WO2017121353A1 - 控件显示方法及装置 - Google Patents

控件显示方法及装置 Download PDF

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Publication number
WO2017121353A1
WO2017121353A1 PCT/CN2017/070963 CN2017070963W WO2017121353A1 WO 2017121353 A1 WO2017121353 A1 WO 2017121353A1 CN 2017070963 W CN2017070963 W CN 2017070963W WO 2017121353 A1 WO2017121353 A1 WO 2017121353A1
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WO
WIPO (PCT)
Prior art keywords
slider
chute
adjustment control
changing
color
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Application number
PCT/CN2017/070963
Other languages
English (en)
French (fr)
Inventor
刘冬冬
杨起超
肖春桃
万逸伦
梁斯雅
余劲达
黄永寿
Original Assignee
腾讯科技(深圳)有限公司
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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 MYPI2017704698A priority Critical patent/MY188901A/en
Publication of WO2017121353A1 publication Critical patent/WO2017121353A1/zh
Priority to US15/995,641 priority patent/US10891101B2/en

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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/048Interaction techniques based on graphical user interfaces [GUI]
    • G06F3/0484Interaction techniques based on graphical user interfaces [GUI] for the control of specific functions or operations, e.g. selecting or manipulating an object, an image or a displayed text element, setting a parameter value or selecting a range
    • G06F3/04847Interaction techniques to control parameter settings, e.g. interaction with sliders or dials
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/048Interaction techniques based on graphical user interfaces [GUI]
    • G06F3/0487Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser
    • G06F3/0488Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser using a touch-screen or digitiser, e.g. input of commands through traced gestures
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/16Sound input; Sound output
    • G06F3/165Management of the audio stream, e.g. setting of volume, audio stream path
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06TIMAGE DATA PROCESSING OR GENERATION, IN GENERAL
    • G06T11/002D [Two Dimensional] image generation
    • G06T11/001Texturing; Colouring; Generation of texture or colour
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06TIMAGE DATA PROCESSING OR GENERATION, IN GENERAL
    • G06T11/002D [Two Dimensional] image generation
    • G06T11/60Editing figures and text; Combining figures or text
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06TIMAGE DATA PROCESSING OR GENERATION, IN GENERAL
    • G06T2200/00Indexing scheme for image data processing or generation, in general
    • G06T2200/24Indexing scheme for image data processing or generation, in general involving graphical user interfaces [GUIs]

Definitions

  • the present application relates to the field of multimedia playback, and in particular, to a control display method and apparatus.
  • the audio equalizer is usually provided with a plurality of adjustment controls corresponding to different audio segments, and each adjustment control includes a chute and a slider, and the user can adjust the corresponding audio segment by adjusting the position of the slider on the chute.
  • the amount of signal amplification is usually provided with a plurality of adjustment controls corresponding to different audio segments, and each adjustment control includes a chute and a slider, and the user can adjust the corresponding audio segment by adjusting the position of the slider on the chute. The amount of signal amplification.
  • Some examples of the present application provide a control display method, the method comprising: displaying at least one adjustment control in an equalizer interface; the adjustment control includes a chute and a slider, and the adjustment control is used according to the slider on the chute The position of the slider adjusts the signal amplification amount of the corresponding audio segment; when receiving the sliding signal of the slider, the slider position of the slider on the chute is obtained; and the display form of the adjustment control is changed according to the position of the slider.
  • Some examples of the present application provide a control display device, the device comprising: one or more memories, one or more processors; wherein the one or one The upper memory stores one or more instruction modules configured to be executed by the one or more processors; wherein the one or more instruction modules include: a display module for displaying at least one adjustment in the equalizer interface The control; the adjustment control includes a chute and a slider, and the adjustment control is used to adjust the signal amplification amount of the corresponding audio segment according to the slider position of the slider on the chute; and the acquisition module is configured to receive the sliding signal of the slider when receiving Obtaining a slider position of the slider on the chute; the first changing module is configured to change the display form of the adjustment control according to the position of the slider.
  • Some examples of the present application provide a non-transitory computer readable storage medium, the storage medium comprising: computer readable instructions stored, the one or more processors being operable to: display in an equalizer interface At least one adjustment control; the adjustment control includes a sliding slot and a slider, and the adjustment control is configured to adjust a signal amplification amount of the corresponding audio segment according to the slider position of the slider on the sliding slot; when receiving Obtaining a position of the slider on the sliding slot when the sliding signal of the slider is; changing a display form of the adjusting control according to the position of the slider.
  • FIG. 1 is a flow chart of a control display method provided by an example of the present application.
  • FIG. 2A is a flowchart of a method for displaying a control provided by another example of the present application.
  • FIG. 2B is a schematic diagram of an interface involved in the example shown in FIG. 2A;
  • FIG. 2C is a schematic view showing the implementation of the example shown in FIG. 2A;
  • 2D is a flowchart of a display method of a control provided by still another example of the present application.
  • FIG. 2E is a schematic view showing the implementation of the example shown in FIG. 2D;
  • 2F is a flowchart of a sound mode selection process involved in a control display method provided by an example of the present application
  • FIG. 2G is a schematic view showing the implementation of the example shown in FIG. 2F;
  • FIG. 3 is a block diagram showing the structure of a control display device provided by an example of the present application.
  • FIG. 4 is a block diagram showing the structure of a control display device provided by another example of the present application.
  • FIG. 5 is a schematic structural diagram of an electronic device provided by an example of the present application.
  • the audio equalizer When the user adjusts the signal amplification amount of each audio segment by adjusting the control, the audio equalizer only displays the change of the signal amplification amount in the form of numbers, the display effect is not intuitive, and the sensitivity of the user to the number is small, which is not conducive to User adjustment.
  • the control display method provided by each instance of the present application is applied to a media player application (hereinafter referred to as a media player), such as QQ music, and the player program can be installed in an electronic device, and the electronic device can be a smart phone or a tablet.
  • a media player such as QQ music
  • the player program can be installed in an electronic device, and the electronic device can be a smart phone or a tablet.
  • Computer MP3 player (Moving Picture Experts Group Audio Layer III, Motion Picture Experts Group Audio Layer IV), MP4 (Moving Picture Experts Group Audio Layer IV) player and laptop portable Computer (camera, camera) and more.
  • the media player will have an audio equalizer, and at least one adjustment control will be displayed on the audio equalizer interface.
  • These adjustment controls are used to adjust the amount of signal amplification of each audio segment.
  • FIG. 1 shows an example of the present application.
  • a flowchart of a method for displaying a control the method comprising the steps of:
  • Step 101 Display at least one adjustment control in the equalizer interface; the adjustment control includes a chute and a slider, and the adjustment control is used to adjust the signal amplification amount of the corresponding audio segment according to the slider position of the slider on the chute.
  • Step 103 When receiving the sliding signal of the slider, obtain the position of the slider on the sliding slot of the slider.
  • Step 105 Change the display form of the adjustment control according to the position of the slider.
  • the manner of changing the display form of the adjustment control may include:
  • the control display method provided by the present example obtains the position of the slider on the chute when the slider slides in the adjustment control, and further changes the display form of the adjustment control according to the position of the slider;
  • the audio equalizer only displays the change of the signal amplification amount in the form of digital, the display effect is not intuitive, and the sensitivity of the user to the number is small, The user's adjustment problem is achieved; the display form of the adjustment control is changed in real time according to the position of the slider on the chute, so that the user can more intuitively understand the change of the signal amplification amount, thereby improving the adjustment efficiency of the user.
  • the media player can change the display color of the adjustment control according to the position of the slider on the chute, thereby allowing the user to intuitively feel the change of the signal amplification amount during the adjustment process.
  • the media player can change the display color of the adjustment control according to the position of the slider on the chute, thereby allowing the user to intuitively feel the change of the signal amplification amount during the adjustment process.
  • each of the examples involved in this example The different shades of the background represent different colors.
  • FIG. 2A is a flowchart of a control display method provided by another example of the present application, and the method includes:
  • Step 201 Display at least one adjustment control in the equalizer interface; the adjustment control includes a chute and a slider, and the adjustment control is used to adjust the signal amplification amount of the corresponding audio segment according to the slider position of the slider on the chute.
  • the equalizer interface includes at least one adjustment control, and different adjustment controls are used to adjust the signal amplification amount of different audio segments.
  • Each adjustment control includes a chute and a slider that can slide over the chute. When the slider is at the top of the chute, the signal amplification amount reaches the maximum value. When the slider is at the bottom of the chute, the signal amplification amount reaches the minimum value, that is, the adjustment control adjusts the signal according to the position of the slider on the chute. Make adjustments.
  • the equalizer interface may include three adjustment controls, three adjustment controls for adjusting the bass (20 Hz to 200 Hz audio segments, affecting the brightness and saturation of the sound), and the middle (200 Hz to 4kHz, affecting sound thickness and loudness) and treble (4kHz to 20kHz, affecting the penetrating power of sound). It should be noted that, in other possible implementation manners, the equalizer interface may further include five adjustment components for adjusting the signal amplification amounts of the bass, mid-bass, mid-range, mid-high-pitched, and treble, respectively. The number of adjustment controls is not limited.
  • the lengths of the chutes in the different adjustment controls are the same, but the range of signal amplification indicated by the different chutes may be the same or different, and the examples in the present application do not limit this.
  • the equalizer interface 21 includes a first adjustment control 22, a second adjustment control 23, and a third adjustment control 24, each of which includes a slider 25 and a chute 26, and the length of each chute 26 the same.
  • Step 202 When the sliding signal of the slider is received, the sliding of the slider on the chute is obtained. Block location.
  • the media player After entering the equalizer interface, the media player monitors whether the slider in the adjustment control slides in real time, and when receiving the sliding signal of the slider, acquires the position of the slider on the corresponding sliding slot.
  • the media player acquires the position of the slider on which the slider 25 is located on the chute 26.
  • Step 203 calculating a percentage of the first portion of the chute to the chute according to the position of the slider, wherein the first portion is located between the slider and the bottom of the chute.
  • the chute is divided into a first portion and a second portion, wherein the first portion is located between the slider and the bottom of the chute, and the second portion is located between the slider and the top of the chute.
  • the media player can calculate the total length of the chute (in pixels) according to the ordinate of the top of the chute and the ordinate of the bottom, according to the ordinate of the center of the slider and the vertical of the bottom of the chute.
  • the coordinates calculate the length of the first portion of the chute, and the percentage of the first portion of the chute to the chute is calculated according to the length of the first portion of the chute/the total length of the chute.
  • Step 204 Calculate a corresponding color value in the color change domain according to the percentage; the color change domain corresponds to the chute.
  • the chute in the adjustment control corresponds to a color change field, and the color value of the color in the color change field is continuous, that is, when the slider slides on the chute, the color of the adjustment control changes gradually.
  • the color gradation index of the color change domain may be 65536 colors (ie, 65536 colors included in the color change domain), and the color values corresponding to the respective colors are continuous.
  • the media player After calculating the percentage of the first portion of the chute to the chute, the media player calculates the corresponding color value in the color change domain according to the percentage. For example, the corresponding color value in the color change domain is calculated according to the percentage value as #d58418 ( Orange).
  • the media player may also query the corresponding color value in the color change field according to the percentage range to which the calculated percentage belongs. (When the slider slides over the chute, the color of the adjustment control changes in a jump).
  • the correspondence between the percentage range and the color value in the color change domain can be as shown in Table 1.
  • Step 205 changing the color of all or part of the slider, the first portion of the chute, and the second portion of the chute according to the color value.
  • the media player can change the color of all or part of the slider, the first part of the chute and the second part of the chute, for example, as shown in FIG. 2C, when the third adjustment control When the slider 25 in 24 slides, the media player changes the color of the first portion of the slider 25 and the chute 26 based on the calculated color value, while the color of the second portion of the chute 26 remains unchanged.
  • this step may include the following sub-steps.
  • Step 205A generating, according to the color value, corresponding to the adjustment control after changing the color Image frame data.
  • the image frame data further includes related parameters for indicating a color change area. For example, when only the color of the first portion of the slider and the chute needs to be changed, the image frame data further includes an indication slider. And the parameters of the first part of the chute.
  • step 205B the system API is invoked to render the image frame data, and the rendered image frame is displayed in the equalizer interface.
  • the music player After generating the corresponding image frame data, the music player invokes the API interface provided by the system (for example, the onDraw interface in the Android system), renders the image frame data, and displays the adjustment after changing the color in the equalizer interface.
  • the API interface provided by the system (for example, the onDraw interface in the Android system), renders the image frame data, and displays the adjustment after changing the color in the equalizer interface.
  • the image frame of the control so that the user can more intuitively understand the change of the signal amplification value.
  • each adjustment control when the slider slides from the bottom of the chute to the top of the chute, the adjustment control undergoes a process of changing from green to orange, then from orange to red, and the color changes continuously.
  • each adjustment control presents its own color according to the position of the slider, thereby forming a color combination (such as orange green red), compared to the memory of the boring value, It is easier for users to remember the corresponding color combinations, which greatly improves the user's adjustment efficiency.
  • the control display method provided by the present example obtains the position of the slider on the chute when the slider slides in the adjustment control, and further changes the display form of the adjustment control according to the position of the slider;
  • the audio equalizer only displays the change of the signal amplification amount in the form of digital, the display effect is not intuitive, and the sensitivity of the user to the number is small, The user's adjustment problem is achieved; the display form of the adjustment control is changed in real time according to the position of the slider on the chute, so that the user can more intuitively understand the change of the signal amplification amount, thereby improving the adjustment efficiency of the user.
  • the media player calculates the corresponding color based on the position of the slider where the slider is located.
  • the value is changed according to the color value, so that the user can perceive the change of the signal amplification value more intuitively according to the color change of the adjustment control, which is beneficial to the user's adjustment.
  • the media player can change the display brightness of the adjustment control according to the position of the slider on the chute, so that the user can intuitively adjust the brightness of the control according to the adjustment.
  • the change of the signal amplification amount during the adjustment process is felt, and the specific implementation manner is similar to the example shown in FIG. 2A, and details are not described herein again.
  • the media player can change the slider size of the slider in the adjustment control and the chute of the chute according to the position of the slider on the chute.
  • the width allows the user to intuitively feel the change of the signal amplification amount during the adjustment according to the display size of the adjustment control.
  • the above steps 203 to 205 can be replaced with the following steps.
  • Step 206 Determine a current signal amplification value indicated by the slider according to the signal amplification range and the slider position indicated by the chute.
  • the media player obtains the signal amplification range indicated by the slider where the slider is located, and calculates the current signal amplification value indicated by the current slider according to the slider position.
  • the current signal amplification value indicated by the slider is -5db.
  • Step 207 Query a slider size corresponding to the current signal amplification value in the first correspondence relationship.
  • the media player queries the corresponding slider size in the first correspondence relationship, wherein the correspondence between the signal amplification value and the slider size can be as shown in Table 2.
  • Step 208 Query a slot width corresponding to the current signal amplification value in the second correspondence.
  • the media player queries the corresponding slot width in the second correspondence according to the calculated current signal amplification value, wherein the correspondence between the signal amplification value and the slot width can be as shown in Table 3. .
  • steps 207 and 208 have no strict relationship, that is, step 207 and step 208 can be performed simultaneously, or step 208 can be performed before step 207.
  • This example is only executed by step 207 before step 208. The description is not intended to limit the scope of the application.
  • the media player can calculate the corresponding slider size and the slot width by the preset function, so that the size of the slider and the chute slides with the slider.
  • a uniform change is presented, which is not limited in this application.
  • step 209 the slider is changed according to the slider size, and the chute is changed according to the width of the chute.
  • the media player Similar to the above step 205, the media player generates corresponding image frame data according to the slider size and the chute width, and calls the system API to render the image frame data, thereby displaying the adjustment control after changing the display size in the equalizer interface. .
  • the media player calculates the corresponding slider size and the slot width according to the position of the slider where the slider is located, and changes the display size of the adjustment control according to the size of the slider and the width of the chute, so that the user can adjust the control according to the
  • the dimensional change is more intuitive and the change of the signal amplification value is perceived, which is beneficial to the user's adjustment.
  • the equalizer interface also includes a selection control for the user to select a sound effect mode that matches the current playing song genre. As shown in FIG. 2F, the method may further include the following steps.
  • Step 210 When the selection signal of the selection control is received, the selected sound effect mode is acquired.
  • the media player receives the selection signal and determines the selected sound mode according to the selection signal.
  • the selected sound mode is changed from classical to classic. Rock and roll.
  • Step 211 Acquire a predetermined signal amplification amount corresponding to each audio segment of the selected sound mode.
  • the media player After obtaining the selected sound mode, the media player further obtains a predetermined signal amplification amount corresponding to each audio segment in the sound mode, wherein, in different sound modes, the predetermined signal amplification amount corresponding to each audio segment may be as shown in the table. Four is shown.
  • Step 212 changing the display form of the adjustment control according to the predetermined signal amplification amount.
  • the media The body player After obtaining the predetermined signal amplification amount of each selected audio mode in the selected audio mode, the media The body player changes the display mode of the adjustment control according to the predetermined signal amplification amount.
  • the specific implementation is similar to the above steps 203 to 205 and step 206 to step 209, and details are not described herein again.
  • the user can quickly select a sound mode that conforms to the currently playing song genre, thereby improving the efficiency of the user adjustment, and at the same time, the user can more intuitively understand the signals of the respective audio segments in different sound modes. Put a lot of differences and reduce the cost of learning for users.
  • FIG. 3 shows a structural block diagram of a control display device provided by an example of the present application.
  • the control display device is implemented as a whole or a part of an electronic device in which an audio playback application is installed by hardware or a combination of hardware and software.
  • the control display device includes:
  • a display module 310 configured to display at least one adjustment control in the equalizer interface;
  • the adjustment control includes a sliding slot and a slider, and the adjustment control is configured to position the slider according to the slider on the sliding slot Adjusting the amount of signal amplification of the corresponding audio segment;
  • the obtaining module 320 is configured to acquire the slider position of the slider on the sliding slot when receiving the sliding signal of the slider;
  • the first changing module 330 is configured to change a display form of the adjustment control according to the position of the slider.
  • the control display device obtains the position of the slider on the sliding slot when the slider is slid in the adjustment control, and further changes the display form of the adjustment control according to the position of the slider;
  • the audio equalizer only displays the change of the signal amplification amount in the form of digital, the display effect is not intuitive, and the sensitivity of the user to the number is small, Conducive to The adjustment problem of the user; the display form of the adjustment control is changed in real time according to the position of the slider on the chute, so that the user can more intuitively understand the change of the signal amplification amount, thereby improving the adjustment efficiency of the user.
  • FIG. 4 shows a structural block diagram of a control display device provided by another example of the present application.
  • the control display device is implemented as a whole or a part of an electronic device in which an audio playback application is installed by hardware or a combination of hardware and software.
  • the control display device includes:
  • a display module 410 configured to display at least one adjustment control in the equalizer interface;
  • the adjustment control includes a sliding slot and a slider, and the adjustment control is configured to position the slider according to the slider on the sliding slot Adjusting the amount of signal amplification of the corresponding audio segment;
  • the obtaining module 420 is configured to acquire the slider position of the slider on the sliding slot when receiving the sliding signal of the slider;
  • the first changing module 430 is configured to change a display form of the adjustment control according to the position of the slider.
  • the first change module 430 includes:
  • a first changing unit 431, configured to change a color of all or part of the slider, the first portion of the sliding slot and the second portion of the sliding slot according to the position of the slider; the first portion is located Between the slider and the bottom of the chute, the second portion is located between the slider and the top of the chute;
  • a second changing unit 432 configured to change brightness of all or part of the slider, the first portion of the chute, and the second portion of the chute according to the position of the slider;
  • the third changing unit 433 is configured to change a slider size of the slider and a slot width of the sliding slot according to the slider position.
  • the first changing unit 431 includes:
  • a first calculating sub-unit 431A configured to calculate, according to the position of the slider, a percentage of the first portion of the chute to the chute;
  • a second calculating sub-unit 431B configured to calculate a corresponding color value in the color change domain according to the percentage; the color change domain corresponds to the chute;
  • the first changing subunit 431C is configured to change a color of all or part of the slider, the first portion of the chute, and the second portion of the chute according to the color value.
  • the first changing subunit 431C includes:
  • the rendering sub-unit 431Cb is configured to invoke the system application interface API to render the image frame data, and display the rendered image frame in the equalizer interface.
  • the third changing unit 433 includes:
  • Determining a sub-unit 433A configured to determine a current signal amplification value indicated by the slider according to a signal amplification range indicated by the chute and the slider position;
  • a first query subunit 433B configured to query, in the first correspondence, the size of the slider corresponding to the current signal amplification value
  • a second query subunit 433C configured to query, in the second correspondence, the slot width corresponding to the current signal amplification value
  • the second changing subunit 433D is configured to change the slider according to the slider size, and change the sliding slot according to the slot width.
  • the equalizer interface further includes a selection control, where the selection control includes at least two sound effect modes, and the device further includes:
  • the mode obtaining module 440 is configured to acquire the selected sound mode when receiving the selection signal of the selection control;
  • a plurality of acquisition modules 450 are configured to acquire a predetermined signal amplification amount corresponding to each selected audio mode in each audio segment;
  • the second changing module 460 is configured to change the display form of the adjustment control according to the predetermined signal amplification amount.
  • the control display device obtains the position of the slider on the sliding slot when the slider is slid in the adjustment control, and further changes the display form of the adjustment control according to the position of the slider;
  • the audio equalizer only displays the change of the signal amplification amount in the form of digital, the display effect is not intuitive, and the sensitivity of the user to the number is small, The user's adjustment problem is achieved; the display form of the adjustment control is changed in real time according to the position of the slider on the chute, so that the user can more intuitively understand the change of the signal amplification amount, thereby improving the adjustment efficiency of the user.
  • the media player calculates a corresponding color value according to the position of the slider where the slider is located, and changes the color of the adjustment control according to the color value, so that the user can perceive the signal amplification value more intuitively according to the color change of the adjustment control. Changes in circumstances, is conducive to user adjustment.
  • the media player calculates the corresponding slider size and the slot width according to the position of the slider where the slider is located, and changes the display size of the adjustment control according to the size of the slider and the width of the chute, so that the user can adjust the control according to the
  • the dimensional change is more intuitive and the change of the signal amplification value is perceived, which is beneficial to the user's adjustment.
  • the user can quickly select a sound mode that conforms to the currently playing song genre, thereby improving the efficiency of the user adjustment, and at the same time, the user can more intuitively understand the signals of the respective audio segments in different sound modes. Put a lot of differences and reduce the cost of learning for users.
  • FIG. 5 is a schematic structural diagram of an electronic device provided by an example of the present application.
  • the child device can be a media player, a tablet, an MP3 player or a portable computer, etc., specifically:
  • Apparatus 500 can include an RF (Radio Frequency) circuit 510, a memory 520 including one or more computer readable storage media, an input unit 530, a display unit 540, a sensor 550, an audio circuit 560, and a short range wireless transmission module 570.
  • a processor 580 having one or more processing cores, and a power supply 590 and the like are included. It will be understood by those skilled in the art that the device structure illustrated in FIG. 5 does not constitute a limitation to the electronic device, and may include more or less components than those illustrated, or a combination of certain components, or different component arrangements. among them:
  • the RF circuit 510 can be used for receiving and transmitting signals during and after receiving or transmitting information, in particular, after receiving downlink information of the base station, and processing it by one or more processors 580; in addition, transmitting data related to the uplink to the base station.
  • the RF circuit 510 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
  • RF circuitry 510 can also communicate with the network and other devices via wireless communication.
  • Wireless communication can 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) Divisional Multiple Access), WCDMA (Wideband Code Division Multiple Access), LTE (Long Term Evolution), e-mail, SMS (Short Messaging Service), and the like.
  • 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
  • Memory 520 can be used to store software programs as well as modules.
  • the processor 580 executes various functional applications and data processing by running software programs and modules stored in the memory 520.
  • the memory 520 may mainly include a storage program area and a storage data area, where
  • 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 store data created according to the use of the device 500 (such as audio data, a phone book). and many more.
  • memory 520 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.
  • memory 520 may also include a memory controller to provide access to memory 520 by processor 580 and input unit 530.
  • FIG. 5 shows the RF circuit 510, it can be understood that it does not belong to the essential configuration of the device 500, and may be omitted as needed within the scope of not changing the essence of the invention.
  • Input unit 530 can be used to receive input numeric or character information, as well as to generate keyboard, mouse, joystick, optical or trackball signal inputs related to user settings and function controls.
  • input unit 530 can include touch-sensitive surface 531 as well as other input devices 532.
  • a touch-sensitive surface 531 also referred to as a touch display or trackpad, can collect touch operations on or near the user (eg, the user uses a finger, stylus, etc., any suitable object or accessory on the touch-sensitive surface 531 or The operation near the touch-sensitive surface 531) and driving the corresponding connecting device according to a preset program.
  • the touch-sensitive surface 531 can include two portions 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 580 is provided and can receive commands from the processor 580 and execute them.
  • the touch sensitive surface 531 can be implemented in various types such as resistive, capacitive, infrared, and surface acoustic waves.
  • the input unit 530 can also include other input devices 532. Specifically, other input devices 532 may include, but are 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 540 can be used to display information entered by the user or information provided to the user and various graphical user interfaces of control 500, which can be comprised of graphics, text, icons, video, and any combination thereof.
  • the display unit 540 can include a display panel 541.
  • the display panel 541 can be configured in the form of an LCD (Liquid Crystal Display), an OLED (Organic Light-Emitting Diode), or the like.
  • the touch-sensitive surface 531 can be overlaid on the display panel 541. When the touch-sensitive surface 531 detects a touch operation on or near it, it is transmitted to the processor 580 to determine the type of touch event, and then the processor 580 is The type of touch event provides a corresponding visual output on display panel 541.
  • the touch-sensitive surface 531 and the display panel 541 are implemented as two separate components to implement input and input functions, in some examples, the touch-sensitive surface 531 can be integrated with the display panel 541 to implement input and Output function.
  • Device 500 may also include at least one type of sensor 550, 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 541 according to the brightness of the ambient light, and the proximity sensor may close the display panel 541 when the device 500 moves to the ear. / 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 gesture of the mobile phone such as horizontal and vertical screen switching, related Game, magnetometer attitude calibration), vibration recognition related functions (such as pedometer, tapping), etc.; as for the device 500 can also be configured with gyroscopes, barometers, hygrometers, thermometers, infrared sensors and other sensors, here Let me repeat.
  • Audio circuit 560, speaker 521, and microphone 522 can provide an audio interface between the user and device 500.
  • the audio circuit 560 can transmit the converted electrical data of the received audio data to the speaker 521, and convert it into a sound signal output by the speaker 521; the other side
  • the microphone 522 converts the collected sound signal into an electrical signal, which is received by the audio circuit 560 and converted into audio data, and then processed by the audio data output processor 580, sent to another control device via the RF circuit 510, or The audio data is output to memory 520 for further processing.
  • the audio circuit 560 may also include an earbud jack to provide communication of the peripheral earphones with the device 500.
  • the short-range wireless transmission module 570 can be a WIFI (wireless fidelity) module, a Bluetooth module, or an infrared module.
  • the device 500 can transmit information through the short-range wireless transmission module 570 with the wireless transmission module set on the competition device.
  • Processor 580 is the control center of device 500, which connects various portions of the entire control device using various interfaces and lines, by running or executing software programs and/or modules stored in memory 520, and recalling data stored in memory 520.
  • the various functions and processing data of the device 500 are performed to perform overall monitoring of the control device.
  • the processor 580 may include one or more processing cores; optionally, the processor 580 may integrate an application processor and a modem processor, where the application processor mainly processes an operating system, a user interface, and an application. Etc.
  • 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 550.
  • the device 500 also includes a power source 590 (such as a battery) that supplies power to the various components.
  • a power source 590 such as a battery
  • the power source can be logically coupled to the processor 580 via a power management system to manage functions such as charging, discharging, and power management through the power management system.
  • Power supply 590 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 device 500 may further include a camera, a Bluetooth module, and the like, and details are not described herein.
  • the device 500 also 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.
  • the aforementioned memory 520 will store one or more programs and be configured to be executed by one or more processors 580.
  • the one or more programs described above may include the following instruction modules:
  • a display module 310 configured to display at least one adjustment control in the equalizer interface;
  • the adjustment control includes a sliding slot and a slider, and the adjustment control is configured to position the slider according to the slider on the sliding slot Adjusting the amount of signal amplification of the corresponding audio segment;
  • the acquiring module 320 is configured to acquire the slider position of the slider on the sliding slot when receiving the sliding signal of the slider;
  • the first changing module 330 is configured to change a display form of the adjustment control according to the position of the slider.
  • Each of the modules in the above examples may also be included in the memory 520 as an instruction module.
  • control display device provided by the above example is only illustrated by the division of each functional module mentioned above.
  • function distribution may be completed by different functional modules according to requirements, that is, the internal structure of the electronic device. Divided into different functional modules to complete all or part of the functions described above.
  • control display device provided by the above example belongs to the same concept as the control display method example, and the specific implementation process is detailed in the method example, and details are not described herein again.
  • the program may be stored in a computer readable storage medium.
  • the storage medium mentioned above may be a read only memory, a magnetic disk or an optical disk.
  • the program may be stored in a computer readable storage medium, which may be a read only memory, a magnetic disk or an optical disk or the like.
  • the computer readable storage medium described above may be a non-transitory computer readable storage medium.

Abstract

一种控件显示方法及装置,属于音频调节领域。所述方法包括:在均衡器界面中显示至少一个调节控件;调节控件用于根据滑块在滑槽上的滑块位置调节对应音频段的信号放大量;当接收到滑块的滑动信号时,获取滑块在滑槽上的滑块位置;根据滑块位置改变调节控件的显示形态。

Description

控件显示方法及装置
本申请要求于2016年01月15日提交中国专利局、申请号为201610027396.8、发明名称为“控件显示方法及装置”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
本申请涉及多媒体播放领域,特别涉及一种控件显示方法及装置。
背景
随着多媒体播放技术的不断发展,越来越多的媒体播放器都内置有音频均衡器,方便用户自行根据播放音乐的风格对各个音频段的信号放大量进行调节。
音频均衡器中通常设置有对应于不同音频段的多个调节控件,各个调节控件中又包括滑槽和滑块,用户通过调节滑块在滑槽上所处的位置即可调节相应音频段的信号放大量。
技术内容
本申请的一些实例,提供一种控件显示方法,该方法包括:在均衡器界面中显示至少一个调节控件;调节控件中包括滑槽和滑块,调节控件用于根据滑块在滑槽上的滑块位置调节对应音频段的信号放大量;当接收到滑块的滑动信号时,获取滑块在滑槽上的滑块位置;根据滑块位置改变调节控件的显示形态。
本申请一些实例,提供一种控件显示装置,该装置包括:一个或一个以上存储器,一个或一个以上处理器;其中,所述一个或一个以 上存储器存储有一个或者一个以上指令模块,经配置由所述一个或者一个以上处理器执行;其中,所述一个或者一个以上指令模块包括:显示模块,用于在均衡器界面中显示至少一个调节控件;调节控件中包括滑槽和滑块,调节控件用于根据滑块在滑槽上的滑块位置调节对应音频段的信号放大量;获取模块,用于当接收到滑块的滑动信号时,获取滑块在滑槽上的滑块位置;第一改变模块,用于根据滑块位置改变调节控件的显示形态。
本申请的一些实例,提供一种非易失性计算机可读存储介质,所述存储介质包括:存储有计算机可读指令,可以使一个或者一个以上处理器执行以下处理:在均衡器界面中显示至少一个调节控件;所述调节控件中包括滑槽和滑块,所述调节控件用于根据所述滑块在所述滑槽上的滑块位置调节对应音频段的信号放大量;当接收到所述滑块的滑动信号时,获取所述滑块在所述滑槽上的所述滑块位置;根据所述滑块位置改变所述调节控件的显示形态。
附图简要说明
为了更清楚地说明本申请实例中的技术方案,下面将对实例描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本申请的一些实例,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是本申请一个实例提供的控件显示方法的流程图;
图2A是本申请另一个实例提供的控件显示方法的流程图;
图2B是图2A所示实例涉及的界面示意图;
图2C是图2A所示实例的实施示意图;
图2D是本申请再一个实例提供的控件显示方法的流程图;
图2E是图2D所示实例的实施示意图;
图2F是本申请一个实例提供的控件显示方法所涉及的音效模式选择过程的流程图;
图2G是图2F所示实例的实施示意图;
图3是本申请一个实例提供的控件显示装置的结构方框图;
图4是本申请另一个实例提供的控件显示装置的结构方框图;
图5是本申请一个实例提供的电子设备的结构示意图。
实施方式
在实现本申请发明实施例实例的过程中,发明人发现上述技术至少存在以下问题:
用户通过调节控件调节各个音频段的信号放大量时,音频均衡器只会以数字的形式对信号放大量的变化情况进行显示,显示效果不直观,且用户对数字的敏感度较小,不利于用户的调节。
为使本申请的目的、技术方案和优点更加清楚,下面将结合附图对本申请实施方式作进一步地详细描述。
本申请各个实例提供的控件显示方法,应用于媒体播放器应用程序(以下简称媒体播放器)中,比如QQ音乐,该播放器程序可以安装在电子设备中,该电子设备可以为智能手机、平板电脑、MP3播放器(Moving Picture Experts Group Audio Layer III,动态影像专家压缩标准音频层面3)、MP4(Moving Picture Experts Group Audio Layer IV,动态影像专家压缩标准音频层面4)播放器和膝上型便携计算机(相机、摄像机)等等。通常情况下,媒体播放器都会有一个音频均衡器,在音频均衡器界面上会显示至少一个调节控件,这些调节控件用来调节各个音频段的信号放大量。请参考图1,其示出了本申请一个实例 提供的控件显示方法的流程图,,该方法包括以下步骤:
步骤101,在均衡器界面中显示至少一个调节控件;调节控件中包括滑槽和滑块,调节控件用于根据滑块在滑槽上的滑块位置调节对应音频段的信号放大量。
步骤103,当接收到滑块的滑动信号时,获取滑块在滑槽上的滑块位置。
步骤105,根据该滑块位置改变调节控件的显示形态。
其中,改变调节控件显示形态的方式可以包括:
一、根据滑块位置改变滑块、滑槽的第一部分和滑槽的第二部分三者中全部或部分的颜色;第一部分位于滑块与滑槽的底部之间,第二部分位于滑块与滑槽的顶部之间。
二、根据滑块位置改变滑块、滑槽的第一部分和滑槽的第二部分三者中全部或部分的亮度。
三、根据滑块位置改变滑块的滑块尺寸以及滑槽的滑槽宽度。
综上所述,本实例提供的控件显示方法,通过在调节控件中滑块滑动时,获取滑块在滑槽上的滑块位置,并进一步根据该滑块位置改变调节控件的显示形态;解决了用户通过调节控件调节各个音频段的信号放大量时,音频均衡器只会以数字的形式对信号放大量的变化情况进行显示,显示效果不直观,且用户对数字的敏感度较小,不利于用户的调节的问题;达到了根据滑块在滑槽上所处的位置实时改变调节控件的显示形态,使得用户能够更加直观了解到信号放大量的变化情况,从而提高用户的调节效率。
作为一种可能的实施方式,媒体播放器可以根据滑块在滑槽上所处的位置,改变调节控件的显示颜色,从而使用户直观感受到调节过程中信号放大量的变化情况。为了方便描述,本实例涉及的各个示意 图中以不同背景的阴影线来代表不同的颜色。
请参考图2A,其示出了本申请另一个实例提供的控件显示方法的流程图,该方法包括:
步骤201,在均衡器界面中显示至少一个调节控件;调节控件中包括滑槽和滑块,调节控件用于根据滑块在滑槽上的滑块位置调节对应音频段的信号放大量。
在智能手机等电子设备通过媒体播放器播放多媒体时,用户可以通过播放页面中的均衡器入口进入均衡器界面。该均衡器界面中包括至少一个调节控件,不同调节控件用于对不同音频段的信号放大量进行调节。每个调节控件中包括滑槽和滑块,该滑块可以在滑槽上滑动。当滑块位于滑槽的顶部时,信号放大量达到最大值,当滑块位于滑槽的底部时,信号放大量达到最小值,即调节控件根据滑块在滑槽上的位置对信号放大量进行调节。作为一种可能的实施方式,均衡器界面中可以包括三个调节控件,三个调节控件分别用于调节低音(20Hz至200Hz的音频段,影响声音明亮度和饱和度)、中音(200Hz至4kHz,影响声音浑厚度和响度)和高音(4kHz至20kHz,影响声音的穿透力)。需要说明的是,在其他可能的实现方式中,均衡器界面中还可以包括五个调节组件,分别用于调节低音、中低音、中音、中高音和高音的信号放大量,本申请实例并不对调节控件的数量进行限定。
另外,不同调节控件中滑槽的长度相同,但不同滑槽指示的信号放大量范围可以相同也可以不同,本申请实例并不对此进行限定。
如图2B所示,均衡器界面21上包括第一调节控件22、第二调节控件23和第三调节控件24,各个调节控件中包括滑块25和滑槽26,且各个滑槽26的长度相同。
步骤202,当接收到滑块的滑动信号时,获取滑块在滑槽上的滑 块位置。
进入均衡器界面后,媒体播放器实时监测调节控件中的滑块是否滑动,并在接收到滑块的滑动信号时,获取滑块在对应滑槽上的滑块位置。
比如,如图2C所示,当第三调节控件24中的滑块25在对应滑槽26上向下滑动时,媒体播放器即获取滑块25在滑槽26上所处的滑块位置。
步骤203,根据滑块位置计算滑槽的第一部分占滑槽的百分比,其中,第一部分位于滑块与滑槽的底部之间。
在滑块的划分下,滑槽被划分为第一部分和第二部分,其中,第一部分位于滑块与滑槽的底部之间,第二部分位于滑块与滑槽的顶部之间。媒体播放器获取到滑块的滑块位置后,即根据该滑块位置计算第一部分占滑槽的百分比。
作为一种可能的实现方式,媒体播放器可以根据滑槽的顶部的纵坐标和底部的纵坐标计算滑槽总长度(单位为像素),根据滑块中心的纵坐标和滑槽的底部的纵坐标计算滑槽的第一部分的长度,并根据滑槽第一部分的长度/滑槽总长度计算得到滑槽的第一部分占滑槽的百分比。比如,滑槽的第一部分的长度为125px,且滑槽总长度为500px,滑槽的第一部分占滑槽的百分比即为125/500=25%。
步骤204,根据百分比,计算颜色变化域中对应的颜色值;该颜色变化域与滑槽对应。
调节控件中的滑槽与一个颜色变化域向对应,该颜色变化域中颜色的颜色值连续,即滑块在滑槽上滑动时,调节控件的颜色呈渐变变化。比如,该颜色变化域的色阶指数可以为65536色(即颜色变化域中包括65536种颜色),且各个颜色对应的颜色值连续。
当计算得到滑槽的第一部分占滑槽的百分比后,媒体播放器即根据该百分比计算颜色变化域中对应的颜色值,比如,根据百分比计算得到颜色变化域中对应的颜色值为#d58418(橙色)。
需要说明的是,在其他可能的实施方式中,当颜色变化域中包含的颜色较少时,媒体播放器还可以根据计算得到的百分比所属的百分比范围,在颜色变化域中查询对应的颜色值(表现为滑块在滑槽上滑动时,调节控件的颜色呈跳跃变化)。其中,百分比范围与颜色变化域中颜色值的对应关系可以如表一所示。
百分比范围 0%-25% 25%-50% 50%-75% 75%-100%
颜色值 颜色值A 颜色值B 颜色值C 颜色值D
表一
步骤205,根据颜色值改变滑块、滑槽的第一部分和滑槽的第二部分三者中全部或部分的颜色。
在改变调节控件的颜色时,媒体播放器可以改变滑块、滑槽的第一部分和滑槽的第二部分三者中全部或部分的颜色,比如,如图2C所示,当第三调节控件24中的滑块25滑动时,媒体播放器根据计算得到的颜色值改变了滑块25及滑槽26的第一部分的颜色,而滑槽26的第二部分的颜色保持不变。
由于媒体播放器系统中并未提供更改调节控件颜色的API(英文:Application Programming Interface,中文:应用程序接口),因此,在计算得到颜色值后,音乐播放程序需要根据该颜色值生成相应的图像帧数据,并通过系统API对图像帧数据进行渲染,从而在均衡器界面中显示改变颜色后的调节控件。在一种可能的实施方式中,本步骤可以包括如下子步骤。
步骤205A,根据颜色值生成与改变颜色后的调节控件所相应的 图像帧数据。
需要说明的是,该图像帧数据中还包括用于指示颜色变化区域的相关参数,比如,当仅需要改变滑块和滑槽的第一部分的颜色时,该图像帧数据中还包括指示滑块和滑槽的第一部分的参数。
在步骤205B,调用系统API对图像帧数据进行渲染,并在均衡器界面中进行显示渲染后的图像帧。
生成相应的图像帧数据后,音乐播放程序即调用系统提供的API接口(比如,安卓系统中的onDraw接口),对该图像帧数据进行渲染,并在均衡器界面中显示包含改变颜色后的调节控件的图像帧,从而使用户更加直观了解到信号放大值的变化情况。
在实际实施过程中,当滑块从滑槽的底部滑动至滑槽的顶部时,调节控件经历由绿色变为橙色,再由橙色变为红色的过程,且颜色的变化连续。当均衡器界面中包含多个调节控件时,各个调节控件根据滑块所处的位置呈现出各自的颜色,从而形成一个颜色组合(比如橙绿红),相较于对枯燥的数值进行记忆,用户更容易记住相应的颜色组合,大大提高了用户的调节效率。
综上所述,本实例提供的控件显示方法,通过在调节控件中滑块滑动时,获取滑块在滑槽上的滑块位置,并进一步根据该滑块位置改变调节控件的显示形态;解决了用户通过调节控件调节各个音频段的信号放大量时,音频均衡器只会以数字的形式对信号放大量的变化情况进行显示,显示效果不直观,且用户对数字的敏感度较小,不利于用户的调节的问题;达到了根据滑块在滑槽上所处的位置实时改变调节控件的显示形态,使得用户能够更加直观了解到信号放大量的变化情况,从而提高用户的调节效率。
本实例中,媒体播放器根据滑块所处的滑块位置计算相应的颜色 值,并根据该颜色值改变调节控件的颜色,使得用户能够根据调节控件的颜色变化更加直观的感知信号放大值的变化情况,有利于用户的调节。
基于图2A所示的实例,在另一种可能的实施方式中,媒体播放器可以根据滑块在滑槽上所处的位置,改变调节控件的显示亮度,使得用户能够根据调节控件的亮度直观感受到调节过程中信号放大量的变化情况,其具体实施方式与图2A所示实例相似,在此不再赘述。
基于图2A所示的实例,在再一种可能的实施方式中,媒体播放器可以根据滑块在滑槽上所处的位置,改变调节控件中滑块的滑块尺寸以及滑槽的滑槽宽度,使得用户能够根据调节控件的显示尺寸直观感受到调节过程中信号放大量的变化情况,如图2D所示,上述步骤203至步骤205可以被替换为如下步骤。
步骤206,根据滑槽所指示的信号放大范围以及滑块位置,确定滑块指示的当前信号放大值。
当滑块滑动时,媒体播放器即获取滑块所在滑槽所指示的信号放大范围,并根据该滑块位置计算得到当前滑块所指示的当前信号放大值。
比如,当滑块所在滑槽所指示的信号放大范围为-10db至10db时,且滑块所处滑块位置为距滑槽底部1/4时,该滑块指示的当前信号放大值即为-5db。
步骤207,在第一对应关系中查询与当前信号放大值对应的滑块尺寸。
根据计算得到的当前信号放大值,媒体播放器在第一对应关系中查询对应的滑块尺寸,其中,信号放大值与滑块尺寸的对应关系可以如表二所示。
信号放大值 -10db-5db -5db-0db 0db-+5db +5db-+10db
滑块尺寸 10px 15px 25px 30px
表二
步骤208,在第二对应关系中查询与当前信号放大值对应的滑槽宽度。
与上述步骤207相似的,根据计算得到的当前信号放大值,媒体播放器在第二对应关系中查询对应的滑槽宽度,其中,信号放大值与滑槽宽度的对应关系可以如表三所示。
信号放大值 -10db-5db -5db-0db 0db-+5db +5db-+10db
滑槽宽度 5px 10px 15px 20px
表三
需要说明的是,上述步骤207和步骤208没有严格的先后关系,即步骤207和步骤208可以同时进行,或步骤208可以在步骤207之前执行,本实例仅以步骤207在步骤208前执行为例进行示意性说明,并不对本申请构成限定。
另外,为了达到更好的显示效果,计算得到当前信号放大值后,媒体播放器可以通过预设函数计算得到相应的滑块尺寸和滑槽宽度,使得滑块和滑槽的尺寸随滑块滑动呈现均匀变化,本申请并不对此进行限定。
步骤209,根据滑块尺寸改变滑块,并根据滑槽宽度改变滑槽。
与上述步骤205相似的,媒体播放器根据滑块尺寸和滑槽宽度生成对应的图像帧数据,并调用系统API对图像帧数据进行渲染,从而在均衡器界面中显示改变显示尺寸后的调节控件。
比如,如图2E所示,将第三调节控件24中的滑块25向下滑动时,第三调节控件24中滑块25的滑块尺寸减小且滑槽26的滑槽宽 度减小。
本实例中,媒体播放器根据滑块所处的滑块位置计算相应的滑块尺寸和滑槽宽度,并根据滑块尺寸和滑槽宽度改变调节控件的显示尺寸,使得用户能够根据调节控件的尺寸变化更加直观的感知信号放大值的变化情况,有利于用户的调节。
为了方便用户快速调节,均衡器界面中还包括选择控件,供用户选择符合当前播放歌曲流派的音效模式,如图2F所示,该方法还可以包括如下步骤。
步骤210,当接收到选择控件的选择信号时,获取被选择的音效模式。
比如,如图2G所示,当用户滑动选择控件27时,媒体播放器即接收到选择信号,并根据该选择信号确定被选择的音效模式,图2G中,被选择的音效模式由古典变为摇滚。
步骤211,获取被选择的音效模式在各个音频段所对应的预定信号放大量。
获取到被选择的音效模式后,媒体播放器进一步获取该音效模式下,各个音频段所对应的预定信号放大量,其中,不同音效模式下,各个音频段所对应的预定信号放大量可以如表四所示。
音效模式 纯音乐 人声 摇滚 古典 爵士 舞曲
低音 +8db +6db 2db 0db -4db 0db
中音 0db +2db 0db +6db 0db +4db
高音 -4db +6db +6db +3db +3db +2db
表四
步骤212,根据预定信号放大量改变调节控件的显示形态。
获取到被选择的音效模式在各个音频段的预定信号放大量后,媒 体播放器即根据预定信号放大量改变调节控件的显示形态,其具体实施方式与上述步骤203至步骤205以及步骤206至步骤209相似,本实例在此不再赘述。
本实例中,通过在均衡器界面中设置选择控件,供用户快速选择符合当前播放歌曲流派的音效模式,提高了用户调节的效率,同时用户能够更加直观了解到不同音效模式下各个音频段的信号放大量差异,降低用户的学习成本。
下述为本申请装置实例,对于装置实例中未详尽描述的细节,可以参考上述一一对应的方法实例。
请参考图3,其示出了本申请一个实例提供的控件显示装置的结构方框图。该控件显示装置通过硬件或者软硬件的结合实现成为安装有音频播放应用程序的电子设备的全部或者一部分。该控件显示装置包括:
显示模块310,用于在均衡器界面中显示至少一个调节控件;所述调节控件中包括滑槽和滑块,所述调节控件用于根据所述滑块在所述滑槽上的滑块位置调节对应音频段的信号放大量;
获取模块320,用于当接收到所述滑块的滑动信号时,获取所述滑块在所述滑槽上的所述滑块位置;
第一改变模块330,用于根据所述滑块位置改变所述调节控件的显示形态。
综上所述,本实例提供的控件显示装置,通过在调节控件中滑块滑动时,获取滑块在滑槽上的滑块位置,并进一步根据该滑块位置改变调节控件的显示形态;解决了用户通过调节控件调节各个音频段的信号放大量时,音频均衡器只会以数字的形式对信号放大量的变化情况进行显示,显示效果不直观,且用户对数字的敏感度较小,不利于 用户的调节的问题;达到了根据滑块在滑槽上所处的位置实时改变调节控件的显示形态,使得用户能够更加直观了解到信号放大量的变化情况,从而提高用户的调节效率。
请参考图4,其示出了本申请另一个实例提供的控件显示装置的结构方框图。该控件显示装置通过硬件或者软硬件的结合实现成为安装有音频播放应用程序的电子设备的全部或者一部分。该控件显示装置包括:
显示模块410,用于在均衡器界面中显示至少一个调节控件;所述调节控件中包括滑槽和滑块,所述调节控件用于根据所述滑块在所述滑槽上的滑块位置调节对应音频段的信号放大量;
获取模块420,用于当接收到所述滑块的滑动信号时,获取所述滑块在所述滑槽上的所述滑块位置;
第一改变模块430,用于根据所述滑块位置改变所述调节控件的显示形态。
可选地,第一改变模块430,包括:
第一改变单元431,用于根据所述滑块位置改变所述滑块、所述滑槽的第一部分和所述滑槽的第二部分三者中全部或部分的颜色;所述第一部分位于所述滑块与所述滑槽的底部之间,所述第二部分位于所述滑块与所述滑槽的顶部之间;
和/或,
第二改变单元432,用于根据所述滑块位置改变所述滑块、所述滑槽的第一部分和所述滑槽的第二部分三者中全部或部分的亮度;
和/或,
第三改变单元433,用于根据所述滑块位置改变所述滑块的滑块尺寸以及所述滑槽的滑槽宽度。
可选地,所述第一改变单元431,包括:
第一计算子单元431A,用于根据所述滑块位置计算所述滑槽的第一部分占所述滑槽的百分比;
第二计算子单元431B,用于根据所述百分比,计算颜色变化域中对应的颜色值;所述颜色变化域与所述滑槽对应;
第一改变子单元431C,用于根据所述颜色值改变所述滑块、所述滑槽的第一部分和所述滑槽的第二部分三者中全部或部分的颜色。
可选地,所述第一改变子单元431C,包括:
生成子单元431Ca,用于根据所述颜色值生成与改变颜色后的所述调节控件所相应的图像帧数据;
渲染子单元431Cb,用于调用系统应用程序接口API对所述图像帧数据进行渲染,并在所述均衡器界面中进行显示渲染后的图像帧。
可选地,所述第三改变单元433,包括:
确定子单元433A,用于根据所述滑槽所指示的信号放大范围以及所述滑块位置,确定所述滑块指示的当前信号放大值;
第一查询子单元433B,用于在第一对应关系中查询与所述当前信号放大值对应的所述滑块尺寸;
第二查询子单元433C,用于在第二对应关系中查询与所述当前信号放大值对应的所述滑槽宽度;
第二改变子单元433D,用于根据所述滑块尺寸改变所述滑块,并根据所述滑槽宽度改变所述滑槽。
可选地,所述均衡器界面中还包括选择控件,所述选择控件中包括至少两种音效模式,所述装置,还包括:
模式获取模块440,用于当接收到所述选择控件的选择信号时,获取被选择的音效模式;
放大量获取模块450,用于获取所述被选择的音效模式在各个音频段所对应的预定信号放大量;
第二改变模块460,用于根据所述预定信号放大量改变所述调节控件的所述显示形态。
综上所述,本实例提供的控件显示装置,通过在调节控件中滑块滑动时,获取滑块在滑槽上的滑块位置,并进一步根据该滑块位置改变调节控件的显示形态;解决了用户通过调节控件调节各个音频段的信号放大量时,音频均衡器只会以数字的形式对信号放大量的变化情况进行显示,显示效果不直观,且用户对数字的敏感度较小,不利于用户的调节的问题;达到了根据滑块在滑槽上所处的位置实时改变调节控件的显示形态,使得用户能够更加直观了解到信号放大量的变化情况,从而提高用户的调节效率。
本实例中,媒体播放器根据滑块所处的滑块位置计算相应的颜色值,并根据该颜色值改变调节控件的颜色,使得用户能够根据调节控件的颜色变化更加直观的感知信号放大值的变化情况,有利于用户的调节。
本实例中,媒体播放器根据滑块所处的滑块位置计算相应的滑块尺寸和滑槽宽度,并根据滑块尺寸和滑槽宽度改变调节控件的显示尺寸,使得用户能够根据调节控件的尺寸变化更加直观的感知信号放大值的变化情况,有利于用户的调节。
本实例中,通过在均衡器界面中设置选择控件,供用户快速选择符合当前播放歌曲流派的音效模式,提高了用户调节的效率,同时用户能够更加直观了解到不同音效模式下各个音频段的信号放大量差异,降低用户的学习成本。
图5示出了本申请一个实例提供的电子设备的结构示意图,该电 子设备可以媒体播放器、平板电脑、MP3播放器或便携式计算机等等,具体来讲:
设备500可以包括RF(Radio Frequency,射频)电路510、包括有一个或一个以上计算机可读存储介质的存储器520、输入单元530、显示单元540、传感器550、音频电路560、短距离无线传输模块570、包括有一个或者一个以上处理核心的处理器580、以及电源590等部件。本领域技术人员可以理解,图5中示出的设备结构并不构成对电子设备的限定,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510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580处理;另外,将涉及上行的数据发送给基站。通常,RF电路510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510还可以通过无线通信与网络和其他设备通信。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520可用于存储软件程序以及模块。处理器580通过运行存储在存储器520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520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设备500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520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520还可以包括存储器控制器,以提供处理器580和输入单元530对存储器520的访问。虽然图5示出了RF电路510,但是可以理解的是,其并不属于设备500的必须构成,完全可以根据需要在不改变发明的本质的范围内而省略。
输入单元530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530可包括触敏表面531以及其他输入设备532。触敏表面531,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531上或在触敏表面531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531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580,并能接收处理器580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531。除了触敏表面531,输入单元530还可以包括其他输入设备532。具体地,其他输入设备532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540可用于显示由用户输入的信息或提供给用户的信息以及控制500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540可包括显示面板541,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541。进一步的,触敏表面531可覆盖在显示面板541之上,当触敏表面531检测到在其上或附近的触摸操作后,传送给处理器580以确定触摸事件的类型,随后处理器580根据触摸事件的类型在显示面板541上提供相应的视觉输出。虽然在图5中,触敏表面531与显示面板541是作为两个独立的部件来实现输入和输入功能,但是在某些实例中,可以将触敏表面531与显示面板541集成而实现输入和输出功能。
设备500还可包括至少一种传感器550,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541的亮度,接近传感器可在设备500移动到耳边时,关闭显示面板541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;至于设备500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560、扬声器521,传声器522可提供用户与设备500之间的音频接口。音频电路560可将接收到的音频数据转换后的电信号,传输到扬声器521,由扬声器521转换为声音信号输出;另一方 面,传声器522将收集的声音信号转换为电信号,由音频电路560接收后转换为音频数据,再将音频数据输出处理器580处理后,经RF电路510以发送给另一控制设备,或者将音频数据输出至存储器520以便进一步处理。音频电路560还可能包括耳塞插孔,以提供外设耳机与设备500的通信。
短距离无线传输模块570可以是WIFI(wireless fidelity,无线保真)模块、蓝牙模块或红外线模块等。设备500通过短距离无线传输模块570可以与对战设备上设置的无线传输模块进行信息的传输。
处理器580是设备500的控制中心,利用各种接口和线路连接整个控制设备的各个部分,通过运行或执行存储在存储器520内的软件程序和/或模块,以及调用存储在存储器520内的数据,执行设备500的各种功能和处理数据,从而对控制设备进行整体监控。可选的,处理器580可包括一个或多个处理核心;可选的,处理器580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550中。
设备500还包括给各个部件供电的电源590(比如电池),优选的,电源可以通过电源管理系统与处理器580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590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,设备500还可以包括摄像头、蓝牙模块等,在此不再赘述。
设备500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。
具体而言,在本申请中的一些实例中,上述存储器520将存储有一个或者一个以上程序,且经配置由一个或者一个以上处理器580执行。
上述一个或者一个以上程序可以包括如下指令模块:
显示模块310,用于在均衡器界面中显示至少一个调节控件;所述调节控件中包括滑槽和滑块,所述调节控件用于根据所述滑块在所述滑槽上的滑块位置调节对应音频段的信号放大量;
获取模块320,用于当接收到所述滑块的滑动信号时,获取所述滑块在所述滑槽上的所述滑块位置;及
第一改变模块330,用于根据所述滑块位置改变所述调节控件的显示形态。上述各实例中的各模块也可以为指令模块而包含在存储器520中。
需要说明的是:上述实例提供的控件显示装置,仅以上述各功能模块的划分进行举例说明,实际应用中,可以根据需要而将上述功能分配由不同的功能模块完成,即将电子设备的内部结构划分成不同的功能模块,以完成以上描述的全部或者部分功能。另外,上述实例提供的控件显示装置与控件显示方法实例属于同一构思,其具体实现过程详见方法实例,这里不再赘述。
应当理解的是,在本文中使用的,除非上下文清楚地支持例外情况,单数形式“一个”(“a”、“an”、“the”)旨在也包括复数形式。还应当理解的是,在本文中使用的“和/或”是指包括一个或者一个以上相关联地列出的项目的任意和所有可能组合。
上述本申请实例序号仅仅为了描述,不代表实例的优劣。
本领域普通技术人员可以理解实现上述实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。
以上所述仅为本申请的较佳实例,并不用以限制本申请,凡在本申请的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本申请的保护范围之内。
本领域普通技术人员可以理解实现上述实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,也即这些程序可被相关硬件执行以实现上述实例的全部或部分步骤。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。上述计算机可读存储介质可以是非易失性的计算机可读存储介质。
以上所述仅为本申请的优选实例,并非因此限制本申请的专利范围,凡是利用本申请说明书及附图内容所作的等效结构或流程变换,或直接或间接运用在其它相关的技术领域,均同理包括在本申请的专利保护范围内。

Claims (17)

  1. 一种控件显示方法,其特征在于,所述方法包括:
    在均衡器界面中显示至少一个调节控件;所述调节控件中包括滑槽和滑块,所述调节控件用于根据所述滑块在所述滑槽上的滑块位置调节对应音频段的信号放大量;
    当接收到所述滑块的滑动信号时,获取所述滑块在所述滑槽上的所述滑块位置;及
    根据所述滑块位置改变所述调节控件的显示形态。
  2. 根据权利要求1所述的方法,其特征在于,所述根据所述滑块位置改变所述调节控件的显示形态,包括:
    根据所述滑块位置改变所述滑块、所述滑槽的第一部分和所述滑槽的第二部分三者中全部或部分的颜色;所述第一部分位于所述滑块与所述滑槽的底部之间,所述第二部分位于所述滑块与所述滑槽的顶部之间。
  3. 根据权利要求1所述的方法,其特征在于,所述根据所述滑块位置改变所述调节控件的显示形态,包括:
    根据所述滑块位置改变所述滑块、所述滑槽的第一部分和所述滑槽的第二部分三者中全部或部分的亮度。
  4. 根据权利要求1所述的方法,其特征在于,所述根据所述滑块位置改变所述调节控件的显示形态,包括:
    根据所述滑块位置改变所述滑块的滑块尺寸以及所述滑槽的滑槽宽度。
  5. 根据权利要求2所述的方法,其特征在于,所述根据所述滑块位置改变所述滑块、所述滑槽的第一部分和所述滑槽的第二部分三者中全部或部分的颜色,包括:
    根据所述滑块位置计算所述滑槽的第一部分占所述滑槽的百分比;
    根据所述百分比,计算颜色变化域中对应的颜色值;所述颜色变化域与所述滑槽对应;及
    根据所述颜色值改变所述滑块、所述滑槽的第一部分和所述滑槽的第二部分三者中全部或部分的颜色。
  6. 根据权利要求5所述的方法,其特征在于,所述根据所述颜色值改变所述滑块、所述滑槽的第一部分和所述滑槽的第二部分三者中全部或部分的颜色,包括:
    根据所述颜色值生成与改变颜色后的所述调节控件相应的图像帧数据;
    调用系统应用程序接口API对所述图像帧数据进行渲染,并在所述均衡器界面中显示渲染后的图像帧。
  7. 根据权利要求4所述的方法,其特征在于,所述根据所述滑块位置改变所述滑块的滑块尺寸以及所述滑槽的滑槽宽度,包括:
    根据所述滑槽所指示的信号放大范围以及所述滑块位置,确定所述滑块指示的当前信号放大值;
    在第一对应关系中查询与所述当前信号放大值对应的所述滑块尺寸;
    在第二对应关系中查询与所述当前信号放大值对应的所述滑槽宽度;及
    根据所述滑块尺寸改变所述滑块,并根据所述滑槽宽度改变所述滑槽。
  8. 根据权利要求1至7任一所述的方法,其特征在于,所述均衡器界面中还包括选择控件,所述选择控件中包括至少两种音效模式,所述方法,还包括:
    当接收到所述选择控件的选择信号时,获取被选择的音效模式;
    获取所述被选择的音效模式在各个音频段所对应的预定信号放大量;及
    根据所述预定信号放大量改变所述调节控件的所述显示形态。
  9. 一种控件显示装置,其特征在于,所述装置包括:
    一个或一个以上存储器;
    一个或一个以上处理器;其中,
    所述一个或一个以上存储器存储有一个或者一个以上指令模块,经配置由所述一个或者一个以上处理器执行;其中,
    所述一个或者一个以上指令模块包括:
    显示模块,用于在均衡器界面中显示至少一个调节控件;所述调节控件中包括滑槽和滑块,所述调节控件用于根据所述滑块在所述滑槽上的滑块位置调节对应音频段的信号放大量;
    获取模块,用于当接收到所述滑块的滑动信号时,获取所述滑块在所述滑槽上的所述滑块位置;及
    第一改变模块,用于根据所述滑块位置改变所述调节控件的显示 形态。
  10. 根据权利要求9所述的装置,其特征在于,所述第一改变模块,包括:
    第一改变单元,用于根据所述滑块位置改变所述滑块、所述滑槽的第一部分和所述滑槽的第二部分三者中全部或部分的颜色;所述第一部分位于所述滑块与所述滑槽的底部之间,所述第二部分位于所述滑块与所述滑槽的顶部之间。
  11. 根据权利要求9所述的装置,其特征在于,所述第一改变模块,包括:
    第二改变单元,用于根据所述滑块位置改变所述滑块、所述滑槽的第一部分和所述滑槽的第二部分三者中全部或部分的亮度。
  12. 根据权利要求9所述的装置,其特征在于,所述第一改变模块,包括:
    第三改变单元,用于根据所述滑块位置改变所述滑块的滑块尺寸以及所述滑槽的滑槽宽度。
  13. 根据权利要求10所述的装置,其特征在于,所述第一改变单元,包括:
    第一计算子单元,用于根据所述滑块位置计算所述滑槽的第一部分占所述滑槽的百分比;
    第二计算子单元,用于根据所述百分比,计算颜色变化域中对应 的颜色值;所述颜色变化域与所述滑槽对应;及
    第一改变子单元,用于根据所述颜色值改变所述滑块、所述滑槽的第一部分和所述滑槽的第二部分三者中全部或部分的颜色。
  14. 根据权利要求13所述的装置,其特征在于,所述第一改变子单元,包括:
    生成子单元,用于根据所述颜色值生成与改变颜色后的所述调节控件所相应的图像帧数据;
    渲染子单元,用于调用系统应用程序接口API对所述图像帧数据进行渲染,并在所述均衡器界面中进行显示渲染后的图像帧。
  15. 根据权利要求12所述的装置,其特征在于,所述第三改变单元,包括:
    确定子单元,用于根据所述滑槽所指示的信号放大范围以及所述滑块位置,确定所述滑块指示的当前信号放大值;
    第一查询子单元,用于在第一对应关系中查询与所述当前信号放大值对应的所述滑块尺寸;
    第二查询子单元,用于在第二对应关系中查询与所述当前信号放大值对应的所述滑槽宽度;及
    第二改变子单元,用于根据所述滑块尺寸改变所述滑块,并根据所述滑槽宽度改变所述滑槽。
  16. 根据权利要求9至15任一所述的装置,其特征在于,所述均衡器界面中还包括选择控件,所述选择控件中包括至少两种音效模式,所述一个或者一个以上指令模块,还包括:
    模式获取模块,用于当接收到所述选择控件的选择信号时,获取被选择的音效模式;
    放大量获取模块,用于获取所述被选择的音效模式在各个音频段所对应的预定信号放大量;及
    第二改变模块,用于根据所述预定信号放大量改变所述调节控件的所述显示形态。
  17. 一种非易失性计算机可读存储介质,其特征在于,存储有计算机可读指令,可以使一个或一个以上处理器执行以下处理:
    在均衡器界面中显示至少一个调节控件;所述调节控件中包括滑槽和滑块,所述调节控件用于根据所述滑块在所述滑槽上的滑块位置调节对应音频段的信号放大量;
    当接收到所述滑块的滑动信号时,获取所述滑块在所述滑槽上的所述滑块位置;及
    根据所述滑块位置改变所述调节控件的显示形态。
PCT/CN2017/070963 2016-01-15 2017-01-12 控件显示方法及装置 WO2017121353A1 (zh)

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