WO2015100601A1 - 操作控制方法和终端 - Google Patents

操作控制方法和终端 Download PDF

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Publication number
WO2015100601A1
WO2015100601A1 PCT/CN2013/091072 CN2013091072W WO2015100601A1 WO 2015100601 A1 WO2015100601 A1 WO 2015100601A1 CN 2013091072 W CN2013091072 W CN 2013091072W WO 2015100601 A1 WO2015100601 A1 WO 2015100601A1
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WO
WIPO (PCT)
Prior art keywords
terminal
area
track
mesh path
shortcut
Prior art date
Application number
PCT/CN2013/091072
Other languages
English (en)
French (fr)
Inventor
于慧娟
井雪莹
Original Assignee
宇龙计算机通信科技(深圳)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 宇龙计算机通信科技(深圳)有限公司 filed Critical 宇龙计算机通信科技(深圳)有限公司
Priority to US15/108,775 priority Critical patent/US10324617B2/en
Priority to EP13900632.4A priority patent/EP3091815B1/en
Priority to PCT/CN2013/091072 priority patent/WO2015100601A1/zh
Priority to CN201380077998.9A priority patent/CN105359618A/zh
Publication of WO2015100601A1 publication Critical patent/WO2015100601A1/zh

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Classifications

    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/048Interaction techniques based on graphical user interfaces [GUI]
    • G06F3/0487Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser
    • G06F3/0488Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser using a touch-screen or digitiser, e.g. input of commands through traced gestures
    • G06F3/04883Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser using a touch-screen or digitiser, e.g. input of commands through traced gestures for inputting data by handwriting, e.g. gesture or text
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/03Arrangements for converting the position or the displacement of a member into a coded form
    • G06F3/041Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means
    • G06F3/0416Control or interface arrangements specially adapted for digitisers
    • G06F3/0418Control or interface arrangements specially adapted for digitisers for error correction or compensation, e.g. based on parallax, calibration or alignment
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/048Interaction techniques based on graphical user interfaces [GUI]
    • G06F3/0481Interaction techniques based on graphical user interfaces [GUI] based on specific properties of the displayed interaction object or a metaphor-based environment, e.g. interaction with desktop elements like windows or icons, or assisted by a cursor's changing behaviour or appearance
    • G06F3/04817Interaction techniques based on graphical user interfaces [GUI] based on specific properties of the displayed interaction object or a metaphor-based environment, e.g. interaction with desktop elements like windows or icons, or assisted by a cursor's changing behaviour or appearance using icons
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/048Interaction techniques based on graphical user interfaces [GUI]
    • G06F3/0484Interaction techniques based on graphical user interfaces [GUI] for the control of specific functions or operations, e.g. selecting or manipulating an object, an image or a displayed text element, setting a parameter value or selecting a range
    • G06F3/04847Interaction techniques to control parameter settings, e.g. interaction with sliders or dials
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/048Interaction techniques based on graphical user interfaces [GUI]
    • G06F3/0487Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser
    • G06F3/0488Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser using a touch-screen or digitiser, e.g. input of commands through traced gestures
    • G06F3/04886Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser using a touch-screen or digitiser, e.g. input of commands through traced gestures by partitioning the display area of the touch-screen or the surface of the digitising tablet into independently controllable areas, e.g. virtual keyboards or menus
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F2203/00Indexing scheme relating to G06F3/00 - G06F3/048
    • G06F2203/048Indexing scheme relating to G06F3/048
    • G06F2203/04803Split screen, i.e. subdividing the display area or the window area into separate subareas

Definitions

  • the present invention relates to the field of communications technologies, and in particular, to an operation control method and a terminal. Background technique
  • the present invention is based on the above technical problems, and proposes a new operation control technology that can make full use of the mesh path formed by the gap between the application icons to achieve some shortcut operations.
  • an operation control method including: identifying an operation trajectory that a user acts on a screen of a terminal; determining whether the operation trajectory is in an area where the mesh path is located, where The mesh path is composed of a gap area between the application icons on the terminal interface; if the operation track is in the area where the mesh path is located, a shortcut operation corresponding to the operation track is performed.
  • the gap between the application icons also becomes larger. Except for the area occupied by the application icons, the remaining areas form a set of grid path areas, and the operation trajectory of the user on the screen of the terminal is detected. If the operation track is in the mesh path area, some preset shortcut operations are performed. When the terminal is shipped from the factory, some operation trajectories corresponding to the shortcut operation can be set, and the user can also set the operation trajectory corresponding to some shortcut operations according to his own habits.
  • the above embodiment makes full use of the gap between the application icons, and based on this, realizes the shortcut operation and provides the user with more convenient operations.
  • the determining whether the operation trajectory is in the area where the mesh path is located includes: acquiring, according to coordinate data of each application icon on the terminal interface, the area where the mesh path is located. a coordinate range; acquiring coordinate data of the operation track, and determining, according to coordinate data of the operation track, whether coordinates of the operation track are within a coordinate range of a region where the mesh path is located.
  • the preferred way is to determine whether the coordinates of the operation trajectory are within the coordinate range of the mesh path region, and it is not necessary to collect all the points of the operation trajectory. Only the starting point, the ending point, and the turning point can be collected, and the direction and coordinates of the operation track are roughly judged according to these points, thereby reducing the calculation amount and increasing the calculation speed.
  • the method further includes: determining a starting direction of the operation track, and if the starting direction is consistent with the preset direction, the terminal is caused to enter a shortcut operation mode.
  • the effective operation track of the operation mode which is a new terminal mode corresponding to the gap between the application icons proposed by the present invention, is referred to herein as a shortcut operation mode.
  • the method further includes: reducing an effective response area of each of the application icons to expand a gap area responsive to the operation track.
  • the effective response area of the application icon is actually larger than the area of the icon that the user sees, which may result in the operation in the gap between the application icons. False trigger to the effective response area of the application icon, causing a misoperation.
  • the user's operation trajectory is an effective operation trajectory that triggers entering the shortcut operation mode proposed by the present invention, or detects that the user performs on the gap region. The operation reduces the area of the application icon that effectively responds to the user's operation. This will increase the area of the mesh path actually occupied, thereby reducing false triggering.
  • a shortcut operation mode preferably, when it is determined that the terminal can enter a shortcut operation mode, displaying an identifier of the mesh path on the terminal interface; when the operation track is completed, hiding the The identifier of the grid path.
  • the user may perform a shortcut operation, and thus enters the shortcut operation mode proposed by the present invention.
  • the grid path is displayed on the terminal interface, and the user can follow the display.
  • the grid path touches the screen, and at the end of the operation, hides these grid paths to avoid affecting the normal display of the app icon.
  • the operation track comprises a continuous touch track across the terminal interface.
  • the user can also perform touch operations across pages, for example, when one hand performs a touch operation, the other hand is used to turn the page, and the current touch is continued until the next few pages, although Cross-page, but the operation track is continuous.
  • the shortcut operation includes at least one of: entering a private mode of the terminal, hiding a part of an application icon on the terminal interface, starting a specified application, and entering the terminal. Specify a profile.
  • a terminal including: an identification unit, configured to identify an operation trajectory of a user acting on a screen of the terminal; and a first determining unit, configured to determine whether the operation trajectory is in a mesh path An area in which the grid path is formed by a gap area between application icons on the terminal interface; an execution unit connected to the first determining unit, where the operation track is in the grid When the path is in the area, the shortcut operation corresponding to the operation track is performed.
  • the gap between the application icons also becomes larger. Except for the area occupied by the application icons, the remaining areas form a set of grid path areas, and the operation trajectory of the user on the screen of the terminal is detected. If the operation track is in the mesh path area, some preset shortcut operations are performed. When the terminal is shipped from the factory, some operation trajectories corresponding to the shortcut operation can be set, and the user can also set the operation trajectory corresponding to some shortcut operations according to his own habits.
  • the above implementation method makes full use of the gap between the application icons, and based on this, realizes the shortcut operation and provides more convenient operations for the user.
  • the first determining unit includes: a coordinate acquiring unit, configured to acquire the mesh path according to coordinate data of each application icon on the terminal interface. a coordinate range of the area where the path is located, and coordinate data of the operation track, and determining, according to the coordinate data of the operation track, whether the coordinate of the operation track is within a coordinate range of the area where the mesh path is located.
  • the preferred way is to determine whether the coordinates of the operation trajectory are within the coordinate range of the mesh path region, and it is not necessary to collect all the points of the operation trajectory. Only the starting point, the ending point, and the turning point can be collected, and the direction and coordinates of the operation track are roughly judged according to these points, thereby reducing the calculation amount and increasing the calculation speed.
  • the method further includes: a second determining unit, configured to determine a starting direction of the operation track, and if the starting direction is consistent with the preset direction, the terminal is allowed to enter a shortcut operation mode.
  • the effective operation track of the operation mode which is a new terminal mode corresponding to the gap between the application icons proposed by the present invention, is referred to herein as a shortcut operation mode.
  • the method further includes: a mesh path area adjusting unit that reduces an effective response area of each of the application icons to expand a gap area that can respond to the operation track.
  • the effective response area of the application icon is actually larger than the area of the icon that the user sees, which may result in the operation in the gap between the application icons. False trigger to the effective response area of the application icon, causing a misoperation.
  • the user's operation trajectory is an effective operation trajectory that triggers entering the shortcut operation mode proposed by the present invention, or detects that the user performs on the gap region. The operation reduces the area of the application icon that effectively responds to the user's operation. This will increase the area of the mesh path actually occupied, thus reducing false triggering.
  • the method further includes: a display control unit, configured to: when the second determining unit determines that the terminal can enter the shortcut operation mode, at the terminal An identifier of the mesh path is displayed on the interface, and an identifier of the mesh path is hidden when the operation track is completed.
  • the user may perform a shortcut operation, and thus enters the shortcut operation mode proposed by the present invention.
  • the grid path is displayed on the terminal interface, and the user can follow the display.
  • the grid path touches the screen, and at the end of the operation, hides these grid paths to avoid affecting the normal display of the app icon.
  • the operation track comprises a continuous touch track across the terminal interface.
  • the shortcut operation includes at least one of: entering a private mode of the terminal, hiding a part of an application icon on the terminal interface, starting a specified application, and entering the terminal. Specify a profile.
  • the user can also perform touch operations across pages, for example, when one hand performs a touch operation, the other hand is used to turn the page, and the current touch is continued until the next few pages, although Cross-page, but the operation track is continuous.
  • a program product stored on a non-transitory machine readable medium for operational control, the program product comprising a machine executable for causing a computer system to perform the following steps An instruction: identifying an operation trajectory of the user acting on the screen of the terminal; determining whether the operation trajectory is in an area where the grid path is located, wherein the grid path is formed by a gap area between the application icons on the terminal interface; The operation track is in an area where the mesh path is located, and a shortcut operation corresponding to the operation track is performed.
  • a non-volatile machine readable medium storing a program product for operational control, the program product comprising machine executable instructions for causing a computer system to perform the steps of: The user acts on the operation track on the screen of the terminal; determines whether the operation track is in the area where the mesh path is located, wherein the mesh path is composed of a gap area between the application icons on the terminal interface; The trajectory is within the area where the mesh path is located, and then a shortcut operation corresponding to the operation trajectory is performed.
  • a machine readable program the program causing a machine to perform the operation control method of any one of the above-described technical solutions.
  • a storage medium storing a machine readable program, wherein the machine readable program causes the machine to perform the operation control method according to any one of the technical solutions described above.
  • FIG. 1 shows a flow chart of an operation control method according to an embodiment of the present invention
  • FIG. 2 shows a schematic diagram of a mesh path in accordance with an embodiment of the present invention
  • Figure 3 shows a schematic diagram of an operational trajectory in accordance with an embodiment of the present invention
  • Figure 5 shows a block diagram of a terminal in accordance with an embodiment of the present invention. detailed description
  • FIG. 1 shows a flow chart of an operation control method according to an embodiment of the present invention.
  • the operation control method may include the following steps: Step 102: Identify an operation trajectory of a user acting on a screen of the terminal; and determine whether the operation trajectory is in an area where the mesh path is located, The mesh path is formed by a gap area between the application icons on the terminal interface. Step 104: If the operation track is in the area where the mesh path is located, performing a shortcut operation corresponding to the operation track.
  • the gap between the application icons also becomes larger. Except for the area occupied by the application icons, the remaining areas form a set of grid path areas, and the operation trajectory of the user on the screen of the terminal is detected. If the operation track is in the mesh path area, some preset shortcut operations are performed. When the terminal is shipped from the factory, some operation trajectories corresponding to the shortcut operation can be set, and the user can also set the operation trajectory corresponding to some shortcut operations according to his own habits. Implementation above The way to make full use of the gap between the application icons, and based on this to achieve shortcut operations, to provide users with more convenient operations.
  • the method includes: acquiring a coordinate range of the area where the mesh path is located according to coordinate data of each application icon on the terminal interface;
  • the coordinate data of the operation track determines whether the coordinates of the operation track are within the coordinate range of the region where the mesh path is located according to the coordinate data of the operation track.
  • the preferred way is to determine whether the coordinates of the operation trajectory are within the coordinate range of the mesh path region, and it is not necessary to collect all the points of the operation trajectory. Only the starting point, the ending point, and the turning point can be collected, and the direction and coordinates of the operation track are roughly judged according to these points, thereby reducing the calculation amount and increasing the calculation speed.
  • the method further includes: determining a starting direction of the operation track, and if the starting direction is consistent with the preset direction, the terminal is caused to enter a shortcut operation mode.
  • the effective operation track of the operation mode which is a new terminal mode corresponding to the gap between the application icons proposed by the present invention, is referred to herein as a shortcut operation mode.
  • the method further includes: reducing an effective response area of each of the application icons to expand a gap area responsive to the operation track.
  • the effective response area of the application icon is actually larger than the area of the icon that the user sees, which may result in the operation in the gap between the application icons. False trigger to the effective response area of the application icon, causing a misoperation.
  • the user's operation trajectory is an effective operation trajectory that triggers entering the shortcut operation mode proposed by the present invention, or detects that the user performs on the gap region. The operation narrows the area of the application icon that effectively responds to user actions. This will increase the area of the mesh path actually occupied, thereby reducing false triggering.
  • the user may perform a shortcut operation, and thus enters the shortcut operation mode proposed by the present invention.
  • the grid path is displayed on the terminal interface, and the user can follow the display.
  • the grid path touches the screen, and at the end of the operation, hides these grid paths to avoid affecting the normal display of the app icon.
  • the operation track comprises a continuous touch track across the terminal interface.
  • the user can also perform touch operations across pages, for example, when one hand performs a touch operation, the other hand is used to turn the page, and the current touch is continued until the next few pages, although Cross-page, but the operation track is continuous.
  • the shortcut operation includes at least one of: entering a private mode of the terminal, hiding a part of an application icon on the terminal interface, starting a specified application, and entering the terminal. Specify a profile.
  • the size of the terminal screen is getting larger and larger, so the gap between the application icons is also larger than before.
  • the function between the application icons is used to complete some shortcut operations.
  • a gap between the application icons forms an additional set of mesh paths 202.
  • the user's finger can draw some specific operational tracks in the mesh path 202 as shown in FIG.
  • the operation track also called gesture
  • the operation track corresponding to some commonly used functions can be preset, for example, vertically down, then pass the two application icons to the right, and then go straight down, the operation
  • the trajectory corresponds to the private mode of entering the terminal.
  • the user enters the private mode of the terminal, thereby completing the shortcut operation into the private mode.
  • the terminal when the user completes the operation track shown by 302 on the terminal screen, the terminal immediately starts an application, for example, starts Bluetooth.
  • an application for example, starts Bluetooth.
  • a step of determining whether the operation track of the user is valid is also provided.
  • the user performs the page turning operation it generally slides in the horizontal direction. If the user slides in the horizontal direction in the starting direction of the operation track in order to complete a certain shortcut operation, the terminal may mistakenly think that the page turning operation is to be performed. , in fact, the user needs to make the terminal private In the dense mode, in order to avoid this erroneous operation, it is necessary to limit the starting direction of the operation track to be the same as the current operation gesture.
  • the starting direction of the operation track when the starting direction of the operation track is vertically downward, it is considered that the operation track is valid, otherwise it is not considered.
  • it is further determined which shortcut operation the user wants to complete that is, the operation track currently completed by the user is matched with the preset operation track, and the corresponding shortcut operation is performed according to the matching result. For example, entering private mode, launching an application, switching the scene mode of the terminal, changing the volume, and the like.
  • the user can not only operate on the current page, but also turn pages. As shown in Fig. 4, it is assumed that the user's right hand slides on the first page, then the left hand is used to turn the page, and 402 is the page line, and the operation track on the first page can be continued to the second page, such as the operation track 404. As shown, it continues from the first page to the second page.
  • the effective response area of the application icon is enlarged to be larger than the area occupied by the application icon, so that the user can respond to the user even if the user's finger is not completely on the application icon.
  • the action to launch the app. Therefore, the mesh path proposed according to the present invention actually intersects with the effective response area of the application icon. When the user operates in the mesh path, it may touch the effective response area of the application icon, thereby triggering the application icon by mistake. To launch the app.
  • the effective response area of the application icon is reduced, so that the actual area of the mesh path can be enlarged, and the user's finger can be operated on the mesh path without causing false triggering.
  • fault tolerance technology can also be added.
  • the false triggering operation can be ignored (not responding to the False trigger operation), think that the user needs to complete the operation track on the grid path for quick operation.
  • the identifiers of the grid paths may be displayed on the terminal interface, and the identifiers of the grid paths are hidden at the end of the operation track.
  • the user double-clicks the terminal interface, and after receiving the operation signal, the terminal determines that the user desires to perform the shortcut operation mode of the terminal, thereby reducing the effective response area of each application icon, and displaying the grid on the terminal interface.
  • the identification of the path the terminal enters the shortcut mode of operation of the present invention.
  • Detecting an operation trajectory of the user's finger on the screen of the terminal determining whether the operation trajectory is in the mesh path, and if so, continuing to determine whether the starting direction of the operation trajectory is a vertical direction; otherwise, the operation trajectory is not responded. If the starting direction of the operation track is in the vertical direction, the operation track is matched with the preset operation track, and a matching shortcut function is performed, for example, a part of the application icon is hidden.
  • Figure 5 shows a block diagram of a terminal in accordance with an embodiment of the present invention.
  • the terminal 500 may include: an identifying unit 502, configured to identify an operation trajectory that the user acts on the screen of the terminal; and a first determining unit 504, configured to determine whether the operating trajectory is An area in which the mesh path is located, wherein the mesh path is formed by a gap area between application icons on the terminal interface; an execution unit 506 is connected to the first determining unit 504, and configured to be in the operation track When the mesh path is located, a shortcut operation corresponding to the operation track is performed.
  • the gap between the application icons also becomes larger. Except for the area occupied by the application icons, the remaining areas form a set of grid path areas, and the operation trajectory of the user on the screen of the terminal is detected. If the operation track is in the mesh path area, some preset shortcut operations are performed. When the terminal is shipped from the factory, some operation trajectories corresponding to the shortcut operation can be set, and the user can also set the operation trajectory corresponding to some shortcut operations according to his own habits.
  • the above implementation method makes full use of the gap between the application icons, and based on this, realizes the shortcut operation and provides more convenient operations for the user.
  • the first determining unit 504 includes: a coordinate acquiring unit 5042, configured to acquire coordinates of an area where the mesh path is located according to coordinate data of each application icon on the terminal interface. a range, and acquiring coordinate data of the operation track, determining, according to coordinate data of the operation track, whether coordinates of the operation track are within a coordinate range of a region where the mesh path is located.
  • a coordinate acquiring unit 5042 configured to acquire coordinates of an area where the mesh path is located according to coordinate data of each application icon on the terminal interface. a range, and acquiring coordinate data of the operation track, determining, according to coordinate data of the operation track, whether coordinates of the operation track are within a coordinate range of a region where the mesh path is located.
  • the preferred way is to determine whether the coordinates of the operation trajectory are within the coordinate range of the mesh path region, and it is not necessary to collect all the points of the operation trajectory. Only the starting point, the ending point, and the turning point can be collected, and the direction and coordinates of the operation track are roughly judge
  • the method further includes: a second determining unit 508, configured to determine a starting direction of the operation track, and if the starting direction is consistent with a preset direction, the terminal is quickly accessed. Operating mode.
  • the effective operation track of the operation mode which is a new terminal mode corresponding to the gap between the application icons proposed by the present invention, is referred to herein as a shortcut operation mode.
  • the method further includes: a mesh path area adjusting unit 510 that reduces an effective response area of each of the application icons to expand a gap area that can respond to the operation track.
  • the effective response area of the application icon is actually larger than the area of the icon that the user sees, which may result in the operation in the gap between the application icons. False trigger to the effective response area of the application icon, causing a misoperation.
  • the user's operation trajectory is an effective operation trajectory that triggers entering the shortcut operation mode proposed by the present invention, or detects that the user performs on the gap region. The operation reduces the area of the application icon that effectively responds to the user's operation. This will increase the area of the mesh path actually occupied, thus reducing false triggering.
  • the method further includes: a display control unit 512, configured to display, on the terminal interface, when the second determining unit 508 determines that the terminal can enter the shortcut operation mode An identifier of the mesh path, and an identifier of the mesh path is hidden when the operation track is completed.
  • a display control unit 512 configured to display, on the terminal interface, when the second determining unit 508 determines that the terminal can enter the shortcut operation mode
  • An identifier of the mesh path, and an identifier of the mesh path is hidden when the operation track is completed.
  • the grid path is displayed on the terminal interface, and the user can follow the display. The grid path touches the screen, and at the end of the operation, hides these grid paths to avoid affecting the normal display of the app icon.
  • the operation track comprises a continuous touch track across the terminal interface.
  • the shortcut operation includes at least one of: entering a private mode of the terminal, hiding a part of an application icon on the terminal interface, starting a specified application, and entering the terminal. Specify a profile.
  • the user can also perform touch operations across pages, for example, when one hand performs a touch operation, the other hand is used to turn the page, and the current touch is continued until the next few pages, although Cross-page, but the operation track is continuous.
  • a program product stored on a non-transitory machine readable medium for operational control, the program product comprising machine executable instructions for causing a computer system to perform the following steps : identifying an operation track of the user acting on the screen of the terminal; determining whether the operation track is in an area where the mesh path is located, wherein the mesh path is formed by a gap area between the application icons on the terminal interface; The operation track is in an area where the mesh path is located, and a shortcut operation corresponding to the operation track is performed.
  • a non-volatile machine readable medium storing a program product for operational control, the program product comprising machine executable instructions for causing a computer system to perform the steps of: identifying a user Acting on an operation track on the screen of the terminal; determining whether the operation track is in an area where the mesh path is located, wherein the mesh path is formed by a gap area between application icons on the terminal interface; In the area where the mesh path is located, a shortcut operation corresponding to the operation track is performed.
  • a machine readable program the program causing a machine to perform the operation control method according to any one of the above-described aspects.
  • a storage medium storing a machine readable program, wherein the machine readable program causes a machine to execute the operation control method according to any one of the technical solutions described above.

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Theoretical Computer Science (AREA)
  • Human Computer Interaction (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • User Interface Of Digital Computer (AREA)

Abstract

本发明提供了一种操作控制方法和一种终端,其中,操作控制方法包括:识别用户作用于终端屏幕上的操作轨迹;判断操作轨迹是否在网格路径所在的区域内,其中,网格路径由终端界面上各应用图标之间的间隙区域构成;若操作轨迹在网格路径所在的区域内,则执行与操作轨迹对应的快捷操作。本发明充分利用了应用图标之间的间隙,根据在间隙中的操作轨迹来进行某些快捷操作,能够有效与其他现有的快捷操作手势区分开,方便用户操作。

Description

说 明 书
操作控制方法和终端
技术领域
本发明涉及通信技术领域, 具体而言, 涉及一种操作控制方法和一种 终端。 背景技术
终端的屏幕变得越来越大, 每一菜单页可显示的应用图标的数量也变 多, 同时应用图标之间的间隙也变大。 由应用图标之间的间隙可构成一套 网格路径, 目前还没有相关技术提出如何利用这一套网格路径来实现某些 快捷操作。 发明内容
本发明正是基于上述技术问题, 提出了一种新的操作控制技术, 能够 充分利用由各应用图标之间的间隙形成的网格路径来实现某些快捷操作。
有鉴于此, 根据本发明的一个方面, 提供了一种操作控制方法, 包 括: 识别用户作用于终端屏幕上的操作轨迹; 判断所述操作轨迹是否在网 格路径所在的区域内, 其中, 所述网格路径由终端界面上各应用图标之间 的间隙区域构成; 若所述操作轨迹在所述网格路径所在的区域内, 则执行 与所述操作轨迹对应的快捷操作。
由于终端屏幕变大, 因此应用图标之间的间隙也变大, 除了应用图标 所占的区域之外, 剩下的区域形成了一套网格路径区域, 检测用户在终端 屏幕上的操作轨迹, 若该操作轨迹在网格路径区域内, 则执行某些预设的 快捷操作。 在终端出厂时, 可以设置一些快捷操作对应的操作轨迹, 用户 也可以按照自己的习惯来设置与某些快捷操作对应的操作轨迹。 上述实施 方式充分利用了应用图标之间的间隙, 并基于此实现快捷操作, 为用户提 供更多的便捷操作。 在上述技术方案中, 优选的, 所述判断所述操作轨迹是否在网格路径 所在的区域内, 包括: 根据所述终端界面上的各应用图标的坐标数据获取 所述网格路径所在区域的坐标范围; 获取所述操作轨迹的坐标数据, 根据 所述操作轨迹的坐标数据判断所述操作轨迹的坐标是否在所述网格路径所 在区域的坐标范围内。
在判断用户的操作轨迹是否在网格路径所在区域的方式有很多种, 其 中较优的方式是判断操作轨迹的坐标是否在网格路径区域的坐标范围内, 可以不用采集操作轨迹的所有点, 可仅采集起始点、 终止点以及拐弯点, 根据这几个点来大致判断操作轨迹的方向和坐标, 从而减少计算量, 提高 计算速度。
在上述任一技术方案中, 优选的, 还可以包括: 判断所述操作轨迹的 起点方向, 若所述起点方向与预设方向一致, 则使所述终端进入快捷操作 模式。
为了与其他的手势操作区分开, 避免误操作, 在该技术方案中, 需判 断用户操作轨迹的起点方向是否是预定方向, 如果符合预定方向, 则说明 该操作轨迹是触发进入本发明提出的快捷操作模式的有效操作轨迹, 快捷 操作模式即与本发明提出的利用应用图标之间的间隙实现快捷操作所对应 的一种新的终端模式, 在此称其为快捷操作模式。
在上述任一技术方案中, 优选的, 还可以包括: 缩小各所述应用图标 的有效响应面积, 以扩大可响应所述操作轨迹的间隙区域。
在目前的方案中, 为了能够智能响应用户的触发, 应用图标的有效响 应面积实际上比用户所看到的图标面积大, 这样就可能导致在应用图标之 间的间隙中进行操作时, 有可能误触发到应用图标的有效响应区域, 从而 引起误操作。 为了解决该技术问题, 在上述实施方式中, 提出了这样一种 解决方案, 如果用户的该操作轨迹是触发进入本发明提出的快捷操作模式 的有效操作轨迹, 或者检测到用户在间隙区域上进行操作, 则缩小应用图 标的有效响应用户操作的面积。 这样就能够扩大网格路径实际所占的区域 面积, 从而减少误触发。 在上述任一技术方案中, 优选的, 在判断出所述终端可进入快捷操作 模式时, 在所述终端界面上显示所述网格路径的标识; 在所述操作轨迹完 成时, 隐藏所述网格路径的标识。
当操作轨迹的起点方向与预设方向一致时, 就认为用户可能要执行快 捷操作, 因此进入本发明提出的快捷操作模式, 为了便于用户操作, 在终 端界面上显示网格路径, 用户可按照显示的网格路径触摸屏幕, 并在操作 结束时, 隐藏这些网格路径, 避免影响应用图标的正常显示。
在上述任一技术方案中, 优选的, 所述操作轨迹包括跨所述终端界面 的连续触摸轨迹。 用户除了在本终端界面上进行触摸操作, 还可以跨页进 行触摸操作, 例如在一只手进行触摸操作时, 另一只手用于翻页, 从当前 也一直触摸至下几页, 虽然是跨页的, 但此次操作轨迹是连续的。
在上述任一技术方案中, 优选的, 所述快捷操作包括以下至少一种: 进入所述终端的私密模式, 隐藏所述终端界面上的部分应用图标, 启动指 定应用程序, 进入所述终端的指定情景模式。
根据本发明的另一方面, 还提供了一种终端, 包括: 识别单元, 用于 识别用户作用于终端屏幕上的操作轨迹; 第一判断单元, 用于判断所述操 作轨迹是否在网格路径所在的区域内, 其中, 所述网格路径由终端界面上 各应用图标之间的间隙区域构成; 执行单元, 连接至所述第一判断单元, 用于在所述操作轨迹在所述网格路径所在的区域内时, 执行与所述操作轨 迹对应的快捷操作。
由于终端屏幕变大, 因此应用图标之间的间隙也变大, 除了应用图标 所占的区域之外, 剩下的区域形成了一套网格路径区域, 检测用户在终端 屏幕上的操作轨迹, 若该操作轨迹在网格路径区域内, 则执行某些预设的 快捷操作。 在终端出厂时, 可以设置一些快捷操作对应的操作轨迹, 用户 也可以按照自己的习惯来设置与某些快捷操作对应的操作轨迹。 上述实施 方式充分利用了应用图标之间的间隙, 并基于此实现快捷操作, 为用户提 供更多的便捷操作。
在上述任一技术方案中, 优选的, 所述第一判断单元包括: 坐标获取 单元, 用于根据所述终端界面上的各应用图标的坐标数据获取所述网格路 径所在区域的坐标范围, 以及获取所述操作轨迹的坐标数据, 根据所述操 作轨迹的坐标数据判断所述操作轨迹的坐标是否在所述网格路径所在区域 的坐标范围内。
在判断用户的操作轨迹是否在网格路径所在区域的方式有很多种, 其 中较优的方式是判断操作轨迹的坐标是否在网格路径区域的坐标范围内, 可以不用采集操作轨迹的所有点, 可仅采集起始点、 终止点以及拐弯点, 根据这几个点来大致判断操作轨迹的方向和坐标, 从而减少计算量, 提高 计算速度。
在上述任一技术方案中, 优选的, 还可以包括: 第二判断单元, 用于 判断所述操作轨迹的起点方向, 若所述起点方向与预设方向一致, 则使所 述终端进入快捷操作模式。
为了与其他的手势操作区分开, 避免误操作, 在该技术方案中, 需判 断用户操作轨迹的起点方向是否是预定方向, 如果符合预定方向, 则说明 该操作轨迹是触发进入本发明提出的快捷操作模式的有效操作轨迹, 快捷 操作模式即与本发明提出的利用应用图标之间的间隙实现快捷操作所对应 的一种新的终端模式, 在此称其为快捷操作模式。
在上述任一技术方案中, 优选的, 还可以包括: 网格路径区域调整单 元, 缩小各所述应用图标的有效响应面积, 以扩大可响应所述操作轨迹的 间隙区域。
在目前的方案中, 为了能够智能响应用户的触发, 应用图标的有效响 应面积实际上比用户所看到的图标面积大, 这样就可能导致在应用图标之 间的间隙中进行操作时, 有可能误触发到应用图标的有效响应区域, 从而 引起误操作。 为了解决该技术问题, 在上述实施方式中, 提出了这样一种 解决方案, 如果用户的该操作轨迹是触发进入本发明提出的快捷操作模式 的有效操作轨迹, 或者检测到用户在间隙区域上进行操作, 则缩小应用图 标的有效响应用户操作的面积。 这样就能够扩大网格路径实际所占的区域 面积, 从而减少误触发。
在上述任一技术方案中, 优选的, 还可以包括: 显示控制单元, 用于 在所述第二判断单元判断出所述终端可进入快捷操作模式时, 在所述终端 界面上显示所述网格路径的标识, 以及在所述操作轨迹完成时, 隐藏所述 网格路径的标识。
当操作轨迹的起点方向与预设方向一致时, 就认为用户可能要执行快 捷操作, 因此进入本发明提出的快捷操作模式, 为了便于用户操作, 在终 端界面上显示网格路径, 用户可按照显示的网格路径触摸屏幕, 并在操作 结束时, 隐藏这些网格路径, 避免影响应用图标的正常显示。
在上述任一技术方案中, 优选的, 所述操作轨迹包括跨所述终端界面 的连续触摸轨迹。
在上述任一技术方案中, 优选的, 所述快捷操作包括以下至少一种: 进入所述终端的私密模式, 隐藏所述终端界面上的部分应用图标, 启动指 定应用程序, 进入所述终端的指定情景模式。 用户除了在本终端界面上进 行触摸操作, 还可以跨页进行触摸操作, 例如在一只手进行触摸操作时, 另一只手用于翻页, 从当前也一直触摸至下几页, 虽然是跨页的, 但此次 操作轨迹是连续的。
根据本发明的又一方面, 还提供了一种存储在非易失性机器可读介质 上的程序产品, 用于操作控制, 所述程序产品包括用于使计算机系统执行 以下步骤的机器可执行指令: 识别用户作用于终端屏幕上的操作轨迹; 判 断所述操作轨迹是否在网格路径所在的区域内, 其中, 所述网格路径由终 端界面上各应用图标之间的间隙区域构成; 若所述操作轨迹在所述网格路 径所在的区域内, 则执行与所述操作轨迹对应的快捷操作。
根据本发明的又一方面, 还提供了一种非易失机器可读介质, 存储有 用于操作控制的程序产品, 所述程序产品包括用于使计算机系统执行以下 步骤的机器可执行指令: 识别用户作用于终端屏幕上的操作轨迹; 判断所 述操作轨迹是否在网格路径所在的区域内, 其中, 所述网格路径由终端界 面上各应用图标之间的间隙区域构成; 若所述操作轨迹在所述网格路径所 在的区域内, 则执行与所述操作轨迹对应的快捷操作。
根据本发明的再一方面, 还提供了一种机器可读程序, 所述程序使机 器执行如上所述技术方案中任一所述的操作控制方法。 根据本发明的再一方面, 还提供了一种存储有机器可读程序的存储介 质, 其中, 所述机器可读程序使得机器执行如上所述技术方案中任一所述 的操作控制方法。 附图说明
图 1示出了根据本发明的实施例的操作控制方法的流程图;
图 2示出了根据本发明的实施例的网格路径的示意图;
图 3示出了根据本发明的实施例的操作轨迹示意图;
图 4示出了根据本发明的实施例的跨页进行操作的示意图;
图 5示出了根据本发明的实施例的终端的框图。 具体实施方式
为了能够更清楚地理解本发明的上述目的、 特征和优点, 下面结合附 图和具体实施方式对本发明进行进一步的详细描述。 需要说明的是, 在不 沖突的情况下, 本申请的实施例及实施例中的特征可以相互组合。
在下面的描述中阐述了很多具体细节以便于充分理解本发明, 但是, 本发明还可以采用其他不同于在此描述的其他方式来实施, 因此, 本发明 的保护范围并不受下面公开的具体实施例的限制。
图 1示出了根据本发明的实施例的操作控制方法的流程图。
如图 1 所示, 根据本发明的实施例的操作控制方法可以包括以下步 骤: 步骤 102 , 识别用户作用于终端屏幕上的操作轨迹; 判断所述操作轨 迹是否在网格路径所在的区域内, 其中, 所述网格路径由终端界面上各应 用图标之间的间隙区域构成; 步骤 104 , 若操作轨迹在网格路径所在的区 域内, 则执行与操作轨迹对应的快捷操作。
由于终端屏幕变大, 因此应用图标之间的间隙也变大, 除了应用图标 所占的区域之外, 剩下的区域形成了一套网格路径区域, 检测用户在终端 屏幕上的操作轨迹, 若该操作轨迹在网格路径区域内, 则执行某些预设的 快捷操作。 在终端出厂时, 可以设置一些快捷操作对应的操作轨迹, 用户 也可以按照自己的习惯来设置与某些快捷操作对应的操作轨迹。 上述实施 方式充分利用了应用图标之间的间隙, 并基于此实现快捷操作, 为用户提 供更多的便捷操作。
在上述技术方案中, 优选的, 判断操作轨迹是否在网格路径所在的区 域内, 包括: 根据终端界面上的各应用图标的坐标数据获取所述网格路径 所在区域的坐标范围; 获取所述操作轨迹的坐标数据, 根据所述操作轨迹 的坐标数据判断所述操作轨迹的坐标是否在所述网格路径所在区域的坐标 范围内。
在判断用户的操作轨迹是否在网格路径所在区域的方式有很多种, 其 中较优的方式是判断操作轨迹的坐标是否在网格路径区域的坐标范围内, 可以不用采集操作轨迹的所有点, 可仅采集起始点、 终止点以及拐弯点, 根据这几个点来大致判断操作轨迹的方向和坐标, 从而减少计算量, 提高 计算速度。
在上述任一技术方案中, 优选的, 还可以包括: 判断操作轨迹的起点 方向, 若起点方向与预设方向一致, 则使所述终端进入快捷操作模式。
为了与其他的手势操作区分开, 避免误操作, 在该技术方案中, 需判 断用户操作轨迹的起点方向是否是预定方向, 如果符合预定方向, 则说明 该操作轨迹是触发进入本发明提出的快捷操作模式的有效操作轨迹, 快捷 操作模式即与本发明提出的利用应用图标之间的间隙实现快捷操作所对应 的一种新的终端模式, 在此称其为快捷操作模式。
在上述任一技术方案中, 优选的, 还可以包括: 缩小各所述应用图标 的有效响应面积, 以扩大可响应所述操作轨迹的间隙区域。
在目前的方案中, 为了能够智能响应用户的触发, 应用图标的有效响 应面积实际上比用户所看到的图标面积大, 这样就可能导致在应用图标之 间的间隙中进行操作时, 有可能误触发到应用图标的有效响应区域, 从而 引起误操作。 为了解决该技术问题, 在上述实施方式中, 提出了这样一种 解决方案, 如果用户的该操作轨迹是触发进入本发明提出的快捷操作模式 的有效操作轨迹, 或者检测到用户在间隙区域上进行操作则缩小应用图标 的有效响应用户操作的面积。 这样就能够扩大网格路径实际所占的区域面 积, 从而减少误触发。 在上述任一技术方案中, 优选的, 在判断出所述终端可进入快捷操作 模式时, 在所述终端界面上显示所述网格路径的标识; 在所述操作轨迹完 成时, 隐藏所述网格路径的标识。
当操作轨迹的起点方向与预设方向一致时, 就认为用户可能要执行快 捷操作, 因此进入本发明提出的快捷操作模式, 为了便于用户操作, 在终 端界面上显示网格路径, 用户可按照显示的网格路径触摸屏幕, 并在操作 结束时, 隐藏这些网格路径, 避免影响应用图标的正常显示。
在上述任一技术方案中, 优选的, 所述操作轨迹包括跨所述终端界面 的连续触摸轨迹。 用户除了在本终端界面上进行触摸操作, 还可以跨页进 行触摸操作, 例如在一只手进行触摸操作时, 另一只手用于翻页, 从当前 也一直触摸至下几页, 虽然是跨页的, 但此次操作轨迹是连续的。
在上述任一技术方案中, 优选的, 所述快捷操作包括以下至少一种: 进入所述终端的私密模式, 隐藏所述终端界面上的部分应用图标, 启动指 定应用程序, 进入所述终端的指定情景模式。
下面结合图 2至图 4进一步说明根据本发明的操作控制方法。
终端屏幕的尺寸越来越大, 因此应用图标之间的间隙也比以前大 ^艮 多, 在本实施例中正是利用应用图标之间的间隙来完成一些快捷操作的功 能。 如图 2所示, 应用图标之间的间隙形成了另外一套网格路径 202。
用户的手指可在如图 2所示的网格路径 202中划出一些特定的操作轨 迹。 在终端出厂时, 可预置与一些常用的功能对应的操作轨迹(也可称之 为手势) , 例如先竖直往下, 然后往右经过两个应用图标, 再竖直往下, 该操作轨迹与进入终端的私密模式对应。 当用户做出这样的操作轨迹时, 即进入终端的私密模式, 从而完成进入私密模式的快捷操作。
如图 3所示, 当用户在终端屏幕上完成 302所示的操作轨迹时, 终端 立即启动某个应用, 例如启动蓝牙。 需说明的是, 为了与目前的一些操作 手势区分开, 在本实施例中还设置了判断用户的操作轨迹是否有效的步 骤。 在用户进行翻页操作时, 一般都是在水平方向上进行滑动, 如果用户 为了完成某个快捷操作, 在操作轨迹的起点方向也是在水平方向上滑动, 那么终端会误以为要进行翻页操作, 而实际上, 用户需要的使终端进入私 密模式, 因此为了避免该误操作, 需限定操作轨迹的起始方向不能与目前 的操作手势相同。
在一种优选方式中, 设置在操作轨迹的起点方向是竖直往下时, 会认 为本次操作轨迹有效, 否则不予考虑。 在判断出操作轨迹的起点方向是竖 直往下时, 进一步判断用户要完成哪个快捷操作, 即将用户当前完成的操 作轨迹与预先设置的操作轨迹进行匹配, 根据匹配结果执行相对应的快捷 操作, 例如进入私密模式、 启动某个应用、 切换终端的情景模式、 改变音 量大小等等。
此外, 用户不仅可在当前页进行操作, 还可以翻页操作。 如图 4 所 示, 假设用户的右手在第一页进行滑动, 然后用左手进行翻页, 402 是分 页线, 可将在第一页上的操作轨迹延续到第二页上, 如操作轨迹 404 所 示, 其从第一页上延续到第二页上。
目前, 为了能够智能的响应用户对应用图标的操作, 因此会扩大应用 图标的有效响应面积, 使其大于应用图标所占的面积, 这样即使用户的手 指没有完全在应用图标上, 也可响应用户的操作来启动该应用。 因此根据 本发明提出的网格路径实际上与应用图标的有效响应面积有交叉, 当用户 在网格路径中操作时, 有可能会触碰至应用图标的有效响应区域上, 从而 误触发应用图标来启动应用。 在本实施例中, 为了解决该技术问题, 提出 这样一种解决方案: 判断用户当前的操作轨迹是否是希望执行快捷操作, 判断的方式是判断操作轨迹的起点方向是否是竖直方向, 若是, 则说明用 户希望进入快捷操作模式, 此时缩小应用图标的有效响应面积, 这样就可 以扩大网格路径的实际区域面积, 方便用户的手指在网格路径上进行操 作, 不会引起误触发。
除了上述处理方式之外, 还可以增加容错技术, 当在网格路径中操作 时, 若触碰到位于网格路径两侧的应用图标的有效响应区域, 可以忽略该 误触发操作 (不响应该误触发操作) , 认为用户需要完成一次在网格路径 上的操作轨迹, 以实现快捷操作。
同时, 为了方便用户在网格路径上操作, 可在终端界面上显示网格路 径的标识, 并在操作轨迹结束时, 隐藏这些网格路径的标识。 在另一种实施方式中, 用户双击终端界面, 终端接收到该操作信号 后, 判断出用户希望进行终端的快捷操作模式, 于是缩小各应用图标的有 效响应面积, 并在终端界面上显示网格路径的标识, 终端进入本发明的快 捷操作模式。
检测用户手指作用在终端屏幕上的操作轨迹, 判断该操作轨迹是否在 网格路径中, 若是, 则继续判断该操作轨迹的起点方向是否是竖直方向, 否则, 不响应该操作轨迹。 若操作轨迹的起点方向在竖直方向上, 则将该 操作轨迹与预设的操作轨迹进行匹配, 执行匹配的快捷功能, 例如隐藏部 分应用图标。
图 5示出了根据本发明的实施例的终端的框图。
如图 5 所示, 根据本发明的实施例的终端 500 可以包括: 识别单元 502 , 用于识别用户作用于终端屏幕上的操作轨迹; 第一判断单元 504 , 用于判断所述操作轨迹是否在网格路径所在的区域内, 其中, 所述网格路 径由终端界面上各应用图标之间的间隙区域构成; 执行单元 506 , 连接至 所述第一判断单元 504 , 用于在所述操作轨迹在所述网格路径所在的区域 内时, 执行与所述操作轨迹对应的快捷操作。
由于终端屏幕变大, 因此应用图标之间的间隙也变大, 除了应用图标 所占的区域之外, 剩下的区域形成了一套网格路径区域, 检测用户在终端 屏幕上的操作轨迹, 若该操作轨迹在网格路径区域内, 则执行某些预设的 快捷操作。 在终端出厂时, 可以设置一些快捷操作对应的操作轨迹, 用户 也可以按照自己的习惯来设置与某些快捷操作对应的操作轨迹。 上述实施 方式充分利用了应用图标之间的间隙, 并基于此实现快捷操作, 为用户提 供更多的便捷操作。
在上述任一技术方案中, 优选的, 所述第一判断单元 504 包括: 坐标 获取单元 5042 , 用于根据所述终端界面上的各应用图标的坐标数据获取 所述网格路径所在区域的坐标范围, 以及获取所述操作轨迹的坐标数据, 根据所述操作轨迹的坐标数据判断所述操作轨迹的坐标是否在所述网格路 径所在区域的坐标范围内。 在判断用户的操作轨迹是否在网格路径所在区域的方式有很多种, 其 中较优的方式是判断操作轨迹的坐标是否在网格路径区域的坐标范围内, 可以不用采集操作轨迹的所有点, 可仅采集起始点、 终止点以及拐弯点, 根据这几个点来大致判断操作轨迹的方向和坐标, 从而减少计算量, 提高 计算速度。
在上述任一技术方案中, 优选的, 还可以包括: 第二判断单元 508 , 用于判断所述操作轨迹的起点方向, 若所述起点方向与预设方向一致, 则 使所述终端进入快捷操作模式。
为了与其他的手势操作区分开, 避免误操作, 在该技术方案中, 需判 断用户操作轨迹的起点方向是否是预定方向, 如果符合预定方向, 则说明 该操作轨迹是触发进入本发明提出的快捷操作模式的有效操作轨迹, 快捷 操作模式即与本发明提出的利用应用图标之间的间隙实现快捷操作所对应 的一种新的终端模式, 在此称其为快捷操作模式。
在上述任一技术方案中, 优选的, 还可以包括: 网格路径区域调整单 元 510 , 缩小各所述应用图标的有效响应面积, 以扩大可响应所述操作轨 迹的间隙区域。
在目前的方案中, 为了能够智能响应用户的触发, 应用图标的有效响 应面积实际上比用户所看到的图标面积大, 这样就可能导致在应用图标之 间的间隙中进行操作时, 有可能误触发到应用图标的有效响应区域, 从而 引起误操作。 为了解决该技术问题, 在上述实施方式中, 提出了这样一种 解决方案, 如果用户的该操作轨迹是触发进入本发明提出的快捷操作模式 的有效操作轨迹, 或者检测到用户在间隙区域上进行操作, 则缩小应用图 标的有效响应用户操作的面积。 这样就能够扩大网格路径实际所占的区域 面积, 从而减少误触发。
在上述任一技术方案中, 优选的, 还可以包括: 显示控制单元 512 , 用于在所述第二判断单元 508判断出所述终端可进入快捷操作模式时, 在 所述终端界面上显示所述网格路径的标识, 以及在所述操作轨迹完成时, 隐藏所述网格路径的标识。 当操作轨迹的起点方向与预设方向一致时, 就认为用户可能要执行快 捷操作, 因此进入本发明提出的快捷操作模式, 为了便于用户操作, 在终 端界面上显示网格路径, 用户可按照显示的网格路径触摸屏幕, 并在操作 结束时, 隐藏这些网格路径, 避免影响应用图标的正常显示。
在上述任一技术方案中, 优选的, 所述操作轨迹包括跨所述终端界面 的连续触摸轨迹。
在上述任一技术方案中, 优选的, 所述快捷操作包括以下至少一种: 进入所述终端的私密模式, 隐藏所述终端界面上的部分应用图标, 启动指 定应用程序, 进入所述终端的指定情景模式。 用户除了在本终端界面上进 行触摸操作, 还可以跨页进行触摸操作, 例如在一只手进行触摸操作时, 另一只手用于翻页, 从当前也一直触摸至下几页, 虽然是跨页的, 但此次 操作轨迹是连续的。
根据本发明的实施方式, 还提供了一种存储在非易失性机器可读介质 上的程序产品, 用于操作控制, 所述程序产品包括用于使计算机系统执行 以下步骤的机器可执行指令: 识别用户作用于终端屏幕上的操作轨迹; 判 断所述操作轨迹是否在网格路径所在的区域内, 其中, 所述网格路径由终 端界面上各应用图标之间的间隙区域构成; 若所述操作轨迹在所述网格路 径所在的区域内, 则执行与所述操作轨迹对应的快捷操作。
根据本发明的实施方式, 还提供了一种非易失机器可读介质, 存储有 用于操作控制的程序产品, 所述程序产品包括用于使计算机系统执行以下 步骤的机器可执行指令: 识别用户作用于终端屏幕上的操作轨迹; 判断所 述操作轨迹是否在网格路径所在的区域内, 其中, 所述网格路径由终端界 面上各应用图标之间的间隙区域构成; 若所述操作轨迹在所述网格路径所 在的区域内, 则执行与所述操作轨迹对应的快捷操作。
根据本发明的实施方式, 还提供了一种机器可读程序, 所述程序使机 器执行如上所述技术方案中任一所述的操作控制方法。
根据本发明的实施方式, 还提供了一种存储有机器可读程序的存储介 质, 其中, 所述机器可读程序使得机器执行如上所述技术方案中任一所述 的操作控制方法。 以上结合附图详细说明了根据本发明的技术方案, 利用应用图标间的 间隙设计隐性的轨迹手势, 可以实现安全的操作触发, 同时不影响原有界 面布局, 丰富了目前的手势控制方式。
以上所述仅为本发明的优选实施例而已, 并不用于限制本发明, 对于 本领域的技术人员来说, 本发明可以有各种更改和变化。 凡在本发明的精 神和原则之内, 所作的任何修改、 等同替换、 改进等, 均应包含在本发明 的保护范围之内。

Claims

权 利 要 求 书
1. 一种操作控制方法, 其特征在于, 包括:
识别用户作用于终端屏幕上的操作轨迹;
判断所述操作轨迹是否在网格路径所在的区域内, 其中, 所述网格路 径由终端界面上各应用图标之间的间隙区域构成;
若所述操作轨迹在所述网格路径所在的区域内, 则执行与所述操作轨 迹对应的快捷操作。
2. 根据权利要求 1 所述的操作控制方法, 其特征在于, 所述判断所 述操作轨迹是否在网格路径所在的区域内, 包括:
根据所述终端界面上的各应用图标的坐标数据获取所述网格路径所在 区域的坐标范围;
获取所述操作轨迹的坐标数据, 根据所述操作轨迹的坐标数据判断所 述操作轨迹的坐标是否在所述网格路径所在区域的坐标范围内。
3. 根据权利要求 1所述的操作控制方法, 其特征在于, 还包括: 判断所述操作轨迹的起点方向, 若所述起点方向与预设方向一致, 则 使所述终端进入快捷操作模式。
4. 根据权利要求 3所述的操作控制方法, 其特征在于, 还包括: 在判断出所述终端可进入快捷操作模式时, 在所述终端界面上显示所 述网格路径的标识;
在所述操作轨迹完成时, 隐藏所述网格路径的标识。
5. 根据权利要求 1 所述的操作控制方法, 其特征在于, 所述操作轨 迹包括跨所述终端界面的连续触摸轨迹。
6. 根据权利要求 1 至 5 中任一项所述的操作控制方法, 其特征在 于, 缩小各所述应用图标的有效响应面积, 以扩大可响应所述操作轨迹的 间隙区域。
7. 根据权利要求 1 至 5 中任一项所述的操作控制方法, 其特征在 于, 所述快捷操作包括以下至少一种:
进入所述终端的私密模式, 隐藏所述终端界面上的部分应用图标, 启 动指定应用程序, 进入所述终端^ ¾定情景模式。
8. 一种终端, 其特征在于, 包括:
识别单元, 用于识别用户作用于终端屏幕上的操作轨迹;
第一判断单元, 用于判断所述操作轨迹是否在网格路径所在的区域 内, 其中, 所述网格路径由终端界面上各应用图标之间的间隙区域构成; 执行单元, 连接至所述第一判断单元, 用于在所述操作轨迹在所述网 格路径所在的区域内时, 执行与所述操作轨迹对应的快捷操作。
9. 根据权利要求 8 所述的终端, 其特征在于, 所述第一判断单元包 括:
坐标获取单元, 用于根据所述终端界面上的各应用图标的坐标数据获 取所述网格路径所在区域的坐标范围, 以及获取所述操作轨迹的坐标数 据, 根据所述操作轨迹的坐标数据判断所述操作轨迹的坐标是否在所述网 格路径所在区域的坐标范围内。
10. 根据权利要求 8所述的终端, 其特征在于, 还包括:
第二判断单元, 用于判断所述操作轨迹的起点方向, 若所述起点方向 与预设方向一致, 则使所述终端进入快捷操作模式。
11. 根据权利要求 10所述的终端, 其特征在于, 还包括:
显示控制单元, 用于在所述第二判断单元判断出所述终端可进入快捷 操作模式时, 在所述终端界面上显示所述网格路径的标识, 以及在所述操 作轨迹完成时, 隐藏所述网格路径的标识。
12. 根据权利要求 8所述的终端, 其特征在于, 所述操作轨迹包括跨 所述终端界面的连续触摸轨迹。
13. 根据权利要求 8 至 12 中任一项所述的终端, 其特征在于, 还包 括:
网格路径区域调整单元, 缩小各所述应用图标的有效响应面积, 以扩 大可响应所述操作轨迹的间隙区域。
14. 根据权利要求 8 至 12 中任一项所述的终端, 其特征在于, 所述 快捷操作包括以下至少一种:
进入所述终端的私密模式, 隐藏所述终端界面上的部分应用图标, 启 动指定应用程序, 进入所述终端的指定情景模式。
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