WO2013135169A1 - 一种输入法键盘的调整方法及其移动终端 - Google Patents

一种输入法键盘的调整方法及其移动终端 Download PDF

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Publication number
WO2013135169A1
WO2013135169A1 PCT/CN2013/072487 CN2013072487W WO2013135169A1 WO 2013135169 A1 WO2013135169 A1 WO 2013135169A1 CN 2013072487 W CN2013072487 W CN 2013072487W WO 2013135169 A1 WO2013135169 A1 WO 2013135169A1
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WO
WIPO (PCT)
Prior art keywords
state
input method
current input
method keyboard
keyboard
Prior art date
Application number
PCT/CN2013/072487
Other languages
English (en)
French (fr)
Inventor
刘定西
吴昊
王瑞聪
Original Assignee
腾讯科技(深圳)有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Application filed by 腾讯科技(深圳)有限公司 filed Critical 腾讯科技(深圳)有限公司
Priority to US14/385,383 priority Critical patent/US10133480B2/en
Publication of WO2013135169A1 publication Critical patent/WO2013135169A1/zh

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Classifications

    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/048Interaction techniques based on graphical user interfaces [GUI]
    • G06F3/0487Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser
    • G06F3/0488Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser using a touch-screen or digitiser, e.g. input of commands through traced gestures
    • G06F3/04886Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser using a touch-screen or digitiser, e.g. input of commands through traced gestures by partitioning the display area of the touch-screen or the surface of the digitising tablet into independently controllable areas, e.g. virtual keyboards or menus
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/048Interaction techniques based on graphical user interfaces [GUI]
    • G06F3/0484Interaction techniques based on graphical user interfaces [GUI] for the control of specific functions or operations, e.g. selecting or manipulating an object, an image or a displayed text element, setting a parameter value or selecting a range
    • G06F3/04845Interaction techniques based on graphical user interfaces [GUI] for the control of specific functions or operations, e.g. selecting or manipulating an object, an image or a displayed text element, setting a parameter value or selecting a range for image manipulation, e.g. dragging, rotation, expansion or change of colour
    • 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
    • G06F2203/00Indexing scheme relating to G06F3/00 - G06F3/048
    • G06F2203/048Indexing scheme relating to G06F3/048
    • G06F2203/04803Split screen, i.e. subdividing the display area or the window area into separate subareas
    • 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
    • G06F2203/04808Several contacts: gestures triggering a specific function, e.g. scrolling, zooming, right-click, when the user establishes several contacts with the surface simultaneously; e.g. using several fingers or a combination of fingers and pen

Definitions

  • the present invention relates to the field of mobile terminals, and in particular, to an adjustment method of an input method keyboard and a mobile terminal thereof. Background technique
  • the user inputs text through an input method suitable for a full touch screen mobile terminal.
  • the input method for a full touch screen mobile terminal most of the input methods are interfaces and display modes for copying the traditional mobile phone input method, including an input method keyboard and an input window that are virtualized on the touch screen.
  • the user will be provided with different input method keyboards, so that the user can adjust as needed.
  • Different input method keyboards have different sizes and layouts.
  • the existing method of adjusting the input method keyboard is mainly adjusted from the layout aspect. Specifically, in the first mode, an adjustment button is set in the interface of the display input method keyboard. As long as the user clicks the button on the touch screen with his finger, the layout of the current input method keyboard will be adjusted. In the second mode, the gesture recognition of the linear sliding is set in the interface of the input method keyboard. As long as the user swipes straight on the touch screen with his finger, the layout of the current input method keyboard will be adjusted.
  • the conversion button set in the first mode occupies a certain space of the display interface, affecting the interface beautiful And reducing the processing power of the interface; in the second mode, the gesture of linear sliding is easily mishandled by the user, affecting the user experience; and the existing two adjustment methods are only adjusted for the layout of the input method keyboard, which is not comprehensive enough to satisfy the user. nessecery. Summary of the invention
  • the embodiment of the invention provides an adjustment method of the input method keyboard and the mobile terminal thereof.
  • the technical solution is as follows:
  • a method for adjusting an input method keyboard comprising:
  • Obtaining a current input method keyboard state where the current input method keyboard state is one of a maximum state, an intermediate state, or a minimum state;
  • the calculating the adjustment ratio according to the trajectory includes:
  • the method further includes:
  • the adjusting the scale of the current input method keyboard according to the adjustment ratio and the current input method keyboard state including:
  • the current input method keyboard state is the minimum state or the intermediate state; then zooming in the minimum state of the current input method keyboard to the intermediate state, or The current input method keyboard of the intermediate state is enlarged to the maximum state;
  • the adjustment ratio is less than 1, and the current input method keyboard state is the intermediate state or the maximum state; then the current input method keyboard of the intermediate state is reduced to the minimum state, or The current input method keyboard of the maximum state is reduced to the intermediate state.
  • the adjustment ratio and the current input method keyboard state and correspondingly adjusting the layout of the current input method keyboard, including: Determining whether to convert the layout of the current input method keyboard to a full keyboard or a nine-square grid according to the adjustment ratio and the current input method keyboard state;
  • the current input method keyboard state is the minimum state; converting the layout of the current input method keyboard to the full keyboard;
  • the adjustment ratio is less than 1, and the current input method keyboard state is the intermediate state; then converting the layout of the current input method keyboard to the nine-square grid.
  • a mobile terminal, the mobile terminal includes:
  • a recording module configured to record a trajectory of the two-finger sliding of the user, the trajectory comprising two start contacts and two last contacts generated when the two fingers slide;
  • a calculation module configured to calculate an adjustment ratio according to the trajectory
  • An obtaining module configured to acquire a current input method keyboard state, where the current input method keyboard state is one of a maximum state, an intermediate state, or a minimum state;
  • an adjustment module configured to adjust a size and/or a layout of the current input method keyboard according to the adjustment ratio and the current input method keyboard state.
  • the computing module includes:
  • a first calculating unit configured to calculate a distance value between the two start contacts, and a distance value between the two last contacts
  • a second calculating unit configured to divide a distance value between the two end contacts by a distance value between the two start contacts to obtain the adjustment ratio.
  • the obtaining module is further configured to:
  • the adjustment module includes:
  • a first determining unit configured to determine, according to the adjustment ratio and the current input method keyboard state, whether to enlarge or reduce the current input method keyboard
  • An amplifying unit configured to: if the adjustment ratio is greater than 1, and the current input method keyboard state is the minimum state or the intermediate state; then enlarge the current input method keyboard of the minimum state to the middle a state, or magnifying the current input method keyboard of the intermediate state to the maximum state;
  • a reduction unit configured to: if the adjustment ratio is less than 1, and the current input method keyboard state is the intermediate state or the maximum state; The minimum state, or narrowing the current input method keyboard of the maximum state to the intermediate state.
  • the adjustment module includes:
  • a second determining unit configured to determine, according to the adjustment ratio and the current input method keyboard state, whether to convert the layout of the current input method keyboard to a full keyboard or a nine-square grid;
  • a full keyboard unit configured to convert the layout of the current input method keyboard to the full keyboard if the adjustment ratio is greater than 1 and the current input method keyboard state is the minimum state;
  • a nine-square grid unit configured to convert the layout of the current input method keyboard to the nine-square grid if the adjustment ratio is less than 1 and the current input method keyboard state is the intermediate state;
  • the technical solution provided by the embodiment of the present invention has the beneficial effects of: recording the trajectory of the two-finger sliding of the user, the trajectory including two start contacts and two end contacts generated when the two fingers slide; The characteristics of the touch screen use gesture recognition to adjust the input method keyboard; and the user is two-finger sliding, which avoids the user accidentally triggering the operation, enhances the user experience; calculates the adjustment ratio according to the trajectory; and acquires the current input method keyboard state;
  • the current input method keyboard state is one of a maximum state, an intermediate state, or a minimum state; according to the adjustment ratio and the current input method keyboard state, the size and/or layout of the current input method keyboard is adjusted accordingly; Adjusting the size and/or layout of the input method keyboard takes into account the size state of the current input method keyboard, so that the user can conveniently and intuitively adjust the size and/or layout of the input method keyboard according to actual needs, further enhancing the user experience and improving the application.
  • FIG. 1 is a flowchart of a method for adjusting an input method keyboard according to Embodiment 1 of the present invention
  • FIG. 2 is a flowchart of a method for adjusting an input method keyboard according to Embodiment 2 of the present invention
  • FIG. 4 is a schematic diagram of a full keyboard layout provided in Embodiment 3 of the present invention or a full keyboard provided in Embodiment 4;
  • FIG. 5 is a schematic diagram of a nine-square grid layout provided in Embodiment 3 of the present invention
  • 6 is a flowchart of a method for adjusting an input method keyboard according to Embodiment 4 of the present invention
  • FIG. 7 is a schematic diagram of a full keyboard in an intermediate state according to Embodiment 4 of the present invention
  • Figure 8 is a schematic view of a nine-square grid of a minimum state provided in Embodiment 4 of the present invention.
  • FIG. 9 is a schematic structural diagram of a mobile terminal according to Embodiment 5 of the present invention.
  • FIG. 10 is a schematic structural diagram of a mobile terminal according to Embodiment 6 of the present invention.
  • FIG. 11 is a schematic structural diagram of a mobile terminal provided in Embodiment 8 of the present invention.
  • FIG. 12 is a schematic structural diagram of a mobile terminal having a touch-sensitive surface according to an embodiment of the present invention. detailed description
  • Embodiment 1 of the present invention provides a method for adjusting an input method keyboard, and the method includes:
  • the trajectory includes two starting points and two ending points generated when the two fingers slide.
  • the input method keyboard state is one of a maximum state, an intermediate state, or a minimum state.
  • the technical solution provided by the embodiment of the present invention has the beneficial effects of: recording the trajectory of the two fingers sliding by the user, the trajectory includes two start contacts and two last contacts generated when the two fingers slide; capable of combining the touch screen Using gesture recognition to adjust the input method keyboard; and the user is two-finger sliding, avoiding the user accidentally triggering the operation, enhancing the user experience; calculating the adjustment ratio according to the trajectory; and obtaining the current input method keyboard state; the input method keyboard The state is one of a maximum state, an intermediate state, or a minimum state; according to the adjustment ratio and the input method keyboard state, the size and/or layout of the current input method keyboard is adjusted accordingly; due to the adjustment of the input method keyboard size and/or The size of the current input method keyboard is considered in the layout, so that the user can conveniently and intuitively adjust the size and/or layout of the input method keyboard according to actual needs, further enhancing the user experience and improving the reputation of the application and the market competitiveness of the product. .
  • Example 2 Example 2
  • a second embodiment of the present invention provides a method for adjusting an input method keyboard by using a tablet computer in a mobile terminal as an example.
  • the method includes:
  • a tablet user is using the input method keyboard displayed on the touch screen to perform input operations, such as inputting a network address in a browser address bar, inputting text in a text document, or inputting an account password in a login box.
  • the user intends to adjust the current input method keyboard, such as a full keyboard that is horizontally spread across the full screen, to an input keyboard that occupies less screen space.
  • the user simultaneously uses two fingers, facing each other on the touch screen at any position, and sliding close to the screen for a distance.
  • the user should use two fingers at the same time, facing away from the screen at any position on the touch screen, and sliding close to the screen for a certain distance.
  • the touch position of the user on the touch screen is detected in real time, and the track of the two fingers sliding of the user is recorded, and the track includes two start contacts and two last contacts generated when the two fingers slide.
  • the start contact of the user's two fingers on the touch screen is recorded.
  • the continuous contacts of the two fingers on the touch screen are recorded to determine whether the user ends the sliding.
  • the end slide is detected, the last contact of the user's two fingers on the touch screen is recorded.
  • the recorded start and end contacts are represented in the form of contact coordinates, which is prior art and will not be described in detail.
  • step specifically includes:
  • the adjustment ratio is obtained by dividing the distance between the two end contacts by the distance between the two start contacts.
  • the distance between the two start contacts is divided by the two start contacts.
  • the distance value is calculated and the adjustment ratio is calculated. Further, the adjustment ratio is an approximation, and one digit after the decimal point, such as 0.8 or 1.2, can be retained.
  • the adjustment ratio is not 1, it is determined that the current input method keyboard state is acquired, and 204 is performed. If the adjustment ratio is 1, it is determined that the current input method keyboard state is not obtained, and the current adjustment process is exited, and execution 201 is performed.
  • the current input method keyboard state is one of a maximum state, an intermediate state, or a minimum state.
  • three input method keyboard states are provided, including a maximum state, an intermediate state, and a minimum state.
  • the input mode keyboard of the maximum state occupies the largest screen space, and the number of buttons included is the largest, and the size of each button is the largest.
  • the maximum state is an input method keyboard that laterally fills the space below the display screen;
  • the input method keyboard with small screen space has a large number of buttons, and the size of each button is large.
  • the intermediate state is an input keyboard that occupies two-thirds of the space below the display screen; the minimum state is the smallest occupied screen space.
  • the input keyboard has the fewest number of buttons and the smallest size of each button.
  • the minimum state is the input keyboard that occupies one-third of the space below the display.
  • the current input method keyboard state is an intermediate state, it is determined to adjust the size of the current input method keyboard, and execute 206.
  • the step specifically includes: 2061 : According to the adjustment ratio and the current input method keyboard state, it is judged whether to enlarge or reduce the current input method keyboard.
  • the adjustment ratio is greater than 1, and the current input method keyboard state is the minimum state or the intermediate state, it is determined that the current input method keyboard is enlarged, and execution is 2062; if the adjustment ratio is less than 1, and the current input method keyboard state is intermediate state or maximum If the status is determined, the current input method keyboard is reduced, and 2063 is executed.
  • the current input method keyboard of the minimum state is enlarged to the intermediate state; or the current input method keyboard of the intermediate state is enlarged to the maximum state.
  • the current input method keyboard in the intermediate state is reduced to the minimum state; or the current input keyboard of the maximum state is reduced to the intermediate state.
  • the technical solution provided by the embodiment of the present invention has the beneficial effects of: recording the trajectory of the two fingers sliding by the user, the trajectory includes two start contacts and two last contacts generated when the two fingers slide; capable of combining the touch screen Using gesture recognition to adjust the input method keyboard; and the user is two-finger sliding, avoiding the user accidentally triggering the operation, enhancing the user experience; calculating the adjustment ratio according to the trajectory; and obtaining the current input method keyboard state; the input method keyboard The state is one of a maximum state, an intermediate state, or a minimum state; according to the adjustment ratio and the input method keyboard state, the size and/or layout of the current input method keyboard is adjusted accordingly; due to the adjustment of the input method keyboard size and/or The size of the current input method keyboard is considered in the layout, so that the user can conveniently and intuitively adjust the size and/or layout of the input method keyboard according to actual needs, further enhancing the user experience and improving the reputation of the application and the market competitiveness of the product. .
  • Example 3 Example 3
  • the embodiment 3 of the present invention provides a method for adjusting an input method keyboard by using a tablet computer in a mobile terminal as an example, and the method includes:
  • the judgment situation is divided into the following two types: A.
  • the adjustment ratio is less than 1
  • the current input method keyboard state is the intermediate state, it is determined to adjust the layout of the current input method keyboard.
  • execute 306 otherwise, judge not to adjust the current input method keyboard The layout, exit the process of this adjustment, execute 301.
  • the common layout of the input method keyboard includes a full keyboard (QWERTY keyboard) and a nine-square grid (digital keyboard).
  • the full keyboard keys are complete, and the number of buttons is large;
  • Both keyboard layouts have a broad user base, and existing input methods provide support for both keyboard layouts. Further, this step specifically includes:
  • the layout of the current input method keyboard is converted into the layout of the full keyboard.
  • the layout of the current input method keyboard is converted into a layout of a nine-square grid.
  • the technical solution provided by the embodiment of the present invention has the beneficial effects of: recording the trajectory of the two fingers sliding by the user, the trajectory includes two start contacts and two last contacts generated when the two fingers slide; capable of combining the touch screen Using gesture recognition to adjust the input method keyboard; and the user is two-finger sliding, avoiding the user accidentally triggering the operation, enhancing the user experience; calculating the adjustment ratio according to the trajectory; and obtaining the current input method keyboard state; the input method keyboard The state is one of a maximum state, an intermediate state, or a minimum state; according to the adjustment ratio and the input method keyboard state, the size and/or layout of the current input method keyboard is adjusted accordingly; due to the adjustment of the input method keyboard size and/or The size of the current input method keyboard is considered in the layout, so that the user can conveniently and intuitively adjust the size and/or layout of the input method keyboard according to actual needs, further enhancing the user experience and improving the reputation of the application and the market competitiveness of the product. .
  • the embodiment 4 of the present invention provides a method for adjusting an input method keyboard by using a tablet computer in a mobile terminal as an example, and the method includes: 401-404, and 301 ⁇ 304 in Embodiment 3 of the present invention, are not described in detail herein.
  • the current input method keyboard state is the maximum state, and the adjustment ratio is less than 1, it is determined to adjust the size and layout of the current input method keyboard, and execute 406; if the current input method keyboard state is the maximum state, and the adjustment ratio is greater than 1, Then, it is determined that the size and layout of the current input method keyboard are not adjusted, and the process of the current adjustment is exited, and 401 is executed.
  • step specifically includes:
  • the adjustment ratio is greater than 1, and the current input method keyboard state is the minimum state or the intermediate state, it is determined that the current input method keyboard is enlarged, and 4061b is executed; if the adjustment ratio is less than 1, and the current input method keyboard state is intermediate state or maximum If the status is determined, the current input method keyboard is reduced, and 4061c is executed.
  • the current input method keyboard of the minimum state is enlarged to the intermediate state; or the current input method keyboard of the intermediate state is enlarged to the maximum state.
  • the current input method keyboard in the intermediate state is reduced to a minimum state; or the maximum state is The front input method keyboard is reduced to the intermediate state.
  • 4062 Adjust the layout of the current input method keyboard according to the adjustment ratio and the current input method keyboard state.
  • three input method keyboards are provided, including a full-state full keyboard (as shown in FIG. 4), an intermediate state full keyboard (as shown in FIG. 7), and a minimum state nine-square grid (as shown in FIG. 7). 8)).
  • the full keyboard of the maximum state is a full keyboard for expanding all the keys, and the screen is horizontally covered;
  • the full keyboard of the intermediate state is a full keyboard for expanding a part of the keys (for example, other keys except the keypad), and the expanded keys are The size is smaller than the expanded buttons in the maximum state, occupying a small screen area;
  • the minimum state of the nine squares is a nine-square grid keyboard (numeric keypad), 9 keys and/or some auxiliary keys, occupying the smallest screen area.
  • the type of the input method keyboard is not limited to the above three types, for example, it may also be displayed as two nine-square grid keyboards (the numbers of the nine-square grid keyboard are separated from the letters and displayed separately, a total of 18 buttons). It will not be described in detail here.
  • the input mode keyboard in which the intermediate state and the minimum state can be set can be moved to any position on the screen.
  • the layout of the current input method keyboard is converted into the layout of the full keyboard.
  • the current input method keyboard can be adjusted to the full keyboard input method keyboard in the intermediate state.
  • the input mode keyboard of the intermediate state occupies less screen space, which saves the screen space to a certain extent; on the other hand, the layout of the full keyboard with a large number of buttons is convenient for the user to perform keyboard operations.
  • 4062c Converts the layout of the current input method keyboard to a nine-square grid.
  • the layout of the current input method keyboard is converted into the layout of the nine-square grid.
  • the current input method keyboard can be adjusted to the minimum state of the nine-square grid input method keyboard.
  • the minimum state input keyboard takes up less screen space and saves screen space.
  • the layout of the nine-square grid with a small number of buttons is convenient for the user to perform keyboard operations.
  • the technical solution provided by the embodiment of the present invention has the beneficial effects of: recording the trajectory of the two fingers sliding by the user, the trajectory includes two start contacts and two last contacts generated when the two fingers slide; capable of combining the touch screen , using gesture recognition to adjust the input method keyboard; and the user is two-finger sliding, avoiding use
  • the user triggers the operation by mistake, and enhances the user experience; calculates the adjustment ratio according to the trajectory; and obtains the current input method keyboard state; the input method keyboard state is one of a maximum state, an intermediate state, or a minimum state; according to the adjustment ratio And the input method keyboard state, correspondingly adjust the size and/or layout of the current input method keyboard; since the size of the current input method keyboard is taken into consideration when adjusting the size and/or layout of the input method keyboard, the user can conveniently and intuitively follow In fact, it is necessary to comprehensively adjust the size and/or layout of the input method keyboard, further enhancing the user experience, and improving the reputation of the application and the market competitiveness of the product.
  • a fifth embodiment of the present invention provides a mobile terminal, where the mobile terminal includes: a recording module 501, configured to record a trajectory of two-finger sliding of a user, where the trajectory includes two start contacts generated when two fingers slide and Two end contacts.
  • the calculation module 502 is configured to calculate an adjustment ratio according to the trajectory.
  • the obtaining module 503 is configured to obtain a current input method keyboard state, where the input method keyboard state is one of a maximum state, an intermediate state, or a minimum state.
  • the adjustment module 504 is configured to adjust the size and/or layout of the current input method keyboard according to the adjustment ratio and the input method keyboard state.
  • the technical solution provided by the embodiment of the present invention has the beneficial effects of: recording the trajectory of the two fingers sliding by the user, the trajectory includes two start contacts and two last contacts generated when the two fingers slide; capable of combining the touch screen Using gesture recognition to adjust the input method keyboard; and the user is two-finger sliding, avoiding the user accidentally triggering the operation, enhancing the user experience; calculating the adjustment ratio according to the trajectory; and obtaining the current input method keyboard state; the input method keyboard The state is one of a maximum state, an intermediate state, or a minimum state; according to the adjustment ratio and the input method keyboard state, the size and/or layout of the current input method keyboard is adjusted accordingly; due to the adjustment of the input method keyboard size and/or The size of the current input method keyboard is considered in the layout, so that the user can conveniently and intuitively adjust the size and/or layout of the input method keyboard according to actual needs, further enhancing the user experience and improving the reputation of the application and the market competitiveness of the product. .
  • Embodiment 6 of the present invention provides a mobile terminal, where the mobile terminal includes: a recording module 601, configured to record a trajectory of two-finger sliding of a user, where the trajectory includes two start contacts generated when two fingers slide and Two end contacts.
  • a recording module 601 configured to record a trajectory of two-finger sliding of a user, where the trajectory includes two start contacts generated when two fingers slide and Two end contacts.
  • the calculation module 602 is configured to calculate an adjustment ratio according to the trajectory.
  • the calculation module 602 includes:
  • the first calculating unit 6021 is configured to calculate a distance value between the two start contacts and a distance value between the two end contacts.
  • the second calculating unit 6022 is configured to divide the distance value between the two end contacts by the distance value between the two start contacts to obtain an adjustment ratio.
  • the obtaining module 603 is configured to obtain a current input method keyboard state, where the input method keyboard state is one of a maximum state, an intermediate state, or a minimum state.
  • the adjustment module 604 is configured to adjust the size of the current input method keyboard according to the adjustment ratio and the input method keyboard state.
  • the adjustment module 604 includes:
  • the first determining unit 6041 is configured to determine whether to enlarge or reduce the current input method keyboard according to the adjustment ratio and the current input method keyboard state.
  • the amplifying unit 6042 is configured to: if the adjustment ratio is greater than 1, and the current input method keyboard state is a minimum state or an intermediate state; then enlarge the current input method keyboard of the minimum state to an intermediate state, or enlarge the current input method keyboard of the intermediate state to Maximum state.
  • the reduction unit 6043 is configured to: if the adjustment ratio is less than 1, and the current input method keyboard state is an intermediate state or a maximum state; then reduce the current input method keyboard of the intermediate state to a minimum state, or reduce the current input keyboard of the maximum state to the minimum state Intermediate state.
  • the obtaining module 603 is further configured to: determine, according to the adjustment ratio, whether to obtain the current input method keyboard state; if the adjustment ratio is not 1, obtain the current input method keyboard state.
  • the adjustment module 604 further includes:
  • the determining adjustment unit 6044 is configured to determine whether to adjust the size of the current input method keyboard according to the adjustment ratio and the current input method keyboard state.
  • the adjustment module 604 is further configured to: if the current input method keyboard state is the maximum state, and the adjustment ratio is less than 1; or, if the current input method keyboard state is the intermediate state; or, if the current input method keyboard state is the minimum state, And the adjustment ratio is greater than 1; then adjust the size of the current input method keyboard.
  • the technical solution provided by the embodiment of the present invention has the beneficial effects of: recording the trajectory of the two fingers sliding by the user, the trajectory includes two start contacts and two last contacts generated when the two fingers slide; capable of combining the touch screen Using gesture recognition to adjust the input method keyboard; and the user is two-finger sliding, avoiding the user accidentally triggering the operation, enhancing the user experience; calculating the adjustment ratio according to the trajectory; and obtaining the current input method keyboard state; the input method keyboard The state is one of the maximum state, the intermediate state, or the minimum state According to the adjustment ratio and the input method keyboard state, the size and/or layout of the current input method keyboard is adjusted accordingly; since the size state of the current input method keyboard is taken into consideration when adjusting the size and/or layout of the input method keyboard, The user can conveniently and intuitively adjust the size and/or layout of the input method keyboard according to actual needs, further enhancing the user experience and improving the reputation of the application and the market competitiveness of the product.
  • Embodiment 7 of the present invention provides a mobile terminal, where the mobile terminal includes:
  • the recording module is the same as the recording module 601 in Embodiment 6 of the present invention, and will not be described in detail herein.
  • the calculation module is the same as the calculation module 602 in Embodiment 6 of the present invention, and will not be described in detail herein.
  • the acquisition module is the same as the acquisition module 603 in Embodiment 6 of the present invention, and will not be described in detail herein.
  • the adjustment module is configured to adjust the layout of the current input method keyboard according to the adjustment ratio and the keyboard state of the input method.
  • the adjustment module includes:
  • the second determining unit is configured to determine whether to convert the layout of the current input method keyboard to a full keyboard or a nine-square grid according to the current input method keyboard state and the adjustment ratio.
  • the full keyboard unit is used to convert the layout of the current input method keyboard to a full keyboard if the adjustment ratio is greater than 1 and the current input method keyboard state is the minimum state;
  • the nine-square grid unit is used to convert the layout of the current input method keyboard to a nine-square grid if the adjustment ratio is less than 1 and the current input method keyboard state is intermediate.
  • the obtaining module is further configured to: determine, according to the adjustment ratio, whether to obtain the current input method keyboard state; if the adjustment ratio is not 1, obtain the current input method keyboard state.
  • the adjustment module further includes:
  • the determining adjustment unit is configured to determine whether to adjust the layout of the current input method keyboard according to the adjustment ratio and the current input method keyboard state.
  • the adjustment module is further configured to: if the adjustment ratio is less than 1, if the current input method keyboard state is an intermediate state; or, when the adjustment ratio is greater than 1, if the current input method keyboard state is a minimum state; The layout of the keyboard.
  • the technical solution provided by the embodiment of the present invention has the beneficial effects of: recording the trajectory of the two fingers sliding by the user, the trajectory includes two start contacts and two last contacts generated when the two fingers slide; capable of combining the touch screen Using gesture recognition to adjust the input method keyboard; and the user is two-finger sliding, which avoids the user accidentally triggering the operation, and enhances the user experience; according to the trajectory, calculates the adjustment ratio; and obtains the current Input method keyboard state; the input method keyboard state is the maximum state, the intermediate state or the minimum state; according to the adjustment ratio and the input method keyboard state, the current input method keyboard size/or layout is adjusted accordingly; The size and/or layout of the keyboard is considered in the current input method keyboard size state, so that the user can conveniently and intuitively adjust the large d and/or layout of the input method keyboard according to actual needs, further enhancing the user experience and improving the reputation of the application. And the market competitiveness of the products.
  • a mobile terminal is provided in Embodiment 8 of the present invention.
  • the mobile terminal includes: a recording module 801, which is the same as the recording module in Embodiment 7 of the present invention, and is not described in detail herein.
  • the calculation module 802 which is the same as the calculation module in Embodiment 7 of the present invention, will not be described in detail herein.
  • the obtaining module 803 is the same as the acquiring module in Embodiment 7 of the present invention, and will not be described in detail herein.
  • the adjustment module 804 is configured to adjust the size and layout of the current input method keyboard according to the adjustment ratio and the input method keyboard state.
  • the adjustment module 804 includes:
  • the first determining unit 8041 is configured to determine whether to enlarge or reduce the current input method keyboard according to the adjustment ratio and the current input method keyboard state.
  • the amplifying subunit 8042 is configured to: if the adjustment ratio is greater than 1, and the current input method keyboard state is a minimum state or an intermediate state; then enlarge the current input method keyboard of the minimum state to an intermediate state, or enlarge the current input method keyboard of the intermediate state To the maximum state.
  • the reducing unit 8043 is configured to reduce the current input method keyboard of the intermediate state to a minimum state, or reduce the current input keyboard of the maximum state to a minimum state if the adjustment ratio is less than 1, and the current input method keyboard state is an intermediate state or a maximum state; Intermediate state.
  • the second determining unit 8044 is configured to determine whether to convert the layout of the current input method keyboard to a full keyboard or a nine-square grid according to the adjustment ratio and the current input method keyboard state.
  • the full keyboard unit 8045 is used to convert the layout of the current input method keyboard to a full keyboard if the adjustment ratio is greater than 1 and the current input method keyboard state is the minimum state;
  • the nine-square grid unit 8046 is used to convert the layout of the current input method keyboard into a nine-square grid if the adjustment ratio is less than 1 and the current input method keyboard state is intermediate.
  • the obtaining module 803 is further configured to: determine, according to the adjustment ratio, whether to obtain the current input method keyboard state; if the adjustment ratio is not 1, obtain the current input method keyboard state.
  • the adjustment module 804 further includes: The determining adjustment unit 8047 is configured to determine whether to adjust the size and layout of the current input method keyboard according to the adjustment ratio and the current input method keyboard state.
  • the adjustment module 804 is further configured to: if the current input method keyboard state is the maximum state, and the adjustment ratio is less than 1; or, if the current input method keyboard state is the intermediate state; or, if the current input method keyboard state is the minimum state, And the adjustment ratio is greater than 1; then adjust the size and layout of the current input method keyboard.
  • the technical solution provided by the embodiment of the present invention has the beneficial effects of: recording the trajectory of the two fingers sliding by the user, the trajectory includes two start contacts and two last contacts generated when the two fingers slide; capable of combining the touch screen Using gesture recognition to adjust the input method keyboard; and the user is two-finger sliding, avoiding the user accidentally triggering the operation, enhancing the user experience; calculating the adjustment ratio according to the trajectory; and obtaining the current input method keyboard state; the input method keyboard The state is one of a maximum state, an intermediate state, or a minimum state; according to the adjustment ratio and the input method keyboard state, the size and/or layout of the current input method keyboard is adjusted accordingly; due to the adjustment of the input method keyboard size and/or The size of the current input method keyboard is considered in the layout, so that the user can conveniently and intuitively adjust the size and/or layout of the input method keyboard according to actual needs, further enhancing the user experience and improving the reputation of the application and the market competitiveness of the product.
  • FIG. 12 a schematic diagram of a structure with a touch-sensitive surface according to an embodiment of the present invention is shown.
  • the mobile terminal can be used to implement an adjustment method of an input method keyboard provided in the foregoing embodiment. Specifically:
  • the mobile terminal 1200 may include an RF (Radio Frequency) circuit 110, a memory 120 including one or more computer readable storage media, an input unit 130, a display unit 140, a sensor 150, an audio circuit 160, and a WiFi (wireless fidelity,
  • the Wireless Fidelity module 170 includes a processor 180 having one or more processing cores, and a power supply 190 and the like.
  • the mobile terminal architecture illustrated in Figure 12 does not constitute a limitation to the mobile terminal and may include more or fewer components than those illustrated, or some components may be combined, or different component arrangements. among them:
  • the RF circuit 110 can be used for transmitting and receiving information or during a call, receiving and transmitting signals, and in particular, receiving downlink information of the base station, and then processing it by one or more processors 180; The data related to the uplink is sent to the base station.
  • the RF circuit 110 includes, but is not limited to, an antenna, at least one amplifier, a tuner, one or more oscillators, a Subscriber Identity Module (SIM) card, a transceiver, a coupler, an LNA (Low Noise Amplifier). , duplexer, etc.
  • SIM Subscriber Identity Module
  • the RF circuit 110 can also communicate with the network and other devices via wireless communication.
  • the wireless communication may use any communication standard or protocol, including but not limited to GSM (Global System of Mobile communication), GPRS (General Packet Radio Service), CDMA (Code Division Multiple Access). , Code Division Multiple Access), WCDMA (Wideband Code Division Multiple Access), LTE (Long Term Evolution), e-mail, SMS (Short Messaging Service), and so on.
  • GSM Global System of Mobile communication
  • GPRS General Packet Radio Service
  • CDMA Code Division Multiple Access
  • WCDMA Wideband Code Division Multiple Access
  • LTE Long Term Evolution
  • e-mail Short Messaging Service
  • the memory 120 can be used to store software programs and modules, and the processor 180 executes various functional applications and data processing by running software programs and modules stored in the memory 120.
  • the memory 120 may mainly include a storage program area and a storage data area, wherein the storage program area may store an operating system, an application required for at least one function (such as a sound playing function, an image playing function, etc.), and the like; the storage data area may be stored according to The data created by the use of the mobile terminal 1200 (such as audio data, phone book, etc.) and the like.
  • memory 120 can include high speed random access memory, and can also include non-volatile memory, such as at least one magnetic disk storage device, flash memory device, or other volatile solid state storage device. Accordingly, memory 120 can also include a memory controller to provide access to memory 120 by processor 180 and input unit 130.
  • the input unit 130 can be configured to receive input numeric or character information and to generate keyboard, mouse, joystick, optical or trackball signal inputs related to user settings and function controls.
  • input unit 130 can include touch-sensitive surface 131 as well as other input devices 132.
  • Touch-sensitive surface 131 also referred to as a touch display or trackpad, can collect touch operations on or near the user (such as a user using a finger, stylus, etc., on any suitable object or accessory on touch-sensitive surface 131 or The operation near the touch-sensitive surface 131) and driving the corresponding connecting device according to a preset program.
  • the touch-sensitive surface 131 may include two parts of a touch detection device and a touch controller.
  • the touch detection device detects the touch orientation of the user, and detects a signal brought by the touch operation, and transmits the signal to the touch controller; the touch controller receives the touch information from the touch detection device, converts the touch information into contact coordinates, and sends the touch information
  • the processor 180 is provided and can receive commands from the processor 180 and execute them.
  • the touch-sensitive surface 131 can be implemented in various types such as resistive, capacitive, infrared, and surface acoustic waves.
  • the input unit 130 can also include other input devices 132.
  • other input devices 132 may include, but is not limited to, one or more of a physical keyboard, function keys (such as volume control buttons, switch buttons, etc.), trackballs, mice, joysticks, and the like.
  • Display unit 140 can be used to display information entered by the user or information provided to the user and various graphical user interfaces of mobile terminal 1200, which can be comprised of graphics, text, icons, video, and any combination thereof.
  • the display unit 140 may include a display panel 141.
  • the display panel 141 may be configured in the form of an LCD (Liquid Crystal Display), an OLED (Organic Light-Emitting Diode), or the like.
  • the touch-sensitive surface 131 may cover the display panel 141, and when the touch-sensitive surface 131 detects a touch operation thereon or nearby, it is transmitted to the processor 180 to determine the type of the touch event, and then the processor 180 according to the touch event The type provides a corresponding visual output on display panel 141.
  • touch-sensitive surface 131 and display panel 141 are implemented as two separate components to implement input and input functions, in some embodiments, touch-sensitive surface 131 can be integrated with display panel 141 for input. And output function.
  • Mobile terminal 1200 can also include at least one type of sensor 150, such as a light sensor, motion sensor, and other sensors.
  • the light sensor may include an ambient light sensor and a proximity sensor, wherein the ambient light sensor may adjust the brightness of the display panel 141 according to the brightness of the ambient light, and the proximity sensor may close the display panel 141 when the mobile terminal 1200 moves to the ear. And / or backlight.
  • the gravity acceleration sensor can detect the magnitude of acceleration in all directions (usually three axes). When it is stationary, it can detect the magnitude and direction of gravity.
  • the mobile terminal 1200 can also be configured with gyroscopes, barometers, hygrometers, thermometers, infrared sensors and other sensors, here No longer.
  • the audio circuit 160, the speaker 161, and the microphone 162 provide an audio interface between the user and the mobile terminal 1200.
  • the audio circuit 160 can transmit the converted electrical data of the received audio data to the speaker 161 for conversion to the sound signal output by the speaker 161; on the other hand, the microphone 162 converts the collected sound signal into an electrical signal, by the audio circuit 160. After receiving, it is converted into audio data, and then processed by the audio data output processor 180, sent to the mobile terminal 110 via the RF circuit 110, or the audio data is output to the memory 120 for further processing.
  • the audio circuit 160 may also include an earphone jack to provide communication of the peripheral earphones with the mobile terminal 1200.
  • WiFi is a short-range wireless transmission technology
  • the mobile terminal 1200 can help users to send and receive emails, browse web pages, and access streaming media through the WiFi module 170, which provides wireless broadband Internet access for users.
  • FIG. 12 shows the WiFi module 170, it can be understood that it is not It is a necessary configuration of the mobile terminal 1200, and it is entirely possible to save the scope as long as it does not change the essence of the invention.
  • the processor 180 is a control center of the mobile terminal 1200 that connects various portions of the entire handset with various interfaces and lines, by running or executing software programs and/or modules stored in the memory 120, and recalling data stored in the memory 120.
  • the various functions and processing data of the mobile terminal 1200 are executed to perform overall monitoring of the mobile phone.
  • the processor 180 may include one or more processing cores.
  • the processor 180 may integrate an application processor and a modem processor, where the application processor mainly processes an operating system, a user interface, an application, and the like.
  • the modem processor primarily handles wireless communications. It will be appreciated that the above described modem processor may also not be integrated into the processor 180.
  • the mobile terminal 1200 further includes a power source 190 (such as a battery) for supplying power to various components.
  • a power source 190 such as a battery
  • the power source can be logically connected to the processor 180 through the power management system to manage functions such as charging, discharging, and power management through the power management system.
  • Power supply 190 may also include any one or more of a DC or AC power source, a recharging system, a power failure detection circuit, a power converter or inverter, a power status indicator, and the like.
  • the mobile terminal 1200 may further include a camera, a Bluetooth module, and the like, and details are not described herein.
  • the display unit of the mobile terminal is a touch screen display
  • the mobile terminal further includes a memory, and one or more programs, wherein one or more programs are stored in the memory and configured to be one or one
  • the above processor executes one or more programs that include instructions for performing the following operations:
  • Obtaining a current input method keyboard state where the current input method keyboard state is one of a maximum state, an intermediate state, or a minimum state;
  • the memory of the terminal further includes an instruction for performing the following operations. :
  • the memory of the terminal further includes an instruction for performing the following operations:
  • the memory of the terminal further includes an instruction for performing the following operations:
  • the current input method keyboard state is the minimum state or the intermediate state; then zooming in the minimum state of the current input method keyboard to the intermediate state, or The current input method keyboard of the intermediate state is enlarged to the maximum state;
  • the adjustment ratio is less than 1, and the current input method keyboard state is the intermediate state or the maximum state; then the current input method keyboard of the intermediate state is reduced to the minimum state, or The current input method keyboard of the maximum state is reduced to the intermediate state.
  • the memory of the terminal further includes an instruction for performing the following operations:
  • the current input method keyboard state is the minimum state; converting the layout of the current input method keyboard to the full keyboard;
  • the adjustment ratio is less than 1, and the current input method keyboard state is the intermediate state; then converting the layout of the current input method keyboard to the nine-square grid.

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Abstract

本发明公开了一种输入法键盘的调整方法及其移动终端,属于移动终端领域。所述方法包括:记录用户两指滑动的轨迹,该轨迹包括两指滑动时产生的两个始触点和两个末触点;根据该轨迹,计算调整比例;获取当前输入法键盘状态,该输入法键盘状态为最大状态、中间状态或最小状态中的一种;根据该调整比例和该输入法键盘状态,相应调整当前输入法键盘的大小和/或布局。所述移动终端包括:记录模块、计算模块、获取模块和调整模块。本发明能够结合触摸屏的特点,利用手势识别来调整输入法键盘;并避免了用户误触发该操作;使得用户可以方便直观的按照实际需要全面调整输入法键盘,进一步增强了用户体验,提高了应用的口碑及产品的市场竟争力。

Description

一种输入法键盘的调整方法及其移动终端
本申请要求于 2012 年 3 月 13 日提交中国专利局、 申请号为 2012100647313、 发明名称为 "一种输入法键盘的调整方法及其移动终端" 的 中国专利申请的优先权, 其全部内容通过引用结合在本申请中。 技术领域
本发明涉及移动终端领域, 特别涉及一种输入法键盘的调整方法及其移动 终端。 背景技术
随着全触摸屏在电子领域的开发应用, 安装全触摸屏的移动终端越来越 多。 用户使用手指在全触摸屏移动终端的屏幕上触摸及滑动, 能够完成文字输 入等操作。
一般地, 用户是通过适用于全触摸屏移动终端的输入法进行文字输入。 在 适用全触摸屏移动终端的输入法中, 大部分输入法均是复制传统手机输入法的 界面及显示方式, 包括虚拟于触摸屏上的输入法键盘和输入窗口。 其中, 为满 足各用户的实际需求,将为用户提供不同的输入法键盘,使用户按需进行调整。 不同的输入法键盘其大小和布局各不相同,现有的调整输入法键盘的方法主要 从其布局方面来进行调整。 具体地, 方式一, 在显示输入法键盘的界面中设置 一个调整按钮。 只要用户用手指在触摸屏上点击该按钮, 将调整当前输入法键 盘的布局。 方式二, 在显示输入法键盘的界面中设置直线滑动的手势识别。 只 要用户用手指在触摸屏上直线滑动, 当前输入法键盘的布局将进行调整。
在实现本发明的过程中, 发明人发现现有技术至少存在以下问题: 现有的两种调整输入法键盘方式中, 第一种方式设置的转换按钮占用了显 示界面的一定空间, 影响界面美观和降低界面处理能力; 第二种方式中直线滑 动的手势容易被用户误操作, 影响用户体验; 并且, 现有的两种调整方式仅针 对输入法键盘的布局来调整, 不够全面, 不能满足用户实际需要。 发明内容
为了使用户按照自己的实际需要全面的调整输入法键盘, 且避免用户误操 作, 本发明实施例提供了一种输入法键盘的调整方法及其移动终端。 所述技术 方案如下:
一种输入法键盘的调整方法, 所述方法包括:
记录用户两指滑动的轨迹, 所述轨迹包括所述两指滑动时产生的两个始触 点和两个末触点;
根据所述轨迹, 计算调整比例;
获取当前输入法键盘状态, 所述当前输入法键盘状态为最大状态、 中间状 态或最小状态中的一种;
根据所述调整比例和所述当前输入法键盘状态,相应调整所述当前输入法 键盘的大小和 /或布局。
其中, 所述根据所述轨迹, 计算调整比例, 包括:
计算所述两个始触点之间的距离值、 以及所述两个末触点之间的距离值; 将所述两个末触点之间的距离值除以所述两个始触点之间的距离值,得到 所述调整比例。
其中, 在所述获取当前输入法键盘状态之前, 还包括:
根据所述调整比例, 判断是否获取所述当前输入法键盘状态;
若所述调整比例不为 1 , 则获取所述当前输入法键盘状态。
其中, 所述根据所述调整比例和所述当前输入法键盘状态, 相应调整所述 当前输入法键盘的大小, 包括:
根据所述调整比例和所述当前输入法键盘状态, 判断是放大还是缩小所述 当前输入法键盘;
若所述调整比例大于 1 , 且所述当前输入法键盘状态为所述最小状态或所 述中间状态; 则将所述最小状态的所述当前输入法键盘放大到所述中间状态, 或将所述中间状态的所述当前输入法键盘放大到所述最大状态;
若所述调整比例小于 1 , 且所述当前输入法键盘状态为所述中间状态或所 述最大状态; 则将所述中间状态的所述当前输入法键盘缩小到所述最小状态, 或将所述最大状态的所述当前输入法键盘缩小到所述中间状态。
其中, 所述所述调整比例和所述当前输入法键盘状态, 相应调整所述当前 输入法键盘的布局, 包括: 根据所述调整比例和所述当前输入法键盘状态, 判断是将所述当前输入法 键盘的布局转换为全键盘还是九宫格;
若所述调整比例大于 1 , 且所述当前输入法键盘状态为所述最小状态; 则 将所述当前输入法键盘的布局转换为所述全键盘;
若所述调整比例小于 1 , 且所述当前输入法键盘状态为为所述中间状态; 则将所述当前输入法键盘的布局转换为所述九宫格。
一种移动终端, 所述移动终端包括:
记录模块, 用于记录用户两指滑动的轨迹, 所述轨迹包括所述两指滑动时 产生的两个始触点和两个末触点;
计算模块, 用于根据所述轨迹, 计算调整比例;
获取模块, 用于获取当前输入法键盘状态, 所述当前输入法键盘状态为最 大状态、 中间状态或最小状态中的一种;
调整模块, 用于根据所述调整比例和所述当前输入法键盘状态, 相应调整 所述当前输入法键盘的大小和 /或布局。
其中, 所述计算模块包括:
第一计算单元, 用于计算所述两个始触点之间的距离值、 以及所述两个末 触点之间的距离值;
第二计算单元, 用于将所述两个末触点之间的距离值除以所述两个始触点 之间的距离值, 得到所述调整比例。
其中, 所述获取模块还用于,
根据所述调整比例, 判断是否获取所述当前输入法键盘状态;
若所述调整比例不为 1 , 则获取所述当前输入法键盘状态。
其中, 所述调整模块包括:
第一判断单元, 用于根据所述调整比例和所述当前输入法键盘状态, 判断 是放大还是缩小所述当前输入法键盘;
放大单元, 用于若所述调整比例大于 1 , 且所述当前输入法键盘状态为所 述最小状态或所述中间状态; 则将所述最小状态的所述当前输入法键盘放大到 所述中间状态, 或将所述中间状态的所述当前输入法键盘放大到所述最大状 态;
缩小单元, 用于若所述调整比例小于 1 , 且所述当前输入法键盘状态为所 述中间状态或所述最大状态; 则将所述中间状态的所述当前输入法键盘缩 d、到 所述最小状态, 或将所述最大状态的所述当前输入法键盘缩小到所述中间状 态。
其中, 所述调整模块包括:
第二判断单元, 用于根据所述调整比例和所述当前输入法键盘状态, 判断 是将所述当前输入法键盘的布局转换为全键盘还是九宫格;
全键盘单元, 用于若所述调整比例大于 1 , 且所述当前输入法键盘状态为 所述最小状态; 则将所述当前输入法键盘的布局转换为所述全键盘;
九宫格单元, 用于若所述调整比例小于 1 , 且所述当前输入法键盘状态为 所述中间状态; 则将所述当前输入法键盘的布局转换为所述九宫格。
本发明实施例提供的技术方案带来的有益效果是: 通过记录用户两指滑动 的轨迹, 所述轨迹包括所述两指滑动时产生的两个始触点和两个末触点; 能够 结合触摸屏的特点, 利用手势识别来调整输入法键盘; 且用户是两指滑动, 避 免了用户误触发该操作, 增强了用户体验; 根据所述轨迹, 计算调整比例; 并 获取当前输入法键盘状态; 所述当前输入法键盘状态为最大状态、 中间状态或 最小状态中的一种; 根据所述调整比例和所述当前输入法键盘状态, 相应调整 当前输入法键盘的大小和 /或布局; 由于在调整输入法键盘的大小和 /或布局时 考虑了当前输入法键盘的大小状态,使得用户可以方便直观的按照实际需要全 面调整输入法键盘的大小和 /布局,进一步增强了用户体验,提高了应用的口碑 及产品的市场竟争力。 附图说明
为了更清楚地说明本发明实施例中的技术方案, 下面将对实施例描述中所 需要使用的附图作筒单地介绍, 显而易见地, 下面描述中的附图仅仅是本发明 的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下, 还可以根据这些附图获得其他的附图。
图 1是本发明实施例 1中提供的一种输入法键盘的调整方法的流程图; 图 2是本发明实施例 2中提供的一种输入法键盘的调整方法的流程图; 图 3是本发明实施例 3中提供的一种输入法键盘的调整方法的流程图; 图 4是本发明实施例 3中提供的全键盘布局或实施例 4中提供的最大状态 的全键盘的示意图;
图 5是本发明实施例 3中提供的九宫格布局的示意图; 图 6是本发明实施例 4中提供的一种输入法键盘的调整方法的流程图; 图 7是本发明实施例 4中提供的中间状态的全键盘的示意图;
图 8是本发明实施例 4中提供的最小状态的九宫格的示意图;
图 9是本发明实施例 5中提供的一种移动终端的结构示意图;
图 10是本发明实施例 6中提供的一种移动终端的结构示意图;
图 11是本发明实施例 8中提供的一种移动终端的结构示意图;
图 12是本发明实施例提供的具有触敏表面的移动终端的结构示意图。 具体实施方式
为使本发明的目的、 技术方案和优点更加清楚, 下面将结合附图对本发明 实施方式作进一步地详细描述。
实施例 1
参见图 1 , 本发明实施例 1提供了一种输入法键盘的调整方法, 该方法包 括:
101 : 记录用户两指滑动的轨迹, 该轨迹包括两指滑动时产生的两个始触 点和两个末触点。
102: 根据该轨迹, 计算调整比例。
103: 获取当前输入法键盘状态, 该输入法键盘状态为最大状态、 中间状 态或最小状态中的一种。
104: 根据该调整比例和该输入法键盘状态, 相应调整当前输入法键盘的 大小和 /或布局。
本发明实施例提供的技术方案带来的有益效果是: 通过记录用户两指滑动 的轨迹, 该轨迹包括两指滑动时产生的两个始触点和两个末触点; 能够结合触 摸屏的特点, 利用手势识别来调整输入法键盘; 且用户是两指滑动, 避免了用 户误触发该操作, 增强了用户体验; 根据该轨迹, 计算调整比例; 并获取当前 输入法键盘状态; 该输入法键盘状态为最大状态、 中间状态或最小状态中的一 种; 根据该调整比例和该输入法键盘状态, 相应调整当前输入法键盘的大小和 /或布局; 由于在调整输入法键盘的大小和 /或布局时考虑了当前输入法键盘的 大小状态,使得用户可以方便直观的按照实际需要全面调整输入法键盘的大小 和 /布局, 进一步增强了用户体验, 提高了应用的口碑及产品的市场竟争力。 实施例 2
参见图 2, 本发明实施例 2以移动终端中平板电脑为例, 提供了一种输入 法键盘的调整方法, 该方法包括:
201 : 记录用户两指滑动的轨迹, 该轨迹包括两指滑动时产生的两个始触 点和两个末触点。
其中, 某平板电脑用户正使用触摸屏上显示的输入法键盘进行输入操作, 例如在浏览器地址栏输入网络地址、文本文档中输入文本或登录框中输入账号 密码等其他输入操作。 该用户打算将当前的输入法键盘, 例如横向铺满全屏的 全键盘, 调整为占用屏幕空间较小的输入法键盘。 于是, 该用户同时使用两根 手指, 相向地在触摸屏上任意位置, 紧贴屏幕滑动一段距离。
另外, 若该用户打算将当前的输入法键盘调整为占用屏幕空间较大的输入 法键盘, 则该用户应同时使用两根手指, 背向地在触摸屏上任意位置, 紧贴屏 幕滑动一段距离。
其中, 实时检测触摸屏上用户的触摸位置, 记录用户两指滑动的轨迹, 该 轨迹包括两指滑动时产生的两个始触点和两个末触点。 具体地, 当检测到用户 手指开始滑动时,记录用户两根手指分别在触摸屏上的始触点。在滑动过程中, 记录两根手指分别在触摸屏上的连续触点, 以判断用户是否结束滑动。 当检测 到结束滑动时, 记录用户两根手指分别在触摸屏上的末触点。 进一步地, 记录 的始触点和末触点以触点坐标的形式表示, 此为现有技术, 不再详述。
202: 根据该轨迹, 计算调整比例。
进一步地, 本步骤具体包括:
2021 : 计算两个始触点之间的距离值、 以及两个末触点之间的距离值。 具体地, 根据记录的两个始触点和两个末触点的触点坐标, 通过现有的数 学公式分别计算两个始触点之间的距离值、 以及两个末触点之间的距离值。
2022: 将两个末触点之间的距离值除以两个始触点之间的距离值, 得到调 整比例。
具体地, 分别计算出两个始触点之间的距离值、 以及两个末触点之间的距 离值后, 将两个末触点之间的距离值除以两个始触点之间的距离值, 计算出调 整比例。 进一步地, 调整比例为近似值, 可以保留小数点后 1位数字, 例如 0.8 或 1.2。
203: 根据调整比例, 判断是否获取当前输入法键盘状态。 若是, 则执行 204; 若否, 则退出本次调整流程, 执行 201。
具体地,若调整比例不为 1 ,则判断为获取当前输入法键盘状态,执行 204。 若调整比例为 1 , 则判断为不获取当前输入法键盘状态, 退出本次调整流程, 执行 201。
204: 获取当前输入法键盘状态。
其中, 当前输入法键盘状态为最大状态、 中间状态或最小状态中的一种。 其中, 为便于用户按照实际需要对输入法键盘的大小进行调整, 在本实施 例中, 提供了三种输入法键盘状态, 包括最大状态、 中间状态和最小状态。 具 体地,最大状态的输入法键盘占用的屏幕空间最大,所包括的按键的数量最多, 各按键的大小最大,例如,最大状态为横向铺满显示屏下方空间的输入法键盘; 中间状态为占用屏幕空间较小的输入法键盘, 所包括的按键数量较多, 各按键 的大小较大, 例如, 中间状态为占用显示屏下方三分之二空间的输入法键盘; 最小状态为占用屏幕空间最小的输入法键盘, 所包括的按键数量最少, 各按键 的大小最小, 例如, 最小状态为占用显示屏下方三分之一空间的输入法键盘。
205: 根据调整比例和当前输入法键盘状态, 判断是否调整当前输入法键 盘的大小。
其中, 若是, 则执行 206; 若否, 则退出本次调整的流程, 执行 201。 具体地, 结合调整比例和当前输入法键盘状态, 判断情况分为以下三种:
A、 若当前输入法键盘状态为最大状态, 且调整比例小于 1 , 则判断为调 整当前输入法键盘的大小, 执行 206; 若当前输入法键盘状态为最大状态, 且 调整比例大于 1 , 则判断为不调整当前输入法键盘的大小, 退出本次调整的流 程, 执行 201。
B、 若当前输入法键盘状态为中间状态, 则判断为调整当前输入法键盘的 大小, 执行 206。
C、 若当前输入法键盘状态为最小状态, 且调整比例大于 1 , 则判断为调 整当前输入法键盘的大小, 执行 206; 若当前输入法键盘状态为最小状态, 且 调整比例小于 1 , 则判断为不调整当前输入法键盘的大小, 退出本次调整的流 程, 执行 201。
206: 根据调整比例和当前输入法键盘状态, 相应调整当前输入法键盘的 大小。
进一步地, 本步骤具体包括: 2061 : 根据调整比例和当前输入法键盘状态, 判断是放大还是缩小当前输 入法键盘。
其中,若调整比例大于 1 ,且当前输入法键盘状态为最小状态或中间状态, 则判断为放大当前输入法键盘, 执行 2062; 若调整比例小于 1 , 且当前输入法 键盘状态为中间状态或最大状态, 则判断为缩小当前输入法键盘, 执行 2063。
2062: 放大当前输入法键盘。
其中, 将最小状态的当前输入法键盘放大到中间状态; 或将中间状态的当 前输入法键盘放大到最大状态。
2063: 缩小当前输入法键盘。
其中, 将中间状态的当前输入法键盘缩小到最小状态; 或将最大状态的当 前输入法键盘缩小到中间状态。
本发明实施例提供的技术方案带来的有益效果是: 通过记录用户两指滑动 的轨迹, 该轨迹包括两指滑动时产生的两个始触点和两个末触点; 能够结合触 摸屏的特点, 利用手势识别来调整输入法键盘; 且用户是两指滑动, 避免了用 户误触发该操作, 增强了用户体验; 根据该轨迹, 计算调整比例; 并获取当前 输入法键盘状态; 该输入法键盘状态为最大状态、 中间状态或最小状态中的一 种; 根据该调整比例和该输入法键盘状态, 相应调整当前输入法键盘的大小和 /或布局; 由于在调整输入法键盘的大小和 /或布局时考虑了当前输入法键盘的 大小状态,使得用户可以方便直观的按照实际需要全面调整输入法键盘的大小 和 /布局, 进一步增强了用户体验, 提高了应用的口碑及产品的市场竟争力。 实施例 3
参见图 3~图 5 , 本发明实施例 3以移动终端中平板电脑为例, 提供了一种 输入法键盘的调整方法, 该方法包括:
301-304, 同本发明实施例 2中 201~204, 在此不再详述。
305: 根据调整比例和当前输入法键盘状态, 判断是否调整当前输入法键 盘的布局。
其中, 若是, 则执行 306; 若否, 则退出本次调整的流程, 执行 301。 具体地, 结合调整比例和当前输入法键盘状态, 判断情况分为以下两种: A、 当调整比例小于 1时, 若当前输入法键盘状态为中间状态, 则判断为 调整当前输入法键盘的布局, 执行 306; 否则, 判断为不调整当前输入法键盘 的布局, 退出本次调整的流程, 执行 301。
B、 当调整比例大于 1时, 若当前输入法键盘状态为最小状态, 则判断为 调整当前输入法键盘的布局, 执行 306; 否则, 判断为不调整当前输入法键盘 的布局, 退出本次调整的流程, 执行 301。
306: 根据调整比例和当前输入法键盘状态, 相应调整当前输入法键盘的 布局。
其中, 输入法键盘常见的布局包括全键盘 ( QWERTY键盘 )和九宫格(数 字键盘)。 全键盘按键齐全, 按键数量多; 九宫格按键较少。 这两种键盘布局 都有广泛的用户群体, 并且, 现有输入法多提供对两种键盘布局的支持。 进一 步地, 本步骤具体包括:
3061 : 根据调整比例和当前输入法键盘状态, 判断是将当前输入法键盘的 布局转换为全键盘还是九宫格。
其中,若调整比例大于 1,且当前输入法键盘状态为最小状态,则执行 3062; 若调整比例小于 1 , 且当前输入法键盘状态为中间状态, 则执行 3063。
3062: 将当前输入法键盘的布局转换为全键盘。
具体地, 参见图 4, 将当前输入法键盘的布局转换为全键盘的布局。
3063: 将当前输入法键盘的布局转换为九宫格。
具体地, 参见图 5 , 将当前输入法键盘的布局转换为九宫格的布局。
本发明实施例提供的技术方案带来的有益效果是: 通过记录用户两指滑动 的轨迹, 该轨迹包括两指滑动时产生的两个始触点和两个末触点; 能够结合触 摸屏的特点, 利用手势识别来调整输入法键盘; 且用户是两指滑动, 避免了用 户误触发该操作, 增强了用户体验; 根据该轨迹, 计算调整比例; 并获取当前 输入法键盘状态; 该输入法键盘状态为最大状态、 中间状态或最小状态中的一 种; 根据该调整比例和该输入法键盘状态, 相应调整当前输入法键盘的大小和 /或布局; 由于在调整输入法键盘的大小和 /或布局时考虑了当前输入法键盘的 大小状态,使得用户可以方便直观的按照实际需要全面调整输入法键盘的大小 和 /布局, 进一步增强了用户体验, 提高了应用的口碑及产品的市场竟争力。 实施例 4
参见图 4及图 6~图 9, 本发明实施例 4以移动终端中平板电脑为例, 提供 了一种输入法键盘的调整方法, 该方法包括: 401-404, 同本发明实施例 3中 301~304, 在此不再详述。
405: 根据调整比例和当前输入法键盘状态, 判断是否调整当前输入法键 盘的大小和布局。
其中, 若是, 则执行 406; 若否, 则退出本次调整的流程, 执行 401。 具体地, 结合调整比例和当前输入法键盘状态, 判断情况分为以下三种:
A、 若当前输入法键盘状态为最大状态, 且调整比例小于 1 , 则判断为调 整当前输入法键盘的大小和布局, 执行 406; 若当前输入法键盘状态为最大状 态, 且调整比例大于 1 , 则判断为不调整当前输入法键盘的大小和布局, 退出 本次调整的流程, 执行 401。
B、 若当前输入法键盘状态为中间状态, 则判断为调整当前输入法键盘的 大小和布局, 执行 406。
C、 若当前输入法键盘状态为最小状态, 且调整比例大于 1 , 则判断为调 整当前输入法键盘的大小和布局, 执行 406; 若当前输入法键盘状态为最小状 态, 且调整比例小于 1 , 则判断为不调整当前输入法键盘的大小和布局, 退出 本次调整的流程, 执行 401。
406: 根据调整比例和当前输入法键盘状态, 相应调整当前输入法键盘的 大小和布局。
进一步地, 本步骤具体包括:
4061 : 根据调整比例和当前输入法键盘状态, 相应调整当前输入法键盘的 大小。
4061a: 根据调整比例和当前输入法键盘状态, 判断是放大还是缩小当前 输入法键盘。
其中,若调整比例大于 1 ,且当前输入法键盘状态为最小状态或中间状态, 则判断为放大当前输入法键盘, 执行 4061b; 若调整比例小于 1 , 且当前输入 法键盘状态为中间状态或最大状态, 则判断为缩小当前输入法键盘, 执行 4061c。
4061b: 放大当前输入法键盘。
其中, 将最小状态的当前输入法键盘放大到中间状态; 或将中间状态的当 前输入法键盘放大到最大状态。
4061c: 缩小当前输入法键盘。
其中, 将中间状态的当前输入法键盘缩小到最小状态; 或将最大状态的当 前输入法键盘缩小到中间状态。
4062: 根据调整比例和当前输入法键盘状态, 相应调整当前输入法键盘的 布局。
4062a: 根据调整比例和当前输入法键盘状态, 判断是将当前输入法键盘 的布局转换为全键盘还是九宫格。
其中, 若调整比例大于 1 , 且当前输入法键盘状态为最小状态, 则执行 4062b; 若调整比例小于 1 ,且当前输入法键盘状态为中间状态, 则执行 4062c。
其中,在本实施例中,提供了三种输入法键盘, 包括最大状态的全键盘(如 图 4所示)、 中间状态的全键盘(如图 7所示)和最小状态的九宫格(如图 8 所示)。 具体地, 最大状态的全键盘为展开所有按键的全键盘, 横向铺满屏幕; 中间状态的全键盘为展开部分按键 (例如, 除小键盘外的其他按键 )的全键盘, 且展开的各按键的大小比最大状态中展开的各按键小, 占用屏幕的面积较小; 最小状态的九宫格为九宫格键盘 (数字键盘 ),展开 9个按键和 /或一些辅助键, 占用屏幕的面积最小。 值得说明的是, 输入法键盘的种类并不限于上述列举的 三种, 例如, 还可包括显示为两个九宫格键盘(将九宫格键盘的数字从字母中 拆出来分开显示, 一共 18个按键), 在此不再详述。 另外, 为了满足用户的需 要,还可设置中间状态和最小状态的输入法键盘能够被移动到屏幕中的任意位 置。
4062b: 将当前输入法键盘的布局转换为全键盘。
其中,将当前输入法键盘的布局转换为全键盘的布局。这样,如图 7所示, 能够将当前输入法键盘调整为中间状态的全键盘输入法键盘。 一方面, 中间状 态的输入法键盘占用屏幕空间较小, 一定程度上节省了屏幕空间; 另一方面, 采用按键数量多的全键盘的布局, 便于用户进行键盘操作。
4062c: 将当前输入法键盘的布局转换为九宫格。
其中,将当前输入法键盘的布局转换为九宫格的布局。这样,如图 8所示, 能够将当前输入法键盘调整为最小状态的九宫格输入法键盘。 一方面, 最小状 态的输入法键盘占用屏幕空间小, 节省了屏幕空间; 另一方面, 采用按键数量 少的九宫格的布局, 便于用户进行键盘操作。
本发明实施例提供的技术方案带来的有益效果是: 通过记录用户两指滑动 的轨迹, 该轨迹包括两指滑动时产生的两个始触点和两个末触点; 能够结合触 摸屏的特点, 利用手势识别来调整输入法键盘; 且用户是两指滑动, 避免了用 户误触发该操作, 增强了用户体验; 根据该轨迹, 计算调整比例; 并获取当前 输入法键盘状态; 该输入法键盘状态为最大状态、 中间状态或最小状态中的一 种; 根据该调整比例和该输入法键盘状态, 相应调整当前输入法键盘的大小和 /或布局; 由于在调整输入法键盘的大小和 /或布局时考虑了当前输入法键盘的 大小状态,使得用户可以方便直观的按照实际需要全面调整输入法键盘的大小 和 /布局, 进一步增强了用户体验, 提高了应用的口碑及产品的市场竟争力。 实施例 5
参见图 9, 本发明实施例 5提供了一种移动终端, 该移动终端包括: 记录模块 501 , 用于记录用户两指滑动的轨迹, 该轨迹包括两指滑动时产 生的两个始触点和两个末触点。
计算模块 502, 用于根据该轨迹, 计算调整比例。
获取模块 503 , 用于获取当前输入法键盘状态, 该输入法键盘状态为最大 状态、 中间状态或最小状态中的一种。
调整模块 504, 用于根据该调整比例和该输入法键盘状态, 相应调整当前 输入法键盘的大小和 /或布局。
本发明实施例提供的技术方案带来的有益效果是: 通过记录用户两指滑动 的轨迹, 该轨迹包括两指滑动时产生的两个始触点和两个末触点; 能够结合触 摸屏的特点, 利用手势识别来调整输入法键盘; 且用户是两指滑动, 避免了用 户误触发该操作, 增强了用户体验; 根据该轨迹, 计算调整比例; 并获取当前 输入法键盘状态; 该输入法键盘状态为最大状态、 中间状态或最小状态中的一 种; 根据该调整比例和该输入法键盘状态, 相应调整当前输入法键盘的大小和 /或布局; 由于在调整输入法键盘的大小和 /或布局时考虑了当前输入法键盘的 大小状态,使得用户可以方便直观的按照实际需要全面调整输入法键盘的大小 和 /布局, 进一步增强了用户体验, 提高了应用的口碑及产品的市场竟争力。 实施例 6
参见图 10, 本发明实施例 6提供了一种移动终端, 该移动终端包括: 记录模块 601 , 用于记录用户两指滑动的轨迹, 该轨迹包括两指滑动时产 生的两个始触点和两个末触点。
计算模块 602, 用于根据该轨迹, 计算调整比例。 其中, 计算模块 602包括:
第一计算单元 6021 ,用于计算两个始触点之间的距离值、 以及两个末触点 之间的距离值。
第二计算单元 6022,用于将两个末触点之间的距离值除以两个始触点之间 的距离值, 得到调整比例。
获取模块 603 , 用于获取当前输入法键盘状态, 该输入法键盘状态为最大 状态、 中间状态或最小状态中的一种。
调整模块 604, 用于根据该调整比例和输入法键盘状态, 相应调整当前输 入法键盘的大小。
其中, 调整模块 604包括:
第一判断单元 6041 ,用于根据调整比例和当前输入法键盘状态,判断是放 大还是缩小当前输入法键盘。
放大单元 6042, 用于若调整比例大于 1 , 且当前输入法键盘状态为最小状 态或中间状态; 则将最小状态的当前输入法键盘放大到中间状态, 或将中间状 态的当前输入法键盘放大到最大状态。
缩小单元 6043 , 用于若调整比例小于 1 , 且当前输入法键盘状态为中间状 态或最大状态; 则将中间状态的当前输入法键盘缩小到最小状态, 或将最大状 态的当前输入法键盘缩小到中间状态。
其中, 获取模块 603还用于, 根据调整比例, 判断是否获取当前输入法键 盘状态; 若调整比例不为 1 , 则获取当前输入法键盘状态。
其中, 调整模块 604还包括:
判断调整单元 6044,用于根据调整比例和当前输入法键盘状态,判断是否 调整当前输入法键盘的大小。
相应地, 调整模块 604还用于, 若当前输入法键盘状态为最大状态, 且调 整比例小于 1 ; 或, 若当前输入法键盘状态为中间状态; 或, 若当前输入法键 盘状态为最小状态, 且调整比例大于 1 ; 则调整当前输入法键盘的大小。
本发明实施例提供的技术方案带来的有益效果是: 通过记录用户两指滑动 的轨迹, 该轨迹包括两指滑动时产生的两个始触点和两个末触点; 能够结合触 摸屏的特点, 利用手势识别来调整输入法键盘; 且用户是两指滑动, 避免了用 户误触发该操作, 增强了用户体验; 根据该轨迹, 计算调整比例; 并获取当前 输入法键盘状态; 该输入法键盘状态为最大状态、 中间状态或最小状态中的一 种; 根据该调整比例和该输入法键盘状态, 相应调整当前输入法键盘的大小和 /或布局; 由于在调整输入法键盘的大小和 /或布局时考虑了当前输入法键盘的 大小状态,使得用户可以方便直观的按照实际需要全面调整输入法键盘的大小 和 /布局, 进一步增强了用户体验, 提高了应用的口碑及产品的市场竟争力。 实施例 7
本发明实施例 7提供了一种移动终端, 该移动终端包括:
记录模块, 同本发明实施例 6中记录模块 601 , 在此不再详述。
计算模块, 同本发明实施例 6中计算模块 602, 在此不再详述。
获取模块, 同本发明实施例 6中获取模块 603, 在此不再详述。
调整模块, 用于根据该调整比例和该输入法键盘状态, 相应调整当前输入 法键盘的布局。
其中, 调整模块包括:
第二判断单元, 用于根据当前输入法键盘状态和调整比例, 判断是将当前 输入法键盘的布局转换为全键盘还是九宫格。
全键盘单元,用于若调整比例大于 1 ,且当前输入法键盘状态为最小状态; 则将当前输入法键盘的布局转换为全键盘。
九宫格单元,用于若调整比例小于 1 ,且当前输入法键盘状态为中间状态; 则将当前输入法键盘的布局转换为九宫格。
其中, 获取模块还用于, 根据调整比例, 判断是否获取当前输入法键盘状 态; 若调整比例不为 1 , 则获取当前输入法键盘状态。
其中, 调整模块还包括:
判断调整单元, 用于根据调整比例和当前输入法键盘状态, 判断是否调整 当前输入法键盘的布局。
相应地, 调整模块还用于, 当调整比例小于 1时, 若当前输入法键盘状态 为中间状态; 或, 当调整比例大于 1时, 若当前输入法键盘状态为最小状态; 则调整当前输入法键盘的布局。
本发明实施例提供的技术方案带来的有益效果是: 通过记录用户两指滑动 的轨迹, 该轨迹包括两指滑动时产生的两个始触点和两个末触点; 能够结合触 摸屏的特点, 利用手势识别来调整输入法键盘; 且用户是两指滑动, 避免了用 户误触发该操作, 增强了用户体验; 根据该轨迹, 计算调整比例; 并获取当前 输入法键盘状态; 该输入法键盘状态为最大状态、 中间状态或最小状态中的 种; 根据该调整比例和该输入法键盘状态, 相应调整当前输入法键盘的大小 /或布局; 由于在调整输入法键盘的大小和 /或布局时考虑了当前输入法键盘 大小状态,使得用户可以方便直观的按照实际需要全面调整输入法键盘的大 d 和 /布局, 进一步增强了用户体验, 提高了应用的口碑及产品的市场竟争力。 实施例 8
参见图 11 , 本发明实施例 8提供了一种移动终端, 该移动终端包括: 记录模块 801 , 同本发明实施例 7中记录模块, 在此不再详述。
计算模块 802, 同本发明实施例 7中计算模块, 在此不再详述。
获取模块 803 , 同本发明实施例 7中获取模块, 在此不再详述。
调整模块 804, 用于根据该调整比例和该输入法键盘状态, 相应调整当前 输入法键盘的大小和布局。
其中, 调整模块 804包括:
第一判断单元 8041 ,用于根据调整比例和当前输入法键盘状态,判断是放 大还是缩小当前输入法键盘。
放大子单元 8042, 用于若调整比例大于 1 , 且当前输入法键盘状态为最小 状态或中间状态; 则将最小状态的当前输入法键盘放大到中间状态, 或将中间 状态的当前输入法键盘放大到最大状态。
缩小单元 8043 , 用于若调整比例小于 1 , 且当前输入法键盘状态为中间状 态或最大状态; 则将中间状态的当前输入法键盘缩小到最小状态, 或将最大状 态的当前输入法键盘缩小到中间状态。
第二判断单元 8044,用于根据调整比例和当前输入法键盘状态,判断是将 当前输入法键盘的布局转换为全键盘还是九宫格。
全键盘单元 8045 , 用于若调整比例大于 1 , 且当前输入法键盘状态为最小 状态; 则将当前输入法键盘的布局转换为全键盘。
九宫格单元 8046, 用于若调整比例小于 1 , 且当前输入法键盘状态为中间 状态; 则将当前输入法键盘的布局转换为九宫格。
其中, 获取模块 803还用于, 根据调整比例, 判断是否获取当前输入法键 盘状态; 若调整比例不为 1 , 则获取当前输入法键盘状态。
其中, 调整模块 804还包括: 判断调整单元 8047,用于根据调整比例和当前输入法键盘状态,判断是否 调整当前输入法键盘的大小和布局。
相应地, 调整模块 804还用于, 若当前输入法键盘状态为最大状态, 且调 整比例小于 1 ; 或, 若当前输入法键盘状态为中间状态; 或, 若当前输入法键 盘状态为最小状态,且调整比例大于 1 ; 则调整当前输入法键盘的大小和布局。
本发明实施例提供的技术方案带来的有益效果是: 通过记录用户两指滑动 的轨迹, 该轨迹包括两指滑动时产生的两个始触点和两个末触点; 能够结合触 摸屏的特点, 利用手势识别来调整输入法键盘; 且用户是两指滑动, 避免了用 户误触发该操作, 增强了用户体验; 根据该轨迹, 计算调整比例; 并获取当前 输入法键盘状态; 该输入法键盘状态为最大状态、 中间状态或最小状态中的一 种; 根据该调整比例和该输入法键盘状态, 相应调整当前输入法键盘的大小和 /或布局; 由于在调整输入法键盘的大小和 /或布局时考虑了当前输入法键盘的 大小状态,使得用户可以方便直观的按照实际需要全面调整输入法键盘的大小 和 /布局, 进一步增强了用户体验, 提高了应用的口碑及产品的市场竟争力。 本领域普通技术人员可以理解实现上述实施例的全部或部分步骤可以通 过硬件来完成, 也可以通过程序来指令相关的硬件完成, 所述的程序可以存储 于一种计算机可读存储介质中, 上述提到的存储介质可以是只读存储器, 磁盘 或光盘等。
请参考图 12, 其示出了本发明实施例所涉及的具有触敏表面的结构示意 图, 该移动终端可以用于实施上述实施例中提供的输入法键盘的调整方法。 具 体来讲:
移动终端 1200可以包括 RF ( Radio Frequency, 射频 ) 电路 110、 包括有 一个或一个以上计算机可读存储介质的存储器 120、 输入单元 130、 显示单元 140、 传感器 150、 音频电路 160、 WiFi(wireless fidelity, 无线保真)模块 170、 包括有一个或者一个以上处理核心的处理器 180、 以及电源 190等部件。 本领 域技术人员可以理解, 图 12 中示出的移动终端结构并不构成对移动终端的限 定, 可以包括比图示更多或更少的部件, 或者组合某些部件, 或者不同的部件 布置。 其中:
RF电路 110可用于收发信息或通话过程中, 信号的接收和发送, 特别地, 将基站的下行信息接收后, 交由一个或者一个以上处理器 180处理; 另外, 将 涉及上行的数据发送给基站。 通常, RF电路 110包括但不限于天线、 至少一 个放大器、 调谐器、 一个或多个振荡器、 用户身份模块(SIM )卡、 收发信机、 耦合器、 LNA ( Low Noise Amplifier, 低噪声放大器)、 双工器等。 此外, RF 电路 110还可以通过无线通信与网络和其他设备通信。 所述无线通信可以使用 任一通信标准或协议, 包括但不限于 GSM(Global System of Mobile communication, 全球移动通讯系统)、 GPRS (General Packet Radio Service , 通 用分组无线服务)、 CDMA(Code Division Multiple Access , 码分多址)、 WCDMA(Wideband Code Division Multiple Access, 宽带码分多址)、 LTE(Long Term Evolution,长期演进)、 电子邮件、 SMS (Short Messaging Service, 短消息服 务)等。
存储器 120可用于存储软件程序以及模块, 处理器 180通过运行存储在存 储器 120的软件程序以及模块, 从而执行各种功能应用以及数据处理。 存储器 120可主要包括存储程序区和存储数据区,其中,存储程序区可存储操作系统、 至少一个功能所需的应用程序(比如声音播放功能、 图像播放功能等)等; 存 储数据区可存储根据移动终端 1200的使用所创建的数据(比如音频数据、 电 话本等)等。 此外, 存储器 120可以包括高速随机存取存储器, 还可以包括非 易失性存储器, 例如至少一个磁盘存储器件、 闪存器件、 或其他易失性固态存 储器件。 相应地, 存储器 120还可以包括存储器控制器, 以提供处理器 180和 输入单元 130对存储器 120的访问。
输入单元 130可用于接收输入的数字或字符信息, 以及产生与用户设置以 及功能控制有关的键盘、 鼠标、 操作杆、 光学或者轨迹球信号输入。 具体地, 输入单元 130可包括触敏表面 131以及其他输入设备 132。 触敏表面 131 , 也 称为触摸显示屏或者触控板, 可收集用户在其上或附近的触摸操作(比如用户 使用手指、 触笔等任何适合的物体或附件在触敏表面 131上或在触敏表面 131 附近的操作), 并根据预先设定的程式驱动相应的连接装置。 可选的, 触敏表 面 131可包括触摸检测装置和触摸控制器两个部分。 其中, 触摸检测装置检测 用户的触摸方位, 并检测触摸操作带来的信号, 将信号传送给触摸控制器; 触 摸控制器从触摸检测装置上接收触摸信息, 并将它转换成触点坐标, 再送给处 理器 180, 并能接收处理器 180发来的命令并加以执行。 此外, 可以采用电阻 式、 电容式、 红外线以及表面声波等多种类型实现触敏表面 131。 除了触敏表 面 131 , 输入单元 130还可以包括其他输入设备 132。 具体地, 其他输入设备 132可以包括但不限于物理键盘、 功能键(比如音量控制按键、 开关按键等)、 轨迹球、 鼠标、 操作杆等中的一种或多种。
显示单元 140可用于显示由用户输入的信息或提供给用户的信息以及移动 终端 1200的各种图形用户接口, 这些图形用户接口可以由图形、 文本、 图标、 视频和其任意组合来构成。 显示单元 140可包括显示面板 141 , 可选的, 可以 采用 LCD(Liquid Crystal Display, 液晶显示器)、 OLED(Organic Light-Emitting Diode,有机发光二极管)等形式来配置显示面板 141。 进一步的, 触敏表面 131 可覆盖显示面板 141 , 当触敏表面 131检测到在其上或附近的触摸操作后, 传 送给处理器 180以确定触摸事件的类型, 随后处理器 180根据触摸事件的类型 在显示面板 141上提供相应的视觉输出。 虽然在图 8中, 触敏表面 131与显示 面板 141是作为两个独立的部件来实现输入和输入功能,但是在某些实施例中, 可以将触敏表面 131与显示面板 141集成而实现输入和输出功能。
移动终端 1200还可包括至少一种传感器 150, 比如光传感器、运动传感器 以及其他传感器。具体地,光传感器可包括环境光传感器及接近传感器,其中, 环境光传感器可根据环境光线的明暗来调节显示面板 141的亮度,接近传感器 可在移动终端 1200移动到耳边时, 关闭显示面板 141和 /或背光。 作为运动传 感器的一种, 重力加速度传感器可检测各个方向上(一般为三轴)加速度的大 小, 静止时可检测出重力的大小及方向, 可用于识别手机姿态的应用 (比如横 竖屏切换、 相关游戏、 磁力计姿态校准)、 振动识别相关功能(比如计步器、 敲击)等; 至于移动终端 1200还可配置的陀螺仪、 气压计、 湿度计、 温度计、 红外线传感器等其他传感器, 在此不再赘述。
音频电路 160、 扬声器 161 , 传声器 162可提供用户与移动终端 1200之间 的音频接口。 音频电路 160可将接收到的音频数据转换后的电信号, 传输到扬 声器 161 , 由扬声器 161转换为声音信号输出; 另一方面, 传声器 162将收集 的声音信号转换为电信号, 由音频电路 160接收后转换为音频数据, 再将音频 数据输出处理器 180处理后, 经 RF电路 110以发送给比如另一移动终端, 或 者将音频数据输出至存储器 120以便进一步处理。 音频电路 160还可能包括耳 塞插孔, 以提供外设耳机与移动终端 1200的通信。
WiFi属于短距离无线传输技术,移动终端 1200通过 WiFi模块 170可以帮 助用户收发电子邮件、 浏览网页和访问流式媒体等, 它为用户提供了无线的宽 带互联网访问。 虽然图 12示出了 WiFi模块 170, 但是可以理解的是, 其并不 属于移动终端 1200的必须构成, 完全可以根据需要在不改变发明的本质的范 围内而省格。
处理器 180是移动终端 1200的控制中心, 利用各种接口和线路连接整个 手机的各个部分, 通过运行或执行存储在存储器 120内的软件程序和 /或模块, 以及调用存储在存储器 120内的数据, 执行移动终端 1200的各种功能和处理 数据, 从而对手机进行整体监控。 可选的, 处理器 180可包括一个或多个处理 核心; 优选的, 处理器 180可集成应用处理器和调制解调处理器, 其中, 应用 处理器主要处理操作系统、 用户界面和应用程序等, 调制解调处理器主要处理 无线通信。可以理解的是,上述调制解调处理器也可以不集成到处理器 180中。
移动终端 1200还包括给各个部件供电的电源 190 (比如电池), 优选的, 电源可以通过电源管理系统与处理器 180逻辑相连,从而通过电源管理系统实 现管理充电、 放电、 以及功耗管理等功能。 电源 190还可以包括一个或一个以 上的直流或交流电源、 再充电系统、 电源故障检测电路、 电源转换器或者逆变 器、 电源状态指示器等任意组件。
尽管未示出, 移动终端 1200还可以包括摄像头、 蓝牙模块等, 在此不再 赘述。 具体在本实施例中, 移动终端的显示单元是触摸屏显示器, 移动终端还 包括有存储器, 以及一个或者一个以上的程序, 其中一个或者一个以上程序存 储于存储器中,且经配置以由一个或者一个以上处理器执行述一个或者一个以 上程序包含用于进行以下操作的指令:
记录用户两指滑动的轨迹, 所述轨迹包括所述两指滑动时产生的两个始触 点和两个末触点;
根据所述轨迹, 计算调整比例;
获取当前输入法键盘状态, 所述当前输入法键盘状态为最大状态、 中间状 态或最小状态中的一种;
根据所述调整比例和所述当前输入法键盘状态,相应调整所述当前输入法 键盘的大小和 /或布局。
殳上述为第一种可能的实施方式, 则在第一种可能的实施方式作为基础 而提供的第二种可能的实施方式中, 所述终端的存储器中, 还包含用于执行以 下操作的指令:
计算所述两个始触点之间的距离值、 以及所述两个末触点之间的距离值; 将所述两个末触点之间的距离值除以所述两个始触点之间的距离值,得到 所述调整比例。
在第一种可能的实施方式作为基础而提供的第三种可能的实施方式中, 所 述终端的存储器中, 还包含用于执行以下操作的指令:
根据所述调整比例, 判断是否获取所述当前输入法键盘状态;
若所述调整比例不为 1 , 则获取所述当前输入法键盘状态。
在第一种可能的实施方式作为基础而提供的第四种可能的实施方式中, 所 述终端的存储器中, 还包含用于执行以下操作的指令:
根据所述调整比例和所述当前输入法键盘状态, 判断是放大还是缩小所述 当前输入法键盘;
若所述调整比例大于 1 , 且所述当前输入法键盘状态为所述最小状态或所 述中间状态; 则将所述最小状态的所述当前输入法键盘放大到所述中间状态, 或将所述中间状态的所述当前输入法键盘放大到所述最大状态;
若所述调整比例小于 1 , 且所述当前输入法键盘状态为所述中间状态或所 述最大状态; 则将所述中间状态的所述当前输入法键盘缩小到所述最小状态, 或将所述最大状态的所述当前输入法键盘缩小到所述中间状态。
在第一种可能的实施方式作为基础而提供的第五种可能的实施方式中, 所 述终端的存储器中, 还包含用于执行以下操作的指令:
根据所述调整比例和所述当前输入法键盘状态, 判断是将所述当前输入法 键盘的布局转换为全键盘还是九宫格;
若所述调整比例大于 1 , 且所述当前输入法键盘状态为所述最小状态; 则 将所述当前输入法键盘的布局转换为所述全键盘;
若所述调整比例小于 1 , 且所述当前输入法键盘状态为为所述中间状态; 则将所述当前输入法键盘的布局转换为所述九宫格。
以上所述仅为本发明的较佳实施例, 并不用以限制本发明, 凡在本发明的 精神和原则之内, 所作的任何修改、 等同替换、 改进等, 均应包含在本发明的 保护范围之内。

Claims

权 利 要 求 书
1、 一种输入法键盘的调整方法, 其特征在于, 所述方法包括:
记录用户两指滑动的轨迹, 所述轨迹包括所述两指滑动时产生的两个始触 点和两个末触点;
根据所述轨迹, 计算调整比例;
获取当前输入法键盘状态, 所述当前输入法键盘状态为最大状态、 中间状 态或最小状态中的一种;
根据所述调整比例和所述当前输入法键盘状态, 相应调整所述当前输入法 键盘的大小和 /或布局。
2、 如权利要求 1所述的方法, 其特征在于, 所述根据所述轨迹, 计算调整 比例, 包括:
计算所述两个始触点之间的距离值、 以及所述两个末触点之间的距离值; 将所述两个末触点之间的距离值除以所述两个始触点之间的距离值, 得到 所述调整比例。
3、 如权利要求 1所述的方法, 其特征在于, 在所述获取当前输入法键盘状 态之前, 还包括:
根据所述调整比例, 判断是否获取所述当前输入法键盘状态;
若所述调整比例不为 1 , 则获取所述当前输入法键盘状态。
4、 如权利要求 1所述的方法, 其特征在于, 所述根据所述调整比例和所述 当前输入法键盘状态, 相应调整所述当前输入法键盘的大小, 包括:
根据所述调整比例和所述当前输入法键盘状态, 判断是放大还是缩小所述 当前输入法键盘;
若所述调整比例大于 1 ,且所述当前输入法键盘状态为所述最小状态或所述 中间状态; 则将所述最小状态的所述当前输入法键盘放大到所述中间状态, 或 将所述中间状态的所述当前输入法键盘放大到所述最大状态;
若所述调整比例小于 1 ,且所述当前输入法键盘状态为所述中间状态或所述 最大状态; 则将所述中间状态的所述当前输入法键盘缩小到所述最小状态, 或 将所述最大状态的所述当前输入法键盘缩小到所述中间状态。
5、 如权利要求 1所述的方法, 其特征在于, 所述所述调整比例和所述当前 输入法键盘状态, 相应调整所述当前输入法键盘的布局, 包括: 根据所述调整比例和所述当前输入法键盘状态, 判断是将所述当前输入法 键盘的布局转换为全键盘还是九宫格;
若所述调整比例大于 1 , 且所述当前输入法键盘状态为所述最小状态; 则将 所述当前输入法键盘的布局转换为所述全键盘;
若所述调整比例小于 1 , 且所述当前输入法键盘状态为为所述中间状态; 则 将所述当前输入法键盘的布局转换为所述九宫格。
6、 一种移动终端, 其特征在于, 所述移动终端包括:
记录模块, 用于记录用户两指滑动的轨迹, 所述轨迹包括所述两指滑动时 产生的两个始触点和两个末触点;
计算模块, 用于根据所述轨迹, 计算调整比例;
获取模块, 用于获取当前输入法键盘状态, 所述当前输入法键盘状态为最 大状态、 中间状态或最小状态中的一种;
调整模块, 用于根据所述调整比例和所述当前输入法键盘状态, 相应调整 所述当前输入法键盘的大小和 /或布局。
7、 如权利要求 6所述的移动终端, 其特征在于, 所述计算模块包括: 第一计算单元, 用于计算所述两个始触点之间的距离值、 以及所述两个末 触点之间的距离值;
第二计算单元, 用于将所述两个末触点之间的距离值除以所述两个始触点 之间的距离值, 得到所述调整比例。
8、 如权利要求 6所述的移动终端, 其特征在于, 所述获取模块还用于, 根据所述调整比例, 判断是否获取所述当前输入法键盘状态;
若所述调整比例不为 1 , 则获取所述当前输入法键盘状态。
9、 如权利要求 6所述的移动终端, 其特征在于, 所述调整模块包括: 第一判断单元, 用于根据所述调整比例和所述当前输入法键盘状态, 判断 是放大还是缩小所述当前输入法键盘;
放大单元, 用于若所述调整比例大于 1 , 且所述当前输入法键盘状态为所述 最小状态或所述中间状态; 则将所述最小状态的所述当前输入法键盘放大到所 述中间状态, 或将所述中间状态的所述当前输入法键盘放大到所述最大状态; 缩小单元, 用于若所述调整比例小于 1 , 且所述当前输入法键盘状态为所述 中间状态或所述最大状态; 则将所述中间状态的所述当前输入法键盘缩小到所 述最小状态, 或将所述最大状态的所述当前输入法键盘缩小到所述中间状态。
10、 如权利要求 6所述的移动终端, 其特征在于, 所述调整模块包括: 第二判断单元, 用于根据所述调整比例和所述当前输入法键盘状态, 判断 是将所述当前输入法键盘的布局转换为全键盘还是九宫格;
全键盘单元, 用于若所述调整比例大于 1 , 且所述当前输入法键盘状态为所 述最小状态; 则将所述当前输入法键盘的布局转换为所述全键盘;
九宫格单元, 用于若所述调整比例小于 1 , 且所述当前输入法键盘状态为所 述中间状态; 则将所述当前输入法键盘的布局转换为所述九宫格。
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