WO2021026697A1 - 显示方式的切换方法、装置、设备及介质 - Google Patents

显示方式的切换方法、装置、设备及介质 Download PDF

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Publication number
WO2021026697A1
WO2021026697A1 PCT/CN2019/100078 CN2019100078W WO2021026697A1 WO 2021026697 A1 WO2021026697 A1 WO 2021026697A1 CN 2019100078 W CN2019100078 W CN 2019100078W WO 2021026697 A1 WO2021026697 A1 WO 2021026697A1
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WO
WIPO (PCT)
Prior art keywords
display mode
display
touch
flip angle
terminal
Prior art date
Application number
PCT/CN2019/100078
Other languages
English (en)
French (fr)
Inventor
王笛
Original Assignee
北京小米移动软件有限公司南京分公司
北京小米移动软件有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 北京小米移动软件有限公司南京分公司, 北京小米移动软件有限公司 filed Critical 北京小米移动软件有限公司南京分公司
Priority to CN201980002015.2A priority Critical patent/CN112673612B/zh
Priority to PCT/CN2019/100078 priority patent/WO2021026697A1/zh
Priority to EP19861275.6A priority patent/EP4013022A4/en
Priority to US16/764,875 priority patent/US11379061B2/en
Publication of WO2021026697A1 publication Critical patent/WO2021026697A1/zh

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Classifications

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Definitions

  • This application relates to the field of electronic equipment, and in particular to a method, device, equipment and medium for switching display modes of a display screen.
  • the increase in the use area of the terminal’s display screen can provide users with a better experience.
  • Smart phones use dual displays, foldable displays, curved displays, etc. to increase the display of smart phones.
  • the use area of the screen can provide users with a better experience.
  • the front of the smartphone is the main display area (that is, the front display area) of the smartphone
  • the back of the body is the secondary display area of the smartphone ( That is, the rear display area)
  • the main display area and the secondary display area can interact with information.
  • a smart phone is provided with a trigger control or physical switch that supports the display function of switching the front display area and the rear display area. The user can switch the display of the front display area and the rear display area through the trigger control or physical switch. Function; or, switch the display function of the front display area and the rear display area through the user's touch signal received on the smart phone.
  • the user needs to judge the display direction of the smartphone’s display screen before triggering the control or physical switch, and then trigger the control or physical switch; the user uses touch signals to switch the display function of the front display area and the rear display area
  • the smart phone receives similar touch signals, which may cause a misjudgment of the display function of switching the display area.
  • the embodiments of the present application provide a display mode switching method, device, equipment, and storage medium, which can solve the problem that the user switches the display of the display when the terminal-based display screen covers the front and back of the terminal body in the related technology. It is necessary to judge the display direction in advance or the similarity of the touch signal received by the terminal may cause misjudgment of the display function of switching the display area.
  • the technical solution is as follows:
  • a display mode switching method the method is applied to a terminal, the display screen of the terminal covers the front and back of the body of the terminal; The first display area on the front of the body and the second display area on the back of the body; the method includes:
  • the display mode of the display screen is switched from the first display mode to the second display mode, and the second display mode It is a display mode in which the first display area is in the rest screen state, and the second display area is in the bright screen state.
  • the touch information includes touch attribute information of the display screen; when the touch information satisfies a first condition and the flip angle of the terminal satisfies a second condition, the Switching the display mode of the display screen from the first display mode to the second display mode includes: when the change degree of the touch attribute information reaches the target level and the flip angle of the terminal is greater than the flip angle threshold, the display The display mode of the screen is switched from the first display mode to the second display mode.
  • the touch attribute information includes the position coordinates of the touch point; when the change degree of the touch attribute information reaches the target level and the flip angle of the terminal is greater than the flip angle threshold, the Switching the display mode of the display screen from the first display mode to the second display mode includes: when the displacement change of the position coordinates of the touch point is greater than a displacement threshold, and the flip angle of the terminal is greater than the flip angle When the threshold is set, the display mode of the display screen is switched from the first display mode to the second display mode.
  • the touch attribute information further includes the area of the touch point; when the change degree of the touch attribute information reaches the target level and the flip angle of the terminal is greater than the flip angle threshold, the Switching the display mode of the display screen from the first display mode to the second display mode includes: when the area change of the touch point is greater than the area change threshold, and the flip angle of the terminal is greater than the flip When the angle threshold is set, the display mode of the display screen is switched from the first display mode to the second display mode.
  • the touch attribute information further includes the number of touch points; when the change degree of the touch attribute information reaches a target level and the flip angle of the terminal is greater than the flip angle threshold, the Switching the display mode of the display screen from the first display mode to the second display mode includes: when the number of touch points changes and the flip angle of the terminal is greater than the flip angle threshold, The display mode of the display screen is switched from the first display mode to the second display mode.
  • the touch attribute information further includes the pressure of the touch point; when the change degree of the touch attribute information reaches the target level and the flip angle of the terminal is greater than the flip angle threshold, the Switching the display mode of the display screen from the first display mode to the second display mode includes: when the pressure change of the touch point is greater than the pressure change threshold, and the flip angle of the terminal is greater than the flip angle When the angle threshold is set, the display mode of the display screen is switched from the first display mode to the second display mode.
  • the touch attribute information includes at least two of the following: the position coordinates of the touch point, the area of the touch point, the number of touch points, and the pressure of the touch point; when the at least two types of touch attribute information When the degree of change of each reaches their respective target degrees and the flip angle of the terminal is greater than the flip angle threshold, the display mode of the display screen is switched from the first display mode to the second display mode.
  • a display mode switching device the device is provided with a terminal, the display screen of the terminal covers the front and the back of the terminal body, and the display screen includes The first display area on the front of the body and the second display area on the back of the body, the device includes:
  • the display module is configured to display in a first display mode, where the first display mode is a display mode in which the first display area is in a bright screen state and the second display area is in a screen state;
  • An acquiring module configured to acquire the touch information of the display screen and the flip angle of the terminal
  • the control module is configured to switch the display mode of the display screen from the first display mode to the second display mode when the touch information meets the first condition and the flip angle of the terminal meets the second condition, so
  • the second display mode is a display mode in which the first display area is in the rest screen state, and the second display area is in the bright screen state.
  • the touch information includes touch attribute information of the display screen
  • the control module is further configured to switch the display mode of the display screen from the first display mode to the first display mode when the change degree of the touch attribute information reaches a target level and the flip angle of the terminal is greater than the flip angle threshold.
  • the second display mode is further configured to switch the display mode of the display screen from the first display mode to the first display mode when the change degree of the touch attribute information reaches a target level and the flip angle of the terminal is greater than the flip angle threshold.
  • the touch attribute information includes the position coordinates of the touch point; the control module is also used for when the displacement change of the position coordinates of the touch point is greater than the displacement threshold, and the terminal's When the flip angle is greater than the flip angle threshold, the display mode of the display screen is switched from the first display mode to the second display mode.
  • the touch attribute information further includes the area of the touch point; the control module is also used for when the area change of the touch point is greater than the area change threshold, and the terminal is turned over When the angle is greater than the flip angle threshold, the display mode of the display screen is switched from the first display mode to the second display mode.
  • the touch attribute information further includes the number of touch points; the control module is also used for when the number of touch points changes and the flip angle of the terminal is greater than the flip angle.
  • the angle threshold is set, the display mode of the display screen is switched from the first display mode to the second display mode.
  • the touch attribute information further includes the pressure of the touch point; the control module is also used for when the pressure change of the touch point is greater than the pressure change threshold, and the terminal is turned over When the angle is greater than the flip angle threshold, the display mode of the display screen is switched from the first display mode to the second display mode.
  • the touch attribute information includes at least two of the following: the position coordinates of the touch point, the area of the touch point, the number of touch points, and the pressure of the touch point; the control module is also used for when When the degree of change of the at least two types of touch attribute information reaches respective target degrees and the flip angle of the terminal is greater than the flip angle threshold, the display mode of the display screen is switched from the first display mode to the second display mode. Two display mode.
  • a computer device comprising: a processor and a memory, the memory stores at least one instruction, at least a program, code set or instruction set, the at least one The instructions, the at least one program, the code set or the instruction set are loaded and executed by the processor to implement the display mode switching method as described in the above aspect.
  • a computer-readable storage medium stores at least one instruction, at least one program, code set or instruction set, the at least one instruction, the at least one program
  • the code set or instruction set is loaded and executed by the processor to implement the display mode switching method as described in the above aspect.
  • the terminal By setting the first condition corresponding to the touch information of the display screen and the second condition corresponding to the flip angle of the terminal, it is determined whether the acquired touch information of the display screen and the flip angle of the terminal meet the switching conditions, when the touch information meets the first condition And when the flip angle meets the second condition, the terminal automatically switches the display mode of the display screen from the first display mode to the second display mode.
  • the user does not need to manually switch the display mode of the display screen, and it will not be unable to switch due to misjudgment of touch information.
  • the display mode of the display is not need to manually switch the display mode of the display screen, and it will not be unable to switch due to misjudgment of touch information.
  • FIG. 1 is a schematic diagram of switching a display mode of a display screen according to a touch signal in a related technology according to an exemplary embodiment of the present application;
  • Fig. 2 is a flowchart of a display mode switching method provided by an exemplary embodiment of the present application
  • FIG. 3 is a schematic structural diagram of the front body of a terminal according to an exemplary embodiment of the present application.
  • FIG. 4 is a schematic structural diagram of the back of the body of the terminal provided by an exemplary embodiment of the present application.
  • Fig. 5 is a schematic structural diagram of a display screen of a terminal provided by an exemplary embodiment of the present application.
  • FIG. 6 is a schematic diagram of a display screen provided by an exemplary embodiment of the present application receiving touch signals
  • FIG. 7 is a schematic diagram showing that the displacement of the position coordinates of the touch point is greater than the displacement threshold according to an exemplary embodiment of the present application
  • FIG. 8 is a flowchart of a display mode switching method provided by another exemplary embodiment of the present application.
  • FIG. 9 is a schematic diagram of a user holding a terminal for turning over according to an exemplary embodiment of the present application.
  • Fig. 10 is a block diagram of a display mode switching device provided by an exemplary embodiment of the present application.
  • FIG. 11 is a schematic diagram of an apparatus structure of a computer device provided by an exemplary embodiment of the present application.
  • Application Processor Refers to an application chip that exists in a terminal, for example, an application chip in a mobile phone.
  • the operating system, user interface, and application programs are all executed on the application chip.
  • a baseband chip (Baseband Processor, BP) is also provided in the mobile phone.
  • the baseband chip manages functions related to radio frequency control (such as signal modulation, decoding, radio frequency displacement, etc.), and sends and receives various data.
  • radio frequency control such as signal modulation, decoding, radio frequency displacement, etc.
  • I2C Inter-Integrated Circuit
  • I2C and IIC it refers to a bidirectional two-wire synchronous serial communication bus, including bidirectional data lines (Serial Data, SDA) and clock lines (Serial Clock, SCL), I2C can connect the microprocessor and peripheral equipment to realize synchronous communication.
  • SDA Serial Data
  • SCL Serial Clock
  • Gravity sensor refers to a sensor used to detect the direction change of the terminal.
  • the deformable crystal is used to deform under the action of external force.
  • the The acceleration is converted into voltage output.
  • the gravity sensor in the mobile phone detects the corresponding change, and outputs the change as a voltage signal to make the mobile phone produce corresponding changes.
  • turn the mobile phone from vertical to horizontal, and the corresponding display screen will also change from vertical to horizontal for display.
  • Pressure sensor refers to a device or device that receives pressure signals and converts the pressure signals into usable output electrical signals according to certain rules. Taking a mobile phone as an example, a pressure sensor is installed on the display of the mobile phone. When the user touches or clicks on the display, the pressure sensor converts the received pressure into a corresponding electrical signal, and the display of the mobile phone will display the corresponding content or generate a corresponding The change.
  • the increase in the display area of the terminal brings a better user experience.
  • smart phones based on the form of a smart phone that wraps the front and back of the smart phone with a curved display, the user is using the smart phone.
  • the user can switch the display area through a switch display area control or a physical switch on the display screen, or the display screen detects the user's touch signal and switches the display area according to the change of the touch signal.
  • the user needs to determine whether the current display area is the target display area to be switched. If it is not the target display area, the user then switches the display area by switching display area controls or physical switches.
  • FIG. 1 shows a schematic diagram of switching the display mode according to the touch signal in the related technology according to an exemplary embodiment of the present application.
  • the display area 11 corresponding to the display screen on the front of the body faces the user as an example for description.
  • FIG. 2 shows a flowchart of the display mode switching method provided by an exemplary embodiment of the present application.
  • the method is applied to a terminal.
  • the display screen covers the front and back of the body of the terminal.
  • the display includes a first display area on the front of the body and a second display area on the back of the body.
  • the method includes the following steps:
  • Step 201 Display in a first display mode, where the first display area is in a bright screen state, and the second display area is in a screen state.
  • the form in which the display screen of the terminal covers the body includes but is not limited to the following forms: the front of the body, the back of the body, and the edges of the body are all covered by the display screen, and the display screen has no disconnected area; or, the body is covered by a display screen.
  • Cover the display screen is wrapped from the front of the body along one edge to the back of the body, and only one edge of the body is covered with the display; or, there is a display screen on the front of the body and the back of the body. cover.
  • FIG. 3 shows a schematic structural diagram of the front body of a terminal provided by an exemplary embodiment of the present application.
  • the front of the terminal body and the back of the body are both covered by the display screen, and the first display area 111 is located on the front of the body;
  • FIG. 4 shows a schematic diagram of the structure of the back of the terminal provided by an exemplary embodiment of the present application, the second display area 112 is located on the back of the body.
  • the edge between the front of the body and the back of the body may be covered with a display screen, or there may be no display screen coverage. This application takes the edge with a display screen as an example for illustration.
  • Fig. 5 shows a schematic structural diagram of a display screen of a terminal provided by an exemplary embodiment of the present application.
  • the back of the body does not completely cover the display screen.
  • Some areas on the back of the body are made of materials (such as metal or plastic) corresponding to the body, that is, the area of the second display area 112 is smaller than the area of the first display area 111.
  • the on-screen state means that the terminal's display screen is in the display state; the off-screen state means that the terminal's display screen is in an undisplayed state.
  • the first display mode is a display mode in which the first display area 111 is in the on-screen state and the second display area 112 is in the on-screen state, or the first display mode is the first display area 111 in the on-screen state, and the second display area is in the off-screen state.
  • the display mode in which the display area 112 is in the on-screen state is described in this application by taking as an example the display mode in which the first display area 111 is in the on-screen state and the second display area 112 is in the on-screen state in the first display mode.
  • Step 202 Obtain the touch information of the display screen and the flip angle of the terminal.
  • the smart phone will obtain the user's touch status on the display.
  • the user holds the smart phone with his right hand, and the user's thumb touches the On the right edge (ie the third display area 113), the remaining four fingers of the user are on the left edge of the smartphone (ie the fourth display area), and the display screen receives the touch information of the user's finger.
  • Fig. 6 shows a schematic diagram of a display screen receiving touch signals according to an exemplary embodiment of the present application.
  • the touch information may be touch information on the first display area 111, or the second display area 112, or the third display area 113, or the fourth display area of the display screen.
  • the first display area 111 of the display screen displays touch information corresponding to the user's finger.
  • the touch information is a touch signal generated after the user's four fingers touch the first display area 111 of the display screen.
  • touch information 211 is touch information corresponding to the user's index finger
  • touch information 212 is touch information corresponding to the user's middle finger
  • touch information 213 is touch information corresponding to the user's ring finger
  • touch information 214 is corresponding to the user's little finger Touch information.
  • the first display area 111 of the display screen receives the touch signal and obtains the corresponding touch information.
  • the touch information is on the third display area 113, and the touch information is generated when the user's thumb touches the third display area 113 of the display screen.
  • the above-mentioned touch information will not be displayed on the display screen when the user uses the terminal, and the touch information detected by different display screens corresponds to different shapes, and the touch information detected in different display areas of the same display screen corresponds to The shape of is also different (the shape of the touch information on the display screen can be a rectangle or an irregular figure), and this application only uses a circle as a schematic illustration.
  • the flip angle of the terminal can be flipped with the long edge of the terminal (that is, the edges corresponding to the third display area 113 and the fourth display area) as the axis, or the short edge of the terminal (that is, relative to the front of the body).
  • the edges corresponding to the upper side and the lower side) are the axis for turning.
  • the flip angle is acquired by a gravity sensor.
  • Step 203 When the touch information satisfies the first condition and the flip angle of the terminal satisfies the second condition, switch the display mode of the display screen from the first display mode to the second display mode, and the second display mode is the first display area. Screen status, the second display area is a display mode of bright screen status.
  • the second display mode is a display mode in which the first display area 111 is in a screen state and the second display area 112 is in a bright screen state, or the second display mode is a display mode in which the first display area 111 is in a bright screen state.
  • the second display area 112 is in the display mode of the screen state.
  • the second display mode is that the first display area 111 is in the on-screen state and the second display area 112 is in the on-screen state as an example for description.
  • the touch information includes touch attribute information of the display screen.
  • the touch attribute information is the position of the touch point.
  • the first condition is that the degree of change of the touch attribute information reaches a target level; the second condition is that the flip angle of the terminal is greater than the flip angle threshold.
  • the smartphone switches from the first display mode to the second display mode , That is, the first display area 111 is in the on-screen state, and the second display area 112 is in the on-screen state.
  • the touch attribute information includes the position coordinates of the touch point.
  • the terminal switches the display mode of the display screen from the first display mode to the second display mode.
  • the displacement threshold is the default setting of the terminal, or the user can customize the displacement threshold, or the displacement threshold can be intelligently generated by the terminal according to the user's usage habits and historical records.
  • the displacement threshold is a unit length based on the size of the terminal display screen.
  • the body angle refers to the angle corresponding to the body of the terminal obtained by the gravity sensor at each moment, and the body angle is used as a reference to measure the flip angle.
  • the flip angle refers to the difference between the body angle at time T and the body angle at time T-X, and X refers to the period during which the gravity sensor obtains the body angle.
  • the terminal does not produce any flip angle within 5 seconds, or the flip angle of the terminal within 5 seconds is less than the flip angle threshold, and the gravity sensor obtains the average flip angle within 5 seconds as the latest segment of the terminal State within a period of time, or if part of the flip angle of the terminal within 5 seconds is greater than the flip angle threshold, and part of the flip angle is less than the flip angle threshold, the gravity sensor acquires the flip angle of the last terminal within 5 seconds.
  • the flip angle of the terminal changes, the flip angle of the terminal acquired by the gravity sensor is the flip angle obtained from the state of the terminal under the reference.
  • the description is based on the state of the terminal in the most recent period of time.
  • the user holds a smartphone, and the gravity sensor acquires the latest body angle of the smartphone to be 0°.
  • the smartphone is perpendicular to the horizontal line, as shown in Figure 9(a); when the user holds When the smartphone is turned over, compared to the reference state of the smartphone (the turning angle is 0°), the body angle 115 is generated (as shown in Figure 9(b)).
  • the gravity sensor obtains the turning angle equal to the angle corresponding to the body angle 115.
  • the smart phone judges whether the flip angle at this time is greater than the flip angle threshold; when the smart phone continues to flip, the smart phone generates a new body angle 115, as shown in Figure 9(c), the gravity sensor obtains the flip angle equal to the body angle 115. The smart phone judges whether the flip angle at this time is greater than the flip angle threshold. Compared with the reference state of the smartphone (the flip angle is 0°), the flip angle generated by the smart phone shown in Figure 9(c) is greater than the flip angle generated by the smart phone shown in Figure 9(b) .
  • the smart phone is placed on a plane such as a table, and the gravity sensor obtains that the current body angle of the smart phone is 0°, which is the reference state of the smart phone.
  • the gravity sensor obtains that the flip angle generated by the smart phone is equal to the angle corresponding to the body angle 115, and the smart phone determines whether the flip angle is greater than the flip angle threshold.
  • X refers to the period during which the gravity sensor obtains the body angle of the terminal.
  • X represents that the period for the gravity sensor to obtain the body angle of the terminal is 1 second.
  • the time T is the 3rd second.
  • the smart The mobile phone compares the body angle at the 3rd second with the body angle at the 2nd second, and the difference between the body angles at the two moments is the flip angle; schematically, time T is the 10th second, and the gravity sensor is used to obtain intelligence
  • the body angle of the mobile phone at the 9th second is the reference, and the smartphone compares the body angle at the 10th second with the body angle at the 9th second, and the difference between the body angles corresponding to the two moments is the flip angle.
  • the state of the smart phone at time T 1 -X is that the smart phone is perpendicular to the horizontal line, as shown in Figure 9(a), schematically, the gravity sensor acquires the current body angle of the smart phone as 0°, This is the reference state of the smart phone; the user holds the smart phone and flips it, and the gravity sensor obtains the body angle 115 of the smart phone at time T 1 , as shown in Figure 9(b), the smart phone compares the body angle 115 at time T 1 to T Compare the body angle (0°) at time 1 -X.
  • the body angle 115 at time T 1 is the flip angle of the smartphone (because the body angle at time T 1 -X is 0°, the gravity sensor at time T 1 The body angle 115 is equal to the flip angle), the smart phone determines whether the flip angle is greater than the flip angle threshold.
  • the state of the smartphone at time T 2 -X is shown in Figure 9(b).
  • the gravity sensor acquires the body angle 115 of the smartphone at this time, which is the reference state of the smartphone at this time; the user The hand-held smart phone is turned over, and the gravity sensor obtains the body angle 115 of the smart phone at time T 2 , as shown in Figure 9(c), the smart phone compares the body angle 115 at time T 2 with the body angle 115 at time T 2 -X If the flip angle 116 is acquired, the smart phone determines whether the flip angle 116 is greater than the flip angle threshold.
  • the flip angle threshold is the default setting of the terminal, or the user can customize the flip angle threshold, or build a neural network model in the terminal to intelligently generate the flip angle threshold according to the user's usage habits and historical records.
  • the terminal When training the neural network model, optionally, the terminal is provided with a physical switch for switching the display mode, or an application program that controls the terminal to switch the display mode.
  • the user manually switches the display mode of the display screen according to usage habits or actual conditions.
  • the terminal records the flip angle corresponding to each time the user switches the display mode of the display screen, and inputs the flip angle into the neural network model in the terminal.
  • the model is trained.
  • the terminal automatically generates a flip angle threshold that meets the user's usage habits through the trained neural network model.
  • the position coordinates corresponding to the touch point when the user touches the display screen can be obtained by establishing a coordinate system on the display screen.
  • a coordinate system on the display screen.
  • a rectangular coordinate system can be established; when a display screen is respectively provided on the front and back of the body of the terminal, a rectangular coordinate system is established on the two display screens.
  • FIG. 7 shows a schematic diagram of the displacement of the position coordinates of the touch point being greater than the displacement threshold provided by an exemplary embodiment of the present application.
  • Figure 7(a) is the user holding the smartphone with his right hand, the first display area 111 of the display screen faces the user, schematically, taking the user's thumb as the origin of the coordinates in this state, and the coordinates corresponding to the position of the user's index finger are (x1, y1), the coordinates corresponding to the position of the user's middle finger are (x2, y2), the coordinates corresponding to the position of the user's ring finger are (x3, y3), and the coordinates corresponding to the position of the user's little finger are (x4 ,Y4).
  • a display screen is respectively provided on the front side and the back side of the terminal body for description.
  • the display on the front of the body is the first display
  • the display on the back of the body is the second display.
  • the first rectangular coordinate system is established on the first display
  • the second rectangular coordinate system is established on the second display.
  • the user holds a smartphone with a first display screen and a second display screen.
  • the first display screen of the smartphone faces the user.
  • the smartphone acquires the The position coordinates corresponding to the touch points on the screen and the second display screen, that is, the position coordinates of the contact points corresponding to the user's thumb are located in the first rectangular coordinate system, and the position coordinates of the contact points corresponding to the user's index finger, middle finger, ring finger and little thumb Located in the second rectangular coordinate system, when the user flips the smart phone, the second display screen faces the user, and the smart phone obtains the position coordinates corresponding to the user's touch points on the first display screen and the second display screen, that is, the user's index finger, The position coordinates of the contact points corresponding to the middle finger, the ring finger and the little thumb are located in the first rectangular coordinate system, and the position coordinates of the contact points corresponding to the user's thumb are located in the second rectangular coordinate system.
  • the smartphone judges that the number of touch points in the first rectangular coordinate system has changed (the touch point corresponding to the thumb becomes the touch point corresponding to the index finger, middle finger, ring finger and little finger), and the number of touch points in the second rectangular coordinate system also occurs Change (from the touch points corresponding to the index finger, middle finger, ring finger and little finger to touch points corresponding to the thumb), if the flip angle of the smartphone is greater than the flip angle threshold, the smartphone switches the display mode.
  • the user holds the smartphone with his right hand
  • the user's thumb touches the right edge of the front of the body
  • the index finger touches the second display screen
  • the middle finger, ring finger and little finger touch the left edge of the back of the body
  • the smart phone obtains the touch corresponding to the index finger
  • the user changes the way of holding the smartphone.
  • the smart phone obtains that the touch point position coordinates corresponding to the index finger are located in the second rectangular coordinate system, and then the touch point position coordinates corresponding to the index finger are located in the first rectangular coordinate system , The smart phone determines that the coordinate system where the touch point is located has changed, and the position coordinates corresponding to the touch point are displaced.
  • the terminal when the displacement change of the position coordinates of a touch point is greater than the displacement threshold, and the flip angle of the terminal is greater than the flip angle threshold, the terminal switches the first display mode to the second display mode; or, in n (n Is an integer greater than 1) the position coordinate displacement changes of the touch points are greater than the displacement threshold, and when the flip angle of the terminal is greater than the flip angle threshold, the terminal switches the first display mode to the second display mode.
  • the touch attribute information also includes the area of the touch point.
  • the terminal switches the display mode of the display screen from the first display mode to the second display mode.
  • the terminal determines that the area change of the touch points is greater than the area change threshold, it may be that the area change of each touch point is greater than the area change threshold, or the sum of the area changes of all touch points is greater than the area change threshold.
  • the area change threshold is the default setting of the terminal, or the user can customize the area change threshold, or the terminal intelligently generates the area change threshold according to the user's usage habits and historical records.
  • a neural network model is established in the terminal, and the data is entered into the neural network model by obtaining data about the area change threshold in the history of the user's gestures of holding the terminal when using the terminal and switching the display area when using the terminal. training.
  • the terminal automatically generates an area change threshold that conforms to the user's habits through the trained neural network model.
  • the area change threshold is 0.1 square centimeters
  • the flip angle threshold is 90°.
  • the area of the dot is 0.5 square centimeters. In one example, the way the user holds the smartphone is changed.
  • the area of the touch point corresponding to the user's index finger is 0.5 square centimeters
  • the area of the touch point corresponding to the middle finger is 1 square centimeter
  • the area of the touch point corresponding to the ring finger is 0.9 square centimeters.
  • the area of the touch point corresponding to the little finger is 0.3 square centimeters
  • the area change corresponding to each finger is greater than the area change threshold of 0.1 square centimeters. If the flip angle of the smartphone is greater than 90°, the smartphone will display the display mode Switch from the first display mode to the second display mode.
  • the user holds the smartphone with his right hand
  • the user’s thumb touches the third display area 113
  • the user’s index finger touches the second display area 112
  • the smart phone acquires the total area S1 of the touch points on the display; the user changes the way of holding the smart phone, the user’s thumb touches the third display area 113, and the user’s finger, middle finger and ring finger touch the fourth display Area, the root of the right palm is not in contact with any display area
  • the smart phone obtains the total area S2 of the touch point on the display
  • the smart phone determines whether the change in the total area of the touch point from S1 to S2 is greater than the area change threshold.
  • the terminal switches the display mode of the display screen from the first display mode to the second display mode; or, In the n (n is an integer greater than 1) touch points, the area change of each touch point is greater than the area change threshold, and when the flip angle of the terminal is greater than the flip angle threshold, the terminal will display the display mode of the display from the first display The mode is switched to the second display mode.
  • the touch attribute information further includes the number of touch points.
  • the terminal switches the display mode of the display screen from the first display mode to the second display mode.
  • the flip angle threshold is 85°.
  • the way the user holds the smart phone changes.
  • the number of touch points changes. If the flip angle of the smart phone is greater than When the flip angle threshold is 85°, the smart phone switches the display mode of the display screen from the first display mode to the second display mode.
  • This application is described with a finger as a touch point, and the number of touch screens is reduced, that is, the number of touch points is reduced.
  • the touch attribute information also includes the pressure of the touch point.
  • the pressure of the touch point is obtained by a pressure sensor, which is located at the corresponding position on the front of the body, or at the corresponding position on the back of the body, or at the edge of the body, or at the front of the body, the back of the body, and the body The position corresponding to the edge.
  • the pressure sensor is located at a position corresponding to the edge of the body.
  • the terminal switches the display mode of the display screen from the first display mode to the second display mode.
  • the pressure change threshold is the default setting of the terminal, or the user can customize the pressure change threshold, or the terminal intelligently generates the pressure change threshold according to the user's usage habits and historical records.
  • the pressure change threshold is 0.1N
  • the flip angle threshold is 70°.
  • establish a neural network model in the terminal and input the data into the neural network model by acquiring data about the pressure of the user’s hand on the terminal when using the terminal and the pressure change threshold in the history of switching the display area when using the terminal. training. When the user holds the terminal in hand, the terminal automatically generates a pressure change threshold that conforms to the user's habits through the trained neural network model.
  • the user uses the left hand to hold the smartphone, the thumb of the user's left hand is on the left edge of the smartphone (that is, the left edge of the front of the body, which is the fourth display area), and the remaining four fingers are on the right side of the smartphone Edge (ie the third display area 113).
  • the display on the front of the body faces the user, and the pressure sensor acquires the pressure applied to the display as 1N.
  • the pressure sensor acquires the pressure applied to the display as 1.5N.
  • the sensor acquires that the flip angle of the terminal is 75°, and the smart phone switches the display mode of the display screen from the first display mode to the second display mode.
  • the application chip may be triggered to read the current pressure signal.
  • the read pressure threshold is 0.5N.
  • the pressure of the touch point can trigger the AP to read the current pressure signal.
  • the AP can be triggered to read the pressure of the touch point when the pressure of the touch point reaches the pressure threshold.
  • the AP reads the pressure of the touch point through the integrated circuit bus (I2C) to avoid that the pressure sensor is always working and consumes the power or work of the terminal. Consumption.
  • I2C integrated circuit bus
  • the touch attribute information includes at least two of the following: the position coordinates of the touch point, the area of the touch point, the number of touch points, and the pressure of the touch point.
  • the terminal switches the display mode of the display screen from the first display mode to the second display mode.
  • the terminal switches the display mode of the display screen from the first display mode to the second display mode.
  • Display method is a unit length
  • the flip angle threshold is 90°
  • the user uses the right hand to hold the smartphone, and the position coordinates of the touch points corresponding to each finger are: the position coordinates of the touch point corresponding to the thumb (0, 0), and the position coordinates of the touch point corresponding to the index finger (-2, -5), the coordinate of the touch point corresponding to the middle finger (-1, -5), the coordinate of the touch point corresponding to the ring finger (1, 5), the coordinate of the touch point corresponding to the little finger (2, 5), the number of touch points is Four; the user changes the way of holding the smartphone in the right hand, the position coordinates of the touch points corresponding to each finger are: the position coordinates of the touch point corresponding to the thumb (0, -5), and the position coordinates of the touch point corresponding to the index finger (-2, 0), the position coordinates of the touch point corresponding to the middle finger (-1, 0), the position coordinates of the touch point corresponding to the ring finger (1, 0), the position coordinates of the touch point corresponding to the little finger (2, 0);
  • the terminal automatically switches the display mode of the display screen from the first display mode to the second display mode.
  • the user does not need to manually switch the display mode of the display screen, and it will not be touched.
  • the display mode of the display cannot be switched if the information is misjudged.
  • Fig. 8 shows a flowchart of a display mode switching method provided by another exemplary embodiment of the present application.
  • the method is applied to a terminal.
  • the display screen covers the front and back of the body of the terminal.
  • the display includes a first display area on the front of the body and a second display area on the back of the body.
  • the method includes the following steps:
  • step 801 the user holds the mobile phone.
  • FIG. 9 shows a schematic diagram of a user holding a terminal for turning over according to an exemplary embodiment of the present application.
  • the user holds the smartphone with his right hand, the first display area 111 faces the user, the thumb of the user's right hand is located in the third display area 113, and the remaining four fingers are located in the fourth display area. (The other edge of the phone), as shown in Figure 9(a).
  • Step 802 The gravity sensor detects whether the flip angle of the mobile phone is greater than the flip angle threshold.
  • the user changes from a sitting posture to a supine position, and the smart phone also flips to a certain angle with the user.
  • a body angle of 115 is generated (as shown in Figure 9(b)).
  • the body angle 115 is 30°
  • the gravity sensor obtains the turning angle equal to the angle corresponding to the body angle 115 (30°)
  • the turning angle threshold is 15°
  • the smart phone judges that the turning angle is greater than the turning angle threshold, and entering step 803a;
  • the flip angle threshold is the default setting of the terminal, or the user can customize the flip angle threshold, or build a neural network model in the terminal to intelligently generate the flip angle threshold according to the user's usage habits and historical records.
  • the user sets the flip angle threshold through a setting option of the terminal.
  • the user can adjust the flip angle threshold by dragging the slide bar, or directly input the flip angle threshold in the input box.
  • the flip angle threshold may vary from 0° to 360°.
  • the user who uses the terminal is a young person (for example, between 20 and 30 years old), and the set flip angle threshold is in the range of 90° to 180°; the user who uses the terminal is an elderly person (for example, Age between 55 and 65 years old), the set flip angle threshold is in the range of 40° to 80°; when the user uses the terminal for racing games, such as racing games, the set flip angle threshold is 85° To 160°; when the user uses the terminal to read, for example, reading a book, the set flip angle threshold is in the range of 30° to 90°.
  • Step 803a detecting the touch signal and the pressure signal.
  • the smart phone detects the touch signal and the pressure signal, and obtains the touch attribute information.
  • the touch attribute information includes: the position coordinates of the touch point, the area of the touch point, the number of touch points, and the pressure of the touch point corresponding to the pressure signal.
  • the user changes from a sitting posture to supine
  • the flip angle of the smart phone is greater than the flip angle threshold
  • the terminal detects the touch signal and pressure signal of the display screen.
  • the terminal can determine the area of the current touch point according to the acquired touch information, so as to calculate the number of touch points (that is, the number of the user’s fingers). After acquiring the pressure of the touch point through the pressure sensor, the terminal can The point pressure further determines whether the number of touch points calculated by the touch area is correct.
  • Step 803b cancel switching the display mode of the display screen.
  • the display mode of the display screen of the smart phone is cancelled.
  • the flip angle of the smart phone is greater than the flip angle threshold, and the touch information of the display screen does not change, and the terminal cancels switching the display mode of the display screen.
  • Step 804 whether the touch information has changed.
  • the smart phone After acquiring the touch attribute information, the smart phone detects whether the touch attribute information has changed. Optionally, when the degree of change of at least one touch attribute information in the above touch attribute information reaches respective target levels and the flip angle of the terminal is greater than the flip angle threshold, step 805 is entered; if no attribute change occurs in the touch attribute information, then Go to step 803b. Schematically, as shown in FIG. 9, after the smart phone generates a flip angle, the touch attribute information does not change, and the display mode of the display screen of the smart phone does not switch.
  • Step 805 Switch the display mode of the display screen to the second display mode.
  • the smart phone after the smart phone generates a flip angle, the number of touch points is reduced, and the smart phone switches the display mode of the display screen from the first display mode to the second display mode.
  • Step 806 The display mode of the display screen is the first display mode.
  • the display mode of the smart phone is not switched, and the first display mode (or initial display mode) is still used.
  • the flip angle of the terminal is different according to the user's posture.
  • the flip angle generated when the user sits and holds the smartphone is different from the flip angle generated when the user holds the smartphone in the lying posture.
  • the flip angle threshold is 20° and the state of the terminal during a period of time acquired by the gravity sensor.
  • the user sits on a chair holding a smartphone, and the first display area 111 faces the user (as shown in Figure 9(a)).
  • the smartphone generates a body angle 115, which is 0°.
  • the gravity sensor obtains that the flip angle of the smart phone is equal to the angle corresponding to the body angle 115 (0°), and this state is the reference state of the smart phone; as shown in Figure 9(b), the user is leaning on the sofa (not lying down)
  • the smartphone When holding a smartphone, the smartphone generates a body angle 115.
  • the body angle 115 is 30°
  • the gravity sensor obtains that the flip angle of the smart phone is equal to the angle corresponding to the body angle 115 (30°), and the flip angle is greater than the flip angle threshold (20°), compared to Figure 9(a), the user’s holding posture has not changed, that is, the attribute information of the touch point has not changed.
  • the display mode of the smartphone will not be switched.
  • the display area facing the user is in a bright screen state, and the display area facing away from the user is in a screen state.
  • the smartphone when the user lies on the bed, the smartphone generates a body angle 115.
  • the body angle 115 is 80°
  • the gravity sensor obtains the flip angle equal to the angle corresponding to the body angle 115 (80 °)
  • the flip angle is greater than the flip angle threshold (20°).
  • the user's holding posture has not changed, that is, the attribute information of the touch point has not changed.
  • the display mode of the smart phone will not be switched, the display area facing the user is in a bright screen state, and the display area facing the user is in an information screen state.
  • the user holds the smartphone in the above-mentioned manner, and walks with the arms hanging down naturally.
  • the first display area 111 faces the user's leg position.
  • the user's holding gesture does not occur. Change, that is, the attribute information of the touch point has not changed; even if the flip angle generated by this process is greater than the flip angle threshold, the display mode of the smart phone will not change.
  • Fig. 10 shows a schematic structural diagram of a display mode switching device provided by an exemplary embodiment of the present application.
  • the device can be implemented as all or a part of the terminal through software, hardware or a combination of the two.
  • the device includes a display module 1010, an acquisition module 1020, and a control module 1030.
  • the display module 1010 is an optional module.
  • the display module 1010 is used for displaying in a first display mode, where the first display area is in a bright screen state and the second display area is in a rest screen state;
  • the obtaining module 1020 is used to obtain the touch information of the display screen and the flip angle of the terminal;
  • the control module 1030 is configured to switch the display mode of the display screen from the first display mode to the second display mode when the touch information meets the first condition and the flip angle of the terminal meets the second condition, and the second display mode is the first display The area is in the screen state, and the second display area is in the display mode of the bright screen state.
  • the touch information includes touch attribute information of the display screen; the control module 1030 is further configured to: when the change degree of the touch attribute information reaches the target level and the flip angle of the terminal is greater than the flip angle threshold, The display mode of the display screen is switched from the first display mode to the second display mode.
  • the touch attribute information includes the position coordinates of the touch point; the control module 1030 is also used for when the displacement change of the position coordinates of the touch point is greater than the displacement threshold, and the flip angle of the terminal is greater than the flip angle
  • the threshold is set, the display mode of the display screen is switched from the first display mode to the second display mode.
  • the touch attribute information further includes the area of the touch point; the control module 1030 is also used for when the area change of the touch point is greater than the area change threshold, and the flip angle of the terminal is greater than the flip angle threshold , Switch the display mode of the display screen from the first display mode to the second display mode.
  • the touch attribute information further includes the number of touch points; the control module 1030 is further configured to change the display screen when the number of touch points changes and the flip angle of the terminal is greater than the flip angle threshold.
  • the display mode is switched from the first display mode to the second display mode.
  • the touch attribute information further includes the pressure of the touch point; the control module 1030 is also used for when the pressure change of the touch point is greater than the pressure change threshold, and the flip angle of the terminal is greater than the flip angle threshold , Switch the display mode of the display screen from the first display mode to the second display mode.
  • the touch attribute information includes at least two of the following: the position coordinates of the touch point, the area of the touch point, the number of touch points, and the pressure of the touch point; the control module 1030 is also used for at least When the degree of change of the two types of touch attribute information reaches their respective target degrees and the flip angle of the terminal is greater than the flip angle threshold, the display mode of the display screen is switched from the first display mode to the second display mode.
  • FIG. 11 shows a structural block diagram of a computer device 1100 provided by an exemplary embodiment of the present application.
  • the computer device 1100 may be: a smart phone or a tablet computer.
  • the computer device 1100 may also be called user equipment, mobile terminal, portable terminal, and other names.
  • the screen of the computer device includes a main display area and an auxiliary display area, the main display area and the auxiliary display area have different manufacturing attributes, and optical devices are arranged under the auxiliary display area.
  • the computer device 1100 may be an electronic device such as a mobile phone, a tablet computer, an e-book reader, a multimedia playback device, a wearable device, and a laptop portable computer.
  • the computer device 1100 may include one or more of the following components: a processing component 1102, a memory 1104, a power supply component 1106, a multimedia component 1108, an audio component 1110, an input/output (I/O) interface 1112, a sensor component 1114, And communication component 1116.
  • the processing component 1102 generally controls the overall operations of the terminal 1100, such as operations associated with display, telephone calls, data communication, camera operations, and recording operations.
  • the processing component 1102 may include one or more processors 1120 to execute instructions to complete all or part of the steps of the foregoing method.
  • the processing component 1102 may include one or more modules to facilitate the interaction between the processing component 1102 and other components.
  • the processing component 1102 may include a multimedia module to facilitate the interaction between the multimedia component 1108 and the processing component 1102.
  • the memory 1104 is configured to store various types of data to support operations on the computer device 1100. Examples of these data include instructions for any application or method operating on the computer device 1100, contact data, phone book data, messages, pictures, videos, etc.
  • the memory 1104 can be implemented by any type of volatile or nonvolatile storage device or a combination thereof, such as static random access memory (SRAM), electrically erasable programmable read-only memory (EEPROM), erasable Programmable Read Only Memory (EPROM), Programmable Read Only Memory (PROM), Read Only Memory (ROM), Magnetic Memory, Flash Memory, Magnetic Disk or Optical Disk.
  • SRAM static random access memory
  • EEPROM electrically erasable programmable read-only memory
  • EPROM erasable Programmable Read Only Memory
  • PROM Programmable Read Only Memory
  • ROM Read Only Memory
  • Magnetic Memory Flash Memory
  • Magnetic Disk Magnetic Disk or Optical Disk.
  • the power supply component 1106 provides power for various components of the computer device 1100.
  • the power component 1106 may include a power management system, one or more power supplies, and other components associated with generating, managing, and distributing power for the computer device 1100.
  • the multimedia component 1108 includes a screen that provides an output interface between the computer device 1100 and the user.
  • the screen may include a liquid crystal display (LCD) and a touch panel (TP). If the screen includes a touch panel, the screen may be implemented as a touch screen to receive input signals from the user.
  • the touch panel includes one or more touch sensors to sense touch, sliding, and gestures on the touch panel. The touch sensor may not only sense the boundary of a touch or slide action, but also detect the duration and pressure related to the touch or slide operation.
  • the multimedia component 1108 includes a front camera and/or a rear camera. When the computer device 1100 is in an operation mode, such as a shooting mode or a video mode, the front camera and/or the rear camera can receive external multimedia data. Each front camera and rear camera can be a fixed optical lens system or have focal length and optical zoom capabilities.
  • the audio component 1110 is configured to output and/or input audio signals.
  • the audio component 1110 includes a microphone (MIC), and when the computer device 1100 is in an operation mode, such as a call mode, a recording mode, and a voice recognition mode, the microphone is configured to receive an external audio signal.
  • the received audio signal may be further stored in the memory 1104 or sent via the communication component 1116.
  • the audio component 1110 further includes a speaker for outputting audio signals.
  • the I/O interface 1112 provides an interface between the processing component 1102 and the peripheral interface module.
  • the peripheral interface module may be a keyboard, a click wheel, a button, and the like. These buttons may include but are not limited to: home button, volume button, start button, and lock button.
  • the sensor component 1114 includes one or more sensors for providing the computer device 1100 with various aspects of state evaluation.
  • the sensor component 1114 can detect the on/off status of the computer device 1100 and the relative positioning of the components.
  • the component is the display and keypad of the computer device 1100.
  • the sensor component 1114 can also detect the computer device 1100 or the computer device 1100.
  • the position of the component changes, the presence or absence of contact between the user and the computer device 1100, the orientation or acceleration/deceleration of the computer device 1100, and the temperature change of the computer device 1100.
  • the sensor component 1114 may include a proximity sensor configured to detect the presence of nearby objects when there is no physical contact.
  • the sensor component 1114 may also include a light sensor, such as a CMOS or CCD image sensor, for use in imaging applications.
  • the sensor component 1114 may also include an acceleration sensor, a gyroscope sensor, a magnetic sensor, a pressure sensor or a temperature sensor.
  • the communication component 1116 is configured to facilitate wired or wireless communication between the computer device 1100 and other devices.
  • the computer device 1100 can access a wireless network based on a communication standard, such as Wi-Fi, 2G, 3G, 4G, 5G, or a subsequent evolution system, or a combination thereof.
  • the communication component 1116 receives a broadcast signal or broadcast related information from an external broadcast management system via a broadcast channel.
  • the communication component 1116 further includes a near field communication (NFC) module to facilitate short-range communication.
  • the NFC module can be implemented based on radio frequency identification (RFID) technology, infrared data association (IrDA) technology, ultra-wideband (UWB) technology, Bluetooth (BT) technology and other technologies.
  • RFID radio frequency identification
  • IrDA infrared data association
  • UWB ultra-wideband
  • Bluetooth Bluetooth
  • the computer device 1100 can be implemented by one or more application specific integrated circuits (ASIC), digital signal processors (DSP), digital signal processing devices (DSPD), programmable logic devices (PLD), field A programmable gate array (FPGA), a controller, a microcontroller, a microprocessor, or other electronic components are used to implement the above-mentioned display mode switching method.
  • ASIC application specific integrated circuits
  • DSP digital signal processors
  • DSPD digital signal processing devices
  • PLD programmable logic devices
  • FPGA field A programmable gate array
  • controller a microcontroller, a microprocessor, or other electronic components are used to implement the above-mentioned display mode switching method.
  • a non-transitory computer-readable storage medium having a computer program stored thereon, and the computer program may be executed by the processor 1120 of the device 1100 to complete the above-mentioned display mode switching method.
  • the non-transitory computer-readable storage medium may be ROM, random access memory (RAM), CD-ROM, magnetic tape, floppy disk, optical data storage device, etc.
  • the present application also provides a computer device including a processor and a memory, and the memory stores at least one instruction, at least one program, code set or instruction set, at least one instruction, at least one program, code set or instruction set It is loaded and executed by the processor to implement the display mode switching method provided by the foregoing method embodiments.
  • the present application also provides a computer-readable storage medium in which at least one instruction, at least one program, code set or instruction set is stored, and the at least one instruction, at least one program, code set or instruction set is provided by the processor Load and execute to implement the display mode switching method provided in the foregoing method embodiments.

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Abstract

一种显示方式的切换方法、装置、设备及可读存储介质,所述方法应用于终端上,所述显示屏包覆所述终端的机体正面和机体背面;所述显示屏包括位于所述机体正面上的第一显示区域和位于所述机体背面上的第二显示区域;所述方法包括:采用第一显示方式显示,第一显示方式是所述第一显示区域呈亮屏状态,第二显示区域呈息屏状态的显示方式(201);获取显示屏的触摸信息和终端的翻转角度(202);当触摸信息满足第一条件且终端的翻转角度满足第二条件时,将显示屏的显示方式由第一显示方式切换为第二显示方式,第二显示方式是第一显示区域呈息屏状态,第二显示区域呈亮屏状态的显示方式(203)。

Description

显示方式的切换方法、装置、设备及介质 技术领域
本申请涉及电子设备领域,特别涉及一种显示屏显示方式的切换方法、装置、设备及介质。
背景技术
终端的显示屏的使用面积增加可以为用户带来更好的使用体验,以智能手机为例,智能手机通过在采用双显示屏、可折叠显示屏、曲面显示屏等方式来增加智能手机的显示屏的使用面积。
在智能手机的显示屏完整包覆机体正面和机体背面的情况下,智能手机的机体正面是该智能手机的主显示区域(也即前显示区域),机体背面是该智能手机的副显示区域(也即后显示区域),主显示区域和副显示区域之间可进行信息交互。相关技术中,在智能手机上设置有一个支持切换前显示区域和后显示区域的显示功能的触发控件或物理开关,用户通过对触发控件或物理开关来实现切换前显示区域和后显示区域的显示功能;或者,通过智能手机上接收到的用户的触摸信号来切换前显示区域和后显示区域的显示功能。
基于上述情况,用户通过触发控件或物理开关前,需要先判断智能手机的显示屏的显示方向,然后再触发控件或物理开关;在用户以触摸信号来切换前显示区域和后显示区域的显示功能时,易于因用户手持智能手机的手势相似,使得智能手机接收到相似的触摸信号而对切换显示区域的显示功能造成误判。
发明内容
本申请实施例提供了一种显示方式的切换方法、装置、设备及存储介质,可以解决相关技术中基于终端的显示屏包覆终端的机体正面和机体背面的情况下,用户切换显示屏的显示区域时需要预先判断显示方向或因终端接收到的触摸信号相似对切换显示区域的显示功能造成误判。所述技术方案如下:
根据本申请的一个方面,提供了一种显示方式的切换方法,所述方法应用于终端上,所述终端的显示屏包覆所述终端的机体正面和机体背面;所述显示 屏包括位于所述机体正面上的第一显示区域和位于所述机体背面上的第二显示区域;所述方法包括:
采用第一显示方式显示,所述第一显示方式是所述第一显示区域呈亮屏状态,所述第二显示区域呈息屏状态的显示方式;
获取所述显示屏的触摸信息和所述终端的翻转角度;
当所述触摸信息满足第一条件且所述终端的翻转角度满足第二条件时,将所述显示屏的显示方式由所述第一显示方式切换为第二显示方式,所述第二显示方式是所述第一显示区域呈所述息屏状态,所述第二显示区域呈所述亮屏状态的显示方式。
在本申请的一些实施例中,所述触摸信息包括所述显示屏的触摸属性信息;所述当所述触摸信息满足第一条件且所述终端的翻转角度满足第二条件时,将所述显示屏的显示方式由所述第一显示方式切换为第二显示方式,包括:当所述触摸属性信息的变化程度达到目标程度且所述终端的翻转角度大于翻转角度阈值时,将所述显示屏的显示方式由所述第一显示方式切换为所述第二显示方式。
在本申请的一些实施例中,所述触摸属性信息包括触摸点的位置坐标;所述当所述触摸属性信息的变化程度达到目标程度且所述终端的翻转角度大于翻转角度阈值时,将所述显示屏的显示方式由所述第一显示方式切换为所述第二显示方式,包括:当所述触摸点的位置坐标的位移变化大于位移阈值,且,所述终端的翻转角度大于翻转角度阈值时,将所述显示屏的显示方式由所述第一显示方式切换为所述第二显示方式。
在本申请的一些实施例中,所述触摸属性信息还包括触摸点的面积;所述当所述触摸属性信息的变化程度达到目标程度且所述终端的翻转角度大于翻转角度阈值时,将所述显示屏的显示方式由所述第一显示方式切换为所述第二显示方式,包括:当所述触摸点的面积变化量大于面积变化阈值,且,所述终端的翻转角度大于所述翻转角度阈值时,将所述显示屏的显示方式由所述第一显示方式切换为所述第二显示方式。
在本申请的一些实施例中,所述触摸属性信息还包括触摸点的数量;所述当所述触摸属性信息的变化程度达到目标程度且所述终端的翻转角度大于翻转角度阈值时,将所述显示屏的显示方式由所述第一显示方式切换为所述第二显示方式,包括:当所述触摸点的数量变化,且,所述终端的翻转角度大于所述 翻转角度阈值时,将所述显示屏的显示方式由所述第一显示方式切换为所述第二显示方式。
在本申请的一些实施例中,所述触摸属性信息还包括触摸点的压力;所述当所述触摸属性信息的变化程度达到目标程度且所述终端的翻转角度大于翻转角度阈值时,将所述显示屏的显示方式由所述第一显示方式切换为所述第二显示方式,包括:当所述触摸点的压力变化量大于压力变化阈值,且,所述终端的翻转角度大于所述翻转角度阈值时,将所述显示屏的显示方式由所述第一显示方式切换为所述第二显示方式。
在本申请的一些实施例中,所述触摸属性信息包括以下至少两种:触摸点的位置坐标、触摸点的面积、触摸点的数量和触摸点的压力;当所述至少两种触摸属性信息的变化程度分别达到各自的目标程度且所述终端的翻转角度大于翻转角度阈值时,将所述显示屏的显示方式由所述第一显示方式切换为所述第二显示方式。
根据本申请的另一方面,提供了一种显示方式的切换装置,所述装置设置有终端,所述终端的显示屏包覆所述终端的机体正面和机体背面,所述显示屏包括位于所述机体正面上的第一显示区域和位于所述机体背面上的第二显示区域,所述装置包括:
显示模块,用于采用第一显示方式显示,所述第一显示方式是所述第一显示区域呈亮屏状态,所述第二显示区域呈息屏状态的显示方式;
获取模块,用于获取所述显示屏的触摸信息和所述终端的翻转角度;
控制模块,用于当所述触摸信息满足第一条件且所述终端的翻转角度满足第二条件时,将所述显示屏的显示方式由所述第一显示方式切换为第二显示方式,所述第二显示方式是所述第一显示区域呈所述息屏状态,所述第二显示区域呈所述亮屏状态的显示方式。
在本申请的一些实施例中,所述触摸信息包括所述显示屏的触摸属性信息;
所述控制模块,还用于当所述触摸属性信息的变化程度达到目标程度且所述终端的翻转角度大于翻转角度阈值时,将所述显示屏的显示方式由所述第一显示方式切换为所述第二显示方式。
在本申请的一些实施例中,所述触摸属性信息包括触摸点的位置坐标;所述控制模块,还用于当所述触摸点的位置坐标的位移变化大于位移阈值,且,所述终端的翻转角度大于翻转角度阈值时,将所述显示屏的显示方式由所述第 一显示方式切换为所述第二显示方式。
在本申请的一些实施例中,所述触摸属性信息还包括触摸点的面积;所述控制模块,还用于当所述触摸点的面积变化量大于面积变化阈值,且,所述终端的翻转角度大于所述翻转角度阈值时,将所述显示屏的显示方式由所述第一显示方式切换为所述第二显示方式。
在本申请的一些实施例中,所述触摸属性信息还包括触摸点的数量;所述控制模块,还用于当所述触摸点的数量变化,且,所述终端的翻转角度大于所述翻转角度阈值时,将所述显示屏的显示方式由所述第一显示方式切换为所述第二显示方式。
在本申请的一些实施例中,所述触摸属性信息还包括触摸点的压力;所述控制模块,还用于当所述触摸点的压力变化量大于压力变化阈值,且,所述终端的翻转角度大于所述翻转角度阈值时,将所述显示屏的显示方式由所述第一显示方式切换为所述第二显示方式。
在本申请的一些实施例中,所述触摸属性信息包括以下至少两种:触摸点的位置坐标、触摸点的面积、触摸点的数量和触摸点的压力;所述控制模块,还用于当所述至少两种触摸属性信息的变化程度分别达到各自的目标程度且所述终端的翻转角度大于翻转角度阈值时,将所述显示屏的显示方式由所述第一显示方式切换为所述第二显示方式。
根据本申请的另一方面,提供了一种计算机设备,所述计算机设备包括:处理器和存储器,所述存储器中存储有至少一条指令、至少一段程序、代码集或指令集,所述至少一条指令、所述至少一段程序、所述代码集或指令集由所述处理器加载并执行以实现如上方面所述的显示方式的切换方法。
根据本申请的另一方面,提供了一种计算机可读存储介质,所述存储介质中存储有至少一条指令、至少一段程序、代码集或指令集,所述至少一条指令、所述至少一段程序、所述代码集或指令集由所述处理器加载并执行以实现如上方面所述的显示方式的切换方法。
本申请实施例提供的技术方案带来的有益效果至少包括:
通过设置显示屏的触摸信息对应的第一条件和终端的翻转角度对应的第二条件,判断获取到的显示屏的触摸信息和终端的翻转角度是否符合切换条件,当触摸信息满足第一条件时且翻转角度满足第二条件时,终端自动将显示屏的显示方式由第一显示方式切换为第二显示方式,用户无需通过手动切换显示屏 的显示方式,也不会因触摸信息误判无法切换显示屏的显示方式。
附图说明
为了更清楚地说明本申请实施例中的技术方案,下面将对实施例描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本申请的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1是本申请一个示例性实施例提供的相关技术中根据触摸信号切换显示屏的显示方式的示意图;
图2是本申请一个示例性实施例提供的显示方式的切换方法的流程图;
图3是本申请一个示例性实施例提供的终端的机体正面的结构示意图;
图4是本申请一个示例性实施例提供的终端的机体背面的结构示意图;
图5是本申请一个示例性实施例提供的终端的显示屏的结构示意图;
图6是本申请一个示例性实施例提供的显示屏接收触摸信号的示意图;
图7是本申请一个示例性实施例提供的触摸点的位置坐标的位移大于位移阈值的示意图;
图8是本申请另一个示例性实施例提供的显示方式的切换方法的流程图;
图9是本申请一个示例性实施例提供的用户手持终端进行翻转的示意图;
图10是本申请一个示例性实施例提供的显示方式的切换装置的框图;
图11是本申请一个示例性实施例提供的计算机设备的装置结构示意图。
具体实施方式
为使本申请的目的、技术方案和优点更加清楚,下面将结合附图对本申请实施方式作进一步地详细描述。
首先,对本申请实施例中涉及的名词进行介绍:
应用芯片(Application Processer,AP):是指存在于终端中的应用芯片,比如,手机中的应用芯片,操作系统、用户界面和应用程序都在该应用芯片上执行。以手机为例,手机中还设置有基带芯片(Baseband Processor,BP),基带芯片管理射频控制相关的功能(如,信号调制、解码、射频位移等),发送和接收各种数据。当应用芯片管理的操作系统运行出现问题时,基带芯片不受影响,能够发送和接收数据。
集成电路总线I2C(Inter-Integrated Circuit):也被命名为I2C和IIC,是指一种双向二线制同步串行通信总线,包括双向的数据线(Serial Data,SDA)和时钟线(Serial Clock,SCL),I2C可以将微处理器和外围设备相连,实现同步通信。
重力传感器:是指用于检测终端方向变化的一种传感器,利用可变形的晶体在外力作用下发生变形,通过计算变形晶体产生的电压和施加的加速度(即外力)之间的关系,可将加速度转化为电压输出。以手机为例,当手机的机体姿态发生变化(即手机翻转了一定角度)时,手机中的重力传感器检测到对应变化,将变化以电压信号输出,使得手机产生相应的变化,比如,用户在使用手机观看视频时,将手机由竖向放置转为横向放置,对应的显示屏也将由竖向转为横向进行显示。
压力传感器:是指接收压力信号,并按照一定的规律将压力信号转换成可用的输出电信号的器件或装置。以手机为例,手机的显示屏上设置有压力传感器,当用户触摸或点击显示屏时,压力传感器将接收到的压力转化为对应的电信号,手机的显示屏将显示对应的内容或产生对应的变化。
终端显示屏面积的增加为用户带来更好的使用体验,以智能手机为例,基于智能手机通过曲面显示屏包覆在智能手机的机体正面和机体背面的手机形态下,用户在使用该智能手机时,可以选择只在面向自己一侧的显示屏上显示,或者,选择在整个显示屏上显示,显示屏上的各显示区域能够进行信息交互。可选地,用户可通过显示屏上的切换显示区域控件或物理开关来切换显示区域,或者,显示屏通过检测用户的触摸信号,根据触摸信号的变化来切换显示区域。示意性的,用户在切换显示区域前,需要先判断当前的显示区域是否为想要切换的目标显示区域,若不是目标显示区域,用户再通过切换显示区域控件或物理开关来切换显示区域。
图1示出了本申请一个示例性实施例提供的相关技术中根据触摸信号切换显示方式的示意图,以机体正面的显示屏对应的显示区域11面向用户为例进行说明。
示意性的,通过检测用户的触摸信号的变化来切换显示区域时,若用户手持智能手机的手势相近,如图1的(a)所示,当用户使用左手持握智能手机时,机体正面的显示屏对应的显示区域11接收到用户的左手的触摸信号。以用户左 手的大拇指在智能手机的一侧,其余四指在智能手机的另一侧这一手势为例进行说明。如图1的(b)所示,当用户以相同的持握方式采用右手持握智能手机时,显示屏接收到与左手持握智能手机的触摸信号相似的触摸信号,此时,智能手机可能将检测到的触摸信号识别为与左手持握的触摸信号相似,从而无法切换显示区域11。
本申请提供了一种显示方式的切换方法,图2示出了本申请示例性实施例提供的显示方式的切换方法的流程图。该方法应用于终端上,该显示屏包覆终端的机体正面和机体背面,该显示屏包括位于机体正面上的第一显示区域和位于机体背面上的第二显示区域,该方法包括如下步骤:
步骤201,采用第一显示方式显示,第一显示方式是第一显示区域呈亮屏状态,第二显示区域呈息屏状态的显示方式。
可选地,终端的显示屏包覆机体的形式包括但不限于如下形式:机体正面、机体背面和机体边缘全部被显示屏包覆,显示屏无断开区域;或者,机体由一块显示屏包覆,显示屏从机体正面沿一侧边缘包覆至机体背面,机体只有一侧边缘被包覆显示屏;或者,机体正面和机体背面上分别设置有一块显示屏,机体的边缘无显示屏包覆。
图3示出了本申请一个示例性实施例提供的终端的机体正面的结构示意图。该终端的机体正面和机体背面均被显示屏包覆,第一显示区域111位于机体正面;图4示出了本申请一个示例性实施例提供的终端的机体背面的结构示意图,第二显示区域112位于机体背面。可选地,在机体正面和机体背面之间的边缘可以覆盖有显示屏,或无显示屏覆盖,本申请以该边缘有显示屏覆盖为例进行说明,机体正面和机体背面之间的边缘分别是显示屏的第三显示区域111(机体正面的右侧边缘)和第四显示区域(机体正面的左侧边缘,图中未示出)。图5示出了本申请一个示例性实施例提供的终端的显示屏的结构示意图。机体背面未完全覆盖显示屏,机体背面有部分区域是机体对应的材料(比如,金属或塑料),即第二显示区域112的面积小于第一显示区域111的面积。
亮屏状态是指终端的显示屏处于显示状态;息屏状态是指终端的显示屏处于未显示的状态。可选地,第一显示方式是第一显示区域111呈亮屏状态,第二显示区域112呈息屏状态的显示方式,或者,第一显示方式第一显示区域111呈息屏状态,第二显示区域112呈亮屏状态的显示方式,本申请以第一显示方 式是第一显示区域111呈亮屏状态,第二显示区域112呈息屏状态的显示方式为例进行说明。
步骤202,获取显示屏的触摸信息和终端的翻转角度。
示意性的,以用户手持智能手机为例进行说明,当用户手持智能手机时,智能手机将获取用户在显示屏的触摸状态,比如,用户以右手持智能手机,用户的大拇指触摸智能手机的右侧边缘(即第三显示区域113),用户的其余四指在智能手机的左侧边缘(即第四显示区域),显示屏接收到用户的手指的触摸信息。
图6示出了本申请一个示例性实施例提供的显示屏接收触摸信号的示意图。
可选地,触摸信息可以是显示屏的第一显示区域111,或第二显示区域112,或第三显示区域113,或第四显示区域上的触摸信息。以用户触摸显示屏的第一显示区域111为例进行说明,在显示屏第一显示区域111上,显示有用户的手指对应的触摸信息。示意性的,该触摸信息是用户的四只手指触摸显示屏的第一显示区域111后产生的触摸信号。
在一个示例中,触摸信息211是用户的食指对应的触摸信息,触摸信息212是用户的中指对应的触摸信息,触摸信息213是用户的无名指对应的触摸信息,触摸信息214是用户的小拇指对应的触摸信息。用户在手持智能手机时,显示屏的第一显示区域111接收到触摸信号,获取对应的触摸信息。在一个示例中,触摸信息在第三显示区域113上,该触摸信息是用户的大拇指触摸显示屏的第三显示区域113时产生的。
需要说明的是,上述触摸信息在用户使用终端时不会显示在显示屏上,并且,不同的显示屏检测到的触摸信息对应的形状不同,同一显示屏的不同显示区域检测到的触摸信息对应的形状也不同(触摸信息在显示屏的形状可以是矩形或不规则图形),本申请仅以圆形作为示意性说明。
可选地,终端的翻转角度可以是以终端的长边缘(即第三显示区域113和第四显示区域对应的边缘)为轴进行翻转,或者,以终端的短边缘(即相对于机体正面的上侧和下侧所对应的边缘)为轴进行翻转。可选地,翻转角度通过重力传感器获取。
步骤203,当触摸信息满足第一条件且终端的翻转角度满足第二条件时,将显示屏的显示方式由第一显示方式切换为第二显示方式,第二显示方式是第一显示区域呈息屏状态,第二显示区域呈亮屏状态的显示方式。
可选地,第二显示方式是第一显示区域111呈息屏状态,第二显示区域112呈亮屏状态的显示方式,或者,第二显示方式是第一显示区域111呈亮屏状态,第二显示区域112呈息屏状态的显示方式。本申请以第二显示方式是第一显示区域111呈息屏状态,第二显示区域112呈亮屏状态的显示方式为例进行说明。
可选地,触摸信息包括显示屏的触摸属性信息。示意性的,触摸属性信息是触摸点的位置。可选地,第一条件是触摸属性信息的变化程度达到目标程度;第二条件是终端的翻转角度大于翻转角度阈值。示意性的,用户手持智能手机,当智能手机获取到的触摸属性信息的变化程度达到目标程度,且,终端的翻转角度大于翻转角度阈值时,智能手机由第一显示方式切换为第二显示方式,即第一显示区域111呈息屏状态,第二显示区域112呈亮屏状态的显示方式。
可选地,触摸属性信息包括触摸点的位置坐标。示意性的,当触摸点的位置坐标的位移变化大于位移阈值,且,终端的翻转角度大于翻转角度阈值时,终端将显示屏的显示方式由第一显示方式切换为第二显示方式。
可选地,位移阈值是终端的默认设置,或,用户可自定义设置位移阈值,或,根据用户的使用习惯、历史记录终端智能生成位移阈值。示意性的,位移阈值是以终端显示屏的尺寸为标准的一个单位长度。
机体角度是指重力传感器获取终端的机体在每一时刻对应的角度,以机体角度为基准来测量翻转角度。翻转角度是指T时刻的机体角度与T-X时刻的机体角度之间的差值,X是指重力传感器获取机体角度的周期。
可选地,重力传感器获取终端的翻转角度包括两种方式:
第一,以终端最近一段时间内的状态为基准。示意性的,终端在5秒之内未产生任何翻转角度,或者,终端在5秒之内的翻转角度均小于翻转角度阈值,重力传感器获取在5秒之内翻转角度的平均值作为终端最近一段时间内的状态,或者,终端在5秒之内的部分翻转角度大于翻转角度阈值,部分翻转角度小于翻转角度阈值,则重力传感器获取5秒之内最近一次终端产生的翻转角度。当终端的翻转角度发生变化时,重力传感器获取终端的翻转角度是以在该基准下终端的状态来获取的翻转角度。
以终端最近一段时间内的状态为基准进行说明。在一个示例中,用户手持智能手机,重力传感器获取智能手机最近一次产生的机体角度为0°,示意性的,智能手机与水平线呈垂直状态,如图9的(a)所示;当用户手持智能手机翻转时,相比于智能手机的基准状态(翻转角度为0°),产生机体角度115(如图9 的(b)所示),重力传感器获取翻转角度等于机体角度115对应的角度,智能手机判断此时的翻转角度是否大于翻转角度阈值;当智能手机继续翻转时,智能手机产生新的机体角度115,如图9的(c)所示,重力传感器获取翻转角度等于机体角度115对应的角度,智能手机判断此时的翻转角度是否大于翻转角度阈值。相比于智能手机的基准状态(翻转角度是0°),图9的(c)所示出的智能手机产生的翻转角度大于如图9的(b)所示出的智能手机产生的翻转角度。
在一个示例中,智能手机被放置在桌子等平面上,重力传感器获取当前智能手机的机体角度是0°,此时为智能手机的基准状态,当用户将智能手机从桌子上拿起来时,相对于放置在桌子上的基准状态(翻转角度为0°),重力传感器获取智能手机产生的翻转角度等于机体角度115对应的角度,智能手机判断该翻转角度是否大于翻转角度阈值。
第二,以终端在T-X时刻的状态为基准,将T时刻的状态产生的机体角度与T-X时刻终端的机体角度进行比较,X是指重力传感器获取终端的机体角度的周期。
以终端T时刻的状态为基准进行说明。在一个示例中,X代表重力传感器获取终端的机体角度的周期是1秒,示意性的,T时刻是第3秒,以重力传感器获取智能手机在第2秒时的机体角度为基准,则智能手机将第3秒时的机体角度与第2秒时的机体角度进行比较,两个时刻对应的机体角度的差值为翻转角度;示意性的,T时刻为第10秒,以重力传感器获取智能手机在第9秒时的机体角度为基准,则智能手机将第10秒时的机体角度与第9秒时的机体角度进行比较,两个时刻对应的机体角度的差值为翻转角度。
在一个示例中,智能手机T 1-X时刻的状态是智能手机与水平线呈垂直状态,如图9的(a)所示,示意性的,重力传感器获取当前智能手机的机体角度为0°,此时为智能手机的基准状态;用户手持智能手机翻转,重力传感器获取T 1时刻智能手机的机体角度115,如图9的(b)所示,智能手机将T 1时刻的机体角度115和T 1-X时刻的机体角度(0°)进行比较,T 1时刻的机体角度115即为智能手机的翻转角度(由于T 1-X时刻的机体角度是0°,则重力传感器获取的T 1时刻的机体角度115等于翻转角度),智能手机判断该翻转角度是否大于翻转角度阈值。
在一个示例中,智能手机T 2-X时刻的状态如图9的(b)所示,示意性的,重力传感器获取此时智能手机的机体角度115,此时为智能手机的基准状态;用 户手持智能手机翻转,重力传感器获取T 2时刻智能手机的机体角度115,如图9的(c)所示,智能手机将T 2时刻的机体角度115和T 2-X时刻的机体角度115进行比较,获取翻转角度116,则智能手机判断翻转角度116是否大于翻转角度阈值。
可选地,翻转角度阈值是终端的默认设置,或,用户可自定义设置翻转角度阈值,或,通过终端内构建神经网络模型,根据用户的使用习惯、历史记录智能生成翻转角度阈值。
在训练神经网络模型时,可选地,终端上设置有切换显示方式的物理开关,或者,控制终端切换显示方式的应用程序。用户根据使用习惯或实际情况,手动切换显示屏的显示方式,终端记录下用户每次切换显示屏的显示方式对应的翻转角度,将翻转角度输入至在终端内的神经网络模型中,对神经网络模型进行训练,当用户手持终端时,终端通过训练后的神经网络模型自动生成符合用户使用习惯的翻转角度阈值。
可通过在显示屏上建立坐标系获取用户触摸显示屏时触摸点对应的位置坐标。可选地,终端由一个显示屏包覆时,可建立一个直角坐标系;终端的机体正面和机体背面分别设置有一个显示屏时,在两个显示屏上分别建立直角坐标系。
示意性的,以终端由一个显示屏包覆为例进行说明。图7示出了本申请一个示例性实施例提供的触摸点的位置坐标的位移大于位移阈值的示意图。图7的(a)是用户右手手持智能手机,显示屏的第一显示区域111面向用户,示意性的,以该状态下用户的大拇指为坐标原点,用户的食指所在的位置对应的坐标是(x1,y1),用户的中指所在的位置对应的坐标是(x2,y2),用户的无名指所在的位置对应的坐标是(x3,y3),用户的小拇指所在的位置对应的坐标是(x4,y4)。如图7的(b)所示,示意性的,当用户翻转智能手机,第二显示区域112面对用户时,用户的大拇指触摸显示屏的第二显示区域112,用户食指、中指和无名指分别触摸第一显示区域111的不同位置,在同一显示屏的直角坐标系下,触摸点对应的位置坐标产生变化,如图7的(a)和图7的(b)所示,若触摸点对应的位置坐标的位移变化超过位移阈值,且,翻转角度大于翻转角度阈值,则智能手机将显示屏的显示方式由第一显示方式切换为第二显示方式。
示意性的,终端的机体正面和机体背面分别设置有一个显示屏为例进行说明。机体正面的显示屏为第一显示屏,机体背面的显示屏为第二显示屏,在第 一显示屏上建立第一直角坐标系,在第二显示屏上建立第二直角坐标系。在一个示例中,用户手持设置有第一显示屏和第二显示屏的智能手机,智能手机的第一显示屏面向用户,如图7的(a)所示,智能手机获取用户在第一显示屏上和第二显示屏上的触摸点对应的位置坐标,即用户大拇指对应的接触点的位置坐标位于第一直角坐标系,用户的食指、中指、无名指和小拇指对应的接触点的位置坐标位于第二直角坐标系,当用户翻转智能手机时,第二显示屏面向用户,智能手机获取用户在第一显示屏上和第二显示屏上的触摸点对应的位置坐标,即用户的食指、中指、无名指和小拇指对应的接触点的位置坐标位于第一直角坐标系,用户大拇指对应的接触点的位置坐标位于第二直角坐标系。智能手机判断第一直角坐标系中的触摸点数量发生变化(由大拇指对应的触摸点变为食指、中指、无名指和小拇指对应的触摸点),第二直角坐标系中的触摸点数量也发生变化(由食指、中指、无名指和小拇指对应的触摸点变为大拇指对应的触摸点),若智能手机的翻转角度大于翻转角度阈值,则智能手机切换显示方式。
在一个示例中,用户右手持智能手机,用户的大拇指触摸机体正面的右侧边缘,食指触摸第二显示屏,中指、无名指和小拇指触摸机体背面的左侧边缘,智能手机获取食指对应的触摸点在第二直角坐标系上的位置坐标(a2,b2)。用户改变手持智能手机的方式,用户的大拇指触摸机体背面的右侧边缘,食指触摸第一显示屏,中指、无名指和小拇指触摸机体背面的左侧边缘,智能手机获取食指对应的触摸点在第一直角坐标系上的位置坐标(a1,b1),智能手机获取到食指对应的触摸点位置坐标位于第二直角坐标系中,然后获取到食指对应的触摸点位置坐标位于第一直角坐标系中,智能手机判断触摸点所在的坐标系发生了变化,则触摸点对应的位置坐标产生位移。
可选地,在一个触摸点的位置坐标的位移变化大于位移阈值,且,终端的翻转角度大于翻转角度阈值时,终端将第一显示方式切换为第二显示方式;或者,在n个(n为大于1的整数)触摸点的位置坐标位移变化均大于位移阈值,且,终端的翻转角度大于翻转角度阈值时,终端将第一显示方式切换为第二显示方式。
可选地,触摸属性信息还包括触摸点的面积。当触摸点的面积变化量大于面积变化阈值时,且,终端的翻转角度大于翻转角度阈值时,终端将显示屏的显示方式由第一显示方式切换为第二显示方式。可选地,终端判断触摸点的面 积变化量大于面积变化阈值时,可以是每个触摸点的面积变化量均大于面积变化阈值,或者,所有触摸点的面积变化量的总和大于面积变化阈值。
可选地,面积变化阈值是终端的默认设置,或,用户可自定义设置面积变化阈值,或,终端根据用户的使用习惯、历史记录智能生成面积变化阈值。可选地,终端内建立神经网络模型,通过获取关于用户使用终端时握持终端的手势、使用终端时切换显示区域的历史记录中面积变化阈值的数据,将数据输入至该神经网络模型中进行训练。当用户手持终端时,终端通过训练后的神经网络模型自动生成符合用户使用习惯的面积变化阈值。
结合图6,示意性的,面积变化阈值是0.1平方厘米,翻转角度阈值是90°。用户的四指触摸第一显示区域111,食指对应的触摸点的面积是0.9平方厘米,中指对应的触摸点的面积是1.2平方厘米,无名指对应触摸点的面积是1平方厘米,小拇指对应的触摸点的面积是0.5平方厘米。在一个示例中,用户手持智能手机的方式改变,用户的食指对应的触摸点的面积是0.5平方厘米,中指对应的触摸点的面积是1平方厘米,无名指对应的触摸点的面积是0.9平方厘米,小拇指对应的触摸点的面积是0.3平方厘米,则各手指对应的面积变化量均大于面积变化阈值0.1平方厘米,若智能手机的翻转角度大于90°时,则智能手机将显示屏的显示方式由第一显示方式切换为第二显示方式。
在一个示例中,用户以右手手持智能手机,用户的大拇指触摸第三显示区域113,用户的食指触摸第二显示区域112,用户的中指、无名指和小拇指触摸第四显示区域,右手掌根触摸第二显示区域112,智能手机获取显示屏上触摸点的总面积S1;用户改变手持智能手机的方式,用户的大拇指触摸第三显示区域113,用户的是指、中指和无名指触摸第四显示区域,右手掌根未与任何显示区域接触,智能手机获取显示屏上触摸点的总面积S2,智能手机判断接触点的总面积由S1变为S2的变化量是否大于面积变化阈值。
可选地,在一个触摸点的面积变化量大于面积变化阈值,且,终端的翻转角度大于翻转角度阈值时,终端将显示屏的显示方式由第一显示方式切换为第二显示方式;或者,在n个(n为大于1的整数)触摸点中各触摸点的面积变化量均大于面积变化阈值,且,终端的翻转角度大于翻转角度阈值时,终端将显示屏的显示方式由第一显示方式切换为第二显示方式。
可选地,触摸属性信息还包括触摸点的数量。示意性的,当触摸点的数量变化,且,终端的翻转角度大于翻转角度阈值时,终端将显示屏的显示方式由 第一显示方式切换为第二显示方式。示意性的,翻转角度阈值是85°。
结合图6,示意性的,用户的四指触摸第一显示区域111。在一个示例中,用户手持智能手机的方式改变,用户的小拇指未触摸第一显示区域111,则用户只有三只手指触摸第一显示区域111,触摸点的数量发生变化,若智能手机的翻转角度大于翻转角度阈值85°时,则智能手机将显示屏的显示方式由第一显示方式切换为第二显示方式。本申请是以手指作为触摸点进行说明的,触摸显示屏的数量减少也即触摸点的数量减少。
可选地,触摸属性信息还包括触摸点的压力。可选地,触摸点的压力通过压力传感器获得,压力传感器位于机体正面对应的位置,或位于机体背面对应的位置,或,位于机体的边缘对应的位置,或,位于机体正面、机体背面和机体边缘对应的位置。本申请以压力传感器位于机体的边缘对应的位置进行说明。
示意性的,当触摸点的压力变化量大于压力变化阈值时,且,终端的翻转角度大于翻转角度阈值时,终端将显示屏的显示方式由第一显示方式切换为第二显示方式。可选地,压力变化阈值是终端的默认设置,或,用户可自定义设置压力变化阈值,或,终端根据用户的使用习惯、历史记录智能生成压力变化阈值。示意性的,压力变化阈值是0.1N,翻转角度阈值是70°。可选地,终端内建立神经网络模型,通过获取关于用户使用终端时手对终端的压力、使用终端时切换显示区域的历史记录中压力变化阈值的数据,将数据输入至该神经网络模型中进行训练。当用户手持终端时,终端通过训练后的神经网络模型自动生成符合用户使用习惯的压力变化阈值。
示意性的,用户使用左手持握智能手机,用户左手的大拇指在智能手机的左侧边缘(即机体正面的左侧边缘,也即第四显示区域),其余四指在智能手机的右侧边缘(即第三显示区域113)。在一个示例中,机体正面的显示屏面向用户,压力传感器获取施加在显示屏上的压力是1N,当用户手持智能手机的方式改变,压力传感器获取施加在显示屏上的压力是1.5N,重力传感器获取终端的翻转角度是75°,则智能手机将显示屏的显示方式由第一显示方式切换为第二显示方式。
可选地,触摸点的压力达到读取压力阈值时,可触发应用芯片(AP)读取当前的压力信号。示意性的,读取压力阈值是0.5N。在一个示例中,触摸点的压力是0.6N,则触摸点的压力可触发AP读取当前的压力信号。在触摸点的压力达到压力阈值时才能触发AP读取触摸点的压力,AP是通过集成电路总线 (I2C)读取触摸点的压力的,避免压力传感器一直处于工作状态而消耗终端的电量或功耗。
可选地,触摸属性信息包括以下至少两种:触摸点的位置坐标、触摸点的面积、触摸点的数量和触摸点的压力。当至少两种触摸属性信息的变化程度分别达到各自的目标程度且终端的翻转角度大于翻转角度阈值时,终端将显示屏的显示方式由第一显示方式切换为第二显示方式。
示意性的,当触摸点的位置坐标的位移变化大于位移阈值且触摸点的数量产生变化,且,翻转角度大于翻转角度阈值时,终端将显示屏的显示方式由第一显示方式切换为第二显示方式。示意性的,位移阈值是一个单位长度,翻转角度阈值是90°
在一个示例中,用户使用右手持握智能手机,各手指对应的触摸点的位置坐标分别是:大拇指对应的触摸点位置坐标(0,0)、食指对应的触摸点位置坐标(-2,-5)、中指对应的触摸点位置坐标(-1,-5)、无名指对应的触摸点位置坐标(1,5)、小拇指对应的触摸点位置坐标(2,5),触摸点的数量是四;用户改变右手持握智能手机的方式,各手指对应的触摸点的位置坐标分别是:大拇指对应的触摸点位置坐标(0,-5)、食指对应的触摸点位置坐标(-2,0)、中指对应的触摸点位置坐标(-1,0)、无名指对应的触摸点位置坐标(1,0)、小拇指对应的触摸点位置坐标(2,0),触摸点的数量是三,用户将智能手机翻转了180°,触摸点的位置坐标的位移变化大于位移阈值且触摸点的数量产生变化,且,翻转角度大于翻转角度阈值,智能手机将显示屏的显示方式由第一显示方式切换为第二显示方式。
综上所述,通过设置显示屏的触摸信息对应的第一条件和终端的翻转角度对应的第二条件,判断获取到的显示屏的触摸信息和终端的翻转角度是否符合切换条件,当触摸信息满足第一条件时且翻转角度满足第二条件时,终端自动将显示屏的显示方式由第一显示方式切换为第二显示方式,用户无需通过手动切换显示屏的显示方式,也不会因触摸信息误判无法切换显示屏的显示方式。
图8示出了本申请另一个示例性实施例提供的显示方式的切换方法的流程图。该方法应用于终端上,该显示屏包覆终端的机体正面和机体背面,该显示屏包括位于机体正面上的第一显示区域和位于机体背面上的第二显示区域,该方法包括如下步骤:
步骤801,用户手持手机。
用户可以以任意方式持握智能手机。图9示出了本申请一个示例性实施例提供的用户手持终端进行翻转的示意图。示意性的,以机体正面面对用户为例进行说明,用户右手手持智能手机,第一显示区域111面对用户,用户右手的大拇指位于第三显示区域113,其余四指位于第四显示区域(手机的另一边缘),如图9的(a)所示。
步骤802,重力传感器检测手机的翻转角度是否大于翻转角度阈值。
示意性的,用户由坐姿变为仰卧,智能手机也随用户翻转一定的角度,相比于图9的(a),产生了机体角度115(如图9的(b)所示),示意性的,该机体角度115是30°,重力传感器获取翻转角度等于该机体角度115对应的角度(30°),翻转角度阈值是15°,则智能手机判断翻转角度大于翻转角度阈值,进入步骤803a;示意性的,该翻转角度是80°,翻转角度阈值是90°,则智能手机判断翻转角度小于翻转角度阈值,进入步骤803b。可选地,翻转角度阈值是终端的默认设置,或,用户可自定义设置翻转角度阈值,或,通过终端内构建神经网络模型,根据用户的使用习惯、历史记录智能生成翻转角度阈值。
可选地,用户通过终端的设置选项,设置该翻转角度阈值。可选地,用户可通过拖动滑动条,调整翻转角度阈值,或者,直接在输入框中输入翻转角度阈值。在一个示例中,翻转角度阈值可从0°变化到360°。
比如,使用该终端的用户是年轻人(比如,年龄在20岁至30岁之间),设置的翻转角度阈值在90°至180°的范围内;使用该终端的用户是老年人(比如,年龄在55岁至65岁之间),设置的翻转角度阈值在40°至80°的范围内;用户使用该终端进行竞速类游戏时,比如,赛车游戏,设置的翻转角度阈值在85°至160°的范围内;用户使用该终端进行阅读时,比如,阅读书籍,设置的翻转角度阈值在30°至90°的范围内。
步骤803a,检测触摸信号和压力信号。
示意性的,智能手机检测触摸信号和压力信号,获取触摸属性信息。可选地,触摸属性信息包括:触摸点的位置坐标、触摸点的面积、触摸点的数量和压力信号对应的触摸点的压力。
示意性的,用户由坐姿变为仰卧,智能手机的翻转角度大于翻转角度阈值,终端检测显示屏的触摸信号和压力信号。
可选地,终端根据获取的触摸信息可判断当前触摸点的面积,从而能够计 算出触摸点的数量(也即用户的手指数量),在通过压力传感器获取触摸点的压力后,终端可根据触摸点的压力进一步判断通过触摸面积所计算的触摸点的数量是否正确。
步骤803b,取消切换显示屏的显示方式。
重力传感器检测智能手机的翻转角度小于翻转角度阈值,则取消切换智能手机的显示屏的显示方式。
示意性的,如图9所示,智能手机的翻转角度大于翻转角度阈值,显示屏的触摸信息未发生任何改变,则终端取消切换显示屏的显示方式。
步骤804,触摸信息是否发生变化。
在获取触摸属性信息后,智能手机检测触摸属性信息是否发生变化。可选地,当上述触摸属性信息中至少一种触摸属性信息的变化程度分别达到各自的目标程度且终端的翻转角度大于翻转角度阈值时,进入步骤805;若触摸属性信息未发生属性变化,则进入步骤803b。示意性的,如图9的所示,在智能手机产生翻转角度后,触摸属性信息未发生变化,则该智能手机的显示屏的显示方式不进行切换。
步骤805,将显示屏的显示方式切换为第二显示方式。
示意性的,智能手机在产生翻转角度后,触摸点的数量减少了,则智能手机将显示屏的显示方式由第一显示方式切换为第二显示方式。
步骤806,显示屏的显示方式为第一显示方式。
示意性的,智能手机在产生翻转角度后,上述任何一种触摸属性信息未发生改变,则智能手机的显示方式不进行切换,仍为第一显示方式(或初始显示方式)。
可选地,当用户手持终端时,根据用户的姿势不同,终端的翻转角度不同,比如,用户坐着手持智能手机时产生的翻转角度和用户躺卧姿态手持智能手机时产生的翻转角度不同。
以翻转角度阈值是20°,以重力传感器获取一段时间内终端的状态为基准进行说明。在一个示例中,用户坐在椅子上手持智能手机,第一显示区域111正面对用户(如图9的(a)所示),智能手机产生了机体角度115,该机体角度115为0°,重力传感器获取智能手机的翻转角度等于机体角度115对应的角度(0°),以该状态为智能手机的基准状态;如图9的(b)所示,用户倚靠在沙发(非躺卧姿势)上手持智能手机,智能手机产生了机体角度115,比如,该机体角度 115是30°,重力传感器获取智能手机的翻转角度等于机体角度115对应的角度(30°),该翻转角度大于翻转角度阈值(20°),相比于图9的(a)所示,用户的持握姿势未发生改变,也即触摸点的属性信息未发生变化,此时,智能手机的显示方式不会发生切换,面向用户的显示区域呈亮屏状态,背对用户的显示区域呈息屏状态。如图9的(c)所示,当用户躺卧在床上时,智能手机产生了机体角度115,比如,该机体角度115是80°,重力传感器获取翻转角度等于机体角度115对应的角度(80°),该翻转角度大于翻转角度阈值(20°),相比于图9的(a)所示,用户的持握姿势未发生改变,也即触摸点的属性信息未发生变化,此时,智能手机的显示方式不会发生切换,面向用户的显示区域呈亮屏状态,背对用户的显示区域呈息屏状态。
在一个示例中,用户以上述方式手持智能手机,手臂自然垂下行走,第一显示区域111面向用户的腿部位置,当用户将智能手机举起面向自己的面部位置时,用户持握姿势未发生改变,也即触摸点的属性信息未发生变化;即使该过程产生的翻转角度大于翻转角度阈值,智能手机的显示方式同样不会发生变化。
以下为本申请的装置实施例,对于装置实施例中未详细描述的细节,可以结合参考上述方法实施例中相应的记载,本文不再赘述。
图10示出了本申请的一个示例性实施例提供的显示方式的切换装置的结构示意图。该装置可以通过软件、硬件或者两者的结合实现成为终端的全部或一部分,该装置包括:显示模块1010、获取模块1020和控制模块1030,其中,显示模块1010是可选的模块。
显示模块1010,用于采用第一显示方式显示,第一显示方式是第一显示区域呈亮屏状态,第二显示区域呈息屏状态的显示方式;
获取模块1020,用于获取显示屏的触摸信息和终端的翻转角度;
控制模块1030,用于当触摸信息满足第一条件且终端的翻转角度满足第二条件时,将显示屏的显示方式由第一显示方式切换为第二显示方式,第二显示方式是第一显示区域呈息屏状态,第二显示区域呈亮屏状态的显示方式。
在一个可选的实施例中,触摸信息包括显示屏的触摸属性信息;所述控制模块1030,还用于当触摸属性信息的变化程度达到目标程度且终端的翻转角度大于翻转角度阈值时,将显示屏的显示方式由第一显示方式切换为第二显示方 式。
在一个可选的实施例中,触摸属性信息包括触摸点的位置坐标;所述控制模块1030,还用于当触摸点的位置坐标的位移变化大于位移阈值,且,终端的翻转角度大于翻转角度阈值时,将显示屏的显示方式由第一显示方式切换为第二显示方式。
在一个可选的实施例中,触摸属性信息还包括触摸点的面积;所述控制模块1030,还用于当触摸点的面积变化量大于面积变化阈值,且,终端的翻转角度大于翻转角度阈值时,将显示屏的显示方式由第一显示方式切换为第二显示方式。
在一个可选的实施例中,触摸属性信息还包括触摸点的数量;所述控制模块1030,还用于当触摸点的数量变化,且,终端的翻转角度大于翻转角度阈值时,将显示屏的显示方式由第一显示方式切换为第二显示方式。
在一个可选的实施例中,触摸属性信息还包括触摸点的压力;所述控制模块1030,还用于当触摸点的压力变化量大于压力变化阈值,且,终端的翻转角度大于翻转角度阈值时,将显示屏的显示方式由第一显示方式切换为第二显示方式。
在一个可选的实施例中,触摸属性信息包括以下至少两种:触摸点的位置坐标、触摸点的面积、触摸点的数量和触摸点的压力;所述控制模块1030,还用于当至少两种触摸属性信息的变化程度分别达到各自的目标程度且终端的翻转角度大于翻转角度阈值时,将显示屏的显示方式由第一显示方式切换为第二显示方式。
图11示出了本申请一个示例性实施例提供的计算机设备1100的结构框图。该计算机设备1100可以是:智能手机或平板电脑。计算机设备1100还可能被称为用户设备、移动终端、便携式终端等其他名称。
所述计算机设备的屏幕包括主显示区和辅显示区,所述主显示区和所述辅显示区具有不同的制造属性,所述辅显示区下方设置有光学器件。计算机设备1100可以是手机、平板电脑、电子书阅读器、多媒体播放设备、可穿戴设备、膝上型便携计算机等电子设备。
参照图11,计算机设备1100可以包括以下一个或多个组件:处理组件1102,存储器1104,电源组件1106,多媒体组件1108,音频组件1110,输入/输出(I/O) 接口1112,传感器组件1114,以及通信组件1116。
处理组件1102通常控制终端1100的整体操作,诸如与显示,电话呼叫,数据通信,相机操作和记录操作相关联的操作。处理组件1102可以包括一个或多个处理器1120来执行指令,以完成上述的方法的全部或部分步骤。此外,处理组件1102可以包括一个或多个模块,便于处理组件1102和其它组件之间的交互。例如,处理组件1102可以包括多媒体模块,以方便多媒体组件1108和处理组件1102之间的交互。
存储器1104被配置为存储各种类型的数据以支持在计算机设备1100的操作。这些数据的示例包括用于在计算机设备1100上操作的任何应用程序或方法的指令,联系人数据,电话簿数据,消息,图片,视频等。存储器1104可以由任何类型的易失性或非易失性存储设备或者它们的组合实现,如静态随机存取存储器(SRAM),电可擦除可编程只读存储器(EEPROM),可擦除可编程只读存储器(EPROM),可编程只读存储器(PROM),只读存储器(ROM),磁存储器,快闪存储器,磁盘或光盘。
电源组件1106为计算机设备1100的各种组件提供电力。电源组件1106可以包括电源管理系统,一个或多个电源,及其它与为计算机设备1100生成、管理和分配电力相关联的组件。
多媒体组件1108包括在所述计算机设备1100和用户之间的提供一个输出接口的屏幕。在一些实施例中,屏幕可以包括液晶显示器(LCD)和触摸面板(TP)。如果屏幕包括触摸面板,屏幕可以被实现为触摸屏,以接收来自用户的输入信号。触摸面板包括一个或多个触摸传感器以感测触摸、滑动和触摸面板上的手势。所述触摸传感器可以不仅感测触摸或滑动动作的边界,而且还检测与所述触摸或滑动操作相关的持续时间和压力。在一些实施例中,多媒体组件1108包括一个前置摄像头和/或后置摄像头。当计算机设备1100处于操作模式,如拍摄模式或视频模式时,前置摄像头和/或后置摄像头可以接收外部的多媒体数据。每个前置摄像头和后置摄像头可以是一个固定的光学透镜系统或具有焦距和光学变焦能力。
音频组件1110被配置为输出和/或输入音频信号。例如,音频组件1110包括一个麦克风(MIC),当计算机设备1100处于操作模式,如呼叫模式、记录模式和语音识别模式时,麦克风被配置为接收外部音频信号。所接收的音频信号可以被进一步存储在存储器1104或经由通信组件1116发送。在一些实施例中, 音频组件1110还包括一个扬声器,用于输出音频信号。
I/O接口1112为处理组件1102和外围接口模块之间提供接口,上述外围接口模块可以是键盘,点击轮,按钮等。这些按钮可包括但不限于:主页按钮、音量按钮、启动按钮和锁定按钮。
传感器组件1114包括一个或多个传感器,用于为计算机设备1100提供各个方面的状态评估。例如,传感器组件1114可以检测到计算机设备1100的打开/关闭状态,组件的相对定位,例如所述组件为计算机设备1100的显示器和小键盘,传感器组件1114还可以检测计算机设备1100或计算机设备1100一个组件的位置改变,用户与计算机设备1100接触的存在或不存在,计算机设备1100方位或加速/减速和计算机设备1100的温度变化。传感器组件1114可以包括接近传感器,被配置用来在没有任何的物理接触时检测附近物体的存在。传感器组件1114还可以包括光传感器,如CMOS或CCD图像传感器,用于在成像应用中使用。在一些实施例中,该传感器组件1114还可以包括加速度传感器,陀螺仪传感器,磁传感器,压力传感器或温度传感器。
通信组件1116被配置为便于计算机设备1100和其它设备之间有线或无线方式的通信。计算机设备1100可以接入基于通信标准的无线网络,如Wi-Fi、2G、3G、4G、5G,或者后续演进系统,或它们的组合。在一个示例性实施例中,通信组件1116经由广播信道接收来自外部广播管理系统的广播信号或广播相关信息。在一个示例性实施例中,所述通信组件1116还包括近场通信(NFC)模块,以促进短程通信。例如,在NFC模块可基于射频识别(RFID)技术,红外数据协会(IrDA)技术,超宽带(UWB)技术,蓝牙(BT)技术和其它技术来实现。
在示例性实施例中,计算机设备1100可以被一个或多个应用专用集成电路(ASIC)、数字信号处理器(DSP)、数字信号处理设备(DSPD)、可编程逻辑器件(PLD)、现场可编程门阵列(FPGA)、控制器、微控制器、微处理器或其它电子元件实现,用于执行上述显示方式的切换方法。
在示例性实施例中,还提供了一种包括非临时性计算机可读存储介质,其上存储有计算机程序,上述计算机程序可由装置1100的处理器1120执行以完成上述显示方式的切换方法。例如,所述非临时性计算机可读存储介质可以是ROM、随机存取存储器(RAM)、CD-ROM、磁带、软盘和光数据存储设备等。本领域技术人员可以理解,图11中示出的结构并不构成对计算机设备1100的限定,可以包括比图示更多或更少的组件,或者组合某些组件,或者采用不同 的组件布置。
本申请还提供一种计算机设备,该计算机设备包括处理器和存储器,该存储器中存储有至少一条指令、至少一段程序、代码集或指令集,至少一条指令、至少一段程序、代码集或指令集由处理器加载并执行以实现上述各方法实施例提供的显示方式的切换方法。
本申请还提供了一种计算机可读存储介质,该存储介质中存储有至少一条指令、至少一段程序、代码集或指令集,该至少一条指令、至少一段程序、代码集或指令集由处理器加载并执行以实现上述各方法实施例提供的显示方式的切换方法。
应当理解的是,在本文中提及的“多个”是指两个或两个以上。“和/或”,描述关联对象的关联关系,表示可以存在三种关系,例如,A和/或B,可以表示:单独存在A,同时存在A和B,单独存在B这三种情况。字符“/”一般表示前后关联对象是一种“或”的关系。
本领域普通技术人员可以理解实现上述实施例的全部或部分步骤可以通过硬件来完成,也可以通过程序来指令相关的硬件完成,所述的程序可以存储于一种计算机可读存储介质中,上述提到的存储介质可以是只读存储器,磁盘或光盘等。
以上所述仅为本申请的可选实施例,并不用以限制本申请,凡在本申请的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本申请的保护范围之内。

Claims (16)

  1. 一种显示方式的切换方法,其特征在于,所述方法应用于终端上,所述终端的显示屏包覆所述终端的机体正面和机体背面;所述显示屏包括位于所述机体正面上的第一显示区域和位于所述机体背面上的第二显示区域;所述方法包括:
    采用第一显示方式显示,所述第一显示方式是所述第一显示区域呈亮屏状态,所述第二显示区域呈息屏状态的显示方式;
    获取所述显示屏的触摸信息和所述终端的翻转角度;
    当所述触摸信息满足第一条件且所述终端的翻转角度满足第二条件时,将所述显示屏的显示方式由所述第一显示方式切换为第二显示方式,所述第二显示方式是所述第一显示区域呈所述息屏状态,所述第二显示区域呈所述亮屏状态的显示方式。
  2. 根据权利要求1所述的方法,其特征在于,所述触摸信息包括所述显示屏的触摸属性信息;
    所述当所述触摸信息满足第一条件且所述终端的翻转角度满足第二条件时,将所述显示屏的显示方式由所述第一显示方式切换为第二显示方式,包括:
    当所述触摸属性信息的变化程度达到目标程度且所述终端的翻转角度大于翻转角度阈值时,将所述显示屏的显示方式由所述第一显示方式切换为所述第二显示方式。
  3. 根据权利要求2所述的方法,其特征在于,所述触摸属性信息包括触摸点的位置坐标;
    所述当所述触摸属性信息的变化程度达到目标程度且所述终端的翻转角度大于翻转角度阈值时,将所述显示屏的显示方式由所述第一显示方式切换为所述第二显示方式,包括:
    当所述触摸点的位置坐标的位移变化大于位移阈值,且,所述终端的翻转角度大于翻转角度阈值时,将所述显示屏的显示方式由所述第一显示方式切换为所述第二显示方式。
  4. 根据权利要求2所述的方法,其特征在于,所述触摸属性信息还包括触摸点的面积;
    所述当所述触摸属性信息的变化程度达到目标程度且所述终端的翻转角度大于翻转角度阈值时,将所述显示屏的显示方式由所述第一显示方式切换为所述第二显示方式,包括:
    当所述触摸点的面积变化量大于面积变化阈值,且,所述终端的翻转角度大于所述翻转角度阈值时,将所述显示屏的显示方式由所述第一显示方式切换为所述第二显示方式。
  5. 根据权利要求2所述的方法,其特征在于,所述触摸属性信息还包括触摸点的数量;
    所述当所述触摸属性信息的变化程度达到目标程度且所述终端的翻转角度大于翻转角度阈值时,将所述显示屏的显示方式由所述第一显示方式切换为所述第二显示方式,包括:
    当所述触摸点的数量变化,且,所述终端的翻转角度大于所述翻转角度阈值时,将所述显示屏的显示方式由所述第一显示方式切换为所述第二显示方式。
  6. 根据权利要求2所述的方法,其特征在于,所述触摸属性信息还包括触摸点的压力;
    所述当所述触摸属性信息的变化程度达到目标程度且所述终端的翻转角度大于翻转角度阈值时,将所述显示屏的显示方式由所述第一显示方式切换为所述第二显示方式,包括:
    当所述触摸点的压力变化量大于压力变化阈值,且,所述终端的翻转角度大于所述翻转角度阈值时,将所述显示屏的显示方式由所述第一显示方式切换为所述第二显示方式。
  7. 根据权利要求1至6任一所述的方法,其特征在于,所述触摸属性信息包括以下至少两种:触摸点的位置坐标、触摸点的面积、触摸点的数量和触摸点的压力;
    当所述至少两种触摸属性信息的变化程度分别达到各自的目标程度且所述 终端的翻转角度大于翻转角度阈值时,将所述显示屏的显示方式由所述第一显示方式切换为所述第二显示方式。
  8. 一种显示方式的切换装置,其特征在于,所述装置设置有终端,所述终端的显示屏包覆所述终端的机体正面和机体背面,所述显示屏包括位于所述机体正面上的第一显示区域和位于所述机体背面上的第二显示区域,所述装置包括:
    显示模块,用于采用第一显示方式显示,所述第一显示方式是所述第一显示区域呈亮屏状态,所述第二显示区域呈息屏状态的显示方式;
    获取模块,用于获取所述显示屏的触摸信息和所述终端的翻转角度;
    控制模块,用于当所述触摸信息满足第一条件且所述终端的翻转角度满足第二条件时,将所述显示屏的显示方式由所述第一显示方式切换为第二显示方式,所述第二显示方式是所述第一显示区域呈所述息屏状态,所述第二显示区域呈所述亮屏状态的显示方式。
  9. 根据权利要求8所述的装置,其特征在于,所述触摸信息包括所述显示屏的触摸属性信息;
    所述控制模块,还用于当所述触摸属性信息的变化程度达到目标程度且所述终端的翻转角度大于翻转角度阈值时,将所述显示屏的显示方式由所述第一显示方式切换为所述第二显示方式。
  10. 根据权利要求9所述的装置,其特征在于,所述触摸属性信息包括触摸点的位置坐标;
    所述控制模块,还用于当所述触摸点的位置坐标的位移变化大于位移阈值,且,所述终端的翻转角度大于翻转角度阈值时,将所述显示屏的显示方式由所述第一显示方式切换为所述第二显示方式。
  11. 根据权利要求9所述的装置,其特征在于,所述触摸属性信息还包括触摸点的面积;
    所述控制模块,还用于当所述触摸点的面积变化量大于面积变化阈值,且, 所述终端的翻转角度大于所述翻转角度阈值时,将所述显示屏的显示方式由所述第一显示方式切换为所述第二显示方式。
  12. 根据权利要求9所述的装置,其特征在于,所述触摸属性信息还包括触摸点的数量;
    所述控制模块,还用于当所述触摸点的数量变化,且,所述终端的翻转角度大于所述翻转角度阈值时,将所述显示屏的显示方式由所述第一显示方式切换为所述第二显示方式。
  13. 根据权利要求9所述的装置,其特征在于,所述触摸属性信息还包括触摸点的压力;
    所述控制模块,还用于当所述触摸点的压力变化量大于压力变化阈值,且,所述终端的翻转角度大于所述翻转角度阈值时,将所述显示屏的显示方式由所述第一显示方式切换为所述第二显示方式。
  14. 根据权利要求8至13所述的装置,其特征在于,所述触摸属性信息包括以下至少两种:触摸点的位置坐标、触摸点的面积、触摸点的数量和触摸点的压力;
    所述控制模块,还用于当所述至少两种触摸属性信息的变化程度分别达到各自的目标程度且所述终端的翻转角度大于翻转角度阈值时,将所述显示屏的显示方式由所述第一显示方式切换为所述第二显示方式。
  15. 一种计算机设备,其特征在于,所述计算机设备包括:处理器和存储器,所述存储器中存储有至少一条指令、至少一段程序、代码集或指令集,所述至少一条指令、所述至少一段程序、所述代码集或指令集由所述处理器加载并执行,以实现如权利要求1至7任一项所述的显示方式的切换方法。
  16. 一种计算机可读存储介质,其特征在于,所述存储介质中存储有至少一条指令、至少一段程序、代码集或指令集,所述至少一条指令、所述至少一段程序、所述代码集或指令集由所述处理器加载并执行,以实现如权利要求1 至7任一项所述的显示方式的切换方法。
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