WO2018068364A1 - 用于页面显示的方法、装置、图形用户界面及移动终端 - Google Patents

用于页面显示的方法、装置、图形用户界面及移动终端 Download PDF

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Publication number
WO2018068364A1
WO2018068364A1 PCT/CN2016/106681 CN2016106681W WO2018068364A1 WO 2018068364 A1 WO2018068364 A1 WO 2018068364A1 CN 2016106681 W CN2016106681 W CN 2016106681W WO 2018068364 A1 WO2018068364 A1 WO 2018068364A1
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Prior art keywords
page
graphic
topography
displayed
detecting
Prior art date
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PCT/CN2016/106681
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English (en)
French (fr)
Inventor
董锋
高璋
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.)
Filing date
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 EP16918930.5A priority Critical patent/EP3521987A4/en
Priority to BR112019007639A priority patent/BR112019007639A2/pt
Priority to JP2019520107A priority patent/JP2019537118A/ja
Priority to US16/341,699 priority patent/US20220091736A1/en
Priority to KR1020197013494A priority patent/KR20190064633A/ko
Priority to CN201680090053.4A priority patent/CN109804340B/zh
Publication of WO2018068364A1 publication Critical patent/WO2018068364A1/zh

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    • G06COMPUTING; CALCULATING OR COUNTING
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    • 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
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    • 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
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    • 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
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    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
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    • G06F3/017Gesture based interaction, e.g. based on a set of recognized hand gestures
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    • 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
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    • 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
    • G06F3/16Sound input; Sound output
    • G06F3/167Audio in a user interface, e.g. using voice commands for navigating, audio feedback
    • GPHYSICS
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    • G06F2203/048Indexing scheme relating to G06F3/048
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    • G06F2203/048Indexing scheme relating to G06F3/048
    • G06F2203/04804Transparency, e.g. transparent or translucent windows

Definitions

  • the present invention relates to the field of electronic technologies, and in particular, to a method, an apparatus, a graphical user interface, and a mobile terminal for page display.
  • mobile terminals have been able to achieve more and more computer functions. People can not only communicate through mobile terminals, but also perform entertainment activities, life management, mobile office, and the like through mobile terminals. As a full-featured, more portable and easy-to-use smart device, mobile terminals are gradually replacing desktop computers or laptop computers, becoming the mainstream electronic devices that people use every day.
  • the display size of mobile terminals usually needs to be smaller than that of desktop computers or laptop computers, and the content and number of functions performed by mobile terminals are increasing. Therefore, mobile terminals are more common and can only be present at present.
  • the display interface displays a portion of the complete page, and the user often needs to scroll through the display or pan the remaining content.
  • the page operation when sliding the page operation, it often slides to the boundary of the page, including the top, bottom, left border, and right border, but when the page slides to the border of the page, if the mobile terminal is not visible
  • the user may misunderstand the operation. For example, if you do not know whether the input you have entered is valid, the user will continue to repeat the invalid operation, which will affect the operation efficiency and affect the experience.
  • a method and apparatus for displaying a page on a mobile terminal having a display device according to some embodiments of the present application, to eliminate the disadvantages and problems of inconvenience caused by the user in using the mobile terminal for interaction in the prior art.
  • a display is provided on a mobile terminal having a display device a method of displaying a page, the mobile terminal detects an operation action of the user, and moves a page displayed on the display device according to an operation action of the user, when detecting that the page moves to a page boundary according to the operation action and still detects an operation action And changing a topography of the first graphic, and displaying a change topography of the first graphic adjacent to the page boundary on the page, the changed topography and the initial topography before the first graphic deformation different.
  • the method includes: first, the mobile terminal displays a page on the display device; during the displaying of the page, the mobile device detects an operation action of the user; when the operation action is detected, Displaying the page in a first direction in response to the operational action, wherein the page includes one or more graphics, the one or more graphics being displayed on the display device in their initial topography, ie Said that when the display device moves the page display to a certain area of the page, the graphics in the area of the page are displayed, and the graphics are displayed on the display device with their initial topography; then, the The mobile device detects whether the page has moved to a page boundary, and when it is detected that the page boundary is reached when the page is moved in the first direction and the operation action is still detected, displaying the first graphic on the display device a topography, wherein the first graphic is adjacent to the page boundary in the one or more graphics displayed on the display device Pattern, the first pattern of topography changes its initial morphology different.
  • the graphic on the page is a text, a list of items, a digital image or an icon, and one or more of the above-mentioned graphics may be included on one page.
  • the shape change or the dimensional change of the graphic is a change of the shape and size of the graphic itself, wherein a partial area of the graphic is removed from the display area of the display device, and the remaining part is displayed in the The case of the display area of the display device does not belong to the change in the shape and size of the graphic itself.
  • the varying topography of the graphic comprises a modified topography of the initial topography in any one or any combination of the following: shape change, dimensional change, transparency change, color change.
  • the mobile terminal displays a change in the dynamic change of the first graphic in response to detecting the continuous operation action when the display device displays the topography of the first graphic.
  • a topography and the action range of the operation action within a preset range is larger, the change of the topography of the first figure and the topography of the initial shape is greater, when the action range of the operation action is detected to exceed
  • the preset range the change profile of the first graphic is no longer dynamically changed, and a static change topography of the first graphic is displayed.
  • the mobile terminal displays a change profile of the dynamic change of the first graphic in response to detecting the continuous operation action when the display device displays the topography of the first graphic. And the larger the range of motion of the operation action, the larger the change of the shape of the first figure and the topography of the initial shape.
  • the mobile terminal after the display device displays the topography of the first graphic, the mobile terminal performs shape restoration on the first graphic in response to the operation action being no longer detected.
  • the changed topography of the first graphic is restored to the initial topography of the first graphic, and the initial topography of the first graphic is displayed.
  • the mobile terminal displays, on the display device, a gradation animation in which the first graphic gradually returns from its changing shape to its initial topography until the initial shape of the first graphic is displayed. To demonstrate the process of recovering the topography of the first graphic.
  • the display continues on the display device: Damping the motion mode, continuing to decelerate the page in the first direction; detecting that the page is moved in the first direction, moving until the page boundary has not decelerated to zero, then When the page reaches the page boundary, the changed topography of the first graphic is displayed, wherein the changed shape of the first graphic is different from its initial topography.
  • the mobile terminal continues to move when it reaches a page boundary in response to moving the page in the first direction and still detects the operation action
  • the page simultaneously displays an area beyond the boundary of the page (the area is, for example, a blank area, a solid color area, etc.), wherein the area is different from the page and can be easily visually distinguished by the user; the operation is no longer detected
  • the page is moved in a second direction opposite the first direction until the area is no longer displayed.
  • the mobile terminal has a touch display screen
  • the step of detecting an operation action of the user includes: detecting a touch action of the user on the touch display screen.
  • the detecting, by the mobile terminal, the user's operation action may further include at least one of: detecting a voice instruction of the user; detecting a gesture motion of the user; and detecting a physical motion of the user.
  • the mobile terminal detects that the boundary of the page is reached when the page is moved in the first direction, and still detects the operation action, and may also prompt by playing a prompt sound effect.
  • the first direction is a horizontal direction, a vertical direction, or an oblique direction on the display device.
  • the mobile terminal displays a neighboring page boundary in the one or more graphics when it detects that the page boundary is reached when the page is moved and the operation action can still be detected.
  • the change topography of the at least two graphics adjacent to the page boundary in the one or more graphics may be different from the topography of the initial topography, for example, according to the distance from the page boundary.
  • Different, different topographical differences are generated, for example, the closer the distance from the boundary of the page, the greater the difference in topography, that is, the distance from the first graphic to the boundary of the page is smaller than the distance from the second graphic to the a distance of the boundary of the page, a difference between the changed topography of the displayed second graphic and the initial topography of the second graphic, greater than the displayed changed topography of the first graphic, and the first The difference in the initial shape of the graphic.
  • a method for displaying a page on a mobile terminal having a display device includes: detecting an operation action of a user; and in response to detecting the operation action, Moving a page displayed on the display device in a direction, wherein the page includes one or more graphics, the one or more graphics being displayed on the display device in their initial topography;
  • the change shape of the first graphic and the change shape of the second graphic are displayed, wherein the first graphic and The second graphic is a graphic adjacent to the page boundary in the one or more graphics displayed on the display device, and the changed shape of the first graphic is different from its initial shape.
  • the change profile of the second graphic is different from its initial topography.
  • the mobile terminal can also display one or more graphics of the page on the display device, adjacent to the page.
  • a distance of the first graphic to the page boundary is smaller than a distance of the second graphic to the page boundary
  • the display shows the changed topography of the first graphic and the second graphic
  • the step of changing the topography includes: displaying a change topography of the first graphic and a change topography of the second graphic, wherein the displayed changed topography of the second graphic and the initial topography of the second graphic The difference is greater than the difference between the changed topography of the first graphic displayed and the initial topography of the first graphic.
  • the method performed by the mobile terminal provides interactive information that is more intuitive, concise, and interesting in the process of user interaction, thereby improving the user experience.
  • the mobile terminal displays the moving the page in a damped motion manner according to the operation action, using a principle of inertia to be closer to the real effect.
  • the deceleration motion is continued in the moving direction of the page when the operation action is stopped until the page deceleration is zero. If it is detected that the moving speed is not reduced to zero before the moving of the page in the first direction reaches the page boundary, the changed topography of the first graphic adjacent to the boundary in the page is displayed.
  • the mobile terminal detects an operation action of the user; in response to detecting the operation action, moving a page displayed on the display device in a first direction, wherein The page includes one or more graphics, the one or more graphics being displayed on the display device in their initial topography; in response to no longer detecting the operational motion, in a damped motion manner, Depressing to move the page in the first direction; in response to detecting that the moving speed of the page is not reduced to zero, moving the page in the first direction to reach a page boundary, displaying a change of the first graphic a topography, wherein the first graphic is a graphic adjacent to the page boundary in the one or more graphics displayed on the display device, the first graphics having a different changed shape from its initial topography.
  • the mobile terminal stops moving the page in response to detecting that the page is moved in the first direction to reach the page boundary.
  • the mobile terminal continues to decelerate to move the page in response to detecting that the page is moved in the first direction to reach the page boundary, while displaying an area beyond the page boundary, wherein The area is different from the page; in response to detecting that the moving speed of the page is reduced to zero, the page is moved in a second direction opposite to the first direction until the area is no longer displayed; When the area is no longer displayed, the initial topography of the first graphic is displayed.
  • a mobile terminal includes: a display device; one or more processors; a memory; the memory for storing a computer program; and the processor for operating the The computer program, the process of: detecting a user's operation action; moving the page displayed on the display device in a first direction in response to detecting the operation action, wherein the page includes one or more a graphic, the one or more graphics being displayed in an initial topography; in response to reaching a boundary of the page when the page is moved in the first direction, and still detecting the operational action, displaying a variation topography of at least one of the plurality of graphics adjacent to the boundary, wherein the changed topography of the graphic is different from the initial topography.
  • the mobile device further performs the flow of continuing to decelerate to move the page while detecting that the page has moved to the page boundary in response to detecting that the page is moved in the first direction An area of the page boundary, wherein the area is different from the page; in response to detecting that the moving speed of the page is reduced to zero, moving the page in a second direction opposite to the first direction, Until the area is no longer displayed; when the area is no longer displayed, the initial topography of the first graphic is displayed.
  • a device for displaying a page on a mobile terminal having a display device includes: a detecting module, configured to detect an operation action of the user; and a mobile display module, In response to detecting the operational action, moving a page displayed on the display device in a first direction, wherein the page includes one or more graphics, the one or more graphics having their initial appearance Displayed on the display device; the deformation display module is configured to reach the page boundary when the page is moved in the first direction, and still detect the operation action, And displaying a change topography of the first graphic, wherein the first graphic is a graphic adjacent to the page boundary in the one or more graphics displayed on the display device, the shape of the first graphic The appearance is different from its initial appearance.
  • the deformation display module includes: a first display subunit, configured to display a change profile of the dynamic change of the first graphic in response to detecting the continuous operation action, and the operation The greater the range of motion of the motion within the preset range, the greater the variation of the topography of the first graphic and the topography of the initial topography, and in response to detecting that the range of motion of the operational motion exceeds the predetermined range Displaying a static change topography of the first graphic.
  • the deformation display module includes: a second display subunit, configured to display a change profile of the dynamic change of the first graphic in response to detecting the continuous operation action, and the operation The larger the range of motion of the motion, the greater the variation of the shape of the first figure and the topography of the initial shape.
  • the apparatus further includes: a restoration display module, configured to display the first graphic after the change profile of the first graphic graphic is responsive to no longer detecting the operation action The initial shape.
  • the resume display module includes: a resume display subunit, configured to display a gradation animation in which the first graphic gradually recovers from its changed topography to its initial topography until the first graphic is displayed Initial appearance.
  • the apparatus further includes: an area display module, configured to continue in response to the page boundary being reached when the page is moved in the first direction, and still detecting the operation action Moving the page while displaying an area beyond the boundary of the page, wherein the area is different from the page, and in response to the second, opposite the first direction, after the operational input is no longer detected Move the page in the direction until the area is no longer displayed.
  • an area display module configured to continue in response to the page boundary being reached when the page is moved in the first direction, and still detecting the operation action Moving the page while displaying an area beyond the boundary of the page, wherein the area is different from the page, and in response to the second, opposite the first direction, after the operational input is no longer detected Move the page in the direction until the area is no longer displayed.
  • a device for displaying a page on a mobile terminal having a display device includes: a detecting module, configured to detect an operation action of the user; and a mobile display module, In response to detecting the operational action, moving a page displayed on the display device in a first direction, wherein the page includes one or more graphics, the one or Displaying a plurality of graphics on the display device with their initial topography; and deforming the display module for responding to the page boundary when the page is moved in the first direction, and still detecting the operation action, Displaying a change topography of the first graphic and a change topography of the second graphic, wherein the first graphic and the second graphic are adjacent to the one or more graphics displayed on the display device
  • the graph of the page boundary is different from the initial topography of the first graph, and the changed shape of the second graph is different from the initial topography.
  • the deformation display device is configured to: display a change topography of the first graphic and a change topography of the second graphic, wherein the displayed changed shape of the second graphic is The difference in the initial topography of the second graphic is greater than the difference in the displayed topography of the first graphic and the initial topography of the first graphic.
  • a device for displaying a page on a mobile terminal having a display device includes: a detecting module, configured to detect an operation action of the user; and a mobile display module, In response to detecting the operational action, moving a page displayed on the display device in a first direction, wherein the page includes one or more graphics, the one or more graphics having their initial appearance Displayed on the display device, in response to no longer detecting the operation action, in a damped motion manner, continuing to decelerate the page in the first direction; the deformation display module is configured to respond to the detected The moving speed of the page is not reduced to zero.
  • the changing shape of the first graphic is displayed, wherein the first graphic is displayed on the display device.
  • a pattern of the one or more graphics adjacent to the boundary of the page, the changed shape of the first graphic being different from its initial topography.
  • the apparatus further includes: an area display module, for continuing to decelerate to move the page while displaying in response to detecting that the page is moved in the first direction to reach the page boundary An area beyond the boundary of the page, wherein the area is different from the page; a rebound display module for responding to the opposite of the first direction in response to detecting that the moving speed of the page is reduced to zero The second direction moves the page until the area is no longer displayed; the display module is restored for displaying the initial topography of the first graphic when the area is no longer displayed.
  • a mobile terminal having a display device having a display device according to some embodiments of the present application.
  • a graphical user interface wherein the graphical user interface includes: a portion of a page displayed on a display device, wherein the page includes one or more graphics; wherein, in response to detecting an operation of the user, Moving the page in a direction, wherein the one or more graphics are displayed in an initial topography; the page boundary is reached in response to moving the page in the first direction, and the operation is still detected Acting to display a change topography of the first graphic, wherein the first graphic is a graphic adjacent to the page boundary of the one or more graphics displayed on the display device, the first graphic The shape of the change is different from its initial shape.
  • an implementation module includes an input unit and an object control for implementing animation display on a display device, the object control including a control interface frame and a page operation Activating an animation engine, the page operation prompt animation engine comprising: an event processing unit, an animation algorithm unit, an event callback mechanism unit, and a graphics rendering unit; wherein the input unit acquires an input of the user operation action; the event processing unit Detecting a user operation action, converting the user operation action into sliding displacement information; the animation algorithm unit calculates position information of the page according to the sliding displacement information; the event callback mechanism unit is configured according to the page position information and the sliding displacement Information, determining whether the moving page reaches the page boundary, and determining a deformation algorithm and a rendering algorithm; the animation algorithm unit calculates, according to the deformation algorithm, scaling information of a graphic of a page displayed on the display device; the graphic rendering unit is configured according to The page Location information, i.e. information rendering graphics scaling algorithm for graphics drawing, drawing data is generated, and
  • FIG. 1 is a schematic structural diagram of a mobile terminal according to some embodiments
  • FIG. 2 illustrates a software diagram in a mobile terminal provided in accordance with some embodiments
  • FIG. 3 is a schematic diagram showing the appearance of a mobile terminal according to some embodiments.
  • 4(a) and 4(o) illustrate an exemplary schematic diagram for displaying a topographical change on a mobile terminal, provided in accordance with some embodiments
  • 5(a) and 5(e) illustrate an exemplary schematic diagram of moving a display of the page on a display device of a mobile terminal, according to some embodiments
  • FIG. 6 illustrates a flow chart of a method of panning a page and prompting the page to reach an edge, in accordance with some embodiments
  • FIG. 7(a) and 7(c) illustrate an exemplary schematic diagram of topographical variations of a scrolling list provided in accordance with some embodiments
  • FIG. 8(a) and FIG. 8(c) illustrate an exemplary schematic diagram of topographical variations of a scrolling list provided in accordance with some embodiments
  • 9(a) and 9(c) illustrate an exemplary schematic diagram of topographical variations of a scrolling list provided in accordance with some embodiments
  • Figure 9(d) shows an exemplary schematic diagram of topographical variations provided in accordance with some specific scenario embodiments.
  • Figure 10 (a) Figure 10 (c) shows an exemplary schematic diagram of a topographical change of a scrolling list provided in accordance with some embodiments;
  • FIGS. 11(a) and 11(f) are diagrams showing an exemplary schematic diagram of a topographical change of a panning thumbnail provided in accordance with some embodiments;
  • 12(a) and 12(c) illustrate an exemplary schematic diagram of a topographical change of a panning icon provided in accordance with some embodiments
  • FIG. 13(a) and 13(d) illustrate an exemplary schematic diagram of topographical variations of panning thumbnails provided in accordance with some embodiments
  • FIGS. 14(a) and 14(c) are diagrams showing an exemplary schematic diagram of a topographical shift of a thumbnail image provided in accordance with some specific scene embodiments;
  • 15(a) and 15(c) illustrate an illustration of a topographical change of a panning thumbnail provided in accordance with some embodiments.
  • 15(d) and 15(f) illustrate an exemplary schematic diagram of topographical variations of panning thumbnails provided in accordance with some embodiments
  • 16 shows a schematic diagram of a module that can be used to operate on a mobile terminal, provided in accordance with some embodiments
  • Figure 17 shows a schematic diagram of an apparatus that can be used to operate on a mobile terminal, provided in accordance with some embodiments.
  • the mobile terminal may be a mobile phone (also known as a smart phone), a tablet personal computer (PDA), a personal digital assistant (PDA), an e-book reader (English: e-book reader) or Wearable Device, Virtual Reality Interactive Device, etc.
  • the mobile terminal can pass 2G (second generation mobile phone communication technical specification), 3G (third generation mobile phone communication technical specification), 4G (Fourth generation mobile phone communication technology specifications), 5G (fifth generation mobile phone communication technology specifications) or W-LAN (wireless local area network) or communication methods that may occur in the future establish communication with the network.
  • 2G second generation mobile phone communication technical specification
  • 3G third generation mobile phone communication technical specification
  • 4G Fullth generation mobile phone communication technology specifications
  • 5G fifth generation mobile phone communication technology specifications
  • W-LAN wireless local area network
  • FIG. 1 is a schematic structural diagram of a mobile terminal 100, which may be a mobile phone, a tablet, a PDA (Personal Digital Assistant), a POS (Point of Sales), according to some embodiments.
  • Terminal equipment such as on-board computers.
  • the mobile terminal can support a variety of applications, such as a phone application, an instant messaging application, a digital camera and/or camera application, a web browsing application, a music and/or video playback application, a video communication application, a social network. Network applications, financial and financial applications, weather applications, shopping applications, office applications, etc.
  • FIG. 1 shows a block diagram of a portion of a structure of a mobile terminal 100 provided in accordance with some embodiments.
  • the mobile terminal 100 includes an RF (Radio Frequency) circuit 110, a memory 120, an input unit 130, a display unit 140, a sensor 150, an audio circuit 160, a WiFi (Wireless Fidelity) module 170, and a processor. 180, and power supply 190 and other components.
  • RF Radio Frequency
  • the mobile terminal structure shown in FIG. 1 is only an example of implementation, and does not constitute a limitation of the mobile terminal, and may include more or less components than those illustrated, or may combine some components. , or different parts layout.
  • the components of the mobile terminal 100 are specifically described below with reference to FIG. 1 :
  • the RF circuit 110 can be used for transmitting and receiving information or during a call, and receiving and transmitting the signal. Specifically, after receiving the downlink information of the base station, the processor 180 processes the data. In addition, the uplink data is designed to be sent to the base station.
  • RF circuits include, but are not limited to, an antenna, at least one amplifier, a transceiver, a coupler, an LNA (Low Noise Amplifier), a duplexer, and the like.
  • RF circuitry 110 can also communicate with the network and other devices via wireless communication.
  • the wireless communication may use any communication standard or protocol, including but not limited to GSM (Global System of Mobile communication), GPRS (General Packet Radio Service), CDMA (Code Division Multiple Access). , Code Division Multiple Access), WCDMA (Wideband Code Division Multiple Access), LTE (Long Term Evolution), e-mail, SMS (Short Messaging Service), and the like.
  • the memory 120 can be used to store software programs and modules, and the processor 180 executes various functional applications and data processing of the mobile terminal 100 by running software programs and modules stored in the memory 120.
  • the memory 120 may mainly include a storage program area and a storage data area, wherein the storage program area may store an operating system, an application required for at least one function (such as a sound playing function, an image playing function, etc.), and the like; the storage data area may be stored according to The data created by the use of the mobile terminal 100 (such as audio data, phone book, etc.) and the like.
  • memory 120 can include high speed random access memory, and can also include non-volatile memory, such as at least one magnetic disk storage device, flash memory device, or other volatile solid state storage device.
  • the input unit 130 can be configured to receive input digital or character information and to generate a key signal or an action signal input related to user settings and function control of the mobile terminal 100.
  • the input unit 130 may include one or more of the touch panel 131, the camera 132, and other input devices 132.
  • the touch panel 131 can be a touch display screen or a touch panel.
  • the touch display screen is a device that integrates a display screen and a touch area
  • the touch panel is a touch of a device that does not display a visual output different from the touch display screen.
  • the sensitive area, the touchpad may be a touch sensitive surface separated from the display panel or an extension of the touch sensitive surface formed by the touch screen, and the touch panel 131 may collect a touch operation on or near the user (such as a user using a finger, a stylus, etc.) Any suitable object or accessory is operated on or near the touch panel 131, and the corresponding connecting device is driven according to a preset program.
  • the touch panel 131 may include two parts: a touch detection device and a touch controller.
  • the touch detection device detects the touch orientation of the user, and detects a signal brought by the touch operation, and transmits the signal to the touch controller; the touch controller receives the touch information from the touch detection device, converts the touch information into contact coordinates, and sends the touch information.
  • the processor 180 is provided and can receive commands from the processor 180 and execute them.
  • the touch panel 131 can be implemented in various types such as resistive, capacitive, infrared, and surface acoustic waves.
  • the camera 132 may be one or more analog cameras, a digital camera, a depth camera, or an unlimited number of combinations of the foregoing, and the camera 132 may collect video signals and transmit the video signals to the processor 180 to An input signal is acquired by the processor 180 from the video signal (such as identifying a user's gesture operation from the video signal).
  • the input unit 130 may also include other input devices 133.
  • the other input device 133 may include, but is not limited to, one or more of a physical keyboard, a function key (such as a volume control button, a switch button, etc.), a trackball, a mouse, a joystick, a brain wave identifier, a gyroscope, and the like.
  • the input unit 130 can cover the microphone 162, the sensor 150, and the like.
  • the microphone 162 can collect the audio signal and transmit the audio signal to the processor to collect the input signal from the audio signal by the processor. (such as identifying the user's voice operation from the audio signal).
  • the display unit 140 can be used to display information input by the user or information provided to the user and various menus of the mobile terminal 100.
  • the display unit 140 may include one or more of the display panel 141, the projection device 142, or other display devices 143. Alternatively, an LCD (Liquid Crystal may be used).
  • the display panel 141 is configured in the form of a display, a liquid crystal display, an OLED (Organic Light-Emitting Diode), or the like.
  • the touch panel 131 can cover the display panel 141. When the touch panel 131 detects a touch operation on or near the touch panel 131, the touch panel 131 transmits to the processor 180 to determine the type of the touch event, and then the processor 180 according to the touch event.
  • the type provides a corresponding visual output on display panel 141.
  • the touch panel 131 and the display panel 141 are two independent components to implement the input and input functions of the mobile terminal 100 in FIG. 1
  • the touch panel 131 and the display panel 141 may be
  • the input and output functions of the mobile terminal 100 are implemented by integration.
  • the projection device 142 may be a pico projector or a 3D holographic projector, wherein the pico projector may be a device mounted on the smart glasses device and projecting an image on the retina of the human eye through a translucent prism for imaging. It may be a device that performs imaging by projecting on a display screen or a display screen of the mobile terminal.
  • a 3D (three-dimensional) holographic projector can directly project in a physical space using the principles of interference and diffraction to present a true three-dimensional image of the object.
  • the display unit 140 may also include other display devices 142.
  • the other display device 142 may include, but is not limited to, one of a wireless local area network, a USB data line (Universal Serial Bus), an HDMI (High Definition Multimedia Interface) cable, and the like.
  • One or more display devices (such as televisions, etc.) connected to the mobile terminal.
  • the mobile terminal 100 may also include at least one type of sensor 150, such as a light sensor, a motion sensor, and other sensors.
  • the light sensor may include an ambient light sensor and a proximity sensor, wherein the ambient light sensor may adjust the brightness of the display panel 141 according to the brightness of the ambient light, and the proximity sensor may close the display panel 141 when the mobile terminal 100 moves to the ear. And / or backlight.
  • the accelerometer sensor can detect the magnitude of acceleration in all directions (usually three axes). When it is stationary, it can detect the magnitude and direction of gravity. It can be used to identify the attitude of the mobile terminal (such as horizontal and vertical screen switching).
  • the mobile terminal 100 can also be configured with gyroscopes, barometers, hygrometers, thermometers, infrared sensors and other sensors, I will not repeat them here.
  • the audio circuit 160, the speaker 161, and the microphone 162 can provide an audio interface between the user and the mobile terminal 100.
  • the audio circuit 160 can transmit the converted electrical signal of the received audio data to the speakerphone
  • the 161 is converted into a sound signal output by the speaker 161; on the other hand, the microphone 162 converts the collected sound signal into an electrical signal, which is received by the audio circuit 160 and converted into audio data, and then processed by the audio data output processor 180. It is transmitted via RF circuit 110 to, for example, another mobile terminal, or audio data is output to memory 120 for further processing.
  • WiFi is a short-range wireless transmission technology
  • the mobile terminal 100 can help users to send and receive emails, browse web pages, and access streaming media through the WiFi module 170, which provides wireless broadband Internet access for users.
  • FIG. 1 shows the WiFi module 170, it can be understood that it does not belong to the essential configuration of the mobile terminal 100, and may be omitted as needed within the scope of not changing the essence of the invention.
  • the processor 180 is a control center of the mobile terminal 100 that connects various portions of the entire mobile terminal using various interfaces and lines, by running or executing software programs and/or modules stored in the memory 120, and recalling stored in the memory 120.
  • the processor 180 may include one or more processing units; preferably, the processor 180 may integrate an application processor and a modem processor, where the application processor mainly processes an operating system, a user interface, an application, and the like.
  • the modem processor primarily handles wireless communications. It can be understood that the above modem processor may not be integrated into the processor 180.
  • the mobile terminal 100 further includes a power source 190 (such as a battery) for supplying power to the various components.
  • a power source 190 such as a battery
  • the power source can be logically connected to the processor 180 through the power management system to manage functions such as charging, discharging, and power management through the power management system. .
  • the mobile terminal 100 may further include a camera, a Bluetooth module, and the like, and details are not described herein again.
  • FIG. 2 is a schematic diagram of software components of the mobile terminal provided according to some embodiments, the mobile terminal 100 further has a software component, which may be stored in the memory 120, and may include an operating system 121, a communication module 122, A graphics module 123, a text input module 124, a positioning system module 125 (such as a Global Positioning System (GPS)), an application 126, and the like.
  • a software component which may be stored in the memory 120, and may include an operating system 121, a communication module 122, A graphics module 123, a text input module 124, a positioning system module 125 (such as a Global Positioning System (GPS)), an application 126, and the like.
  • GPS Global Positioning System
  • the operating system 121 such as Android (Android), Apple System (IOS), UNIX Systems, Window systems, etc., are used to control various software components and/or drivers that manage general system tasks (such as power management, etc.) and facilitate communication between various hardware and software components.
  • Android Android
  • IOS Apple System
  • UNIX Systems UNIX Systems
  • Window systems etc.
  • software components and/or drivers that manage general system tasks (such as power management, etc.) and facilitate communication between various hardware and software components.
  • Communication module 122 includes various software components and the like for managing data received through RF circuitry 100 and/or WiFi module 170.
  • the graphics module 123 includes various known software components and the like for displaying various graphics on the display unit 140, wherein the graphics include any object that can be displayed to a user, including but not limited to text, item lists, icons (eg, Soft key icons, application icons, etc. displayed on the touch display, digital images, videos, animations, etc.
  • icons eg, Soft key icons, application icons, etc. displayed on the touch display, digital images, videos, animations, etc.
  • the text input module 124 can provide a soft keyboard through the graphics module to input the corresponding text of the user operation into various applications.
  • the location system module 125 is used to determine the location of the mobile terminal and provide location information for use by various applications, for example, to a map application.
  • the application 126 may include, but is not limited to, at least one of the following: a phone book module 126a, an instant messaging module 126b, a web browsing module 126c, a camera module 126d, a video playing module 126e, a social network module 126f, a music playing module 126g, a calendar
  • the widget component 126k may include a calculator widget, a weather widget, a notification widget, a calendar widget, and the like.
  • the mobile terminal After receiving the input signal of the user to the input unit 130, the mobile terminal performs corresponding operations and processing, generates a corresponding output signal, and transmits the corresponding output signal to the display unit 140. Thereby the mobile terminal can interact with the user in a visually operable manner.
  • the input unit 130 and the display unit 140 are implemented by a touch screen display.
  • the mobile terminal may further include one or more keys, which may be physical keys or soft keys displayed by the display unit.
  • the physical button may be an input obtained by actual pressure pressing
  • the physical button may include a button for turning on/off the device power and the locking device, and a button for adjusting the volume
  • the soft key may obtain an input by the aforementioned contact.
  • the mobile terminal 100 may also accept voice input for activating some functions through the microphone 162, or accept an action input for activating some functions through the sensor 150, such as obtaining a shaking action by a gravity sensor or the like.
  • a mobile terminal having a touch display screen as a display device is taken as an example, and a detailed description is continued.
  • display devices such as pico projectors or 3D holographic projectors, which are still applicable, may still be an alternative to the following embodiments.
  • FIG. 3 illustrates a schematic diagram of a mobile terminal with a touch display screen provided with a speaker 161, a camera 132, a sensor 150, and some physical buttons 210 (eg, volume control keys, screen locks/), in accordance with some embodiments.
  • the mobile terminal 100 has a touch display 200, and the user can input control commands to various touch operations of the touch display 200, including contacting one or more fingers 202 or a stylus.
  • the area controls the object pointed to.
  • the contact may include one or more consecutive clicks, stay on the touch screen 200 and slide (from left to right, right to left, up/down, circle, etc.).
  • the mobile terminal 100 displays the current page translation process in the sliding direction on the touch display screen 200.
  • the touch display screen 200 is used to display a user interface that interacts with a user, can display the user interface in an intuitive manner, and exhibits interaction with the user in an easy-to-operate manner.
  • the user interface is used to present one or more pages of a single level or multiple levels, the user interface may be presented using a plurality of interactive frames, with reference to Figures 4(a) and 4(b), for example, the user interface 300 Presented in a tabbed frame, the user selects any tab 301, the user interface 300 goes to the page corresponding to the tab, and the tab 301 corresponds to the page 302; as shown in FIG. 4(c) and FIG. 4(d), the user interface 300 It can also be presented in a drawer style.
  • the user interface expands a hidden page 305 for navigation (the sub-interface 305 is displayed on the user interface when the point is opened, and can be all or Partially overlaid on the current interface 304), the page 305 is a page with an entry into other pages.
  • the user interface 300 is presented in a dotted manner, ie, the icon for entering the sub-interface is hidden.
  • an icon such as a dot icon
  • the user clicks on the icon, around the icon the hidden icon for entering the page is expanded; the user interface 300 can also be as shown in FIG. 4(f) and FIG. 4(g).
  • the interaction framework can have multiple layers of pages.
  • the framework shown in each page in the foregoing embodiment can still continue to have its lower-level pages, and the implementation of the lower-level pages is not limited.
  • 4(b), 4(d), 4(d), 4(e), 4(g), 4(i), 4(k), 4(m), 4 (o) shows a schematic diagram of a specific application scenario in order to facilitate understanding of the above description, but the specific scenes and characters in the drawings are not limited to those shown in the drawings.
  • the touch display 200 of the mobile terminal 100 may be displayed as a complete page or a part of a page directly viewed on the touch display 200, and each page may include a plurality of graphics.
  • the graphic may be composed of text, table, image, animation, video, audio, etc. display elements, which may be electronic documents, item lists, thumbnails, digital images, application icons, and the like.
  • only the graphic in the partial page is displayed on the touch display screen 200, and the process of panning the page is displayed according to the motion of the operating action by detecting the operation action of the user, for example, scrolling the display item list, panning Displaying an electronic document, rotating display multi-screen switching, etc., wherein the motion of the operation action includes acceleration, speed, direction, displacement, etc., the process of translating the page may determine the corresponding direction, translation rate, and acceleration according to the motion of the operation motion.
  • the page 300 when a portion of the page 300 is displayed on the touch display 200 of the mobile terminal 100, the page 300 has a plurality of graphics 400, including at a certain moment.
  • the touch screen 200 and the page 300 are rotated by the user on the touch screen 200 to move the page 200 to move left and right.
  • the touch display 200 and the page 300 can be slid left or right or moved up and down by the user to move the page 200 to move. display.
  • the mobile terminal 100 also generates a corresponding movement change according to a change in the rate, amplitude, direction, and acceleration of the sliding operation.
  • the acceleration of the translation and translation of the page 300 may be in accordance with friction, ie, simulated damping motion. the way.
  • the content of the above page 300 may include any one of text, image, video, audio, or a combination thereof, and any content of the page 300 may also have a hyperlink attribute that can jump to other pages.
  • the page can also be translated in a manner that simulates a frictional motion.
  • FIG. 6 illustrates a flow chart of a method of panning a page, provided in accordance with some embodiments.
  • the method provides a method for prompting a user to currently reach a page boundary.
  • step S101 the user's operation action is detected.
  • the detection process of the mobile terminal 100 is performed in real time, continuously.
  • the input device of the mobile terminal 100 After the input device of the mobile terminal 100 acquires the input signal, it sends it to the processor 180 to process the input signal, and detects the user's operation action therefrom.
  • the detection method may employ any one or several of the following methods:
  • the touch display screen acquires a touch signal and sends the touch signal to the processor, where the processor detects a touch action that meets a preset condition from the touch signal.
  • the touch action is performed by the user's finger or The movement of the stylus on the touch display;
  • a physical button acquisition pressing signal is sent to the processor, the processor detecting a pressing input that meets a preset condition from one or more pressing signals to detect a pressing instruction;
  • the microphone acquires an audio signal and sends the audio signal to the processor, and the processor performs voice recognition and analysis on the audio signal to detect the voice command;
  • the camera acquires a video signal and sends it to the processor, where the processor performs a video signal Image recognition and analysis to detect gestures, limb movements, eye movements;
  • the brain wave acquiring device directly acquires the brain wave signal of the user and sends the signal to the processor, and the processor analyzes the brain wave signal to detect the thinking instruction of the user.
  • step S102 in response to detecting the operation action, moving a page displayed on the display device in a first direction, wherein the page includes one or more graphics, the one or more The graphic is displayed in its original shape.
  • each page may include one or more graphics, and the multiple graphics may also be a plurality of graphics, wherein the graphics may be composed of text, table, image, animation, video, audio, and the like.
  • the graphic can be an electronic document, text, item list, digital image, icon, animation, video, and the like.
  • the graphic is a short message list.
  • the graphic may also be other lists, such as an email message list, a contact list, a third party instant messaging message list, a folder list, a memo list, an album name list, a financial billing list, a web browsing Message list, system settings item list, document list, bookmark list, and more.
  • the electronic document may be a document including text, table, image, animation, video, audio, etc., such as a text document, a presentation document, an email, a spreadsheet, a web page, etc.
  • the thumbnails may be gallery thumbnails, application portal thumbnails, etc., which may be application icons, category icons, and the like.
  • the first direction refers to a direction on the touch display screen 200 that moves the page, and may be a vertical direction, a horizontal direction, and an oblique direction.
  • the first direction corresponds to the direction of the operation action, but may not be completely the same.
  • the corresponding first direction is a vertical direction.
  • the angle between the sliding direction of the touch screen and the vertical direction of the user is less than the tilt angle range (for example, but not limited to 30°), it may be detected according to the projection principle.
  • the sliding direction of the user's touch action is projected to the vertical direction, and the page is translated in the vertical direction of the projection.
  • the corresponding first direction on the touch display screen 200 is a vertical direction.
  • the rate of movement of the page may correspond to the rate of movement of the user's operational actions, bringing the user's operational experience closer to reality, in some embodiments, when the user's finger is at When the touch display screen slides at a certain speed, the displayed page is driven to translate at a corresponding moving speed. Then, if the user's finger suddenly opens the touch display screen, the page can be decelerated according to the principle of frictional motion until the movement stops.
  • the initial topography is a color, shape, size, transparency, and the like of the graphic when it is normally displayed.
  • step S103 the mobile terminal performs step S103 to determine whether the displayed page in the first direction reaches the boundary of the page, that is, the end of the page. If yes, and the corresponding operation action is still detected, the mobile terminal displays A variation topography of at least one of the adjacent boundaries in the graphics, wherein the changed topography of the graphics is different from the topography of the initial topography.
  • the mobile terminal 100 may also play the prompt sound effect by playing the prompt in response to the boundary of the page being reached when the page is moved in the first direction, and the operation action is still detected. Sound effects, further alert users.
  • the mobile terminal 100 can detect in real time whether moving the page 300 reaches the page boundary.
  • the mobile terminal 100 has a certain processing time from detecting the response.
  • the mobile terminal 100 can be configured to respond when it is detected that the page 300 is about to reach the page boundary.
  • a distance threshold such as, but not limited to, 2 mm
  • the operational action displays a varying topography of at least one of the adjacent boundaries of the plurality of graphics.
  • a time threshold such as, but not limited to, 0.1 second
  • the mobile terminal 100 may also detect that the operation action continues to exceed a certain threshold after detecting that the page 300 reaches the page boundary (for example, but not limited to, moving the page 300 to reach the location) After the page boundary is described, after detecting that the user continues to slide for more than 0.1 seconds, or detecting that the user continues to slide beyond 2 mm, etc., the change profile of at least one of the adjacent boundaries in the plurality of graphics is displayed.
  • the manner in which the foregoing advance response arrives at the page boundary or later responds to the page boundary enables the mobile terminal 100 to prompt the user in a more flexible manner, and more smoothly interact with the user according to the user's usage habits.
  • the manner in which the varying topography of the at least one of the plurality of graphics adjacent to the boundary is displayed may be combined with the embodiments of the present description.
  • all or part of the page 300 is displayed on the touch screen 200, and when the mobile terminal 100 detects an operation of moving the user's finger in the first direction, the page 300 is along Moving in a direction corresponding to the first direction, as shown in FIG. 5(c), when the mobile terminal 100 detects that the boundary of the page coincides with the boundary of the display area of the touch display 200, it determines the current Move the displayed page to the page boundary. For example, as shown in FIG.
  • the user's finger performs a sliding movement from bottom to top or from bottom to top on the touch display screen 200 when moving from top to bottom (ie, the first direction is edge
  • the touch screen 200 moves from the top to the bottom, when the page boundary of the top of the page 400 is reached, the first graphics 400c adjacent to the page boundary of the top of the page 400 may undergo a topographical change, displaying Change the shape.
  • the advance determination may be performed to respond in time when the page reaches the boundary.
  • the determining method may further include: the mobile terminal detects the current moving direction of the page, and moves. a speed, a moving acceleration, and a display boundary on the touch display screen; determining, according to the moving direction, a boundary at which the page is expected to arrive; an estimated time based on the moving speed, the moving acceleration, and an expected arrival boundary; When the time comes, the boundary of the page is detected and the boundary of the display area of the touch display 200, and if so, it is determined that the displayed page reaches the boundary. During this time, when any value of the moving direction, moving speed, and moving acceleration of the page is changed, the calculation is performed again.
  • the topography of the graphic comprises any one or any combination of the following: shape change, dimensional change, transparency change, color change.
  • graphics such as icons, text, thumbnails, lists, etc.
  • graphics gradually change from square to trapezoid and then gradually become triangles
  • the transparency of graphics gradually becomes larger
  • the color of graphics gradually changes from color to gray. Wait.
  • the shape change or the dimensional change of the graphic is a change of the shape and size of the graphic itself, wherein a partial area of the graphic is removed from the display area of the display device, and the remaining part is displayed in the The case of the display area of the display device does not belong to the change in the shape and size of the graphic itself.
  • the graphic adjacent to the boundary may be a graphic or a row of graphics closest to the boundary, or may be a few figures or rows of graphics from the boundary.
  • the item list has a first row, a last row, a first column, and a last column
  • the graphic adjacent to the boundary may be the first row or the last row, the first column or the last column
  • the graphic of the boundary or the adjacent boundary may be the first row.
  • the last line to the third to last row, the first to third columns, or the last column to the third to last column are those skilled in the art should understand that the foregoing description of the first row or the third row is only an illustrative example, and the specific number of neighbors may be specifically set according to actual scenarios, and is not limited thereto.
  • the page may also include one or more graphics that are not adjacent to the boundary, and one or more graphics that are not adjacent to the boundary are always displayed in the initial topography, and the shape does not change.
  • Displaying the changed topography of the adjacent boundary on the page may adopt various preferred manners, for example, displaying the directly changed shape of the graphic, and the changed topography is substituted for the initial topographic display; or, displaying the The graph is in a changing phase, starting from the initial topography to perform a gradual dynamic change of the topography.
  • the change profile may be a change profile that is directly jumped from the initial topography, and is static during the process of detecting the ongoing action after jumping to the change.
  • the mode displays the changed shape of the graphic. For example, when the page moves in the first direction to reach the boundary and the touch action of the user's finger on the touch display screen is detected, the icon of the adjacent boundary in the display page is directly changed from the original size to the icon after the reduced size is displayed. And before the user ends the touch action, the icon of the reduced size is always displayed. For another example, when the page moves in a first direction to reach a boundary and an operation action is detected, an icon showing a neighboring boundary in the page is directly changed from a quadrilateral to a triangular icon. And before the user ends the touch action, the icon that becomes a triangle is displayed all the time.
  • the change profile may be dynamically changed from the initial topography, ie, when the continuous action action is detected, displaying a dynamic change of at least one of the adjacent boundaries in the page.
  • the shape of the change is changed, and the action range of the operation action is larger, and the change of the topography of the change form and the initial form is larger, that is, the change of the change form and the initial form are different.
  • the icon of the adjacent boundary in the page is directly reduced from the original size, and the touch is dynamically changed.
  • the larger the range of motion movement the smaller the size of the icon.
  • the range of the movement of the touch motion is determined by the range of movement along the first direction, that is, the distance that the movement of the touch motion corresponds to the movement in the first direction is larger, and the range of movement of the touch motion is larger.
  • the change profile may dynamically change from the initial topography when the operation action does not exceed the set range, but after a certain range is exceeded, the change profile does not change gradually. That is, the continuous operation action is detected, the change profile of the dynamic change of the at least one graphic adjacent to the boundary in the page is displayed, and the action range of the operation action within the preset range is larger, the change shape The more the topography of the appearance and its initial topography changes, that is, the more different the appearance of the changed topography and the initial topography; when the action range of the operating action exceeds the preset range, the static change of the graphic is displayed. Morphology.
  • the icon of the adjacent boundary in the page is directly reduced from the original size, and the touch is dynamically changed.
  • the larger the range of motion movement the smaller the size of the icon, and when the range of the touch motion moves beyond the preset range, the size of the icon remains unchanged when the preset range is reached, and is no longer Zoom out.
  • the range of the movement of the touch motion is determined by the range of movement along the first direction, that is, the distance that the movement of the touch motion corresponds to the movement in the first direction is larger, and the range of movement of the touch motion is larger. .
  • the change profile of the graphic may be displayed by changing the size change or the graphic change of the graphic when the boundary is reached.
  • the specific steps include: A1. determining at least one graphic adjacent to the reached boundary in the page, and acquiring the proximity a position coordinate of each pixel point of the at least one graphic of the boundary on the touch display screen; B1. a transformation parameter determining a coordinate of each pixel point according to a size change rule; C1. Determining a new position coordinate of each pixel point according to the transformation parameter; D1. Redrawing and displaying each pixel point of the graphic on its new position coordinate to display a change topography.
  • the shape change may also be displayed by clipping, and the specific steps include: A2. determining at least one graphic adjacent to the reached boundary in the page, and acquiring the proximity a position coordinate of each pixel of the at least one graphic of the boundary on the touch display screen; B2. determining a changed shape according to a size change rule, and determining a pixel to be deleted according to a correspondence relationship between shapes before and after the change
  • the transformation parameter of each pixel coordinate to be retained that is, the initial topography of the graphic is clipped
  • C2. determining the new position coordinate of each pixel to be retained according to the transformation parameter, D2.
  • the new position coordinates are redrawed and displayed to show the shape of the change.
  • the change profile of the graphic may be displayed by transparency or grayscale change when the boundary is reached, specifically, the transformation parameter is determined according to the transparency or grayscale variation rule, and the changed transparency or grayscale is determined according to the transformation parameter.
  • the graphic is redrawn and displayed according to the changed transparency or gray scale to display the changed topography.
  • the change The topography changes with the topography and the initial topography.
  • the transformation parameter may be constant or a variable, and the variable may be related to the displacement D of the user's operation action, the arrangement order N of each graphic to the page boundary, or both.
  • the change topography is displayed or the change profile of the dynamic gradient is displayed according to the user's operation action amplitude, and the pattern of stepwise changes of the plurality of graphics inward from the page boundary.
  • the step change ratio, S is the reduction ratio of the first or first row of graphics arranged from the page boundary.
  • the reduction ratio of the first graphic from the page boundary is 0.2
  • the step of the graphic between adjacent sorting orders The variation ratio is 0.2
  • the reduction ratio of the four patterns adjacent to the page boundary is: the reduction ratio of the first pattern is 0.2 (that is, the size of the changed topography is 20% of the size of the initial topography), and the second
  • the reduction ratio of the graphic is 0.4
  • the reduction ratio of the third graphic is 0.6
  • the reduction ratio of the fourth graphic is 0.8.
  • the method may further include a step S104, in the step S104, after the step S103, the mobile terminal displays a graphic in the page in response to the operation action being no longer detected, wherein the graphic is The initial topography is displayed.
  • the mobile terminal 100 when the user's hand leaves the touch display 200, the mobile terminal 100 no longer detects the operation action, and the graphic displayed in the page is restored from the change profile to the Initial morphology (ie, the initial topography before the change).
  • the manner in which the change topography is restored to the initial topography may be a change in jump, ie, directly from the change topography to the initial topography.
  • the manner of recovering from the changed topography to the initial topography may display a gradual animation in which the graphic gradually recovers from the changed topography to the initial topography, that is, displayed in a certain time. The graphic gradually recovers from the varying topography until the initial topography is displayed.
  • the method further includes, responsive to the boundary of the page being reached when the page is moved in the first direction, and still detecting the action action, continuing to move the page while displaying the page beyond An area of the boundary, wherein the area is different from the page; after the operation input is no longer detected, moving the page in a second direction opposite the first direction until the area is no longer displayed .
  • the mobile terminal 100 may display an area beyond the boundary of the page in a delayed presentation, in particular, the mobile terminal 100 arrives in response to moving the page in the first direction.
  • the page stops moving for a short time, and detects that the operation action continues to exceed a certain threshold (for example, but not limited to, after moving the page 300 to reach the page boundary, detecting that the user continues to slide for more than 0.1 seconds, or detecting the user After continuously sliding beyond 2 mm, etc.), continue to move the page while displaying an area beyond the boundary of the page.
  • a certain threshold for example, but not limited to, after moving the page 300 to reach the page boundary, detecting that the user continues to slide for more than 0.1 seconds, or detecting the user After continuously sliding beyond 2 mm, etc.
  • FIG. 7(a) and 7(c) illustrate an exemplary schematic of a page of a scrolling list provided in accordance with some embodiments.
  • a page display short message list is taken as an example for specific description.
  • the size of each short message in the short message list can be substantially the same.
  • the page follows the slide operation to pan the list of short messages in the display page.
  • the mobile terminal 100 when the mobile terminal 100 detects that the user's finger slides down on the touch display screen, when the page is translated downward to reach the top boundary of the page, the user is still detected to be in touch.
  • the short message list 1 in the page is displayed with a wide and wide animation, that is, the widened short message list 1 is displayed from the page reaching the top boundary, and the sliding distance becomes larger as the user's finger slides downward, and the short message list 1 is displayed. The wider the coming.
  • the animation of the recovery process may be a way of gradually recovering the display, or a mode of immediate recovery (jump recovery).
  • the short message list 3 , the short message list 2 , and the short message list 1 in the page display a reduced animation, that is, the reduced short message list 3 , the short message list 2 , and the short message list 1 are displayed from the page reaching the top boundary.
  • the short message list 2 to the short message list 1 is presented in a decreasing manner, and as shown in FIG.
  • the sliding distance increases with the user's finger, and the short message list 3, the short message list 2, and the short message list 1 are displayed. It is also getting smaller and smaller changes.
  • the short message list 3, the short message list 2, and the short message list 1 are restored to the size of the initial state (ie, the undeformed state) as shown in FIG. 8(c), and the animation of the recovery process may be that the display is gradually restored.
  • the animation method can also be the way to jump recovery.
  • the entire page can be simultaneously displayed as shown in FIG. 9(a).
  • the area 500 that becomes larger as the user's finger slides downward becomes larger and larger than the page boundary.
  • the area 500 beyond the page boundary may be a blank area. After the user releases the finger, as shown in FIG.
  • FIG. 9(d) shows a short message in the user interface when the touch action of the user's finger sliding on the touch display screen is detected when the page boundary is reached in combination with FIG. 9(b) in some specific scene embodiments. Schematic diagram of the change profile of the list.
  • FIG. 10(a) and FIG. 10(c) illustrate an exemplary schematic diagram of a topographical change of a scrolling list provided in accordance with some embodiments, in some embodiments, when a user's finger slides down the touchscreen display, the page When the downward translation reaches the top boundary, the user is still detected to slide down on the touch display screen, and as the user continues to slide, as shown in FIG. 10(b), the short message list 3 and the short message list in the page are displayed. 2.
  • the short message list 1 presents an animation with a shape change, that is, the trapezoidal deformation of the short message list 3, the short message list 2, and the short message list 1 is displayed from the page reaching the top boundary, and the descending type is displayed from the short message list 3, the short message list 2, and the short message list 1.
  • a shape change that is, the trapezoidal deformation of the short message list 3, the short message list 2, and the short message list 1 is displayed from the page reaching the top boundary, and the descending type is displayed from the short message list 3, the short message list 2, and the short message list 1.
  • Zoom out, and as shown in FIG. 10(c) as the user's finger slides down, the distance becomes larger, the short message list 3, the short message list 2, and the short message list 1 are more trapezoidal and the size is getting smaller and smaller, and the short message list 1 is even changed. It is a triangle.
  • the short message list 3, the short message list 2, and the short message list 1 are restored to the size of the initial state (ie, the undeformed state) as shown in FIG. 10(a), and the animation of the recovery process may be that the display is gradually restored.
  • the animation method can also be the way to jump recovery.
  • the display manner of the area 500 shown in FIG. 9(a) and FIG. 9(c) may also be combined, and is not described again for brevity, and is included herein by way of reference.
  • FIG. 11(a) and 11(f) illustrate an exemplary schematic diagram of topographical variations of panning thumbnails provided in accordance with some embodiments.
  • a detailed description is made with a thumbnail of the page display gallery.
  • the size of the same type of thumbnails can be substantially the same.
  • FIG. 11(b) when the user's finger slides down on the touch display screen, When the page is translated down to the top border of the page, the user is still detected to slide down on the touch display screen, and the first row, the second row, and the third row of thumbnails in the page are presented as the user continues to slide.
  • the animation is reduced, that is, the third row, the second row, and the first row of thumbnails are displayed from the page to the top border, and the thumbnails are reduced from the third row and the second row to the first row of thumbnails.
  • FIG. 11(c) as the user's finger slides downward, the distance becomes larger, and the third row, the second row, and the first row of thumbnails are also displayed smaller and smaller (equal reduction).
  • the animation of the recovery process may be a way of gradually recovering the display, or It is the way to recover immediately.
  • the first row, the second row, and the third row of thumbnails in the page display a transparency gradient animation, that is, the third row, the second row, and the first display are displayed from the page reaching the top boundary.
  • the gradient of the transparency of the thumbnails is displayed, and the transparency gradient is large from the third row, the second row to the first row of thumbnails, and the sliding distance becomes larger as the user's finger slides downward, and the third row, the second row, and the first display are displayed.
  • the transparency of the row of thumbnails is also increasing proportionally.
  • the zoom ratios of the first row, the second row, and the third row of thumbnails may follow the following formula:
  • ItemN S+(N-1)*D), where the reduction ratio is S, the decrement ratio of each row of thumbnails is D, and ItemN represents the reduction ratio of the Nth row of thumbnails.
  • the reduction ratio S can vary with the sliding distance of the user, and the smaller the sliding distance is, the smaller the reduction ratio is.
  • FIG. 11( d ) illustrates a user interface in a specific scene embodiment, in conjunction with FIG. 11( b ), when the touch gesture of the user's finger sliding on the touch display screen is detected when the page boundary is reached.
  • FIG. 11( b ) A schematic diagram of the variation of the thumbnail.
  • FIG. 11(e) shows a change in the thumbnail of the user interface in the user interface when the touch action of the user's finger sliding on the touch display screen is still detected when the page boundary is reached in some specific scene embodiments.
  • Figure 11 (f) shows that in some specific scene embodiments, when the page is moved when the page is moved in the first direction, and the operation action is still detected, it is displayed in the A gradation of transparency of at least one of the adjacent edges of the page to display the changed topography to prompt the page to reach the boundary in a manner that is easily perceived by the user.
  • the manner in which the shape is changed by the color change of the graphic for example, from the color graphic to the change of the gray pattern (not shown in the drawing), can also be achieved to be easily perceived by the user.
  • the mode prompt page reached the boundary.
  • FIG. 12(a) and 12(b) illustrate an exemplary schematic diagram of topographical variations of a panning icon provided in accordance with some embodiments.
  • the application icon on the desktop is taken as an example for detailed description.
  • the desktop may have multiple screens, and each screen has one or more application icons, as shown in FIG. 12( a ), at the initial In the state, the size of the application icons on the desktop can be basically the same.
  • the page follows the slide operation to move left or right and switches to another screen after the move reaches a certain level.
  • Figure 13 (a) Figure 13 (c) shows an illustration of a change in topography of a panning thumbnail provided in accordance with some embodiments.
  • the top border starts to display thumbnail 1, thumbnail 2, and thumbnail 3.
  • the reduction ratio S may vary according to the change in the sliding distance of the user. When the user slide distance is larger, the reduction ratio is smaller, that is, the change process shown in FIG. 13b to FIG. 13(c) is displayed.
  • FIG. 13(d) shows a change of thumbnails in the user interface when the touch action of the user's finger sliding on the touch display screen is still detected when the page boundary is reached in combination with FIG. 13b in some specific scene embodiments. Schematic diagram of the topography.
  • FIG. 14(a) and 14(c) are diagrams showing an exemplary schematic diagram of a topographical shift of a thumbnail image provided according to some specific scene embodiments; wherein, as shown in FIG. 14(a), when the user's finger is in touch When the display slides to the left, when the page is shifted to the left to reach the right edge of the page, the user is still detected to slide to the left on the touch display screen, and the thumbnail display in the page is similar to the figure as the user continues to slide.
  • 8(a) The reduced animation shown in FIG. 8b; as shown in FIG. 14b, correspondingly, the thumbnail display in the page is similar to the reduced animation and the area beyond the page 500 shown in FIG. 9(a) and FIG. 9b; 14(c), correspondingly, the thumbnails in the page display an animation similar to the transparency gradient shown in FIG. 11(f), and details are not described herein again.
  • Figure 15 (a) Figure 15 (c) shows an exemplary schematic diagram of a topographical change of a panning thumbnail provided in accordance with some embodiments; wherein, in Figure 15 (a), the size of the thumbnail in the initial state Can be different.
  • the user's finger slides to the left on the touch display screen, when the page is translated downward to reach the right border of the page, the user is still detected to slide to the left on the touch display screen, and as the user continues to slide, as shown in FIG. 15 (b)
  • the deformation of the boundary of the thumbnail 2 and the thumbnail N displayed on the page gradually changes from the rectangular boundary to the curved boundary, and the larger the distance to slide to the left, from FIG. 15(b) to FIG. (c), the deformation of the arc is more and more significant.
  • the animation of the recovery process may be a manner in which the display is gradually restored, or a manner in which the jump is resumed.
  • FIG. 15(d) and FIG. 15(f) are diagrams showing an exemplary schematic diagram of a topographical change of a panning text, such as a webpage text page, in which, in FIG. 15(d), in an initial state,
  • the size of the page can vary.
  • the last line of text displayed at the bottom of the page for example, AAAAituated
  • the font becomes smaller, and the larger the distance to slide upwards, the smaller the font is from Figure 15(e) to Figure 15(f).
  • the deformation is becoming more and more significant.
  • the animation of the recovery process may be a manner in which the display is gradually restored, or a manner in which the jump is resumed.
  • the method further includes: step S105 and step S106, in the step S105, in response to the operation action being no longer detected, continuing to decelerate in the first direction in a damping motion manner Moving the displayed page; in the step S104, in response to the moving speed not being reduced to zero, when the page is moved in the first direction to reach the boundary of the page, then displayed in the page a varying topography of at least one of the adjacent boundaries, wherein the changed topography of the graphic is different from the initial topography.
  • the mobile terminal 100 displays that the page of the touch screen 200 is not stopped immediately, but continues to move in an inertial manner, and is combined with the manner of damping motion (the moving speed is gradually decreasing) Until it stops. If the mobile terminal 100 detects that the page has reached the boundary of the page when the deceleration movement is not reduced to zero, the change profile of at least one of the graphics adjacent to the boundary in the page is started to be displayed.
  • the mobile terminal 100 when the mobile terminal 100 detects that the page has reached a boundary, determining a duration of a gradation animation of a change profile of at least one of the adjacent boundaries according to a moving speed of the page and an inertial acceleration at the time of reaching the boundary And a gradient animation that changes the velocity and changes the shape during wartime, and then restores the initial topography of at least one of the graphics showing the adjacent boundary.
  • 16 shows a schematic diagram of a module that can be used to run on a mobile terminal, including: an input unit 130; a page operation prompt engine 610; an object control 620; a control interface framework 630, in accordance with some embodiments.
  • the input unit 130 is a human-computer interaction input device, and the input of the user operation action is obtained.
  • the content of the input unit 130 is described with reference to the embodiment shown in FIG. 1 , and details are not described herein again. The way of reference is included here.
  • the page operation prompt engine 610 includes an event processing unit 611, an animation algorithm unit 612, a graphics rendering unit 613, and an event callback mechanism unit 614.
  • the event processing unit 611 converts the event of the operation action acquired by the input unit 130 into sliding displacement information (including displacement distance, velocity, direction, etc.), and performs filtering and smoothing processing. Smooth sliding for the same display in different operating systems, giving users a good experience.
  • the animation algorithm unit 612 receives the sliding displacement information, the height information including the sliding displacement, the velocity, the direction, and the page item, and performs segmentation calculation on the page to generate a continuous smooth effect similar to the movement of the real physical page.
  • the animation algorithm unit 612 calculates position information of the page based on the sliding displacement information, and calculates scaling information of a graphic of the page displayed on the display device according to the deformation algorithm.
  • the graphic rendering unit 613 performs graphic effect drawing according to the position information of the page, the scaling information of the graphic, that is, the rendering algorithm, generates drawing data, and then adapts the drawing data to the specific display device by calling the control interface frame. To display on the display device.
  • the graphics rendering unit 613 is a relatively independent parallel processing unit in the processing graphics signal, and uses a separate thread to avoid performance impact on the native function of the operating system and reduce power consumption.
  • the event callback mechanism unit 614 is configured to acquire processing information about the rendering and the algorithm fed back by the processor 180, implement an animation coordination gesture, determine, according to the page location information and the sliding displacement information, whether the mobile page reaches the page boundary, and determine Deformation algorithms and rendering algorithms to produce the correct effect of changing the shape.
  • the object control 620 can be any supported sliding page, and its algorithm is automatically adapted.
  • the algorithm abstracts the page object into a set with graphics, obtains the current scrolling from the page to the boundary state, and outputs a time or animation deformation data related to the hand progress according to the displacement information of the event processing unit 611, and is adapted by the graphics rendering unit 613. Equipped with specific hardware to operate the display system.
  • the control interface framework 630 includes a series of interfaces for interacting with the user and a series of interfaces for invoking the page operations to alert the animation engine to refresh.
  • the event processing unit 611 will time data, sensor data, and detection.
  • the touch operations are all passed to the processor 180 by the progress value of the sliding displacement information converted to 0 ⁇ 1, and the event callback mechanism unit 614 acquires the information about the rendering and algorithm processing fed back by the processor 180, and submits the graphic animation algorithm.
  • the unit 612 performs animation calculation, and the rendering unit 613 performs graphic redrawing, and the data of the re-drawing shape is displayed in the object control 620 through the control interface frame 630.
  • the object control 620 displays the sliding of the page and the changing shape of the graphic.
  • the input unit 130 determines an input of the sliding event (which may be a touch screen sliding, or the gesture recognizes that the user shakes the palm view to switch to the next page.)
  • the event processing unit 611 acquires the displacement information queue, and calculates the distance of the user displacement from the starting point, and then determines whether the boundary of the page has been reached by the event callback mechanism unit 614.
  • the animation algorithm unit 612 calculates scaling information of an item of the current page, and the formula is as follows:
  • the itemIndex indicates the position number of the current graphic from the boundary of the corresponding page. For example, when sliding down to the top boundary of the page, the top number is 0, then the downward number is 1, 2, 3..., and slides up to the bottom boundary of the page. When the bottom number is 0, the upward direction number is 1, 2, 3....
  • ScaleFactor represents the scale of the scale
  • baseFactor represents the scale of the initial shape of the graph (usually set to 1)
  • N is the scale difference between adjacent numbers
  • ScaleFactor baseFactor-itemIndex*N, where the fixed You can adjust the animation effect by starting the zoom and each reduction.
  • the itemHeightFactor represents a parameter related to the height of the graphic, and may be a discontinuity caused by the height of the graphic, and may be a value proportional to the height, and a fixed ratio is set according to the final effect required.
  • Threadshold indicates that from the page boundary to the first few graphics, this is an optimization of the performance performance, such as setting to 3, only need to move from the page boundary to the third graphic (or the third row or the third row) Graphics) Zooming in to achieve a visual overall physical rollback effect.
  • Algorithm result scale(i) creates a separate thread through the graphics rendering system for graphics rendering.
  • Events can also be entered as time or as sensor data.
  • the event is performed periodically with time data to sense that the data is data for the presence of sensor data, and the sensor data meets the time condition, the event is executed.
  • FIG. 17 shows a schematic structural diagram of a device 70 according to some embodiments, wherein the device 70 includes a detection module 701, a mobile display module 702, and a deformation display module 703.
  • the device may be provided in a mobile terminal having a display device, which may be hardware, software or a device combined with hardware and software.
  • the device 70 displays a varying topography of the first graphic in response to the page boundary being reached when the page is moved in the first direction and the operational action is still detected.
  • the detecting module 701 detects an operation action of the user; the mobile display module 702 moves the page displayed on the display device in a first direction in response to detecting the operation action, wherein the page includes one Or a plurality of graphics, the one or more graphics being displayed on the display device in their initial topography; the deformation display module 703 reaching a page boundary in response to moving the page in the first direction, and still Detecting the operation action, displaying a change topography of the first graphic, wherein the first graphic is a graphic adjacent to the page boundary in the one or more graphics displayed on the display device The change shape of the first figure is different from its initial shape.
  • the deformation display module 703 includes: a first display subunit, the first display subunit displays a dynamic change of the first graphic in response to detecting the continuous operation action Hence, and the action range of the operation action is within a preset range, the change of the topography of the first figure and the topography of the initial form change, and in response to detecting the action of the operation action The range is beyond the preset range, and the static change topography of the first graphic is displayed.
  • the deformation display module 703 includes: a second display subunit that displays a dynamic change of the first graphic in response to detecting the continuous operation action The appearance, and the larger the action range of the operation action, the larger the change of the shape of the first figure and the topography of the initial shape.
  • the apparatus 70 further includes: a restoration display module, the restoration display module displays a gradation animation in which the first graphic gradually returns from its changed topography to its initial topography until the first graphic is displayed Initial appearance.
  • the apparatus 70 further includes: an area display module configured to, in response to the page boundary being reached when the page is moved in the first direction, and still detecting the operation action, Continuing to move the page while displaying an area beyond the boundary of the page, wherein the area is different from the page, and in response to the opposite of the first direction, after the operational input is no longer detected Move the page in both directions until the area is no longer displayed.
  • an area display module configured to, in response to the page boundary being reached when the page is moved in the first direction, and still detecting the operation action, Continuing to move the page while displaying an area beyond the boundary of the page, wherein the area is different from the page, and in response to the opposite of the first direction, after the operational input is no longer detected Move the page in both directions until the area is no longer displayed.
  • the device 70 displays at least two adjacent to the page boundary in response to the page boundary being reached when the page is moved in the first direction and the operational action is still detected.
  • the changing shape of the graphic includes the changing shape of the first graphic and the changing shape of the second graphic.
  • the detecting module 701 detects an operation action of the user; the mobile display module 702 moves a page displayed on the display device in a first direction in response to detecting the operation action, wherein the page Included in the one or more graphics, the one or more graphics being displayed on the display device in their initial topography; the deformation display module 703 reaching the page in response to moving the page in the first direction a boundary, and still detecting the operation action, displaying a change topography of the first graphic and a change topography of the second graphic, wherein the first graphic and the second graphic are displayed on the display device
  • the graphic of the one or more graphics adjacent to the boundary of the page, the changed shape of the first graphic is different from the initial topography, and the changed shape of the second graphic is different from the initial topography.
  • the deformation display device 703 displays a variation topography of the first graphic and a variation topography of the second graphic, wherein the displayed changed shape of the second graphic is different from the second a difference in initial appearance of the graphic, greater than a displayed change profile of the first graphic and the first graphic The difference in initial morphology.
  • the device 70 continues to decelerate the moving of the page in the first direction in response to detecting the page in response to detecting the operational action no longer being detected.
  • the moving speed is not reduced to zero, and when the page is moved in the first direction to reach the page boundary, the changed topography of the first graphic is displayed.
  • the detecting module 701 detects an operation action of the user; the mobile display module 702 moves a page displayed on the display device in a first direction in response to detecting the operation action, wherein the page Including one or more graphics, the one or more graphics being displayed on the display device in their initial topography, in response to no longer detecting the operational motion, in a damping motion manner, in the first party And continuing to decelerate to move the page upward; the deformation display module 703 is configured to display the first graphic in response to detecting that the moving speed of the page is not reduced to zero, and moving the page in the first direction to reach a page boundary a change profile, wherein the first graphic is a graphic adjacent to the page boundary in the one or more graphics displayed on the display device, the changed shape of the first graphic and its initial topography different.
  • the apparatus 70 further includes: an area display module, configured to continue to decelerate to move the page while displaying in response to detecting that the page is moved in the first direction to reach the page boundary An area beyond the boundary of the page, wherein the area is different from the page; a rebound display module for responding to the opposite of the first direction in response to detecting that the moving speed of the page is reduced to zero The second direction moves the page until the area is no longer displayed; the display module is restored for displaying the initial topography of the first graphic when the area is no longer displayed.
  • an area display module configured to continue to decelerate to move the page while displaying in response to detecting that the page is moved in the first direction to reach the page boundary An area beyond the boundary of the page, wherein the area is different from the page
  • a rebound display module for responding to the opposite of the first direction in response to detecting that the moving speed of the page is reduced to zero The second direction moves the page until the area is no longer displayed; the display module is restored for displaying the initial topography of the first graphic when the
  • the content of the foregoing detection module 701, the mobile display module 702 and the morphing display module 703 and the respective display sub-units included in the embodiments are described with reference to the methods of the foregoing embodiments and described in conjunction with FIGS. 1 to 16 . The content of this will not be repeated.

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Abstract

根据本申请一些实施例提供的用于页面显示的方法、装置、图形用户界面及移动终端,其中,所述方法包括:首先,检测用户的操作动作;当响应于检测到所述操作动作,在第一方向上移动显示在所述显示装置上的页面,其中,所述页面包括一个或多个图形,所述一个或多个图形以初始形貌进行显示;当响应于在所述第一方向上移动所述页面时到达了所述页面的边界,且仍然检测到所述操作动作,则显示在所述多个图形中邻近边界的至少一个图形的变化形貌,其中,所述图形的变化形貌与所述初始形貌不同。所述方法用以消除现有技术中,用户在使用移动终端进行交互时产生的使用不便的缺陷和问题。49

Description

用于页面显示的方法、装置、图形用户界面及移动终端 技术领域
本发明涉及电子技术领域,尤其涉及一种用于页面显示的方法、装置、图形用户界面、及移动终端。
背景技术
随着不断演化,移动终端已经能够实现越来越多的计算机功能。人们不仅能够通过移动终端进行通信联络,还能够通过移动终端进行娱乐活动、生活管理、移动办公等等。移动终端作为功能齐全、更加便携且易于使用的智能设备,逐渐替代了台式计算机或膝上型计算机,成为人们日常使用的主流电子设备。
为满足移动终端的便携特性,移动终端的显示尺寸通常需要小于台式计算机或膝上型计算机,同时移动终端所执行的功能的内容和数量不断增加,因此,移动终端更常出现,只能在当前显示界面上显示完整的页面的一部分,用户经常需要通过移动操作来滚动显示或平移显示其余部分内容。
例如,用户在使用过程中,在滑动页面操作时,经常会一直滑动到页面的边界,包括顶部、底部、左边界、右边界,但是当页面滑动到页面的边界时,如果移动终端没有可见的反馈提示时,用户可能会对操作产生误解,例如,不知道自己输入的输入是否生效,用户便会持续进行重复无效操作,影响操作效率,进而影响使用体验。
发明内容
根据本申请一些实施例提供的在具有显示装置的移动终端上显示页面的方法和设备,用以消除现有技术中,用户在使用移动终端进行交互时产生的使用不便的缺陷和问题。
一方面,根据本申请一些实施例提供一种在具有显示装置的移动终端上显 示页面的方法,移动终端检测用户的操作动作,并根据用户的操作动作移动显示在所述显示装置上的页面,当检测到所述页面根据操动作移动到了页面边界并且仍然检测到操作动作时,则改变所述第一图形的形貌,并显示所述页面上邻近所述页面边界的第一图形的变化形貌,该变化形貌与其所述第一图形变形前的初始形貌看上去不同。
结合以上,在一些实施例中,所述方法包括:首先,移动终端在显示装置上显示页面;在显示页面过程中,所述移动装置检测用户的操作动作;当检测到所述操作动作,则响应于该操作动作,沿第一方向移动显示所述页面,其中,所述页面包括一个或多个图形,所述一个或多个图形以其初始形貌显示在所述显示装置上,也就是说,当显示装置移动所述页面显示到页面的某个区域时,则显示页面的该区域中所具有的图形,并且这些图形以其初始形貌显示在所述显示装置上;然后,所述移动装置检测页面是否移动到了页面边界,当检测到在所述第一方向上移动所述页面时到达了所述页面边界并且仍然检测到所述操作动作,则在显示装置上显示第一图形的变化形貌,其中,所述第一图形为显示在所述显示装置上的所述一个或多个图形中邻近所述页面边界的图形,所述第一图形的变化形貌与其初始形貌不同。
值得一提的是,所述页面上的图形是文字、项目列表、数字图像或者图标,在一个页面上可以包括上述一种或多种图形。
值得一提的是,所述的图形的形状变化或尺寸变化是图形自身的形状和尺寸发生的变化,其中,对于所述图形的部分区域移出所述显示装置的显示区域,剩余部分区域显示在所述显示装置的显示区域的情况,不属于所述图形自身的形状、尺寸发生的变化。
在一些实施例中,所述图形的变化形貌包括对所述初始形貌进行以下任一种或任几种组合的变化后的形貌:形状变化、尺寸变化、透明度变化、颜色变化。
在一些实施例中,所述移动终端在所述显示装置显示所述第一图形的形貌时,响应于检测到持续的所述操作动作,显示所述第一图形的动态变化的变化 形貌,且所述操作动作在预设范围内的动作范围越大,所述第一图形的变化形貌与其初始形貌的形貌变化越大,当检测到所述操作动作的动作范围超过所述预设范围,则所述第一图形的变化形貌不再动态变化,而显示所述第一图形的一个静态的变化形貌。
在一些实施例中,所述移动终端在所述显示装置显示所述第一图形的形貌时,响应于检测到持续的所述操作动作,显示所述第一图形的动态变化的变化形貌,且所述操作动作的动作范围越大,所述第一图形的变化形貌与其初始形貌的形貌变化越大。
在一些实施例中,所述移动终端在所述显示装置显示所述第一图形的形貌之后,响应于不再检测到所述操作动作时,对所述第一图形进行形貌恢复,将所述第一图形的变化形貌恢复到所述第一图形的初始形貌,并显示所述第一图形的初始形貌。
值得一提的是,所述移动终端在所述显示装置上显示所述第一图形从其变化形貌逐渐恢复到其初始形貌的渐变动画,直至显示所述第一图形的初始形貌,以展示对所述第一图形的形貌恢复的过程。
在一些实施例中,所述移动终端在所述第一方向上移动显示在所述显示装置上的页面之后,当不再检测到所述操作动作,则在所述显示装置上继续显示:以阻尼运动方式、在所述第一方向上继续减速移动所述页面;当检测到在所述第一方向上移动所述页面,一直移动到所述页面边界仍未减速到零,则在所述页面到达所述页面边界时,显示所述第一图形的变化形貌,其中,所述第一图形的变化形貌与其初始形貌不同。
在一些实施例中,结合前述一些实施例,所述移动终端在响应于在所述第一方向上移动所述页面时到达了页面边界,且仍然检测到所述操作动作时,则继续移动所述页面同时显示超出所述页面边界的区域(区域例如是空白区域、纯色区域等),其中,所述区域与所述页面不同,能够容易被使用者视觉区分;在不再检测到所述操作输入之后,沿与所述第一方向相反的第二方向移动所述页面,直至不再显示所述区域。
在一些实施例中,所述移动终端具有触控显示屏,所述的检测用户的操作动作的步骤包括:检测用户在所述触控显示屏的上的触控动作。
在另一些实施例中,移动终端检测用户的操作动作还可以包括以下至少任一项:检测用户的语音指令;检测用户的手势动作;检测用户的肢体动作。
在一些实施例中,所述移动终端检测到在所述第一方向上移动所述页面时到达了所述页面的边界,且仍然检测到所述操作动作,还可以通过播放提示音效进行提示。
结合前述各实施例,所述第一方向为在所述显示装置上的水平方向、垂直方向或倾斜方向。
另一方面,在所述方法中,所述移动终端在检测到移动所述页面时到达了页面边界并仍能够检测到所述操作动作时,则显示所述一个或多个图形中邻近页面边界的至少两个图形的变化形貌。
在一些可能的实现方案中,所述一个或多个图形中邻近页面边界的至少两个图形的变化形貌与其初始形貌的形貌变化程度可以不同,例如,根据到所述页面边界的距离的不同,产生不同的形貌差别,例如,离所述页面边界的距离越近,形貌差别越大,即:所述第一图形到所述页面边界的距离小于所述第二图形到所述页面边界的距离,则所显示的所述第二图形的变化形貌与所述第二图形的初始形貌的差别、大于所显示的所述第一图形的变化形貌与所述第一图形的初始形貌的差别。
结合以上,根据本申请一些实施例提供的一种在具有显示装置的移动终端上显示页面的方法,其中,所述方法包括:检测用户的操作动作;响应于检测到所述操作动作,在第一方向上移动显示在所述显示装置上的页面,其中,所述页面包括一个或多个图形,所述一个或多个图形以其初始形貌显示在所述显示装置上;响应于在所述第一方向上移动所述页面时到达了页面边界,且仍然检测到所述操作动作,则显示第一图形的变化形貌和第二图形的变化形貌,其中,所述第一图形和所述第二图形为显示在所述显示装置上的所述一个或多个图形中邻近所述页面边界的图形,所述第一图形的变化形貌与其初始形貌不同, 所述第二图形的变化形貌与其初始形貌不同。
当然,在所述第一方向上移动所述页面时到达了页面边界,且仍然检测到所述操作动作,移动终端在显示装置上还可以显示页面的一个或多个图形中,邻近所述页面边界的第三图形、第四图形等等的形貌变化。
在一些实施例中,所述第一图形到所述页面边界的距离小于所述第二图形到所述页面边界的距离,所述的显示所述第一图形的变化形貌和第二图形的变化形貌的步骤包括:显示所述第一图形的变化形貌和第二图形的变化形貌,其中,所显示的所述第二图形的变化形貌与所述第二图形的初始形貌的差别、大于所显示的所述第一图形的变化形貌与所述第一图形的初始形貌的差别。
根据以上一些实施例,所述移动终端所执行的方法,在用户交互过程中,提供更为直观、简洁、并具有一定趣味性的交互信息,从而提高用户的使用体验。
再一方面,在所述方法中,所述移动终端根据所述操作动作,利用惯性原理,以阻尼运动的方式显示移动所述页面,以更接近真实效果。当不在检测到所述操作动作时,根据所述操作动作停止时继续沿页面的移动方向进行减速运动,直至页面减速为零。若检测到移动速度未减为零前,在所述第一方向上移动所述页面到达了所述页面边界时,则显示在所述页面中邻近边界的第一图形的变化形貌。
结合以上,根据本申请一些实施例提供的方法,所述移动终端检测用户的操作动作;在响应于检测到所述操作动作,在第一方向上移动显示在所述显示装置上的页面,其中,所述页面包括一个或多个图形,所述一个或多个图形以其初始形貌显示在所述显示装置上;在响应于不再检测到所述操作动作,以阻尼运动方式,在所述第一方向上继续减速移动所述页面;响应于检测到所述页面的移动速度未减为零,在所述第一方向上移动所述页面到达了页面边界,则显示第一图形的变化形貌,其中,所述第一图形为显示在所述显示装置上的所述一个或多个图形中邻近所述页面边界的图形,所述第一图形的变化形貌与其初始形貌不同。
在一些实施例中,移动终端响应于检测到在所述第一方向上移动所述页面到达了所述页面边界,停止移动所述页面。
在另一些实施例中,移动终端在响应于检测到在所述第一方向上移动所述页面到达了所述页面边界,继续减速移动所述页面,同时显示超出所述页面边界的区域,其中,所述区域与所述页面不同;响应于检测到所述页面的移动速度减为零后,沿与所述第一方向相反的第二方向移动所述页面,直至不再显示所述区域;当不再显示所述区域,显示所述第一图形的初始形貌。
再一方面,根据本申请一些实施例提供的一种移动终端包括:一个显示装置;一个或多个处理器;存储器;所述存储器,用于存储计算机程序;所述处理器,用于运行所述计算机程序,执行下述流程:检测用户的操作动作;响应于检测到所述操作动作,在第一方向上移动显示在所述显示装置上的页面,其中,所述页面包括一个或多个图形,所述一个或多个图形以初始形貌进行显示;响应于在所述第一方向上移动所述页面时到达了所述页面的边界,且仍然检测到所述操作动作,则显示在所述多个图形中邻近边界的至少一个图形的变化形貌,其中,所述图形的变化形貌与所述初始形貌不同。
在一些实施例中,所述移动装置还还执行下述流程:在响应于检测到在所述第一方向上移动所述页面到达了所述页面边界,继续减速移动所述页面,同时显示超出所述页面边界的区域,其中,所述区域与所述页面不同;响应于检测到所述页面的移动速度减为零后,沿与所述第一方向相反的第二方向移动所述页面,直至不再显示所述区域;当不再显示所述区域,显示所述第一图形的初始形貌。
再一方面,根据本申请一些实施例提供的一种在具有显示装置的移动终端上显示页面的装置,其中,所述装置包括:检测模块,用于检测用户的操作动作;移动显示模块,用于响应于检测到所述操作动作,在第一方向上移动显示在所述显示装置上的页面,其中,所述页面包括一个或多个图形,所述一个或多个图形以其初始形貌显示在所述显示装置上;变形显示模块,用于响应于在所述第一方向上移动所述页面时到达了页面边界,且仍然检测到所述操作动作, 则显示第一图形的变化形貌,其中,所述第一图形为显示在所述显示装置上的所述一个或多个图形中邻近所述页面边界的图形,所述第一图形的变化形貌与其初始形貌不同。
在一些实施例中,所述变形显示模块包括:第一显示子单元,用于响应于检测到持续的所述操作动作,显示所述第一图形的动态变化的变化形貌,且所述操作动作在预设范围内的动作范围越大,所述第一图形的变化形貌与其初始形貌的形貌变化越大,且响应于检测到所述操作动作的动作范围超过所述预设范围,显示所述第一图形的静态的变化形貌。
在一些实施例中,所述变形显示模块包括:第二显示子单元,用于响应于检测到持续的所述操作动作,显示所述第一图形的动态变化的变化形貌,且所述操作动作的动作范围越大,所述第一图形的变化形貌与其初始形貌的形貌变化越大。
在一些实施例中,所述装置还包括:恢复显示模块,用于在所述所述第一图形图形的变化形貌之后,响应于不再检测到所述操作动作,显示所述第一图形的初始形貌。
在一些实施例中,所述恢复显示模块包括:恢复显示子单元,用于显示所述第一图形从其变化形貌逐渐恢复到其初始形貌的渐变动画,直至显示所述第一图形的初始形貌。
在一些实施例中,所述装置还包括:区域显示模块,用于响应于在所述第一方向上移动所述页面时到达了所述页面边界,且仍然检测到所述操作动作,则继续移动所述页面同时显示超出所述页面边界的区域,其中,所述区域与所述页面不同,且响应于在不再检测到所述操作输入之后,沿与所述第一方向相反的第二方向移动所述页面,直至不再显示所述区域。
再一方面,根据本申请一些实施例提供的一种在具有显示装置的移动终端上显示页面的装置,其中,所述装置包括:检测模块,用于检测用户的操作动作;移动显示模块,用于响应于检测到所述操作动作,在第一方向上移动显示在所述显示装置上的页面,其中,所述页面包括一个或多个图形,所述一个或 多个图形以其初始形貌显示在所述显示装置上;变形显示模块,用于响应于在所述第一方向上移动所述页面时到达了页面边界,且仍然检测到所述操作动作,则显示第一图形的变化形貌和第二图形的变化形貌,其中,所述第一图形和所述第二图形为显示在所述显示装置上的所述一个或多个图形中邻近所述页面边界的图形,所述第一图形的变化形貌与其初始形貌不同,所述第二图形的变化形貌与其初始形貌不同。
在一些实施例中,所述变形显示装置用于:显示所述第一图形的变化形貌和第二图形的变化形貌,其中,所显示的所述第二图形的变化形貌与所述第二图形的初始形貌的差别、大于所显示的所述第一图形的变化形貌与所述第一图形的初始形貌的差别。
再一方面,根据本申请一些实施例提供的一种在具有显示装置的移动终端上显示页面的装置,其中,所述装置包括:检测模块,用于检测用户的操作动作;移动显示模块,用于响应于检测到所述操作动作,在第一方向上移动显示在所述显示装置上的页面,其中,所述页面包括一个或多个图形,所述一个或多个图形以其初始形貌显示在所述显示装置上,当响应于不再检测到所述操作动作,以阻尼运动方式,在所述第一方向上继续减速移动所述页面;变形显示模块,用于响应于检测到所述页面的移动速度未减为零,在所述第一方向上移动所述页面到达了页面边界,则显示第一图形的变化形貌,其中,所述第一图形为显示在所述显示装置上的所述一个或多个图形中邻近所述页面边界的图形,所述第一图形的变化形貌与其初始形貌不同。
在一些实施例中,所述装置还包括:区域显示模块,用于在响应于检测到在所述第一方向上移动所述页面到达了所述页面边界,继续减速移动所述页面,同时显示超出所述页面边界的区域,其中,所述区域与所述页面不同;回弹显示模块,用于响应于检测到所述页面的移动速度减为零后,沿与所述第一方向相反的第二方向移动所述页面,直至不再显示所述区域;恢复显示模块,用于当不再显示所述区域,显示所述第一图形的初始形貌。
再一方面,根据本申请一些实施例提供的一种在具有显示装置的移动终端 上的图形用户界面,其中,所述图形用户界面包括:显示在显示装置上的页面的一部分,其中,所述页面包括一个或多个图形;其中,响应于检测到用户的操作动作,在第一方向上移动所述页面,其中,所述一个或多个图形以初始形貌进行显示;响应于在所述第一方向上移动所述页面时到达了页面边界,且仍然检测到所述操作动作,则显示第一图形的变化形貌,其中,所述第一图形为显示在所述显示装置上的所述一个或多个图形中邻近所述页面边界的图形,所述第一图形的变化形貌与其初始形貌不同。
在一些实施例中,根据本发明一个具体实施方式的实现模块,所述实现模块包括输入单元和用于实现在显示装置上进行动画显示的对象控件,所述对象控件包括控件接口框架和页面操作提示动画引擎,所述页面操作提示动画引擎包括:事件处理单元、动画算法单元、事件回调机制单元和图形渲染单元;其中,所述输入单元获取所述用户操作动作的输入;所述事件处理单元检测用户操作动作,将所述用户操作动作转化为滑动位移信息;所述动画算法单元根据所述滑动位移信息,计算页面的位置信息;所述事件回调机制单元根据所述页面位置信息以及滑动位移信息,判断移动页面是否到达了页面边界,并确定变形算法和渲染算法;所述动画算法单元根据所述变形算法,计算显示在显示装置上的页面的图形的缩放信息;所述图形渲染单元根据所述页面的位置信息、图形的缩放信息即渲染算法,进行图形效果描画,生成描画数据,然后,通过调用控件接口框架将描画数据适配到具体的显示装置中,以在显示装置上进行显示。
附图说明
为了更清楚地说明本发明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要地介绍。在附图中,相同的标好表示相应的部分。显而易见地,下面描述中的附图仅仅是本发明的一些实施例,而非全部。对于本领域普通技术人员来讲,在没有付出创造性劳动的前提下,还可以根据这些附图获得其它的附图。
图1示出根据一些实施例提供的移动终端的结构示意图;
图2示出根据一些实施例提供的移动终端中的软件示意图;
图3示出根据一些实施例提供的移动终端的外观示意图;
图4(a)ˉ图4(o)示出根据一些实施例提供的用于显示在移动终端上的形貌变化的示例性示意图;
图5(a)ˉ图5(e)示出根据一些实施例提供的在移动终端的显示装置上移动显示所述页面的示例性示意图;
图6示出根据一些实施例提供的平移页面并提示页面达到边缘的方法的流程图;
图7(a)ˉ图7(c)示出根据一些实施例提供的滚动列表的形貌变化的示例性示意图;
图8(a)ˉ图8(c)示出根据一些实施例提供的滚动列表的形貌变化的示例性示意图;
图9(a)ˉ图9(c)示出根据一些实施例提供的滚动列表的形貌变化的示例性示意图;
图9(d)示出了根据一些具体场景实施例提供的形貌变化的示例性示意图。
图10(a)ˉ图10(c)示出根据一些实施例提供的滚动列表的形貌变化的示例性示意图;
图11(a)ˉ图11(f)示出根据一些实施例提供的平移缩略图的形貌变化的示例性示意图;
图12(a)ˉ图12(c)示出根据一些实施例提供的平移图标的形貌变化的示例性示意图;
图13(a)ˉ图13(d)示出根据一些实施例提供的平移缩略图的形貌变化的示例性示意图;
图14(a)ˉ图14(c)示出根据一些具体场景实施例提供的向左平移缩略图的形貌变化的示例性示意图;
图15(a)ˉ图15(c)示出根据一些实施例提供的平移缩略图的形貌变化的示 例性示意图;
图15(d)ˉ图15(f)示出根据一些实施例提供的平移缩略图的形貌变化的示例性示意图;
图16示出了根据一些实施例提供的可以被用于在移动终端上运行的模块示意图;
图17示出了根据一些实施例提供的可以被用于在移动终端上运行的装置示意图。
具体实施方式
下面将结合一些实施例中的附图,对实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例是一部分实施例,而不是全部的实施例,一些众所周知的方法、过程、结构和网络,不再过多赘述。
以下描述的移动终端、用于移动终端的图形用户界面和所述移动终端的实现方法的实施例。其中,所述移动终端可以是移动电话(又称智能手机)、平板电脑(Tablet Personal Computer)、个人数字助理(personal digital assistant,简称PDA)、电子书阅读器(英文:e-book reader)或可穿戴式设备(Wearable Device)、虚拟现实交互设备(Virtual Reality Interactive Device)等,所述移动终端可以通过2G(第二代手机通信技术规格)、3G(第三代手机通信技术规格)、4G(第四代手机通信技术规格)、5G(第五代手机通信技术规格)或W-LAN(无线局域网)或今后可能出现的通信方式与网络建立通信。
为简明起见,对此本发明实施例不做进一步限定。为了方便说明,在以下的实施例中,以移动终端为例进行说明。
图1示出根据一些实施例提供的一种移动终端100的结构示意图,该移动终端可以为包括手机、平板电脑、PDA(Personal Digital Assistant,个人数字助理)、POS(Point of Sales,销售终端)、车载电脑等终端设备。所述移动终端能够支持多种应用,譬如,电话应用、即时消息收发应用、数码拍照和/或摄像应用、网络浏览应用、音乐和/或视频播放应用、视频通信应用、社交网 络应用、金融财经应用、天气应用、购物应用、办公应用等。
图1示出的是根据一些实施例提供的移动终端100的部分结构的框图。参考图1,移动终端100包括RF(Radio Frequency,射频)电路110、存储器120、输入单元130、显示单元140、传感器150、音频电路160、WiFi(wireless fidelity,无线保真)模块170、处理器180、以及电源190等部件。
本领域技术人员可以理解,图1中示出的移动终端结构只做实现方式的举例,并不构成对移动终端的限定,可以包括比图示更多或更少的部件,或者组合某些部件,或者不同的部件布置。
下面结合图1对移动终端100的各个构成部件进行具体的介绍:
RF电路110可用于收发信息或通话过程中,信号的接收和发送,特别地,将基站的下行信息接收后,给处理器180处理;另外,将设计上行的数据发送给基站。通常,RF电路包括但不限于天线、至少一个放大器、收发信机、耦合器、LNA(Low Noise Amplifier,低噪声放大器)、双工器等。此外,RF电路110还可以通过无线通信与网络和其他设备通信。所述无线通信可以使用任一通信标准或协议,包括但不限于GSM(Global System of Mobile communication,全球移动通讯系统)、GPRS(General Packet Radio Service,通用分组无线服务)、CDMA(Code Division Multiple Access,码分多址)、WCDMA(Wideband Code Division Multiple Access,宽带码分多址)、LTE(Long Term Evolution,长期演进)、电子邮件、SMS(Short Messaging Service,短消息服务)等。
存储器120可用于存储软件程序以及模块,处理器180通过运行存储在存储器120的软件程序以及模块,从而执行移动终端100的各种功能应用以及数据处理。存储器120可主要包括存储程序区和存储数据区,其中,存储程序区可存储操作系统、至少一个功能所需的应用程序(比如声音播放功能、图像播放功能等)等;存储数据区可存储根据移动终端100的使用所创建的数据(比如音频数据、电话本等)等。此外,存储器120可以包括高速随机存取存储器,还可以包括非易失性存储器,例如至少一个磁盘存储器件、闪存器件、或其他易失性固态存储器件。
输入单元130可用于接收输入的数字或字符信息,以及产生与移动终端100的用户设置以及功能控制有关的键信号或动作信号输入。具体地,输入单元130可包括触控面板131、摄像头132以及其他输入设备132中的一种或几种。触控面板131,可以是触控显示屏或触摸板,其中,触控显示屏是集成显示屏与触摸区的设备,触摸板是与触控显示屏不同的不显示可视输出的设备的触摸敏感区,触摸板可以是与显示面板分离的触摸敏感表面或触摸屏形成的触摸敏感表面的延伸部分,触控面板131可收集用户在其上或附近的触摸操作(比如用户使用手指、触笔等任何适合的物体或附件在触控面板131上或在触控面板131附近的操作),并根据预先设定的程式驱动相应的连接装置。可选的,触控面板131可包括触摸检测装置和触摸控制器两个部分。其中,触摸检测装置检测用户的触摸方位,并检测触摸操作带来的信号,将信号传送给触摸控制器;触摸控制器从触摸检测装置上接收触摸信息,并将它转换成触点坐标,再送给处理器180,并能接收处理器180发来的命令并加以执行。此外,可以采用电阻式、电容式、红外线以及表面声波等多种类型实现触控面板131。摄像头132,可以是一个或多个模拟摄像头、数字摄像头、深度摄像头、也可以是由上述任几种不限数量的组合,摄像头132可收集视频信号,并将视频信号传送给处理器180,以由处理器180从视频信号中采集输入信号(比如从视频信号中识别用户的手势操作)。除了触控面板131和摄像头132,输入单元130还可以包括其他输入设备133。具体地,其他输入设备133可以包括但不限于物理键盘、功能键(比如音量控制按键、开关按键等)、轨迹球、鼠标、操作杆、脑电波识别仪、陀螺仪等中的一种或多种,此外,输入单元130可覆盖到麦克风162、传感器150等,在一些实施例中,麦克风162可收集音频信号,并将音频信号传送给处理器,以由处理器从音频信号中采集输入信号(比如从音频信号中识别用户的语音操作)等。
显示单元140可用于显示由用户输入的信息或提供给用户的信息以及移动终端100的各种菜单。显示单元140可包括显示面板141、投影设备142或其他显示设备143中的一种或几种,可选的,可以采用LCD(Liquid Crystal  Display,液晶显示器)、OLED(Organic Light-Emitting Diode,有机发光二极管)等形式来配置显示面板141。进一步的,触控面板131可覆盖显示面板141,当触控面板131检测到在其上或附近的触摸操作后,传送给处理器180以确定触摸事件的类型,随后处理器180根据触摸事件的类型在显示面板141上提供相应的视觉输出。虽然在图1中,触控面板131与显示面板141是作为两个独立的部件来实现移动终端100的输入和输入功能,但是在某些实施例中,可以将触控面板131与显示面板141集成而实现移动终端100的输入和输出功能。投影设备142,可以是微型投影仪或3D全息投影仪,其中,微型投影仪可以是安装于智能眼镜设备、并通过半透明棱镜将图像投射在人眼视网膜上进行成像的设备,微型投影仪还可以是通过投影在移动终端的显示屏、显示幕进行成像的设备。3D(三维)全息投影仪可利用干涉和衍射原理直接投影在实体空间中以呈现物体真实的三维图像的设备。除了显示面板141和投影设备142,显示单元140还可以包括其他显示设备142。具体地,其他显示设备142可以包括但不限于,通过无线局域网、USB数据线(Universal Serial Bus,通用串行总线)、HDMI(High Definition Multimedia Interface,高清晰度多媒体接口)线缆等中的一种或多种连接方式与移动终端相连的显示设备(比如电视等等)。
移动终端100还可包括至少一种传感器150,比如光传感器、运动传感器以及其他传感器。具体地,光传感器可包括环境光传感器及接近传感器,其中,环境光传感器可根据环境光线的明暗来调节显示面板141的亮度,接近传感器可在移动终端100移动到耳边时,关闭显示面板141和/或背光。作为运动传感器的一种,加速计传感器可检测各个方向上(一般为三轴)加速度的大小,静止时可检测出重力的大小及方向,可用于识别移动终端的姿态的应用(比如横竖屏切换、相关游戏、磁力计姿态校准)、振动识别相关功能(比如计步器、敲击)等;至于移动终端100还可配置的陀螺仪、气压计、湿度计、温度计、红外线传感器等其他传感器,在此不再赘述。
音频电路160、扬声器161,麦克风162可提供用户与移动终端100之间的音频接口。音频电路160可将接收到的音频数据转换后的电信号,传输到扬声 器161,由扬声器161转换为声音信号输出;另一方面,麦克风162将收集的声音信号转换为电信号,由音频电路160接收后转换为音频数据,再将音频数据输出处理器180处理后,经RF电路110以发送给比如另一移动终端,或者将音频数据输出至存储器120以便进一步处理。
WiFi属于短距离无线传输技术,移动终端100通过WiFi模块170可以帮助用户收发电子邮件、浏览网页和访问流式媒体等,它为用户提供了无线的宽带互联网访问。虽然图1示出了WiFi模块170,但是可以理解的是,其并不属于移动终端100的必须构成,完全可以根据需要在不改变发明的本质的范围内而省略。
处理器180是移动终端100的控制中心,利用各种接口和线路连接整个移动终端的各个部分,通过运行或执行存储在存储器120内的软件程序和/或模块,以及调用存储在存储器120内的数据,执行移动终端100的各种功能和处理数据,从而对移动终端进行整体监控。可选的,处理器180可包括一个或多个处理单元;优选的,处理器180可集成应用处理器和调制解调处理器,其中,应用处理器主要处理操作系统、用户界面和应用程序等,调制解调处理器主要处理无线通信。可以理解的是,上述调制解调处理器也可以不集成到处理器180中。
移动终端100还包括给各个部件供电的电源190(比如电池),优选的,电源可以通过电源管理系统与处理器180逻辑相连,从而通过电源管理系统实现管理充电、放电、以及功耗管理等功能。
尽管未示出,移动终端100还可以包括摄像头、蓝牙模块等,在此不再赘述。
图2示出根据一些实施例提供的所述移动终端的软件部件示意图,所述移动终端100还具有软件部件,所述软件部件可以存储于存储器120中,可以包括操作系统121、通信模块122、图形模块123、文本输入模块124、定位系统模块125(比如,全球定位系统(GPS))和应用程序126等等。
其中,操作系统121,比如安卓系统(Android)、苹果系统(IOS)、UNIX 系统、Window系统等等,用于控制管理一般的系统任务(比如电力管理等)的各种软件部件和/或驱动器,并便于各种硬件与软件部件之间的通讯。
通信模块122包括用于管理通过RF电路100和/或WiFi模块170接收的数据的各种软件部件等。
图形模块123包括用于在显示单元140上显示各种图形的各种已知软件部件等,其中,所述图形包括可以向用户显示的任何对象,包括但不限于文本、项目列表、图标(例如在触控显示屏上显示的软键图标、应用图标等)、数字图像、视频、动画等。
文本输入模块124可以通过图形模块提供软键盘,以将用户操作对应的本文输入到各种应用程序中。
定位系统模块125用于确定移动终端的位置,并提供位置信息供各应用程序使用,例如,提供给地图应用。
应用程序126可以包括但不限于以下至少任一种:电话簿模块126a、即时消息传送模块126b、网页浏览模块126c、摄像模块126d、视频播放模块126e、社交网络模块126f、音乐播放模块126g、日历模块126h、系统设置模块126i、图片查看编辑模块126j、应用商城模块126k、电子邮箱收发模块126l、搜索模块126m、窗口部件模块126n等等。其中,窗口部件模块126k可以包括计算器窗口小部件、天气窗口小部件、通知窗口小部件、日历小部件等等。
结合处理器180、输入单元130、显示单元140及相关应用程序,移动终端在接收用户对输入单元130的输入信号后,进行相应的运算和处理,生成对应的输出信号并传送给显示单元140,从而移动终端可以通过可视可操作的方式与用户进行交互。在优选的一些实施例中,输入单元130和显示单元140由触控显示屏实现。
此外,移动终端还可以包括一个或多个按键,按键可以是实体按键也可以是通过显示单元显示的软键。在一些实施例中,实体按键可以是通过实际压力按压获得输入,实体按键可以包括用于打开/关闭设备电源和锁定设备的按钮、及调节音量的按钮,软键可以通过前述接触的方式获得输入。在可替代的实施 例中,移动终端100还可以通过麦克风162接受用于激活一些功能的语音输入,或通过传感器150接受用于激活一些功能的动作输入,例如通过重力传感器获得摇动动作等。
在以下一些实施例中,以具有触控显示屏作为显示装置的移动终端为例,继续进行具体描述。本领域技术人员能够理解,其他显示装置,例如微型投影仪或3D全息投影仪等,仍适用的,仍可成为以下实施例的可替代的方案。
图3示出根据一些实施例提供的具有触控显示屏的移动终端的示意图,移动终端100出具有扬声器161,摄像头132、传感器150、及一些实体按键210(例如音量大小控制键、屏幕锁定/解锁键等)外,移动终端100上具有触控显示屏200,用户可以对触控显示屏200的各种触摸操作输入控制指令,包括通过一个或多个手指202、或触控笔接触对应的区域来控制所指向的对象。所述的接触可以包括一次、或多次连续点击、停留在触控显示屏200并进行滑动(从左向右、从右向左、向上/或向下、画圈等)。比如,用户一个手指停留在触控显示屏200上并进行滑动时,移动终端100在触控显示屏200上展示当前页面沿滑动的方向进行平移的过程。所述触控显示屏200用于显示与用户进行交互的用户界面,能够以直观地方式展示用户界面,并以易操作地方式展示与用户进行交互。
所述用户界面用于呈现单层级或多层级的一个或多个页面,所述用户界面可以采用多种交互框架呈现,参考图4(a)及图4(b),例如,用户界面300以标签式框架呈现,用户根据选择任一标签301,则用户界面300转到该标签对应的页面,该标签301对应的页面302;如图4(c)和图4(d),用户界面300还能够以抽屉式呈现,用户点击抽屉式的展开图标303时,则用户界面展开一个隐藏的且用于导航的页面305(所述子界面305在点开时显示于用户界面上,可全部或部分覆盖在当前界面304上),该页面305是具有进入其他页面的入口的页面,类似地,如图4(e),用户界面300以点聚式呈现,即用于进入子界面的图标隐藏在某个图标中(例如圆点图标),当用户点击该图标,在该图标周围围绕展开隐藏的用于进入页面的图标;用户界面300还能够以如图4(f)和图4(g) 所示的列表式、如图4(h)和图4(i)所示的跳板式、如图4(j)和图4(k)所示的陈列馆式,或如图4(l)和图4(m)所示的瀑布式框架呈现,用户能够通过点击用户界面300上的列表306、图标307、缩略图308跳转到详情的页面(未示出)进行查看;此外,用户界面300还能够以如图4(n)和图4(o)所示的旋转式框架呈现,用户能够通过在触控显示屏上进行滑动操作(例如从左向右或从右向左的滑动),旋转到不同的页面310,其中,当前屏标识309提示用户当前所在的页面310的序号或位置。在一些实施例中,交互框架可以具有多层页面。前述实施例中每个页面所展示的框架,仍然能够继续具有其更下层的页面,更下层的页面的实现方式不被限制。
图4(b)、图4(d)、图4(d)、图4(e)、图4(g)、图4(i)、图4(k)、图4(m)、图4(o)示出了具体应用场景的示意图,以便于理解上述描述,但图中具体的场景和文字并不限制于图中所示。
在一些实施例中,移动终端100的触控显示屏200上所展示的可以是一个直接在触控显示屏200上看到的完整的页面或页面的一部分,每一页面可以包括多种图形,其中,所述图形可以由文字、表格、图像、动画、视频、音频等等展示元素组成,所述图形可以是电子文档、项目列表、缩略图、数字图像、应用图标等等。
在一些实施例中,在触控显示屏200上只显示部分页面中的图形,通过检测用户的操作动作,根据所述操作动作的运动相应地显示平移页面的过程,例如滚动显示项目列表、平移显示电子文档、转动显示多屏切换等,其中,操作动作的运动包括加速度、速度、方向、位移等,平移页面的过程可以根据操作动作的运动确定相应地方向、平移速率、加速度。
在一些实施例中,结合图5(a)ˉ图5(c),当移动终端100的触控显示屏200上展示页面300的一部分时,页面300具有多个图形400,包括在某一时刻显示在触控显示屏200中的图形400(a)和未显示在触控显示屏200中的图形400b,其中,用户能够通过在触控显示屏200上执行滑动操作,页面300的部分或全部区域,如图5(b),页面300跟随手指的动作向上平移并显示其他部分,用户 持续地从下向上进行连续进行多次从下向上的滑动操作,页面200随之向上平移会达到页面200的底部的页面边界。在一些实施例中,如图5(d)所示的触控显示屏200和所述页面300,用户在触控显示屏200上进行左右滑动,以移动所述页面200随之左右移动显示。在一些实施例中,如图5(e)所示的触控显示屏200和所述页面300,用户在触控显示屏200可以进行左右滑动或上下滑动,以移动所述页面200随之移动显示。
在一些实施例中,移动终端100根据滑动操作的速率、幅度、方向和加速度的变化,平移页面300也产生相应的移动变化,页面300平移和平移的加速度可以依照具有摩擦,即模拟阻尼运动的方式。上述页面300的内容可以包括文字、图像、视频、音频中的任一种或其组合,页面300的任一内容也可以具有能够跳转到其他页面的超链接属性。
在一些实施例中,也可以模拟摩擦运动的方式平移所述页面。
图6示出了根据一些实施例提供的平移页面的方法的流程图。所述方法提供了一种用于提示用户当前到达页面边界的方法。
首先,在步骤S101中,检测用户的操作动作。在一些实施例中,移动终端100的检测过程是实时地、持续地进行的。
移动终端100的输入装置获取输入信号后,发送给处理器180处理所述输入信号,从中检测用户的操作动作。在一些实施例中,检测方法可以采用以下任一种或几种组合的方法:
1)触控显示屏获取触控信号发送给所述处理器,所述处理器从触控信号中检测符合预设条件的触控动作,在一些实施例中,触控动作由用户的手指或触控笔在触控显示屏上的运动;
2)物理按键获取按压信号发送给所述处理器,所述处理器从一个或多个按压信号中检测符合预设条件的按压输入,以检测按压指令;
3)麦克风获取音频信号发送给所述处理器,所述处理器对音频信号进行语音识别和分析,以检测语音指令;
4)摄像头获取视频信号后发送给所述处理器,所述处理器对视频信号进行 图像识别和分析,以检测手势动作、肢体动作、眼球动作;
5)此外,脑电波获取仪直接获取用户的脑电波信号发送给所述处理器,所述处理器对所述脑电波信号进行分析,以检测用户的思维指令。
接着,在步骤S102中,响应于检测到所述操作动作,在第一方向上移动显示在所述显示装置上的页面,其中,所述页面包括一个或多个图形,所述一个或多个图形以初始形貌进行显示。
在一些实施例中,每一页面可以包括一个或多个图形,多个图形也可以是多种图形,其中,所述图形可以由文字、表格、图像、动画、视频、音频等等元素组成,所述图形可以是电子文档、文字、项目列表、数字图像、图标、动画、视频等等。在一些实施例中,所述图形为短消息列表。在一些实施例中,所述图形还可以是其他列表,例如,电子邮件消息列表、联系人列表,第三方即时通讯消息列表、文件夹列表、备忘录列表、相册名称列表、金融账单列表、网页浏览消息列表、系统设置项目列表、文档列表、书签列表等等。在一些实施例中,所述电子文档可以是包括文字、表格、图像、动画、视频、音频等等展示元素组成文档,例如,文字文档、演示文档、电子邮件、电子表格、网页等,所述缩略图可以是图库缩略图、应用入口缩略图等,所述图标可以是应用图标、分类图标等。
在一些实例中,所述第一方向是指在触控显示屏200上的移动所述页面的方向,可以是垂直方向、水平方向和倾斜方向。所述第一方向与所述操作动作的方向相对应,但可以未必完全相同,例如,对于用户在触控显示屏上的沿垂直方向进行滑动时,则对应的第一方向是垂直方向,在一些实施例中,若用户在触控显示屏上的滑动方向与所述垂直方向之间的夹角角度小于倾斜角度范围内(例如但不限于30°以内),则可以根据投影原理,检测到所述用户的触控动作的滑动方向投影到垂直方向,并以投影的垂直方向平移所述页面。
在一些实施例中,对于用户的手势识别控制方式,用户在空中进行的手势动作沿垂直方向进行滑动时,则对应的在触控显示屏200上的第一方向是垂直方向。
在一些实施中,在到达所述页面的边界之前,所述页面的移动速率可以与用户的操作动作的移动速率对应,使用户的操作体验更接近真实,在一些实施例中,当用户手指在触控显示屏上以一定速度滑动时,带动所示页面以相应的移动速率平移,接着,用户手指如突然开触控显示屏,则所述页面可以依照摩擦运动的原理来减速直至停止移动。
在此,所述的初始形貌是所述图形在正常显示时具有的颜色、形状、尺寸、透明度等形貌。
然后,移动终端执行步骤S103,判断在第一方向上移动所显示的页面是否达到页面的边界,即页面的末端,若是,且此时仍然检测到相应的操作动作时,则显示在所述多个图形中邻近边界的至少一个图形的变化形貌,其中,所述图形的变化形貌与所述初始形貌的形貌的形貌不同。
在一些实施例中,移动终端100还可以响应于在所述第一方向上移动所述页面时到达了所述页面的边界,且仍然检测到所述操作动作,则播放提示音效,通过播放提示音效,进一步提醒用户。
在一些实施例中,所述移动终端100可以实时地检测移动所述页面300是否到达所述页面边界。
其中,所述移动终端100从检测到响应存在一定处理时间。在一些实施例中,所述移动终端100可以设置在检测到移动所述页面300即将到达所述页面边界进行响应。
例如,当所述移动终端100检测到所述页面移动到显示区域的边界与所述页面的对应的页面边界的距离小于距离阈值(距离阈值例如但不限于2毫米),且判断当前仍有所述操作动作,显示在所述多个图形中邻近边界的至少一个图形的变化形貌。
再例如,根据所述页面的移动速度、加速度以及显示区域的边界与所述页面的对应的页面边界的距离计算出所述页面所述页面边界与所述触控显示屏200的显示区域的边界预计重合时间,当预计重合时间小于一个时间阈值(时间阈值例如但不限于0.1秒),且判断当前仍有所述操作动作,显示在所述多个 图形中邻近边界的至少一个图形的变化形貌。
在一些实施例中,所述移动终端100也可以在检测到移动所述页面300到达所述页面边界后,检测所述操作动作持续超过一定阈值(例如但不限于,移动所述页面300达到所述页面边界后,检测到用户持续滑动超过0.1秒,或检测到用户持续滑动超出2毫米等)后,显示在所述多个图形中邻近边界的至少一个图形的变化形貌。
上述提前响应到达所述页面边界或稍后响应到达所述页面边界的方式,能够使移动终端100以更灵活的方式提示用户,根据用户使用习惯、更为流畅地与用户进行交互。在响应后,显示所述多个图形中临近边界的至少一个图形的变化形貌的显示方式均可结合本说明的实施例。
结合图5(a)ˉ图5(c),触控显示屏200上显示全部或部分所述页面300,移动终端100检测到用户手指在第一方向运动的操作动作时,所述页面300沿与第一方向相应的方向上进行移动,如图5(c)所示,当移动终端100检测到所述页面的边界与所述触控显示屏200的显示区域的边界重合时,则确定当前移动所显示的页面达到页面边界。例如,如图5(a)所示,用户的手指在触控显示屏200上进行从下到上或从下向上移动的滑动,当从上向下移动时(即所述第一方向为沿触控显示屏200从上向下移动方向),到达所述页面400的顶端的页面边界时,邻近所述页面400的顶端的页面边界的若干第一图形400c就会发生形貌变化,显示其变化形貌。
进一步地,对于在移动中的页面,可以进行提前判断,以在页面到达边界时及时响应,具体地,在一些实施例中,判断方法还可以包括:移动终端检测页面的当前的移动方向、移动速度、移动加速度及在所述触控显示屏的显示边界;根据所述移动方向,确定所述页面预计到达的边界;根据所述移动速度、移动加速度、预计到达的边界的预计时间;在预计时间到来时检测所述页面的边界与所述触控显示屏200的显示区域的边界,如是,则确定所显示的页面达到了边界。在此期间,当所述页面的移动方向、移动速度、移动加速度的任一值发生改变时,重新进行计算。
在一些实施例中,所述图形的形貌变化包括以下任一种或任几种组合:形状变化、尺寸变化、透明度变化、颜色变化。例如,图形(比如图标、文字、缩略图、列表等)变大或变小、图形由方形逐步变为梯形再逐步变为三角形,图形的透明度逐渐变大,图形的颜色逐渐由彩色变为灰色等。
值得一提的是,所述的图形的形状变化或尺寸变化是图形自身的形状和尺寸发生的变化,其中,对于所述图形的部分区域移出所述显示装置的显示区域,剩余部分区域显示在所述显示装置的显示区域的情况,不属于所述图形自身的形状、尺寸发生的变化。
在一些实施例中,邻近边界的图形可以是最靠近边界的一个图形或一排图形,也可以是从所述边界起倒数几个图形或几排图形。例如,项目列表具有第一行、最后一行、第一列和最后一列,邻近边界的图形可以是第一行或最后一行、第一列或最后一列,边界或者邻近边界的图形可以是第一行至第三行、最后一行至倒数第三行、第一列至第三列、或最后一列至倒数第三列。当然,本领域技术人员应当能够理解,上述第一行或第三行的表述仅为说明性举例,其邻近的具体数量可根据实际场景具体设定,并不被限制于此。
除邻近边界的图形外,所述页面上还可能包括不邻近边界的一个或多个图形,不邻近边界的一个或多个图形始终以初始形貌进行显示,形貌上不变化。
显示所述页面上邻近边界的图形的变化形貌可以采用多种优选方式,例如,显示图形直接变化后的形貌,且该变化后的形貌替代所述初始形貌显示;或,显示所述图形在变化阶段,由所述初始形貌开始进行渐变的动态变化的形貌。
在一些实施例中,所述的变化形貌可以是由初始形貌直接跳转的变化的变化形貌,并在跳转到变化后在检测到持续的所述操作动作过程中,以静态的方式显示所述图形的变化形貌。例如,当所述页面沿第一方向运动达到边界且检测到用户手指在触控显示屏上的触控动作,则显示页面中邻近边界的图标从原始尺寸直接变为显示缩小尺寸后的图标,并在用户结束所述触控动作之前,一直显示缩小尺寸的图标。再例如,当所述页面沿第一方向运动达到边界且检测到操作动作,则显示页面中邻近边界的图标从四边形直接变为三角形的图标, 并在用户结束所述触控动作之前,一直显示变为三角形的图标。
在一些实施例中,所述的变化形貌可以从初始形貌动态渐变变化的,即当检测到持续的所述操作动作,则显示在所述页面中邻近边界的至少一个图形的动态变化的变化形貌,且所述操作动作的动作范围越大,所述变化形貌与所述初始形貌的形貌变化越大,即所述变化形貌与初始形貌看上去越不同。例如,所述页面沿第一方向运动达到边界且检测到用户手指在触控显示屏上的触控动作开始,则显示页面中邻近边界的图标从原始尺寸直接逐渐缩小尺寸的动态变化,触控动作移动范围越大,所述图标的尺寸越小。在此,所述的触控动作移动的范围以沿第一方向的移动范围为准,即所述触控动作移动对应沿第一方向移动的距离越大,所述触控动作移动范围越大。
在一些实施例中,所述的变化形貌可以在操作动作未超出设定范围时,从初始形貌动态渐变变化,但在超出一定范围后,所述变化形貌不再渐变变化。即检测到持续的所述操作动作,显示在所述页面中邻近边界的至少一个图形的动态变化的变化形貌,且所述操作动作在预设范围内的动作范围越大,所述变化形貌与其初始形貌的形貌变化越大,即所述变化形貌与初始形貌看上去越不同;当所述操作动作的动作范围超过所述预设范围,显示所述图形的静态的变化形貌。例如,所述页面沿第一方向运动达到边界且检测到用户手指在触控显示屏上的触控动作开始,则显示页面中邻近边界的图标从原始尺寸直接逐渐缩小尺寸的动态变化,触控动作移动范围越大,所述图标的尺寸越小,当所述的触控动作移动的范围超出预设范围,则所述图标的尺寸保持在达到预设范围时的尺寸不变、并不再缩小。在此,所述的触控动作移动的范围以沿第一方向的移动范围为准,即所述触控动作移动对应沿第一方向移动的距离越大,所述触控动作移动范围越大。
在一些实施例中,到达边界时可以通过变换图形的尺寸变化或图形变化展示图形的变化形貌,具体步骤包括:A1.确定页面中邻近所到达的边界的至少一个图形,并获取所述邻近边界的至少一个图形的每个像素点在所述触控显示屏的位置坐标;B1.根据尺寸变化规则,确定每个像素点的坐标的变换参数;C1. 根据所述变换参数确定每个像素点的新位置坐标;D1.将所述图形的每个像素点在其新位置坐标上重绘并进行显示,以显示变化形貌。
在一些实施例中,对于形状变化展示图形的变化形貌,还可以通过剪裁的方式显示形状变化,具体步骤包括:A2.确定页面中邻近所到达的边界的至少一个图形,并获取所述邻近边界的至少一个图形的每个像素点在所述触控显示屏的位置坐标;B2.根据尺寸变化规则,确定变化后的形状,根据变化前后的形状的对应关系,确定待删除的像素点和待保留的每个像素点坐标的变换参数,即对图形的初始形貌进行剪裁,C2.根据所述变换参数确定待保留的每个像素点的新位置坐标,D2.将保留的像素点在其新位置坐标上重绘并进行显示,以显示变化形貌。
在一些实施例中,到达边界时可以通过透明度或灰度变化展示图形的变化形貌,具体地,根据透明度或灰度变化规则,确定变换参数,根据变换参数确定变化后的透明度或灰度,根据变化后的透明度或灰度对所述图形进行重绘并进行显示,以显示变化形貌。
在一些实施例中,在所述步骤S13中,在触控显示屏200上显示的所述页面中邻近边界的所述图形中,沿所述第一方向离所述页面的边界越近的变化形貌与所述初始形貌的形貌变化越大。
在一些实施例中,所述变换参数可以常量,也可以是变量,其变量可以与用户的操作动作的位移D、每一图形到所述页面边界的排列次序N相关,或者二者共同相关,以实现直接跳变显示变化形貌或根据用户的操作动作幅度显示动态渐变的变化形貌,及从所述页面边界向内多个图形阶梯式变化的样式。
对于尺寸缩小的变化形貌的显示方式,每个像素点坐标的变换参数Parameter与图形尺寸的缩小比例Item相关,即:Parameter=F(Item)。
在一些具体场景实施例中,每个所述图形尺寸的缩小比例ItemN=S+((N-1)*D),其中,N为从页面边界起排列次序,D为相邻排列次序之间图形的阶梯变化比例,S为从页面边界起排列第一个或第一排的图形的缩小比例。例如,从页面边界起排列第一个图形的缩小比例为0.2,相邻排列次序之间图形的阶梯 变化比例为0.2,则邻近所述页面边界的四个图形的缩小比例为:第一个图形的缩小比例为0.2(即变化形貌的尺寸为初始形貌的尺寸的20%),第二个图形的缩小比例为0.4,第三个图形的缩小比例为0.6,第四个图形的缩小比例为0.8。
所述方法还可以包括步骤S104,所述步骤S104中,移动终端在步骤S103之后,响应于不再检测到所述操作动作,则显示在所述页面中的图形,其中,所述图形以所述初始形貌进行显示。
在一些实施例中,当用户手离开所述触控显示屏200,则移动终端100不再检测到所述操作动作,则显示在所述页面中的图形从所述变化形貌恢复到所述初始形貌(即变化前的初始形貌)。
在一些实施例中,从所述变化形貌恢复到所述初始形貌的方式可以是跳转的变化的,即直接从所述变化形貌更新为所述初始形貌。
在一些实施例中,从所述变化形貌恢复到所述初始形貌的方式可以显示所述图形从所述变化形貌逐渐恢复到所述初始形貌的渐变动画,即在一定时间内展示所述图形从所述变化形貌逐渐恢复,直到显示所述初始形貌。
所述方法还包括:响应于在所述第一方向上移动所述页面时到达了所述页面的边界,且仍然检测到所述操作动作,则继续移动所述页面同时显示超出所述页面的边界的区域,其中,所述区域与所述页面不同;在不再检测到所述操作输入之后,沿与所述第一方向相反的第二方向移动所述页面,直至不再显示所述区域。
在一些实施例中,移动终端100可以以延迟展示的方式展示超出所述页面边界的区域,具体地,所述移动终端100响应于在所述第一方向上移动所述页面时到达了所述页面边界时,页面短暂停止移动,并检测所述操作动作持续超过一定阈值(例如但不限于,移动所述页面300达到所述页面边界后,检测到用户持续滑动超过0.1秒,或检测到用户持续滑动超出2毫米等)后,再继续继续移动所述页面同时显示超出所述页面边界的区域。
图7(a)ˉ图7(c)示出根据一些实施例提供的滚动列表的页面的示例性示意 图,在一些实施例中,以页面展示短信列表为例进行具体描述。如图7(a)所示,在初始状态下,短信列表中的每项短信的尺寸大小可以基本一致。
当移动终端100检测到用户手指在触控显示屏上进行向上或向下滑动时,页面跟随滑动操作平移显示页面中的短信列表。
在一些实施例中,如图7(b)所示,当移动终端100检测到用户手指在触控显示屏向下滑动时,页面向下平移达到页面顶部边界时,仍然检测到用户在触控显示屏向下滑动,则页面中的短信列表1呈现上下拉宽的动画,即从页面达到顶部边界开始显示拉宽短信列表1,并随用户手指向下滑动距离变大,显示短信列表1越来越宽。在一些实施例中,也可以设定为,随用户手指向下滑动距离变大的过程中,显示短信列表随之缩小到一定尺寸后,不再继续缩小;当用户松开手指后,短信列表1逐渐放大并恢复到图7(a)所示的未变形的初始状态的尺寸,其恢复过程的动画可以是显示逐渐恢复的方式,也可以是立刻恢复(跳转恢复)的方式。
在一些实施例中,当用户手指在触控显示屏向下滑动时,页面向下平移达到其顶部边界时,仍然检测到用户在触控显示屏向下滑动,则随着用户继续的滑动操作,则如图8(a)所示,页面中的短信列表3、短信列表2、短信列表1呈现缩小动画,即从页面达到顶部边界开始显示缩小短信列表3、短信列表2、短信列表1,并从短信列表3、短信列表2到短信列表1呈现递减式缩小,且如图8(b)所示,随用户手指向下滑动距离变大、显示短信列表3、短信列表2和短信列表1也呈越来越小的变化。当用户松开手指后,短信列表3、短信列表2和短信列表1恢复到如图8(c)所示的初始状态(即未变形状态)的尺寸,其恢复过程的动画可以是显示逐渐恢复的动画方式,也可以是跳转恢复的方式。在一些实施例中,在到达页面边界并仍检测到操作动作时,除显示如图8(a)所示的短信列表的缩小动画,结合图9(a)所示,还可以同时显示整个页面向下继续移动并显示超出页面边界的区域500,如图9(b)所示,随用户手指向下滑动距离变大、超出页面边界的区域500越来越大。在一些实施例中,也可以设定为,随用户手指向下滑动距离变大的过程中,超出页面边界的区域500达到一定尺 寸后,不再继续变大。其中,超出页面边界的区域500可以是空白区域。当用户松开手指后,如图9(c)所示,恢复短信列表的初始状态、即未变形前的初始状态的尺寸的同时,页面的边界恢复到对齐触控显示屏的边界位置,并不再显示超出页面边界的区域500,其恢复过程的动画可以是直接跳转到恢复后的显示样式,或以回弹的形式在于第一方向相反的方向上平移回所述页面,直到不再显示超出文档边界的区域500。图9(d)示出了在一些具体场景实施例中,结合图9(b),在到达页面边界时仍然检测到用户手指在触控显示屏上进行滑动的触控动作时用户界面中短信列表的变化形貌的示意图。
图10(a)ˉ图10(c)示出根据一些实施例提供的滚动列表的形貌变化的示例性示意图,在一些实施例中,当用户手指在触控显示屏向下滑动时,页面向下平移达到其顶部边界时,仍然检测到用户在触控显示屏向下滑动,则随着用户继续的滑动操作,则如图10(b)所示,页面中的短信列表3、短信列表2、短信列表1呈现形状变化的动画,即从页面达到顶部边界开始显示短信列表3、短信列表2、短信列表1的梯形形变,并从短信列表3、短信列表2到短信列表1呈现递减式缩小,且如图10(c)所示,随用户手指向下滑动距离变大、显示短信列表3、短信列表2和短信列表1梯形变化越大及尺寸越来越小,短信列表1甚至变为三角形。当用户松开手指后,短信列表3、短信列表2和短信列表1恢复到如图10(a)所示的初始状态(即未变形状态)的尺寸,其恢复过程的动画可以是显示逐渐恢复的动画方式,也可以是跳转恢复的方式。此外,在这些实施例中,还可以结合图9(a)ˉ图9(c)所示的区域500的显示方式,为简明起见,不再赘述,并以结合引用的方式包含于此。
图11(a)ˉ图11(f)示出根据一些实施例提供的平移缩略图的形貌变化的示例性示意图。在一些实施例中,以页面展示图库的缩略图进行具体描述。如图11(a)所示,在初始状态下,同样类型的缩略图的尺寸大小可以基本一致。当用户手指在触控显示屏上进行向上或向下滑动时,页面跟随滑动操作平移显示页面中的缩略图。
在一些实施例中,如图11(b)所示,当用户手指在触控显示屏向下滑动时, 页面向下平移达到页面顶部边界时,仍然检测到用户在触控显示屏向下滑动,则随着用户继续的滑动动作,则页面中的第一排、第二排及第三排缩略图呈现缩小动画,即从页面达到顶部边界开始显示缩小第三排、第二排及第一排缩略图,并从第三排、第二排到第一排缩略图呈现递减式缩小。接着,如图11(c)所示,随用户手指向下滑动距离变大、显示第三排、第二排及第一排缩略图也呈地越来越小(等比例地缩小)。当用户松开手指后,第一排、第二排及第三排缩略图恢复到图11(a)所示的初始状态的尺寸,其恢复过程的动画可以是显示逐渐恢复的方式,也可以是立刻恢复的方式。
在一些实施例中,如图11(e)所示,当用户手指在触控显示屏向下滑动时,页面向下平移达到页面顶部边界时,仍然检测到用户在触控显示屏向下滑动,则随着用户继续的滑动动作,则页面中的第一排、第二排及第三排缩略图呈现透明度渐变动画,即从页面达到顶部边界开始显示第三排、第二排及第一排缩略图的透明度的渐变,并从第三排、第二排到第一排缩略图呈现透明度渐变大,且随用户手指向下滑动距离变大、显示第三排、第二排及第一排缩略图的透明度也呈等比例地越来越大。
其中,在一些实施例中,第一排、第二排及第三排缩略图缩小比例的可以遵循以下公式:
ItemN=S+(N-1)*D),其中,缩小比例为S,每排缩略图的递减比例为D,ItemN表示第N排缩略图的缩小比例。缩小比例S可以随用户滑动距离的变化而变化,当用户滑动距离越大,缩小比例越小。
在一些实施例中,还可以同时显示整个页面向下继续移动,并显示超出页面边界的区域,其显示方式参考图9(a)ˉ图9(c)所示的实施例,不再赘述。当用户松开手指后,第一排、第二排及第三排缩略图恢复到未变形前的初始状态的尺寸,其恢复过程的动画可以是显示逐渐恢复的方式,也可以是立刻恢复的方式。图11(d)示出了在一些具体场景实施例中,结合图11(b),在到达页面边界时仍然检测到用户手指在触控显示屏上进行滑动的触控动作时用户界面中缩略图的变化形貌的示意图。
此外,在这些实施例中,还可以结合图9(a)ˉ图9(c)所示的区域500的显示方式,为简明起见,不再赘述,并以结合引用的方式包含于此。图11(e)示出了在一些具体场景实施例中,在到达页面边界时仍然检测到用户手指在触控显示屏上进行滑动的触控动作时用户界面中缩略图的变化形貌及超出页面的区域的示意图。
图11(f)示出了在一些具体场景实施例中,当所述第一方向上移动所述页面时到达了所述页面的边界,且仍然检测到所述操作动作,则显示在所述页面中邻近边界的至少一个图形的透明度的渐变,来显示变化形貌,以易于被用户察觉的方式提示页面到达边界。
在一些实施例中,通过图形的颜色变化,例如由彩色图形逐渐变为灰度图形的变化(附图未示出),来显示变化形貌的方式,同样可以达到,以易于被用户察觉的方式提示页面达到了边界。
图12(a)ˉ图12(b)示出根据一些实施例提供的平移图标的形貌变化的示例性示意图。在一些实施例中,以页面展示桌面上的应用图标为例进行具体描述,桌面可以具有多个屏,每个屏上具有一个或多个应用图标,如图12(a)所示,在初始状态下,桌面上的应用图标的尺寸大小可以基本一致。当用户手指在触控显示屏上进行向左和向右滑动时,页面跟随滑动操作向左或向右移动并在移动达到一定程度后切换到另一个屏。在一些实施例中,如图12b所示,当用户手指在触控显示屏上向左滑动,页面到达桌面的最右一个屏时,仍然检测到手指在触控显示屏上向右滑动,则显示最后一个屏上邻近右侧边界的几列应用图标的缩小动画,即在桌面的最右一个屏时,当用户手指在触控显示屏上向左滑动时开始显示邻近右侧边界的几列应用图标向靠近右侧边界方向呈现递减式缩小,并随用户手指继续向左滑动,显示该几列应用图标成比例地越来越小。在一些实施例中,如图12(c)所示,还可以同时显示整个页面向左继续移动,并显示超出页面边界的区域。当用户松开手指后,则成比例地缩小的几列应用图标恢复到图12(a)所示的未变形前的初始状态的尺寸。
图13(a)ˉ图13(c)示出根据一些实施例提供的平移缩略图的形貌变化的示 例性示意图;在一些实施例中,如图13(a)所示,用户界面可以显示多种形状和尺寸的缩略图,当用户手指在触控显示屏向下滑动时,页面向下平移达到页面顶部边界时,仍然检测到用户在触控显示屏向下滑动,则随着用户继续的滑动动作,则页面中的缩略图1、缩略图2和缩略图3呈现缩小动画,即从页面达到顶部边界开始显示缩小缩略图1、缩略图2和缩略图3。其中,在一些实施例中,缩略图1、缩略图2和缩略图3缩小比例的可以遵循以下公式:ItemN=(S+(N-1)*D),其中,缩小比例为S,每个缩略图之间的递减比例为D,ItemN表示缩略图N的缩小比例。缩小比例S可以随用户滑动距离的变化而变化,当用户滑动距离越大,缩小比例越小,即显示从图13b到图13(c)所示的变化过程。图13(d)示出了在一些具体场景实施例中,结合图13b,在到达页面边界时仍然检测到用户手指在触控显示屏上进行滑动的触控动作时用户界面中缩略图的变化形貌的示意图。
图14(a)ˉ图14(c)示出根据一些具体场景实施例提供的向左平移缩略图的形貌变化的示例性示意图;其中,如图14(a),当用户手指在触控显示屏向左滑动时,页面向左平移达到页面右侧边界时,仍然检测到用户在触控显示屏向左滑动,则随着用户继续的滑动动作,则页面中的缩略图显示类似于图8(a)ˉ图8b所示的缩小动画;如图14b,相应地,页面中的缩略图显示类似于图9(a)ˉ图9b所示的缩小动画及超出页面的区域500;如图14(c),相应地,页面中的缩略图显示类似于图11(f)所示的透明度渐变的动画,具体不再赘述。
图15(a)ˉ图15(c)示出根据一些实施例提供的平移缩略图的形貌变化的示例性示意图;其中,如图15(a),在初始状态下,缩略图的尺寸大小可以不同。当用户手指在触控显示屏向左滑动时,页面向下平移达到页面右侧边界时,仍然检测到用户在触控显示屏向左滑动,则随着用户继续的滑动动作,则如图15(b),显示在页面中的缩略图2和缩略图N的边界的形变,由矩形边界逐渐变为弧形边界,随着向左滑动的距离越大,从图15(b)到图15(c),弧形的形变越来越显著。当用户松开手指后,恢复到图15(a)所示的未变形前的初始状态的尺寸,其恢复过程的动画可以是显示逐渐恢复的方式,或跳转恢复的方式。
如图15(d)ˉ图15(f)示出根据一些实施例提供的平移文字的形貌变化的示例性示意图,例如网页文字页面,其中,如图15(d),在初始状态下,页面中的尺寸大小可以不同。当用户手指在触控显示屏向上滑动时,页面向上平移达到页面底部边界时,仍然检测到用户在触控显示屏向上滑动,则随着用户继续的滑动动作,则如图15(e),显示在页面中的底部的最后一排文字(例如,AAAA……)发生形变,字体逐渐变小,随着向上滑动的距离越大,从图15(e)到图15(f),字体缩小的形变越来越显著。当用户松开手指后,恢复到图15(d)所示的未变形前的初始状态的尺寸,其恢复过程的动画可以是显示逐渐恢复的方式,或跳转恢复的方式。
在一些实施例中,所述方法还包括:步骤S105和步骤S106,在所述步骤S105中,响应于不再检测到所述操作动作,以阻尼运动方式,在所述第一方向上继续减速移动所显示的页面;在所述步骤S104中,响应于移动速度未减为零前,在所述第一方向上移动所述页面到达了所述页面的边界时,则显示在所述页面中邻近边界的至少一个图形的变化形貌,其中,所述图形的变化形貌与所述初始形貌不同。
当用户手指离开触控显示屏200时,移动终端100显示在所述触控显示屏200页面没有立刻停止,而是以惯性的方式继续移动,并结合阻尼运动的方式(移动速度逐渐递减)减速直至停止。若在减速移动未减为零时,移动终端100检测到所述页面到达了页面的边界,则开始显示在所述页面中邻近边界的至少一个图形的变化形貌。
在一些实施例中,当所述移动终端100检测所述页面到达了边界时,根据到达边界时页面的移动速度和惯性加速度,确定邻近边界的至少一个图形的变化形貌的渐变动画的持续时间和变化速率,并在持续时间内战时变化形貌的渐变动画,之后,恢复显示邻近边界的至少一个图形的初始形貌。
图16示出了根据一些实施例提供的可以被用于在移动终端上运行的模块示意图,包括:输入单元130;页面操作提示引擎610;对象控件620;控件接口框架630。
在一些实施例中,所述输入单元130为人机交互的输入设备,获取所述用户操作动作的输入,所述输入单元130的内容参考图1所示的实施例描述,不再赘述,并以引用的方式包含于此。
页面操作提示引擎610包括事件处理单元611、动画算法单元612、图形渲染单元613及事件回调机制单元614。其中,所述事件处理单元611将输入单元130所获取的操作动作的事件转换为滑动位移信息(包括位移距离、速率、方向等),并进行滤波,平滑化处理。使得滑动流畅,以在不同操作系统中,具有相同的显示,带给用户良好体验。动画算法单元612接收所述滑动位移信息、包括滑动位移、速率、方向、页面项目的高度信息,对页面进行分段计算,以生成连续平滑的、类似真实物理页面移动的效果。所述动画算法单元612根据所述滑动位移信息,计算页面的位置信息,并且根据所述变形算法,计算显示在显示装置上的页面的图形的缩放信息。所述图形渲染单元613根据所述页面的位置信息、图形的缩放信息即渲染算法,进行图形效果描画,生成描画数据,然后,通过调用控件接口框架将描画数据适配到具体的显示装置中,以在显示装置上进行显示。其中,所述图形渲染单元613是处理图形信号中相对独立的并行处理单元,使用单独线程描画,避免给操作系统的原生功能带来性能影响,降低功耗。所述事件回调机制单元614用于获取处理器180反馈的关于渲染和算法的处理信息,实现动画配合手势,根据所述页面位置信息以及滑动位移信息,判断移动页面是否到达了页面边界,并确定变形算法和渲染算法,以产生正确的变化形貌的效果。
所述对象控件620,可以是任意支持滑动页面,其算法自动适配。算法抽象了页面对象为一个具有图形的集合,从页面获取当前的滚动到边界状态,根据事件处理单元611的位移信息,输出一个时间或者跟手进度相关的动画变形数据,通过图形渲染单元613适配到具体的硬件,操作显示系统。
所述控件接口框架630包括用于与用户交互的一系列接口和用于调用页面操作提示动画引擎进行刷新的一系列接口。
在实现过程中,所述事件处理单元611将时间数据、传感器数据以及检测 到的触摸操作全部通过转换为0ˉ1的滑动位移信息的进度值,再交给处理器180,所述事件回调机制单元614获取处理器180反馈的关于渲染和算法处理的信息,交由图形动画算法单元612进行动画的计算,及渲染单元613进行图形重绘,通过控件接口框架630显示重绘图形的数据传递到对象控件620中,由对象控件620显示页面的滑动和图形的变化形貌。
在一些实施例中提供的场景中,用户在滑动页面时,输入单元130判断滑动事件的输入(可以是触摸屏滑动,或者手势识别到用户晃动手掌视图切换到下一页。)
事件处理单元611获取位移信息队列,从起点开始,计算出用户位移的距离,然后,通过所述事件回调机制单元614判断是否已经到达页面的边界。
接着,所述动画算法单元612计算当前页面的图形(item)的缩放信息,公式示意如下:
当itemIndex<Threadshold,
Scale(i)=itemIndex*scaleFactor*itemHeightFactor,
其中,itemIndex表示当前图形从对应页面边界起的位置序号,例如,向下滑动到达页面顶部边界时,最顶部序号为0,然后向下序号为1,2,3…,向上滑动到达页面底部边界时,最底部序号为0,向上方向序号为1,2,3…。
ScaleFactor表示缩放的比例,baseFactor表示图形的初始形貌的缩放比例(通常设为1),N为相邻序号之间的缩放比例差值,ScaleFactor=baseFactor-itemIndex*N,其中,通过调整固定的开始缩放比例和每次缩减比例,可以调整动画效果。
itemHeightFactor表示与图形的高度相关的参数,可以是表示不考虑图形的高度引起的不连续,可以是正比于高度的一个数值,具体根据需要的最终效果设定一个固定的比例。
其中,Threadshold表示到从页面边界起到第几个图形为止,这个是效果性能的一个优化,比如设置为3,只需要对从页面边界起到第3个图形(或第3排或第3行图形)进行缩放,就可以达到视觉上整体物理回滚的效果。
算法结果scale(i)通过图形渲染系统中创建独立线程,进行图形效果描画。可以是以下伪代码的形式:
Thread{
lock(surface)
canvas.setscale(i)
release(surface)
}start
事件还可以是以时间为输入,或者以传感器数据为输入。以时间数据即为定期执行所述事件,以传感去数据为数据为在有传感器数据,且所述传感器数据符合时间条件时,执行所述事件。
图17示出根据一些实施例提供的装置70的结构示意图,其中,所述装置70包括:检测模块701、移动显示模块702和变形显示模块703。
所述装置可以设置于具有显示装置的移动终端中,所述装置可以是硬件、软件或由硬件与软件结合的装置。
在一些实施例中,所述装置70响应于在所述第一方向上移动所述页面时到达了页面边界,且仍然检测到所述操作动作,则显示第一图形的变化形貌。具体地,所述检测模块701检测用户的操作动作;移动显示模块702响应于检测到所述操作动作,在第一方向上移动显示在所述显示装置上的页面,其中,所述页面包括一个或多个图形,所述一个或多个图形以其初始形貌显示在所述显示装置上;变形显示模块703响应于在所述第一方向上移动所述页面时到达了页面边界,且仍然检测到所述操作动作,则显示第一图形的变化形貌,其中,所述第一图形为显示在所述显示装置上的所述一个或多个图形中邻近所述页面边界的图形,所述第一图形的变化形貌与其初始形貌不同。
在一些实施例中,所述变形显示模块703包括:第一显示子单元,所述第一显示子单元响应于检测到持续的所述操作动作,显示所述第一图形的动态变化的变化形貌,且所述操作动作在预设范围内的动作范围越大,所述第一图形的变化形貌与其初始形貌的形貌变化越大,且响应于检测到所述操作动作的动 作范围超过所述预设范围,显示所述第一图形的静态的变化形貌。
在一些实施例中,所述变形显示模块703包括:第二显示子单元,所述第二显示子单元响应于检测到持续的所述操作动作,显示所述第一图形的动态变化的变化形貌,且所述操作动作的动作范围越大,所述第一图形的变化形貌与其初始形貌的形貌变化越大。
在一些实施例中,所述装置70还包括:恢复显示模块,恢复显示模块显示所述第一图形从其变化形貌逐渐恢复到其初始形貌的渐变动画,直至显示所述第一图形的初始形貌。
在一些实施例中,所述装置70还包括:区域显示模块,用于响应于在所述第一方向上移动所述页面时到达了所述页面边界,且仍然检测到所述操作动作,则继续移动所述页面同时显示超出所述页面边界的区域,其中,所述区域与所述页面不同,且响应于在不再检测到所述操作输入之后,沿与所述第一方向相反的第二方向移动所述页面,直至不再显示所述区域。
在一些实施例中,所述装置70响应于在所述第一方向上移动所述页面时到达了页面边界,且仍然检测到所述操作动作,则显示邻近所述页面边界的至少两个=图形的变化形貌,包括第一图形的变化形貌和第二图形的变化形貌。
具体地,所述检测模块701检测用户的操作动作;所述移动显示模块702响应于检测到所述操作动作,在第一方向上移动显示在所述显示装置上的页面,其中,所述页面包括一个或多个图形,所述一个或多个图形以其初始形貌显示在所述显示装置上;所述变形显示模块703响应于在所述第一方向上移动所述页面时到达了页面边界,且仍然检测到所述操作动作,则显示第一图形的变化形貌和第二图形的变化形貌,其中,所述第一图形和所述第二图形为显示在所述显示装置上的所述一个或多个图形中邻近所述页面边界的图形,所述第一图形的变化形貌与其初始形貌不同,所述第二图形的变化形貌与其初始形貌不同。
在一些实施例中,所述变形显示装置703显示所述第一图形的变化形貌和第二图形的变化形貌,其中,所显示的所述第二图形的变化形貌与所述第二图形的初始形貌的差别、大于所显示的所述第一图形的变化形貌与所述第一图形 的初始形貌的差别。
在一些实施例中,所述装置70响应于不再检测到所述操作动作,以阻尼运动方式,在所述第一方向上继续减速移动所述页面,并在响应于检测到所述页面的移动速度未减为零,在所述第一方向上移动所述页面到达了页面边界,则显示所述第一图形的变化形貌。
具体地,所述检测模块701检测用户的操作动作;所述移动显示模块702响应于检测到所述操作动作,在第一方向上移动显示在所述显示装置上的页面,其中,所述页面包括一个或多个图形,所述一个或多个图形以其初始形貌显示在所述显示装置上,当响应于不再检测到所述操作动作,以阻尼运动方式,在所述第一方向上继续减速移动所述页面;所述变形显示模块703响应于检测到所述页面的移动速度未减为零,在所述第一方向上移动所述页面到达了页面边界,则显示第一图形的变化形貌,其中,所述第一图形为显示在所述显示装置上的所述一个或多个图形中邻近所述页面边界的图形,所述第一图形的变化形貌与其初始形貌不同。
在一些实施例,所述装置70还包括:区域显示模块,用于在响应于检测到在所述第一方向上移动所述页面到达了所述页面边界,继续减速移动所述页面,同时显示超出所述页面边界的区域,其中,所述区域与所述页面不同;回弹显示模块,用于响应于检测到所述页面的移动速度减为零后,沿与所述第一方向相反的第二方向移动所述页面,直至不再显示所述区域;恢复显示模块,用于当不再显示所述区域,显示所述第一图形的初始形貌。
以上所述检测模块701、移动显示模块702和变形显示模块703及其各实施例中所包括的各个显示子单元所执行的内容,参考前述各实施例的方法并结合图1至图16所描述的内容,不再赘述。
综上所述,以上实施例仅用以说明本发明的技术方案,而非对其限制;尽管参照上述实施例对本发明进行了详细的说明,本领域的普通技术人员应当理解:其依然可以对上述各实施例所记载的技术方案进行修改,或者对其中部分技术特征进行等同替换;而这些修改或者替换,并不使相应技术方案的本质脱 离本发明各实施例技术方案的精神和范围。

Claims (37)

  1. 一种在具有显示装置的移动终端上显示页面的方法,其中,所述方法包括:
    检测用户的操作动作;
    响应于检测到所述操作动作,在第一方向上移动显示在所述显示装置上的页面,其中,所述页面包括一个或多个图形,所述一个或多个图形以其初始形貌显示在所述显示装置上;
    响应于在所述第一方向上移动所述页面时到达了页面边界,且仍然检测到所述操作动作,则显示第一图形的变化形貌,其中,所述第一图形为显示在所述显示装置上的所述一个或多个图形中邻近所述页面边界的图形,所述第一图形的变化形貌与其初始形貌不同。
  2. 根据权利要求1所述的方法,其中,所述的显示所述第一图形的变化形貌的步骤包括:
    响应于检测到持续的所述操作动作,显示所述第一图形的动态变化的变化形貌,且所述操作动作在预设范围内的动作范围越大,所述第一图形的变化形貌与其初始形貌的形貌变化越大;
    响应于检测到所述操作动作的动作范围超过所述预设范围,显示所述第一图形的静态的变化形貌。
  3. 根据权利要求1所述的方法,其中,所述的显示所述第一图形的变化形貌的步骤包括:
    响应于检测到持续的所述操作动作,显示所述第一图形的动态变化的变化形貌,且所述操作动作的动作范围越大,所述第一图形的变化形貌与其初始形貌的形貌变化越大。
  4. 根据权利要求1至3中任一项所述的方法,其中,在所述所述第一图形图形的变化形貌的步骤之后,所述方法还包括:
    响应于不再检测到所述操作动作,显示所述第一图形的初始形貌。
  5. 根据权利要求4所述的方法,其中,所述的显示所述第一图形的初始形貌的步骤还包括:
    显示所述第一图形从其变化形貌逐渐恢复到其初始形貌的渐变动画,直至显示所述第一图形的初始形貌。
  6. 根据权利要求1至5中任一项所述的方法,其中,所述方法还包括:
    响应于在所述第一方向上移动所述页面时到达了页面边界,且仍然检测到所述操作动作,则继续移动所述页面同时显示超出所述页面边界的区域,其中,所述区域与所述页面不同;
    响应于在不再检测到所述操作输入之后,沿与所述第一方向相反的第二方向移动所述页面,直至不再显示所述区域。
  7. 根据权利要求1至6中任一项所述的方法,其中,所述图形为:
    文字、项目列表、数字图像或图标。
  8. 根据权利要求1至7中任一项所述的方法,其中,所述图形的变化形貌包括对所述初始形貌进行以下任一种或任几种组合的变化后的形貌:
    形状变化、尺寸变化、透明度变化、颜色变化。
  9. 根据权利要求1至8中任一项所述的方法,其中,所述移动终端具有触控显示屏,所述的检测用户的操作动作的步骤包括:
    检测用户在所述触控显示屏的上的触控动作。
  10. 根据权利要求1至8中任一项所述的方法,其中,所述的检测用户的操作动作的步骤包括以下至少任一项:
    检测用户的语音指令;
    检测用户的手势动作;
    检测用户的肢体动作。
  11. 根据权利要求1至10中任一项所述的方法,其中,所述方法还包括:
    响应于检测到在所述第一方向上移动所述页面时到达了页面边界,且仍然检测到所述操作动作,则播放提示音效。
  12. 根据权利要求1至11中任一项所述的方法,其中,所述第一方向为:
    在所述显示装置上的水平方向、垂直方向或倾斜方向。
  13. 一种在具有显示装置的移动终端上显示页面的方法,其中,所述方法包括:
    检测用户的操作动作;
    响应于检测到所述操作动作,在第一方向上移动显示在所述显示装置上的页面,其中,所述页面包括一个或多个图形,所述一个或多个图形以其初始形貌显示在所述显示装置上;
    响应于在所述第一方向上移动所述页面时到达了页面边界,且仍然检测到所述操作动作,则显示第一图形的变化形貌和第二图形的变化形貌,其中,所述第一图形和所述第二图形为显示在所述显示装置上的所述一个或多个图形中邻近所述页面边界的图形,所述第一图形的变化形貌与其初始形貌不同,所述第二图形的变化形貌与其初始形貌不同。
  14. 根据权利要求13所述的方法,其中,所述第一图形到所述页面边界的距离小于所述第二图形到所述页面边界的距离,所述的显示所述第一图形的变化形貌和第二图形的变化形貌的步骤包括:
    显示所述第一图形的变化形貌和第二图形的变化形貌,其中,所显示的所述第二图形的变化形貌与所述第二图形的初始形貌的差别、大于所显示的所述第一图形的变化形貌与所述第一图形的初始形貌的差别。
  15. 一种在具有显示装置的移动终端上实现的方法,其中,所述方法包括:
    检测用户的操作动作;
    响应于检测到所述操作动作,在第一方向上移动显示在所述显示装置上的页面,其中,所述页面包括一个或多个图形,所述一个或多个图形以其初始形貌显示在所述显示装置上;
    响应于不再检测到所述操作动作,以阻尼运动方式,在所述第一方向上继续减速移动所述页面;
    响应于检测到所述页面的移动速度未减为零,在所述第一方向上移动所 述页面到达了页面边界,则显示第一图形的变化形貌,其中,所述第一图形为显示在所述显示装置上的所述一个或多个图形中邻近所述页面边界的图形,所述第一图形的变化形貌与其初始形貌不同。
  16. 根据权利要求15所述的方法,其中,所述方法还包括:
    在响应于检测到在所述第一方向上移动所述页面到达了所述页面边界,继续减速移动所述页面,同时显示超出所述页面边界的区域,其中,所述区域与所述页面不同;
    响应于检测到所述页面的移动速度减为零后,沿与所述第一方向相反的第二方向移动所述页面,直至不再显示所述区域;
    当不再显示所述区域,显示所述第一图形的初始形貌。
  17. 一种移动终端包括:
    一个显示装置;
    一个或多个处理器;
    存储器;
    所述存储器,用于存储计算机程序;
    所述处理器,用于运行所述计算机程序,执行下述流程:
    检测用户的操作动作;
    响应于检测到所述操作动作,在第一方向上移动显示在所述显示装置上的页面,其中,所述页面包括一个或多个图形,所述一个或多个图形以初始形貌进行显示;
    响应于在所述第一方向上移动所述页面时到达了所述页面的边界,且仍然检测到所述操作动作,则显示在所述多个图形中邻近边界的至少一个图形的变化形貌,其中,所述图形的变化形貌与所述初始形貌不同。
  18. 根据权利要求17所述的移动终端,其中,所述的显示所述第一图形的变化形貌的步骤包括:
    响应于检测到持续的所述操作动作,显示所述第一图形的动态变化的变化形貌,且所述操作动作在预设范围内的动作范围越大,所述第一图形的变 化形貌与其初始形貌的形貌变化越大;
    响应于检测到所述操作动作的动作范围超过所述预设范围,显示所述第一图形的静态的变化形貌。
  19. 根据权利要求17所述的移动终端,其中,所述的显示所述第一图形的变化形貌的步骤包括:
    响应于检测到持续的所述操作动作,显示所述第一图形的动态变化的变化形貌,且所述操作动作的动作范围越大,所述第一图形的变化形貌与其初始形貌的形貌变化越大。
  20. 根据权利要求17至19中任一项所述的移动终端,其中,在所述所述第一图形图形的变化形貌的步骤之后,所述处理器还执行以下流程:
    响应于不再检测到所述操作动作,显示所述第一图形的初始形貌。
  21. 根据权利要求20所述的移动终端,其中,所述的显示所述第一图形的初始形貌步骤还包括:
    显示所述第一图形从其变化形貌逐渐恢复到其初始形貌的渐变动画,直至显示所述第一图形的初始形。
  22. 根据权利要求17至21中任一项所述的移动终端,其中,所述处理器还执行以下流程:
    响应于在所述第一方向上移动所述页面时到达了页面边界,且仍然检测到所述操作动作,则继续移动所述页面同时显示超出所述页面边界的区域,其中,所述区域与所述页面不同;
    在不再检测到所述操作输入之后,沿与所述第一方向相反的第二方向移动所述页面,直至不再显示所述区域。
  23. 一种移动终端,其中,所述移动终端包括:
    一个显示装置;
    一个或多个处理器;
    存储器;
    所述存储器,用于存储计算机程序;
    所述处理器,用于运行所述计算机程序,执行下述流程:
    检测用户的操作动作;
    响应于检测到所述操作动作,在第一方向上移动显示在所述显示装置上的页面,其中,所述页面包括一个或多个图形,所述一个或多个图形以其初始形貌显示在所述显示装置上;
    响应于在所述第一方向上移动所述页面时到达了页面边界,且仍然检测到所述操作动作,则显示第一图形的变化形貌和第二图形的变化形貌,其中,所述第一图形和所述第二图形为显示在所述显示装置上的所述一个或多个图形中邻近所述页面边界的图形,所述第一图形的变化形貌与其初始形貌不同,所述第二图形的变化形貌与其初始形貌不同。
  24. 根据权利要求23所述的终端装置,其中,所述第一图形到所述页面边界的距离小于所述第二图形到所述页面边界的距离,所述的显示所述第一图形的变化形貌和第二图形的变化形貌的步骤包括:
    显示所述第一图形的变化形貌和第二图形的变化形貌,其中,所显示的所述第二图形的变化形貌与所述第二图形的初始形貌的差别、大于所显示的所述第一图形的变化形貌与所述第一图形的初始形貌的差别。
  25. 一种终端装置,其中,所述终端装置包括:
    一个显示装置;
    一个或多个处理器;
    存储器;
    所述存储器,用于存储计算机程序;
    所述处理器,用于运行所述计算机程序,执行下述流程:
    检测用户的操作动作;
    响应于检测到所述操作动作,在第一方向上移动显示在所述显示装置上的页面,其中,所述页面包括一个或多个图形,所述一个或多个图形以其初始形貌显示在所述显示装置上;
    响应于不再检测到所述操作动作,以阻尼运动方式,在所述第一方向上 继续减速移动所述页面;
    响应于检测到所述页面的移动速度未减为零,在所述第一方向上移动所述页面到达了页面边界,则显示第一图形的变化形貌,其中,所述第一图形为显示在所述显示装置上的所述一个或多个图形中邻近所述页面边界的图形,所述第一图形的变化形貌与其初始形貌不同。
  26. 根据权利要求25所述的移动装置,其中,所述移动装置还执行下述流程:
    在响应于检测到在所述第一方向上移动所述页面到达了所述页面边界,继续减速移动所述页面,同时显示超出所述页面边界的区域,其中,所述区域与所述页面不同;
    响应于检测到所述页面的移动速度减为零后,沿与所述第一方向相反的第二方向移动所述页面,直至不再显示所述区域;
    当不再显示所述区域,显示所述第一图形的初始形貌。
  27. 一种在具有显示装置的移动终端上显示页面的装置,其中,所述装置包括:
    检测模块,用于检测用户的操作动作;
    移动显示模块,用于响应于检测到所述操作动作,在第一方向上移动显示在所述显示装置上的页面,其中,所述页面包括一个或多个图形,所述一个或多个图形以其初始形貌显示在所述显示装置上;
    变形显示模块,用于响应于在所述第一方向上移动所述页面时到达了页面边界,且仍然检测到所述操作动作,则显示第一图形的变化形貌,其中,所述第一图形为显示在所述显示装置上的所述一个或多个图形中邻近所述页面边界的图形,所述第一图形的变化形貌与其初始形貌不同。
  28. 根据权利要求27所述的装置,其中,所述变形显示模块包括:
    第一显示子单元,用于响应于检测到持续的所述操作动作,显示所述第一图形的动态变化的变化形貌,且所述操作动作在预设范围内的动作范围越大,所述第一图形的变化形貌与其初始形貌的形貌变化越大,且响应于检测 到所述操作动作的动作范围超过所述预设范围,显示所述第一图形的静态的变化形貌。
  29. 根据权利要求27所述的装置,其中,所述变形显示模块包括:
    第二显示子单元,用于响应于检测到持续的所述操作动作,显示所述第一图形的动态变化的变化形貌,且所述操作动作的动作范围越大,所述第一图形的变化形貌与其初始形貌的形貌变化越大。
  30. 根据权利要求27至29中任一项所述的装置,其中,所述装置还包括:
    恢复显示模块,用于在所述所述第一图形图形的变化形貌之后,响应于不再检测到所述操作动作,显示所述第一图形的初始形貌。
  31. 根据权利要求30所述的装置,其中,所述恢复显示模块包括:
    恢复显示子单元,用于显示所述第一图形从其变化形貌逐渐恢复到其初始形貌的渐变动画,直至显示所述第一图形的初始形貌。
  32. 根据权利要求27至31中任一项所述的装置,其中,所述装置还包括:
    区域显示模块,用于响应于在所述第一方向上移动所述页面时到达了所述页面边界,且仍然检测到所述操作动作,则继续移动所述页面同时显示超出所述页面边界的区域,其中,所述区域与所述页面不同,且响应于在不再检测到所述操作输入之后,沿与所述第一方向相反的第二方向移动所述页面,直至不再显示所述区域。
  33. 一种在具有显示装置的移动终端上显示页面的装置,其中,所述装置包括:
    检测模块,用于检测用户的操作动作;
    移动显示模块,用于响应于检测到所述操作动作,在第一方向上移动显示在所述显示装置上的页面,其中,所述页面包括一个或多个图形,所述一个或多个图形以其初始形貌显示在所述显示装置上;
    变形显示模块,用于响应于在所述第一方向上移动所述页面时到达了页 面边界,且仍然检测到所述操作动作,则显示第一图形的变化形貌和第二图形的变化形貌,其中,所述第一图形和所述第二图形为显示在所述显示装置上的所述一个或多个图形中邻近所述页面边界的图形,所述第一图形的变化形貌与其初始形貌不同,所述第二图形的变化形貌与其初始形貌不同。
  34. 根据权利要求33所述的装置,其中,所述变形显示装置用于:
    显示所述第一图形的变化形貌和第二图形的变化形貌,其中,所显示的所述第二图形的变化形貌与所述第二图形的初始形貌的差别、大于所显示的所述第一图形的变化形貌与所述第一图形的初始形貌的差别。
  35. 一种在具有显示装置的移动终端上显示页面的装置,其中,所述装置包括:
    检测模块,用于检测用户的操作动作;
    移动显示模块,用于响应于检测到所述操作动作,在第一方向上移动显示在所述显示装置上的页面,其中,所述页面包括一个或多个图形,所述一个或多个图形以其初始形貌显示在所述显示装置上,当响应于不再检测到所述操作动作,以阻尼运动方式,在所述第一方向上继续减速移动所述页面;
    变形显示模块,用于响应于检测到所述页面的移动速度未减为零,在所述第一方向上移动所述页面到达了页面边界,则显示第一图形的变化形貌,其中,所述第一图形为显示在所述显示装置上的所述一个或多个图形中邻近所述页面边界的图形,所述第一图形的变化形貌与其初始形貌不同。
  36. 根据权利要求35所述的装置,其中,所述装置还包括:
    区域显示模块,用于在响应于检测到在所述第一方向上移动所述页面到达了所述页面边界,继续减速移动所述页面,同时显示超出所述页面边界的区域,其中,所述区域与所述页面不同;
    回弹显示模块,用于响应于检测到所述页面的移动速度减为零后,沿与所述第一方向相反的第二方向移动所述页面,直至不再显示所述区域;
    恢复显示模块,用于当不再显示所述区域,显示所述第一图形的初始形貌。
  37. 一种在具有显示装置的移动终端上的图形用户界面,其中,所述图形用户界面包括:
    显示在显示装置上的页面的一部分,其中,所述页面包括一个或多个图形;
    其中,
    响应于检测到用户的操作动作,在第一方向上移动所述页面,其中,所述一个或多个图形以初始形貌进行显示;
    响应于在所述第一方向上移动所述页面时到达了页面边界,且仍然检测到所述操作动作,则显示第一图形的变化形貌,其中,所述第一图形为显示在所述显示装置上的所述一个或多个图形中邻近所述页面边界的图形,所述第一图形的变化形貌与其初始形貌不同。
PCT/CN2016/106681 2016-10-14 2016-11-21 用于页面显示的方法、装置、图形用户界面及移动终端 WO2018068364A1 (zh)

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