WO2014186941A1 - 一种基于终端设备的屏幕调节方法及装置 - Google Patents

一种基于终端设备的屏幕调节方法及装置 Download PDF

Info

Publication number
WO2014186941A1
WO2014186941A1 PCT/CN2013/075932 CN2013075932W WO2014186941A1 WO 2014186941 A1 WO2014186941 A1 WO 2014186941A1 CN 2013075932 W CN2013075932 W CN 2013075932W WO 2014186941 A1 WO2014186941 A1 WO 2014186941A1
Authority
WO
WIPO (PCT)
Prior art keywords
terminal device
area
screen
display
display area
Prior art date
Application number
PCT/CN2013/075932
Other languages
English (en)
French (fr)
Inventor
陈石峰
汪晓永
Original Assignee
华为终端有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 华为终端有限公司 filed Critical 华为终端有限公司
Priority to PCT/CN2013/075932 priority Critical patent/WO2014186941A1/zh
Priority to CN201380000689.1A priority patent/CN103502922A/zh
Publication of WO2014186941A1 publication Critical patent/WO2014186941A1/zh

Links

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
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F1/00Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
    • G06F1/16Constructional details or arrangements
    • G06F1/1613Constructional details or arrangements for portable computers
    • G06F1/1633Constructional details or arrangements of portable computers not specific to the type of enclosures covered by groups G06F1/1615 - G06F1/1626
    • G06F1/1684Constructional details or arrangements related to integrated I/O peripherals not covered by groups G06F1/1635 - G06F1/1675
    • G06F1/1694Constructional details or arrangements related to integrated I/O peripherals not covered by groups G06F1/1635 - G06F1/1675 the I/O peripheral being a single or a set of motion sensors for pointer control or gesture input obtained by sensing movements of the portable computer
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/048Interaction techniques based on graphical user interfaces [GUI]
    • G06F3/0481Interaction techniques based on graphical user interfaces [GUI] based on specific properties of the displayed interaction object or a metaphor-based environment, e.g. interaction with desktop elements like windows or icons, or assisted by a cursor's changing behaviour or appearance
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F2200/00Indexing scheme relating to G06F1/04 - G06F1/32
    • G06F2200/16Indexing scheme relating to G06F1/16 - G06F1/18
    • G06F2200/163Indexing scheme relating to constructional details of the computer
    • G06F2200/1637Sensing arrangement for detection of housing movement or orientation, e.g. for controlling scrolling or cursor movement on the display of an handheld computer

Definitions

  • the present invention relates to the field of mobile communication technologies, and in particular, to a screen adjustment method and apparatus based on a terminal device. Background technique
  • the display screens of smart terminal devices such as smart phones and tablet computers are gradually becoming larger screens.
  • the user can not only realize the mobile communication interactive service by using the smart terminal device, but also realize the multimedia application service with high display effect more conveniently anytime and anywhere, and greatly improve the user terminal experience.
  • the applicant has found that for a terminal device having a large screen (such as a screen size of 4.5 inches and 4.5 inches or more), the user operates the terminal device, especially when the terminal device is operated by one-hand operation.
  • the display screen of the terminal device is too large, and the length of the user's finger is not enough, so that the user cannot simultaneously operate all the display icons in the entire screen display area of the terminal device, thereby causing problems in the operation of the device and reducing the terminal device.
  • the embodiments of the present invention provide a screen adjustment method and device based on a terminal device, which solves the problem that the operation caused by the inability to operate the entire screen display area when the terminal device is operated by one hand is difficult.
  • a terminal device-based screen adjustment method including: determining a rotation angle generated when a terminal device rotates from an initial position to a current position; when the rotation angle is greater than or equal to a set threshold, The screen display area of the terminal device performs a reduction process.
  • the terminal device The rotation mode used for rotating from the initial position to the current position includes at least one of the following modes: rotating the counterclockwise or clockwise rotation axis with the straight line of any side when the terminal device is in the initial position; or
  • a straight line that passes through the center point of the device of the terminal device and is perpendicular to the plane in which the terminal device is in the initial position is rotated counterclockwise or clockwise.
  • the terminal device when the rotation angle is greater than or equal to a set threshold, the terminal device is used
  • the screen display area is reduced, including:
  • each display icon in the screen display area and the spacing between adjacent display icons are reduced.
  • the method further includes: determining a rotation angular velocity when the terminal device is rotated from an initial position to a current position; and correspondingly, performing a reduction process on the screen display area of the terminal device, including: rotating according to the rotation The angular velocity determines a region reduction speed, wherein the greater the rotational angular velocity, the greater the region reduction speed; and the screen display region of the terminal device is reduced based on the determined region reduction speed.
  • the method further includes: stopping the screen display area reduction processing operation performed by the terminal device when receiving the pause operation instruction.
  • the method further includes: adjusting the screen display area of the terminal device to perform a screen when receiving the screen display area recovery operation instruction The display area is reduced before the processing.
  • the second aspect provides a terminal device-based screen adjusting device, including: an angle determining unit, configured to determine a rotation angle generated when the terminal device rotates from an initial position to a current position; and a screen processing unit, configured to When the rotation angle is greater than or equal to the set threshold, the screen display area of the terminal device is reduced.
  • the rotating manner that the terminal device uses to rotate from the initial position to the current position includes at least one of the following manners:
  • the straight line of either side in the initial position is the counterclockwise or clockwise rotation of the rotating shaft; or
  • the line where any diagonal line is when the terminal device is in the initial position is the rotation axis counterclockwise Or rotate clockwise; or,
  • a straight line that passes through the center point of the device of the terminal device and is perpendicular to the plane in which the terminal device is in the initial position is rotated counterclockwise or clockwise.
  • the screen processing unit is configured to perform a reduction process on a screen display area of the terminal device , specifically for:
  • each display icon in the screen display area and the spacing between adjacent display icons are reduced.
  • the screen processing unit is further configured to: when the rotation angle is larger, control the first The larger the area occupied by the display sub-area, or the greater the degree of reduction of each display icon in the screen display area, or the greater the degree of reduction in the spacing between adjacent display icons.
  • the screen adjusting device further includes an angular velocity determining unit, configured to determine a rotational angular velocity when the terminal device rotates from an initial position to a current position; and the screen processing unit is further configured to perform, according to the rotational angular velocity, Determining a region reduction speed, and performing a reduction process on the screen display region of the terminal device based on the determined region reduction speed, wherein the rotation angular velocity The larger the area, the greater the speed of the reduction.
  • the screen processing unit is further configured to stop the screen display area reduction processing operation performed by the terminal device when receiving the pause operation instruction.
  • the screen processing unit is further configured to adjust a screen display area of the terminal device when receiving a screen display area recovery operation instruction after performing a reduction process on the screen display area of the terminal device Go to the state before the screen display area is reduced.
  • the third aspect provides a terminal device, including: a sensor, configured to determine a rotation angle generated when the terminal device rotates from an initial position to a current position; and a processor, configured to: when the rotation angle is greater than or equal to a set width At the time of the value, the screen display area of the terminal device is reduced.
  • the rotating manner used by the terminal device to rotate from the initial position to the current position includes at least one of the following manners:
  • the straight line of either side in the initial position is the counterclockwise or clockwise rotation of the rotating shaft; or
  • a straight line that passes through the center point of the device of the terminal device and is perpendicular to the plane in which the terminal device is in the initial position is rotated counterclockwise or clockwise.
  • the processor when performing a reduction process on a screen display area of the terminal device, Specifically used for:
  • each display icon in the screen display area and the spacing between adjacent display icons are reduced.
  • the processor is further configured to control the first display when the rotation angle is larger The larger the area occupied by the sub-area, or the greater the degree of reduction of each display icon in the screen display area, or the greater the degree of reduction in the spacing between adjacent display icons.
  • the senor is further configured to determine a rotation angular velocity when the terminal device rotates from an initial position to a current position; the processor is further configured to determine a region reduction speed according to the rotation angular velocity, and based on Determining the area reduction speed, and performing a reduction process on the screen display area of the terminal device, wherein the larger the rotation angular velocity, the larger the region reduction speed.
  • the processor is further configured to stop the screen display area reduction processing operation performed by the terminal device when receiving the pause operation instruction.
  • the processor is further configured to display a display area of the terminal device After the reduction processing is performed, upon receiving the screen display area recovery operation command, the screen display area of the terminal device is adjusted to a state before the screen display area reduction processing is performed.
  • the terminal device-based screen adjustment device provided by the second aspect or the terminal device provided by the third aspect which is generated when the terminal device can determine to rotate from the initial position to the current position Rotating angle, and when the rotation angle is greater than or equal to the set threshold, the screen display area of the terminal device is reduced, thereby realizing automatic adjustment of the screen display content width of the terminal device, and solving the prior art
  • the problem of difficulty in operation caused by the inability to operate the entire screen display area when the terminal device is operated by one hand is improved, and the ease of operation of the terminal device and the operation experience of the user are improved.
  • FIG. 1 is a schematic flowchart of a screen adjustment method based on a terminal device according to Embodiment 1 of the present invention
  • FIG. 2( a ) is a schematic diagram 1 showing a rotation mode used when the terminal device rotates from an initial position to a current position according to the first embodiment of the present invention
  • 2(b) is a second schematic diagram showing the rotation mode used by the terminal device when the terminal device is rotated from the initial position to the current position according to the first embodiment of the present invention
  • FIG. 2(c) is a schematic diagram 3 showing a rotation mode used when the terminal device rotates from an initial position to a current position according to the first embodiment of the present invention
  • FIG. 2(d) is a schematic diagram 4 of a rotation mode used when the terminal device rotates from an initial position to a current position according to the first embodiment of the present invention
  • FIG. 2( e ) is a schematic diagram 5 of a rotation mode used when the terminal device rotates from an initial position to a current position according to the first embodiment of the present invention
  • FIG. 3 is a schematic diagram 1 of a screen display area adjustment manner according to Embodiment 1 of the present invention
  • FIG. 4 is a second schematic diagram of a screen display area adjustment manner according to Embodiment 1 of the present invention
  • FIG. FIG. 6 is a schematic diagram 4 of a screen display area adjustment manner according to the first embodiment of the present invention
  • FIG. 7 is a schematic diagram 5 of a screen display area adjustment manner according to Embodiment 1 of the present invention
  • FIG. 8 is a schematic diagram 6 of a screen display area adjustment manner according to Embodiment 1 of the present invention
  • FIG. 10 is a schematic structural diagram of a screen adjusting device based on a terminal device according to Embodiment 2 of the present invention.
  • FIG. 11 is a schematic structural diagram of a terminal device according to Embodiment 3 of the present invention. detailed description
  • Embodiment 1 is a diagrammatic representation of Embodiment 1:
  • FIG. 1 it is a schematic flowchart of a method for adjusting a screen based on a terminal device according to the first embodiment of the present invention.
  • the screen adjustment method can be applied to any terminal device with a touch function such as a smart phone or a tablet computer.
  • the embodiment of the present invention does not limit this; specifically, the screen adjustment method may include the following steps:
  • Step 101 Determine a rotation angle generated when the terminal device rotates from the initial position to the current position.
  • the initial location of the terminal device refers to a location where the terminal device has not performed the screen region reduction processing operation; further, it generally refers to the normal display of the screen display region of the terminal device.
  • a state that is, a state in which the terminal device is located when the screen area reduction processing operation is not performed (for example, each display icon in the screen display area of the terminal device can completely cover the entire screen display area);
  • the initial position of the terminal device can be set according to the actual situation, and can be set to be in the position of the user, the horizontal position, the vertical position or the other position, which is not limited in this embodiment of the present invention.
  • the current location of the terminal device refers to a location where the terminal device rotates after a certain displacement or angle with respect to an initial position of the terminal device.
  • the terminal device may be provided with an automatic screen adjustment switch, and the screen automatic adjustment switch may be used to determine whether to start setting in the terminal device.
  • a device such as a gravity sensor or an angle sensor
  • the screen automatic adjustment function of the terminal device can be turned on.
  • the sensor device disposed in the terminal device is activated, and correspondingly, when detecting that the screen automatic adjustment function of the terminal device is activated, the terminal device may pass through a sensor disposed in the terminal device.
  • the device performs an operation of determining a rotation angle generated when the terminal device rotates from an initial position to a current position; when the user does not need to adjust the screen display area of the terminal device, such as the user's finger is long enough to be operated by one hand to the whole When the screen display area or the user hands operate the terminal device, etc.
  • the screen automatic adjustment switch of the terminal device may be set to a closed state. At this time, the sensor device disposed in the terminal device will be in an unactivated state, and the terminal device does not need to perform determination to rotate the terminal device from the initial position. The operation of the rotation angle produced by the current position.
  • the terminal device rotates from an initial position to a current mode 1: as shown in FIG. 2( a ), a line where any side of the terminal device is in an initial position Rotating the counterclockwise or clockwise rotation, wherein either side can be any side of the terminal device; specifically, as shown in FIG. 2(b), when one side of the terminal device is curved
  • a non-linear segment such as a curve
  • a straight line tangential to the side edge and parallel to a certain central axis of the terminal device may be used as a straight line of the side edge, and rotated on a straight line with the side line as a rotation axis. Rotating with a straight line that is tangent to the side and parallel to a certain central axis of the terminal device;
  • Method 2 As shown in Fig. 2 (c), the straight line of any central axis (such as the central horizontal axis and the central vertical axis) when the terminal device is in the initial position is rotated counterclockwise or clockwise;
  • Method 3 As shown in FIG. 2(d), the straight line of any diagonal line when the terminal device is in the initial position is rotated counterclockwise or clockwise as the rotation axis;
  • Method 4 as shown in FIG. 2(e), to pass through the device center point of the terminal device and A straight line perpendicular to the plane in which the terminal device is in the initial position is rotated counterclockwise or clockwise.
  • the terminal device may also be rotated from the initial position to the current position in other manners, which is not limited in this embodiment of the present invention;
  • any diagonal of the terminal device may be a central axis of the terminal device, and at this time, the terminal device is at the center when the initial device is in the initial position.
  • the line where the axis is located is the counterclockwise or clockwise rotation of the axis of rotation.
  • the final rotation angles are generally located in the range of (0, 90°).
  • Step 102 When the rotation angle is greater than or equal to the set threshold, the screen display area of the terminal device is reduced.
  • the sensor device disposed in the terminal device may convert the rotation angle into a corresponding electrical signal.
  • the embodiment of the present invention does not limit this.
  • the set threshold is small, if the set threshold is set to any value within the range of (0, 5), for any terminal device, when determining the terminal device
  • the rotation angle generated when rotating from the initial position to the current position is not less than the set threshold
  • the screen display area of the terminal device can be correspondingly reduced; at this time, since the terminal device can capture the rotation angle
  • the small change therefore, can achieve a more accurate reduction effect on the screen display area of the terminal device, but, in the actual operation process, when the user performs the corresponding operation processing using the terminal device, the terminal device usually has a certain a small degree of rotation, and the tiny rotation is within an acceptable error range, and does not need to cause a corresponding change in the screen display area Therefore, in order to reduce the problem of heavy processor load caused by the terminal device frequently capturing a small rotation angle, in the embodiment of the present invention, the set threshold is generally set to a relative Larger non-zero value, such as setting the set threshold to any value in the range of (5, , 15°) or (25.
  • the screen display area of the terminal device may be reduced in the following manner:
  • Method 1 maintaining the size of each display icon in the screen display area and the spacing between each adjacent display icon (any two upper and lower or adjacent display icons), and will be located at the first display of the screen
  • the display icons in the area and the second display sub-area are displayed in the second display sub-area of the screen, wherein the first display sub-area is adjacent to the second display sub-area and the first display sub-area is The second display sub-areas combine to form an entire screen display area.
  • the actual screen display area of the final terminal device will become the second display sub-area, and each display The icons will be sequentially arranged in the second display sub-area in the original arrangement order and arrangement interval.
  • the positions of the first display sub-area and the second display sub-area may be set according to actual conditions, which is not limited by the embodiment of the present invention, such as the first display sub-area or
  • the second display sub-area is disposed at an upper portion, a lower portion, a left portion or a right portion of the display screen area of the terminal device, etc.; preferably, in the embodiment of the present invention, in order to increase the use of the user to a greater extent Experiencing, the location of the second display sub-area may be set on a side where the terminal device contacts the operation user of the terminal device, such as when the user operates the terminal device with one hand and the left hand The position of the display sub-area is set in the left portion of the display area of the terminal device screen.
  • the size of the area of the first display sub-area and the second display sub-area may also be set according to the actual situation, and the embodiment of the present invention does not limit this; for example, in the present invention
  • the area size of the first display sub-area and the second display sub-area may be set to a fixed value, regardless of the rotation angle, and finally The actual display area of the screen is fixed, and may be set according to the larger the rotation angle and the area size of the second display sub-area.
  • the area size of the first display sub-area cannot be greater than the set maximum value, and the area size of the first display sub-area has been
  • the screen display area reduction processing operation performed on the terminal device is automatically stopped, and accordingly, the area size of the second display sub-area cannot be smaller than the set minimum value.
  • the screen display area reduction processing operation performed on the terminal device is automatically stopped; wherein the set maximum value and the set value The minimum value needs to be set according to the actual situation, and the embodiment of the present invention does not limit this.
  • the following is a description of the process of reducing the processing of the screen display area of the terminal device by using the one-handed operation of the terminal device in the vertical plane and facing the user as an example:
  • the terminal device when the terminal device is in an initial position, the terminal device is in a normal display state, and the screen display area of the terminal device has a display icon of 4 rows and 4 columns, wherein icons 1 to 16 are in accordance with The labels are arranged in order from low to high; when the user operates the terminal device with one hand and cannot touch the right part of the screen display area of the terminal device, the user can rotate the central long axis of the terminal device as a rotation a shaft, the terminal device is rotated counterclockwise or clockwise by a certain angle along a horizontal plane.
  • the sensor device disposed in the terminal device can determine a rotation angle generated when the terminal device rotates from the initial position to the current position, and Converting the rotation angle into an electrical signal and transmitting the signal to the processor of the terminal device, wherein the processor performs a reduction process on the screen display area of the terminal device according to the converted electrical signal; specifically, the entire screen may be displayed
  • the display icon in the area is displayed in the left part of the sub-area (B area shown in Figure 3).
  • the display icon in the right part of the screen display area (the A area shown in Figure 3) (the rightmost column displays the icon) shows the sub-area to the left part (B area shown in Figure 3).
  • the terminal device may also display the sub-area in the right part of the display icon in the entire screen display area according to the screen display area adjustment mode shown in FIG. 4 (as shown in FIG. 4).
  • the display icon (the leftmost column display icon) in the left part display sub-area (the A area shown in Figure 4) in the screen display area of the terminal device can be displayed to the right part of the sub-area (such as The B area shown in FIG. 4 is indented, and the embodiment of the present invention does not limit this.
  • the user may select a correspondence between the rotation mode and the reduction mode, for example: You can select, when the user rotates the phone to the left (counterclockwise rotation), each display icon is indented to the left; or, when the user When you hold the phone to the right (clockwise rotation), each display icon is indented to the right.
  • each display icon in the screen display area is kept constant, and the spacing between adjacent display icons in the screen display area is reduced.
  • the position of one side (or any row, any column) in the screen display area may be maintained.
  • the effect of reducing the screen display area is achieved by changing the position and size of one or more display icons in the area and reducing the distance between each display icon at the other positions and the display icon at the fixed position.
  • the location of one or more display icons in the location area on the side of the terminal device that is in contact with the operation user of the terminal device may be maintained.
  • the size is unchanged, and the distance between each display icon at the other position and each display icon at the fixed position is reduced to achieve the effect of reducing the screen display area; for example, when the user operates the terminal with one hand with the left hand In the device, the position and size of each display icon in the leftmost position area of the screen display area of the terminal device may be maintained, and the display icons at other positions and the display icons at the fixed position may be reduced.
  • the corresponding screen display area adjustment mode diagram can be as shown in Figure 5.
  • the position and size of each display icon in the rightmost position area of the screen display area of the terminal device may be kept unchanged, and each of the other positions may be reduced.
  • the manner of displaying the distance between the icon and each display icon at the fixed position is used to achieve the effect of reducing the screen display area.
  • the corresponding screen display area adjustment mode diagram can be as shown in FIG. 6.
  • the corresponding screen display area adjustment mode diagram may be Figure 7 shows.
  • the effect of reducing the screen display area can be achieved to some extent.
  • each display icon in the screen display area and the spacing between adjacent display icons are reduced.
  • each display icon in the screen display area and the spacing between adjacent display icons when the size of each display icon in the screen display area and the spacing between adjacent display icons are reduced, the spacing between adjacent display icons may be kept unchanged and reduced.
  • the size of each display icon, after which the position of one of the display icons in any one of the screen display areas (or any row, any column) is maintained, and the display icons at other positions are reduced.
  • the effect of reducing the screen display area is achieved by the way of the spacing between the display icons at the fixed position.
  • the distance between each adjacent display icon may be kept unchanged and the size of each display icon may be reduced, and then maintained.
  • the position of a certain display icon at the edge position of the side where the terminal device is in contact with the operation user of the terminal device does not change, and the distance between each display icon at the other position and the display icon at the fixed position is reduced.
  • the size of each display icon and the spacing between adjacent display icons are reduced; for example, when the user operates the terminal device with one hand with the left hand, the user can first maintain the relationship between the adjacent display icons.
  • the pitch is constant and the size of each display icon is reduced.
  • the corresponding screen display area adjustment mode diagram can be as shown in FIG. 8.
  • the degree of reduction of each display icon and each adjacent display icon may be displayed.
  • the degree of reduction of the spacing between the two is set to a fixed value, that is, the actual display area of the screen is fixed regardless of the rotation angle, and the larger the rotation angle, the degree of reduction of each display icon, and The size of each of the adjacent display icons is reduced, and the size of each display icon or the spacing between adjacent display icons is reduced and processed.
  • This embodiment of the present invention does not limit this; It should be noted that, regardless of the reduction degree setting method, the degree of reduction of each display icon or the reduction of the spacing between adjacent display icons cannot be greater than the set maximum value, when each display icon is reduced. When the degree or the reduction of the spacing between adjacent display icons has reached the set maximum value, the pair will automatically stop.
  • Said terminal device is a screen display area is reduced for the processing operation.
  • the first embodiment of the present invention further provides a screen adjustment method, as shown in FIG. 9, the screen adjustment method may include The following steps:
  • Step 201 Determine a rotation angle and a rotation angular velocity generated when the terminal device rotates from the initial position to the current position.
  • the rotation angle of the terminal device when rotating from the initial position to the current position may be determined by a sensor device, such as a gravity sensor or an angle sensor, disposed in the terminal device.
  • a sensor device such as a gravity sensor or an angle sensor
  • the rotational angular velocity; and determining the rotational angle is not limited in any way, and preferably, the rotational angular velocity may be determined while determining the rotational angle.
  • Step 202 When the rotation angle is greater than or equal to the set threshold, determining a region reduction speed according to the rotation angular velocity, and performing a reduction process on the screen display region of the terminal device based on the determined region reduction speed, where The larger the rotational angular velocity, the greater the reduction speed of the region.
  • the rotational angular velocity may be converted into a corresponding electrical signal and then transmitted to a processor of the terminal device, and the processor determines a region reduction speed according to the electrical signal converted by the rotational angular velocity, and reduces the speed based on the determined region. And performing a reduction process on the screen display area of the terminal device.
  • the screen display area of the terminal device is reduced, the screen display area can be processed in a manner that the degree of rotation is larger as the rotation angle is larger. Therefore, in this step 202, the Translating the rotation angle into a corresponding electrical signal and transmitting the signal to the processor of the terminal device, and determining, by the processor, the degree of region reduction when performing the screen display area reduction processing on the terminal device according to the electrical signal converted by the rotation angle, And reducing the screen display area of the terminal device based on the determined area reduction degree and the area reduction speed.
  • Step 203 When the pause operation instruction is received, the screen display area reduction processing operation performed on the terminal device is stopped.
  • the terminal device may be notified that the terminal device is in a manner of sending a pause operation instruction to the terminal device.
  • the terminal device that reduces the processing operation may continue to perform the reduction processing on the screen display area of the terminal device after receiving the reduction operation instruction until the pause operation instruction is received again or the reduction degree of the screen display area has reached the set value. Maximum value.
  • the screen adjustment method may further include the following steps:
  • Step 204 When receiving the screen display area recovery operation instruction, adjust the screen display area of the terminal device to a state before performing the screen display area reduction processing.
  • the screen display area of the terminal device Upon receiving the screen display area recovery operation instruction, the screen display area of the terminal device will remain in the state after the reduction process, and no change will occur due to the re-rotation of the terminal device until the terminal device receives The screen display area is restored to the operation command, wherein the screen display area recovery operation command may be set to a button selection form, or may be set to another predetermined action form according to an actual situation, which is not limited by the embodiment of the present invention;
  • the screen display area of the terminal device can be adjusted to a state before the screen display area reduction process by adjusting the terminal device to the initial position.
  • Embodiment 1 of the present invention provides a screen adjustment method based on a terminal device, by determining a rotation angle generated when the terminal device is rotated from an initial position to a current position, and when the rotation angle is greater than or equal to a set threshold, The screen display area of the terminal device is reduced, which can automatically adjust the width of the screen display content of the terminal device, and solves the operation difficulty caused by the inability to operate the entire screen display area when the one-hand operation terminal device exists in the prior art. The problem is to improve the ease of operation of the terminal device and the user's operating experience.
  • Embodiment 2 :
  • FIG. 10 it is a schematic structural diagram of a screen adjusting device based on a terminal device according to the second embodiment of the present invention, where the terminal device can be any terminal device with a touch function, such as a smart phone or a tablet computer.
  • the terminal device can be any terminal device with a touch function, such as a smart phone or a tablet computer.
  • the embodiment of the present invention is not limited thereto; specifically, the screen adjusting device may be used to implement the method shown in Embodiment 1, and the screen adjusting device may include an angle determining unit 11 and a screen processing unit 12, where:
  • the angle determining unit 11 is configured to determine a rotation angle generated when the terminal device rotates from the initial position to the current position. Specifically, the angle determining unit 11 is configured to detect when the screen automatic adjustment function of the terminal device is started. Determining a rotation angle generated when the terminal device is rotated from the initial position to the current position; wherein the initial position of the terminal device refers to a position where the terminal device has not performed the screen region reduction processing operation, or It is considered that the location of the terminal device when the screen display area of the terminal device is in the normal display state, and the current location of the terminal device refers to a certain displacement of the terminal device relative to the initial position of the terminal device. Or the position after the rotation of the angle or the like.
  • the screen processing unit 12 is configured to perform a reduction process on the screen display area of the terminal device when the rotation angle is greater than or equal to the set threshold; wherein the set threshold may be set to an arbitrary non-zero The value is adjusted according to the actual situation, and the embodiment of the present invention does not limit this.
  • the terminal device rotates from an initial position to a current mode 1: as shown in FIG. 2( a ), a line where any side of the terminal device is in an initial position Rotating the counterclockwise or clockwise rotation; specifically, as shown in FIG.
  • a certain side of the terminal device when a certain side of the terminal device is a non-linear segment such as a curved curve, the side can be tangent to the side
  • a straight line parallel to a certain central axis of the terminal device is used as a straight line of the side edge, and when the side line is rotated as a rotation axis, is tangential to the side edge and is connected to the terminal device a straight line parallel to a central axis rotates for the axis of rotation;
  • Method 2 As shown in FIG. 2(c), the straight line of any central axis when the terminal device is in the initial position is rotated counterclockwise or clockwise as the rotating axis;
  • Method 3 As shown in FIG. 2(d), the straight line of any diagonal line when the terminal device is in the initial position is rotated counterclockwise or clockwise as the rotation axis;
  • Manner 4 As shown in Fig. 2(e), a straight line passing through the center point of the device of the terminal device and perpendicular to the plane where the terminal device is in the initial position is rotated counterclockwise or clockwise.
  • the terminal device may also be rotated from the initial position to the current position in other manners, which is not limited in this embodiment of the present invention.
  • the screen processing unit 12 is specifically configured to perform a reduction process on the screen display area of the terminal device by:
  • Method 1 maintaining the size of each display icon in the screen display area and the spacing between adjacent display icons, and displaying the display icons located in the first display sub-area and the second display sub-area of the screen on the screen Displayed in the second display sub-area, wherein the first display sub-area The second display sub-areas are adjacently arranged and the first display sub-area is combined with the second display sub-area to form an entire screen display area;
  • the actual screen display area of the final terminal device will become the second display sub-area, and each display The icons will be sequentially arranged in the second display sub-area in the original arrangement order and arrangement interval.
  • Manner 2 maintaining the size of each display icon in the screen display area, and performing a reduction process on the spacing between adjacent display icons in the screen display area;
  • Manner 3 maintaining a constant spacing between adjacent display icons in the screen display area, and performing reduction processing on each display icon in the screen display area;
  • the screen processing unit 12 may be further configured to use an area of the area occupied by the first display sub-area, or a reduction degree of each display icon in the screen display area, or a spacing between adjacent display icons.
  • the degree of reduction is respectively set to a fixed value, or may be used to increase the area of the area occupied by the first display sub-area according to the rotation angle or the display icons in the screen display area.
  • the embodiment of the present invention does not limit this; however, it should be noted that regardless of the setting manner, the size of the area of the first display sub-area, or the degree of reduction of each display icon, or each phase
  • the degree of reduction of the spacing between adjacent display icons may not be greater than a set maximum value, when the size of the area of the first display sub-area, or the degree of reduction of each display icon, or the reduction of the spacing between adjacent display icons
  • the terminal device is automatically stopped.
  • the screen display area performed is reduced in processing operation.
  • the screen adjusting device may further include an angular velocity determining unit 13 , wherein: a rotational angular velocity at the time of setting;
  • the screen processing unit 12 is further configured to determine a region reduction speed according to the rotation angular velocity, and perform a reduction process on the screen display region of the terminal device according to the determined region reduction speed, wherein the rotation angular velocity The larger the area, the greater the speed of the reduction.
  • the screen processing unit 12 is further configured to stop the screen display area reduction processing operation performed by the terminal device when receiving the pause operation instruction; that is, when the user determines that the terminal device performs screen display
  • the terminal device may be notified that the current screen display area is reduced in the same state by sending a pause operation instruction to the terminal device, without Further reducing the screen display area, thereby further achieving the effect of controlling the width of the screen display area of the terminal device arbitrarily and conveniently.
  • the screen processing unit 12 is further configured to: for receiving, by any terminal device, a reduction processing operation, after performing the reduction operation instruction, continue to perform reduction processing on the screen display area of the terminal device until receiving again The operation command is suspended or the reduction of the screen display area has reached the set maximum value.
  • the screen processing unit 12 is further configured to: after performing a reduction process on the screen display area of the terminal device, adjust the screen display area of the terminal device to be performed when receiving the screen display area recovery operation instruction The screen display area is reduced to the state before processing.
  • the screen display area of the terminal device will remain in the reduced state after the process is performed, and ⁇ / RTI> ⁇ /RTI> ⁇ RTIgt; ⁇ /RTI> ⁇ RTIgt; ⁇ /RTI> ⁇ RTIgt; ⁇ /RTI> ⁇ RTIgt; Adjusting the screen display area of the terminal device to the screen display area by adjusting the terminal device to the initial position Reduce the state before processing.
  • Embodiment 2 of the present invention provides a screen adjusting device based on a terminal device, which determines a rotation angle generated when a terminal device rotates from an initial position to a current position, and when the rotation angle is greater than or equal to a set threshold value, The screen display area of the terminal device is reduced, which can automatically adjust the width of the screen display content of the terminal device, and solves the operation difficulty caused by the inability to operate the entire screen display area when the one-hand operation terminal device exists in the prior art. The problem is to improve the ease of operation of the terminal device and the user's operating experience.
  • Embodiment 3 :
  • FIG. 11 is a schematic structural diagram of a terminal device according to Embodiment 3 of the present invention, where the terminal device according to Embodiment 3 of the present invention is used to implement the method shown in Embodiment 1 of the present invention, It is to be noted that only the parts related to the third embodiment of the present invention are shown, and the specific technical details are not disclosed. Please refer to the embodiments of the present invention shown in FIG. 1 or FIG.
  • the terminal device may be any terminal device with a touch function, such as a smart phone or a tablet computer.
  • the terminal device is used as a smart phone as an example, and FIG. 11 illustrates the implementation of the present invention.
  • Example 3 is a block diagram of a partial structure of a related smartphone 20.
  • the smart phone 20 includes: a sensor 21 and a processor 22 and the like.
  • the smartphone structure illustrated in Figure 11 does not constitute a limitation to a smartphone, may include more or fewer components than illustrated, or may be combined with certain components, or different component arrangements.
  • the smartphone 20 may further include: an RF (radio frequency) circuit, a memory, an input unit, a display unit, an audio circuit, and a power source (not shown).
  • RF radio frequency
  • the sensor 21 is configured to determine a rotation angle generated when the terminal device rotates from an initial position to a current position.
  • the sensor 21 can be used to When the screen automatic adjustment function of the terminal device is activated, determining a rotation angle generated when the terminal device is rotated from the initial position to the current position; wherein the initial position of the terminal device means that the terminal device has not been performed yet Screen
  • the senor 21 may be a sensing device such as a gravity sensor or an angle sensor disposed in the terminal device.
  • the sensor 21 may also be any other device.
  • the sensing device capable of realizing the functions of the gravity sensor or the angle sensor in the embodiment of the present invention is not limited in this embodiment of the present invention.
  • the processor 22 is configured to perform a reduction process on the screen display area of the terminal device when the rotation angle is greater than or equal to the set threshold; wherein the set threshold may be set to an arbitrary non-zero value And the corresponding adjustment can be made according to the actual situation, which is not limited by the embodiment of the present invention.
  • the terminal device rotates from an initial position to a current mode 1: as shown in FIG. 2( a ), a line where any side of the terminal device is in an initial position Rotating the counterclockwise or clockwise rotation; specifically, as shown in FIG.
  • a certain side of the terminal device when a certain side of the terminal device is a non-linear segment such as a curved curve, the side can be tangent to the side
  • a straight line parallel to a certain central axis of the terminal device is used as a straight line of the side edge, and when the side line is rotated as a rotation axis, is tangential to the side edge and is connected to the terminal device a straight line parallel to a central axis rotates for the axis of rotation;
  • Method 2 As shown in FIG. 2(c), the straight line of any central axis when the terminal device is in the initial position is rotated counterclockwise or clockwise as the rotating axis;
  • Method 3 As shown in FIG. 2(d), the straight line of any diagonal line when the terminal device is in the initial position is rotated counterclockwise or clockwise as the rotation axis;
  • Manner 4 As shown in FIG. 2(e), a straight line that passes through the center point of the device of the terminal device and is perpendicular to the plane where the terminal device is in the initial position is rotated counterclockwise or clockwise. It should be noted that, in the embodiment of the present invention, the terminal device may also be rotated from the initial position to the current position in other manners, which is not limited in this embodiment of the present invention; When the terminal device has a square symmetrical structure such as a square, any diagonal of the terminal device may be a central axis of the terminal device, and at this time, the terminal device is at the center when the initial device is in the initial position. The line where the axis is located is the counterclockwise or clockwise rotation of the axis of rotation. The screen display area is reduced:
  • each display icon in the screen display area and the spacing between adjacent display icons are reduced.
  • the positions of the first display sub-area and the second display sub-area may be set according to actual conditions, which is not limited by the embodiment of the present invention, such as the first display sub-area or
  • the second display sub-area is disposed at an upper portion, a lower portion, a left portion or a right portion of the screen display area of the terminal device, etc.; preferably, in the embodiment of the present invention,
  • the location of the second display sub-area may be set on the side where the terminal device contacts the operation user of the terminal device, such as when the user operates the terminal device with one hand and one hand with the left hand.
  • the position of the second display sub-area may be set at a left portion of the display screen area of the terminal device.
  • the processor 12 is further configured to use an area of the area occupied by the first display sub-area, or a reduction degree of each display icon in the screen display area, or
  • the degree of reduction of the spacing between adjacent display icons is set to a fixed value, respectively, or may be used to increase the area of the area occupied by the first display sub-area according to the larger the rotation angle, or The area of the area occupied by the first display sub-area, or the screen display, the greater the degree of reduction of each display icon in the screen display area, or the greater the degree of reduction of the spacing between adjacent display icons
  • the degree of reduction of each display icon in the area, or the degree of reduction of the spacing between adjacent display icons is respectively set, that is, when the rotation angle is larger, the area of the area occupied by the first display sub-area is controlled.
  • the larger, or the greater the degree of reduction of each display icon in the screen display area, or the control of each adjacent display icon The greater the degree of the reduction of the spacing between the two, the embodiment of the present invention does not limit this; however, it should be noted that regardless of the setting mode, the area size of the first display sub-area, or each display The degree of reduction of the icon, or the degree of reduction of the spacing between adjacent display icons, cannot be greater than a set maximum value, when the size of the area of the first display sub-area, or the degree of reduction of each display icon, or each phase When the degree of reduction of the spacing between adjacent display icons has reached the set maximum value, the screen display area reduction processing operation performed on the terminal device is automatically stopped.
  • the senor 21 can also be used to determine a rotational angular velocity when the terminal device rotates from an initial position to a current position;
  • the processor 22 is further configured to determine a region reduction speed according to the rotation angular velocity, and perform a reduction process on the screen display region of the terminal device based on the determined region reduction speed, wherein the rotation angular velocity is more Large, the area is reduced in speed.
  • the processor 22 is further configured to stop the screen display area reduction processing operation performed by the terminal device when receiving the pause operation instruction; that is, when the user determines
  • the terminal device may be notified that the current screen display area is reduced in size by sending a pause operation instruction to the terminal device. In the case of change, there is no need to further reduce the screen display area, so that the effect of controlling the width of the screen display area of the terminal device can be further achieved arbitrarily and conveniently.
  • the processor 22 is further configured to, after receiving the reduction operation instruction, continue to perform a reduction process on the screen display area of the terminal device until receiving the pause again, after receiving the reduction operation instruction.
  • the reduction of the operation command or the screen display area has reached the set maximum value.
  • the processor 22 is further configured to: after receiving the screen display area recovery operation instruction on the screen display area of the terminal device, adjust the screen display area of the terminal device to the screen when receiving the screen display area recovery operation instruction The display area is reduced before the processing.
  • the processor 22 may pass The manner in which the terminal device adjusts to the initial position adjusts the screen display area of the terminal device to a state before the screen display area reduction process is performed.
  • Embodiment 3 of the present invention provides a terminal device, by determining a rotation angle generated when a terminal device is rotated from an initial position to a current position, and when the rotation angle is greater than or equal to a set threshold, the terminal device
  • the screen display area is reduced, and the width of the screen display content width of the terminal device can be automatically adjusted, which solves the problem that the operation difficulty caused by the inability to operate the entire screen display area when the one-hand operation terminal device exists in the prior art is improved, and the problem is improved.
  • embodiments of the invention may be provided as a method, apparatus (device), or computer program product. Therefore, the present invention can be implemented in an entirely hardware embodiment, an entirely software embodiment, Or in the form of an embodiment of the software and hardware aspects. Moreover, the invention can be embodied in the form of one or more computer program products embodied on a computer-usable storage medium (including but not limited to disk storage, CD-ROM, optical storage, etc.) in which computer usable program code is embodied.
  • a computer-usable storage medium including but not limited to disk storage, CD-ROM, optical storage, etc.

Landscapes

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

Abstract

一种基于终端设备的屏幕调节方法及装置,所述方法包括:确定终端设备从初始位置旋转到当前位置时所产生的旋转角度;当所述旋转角度大于或等于设定阔值时,对所述终端设备的屏幕显示区域进行缩小处理。通过本发明所述技术方案,可实现终端设备屏幕显示内容宽度的自动调节,解决了现有技术中存在的单手操作终端设备时无法操作整个屏幕显示区域所导致的操作困难的问题,提高了终端设备的易操作性以及用户的操作体验。

Description

一种基于终端设备的屏幕调节方法及装置 技术领域
本发明涉及移动通信技术领域, 尤其涉及一种基于终端设备的屏幕调节 方法及装置。 背景技术
随着智能终端设备的不断发展以及用户对大屏幕媒体体验和视觉显示效 果需求的不断增加, 智能终端设备如智能手机、 平板电脑等所具备的显示屏 幕逐渐趋于大屏化。 在此基础上, 用户不仅可以利用所述智能终端设备实现 移动通信交互服务, 而且还可以随时随地更为便捷地实现具备较高显示效果 的多媒体应用服务, 极大地提高了用户的终端使用体验。
但是, 申请人发现,针对具备大屏幕(如屏幕尺寸为 4.5寸及 4.5寸以上) 的终端设备, 用户在操作所述终端设备, 尤其是釆用单手操作的方式操作所 述终端设备时, 由于终端设备的显示屏幕太大, 用户手指长度不够, 导致用 户并不能够同时操作所述终端设备整个屏幕显示区域中的所有显示图标, 因 此, 会带来设备操作困难的问题, 降低了终端设备的易操作性以及用户的操 作体验。 发明内容
有鉴于此, 本发明实施例提供了一种基于终端设备的屏幕调节方法及装 置, 以解决单手操作终端设备时无法操作整个屏幕显示区域所导致的操作困 难的问题。
第一方面, 提供了一种基于终端设备的屏幕调节方法, 包括: 确定终端 设备从初始位置旋转到当前位置时所产生的旋转角度; 当所述旋转角度大于 或等于设定阔值时, 对所述终端设备的屏幕显示区域进行缩小处理。
结合第一方面, 在第一方面的第一种可能的实现方式中, 所述终端设备 从初始位置旋转到当前位置所釆用的旋转方式至少包括以下方式中的一种: 以所述终端设备处于初始位置时的任一侧边所在直线为旋转轴逆时针或 顺时针旋转; 或者,
以所述终端设备处于初始位置时的任一中心轴所在直线为旋转轴逆时针 或顺时针旋转; 或者,
以所述终端设备处于初始位置时的任一对角线所在直线为旋转轴逆时针 或顺时针旋转; 或者,
以经过所述终端设备的设备中心点且与所述终端设备处于初始位置时所 在平面相垂直的直线为旋转轴逆时针或顺时针旋转。
结合第一方面或第一方面的第一种可能的实现方式, 在第一方面的第二 种可能的实现方式中, 当所述旋转角度大于或等于设定阔值时, 将所述终端 设备的屏幕显示区域进行缩小处理, 包括:
保持所述屏幕显示区域中的各显示图标的大小以及各相邻显示图标之间 的间距不变, 并将位于屏幕第一显示子区域以及第二显示子区域内的显示图 标在屏幕第二显示子区域内显示, 其中, 所述第一显示子区域与所述第二显 示子区域相邻排列且所述第一显示子区域与所述第二显示子区域组合后形成 整个屏幕显示区域; 或
保持所述屏幕显示区域中的各显示图标的大小不变, 并对所述屏幕显示 区域中的各相邻显示图标之间的间距进行缩小处理; 或
保持所述屏幕显示区域中的各相邻显示图标之间的间距不变, 并对所述 屏幕显示区域中的各显示图标进行缩小处理; 或
对所述屏幕显示区域中的各显示图标的大小以及各相邻显示图标之间的 间距进行缩小处理。
结合第一方面的第二种可能的实现方式, 在第一方面的第三种可能的实 现方式中, 所述旋转角度越大, 所述第一显示子区域所占据的区域面积越大、 或者所述屏幕显示区域中的各显示图标的缩小程度越大、 或者各相邻显示图 标之间间距的缩 d、程度越大。 结合第一方面、 第一方面的第一种可能的实现方式、 第一方面的第二种 可能的实现方式或第一方面的第三种可能的实现方式, 在第一方面的第四种 可能的实现方式中, 所述方法还包括: 确定所述终端设备从初始位置旋转到 当前位置时的旋转角速度; 相应地, 对所述终端设备的屏幕显示区域进行缩 小处理, 包括: 根据所述旋转角速度, 确定区域缩小速度, 其中, 所述旋转 角速度越大, 所述区域缩小速度越大; 基于确定的区域缩小速度, 对所述终 端设备的屏幕显示区域进行缩小处理。
结合第一方面、 第一方面的第一种可能的实现方式、 第一方面的第二种 可能的实现方式或第一方面的第三种可能的实现方式, 在第一方面的第五种 可能的实现方式中, 所述方法还包括: 在接收到暂停操作指令时, 停止对所 述终端设备所进行的屏幕显示区域缩小处理操作。
结合第一方面、 第一方面的第一种可能的实现方式、 第一方面的第二种 可能的实现方式或第一方面的第三种可能的实现方式, 在第一方面的第六种 可能的实现方式中, 在对所述终端设备的屏幕显示区域进行缩小处理后, 所 述方法还包括: 在接收到屏幕显示区域恢复操作指令时, 将所述终端设备的 屏幕显示区域调整到进行屏幕显示区域缩小处理前的状态。
第二方面, 提供了一种基于终端设备的屏幕调节装置, 包括: 角度确定 单元, 用于确定终端设备从初始位置旋转到当前位置时所产生的旋转角度; 屏幕处理单元, 用于当所述旋转角度大于或等于设定阔值时, 对所述终端设 备的屏幕显示区域进行缩小处理。
结合第二方面, 在第二方面的第一种可能的实现方式中, 所述终端设备 从初始位置旋转到当前位置所釆用的旋转方式至少包括以下方式中的一种: 以所述终端设备处于初始位置时的任一侧边所在直线为旋转轴逆时针或 顺时针旋转; 或者,
以所述终端设备处于初始位置时的任一中心轴所在直线为旋转轴逆时针 或顺时针旋转; 或者,
以所述终端设备处于初始位置时的任一对角线所在直线为旋转轴逆时针 或顺时针旋转; 或者,
以经过所述终端设备的设备中心点且与所述终端设备处于初始位置时所 在平面相垂直的直线为旋转轴逆时针或顺时针旋转。
结合第二方面或第二方面的第一种可能的实现方式, 在第二方面的第二 种可能的实现方式中, 所述屏幕处理单元在将所述终端设备的屏幕显示区域 进行缩小处理时, 具体用于:
保持所述屏幕显示区域中的各显示图标的大小以及各相邻显示图标之间 的间距不变, 并将位于屏幕第一显示子区域以及第二显示子区域内的显示图 标在屏幕第二显示子区域内显示, 其中, 所述第一显示子区域与所述第二显 示子区域相邻排列且所述第一显示子区域与所述第二显示子区域组合后形成 整个屏幕显示区域; 或
保持所述屏幕显示区域中的各显示图标的大小不变, 并对所述屏幕显示 区域中的各相邻显示图标之间的间距进行缩小处理; 或
保持所述屏幕显示区域中的各相邻显示图标之间的间距不变, 并对所述 屏幕显示区域中的各显示图标进行缩小处理; 或
对所述屏幕显示区域中的各显示图标的大小以及各相邻显示图标之间的 间距进行缩小处理。
结合第二方面的第二种可能的实现方式, 在第二方面的第三种可能的实 现方式中, 所述屏幕处理单元, 还用于当所述旋转角度越大时, 控制所述第 一显示子区域所占据的区域面积越大、 或者控制所述屏幕显示区域中的各显 示图标的缩小程度越大、 或者控制各相邻显示图标之间间距的缩小程度越大。
结合第二方面、 第二方面的第一种可能的实现方式、 第二方面的第二种 可能的实现方式或第二方面的第三种可能的实现方式, 在第二方面的第四种 可能的实现方式中, 所述屏幕调节装置还包括角速度确定单元, 用于确定所 述终端设备从初始位置旋转到当前位置时的旋转角速度; 所述屏幕处理单元, 还用于根据所述旋转角速度, 确定区域缩小速度, 并基于确定的区域缩小速 度, 对所述终端设备的屏幕显示区域进行缩小处理, 其中, 所述旋转角速度 越大, 所述区域缩小速度越大。
结合第二方面、 第二方面的第一种可能的实现方式、 第二方面的第二种 可能的实现方式或第二方面的第三种可能的实现方式, 在第二方面的第五种 可能的实现方式中, 所述屏幕处理单元, 还用于在接收到暂停操作指令时, 停止对所述终端设备所进行的屏幕显示区域缩小处理操作。
结合第二方面、 第二方面的第一种可能的实现方式、 第二方面的第二种 可能的实现方式或第二方面的第三种可能的实现方式, 在第二方面的第六种 可能的实现方式中, 所述屏幕处理单元, 还用于在对所述终端设备的屏幕显 示区域进行缩小处理后, 在接收到屏幕显示区域恢复操作指令时, 将所述终 端设备的屏幕显示区域调整到进行屏幕显示区域缩小处理前的状态。
第三方面, 提供了一种终端设备, 包括: 传感器, 用于确定终端设备从 初始位置旋转到当前位置时所产生的旋转角度; 处理器, 用于当所述旋转角 度大于或等于设定阔值时, 对所述终端设备的屏幕显示区域进行缩小处理。
结合第三方面, 在第三方面的第一种可能的实现方式中, 所述终端设备 从初始位置旋转到当前位置所釆用的旋转方式至少包括以下方式中的一种: 以所述终端设备处于初始位置时的任一侧边所在直线为旋转轴逆时针或 顺时针旋转; 或者,
以所述终端设备处于初始位置时的任一中心轴所在直线为旋转轴逆时针 或顺时针旋转; 或者,
以所述终端设备处于初始位置时的任一对角线所在直线为旋转轴逆时针 或顺时针旋转; 或者,
以经过所述终端设备的设备中心点且与所述终端设备处于初始位置时所 在平面相垂直的直线为旋转轴逆时针或顺时针旋转。
结合第三方面或第三方面的第一种可能的实现方式, 在第三方面的第二 种可能的实现方式中, 所述处理器在将所述终端设备的屏幕显示区域进行缩 小处理时, 具体用于:
保持所述屏幕显示区域中的各显示图标的大小以及各相邻显示图标之间 的间距不变, 并将位于屏幕第一显示子区域以及第二显示子区域内的显示图 标在屏幕第二显示子区域内显示, 其中, 所述第一显示子区域与所述第二显 示子区域相邻排列且所述第一显示子区域与所述第二显示子区域组合后形成 整个屏幕显示区域; 或
保持所述屏幕显示区域中的各显示图标的大小不变, 并对所述屏幕显示 区域中的各相邻显示图标之间的间距进行缩小处理; 或
保持所述屏幕显示区域中的各相邻显示图标之间的间距不变, 并对所述 屏幕显示区域中的各显示图标进行缩小处理; 或
对所述屏幕显示区域中的各显示图标的大小以及各相邻显示图标之间的 间距进行缩小处理。
结合第三方面的第二种可能的实现方式, 在第三方面的第三种可能的实 现方式中, 所述处理器, 还用于当所述旋转角度越大时, 控制所述第一显示 子区域所占据的区域面积越大、 或者控制所述屏幕显示区域中的各显示图标 的缩小程度越大、 或者控制各相邻显示图标之间间距的缩小程度越大。
结合第三方面、 第三方面的第一种可能的实现方式、 第三方面的第二种 可能的实现方式或第三方面的第三种可能的实现方式, 在第三方面的第四种 可能的实现方式中, 所述传感器, 还用于确定所述终端设备从初始位置旋转 到当前位置时的旋转角速度; 所述处理器, 还用于根据所述旋转角速度, 确 定区域缩小速度, 并基于确定的区域缩小速度, 对所述终端设备的屏幕显示 区域进行缩小处理, 其中, 所述旋转角速度越大, 所述区域缩小速度越大。
结合第三方面、 第三方面的第一种可能的实现方式、 第三方面的第二种 可能的实现方式或第三方面的第三种可能的实现方式, 在第三方面的第五种 可能的实现方式中, 所述处理器, 还用于在接收到暂停操作指令时, 停止对 所述终端设备所进行的屏幕显示区域缩小处理操作。
结合第三方面、 第三方面的第一种可能的实现方式、 第三方面的第二种 可能的实现方式或第三方面的第三种可能的实现方式, 在第三方面的第六种 可能的实现方式中, 所述处理器, 还用于在对所述终端设备的屏幕显示区域 进行缩小处理后, 在接收到屏幕显示区域恢复操作指令时, 将所述终端设备 的屏幕显示区域调整到进行屏幕显示区域缩小处理前的状态。
根据第一方面提供的基于终端设备的屏幕调节方法, 第二方面提供的基 于终端设备的屏幕调节装置或第三方面提供的终端设备, 由于终端设备可确 定从初始位置旋转到当前位置时所产生的旋转角度, 并当所述旋转角度大于 或等于设定阔值时, 对所述终端设备的屏幕显示区域进行缩小处理, 从而实 现了终端设备屏幕显示内容宽度的自动调节, 解决了现有技术中存在的单手 操作终端设备时无法操作整个屏幕显示区域所导致的操作困难的问题, 提高 了终端设备的易操作性以及用户的操作体验。 附图说明
图 1 所示为本发明实施例一中所述基于终端设备的屏幕调节方法的流程 示意图;
图 2 ( a )所示为本发明实施例一中所述终端设备从初始位置旋转到当前 位置时所釆用的旋转方式示意图一;
图 2 ( b )所示为本发明实施例一中所述终端设备从初始位置旋转到当前 位置时所釆用的旋转方式示意图二;
图 2 ( c )所示为本发明实施例一中所述终端设备从初始位置旋转到当前 位置时所釆用的旋转方式示意图三;
图 2 ( d )所示为本发明实施例一中所述终端设备从初始位置旋转到当前 位置时所釆用的旋转方式示意图四;
图 2 ( e )所示为本发明实施例一中所述终端设备从初始位置旋转到当前 位置时所釆用的旋转方式示意图五;
图 3所示为本发明实施例一中所述屏幕显示区域调节方式示意图一; 图 4所示为本发明实施例一中所述屏幕显示区域调节方式示意图二; 图 5所示为本发明实施例一中所述屏幕显示区域调节方式示意图三; 图 6所示为本发明实施例一中所述屏幕显示区域调节方式示意图四; 图 7所示为本发明实施例一中所述屏幕显示区域调节方式示意图五; 图 8所示为本发明实施例一中所述屏幕显示区域调节方式示意图六; 图 9 所示为本发明实施例一中所述基于终端设备的屏幕调节方法的流程 示意图二;
图 10所示为本发明实施例二中所述基于终端设备的屏幕调节装置的结构 示意图;
图 11所示为本发明实施例三中所述终端设备的结构示意图。 具体实施方式
下面结合说明书附图对本发明实施例作进一步说明, 但本发明不局限于 下面的实施例。
实施例一:
如图 1 所示, 其为本发明实施例一中所述基于终端设备的屏幕调节方法 的流程示意图, 所述屏幕调节方法可适用于智能手机、 平板电脑等任何具备 触控功能的终端设备中, 本发明实施例对此不作任何限定; 具体地, 所述屏 幕调节方法可以包括以下步骤:
步骤 101 : 确定终端设备从初始位置旋转到当前位置时所产生的旋转角 度。
具体地, 在本发明所述实施例中, 终端设备的初始位置是指终端设备尚 未进行屏幕区域缩小处理操作时所处的位置; 进一步地, 其通常是指终端设 备的屏幕显示区域处于正常显示状态, 即未进行屏幕区域缩小处理操作时的 状态 (如终端设备屏幕显示区域中的各显示图标可以完全布满整个屏幕显示 区域) 时所述终端设备所处的位置; 需要说明的是, 所述终端设备的初始位 置可以根据实际情况进行设定, 如可以设置为处于正对用户的位置、 水平位 置、 竖直位置或其它位置, 本发明实施例对此不作任何限定。
相应地, 所述终端设备的当前位置是指所述终端设备相对于所述终端设 备的初始位置进行一定的位移或角度等的旋转后所处的位置。 需要说明的是, 在本发明所述实施例中, 针对任一终端设备, 所述终端 设备可具备一屏幕自动调节开关, 该屏幕自动调节开关可用于决定是否启动 设置于所述终端设备内的传感器设备 (如重力传感器或角度传感器等设备 ), 当用户需要对所述终端设备进行屏幕显示区域的调节以便可以单手操作所述 终端设备时, 可以开启所述终端设备的屏幕自动调节功能, 此时, 设置于所 述终端设备内的传感器设备将被启动, 相应地, 在检测到所述终端设备的屏 幕自动调节功能启动时, 所述终端设备可通过设置于所述终端设备内的传感 器设备执行确定所述终端设备从初始位置旋转到当前位置时所产生的旋转角 度的操作; 当用户无需对所述终端设备进行屏幕显示区域的调节, 如用户手 指足够长以致可以单手操作到整个屏幕显示区域或用户双手操作终端设备等 时, 可以将所述终端设备的屏幕自动调节开关设置于关闭状态, 此时, 设置 于所述终端设备内的传感器设备将处于未启动状态, 所述终端设备无需执行 确定所述终端设备从初始位置旋转到当前位置时所产生的旋转角度的操作。
具体地, 在本发明所述实施例中, 所述终端设备从初始位置旋转到当前 方式一: 如图 2 ( a )所示, 以所述终端设备处于初始位置时的任一侧边 所在直线为旋转轴逆时针或顺时针旋转, 其中, 任一侧边可以为终端设备四 周的任意一边; 具体地, 如图 2 ( b )所示, 当所述终端设备的某一侧边为弧 形曲线等非直线段时, 可将与该侧边相切且与所述终端设备的某一中心轴相 平行的直线作为该侧边所在直线, 并在以该侧边所在直线为旋转轴进行旋转 时, 以与该侧边相切且与所述终端设备的某一中心轴相平行的直线为旋转轴 进行旋转;
方式二: 如图 2 ( c )所示, 以所述终端设备处于初始位置时的任一中心 轴(如中心横轴、 中心竖轴) 所在直线为旋转轴逆时针或顺时针旋转;
方式三: 如图 2 ( d )所示, 以所述终端设备处于初始位置时的任一对角 线所在直线为旋转轴逆时针或顺时针旋转;
方式四: 如图 2 ( e )所示, 以经过所述终端设备的设备中心点且与所述 终端设备处于初始位置时所在平面相垂直的直线为旋转轴逆时针或顺时针旋 转。
需要说明的是, 在本发明所述实施例中, 所述终端设备还可以釆用其他 方式从初始位置旋转到当前位置, 本发明实施例对此不作任何限定; 另外需 要说明的是, 当所述终端设备呈正方形等四周对称结构时, 所述终端设备的 任一对角线可为所述终端设备的中心轴, 此时, 以所述终端设备处于初始位 端设备处于初始位置时的中心轴所在直线为旋转轴逆时针或顺时针旋转。
再有需要说明的是, 由于通常情况下用户在对终端设备进行旋转操作时, 在本发明所述实施例中, 最终所得到的旋转角度通常也均位于(0, 90° ) 区 间范围内。
步骤 102: 当所述旋转角度大于或等于设定阔值时,对所述终端设备的屏 幕显示区域进行缩小处理。
具体地, 在本发明所述实施例中, 当所述旋转角度大于或等于设定阔值 时, 设置于所述终端设备中的传感器设备可将所述旋转角度转换为相应的电 信号后, 传递至所述终端设备的处理器, 由所述处理器对所述终端设备的屏 幕显示区域进行缩小处理; 其中, 所述设定阔值可以设置为任意非零数值, 并且可以根据实际情况进行相应调节, 本发明实施例对此不作任何限定。
具体地, 当所述设定阔值较小时, 如将所述设定阔值设置为 (0 , 5。 ) 区间范围内的任一数值时, 针对任一终端设备, 当确定所述终端设备从初始 位置旋转到当前位置时所产生的旋转角度不小于所述设定阔值时, 即可对所 述终端设备的屏幕显示区域进行相应的缩小处理; 此时, 由于终端设备可以 捕捉旋转角度的微小变化, 因此, 可以达到较为精确地对终端设备屏幕显示 区域进行缩小处理的效果, 但是, 由于在实际操作过程中, 用户在使用终端 设备进行相应的操作处理时, 终端设备通常会存在一定程度的微小旋转, 且 该微小旋转属于可接受的误差范围, 并不需要引起相应的屏幕显示区域的变 化, 因此, 为了降低终端设备频繁捕捉微小旋转角度所造成的处理器负荷较 重的问题, 较优地, 在本发明所述实施例中, 通常可将所述设定阔值设置为 一相对较大的非零数值, 如可将所述设定阔值设置为 (5。 ,15° )或 (25。 , 45° ) 区间范围内的任一数值等。
具体地, 在本步骤 102 中, 当所述旋转角度大于或等于设定阔值时, 可 釆用以下方式来将所述终端设备的屏幕显示区域进行缩小处理:
方式一: 保持所述屏幕显示区域中的各显示图标的大小以及各相邻显示 图标(任意两个上下或左右相邻的显示图标)之间的间距不变, 并将位于屏 幕第一显示子区域以及第二显示子区域内的显示图标在屏幕第二显示子区域 内显示, 其中, 所述第一显示子区域与所述第二显示子区域相邻排列且所述 第一显示子区域与所述第二显示子区域组合后可形成整个屏幕显示区域。
需要说明的是, 在釆用方式一所述方法对所述终端设备的屏幕显示区域 进行缩小处理后, 最终所得到的终端设备的屏幕实际显示区域将变为第二显 示子区域, 且各显示图标将按原有的排列顺序和排列间隔依次排列在所述第 二显示子区域中。
另外需要说明的是, 所述第一显示子区域以及第二显示子区域的位置可 以根据实际情况进行设定, 本发明实施例对此不作任何限定, 如可将所述第 一显示子区域或第二显示子区域设置在所述终端设备屏幕显示区域的上部 分、 下部分、 左部分或右部分等; 较优地, 在本发明所述实施例中, 为了更 大程度地提高用户的使用体验, 可将所述第二显示子区域的位置设置在终端 设备与终端设备的操作用户相接触的一侧, 如当用户釆用左手单手操作所述 终端设备时, 可将所述第二显示子区域的位置设置在所述终端设备屏幕显示 区域的左部分。
再有需要说明的是, 所述第一显示子区域以及第二显示子区域的区域面 积大小也可以根据实际情况进行设定, 本发明实施例对此也不作任何限定; 例如, 在本发明所述实施例中, 可以将所述第一显示子区域以及所述第二显 示子区域的区域面积大小设置为固定的数值, 不论旋转角度如何变化, 最终 所得到屏幕实际显示区域均是固定的, 也可以按照所述旋转角度越大、 所述 述第二显示子区域的区域面积大小进行设定。
但是, 需要说明的是, 不论釆用何种区域面积设定方式, 所述第一显示 子区域的区域面积大小不能大于设定的最大值, 当所述第一显示子区域的区 域面积大小已达到设定的最大值时, 会自动停止对所述终端设备所进行的屏 幕显示区域缩小处理操作, 相应地, 所述第二显示子区域的区域面积大小不 能小于设定的最小值, 当所述第二显示子区域的区域面积大小已达到设定的 最小值时, 会自动停止对所述终端设备所进行的屏幕显示区域缩小处理操作; 其中, 所述设定的最大值及设定的最小值需要根据实际情况进行设定, 本发 明实施例对此也不作任何限定。
具体地, 下面以用户单手操作初始位置为位于竖直面内且正对用户的终 端设备为例, 对釆用方式一进行终端设备屏幕显示区域的缩小处理的过程进 行说明:
如图 3 所示, 当所述终端设备处于初始位置时, 所述终端设备处于正常 显示状态, 所述终端设备的屏幕显示区域具备 4行 4列的显示图标, 其中, 图标 1〜图标 16按照标号从低到高的顺序依次排列;当用户左手单手操作所述 终端设备且无法触碰得到所述终端设备的右部分屏幕显示区域时, 用户可将 所述终端设备的中心长轴作为旋转轴, 将所述终端设备沿水平面逆时针或顺 时针旋转一定角度, 此时, 设置于所述终端设备内的传感器设备可确定终端 设备从初始位置旋转到当前位置时所产生的旋转角度, 并将所述旋转角度转 换为电信号后传递至所述终端设备的处理器, 由处理器根据转换后的电信号 对所述终端设备的屏幕显示区域进行缩小处理; 具体地, 可将整个屏幕显示 区域内的显示图标在左部分显示子区域(如图 3所示的 B区域) 内显示, 即 可将所述屏幕显示区域中的右部分显示子区域(如图 3所示的 A区域) 中的 显示图标(最右一列显示图标)向左部分显示子区域(如图 3所示的 B区域) 缩进排列, 从而使得最终所得到的经过屏幕显示区域缩小处理后的终端设备 的实际显示区域变为 B 区域, 且各显示图标仍按照原有的排列顺序依次排列 在所述 B区域中。
需要说明的是, 在上述情况下, 所述终端设备也可以按照图 4所示的屏 幕显示区域调节方式, 将整个屏幕显示区域内的显示图标在右部分显示子区 域(如图 4所示的 B区域) 内显示, 即可将终端设备屏幕显示区域中的左部 分显示子区域(如图 4所示的 A区域) 中的显示图标(最左一列显示图标) 向右部分显示子区域(如图 4所示的 B区域)缩进排列, 本发明实施例对此 不作任何限定。 在具体实现中, 可以由用户选择旋转方式和缩小方式的对应 关系, 例如: 可以选择, 当用户拿着手机向左旋转(逆时针旋转) 时, 各显 示图标向左缩进; 或者, 当用户拿着手机向右旋转(顺时针旋转) 时, 各显 示图标向右缩进。
方式二:
保持所述屏幕显示区域中的各显示图标的大小不变, 并对所述屏幕显示 区域中的各相邻显示图标之间的间距进行缩小处理。
具体地, 在对所述屏幕显示区域中的各相邻显示图标之间的间距进行缩 小处理时, 可釆用保持所述屏幕显示区域中的某一侧边(或任一行、 任一列) 位置区域内的某一或多个显示图标的位置和大小不变, 并缩小其他位置处的 各显示图标与该固定位置处的显示图标之间的间距的方式, 来达到缩小屏幕 显示区域的效果。
较优地, 在本方式二中, 为了更大程度地提高用户的使用体验, 可保持 终端设备与终端设备的操作用户相接触的一侧位置区域内的某一个或多个显 示图标的位置和大小不变, 并缩小其他位置处的各显示图标与该固定位置处 的各显示图标之间的间距的方式, 来达到缩小屏幕显示区域的效果; 如当用 户釆用左手单手操作所述终端设备时, 可保持所述终端设备屏幕显示区域的 最左侧位置区域内的各显示图标的位置和大小不变, 并缩小其他位置处的各 显示图标与该固定位置处的各显示图标之间的间距的方式, 来达到缩小屏幕 显示区域的效果, 此时, 所对应的屏幕显示区域调节方式示意图可如图 5 所 示; 当用户釆用右手单手操作所述终端设备时, 可保持所述终端设备屏幕显 示区域的最右侧位置区域内的各显示图标的位置和大小不变, 并缩小其他位 置处的各显示图标与该固定位置处的各显示图标之间的间距的方式, 来达到 缩小屏幕显示区域的效果, 此时, 所对应的屏幕显示区域调节方式示意图可 如图 6所示。
方式三:
保持所述屏幕显示区域中的各相邻显示图标之间的间距不变, 并对所述 屏幕显示区域中的各显示图标进行缩小处理, 此时, 所对应的屏幕显示区域 调节方式示意图可如图 7所示。
在本方式三中, 由于进行缩小处理后的各显示图标所占据的屏幕尺寸也 得到了相应的缩小, 因而可在一定程度上达到缩小屏幕显示区域的效果。
方式四:
对所述屏幕显示区域中的各显示图标的大小以及各相邻显示图标之间的 间距进行缩小处理。
具体地, 在对所述屏幕显示区域中的各显示图标的大小以及各相邻显示 图标之间的间距进行缩小处理时, 可釆用先保持各相邻显示图标之间的间距 不变并缩小各显示图标的尺寸大小, 之后, 再保持所述屏幕显示区域中的任 一侧边(或任一行、 任一列) 中的某一显示图标的位置不变, 以及缩小其他 位置处的各显示图标与该固定位置处的显示图标之间的间距的方式, 来达到 缩小屏幕显示区域的效果。
较优地, 在本方式四中, 为了更大程度地提高用户的使用体验, 可釆用 先保持各相邻显示图标之间的间距不变并缩小各显示图标的尺寸大小, 之后, 再保持终端设备与终端设备的操作用户相接触的一侧的最边缘位置处的某一 显示图标的位置不变, 以及缩小其他位置处的各显示图标与该固定位置处的 显示图标之间的间距的方式, 来进行各显示图标的大小以及各相邻显示图标 之间的间距的缩小; 如当用户釆用左手单手操作所述终端设备时, 可釆用先 保持各相邻显示图标之间的间距不变并缩小各显示图标的尺寸大小, 之后, 再保持所述终端设备屏幕显示区域的最左侧位置区域内的最上方位置处的显 示图标的位置不变, 以及缩小其他位置处的各显示图标与该固定位置处的显 示图标之间的间距的方式, 来进行各显示图标的大小以及各相邻显示图标之 间的间距的缩小, 此时, 所对应的屏幕显示区域调节方式示意图可如图 8所 示。
需要说明的是, 在上述方式二〜方式四中, 在对各显示图标的尺寸或各相 邻显示图标之间的间距进行缩小处理时, 可以将各显示图标的缩小程度以及 各相邻显示图标之间的间距的缩小程度分别设置为固定的数值, 即不论旋转 角度如何变化, 最终所得到屏幕实际显示区域均是固定的, 也可以按照所述 旋转角度越大、 各显示图标的缩小程度以及各相邻显示图标之间间距的缩 d、 程度越大的方式对各显示图标的尺寸或各相邻显示图标之间的间距进行缩 d、 处理, 本发明实施例对此不作任何限定; 但是, 需要说明的是, 不论釆用何 种缩小程度设定方式, 各显示图标的缩小程度或各相邻显示图标之间间距的 缩小程度均不能大于设定的最大值, 当各显示图标的缩小程度或各相邻显示 图标之间间距的缩小程度已达到设定的最大值时, 会自动停止对所述终端设 备所进行的屏幕显示区域缩小处理操作。
进一步地, 为了达到较佳的屏幕显示区域调节效果, 在上述屏幕调节方 法的基础上, 本发明实施例一还提供了一种屏幕调节方法, 如图 9所示, 所 述屏幕调节方法可以包括以下步骤:
步骤 201 :确定终端设备从初始位置旋转到当前位置时所产生的旋转角度 以及旋转角速度。
具体地, 与步骤 101 中所述方法类似, 可通过设置于所述终端设备内的 传感器设备, 如重力传感器或角度传感器等设备来确定所述终端设备从初始 位置旋转到当前位置时的旋转角度以及旋转角速度; 并且, 确定所述旋转角 例对此不作任何限定, 较优地, 可在确定所述旋转角度的同时确定所述旋转 角速度。 步骤 202:当所述旋转角度大于或等于设定阈值时 ,根据所述旋转角速度, 确定区域缩小速度, 并基于确定的区域缩小速度, 对所述终端设备的屏幕显 示区域进行缩小处理, 其中, 所述旋转角速度越大, 所述区域缩小速度越大。
具体地, 可将所述旋转角速度转换为相应的电信号后传递至终端设备的 处理器, 由处理器根据由所述旋转角速度转换后的电信号确定区域缩小速度, 并基于确定的区域缩小速度, 对所述终端设备的屏幕显示区域进行缩小处理。
进一步地, 由于在对终端设备的屏幕显示区域进行缩小处理时, 可按照 旋转角度越大, 屏幕显示区域缩小程度越大的方式对其进行处理, 因此, 在 本步骤 202 中, 还可将所述旋转角度转换为相应的电信号后传递至终端设备 的处理器, 由处理器根据由所述旋转角度转换后的电信号确定对所述终端设 备进行屏幕显示区域缩小处理时的区域缩小程度, 并基于确定的区域缩小程 度及区域缩小速度, 对所述终端设备的屏幕显示区域进行缩小处理。
步骤 203: 在接收到暂停操作指令时,停止对所述终端设备所进行的屏幕 显示区域缩小处理操作。
也就是说, 当用户确定所述终端设备进行屏幕显示区域缩小处理时的区 域缩小程度达到其所需要的程度时, 可通过向所述终端设备发送暂停操作指 令的方式, 告知所述终端设备在保持当前屏幕显示区域缩小状态不变的情况 下、 无需进一步对其屏幕显示区域进行缩小处理, 从而可进一步达到随意、 便捷地控制终端设备屏幕显示区域宽度的效果; 进一步地, 针对任一暂停进 行缩小处理操作的终端设备, 在接收到缩小操作指令后, 仍可继续对所述终 端设备的屏幕显示区域进行缩小处理, 直至再次接收到暂停操作指令或者屏 幕显示区域的缩小程度已达到设定的最大值。
进一步地, 在对所述终端设备的屏幕显示区域进行缩小处理后, 所述屏 幕调节方法还可以包括以下步骤:
步骤 204: 在接收到屏幕显示区域恢复操作指令时, 将所述终端设备的屏 幕显示区域调整到进行屏幕显示区域缩小处理前的状态。
也就是说, 针对任一已进行屏幕显示区域缩小处理后的终端设备, 在未 接收到屏幕显示区域恢复操作指令时, 所述终端设备的屏幕显示区域将一直 保持进行缩小处理后的状态, 并不会因为所述终端设备的再次旋转而发生任 何改变, 直至所述终端设备接收到屏幕显示区域恢复操作指令为止, 其中, 所述屏幕显示区域恢复操作指令可以设置为按键选择形式, 也可以根据实际 情况设置为其他预定的动作形式, 本发明实施例对此不作任何限定; 具体地, 在本发明所述实施例中, 可通过将所述终端设备调整到初始位置的方式, 将 所述终端设备的屏幕显示区域调整到进行屏幕显示区域缩小处理前的状态。
本发明实施例一提供了一种基于终端设备的屏幕调节方法, 通过确定终 端设备从初始位置旋转到当前位置时所产生的旋转角度, 并当所述旋转角度 大于或等于设定阔值时, 对所述终端设备的屏幕显示区域进行缩小处理, 可 实现终端设备屏幕显示内容宽度的自动调节, 解决了现有技术中存在的单手 操作终端设备时无法操作整个屏幕显示区域所导致的操作困难的问题, 提高 了终端设备的易操作性以及用户的操作体验。 实施例二:
如图 10所示, 其为本发明实施例二中所述基于终端设备的屏幕调节装置 的结构示意图, 其中, 所述终端设备可为智能手机、 平板电脑等任何具备触 控功能的终端设备, 本发明实施例对此不作任何限定; 具体地, 所述屏幕调 节装置可用于实现实施例一所示的方法, 所述屏幕调节装置可包括角度确定 单元 11以及屏幕处理单元 12, 其中:
所述角度确定单元 11用于确定终端设备从初始位置旋转到当前位置时所 产生的旋转角度; 具体地, 所述角度确定单元 11用于在检测到所述终端设备 的屏幕自动调节功能启动时, 确定所述终端设备从初始位置旋转到当前位置 时所产生的旋转角度; 其中, 所述终端设备的初始位置是指所述终端设备尚 未进行屏幕区域缩小处理操作时所处的位置, 或可认为是所述终端设备的屏 幕显示区域处于正常显示状态时所述终端设备所处的位置, 所述终端设备的 当前位置是指所述终端设备相对于所述终端设备的初始位置进行一定的位移 或角度等的旋转后所处的位置。
所述屏幕处理单元 12用于当所述旋转角度大于或等于设定阔值时, 对所 述终端设备的屏幕显示区域进行缩小处理; 其中, 所述设定阔值可以设置为 一任意非零数值, 并且可以根据实际情况进行相应调节, 本发明实施例对此 不作任何限定。
具体地, 在本发明所述实施例中, 所述终端设备从初始位置旋转到当前 方式一: 如图 2 ( a )所示, 以所述终端设备处于初始位置时的任一侧边 所在直线为旋转轴逆时针或顺时针旋转; 具体地, 如图 2 ( b )所示, 当所述 终端设备的某一侧边为弧形曲线等非直线段时, 可将与该侧边相切且与所述 终端设备的某一中心轴相平行的直线作为该侧边所在直线, 并在以该侧边所 在直线为旋转轴进行旋转时, 以与该侧边相切且与所述终端设备的某一中心 轴相平行的直线为旋转轴进行旋转;
方式二: 如图 2 ( c )所示, 以所述终端设备处于初始位置时的任一中心 轴所在直线为旋转轴逆时针或顺时针旋转;
方式三: 如图 2 ( d )所示, 以所述终端设备处于初始位置时的任一对角 线所在直线为旋转轴逆时针或顺时针旋转;
方式四: 如图 2 ( e )所示, 以经过所述终端设备的设备中心点且与所述 终端设备处于初始位置时所在平面相垂直的直线为旋转轴逆时针或顺时针旋 转。
需要说明的是, 在本发明所述实施例中, 所述终端设备还可以釆用其他 方式从初始位置旋转到当前位置, 本发明实施例对此不作任何限定。
进一步地, 所述屏幕处理单元 12具体可用于通过以下方式对所述终端设 备的屏幕显示区域进行缩小处理:
方式一: 保持所述屏幕显示区域中的各显示图标的大小以及各相邻显示 图标之间的间距不变, 并将位于屏幕第一显示子区域以及第二显示子区域内 的显示图标在屏幕第二显示子区域内显示, 其中, 所述第一显示子区域与所 述第二显示子区域相邻排列且所述第一显示子区域与所述第二显示子区域组 合后形成整个屏幕显示区域;
需要说明的是, 在釆用方式一所述方法对所述终端设备的屏幕显示区域 进行缩小处理后, 最终所得到的终端设备的屏幕实际显示区域将变为第二显 示子区域, 且各显示图标将按原有的排列顺序和排列间隔依次排列在所述第 二显示子区域中。
方式二: 保持所述屏幕显示区域中的各显示图标的大小不变, 并对所述 屏幕显示区域中的各相邻显示图标之间的间距进行缩小处理;
方式三: 保持所述屏幕显示区域中的各相邻显示图标之间的间距不变, 并对所述屏幕显示区域中的各显示图标进行缩小处理;
方式四: 对所述屏幕显示区域中的各显示图标的大小以及各相邻显示图 标之间的间距进行缩小处理。
进一步地, 所述屏幕处理单元 12还可用于将所述第一显示子区域所占据 的区域面积、 或者所述屏幕显示区域中的各显示图标的缩小程度、 或者各相 邻显示图标之间间距的缩小程度分别设置为一固定的数值, 或者, 可用于按 照所述旋转角度越大, 所述第一显示子区域所占据的区域面积越大、 或者所 述屏幕显示区域中的各显示图标的缩小程度越大、 或者各相邻显示图标之间 间距的缩小程度越大的方式对所述第一显示子区域所占据的区域面积、 或者 所述屏幕显示区域中的各显示图标的缩小程度、 或者各相邻显示图标之间间 距的缩小程度分别进行设置, 也就是说, 当所述旋转角度越大时, 控制所述 第一显示子区域所占据的区域面积越大、 或者控制所述屏幕显示区域中的各 显示图标的缩小程度越大、 或者控制各相邻显示图标之间间距的缩小程度越 大, 本发明实施例对此不作任何限定; 但是, 需要说明的是, 不论釆用何种 设定方式, 所述第一显示子区域的区域面积大小、 或各显示图标的缩小程度、 或各相邻显示图标之间间距的缩小程度均不能大于设定的最大值, 当所述第 一显示子区域的区域面积大小、 或各显示图标的缩小程度、 或各相邻显示图 标之间间距的缩小程度已达到设定的最大值时, 会自动停止对所述终端设备 所进行的屏幕显示区域缩小处理操作。
进一步地, 所述屏幕调节装置还可包括角速度确定单元 13 , 其中: 置时的旋转角速度;
相应地, 所述屏幕处理单元 12还可用于根据所述旋转角速度, 确定区域 缩小速度, 并基于确定的区域缩小速度, 对所述终端设备的屏幕显示区域进 行缩小处理, 其中, 所述旋转角速度越大, 所述区域缩小速度越大。
进一步地, 所述屏幕处理单元 12还可用于在接收到暂停操作指令时, 停 止对所述终端设备所进行的屏幕显示区域缩小处理操作; 也就是说, 当用户 确定所述终端设备进行屏幕显示区域缩小处理时的区域缩小程度达到其所需 要的程度时, 可通过向所述终端设备发送暂停操作指令的方式, 告知所述终 端设备在保持当前屏幕显示区域缩小状态不变的情况下、 无需进一步对其屏 幕显示区域进行缩小处理, 从而可进一步达到随意、 便捷地控制终端设备屏 幕显示区域宽度的效果。
进一步地, 所述屏幕处理单元 12还可用于针对任一暂停进行缩小处理操 作的终端设备, 在接收到缩小操作指令后, 继续对所述终端设备的屏幕显示 区域进行缩小处理, 直至再次接收到暂停操作指令或者屏幕显示区域的缩小 程度已达到设定的最大值。
进一步地, 所述屏幕处理单元 12还可用于在对所述终端设备的屏幕显示 区域进行缩小处理后, 在接收到屏幕显示区域恢复操作指令时, 将所述终端 设备的屏幕显示区域调整到进行屏幕显示区域缩小处理前的状态。
也就是说, 针对任一已进行屏幕显示区域缩小处理后的终端设备, 在未 接收到屏幕显示区域恢复操作指令时, 所述终端设备的屏幕显示区域将一直 保持进行缩小处理后的状态, 并不会因为所述终端设备的再次旋转而发生任 何改变, 直至所述终端设备接收到屏幕显示区域恢复操作指令为止; 具体地, 在本发明所述实施例中, 所述屏幕处理单元 12可通过将所述终端设备调整到 初始位置的方式, 将所述终端设备的屏幕显示区域调整到进行屏幕显示区域 缩小处理前的状态。
本发明实施例二提供了一种基于终端设备的屏幕调节装置, 通过确定终 端设备从初始位置旋转到当前位置时所产生的旋转角度, 并当所述旋转角度 大于或等于设定阔值时, 对所述终端设备的屏幕显示区域进行缩小处理, 可 实现终端设备屏幕显示内容宽度的自动调节, 解决了现有技术中存在的单手 操作终端设备时无法操作整个屏幕显示区域所导致的操作困难的问题, 提高 了终端设备的易操作性以及用户的操作体验。 实施例三:
如图 11所示,其为本发明实施例三中所述终端设备的结构示意图,其中, 本发明实施例三中所述的终端设备可用于实施本发明实施例一所示的方法, 为了便于说明, 仅示出了与本发明实施例三相关的部分, 具体技术细节未揭 示的, 请参照图 1或图 9所示的本发明各实施例。
具体地, 所述终端设备可以为智能手机、 平板电脑等任何具备触控功能 的终端设备, 本发明实施例三以终端设备为智能手机为例进行说明, 图 11示 出的是与本发明实施例三相关的智能手机 20的部分结构的框图。
如图 11所示, 所述智能手机 20包括: 传感器 21以及处理器 22等部件。 本领域技术人员可以理解, 图 11中示出的智能手机结构并不构成对智能手机 的限定, 可以包括比图示更多或更少的部件, 或者组合某些部件, 或者不同 的部件布置。 例如: 智能手机 20还可以包括: RF ( radio frequency, 射频) 电路、 存储器、 输入单元、 显示单元、 音频电路以及电源 (图中未示出)等 部件。
下面结合图 11对智能手机 20的各个构成部件进行具体的介绍: 所述传感器 21用于确定终端设备从初始位置旋转到当前位置时所产生的 旋转角度; 具体地, 所述传感器 21可用于在检测到所述终端设备的屏幕自动 调节功能启动时, 确定所述终端设备从初始位置旋转到当前位置时所产生的 旋转角度; 其中, 所述终端设备的初始位置是指所述终端设备尚未进行屏幕 区域缩小处理操作时所处的位置, 或可认为是所述终端设备的屏幕显示区域 处于正常显示状态时所述终端设备所处的位置, 所述终端设备的当前位置是 指所述终端设备相对于所述终端设备的初始位置进行一定的位移或角度等旋 转后所处的位置。
需要说明的是, 在本发明所述实施例中, 所述传感器 21通常可为设置在 所述终端设备中的重力传感器或角度传感器等传感设备, 当然, 所述传感器 21还可以为其它任何能够实现本发明实施例中所述重力传感器或角度传感器 所能够实现的功能的传感设备, 本发明实施例对此不作任何限定。
所述处理器 22用于当所述旋转角度大于或等于设定阔值时, 对所述终端 设备的屏幕显示区域进行缩小处理; 其中, 所述设定阔值可以设置为一任意 非零数值, 并且可以根据实际情况进行相应调节, 本发明实施例对此不作任 何限定。
具体地, 在本发明所述实施例中, 所述终端设备从初始位置旋转到当前 方式一: 如图 2 ( a )所示, 以所述终端设备处于初始位置时的任一侧边 所在直线为旋转轴逆时针或顺时针旋转; 具体地, 如图 2 ( b )所示, 当所述 终端设备的某一侧边为弧形曲线等非直线段时, 可将与该侧边相切且与所述 终端设备的某一中心轴相平行的直线作为该侧边所在直线, 并在以该侧边所 在直线为旋转轴进行旋转时, 以与该侧边相切且与所述终端设备的某一中心 轴相平行的直线为旋转轴进行旋转;
方式二: 如图 2 ( c )所示, 以所述终端设备处于初始位置时的任一中心 轴所在直线为旋转轴逆时针或顺时针旋转;
方式三: 如图 2 ( d )所示, 以所述终端设备处于初始位置时的任一对角 线所在直线为旋转轴逆时针或顺时针旋转;
方式四: 如图 2 ( e )所示, 以经过所述终端设备的设备中心点且与所述 终端设备处于初始位置时所在平面相垂直的直线为旋转轴逆时针或顺时针旋 转。 需要说明的是, 在本发明所述实施例中, 所述终端设备还可以釆用其他 方式从初始位置旋转到当前位置, 本发明实施例对此不作任何限定; 另外需 要说明的是, 当所述终端设备呈正方形等四周对称结构时, 所述终端设备的 任一对角线可为所述终端设备的中心轴, 此时, 以所述终端设备处于初始位 端设备处于初始位置时的中心轴所在直线为旋转轴逆时针或顺时针旋转。 幕显示区域进行缩小处理:
保持所述屏幕显示区域中的各显示图标的大小以及各相邻显示图标之间 的间距不变, 并将位于屏幕第一显示子区域以及第二显示子区域内的显示图 标在屏幕第二显示子区域内显示, 其中, 所述第一显示子区域与所述第二显 示子区域相邻排列且所述第一显示子区域与所述第二显示子区域组合后形成 整个屏幕显示区域;
或者, 保持所述屏幕显示区域中的各显示图标的大小不变, 并对所述屏 幕显示区域中的各相邻显示图标之间的间距进行缩小处理;
或者, 保持所述屏幕显示区域中的各相邻显示图标之间的间距不变, 并 对所述屏幕显示区域中的各显示图标进行缩小处理;
或者, 对所述屏幕显示区域中的各显示图标的大小以及各相邻显示图标 之间的间距进行缩小处理。
需要说明的是, 在釆用上述第一种方式对所述终端设备的屏幕显示区域 进行缩小处理后, 最终所得到的终端设备的屏幕实际显示区域将变为第二显 示子区域, 且各显示图标将按原有的排列顺序和排列间隔依次排列在所述第 二显示子区域中。
另外需要说明的是, 所述第一显示子区域以及第二显示子区域的位置可 以根据实际情况进行设定, 本发明实施例对此不作任何限定, 如可将所述第 一显示子区域或第二显示子区域设置在所述终端设备屏幕显示区域的上部 分、 下部分、 左部分或右部分等; 较优地, 在本发明所述实施例中, 为了更 大程度地提高用户的使用体验, 可将所述第二显示子区域的位置设置在终端 设备与终端设备的操作用户相接触的一侧, 如当用户釆用左手单手操作所述 终端设备时, 可将所述第二显示子区域的位置设置在所述终端设备屏幕显示 区域的左部分。
进一步地, 在本发明所述实施例中, 所述处理器 12还可用于将所述第一 显示子区域所占据的区域面积、 或者所述屏幕显示区域中的各显示图标的缩 小程度、 或者各相邻显示图标之间的间距的缩小程度分别设置为一固定的数 值, 或者, 可用于按照所述旋转角度越大, 所述第一显示子区域所占据的区 域面积越大、 或者所述屏幕显示区域中的各显示图标的缩小程度越大、 或者 各相邻显示图标之间的间距的缩小程度越大的方式对所述第一显示子区域所 占据的区域面积、 或者所述屏幕显示区域中的各显示图标的缩小程度、 或者 各相邻显示图标之间间距的缩小程度分别进行设置, 即, 当所述旋转角度越 大时, 控制所述第一显示子区域所占据的区域面积越大、 或者控制所述屏幕 显示区域中的各显示图标的缩小程度越大、 或者控制各相邻显示图标之间间 距的缩小程度越大, 本发明实施例对此不作任何限定; 但是, 需要说明的是, 不论釆用何种设定方式, 所述第一显示子区域的区域面积大小、 或各显示图 标的缩小程度、 或各相邻显示图标之间间距的缩小程度均不能大于设定的最 大值, 当所述第一显示子区域的区域面积大小、 或各显示图标的缩小程度、 或各相邻显示图标之间间距的缩小程度已达到设定的最大值时, 会自动停止 对所述终端设备所进行的屏幕显示区域缩小处理操作。
进一步地, 所述传感器 21还可用于确定所述终端设备从初始位置旋转到 当前位置时的旋转角速度;
相应地, 所述处理器 22还可用于根据所述旋转角速度, 确定区域缩小速 度, 并基于确定的区域缩小速度, 对所述终端设备的屏幕显示区域进行缩小 处理, 其中, 所述旋转角速度越大, 所述区域缩小速度越大。
进一步地, 所述处理器 22还可用于在接收到暂停操作指令时, 停止对所 述终端设备所进行的屏幕显示区域缩小处理操作; 也就是说, 当用户确定所 述终端设备进行屏幕显示区域缩小处理时的区域缩小程度达到其所需要的程 度时, 可通过向所述终端设备发送暂停操作指令的方式, 告知所述终端设备 在保持当前屏幕显示区域缩小状态不变的情况下、 无需进一步对其屏幕显示 区域进行缩小处理, 从而可进一步达到随意、 便捷地控制终端设备屏幕显示 区域宽度的效果。
进一步地, 所述处理器 22还可用于针对任一暂停进行缩小处理操作的终 端设备, 在接收到缩小操作指令后, 继续对所述终端设备的屏幕显示区域进 行缩小处理, 直至再次接收到暂停操作指令或者屏幕显示区域的缩小程度已 达到设定的最大值。
进一步地, 所述处理器 22还可用于在对所述终端设备的屏幕显示区域进 行缩小处理后, 在接收到屏幕显示区域恢复操作指令时, 将所述终端设备的 屏幕显示区域调整到进行屏幕显示区域缩小处理前的状态。
也就是说, 针对任一已进行屏幕显示区域缩小处理后的终端设备, 在未 接收到屏幕显示区域恢复操作指令时, 所述终端设备的屏幕显示区域将一直 保持进行缩小处理后的状态, 并不会因为所述终端设备的再次旋转而发生任 何改变, 直至所述终端设备接收到屏幕显示区域恢复操作指令为止; 具体地, 在本发明所述实施例中, 所述处理器 22可通过将所述终端设备调整到初始位 置的方式, 将所述终端设备的屏幕显示区域调整到进行屏幕显示区域缩小处 理前的状态。
本发明实施例三提供了一种终端设备, 通过确定终端设备从初始位置旋 转到当前位置时所产生的旋转角度, 并当所述旋转角度大于或等于设定阔值 时, 对所述终端设备的屏幕显示区域进行缩小处理, 可实现终端设备屏幕显 示内容宽度的自动调节, 解决了现有技术中存在的单手操作终端设备时无法 操作整个屏幕显示区域所导致的操作困难的问题, 提高了终端设备的易操作 性以及用户的操作体验。
本领域技术人员应明白, 本发明的实施例可提供为方法、 装置 (设备)、 或计算机程序产品。 因此, 本发明可釆用完全硬件实施例、 完全软件实施例、 或结合软件和硬件方面的实施例的形式。 而且, 本发明可釆用在一个或多个 其中包含有计算机可用程序代码的计算机可用存储介质 (包括但不限于磁盘 存储器、 CD-ROM、 光学存储器等)上实施的计算机程序产品的形式。
尽管已描述了本发明的优选实施例, 但本领域内的技术人员一旦得知了 基本创造性概念, 则可对这些实施例作出另外的变更和修改。 所以, 所附权 利要求意欲解释为包括优选实施例以及落入本发明范围的所有变更和修改。 发明的精神和范围。 这样, 倘若本发明的这些修改和变型属于本发明权利要 求及其等同技术的范围之内, 则本发明也意图包含这些改动和变型在内。

Claims

权 利 要 求
1、 一种基于终端设备的屏幕调节方法, 其特征在于, 包括:
确定终端设备从初始位置旋转到当前位置时所产生的旋转角度; 当所述旋转角度大于或等于设定阔值时, 对所述终端设备的屏幕显示区 域进行缩小处理。
2、 如权利要求 1所述的屏幕调节方法, 其特征在于, 所述终端设备从初 始位置旋转到当前位置所釆用的旋转方式至少包括以下方式中的一种:
以所述终端设备处于初始位置时的任一侧边所在直线为旋转轴逆时针或 顺时针旋转; 或者,
以所述终端设备处于初始位置时的任一中心轴所在直线为旋转轴逆时针 或顺时针旋转; 或者,
以所述终端设备处于初始位置时的任一对角线所在直线为旋转轴逆时针 或顺时针旋转; 或者,
以经过所述终端设备的设备中心点且与所述终端设备处于初始位置时所 在平面相垂直的直线为旋转轴逆时针或顺时针旋转。
3、 如权利要求 1或 2所述的屏幕调节方法, 其特征在于, 所述将所述终 端设备的屏幕显示区域进行缩小处理, 包括:
保持所述屏幕显示区域中的各显示图标的大小以及各相邻显示图标之间 的间距不变, 并将位于屏幕第一显示子区域以及第二显示子区域内的显示图 标在所述第二显示子区域内显示, 其中, 所述第一显示子区域与所述第二显 示子区域相邻排列且所述第一显示子区域与所述第二显示子区域组合后形成 整个屏幕显示区域; 或
保持所述屏幕显示区域中的各显示图标的大小不变, 并对所述屏幕显示 区域中的各相邻显示图标之间的间距进行缩小处理; 或
保持所述屏幕显示区域中的各相邻显示图标之间的间距不变, 并对所述 屏幕显示区域中的各显示图标进行缩小处理; 或 对所述屏幕显示区域中的各显示图标的大小以及各相邻显示图标之间的 间距进行缩小处理。
4、 如权利要求 3所述的屏幕调节方法, 其特征在于,
所述旋转角度越大, 所述第一显示子区域所占据的区域面积越大、 或者 所述屏幕显示区域中的各显示图标的缩小程度越大、 或者各相邻显示图标之 间间距的缩小程度越大。
5、 如权利要求 1~4任一所述的屏幕调节方法, 其特征在于, 所述方法还 包括:
确定所述终端设备从初始位置旋转到当前位置时的旋转角速度; 对所述终端设备的屏幕显示区域进行缩小处理, 包括:
根据所述旋转角速度, 确定区域缩小速度, 其中, 所述旋转角速度越大, 所述区域缩小速度越大; 基于确定的区域缩小速度, 对所述终端设备的屏幕 显示区域进行缩小处理。
6、 如权利要求 1~4任一所述的屏幕调节方法, 其特征在于, 所述方法还 包括:
在接收到暂停操作指令时, 停止对所述终端设备所进行的屏幕显示区域 缩小处理操作。
7、 如权利要求 1~4任一所述的屏幕调节方法, 其特征在于, 在对所述终 端设备的屏幕显示区域进行缩小处理后, 所述方法还包括:
在接收到屏幕显示区域恢复操作指令时, 将所述终端设备的屏幕显示区 域调整到进行屏幕显示区域缩小处理前的状态。
8、 一种基于终端设备的屏幕调节装置, 其特征在于, 包括:
角度确定单元, 用于确定终端设备从初始位置旋转到当前位置时所产生 的旋转角度;
屏幕处理单元, 用于当所述旋转角度大于或等于设定阔值时, 对所述终 端设备的屏幕显示区域进行缩小处理。
9、 如权利要求 8所述的屏幕调节装置, 其特征在于, 所述终端设备从初 始位置旋转到当前位置所釆用的旋转方式至少包括以下方式中的一种: 以所述终端设备处于初始位置时的任一侧边所在直线为旋转轴逆时针或 顺时针旋转; 或者,
以所述终端设备处于初始位置时的任一中心轴所在直线为旋转轴逆时针 或顺时针旋转; 或者,
以所述终端设备处于初始位置时的任一对角线所在直线为旋转轴逆时针 或顺时针旋转; 或者,
以经过所述终端设备的设备中心点且与所述终端设备处于初始位置时所 在平面相垂直的直线为旋转轴逆时针或顺时针旋转。
10、 如权利要求 8或 9所述的屏幕调节装置, 其特征在于, 所述屏幕处 理单元在将所述终端设备的屏幕显示区域进行缩小处理时, 具体用于:
保持所述屏幕显示区域中的各显示图标的大小以及各相邻显示图标之间 的间距不变, 并将位于屏幕第一显示子区域以及第二显示子区域内的显示图 标在屏幕第二显示子区域内显示, 其中, 所述第一显示子区域与所述第二显 示子区域相邻排列且所述第一显示子区域与所述第二显示子区域组合后形成 整个屏幕显示区域; 或
保持所述屏幕显示区域中的各显示图标的大小不变, 并对所述屏幕显示 区域中的各相邻显示图标之间的间距进行缩小处理; 或
保持所述屏幕显示区域中的各相邻显示图标之间的间距不变, 并对所述 屏幕显示区域中的各显示图标进行缩小处理; 或
对所述屏幕显示区域中的各显示图标的大小以及各相邻显示图标之间的 间距进行缩小处理。
11、 如权利要求 10所述的屏幕调节装置, 其特征在于, 所述屏幕处理单 元, 还用于当所述旋转角度越大时, 控制所述第一显示子区域所占据的区域 面积越大、 或者控制所述屏幕显示区域中的各显示图标的缩小程度越大、 或 者控制各相邻显示图标之间间距的缩小程度越大。
12、 如权利要求 8~11任一所述的屏幕调节装置, 其特征在于, 所述屏幕 调节装置还包括角速度确定单元, 用于确定所述终端设备从初始位置旋转到 当前位置时的旋转角速度;
所述屏幕处理单元, 还用于根据所述旋转角速度, 确定区域缩小速度, 并基于确定的区域缩小速度, 对所述终端设备的屏幕显示区域进行缩小处理, 其中, 所述旋转角速度越大, 所述区域缩小速度越大。
13、 如权利要求 8~11任一所述的屏幕调节装置, 其特征在于, 所述屏幕 处理单元, 还用于在接收到暂停操作指令时, 停止对所述终端设备所进行的 屏幕显示区域缩小处理操作。
14、 如权利要求 8~11任一所述的屏幕调节装置, 其特征在于, 所述屏幕 处理单元, 还用于在对所述终端设备的屏幕显示区域进行缩小处理后, 在接 收到屏幕显示区域恢复操作指令时, 将所述终端设备的屏幕显示区域调整到 进行屏幕显示区域缩小处理前的状态。
15、 一种终端设备, 其特征在于, 包括:
传感器, 用于确定终端设备从初始位置旋转到当前位置时所产生的旋转 角度;
处理器, 用于当所述旋转角度大于或等于设定阔值时, 对所述终端设备 的屏幕显示区域进行缩小处理。
16、 如权利要求 15所述的终端设备, 其特征在于, 所述终端设备从初始 位置旋转到当前位置所釆用的旋转方式至少包括以下方式中的一种:
以所述终端设备处于初始位置时的任一侧边所在直线为旋转轴逆时针或 顺时针旋转; 或者,
以所述终端设备处于初始位置时的任一中心轴所在直线为旋转轴逆时针 或顺时针旋转; 或者,
以所述终端设备处于初始位置时的任一对角线所在直线为旋转轴逆时针 或顺时针旋转; 或者,
以经过所述终端设备的设备中心点且与所述终端设备处于初始位置时所 在平面相垂直的直线为旋转轴逆时针或顺时针旋转。
17、 如权利要求 15或 16所述的终端设备, 其特征在于, 所述处理器在 将所述终端设备的屏幕显示区域进行缩小处理时, 具体用于:
保持所述屏幕显示区域中的各显示图标的大小以及各相邻显示图标之间 的间距不变, 并将位于屏幕第一显示子区域以及第二显示子区域内的显示图 标在屏幕第二显示子区域内显示, 其中, 所述第一显示子区域与所述第二显 示子区域相邻排列且所述第一显示子区域与所述第二显示子区域组合后形成 整个屏幕显示区域; 或
保持所述屏幕显示区域中的各显示图标的大小不变, 并对所述屏幕显示 区域中的各相邻显示图标之间的间距进行缩小处理; 或
保持所述屏幕显示区域中的各相邻显示图标之间的间距不变, 并对所述 屏幕显示区域中的各显示图标进行缩小处理; 或
对所述屏幕显示区域中的各显示图标的大小以及各相邻显示图标之间的 间距进行缩小处理。
18、 如权利要求 17所述的终端设备, 其特征在于, 所述处理器, 还用于 当所述旋转角度越大时, 控制所述第一显示子区域所占据的区域面积越大、 或者控制所述屏幕显示区域中的各显示图标的缩小程度越大、 或者控制各相 邻显示图标之间间距的缩小程度越大。
19、 如权利要求 15~18任一所述的终端设备, 其特征在于, 所述传感器, 还用于确定所述终端设备从初始位置旋转到当前位置时的旋转角速度;
所述处理器, 还用于根据所述旋转角速度, 确定区域缩小速度, 并基于 确定的区域缩小速度, 对所述终端设备的屏幕显示区域进行缩小处理, 其中, 所述旋转角速度越大, 所述区域缩小速度越大。
20、如权利要求 15~18任一所述的终端设备,其特征在于, 所述处理器, 还用于在接收到暂停操作指令时, 停止对所述终端设备所进行的屏幕显示区 域缩小处理操作。
21、 如权利要求 15~18任一所述的终端设备, 其特征在于, 所述处理器, 还用于在对所述终端设备的屏幕显示区域进行缩小处理后, 在接收到屏幕显 示区域恢复操作指令时, 将所述终端设备的屏幕显示区域调整到进行屏幕显 示区域缩小处理前的状态。
PCT/CN2013/075932 2013-05-20 2013-05-20 一种基于终端设备的屏幕调节方法及装置 WO2014186941A1 (zh)

Priority Applications (2)

Application Number Priority Date Filing Date Title
PCT/CN2013/075932 WO2014186941A1 (zh) 2013-05-20 2013-05-20 一种基于终端设备的屏幕调节方法及装置
CN201380000689.1A CN103502922A (zh) 2013-05-20 2013-05-20 一种基于终端设备的屏幕调节方法及装置

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/CN2013/075932 WO2014186941A1 (zh) 2013-05-20 2013-05-20 一种基于终端设备的屏幕调节方法及装置

Publications (1)

Publication Number Publication Date
WO2014186941A1 true WO2014186941A1 (zh) 2014-11-27

Family

ID=49866739

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2013/075932 WO2014186941A1 (zh) 2013-05-20 2013-05-20 一种基于终端设备的屏幕调节方法及装置

Country Status (2)

Country Link
CN (1) CN103502922A (zh)
WO (1) WO2014186941A1 (zh)

Families Citing this family (13)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103502922A (zh) * 2013-05-20 2014-01-08 华为终端有限公司 一种基于终端设备的屏幕调节方法及装置
CN104793840A (zh) * 2014-01-22 2015-07-22 宏碁股份有限公司 便携式电子装置及图示位置调整方法
CN103809850A (zh) * 2014-02-10 2014-05-21 联想(北京)有限公司 一种信息处理方法和电子设备
CN104951218B (zh) * 2014-03-25 2019-03-05 宏碁股份有限公司 行动装置及调整视窗大小的方法
CN103970421B (zh) * 2014-05-23 2017-02-15 努比亚技术有限公司 一种移动终端的屏幕显示图案的调整方法
CN104808928A (zh) * 2015-03-02 2015-07-29 百度在线网络技术(北京)有限公司 一种终端中触发元素的调整方法及装置
CN104820536A (zh) * 2015-03-02 2015-08-05 百度在线网络技术(北京)有限公司 一种终端中触发元素的处理方法及装置
CN105511789B (zh) * 2015-12-08 2019-11-12 魅族科技(中国)有限公司 一种图标处理方法以及终端
CN107249056A (zh) * 2017-06-06 2017-10-13 上海传英信息技术有限公司 移动终端和实现单手操作移动终端的方法
CN110316084B (zh) * 2018-03-30 2021-09-21 比亚迪股份有限公司 基于车载显示终端的导航显示系统、方法和车辆
CN109062478A (zh) * 2018-06-28 2018-12-21 努比亚技术有限公司 阅读显示控制方法、移动终端及计算机可读存储介质
CN110203786A (zh) * 2019-06-05 2019-09-06 上海三菱电梯有限公司 一种电梯显示装置和电梯设备
CN111309232B (zh) * 2020-02-24 2021-04-27 北京明略软件系统有限公司 一种显示区域调整方法及装置

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102655556A (zh) * 2012-05-16 2012-09-05 信源通科技(深圳)有限公司 手机重力感应器应用方法及系统
CN102736842A (zh) * 2011-03-17 2012-10-17 索尼公司 信息处理装置、信息处理方法和程序
CN102830914A (zh) * 2012-07-31 2012-12-19 北京三星通信技术研究有限公司 操作终端设备的方法及其设备
TW201303847A (zh) * 2010-12-14 2013-01-16 Cywee Group Ltd 電子控制裝置及用以響應地控制顯示在攜帶式電子裝置上之媒體內容的方法
CN103502922A (zh) * 2013-05-20 2014-01-08 华为终端有限公司 一种基于终端设备的屏幕调节方法及装置

Family Cites Families (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US8719719B2 (en) * 2011-06-17 2014-05-06 Google Inc. Graphical icon presentation
KR101880968B1 (ko) * 2011-10-27 2018-08-20 삼성전자주식회사 터치스크린 휴대 기기에서 사용자 인터페이스 개체를 배치하는 방법 및 장치

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TW201303847A (zh) * 2010-12-14 2013-01-16 Cywee Group Ltd 電子控制裝置及用以響應地控制顯示在攜帶式電子裝置上之媒體內容的方法
CN102736842A (zh) * 2011-03-17 2012-10-17 索尼公司 信息处理装置、信息处理方法和程序
CN102655556A (zh) * 2012-05-16 2012-09-05 信源通科技(深圳)有限公司 手机重力感应器应用方法及系统
CN102830914A (zh) * 2012-07-31 2012-12-19 北京三星通信技术研究有限公司 操作终端设备的方法及其设备
CN103502922A (zh) * 2013-05-20 2014-01-08 华为终端有限公司 一种基于终端设备的屏幕调节方法及装置

Also Published As

Publication number Publication date
CN103502922A (zh) 2014-01-08

Similar Documents

Publication Publication Date Title
WO2014186941A1 (zh) 一种基于终端设备的屏幕调节方法及装置
US9766777B2 (en) Methods and apparatuses for window display, and methods and apparatuses for touch-operating an application
US9678703B2 (en) Information processing method and electronic device thereof
JP5802249B2 (ja) 表示装置、ソース機器、及び表示システム
CN104428742B (zh) 调整窗口显示位置的方法和终端
WO2022048633A1 (zh) 显示方法、装置和电子设备
WO2013182034A1 (zh) 应用于触屏设备的用户界面交互方法、装置及触屏设备
CN104731311A (zh) 显示装置及显示方法
US10180783B2 (en) Information processing device, information processing method and program that controls movement of a displayed icon based on sensor information and user input
WO2014113996A1 (zh) 图标显示的调整方法和终端
WO2014190511A1 (zh) 终端操作模式的切换和呈现方法及终端
WO2016082668A1 (zh) 基于用户拍击来自动控制移动终端的屏幕旋转模式的方法
US20140375698A1 (en) Method for adjusting display unit and electronic device
EP3123287B1 (en) Alternate dynamic keyboard for convertible tablet computers
CN104618658A (zh) 移动终端及其旋转摄像头控制方法
WO2017054142A1 (zh) 获取视频数据的方法、装置、系统及计算机可读存储介质
CN107479695B (zh) 显示装置及其控制方法
CN104571814B (zh) 一种投影方法及电子设备
WO2015114815A1 (ja) 情報処理装置
WO2014097653A1 (ja) 電子機器、制御方法およびプログラム
KR101909489B1 (ko) 디스플레이 장치의 동작 모드를 전환하는 디지털 텔레비전 및 그 방법
US11366580B2 (en) System for controlling a rotation of an object on a touch screen and method thereof
KR20170003689A (ko) 화면 자동 회전을 제어하는 방법, 장치 및 단말기
US10645144B2 (en) Computer-implemented method for controlling a remote device with a local device
WO2018000832A1 (zh) 一种终端屏幕内容的显示方法、显示装置以及终端

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 13885027

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 13885027

Country of ref document: EP

Kind code of ref document: A1