WO2021036770A1 - 一种分屏处理方法及终端设备 - Google Patents

一种分屏处理方法及终端设备 Download PDF

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Publication number
WO2021036770A1
WO2021036770A1 PCT/CN2020/108123 CN2020108123W WO2021036770A1 WO 2021036770 A1 WO2021036770 A1 WO 2021036770A1 CN 2020108123 W CN2020108123 W CN 2020108123W WO 2021036770 A1 WO2021036770 A1 WO 2021036770A1
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WO
WIPO (PCT)
Prior art keywords
screen
terminal device
sub
application
user operation
Prior art date
Application number
PCT/CN2020/108123
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English (en)
French (fr)
Inventor
朱金鹏
任文杰
赵俊民
Original Assignee
华为技术有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Publication date
Application filed by 华为技术有限公司 filed Critical 华为技术有限公司
Priority to EP20859179.2A priority Critical patent/EP4012544A4/en
Priority to US17/638,397 priority patent/US20220300129A1/en
Publication of WO2021036770A1 publication Critical patent/WO2021036770A1/zh

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    • 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]
    • G06F3/0481Interaction techniques based on graphical user interfaces [GUI] based on specific properties of the displayed interaction object or a metaphor-based environment, e.g. interaction with desktop elements like windows or icons, or assisted by a cursor's changing behaviour or appearance
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
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    • 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
    • G06F3/0486Drag-and-drop
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
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    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/048Interaction techniques based on graphical user interfaces [GUI]
    • G06F3/0481Interaction techniques based on graphical user interfaces [GUI] based on specific properties of the displayed interaction object or a metaphor-based environment, e.g. interaction with desktop elements like windows or icons, or assisted by a cursor's changing behaviour or appearance
    • G06F3/04817Interaction techniques based on graphical user interfaces [GUI] based on specific properties of the displayed interaction object or a metaphor-based environment, e.g. interaction with desktop elements like windows or icons, or assisted by a cursor's changing behaviour or appearance using icons
    • 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]
    • G06F3/0481Interaction techniques based on graphical user interfaces [GUI] based on specific properties of the displayed interaction object or a metaphor-based environment, e.g. interaction with desktop elements like windows or icons, or assisted by a cursor's changing behaviour or appearance
    • G06F3/0482Interaction with lists of selectable items, e.g. menus
    • 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
    • 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
    • G06F3/04883Interaction 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 for inputting data by handwriting, e.g. gesture or text
    • 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
    • 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
    • G06F3/14Digital output to display device ; Cooperation and interconnection of the display device with other functional units
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/72Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
    • H04M1/724User interfaces specially adapted for cordless or mobile telephones
    • H04M1/72469User interfaces specially adapted for cordless or mobile telephones for operating the device by selecting functions from two or more displayed items, e.g. menus or icons
    • H04M1/72472User interfaces specially adapted for cordless or mobile telephones for operating the device by selecting functions from two or more displayed items, e.g. menus or icons wherein the items are sorted according to specific criteria, e.g. frequency of use
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F2203/00Indexing scheme relating to G06F3/00 - G06F3/048
    • G06F2203/048Indexing scheme relating to G06F3/048
    • G06F2203/04803Split screen, i.e. subdividing the display area or the window area into separate subareas
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M2250/00Details of telephonic subscriber devices
    • H04M2250/22Details of telephonic subscriber devices including a touch pad, a touch sensor or a touch detector

Definitions

  • the embodiments of the present invention relate to the field of terminal technology, and in particular, to a split-screen processing method and terminal equipment.
  • terminal devices can run multiple applications in the background at the same time, and users can switch between different applications as needed to enter the interface they want to operate.
  • a terminal device displays a first interface including a preset icon, and displays a first application list when an inputted first user operation for the preset icon is detected, and the input is detected for the first interface.
  • the screen of the terminal device is divided into two or more sub-screens, and the first interface and the first application are respectively displayed on the first sub-screen and the second sub-screen.
  • the preset icon is displayed in a floating manner, and the first sub-screen and the second sub-screen are the screens of the two or more sub-screens.
  • the user can quickly divide the display screen into multiple sub-screens by operating preset icons, and display different content on different sub-screens.
  • the user can split the screen by operating the applications in the application list, the user can split the screen of the application that needs to be displayed as needed. It does not require the user to split the screen and then open the application that needs to be used, which not only provides flexible application startup splitting Screen mode, and can improve user experience.
  • the preset icon is displayed in a floating manner, the display of the icon will not affect the user's use of the terminal device.
  • the first application list may include applications whose use times are greater than a first threshold, applications whose use time and the current time are less than a second threshold, applications whose correlation degree with the currently displayed application is greater than a third threshold, and There are one or more applications among the applications for which information is to be processed.
  • the displayed application list is a list of applications determined based on the user's application history, the existence of pending information, and the correlation with the current application. These applications are more likely to be used by the user, so that the user can quickly Find the application you want to use to split the screen, which can increase the split screen rate.
  • the first user operation may include a click operation or a double-click operation.
  • the second user operation may include a tap operation, a double tap operation, or a sliding operation.
  • the terminal device displays the application to be selected when it detects the inputted third user operation for the first application list, and when it detects the inputted fourth user operation for the second application, it adds the second application to The first application list obtains the second application list, and the input of the second user operation for the first application in the second application list is detected.
  • the application to be selected is an application other than the applications included in the first application list among the applications of the terminal device, and the second application is any application in the application to be selected. It can be seen that after the application list is determined according to the user's application history, the existence of pending information, and the degree of association with the current application, the user can also add the required application to the application list if the application that the user needs is not in the list. , In order to split the screen through the application, the application can be launched at the same time as the split screen, which not only improves the efficiency of application startup, but also improves the user experience.
  • the terminal device when the terminal device is provided with a folding screen, when the terminal device detects that the folding screen is expanded, it displays a first interface including a preset icon. It can be seen that the preset icon is displayed when the screen is expanded, so that when the user wants to split the screen after the screen is expanded, the preset icon can be used to quickly split the screen, thereby improving the efficiency of the split screen.
  • the terminal device hides the preset icon when it does not detect the inputted user operation on the preset icon within the preset time period. After the user's unused time reaches a certain period of time, the icon can be hidden so that the power consumption of the terminal device can be reduced.
  • the terminal device displays a preset icon when detecting the inputted fifth user operation. It can be seen that when the user wants to use, the icon can be displayed through operation, which can improve the flexibility of the icon.
  • the fifth user operation may include a sliding operation.
  • the terminal device when the terminal device detects the inputted sixth user operation on the first application in the first application list, it uses the first application to cover the currently displayed application. It can be seen that another application can be started without exiting the use of the current application.
  • the terminal device determines that the first sub-screen is in the drag state when the inputted seventh user operation on the first sub-screen is detected, and the input detected is used to drag the first sub-screen to the first sub-screen.
  • the display positions of the first sub-screen and the second sub-screen are exchanged. It can be seen that the switching between the sub-screens can be realized by dragging the sub-screens, and the flexibility of switching between the sub-screens can be improved.
  • the terminal device displays the split-screen thumbnail when it detects the inputted eighth user operation for the preset icon, and detects the input thumbnail corresponding to the first sub-screen in the split-screen thumbnail.
  • the seventh user operation determines that the first sub-screen is in the dragging state, and when the input used to drag the thumbnail corresponding to the first sub-screen to the thumbnail range corresponding to the second sub-screen is detected, the first sub-screen is exchanged.
  • the display position of the screen and the second sub-screen It can be seen that switching between sub-screens can be realized through thumbnails, which can reduce the user's operating range and improve user experience.
  • the terminal device detects the input of the ninth user operation on the first sub-screen, it is determined that the first sub-screen is in the drag state, and the input detected is used to drag the first sub-screen out of the screen. Turn off the first sub-screen during an active operation.
  • the sub-screen and the corresponding application can be closed directly by dragging the sub-screen, and the sub-screen and the corresponding application can be closed conveniently and quickly without affecting the use of other applications.
  • the terminal device displays the split-screen thumbnail when it detects the inputted tenth user operation for the preset icon, and detects the first sub-screen corresponding to the first sub-screen among the input split-screen thumbnails. Eleven users close the first sub-screen when operating. It can be seen that the sub-screen and the corresponding application can be closed through the thumbnail, and the sub-screen and the corresponding application can be closed conveniently and quickly without affecting the use of other applications.
  • the eleventh user operation may be a click operation, or may be an operation in which the touch time is greater than the fifth threshold.
  • the second aspect discloses a terminal device, including one or more processors, one or more memories, and a touch screen.
  • the one or more memories are coupled with one or more processors, and the one or more memories are used to store computer program codes.
  • the computer program codes include computer instructions.
  • the terminal device executes The split screen processing method disclosed in the first aspect or any one of the possible implementations of the first aspect.
  • a third aspect discloses a computer storage medium, including computer instructions, which when the computer instructions run on a terminal device, cause the terminal device to execute the split-screen processing method disclosed in the first aspect or any one of the possible implementations of the first aspect. .
  • Figure 1 is a schematic structural diagram of a terminal device disclosed in an embodiment of the present invention.
  • FIG. 3 is a schematic flowchart of a split-screen processing method disclosed in an embodiment of the present invention.
  • FIG. 4 is a schematic diagram of a terminal device displaying preset icons according to an embodiment of the present invention.
  • FIG. 6 is a schematic diagram of adjusting the shape of a preset icon disclosed in an embodiment of the present invention.
  • FIG. 7 is a schematic diagram of adjusting the size of a preset icon disclosed in an embodiment of the present invention.
  • FIG. 8 is a schematic diagram of a preset icon displayed by a user operation according to an embodiment of the present invention.
  • FIG. 9 is a schematic diagram of an application list displayed after a user clicks a preset icon according to an embodiment of the present invention.
  • FIG. 10 is another schematic diagram of displaying an application list after a user clicks a preset icon according to an embodiment of the present invention.
  • FIG. 11 is a schematic diagram of a user adding an application to a first application list by selecting a button or a selection area according to an embodiment of the present invention
  • FIG. 12 is a schematic diagram of a user operating an application in a first application list to split screens according to an embodiment of the present invention
  • FIG. 14 is another schematic diagram of a user operating an application in the first application list to split screens according to an embodiment of the present invention
  • 16 is a schematic diagram of a user operating a first application in a first application list to cover a first interface according to an embodiment of the present invention
  • FIG. 17 is another schematic diagram of a user operating an application in a first application list to split screens according to an embodiment of the present invention.
  • FIG. 18 is a schematic diagram of a sub-screen switching disclosed in an embodiment of the present invention.
  • 19 is a schematic diagram of another seed screen switching disclosed in an embodiment of the present invention.
  • 21 is a schematic diagram of a sub-screen closed according to an embodiment of the present invention.
  • the embodiment of the present invention discloses a split-screen processing method and terminal equipment, which are used to quickly divide a display screen into multiple sub-screens and display different contents on different sub-screens. Detailed descriptions are given below.
  • FIG. 1 is a schematic structural diagram of a terminal device disclosed in an embodiment of the present invention.
  • the embodiment will be described in detail by taking the terminal device 100 as an example.
  • the terminal device 100 may have more or fewer components than shown in the figure, may combine two or more components, or may have different component configurations.
  • the various components shown in the figure may be implemented in hardware, software, or a combination of hardware and software including one or more signal processing and/or application specific integrated circuits.
  • the sensor module 180 may include a pressure sensor 180A, a gyroscope sensor 180B, an air pressure sensor 180C, a magnetic sensor 180D, an acceleration sensor 180E, a distance sensor 180F, a proximity sensor 180G, a fingerprint sensor 180H, a temperature sensor 180J, a touch sensor 180K, and the environment Light sensor 180L, bone conduction sensor 180M, etc.
  • the structure illustrated in the embodiment of the present invention does not constitute a specific limitation on the terminal device 100.
  • the terminal device 100 may include more or fewer components than shown, or combine certain components, or split certain components, or arrange different components.
  • the illustrated components can be implemented in hardware, software, or a combination of software and hardware.
  • the processor 110 may include one or more processing units.
  • the processor 110 may include an application processor (AP), a modem processor, a graphics processing unit (GPU), and an image signal processor. (image signal processor, ISP), controller, memory, video codec, digital signal processor (digital signal processor, DSP), baseband processor, and/or neural-network processing unit (NPU) Wait.
  • AP application processor
  • modem processor modem processor
  • GPU graphics processing unit
  • image signal processor image signal processor
  • ISP image signal processor
  • controller memory
  • video codec digital signal processor
  • DSP digital signal processor
  • NPU neural-network processing unit
  • the different processing units may be independent devices or integrated in one or more processors.
  • the controller may be the nerve center and command center of the terminal device 100.
  • the controller can generate operation control signals according to the instruction operation code and timing signal to complete the control of fetching and executing instructions.
  • a memory may also be provided in the processor 110 to store instructions and data.
  • the memory in the processor 110 is a cache memory.
  • the memory can store instructions or data that the processor 110 has just used or used cyclically. If the processor 110 needs to use the instruction or data again, it can be directly called from the memory. Repeated accesses are avoided, the waiting time of the processor 110 is reduced, and the efficiency of the system is improved.
  • the I2C interface is a bidirectional synchronous serial bus, which includes a serial data line (SDA) and a serial clock line (SCL).
  • the processor 110 may include multiple sets of I2C buses.
  • the processor 110 may couple the touch sensor 180K, the charger, the flash, the camera 193, etc., respectively through different I2C bus interfaces.
  • the processor 110 may couple the touch sensor 180K through an I2C interface, so that the processor 110 and the touch sensor 180K communicate through the I2C bus interface to implement the touch function of the terminal device 100.
  • the I2S interface can be used for audio communication.
  • the processor 110 may include multiple sets of I2S buses.
  • the processor 110 may be coupled with the audio module 170 through an I2S bus to implement communication between the processor 110 and the audio module 170.
  • the audio module 170 may transmit audio signals to the wireless communication module 160 through an I2S interface, so as to realize the function of answering calls through a Bluetooth headset.
  • the PCM interface can also be used for audio communication to sample, quantize and encode analog signals.
  • the audio module 170 and the wireless communication module 160 may be coupled through a PCM bus interface.
  • the audio module 170 may also transmit audio signals to the wireless communication module 160 through the PCM interface, so as to realize the function of answering calls through the Bluetooth headset. Both I2S interface and PCM interface can be used for audio communication.
  • the UART interface is a universal serial data bus used for asynchronous communication.
  • the bus can be a two-way communication bus. It converts the data to be transmitted between serial communication and parallel communication.
  • the UART interface is generally used to connect the processor 110 and the wireless communication module 160.
  • the processor 110 communicates with the Bluetooth module in the wireless communication module 160 through the UART interface to realize the Bluetooth function.
  • the audio module 170 may transmit audio signals to the wireless communication module 160 through a UART interface, so as to realize the function of playing music through a Bluetooth headset.
  • the MIPI interface can be used to connect the processor 110 with the display screen 194, the camera 193 and other peripheral devices.
  • the MIPI interface includes a camera serial interface (camera serial interface, CSI), a display serial interface (display serial interface, DSI), and so on.
  • the processor 110 and the camera 193 communicate through a CSI interface to implement the shooting function of the terminal device 100.
  • the processor 110 and the display screen 194 communicate through a DSI interface to realize the display function of the terminal device 100.
  • the GPIO interface can be configured through software.
  • the GPIO interface can be configured as a control signal or as a data signal.
  • the GPIO interface can be used to connect the processor 110 with the camera 193, the display screen 194, the wireless communication module 160, the audio module 170, the sensor module 180, and so on.
  • the GPIO interface can also be configured as an I2C interface, I2S interface, UART interface, MIPI interface, etc.
  • the USB interface 130 is an interface that complies with the USB standard specification, and specifically may be a Mini USB interface, a Micro USB interface, a USB Type C interface, and so on.
  • the USB interface 130 can be used to connect a charger to charge the terminal device 100, and can also be used to transfer data between the terminal device 100 and peripheral devices. It can also be used to connect earphones and play audio through earphones.
  • the interface can also be used to connect to other terminal devices, for example, augmented reality (AR) devices.
  • AR augmented reality
  • the interface connection relationship between the modules illustrated in the embodiment of the present invention is merely a schematic description, and does not constitute a structural limitation of the terminal device 100.
  • the terminal device 100 may also adopt different interface connection modes in the foregoing embodiments, or a combination of multiple interface connection modes.
  • the charging management module 140 is used to receive charging input from the charger.
  • the charger can be a wireless charger or a wired charger.
  • the charging management module 140 may receive the charging input of the wired charger through the USB interface 130.
  • the charging management module 140 may receive the wireless charging input through the wireless charging coil of the terminal device 100. While the charging management module 140 charges the battery 142, it can also supply power to the terminal device through the power management module 141.
  • the power management module 141 is used to connect the battery 142, the charging management module 140 and the processor 110.
  • the power management module 141 receives input from the battery 142 and/or the charge management module 140, and supplies power to the processor 110, the internal memory 121, the external memory, the display screen 194, the camera 193, and the wireless communication module 160.
  • the power management module 141 can also be used to monitor parameters such as battery capacity, battery cycle times, and battery health status (leakage, impedance).
  • the power management module 141 may also be provided in the processor 110.
  • the power management module 141 and the charging management module 140 may also be provided in the same device.
  • the antenna 1 and the antenna 2 are used to transmit and receive electromagnetic wave signals.
  • Each antenna in the terminal device 100 can be used to cover a single or multiple communication frequency bands. Different antennas can also be reused to improve antenna utilization.
  • Antenna 1 can be multiplexed as a diversity antenna of a wireless local area network.
  • the antenna can be used in combination with a tuning switch.
  • the modem processor may include a modulator and a demodulator.
  • the modulator is used to modulate the low frequency baseband signal to be sent into a medium and high frequency signal.
  • the demodulator is used to demodulate the received electromagnetic wave signal into a low-frequency baseband signal. Then the demodulator transmits the demodulated low-frequency baseband signal to the baseband processor for processing. After the low-frequency baseband signal is processed by the baseband processor, it is passed to the application processor.
  • the application processor outputs a sound signal through an audio device (not limited to the speaker 170A, the receiver 170B, etc.), or displays an image or video through the display screen 194.
  • the modem processor may be an independent device. In other embodiments, the modem processor may be independent of the processor 110 and be provided in the same device as the mobile communication module 150 or other functional modules.
  • the wireless communication module 160 can provide applications on the terminal device 100, including wireless local area networks (WLAN) (such as wireless fidelity (Wi-Fi) networks), Bluetooth (BT), and global navigation satellites.
  • WLAN wireless local area networks
  • BT Bluetooth
  • GNSS global navigation satellite system
  • FM frequency modulation
  • NFC near field communication technology
  • infrared technology infrared, IR
  • the wireless communication module 160 may be one or more devices integrating at least one communication processing module.
  • the wireless communication module 160 receives electromagnetic waves via the antenna 2, frequency modulates and filters the electromagnetic wave signals, and sends the processed signals to the processor 110.
  • the wireless communication module 160 may also receive the signal to be sent from the processor 110, perform frequency modulation, amplify it, and convert it into electromagnetic waves to radiate through the antenna 2.
  • the antenna 1 of the terminal device 100 is coupled with the mobile communication module 150, and the antenna 2 is coupled with the wireless communication module 160, so that the terminal device 100 can communicate with the network and other devices through wireless communication technology.
  • the wireless communication technology may include global system for mobile communications (GSM), general packet radio service (GPRS), code division multiple access (CDMA), broadband Code division multiple access (wideband code division multiple access, WCDMA), time-division code division multiple access (TD-SCDMA), long term evolution (LTE), BT, GNSS, WLAN, NFC , FM, and/or IR technology, etc.
  • the GNSS may include global positioning system (GPS), global navigation satellite system (GLONASS), Beidou navigation satellite system (BDS), quasi-zenith satellite system (quasi -zenith satellite system, QZSS) and/or satellite-based augmentation systems (SBAS).
  • GPS global positioning system
  • GLONASS global navigation satellite system
  • BDS Beidou navigation satellite system
  • QZSS quasi-zenith satellite system
  • SBAS satellite-based augmentation systems
  • the terminal device 100 implements a display function through a GPU, a display screen 194, and an application processor.
  • the GPU is an image processing microprocessor, which is connected to the display screen 194 and the application processor.
  • the GPU is used to perform mathematical and geometric calculations for graphics rendering.
  • the processor 110 may include one or more GPUs, which execute program instructions to generate or change display information.
  • the display screen 194 is used to display images, videos, and the like.
  • the display screen 194 includes a display panel.
  • the display panel can adopt liquid crystal display (LCD), organic light-emitting diode (OLED), active matrix organic light-emitting diode or active-matrix organic light-emitting diode (active-matrix organic light-emitting diode).
  • LCD liquid crystal display
  • OLED organic light-emitting diode
  • active-matrix organic light-emitting diode active-matrix organic light-emitting diode
  • AMOLED flexible light-emitting diode (FLED), Miniled, MicroLed, Micro-oLed, quantum dot light-emitting diode (QLED), etc.
  • the terminal device 100 may include one or N display screens 194, and N is a positive integer greater than one.
  • the ISP is used to process the data fed back by the camera 193. For example, when taking a picture, the shutter is opened, the light is transmitted to the photosensitive element of the camera through the lens, the light signal is converted into an electrical signal, and the photosensitive element of the camera transmits the electrical signal to the ISP for processing and is converted into an image visible to the naked eye.
  • ISP can also optimize the image noise, brightness, and skin color. ISP can also optimize the exposure, color temperature and other parameters of the shooting scene.
  • the ISP may be provided in the camera 193.
  • the camera 193 is used to capture still images or videos.
  • the object generates an optical image through the lens and is projected to the photosensitive element.
  • the photosensitive element may be a charge coupled device (CCD) or a complementary metal-oxide-semiconductor (CMOS) phototransistor.
  • CMOS complementary metal-oxide-semiconductor
  • the photosensitive element converts the optical signal into an electrical signal, and then transfers the electrical signal to the ISP to convert it into a digital image signal.
  • ISP outputs digital image signals to DSP for processing.
  • DSP converts digital image signals into standard RGB, YUV and other formats of image signals.
  • the terminal device 100 may include one or N cameras 193, and N is a positive integer greater than one.
  • Digital signal processors are used to process digital signals. In addition to digital image signals, they can also process other digital signals. For example, when the terminal device 100 selects the frequency point, the digital signal processor is used to perform Fourier transform on the energy of the frequency point.
  • Video codecs are used to compress or decompress digital video.
  • the terminal device 100 may support one or more video codecs. In this way, the terminal device 100 can play or record videos in multiple encoding formats, such as: moving picture experts group (MPEG) 1, MPEG2, MPEG3, MPEG4, and so on.
  • MPEG moving picture experts group
  • MPEG2 MPEG2, MPEG3, MPEG4, and so on.
  • the internal memory 121 may be used to store computer executable program code, where the executable program code includes instructions.
  • the processor 110 executes various functional applications and data processing of the terminal device 100 by running instructions stored in the internal memory 121.
  • the internal memory 121 may include a storage program area and a storage data area.
  • the storage program area can store an operating system, at least one application program (such as a sound playback function, an image playback function, etc.) required by at least one function.
  • the data storage area can store data (such as audio data, phone book, etc.) created during the use of the terminal device 100.
  • the internal memory 121 may include a high-speed random access memory, and may also include a non-volatile memory, such as at least one magnetic disk storage device, a flash memory device, a universal flash storage (UFS), and the like.
  • UFS universal flash storage
  • the speaker 170A also called “speaker” is used to convert audio electrical signals into sound signals.
  • the terminal device 100 can listen to music through the speaker 170A, or listen to a hands-free call.
  • the microphone 170C also called “microphone”, “microphone”, is used to convert sound signals into electrical signals.
  • the user can make a sound by approaching the microphone 170C through the human mouth, and input the sound signal into the microphone 170C.
  • the terminal device 100 may be provided with at least one microphone 170C.
  • the terminal device 100 may be provided with two microphones 170C, which can implement noise reduction functions in addition to collecting sound signals.
  • the terminal device 100 may also be provided with three, four or more microphones 170C to collect sound signals, reduce noise, identify sound sources, and realize directional recording functions.
  • the pressure sensor 180A is used to sense the pressure signal and can convert the pressure signal into an electrical signal.
  • the pressure sensor 180A may be provided on the display screen 194.
  • the pressure sensor 180A can be used to capture the pressure value generated when the user's finger part touches the display screen, and transmit the pressure value to the processor, so that the processor can recognize which finger part the user inputs through User operation.
  • the capacitive pressure sensor may include at least two parallel plates with conductive material.
  • the terminal device 100 determines the strength of the pressure according to the change in capacitance.
  • the terminal device 100 detects the intensity of the touch operation according to the pressure sensor 180A.
  • the terminal device 100 may also calculate the touched position based on the detection signal of the pressure sensor 180A. In some embodiments, touch operations that act on the same touch position but have different touch operation strengths may correspond to different operation instructions.
  • the pressure sensor 180A may transmit the detected capacitance value to the processor, so that the processor recognizes which finger part (knuckle or finger pad, etc.) the user inputs the user operation through.
  • the pressure sensor 180A may also calculate the number of touch points based on the detected signal, and transmit the calculated value to the processor, so that the processor recognizes the user inputting the user through a single finger or multiple fingers. operating.
  • the gyro sensor 180B may be used to determine the movement posture of the terminal device 100.
  • the angular velocity of the terminal device 100 around three axes ie, x, y, and z axes
  • the gyro sensor 180B can be used for image stabilization.
  • the gyro sensor 180B detects the shake angle of the terminal device 100, calculates the distance that the lens module needs to compensate according to the angle, and allows the lens to counteract the shake of the terminal device 100 through reverse movement to achieve anti-shake.
  • the gyro sensor 180B can also be used for navigation and somatosensory game scenes.
  • the air pressure sensor 180C is used to measure air pressure.
  • the terminal device 100 calculates the altitude based on the air pressure value measured by the air pressure sensor 180C to assist positioning and navigation.
  • the magnetic sensor 180D includes a Hall sensor.
  • the terminal device 100 may use the magnetic sensor 180D to detect the opening and closing of the flip holster.
  • the terminal device 100 can detect the opening and closing of the flip according to the magnetic sensor 180D.
  • features such as automatic unlocking of the flip cover are set.
  • the acceleration sensor 180E can detect the magnitude of the acceleration of the terminal device 100 in various directions (generally three axes). When the terminal device 100 is stationary, the magnitude and direction of gravity can be detected. It can also be used to identify the posture of the terminal device, applied to horizontal and vertical screen switching, pedometer and other applications. In some optional embodiments of the present invention, the acceleration sensor 180E can be used to capture the acceleration value generated when the user's finger part touches the display screen, and transmit the acceleration value to the processor, so that the processor recognizes which finger part the user inputs through User operation.
  • the terminal device 100 can measure the distance by infrared or laser. In some embodiments, when shooting a scene, the terminal device 100 may use the distance sensor 180F to measure the distance to achieve fast focusing.
  • the proximity light sensor 180G may include, for example, a light emitting diode (LED) and a light detector such as a photodiode.
  • the light emitting diode may be an infrared light emitting diode.
  • the terminal device 100 emits infrared light to the outside through the light emitting diode.
  • the terminal device 100 uses a photodiode to detect infrared reflected light from nearby objects. When sufficient reflected light is detected, it can be determined that there is an object near the terminal device 100. When insufficient reflected light is detected, the terminal device 100 can determine that there is no object near the terminal device 100.
  • the terminal device 100 can use the proximity light sensor 180G to detect that the user holds the terminal device 100 close to the ear to talk, so as to automatically turn off the display screen to save power.
  • the proximity light sensor 180G can also be used in leather case mode, and the pocket mode will automatically unlock and lock the screen.
  • the ambient light sensor 180L is used to sense the brightness of the ambient light.
  • the terminal device 100 can adaptively adjust the brightness of the display screen 194 according to the perceived brightness of the ambient light.
  • the ambient light sensor 180L can also be used to automatically adjust the white balance when taking pictures.
  • the ambient light sensor 180L can also cooperate with the proximity light sensor 180G to detect whether the terminal device 100 is in a pocket to prevent accidental touch.
  • the fingerprint sensor 180H is used to collect fingerprints.
  • the terminal device 100 can use the collected fingerprint characteristics to realize fingerprint unlocking, access application locks, fingerprint photographs, fingerprint answering calls, and so on.
  • the temperature sensor 180J is used to detect temperature.
  • the terminal device 100 uses the temperature detected by the temperature sensor 180J to execute a temperature processing strategy. For example, when the temperature reported by the temperature sensor 180J exceeds a threshold value, the terminal device 100 executes to reduce the performance of the processor located near the temperature sensor 180J, so as to reduce power consumption and implement thermal protection.
  • the terminal device 100 when the temperature is lower than another threshold, the terminal device 100 heats the battery 142 to avoid abnormal shutdown of the terminal device 100 due to low temperature.
  • the terminal device 100 boosts the output voltage of the battery 142 to avoid abnormal shutdown caused by low temperature.
  • Touch sensor 180K also called “touch panel”.
  • the touch sensor 180K may be disposed on the display screen 194, and the touch screen is composed of the touch sensor 180K and the display screen 194, which is also called a “touch screen”.
  • the touch sensor 180K is used to detect touch operations acting on or near it.
  • the touch sensor can pass the detected touch operation to the application processor to determine the type of touch event.
  • the visual output related to the touch operation can be provided through the display screen 194.
  • the touch sensor 180K may also be disposed on the surface of the terminal device 100, which is different from the position of the display screen 194.
  • the bone conduction sensor 180M can acquire vibration signals.
  • the bone conduction sensor 180M can obtain the vibration signal of the vibrating bone mass of the human voice.
  • the bone conduction sensor 180M can also contact the human pulse and receive the blood pressure pulse signal.
  • the bone conduction sensor 180M may also be provided in the earphone, combined with the bone conduction earphone.
  • the audio module 170 can parse the voice signal based on the vibration signal of the vibrating bone block of the voice obtained by the bone conduction sensor 180M, and realize the voice function.
  • the application processor can analyze the heart rate information based on the blood pressure beating signal obtained by the bone conduction sensor 180M, and realize the heart rate detection function.
  • the button 190 includes a power-on button, a volume button, and so on.
  • the button 190 may be a mechanical button. It can also be a touch button.
  • the terminal device 100 may receive key input, and generate key signal input related to user settings and function control of the terminal device 100.
  • the SIM card interface 195 is used to connect to the SIM card.
  • the SIM card can be inserted into the SIM card interface 195 or pulled out from the SIM card interface 195 to achieve contact and separation with the terminal device 100.
  • the terminal device 100 may support 1 or N SIM card interfaces, and N is a positive integer greater than 1.
  • the SIM card interface 195 can support Nano SIM cards, Micro SIM cards, SIM cards, etc.
  • the same SIM card interface 195 can insert multiple cards at the same time. The types of the multiple cards can be the same or different.
  • the SIM card interface 195 can also be compatible with different types of SIM cards.
  • the SIM card interface 195 may also be compatible with external memory cards.
  • the terminal device 100 interacts with the network through the SIM card to realize functions such as call and data communication.
  • the terminal device 100 adopts an eSIM, that is, an embedded SIM card.
  • the eSIM card can be embedded in the terminal device 100 and cannot be separated from the terminal device 100.
  • the terminal device 100 is equipped with a display screen, which can be used to display the interface content currently output by the terminal device system.
  • the interface content can include the interface of the running application and the system-level menu, etc. It can be composed of the following interface elements: input interface elements, such as buttons, text input boxes, scroll bars , Menu, etc.; and output interface elements, such as window, label, etc.
  • the display screen of the terminal device 100 is equipped with a touch panel, that is, the display screen is a touch screen, which can be used to receive a user's touch operation.
  • the touch operation refers to a user's body part or a stylus directly touching the display screen. Operation.
  • the touch screen may also be used to receive a user's hovering touch operation.
  • the hovering touch operation refers to an operation in which the user's hand floats above the display screen and does not touch the display screen.
  • FIG. 2 is a software structure block diagram of a terminal device disclosed in an embodiment of the present invention.
  • the layered architecture divides the software into several layers, and each layer has a clear role and division of labor. Communication between layers through software interface.
  • the Android system is divided into four layers, from top to bottom, the application layer, the application framework layer, the Android runtime and system library, and the kernel layer.
  • the application layer can include a series of application packages.
  • the application package may include applications (also called applications) such as camera, gallery, calendar, call, map, navigation, WLAN, Bluetooth, music, video, short message, etc.
  • applications also called applications
  • the window manager is used to manage window programs.
  • the window manager can obtain the size of the display, determine whether there is a status bar, lock the screen, take a screenshot, etc.
  • the content provider is used to store and retrieve data and make these data accessible to applications.
  • the data may include videos, images, audios, phone calls made and received, browsing history and bookmarks, phone book, etc.
  • the view system includes visual controls, such as controls that display text, controls that display pictures, and so on.
  • the view system can be used to build applications.
  • the display interface can be composed of one or more views.
  • a display interface that includes a short message notification icon may include a view that displays text and a view that displays pictures.
  • the resource manager provides various resources for the application, such as localized strings, icons, pictures, layout files, video files, and so on.
  • the notification manager enables the application to display notification information in the status bar, which can be used to convey notification-type messages, and it can disappear automatically after a short stay without user interaction.
  • the notification manager is used to notify download completion, message reminders, and so on.
  • the notification manager can also be a notification that appears in the status bar at the top of the system in the form of a chart or a scroll bar text, such as a notification of an application running in the background, or a notification that appears on the screen in the form of a dialogue interface.
  • prompt text information in the status bar sound a prompt tone, terminal equipment vibration, flashing indicator light, etc.
  • the application layer and the application framework layer run in a virtual machine.
  • the virtual machine executes the java files of the application layer and the application framework layer as binary files.
  • the virtual machine is used to perform functions such as object life cycle management, stack management, thread management, security and exception management, and garbage collection.
  • the system library can include multiple functional modules. For example: surface manager (surface manager), media library (Media Libraries), three-dimensional graphics processing library (for example: OpenGL ES), 2D graphics engine (for example: SGL), etc.
  • the 3D graphics processing library is used to realize 3D graphics drawing, image rendering, synthesis, and layer processing.
  • the 2D graphics engine is a drawing engine for 2D drawing.
  • the kernel layer is the layer between hardware and software.
  • the kernel layer contains at least display driver, camera driver, audio driver, and sensor driver.
  • FIG. 3 is a schematic flowchart of a split-screen processing method disclosed in an embodiment of the present invention.
  • the split-screen processing method is applied to terminal equipment.
  • the terminal device may be a terminal device provided with a folding screen, a terminal device provided with a flat screen, or a terminal device provided with a touch screen in other ways, which is not limited here.
  • the split-screen processing method may include the following steps.
  • the terminal device can display the first interface including the preset icons, and the preset icons are displayed in a floating manner, so that the content displayed on the current display screen may not be affected.
  • the first interface is the interface currently displayed on the terminal device, which may be the main interface or the interface of any application.
  • FIG. 4 is a schematic diagram of a terminal device displaying a preset icon according to an embodiment of the present invention.
  • the preset icon may be a circular icon displayed in the lower right corner of the screen.
  • FIG. 5 is a schematic diagram of adjusting the display position of a preset icon according to an embodiment of the present invention.
  • the dotted line represents the preset icon before adjustment
  • the solid line represents the preset icon after adjustment.
  • FIG. 6 is a schematic diagram of adjusting the shape of a preset icon according to an embodiment of the present invention. As shown in Figure 6, the user can operate the preset icon first, such as sliding the current preset icon to the right.
  • FIG. 7 is a schematic diagram of adjusting the size of a preset icon according to an embodiment of the present invention. As shown in Figure 7, the dotted line represents the preset icon before adjustment, and the solid line represents the preset icon after adjustment.
  • the preset icon can be displayed when the screen is unlocked or displayed when the screen is on.
  • the terminal device when the terminal device is provided with a folding screen, when the terminal device detects that the folding screen is expanded, it displays the first interface including the preset icon, that is, the preset icon may be displayed when the screen is expanded.
  • the terminal device displays a preset icon when detecting the inputted fifth user operation.
  • the fifth user operation may be a sliding operation, or other touch-type operation, may also be a voice operation, or a gesture operation. Please refer to FIG. 8.
  • FIG. 8 is a schematic diagram of a user operation to display a preset icon according to an embodiment of the present invention.
  • the terminal device when the terminal device detects the user's sliding operation from the lower right corner to the upper left corner, it can display a preset icon. It may also be that the terminal device displays the preset icon when it detects the user's sliding operation from the lower left corner to the upper right corner, or it may display the preset icon when the terminal device detects other operations of the user.
  • the terminal device may display the first application list when detecting the inputted first user operation on the preset icon.
  • the first application list may include applications whose use times are greater than the first threshold, applications whose use time and the current time are less than the second threshold, applications whose correlation with the currently displayed application is greater than the third threshold, and applications with pending information.
  • Applications that are used more than the first threshold are frequently used applications by users, which may include only common split-screen applications, non-split-screen common applications, and may also include split-screen common applications and non-split-screen common applications.
  • the time difference between the used time and the current time is less than the second threshold, that is, the user recently used apps. It can include only split-screen recently used apps, or only non-split screen recently used apps, and can also include split screen recently used apps and non-split screen recent apps. Use the app.
  • Applications with pending information are applications with unprocessed new messages.
  • the first user operation may be a tap operation, a double-tap operation, other touch operations, a voice operation, or a gesture operation.
  • FIG. 9 is a schematic diagram of displaying an application list after a user clicks a preset icon according to an embodiment of the present invention.
  • the terminal device detects that the user clicks on the preset icon, it can display the icon of the application in the application list around the preset icon, that is, a triangle.
  • a triangle represents an application icon.
  • the figure shows three application icons. icon.
  • FIG. 10 is another schematic diagram of displaying an application list after a user clicks a preset icon according to an embodiment of the present invention. As shown in FIG.
  • the first application list may include a selection button or selection area, and when the terminal device detects the user's operation on the selection button or the selection area, it may display the application to be selected. When the terminal device detects the user's operation on the application in the displayed application to be selected, it can add the application to the first application list to obtain the second application list.
  • FIG. 11 is a schematic diagram of a user adding an application to the first application list by selecting a button or a selection area according to an embodiment of the present invention. As shown in Figure 11, when the terminal device detects the user's click operation on the selection button or selection area, it displays the application to be selected. When the terminal device detects the user's click operation on an application in the application to be selected, it adds the The first application list obtains the second application list.
  • the screen of the terminal device can be divided into two or more sub-screens, and in the first application list
  • the sub-screen and the second sub-screen respectively display the first interface and the first application.
  • the first sub-screen and the second sub-screen are the screens of the two or more sub-screens.
  • the second user operation may be a tap operation, a double-tap operation, a sliding operation, other touch operations, a voice operation, or a gesture operation.
  • FIG. 12 is a schematic diagram of a user operating an application in a first application list to split screens according to an embodiment of the present invention.
  • the terminal device when the terminal device detects the user's long-press operation of sliding the first application in the first application list to the left, the terminal device can divide the display screen into two screens on the left and right, and the first interface can be displayed on the left sub-screen. Screen, the first application can be displayed on the sub-screen on the right, and vice versa.
  • FIG. 12 is a schematic diagram of a user operating an application in a first application list to split screens according to an embodiment of the present invention.
  • the terminal device when the terminal device detects the user's long-press operation of sliding the first application in the first application list to the left, the terminal device can divide the display screen into two screens on the left and right, and the first interface can be displayed on the left sub-screen. Screen, the first application can be displayed on the sub-screen on the right, and vice versa.
  • FIG. 12 is a schematic diagram of a user
  • FIG. 13 is another schematic diagram of a user operating an application in the first application list to split screens according to an embodiment of the present invention.
  • the terminal device when the terminal device detects the user's long-press operation of sliding up the first application in the first application list, the terminal device can divide the display into two sub-screens, the upper and lower sub-screens, and the first interface can be displayed on the upper sub-screen. , The first application can be displayed on the sub-screen below, and vice versa.
  • FIG. 14 is another schematic diagram of a user operating an application in the first application list to split screens according to an embodiment of the present invention.
  • the terminal device when the terminal device detects the user's long-press operation of sliding the first application in the first application list to the upper left, the terminal device can divide the display screen into the 1/4 screen on the left and the entire screen on the right.
  • the interface can be displayed on the left 1/4 sub-screen, the first application can be displayed on the right sub-screen, and vice versa.
  • the terminal device when it detects the inputted sixth user operation for the first application in the first application list, it uses the first application to cover the currently displayed application.
  • the sixth user operation may be a tap operation, a double-tap operation, a sliding operation, other touch operations, a voice operation, or a gesture operation.
  • the second user operation is different from the sixth user operation.
  • FIG. 16 is a schematic diagram of a user operating a first application in a first application list to cover a first interface according to an embodiment of the present invention.
  • FIG. 17 is another schematic diagram of a user operating an application in the first application list to split screens according to an embodiment of the present invention.
  • the terminal device detects the user's long-press operation of sliding the first application in the first application list to the upper left, the terminal device can again divide the left sub-screen into two sub-screens, the upper and lower sub-screens, the left sub-screen was originally displayed
  • the application can be displayed on the sub-screen on the upper left, and the first application can be displayed on the sub-screen on the lower left, and vice versa.
  • the terminal device may determine that the first sub-screen is in the drag state when detecting the input of the seventh user operation on the first sub-screen, and the input detected is used to drag the first sub-screen to the second sub-screen.
  • the terminal device may determine that the first sub-screen is in the drag state when detecting the input of the seventh user operation on the first sub-screen, and the input detected is used to drag the first sub-screen to the second sub-screen.
  • the threshold value such as 60%, 70%, etc.
  • the seventh user operation can be an operation with a touch time greater than the fourth threshold, or a double-click operation with a touch time greater than the fourth threshold, other touch operations, voice operations, or gesture operations.
  • FIG. 18 is a schematic diagram of a sub-screen switching disclosed in an embodiment of the present invention. As shown in Figure 18, when the terminal device detects the user's long-press operation on the upper-right sub-screen, the upper-right sub-screen appears in a floating and shaking state, indicating that the upper-right sub-screen has entered the dragging state, and it is detected that the user is targeting the upper-right sub-screen in the dragging state.
  • FIG. 19 is a schematic diagram of another seed screen switching disclosed in an embodiment of the present invention.
  • the terminal device detects the user's long-press operation on the upper-right sub-screen
  • the upper-right sub-screen presents a specific color, indicating that the upper-right sub-screen has entered the drag state, and the direction of the upper-right sub-screen in the drag state is detected.
  • the upper-right sub-screen enters the range of the lower-right sub-screen, it indicates that the lower-right sub-screen is the screen that needs to be swapped, and the lower-right sub-screen also presents the specific color.
  • the terminal device detects that the user has let go, and the upper-right sub-screen is swapped. The display position of the corner sub-screen and the lower-right corner sub-screen.
  • the terminal device displays the split-screen thumbnail when it detects the inputted eighth user operation for the preset icon, and detects the first sub-screen corresponding to the first sub-screen among the input split-screen thumbnails. 7.
  • the user determines that the first sub-screen is in the drag state during the operation, and when the input used to drag the thumbnail corresponding to the first sub-screen to the thumbnail range corresponding to the second sub-screen is detected, the first sub-screen and the second sub-screen are exchanged.
  • the display position of the two sub-screens Please refer to FIG. 20, which is a schematic diagram of another sub-screen switching disclosed in an embodiment of the present invention. As shown in Figure 20, the terminal device can display split-screen thumbnails when the user double-clicks on the preset icon.
  • the upper-right sub-screen When it detects the long-press operation on the thumbnail corresponding to the upper-right sub-screen, the upper-right sub-screen appears in a floating and shaking state. , Indicating that the upper-right sub-screen enters the dragging state, and the user's downward drag operation for the thumbnail corresponding to the upper-right sub-screen is detected, and when the upper-right sub-screen enters the range of the lower-right sub-screen, it indicates that the lower-right sub-screen needs to be swapped When the terminal device detects that the user let go, the display position of the upper-right sub-screen and the lower-right sub-screen are exchanged.
  • any sub-screen of the current split screen can be closed through a user operation.
  • the terminal device determines that the first sub-screen is in a drag state when detecting the input of the ninth user operation for the first sub-screen, and the input is used to drag the first sub-screen out of the screen.
  • the first sub-screen is closed during the operation. Please refer to FIG. 21.
  • FIG. 21 is a schematic diagram of closing a sub-screen according to an embodiment of the present invention.
  • the terminal device when the terminal device detects the user's long-press operation on the upper-right sub-screen, it can determine that the upper-right sub-screen enters the drag state, and detects that the user is dragging the upper-right sub-screen out of the screen in the drag state. During operation, close the upper-right sub-screen, close the application displayed on the upper-right sub-screen, and at the same time enlarge the lower-right sub-screen to occupy the upper-right sub-screen.
  • the terminal device displays the split screen thumbnail when it detects the inputted tenth user operation for the preset icon, and the terminal device detects the input thumbnail corresponding to the first sub-screen in the split screen thumbnail
  • the eleventh user operation closes the first sub-screen.
  • the eleventh user operation may be a click operation, or an operation whose touch time is greater than the fifth threshold, or other touch-type operations, may also be a voice operation, or may be a gesture operation.
  • FIG. 22 is a schematic diagram of another seed screen closed according to an embodiment of the present invention.

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Abstract

一种分屏处理方法及终端设备,包括:终端设备显示包括预设图标的第一界面(301),预设图标以悬浮方式显示;检测到输入的针对预设图标的第一用户操作时,显示第一应用列表(302);检测到输入的针对第一应用列表中第一应用的第二用户操作时,将终端设备的屏幕划分为两个或两个以上子屏幕;在第一子屏幕与第二子屏幕分别显示第一界面和第一应用(303),第一子屏幕和第二子屏幕为两个或两个以上子屏幕中的屏幕。该方法可以将显示屏快速地划分为多个子屏幕,并在不同子屏幕显示不同的内容。

Description

一种分屏处理方法及终端设备
本申请要求于2019年08月26日提交中国专利局、申请号为201910792222.4、申请名称为“一种分屏处理方法及终端设备”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本发明实施例涉及终端技术领域,尤其涉及一种分屏处理方法及终端设备。
背景技术
目前,终端设备可以同时在后台运行多个应用(application),用户可以根据需要在不同应用间进行切换,进入想要操作的界面。
为了追求更好的使用体验,用户希望可以将终端设备的显示屏划分为多个子屏幕,不同子屏幕可以呈现不同应用的内容,并且不同子屏幕的内容互不影响。例如,用户在观看视频时,想要同时处理其它事情,如编辑短信息、处理即时通讯信息等,并且视频不被中断。
基于目前用户对在同一显示屏划分为多子屏幕的迫切需求,有必要提出相应的技术方案,方便、快捷地在终端设备显示屏上同时呈现多个子屏幕。
发明内容
本发明实施例公开了一种分屏处理方法及终端设备,用于将显示屏快速地划分为多个子屏幕,并在不同子屏幕显示不同的内容。
第一方面公开一种分屏处理方法,终端设备显示包括预设图标的第一界面,检测到输入的针对预设图标的第一用户操作时显示第一应用列表,检测到输入的针对第一应用列表中第一应用的第二用户操作时将终端设备的屏幕划分为两个或两个以上子屏幕,在第一子屏幕与第二子屏幕分别显示第一界面和第一应用。其中,预设图标以悬浮方式显示,第一子屏幕和第二子屏幕为这两个或两个以上子屏幕中的屏幕。可见,用户可以通过操作预设图标将显示屏快速地划分为多个子屏幕,并在不同子屏幕显示不同的内容。此外,由于用户可以通过操作应用列表中的应用进行分屏,用户可以根据需要对需要显示的应用进行分屏,不需要用户分屏之后再打开需要使用的应用,不仅提供了灵活地应用启动分屏方式,而且可以提高用户体验。此外,由于预设图标以悬浮方式显示,该图标的显示并不会影响用户对终端设备的使用。
作为一种可能的实施方式,第一应用列表可以包括使用次数大于第一阈值的应用、使用时间与当前时间的时间差小于第二阈值的应用、与当前显示应用关联度大于第三阈值的应用以及存在待处理信息的应用中的一个或多个应用。可见,显示的应用列表是根据用户使用应用的历史记录、存在待处理信息以及与当前应用的关联度确定的应用的列表,这些应用是用户需要使用的应用的概率较高,使用户可以快速地找到要使用的应用进行分屏,从而可以提高分屏速率。
作为一种可能的实施方式,第一用户操作可以包括点击操作,或者双击操作。
作为一种可能的实施方式,第二用户操作可以包括点击操作,双击操作,或者滑动操作。
作为一种可能的实施方式,终端设备检测到输入的针对第一应用列表的第三用户操作时显示待选择应用,检测到输入的针对第二应用的第四用户操作时将第二应用添加至第一应用列表得到第二应用列表,检测到输入的针对第二应用列表中第一应用的第二用户操作。其中,待选择应用为终端设备的应用中除第一应用列表包括的应用之外的应用,第二应用为待选择应用中的任一应用。可见,根据用户使用应用的历史记录、存在待处理信息以及与当前应用的关联度确定应用的列表之后,在用户需要的应用不在该列表的情况下,用户还可以将需要的应用添加至应用列表,以便通过该应用进行分屏,在分屏的同时可以启动该应用,不仅可以提高应用启动效率,而且还可以提高用户体验。
作为一种可能的实施方式,第三用户操作和第四用户操作可以包括点击操作,或双击操作。
作为一种可能的实施方式,在终端设备设置有折叠屏的情况下,终端设备检测到折叠屏展开时,显示包括预设图标的第一界面。可见,在屏幕展开时就显示预设图标,以便用户在屏幕展开后要分屏的情况下,可以使用预设图标快速分屏,从而可以提高分屏效率。
作为一种可能的实施方式,终端设备在预设时间段内未检测到输入的针对预设图标的用户操作时,隐藏预设图标。在用户未使用的时间达到一定时间之后,可以将图标隐藏起来,以便可以降低终端设备的功耗。
作为一种可能的实施方式,终端设备检测到输入的第五用户操作时,显示预设图标。可见,用户要使用时,可以通过操作使图标进行显示,可以提高图标的灵活性。
作为一种可能的实施方式,第五用户操作可以包括滑动操作。
作为一种可能的实施方式,终端设备检测到输入的针对第一应用列表中第一应用的第六用户操作时,使用第一应用覆盖当前显示应用。可见,可以在不退出当前应用使用的情况下,可以启动另一应用。
作为一种可能的实施方式,第六用户操作可以包括点击操作,双击操作,或者滑动操作。
作为一种可能的实施方式,终端设备检测到输入的针对第一子屏幕的第七用户操作时确定第一子屏幕处于拖动状态,检测到输入的用于将第一子屏幕拖动到第二子屏幕范围内的操作时,交换所述第一子屏幕与第二子屏幕的显示位置。可见,可以通过拖动子屏幕实现子屏幕之间的切换,可以提高子屏幕之间切换的灵活性。
作为一种可能的实施方式,终端设备检测到输入的针对预设图标的第八用户操作时显示分屏缩略图,检测到输入的针对分屏缩略图中所述第一子屏幕对应的缩略图的第七用户操作时确定第一子屏幕处于拖动状态,检测到输入的用于将第一子屏幕对应的缩略图拖动到第二子屏幕对应的缩略图范围内时,交换第一子屏幕与第二子屏幕的显示位置。可见,可以通过缩略图实现子屏幕之间的切换,可以减少用户的操作范围,提高用户体验。
作为一种可能的实施方式,第七用户操作可以包括触摸时间大于第四阈值的操作,或双击且触摸时间大于第四阈值的操作。
作为一种可能的实施方式,终端设备检测到输入的针对第一子屏幕的第九用户操作时确定第一子屏幕处于拖动状态,检测到输入的用于将第一子屏幕向屏幕外拖动的操作时关闭第一子屏幕。可以直接通过拖动子屏幕关闭该子屏幕以及对应应用,可以方便快速地关闭子屏幕及对应应用,同时不会影响其他应用的使用。
作为一种可能的实施方式,终端设备检测到输入的针对预设图标的第十用户操作时显示分屏缩略图,检测到输入的针对分屏缩略图中第一子屏幕对应的缩略图的第十一用户操作时关闭第一子屏幕。可见,可以通过缩略图实现子屏幕以及对应应用的关闭,可以方便快速地关闭子屏幕及对应应用,同时不会影响其他应用的使用。
作为一种可能的实施方式,第十一用户操作可以为点击操作,也可以为触摸时间大于第五阈值的操作。
第二方面公开一种终端设备,包括一个或多个处理器和一个或多个存储器和触控屏。该一个或多个存储器与一个或多个处理器耦合,一个或多个存储器用于存储计算机程序代码,计算机程序代码包括计算机指令,当一个或多个处理器执行计算机指令时,使得终端设备执行上述第一方面或第一方面任一种可能的实施方式所公开的分屏处理方法。
第三方面公开一种计算机存储介质,包括计算机指令,当计算机指令在终端设备上运行时,使得终端设备执行上述第一方面或第一方面任一种可能的实施方式所公开的分屏处理方法。
第四方面公开一种计算机程序产品,当计算机程序产品在计算机上运行时,使得计算机上述第一方面或第一方面任一种可能的实施方式所公开的分屏处理方法。
附图说明
图1是本发明实施例公开的一种终端设备的结构示意图;
图2是本发明实施例公开的一种终端设备的软件结构框图;
图3是本发明实施例公开的一种分屏处理方法的流程示意图;
图4是本发明实施例公开的一种终端设备显示预设图标的示意图;
图5是本发明实施例公开的一种调整预设图标显示位置的示意图;
图6是本发明实施例公开的一种调整预设图标形状的示意图;
图7是本发明实施例公开的一种调整预设图标大小的示意图;
图8是本发明实施例公开的一种用户操作显示预设图标的示意图;
图9是本发明实施例公开的一种用户点击预设图标后显示应用列表的示意图;
图10是本发明实施例公开的另一种用户点击预设图标后显示应用列表的示意图;
图11是本发明实施例公开的一种用户通过选择按钮或选择区域往第一应用列表中添加应用的示意图;
图12是本发明实施例公开的一种用户操作第一应用列表中应用进行分屏的示意图;
图13是本发明实施例公开的另一种用户操作第一应用列表中应用进行分屏的示意图;
图14是本发明实施例公开的又一种用户操作第一应用列表中应用进行分屏的示意图;
图15是本发明实施例公开的又一种用户操作第一应用列表中应用进行分屏的示意图;
图16是本发明实施例公开的一种用户操作第一应用列表中第一应用覆盖第一界面的示意图;
图17是本发明实施例公开的又一种用户操作第一应用列表中应用进行分屏的示意图;
图18是本发明实施例公开的一种子屏幕切换的示意图;
图19是本发明实施例公开的另一种子屏幕切换的示意图;
图20是本发明实施例公开的又一种子屏幕切换的示意图;
图21是本发明实施例公开的一种子屏幕关闭的示意图;
图22是本发明实施例公开的另一种子屏幕关闭的示意图。
具体实施方式
本发明实施例公开了一种分屏处理方法及终端设备,用于将显示屏快速地划分为多个子屏幕,并在不同子屏幕显示不同的内容。以下分别进行详细说明。
请参阅图1,图1是本发明实施例公开的一种终端设备的结构示意图。下面以终端设备100为例对实施例进行具体说明。应该理解的是,终端设备100可以具有比图中所示的更多的或者更少的部件,可以组合两个或多个的部件,或者可以具有不同的部件配置。图中所示出的各种部件可以在包括一个或多个信号处理和/或专用集成电路在内的硬件、软件、或硬件和软件的组合中实现。
如图1所示,终端设备100可以包括处理器110,外部存储器接口120,内部存储器121,通用串行总线(universal serial bus,USB)接口130,充电管理模块140,电源管理模块141,电池142,天线1,天线2,移动通信模块150,无线通信模块160,音频模块170,扬声器170A,受话器170B,麦克风170C,耳机接口170D,传感器模块180,按键190,马达191,指示器192,摄像头193,显示屏194,以及用户标识模块(subscriber identification module,SIM)卡接口195等。其中,传感器模块180可以包括压力传感器180A,陀螺仪传感器180B,气压传感器180C,磁传感器180D,加速度传感器180E,距离传感器180F,接近光传感器180G,指纹传感器180H,温度传感器180J,触摸传感器180K,环境光传感器180L,骨传导传感器180M等。
可以理解的是,本发明实施例示意的结构并不构成对终端设备100的具体限定。在本发明另一些实施例中,终端设备100可以包括比图示更多或更少的部件,或者组合某些部件,或者拆分某些部件,或者不同的部件布置。图示的部件可以以硬件,软件或软件和硬件的组合实现。
处理器110可以包括一个或多个处理单元,例如:处理器110可以包括应用处理器(application processor,AP),调制解调处理器,图形处理器(graphics processing unit,GPU),图像信号处理器(image signal processor,ISP),控制器,存储器,视频编解码器,数字信号处理器(digital signal processor,DSP),基带处理器,和/或神经网络处理器(neural-network processing unit,NPU)等。其中,不同的处理单元可以是独立的器件,也可以集成在一个或多个处理器中。
其中,控制器可以是终端设备100的神经中枢和指挥中心。控制器可以根据指令操作 码和时序信号,产生操作控制信号,完成取指令和执行指令的控制。
处理器110中还可以设置存储器,用于存储指令和数据。在一些实施例中,处理器110中的存储器为高速缓冲存储器。该存储器可以保存处理器110刚用过或循环使用的指令或数据。如果处理器110需要再次使用该指令或数据,可从所述存储器中直接调用。避免了重复存取,减少了处理器110的等待时间,因而提高了***的效率。
在一些实施例中,处理器110可以包括一个或多个接口。接口可以包括集成电路(inter-integrated circuit,I2C)接口,集成电路内置音频(inter-integrated circuit sound,I2S)接口,脉冲编码调制(pulse code modulation,PCM)接口,通用异步收发传输器(universal asynchronous receiver/transmitter,UART)接口,移动产业处理器接口(mobile industry processor interface,MIPI),通用输入输出(general-purpose input/output,GPIO)接口,用户标识模块(subscriber identity module,SIM)接口,和/或通用串行总线(universal serial bus,USB)接口等。
I2C接口是一种双向同步串行总线,包括一根串行数据线(serial data line,SDA)和一根串行时钟线(derail clock line,SCL)。在一些实施例中,处理器110可以包含多组I2C总线。处理器110可以通过不同的I2C总线接口分别耦合触摸传感器180K,充电器,闪光灯,摄像头193等。例如:处理器110可以通过I2C接口耦合触摸传感器180K,使处理器110与触摸传感器180K通过I2C总线接口通信,实现终端设备100的触摸功能。
I2S接口可以用于音频通信。在一些实施例中,处理器110可以包含多组I2S总线。处理器110可以通过I2S总线与音频模块170耦合,实现处理器110与音频模块170之间的通信。在一些实施例中,音频模块170可以通过I2S接口向无线通信模块160传递音频信号,实现通过蓝牙耳机接听电话的功能。
PCM接口也可以用于音频通信,将模拟信号抽样,量化和编码。在一些实施例中,音频模块170与无线通信模块160可以通过PCM总线接口耦合。在一些实施例中,音频模块170也可以通过PCM接口向无线通信模块160传递音频信号,实现通过蓝牙耳机接听电话的功能。I2S接口和PCM接口都可以用于音频通信。
UART接口是一种通用串行数据总线,用于异步通信。该总线可以为双向通信总线。它将要传输的数据在串行通信与并行通信之间转换。在一些实施例中,UART接口通常被用于连接处理器110与无线通信模块160。例如:处理器110通过UART接口与无线通信模块160中的蓝牙模块通信,实现蓝牙功能。在一些实施例中,音频模块170可以通过UART接口向无线通信模块160传递音频信号,实现通过蓝牙耳机播放音乐的功能。
MIPI接口可以被用于连接处理器110与显示屏194,摄像头193等***器件。MIPI接口包括摄像头串行接口(camera serial interface,CSI),显示屏串行接口(display serial interface,DSI)等。在一些实施例中,处理器110和摄像头193通过CSI接口通信,实现终端设备100的拍摄功能。处理器110和显示屏194通过DSI接口通信,实现终端设备100的显示功能。
GPIO接口可以通过软件配置。GPIO接口可以被配置为控制信号,也可被配置为数据信号。在一些实施例中,GPIO接口可以用于连接处理器110与摄像头193,显示屏194,无线通信模块160,音频模块170,传感器模块180等。GPIO接口还可以被配置为I2C接口,I2S接口,UART接口,MIPI接口等。
USB接口130是符合USB标准规范的接口,具体可以是Mini USB接口,Micro USB接口,USB Type C接口等。USB接口130可以用于连接充电器为终端设备100充电,也可以用于终端设备100与***设备之间传输数据。也可以用于连接耳机,通过耳机播放音频。该接口还可以用于连接其他终端设备,例如,增强现实(augmented reality,AR)设备等。
可以理解的是,本发明实施例示意的各模块间的接口连接关系,只是示意性说明,并不构成对终端设备100的结构限定。在本发明另一些实施例中,终端设备100也可以采用上述实施例中不同的接口连接方式,或多种接口连接方式的组合。
充电管理模块140用于从充电器接收充电输入。其中,充电器可以是无线充电器,也可以是有线充电器。在一些有线充电的实施例中,充电管理模块140可以通过USB接口130接收有线充电器的充电输入。在一些无线充电的实施例中,充电管理模块140可以通过终端设备100的无线充电线圈接收无线充电输入。充电管理模块140为电池142充电的同时,还可以通过电源管理模块141为终端设备供电。
电源管理模块141用于连接电池142,充电管理模块140与处理器110。电源管理模块141接收电池142和/或充电管理模块140的输入,为处理器110,内部存储器121,外部存储器,显示屏194,摄像头193,和无线通信模块160等供电。电源管理模块141还可以用于监测电池容量,电池循环次数,电池健康状态(漏电,阻抗)等参数。在其他一些实施例中,电源管理模块141也可以设置于处理器110中。在另一些实施例中,电源管理模块141和充电管理模块140也可以设置于同一个器件中。
终端设备100的无线通信功能可以通过天线1,天线2,移动通信模块150,无线通信模块160,调制解调处理器以及基带处理器等实现。
天线1和天线2用于发射和接收电磁波信号。终端设备100中的每个天线可用于覆盖单个或多个通信频带。不同的天线还可以复用,以提高天线的利用率。例如:可以将天线1复用为无线局域网的分集天线。在另外一些实施例中,天线可以和调谐开关结合使用。
移动通信模块150可以提供应用在终端设备100上的包括2G/3G/4G/5G等无线通信的解决方案。移动通信模块150可以包括至少一个滤波器,开关,功率放大器,低噪声放大器(low noise amplifier,LNA)等。移动通信模块150可以由天线1接收电磁波,并对接收的电磁波进行滤波,放大等处理,传送至调制解调处理器进行解调。移动通信模块150还可以对经调制解调处理器调制后的信号放大,经天线1转为电磁波辐射出去。在一些实施例中,移动通信模块150的至少部分功能模块可以被设置于处理器110中。在一些实施例中,移动通信模块150的至少部分功能模块可以与处理器110的至少部分模块被设置在同一个器件中。
调制解调处理器可以包括调制器和解调器。其中,调制器用于将待发送的低频基带信号调制成中高频信号。解调器用于将接收的电磁波信号解调为低频基带信号。随后解调器将解调得到的低频基带信号传送至基带处理器处理。低频基带信号经基带处理器处理后,被传递给应用处理器。应用处理器通过音频设备(不限于扬声器170A,受话器170B等)输出声音信号,或通过显示屏194显示图像或视频。在一些实施例中,调制解调处理器可以是独立的器件。在另一些实施例中,调制解调处理器可以独立于处理器110,与移动通信模块150或其他功能模块设置在同一个器件中。
无线通信模块160可以提供应用在终端设备100上的包括无线局域网(wireless local area networks,WLAN)(如无线保真(wireless fidelity,Wi-Fi)网络),蓝牙(bluetooth,BT),全球导航卫星***(global navigation satellite system,GNSS),调频(frequency modulation,FM),近距离无线通信技术(near field communication,NFC),红外技术(infrared,IR)等无线通信的解决方案。无线通信模块160可以是集成至少一个通信处理模块的一个或多个器件。无线通信模块160经由天线2接收电磁波,将电磁波信号调频以及滤波处理,将处理后的信号发送到处理器110。无线通信模块160还可以从处理器110接收待发送的信号,对其进行调频,放大,经天线2转为电磁波辐射出去。
在一些实施例中,终端设备100的天线1和移动通信模块150耦合,天线2和无线通信模块160耦合,使得终端设备100可以通过无线通信技术与网络以及其他设备通信。所述无线通信技术可以包括全球移动通讯***(global system for mobile communications,GSM),通用分组无线服务(general packet radio service,GPRS),码分多址接入(code division multiple access,CDMA),宽带码分多址(wideband code division multiple access,WCDMA),时分码分多址(time-division code division multiple access,TD-SCDMA),长期演进(long term evolution,LTE),BT,GNSS,WLAN,NFC,FM,和/或IR技术等。所述GNSS可以包括全球卫星定位***(global positioning system,GPS),全球导航卫星***(global navigation satellite system,GLONASS),北斗卫星导航***(beidou navigation satellite system,BDS),准天顶卫星***(quasi-zenith satellite system,QZSS)和/或星基增强***(satellite based augmentation systems,SBAS)。
终端设备100通过GPU,显示屏194,以及应用处理器等实现显示功能。GPU为图像处理的微处理器,连接显示屏194和应用处理器。GPU用于执行数学和几何计算,用于图形渲染。处理器110可包括一个或多个GPU,其执行程序指令以生成或改变显示信息。
显示屏194用于显示图像,视频等。显示屏194包括显示面板。显示面板可以采用液晶显示屏(liquid crystal display,LCD),有机发光二极管(organic light-emitting diode,OLED),有源矩阵有机发光二极体或主动矩阵有机发光二极体(active-matrix organic light emitting diode的,AMOLED),柔性发光二极管(flex light-emitting diode,FLED),Miniled,MicroLed,Micro-oLed,量子点发光二极管(quantum dot light emitting diodes,QLED)等。在一些实施例中,终端设备100可以包括1个或N个显示屏194,N为大于1的正整数。
终端设备100可以通过ISP,摄像头193,视频编解码器,GPU,显示屏194以及应用处理器等实现拍摄功能。
ISP用于处理摄像头193反馈的数据。例如,拍照时,打开快门,光线通过镜头被传递到摄像头感光元件上,光信号转换为电信号,摄像头感光元件将所述电信号传递给ISP处理,转化为肉眼可见的图像。ISP还可以对图像的噪点,亮度,肤色进行算法优化。ISP还可以对拍摄场景的曝光,色温等参数优化。在一些实施例中,ISP可以设置在摄像头193中。
摄像头193用于捕获静态图像或视频。物体通过镜头生成光学图像投射到感光元件。感光元件可以是电荷耦合器件(charge coupled device,CCD)或互补金属氧化物半导体(complementary metal-oxide-semiconductor,CMOS)光电晶体管。感光元件把光信号转换成 电信号,之后将电信号传递给ISP转换成数字图像信号。ISP将数字图像信号输出到DSP加工处理。DSP将数字图像信号转换成标准的RGB,YUV等格式的图像信号。在一些实施例中,终端设备100可以包括1个或N个摄像头193,N为大于1的正整数。
数字信号处理器用于处理数字信号,除了可以处理数字图像信号,还可以处理其他数字信号。例如,当终端设备100在频点选择时,数字信号处理器用于对频点能量进行傅里叶变换等。
视频编解码器用于对数字视频压缩或解压缩。终端设备100可以支持一种或多种视频编解码器。这样,终端设备100可以播放或录制多种编码格式的视频,例如:动态图像专家组(moving picture experts group,MPEG)1,MPEG2,MPEG3,MPEG4等。
NPU为神经网络(neural-network,NN)计算处理器,通过借鉴生物神经网络结构,例如借鉴人脑神经元之间传递模式,对输入信息快速处理,还可以不断的自学习。通过NPU可以实现终端设备100的智能认知等应用,例如:图像识别,人脸识别,语音识别,文本理解等。
外部存储器接口120可以用于连接外部存储卡,例如Micro SD卡,实现扩展终端设备100的存储能力。外部存储卡通过外部存储器接口120与处理器110通信,实现数据存储功能。例如将音乐,视频等文件保存在外部存储卡中。
内部存储器121可以用于存储计算机可执行程序代码,所述可执行程序代码包括指令。处理器110通过运行存储在内部存储器121的指令,从而执行终端设备100的各种功能应用以及数据处理。内部存储器121可以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***,至少一个功能所需的应用程序(比如声音播放功能,图像播放功能等)等。存储数据区可存储终端设备100使用过程中所创建的数据(比如音频数据,电话本等)等。此外,内部存储器121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,通用闪存存储器(universal flash storage,UFS)等。
终端设备100可以通过音频模块170,扬声器170A,受话器170B,麦克风170C,耳机接口170D,以及应用处理器等实现音频功能。例如音乐播放,录音等。
音频模块170用于将数字音频信息转换成模拟音频信号输出,也用于将模拟音频输入转换为数字音频信号。音频模块170还可以用于对音频信号编码和解码。在一些实施例中,音频模块170可以设置于处理器110中,或将音频模块170的部分功能模块设置于处理器110中。
扬声器170A,也称“喇叭”,用于将音频电信号转换为声音信号。终端设备100可以通过扬声器170A收听音乐,或收听免提通话。
受话器170B,也称“听筒”,用于将音频电信号转换成声音信号。当终端设备100接听电话或语音信息时,可以通过将受话器170B靠近人耳接听语音。
麦克风170C,也称“话筒”,“传声器”,用于将声音信号转换为电信号。当拨打电话或发送语音信息时,用户可以通过人嘴靠近麦克风170C发声,将声音信号输入到麦克风170C。终端设备100可以设置至少一个麦克风170C。在另一些实施例中,终端设备100可以设置两个麦克风170C,除了采集声音信号,还可以实现降噪功能。在另一些实施例中,终端设备100还可以设置三个,四个或更多麦克风170C,实现采集声音信号,降噪,还可以识别 声音来源,实现定向录音功能等。
耳机接口170D用于连接有线耳机。耳机接口170D可以是USB接口130,也可以是3.5mm的开放移动终端设备平台(open mobile terminal platform,OMTP)标准接口,美国蜂窝电信工业协会(cellular telecommunications industry association of the USA,CTIA)标准接口。
压力传感器180A用于感受压力信号,可以将压力信号转换成电信号。在一些实施例中,压力传感器180A可以设置于显示屏194。在本发明一些可选的实施例中,压力传感器180A可用于捕获用户手指部位接触显示屏时生成的压力值,并将该压力值传输给处理器,以使得处理器识别用户通过哪个手指部位输入用户操作。
压力传感器180A的种类很多,如电阻式压力传感器,电感式压力传感器,电容式压力传感器等。电容式压力传感器可以是包括至少两个具有导电材料的平行板。当有力作用于压力传感器180A,电极之间的电容改变。终端设备100根据电容的变化确定压力的强度。当有触摸操作作用于显示屏194,终端设备100根据压力传感器180A检测所述触摸操作强度。终端设备100也可以根据压力传感器180A的检测信号计算触摸的位置。在一些实施例中,作用于相同触摸位置,但不同触摸操作强度的触摸操作,可以对应不同的操作指令。例如:当有触摸操作强度小于第一压力阈值的触摸操作作用于短消息应用图标时,执行查看短消息的指令。当有触摸操作强度大于或等于第一压力阈值的触摸操作作用于短消息应用图标时,执行新建短消息的指令。在本发明一些可选的实施例中,压力传感器180A可将检测到的电容值传输给处理器,以使得处理器识别用户通过哪个手指部位(指关节或指肚等)输入用户操作。在本发明一些可选的实施例中,压力传感器180A还可根据检测到的信号计算触摸点的数量,并将计算值传输给处理器,以使得处理器识别用户通过单指或多指输入用户操作。
陀螺仪传感器180B可以用于确定终端设备100的运动姿态。在一些实施例中,可以通过陀螺仪传感器180B确定终端设备100围绕三个轴(即,x,y和z轴)的角速度。陀螺仪传感器180B可以用于拍摄防抖。示例性的,当按下快门,陀螺仪传感器180B检测终端设备100抖动的角度,根据角度计算出镜头模组需要补偿的距离,让镜头通过反向运动抵消终端设备100的抖动,实现防抖。陀螺仪传感器180B还可以用于导航,体感游戏场景。
气压传感器180C用于测量气压。在一些实施例中,终端设备100通过气压传感器180C测得的气压值计算海拔高度,辅助定位和导航。
磁传感器180D包括霍尔传感器。终端设备100可以利用磁传感器180D检测翻盖皮套的开合。在一些实施例中,当终端设备100是翻盖机时,终端设备100可以根据磁传感器180D检测翻盖的开合。进而根据检测到的皮套的开合状态或翻盖的开合状态,设置翻盖自动解锁等特性。
加速度传感器180E可检测终端设备100在各个方向上(一般为三轴)加速度的大小。当终端设备100静止时可检测出重力的大小及方向。还可以用于识别终端设备姿态,应用于横竖屏切换,计步器等应用。在本发明一些可选的实施例中,加速度传感器180E可用于捕获用户手指部位接触显示屏时生成的加速度值,并将该加速度值传输给处理器,以使得处理器识别用户通过哪个手指部位输入用户操作。
距离传感器180F,用于测量距离。终端设备100可以通过红外或激光测量距离。在一 些实施例中,拍摄场景,终端设备100可以利用距离传感器180F测距以实现快速对焦。
接近光传感器180G可以包括例如发光二极管(LED)和光检测器,例如光电二极管。发光二极管可以是红外发光二极管。终端设备100通过发光二极管向外发射红外光。终端设备100使用光电二极管检测来自附近物体的红外反射光。当检测到充分的反射光时,可以确定终端设备100附近有物体。当检测到不充分的反射光时,终端设备100可以确定终端设备100附近没有物体。终端设备100可以利用接近光传感器180G检测用户手持终端设备100贴近耳朵通话,以便自动熄灭显示屏达到省电的目的。接近光传感器180G也可用于皮套模式,口袋模式自动解锁与锁屏。
环境光传感器180L用于感知环境光亮度。终端设备100可以根据感知的环境光亮度自适应调节显示屏194亮度。环境光传感器180L也可用于拍照时自动调节白平衡。环境光传感器180L还可以与接近光传感器180G配合,检测终端设备100是否在口袋里,以防误触。
指纹传感器180H用于采集指纹。终端设备100可以利用采集的指纹特性实现指纹解锁,访问应用锁,指纹拍照,指纹接听来电等。
温度传感器180J用于检测温度。在一些实施例中,终端设备100利用温度传感器180J检测的温度,执行温度处理策略。例如,当温度传感器180J上报的温度超过阈值,终端设备100执行降低位于温度传感器180J附近的处理器的性能,以便降低功耗实施热保护。在另一些实施例中,当温度低于另一阈值时,终端设备100对电池142加热,以避免低温导致终端设备100异常关机。在其他一些实施例中,当温度低于又一阈值时,终端设备100对电池142的输出电压执行升压,以避免低温导致的异常关机。
触摸传感器180K,也称“触控面板”。触摸传感器180K可以设置于显示屏194,由触摸传感器180K与显示屏194组成触摸屏,也称“触控屏”。触摸传感器180K用于检测作用于其上或附近的触摸操作。触摸传感器可以将检测到的触摸操作传递给应用处理器,以确定触摸事件类型。可以通过显示屏194提供与触摸操作相关的视觉输出。在另一些实施例中,触摸传感器180K也可以设置于终端设备100的表面,与显示屏194所处的位置不同。
骨传导传感器180M可以获取振动信号。在一些实施例中,骨传导传感器180M可以获取人体声部振动骨块的振动信号。骨传导传感器180M也可以接触人体脉搏,接收血压跳动信号。在一些实施例中,骨传导传感器180M也可以设置于耳机中,结合成骨传导耳机。音频模块170可以基于所述骨传导传感器180M获取的声部振动骨块的振动信号,解析出语音信号,实现语音功能。应用处理器可以基于所述骨传导传感器180M获取的血压跳动信号解析心率信息,实现心率检测功能。
按键190包括开机键,音量键等。按键190可以是机械按键。也可以是触摸式按键。终端设备100可以接收按键输入,产生与终端设备100的用户设置以及功能控制有关的键信号输入。
马达191可以产生振动提示。马达191可以用于来电振动提示,也可以用于触摸振动反馈。例如,作用于不同应用(例如拍照,音频播放等)的触摸操作,可以对应不同的振动反馈效果。作用于显示屏194不同区域的触摸操作,马达191也可对应不同的振动反馈效果。不同的应用场景(例如:时间提醒,接收信息,闹钟,游戏等)也可以对应不同的振动反馈效果。触摸振动反馈效果还可以支持自定义。
指示器192可以是指示灯,可以用于指示充电状态,电量变化,也可以用于指示消息,未接来电,通知等。
SIM卡接口195用于连接SIM卡。SIM卡可以通过***SIM卡接口195,或从SIM卡接口195拔出,实现和终端设备100的接触和分离。终端设备100可以支持1个或N个SIM卡接口,N为大于1的正整数。SIM卡接口195可以支持Nano SIM卡,Micro SIM卡,SIM卡等。同一个SIM卡接口195可以同时***多张卡。所述多张卡的类型可以相同,也可以不同。SIM卡接口195也可以兼容不同类型的SIM卡。SIM卡接口195也可以兼容外部存储卡。终端设备100通过SIM卡和网络交互,实现通话以及数据通信等功能。在一些实施例中,终端设备100采用eSIM,即:嵌入式SIM卡。eSIM卡可以嵌在终端设备100中,不能和终端设备100分离。
下面介绍本发明涉及的终端设备100的一种实现方式。本发明中,终端设备100可以为手机、平板电脑、个人数字助理(personal digital assistant,PDA)、可穿戴设备等便携式终端设备。便携式终端设备的示例性实施例包括但不限于搭载iOS、android、microsoft或者其他操作***的便携式终端设备。上述便携式终端设备也可以是其他便携式终端设备,诸如具有触敏表面(例如触控面板)的膝上型计算机(laptop)等。还应当理解的是,在本发明其他一些实施例中,终端设备100也可以不是便携式终端设备,而是具有触敏表面(例如触控面板)的台式计算机。
本发明中,终端设备100配置有显示屏,可用于显示终端设备***当前输出的界面内容。该界面内容可包括正在运行的应用程序的界面以及***级别菜单等,具体可由下述界面元素组成:输入型界面元素,例如按键(button),文本输入框(text),滑动条(scroll Bar),菜单(menu)等等;以及输出型界面元素,例如视窗(window),标签(label)等等。
本发明中,终端设备100的显示屏配置有触控面板,即该显示屏为触摸屏,可用于接收用户的触摸触控操作,触摸触控操作是指用户身体部位或触控笔直接接触显示屏的操作。在一些可选的实施例中,该触摸屏还可用于接收用户的悬浮触控操作,悬浮触控操作是指用户手部悬浮于显示屏上方并不接触显示屏的操作。
请参阅图2,图2是本发明实施例公开的一种终端设备的软件结构框图。分层架构将软件分成若干个层,每一层都有清晰的角色和分工。层与层之间通过软件接口通信。在一些实施例中,将Android***分为四层,从上至下分别为应用程序层,应用程序框架层,安卓运行时(Android runtime)和***库,以及内核层。应用程序层可以包括一系列应用程序包。
如图2所示,应用程序包可以包括相机,图库,日历,通话,地图,导航,WLAN,蓝牙,音乐,视频,短信息等应用程序(也可以称为应用)。
应用程序框架层为应用程序层的应用程序提供应用编程接口(application programming interface,API)和编程框架。应用程序框架层包括一些预先定义的函数。
如图2所示,应用程序框架层可以包括窗口管理器,内容提供器,视图***,电话管理器,资源管理器,通知管理器等。
窗口管理器用于管理窗口程序。窗口管理器可以获取显示屏大小,判断是否有状态栏, 锁定屏幕,截取屏幕等。
内容提供器用来存放和获取数据,并使这些数据可以被应用程序访问。所述数据可以包括视频,图像,音频,拨打和接听的电话,浏览历史和书签,电话簿等。
视图***包括可视控件,例如显示文字的控件,显示图片的控件等。视图***可用于构建应用程序。显示界面可以由一个或多个视图组成的。例如,包括短信通知图标的显示界面,可以包括显示文字的视图以及显示图片的视图。
电话管理器用于提供终端设备100的通信功能。例如通话状态的管理(包括接通,挂断等)。
资源管理器为应用程序提供各种资源,比如本地化字符串,图标,图片,布局文件,视频文件等等。
通知管理器使应用程序可以在状态栏中显示通知信息,可以用于传达告知类型的消息,可以短暂停留后自动消失,无需用户交互。比如通知管理器被用于告知下载完成,消息提醒等。通知管理器还可以是以图表或者滚动条文本形式出现在***顶部状态栏的通知,例如后台运行的应用程序的通知,还可以是以对话界面形式出现在屏幕上的通知。例如在状态栏提示文本信息,发出提示音,终端设备振动,指示灯闪烁等。
Android Runtime包括核心库和虚拟机。Android runtime负责安卓***的调度和管理。
核心库包含两部分:一部分是java语言需要调用的功能函数,另一部分是安卓的核心库。
应用程序层和应用程序框架层运行在虚拟机中。虚拟机将应用程序层和应用程序框架层的java文件执行为二进制文件。虚拟机用于执行对象生命周期的管理,堆栈管理,线程管理,安全和异常的管理,以及垃圾回收等功能。
***库可以包括多个功能模块。例如:表面管理器(surface manager),媒体库(Media Libraries),三维图形处理库(例如:OpenGL ES),2D图形引擎(例如:SGL)等。
表面管理器用于对显示子***进行管理,并且为多个应用程序提供了2D和3D图层的融合。
媒体库支持多种常用的音频,视频格式回放和录制,以及静态图像文件等。媒体库可以支持多种音视频编码格式,例如:MPEG4,H.264,MP3,AAC,AMR,JPG,PNG等。
三维图形处理库用于实现三维图形绘图,图像渲染,合成,和图层处理等。
2D图形引擎是2D绘图的绘图引擎。
内核层是硬件和软件之间的层。内核层至少包含显示驱动,摄像头驱动,音频驱动,传感器驱动。
请参阅图3,图3是本发明实施例公开的一种分屏处理方法的流程示意图。其中,该分屏处理方法应用于终端设备。该终端设备可以为设置有折叠屏的终端设备,也可以为设置有一个平面屏的终端设备,还可以为以其他方式设置有触控屏的终端设备,在此不作限定。如图3所示,该分屏处理方法可以包括以下步骤。
301、显示包括预设图标的第一界面。
终端设备可以显示包括预设图标的第一界面,预设图标以悬浮方式显示,从而可以不 影响当前显示屏显示的内容。其中,第一界面是终端设备当前显示的界面,可以是主界面,也可以是任一应用的界面。
请参阅图4,图4是本发明实施例公开的一种终端设备显示预设图标的示意图。如图4所示,预设图标可以为显示在屏幕右下角的圆形图标。请参阅图5,图5是本发明实施例公开的一种调整预设图标显示位置的示意图。如图5所示,虚线表示调整前的预设图标,实线表示调整后的预设图标。请参阅图6,图6是本发明实施例公开的一种调整预设图标形状的示意图。如图6所示,用户可以先对预设图标进行操作,如向右滑动当前预设图标,终端设备检测到该操作之后,可以显示可供选择的预设图标,当终端设备检测到用户针对某个预设图标的点击操作时,使用用户点击的预设图标替换当前预设图标。请参阅图7,图7是本发明实施例公开的一种调整预设图标大小的示意图。如图7所示,虚线表示调整前的预设图标,实线表示调整后的预设图标。
预设图标可以是在屏幕解锁时就显示的,也可以是在屏幕点亮时就显示的。在一些实施例中,在终端设备设置有折叠屏的情况下,终端设备检测到折叠屏展开时,显示包括预设图标的第一界面,即预设图标可以是在屏幕展开时就显示的。在一些实施例中,终端设备检测到输入的第五用户操作时,显示预设图标。第五用户操作可以为滑动操作,也可以为其它触摸式操作,还可以为语音操作,还可以为手势操作。请参阅图8,图8是本发明实施例公开的一种用户操作显示预设图标的示意图。如图8所示,终端设备检测到用户从右下角向左上方的滑动操作时,可以显示预设图标。也可以是终端设备检测到用户从左下角向右上方的滑动操作时,显示预设图标,还可以是终端设备检测到用户的其它操作时显示预设图标。
终端设备在预设时间段内未检测到输入的针对预设图标的用户操作时,可以隐藏预设图标。即在显示一段时间,且在这段时间内未检测到用户对该预设图标的操作的情况下,表明用户暂时不会使用该预设图标,可以自动隐藏该预设图标,以便可以节约终端设备的功耗。用户也可以通过操作关闭预设图标,例如,终端设备检测到用户针对预设图标向右下角的滑动操作时,可以关闭预设图标。
302、检测到输入的针对预设图标的第一用户操作时,显示第一应用列表。
终端设备在显示包括预设图标的第一界面之后,检测到输入的针对预设图标的第一用户操作时,可以显示第一应用列表。第一应用列表可以包括使用次数大于第一阈值的应用、使用时间与当前时间的时间差小于第二阈值的应用、与当前显示应用关联度大于第三阈值的应用以及存在待处理信息的应用中的一个或多个应用。使用次数大于第一阈值的应用即用户常用应用,可以只包括分屏常用应用,也可以只包括非分屏常用应用,还可以包括分屏常用应用和非分屏常用应用。使用时间与当前时间的时间差小于第二阈值即用户最近使用应用,可以只包括分屏最近使用应用,也可以只包括非分屏最近使用应用,还可以包括分屏最近使用应用和非分屏最近使用应用。存在待处理信息的应用即有未处理的新消息的应用。
第一用户操作可以为点击操作,也可以为双击操作,还可以为其它触摸式操作,还可以为语音操作,还可以为手势操作。请参阅图9,图9是本发明实施例公开的一种用户点击预设图标后显示应用列表的示意图。如图9所示,终端设备检测到用户点击预设图标后,可 以在预设图标周围显示应用列表中应用的图标,即三角形,一个三角形代表一个应用图标,图中示意出了三个应用的图标。请参阅图10,图10是本发明实施例公开的另一种用户点击预设图标后显示应用列表的示意图。如图10所示,终端设备检测到用户点预设图标后,在预设图标旁边显示应用列表中应用的图标,应用的图标按照列进行排列。其中,应用列表可以以悬浮的方式显示,可以不影响当前显示应用的显示。应用列表可以显示在显示屏的固定位置,也可以显示在预设图标周围。应用列表的排列方式可以是按列排列,也可以是按行排列,还可以是按照其他方式排列。
在一个实施例中,终端设备检测到输入的针对第一应用列表的第三用户操作时,可以显示待选择应用,检测到输入的针对第二应用的第四用户操作时,将第二应用添加至第一应用列表得到第二应用列表。待选择应用为终端设备的应用中除第一应用列表包括的应用之外的应用,即未在第一应用列表中的应用。第二应用为待选择应用中的任一应用。第三用户操作和第四用户操作可以为点击操作,也可以双击操作,还可以为其它触摸式操作,还可以为语音操作,还可以为手势操作。第三用户操作与第四用户操作可以相同,也可以不同。可见,第一应用列表可以包括一个选择按钮或选择区域,终端设备检测到用户针对该选择按钮或该选择区域的操作时,可以显示待选择应用。终端设备检测到用户对显示的待选择应用中的应用的操作时,可以将该应用添加至第一应用列表得到第二应用列表。请参阅图11,图11是本发明实施例公开的一种用户通过选择按钮或选择区域往第一应用列表中添加应用的示意图。如图11所示,终端设备检测到用户针对选择按钮或选择区域的点击操作时,显示待选择应用,终端设备检测到用户针对待选择应用中某个应用的点击操作时,将这个应用添加至第一应用列表得到第二应用列表。
303、检测到输入的针对第一应用列表中第一应用的第二用户操作时,将终端设备的屏幕划分为两个或两个以上子屏幕,在第一子屏幕与第二子屏幕分别显示第一界面和第一应用。
终端设备显示第一应用列表后,检测到输入的针对第一应用列表中第一应用的第二用户操作时,可以将终端设备的屏幕划分为两个或两个以上子屏幕,以及在第一子屏幕与第二子屏幕分别显示第一界面和第一应用。其中,第一子屏幕和第二子屏幕为这两个或两个以上子屏幕中的屏幕。其中,第二用户操作可以为点击操作,也可以为双击操作,还可以为滑动操作,还可以为其它触摸式操作,还可以为语音操作,还可以为手势操作。在一些实施例中,由第一应用列表得到第二应用列表的情况下,终端设备检测到的是输入的针对第二应用列表中第一应用的第二用户操作。
终端设备检测到用户对第一应用列表中某个应用的操作时,操作不同,终端设备的响应可以不同。请参阅图12,图12是本发明实施例公开的一种用户操作第一应用列表中应用进行分屏的示意图。如图12所示,终端设备检测到用户长按向左滑动第一应用列表中第一应用的操作时,终端设备可以将显示屏划分为左右两个屏幕,第一界面可以显示在左边的子屏幕,第一应用可以显示在右边的子屏幕,反之亦然。请参阅图13,图13是本发明实施例公开的另一种用户操作第一应用列表中应用进行分屏的示意图。如图13所示,终端设备检测到用户长按向上滑动第一应用列表中第一应用的操作时,终端设备可以将显示屏划分为上下两个子屏幕,第一界面可以显示在上边的子屏幕,第一应用可以显示在下边的子屏 幕,反之亦然。请参阅图14,图14是本发明实施例公开的又一种用户操作第一应用列表中应用进行分屏的示意图。如图14所示,终端设备检测到用户长按向左上方滑动第一应用列表中第一应用的操作时,终端设备可以将显示屏划分为左边1/4屏幕和右侧整个屏幕,第一界面可以显示在左边1/4子屏幕,第一应用可以显示在右侧子屏幕,反之亦然。
请参阅图15,图15是本发明实施例公开的又一种用户操作第一应用列表中应用进行分屏的示意图。如图15所示,终端设备检测到用户点击第一应用列表中第一应用的操作时,终端设备可以将显示屏划分为上下两个子屏幕,第一界面可以显示在上边的子屏幕,第一应用可以显示在下边的子屏幕,反之亦然。
在一些实施例中,终端设备检测到输入的针对第一应用列表中第一应用的第六用户操作时,使用第一应用覆盖当前显示应用。第六用户操作可以为点击操作,也可以为双击操作,还可以滑动操作,还可以为其它触摸式操作,还可以为语音操作,还可以为手势操作。其中,第二用户操作与第六用户操作不同。请参阅图16,图16是本发明实施例公开的一种用户操作第一应用列表中第一应用覆盖第一界面的示意图。
在一个实施例中,在终端设备已经处于分屏状态的情况下,可以再次进行分屏。请参阅图17,图17是本发明实施例公开的又一种用户操作第一应用列表中应用进行分屏的示意图。如图17所示,终端设备检测到用户长按向左上方滑动第一应用列表中第一应用的操作时,终端设备可以将左边的子屏幕再次划分为上下两个子屏幕,左边子屏幕原先显示的应用可以显示在左边上边的子屏幕,第一应用可以显示在左边下边的子屏幕,反之亦然。
在一些实施例中,在终端设备分屏后,可以通过用户操作实现不同子屏幕之间的位置切换。在一种实现方式中,终端设备检测到输入的针对第一子屏幕的第七用户操作时可以确定第一子屏幕处于拖动状态,检测到输入的用于将第一子屏幕拖动到第二子屏幕范围内的操作时,交换第一子屏幕与第二子屏幕的显示位置。在第一子屏幕处于第二子屏幕中的区域大于门限值,如60%、70%等,时,可以确定第一子屏幕拖动到第二子屏幕范围内。其中,第七用户操作可以为触摸时间大于第四阈值的操作,也可以为双击且触摸时间大于第四阈值的操作,还可以为其它触摸式操作,还可以为语音操作,还可以为手势操作。请参阅图18,图18是本发明实施例公开的一种子屏幕切换的示意图。如图18所示,终端设备检测到用户针对右上角子屏幕的长按操作时,右上角子屏幕呈现悬浮和抖动状态,表明右上角子屏幕进入拖动状态,检测到用户针对处于拖动状态的右上角子屏幕的向下拖动操作,且在右上角子屏幕进入右下角子屏幕范围内时,表明右下角子屏幕为需要交换的屏幕,右下角子屏幕也可以呈现悬浮和抖动状态,终端设备检测到用户放手后,可以交换右上角子屏幕与右下角子屏幕的显示位置。请参阅图19,图19是本发明实施例公开的另一种子屏幕切换的示意图。如图19所示,终端设备检测到用户针对右上角子屏幕的长按操作时,右上角子屏幕呈现特定颜色,表明右上角子屏幕进入拖动状态,检测到针对处于拖动状态的右上角子屏幕的向下拖动操作,且在右上角子屏幕进入右下角子屏幕范围内时,表明右下角子屏幕为需要交换的屏幕,右下角子屏幕也呈现该特定颜色,终端设备检测到用户放手后,交换右上角子屏幕与右下角子屏幕的显示位置。
在另一种实现方式中,终端设备检测到输入的针对预设图标的第八用户操作时显示分 屏缩略图,检测到输入的针对分屏缩略图中第一子屏幕对应的缩略图的第七用户操作时确定第一子屏幕处于拖动状态,检测到输入的用于将第一子屏幕对应的缩略图拖动到第二子屏幕对应的缩略图范围内时交换第一子屏幕与第二子屏幕的显示位置。请参阅图20,图20是本发明实施例公开的又一种子屏幕切换的示意图。如图20所示,终端设备检测到用户针对预设图标的双击操作时可以显示分屏缩略图,检测到针对右上角子屏幕对应的缩略图的长按操作时,右上角子屏幕呈现悬浮和抖动状态,表明右上角子屏幕进入拖动状态,检测到用户针对右上角子屏幕对应的缩略图的向下拖动操作,且在右上角子屏幕进入右下角子屏幕范围内时,表明右下角子屏幕为需要交换的屏幕,右下角子屏幕也呈现悬浮和抖动状态,终端设备检测到用户放手后,交换右上角子屏幕与右下角子屏幕的显示位置。
在一些实施例中,在终端设备分屏后下,可以通过用户操作关闭当前分屏的任一子屏幕。在一种实现方式中,终端设备检测到输入的针对第一子屏幕的第九用户操作时确定第一子屏幕处于拖动状态,检测到输入的用于将第一子屏幕向屏幕外拖动的操作时关闭第一子屏幕。请参阅图21,图21是本发明实施例公开的一种子屏幕关闭的示意图。如图21所示,终端设备检测到用户针对右上角子屏幕的长按操作时,可以确定右上角子屏幕进入拖动状态,检测到用户针对处于拖动状态的右上角子屏幕的向屏幕外的拖动操作时,关闭右上角子屏幕,关闭右上角子屏幕显示的应用,同时将右下角子屏幕放大占据右上角子屏幕的位置。
在另一种实现方式中,终端设备检测到输入的针对预设图标的第十用户操作时显示分屏缩略图,终端设备检测到输入的针对分屏缩略图中第一子屏幕对应的缩略图的第十一用户操作时关闭第一子屏幕。其中,第十一用户操作可以为点击操作,也可以为触摸时间大于第五阈值的操作,还可以为其它触摸式操作,还可以为语音操作,还可以为手势操作。请参阅图22,图22是本发明实施例公开的另一种子屏幕关闭的示意图。如图22所示,终端设备检测到用户针对右上角子屏幕对应的缩略图的长按操作时,可以确定右上角子屏幕进入拖动状态,检测到用户针对右上角子屏幕对应的缩略图向屏幕外的拖动操作时,关闭右上角子屏幕,关闭右上角子屏幕显示的应用,同时将右下角子屏幕放大占据右上角子屏幕的位置。
以上所述的具体实施方式,对本发明的目的、技术方案和有益效果进行了进一步详细说明,所应理解的是,以上所述仅为本发明的具体实施方式而已,并不用于限定本发明的保护范围,凡在本发明的技术方案的基础之上,所做的任何修改、等同替换、改进等,均应包括在本发明的保护范围之内。

Claims (21)

  1. 一种分屏处理方法,其特征在于,包括:
    终端设备显示包括预设图标的第一界面,所述预设图标以悬浮方式显示;
    所述终端设备检测到输入的针对所述预设图标的第一用户操作时,显示第一应用列表;
    所述终端设备检测到输入的针对所述第一应用列表中第一应用的第二用户操作时,将所述终端设备的屏幕划分为两个或两个以上子屏幕;
    所述终端设备在第一子屏幕与第二子屏幕分别显示所述第一界面和所述第一应用,所述第一子屏幕和所述第二子屏幕为所述两个或两个以上子屏幕中的屏幕。
  2. 根据权利要求1所述的方法,其特征在于,所述第一应用列表包括使用次数大于第一阈值的应用、使用时间与当前时间的时间差小于第二阈值的应用、与当前显示应用关联度大于第三阈值的应用以及存在待处理信息的应用中的一个或多个应用。
  3. 根据权利要求1或2所述的方法,其特征在于,所述第一用户操作包括点击操作,或者双击操作。
  4. 根据权利要求1-3任一项所述的方法,其特征在于,所述第二用户操作包括点击操作,双击操作,或者滑动操作。
  5. 根据权利要求1-4任一项所述的方法,其特征在于,所述方法还包括:
    所述终端设备检测到输入的针对所述第一应用列表的第三用户操作时,显示待选择应用,所述待选择应用为所述终端设备的应用中除所述第一应用列表包括的应用之外的应用;
    所述终端设备检测到输入的针对第二应用的第四用户操作时,将所述第二应用添加至所述第一应用列表得到第二应用列表,所述第二应用为所述待选择应用中的任一应用;
    所述终端设备检测到输入的针对所述第一应用列表中第一应用的第二用户操作包括:
    所述终端设备检测到输入的针对所述第二应用列表中第一应用的第二用户操作。
  6. 根据权利要求5所述的方法,其特征在于,所述第三用户操作和所述第四用户操作包括点击操作,或双击操作。
  7. 根据权利要求1-6任一项所述的方法,其特征在于,在所述终端设备设置有折叠屏的情况下,所述方法还包括:
    所述终端设备检测到所述折叠屏展开时,显示包括预设图标的第一界面。
  8. 根据权利要求1-7任一项所述的方法,其特征在于,所述方法还包括:
    所述终端设备在预设时间段内未检测到输入的针对所述预设图标的用户操作时,隐藏所述预设图标。
  9. 根据权利要求1-8任一项所述的方法,其特征在于,所述方法还包括:
    所述终端设备检测到输入的第五用户操作时,显示所述预设图标。
  10. 根据权利要求9所述的方法,其特征在于,所述第五用户操作包括滑动操作。
  11. 根据权利要求1-10任一项所述的方法,其特征在于,所述方法还包括:
    所述终端设备检测到输入的针对所述第一应用列表中所述第一应用的第六用户操作时,使用所述第一应用覆盖当前显示应用。
  12. 根据权利要求11所述的方法,其特征在于,所述第六用户操作包括点击操作,双 击操作,或者滑动操作。
  13. 根据权利要求1-12任一项所述的方法,其特征在于,所述方法还包括:
    所述终端设备检测到输入的针对所述第一子屏幕的第七用户操作时,确定所述第一子屏幕处于拖动状态;
    所述终端设备检测到输入的用于将所述第一子屏幕拖动到所述第二子屏幕范围内的操作时,交换所述第一子屏幕与所述第二子屏幕的显示位置。
  14. 根据权利要求1-12任一项所述的方法,其特征在于,所述方法还包括:
    所述终端设备检测到输入的针对所述预设图标的第八用户操作时,显示分屏缩略图;
    所述终端设备检测到输入的针对所述分屏缩略图中所述第一子屏幕对应的缩略图的第七用户操作时,确定所述第一子屏幕处于拖动状态;
    所述终端设备检测到输入的用于将所述第一子屏幕对应的缩略图拖动到所述第二子屏幕对应的缩略图范围内时,交换所述第一子屏幕与所述第二子屏幕的显示位置。
  15. 根据权利要求13或14所述的方法,其特征在于,所述第七用户操作包括触摸时间大于第四阈值的操作,或双击且触摸时间大于第四阈值的操作。
  16. 根据权利要求1-15任一项所述的方法,其特征在于,所述方法还包括:
    所述终端设备检测到输入的针对所述第一子屏幕的第九用户操作时,确定所述第一子屏幕处于拖动状态;
    所述终端设备检测到输入的用于将所述第一子屏幕向屏幕外拖动的操作时,关闭所述第一子屏幕。
  17. 根据权利要求1-15任一项所述的方法,其特征在于,所述方法还包括:
    所述终端设备检测到输入的针对所述预设图标的第十用户操作时,显示分屏缩略图;
    所述终端设备检测到输入的针对所述分屏缩略图中所述第一子屏幕对应的缩略图的第十一用户操作时,关闭所述第一子屏幕。
  18. 根据权利要求17所述的方法,其特征在于,所述第十一用户操作包括点击操作,或者触摸时间大于第五阈值的操作。
  19. 一种终端设备,包括触控屏,存储器,一个或多个处理器,多个应用程序,以及一个或多个计算机程序;其中,所述一个或多个计算机程序被存储在所述存储器中;其特征在于,所述一个或多个处理器在执行所述一个或多个计算机程序时,使得所述终端设备实现如权利要求1至18任一项所述的方法。
  20. 一种计算机存储介质,其特征在于,包括计算机指令,当所述计算机指令在终端设备上运行时,使得所述终端设备执行如权利要求1至18任一项所述的方法。
  21. 一种计算机程序产品,其特征在于,当所述计算机程序产品在计算机上运行时,使得所述计算机执行如权利要求1至18任一项所述的方法。
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WO2023020006A1 (zh) * 2021-08-20 2023-02-23 荣耀终端有限公司 基于可折叠屏的拍摄控制方法及电子设备

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