, e.g. control units
    • G06F9/06Arrangements for program control, e.g. control units using stored programs, i.e. using an internal store of processing equipment to receive or retain programs
    • G06F9/44Arrangements for executing specific programs
    • G06F9/451Execution arrangements for user interfaces
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/048Interaction techniques based on graphical user interfaces [GUI]
    • G06F3/0484Interaction techniques based on graphical user interfaces [GUI] for the control of specific functions or operations, e.g. selecting or manipulating an object, an image or a displayed text element, setting a parameter value or selecting a range
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/048Interaction techniques based on graphical user interfaces [GUI]
    • G06F3/0487Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser
    • G06F3/0488Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser using a touch-screen or digitiser, e.g. input of commands through traced gestures
    • G06F3/04886Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser using a touch-screen or digitiser, e.g. input of commands through traced gestures by partitioning the display area of the touch-screen or the surface of the digitising tablet into independently controllable areas, e.g. virtual keyboards or menus

Definitions

  • the present application relates to the field of smart interactive tablet technology, for example, to a display interface control method and device, device, and storage medium.
  • data sent by other external devices is usually displayed on the smart interactive tablet.
  • the smart interactive tablet needs to display the display content on the laptop of the currently speaking speaker, and / or, the smart interactive tablet needs to display the video screens of participants at other locations.
  • the display content of the laptop computer and the video screens of participants at other locations are considered to be data sent by external devices.
  • the smart interactive tablet can only display the data sent by the external devices according to the set layout, which makes the user experience poor.
  • the embodiments of the present application provide a display interface control method, a device, a device, and a storage medium to improve the phenomenon that the intelligent interactive tablet can only display data sent by an external device according to a set layout in the related art.
  • An embodiment of the present application provides a display interface control method, including:
  • a first display area is added to the layout area, where the layout area is used to present the location layout of at least one display screen in the smart interactive tablet.
  • the layout area includes at least one display area, and each display area corresponds to a display screen.
  • the display screen corresponds to a signal source
  • the first display region corresponds to a first display screen
  • the first display screen corresponds to a first signal source
  • the first display region is located at a first position;
  • Adjusting the first display area from a first position to a second position, and the second position is determined according to the position adjustment instruction
  • An embodiment of the present application further provides a display interface control device, including:
  • the signal source access module is configured to determine that the first signal source has been connected to the intelligent interactive tablet
  • the layout area display module is configured to add a first display area to the layout area, where the layout area is used to present a position layout of at least one display screen in the smart interactive tablet, the layout area includes at least one display area, and each display area corresponds to One display screen, each of the display screens corresponds to a signal source, the first display area corresponds to a first display screen, the first display screen corresponds to a first signal source, and the first display area is located at a first position;
  • a display instruction module configured to instruct the smart interactive tablet to add a first display screen, where the first display screen is located at a first target position, and the first target position is determined according to the first position;
  • a first adjustment module configured to adjust the first display area from a first position to a second position, and the second position is determined according to the position adjustment instruction
  • the second adjustment module is configured to instruct the smart interactive tablet to adjust the first display screen from a first target position to a second target position, and the second target position is determined according to the second position.
  • An embodiment of the present application further provides a display interface control device, including:
  • Memory display, and one or more processors
  • the memory is configured to store one or more programs
  • the one or more processors When the one or more programs are executed by the one or more processors, the one or more processors implement the following operations:
  • the layout area is used to present a location layout of at least one display screen in the smart interactive tablet
  • the layout area includes at least one display area, and each display area corresponds to one display Screens, each of the display screens corresponds to a signal source, the first display area corresponds to a first display screen, the first display screen corresponds to a first signal source, and the first display area is located at a first position;
  • Controlling the display screen to adjust the first display area from a first position to a second position, and the second position is determined according to the position adjustment instruction
  • An embodiment of the present application further provides a storage medium containing computer-executable instructions, and the computer-executable instructions are configured to execute the display interface control method according to the first aspect when executed by a computer processor.
  • FIG. 1 is a flowchart of a display interface control method according to Embodiment 1 of the present application
  • FIG. 2 is a schematic diagram of a first display interface of a smart interactive tablet
  • FIG. 3 is a flowchart of a display interface control method provided in Embodiment 2 of the present application.
  • FIG. 4 is a schematic diagram of a second display interface of the smart interactive tablet
  • FIG. 5 is a schematic diagram of a third display interface of the smart interactive tablet
  • FIG. 6 is a schematic diagram of a fourth display interface of a smart interactive tablet
  • FIG. 7 is a schematic diagram of a fifth display interface of a smart interactive tablet
  • FIG. 10 is a schematic diagram of a sixth display interface of the smart interactive tablet
  • FIG. 11 is a third schematic diagram of a sliding operation
  • FIG. 12 is a schematic diagram of a seventh display interface of the smart interactive tablet
  • FIG. 13 is a fourth schematic diagram of a sliding operation
  • FIG. 14 is a schematic diagram of an eighth display interface of a smart interactive tablet
  • 15 is a fifth schematic diagram of a sliding operation
  • 16 is a schematic diagram of a ninth display interface of the smart interactive tablet.
  • 17 is a schematic diagram of a tenth display interface of the smart interactive tablet.
  • FIG. 19 is a schematic diagram of an eleventh display interface of a smart interactive tablet
  • FIG. 20 is a schematic structural diagram of a display interface control device provided in Embodiment 3 of the present application.
  • FIG. 21 is a schematic structural diagram of a display interface control device provided in Embodiment 4 of the present application.
  • the display interface control method provided in the embodiment may be executed by a display interface control device.
  • the display interface control device may be implemented by at least one of software and hardware.
  • the display interface control device may be two or more physical entities.
  • the composition can also be a physical entity.
  • the display interface control device may be a computer, a mobile phone, a projector, a tablet or a smart interactive tablet.
  • the embodiment uses an intelligent interactive tablet as a display interface control device for example description.
  • the display interface control device may also be another device that establishes a data connection with the smart interactive tablet.
  • the communication method of the data connection is not limited in the embodiment.
  • it can be connected through a universal serial bus (Universal Serial Bus, USB), the Internet, a local area network, Bluetooth, wireless fidelity (Wi-Fi), or the Zifeng protocol. (ZigBee) and other communication methods to establish a data connection.
  • the smart interactive tablet can be an integrated device that controls the content displayed on the display tablet and realizes human-computer interaction through touch technology. It integrates a projector, an electronic whiteboard, a curtain, a stereo, a television, and a video conference. One or more functions such as a terminal.
  • the display screen is displayed in the smart interactive tablet.
  • the specific display content of the display screen is not limited in the embodiment.
  • the display screen may be a window interface of an application in a smart interactive tablet, or a screen-casting interface sent by an external device, or video data sent by an external device.
  • the external device may be: a mobile phone, a notebook computer, a tablet computer, a desktop computer, etc., and the external device establishes a data connection with the intelligent interactive tablet.
  • description is made by taking an example in which the display screen is video data sent by at least one of a screen-casting interface sent by an external device and an external device.
  • an external device may be a signal source that sends data to the smart interactive tablet by default. That is, the signal source refers to an external device that establishes a data connection with the intelligent interactive tablet, and the external device sends display data to the intelligent interactive tablet.
  • the signal source may be at least one of a projection signal source and a video signal source.
  • the screen-casting signal source is an external device that sends a screen-casting interface to the smart interactive tablet.
  • the external device obtains a screen-casting interface after taking a screenshot of the display content on its own screen, and sends the screen-casting interface to the smart-interactive tablet to Make the smart interactive tablet display the projection screen interface.
  • the video signal source is an external device that sends video data to the smart interactive tablet.
  • the video data may be real-time data obtained by an external device through a camera, or may be video data recorded by an external device through a screen recording function, or may be video data stored by an external device.
  • the external device sends the video data to the smart interactive tablet, so that the smart interactive tablet displays the video data.
  • the smart interactive tablet displays the video data.
  • the smart interactive tablet at other office locations obtains the participant's video data and sends it to the local smart interactive tablet for display.
  • the smart interactive tablet at other office locations is the video signal source of the local smart interactive tablet.
  • the local spokesperson used the laptop to send the screen to the local smart interactive tablet.
  • the laptop was used as the screen source.
  • the smart interactive tablet may determine whether the corresponding signal source is a projection screen signal source or a video signal source through a data receiving interface or data receiving content. For example, an intelligent interactive tablet receives data through a High Definition Multimedia Interface (HDMI), and can determine an external device that sends the data as a video signal source. As another example, when the smart interactive tablet receives data through the interface of the screen projection application, the external device sending the data can be determined as the screen projection signal source.
  • each signal source has a corresponding identity, and the identity may include at least one of a device identification number (IDentity, ID), a device name, a user avatar, and a user name. The smart interactive tablet can identify the currently connected signal source through the identity identification.
  • FIG. 1 is a flowchart of a display interface control method according to the first embodiment of the present application. Referring to FIG. 1, this step includes steps S110 to S160.
  • step S110 it is determined that the first signal source is connected to the smart interactive tablet.
  • the first signal source is a signal source currently newly connected to the smart interactive tablet.
  • the first signal source is at least one of a projection screen signal source and a video signal source.
  • the smart interactive tablet after the smart interactive tablet establishes a data connection with the first signal source, it informs the first signal source that it can send display data, and after receiving the display data sent by the first signal source, determines that the first signal source has been connected.
  • the identity of the first signal source is acquired synchronously.
  • step S120 a first display area is added to the layout area, and the first display area is located at a first position.
  • At least one display screen and layout area are displayed in the smart interactive tablet.
  • the layout area is used to present the position layout of at least one display screen in the smart interactive tablet.
  • the layout area includes at least one display area, each display area corresponds to a display screen, and each of the display screens corresponds to a signal source.
  • the outer shape of the layout area is rectangular, and the length and width of the rectangle are respectively proportional to the length and width of the smart interactive flat panel display.
  • the layout area can be considered as a reduced display screen.
  • the embodiment of the trigger condition of the layout area is not limited, and it can be triggered automatically or manually.
  • the smart interactive tablet displays at least one display screen, the layout area is displayed synchronously.
  • the smart interactive tablet displays the layout area after receiving the trigger instruction.
  • the specific embodiment of the trigger instruction is not limited.
  • a trigger button is set. The trigger button may be a physical button or a virtual button. When the trigger button is clicked, it is confirmed that the trigger instruction is received.
  • the layout area has the highest display level, and the layout area and the display screen are independent of each other.
  • the display position of the layout area in the smart interactive tablet can be adjusted arbitrarily.
  • the user adjusts the display position of the layout area by dragging the border line of the layout area.
  • the user adjusts the size of the layout area by dragging the vertices of the layout area.
  • the layout area includes at least one display area inside.
  • the number of display areas is equal to the number of display screens, and the number of display screens is equal to the number of connected signal sources. Therefore, it can be determined that the number of display regions is equal to the number of connected signal sources.
  • each display area corresponds to a display screen, and the relative position of each display area in the layout area is the same as the relative position of the corresponding display screen in the smart interactive tablet.
  • the display screen is located in the upper right corner of the smart interactive tablet and occupies a quarter of the screen.
  • there is a display area corresponding to the display screen in the layout area and the display area is located in the upper right corner of the layout area and occupies a quarter.
  • Layout area there is a display area corresponding to the display screen in the layout area, and the display area is located in the upper right corner of the layout area and occupies a quarter. Layout area.
  • FIG. 2 is a schematic diagram of a first display interface of a smart interactive tablet.
  • the smart interactive tablet display interface includes a display screen 11, a display screen 12, and a layout area 13.
  • the layout area 13 includes a display area 131 and a display area 132, wherein the position layout and display screen of the display area in the layout area 13 The layout is the same.
  • the display area 131 corresponds to the display screen 11, and the display area 132 corresponds to the display screen 12.
  • the specific content displayed in the display area is not limited in this embodiment.
  • the display area in FIG. 2 only shows the user name of the signal source.
  • the number, name, or content elements of the display screen can also be displayed.
  • the embodiment of the position layout rule of the display area is not limited.
  • a layout template is set in advance, and a corresponding layout template is selected according to the current number of signal sources, so as to obtain the position layout of the display area.
  • the location layout of the display area is selected by the user.
  • the first display area corresponds to the first display screen
  • the first display screen corresponds to the first signal source
  • the first display area corresponding to the first signal source is referred to as the first display area.
  • the corresponding first display area can be automatically displayed in the layout area, or the corresponding first display area can be displayed in the layout area after receiving the user's selected operation. For example, a prompt box pops up to display the first display area on the layout after receiving the user's selection operation.
  • the first display area is located at a first position, wherein the first position is a display area position of the first display area.
  • the first position may refer to a position of a center point of the first display area, and may also refer to a position area covered by the first display area.
  • the location area covered by the first display area is taken as an example for description.
  • the setting rule of the first position can be set according to actual conditions. For example, a layout template corresponding to the total number of different access signal sources is set in advance, and a corresponding position is found in the layout module according to the first signal source access sequence number, and Recorded as the first position.
  • instruct the user to select a position in the layout area instruct the user to select a position in the layout area, and record the position selected by the user as the first position.
  • the first display area can be displayed at the first position.
  • the smart interactive tablet has other signal sources besides the first signal source, that is, the total number of currently connected signal sources is at least two, then when determining the first position, the other signal sources correspond to The display position of the display area may need to be adjusted synchronously. At this time, the positions of other display areas can be adaptively adjusted.
  • step S130 the smart interactive tablet is instructed to add a first display screen.
  • the first display screen is located at a first target position, and the first target position is determined according to the first position.
  • the display in the smart interactive tablet performs the same change as the corresponding display area in the layout area. Therefore, the first target position corresponding to the first position in the display screen is determined according to the pixel point mapping relationship between the smart interactive tablet display screen and the layout area, and a first display screen is added to the first target position. In one embodiment, after the smart interactive tablet adds the first display area to the layout area, the first display screen is added to the first target position synchronously, so as to realize the position layout of the first display screen through the first display area. In one embodiment, when the positions of other display areas in the layout area are adjusted, the corresponding display pictures in the smart interactive tablet are adjusted synchronously.
  • step S140 a position adjustment instruction is received, and the position adjustment instruction acts on the first display area in the layout area.
  • the position adjustment instruction is an instruction for adjusting the position of the display area, which can be applied to any display area in the layout area.
  • the position adjustment instruction is applied to the first display area as an example for description.
  • the position adjustment instruction may be automatically generated by the smart interactive tablet, or may be generated after receiving an instruction from a user. For example, when the smart interactive tablet displays the display area of the newly connected signal source, it is necessary to adjust the position of the existing display area. At this time, a position adjustment instruction can be generated for the display area. For another example, when the user receives a touch operation acting on the display area, it is determined that a position adjustment instruction sent by the user is received.
  • a description is given by taking a position adjustment instruction as an instruction issued by a user as an example.
  • the user may issue a position adjustment instruction by touching the smart interactive tablet display, or issue a position adjustment instruction by means of key control.
  • a position adjustment instruction is issued by a key control method
  • a user may issue a position adjustment instruction through a physical button of a smart interactive tablet or a physical button of a device that is data-connected to the smart interactive tablet, such as a mouse, a keyboard, a remote controller, and a notebook computer. Physical buttons.
  • description is made by taking a position adjustment instruction issued by a user by touching a smart interactive tablet display as an example.
  • the smart interactive flat panel display has a touch function, which may be a capacitive screen, an electromagnetic screen, or an infrared screen.
  • the display screen can receive a touch operation input by a user through a finger or an input device.
  • the input device includes, but is not limited to, at least one of a stylus pen, an infrared pen, and a capacitive pen.
  • the smart interactive tablet receives a touch operation in the layout area, and the touch operation meets the touch rules of the position adjustment instruction, then the smart interactive tablet confirms that the position adjustment instruction is received.
  • the display area is determined as the first display area, and it is determined A position adjustment instruction was received.
  • the display area is determined as the first display area, and it is determined that the position adjustment is received. instruction.
  • the display screen corresponding to the first display area can be determined as the first display screen.
  • step S150 the first display area is adjusted from the first position to the second position.
  • the second position is the adjusted position of the first display area.
  • the second position is also described by taking the position area covered by the first display area as an example.
  • the second position is determined according to the position adjustment instruction. Specifically, the second position is determined according to the end position of the touch operation that generates the position adjustment instruction. For example, the end position of the touch operation is taken as the center point of the first display area, and the obtained position area is taken as the second position.
  • a layout template of the display area is called, and a position area that most closely matches the end position is selected as the second position in the layout template. For another example, if a display area already exists at the end position of the touch operation, the position area of the display area is used as the second position.
  • the pixel value and the relative position relationship of each pixel point when the first display area is at the first position are recorded, and according to the above recorded content, the first display area is displayed at the second position, and at the same time, at the first position Deleting the first display area to adjust the position of the first display area.
  • the area of the second position is smaller than or larger than the area of the first position, displaying the first display area at the second position by means of pixel mapping.
  • the above-mentioned embodiment of the pixel point mapping rule is not limited, as long as the user can determine the corresponding first display screen through the first display area.
  • adjusting the first display area to the second position may be to swap the first display area with an existing display area, or to change the first display area.
  • the area is overlaid on the existing display area, or you can set a new position for an existing display area at an idle position in the layout area, and when the first display area is adjusted to the second position, the existing The display area is adjusted to the new position. If only a part of the content in the display area is displayed in the second position, the processing method is similar to that described above, and details are not described herein.
  • the first display area is overlaid on the existing display area, the user cannot view the existing display area.
  • the signal source corresponding to the existing display area can be accessed normally or temporarily. Stop access. When the user selects an existing display area, resume access to the signal source. When the user selects an existing display area, the existing display area is overlaid on the first display area.
  • step S160 the smart interactive tablet is instructed to adjust the first display screen from the first target position to the second target position.
  • the position of the first display area when the position of the first display area is adjusted, the position of the corresponding first display screen is adjusted synchronously to ensure that the layout area presents the position layout of at least one display screen in real time.
  • the second target position is the adjusted position of the first display screen, and the second target position is determined according to the second position.
  • the pixel mapping relationship between the layout area and the smart interactive tablet is determined, and then pixel mapping is performed on the second position to obtain the second target position.
  • the ratio of the layout area to the smart interactive tablet display is 1: 4.
  • a pixel point in the layout area can be determined, which corresponds to the pixel coordinate point of the smart interactive tablet, that is, the pixel point in the layout area ( 0,0), corresponding to pixels in a rectangular area with (0,0) and (3,3) as vertices in the smart interactive flat panel display, and pixel (0,1) in the layout area, corresponding to smart interaction Pixels in a rectangular area with (0, 4) and (3, 7) as vertices in a flat panel display, and so on.
  • a second target position corresponding to the second position can be determined.
  • the method of adjusting the first display screen from the first target position to the second target position is the same as the method of adjusting the first display area from the first position to the second position, which is not described herein.
  • a device area is further provided around the layout area, such as above, below, left or right of the layout area.
  • the device area is used to present the identity of the signal source to which at least one display screen belongs. The user can clearly identify the currently connected signal source through the device area.
  • the identity includes at least one of a device ID, a device name, a user avatar, and a user name.
  • a first display area is added in the layout area, and at the same time, a corresponding identification pops up in the device area.
  • the identity pops up in the device area, and after the smart interactive tablet receives the user's selection operation of the identity, the first display area is added to the layout area.
  • the specific form of the identification selection operation is not limited in the embodiment, such as a manner of clicking an identification mark or dragging an identification mark to a layout area.
  • the advantage of setting the device area is that it is convenient for users to clearly identify the signal source currently connected, and it is also convenient to control the signal source.
  • a close button is provided in each display area. When it is detected that the close button is clicked, the display area is closed and the corresponding display screen is closed simultaneously. If a device area exists, the identity corresponding to the display area in the device area is deleted synchronously.
  • the close button is only an exemplary description, and is used to indicate that the smart interactive tablet has a function of closing the display area and corresponding display screen. In practical applications, this function can also be implemented in other ways, such as double-clicking the display area.
  • the position layout of the remaining display areas in the layout area may be adaptively adjusted or maintained unchanged. When adaptively adjusted, the position layout of the display screen is adjusted synchronously.
  • the display interface control method provided in this embodiment includes setting a layout area for presenting the layout of at least one display screen of the smart interactive tablet, and confirming that the first signal source is connected to the smart interactive tablet, displaying the first display area in the layout area and The first display screen is displayed in the smart interactive tablet.
  • the first display area is adjusted from the first position to the second position.
  • the technical means of adjusting the first display screen corresponding to the first display area from the first target position to the second target position realizes the adjustment of the position of the display screen in the smart interactive tablet, and the position adjustment through the layout area can improve the The phenomenon that the screen size of the smart interactive tablet is too large to be convenient for the user to operate, for example, in a video conference or a multi-terminal projection screen conference scenario, in this way, the participants can control the display screen of the access signal source.
  • FIG. 3 is a flowchart of a display interface control method provided in Embodiment 2 of the present application.
  • the display interface control method provided in this embodiment includes steps S201 to S212.
  • step S201 it is determined that the first signal source is connected to the smart interactive tablet.
  • step S202 the identity of the first signal source is displayed in the device area.
  • the device area and the layout area are located on the same display layer.
  • the device area is used to present the identity of at least one signal source, and at least one signal source is connected to the intelligent interactive tablet.
  • a device area is displayed in the smart interactive tablet.
  • the size of the device area can be set according to actual conditions.
  • the device area is used for display.
  • the device area and the layout area are located on the same display layer and higher than the display layer of the display screen.
  • the device area and the layout area are adjacent, for example, the device area is located below and adjacent to the layout area.
  • the identity displayed in the device area is set as a user name.
  • the user name is the name registered when the user creates an account.
  • the signal source when the signal source establishes a data connection with the smart interactive tablet, the signal source sends a data packet containing the user name and other content to the smart interactive tablet. After the smart interactive tablet parses the data packet, records the user name, and When receiving the display data from the signal source, the user name is displayed in the device area.
  • the display rule of the identity is not limited in this embodiment.
  • the identification is displayed in a highlighted manner to make the user notice that the current first signal source is connected to the intelligent interactive tablet.
  • the display position of the identification mark may be determined according to a preset rule.
  • the preset rule is to display the identity identifiers sequentially in the horizontal direction according to the access order, and when the number of displays in one row reaches the set threshold, another row continues to display the identity identifiers. At this time, the display position of the identity of the first signal source can be determined according to a preset rule.
  • step S203 an identification selection operation is received.
  • the identification selection operation is used to select the identity of the first signal source.
  • the intelligent interactive tablet receives the identification selection operation, it determines to display the first display screen of the first signal source.
  • the operation rule identifying the selected operation may be set according to the actual situation. For example, it is set to determine that an identity selection operation is received when it is detected that the display position where the identity is located is clicked. In another example, when a sliding operation is received, and the starting position of the sliding operation is the display position where the identity is located, and the ending position is within the layout area, it is determined that the selected operation of the identity is received. It should be noted that the above description is only an exemplary description to implement the identification selection operation through a touch operation. In actual applications, the key selection operation can also be implemented by keying.
  • the start position of the selected mark selection operation is located at the display position where the identity of the first signal source is located, and the end position is located at any display position inside the layout area.
  • the logo selection operation may be a sliding operation, or a click operation at two different display positions in a row.
  • step S203 can be omitted in practical applications.
  • the first display area is automatically displayed in the layout area and the first display screen is displayed at the same time.
  • step S204 the first position is determined according to a setting rule.
  • the setting rules can be set according to the actual situation.
  • the following two schemes are used for exemplary description:
  • Solution 1 This step includes steps S2041 to S2043.
  • step S2041 an access number of the first signal source is determined.
  • the access sequence number indicates the total number of signal sources that the smart interactive tablet has currently accessed. For example, if the first signal source is the third signal source connected to the smart interactive tablet, the access sequence number is 3.
  • step S2042 the layout template of the layout area is searched.
  • the layout template is determined based on the access sequence number, and the layout template is used to determine the location layout of at least one display area.
  • the smart interactive tablet is provided with multiple layout templates, and each access sequence number has a corresponding layout template.
  • the smart interactive tablet positions the display area according to the layout template, and sets the position layout of the display screen.
  • the layout is the same as that of the display area to implement the function of the layout area.
  • the same access sequence number may correspond to multiple layout templates.
  • the access number is 5.
  • the layout template can be: the upper half of the layout area displays 3 display areas equally, and the lower half of the layout area displays 2 display areas; the layout template can also be: the left half area of the layout area 3 display areas are displayed equally, and 2 display areas are displayed equally in the right half area.
  • a layout template may be randomly selected, or the layout template with the most selections may be selected based on the history, or multiple The layout templates are all displayed and can be selected by the user.
  • the user may replace the layout template according to actual needs, wherein the replacement manner is not limited in the embodiment.
  • different access numbers may correspond to different or same layout templates.
  • the layout template with access number 2 is: the left and right of the layout area are displayed equally, the layout template with access number 3 is changed to display the layout area in 4 areas and the layout template with the access number 4 is also the layout area. The display is divided into 4 areas.
  • step S2043 a first position is determined.
  • the first position is a display area position of the first display area, and the first position is determined according to a layout template.
  • the first position is determined according to a display order of the layout template.
  • the layout template divides the layout area into 4 areas for display, and the display order is from left to right and then from top to bottom. There are already two display areas in the upper half of the current layout area. Then, determine the first position as the left half of the lower half.
  • the first position is determined in conjunction with the identification selection operation. At this time, the first position is a position area that most closely matches the end position in the layout template. In one embodiment, after the identification selection operation is ended, the end position of the identification selection operation is determined.
  • the specific method for determining the end position by the smart interactive tablet is not limited in this embodiment. Taking a capacitive display as an example, when a user performs a touch operation on the smart interactive tablet's display, the capacitance corresponding to the touch position is determined by the user. The change of the touch occurs, that is, a touch signal including a change in capacitance is generated, and the processor can determine the end position of the selected operation according to the touch signal.
  • the location layout is performed according to the layout template, the location area where the end location is located is confirmed, and the location area is used as the first location.
  • the location area refers to an area in a layout template for displaying a display area.
  • the position area closest to the end position is searched as the first position.
  • the existing display area is sequentially sorted to the next location area by default, and the location area is used as the first position, or the display of the existing display is canceled. Area, and use this location area as the first location.
  • the first position may be determined directly by identifying the end position of the selected operation, which is specifically: selecting a setting area including the end position as the first position.
  • the step includes: setting the position of the set area with the end position as the center point as the first position.
  • the intelligent interactive tablet sets the size of the display area in advance according to the actual situation, and the size of each display area is equal.
  • the smart interactive tablet uses the setting area with the end position as the center point as the first position according to the size of the preset display area. At this time, it is not necessary to consider whether an existing display area already exists in the first position.
  • the step further includes: determining the largest rectangular blank area in the layout area including the end position, and using the largest rectangular blank area as the first position.
  • the smart interactive tablet determines the end position, it traverses all pixels in the layout area to find a blank area containing the end position, where the blank area is a connected area.
  • the largest rectangular blank area is searched in the blank area as the first position.
  • the blank area means that there is no display area in the area.
  • the setting area with the end position as the center point is taken as the first position according to the preset display area size.
  • the set area with the end position as the center point is set as the first position in the blank area according to a preset display area size. If the blank area is smaller than the preset display area size, the largest rectangular blank area is found in the blank area as the first position.
  • step S205 a first display area is added to the layout area, and the first display area is located at a first position.
  • the first display area can be displayed at the first position.
  • the first display area displays at least one of the following: the identity of the first signal source, and at least one content element of the first display screen.
  • the content element is any display content in the first display screen, such as pictures and keywords.
  • the layout area includes a first display area, the first display area corresponds to the first display screen, and the identity of the first signal source corresponding to the first display screen is "Bing".
  • FIG. 4 is a schematic diagram of a second display interface of the smart interactive tablet. Referring to FIG. 4, the first display area is set as the display area 20. At this time, the first display area 20 displays keywords in the first display screen 200. Alternatively, referring to FIG. 2, it is set that the first display area is the display area 131. At this time, the first display area displays the identity “Bing” of the first signal source, and the first display screen normally displays data.
  • the smart interactive tablet has other signal sources besides the first signal source, that is, the total number of currently connected signal sources is at least two
  • the other signal sources correspond to The display position of the display area may need to be adjusted simultaneously.
  • the layout template is changed due to the access of the first signal source
  • the display positions of the existing display areas in the layout area except the first display area need to be changed synchronously according to the change of the layout template.
  • step S205 when the total number of currently connected signal sources is at least two, when step S205 is performed, it is also performed simultaneously: the position layout of the existing display area in the layout area is adjusted, and the position layout of the existing display area after adjustment is The layout template is ok.
  • the existing display area in the layout area refers to other display areas except the first display area.
  • the new position of the existing display area can be determined according to the layout template, and then the corresponding display area is displayed at the new position.
  • step S206 the smart interactive tablet is instructed to add a first display screen.
  • the first display screen is located at a first target position, and the first target position is determined according to the first position.
  • the display in the smart interactive tablet performs the same change as the corresponding display area in the layout area. Therefore, the first target position corresponding to the first position in the display screen is determined according to the pixel point mapping relationship between the smart interactive tablet display screen and the layout area, and a first display screen is added to the first target position.
  • the existing display screen in the smart interactive tablet also needs to adjust the position layout. Accordingly, when step S206 is performed, the synchronization is performed: the position layout of the existing display screen is adjusted, and the position layout of the existing display screen after adjustment is the same as the position layout of the existing display area after adjustment. That is, according to the correspondence between the display screen and the display area, after adjusting the position in the display area, the target position of the display screen is determined synchronously according to the adjusted display position, and the display screen is adjusted to the target position.
  • step S207 a position adjustment instruction is received, and the position adjustment instruction acts on the first display area in the layout area.
  • step S208 the first display area is adjusted from the first position to the second position.
  • the second position is determined according to the position adjustment instruction.
  • step S209 the smart interactive tablet is instructed to adjust the first display screen from the first target position to the second target position.
  • the second target position is determined according to the second position.
  • a second display area is displayed at the second position, and when the second display area corresponds to the second display screen, when step S208 is performed, it is also performed synchronously: the second display area is adjusted from the second position to the first position.
  • step S209 it is also performed synchronously: adjusting the second display screen from the second target position to the first target position.
  • a third display area is displayed at the second position, and when the third display area corresponds to the third display screen, when step S208 is performed, it is also performed synchronously: covering the first display area on the third display area. on. When step S209 is performed, it is also performed synchronously: overlaying the first display screen on the third display screen.
  • the size of the first display area does not change.
  • an end position of the position adjustment instruction is used as a center point, and an area position having the same size as the first display area is selected as the second position.
  • the third display area is displayed at the second position, then when the first display area is adjusted to the second position, the first display area is covered on the third display area.
  • the number of the third display areas may be at least one. When there is one third display area, it may be the same size as the first display area or larger than the size of the first display area. At this time, the first display area only covers the display content corresponding to the second position.
  • the second position may include at least two complete third display areas, a partial area including at least two third display areas, or at least one complete third display area, and Part of the at least one third display area, at this time, the first display area is also covered only on the display content corresponding to the second position.
  • the smart interactive tablet is instructed to perform the same operation as in the layout area, so that the first display screen is overlaid on the third display screen.
  • the display level of the first display area is higher than the display level of the third display area.
  • it is set to cover the first display screen on the display area.
  • the method further includes: receiving a display area selection instruction, and the display area selection instruction acts on the third display area; covering the third display area on the first display area; and instructing the smart interactive tablet to display the third display area.
  • the picture is overlaid on the first display picture.
  • the display area selection instruction is used to select a third display area covered by the first display area.
  • the specific trigger mode can be set according to the actual situation. For example, when the third display area is completely covered by the first display area, when a long-press operation is set to be received in the second position, it is determined that the display area selection instruction is received. As another example, when the third display area is not completely covered by the first display area, it is set to determine that a display area selection instruction is received when a click operation is received at a position where the third display area is not covered. In one embodiment, when the smart interactive tablet receives the display area selection instruction, it is determined that the user operates the third display area. At this time, the display level of the third display area is raised so that the third display area covers the third display area.
  • the smart interactive tablet is instructed to perform the same operation so that the third display screen is overlaid on the first display screen. After that, the smart interactive tablet continues to receive other control operations of the user with respect to the third display area, and synchronously controls the third display screen when controlling the third display area.
  • step S210 an end instruction is received.
  • step S211 the first display area is closed.
  • displaying the first display area in the layout area is stopped.
  • the position layout of the remaining display areas is adaptively adjusted. For example, after the first display area is closed, the layout template changes. At this time, the remaining display areas are rearranged according to the new layout template.
  • the smart interactive tablet stops displaying the first display screen, and ensures that the positional arrangement of the remaining display screens is the same as the positional arrangement of the remaining display regions in the layout area.
  • FIG. 5 is a schematic diagram of a third display interface of a smart interactive tablet.
  • the smart interactive tablet includes a display screen 221, a display screen 222, a layout area 23, and a device area 24.
  • the device area 24 It can be known from the device area 24 that two signal sources are currently connected, namely the signal source 241 and the signal source 242.
  • the identity of the signal source 241 is "Bing”
  • the identity of the signal source 242 is "ACE's computer”.
  • the display position of the equipment area 24 is not enough to display all of the "ACE computers", the undisplayed portion of the "ACE computers" is replaced by an ellipsis.
  • the layout area 23 includes a display area 231 and a display area 232.
  • the display area displays the identity of the signal source.
  • the display area 231 corresponds to the signal source 241 and the display area 232 corresponds to the signal source 242.
  • the layout area is used to present the position layout of the display screen, the display area 231 corresponds to the display screen 221 and the display area 232 corresponds to the display screen 222.
  • FIG. 6 is a schematic diagram of a fourth display interface of the smart interactive tablet. It can be known from FIG. 6 that when the device area 24 displays the identity of the newly-connected signal source 243, it is displayed differently from the signal source 241 and the signal source 242, so as to facilitate user differentiation. The following uses three schemes to describe the display area corresponding to the display signal source 243 in the layout area 23.
  • FIG. 7 is a schematic diagram of a fifth display interface of the smart interactive tablet.
  • a display area 2331 corresponding to the signal source 243 is added to the layout area 23, and the positions of the display area 231 and the display area 232 are adjusted.
  • the identification area of the signal source 243 is displayed in the display area 2331.
  • the smart interactive tablet adds a display screen 2231, and adjusts the display screen 221 and the display screen 222 according to the layout of each display area in the layout area 23.
  • the display screen 2231 corresponds to the display area 2331.
  • FIG. 8 is the first schematic diagram of the sliding operation.
  • the starting position of the sliding operation acting on the display interface of FIG. 6 is at the display position and ending position of the signal source 243.
  • the layout area 23 Located in the layout area 23.
  • determine that the access number of the signal source 243 is 3 call the corresponding layout template, and find the most matching position area in the layout template according to the end position of the sliding operation, and add a display area in the position area.
  • the display interface of the smart interactive tablet is shown in Figure 7.
  • other operations of the intelligent interactive tablet such as the operation of adjusting the layout area and the display screen, are similar to the first solution, and will not be repeated here.
  • FIG. 9 is the second schematic diagram of the sliding operation.
  • the starting position of the sliding operation acting on the display interface of FIG. 6 is at the display position and ending position of the signal source 243.
  • the end position of the slide operation is determined, and a setting area with the end position as the center point is selected as the position where the display area of the signal source 243 is located in the layout area 23.
  • FIG. 10 is a schematic diagram of a sixth display interface of the smart interactive tablet. Referring to FIG. 10, a display area 2332 of the signal source 243 is added to the layout area 23 based on the end position of the slide operation.
  • the display area 2332 and the display area 232 overlap with each other, and the display level of the display area 2332 is set to be higher than that of the display area 232.
  • the smart interactive tablet adds a display screen 2232, and in the smart interactive tablet, the position layout of the display screen is the same as the position layout of the corresponding display area in the layout area.
  • Example 2 The display interface of the smart interactive tablet is shown in Figure 2.
  • the smart interactive tablet receives the sliding operation.
  • FIG. 11 is a third schematic diagram of the sliding operation.
  • the starting position of the sliding operation acting on the display interface of FIG. 2 is located in the display area 131 and the ending position is located in the display area 132. .
  • the display area 131 is determined as the first display area, and the position of the display area 132 is taken as the second position.
  • the display positions of the display area 131 and the display area 132 are exchanged, and the display screen 11 and the display screen 12 are synchronously controlled to exchange the display positions.
  • FIG. Schematic diagram of the seventh display interface of the interactive tablet is shown in FIG. Schematic diagram of the seventh display interface of the interactive tablet.
  • the user can synchronously control the position layout of the display interface in the intelligent interactive tablet.
  • Example three The display interface of the smart interactive tablet is shown in FIG. 7.
  • the smart interactive tablet receives the sliding operation.
  • FIG. 13 is a fourth schematic diagram of the sliding operation.
  • the starting position of the sliding operation acting on the display interface of FIG. 7 is located in the display area 231 and the ending position is located in the area 234.
  • the display area 231 is determined as the first display area, and the position of the area 234 that most closely matches the end position in the layout template is used as the second position.
  • the display area 231 is adjusted to be displayed at the position of the area 234, and the display screen 221 is synchronously controlled to adjust the position.
  • FIG. 14 is a schematic diagram of the eighth display interface of the smart interactive tablet.
  • the user realizes synchronous control of the display in the smart interactive tablet by controlling the display area in the layout area.
  • the layout of the interface is shown in FIG. 14, and FIG. 14 is a schematic diagram of the eighth display interface of the smart interactive tablet.
  • FIG. 16 is a schematic diagram of the ninth display interface of the smart interactive tablet.
  • the display area 231 partially covers the display area 232 and a part of the display area 2331.
  • the display screen 221 is partially covered on a partial area of the display screen 222 and the display screen 2231.
  • the user realizes synchronously controlling the position layout of the display interface in the smart interactive tablet by controlling the display area in the layout area.
  • the technical solution provided in this embodiment is to set a device area for displaying a signal source identity and a layout area for presenting a position layout corresponding to a display screen of a signal source, and a user's operation on the device area and the layout area to synchronously control intelligence.
  • the position layout of the display screen in the interactive tablet enables the user to clearly identify the signal source that is currently connected, and through flexible operation methods and setting rules, the display screen of the signal source is controlled.
  • the layout area and device area are only integrated in a certain area of the smart interactive tablet, which is convenient for user control, and does not require the user to touch the display screen on the entire smart interactive tablet display.
  • the user in addition to the position adjustment instruction, can also control the area size of the display screen, which specifically includes the following operations:
  • step S213 an area adjustment instruction is received.
  • the area adjustment instruction acts on the first display area in the layout area.
  • the first display area is not a specific display area, and may be any display area in the layout area that is currently selected by the user to adjust the area.
  • the specific setting form of the area adjustment instruction is not limited in the embodiment. For example, when the smart interactive tablet receives two sliding operations in any display area at the same time and the directions of the two sliding operations are opposite, it is determined that an area adjustment instruction is received. For another example, when the smart interactive tablet receives the drag instruction on the border of any display area, it is determined that the area adjustment instruction is received.
  • step S214 the display area of the first display area is adjusted to a first target area.
  • the first target area is determined according to the area adjustment instruction.
  • the scaling ratio of the fourth display area is determined according to the area adjustment instruction, and then the first target area is calculated according to the scaling ratio.
  • the display areas of other display areas may be adaptively adjusted or remain unchanged.
  • specific adjustment rules can be set according to the actual situation. For example, it is set that each display area does not overlap each other.
  • the display area of the first display area is modified, if it is blocked to other display areas, the other display areas that are blocked are adaptively reduced until they are not blocked.
  • the other display areas may remain unchanged or be adaptively enlarged to fill the blank area.
  • step S215 the smart interactive tablet is instructed to adjust the display area of the first display screen to the second target area.
  • the second target area is determined according to the first target area, that is, the second target area is calculated according to the mapping relationship between the layout area and the pixel points of the smart interactive flat panel display.
  • the smart interactive tablet is instructed to readjust the position layout of each display frame according to the position layout of the display area in the layout area.
  • FIG. 18 is a sixth schematic diagram of the sliding operation.
  • the sliding operation acting on the display interface of FIG. 7 is two-point touch, and the two-point sliding directions are opposite.
  • the slide operation display area 232 is determined as the first display area.
  • the first target area is calculated according to the relationship between the preset sliding distance and the zoom ratio of the sliding operation, and the display area of the display area 232 is adjusted to the first target area.
  • FIG. 19 is a schematic diagram of an eleventh display interface of a smart interactive tablet.
  • FIG. 20 is a schematic structural diagram of a display interface control device provided in Embodiment 3 of the present application.
  • the display interface control device includes a signal source access module 301, a layout area display module 302, a display instruction module 303, an instruction receiving module 304, a first adjustment module 305, and a second adjustment module 306.
  • the signal source access module 301 is configured to determine that the first signal source is connected to the smart interactive tablet; the layout area display module 302 is configured to add a first display area to the layout area, and the layout area is used to present at least one of the smart interactive tablets.
  • the layout of a display screen, the layout area includes at least one display area, each display area corresponds to a display screen, each display screen corresponds to a signal source, the first display area corresponds to the first display screen, and the first display screen corresponds to the first The signal source, the first display area is located at the first position; the display instruction module 303 is configured to instruct the smart interactive tablet to add a first display screen, the first display screen is located at the first target position, and the first target position is determined according to the first position; instruction The receiving module 304 is configured to receive a position adjustment instruction, and the position adjustment instruction acts on the first display area; the first adjustment module 305 is configured to adjust the first display area from the first position to the second position, and the second position is adjusted according to the position The instruction is determined;
  • a layout area for presenting the layout of at least one display screen of the smart interactive tablet, and after confirming that the first signal source is connected to the smart interactive tablet, the first display area and the smart interaction are displayed in the layout area.
  • the first display screen is displayed in the tablet.
  • the first display area is adjusted from the first position to the second position.
  • the smart interactive tablet and the first display area are adjusted.
  • the technical means of adjusting the first display screen corresponding to a display area from the first target position to the second target position realizes the adjustment of the position of the display screen in the smart interactive tablet, and the position adjustment through the layout area can solve the problem due to intelligent interaction.
  • the problem that the flat screen is too large is inconvenient for users to operate, especially in the video conference or multi-screen projection conference scenario, in this way, it is convenient for the participants to control the display screen of the access signal source.
  • a second display area is displayed at the second position, and the second display area corresponds to the second display screen; the first adjustment module 305 is further configured to adjust the second display area from the second position to the first position. A position; the second adjustment module 306 is further configured to adjust the second display screen from the second target position to the first target position.
  • a third display area is displayed at the second position, and the third display area corresponds to the third display screen; the first adjustment module 305 is further configured to cover the first display area on the third display area. The second adjustment module 306 is further configured to cover the first display screen on the third display screen.
  • the method further includes: a selection instruction receiving module configured to receive the display area selection instruction after covering the first display screen on the third display screen, and the display area selection instruction acts on the third A display area; a first overlay module configured to cover the third display area on the first display area; and a second overlay module configured to instruct the smart interactive tablet to overlay the third display screen on the first display screen.
  • the method further includes: a position determining module configured to determine a first position according to a setting rule before adding a first display area to the layout area.
  • an identity display module configured to display the identity of the first signal source in the device area after the signal source access module determines that the first signal source is connected to the smart interactive tablet, and the device area It is located on the same display layer as the layout area.
  • the equipment area is used to present the identity of at least one signal source, and at least one signal source is connected to the intelligent interactive tablet.
  • an operation receiving module configured to receive an identification selection operation after the identity display module displays the identification of the first signal source in the device area, and the identification selection operation is used to select the first The identity of a signal source.
  • the start position of the identification selection operation is located at the display position where the identity of the first signal source is located, and the end position is located at any display position inside the layout area.
  • the location determination module includes: a sequence number determining unit configured to determine an access sequence number of the first signal source, where the access sequence number indicates a total number of signal sources that the smart interactive tablet has currently accessed; a template search unit , Set to find a layout template for the layout area, the layout template is determined based on the access number, the layout template is used to determine the location layout of the at least one display area; the matching determination unit is set to determine the first position, the first position is in the layout template Location area that best matches the end position.
  • the total number of currently connected signal sources is at least two.
  • the layout area display module 302 is further configured to adjust the position layout of the existing display area in the layout area, and the existing display area after adjustment.
  • the position layout is determined according to the layout template;
  • the display instruction module 303 is further configured to adjust the position layout of the existing display screen, and the position layout of the existing display screen after adjustment is the same as the position layout of the existing display area after adjustment.
  • the position determination module is configured to: set the position of the setting area with the end position as the center point as the first position; or determine the largest rectangular blank area in the layout area that includes the end position, and set the largest rectangular blank The area serves as the first position.
  • an adjustment receiving module configured to receive an area adjustment instruction, the area adjustment instruction acts on the first display area
  • a third adjustment module configured to adjust the display area of the first display area to the first The target area, the first target area is determined according to the area adjustment instruction
  • the fourth adjustment module is configured to instruct the smart interactive tablet to adjust the display area of the first display screen to the second target area, and the second target area is determined according to the first target area.
  • an end receiving module configured to receive an end instruction, the end instruction acting on the first display area
  • a first closing module configured to close the first display area
  • a second closing module configured to be Instruct the smart interactive tablet to close the first display screen.
  • the first display area displays at least one of the following: displaying the identity of the first signal source, and at least one content element of the first display screen.
  • the first signal source is at least one of a projection screen signal source and a video signal source.
  • the display interface control device provided in this embodiment may be used to execute the display interface control method provided in any of the foregoing embodiments, and has corresponding functions and beneficial effects.
  • the memory 41 is a computer-readable storage medium, and may be configured to store software programs, computer-executable programs, and modules, such as program instructions / modules corresponding to the display interface control method described in any embodiment of the present application (for example, display interface control The signal source access module 301, the layout area display module 302, the display instruction module 303, the instruction receiving module 304, the first adjustment module 305, and the second adjustment module 306 in the device).
  • the memory 41 may mainly include a storage program area and a storage data area, wherein the storage program area may store an operating system and application programs required for at least one function; the storage data area may store data created according to the use of the device, and the like.
  • the memory 41 may include a high-speed random access memory, and may further include a non-volatile memory, such as at least one magnetic disk storage device, a flash memory device, or other non-volatile solid-state storage device.
  • the memory 41 may further include a memory remotely set with respect to the processor 40, and these remote memories may be connected to the device through a network. Examples of the above network include, but are not limited to, the Internet, an intranet, a local area network, a mobile communication network, and combinations thereof.
  • the display screen 42 is a display screen 42 with a touch function, which may be a capacitive screen, an electromagnetic screen, or an infrared screen.
  • the display screen 42 is configured to display data according to an instruction of the processor 40, and is also configured to receive a touch operation acting on the display screen 42 and send corresponding signals to the processor 40 or other devices.
  • the display screen 42 when the display screen 42 is an infrared screen, it further includes an infrared touch frame.
  • the infrared touch frame is arranged around the display screen 42. It can also be configured to receive an infrared signal and send the infrared signal to Processor 40 or other device.
  • the input device 43 may be configured to receive inputted numeric or character information, and generate key signal inputs related to user settings and function control of the display interface control device, or may be a camera configured to acquire images and a sound pickup device to acquire audio data.
  • the output device 44 may include audio equipment such as a speaker. It should be noted that the specific composition of the input device 43 and the output device 44 can be set according to actual conditions.
  • the display interface control device further includes a communication device (not shown) configured to establish a communication connection with other devices, which may be at least one of a wired communication device and a wireless communication device.
  • the processor 40 executes various functional applications and data processing of the device by running software programs, instructions, and modules stored in the memory 41, that is, implementing the display interface control method described above.
  • the one or more processors 40 when executed by the one or more processors 40, the one or more processors 40 implement the following operations:
  • the control display 42 adds a first display area to the layout area.
  • the layout area is used to present the location layout of at least one display screen in the smart interactive tablet.
  • the layout area includes at least one display area, and each display area corresponds to a display screen.
  • the picture corresponds to a signal source
  • the first display area corresponds to the first display picture
  • the first display picture corresponds to the first signal source
  • the first display zone is located at the first position
  • the control display screen 42 receives a position adjustment instruction, and the position adjustment instruction acts on the first display area;
  • the control display screen 42 adjusts the first display area from the first position to the second position, and the second position is determined according to the position adjustment instruction;
  • the intelligent interactive tablet is instructed to adjust the first display screen from the first target position to the second target position, and the second target position is determined according to the second position.
  • a second display area is displayed at the second position, and the second display area corresponds to the second display screen
  • the second display screen is adjusted from the second target position to the first target position.
  • a third display area is displayed at the second position, and the third display area corresponds to the third display screen;
  • the first display screen is overlaid on the third display screen.
  • the control display screen 42 receives a display area selection instruction, and the display area selection instruction acts on the third display area;
  • the control display screen 42 covers the third display area on the first display area
  • the first position is determined according to the setting rules.
  • the control display screen 42 displays the identity of the first signal source in the device area.
  • the device area and the layout area are located on the same display layer.
  • the device area is used to present the identity of at least one signal source.
  • At least one signal source is connected to the smart interactive tablet. .
  • the start position of the identification selection operation is located at the display position where the identity of the first signal source is located, and the end position is located at any display position inside the layout area.
  • the layout template is determined based on the access number, and the layout template is used to determine the location layout of at least one display area;
  • the first position is determined, and the first position is a position area in the layout template that most closely matches the end position.
  • the total number of currently connected signal sources is at least two;
  • the one or more processors 40 When the one or more programs are executed by the one or more processors 40, so that the one or more processors 40 implement the control display screen 42 to add a first display area to the layout area, it also specifically implements:
  • the position layout of the existing display area after adjustment is determined according to the layout template
  • the position layout of the existing display screen is adjusted.
  • the position layout of the existing display screen after adjustment is the same as the position layout of the existing display area after adjustment.
  • the position of the set area with the end position as the center point is taken as the first position; or, the largest rectangular blank area including the end position in the layout area is determined, and the largest rectangular blank area is taken as the first position.
  • the one or more processors 40 when one or more programs are executed by one or more processors 40, the one or more processors 40 also specifically implement the following operations:
  • the control display screen 42 receives an area adjustment instruction, and the area adjustment instruction acts on the first display area;
  • the control display screen 42 adjusts the display area of the first display area to a first target area, and the first target area is determined according to an area adjustment instruction;
  • the smart interactive tablet is instructed to adjust the display area of the first display screen to a second target area, and the second target area is determined according to the first target area.
  • the one or more processors 40 when one or more programs are executed by one or more processors 40, the one or more processors 40 also specifically implement the following operations:
  • the control display screen 42 receives the end instruction, and the end instruction acts on the first display area
  • the first display area conforms to at least one of the following: the first display area displays the identity of the first signal source, and the first display area displays at least one content element of the first display screen.
  • the first signal source is at least one of a projection screen signal source and a video signal source.
  • the display interface control device in the embodiment is a smart interactive tablet
  • the above-mentioned related operations of indicating the smart interactive tablet can be understood as the processor instructing the related operations of the display screen.
  • the display interface control device is another device (such as a mobile phone, etc.)
  • the above-mentioned related operations of indicating the smart interactive tablet can be understood as instructing the processor of the smart interactive tablet to control the display screen to perform related operations.
  • the display interface control device provided above can be used to execute the display interface control method provided in any of the foregoing embodiments, and has corresponding functions and beneficial effects.
  • Embodiment 5 of the present application further provides a storage medium containing computer-executable instructions.
  • the computer-executable instructions when executed by a computer processor, perform a display interface control method, including:
  • the layout area is used to present the location layout of at least one display screen in the smart interactive tablet.
  • the layout area includes at least one display area, each display area corresponds to a display screen, and each display screen corresponds to a signal.
  • Source the first display area corresponds to the first display screen
  • the first display screen corresponds to the first signal source
  • the first display area is located at the first position;
  • the position adjustment instruction acts on the first display area
  • Adjusting the first display area from the first position to the second position, and the second position is determined according to the position adjustment instruction
  • the intelligent interactive tablet is instructed to adjust the first display screen from the first target position to the second target position, and the second target position is determined according to the second position.
  • the storage medium provided by the embodiments of the present application includes computer-executable instructions.
  • the computer-executable instructions are not limited to the display interface control method operations described above, and may also execute the display interface provided by any embodiment of the present application Relevant operations in the control method, with corresponding functions and beneficial effects.
  • the multiple units and modules included are only divided according to functional logic, but are not limited to the above division, as long as the corresponding functions can be realized; in addition, multiple The specific names of the functional units are only for the convenience of distinguishing each other, and are not used to limit the protection scope of the present application.
  • multiple parts of the application may be implemented in hardware, software, firmware, or a combination thereof.
  • multiple steps or methods may be implemented by software or firmware stored in a memory and executed by a suitable instruction execution system.
  • a suitable instruction execution system For example, if implemented in hardware, as in another embodiment, it may be implemented using any one or a combination of the following techniques known in the art: Discrete logic circuits, application specific integrated circuits with suitable combinational logic gate circuits, programmable gate arrays (PGA), field programmable gate arrays (FPGA), etc.

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Abstract

一种显示界面控制方法以及装置、设备及存储介质,其方法包括:确定第一信号源已接入智能交互平板(110);在布局区增加第一显示区,布局区用于呈现智能交互平板中至少一个显示画面的位置布局,布局区包括至少一个显示区(120),每个显示画面存在对应的显示区和信号源;指示智能交互平板增加第一显示画面(130),第一显示画面对应第一显示区和第一信号源;接收作用于第一显示区的位置调整指令(140);根据位置调整指令将第一显示区由第一位置调整至第二位置(150);根据第二位置指示智能交互平板将第一显示画面由第一目标位置调整至第二目标位置(160),第一目标位置根据第一位置确定。

Description

显示界面控制方法以及装置、设备及存储介质
本申请要求在2018年06月11日提交中国专利局、申请号为201810594953.3的中国专利申请的优先权,该申请的全部内容通过引用结合在本申请中。
技术领域
本申请涉及智能交互平板技术领域,例如涉及一种显示界面控制方法以及装置、设备及存储介质。
背景技术
在智能交互平板领域,通常会在智能交互平板中显示其他外置设备发送的数据。例如,在会议场景下,智能交互平板需要显示当前发言人员笔记本电脑上的显示内容,和/或,智能交互平板需要显示其他地点与会人员的视频画面。此时,笔记本电脑的显示内容以及其他地点与会人员的视频画面均认为是外置设备发送的数据。
当存在多个外置设备同时发送数据时,智能交互平板只能按照设定布局显示外置设备发送的数据,使得用户体验不佳。
发明内容
本申请实施例提供一种显示界面控制方法以及装置、设备及存储介质,以改善相关技术中智能交互平板只能按照设定布局显示外置设备发送的数据的现象。
本申请实施例提供了一种显示界面控制方法,包括:
确定第一信号源已接入智能交互平板;
在布局区增加第一显示区,所述布局区用于呈现智能交互平板中至少一个显示画面的位置布局,所述布局区包括至少一个显示区,每个显示区对应一个显示画面,每个所述显示画面对应一个信号源,所述第一显示区对应第一显示 画面,第一显示画面对应第一信号源,所述第一显示区位于第一位置;
指示智能交互平板增加第一显示画面,所述第一显示画面位于第一目标位置,所述第一目标位置根据所述第一位置确定;
接收位置调整指令,所述位置调整指令作用于所述第一显示区;
将所述第一显示区由第一位置调整至第二位置,所述第二位置根据所述位置调整指令确定;
指示所述智能交互平板将所述第一显示画面由第一目标位置调整至第二目标位置,所述第二目标位置根据所述第二位置确定。
本申请实施例还提供了一种显示界面控制装置,包括:
信号源接入模块,设置为确定第一信号源已接入智能交互平板;
布局区显示模块,设置为在布局区增加第一显示区,所述布局区用于呈现智能交互平板中至少一个显示画面的位置布局,所述布局区包括至少一个显示区,每个显示区对应一个显示画面,每个所述显示画面对应一个信号源,所述第一显示区对应第一显示画面,第一显示画面对应第一信号源,所述第一显示区位于第一位置;
显示指示模块,设置为指示智能交互平板增加第一显示画面,所述第一显示画面位于第一目标位置,所述第一目标位置根据所述第一位置确定;
指令接收模块,设置为接收位置调整指令,所述位置调整指令作用于所述第一显示区;
第一调整模块,设置为将所述第一显示区由第一位置调整至第二位置,所述第二位置根据所述位置调整指令确定;
第二调整模块,设置为指示所述智能交互平板将所述第一显示画面由第一目标位置调整至第二目标位置,所述第二目标位置根据所述第二位置确定。
本申请实施例还提供了一种显示界面控制设备,包括:
存储器、显示屏以及一个或多个处理器;
所述存储器,设置为存储一个或多个程序;
当所述一个或多个程序被所述一个或多个处理器执行,使得所述一个或多个处理器实现如下操作:
确定第一信号源已接入智能交互平板;
控制所述显示屏在布局区增加第一显示区,所述布局区用于呈现智能交互平板中至少一个显示画面的位置布局,所述布局区包括至少一个显示区,每个显示区对应一个显示画面,每个所述显示画面对应一个信号源,所述第一显示区对应第一显示画面,第一显示画面对应第一信号源,所述第一显示区位于第一位置;
指示智能交互平板增加第一显示画面,所述第一显示画面位于第一目标位置,所述第一目标位置根据所述第一位置确定;
控制所述显示屏接收位置调整指令,所述位置调整指令作用于所述第一显示区;
控制显示屏将所述第一显示区由第一位置调整至第二位置,所述第二位置根据所述位置调整指令确定;
指示所述智能交互平板将所述第一显示画面由第一目标位置调整至第二目标位置,所述第二目标位置根据所述第二位置确定。
本申请实施例还提供了一种包含计算机可执行指令的存储介质,所述计算机可执行指令在由计算机处理器执行时设置为执行如第一方面所述的显示界面控制方法。
附图概述
通过阅读参照以下附图所作的对非限制性实施例所作的详细描述,本申请的其它特征、目的和优点将会变得更明显:
图1为本申请实施例一提供的一种显示界面控制方法的流程图;
图2为智能交互平板的第一显示界面示意图;
图3为本申请实施例二提供的一种显示界面控制方法的流程图;
图4为智能交互平板的第二显示界面示意图;
图5为智能交互平板的第三显示界面示意图;
图6为智能交互平板的第四显示界面示意图;
图7为智能交互平板的第五显示界面示意图;
图8为滑动操作第一示意图;
图9为滑动操作第二示意图;
图10为智能交互平板的第六显示界面示意图;
图11为滑动操作第三示意图;
图12为智能交互平板的第七显示界面示意图;
图13为滑动操作第四示意图;
图14为智能交互平板的第八显示界面示意图;
图15为滑动操作第五示意图;
图16为智能交互平板的第九显示界面示意图;
图17为智能交互平板的第十显示界面示意图;
图18为滑动操作第六示意图;
图19为智能交互平板的第十一显示界面示意图;
图20为本申请实施例三提供的一种显示界面控制装置的结构示意图;
图21为本申请实施例四提供的一种显示界面控制设备的结构示意图。
具体实施方式
下面结合附图和实施例对本申请作进一步的详细说明。可以理解的是,此处所描述的具体实施例仅仅用于解释本申请,而非对本申请的限定。另外还需要说明的是,为了便于描述,附图中仅示出了与本申请相关的部分而非全部内容。
实施例一
实施例中提供的显示界面控制方法可以由显示界面控制设备执行,该显示界面控制设备可以通过软件和硬件中的至少一种的方式实现,该显示界面控制设备可以是两个或多个物理实体构成,也可以是一个物理实体构成。该显示界面控制设备可以是电脑,手机,投影仪,平板或智能交互平板等。
为了便于理解,实施例中以智能交互平板为显示界面控制设备进行示例性描述。实际应用中,显示界面控制设备也可以是与智能交互平板建立数据连接的其他设备。其中,数据连接的通信方式实施例中不作限定,例如,可以通过通用串行总线(Universal Serial Bus,USB)连接、互联网、局域网、蓝牙、无线保真(WIreless Fidelity,Wi-Fi)或紫峰协议(ZigBee)等通信方式建立数据连接。
其中,智能交互平板可以是通过触控技术对显示在显示平板上的内容进行操控和实现人机交互操作的一体化设备,其集成了投影机、电子白板、幕布、音响、电视机以及视频会议终端等一种或多种功能。
在一实施例中,智能交互平板中显示至少一个显示画面。其中,显示画面的具体显示内容实施例中不作限定。例如,显示画面可以是智能交互平板中应用程序的窗口界面,也可以是外部装置发送的投屏界面,或者是外部装置发送的视频数据。其中,外部装置可以是:手机、笔记本电脑、平板电脑及台式电脑等,且该外部装置与智能交互平板建立数据连接。实施例中,以显示画面是外部装置发送的投屏界面和外部装置中的至少之一发送的视频数据为例进行描述。
此时,一个外部装置可以默认为一个向智能交互平板发送数据的信号源。即,信号源是指与智能交互平板建立数据连接的外部装置,且该外部装置向智能交互平板发送显示数据。例如,信号源可以是投屏信号源和视频信号源中的 至少之一。其中,投屏信号源是指向智能交互平板发送投屏界面的外部装置,例如,外部装置对自身屏幕中显示内容进行截屏后得到投屏界面,并将该投屏界面发送至智能交互平板,以使智能交互平板显示该投屏界面。视频信号源是指向智能交互平板发送视频数据的外部装置。其中,视频数据可以是外部装置通过摄像头获取的实时数据,还可以是外部装置通过录屏功能录制的视频数据,也可以是外部装置已存的视频数据。在一实施例中,外部装置将视频数据发送至智能交互平板,以使智能交互平板显示该视频数据。例如,在会议场景下,本地会议室和其他办公地点的会议室均配置有智能交互平板。其他办公地点的智能交互平板获取与会者的视频数据并发送至本地的智能交互平板中显示,此时,其他办公地点的智能交互平板为本地的智能交互平板的视频信号源。同时,本地的发言人利用笔记本电脑向本地的智能交互平板发送投屏界面,此时,笔记本电脑作为投屏信号源。
在一实施例中,智能交互平板可以通过数据接收接口或者数据接收内容确定对应的信号源属于投屏信号源还是视频信号源。例如,智能交互平板通过高清晰度多媒体接口(High Definition Multimedia Interface,HDMI)接收数据,便可以将发送该数据的外部装置确定为视频信号源。再如,智能交互平板通过投屏应用的接口接收数据,便可以将发送该数据的外部装置确定为投屏信号源。在一实施例中,每个信号源均有对应的身份标识,该身份标识可以包括设备身份标识号码(IDentity,ID)、设备名称、使用者头像及使用者名称等至少一项。智能交互平板通过身份标识便可以识别当前接入的信号源。
例如,图1为本申请实施例一提供的一种显示界面控制方法的流程图。参考图1,该步骤包括:步骤S110至步骤S160。
在步骤S110中,确定第一信号源接入智能交互平板。
在一实施例中,第一信号源为当前新接入智能交互平板的信号源。第一信号源为投屏信号源和视频信号源中的至少之一。在一实施例中,智能交互平板与第一信号源建立数据连接后,通知第一信号源可以发送显示数据,并在接收到第一信号源发送的显示数据后,确定第一信号源已经接入智能交互平板。在一实施例中,在智能交互平板与第一信号源建立数据连接时,同步获取第一信号源的身份标识。
在步骤S120中,在布局区增加第一显示区,第一显示区位于第一位置。
在一实施例中,智能交互平板中显示至少一个显示画面和布局区。其中,布局区用于呈现智能交互平板中至少一个显示画面的位置布局,布局区包括至少一个显示区,每个显示区对应一个显示画面,每个所述显示画面对应一个信号源。
在一实施例中,布局区的外围形状为矩形,且矩形的长度和宽度分别与智能交互平板显示屏的长度和宽度成比例。换言之,布局区可以认为是缩小后的显示屏。在一实施例中,布局区的触发条件实施例不作限定,其可以自动触发,或者是人为触发。例如,在智能交互平板显示至少一个显示画面时,同步显示布局区。又如,智能交互平板接收到触发指令后显示布局区。其中,触发指令的具体形式实施例不作限定,例如,设定触发按键,该触发按键可以是实体按键也可以是虚拟按键,当触发按键被点击时,确认接收到触发指令。一般而言,当智能交互平板显示布局区时,布局区的显示层级最高,布局区与显示画面彼此相互独立。
在一实施例中,布局区在智能交互平板中的显示位置可任意调整。例如,用户通过拖拽布局区边框线的方式调整布局区的显示位置。又如,用户通过拖拽布局区顶点的方式调整布局区大小。需要说明的是,上述示例仅用于解释说 明,并非对显示位置调整方式的限定。
在一实施例中,布局区内部包括至少一个显示区。显示区的数量与显示画面的数量相等,而显示画面的数量与接入的信号源数量相等,因此可以确定显示区的数量与接入的信号源数量相等。例如,每个显示区对应一个显示画面,且每个显示区在布局区内的相对位置与对应的显示画面在智能交互平板中的相对位置相同。例如,显示画面位于智能交互平板的右上角且占据四分之一屏幕,此时,布局区中存在与显示画面对应的显示区,且该显示区位于布局区的右上角且占据四分之一布局区。再如,当智能交互平板接收到一个新接入的信号源发送的数据时,在右下角增加一个显示画面,且该显示画面占据六分之一屏幕,此时,同步在布局区右下角增加一个显示区,且显示区占据六分之一布局区。换言之,用户可以通过布局区内显示区的位置布局确定显示画面在智能交互平板中的位置布局。例如,图2为智能交互平板的第一显示界面示意图。参考图2,智能交互平板显示界面中包括显示画面11和显示画面12以及布局区13,布局区13中包括显示区131和显示区132,其中,布局区13内显示区的位置布局与显示画面的位置布局相同。显示区131对应于显示画面11,显示区132对应于显示画面12。
需要说明的是,显示区中显示的具体内容本实施例不作限定。例如,图2中显示区仅显示了信号源的使用者名称。实际应用中,也可以显示信号源的编号、名称或者显示画面的内容要素等。
在一实施例中,显示区的位置布局规则实施例不作限定。例如,预先设定布局模板,根据当前信号源的数量选择对应的布局模板,进而得到显示区的位置布局。又如,由用户选定显示区的位置布局。
在一实施例中,第一显示区对应第一显示画面,第一显示画面对应第一信 号源,即第一信号源对应的显示区记为第一显示区。当确认第一信号源接入智能交互平板时,可以自动在布局区中显示对应的第一显示区,也可以接收到用户的选定操作后,在布局区中显示对应的第一显示区,例如,弹出提示框,当接收到用户的选定操作后,在布局去显示第一显示区。
在一实施例中,第一显示区位于第一位置,其中,第一位置为第一显示区的显示区域位置。一般而言,第一位置可以是指第一显示区的中心点位置,也可以是指第一显示区覆盖的位置区域。实施例中以第一显示区覆盖的位置区域为例进行描述。其中,第一位置的设定规则可以根据实际情况设定,例如,预先设定不同接入信号源总数量对应的布局模板,根据第一信号源接入序号在布局模块中找到相应位置,并记为第一位置。又如,指示用户在布局区选定位置,并将用户选定的位置记为第一位置。在一实施例中,当确定第一位置后,便可以在第一位置处显示第一显示区。在一实施例中,如果智能交互平板除了第一信号源外,还存在其他的信号源,即当前已接入的信号源总数量为至少两个,那么确定第一位置时,其他信号源对应显示区的显示位置可能需要同步调整,此时,可以适应性调整其他显示区的位置。
在步骤S130中,指示智能交互平板增加第一显示画面。
其中,第一显示画面位于第一目标位置,第一目标位置根据第一位置确定。
在一实施例中,智能交互平板中显示画面与布局区中对应显示区执行相同的变化。因此,根据智能交互平板显示屏与布局区的像素点映射关系确定显示屏中与第一位置对应的第一目标位置,并在第一目标位置增加第一显示画面。在一实施例中,当智能交互平板在布局区增加第一显示区后,同步在第一目标位置增加第一显示画面,以实现通过第一显示区体现第一显示画面的位置布局。在一实施例中,当布局区的其他显示区位置调整时,智能交互平板中对应的显 示画面同步调整。
在步骤S140中,接收位置调整指令,位置调整指令作用于布局区内的第一显示区。
在一实施例中,位置调整指令是用于调整显示区位置的指令,其可以作用于布局区内的任一显示区。实施例中为了便于理解,以位置调整指令作用于第一显示区为例进行描述。其中,位置调整指令可以由智能交互平板自动生成,也可以在接收到用户发出的指示后生成。例如,智能交互平板在显示新接入信号源的显示区时,需要对已有显示区的位置进行调整,此时,便可以针对该显示区生成位置调整指令。又如,当用户接收到作用于显示区的触控操作时,确定接收到用户发出的位置调整指令。
实施例中,以位置调整指令为用户发出的指令为例进行描述。在一实施例中,用户可以通过触控智能交互平板显示屏的方式发出位置调整指令,或者通过键控方式发出位置调整指令。当通过键控方式发出位置调整指令时,用户可以通过智能交互平板的实体按键或者通过与智能交互平板数据连接的设备的实体按键发出位置调整指令,如鼠标、键盘、遥控器、以及笔记本电脑等的实体按键。
在一实施例中,以用户通过触控智能交互平板显示屏的方式发出位置调整指令为例进行描述。例如,智能交互平板显示屏具有触控功能,其可以是电容屏、电磁屏或者是红外屏。该显示屏可以接收用户通过手指或者输入设备输入的触控操作。其中,输入设备包括但不限定于:触控笔、红外笔和电容笔中的至少之一等。在一实施例中,智能交互平板在布局区接收到触控操作,且该触控操作满足位置调整指令的触控规则,那么智能交互平板确认接收到位置调整指令。例如,当智能交互平板检测到位于布局区的滑动操作,且该滑动操作的 起始位置位于某一显示区内,结束位置位于布局区内,则将显示区确定为第一显示区,且确定接收到位置调整指令。又如,当智能交互平板检测到某一显示区接收到长按操作后,在布局区的另一位置接收到长按操作,则将显示区确定为第一显示区,且确定接收到位置调整指令。一般而言,确定第一显示区后,与第一显示区对应的显示画面便可以确定为第一显示画面。
在步骤S150中,将第一显示区由第一位置调整至第二位置。
在一实施例中,第二位置为第一显示区位置调整后的位置。一般而言,第二位置同样是以第一显示区覆盖的位置区域为例进行描述。进一步的,第二位置根据位置调整指令确定,其具体为,根据生成位置调整指令的触控操作的结束位置确定第二位置。例如,将触控操作的结束位置作为第一显示区的中心点,并将得到的位置区域作为第二位置。再如,调取显示区的布局模板,在布局模板中选择与结束位置最匹配的位置区域作为第二位置。又如,触控操作的结束位置已经存在显示区,则将该显示区的位置区域作为第二位置。
在一实施例中,记录第一显示区在第一位置时每个像素点的像素值以及相对位置关系,并根据上述记录内容,在第二位置显示第一显示区,同时,在第一位置删除第一显示区,以实现第一显示区位置调整。其中,当第二位置的面积小于或者大于第一位置的面积时,通过像素点映射的方式实现在第二位置显示第一显示区。上述提及的像素点映射的规则实施例不作限定,满足用户通过第一显示区可以确定对应的第一显示画面即可。
在一实施例中,当第二位置已经存在显示区时,将第一显示区调整至第二位置可以是将第一显示区与已经存在的显示区互换位置,还可以是将第一显示区覆盖在已经存在的显示区上,也可以是在布局区的空闲位置处为已经存在的显示区设定新的位置,并在第一显示区调整至第二位置时,同步将已经存在的 显示区调整至新的位置。如果第二位置仅显示了已经存在显示区的部分内容,此时,处理方式与上述类似,在此不作赘述。在一实施例中,当第一显示区覆盖在已经存在的显示区上时,用户无法观看已经存在的显示区,此时,已经存在的显示区对应的信号源可以正常接入,也可以暂时停止接入,当用户选定已经存在的显示区时,恢复接入信号源。其中,用户选定已经存在的显示区时,已经存在的显示区覆盖在第一显示区上。
在步骤S160中,指示智能交互平板将第一显示画面由第一目标位置调整至第二目标位置。
在一实施例中,设定调整第一显示区的位置时,同步调整对应的第一显示画面位置,以保证布局区实时呈现至少一个显示画面的位置布局。其中,第二目标位置为第一显示画面调整后的位置,第二目标位置根据第二位置确定。在一实施例中,确定布局区与智能交互平板的像素点映射关系,进而对第二位置进行像素点映射,以得到第二目标位置。举例而言,布局区与智能交互平板显示屏的比例为1∶4,此时,可以确定布局区中一个像素点,对应于智能交互平板的像素点坐标点,即,布局区中像素点(0,0),对应于智能交互平板显示屏中以(0、0)和(3,3)为顶点的矩形区域内的像素点,布局区中像素点(0,1),对应于智能交互平板显示屏中以(0、4)和(3,7)为顶点的矩形区域内的像素点,以此类推。根据上述像素点映射关系,并可以确定与第二位置对应的第二目标位置。在一实施例中,将第一显示画面由第一目标位置调整至第二目标位置,与将第一显示区由第一位置调整至第二位置的方式相同,在此不作赘述。
在一实施例中,在布局区的周围,例如布局区的上方、下方、左方或右方,还设置有设备区。设备区用于呈现至少一个显示画面所属信号源的身份标识,用户通过设备区可以明确当前接入的信号源。其中,身份标识包括设备ID、设 备名称、使用者头像及使用者名称等至少一项。在一实施例中,当第一信号源接入智能交互平板时,布局区内增加第一显示区,同时,设备区弹出对应的身份标识。或者是,当第一信号源接入智能交互平板时,在设备区弹出身份标识,在智能交互平板接收到用户对身份标识的标识选定操作后,在布局区内增加第一显示区。其中,标识选定操作的具体形式实施例中不作限定,如点击身份标识或者拖拽身份标识至布局区等方式。设置设备区的好处是,便于用户明确当前接入的信号源,同时便于控制信号源。
在一实施例中,每个显示区内设置有关闭按键,当检测到关闭按键被点击时,关闭该显示区,同步关闭对应的显示画面。若存在设备区,则同步删除设备区中该显示区对应的身份标识。需要说明的是,关闭按键仅是一种示例性描述,用于表示智能交互平板具有关闭显示区以及对应显示画面的功能。实际应用中,还可以通过其他方式实现该功能,如双击显示区等。在一实施例中,当显示区关闭后,布局区内剩余显示区的位置布局可以适应性调整也可以保持不变。当适应性调整时,同步调整显示画面的位置布局。
本实施例提供的显示界面控制方法,通过设置用于呈现智能交互平板至少一个显示画面位置布局的布局区,并确认第一信号源接入智能交互平板后,在布局区显示第一显示区以及智能交互平板中显示第一显示画面,在接收到作用于布局区内第一显示区的位置调整指令时,将第一显示区由第一位置调整至第二位置,同时,将智能交互平板中与第一显示区对应的第一显示画面由第一目标位置调整至第二目标位置的技术手段,实现了对智能交互平板中显示画面的位置调整,且通过布局区进行位置调整,可以改善由于智能交互平板屏幕过大不便于用户操作的现象,例如在视频会议或者多端投屏会议场景下,通过此类方式,便于与会人员对接入信号源的显示画面进行控制。
实施例二
图3为本申请实施例二提供的一种显示界面控制方法的流程图。参考图3,本实施例提供的显示界面控制方法包括:步骤S201至步骤S212。
在步骤S201中,确定第一信号源接入智能交互平板。
在步骤S202中,在设备区显示第一信号源的身份标识。
其中,设备区与布局区位于同一显示层,设备区用于呈现至少一个信号源的身份标识,至少一个信号源接入智能交互平板。
在一实施例中,为了使用户明确当前已接入智能交互平板的信号源,在智能交互平板中显示有设备区,该设备区的大小可以根据实际情况进行设定,该设备区用于显示当前已接入智能交互平板的信号源的身份标识。一般而言,该设备区和布局区位于同一显示层,且高于显示画面的显示层。在一实施例中,设备区和布局区相邻,例如,设备区位于布局区的下方且与布局区相邻。
在一实施例中,设定设备区显示的身份标识为使用者名称。该使用者名称为使用者创建账号时注册的名称。在一实施例中,当信号源与智能交互平板建立数据连接时,信号源向智能交互平板发送包含使用者名称等内容的数据包,智能交互平板解析该数据包后,记录使用者名称,并在接收到信号源发送的显示数据时,在设备区显示使用者名称。
在一实施例中,身份标识的显示规则本实施例不作限定。例如,通过高亮的方式显示身份标识,以使用户注意到当前第一信号源接入智能交互平板。在一实施例中,身份标识的显示位置可以根据预设规则确定。例如,预设规则为按照接入顺序,水平方向依次显示身份标识,当一行显示数量达到设定阈值时,另设一行继续显示身份标识。此时,根据预设规则便可以确定第一信号源身份标识的显示位置。
在步骤S203中,接收标识选定操作。
其中,标识选定操作用于选定第一信号源的身份标识,当智能交互平板接收到标识选定操作后,确定显示第一信号源的第一显示画面。在一实施例中,标识选定操作的操作规则可以根据实际情况设定。例如,设定当检测到身份标识所在的显示位置被点击后,确定接收到标识选定操作。又如,设定当接收到滑动操作,且滑动操作的起始位置在身份标识所在的显示位置,结束位置在布局区内时,确定接收到标识选定操作。需要说明的是,上述仅示例性的说明通过触控操作的方式实现标识选定操作。实际应用中,还可以通过键控方式实现标识选定操作。在一实施例中,设定标识选定操作的起始位置位于第一信号源的身份标识所在的显示位置,结束位置位于布局区内部的任一显示位置。此时,标识选定操作可以是滑动操作,也可以是连续两次位于不同显示位置的点击操作等。
需要说明的是,实际应用中可以省略步骤S203,设定第一信号源接入智能交互平板时,自动在布局区中显示第一显示区,同时显示第一显示画面。
在步骤S204中,按照设定规则确定第一位置。
其中,设定规则可以根据实际情况设定。实施例中,以下述两个方案进行示例性描述:
方案一、该步骤包括:步骤S2041至步骤S2043。
在步骤S2041中,确定第一信号源的接入序号。
其中,接入序号表示智能交互平板当前已接入的信号源总数量。例如,第一信号源是第3个接入智能交互平板的信号源,那么接入序号为3。
在步骤S2042中,查找布局区的布局模板。
其中,布局模板基于接入序号确定,布局模板用于确定至少一个显示区的 位置布局。
在一实施例中,智能交互平板设有多个布局模板,每个接入序号均有对应的布局模板,智能交互平板根据布局模板对显示区进行位置布局,同时,设定显示画面的位置布局与显示区的位置布局相同,以实现布局区的功能。
在一实施例中,同一接入序号可以对应多个布局模板。举例而言,接入序号为5,布局模板可以是:布局区的上半区域均等显示3个显示区,下半区域均等显示2个显示区;布局模板还可以是:布局区的左半区域均等显示3个显示区,右半区域均等显示2个显示区。在一实施例中,当智能交互平板基于接入序号确定存在多个布局模板时,可以随机选择一个布局模板,或者是,基于历史记录选择被选择次数最多的布局模板,或者是,将多个布局模板全部显示出来,由用户进行选择。在一实施例中,确定布局模板后,用户可以根据实际需求更换布局模板,其中,更换方式实施例不作限定。
在一实施例中,不同接入序号可以对应不同或者相同的布局模板。例如,接入序号为2的布局模板是:布局区左右均等显示,接入序号为3的布局模板变为布局区均分4个区域进行显示,接入序号为4的布局模板同样是布局区均分4个区域进行显示。
在步骤S2043中,确定第一位置。
其中,第一位置为第一显示区的显示区域位置,第一位置根据布局模板确定。
在一实施例中,按照布局模板的显示顺序确定第一位置。例如,布局模板为布局区均分4个区域进行显示,显示顺序为先从左至右再从上至下。当前布局区上半部分的两个区域已经存在显示区,那么,确定第一位置为下半部分的左半区域。
在一实施例中,结合标识选定操作确定第一位置。此时,第一位置为布局模板中与结束位置最匹配的位置区域。在一实施例中,当标识选定操作结束后,确定标识选定操作的结束位置。其中,智能交互平板确定结束位置的具体方式本实施例不作限定,以电容式显示屏为例,当用户在智能交互平板的显示屏上执行触控操作时,对应触控位置的电容会根据用户的触摸而发生变化,即生成包含电容变化情况的触摸信号,处理器根据触摸信号便可以确定标识选定操作的结束位置。在一实施例中,按照布局模板进行位置布局,确认结束位置所在的位置区域,并将该位置区域作为第一位置。其中,位置区域是指布局模板中用于显示显示区的区域。在一实施例中,如果结束位置没在布局模板的任一位置区域,则查找距离结束位置最近的位置区域作为第一位置。在另一实施例中,如果确定的位置区域已经存在显示区,则默认将已存在的显示区顺序排到下一位置区域,将该位置区域作为第一位置,或者是,取消显示已有显示区,并将该位置区域作为第一位置。
方案二、智能交互平板中没有设定布局模板时,可以直接通过标识选定操作的结束位置确定第一位置,其具体为:选定包含结束位置的设定区域作为第一位置。
其中,该步骤包括:将以结束位置为中心点的设定区域位置作为第一位置。其中,智能交互平板结合实际情况预先设定显示区的大小,每个显示区的大小相等。在一实施例中,智能交互平板按照预设显示区的大小,将以结束位置为中心点的设定区域作为第一位置,此时,无需考虑第一位置是否已经存在已有的显示区。
在一实施例中,该步骤还包括:确定布局区中包含结束位置的最大矩形空白区,将最大矩形空白区作为第一位置。在一实施例中,智能交互平板确定结 束位置后,遍历布局区的全部像素点,查找到包含结束位置的空白区域,其中,该空白区域为连通的区域。在一实施例中,在该空白区域中查找最大矩形空白区,作为第一位置。其中,空白区域是指该区域内不存在显示区。在一实施例中,如果不存在空白区域,则按照预设的显示区大小,将以结束位置为中心点的设定区域作为第一位置。作为另一种实现方式,还可以是确定空白区域后,在空白区域中按照预设的显示区大小,将以结束位置为中心点的设定区域作为第一位置。如果空白区域小于预设的显示区大小,则在空白区域中查找最大矩形空白区,作为第一位置。
在步骤S205中,在布局区增加第一显示区,第一显示区位于第一位置。
在一实施例中,当确定第一位置后,便可以在第一位置处显示第一显示区。
例如,第一显示区显示以下至少之一:第一信号源的身份标识,和,第一显示画面的至少一个内容要素。其中,内容要素为第一显示画面中的任一显示内容,如图片和关键字等。举例而言,布局区内包含第一显示区,第一显示区对应于第一显示画面,第一显示画面对应的第一信号源的身份标识为“Bing”。图4为智能交互平板的第二显示界面示意图。参考图4,设定第一显示区为显示区20,此时,第一显示区20显示第一显示画面200中关键字。或者,参考图2,设定,第一显示区为显示区131,此时,第一显示区显示第一信号源的身份标识“Bing”,第一显示画面正常显示数据。
在一实施例中,如果智能交互平板除了第一信号源外,还存在其他的信号源,即当前已接入的信号源总数量为至少两个,那么确定第一位置时,其他信号源对应显示区的显示位置可能需要同步调整。例如,由于第一信号源的接入导致布局模板发生变化时,布局区中除去第一显示区外的已有显示区的显示位置需要根据布局模板的变化而同步变化。据此,当前已接入的信号源总数量为 至少两个时,执行步骤S205时,还同步执行:调整布局区中已有显示区的位置布局,调整后已有显示区的位置布局是根据布局模板确定的。
其中,布局区中已有显示区是指除去第一显示区外的其他显示区。在一实施例中,根据布局模板可以确定已有显示区的新位置,进而,在新位置显示对应的显示区。
在步骤S206中,指示智能交互平板增加第一显示画面。
其中,第一显示画面位于第一目标位置,第一目标位置根据第一位置确定。
在一实施例中,智能交互平板中显示画面与布局区中对应显示区执行相同的变化。因此,根据智能交互平板显示屏与布局区的像素点映射关系确定显示屏中与第一位置对应的第一目标位置,并在第一目标位置增加第一显示画面。
在一实施例中,当布局区根据布局模板调整已有显示区的位置布局后,智能交互平板中已有的显示画面同样需要调整位置布局。据此,执行步骤S206时,同步执行:调整已有显示画面的位置布局,调整后已有显示画面的位置布局与调整后已有显示区的位置布局相同。即根据显示画面与显示区的对应关系,在显示区调整位置后,根据调整后的显示位置同步确定显示画面的目标位置,并将显示画面调整至该目标位置。
在步骤S207中,接收位置调整指令,位置调整指令作用于布局区内的第一显示区。
在步骤S208中,将第一显示区由第一位置调整至第二位置。
其中,第二位置根据位置调整指令确定。
在步骤S209中,指示智能交互平板将第一显示画面由第一目标位置调整至第二目标位置。
其中,第二目标位置根据第二位置确定。
在一实施例中,第二位置显示有第二显示区,第二显示区对应于第二显示画面时,执行步骤S208时,还同步执行:将第二显示区由第二位置调整至第一位置。在执行步骤S209时,还同步执行:将第二显示画面由第二目标位置调整至第一目标位置。
在一实施例中,当位置调整指令的结束位置已经显示有第二显示区,则将第二显示区的显示位置作为第二位置。此时,设定将第一显示区和第二显示区互换位置,即在第二位置显示第一显示区,在第一位置显示第二显示区。同步的,智能交互平板中对应的第一显示画面和第二显示画面同样互换位置,即在第二目标位置显示第一显示画面,在第一目标位置显示第二显示画面。需要说明的是,第一显示区和第二显示区互换位置时,不限定第一位置和第二位置大小相等。在不相等时,第一显示区和第二显示区可以通过像素点映射的方式,进行适应性的缩小或放大。
在一实施例中,第二位置显示有第三显示区,所述第三显示区对应于第三显示画面时,执行步骤S208时,还同步执行:将第一显示区覆盖在第三显示区上。在执行步骤S209时,还同步执行:将第一显示画面覆盖在第三显示画面上。
在一实施例中,设定调整第一显示区的位置时,第一显示区的大小不变。在一实施例中,将位置调整指令的结束位置作为中心点,选取与第一显示区大小相同的区域位置作为第二位置。在一实施例中,当确定第二位置后,如果第二位置上显示有第三显示区,则将第一显示区调整到第二位置时,将第一显示区覆盖在第三显示区上。在一实施例中,第三显示区的数量可以是至少一个。当第三显示区为一个时,其可以与第一显示区的大小相同,也可以大于第一显示区的大小,此时,第一显示区仅覆盖在第二位置对应的显示内容上。当第三显示区为至少两个时,可以是第二位置包含至少两个完整的第三显示区、包含 至少两个第三显示区的部分区域或者是包含至少一个完整的第三显示区以及至少一个第三显示区的部分区域,此时,第一显示区同样是仅覆盖在第二位置对应的显示内容上。在一实施例中,指示智能交互平板执行与布局区中同样的操作,以使第一显示画面覆盖在第三显示画面上。
此时,第一显示区的显示层级高于第三显示区的显示层级,为了实现用户对第三显示区进行操作,在上述实施例基础上,设定:将第一显示画面覆盖在所述第三显示画面上之后,还包括:接收显示区选定指令,显示区选定指令作用于第三显示区;将第三显示区覆盖在第一显示区上;指示智能交互平板将第三显示画面覆盖在所述第一显示画面上。
在一实施例中,显示区选定指令用于选定被第一显示区覆盖的第三显示区。其具体的触发方式可以根据实际情况设定。例如,当第三显示区被第一显示区完全覆盖时,设定在第二位置内接收到长按操作时,确定接收到显示区选定指令。再如,当第三显示区没有被第一显示区完全覆盖时,设定当第三显示区未被覆盖的位置接收到点击操作时,确定接收到显示区选定指令。在一实施例中,当智能交互平板接收到显示区选定指令时,确定用户对第三显示区进行操作,此时,提高第三显示区的显示层级,以使第三显示区覆盖在第一显示区上。同时,指示智能交互平板执行相同的操作,以使第三显示画面覆盖在第一显示画面上。之后,智能交互平板继续接收用户针对第三显示区的其他控制操作,并在控制第三显示区时,同步控制第三显示画面。
在步骤S210中,接收结束指令。
其中,结束指令作用于第一显示区,用于关闭第一信号源,其具体的触发形式实施例中不作限定。例如,在第一显示区中增加虚拟按键,当该虚拟按键被点击时,确定接收到结束指令。又如,当设备区中第一信号源的身份标识被 点击后,确定接收到结束指令。需要说明的是,第一显示区可以是布局区内的任一显示区。
在步骤S211中,关闭第一显示区。
在一实施例中,在布局区中停止显示第一显示区。在一实施例中,第一显示区关闭后,适应性调整剩余显示区的位置布局。例如,关闭第一显示区后,布局模板发生变化,此时,根据新的布局模板重新排布剩余的显示区。
在步骤S212中,指示智能交互平板关闭第一显示画面。
在一实施例中,智能交互平板停止显示第一显示画面,并保证剩余显示画面的位置排布与布局区中剩余显示区的位置排布相同。
下面对实施例中提供的技术方案进行示例性描述:
下述示例均为投屏场景,其中,智能交互平板与至少一个笔记本电脑建立数据连接。在一实施例中,智能交互平板和笔记本电脑中安装有投屏应用。笔记本电脑通过投屏应用将截取的投屏界面发送至智能交互平板。智能交互平板通过投屏应用接收投屏界面,并显示投屏界面。在一实施例中,智能交互平板中安装有控制应用,该控制应用启动时,在智能交互平板中显示布局区和设备区。在一实施例中,在布局区中显示区的位置布局发生变化时,控制应用将位置布局进行序列化,并发送至投屏应用,投屏应用对接收数据进行反序列化以得到显示区的位置布局,进而根据该位置布局确定显示画面的位置布局。
示例一、图5为智能交互平板的第三显示界面示意图。由图5可知,智能交互平板中包括显示画面221、显示画面222、布局区23以及设备区24。由设备区24可知,当前已接入两个信号源,即信号源241和信号源242,其中,信号源241的身份标识为:“Bing”,信号源242的身份标识为“ACE的电脑”,其中,由于设备区24的显示位置不足以显示全部的“ACE的电脑”,因此,“ACE 的电脑”在设备区24未显示部分由省略号替代。在一实施例中,布局区23包括显示区231和显示区232。显示区显示信号源的身份标识,此时,由图5可知,显示区231对应于信号源241,显示区232对应于信号源242。在一实施例中,由于布局区用于呈现显示画面的位置布局,因此,显示区231对应于显示画面221,显示区232对应于显示画面222。
在一实施例中,当确定新的信号源接入智能交互平板时,在布局区23弹出新接入的信号源的身份标识。图6为智能交互平板的第四显示界面示意图。由图6可知,设备区24在显示新接入的信号源243的身份标识时,与信号源241和信号源242区别显示,以便于用户区分。下面采用三种方案描述在布局区23中显示信号源243对应的显示区。
方案一、当检测到信号源243被点击后,确定其接入序号为3,此时,调取对应的布局模板,并按照设定的显示顺序确定多个显示区的显示位置。之后,智能交互平板的显示界面由图6变为图7。图7为智能交互平板的第五显示界面示意图。参考图7,在布局区23中增加对应于信号源243的显示区2331,并调整显示区231和显示区232的位置。其中,显示区2331中显示信号源243的身份标识。在一实施例中,智能交互平板增加显示画面2231,并且根据布局区23中各个显示区的布局调整显示画面221和显示画面222。其中,显示画面2231对应于显示区2331。
方案二、智能交互平板检测滑动操作,其中,图8为滑动操作第一示意图,从图8可知,作用于图6显示界面的滑动操作的起始位置位于信号源243所在的显示位置,结束位置位于布局区23内。此时,确定接收到标识选定操作。之后,确定信号源243接入序号为3,调取对应的布局模板,并根据滑动操作的结束位置,在布局模板中查找最匹配的位置区域,并在该位置区域增加显示区。 增加显示区后,智能交互平板的显示界面如图7所示。此时,智能交互平板的其他操作,如调整布局区和显示画面的操作,与方案一相似,在此不作赘述。
方案三、智能交互平板检测滑动操作,其中,图9为滑动操作第二示意图,从图9可知,作用于图6显示界面的滑动操作的起始位置位于信号源243所在的显示位置,结束位置位于布局区23内。此时,确定滑动操作的结束位置,在布局区23内选定以结束位置为中心点的设定区域作为信号源243的显示区所在的位置。在一实施例中,图10为智能交互平板的第六显示界面示意图。参考图10,基于滑动操作的结束位置在布局区23中增加信号源243的显示区2332。此时,显示区2332和显示区232存在部分显示位置重叠,设定显示区2332的显示层级高于显示区232的显示层级。同时,智能交互平板增加显示画面2232,且智能交互平板中,显示画面的位置布局与布局区中对应显示区的位置布局相同。
示例二、智能交互平板的显示界面如图2所示。智能交互平板接收到滑动操作,其中,图11为滑动操作第三示意图,从图11可知,作用于图2显示界面的滑动操作的起始位置位于显示区131内,结束位置位于显示区132内。此时,确定接收到位置调整指令。将显示区131确定为第一显示区,将显示区132的位置作为第二位置。在一实施例中,交换显示区131和显示区132的显示位置,同步控制显示画面11和显示画面12交换显示位置,此时,智能交互平板的显示界面如图12所示,图12为智能交互平板的第七显示界面示意图,此时,用户通过控制布局区内的显示区,实现了同步控制智能交互平板中显示界面的位置布局。
示例三、智能交互平板的显示界面如图7所示。智能交互平板接收到滑动操作,其中,图13为滑动操作第四示意图,从图13可知,作用于图7显示界 面的滑动操作的起始位置位于显示区231内,结束位置位于区域234内。此时,确定接收到位置调整指令。将显示区231确定为第一显示区,将布局模板中与结束位置最匹配的区域234的位置作为第二位置。在一实施例中,将显示区231调整至区域234位置处显示,同步控制显示画面221调整位置。此时,智能交互平板的显示界面如图14所示,图14为智能交互平板的第八显示界面示意图,此时,用户通过控制布局区内的显示区,实现了同步控制智能交互平板中显示界面的位置布局。
示例四、智能交互平板的显示界面如图7所示。智能交互平板接收到滑动操作,其中,图15为滑动操作第五示意图,从图15可知,作用于图8显示界面的滑动操作的起始位置位于显示区231内,结束位置位于位置点235。此时,确定接收到位置调整指令。将显示区231确定为第一显示区,将以位置点235为中心点、与显示区231大小相同的区域作为第二位置。在一实施例中,将显示区231调整至第二位置处显示,同步控制显示画面221调整位置。此时,智能交互平板的显示界面如图16所示,图16为智能交互平板的第九显示界面示意图,此时,显示区231部分覆盖在显示区232和显示区2331的部分区域上,同时,显示画面221部分覆盖在显示画面222和显示画面2231的部分区域上。此时,用户通过控制布局区内的显示区,实现了同步控制智能交互平板中显示界面的位置布局。
示例五、智能交互平板的显示界面如图7所示。智能交互平板检测到信号源241接收到点击操作后,或者是,每个显示区均设置有“退出”功能按键25,确定接收到结束指令。此时,关闭信号源241对应的显示区231以及对应的显示画面221。在一实施例中,调取接入两个信号源时的布局模板,并根据布局模板适应性调整显示区232和显示区2331的位置。同时,调整显示画面222和显 示画面2231的位置。此时,智能交互平板的显示界面如图17所示,图17为智能交互平板的第十显示界面示意图。由于信号源242先于信号源243接入智能交互平板,因此,按照布局模板的显示规则,在布局区的左半部分显示显示区232,右半部分显示显示区2331。此时,用户通过控制布局区内的显示区,实现了同步控制智能交互平板中显示界面的位置布局。
需要说明的是,布局区和设备区的显示面积可以根据实际情况设定,上述示例中仅是为了便于理解技术方案,将显示面积适应性的增大。
本实施例提供的技术方案,通过设定用于显示信号源身份标识的设备区,以及呈现信号源对应显示画面的位置布局的布局区,通过用户对设备区和布局区的操作,同步控制智能交互平板中显示画面的位置布局,实现了用户明确当前已接入的信号源,且通过灵活的操作方式和设定规则,实现了对信号源的显示画面进行控制。同时,布局区和设备区仅集成在智能交互平板的某一块区域,便于用户控制,无需用户在整个智能交互平板的显示屏对显示画面进行触控操作。
在上述实施例的基础上,设定除去位置调整指令外,用户还可以对显示画面的面积大小进行控制,其具体包括如下操作:
在步骤S213中,接收面积调整指令。
其中,面积调整指令作用于布局区内的第一显示区。第一显示区并非特定的显示区,其可以布局区内任一被用户当前选定调整面积的显示区。在一实施例中,面积调整指令的具体设定形式实施例中不作限定。例如,当智能交互平板在任一显示区中同时接收到两个滑动操作,且两个滑动操作方向相反,则确定接收到面积调整指令。又如,当智能交互平板在任一显示区的边框上接收到拖拽指令后,确定接收到面积调整指令。
在步骤S214中,调整第一显示区的显示面积至第一目标面积。
其中,第一目标面积根据面积调整指令确定。在一实施例中,根据面积调整指令确定第四显示区的缩放比例,之后,根据缩放比例计算第一目标面积。
在一实施例中,将第一显示区的显示面积调整至第一目标面积时,其他显示区的显示面积可以适应性的调整,或者保持不变。当适应性调整时,具体的调整规则可以根据实际情况设定。例如,设定每个显示区均不会相互重叠,当第一显示区修改显示面积后,如果遮挡到其他显示区,则被遮挡的其他显示区适应性缩小,直到不被遮挡为止。当第一显示区修改显示面积后,如果出现了空白区域,则其他显示区可以保持不变,或者适应性放大,以填补空白区域。
在步骤S215中,指示智能交互平板调整第一显示画面的显示面积至第二目标面积。
其中,第二目标面积根据第一目标面积确定,即根据布局区与智能交互平板显示屏的像素点映射关系,计算第二目标面积。在一实施例中,指示智能交互平板根据布局区中显示区的位置布局重新调整每个显示画面的位置布局。
下面对面积调整过程进行示例性说明:
智能交互平板的显示界面如图7所示。智能交互平板接收到滑动操作,其中,图18为滑动操作第六示意图,从图18可知,作用于图7显示界面的滑动操作为两点触控,且两点滑动方向相反。此时,确定接收到面积调整指令。将滑动操作显示区232确定为第一显示区。在一实施例中,根据预设的滑动操作的滑动距离与缩放比例的关系,计算第一目标面积,进而将显示区232的显示面积调整至第一目标面积。图19为智能交互平板的第十一显示界面示意图,此时,显示区232调整至第一目标面积后,显示区231和显示区2331适应性缩小了显示面积,以防止被遮挡。同时,智能交互平板适应性调整显示界面的位置 布局。即用户通过布局区便可以实现对显示画面的显示面积进行控制,且控制方式简单灵活。
实施例三
图20为本申请实施例三提供的一种显示界面控制装置的结构示意图。参考图20,该显示界面控制装置包括:信号源接入模块301、布局区显示模块302、显示指示模块303、指令接收模块304、第一调整模块305以及第二调整模块306。
其中,信号源接入模块301,设置为确定第一信号源接入智能交互平板;布局区显示模块302,设置为在布局区增加第一显示区,该布局区用于呈现智能交互平板中至少一个显示画面的位置布局,布局区包括至少一个显示区,每个显示区对应一个显示画面,每个显示画面对应一个信号源,第一显示区对应第一显示画面,第一显示画面对应第一信号源,第一显示区位于第一位置;显示指示模块303,设置为指示智能交互平板增加第一显示画面,第一显示画面位于第一目标位置,第一目标位置根据第一位置确定;指令接收模块304,设置为接收位置调整指令,位置调整指令作用于第一显示区;第一调整模块305,设置为将第一显示区由第一位置调整至第二位置,第二位置根据位置调整指令确定;第二调整模块306,设置为指示智能交互平板将第一显示画面由第一目标位置调整至第二目标位置,第二目标位置根据第二位置确定。
本实施例提供的技术方案,通过设置用于呈现智能交互平板至少一个显示画面位置布局的布局区,并确认第一信号源接入智能交互平板后,在布局区显示第一显示区以及智能交互平板中显示第一显示画面,在接收到作用于布局区内第一显示区的位置调整指令时,将第一显示区由第一位置调整至第二位置,同时,将智能交互平板中与第一显示区对应的第一显示画面由第一目标位置调整至第二目标位置的技术手段,实现了对智能交互平板中显示画面的位置调整, 且通过布局区进行位置调整,可以解决由于智能交互平板屏幕过大不便于用户操作的问题,尤其在视频会议或者多端投屏会议场景下,通过此类方式,便于与会人员对接入信号源的显示画面进行控制。
在上述实施例的基础上,第二位置显示有第二显示区,第二显示区对应于第二显示画面;第一调整模块305,还设置为将第二显示区由第二位置调整至第一位置;第二调整模块306,还设置为将第二显示画面由第二目标位置调整至第一目标位置。
在上述实施例的基础上,第二位置显示有第三显示区,第三显示区对应于第三显示画面;第一调整模块305,还设置为将第一显示区覆盖在第三显示区上;第二调整模块306,还设置为将第一显示画面覆盖在第三显示画面上。
在上述实施例的基础上,还包括:选定指令接收模块,设置为将所第一显示画面覆盖在第三显示画面上之后,接收显示区选定指令,显示区选定指令作用于第三显示区;第一覆盖模块,设置为将第三显示区覆盖在第一显示区上;第二覆盖模块,设置为指示智能交互平板将第三显示画面覆盖在第一显示画面上。
在上述实施例的基础上,还包括:位置确定模块,设置为在布局区增加第一显示区之前,按照设定规则确定第一位置。
在上述实施例的基础上,还包括:身份显示模块,设置为在信号源接入模块确定第一信号源接入智能交互平板之后,在设备区显示第一信号源的身份标识,该设备区与布局区位于同一显示层,设备区用于呈现至少一个信号源的身份标识,至少一个信号源接入智能交互平板。
在上述实施例的基础上,还包括:操作接收模块,设置为在身份显示模块在设备区显示第一信号源的身份标识之后,接收标识选定操作,该标识选定操 作用于选定第一信号源的身份标识。
在上述实施例的基础上,标识选定操作的起始位置位于第一信号源的身份标识所在的显示位置,结束位置位于布局区内部的任一显示位置。
在上述实施例的基础上,位置确定模块包括:序号确定单元,设置为确定第一信号源的接入序号,该接入序号表示智能交互平板当前已接入的信号源总数量;模板查找单元,设置为查找布局区的布局模板,布局模板基于接入序号确定,布局模板用于确定至少一个显示区的位置布局;匹配确定单元,设置为确定第一位置,该第一位置为布局模板中与结束位置最匹配的位置区域。
在上述实施例的基础上,当前已接入的信号源总数量为至少两个;布局区显示模块302,还设置为:调整布局区中已有显示区的位置布局,调整后已有显示区的位置布局是根据布局模板确定的;显示指示模块303,还设置为:调整已有显示画面的位置布局,调整后已有显示画面的位置布局与调整后已有显示区的位置布局相同。
在上述实施例的基础上,位置确定模块设置为:将以结束位置为中心点的设定区域位置作为第一位置;或,确定布局区中包含结束位置的最大矩形空白区,将最大矩形空白区作为所述第一位置。
在上述实施例的基础上,还包括:调整接收模块,设置为接收面积调整指令,面积调整指令作用于第一显示区;第三调整模块,设置为调整第一显示区的显示面积至第一目标面积,第一目标面积根据面积调整指令确定;第四调整模块,设置为指示智能交互平板调整第一显示画面的显示面积至第二目标面积,第二目标面积根据第一目标面积确定。
在上述实施例的基础上,还包括:结束接收模块,设置为接收结束指令,结束指令作用于第一显示区;第一关闭模块,设置为关闭第一显示区;第二关 闭模块,设置为指示智能交互平板关闭第一显示画面。
在上述实施例的基础上,第一显示区显示以下至少之一:显示第一信号源的身份标识,和,第一显示画面的至少一个内容要素。
在上述实施例的基础上,第一信号源为投屏信号源和视频信号源中的至少之一。
本实施例提供的显示界面控制装置可以用于执行上述任意实施例提供的显示界面控制方法,具备相应的功能和有益效果。
实施例四
图21为本申请实施例四提供的一种显示界面控制设备的结构示意图。该显示界面控制设备包括:处理器40、存储器41、显示屏42、输入装置43以及输出装置44。该显示界面控制设备中处理器40的数量可以是一个或者多个,图21中以一个处理器40为例。该显示界面控制设备中存储器41的数量可以是一个或者多个,图21中以一个存储器41为例。该显示界面控制设备的处理器40、存储器41、显示屏42、输入装置43以及输出装置44可以通过总线或者其他方式连接,图21中以通过总线连接为例。实施例中,显示界面控制设备可以是电脑,手机,平板,投影仪或智能交互平板等。实施例中,以显示界面控制设备为智能交互平板为例,进行描述。
存储器41作为一种计算机可读存储介质,可设置为存储软件程序、计算机可执行程序以及模块,如本申请任意实施例所述的显示界面控制方法对应的程序指令/模块(例如,显示界面控制装置中的信号源接入模块301、布局区显示模块302、显示指示模块303、指令接收模块304、第一调整模块305以及第二调整模块306)。存储器41可主要包括存储程序区和存储数据区,其中,存储程序区可存储操作系统、至少一个功能所需的应用程序;存储数据区可存储根据 设备的使用所创建的数据等。此外,存储器41可以包括高速随机存取存储器,还可以包括非易失性存储器,例如至少一个磁盘存储器件、闪存器件、或其他非易失性固态存储器件。在一些实例中,存储器41可进一步包括相对于处理器40远程设置的存储器,这些远程存储器可以通过网络连接至设备。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。
显示屏42为具有触摸功能的显示屏42,其可以是电容屏、电磁屏或者红外屏。一般而言,显示屏42设置为根据处理器40的指示显示数据,还设置为接收作用于显示屏42的触摸操作,并将相应的信号发送至处理器40或其他装置。在一实施例中,当显示屏42为红外屏时,其还包括红外触摸框,该红外触摸框设置在显示屏42的四周,其还可以设置为接收红外信号,并将该红外信号发送至处理器40或者其他设备。
输入装置43可设置为接收输入的数字或者字符信息,以及产生与显示界面控制设备的用户设置以及功能控制有关的键信号输入,还可以是设置为获取图像的摄像头以及获取音频数据的拾音设备。输出装置44可以包括扬声器等音频设备。需要说明的是,输入装置43和输出装置44的具体组成可以根据实际情况设定。
在一实施例中,显示界面控制设备还包括通信装置(图未示),设置为与其他设备建立通信连接,其可以是有线通信装置和无线通信装置中的至少之一。
处理器40通过运行存储在存储器41中的软件程序、指令以及模块,从而执行设备的多种功能应用以及数据处理,即实现上述的显示界面控制方法。
在一实施例中,当所述一个或多个程序被所述一个或多个处理器40执行,使得所述一个或多个处理器40实现如下操作:
确定第一信号源接入智能交互平板;
控制显示屏42在布局区增加第一显示区,布局区用于呈现智能交互平板中至少一个显示画面的位置布局,布局区包括至少一个显示区,每个显示区对应一个显示画面,每个显示画面对应一个信号源,第一显示区对应第一显示画面,第一显示画面对应第一信号源,第一显示区位于第一位置;
指示智能交互平板增加第一显示画面,第一显示画面位于第一目标位置,第一目标位置根据第一位置确定;
控制显示屏42接收位置调整指令,位置调整指令作用于第一显示区;
控制显示屏42将第一显示区由第一位置调整至第二位置,第二位置根据位置调整指令确定;
指示智能交互平板将第一显示画面由第一目标位置调整至第二目标位置,第二目标位置根据第二位置确定。
在上述实施例的基础上,第二位置显示有第二显示区,第二显示区对应于第二显示画面;
当一个或多个程序被一个或多个处理器40执行,使得一个或多个处理器40实现控制显示屏42将第一显示区由第一位置调整至第二位置时,还具体实现:
将第二显示区由第二位置调整至第一位置;
当一个或多个程序被一个或多个处理器40执行,使得一个或多个处理器40实现指示智能交互平板将第一显示画面由第一目标位置调整至第二目标位置时,还具体实现:
将第二显示画面由第二目标位置调整至第一目标位置。
在上述实施例的基础上,第二位置显示有第三显示区,第三显示区对应于第三显示画面;
当一个或多个程序被一个或多个处理器40执行,使得一个或多个处理器40 实现控制显示屏42将第一显示区由第一位置调整至第二位置时,还具体实现:
将第一显示区覆盖在第三显示区上;
当一个或多个程序被一个或多个处理器40执行,使得一个或多个处理器40实现指示智能交互平板将第一显示画面由第一目标位置调整至第二目标位置时,还具体实现:
将第一显示画面覆盖在第三显示画面上。
在上述实施例的基础上,当一个或多个程序被一个或多个处理器40执行,使得一个或多个处理器40实现将第一显示画面覆盖在第三显示画面上之后,还具体实现:
控制显示屏42接收显示区选定指令,显示区选定指令作用于第三显示区;
控制显示屏42将第三显示区覆盖在第一显示区上;
指示智能交互平板将第三显示画面覆盖在第一显示画面上。
在上述实施例的基础上,当一个或多个程序被一个或多个处理器40执行,使得一个或多个处理器40实现控制显示屏42在布局区增加第一显示区之前,还具体实现:
按照设定规则确定第一位置。
在上述实施例的基础上,当一个或多个程序被一个或多个处理器执行,使得一个或多个处理器实现确定第一信号源接入智能交互平板之后,还具体实现:
控制显示屏42在设备区显示第一信号源的身份标识,设备区与布局区位于同一显示层,设备区用于呈现至少一个信号源的身份标识,至少一个信号源接入所述智能交互平板。
在上述实施例的基础上,当一个或多个程序被一个或多个处理器40执行,使得一个或多个处理器40实现控制显示屏42在设备区显示第一信号源的身份 标识之后,还具体实现:
接收标识选定操作,标识选定操作用于选定第一信号源的身份标识。
在上述实施例的基础上,标识选定操作的起始位置位于第一信号源的身份标识所在的显示位置,结束位置位于布局区内部的任一显示位置。
在上述实施例的基础上,当一个或多个程序被一个或多个处理器40执行,使得一个或多个处理器实现按照设定规则确定第一位置时,具体实现:
确定第一信号源的接入序号,接入序号表示智能交互平板当前已接入的信号源总数量;
查找布局区的布局模板,布局模板基于接入序号确定,布局模板用于确定至少一个显示区的位置布局;
确定第一位置,第一位置为布局模板中与结束位置最匹配的位置区域。
在上述实施例的基础上,当前已接入的信号源总数量为至少两个;
当一个或多个程序被一个或多个处理器40执行,使得一个或多个处理器40实现控制显示屏42在布局区增加第一显示区时,还具体实现:
调整布局区中已有显示区的位置布局,调整后已有显示区的位置布局是根据布局模板确定的;
当一个或多个程序被一个或多个处理器40执行,使得一个或多个处理器40实现指示智能交互平板增加第一显示画面时,还具体实现:
调整已有显示画面的位置布局,调整后已有显示画面的位置布局与调整后已有显示区的位置布局相同。
在上述实施例的基础上,当一个或多个程序被一个或多个处理器40执行,使得一个或多个处理器40实现按照设定规则确定第一位置时,具体实现:
将以结束位置为中心点的设定区域位置作为第一位置;或,确定布局区中 包含结束位置的最大矩形空白区,将最大矩形空白区作为第一位置。
在上述实施例的基础上,当一个或多个程序被一个或多个处理器40执行,使得一个或多个处理器40还具体实现如下操作:
控制显示屏42接收面积调整指令,面积调整指令作用于所述第一显示区;
控制显示屏42调整第一显示区的显示面积至第一目标面积,第一目标面积根据面积调整指令确定;
指示智能交互平板调整第一显示画面的显示面积至第二目标面积,第二目标面积根据第一目标面积确定。
在上述实施例的基础上,当一个或多个程序被一个或多个处理器40执行,使得一个或多个处理器40还具体实现如下操作:
控制显示屏42接收结束指令,结束指令作用于第一显示区;
控制显示屏42关闭第一显示区;
指示智能交互平板关闭第一显示画面。
在上述实施例的基础上,第一显示区符合以下至少之一:第一显示区显示第一信号源的身份标识,和,第一显示区显示第一显示画面的至少一个内容要素。
在上述实施例的基础上,第一信号源为投屏信号源和视频信号源中的至少一种。
需要说明的是,由于实施例中显示界面控制设备为智能交互平板,因此,上述提及的指示智能交互平板的相关操作,可以理解为处理器指示显示屏的相关操作。在实际应用中,当显示界面控制设备为其他设备(如手机等),则上述提及的指示智能交互平板的相关操作,可以理解为指示智能交互平板的处理器控制显示屏执行的相关操作。
上述提供的显示界面控制设备可用于执行上述任意实施例提供的显示界面控制方法,具备相应的功能和有益效果。
实施例五
本申请实施例五还提供一种包含计算机可执行指令的存储介质,所述计算机可执行指令在由计算机处理器执行时用于执行一种显示界面控制方法,包括:
确定第一信号源接入智能交互平板;
在布局区增加第一显示区,布局区用于呈现智能交互平板中至少一个显示画面的位置布局,布局区包括至少一个显示区,每个显示区对应一个显示画面,每个显示画面对应一个信号源,第一显示区对应第一显示画面,第一显示画面对应第一信号源,第一显示区位于第一位置;
指示智能交互平板增加第一显示画面,第一显示画面位于第一目标位置,第一目标位置根据第一位置确定;
接收位置调整指令,位置调整指令作用于第一显示区;
将第一显示区由第一位置调整至第二位置,第二位置根据位置调整指令确定;
指示智能交互平板将第一显示画面由第一目标位置调整至第二目标位置,第二目标位置根据第二位置确定。
当然,本申请实施例所提供的一种包含计算机可执行指令的存储介质,其计算机可执行指令不限于如上所述的显示界面控制方法操作,还可以执行本申请任意实施例所提供的显示界面控制方法中的相关操作,且具备相应的功能和有益效果。
通过以上关于实施方式的描述,所属领域的技术人员可以清楚地了解到,本申请可借助软件及必需的通用硬件来实现,当然也可以通过硬件实现,但很多情况下前者是更佳的实施方式。基于这样的理解,本申请的技术方案本质上或者说对相关技术做出贡献的部分可以以软件产品的形式体现出来,该计算机 软件产品可以存储在计算机可读存储介质中,如计算机的软盘、只读存储器(Read-Only Memory,ROM)、随机存取存储器(Random Access Memory,RAM)、闪存(FLASH)、硬盘或光盘等,包括若干指令用以使得一台计算机设备(可以是机器人,个人计算机,服务器,或者网络设备等)执行本申请任意实施例所述的显示界面控制方法。
值得注意的是,上述显示界面控制装置中,所包括的多个单元和模块只是按照功能逻辑进行划分的,但并不局限于上述的划分,只要能够实现相应的功能即可;另外,多个功能单元的具体名称也只是为了便于相互区分,并不用于限制本申请的保护范围。
应当理解,本申请的多个部分可以用硬件、软件、固件或它们的组合来实现。在上述实施方式中,多个步骤或方法可以用存储在存储器中且由合适的指令执行系统执行的软件或固件来实现。例如,如果用硬件来实现,和在另一实施方式中一样,可用本领域公知的下列技术中的任一项或他们的组合来实现:具有用于对数据信号实现逻辑功能的逻辑门电路的离散逻辑电路,具有合适的组合逻辑门电路的专用集成电路,可编程门阵列(PGA),现场可编程门阵列(FPGA)等。
在本说明书的描述中,参考术语“一个实施例”、“一些实施例”、“示例”、“具体示例”、或“一些示例”等的描述意指结合该实施例或示例描述的具体特征、结构、材料或者特点包含于本申请的至少一个实施例或示例中。在本说明书中,对上述术语的示意性表述不一定指的是相同的实施例或示例。而且,描述的具体特征、结构、材料或者特点可以在任何的一个或多个实施例或示例中以合适的方式结合。

Claims (46)

  1. 一种显示界面控制方法,包括:
    确定第一信号源已接入智能交互平板;
    在布局区增加第一显示区,所述布局区用于呈现智能交互平板中至少一个显示画面的位置布局,所述布局区包括至少一个显示区,每个显示区对应一个显示画面,每个所述显示画面对应一个信号源,所述第一显示区对应第一显示画面,第一显示画面对应第一信号源,所述第一显示区位于第一位置;
    指示智能交互平板增加第一显示画面,所述第一显示画面位于第一目标位置,所述第一目标位置根据所述第一位置确定;
    接收位置调整指令,所述位置调整指令作用于所述第一显示区;
    将所述第一显示区由第一位置调整至第二位置,所述第二位置根据所述位置调整指令确定;
    指示所述智能交互平板将所述第一显示画面由第一目标位置调整至第二目标位置,所述第二目标位置根据所述第二位置确定。
  2. 根据权利要求1所述的显示界面控制方法,其中,所述第二位置显示有第二显示区,所述第二显示区对应于第二显示画面;
    所述将所述第一显示区由第一位置调整至第二位置时,还包括:
    将所述第二显示区由所述第二位置调整至所述第一位置;
    所述指示所述智能交互平板将所述第一显示画面由第一目标位置调整至第二目标位置时,还包括:
    将所述第二显示画面由所述第二目标位置调整至所述第一目标位置。
  3. 根据权利要求1所述的显示界面控制方法,其中,所述第二位置显示有第三显示区,所述第三显示区对应于第三显示画面;
    所述将所述第一显示区由第一位置调整至第二位置时,还包括:
    将所述第一显示区覆盖在所述第三显示区上;
    所述指示所述智能交互平板将所述第一显示画面由第一目标位置调整至第二目标位置时,还包括:
    将所述第一显示画面覆盖在所述第三显示画面上。
  4. 根据权利要求3所述的显示界面控制方法,所述将所述第一显示画面覆盖在所述第三显示画面上之后,还包括:
    接收显示区选定指令,所述显示区选定指令作用于所述第三显示区;
    将所述第三显示区覆盖在第一显示区上;
    指示所述智能交互平板将所述第三显示画面覆盖在所述第一显示画面上。
  5. 根据权利要求1所述的显示界面控制方法,所述在布局区增加第一显示区之前,还包括:
    按照设定规则确定第一位置。
  6. 根据权利要求5所述的显示界面控制方法,所述确定第一信号源已接入智能交互平板之后,还包括:
    在设备区显示所述第一信号源的身份标识,所述设备区与所述布局区位于同一显示层,所述设备区用于呈现至少一个信号源的身份标识,所述至少一个信号源接入所述智能交互平板。
  7. 根据权利要求6所述的显示界面控制方法,所述在设备区显示所述第一信号源的身份标识之后,还包括:
    接收标识选定操作,所述标识选定操作用于选定所述第一信号源的身份标识。
  8. 根据权利要求7所述的显示界面控制方法,其中,所述标识选定操作的起始位置位于所述第一信号源的身份标识所在的显示位置,结束位置位于所述 布局区内部的任一显示位置。
  9. 根据权利要求8所述的显示界面控制方法,其中,所述按照设定规则确定第一位置包括:
    确定第一信号源的接入序号,所述接入序号表示智能交互平板当前已接入的信号源总数量;
    查找布局区的布局模板,所述布局模板基于所述接入序号确定,所述布局模板用于确定至少一个显示区的位置布局;
    确定第一位置,所述第一位置为所述布局模板中与所述结束位置最匹配的位置区域。
  10. 根据权利要求9所述的显示界面控制方法,其中,所述当前已接入的信号源总数量为至少两个;
    所述在布局区增加第一显示区时,还包括:
    调整所述布局区中已有显示区的位置布局,调整后已有显示区的位置布局是根据所述布局模板确定的;
    所述指示智能交互平板增加第一显示画面时,还包括:
    调整已有显示画面的位置布局,调整后已有显示画面的位置布局与调整后已有显示区的位置布局相同。
  11. 根据权利要求8所述的显示界面控制方法,其中,所述按照设定规则确定第一位置包括:
    将以所述结束位置为中心点的设定区域位置作为第一位置;或,
    确定所述布局区中包含所述结束位置的最大矩形空白区,将所述最大矩形空白区作为所述第一位置。
  12. 根据权利要求1所述的显示界面控制方法,还包括:
    接收面积调整指令,所述面积调整指令作用于所述第一显示区;
    调整所述第一显示区的显示面积至第一目标面积,所述第一目标面积根据面积调整指令确定;
    指示智能交互平板调整第一显示画面的显示面积至第二目标面积,所述第二目标面积根据所述第一目标面积确定。
  13. 根据权利要求1所述的显示界面控制方法,还包括:
    接收结束指令,所述结束指令作用于所述第一显示区;
    关闭所述第一显示区;
    指示所述智能交互平板关闭所述第一显示画面。
  14. 根据权利要求1所述的显示界面控制方法,其中,所述第一显示区显示以下至少之一:所述第一信号源的身份标识,和,所述第一显示画面的至少一个内容要素。
  15. 根据权利要求1所述的显示界面控制方法,其中,所述第一信号源为投屏信号源和视频信号源中的至少之一。
  16. 一种显示界面控制装置,包括:
    信号源接入模块,设置为确定第一信号源已接入智能交互平板;
    布局区显示模块,设置为在布局区增加第一显示区,所述布局区用于呈现智能交互平板中至少一个显示画面的位置布局,所述布局区包括至少一个显示区,每个显示区对应一个显示画面,每个所述显示画面对应一个信号源,所述第一显示区对应第一显示画面,第一显示画面对应第一信号源,所述第一显示区位于第一位置;
    显示指示模块,设置为指示智能交互平板增加第一显示画面,所述第一显示画面位于第一目标位置,所述第一目标位置根据所述第一位置确定;
    指令接收模块,设置为接收位置调整指令,所述位置调整指令作用于所述第一显示区;
    第一调整模块,设置为将所述第一显示区由第一位置调整至第二位置,所述第二位置根据所述位置调整指令确定;
    第二调整模块,设置为指示所述智能交互平板将所述第一显示画面由第一目标位置调整至第二目标位置,所述第二目标位置根据所述第二位置确定。
  17. 根据权利要求16所述的显示界面控制装置,其中,所述第二位置显示有第二显示区,所述第二显示区对应于第二显示画面;
    所述第一调整模块,还设置为将所述第二显示区由所述第二位置调整至所述第一位置;
    所述第二调整模块,还设置为将所述第二显示画面由所述第二目标位置调整至所述第一目标位置。
  18. 根据权利要求16所述的显示界面控制装置,其中,所述第二位置显示有第三显示区,所述第三显示区对应于第三显示画面;
    所述第一调整模块,还设置为将所述第一显示区覆盖在所述第三显示区上;
    所述第二调整模块,还设置为将所述第一显示画面覆盖在所述第三显示画面上。
  19. 根据权利要求18所述的显示界面控制装置,还包括:
    选定指令接收模块,设置为将所述第一显示画面覆盖在所述第三显示画面上之后,接收显示区选定指令,所述显示区选定指令作用于所述第三显示区;
    第一覆盖模块,设置为将所述第三显示区覆盖在第一显示区上;
    第二覆盖模块,设置为指示所述智能交互平板将所述第三显示画面覆盖在所述第一显示画面上。
  20. 根据权利要求16所述的显示界面控制装置,还包括:
    位置确定模块,设置为在布局区增加第一显示区之前,按照设定规则确定第一位置。
  21. 根据权利要求20所述的显示界面控制装置,还包括:
    身份显示模块,设置为在所述信号源接入模块确定所述第一信号源接入所述智能交互平板之后,在设备区显示所述第一信号源的身份标识,所述设备区与所述布局区位于同一显示层,所述设备区用于呈现至少一个信号源的身份标识,所述至少一个信号源接入所述智能交互平板。
  22. 根据权利要求21所述的显示界面控制装置,还包括:
    操作接收模块,设置为在所述身份显示模块在设备区显示所述第一信号源的身份标识之后,接收标识选定操作,所述标识选定操作用于选定所述第一信号源的身份标识。
  23. 根据权利要求22所述的显示界面控制装置,其中,所述标识选定操作的起始位置位于所述第一信号源的身份标识所在的显示位置,结束位置位于所述布局区内部的任一显示位置。
  24. 根据权利要求23所述的显示界面控制装置,其中,所述位置确定模块包括:
    序号确定单元,设置为确定第一信号源的接入序号,所述接入序号表示智能交互平板当前已接入的信号源总数量;
    模板查找单元,设置为查找布局区的布局模板,所述布局模板基于所述接入序号确定,所述布局模板用于确定至少一个显示区的位置布局;
    匹配确定单元,设置为确定第一位置,所述第一位置为所述布局模板中与所述结束位置最匹配的位置区域。
  25. 根据权利要求24所述的显示界面控制装置,其中,所述当前已接入的信号源总数量为至少两个;
    布局区显示模块,还设置为:调整所述布局区中已有显示区的位置布局,调整后已有显示区的位置布局是根据所述布局模板确定的;
    显示指示模块,还设置为:调整已有显示画面的位置布局,调整后已有显示画面的位置布局与调整后已有显示区的位置布局相同。
  26. 根据权利要求23所述的显示界面控制装置,其中,所述位置确定模块设置为:
    将以所述结束位置为中心点的设定区域位置作为第一位置;或,
    确定所述布局区中包含所述结束位置的最大矩形空白区,将所述最大矩形空白区作为所述第一位置。
  27. 根据权利要求16所述的显示界面控制装置,还包括:
    调整接收模块,设置为接收面积调整指令,所述面积调整指令作用于所述第一显示区;
    第三调整模块,设置为调整所述第一显示区的显示面积至第一目标面积,所述第一目标面积根据面积调整指令确定;
    第四调整模块,设置为指示智能交互平板调整第一显示画面的显示面积至第二目标面积,所述第二目标面积根据所述第一目标面积确定。
  28. 根据权利要求16所述的显示界面控制装置,还包括:
    结束接收模块,设置为接收结束指令,所述结束指令作用于所述第一显示区;
    第一关闭模块,设置为关闭所述第一显示区;
    第二关闭模块,设置为指示所述智能交互平板关闭所述第一显示画面。
  29. 根据权利要求16所述的显示界面控制装置,其中,所述第一显示区显示以下至少之一:所述第一信号源的身份标识,和,第一显示画面的至少一个内容要素。
  30. 根据权利要求16所述的显示界面控制装置,其中,所述第一信号源为投屏信号源和视频信号源中的至少之一。
  31. 一种显示界面控制设备,包括:
    存储器、显示屏以及至少一个处理器;
    所述存储器,设置为存储至少一个程序;
    当所述至少一个程序被所述至少一个处理器执行,使得所述至少一个处理器实现如下操作:
    确定第一信号源已接入智能交互平板;
    控制所述显示屏在布局区增加第一显示区,所述布局区用于呈现智能交互平板中至少一个显示画面的位置布局,所述布局区包括至少一个显示区,每个显示区对应一个显示画面,每个所述显示画面对应一个信号源,所述第一显示区对应第一显示画面,第一显示画面对应第一信号源,所述第一显示区位于第一位置;
    指示智能交互平板增加第一显示画面,所述第一显示画面位于第一目标位置,所述第一目标位置根据所述第一位置确定;
    控制所述显示屏接收位置调整指令,所述位置调整指令作用于所述第一显示区;
    控制显示屏将所述第一显示区由第一位置调整至第二位置,所述第二位置根据所述位置调整指令确定;
    指示所述智能交互平板将所述第一显示画面由第一目标位置调整至第二目 标位置,所述第二目标位置根据所述第二位置确定。
  32. 根据权利要求31所述的显示界面控制设备,其中,所述第二位置显示有第二显示区,所述第二显示区对应于第二显示画面;
    当所述至少一个程序被所述至少一个处理器执行,使得所述至少一个处理器实现所述控制显示屏将所述第一显示区由第一位置调整至第二位置时,还实现:
    将所述第二显示区由所述第二位置调整至所述第一位置;
    当所述至少一个程序被所述至少一个处理器执行,使得所述至少一个处理器实现所述指示所述智能交互平板将所述第一显示画面由第一目标位置调整至第二目标位置时,还实现:
    将所述第二显示画面由所述第二目标位置调整至所述第一目标位置。
  33. 根据权利要求31所述的显示界面控制设备,其中,所述第二位置显示有第三显示区,所述第三显示区对应于第三显示画面;
    当所述至少一个程序被所述至少一个处理器执行,使得所述至少一个处理器实现所述控制显示屏将所述第一显示区由第一位置调整至第二位置时,还实现:
    将所述第一显示区覆盖在所述第三显示区上;
    当所述至少一个程序被所述至少一个处理器执行,使得所述至少一个处理器实现所述指示所述智能交互平板将所述第一显示画面由第一目标位置调整至第二目标位置时,还实现:
    将所述第一显示画面覆盖在所述第三显示画面上。
  34. 根据权利要求33所述的显示界面控制设备,其中,当所述至少一个程序被所述至少一个处理器执行,使得所述至少一个处理器实现所述将所述第一 显示画面覆盖在所述第三显示画面上之后,还实现:
    控制显示屏接收显示区选定指令,所述显示区选定指令作用于所述第三显示区;
    控制显示屏将所述第三显示区覆盖在第一显示区上;
    指示所述智能交互平板将所述第三显示画面覆盖在所述第一显示画面上。
  35. 根据权利要求31所述的显示界面控制设备,其中,当所述至少一个程序被所述至少一个处理器执行,使得所述至少一个处理器实现所述控制所述显示屏在布局区增加第一显示区之前,还实现:
    按照设定规则确定第一位置。
  36. 根据权利要求35所述的显示界面控制设备,其中,当所述至少一个程序被所述至少一个处理器执行,使得所述至少一个处理器实现所述确定所述第一信号源接入所述智能交互平板之后,还实现:
    控制显示屏在设备区显示所述第一信号源的身份标识,所述设备区与所述布局区位于同一显示层,所述设备区用于呈现至少一个信号源的身份标识,所述至少一个信号源接入所述智能交互平板。
  37. 根据权利要求36所述的显示界面控制设备,其中,当所述至少一个程序被所述至少一个处理器执行,使得所述至少一个处理器实现所述控制显示屏在设备区显示所述第一信号源的身份标识之后,还实现:
    接收标识选定操作,所述标识选定操作用于选定所述第一信号源的身份标识。
  38. 根据权利要求37所述的显示界面控制设备,其中,所述标识选定操作的起始位置位于所述第一信号源的身份标识所在的显示位置,结束位置位于所述布局区内部的任一显示位置。
  39. 根据权利要求38所述的显示界面控制设备,其中,当所述至少一个程序被所述至少一个处理器执行,使得所述至少一个处理器实现所述按照设定规则确定第一位置时,还实现:
    确定第一信号源的接入序号,所述接入序号表示智能交互平板当前已接入的信号源总数量;
    查找布局区的布局模板,所述布局模板基于所述接入序号确定,所述布局模板用于确定至少一个显示区的位置布局;
    确定第一位置,所述第一位置为所述布局模板中与所述结束位置最匹配的位置区域。
  40. 根据权利要求39所述的显示界面控制设备,其中,所述当前已接入的信号源总数量为至少两个;
    当所述至少一个程序被所述至少一个处理器执行,使得所述至少一个处理器实现所述控制所述显示屏在布局区增加第一显示区时,还实现:
    调整所述布局区中已有显示区的位置布局,调整后已有显示区的位置布局是根据所述布局模板确定的;
    当所述至少一个程序被所述至少一个处理器执行,使得所述至少一个处理器实现所述指示智能交互平板增加第一显示画面时,还实现:
    调整已有显示画面的位置布局,调整后已有显示画面的位置布局与调整后已有显示区的位置布局相同。
  41. 根据权利要求38所述的显示界面控制设备,其中,当所述至少一个程序被所述至少一个处理器执行,使得所述至少一个处理器实现所述按照设定规则确定第一位置时,实现:
    将以所述结束位置为中心点的设定区域位置作为第一位置;或,
    确定所述布局区中包含所述结束位置的最大矩形空白区,将所述最大矩形空白区作为所述第一位置。
  42. 根据权利要求31所述的显示界面控制设备,其中,当所述至少一个程序被所述至少一个处理器执行,使得所述至少一个处理器还实现如下操作:
    控制显示屏接收面积调整指令,所述面积调整指令作用于所述第一显示区;
    控制显示屏调整所述第一显示区的显示面积至第一目标面积,所述第一目标面积根据面积调整指令确定;
    指示智能交互平板调整第一显示画面的显示面积至第二目标面积,所述第二目标面积根据所述第一目标面积确定。
  43. 根据权利要求31所述的显示界面控制设备,其中,当所述至少一个程序被所述至少一个处理器执行,使得所述至少一个处理器还实现如下操作:
    控制显示屏接收结束指令,所述结束指令作用于所述第一显示区;
    控制显示屏关闭所述第一显示区;
    指示所述智能交互平板关闭所述第一显示画面。
  44. 根据权利要求31所述的显示界面控制设备,其中,所述第一显示区显示以下至少之一:所述第一信号源的身份标识,和,第一显示画面的至少一个内容要素。
  45. 根据权利要求31所述的显示界面控制设备,其中,所述第一信号源为投屏信号源和视频信号源中的至少之一。
  46. 一种包含计算机可执行指令的存储介质,所述计算机可执行指令在由计算机处理器执行时设置为执行如权利要求1-15中任一所述的显示界面控制方法。
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