WO2013182143A2 - 移动终端及其功能项快捷操作的实现方法 - Google Patents

移动终端及其功能项快捷操作的实现方法 Download PDF

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Publication number
WO2013182143A2
WO2013182143A2 PCT/CN2013/079520 CN2013079520W WO2013182143A2 WO 2013182143 A2 WO2013182143 A2 WO 2013182143A2 CN 2013079520 W CN2013079520 W CN 2013079520W WO 2013182143 A2 WO2013182143 A2 WO 2013182143A2
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WIPO (PCT)
Prior art keywords
function item
polyhedron
function
binding
instruction
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PCT/CN2013/079520
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English (en)
French (fr)
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WO2013182143A3 (zh
Inventor
盛春冬
顾伟
童龙仓
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中兴通讯股份有限公司
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Publication of WO2013182143A2 publication Critical patent/WO2013182143A2/zh
Publication of WO2013182143A3 publication Critical patent/WO2013182143A3/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]
    • G06F3/0481Interaction 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
    • G06F3/04815Interaction with a metaphor-based environment or interaction object displayed as three-dimensional, e.g. changing the user viewpoint with respect to the environment or object
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/048Interaction techniques based on graphical user interfaces [GUI]
    • G06F3/0481Interaction techniques based on graphical user interfaces [GUI] based on specific properties of the displayed interaction object or a metaphor-based environment, e.g. interaction with desktop elements like windows or icons, or assisted by a cursor's changing behaviour or appearance
    • G06F3/0482Interaction with lists of selectable items, e.g. menus
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F2203/00Indexing scheme relating to G06F3/00 - G06F3/048
    • G06F2203/048Indexing scheme relating to G06F3/048
    • G06F2203/048023D-info-object: information is displayed on the internal or external surface of a three dimensional manipulable object, e.g. on the faces of a cube that can be rotated by the user

Definitions

  • the present invention relates to the field of mobile communication technologies, and in particular, to a method for implementing a mobile terminal and its function item shortcut operation.
  • touch phones have gradually become the mainstream of development due to their good user experience and stylish appearance.
  • touch phones In addition to the most basic voice call and SMS functions, touch phones have integrated many other functions with the development of intelligent operating systems.
  • many touch phones also have the function of setting or viewing phone book, various prompts, volume, standby wallpaper, screen saver, backlight color, time, language and so on.
  • the menu mode is generally used to organize various functions, that is, the various functions are first divided into several categories as the first level menu; then each major class is divided into smaller classes.
  • the above menu mode organizes various functions with the following problems: Each user's usage habits are different (each user has some functions that he or she commonly uses). This type of mobile phone has many functions. When some users' common functions are in the lower level menu level, the user cannot enter the multi-level menu layer by layer to use the corresponding function items, which causes operational complexity for the mobile phone user. At the same time, this may happen: The user occasionally needs a certain function, and the mobile phone does have this function. However, since the user cannot remember or can not find the menu location where the function is located, the use of the function is abandoned, resulting in the mobile phone. Many of the features are not fully utilized.
  • An embodiment of the present invention provides a method for implementing a shortcut operation of a function item of a mobile terminal, including: receiving, by the mobile terminal, a face selection instruction, rotating the 3D polyhedron according to a face selection instruction, so that the display screen displays the candidate to be selected in the 3D polyhedron
  • the identifier corresponding to the function item is located; and receiving an identifier selection instruction, and triggering a corresponding function of the function item corresponding to the selected identifier according to the identifier selection instruction; wherein, at least one surface of the 3D polyhedron is bound with a function item;
  • the face bound with the function item is bound to at least one function item, and has an identifier corresponding to the bound function item.
  • the method further includes: the mobile terminal receiving a binding instruction of the function item, establishing a binding relationship between the surface and the function item corresponding to the binding instruction on the 3D polyhedron, on the surface Establish an identifier corresponding to the function item.
  • the binding instruction of the function item comprises: a first rotation instruction and a custom binding instruction of the function item; the binding instruction of the receiving function item, establishing a correspondence corresponding to the binding instruction on the 3D polyhedron
  • the binding relationship between the function items; the identifier corresponding to the function item being established on the surface is: the mobile terminal receives the first rotation instruction, and rotates according to the first rotation instruction a 3D polyhedron, the display screen is configured to display a surface corresponding to the first rotation instruction on the 3D polyhedron; the mobile terminal receives a custom binding instruction of a function item, and the surface is established according to the custom binding instruction A binding relationship with the function item, and an identifier corresponding to the function item is established on the surface.
  • the method further includes: the mobile terminal receiving a release command of the function item, releasing a binding relationship between the face and the function item corresponding to the release command on the 3D polyhedron, and deleting the face and the The identifier corresponding to the function item.
  • the release command of the function item includes: a second rotation instruction and a binding release instruction of the function item;
  • the identifier is specifically: the mobile terminal receives the second rotation instruction, rotates the 3D polyhedron according to the second rotation instruction, and causes a display screen to display a surface corresponding to the second rotation instruction on the 3D polyhedron; Receiving, by the mobile terminal, a binding release instruction of the function item, releasing the binding relationship between the surface and the function item according to the binding release instruction, and deleting the identifier corresponding to the function item on the surface.
  • the embodiment of the present invention further provides a mobile terminal, including: a rotation module, configured to receive a surface selection instruction, and rotate the 3D polyhedron according to a surface selection instruction, so that the display screen displays an identifier corresponding to the to-be-selected function item in the 3D polyhedron a function execution module, configured to receive an identifier selection instruction, and trigger a corresponding function of the function item corresponding to the selected identifier according to the identifier selection instruction;
  • At least one face of the 3D polyhedron is bound with a function item; each face to which the function item is bound is bound to at least one function item, and an identifier corresponding to the bound function item is provided.
  • the mobile terminal further includes: a binding module configured to receive a binding instruction of the function item, establish a face on the 3D polyhedron corresponding to the binding instruction, and bind the function item Relationship, establishing an identifier corresponding to the function item on the surface.
  • the binding instruction of the function item comprises: a first rotation instruction and a custom binding instruction of the function item;
  • the binding module is configured to: receive the first rotation instruction, rotate the 3D polyhedron according to the first rotation instruction, and cause a display screen to display a surface corresponding to the first rotation instruction on the 3D polyhedron; And a binding binding instruction of the receiving function item, establishing a binding relationship between the surface and the function item according to the custom binding instruction; establishing a label corresponding to the function item on the surface Knowledge.
  • the mobile terminal further includes: a release module configured to receive a release command of the function item, cancel a binding relationship between the face corresponding to the release command and the function item on the 3D polyhedron, The identifier corresponding to the function item on the face is deleted.
  • the release command of the function item includes: a second rotation instruction and a binding release instruction of the function item;
  • the releasing module is configured to: receive the second rotation instruction, rotate the 3D polyhedron according to the second rotation instruction, and cause a display screen to display a surface corresponding to the second rotation instruction on the 3D polyhedron; Receiving a binding release instruction of the function item, releasing the binding relationship between the surface and the function item according to the binding release instruction, and deleting the identifier corresponding to the function item on the surface.
  • a method for implementing a shortcut operation of a mobile terminal and a function item thereof is provided by the embodiment of the present invention. Since the mobile terminal is preset with a 3D polyhedron, at least one surface of the 3D polyhedron is bound with a function item; each function item is bound At least one function item is bound to the face, and an identifier corresponding to the bound function item is provided, and the mobile terminal rotates the 3D polyhedron by receiving and according to a face selection instruction input by the user, so that the display screen displays the 3D polyhedron The face corresponding to the selected function item is located; then, according to the user input identifier selection instruction, the manner of executing the corresponding function of the function item corresponding to the selected identifier is avoided, thereby avoiding the complicated operation of the traditional menu type step-by-step search for the target function item. Quickly enter the execution of the target function item, which can make full use of many function items and improve the user experience.
  • FIG. 1 is a flow chart showing an embodiment of a method for implementing a shortcut operation of a function item of a mobile terminal according to a preferred embodiment of the present invention
  • FIG. 2 is a schematic structural diagram of a display screen of a display screen of a mobile terminal according to a preferred embodiment of the present invention
  • FIG. 3 is another schematic structural diagram of a display screen of a display screen of a mobile terminal according to a preferred embodiment of the present invention
  • 4 is a schematic structural diagram of another display screen of a display screen of a mobile terminal according to a preferred embodiment of the present invention
  • FIG. 5 is a schematic structural diagram of an embodiment of a mobile terminal according to a preferred embodiment of the present invention
  • FIG. 6 is another schematic structural diagram of an embodiment of a mobile terminal according to a preferred embodiment of the present invention
  • the embodiment of the present invention provides a method for implementing a shortcut operation of a function item of a mobile terminal, where the mobile terminal is preset with a 3D polyhedron, and the 3D polyhedron is generally a regular polyhedron, preferably a regular polyhedron, such as It is a regular hexahedron and a dodecahedron.
  • At least one face of the 3D polyhedron is bound with a function item; each face to which the function item is bound is bound to at least one function item, and an identifier corresponding to the bound function item is provided.
  • the identifiers on the faces bound to the function items are arranged according to the preset policy. For example, the corresponding identifiers may be arranged from left to right or top to bottom according to the order of binding of the function items.
  • the face corresponding to the 3D polyhedron when the mobile terminal opens the function item shortcut operation function, the 3D polyhedron can be displayed on the display screen of the mobile terminal. Referring to FIG.
  • the method for implementing the shortcut operation of the function item of the mobile terminal of the embodiment includes: Step S101: Receive a face selection instruction, and rotate the 3D polyhedron according to the face selection command, so that the display screen displays the candidate function in the 3D polyhedron. The face of the item corresponding to the item.
  • Step S101 Receive a face selection instruction, and rotate the 3D polyhedron according to the face selection command, so that the display screen displays the candidate function in the 3D polyhedron.
  • the face of the item corresponding to the item the side displayed on the display screen of the 3D polyhedron is not the face of the identifier corresponding to the candidate function item.
  • the 3D polyhedron needs to be controlled to rotate, so that the display screen displays the identifier corresponding to the selected function item of the 3D polyhedron. Face.
  • the user needs to input a face selection command at this time, and the mobile terminal rotates according to the face selection command.
  • the face selection command is input by sliding the finger in the display area of the 3D polyhedron. That is, in the process of the user sliding the finger in the 3D polyhedron display area, the 3D polyhedron rotates with the sliding of the finger, and when the surface of the 3D polyhedron displayed on the display screen is the face of the identification corresponding to the function item, the finger is stopped. Sliding.
  • Step S102 Receive an identifier selection instruction, and trigger a corresponding function of the function item corresponding to the selected identifier according to the identifier selection instruction.
  • the 3D multifaceted face displayed by the current display is the face of the identifier corresponding to the function item, and the user is ready to perform the function of the function item, the user needs to input a selection instruction of the identifier, and the mobile terminal triggers the execution according to the identifier selection instruction. Select the corresponding function of the function item corresponding to the ID.
  • the mobile terminal Since the binding relationship of the 3D multi-faceted-face-function item has been established in the mobile terminal, if the mobile terminal uses the touch-type display screen, the finger can be clicked in the area where the identifier corresponding to the function item is located to implement the identifier selection instruction.
  • Input that is, the mobile terminal senses the click pressure in the area where the identifier corresponding to the function item on the 3D polyhedron surface is located, and triggers execution of the corresponding function of the function item
  • one or more function items may be bound to each side of the 3D polyhedron, so that each side is correspondingly provided with one or more identifiers.
  • part of the face of the 3D polyhedron may not be bound to any function item, that is, the part face does not need to be set with any mark.
  • the identifier may be presented in the form of an icon, or may be presented in a text manner. As shown in FIG. 2, when the face 1 of the 3D polyhedron is bound to control the function of playing a song before, playing, and playing a song, the music control is set on the face 1 of the 3D polyhedron.
  • Three icon identifiers which are identifiers corresponding to the function items of playing a song before, playing a pause, and playing a song.
  • the face 2 of the 3D polyhedron is bound to control the volume down volume, the mute volume, and the volume up function; then, on the face 2 of the 3D polyhedron, three text signs of the volume control are correspondingly set,
  • the three text identifiers are identifiers corresponding to the function items for lowering the volume, muting the volume, and increasing the volume. As shown in FIG.
  • the face 3 of the 3D polyhedron is bound to a function item of the screen that allows the horizontal screen, the screen timeout, and the screen shot; then the face 3 of the 3D polyhedron is correspondingly provided with three text marks of the screen control, and the three
  • the text identifiers are identifiers corresponding to the function items that allow horizontal screen, screen timeout, and screen shot.
  • the implementation method of the shortcut operation of the function item of the mobile terminal provided by the present invention will be further described by a specific example. If the current mobile terminal display screen displays the face 1 of the 3D polyhedron, the user needs to lower the volume of the currently played music at this time.
  • the mobile terminal uses the touch display screen, the user needs to slide through the finger in the 3D polyhedral display area, and the 3D polyhedron rotates with the sliding of the finger, and the 3D multi-faceted body displayed on the display screen is a function of reducing the volume.
  • the face corresponding to the item is 2
  • the finger is stopped.
  • the finger clicks on the area of the identifier corresponding to the volume-reducing function item, and the mobile terminal senses the click pressure in the area corresponding to the identifier corresponding to the volume-reducing function item on the 3D polyhedron surface, Trigger execution reduces the current volume operation.
  • the switch function of the function item shortcut operation is set in the mobile terminal.
  • a switch button icon for the shortcut operation of the function item can be established on the display screen.
  • the function item shortcut operation function can be turned on by simply clicking the switch button icon.
  • the shortcut function of the above function item is in the on state, the shortcut function of the function item can be turned off simply by clicking the icon of the switch button.
  • the user can also control the switch button icon to move on the display screen, that is, the user can control the movement of the switch button icon by pressing the switch button icon with a finger and sliding on the display screen.
  • the principle of the movement is: when the finger presses the switch button icon to slide, when the finger is off the display screen, the mobile terminal moves the switch button icon to the display screen according to the coordinate value (X, y) of the position of the switch button icon on the display screen. Left or right end. That is, when the finger is off the display screen, the X value of the switch button icon is less than 1/2 of the width of the display screen, and the y coordinate is unchanged, and then the X coordinate is shifted to the left end of the display screen.
  • the X value of the switch button icon is greater than 1/2 of the display width, and the y coordinate is unchanged, then the X coordinate is translated to the right end of the display.
  • the y value of the switch button icon is less than 1/2 of the length of the display, and the X coordinate is unchanged, then the y coordinate is translated to the top of the display; when the finger is off the display, the switch button icon The y value is greater than 1/2 of the length of the display, and the X coordinate is unchanged, then the y coordinate is translated to the bottom of the display.
  • the 3D multi-faceted The number of functional items that can be bound to the surface of the body cannot exceed a certain value, that is, it cannot exceed the maximum threshold.
  • the mobile terminal binds the function item to at least one face of the 3D polyhedron according to the preset policy.
  • One of these 3D multifaceted faces is bound to multiple function items, and one face is bound to only one or two function items, but none of them can exceed the maximum threshold.
  • the user can customize one or more function items for the face as needed, and only need to ensure the total number of function items bound to the face. Do not exceed the maximum threshold.
  • the operation of the custom binding function item of the 3D polyhedron is as follows: receiving a binding instruction of the function item, establishing a binding relationship between the surface and the function item corresponding to the binding instruction on the 3D polyhedron; An identifier corresponding to the function item is established on the surface.
  • the binding instruction of the function item includes: a first rotation instruction and a custom binding instruction of the function item. That is, the specific operation of the custom binding function item for one side of the 3D polyhedron is as follows: receiving the first rotation instruction, rotating the 3D polyhedron according to the first rotation instruction, and causing the display screen to display the corresponding 3D polyhedron corresponding to the first rotation instruction surface.
  • the input of the first rotation instruction is realized by sliding the finger in the 3D polyhedral display area of the display screen. That is, when the finger slides in the 3D polyhedral display area, the 3D polyhedron rotates with the sliding of the finger, and when the 3D polyhedral surface displayed on the display screen is the surface corresponding to the custom binding function item, the sliding of the finger is stopped.
  • Custom binding instructions include: 3D multifaceted decent binding instructions and function item selection instructions.
  • the binding relationship between the surface and the function item is established according to the custom binding instruction, and the binding of the selected 3D multi-faceted body surface to the selected function item is established according to the 3D multi-faceted body surface binding instruction and the function item selection instruction. Relationship.
  • the finger is pressed for a period of time in the surface area of the 3D polyhedron corresponding to the custom binding function item to realize the binding instruction input of the 3D multi-faceted body, and clicks on the display screen.
  • the area in which the function item name position in the displayed function item table is located enables the input of the function item selection instruction. That is, the user presses the area of the 3D multi-faceted face corresponding to the custom binding function item by the finger and keeps it for a period of time. At this time, the function item table icon is popped up on the display screen, and the user needs to bind the function items to the face, then Just the corresponding function in the function table Click once on the item name location area.
  • the length of time for pressing the area of the 3D multi-faceted face corresponding to the custom binding function item can be arbitrarily set, but it should not be too short. If it is too short, it is easy to be mistakenly judged as an ordinary click operation.
  • the identifier on the surface is arranged according to a preset policy, for example, according to the The order in which the function items are bound, the corresponding identifiers are arranged on the face corresponding to the 3D polyhedron in the order from left to right, or top to bottom, and the number of function items that can be bound to each face can be combined.
  • the maximum threshold is arranged.
  • the user simultaneously selects multiple function items (more than the maximum threshold value of each face binding function item) to be bound to the polyhedron, such as a face. Up to 4 identifiers can be arranged on the screen. The user selects 13 function items to be bound to the polyhedron. The mobile terminal can bind the four function items to the previously unbound side, and set corresponding 4 identifiers on the surface.
  • the size of the identifier on each face changes adaptively with the number of markers in each face.
  • a maximum of 4 logos can be arranged on one face, and 4 logos have been arranged.
  • the following method can be used: The function item and the lower side of the delay ( Binding the number of function items bound to the next side does not reach the maximum threshold; or if only one function item 1 is bound to the surface, the identifier corresponding to the function item 1 fills the entire surface, and the user newly selects If a function item 2 is bound, the corresponding size of the corresponding item 1 is adaptively changed, for example, to the original half, and the newly selected function item 2 is newly added with the same size after the change.
  • the method for implementing the shortcut operation of the function item of the mobile terminal may also cancel the binding relationship between a certain face of the 3D polyhedron and the function item according to the needs of the user, and the process of releasing the binding relationship is as follows: Release command of the function item, release the 3D polyhedron and the release command And a binding relationship between the corresponding surface and the function item, and deleting an identifier corresponding to the function item on the surface.
  • the release command of the function item includes: a second rotation instruction and a binding release instruction of the function item.
  • the specific process of releasing the binding relationship is as follows: receiving the second rotation instruction, rotating the 3D polyhedron according to the second rotation instruction, causing the display screen to display the surface corresponding to the second rotation instruction on the 3D polyhedron, and the binding release instruction of the receiving function item, The binding relationship between the surface and the function item is released according to the binding release command, and the identifier corresponding to the function item on the surface is deleted.
  • the input of the second rotation command is realized by sliding the finger in the 3D polyhedral display area of the display screen.
  • the binding release command input is performed by pressing a finger for a period of time in the area of the identifier corresponding to the unbind function item. That is, when the user presses the area of the identifier corresponding to the function to be unbound and keeps for a period of time, the mobile terminal releases the binding relationship between the function item and the surface, and deletes the surface corresponding to the function item.
  • the length of the pressing time can be arbitrarily set, but it should not be too short.
  • the length of the pressing time must be the same as the "implementing the input function item selection" in the above-mentioned custom binding function item operation.
  • the length of the pressing time corresponding to the instruction is different.
  • the mobile terminal since the mobile terminal is preset with a 3D polyhedron, at least one surface of the 3D polyhedron is bound with a function item; at least one surface bound to the function item is bound to at least one a function item, and having an identifier corresponding to the bound function item, the mobile terminal rotates the 3D polyhedron by receiving and according to a face selection instruction input by the user, so that the display screen displays the function item to be selected in the 3D polyhedron
  • the corresponding identifier is located on the surface; then, according to the user input identifier selection instruction, the manner of executing the corresponding function of the function item corresponding to the selected identifier is avoided, thereby avoiding the complicated operation of the traditional menu type step-by-step search for the target function item, and quickly entering the execution target function
  • the operation of the item can make full use of many function items and improve the user experience.
  • the embodiment of the present invention further provides a mobile terminal 100.
  • the mobile terminal 100 is provided with a 3D polyhedron.
  • the 3D polyhedron is generally a regular polyhedron, preferably a regular polyhedron, such as a regular hexahedron or a dodecahedron.
  • At least one face of the 3D polyhedron is bound with a function item; each face with a function item is bound
  • At least one function item is bound, and an identifier corresponding to the bound function item is provided.
  • the identifiers on the faces bound to the function items are arranged according to the preset policy. For example, the corresponding identifiers may be arranged from left to right or top to bottom according to the order of binding of the function items.
  • the face corresponding to the 3D polyhedron is generally a regular polyhedron, preferably a regular polyhedron, such as a regular hexahedron or a dodecahedron.
  • At least one face of the 3D polyhedron
  • the mobile terminal 100 when the function item shortcut operation function is turned on, the 3D polyhedron can be displayed on the display screen of the mobile terminal 100.
  • the mobile terminal 100 includes: a rotation module 110 and a function execution module 120.
  • the rotation module 110 is configured to receive a surface selection instruction, and rotate the 3D polyhedron according to the surface selection instruction, so that the display screen displays the surface of the identifier corresponding to the candidate function item in the 3D polyhedron.
  • the function execution module 120 is configured to receive an identifier selection instruction, and trigger a corresponding function of the function item corresponding to the selected identifier according to the identifier selection instruction.
  • the mobile terminal 100 has enabled the function item shortcut operation function, and the 3D polyhedron is displayed on the display screen, but the side displayed on the display screen of the 3D polyhedron is not the identifier corresponding to the function item to be selected. surface.
  • the 3D polyhedron is displayed on the display screen, but the side displayed on the display screen of the 3D polyhedron is not the identifier corresponding to the function item to be selected. surface.
  • you want to turn on the function of the candidate function item you need to control the 3D polyhedron to rotate, so that the display shows the ID corresponding to the candidate function item of the 3D polyhedron.
  • the user needs to input a face selection command, and the mobile terminal 100 rotates the 3D polyhedron according to the face selection command until the display screen displays the face of the 3D polyhedron corresponding to the selected function item.
  • the input of the face selection command is realized by sliding the finger in the display area of the 3D polyhedron. That is, when the user slides the finger in the 3D polyhedron display area, the 3D polyhedron rotates with the sliding of the finger, and when the 3D polyhedral surface displayed on the display screen is the face of the identifier corresponding to the selected function item, the sliding of the finger is stopped. . If the 3D multifaceted face displayed by the current display is the face of the identifier corresponding to the selected function item, and the user is ready to perform the function of the function item, the user needs to input an identifier selection instruction, and the mobile terminal triggers execution selection according to the identifier selection instruction. Identifies the corresponding function of the corresponding function item.
  • the finger can be in the area of the identifier corresponding to the function item. Click to implement the input of the selected identification selection command. That is, the mobile terminal 100 senses the click pressure in the area where the identifier corresponding to the function item corresponding to the function item on the 3D polyhedron surface, and triggers the corresponding function of executing the function item.
  • one or more function items may be bound to each side of the 3D polyhedron, so that each side is correspondingly provided with one or more identifiers.
  • part of the face of the 3D polyhedron may not be bound to any function item, that is, the part face does not need to be set with any mark.
  • the identifier may be presented in the form of an icon, or may be presented in a text manner. As shown in FIG. 2, when the face 1 of the 3D polyhedron is bound to control the previous song of the music, pause play, and play the function item of the song, the music control is set on the face 1 of the 3D polyhedron.
  • the three icon identifiers are identifiers corresponding to the function items of the previous song, the pause play, and the one song after the play. As shown in FIG.
  • the face 2 of the 3D polyhedron is bound to control the volume down volume, the mute volume, and the volume up function; then, on the face 2 of the 3D polyhedron, three text signs of the volume control are correspondingly set,
  • the three text identifiers are identifiers corresponding to the function items for lowering the volume, muting the volume, and increasing the volume.
  • the face 3 of the 3D polyhedron is bound to the function of allowing the horizontal screen, the screen timeout, and the screen shot of the control screen, and the three text identifiers of the screen control are correspondingly arranged on the face 3 of the 3D polyhedron.
  • the text identifiers are identifiers corresponding to the function items that allow horizontal screen, screen timeout, and screen shot.
  • the mobile terminal 100 provided by the present invention will now be further described with a specific example. If the current display screen of the mobile terminal 100 displays the face 1 of the 3D polyhedron, the user needs to lower the volume of the currently played music at this time. If the mobile terminal 100 uses a touch display screen, the user needs to slide through the finger in the 3D polyhedral display area. At this time, the 3D polyhedron rotates with the sliding of the finger, and the 3D multi-faceted body surface displayed on the display screen is a function for reducing the volume. When the corresponding mark is on the face 2, the sliding of the finger is stopped.
  • a switch function of the function item shortcut operation is set in the mobile terminal 100.
  • a switch button icon for the shortcut operation of the function item can be established on the display screen.
  • the switch button icon moves on the display. That is, the user controls the movement of the switch button icon by pressing the switch button icon with a finger and sliding on the display screen. The principle of the movement is: when the finger presses the switch button icon to slide, when the finger is off the display screen, the mobile terminal moves the switch button icon to the display screen according to the coordinate value (X, y) of the position of the switch button icon on the display screen.
  • the y of the switch button icon The value is less than 1/2 of the length of the display, and when the X coordinate is unchanged, it is translated to the top of the display with the y coordinate; when the finger is off the display, the y value of the switch button icon is greater than 1/2 of the length of the display. When the X coordinate is unchanged, it is translated to the bottom of the display with the y coordinate.
  • the number of functional items that can be bound to the surface of the 3D polyhedron cannot exceed a certain value, that is, the maximum threshold cannot be exceeded.
  • the mobile terminal 100 pre-binds the function item to at least one face of the 3D polyhedron according to the preset policy.
  • the mobile terminal 100 further includes: a binding module 140.
  • the binding module 140 is configured to perform an operation of a custom binding function item on a certain side of the 3D polyhedron. That is, a binding instruction for receiving a function item, establishing a binding relationship between a face and a function item corresponding to the binding instruction on the 3D polyhedron, and establishing an identifier corresponding to the function item on the surface .
  • the binding instruction of the function item includes: a first rotation instruction and a custom binding instruction of the function item. That is, the binding module 130 is further configured to receive a first rotation instruction, rotate the 3D polyhedron according to the first rotation instruction, and cause the display screen to display a surface corresponding to the first rotation instruction on the 3D polyhedron; and receive a custom binding instruction of the function item And establishing, according to the custom binding instruction, a binding relationship between the surface and the function item, and establishing an identifier corresponding to the function item on the surface.
  • the mobile terminal 100 uses a touch display screen, the finger is displayed. The sliding of the 3D polyhedron display area of the screen enables input of the first rotation command.
  • Custom binding instructions include: 3D multifaceted delimited instructions and function item selection instructions.
  • the binding module 140 is further configured to establish, according to the received binding instruction of the 3D polyhedron and the function item selection instruction, a binding relationship between the selected 3D multi-faceted plane and the selected function item. If the mobile terminal 100 uses the touch display screen, the finger input is pressed for a period of time in the area corresponding to the face corresponding to the binding function item to realize the input of the binding instruction of the 3D multi-faceted face.
  • the input of the function item selection instruction is realized by clicking the area where the function item name position in the function item table displayed on the display screen is located. That is, the user presses the area of the face corresponding to the function to be customized by the finger, and keeps it for a period of time, and the function item table icon is popped up on the display screen, and the user needs to bind which function items for the face, only in the function Click once on the corresponding function item name location area in the item table, but ensure that the total number of function items bound to the surface does not exceed the maximum threshold.
  • the length of time for pressing the area of the face corresponding to the custom binding function item can be arbitrarily set, but it should not be too short. If it is too short, it is easy to be mistakenly judged as an ordinary click operation.
  • the binding module 130 is configured to customize the binding function item on one side of the 3D polyhedron. After the identifier corresponding to the function item is established on the corresponding surface of the 3D polyhedron, the identifier on the surface is arranged according to the preset policy. For example, according to the order of binding of the function items, the corresponding identifiers are arranged on the face corresponding to the 3D polyhedron in the order from left to right or top to bottom, and the function items can be bound in combination with each face. The maximum number of values is ranked.
  • the user simultaneously selects multiple function items (more than the maximum threshold value of each face binding function item) to be bound to the polyhedron, such as a face. Up to 4 identifiers can be arranged on the screen. The user selects 13 function items to be bound to the polyhedron. The mobile terminal can bind the four function items to the previously unbound side, and set corresponding 4 identifiers on the surface.
  • the size of the identifier on each face changes adaptively with the number of markers in each face.
  • a maximum of 4 logos can be arranged on one face, and 4 logos have been arranged.
  • the following method can be used: The function item and the lower side of the delay ( Binding the number of function items bound to the next side does not reach the maximum threshold; or if only one function item 1 is bound to the surface, the identifier corresponding to the function item 1 fills the entire surface, and the user newly selects If a function item 2 is bound, the corresponding size of the corresponding item 1 is adaptively changed, for example, to the original half, and the newly selected function item 2 is newly added with the same size after the change.
  • the mobile terminal 100 embodiment further includes: a release module 140.
  • the releasing module 140 is configured to receive a release command of the function item, cancel a binding relationship between the face corresponding to the release command on the 3D polyhedron, and the function item, and delete the face corresponding to the function item.
  • the release command of the function item includes: a second rotation instruction and a binding release instruction of the function item.
  • the releasing module 140 is configured to receive the second rotation instruction, rotate the 3D polyhedron according to the second rotation instruction, and cause the display screen to display a surface corresponding to the second rotation instruction on the 3D polyhedron; and receive a binding release instruction of the function item, The binding relationship between the surface and the function item is released according to the binding release command, and the identifier corresponding to the function item on the surface is deleted.
  • the input of the second rotation command is realized by sliding the finger in the 3D polyhedral display area of the display screen.
  • the 3D polyhedron rotates with the sliding of the finger, and when the 3D polyhedral surface displayed on the display screen is the surface corresponding to the function to be unbound, the sliding of the finger is stopped.
  • the input of the binding release command is implemented by pressing a finger for a period of time in the area where the identifier corresponding to the unbind function item is pressed. That is, the user presses the area where the identifier corresponding to the function to be unbound is held, and keeps the time zone.
  • the releasing module 140 releases the binding relationship between the function item and the surface, and deletes the corresponding function item on the surface.
  • the length of the pressing time can be arbitrarily set, but it should not be too short. If it is too short, it is easy to be mistakenly judged as an ordinary click operation, and the length of the pressing time must be the same as the "implementing the input function item selection" in the above-mentioned custom binding function item operation.
  • the length of the pressing time corresponding to the instruction Same.
  • the mobile terminal 100 of the above embodiment since a 3D polyhedron is provided in advance, at least one surface of the 3D polyhedron is bound with a function item; each surface to which the function item is bound is bound to at least one function item, and is provided with the tied The identification corresponding to the specified function item, the mobile terminal rotates the 3D polyhedron according to the face selection instruction input by the user, so that the display screen displays the face of the identifier corresponding to the candidate function item in the 3D polyhedron; and then, according to the user input identifier selection instruction Triggering the corresponding function of the function item corresponding to the selected identifier, avoiding the complicated operation of the traditional menu type step-by-step search for the target function item, and quickly entering the execution target function item operation, so that many function items can be fully utilized and improved.
  • the implementation method of the mobile terminal and its function item shortcut operation provided by the present invention will be further described by a specific example. If the current mobile terminal 100 display shows the face 1 of the 3D polyhedron, the user needs to lower the volume of the currently playing music. If the mobile terminal 100 uses a touch display screen, the user needs to slide through the finger in the 3D polyhedral display area, at which time the 3D polyhedron rotates as the finger slides. When the 3D multifaceted face displayed on the display is the face of the logo corresponding to the function item for lowering the volume, stop the sliding of the finger.
  • the mobile terminal 100 senses the click pressure in the area corresponding to the identifier corresponding to the volume-reducing function item on the 3D polyhedron surface, and then triggers Perform a lower volume operation on the currently playing music.
  • the method for implementing the shortcut operation of the mobile terminal and the function item disclosed by the embodiment of the invention includes: receiving a face selection instruction, rotating the 3D polyhedron according to the face selection instruction, so that the display screen displays the face of the 3D polyhedron corresponding to the selected function item; Receiving an identifier selection instruction, triggering, according to the identifier selection instruction, a corresponding function of the function item corresponding to the selected identifier; at least one face of the 3D polyhedron is bound with a function item, and each face bound with the function item is bound with at least one function item, It also has an identifier corresponding to the bound function item.
  • the method for implementing the shortcut operation of the mobile terminal and the function item thereof provided by the embodiment of the invention avoids the complicated operation of the traditional menu type step-by-step search for the target function item, and can quickly enter the execution target function item operation, so that many function items are fully obtained. Use, improve user experience.

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Abstract

本发明实施例公开了一种移动终端及其功能项快捷操作的实现方法,包括:接收面选择指令,根据面选择指令旋转3D多面体,使显示屏显示3D多面体中待选功能项对应的标识所在面;接收标识选择指令,根据标识选择指令触发执行所选标识对应的功能项的相应功能;3D多面体的至少一个面绑定有功能项,每个绑定有功能项的面至少绑定一个功能项,并设有与所绑定的功能项对应的标识。本发明实施例所提供的移动终端及其功能项快捷操作的实现方法,避免了传统的菜单式逐级查找目标功能项的复杂操作,可快速进入执行目标功能项操作,使众多功能项得到充分的利用,提升用户体验效果。

Description

技术领域 本发明涉及移动通信技术领域, 尤其是涉及一种移动终端及其功能项快 捷操作的实现方法。
背景技术
随着移动通讯技术的快速发展, 手机等移动迅速普及, 功能也越来越强 大。 触摸式手机, 由于其良好的用户体验和时尚的外观, 逐渐成为发展中的 主流。 目前触摸式手机除了最基本的语音通话与短信功能, 随着智能操作系统 的发展, 已集成了其他众多功能。 同时为了用户有更好的使用体验和选择的 自由度, 许多触摸式手机还具有设置或查看电话簿、 各种提示音、 音量、 待 机壁纸、 屏保、 背光颜色、 时间、 语言等功能。 现有的上述这种触摸式手机, 通常釆用菜单方式来组织各种功能, 即先 将各种功能分成几个大类, 作为第一级菜单; 再将每一个大类分成较小的类, 构成第二级菜单; 如果需要, 再将第二级菜单中的类别分成更小的类, 构成 第三级菜单……类推。 然而上述这种菜单方式组织各种功能存在如下问题: 每个用户的使用习 惯不相同 (每个用户都有自己常用的一些功能)。 这种手机功能多, 当某些用 户的常用功能处于较下层的菜单级中, 用户不得一层层的进入多级菜单才能 使用对应的功能项, 这给手机用户造成操作上的复杂性。 同时还可能出现这 种情况: 用户偶尔需要某项功能, 手机也的确具有这项功能, 但由于用户记 不住或找不到该功能所处的菜单位置, 因而放弃使用该项功能, 导致手机的 众多功能得不到充分的使用。
发明内容 本发明实施例提供一种移动终端及其功能项快捷操作的实现方法, 能够 实现快速操作每一功能, 提升用户体验效果, 使众多功能得到充分的使用。 本发明实施例提供一种移动终端的功能项快捷操作的实现方法, 包括: 所述移动终端接收面选择指令, 根据面选择指令旋转所述 3D多面体, 使 显示屏显示所述 3D多面体中待选功能项对应的标识所在面; 以及, 接收标识选择指令, 根据标识选择指令触发执行所选标识对应的功能项 的相应功能; 其中, 所述 3D多面体的至少一个面绑定有功能项; 每个绑定有功能项的 面至少绑定一个功能项, 并设有与所绑定的功能项对应的标识。
优选地, 所述方法还包括: 所述移动终端接收功能项的绑定指令,建立所述 3D多面体上与该绑定指 令对应的面与功能项之间的绑定关系, 在所述面上建立与所述功能项对应的 标识。
优选地, 所述功能项的绑定指令包括: 第一旋转指令和功能项的自定义 绑定指令; 所述接收功能项的绑定指令,建立所述 3D多面体上与该绑定指令对应的 面、 所述功能项之间的绑定关系; 在所述面上建立所述功能项对应的标识具 体为: 所述移动终端接收所述第一旋转指令, 根据所述第一旋转指令旋转所述 3D多面体, 使显示屏显示所述 3D多面体上与所述第一旋转指令对应的面; 所述移动终端接收功能项的自定义绑定指令, 根据所述自定义绑定指令 建立所述面与所述功能项的绑定关系, 在所述面上建立与所述功能项对应的 标识。
优选地, 所述方法还包括: 所述移动终端接收功能项的解除指令,解除所述 3D多面体上与该解除指 令对应的面与功能项之间的绑定关系, 删除所述面上与所述功能项对应的标 识。 优选地, 所述功能项的解除指令包括: 第二旋转指令和功能项的绑定解 除指令;
所述移动终端接收所述功能项的解除指令,解除所述 3D多面体上与该解 除指令对应的面、 所述功能项之间的绑定关系, 删除所述面上与所述功能项 对应的标识, 具体为: 所述移动终端接收所述第二旋转指令, 根据所述第二旋转指令旋转所述 3D多面体, 使显示屏显示所述 3D多面体上与所述第二旋转指令对应的面; 所述移动终端接收功能项的绑定解除指令, 根据该绑定解除指令解除所 述面与所述功能项的绑定关系, 删除所述面上与所述功能项对应的标识。
本发明实施例还提出一种移动终端, 包括: 旋转模块, 其设置为接收面选择指令, 根据面选择指令旋转所述 3D多面 体, 使显示屏显示所述 3D多面体中待选功能项对应的标识所在面; 功能执行模块, 其设置为接收标识选择指令, 根据标识选择指令触发执 行所选标识对应的功能项的相应功能; 其中,
所述 3D多面体的至少一个面绑定有功能项;每个绑定有功能项的面至少 绑定一个功能项, 并设有与所绑定的功能项对应的标识。
优选地, 所述的移动终端, 还包括: 绑定模块, 其设置为接收功能项的绑定指令, 建立所述 3D多面体上与该 绑定指令对应的面、 所述功能项间的绑定关系, 在所述面上建立与所述功能 项对应的标识。 优选地, 所述功能项的绑定指令包括: 第一旋转指令和功能项的自定义 绑定指令;
所述绑定模块是设置为: 接收所述第一旋转指令, 根据所述第一旋转指 令旋转所述 3D多面体, 使显示屏显示所述 3D多面体上与所述第一旋转指令 对应的面; 以及接收功能项的自定义绑定指令, 根据所述自定义绑定指令建 立所述面与所述功能项的绑定关系; 在所述面上建立与所述功能项对应的标 识。 优选地, 所述的移动终端, 还包括: 解除模块, 其设置为接收功能项的解除指令, 解除所述 3D多面体上与该 解除指令对应的面、 所述功能项之间的绑定关系, 删除所述面上的与所述功 能项对应的标识。 优选地, 所述功能项的解除指令包括: 第二旋转指令和功能项的绑定解 除指令;
所述解除模块是设置为: 接收所述第二旋转指令, 根据所述第二旋转指 令旋转所述 3D多面体, 使显示屏显示所述 3D多面体上与所述第二旋转指令 对应的面; 以及接收功能项的绑定解除指令, 根据该绑定解除指令解除所述 面与所述功能项的绑定关系, 删除所述面上的与所述功能项对应的标识。
本发明实施例提供的一种移动终端及其功能项快捷操作的实现方法, 由 于移动终端预先设置有 3D多面体,该 3D多面体的至少一个面绑定有功能项; 每个绑定有功能项的面至少绑定一个功能项, 并设有与所绑定的功能项对应 的标识, 移动终端通过接收并根据用户输入的面选择指令, 旋转所述 3D多面 体, 使显示屏显示所述 3D多面体中待所选功能项对应的标识所在面; 然后根 据用户输入标识选择指令触发执行所选标识对应的功能项的相应功能的方 式, 避免了传统的菜单式逐级查找目标功能项的复杂操作, 可快速进入执行 目标功能项操作, 可使众多功能项得到充分的利用, 提升了用户体验效果。
附图概述 图 1 是本发明较佳实施方式的移动终端的功能项快捷操作的实现方法实 施例的流程图;
图 2是本发明较佳实施方式的移动终端显示屏的显示画面结构示意图; 图 3 是本发明较佳实施方式的移动终端显示屏的显示画面另一结构示意 图; 图 4是本发明较佳实施方式的移动终端显示屏的显示画面又一结构示意 图;
图 5是本发明较佳实施方式的移动终端一实施例的结构示意图; 图 6是本发明较佳实施方式的移动终端实施例的另一结构示意图; 图 7是本发明较佳实施方式的移动终端实施例的又一结构示意图。
本发明的较佳实施方式
以下结合说明书附图及具体实施例进一步说明本发明较佳实施方式的技 术方案。 应当理解, 此处所描述的具体实施例仅用以解释本发明, 并不用于 限定本发明。 需要说明的是, 在不冲突的情况下, 本申请中的实施例及实施 例中的特征可以相互任意组合。 本发明实施例提供了一种移动终端的功能项快捷操作的实现方法, 其中, 所述移动终端预先设置有 3D多面体, 所述 3D多面体一般为规则的多面体, 较佳地为正多面体, 如可以是正六面体、 正十二面体。 所述 3D多面体的至少 一个面绑定有功能项; 每个绑定有功能项的面至少绑定一个功能项, 并设有 与所绑定的功能项对应的标识。 其中, 每个绑定有功能项的面上的标识根据 预设策略进行排列, 如可根据功能项绑定的先后顺序, 将对应的标识从左至 右、 或由上至下排列在所述 3D多面体对应的面上。 本实施例中当移动终端开启了功能项快捷操作功能, 移动终端的显示屏 上便可显示所述 3D多面体。 参见图 1 , 本实施例的移动终端的功能项快捷操作的实现方法包括: 步骤 S101、 接收面选择指令, 根据面选择指令旋转所述 3D多面体, 使 显示屏显示所述 3D多面体中待选功能项对应的标识所在面。 本步骤中, 当移动终端开启了功能项快捷操作功能, 且显示屏上已显示 所述 3D多面体, 但该 3D多面体在显示屏上所显示的一面不是待选功能项对 应的标识所在面。 此时, 若准备开启待选功能项的功能, 则需要控制所述 3D 多面体进行旋转,使显示屏显示 3D多面体的所述所选功能项对应的标识所在 面。 用户此时需要输入一个面选择指令, 移动终端便根据该面选择指令旋转
3D多面体,直至显示屏显示所述 3D多面体的所选功能项对应的标识所在面。 如果移动终端釆用触摸式显示屏,则通过手指在 3D多面体的显示区域内 滑动来实现面选择指令的输入。 即, 用户通过手指在 3D多面体显示区域内滑 动的过程中, 所述 3D多面体随着手指的滑动而转动, 当显示屏显示的 3D多 面体的面为功能项对应的标识所在面时, 则停止手指的滑动。
步骤 S102、 接收标识选择指令, 根据标识选择指令触发执行所选标识对 应的功能项的相应功能。
如果当前显示屏显示的 3D多面体面为功能项对应的标识所在面,而用户 准备执行所述功能项的功能, 用户需要输入一个所述标识的选择指令, 移动 终端根据该标识选择指令触发执行所选标识对应的功能项的相应功能。
由于在移动终端内部已建立 3D多面体面一功能项的绑定关系,如果移动 终端釆用触摸式显示屏, 则可通过手指在所述功能项对应的标识所在的区域 内点击实现标识选择指令的输入,即移动终端感应到来自 3D多面体面上的功 能项对应的标识所在的区域内的点击压力, 就触发执行所述功能项的相应功
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上述实施例中, 3D多面体的各个面上可以绑定一个或多个功能项, 从而 各个面相应地设置有一个或多个标识。 当然, 3D多面体的部分面也可以不绑 定任何功能项, 即该部分面不需设置任何标识。 其中, 所述标识可以釆用图 标的形式呈现, 也可以釆用文字方式呈现。 如图 2所示, 当 3D多面体的面 1 绑定控制音乐的播放前一首歌、 暂停播放、 播放后一首歌的功能项, 则在该 3D多面体的面 1上相应设置有音乐控制的三个图标标识, 该三个图标标识分 别为播放前一首歌、 暂停播放、 播放后一首歌的功能项对应的标识。 如图 3 所示, 3D多面体的面 2绑定控制音量的降低音量、 静音音量、 增大音量的功 能项; 则在该 3D多面体的面 2上相应设置有音量控制的三个文字标识, 该三 个文字标识分别为降低音量、 静音音量、 增大音量的功能项对应的标识。 如 图 4所示, 3D多面体的面 3绑定控制屏幕的允许横屏、 屏幕超时、 屏幕快照 的功能项; 则该 3D多面体的面 3上相应设置有屏幕控制的三个文字标识, 该 三个文字标识分别为允许横屏、 屏幕超时、 屏幕快照的功能项对应的标识。 现以一个具体实例对本发明提供的移动终端的功能项快捷操作的实现方 法进行进一步的说明。若当前移动终端显示屏显示的是 3D多面体的所述面 1 , 但用户此时需要降低当前播放的音乐的音量。 如果移动终端釆用触摸式显示 屏, 则用户需要通过手指在 3D多面体显示区域内滑动, 此时所述 3D多面体 随着手指的滑动而转动, 当显示屏显示的 3D多面体面为降低音量的功能项对 应的标识所在面 2 时, 则停止手指的滑动。 然后, 通过手指在所述降低音量 的功能项对应的标识所在区域内点击,移动终端感应到来自所述 3D多面体面 上所述降低音量的功能项对应的标识所在区域内的点击压力后, 就触发执行 降低当前音量操作。 本发明实施例提供的移动终端的功能项快捷操作的实现的方法, 为了让 用户根据自己的意愿或者兴趣决定是否启用功能项快捷操作功能, 在移动终 端内设置了功能项快捷操作的开关功能。 为了方便用户使用, 可在显示屏上 建立该功能项快捷操作的开关按钮图标。 当上述功能项快捷操作功能处于关 闭状态时, 只需点击所述开关按钮图标便可以开启所述功能项快捷操作功能。 同理, 当上述功能项快捷操作功能处于开启状态时, 只需点击所述开关按钮 图标便可以关闭所述功能项快捷操作功能。 另外, 为了进一步提升用户的体验效果, 用户还可以控制所述开关按钮 图标在显示屏上移动, 即用户可以通过手指按压开关按钮图标并在显示屏上 滑动, 来控制所述开关按钮图标的移动。 其中移动的原理为: 当手指按压开 关按钮图标滑动后, 手指脱离显示屏时, 移动终端根据开关按钮图标在显示 屏上位置的坐标值 (X , y) , 将开关按钮图标移动至显示屏的左端或右端。 即当 手指脱离显示屏的瞬间开关按钮图标的 X值小于显示屏宽度的 1/2, 而 y坐标 不变, 则随着 X坐标平移至显示屏的左端。 当手指脱离显示屏的瞬间开关按 钮图标的 X值大于显示屏宽度的 1/2, 而 y坐标不变, 则随着 X坐标平移至显 示屏的右端。 当手指脱离显示屏的瞬间开关按钮图标的 y值小于显示屏长度 的 1/2, 而 X坐标不变, 则随着 y坐标平移至显示屏的顶端; 当手指脱离显示 屏的瞬间开关按钮图标的 y值大于显示屏长度的 1/2, 而 X坐标不变, 则随着 y坐标平移至显示屏的底端。 本发明实施例提供的移动终端的功能项快捷操作的实现方法中, 3D多面 体的面可以绑定的功能项个数不能超过一定值, 即不能超过最大阔值。 本实 施例, 移动终端预先根据预设策略为 3D多面体的至少一个面绑定功能项。 这 些 3D多面体面中, 有的一个面绑定有多个功能项, 有的一个面只绑定一个或 两个功能项, 但都不能超过所述最大阔值。 当其中一个面绑定的功能项个数 未达到所述最大阔值, 用户可根据需要为该面自定义绑定一个或多个功能项, 只需保证该面绑定的功能项总个数不超过所述最大阔值即可。 其中为 3D多面体的某一面自定义绑定功能项的操作如下:接收功能项的 绑定指令,建立所述 3D多面体上与该绑定指令对应的面与功能项之间的绑定 关系; 在所述面上建立与所述功能项对应的标识。 上述实施例中, 所述功能项的绑定指令包括: 第一旋转指令和功能项的 自定义绑定指令。 即, 为 3D多面体的某一面自定义绑定功能项的具体操作如 下: 接收第一旋转指令, 根据第一旋转指令旋转 3D多面体, 使显示屏显示所 述 3D多面体上与第一旋转指令对应的面。 然后, 接收功能项的自定义绑定指 令, 根据所述自定义绑定指令建立所述面与所述功能项的绑定关系, 在所述 面上建立与所述功能项对应的标识。 本实施例中, 如果移动终端釆用触摸式显示屏, 则通过手指在显示屏的 3D多面体显示区域内滑动实现所述第一旋转指令的输入。 即, 手指在 3D多 面体显示区域滑动过程中, 3D多面体随着手指的滑动而转动, 当显示屏显示 的 3D多面体面为待自定义绑定功能项对应的面时, 停止手指的滑动。
自定义绑定指令包括: 3D多面体面绑定指令和功能项选择指令。 根据自 定义绑定指令建立所述面与所述功能项的绑定关系具体为:根据所述 3D多面 体面绑定指令和功能项选择指令,建立所选 3D多面体面与所选功能项的绑定 关系。
其中, 如果移动终端釆用触摸式显示屏, 则通过手指在待自定义绑定功 能项对应的 3D多面体的面区域内按压一段时间实现 3D多面体面的绑定指令 输入, 并通过点击显示屏上显示的功能项表中的功能项名称位置所在的区域 实现功能项选择指令的输入。 即, 用户通过手指按压待自定义绑定功能项对 应的 3D多面体面所在区域, 并保持一段时间, 此时显示屏上弹出功能项表图 标, 用户需要为所述面绑定哪些功能项, 则只需在该功能项表中对应的功能 项名称位置区域点击一次即可。 但须保证该所述面绑定的功能项总个数不超 过所述最大阔值。按压待自定义绑定功能项对应的 3D多面体面所在区域的时 间长度可以任意设置, 但不宜过短, 若过短容易被误判断为普通的点击操作。 其中, 上述为 3D多面体的某一面自定义绑定功能项过程中, 在 3D多面 体的对应面上建立功能项对应的标识后, 需根据预设策略对该面上的标识进 行排列, 如可根据功能项绑定的先后顺序, 将对应的标识按照从左至右、 或 由上至下的顺序排列在所述 3D多面体对应的面上,并且可以结合每个面能够 绑定功能项的数量的最大阔值进行排列。
另外, 本实施例中, 若 3D多面体的多个面未绑定功能项, 用户同时选择 多个功能项 (超过每个面绑定功能项的最大阔值)绑定到多面体时, 如一个 面上最多能排列 4个标识, 用户选择了 13个功能项想绑定到多面体上, 移动 终端可将四个功能项与之前未绑定的一面绑定, 在该面上设置对应的 4个标 识, 然后按顺序将下四个功能项与下一个之前未绑定的面绑定, 并在该下一 面上设置对应的 4个标识, 以下以此类推, 当剩下最后一个功能项时, 再将 该最后一个功能项与顺延的下一面绑定, 并在该顺延的下一面上设置对应 1 个标识。 也可以先按顺序为多面体每个面 (该每个面绑定的功能项的数量未 达到最大阔值)上绑一个功能项, 并在每个面上设置对应的标识。 若还有部 分功能项没有绑定, 则再按顺序为每个面 (每个面绑定的功能项的数量未达 到最大阔值)上绑第二个功能项, 相应对在每个面上设置对应的第二个标识。 同时每个面上标识的大小会随着每个面中的标识数量自适应更改。 又例如, 一个面上最多能排列 4个标识, 也已经排列了 4个标识, 此时用户新选择了 一个功能项绑定, 则可以釆用以下方式: 将该功能项与顺延的下一面 (该下 一面绑定的功能项数目未达到最大阔值)绑定; 或者如果之前该面只绑定了 一个功能项 1 , 该功能项 1对应的标识占满了整个面, 此时用户新选择了一个 功能项 2绑定, 则对应功能项 1对应的标识大小进行自适应更改, 例如缩为 原来的一半, 并以更改后的同样大小新增新选择的功能项 2的标识。 可选地, 本发明实施例提供的移动终端的功能项快捷操作的实现方法, 还可以根据用户的需要解除 3D多面体的某一面与功能项的绑定关系,其解除 绑定关系过程如下: 接收功能项的解除指令, 解除 3D多面体上与该解除指令 对应的面与所述功能项之间的绑定关系, 删除所述面上的与所述功能项对应 的标识。
可选地, 上述实施例中, 所述功能项的解除指令包括: 第二旋转指令和 功能项的绑定解除指令。 解除绑定关系的具体过程如下: 接收第二旋转指令, 根据第二旋转指令旋转 3D多面体, 使显示屏显示 3D多面体上与第二旋转指 令对应的面, 以及接收功能项的绑定解除指令, 根据该绑定解除指令解除所 述面与所述功能项的绑定关系, 删除所述面上的与所述功能项对应的标识。 本实施例中, 如果移动终端釆用触摸式显示屏, 则通过手指在显示屏的 3D多面体显示区域内滑动实现第二旋转指令的输入。 即, 手指在 3D多面体 显示区域滑动过程中, 3D多面体随着手指的滑动而转动, 当显示屏显示的 3D 多面体面为待解除绑定功能项对应的面时, 停止手指的滑动。 通过手指在待 解除绑定功能项对应的标识所在区域按压一段时间实现绑定解除指令的输 入。 即, 用户通过按压待解除绑定功能项对应的标识所在区域, 并保持一段 时间, 移动终端即解除功能项与所述面的绑定关系, 并删除所述面上与所述 功能项对应的标识。 按压时间的长度可以任意设置, 但不宜过短, 若过短容 易被误判断为普通的点击操作, 同时按压时间的长度必须与上述自定义绑定 功能项操作中的 "实现输入功能项的选择指令对应的按压时间长度" 不同。
以上移动终端的功能项快捷操作的实现方法的实施例, 由于移动终端预 先设置有 3D多面体, 该 3D多面体的至少一个面绑定有功能项; 每个绑定有 功能项的面至少绑定一个功能项, 并设有与所绑定的功能项对应的标识, 移 动终端通过接收并根据用户输入的面选择指令, 旋转所述 3D多面体, 使显示 屏显示所述 3D多面体中待所选功能项对应的标识所在面;然后根据用户输入 标识选择指令触发执行所选标识对应的功能项的相应功能的方式, 避免了传 统的菜单式逐级查找目标功能项的复杂操作, 可快速进入执行目标功能项操 作, 可使众多功能项得到充分的利用, 提升了用户体验效果。
本发明实施例还提供一种移动终端 100, 移动终端 100上设置有 3D多面 体, 3D多面体一般为规则的多面体,较佳地为正多面体,如可以是正六面体、 正十二面体。 3D多面体的至少一个面绑定有功能项; 每个绑定有功能项的面 至少绑定一个功能项, 并设有与所绑定的功能项对应的标识。 其中, 每个绑 定有功能项的面上的标识根据预设策略进行排列, 如可根据功能项绑定的先 后顺序, 将对应的标识从左至右、 或由上至下排列在所述 3D多面体对应的面 上。 本实施例提供的移动终端 100, 当开启了功能项快捷操作功能时, 移动终 端 100的显示屏上即可显示所述 3D多面体。 参见图 5, 移动终端 100包括: 旋转模块 110、 功能执行模块 120。 旋转 模块 110, 用于接收面选择指令, 根据面选择指令旋转 3D多面体, 使显示屏 显示所述 3D多面体中待选功能项对应的标识所在面。 功能执行模块 120, 用 于接收标识选择指令, 根据标识选择指令触发执行所选标识对应的功能项的 相应功能。
可选地, 上述实施例中, 移动终端 100开启了功能项快捷操作功能, 且 显示屏上已显示 3D多面体, 但该 3D多面体在显示屏上所显示的一面不是待 选功能项对应的标识所在面。 此时, 若准备开启待选功能项的功能, 需要控 制 3D多面体进行旋转, 使显示屏显示 3D多面体的待选功能项对应的标识所 在面。 用户需要输入一个面选择指令, 移动终端 100根据该面选择指令旋转 3D多面体, 直至显示屏显示 3D多面体的待选功能项对应的标识所在面。 可选地, 当所述移动终端 100釆用触摸式显示屏时, 则通过手指在 3D多 面体的显示区域内滑动实现面选择指令的输入。 即, 用户通过手指在 3D多面 体显示区域内滑动的过程中, 3D多面体随着手指的滑动而转动, 当显示屏显 示的 3D多面体面为待选功能项对应的标识所在面时, 停止手指的滑动。 如果 当前显示屏显示的 3D多面体面为待选功能项对应的标识所在面,而用户准备 执行所述功能项的功能, 用户需要输入一个标识选择指令, 移动终端根据该 标识选择指令触发执行所选标识对应功能项的相应功能。
本实施例中,由于在移动终端 100内部已建立 3D多面体面一功能项的绑 定关系, 当移动终端 100釆用触摸式显示屏时, 可通过手指在所述功能项对 应的标识所在区域内点击实现所选标识选择指令的输入。 即, 移动终端 100 感应到来自所述 3D 多面体面上所述功能项对应的标识所在区域内的点击压 力, 便触发执行所述功能项的相应功能。 上述实施例中, 3D多面体的各个面上可以绑定一个或多个功能项, 从而 各个面相应地设置有一个或多个标识。 当然, 3D多面体的部分面也可以不绑 定任何功能项, 即该部分面不需设置任何标识。 其中, 所述标识可以釆用图 标的形式呈现, 也可以釆用文字方式呈现。 如图 2所示, 当 3D多面体的面 1 绑定控制音乐的播放前一首歌、 暂停播放、 播放后一首歌的功能项时, 则在 该 3D多面体的面 1上相应设置有音乐控制的三个图标标识,该三个图标标识 分别为播放前一首歌、 暂停播放、 播放后一首歌的功能项对应的标识。 如图 3 所示, 3D多面体的面 2绑定控制音量的降低音量、 静音音量、 增大音量的功 能项; 则在该 3D多面体的面 2上相应设置有音量控制的三个文字标识, 该三 个文字标识分别为降低音量、 静音音量、 增大音量的功能项对应的标识。 如 图 4所示, 3D多面体的面 3绑定控制屏幕的允许横屏、 屏幕超时、 屏幕快照 的功能项, 则该 3D多面体的面 3上相应设置有屏幕控制的三个文字标识, 该 三个文字标识分别为允许横屏、 屏幕超时、 屏幕快照的功能项对应的标识。
现以一个具体实例对本发明提供的移动终端 100进行进一步的说明。 如 果当前移动终端 100显示屏显示的是 3D多面体的面 1 , 而用户此时需要降低 当前播放音乐的音量。 如果移动终端 100釆用触摸式显示屏, 则用户需要通 过手指在 3D多面体显示区域内滑动,此时 3D多面体随着手指的滑动而转动, 当显示屏显示的 3D多面体面为降低音量的功能项对应的标识所在面 2时,停 止手指的滑动。 然后, 手指在所述降低音量的功能项对应的标识所在区域内 点击,移动终端 100感应到来自 3D多面体面上所述降低音量的功能项对应的 标识所在区域内的点击压力后, 便触发执行降低对当前播放音乐的音量操作。 本发明实施例提供的移动终端 100 中, 为了让用户根据自己的意愿或者 兴趣决定是否启用功能项快捷操作功能, 在移动终端 100 内设置有功能项快 捷操作的开关功能。 为了方便用户使用, 可在显示屏上建立该功能项快捷操 作的开关按钮图标。 当上述功能项快捷操作功能处于关闭状态时, 点击所述 开关按钮图标便可以开启所述功能项快捷操作功能。 同理, 当上述功能项快 捷操作功能处于开启状态时, 点击所述开关按钮图标便可以关闭所述功能项 快捷操作功能。 另外, 为了进一步提升用户的体验效果, 用户还可以控制所述开关按钮 图标在显示屏上移动。 即, 用户通过手指按压开关按钮图标并在显示屏上滑 动, 来控制开关按钮图标的移动。 其中移动的原理为: 当手指按压开关按钮 图标滑动后, 手指脱离显示屏时, 移动终端根据开关按钮图标在显示屏上位 置的坐标值 (X , y) , 将开关按钮图标移动至显示屏的左端或右端, 即: 当 手 指脱离显示屏的瞬间开关按钮图标的 X值小于显示屏宽度的 1/2, 而 y坐标不 变时,则随着 X坐标平移至显示屏的左端; 当手指脱离显示屏的瞬间开关按钮 图标的 X值大于显示屏宽度的 1/2 , 而 y坐标不变时, 则随着 X坐标平移至显 示屏的右端; 当手指脱离显示屏的瞬间开关按钮图标的 y值小于显示屏长度 的 1/2, 而 X坐标不变时, 则随着 y坐标平移至显示屏的顶端; 当手指脱离显 示屏的瞬间开关按钮图标的 y值大于显示屏长度的 1/2 , 而 X坐标不变时, 则 随着 y坐标平移至显示屏的底端。 可选地, 本发明实施例所提供的移动终端 100中, 3D多面体的面可以绑 定的功能项个数不能超过一定值, 即不能超过最大阔值。 本实施例, 移动终 端 100预先根据预设策略为 3D多面体的至少一个面绑定功能项。 这些 3D多 面体面中, 有的一个面绑定有多个功能项, 有的一个面只绑定一个或两个功 能项, 但都不能超过所述最大阔值。 当其中一个面绑定的功能项个数未达到 所述最大阔值, 用户可根据需要为该面自定义绑定一个或多个功能项, 只需 保证该面绑定的功能项总个数不超过所述最大阔值即可。 参见图 6 , 移动终端 100还包括: 绑定模块 140。 所述绑定模块 140用于执行 3D多面体的某一面 自定义绑定功能项的操作。 即, 用于接收功能项的绑定指令, 建立所述 3D多 面体上与该绑定指令对应的面与功能项之间的绑定关系, 在所述面上建立与 所述功能项对应的标识。
可选地, 上述实施例中, 所述功能项的绑定指令包括: 第一旋转指令和 功能项的自定义绑定指令。 即, 绑定模块 130还用于接收第一旋转指令, 根 据第一旋转指令旋转 3D多面体, 使显示屏显示 3D多面体上与第一旋转指令 对应的面; 以及接收功能项的自定义绑定指令, 根据所述自定义绑定指令建 立所述面与所述功能项的绑定关系, 在所述面上建立与所述功能项对应的标 识。 本实施例中, 如果移动终端 100釆用触摸式显示屏, 则通过手指在显示 屏的 3D多面体显示区域内滑动实现第一旋转指令的输入。 即, 手指在 3D多 面体显示区域滑动过程中, 3D多面体随着手指的滑动而转动, 当显示屏显示 的 3D多面体面为待自定义绑定功能项对应的面时, 停止手指的滑动。 自定义绑定指令包括: 3D多面体面的绑定指令和功能项选择指令。 绑定 模块 140还用于根据接收的 3D多面体面的绑定指令和功能项选择指令,建立 所选的 3D多面体面与所选的功能项的绑定关系。 其中, 如果移动终端 100釆用触摸式显示屏, 则通过手指在待自定义绑 定功能项对应的面所在区域内按压一段时间实现 3D 多面体面的绑定指令的 输入。 通过点击显示屏上显示的功能项表中的功能项名称位置所在区域实现 功能项选择指令的输入。 即, 用户通过手指按压待自定义绑定功能项对应的 面所在区域, 并保持一段时间, 显示屏上弹出功能项表图标, 用户需要为所 述面绑定哪些功能项, 只需在该功能项表中对应的功能项名称位置区域点击 一次即可, 但须保证该所述面绑定的功能项总个数不超过所述最大阔值。 按 压待自定义绑定功能项对应的面所在区域的时间长度可以任意设置, 但不宜 过短, 若过短容易被误判断为普通的点击操作。 其中, 绑定模块 130为 3D多面体的某一面自定义绑定功能项过程中, 在 3D多面体的对应面上建立功能项对应的标识后, 需根据预设策略对该面上的 标识进行排列, 如可根据功能项绑定的先后顺序, 将对应的标识按照从左至 右、 或由上至下的顺序排列在所述 3D多面体对应的面上, 并且可以结合每个 面能够绑定功能项的数量的最大阔值进行排列。 另外, 本实施例中, 若 3D多面体的多个面未绑定功能项, 用户同时选择 多个功能项 (超过每个面绑定功能项的最大阔值)绑定到多面体时, 如一个 面上最多能排列 4个标识, 用户选择了 13个功能项想绑定到多面体上, 移动 终端可将四个功能项与之前未绑定的一面绑定, 在该面上设置对应的 4个标 识, 然后按顺序将下四个功能项与下一个之前未绑定的面绑定, 并在该下一 面上设置对应的 4个标识, 以下以此类推, 当剩下最后一个功能项, 再将该 最后一个功能项与顺延的下一面绑定, 并在该顺延的下一面上设置对应 1 个 标识。 也可以先按顺序为多面体每个面 (该每个面绑定的功能项的数量未达 到最大阔值)上绑一个功能项, 并在每个面上设置对应的标识。 若还有部分 功能项没有绑定, 则再按顺序为每个面 (每个面绑定的功能项的数量未达到 最大阔值)上绑第二个功能项, 相应对在每个面上设置对应的第二个标识。 同时每个面上标识的大小会随着每个面中的标识数量自适应更改。 又例如, 一个面上最多能排列 4个标识, 也已经排列了 4个标识, 此时用户新选择了 一个功能项绑定, 则可以釆用以下方式: 将该功能项与顺延的下一面 (该下 一面绑定的功能项数目未达到最大阔值)绑定; 或者如果之前该面只绑定了 一个功能项 1 , 该功能项 1对应的标识占满了整个面, 此时用户新选择了一个 功能项 2绑定, 则对应功能项 1对应的标识大小进行自适应更改, 例如缩为 原来的一半, 并以更改后的同样大小新增新选择的功能项 2的标识。 可选地,移动终端 100为 3D多面体的面与功能项建立绑定关系后还可以 解除 3D多面体的某一面与功能项的绑定关系。 参见图 7 , 移动终端 100实施 例中还包括: 解除模块 140。所述解除模块 140, 用于接收功能项的解除指令, 解除 3D多面体上与该解除指令对应的面、 所述功能项之间的绑定关系, 删除 所述面上的与所述功能项对应的标识。 可选地, 实施例移动终端 100 中, 所述功能项的解除指令包括: 第二旋 转指令和功能项的绑定解除指令。 解除模块 140用于接收所述第二旋转指令, 根据第二旋转指令旋转所述 3D多面体, 使显示屏显示 3D多面体上与第二旋 转指令对应的面; 并接收功能项的绑定解除指令, 根据该绑定解除指令解除 所述面与所述功能项的绑定关系, 删除所述面上的与所述功能项对应的标识。 本实施例中, 如果移动终端 100釆用触摸式显示屏, 则通过手指在显示 屏的 3D多面体显示区域内滑动实现第二旋转指令的输入。 即, 手指在 3D多 面体显示区域滑动过程中, 3D多面体随着手指的滑动而转动, 当显示屏显示 的 3D多面体面为待解除绑定功能项对应的面时, 则停止手指的滑动。 通过手 指在待解除绑定功能项对应的标识所在区域按压一段时间实现绑定解除指令 的输入。 即, 用户按压待解除绑定功能项对应的标识所在区域, 并保持一段 时间, 此时解除模块 140解除功能项与所述面的绑定关系, 并删除所述面上 所述功能项对应的标识。 按压时间的长度可以任意设置, 但不宜过短, 若过 短容易被误判断为普通的点击操作, 同时按压时间的长度必须与上述自定义 绑定功能项操作中的 "实现输入功能项的选择指令对应的按压时间长度" 不 同。
以上实施例的移动终端 100, 由于预先设置有 3D多面体, 该 3D多面体 的至少一个面绑定有功能项; 每个绑定有功能项的面至少绑定一个功能项, 并设有与所绑定的功能项对应的标识, 移动终端通过接收并根据用户输入的 面选择指令, 旋转 3D多面体, 使显示屏显示 3D多面体中待选功能项对应的 标识所在面; 然后, 根据用户输入标识选择指令触发执行所选标识对应的功 能项的相应功能, 避免了传统的菜单式逐级查找目标功能项的复杂操作, 可 快速进入执行目标功能项操作, 可使众多功能项得到充分的利用, 提升了用 户体验效果。 现以一个具体实例对本发明提供的移动终端及其功能项快捷操作的实现 方法进行进一步的说明。如果当前移动终端 100显示屏显示的是 3D多面体的 面 1 , 而用户需要降低当前播放音乐的音量。如果移动终端 100釆用触摸式显 示屏, 则用户需要通过手指在 3D多面体显示区域内滑动, 此时 3D多面体随 着手指的滑动而转动。当显示屏显示的 3D多面体面为降低音量的功能项对应 的标识所在面时, 停止手指的滑动。 然后, 通过手指在所述降低音量的功能 项对应的标识所在区域内点击,移动终端 100感应到来自 3D多面体面上所述 降低音量的功能项对应的标识所在区域内的点击压力后, 便触发执行降低对 当前播放音乐的音量操作。
本领域普通技术人员可以理解上述方法中的全部或部分步骤可通过程序 来指令相关硬件完成, 所述程序可以存储于计算机可读存储介质中, 如只读 存储器、 磁盘或光盘等。 可选地, 上述实施例的全部或部分步骤也可以使用 一个或多个集成电路来实现, 相应地, 上述实施例中的各模块 /单元可以釆用 硬件的形式实现, 也可以釆用软件功能模块的形式实现。 本发明不限制于任 何特定形式的硬件和软件的结合。 应当理解的是, 以上仅为本发明的优选实施例, 不能因此限制本发明的 专利范围, 凡是利用本发明说明书及附图内容所作的等效结构或等效流程变 换, 或直接或间接运用在其他相关的技术领域, 均同理包括在本发明的专利 保护范围内。 工业实用性
本发明实施例公开的移动终端及其功能项快捷操作的实现方法, 包括: 接收面选择指令, 根据面选择指令旋转 3D多面体, 使显示屏显示 3D多面体 中待选功能项对应的标识所在面; 接收标识选择指令, 根据标识选择指令触 发执行所选标识对应的功能项的相应功能; 3D多面体的至少一个面绑定有功 能项, 每个绑定有功能项的面至少绑定一个功能项, 并设有与所绑定的功能 项对应的标识。 本发明实施例所提供的移动终端及其功能项快捷操作的实现 方法, 避免了传统的菜单式逐级查找目标功能项的复杂操作, 可快速进入执 行目标功能项操作, 使众多功能项得到充分的利用, 提升用户体验效果。

Claims

权 利 要 求 书
1、 一种移动终端的功能项快捷操作的实现方法, 包括: 移动终端接收面选择指令, 根据所述面选择指令旋转 3D多面体, 使显示 屏显示所述 3D多面体中待选功能项对应的标识所在面; 以及 接收标识选择指令, 根据所述标识选择指令触发执行所选标识对应的功 能项的相应功能; 其中, 所述 3D多面体的至少一个面绑定有功能项, 每个绑定有功能项的 面至少绑定一个功能项, 并设有与所绑定的功能项对应的标识。
2、 根据权利要求 1所述的方法, 还包括: 所述移动终端接收功能项的绑定指令,建立所述 3D多面体上与该绑定指 令对应的面与功能项之间的绑定关系, 在所述面上建立与所述功能项对应的 标识。
3、 根据权利要求 2所述的方法, 其中, 所述功能项的绑定指令包括: 第 一旋转指令和功能项的自定义绑定指令; 所述接收功能项的绑定指令,建立所述 3D多面体上与该绑定指令对应的 面、 所述功能项之间的绑定关系, 在所述面上建立所述功能项对应的标识, 包括: 接收所述第一旋转指令, 旋转所述 3D多面体, 使显示屏显示所述 3D多 面体上与所述第一旋转指令对应的面; 接收所述功能项的自定义绑定指令,建立所述 3D多面体上的所述面与功 能项的绑定关系, 在所述面上建立与所述功能项对应的标识。
4、 根据权利要求 1所述的方法, 还包括: 所述移动终端接收功能项的解除指令,解除所述 3D多面体上与该解除指 令对应的面与功能项的绑定关系, 删除所述面上与所述功能项对应的标识。
5、 根据权利要求 4所述的方法, 其中, 所述功能项的解除指令包括: 第 二旋转指令和功能项的绑定解除指令; 所述接收功能项的解除指令,解除所述 3D多面体上与该解除指令对应的 面、 所述功能项之间的绑定关系, 删除所述面上的与所述功能项对应的标识, 包括: 接收所述第二旋转指令, 旋转所述 3D多面体, 使显示屏显示所述 3D多 面体上与所述第二旋转指令对应的面; 接收所述功能项的绑定解除指令, 解除所述面与功能项的绑定关系, 删 除所述面上与所述功能项对应的标识。
6、 一种移动终端, 包括: 旋转模块, 其设置为接收面选择指令, 根据面选择指令旋转所述 3D多面 体, 使显示屏显示所述 3D多面体中待选功能项对应的标识所在面; 以及 功能执行模块, 其设置为接收标识选择指令, 根据标识选择指令触发执 行所选标识对应的功能项的相应功能;
其中, 所述 3D多面体的至少一个面绑定有功能项, 每个绑定有功能项的 面至少绑定一个功能项, 并设有与所绑定的功能项对应的标识。
7、 根据权利要求 6所述的移动终端, 还包括: 绑定模块, 其设置为接收功能项的绑定指令, 建立所述 3D多面体上与该 绑定指令对应的面与所述功能项的绑定关系, 在所述面上建立与所述功能项 对应的标识。
8、根据权利要求 7所述的移动终端, 其中, 所述功能项的绑定指令包括: 第一旋转指令和功能项的自定义绑定指令; 所述绑定模块是设置为: 接收所述第一旋转指令, 旋转所述 3D多面体, 使显示屏显示所述 3D多面体上与所述第一旋转指令对应的面; 以及接收功能 项的自定义绑定指令, 建立所述面与所述功能项的绑定关系; 在所述面上建 立与所述功能项对应的标识。
9、 根据权利要求 6所述的移动终端, 还包括: 解除模块, 其设置为接收功能项的解除指令, 解除所述 3D多面体上与该 解除指令对应的面与所述功能项的绑定关系, 删除所述面上与所述功能项对 应的标识。
10、 根据权利要求 9所述的移动终端, 其中, 所述功能项的解除指令包 括: 第二旋转指令和功能项的绑定解除指令; 所述解除模块是设置为: 接收所述第二旋转指令, 旋转所述 3D多面体, 使显示屏显示所述 3D多面体上的面; 以及接收功能项的绑定解除指令, 解除 所述面与所述功能项的绑定关系, 删除所述面上与所述功能项对应的标识。
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