WO2014032472A1 - 一种手机翻转静音控制的方法及手机 - Google Patents

一种手机翻转静音控制的方法及手机 Download PDF

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Publication number
WO2014032472A1
WO2014032472A1 PCT/CN2013/078466 CN2013078466W WO2014032472A1 WO 2014032472 A1 WO2014032472 A1 WO 2014032472A1 CN 2013078466 W CN2013078466 W CN 2013078466W WO 2014032472 A1 WO2014032472 A1 WO 2014032472A1
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WO
WIPO (PCT)
Prior art keywords
image data
mobile phone
black
front camera
pixel
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PCT/CN2013/078466
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English (en)
French (fr)
Inventor
俞斌
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惠州Tcl移动通信有限公司
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Publication date
Application filed by 惠州Tcl移动通信有限公司 filed Critical 惠州Tcl移动通信有限公司
Priority to US14/398,363 priority Critical patent/US9497310B2/en
Priority to EP13833384.4A priority patent/EP2892215B1/en
Publication of WO2014032472A1 publication Critical patent/WO2014032472A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/72Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
    • H04M1/724User interfaces specially adapted for cordless or mobile telephones
    • H04M1/72448User interfaces specially adapted for cordless or mobile telephones with means for adapting the functionality of the device according to specific conditions
    • H04M1/72454User interfaces specially adapted for cordless or mobile telephones with means for adapting the functionality of the device according to specific conditions according to context-related or environment-related conditions
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/72Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
    • H04M1/724User interfaces specially adapted for cordless or mobile telephones
    • 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
    • G06F3/017Gesture based interaction, e.g. based on a set of recognized hand gestures
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M19/00Current supply arrangements for telephone systems
    • H04M19/02Current supply arrangements for telephone systems providing ringing current or supervisory tones, e.g. dialling tone or busy tone
    • H04M19/04Current supply arrangements for telephone systems providing ringing current or supervisory tones, e.g. dialling tone or busy tone the ringing-current being generated at the substations
    • H04M19/042Current supply arrangements for telephone systems providing ringing current or supervisory tones, e.g. dialling tone or busy tone the ringing-current being generated at the substations with variable loudness of the ringing tone, e.g. variable envelope or amplitude of ring signal
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N23/00Cameras or camera modules comprising electronic image sensors; Control thereof
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N23/00Cameras or camera modules comprising electronic image sensors; Control thereof
    • H04N23/60Control of cameras or camera modules
    • H04N23/667Camera operation mode switching, e.g. between still and video, sport and normal or high- and low-resolution modes
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06TIMAGE DATA PROCESSING OR GENERATION, IN GENERAL
    • G06T2207/00Indexing scheme for image analysis or image enhancement
    • G06T2207/10Image acquisition modality
    • G06T2207/10004Still image; Photographic image
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/02Constructional features of telephone sets
    • H04M1/0202Portable telephone sets, e.g. cordless phones, mobile phones or bar type handsets
    • H04M1/0206Portable telephones comprising a plurality of mechanically joined movable body parts, e.g. hinged housings
    • H04M1/0241Portable telephones comprising a plurality of mechanically joined movable body parts, e.g. hinged housings using relative motion of the body parts to change the operational status of the telephone set, e.g. switching on/off, answering incoming call
    • H04M1/0245Portable telephones comprising a plurality of mechanically joined movable body parts, e.g. hinged housings using relative motion of the body parts to change the operational status of the telephone set, e.g. switching on/off, answering incoming call using open/close detection
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M2250/00Details of telephonic subscriber devices
    • H04M2250/52Details of telephonic subscriber devices including functional features of a camera

Definitions

  • the present invention relates to the field of mobile terminals, and in particular, to a method for flipping mute control of a mobile phone and a mobile phone.
  • the existing method of flipping the mute of the mobile phone usually uses a gravity sensor, a direction sensor, etc. to sense the action of the user to flip the mobile phone to realize the mute control, and the essence is to calculate whether the user makes the action of flipping the mobile phone by acquiring the three-dimensional acceleration value of the mobile phone. This method is prone to misjudgment.
  • the mobile phone when the mobile phone is in motion with the user, such as when the user is traveling by train, car, etc., the three-dimensional acceleration value of the mobile phone is restricted by the external environment, and it is prone to misjudgment; or when the mobile phone When placed on a support surface with a certain angle of inclination, if the user is in an art class or an English video class, the table has a slope of more than 30 degrees. Because the phone is not placed horizontally, the user flips the phone but the phone cannot recognize the phone. Flip the action. In these cases, although the user has made the action of flipping the mobile phone, it cannot achieve the effect of controlling the mute of the mobile phone, which brings inconvenience to the user.
  • the technical problem to be solved by the present invention is to provide a method for flipping mute control of a mobile phone and a mobile phone according to the above-mentioned drawbacks of the prior art.
  • a method for flipping mute control of a mobile phone includes the steps of:
  • the mobile phone baseband chip Using the mobile phone baseband chip to determine whether the image data is all black image data and buffering the determination result, such as the current image data is all black image data and the last acquired image data is not all black image data, then the The scene mode of the mobile phone is switched to the silent mode, and the front camera is controlled to stop acquiring the image data.
  • a mobile phone that is flipped and mute including a baseband chip, a front camera, and a ringtone output module, the baseband chip further includes an image acquisition module, an all black determination module, a flip determination module, and a ringtone control module;
  • the front camera is disposed on a side of the main operation interface of the mobile phone, and is configured to acquire image data every predetermined time when the mobile phone has an incoming call and the scene mode of the mobile phone is in a ringing mode, and Transmitting the image data to the image acquisition module;
  • the image obtaining module is configured to acquire the image data transmitted by the front camera when the mobile phone has an incoming call and the scene mode of the mobile phone is a ringing mode;
  • the all-black judging module is configured to determine whether the image data acquired by the image acquiring module is all black image data and buffer the judgment result;
  • the inversion determining module is configured to send a mute control message to the ringtone control module when the all-black determining module determines that the current image data is all black image data, and the last acquired image data is not all black image data, Simultaneously triggering the baseband chip to control the front camera to stop acquiring the image data;
  • the ringtone control module is configured to control the ringtone output module to output a ringtone of different modes.
  • the mobile phone flip mute control method and the mobile phone provided by the invention add a new function to the mobile phone, that is, when the mobile phone has an incoming call, the mobile phone detects the scene mode by itself, and when it is in the non-silent mode, the mobile phone front camera is in real time. Obtaining image data, and transmitting the acquired image data to the baseband chip of the mobile phone. When it is determined that the currently acquired image data is all black image data and the image data acquired last time is not all black image data, it is considered that the mobile phone has a flip. The phone automatically switches the scene mode to silent mode.
  • the mobile phone scene mode can be conveniently and quickly switched to a simple and simple action of flipping the mobile phone.
  • the phone can be quieted quickly without rejecting the call, especially suitable for the case when the mobile phone is in motion or on the inclined surface, and the structure is simple, the control precision is high, and the user is provided with convenience.
  • FIG. 1 is a flow chart of a preferred embodiment of a method for flipping mute control of a mobile phone according to the present invention.
  • FIG. 2 is a flow chart of determining whether a frame of image data is all black image data in a preferred embodiment of the method for flipping mute control of a mobile phone according to the present invention.
  • FIG. 3 is a flow chart showing a specific application implementation of a method for flipping mute control of a mobile phone according to the present invention.
  • FIG. 4 is a block diagram showing the structure of a preferred embodiment of a mobile phone with inverted mute control according to the present invention.
  • FIG. 5 is a schematic diagram showing the connection between a front camera and an image acquisition module according to a preferred embodiment of the mobile phone with inverted mute control according to the present invention.
  • FIG. 6 is a block diagram showing a specific structure of an all-black judging module of a preferred embodiment of a mobile phone with inverted mute control according to the present invention.
  • FIG. 7 is a block diagram showing a specific structure of a ringtone control module of a preferred embodiment of a mobile phone with inverted mute control according to the present invention.
  • the embodiment of the present invention provides a mobile phone that is flipped and muted, and can be used to implement a method for providing mobile phone inversion mute control according to an embodiment of the present invention.
  • the mobile phone that is flipped silent includes a memory, and one or more programs.
  • One or more programs are stored in the memory and configured to perform the method of flipping mute control of the handset of the embodiments of the present invention by one or more processors.
  • the method for inverting the mute control of the mobile phone in the embodiment of the present invention can also be applied to other mobile electronic terminals, including but not limited to smart phones, tablet computers, e-book readers, and MP4 (Moving). Picture Experts Group Audio Layer IV, motion imaging experts compress standard audio layers 4) players and more.
  • FIG. 1 is a flow chart of a preferred embodiment of a method for flipping mute control of a mobile phone according to the present invention. The method includes the steps of:
  • the mobile phone detects the scene mode by itself, and when it is in the non-silent mode (such as the ringing mode), the image data is acquired by the front camera set on the face of the main operation interface of the mobile phone, and the acquired image is obtained.
  • the data is transmitted to the baseband chip of the mobile phone.
  • the surface on which the main operation interface of the mobile phone is located is a flat plane, and the front camera is disposed on the plane.
  • the front camera of the mobile phone acquires image data once every preset time; the preset time may be 100 ms, 50 ms, etc., and the value may be saved in the mobile phone system when the mobile phone is shipped from the factory. If the front camera of the mobile phone acquires image data every 50 ms, the image data acquired at one time may be one frame of image data or multiple frames of image data.
  • S120 Determine whether the image data is all black image data, and cache the determination result. When it is determined that the currently acquired image data is all black image data, check whether the cached image data obtained last time is a black image. Data, when the currently acquired image data is all black image data and the image data acquired last time is not all black image data, it is considered that the mobile phone has a flipping action, the scene mode of the control mobile phone is switched to the silent mode, and the control is performed. The front camera stops continuing to acquire image data.
  • the mobile phone Since the mobile phone is normally placed face up, after flipping the mobile phone, the mobile phone is facing down and the support surface such as the desktop, and the image taken by the front camera installed on the main operation interface of the mobile phone (ie, the front of the mobile phone) is installed.
  • the data must be all black image data, and when the mobile phone is placed in a pocket or a bag, although the image data acquired by the mobile phone is all black image data, when the image data acquired last time is also all black image data, that is, the mobile phone There is no action from a non-black environment to a black environment, so the phone's ringtone will not be automatically switched to silent mode at this time.
  • the method of the present invention is used to identify whether the mobile phone has been flipped to control the mobile phone switching scene mode, and is not limited by the support surface and the environmental acceleration where the mobile phone is placed, and the control precision is high; and the image acquired twice before and after the comparison is obtained.
  • the data also avoids the situation where the user silently causes the user to miss the call when the user puts the phone in a pocket or bag.
  • the mobile phone baseband chip monitors whether there is a signal for hanging up the phone in real time, and when detecting that the other party hangs up, the mobile phone is controlled to terminate the ringing, and the front is controlled. Set the camera to stop acquiring image data. This step can be performed independently, without being affected by the implementation steps of the above-described flip mute control.
  • the step S110 specifically includes: when the mobile phone has an incoming call, the mobile phone detects the scene mode by itself, and when the mobile phone has the non-silent mode, the front camera of the control mobile phone acquires the image data once every preset time, and once Obtaining one frame of image data; the front camera is triggered by the frame synchronization signal to transmit the acquired image data of the current frame to the baseband chip, and each time a frame synchronization signal is received, triggering transmission of one frame of image data.
  • the image of one frame is composed of a plurality of pixels, for example, a frame image is composed of CMAX pixels. Therefore, whether the image data is determined to be all black image data includes: determining whether each pixel of the image data is black one by one. For example, according to the format of the image data transmitted between the baseband chip and the front camera, it is determined whether each pixel of the image is black, including two cases:
  • FIG. 2 is a method for determining whether one frame of image data is a full black image in the method for flipping mute control of the mobile phone according to the present invention.
  • Step 301 The front camera receives a frame synchronization signal, and transmits one frame of image data to the baseband chip of the mobile phone, that is, the front camera receives a frame synchronization signal, and transmits CMAX pixel data of one frame image to the baseband chip of the mobile phone.
  • Step 302 The baseband chip initializes a counter C, and the initial value is 1, and the process proceeds to step 303.
  • Step 303 Comparing the current value of the counter C with the number of pixels CMAX included in the image, and detecting whether the current value of the counter C is less than or equal to CMAX. If yes, the process proceeds to step 304; otherwise, the process proceeds to step 307.
  • Step 304 Acquire data of one pixel from the current frame image data, and proceed to step 305.
  • Step 305 Determine whether the acquired current pixel data is black, and the specific determination method is as described above. If the current pixel is black, then go to step 306, otherwise, go to step 308.
  • Step 306 the counter C is incremented by 1, and the process returns to step 303 to continue to determine whether the other pixel data is black.
  • Step 307 When all pixels in the image data are black, determine that the image data is all black image data. End the process of judging the black image data.
  • Step 308 When it is found that one of the image data is not black, it is directly determined that the image is not a full black image, and no other pixels in the image are judged. End the process of judging the black image data.
  • FIG. 3 is a specific implementation flowchart of a method for flipping mute control of a mobile phone according to the present invention. Specifically, the following steps are included.
  • Step 001 The mobile phone has an incoming call, and proceeds to step 21.
  • Step 21 The mobile phone monitors whether the scene mode is a non-silent mode, and if it is a silent mode, directly jumps to step 002. Otherwise, proceed to step 22.
  • Step 22 The front camera shoots one frame image at regular intervals, and transmits the captured image of the frame to the baseband chip of the mobile phone.
  • Step 23 The mobile phone baseband chip determines whether the image data is all black image data, and if yes, proceeds to step 24, otherwise returns to step 22.
  • Step 24 Check whether the image of the previous frame is non-full black image data, and if yes, proceed to step 25, otherwise return to step 22.
  • Step 25 Control the mobile phone scene mode to switch to the silent mode, and proceed to step 002.
  • Step 002 Control the front camera of the mobile phone to stop shooting the image, and the mobile phone completes the flip mute control.
  • the baseband chip of the mobile phone also monitors whether there is a signal for hanging up the call in real time. Therefore, in the process of flipping the mute control after the incoming call of the mobile phone in this embodiment, the following steps are also performed after step 001.
  • step 001 the mobile phone has an incoming call, and proceeds to step 31.
  • Step 31 The mobile phone baseband chip monitors the signal of the call hang up in real time.
  • Step 32 Is it detected that the other party has hung up the call? When yes, go to step 33, otherwise return to step 31 to continue monitoring the incoming call hang up signal.
  • Step 33 When it is detected that the other party has hung up the incoming call, the mobile phone terminates the ringing, and immediately proceeds to step 002.
  • Step 002 the front camera stops capturing images.
  • steps 31 to 33 are asynchronously executed in the above steps 21 to 25, no matter which step is performed in steps 21, 22, 23, 24, and 25, the execution of steps 31 to 33 is not affected, and only step 32 is determined. The result is true, that is, once the incoming call is detected to be hung up, step 33 is immediately executed and step 002 is entered, and the function of flipping the mute is also closed, that is, the execution of steps 21 to 25 is immediately terminated.
  • the embodiment of the present invention further provides a mobile phone that is flipped and mute.
  • the mobile phone includes a front camera 510, a baseband chip 520, and a ringtone output module 530, and the baseband chip 520 further Specifically, the image acquisition module 521, the full black determination module 522, the flip determination module 523, the ringtone control module 524, and the hangup detection module 525 are included.
  • the front camera 510 is disposed on the side of the main operation interface of the mobile phone, and is used to acquire one frame of image data every preset time when the mobile phone is in the non-silent mode, and the acquired image of the frame is obtained.
  • the data is transferred to the baseband chip 520.
  • the preset time may be 100 ms, 50 ms, etc., and the value may be saved in the mobile phone system when the mobile phone is shipped from the factory, as described in the foregoing embodiment, and details are not described herein.
  • the image obtaining module 521 is configured to acquire image data transmitted by the front camera 510 when the mobile phone has an incoming call and the scene mode of the mobile phone is the ringing mode; specifically, as described in the foregoing embodiment.
  • the all-black determination module 522 is configured to determine whether the image data received by the image acquisition module 521 is all-black image data, and cache the determination result; as described in the foregoing embodiment.
  • the inversion determining module 523 is configured to: when the all-black determining module 522 determines that the currently acquired image data is all-black image data, check whether the all-black determining module 522 of the last acquired image data determines whether the result is not all-black image data. When the image data acquired last time is not the all black image data, it is determined that the mobile phone has a flipping action, and the mute control message is sent to the ringtone control module 524; as described in the foregoing embodiment.
  • the hang up monitoring module 525 is configured to monitor the signal of the hang up call, and send a message to terminate the ring tone to the ringtone control module 524 when the other party has hang up the call, as described in the foregoing embodiment.
  • the ringtone control module 524 is connected to the ringtone output module 530, and configured to control the ringtone output module 530 to output mute after receiving the mute control message, and after receiving the message for terminating the ringtone, The ringtone output module 530 is controlled to terminate the output of the ringtone.
  • the baseband chip 520 is further configured to control the front when the flip determination module 523 determines that the mobile phone has a flipping action, or the hung monitoring module 525 detects that the other party has hung up the call.
  • the camera 510 stops continuing to capture an image (acquisition of image data); as described in the above embodiment.
  • connection between the front camera 510 and the image acquisition module 521 of the mobile phone baseband chip is as shown in FIG. 5, and the frame synchronization signal line CAMVS of the front camera 510 and the frame of the image acquisition module 521
  • the sync signal line VSYNC is connected, and the data signal lines CAMD0 to CAMD7 of the front camera 510 are connected to the data signal lines DATA0 to DATA7 of the image acquisition module 521, respectively.
  • the specific process of transmitting one frame of image data when the current camera receives a frame synchronization signal is: triggering image acquisition when the frame synchronization signal line CAMVS of the current camera changes from low level to high level
  • the module 521 starts to receive one frame of image data, and the CMAX pixels of the one frame of image data are outputted one by one through the data signal lines CAMD0 to CAMD7 of the front camera, and are received by the data signal lines DATA0 to DATA7 of the image acquisition module 521;
  • the frame synchronization signal line CAMVS is changed from the high level to the low level, the image acquisition module 521 is notified that the current frame image data is transmitted, and the data signal lines DATA0 to DATA7 of the image acquisition module 521 stop receiving data.
  • the all black judging module 522 further includes:
  • the first image determining unit 203 is configured to determine that the image data is all black image data when all the pixels included in the image data are black.
  • the second image determining unit 204 is configured to determine that the image data is not all black image data when detecting that one pixel of the image data is not black.
  • the ringtone control module 524 further includes:
  • the mute control unit 401 is configured to control the ringtone output module 530 to output mute after receiving the mute control message;
  • the ringing tone unit 402 is configured to control the ringtone output module 530 to terminate the ringtone when the hangup monitoring module 521 detects that the other party has hung up the phone.
  • the surface of the main operation interface is a flat plane, and the front camera is disposed on the plane.
  • control method and the mobile phone of the mobile phone flip mover add a new function to the mobile phone, that is, when the mobile phone has an incoming call, the mobile phone detects the scene mode by itself, and when it is in the non-silent mode, it passes The front camera of the mobile phone acquires image data in real time, and transmits the acquired image data to the baseband chip of the mobile phone.
  • the image data currently acquired is all black image data and the image data acquired last time is not all black image data, I think that the phone flips and automatically switches the phone's profile to silent mode.
  • the mobile phone scene mode can be conveniently and quickly switched to a simple and simple action of flipping the mobile phone.
  • the phone can be quieted quickly without rejecting the call, especially suitable for the mobile phone to be muffled when the mobile phone is in motion or on the inclined surface, and the structure is simple, the control precision of the flip mute is high, for the user Provided for convenience.
  • the storage medium may be a magnetic disk, an optical disk, or a read-only storage memory (Read-Only) Memory, ROM) or Random Access Memory (RAM).

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Abstract

本发明公开了一种手机翻转静音控制的方法及手机,该方法包括步骤:当手机有来电时,检测手机的情景模式,如为响铃模式,控制前置摄像头每隔一预设时间获取一次图像数据;如当前图像数据是全黑图像数据并且上一次获取的图像数据不是全黑图像数据,将手机的情景模式切换为静音模式,并控制前置摄像头停止获取图像数据。通过本发明,用户只需简单的翻转手机就能方便、快速的将手机情景模式切换为静音模式。

Description

一种手机翻转静音控制的方法及手机 技术领域
本发明涉及移动终端领域,尤其涉及的是一种手机翻转静音控制的方法及手机。
背景技术
随着移动通信技术的发展,无线通信设备也越来越智能化,目前已出现带有翻转静音功能的智能手机,所谓翻转静音,即手机在有来电呼入时,用户只需将手机正面朝下便能控制手机的情景模式自动切换为静音模式。通过该功能,用户在一些特定的场合,比如开会、上课等不适合播放来电铃声或者震动提示时,无需拒接来电,只需一个简单的翻转手机的动作便能快速方便的将手机情景模式切换成静音模式。
然而现有的手机翻转静音的方法通常通过重力传感器、方向传感器等感应用户翻转手机的动作以实现静音控制,其本质是通过获取手机的三维加速度值计算出用户是否做出翻转手机的动作,而这种方式很容易出现误判,比如手机随用户一起处于运动状态时,如用户坐火车、汽车等交通工具时,手机的三维加速度值受外界环境的制约,容易出现误判;又或者当手机摆放在有一定倾斜角度的支撑面上时,如用户在美术课或英语视频课时,其桌子均有30度以上的倾斜度,因为手机未能水平放置,用户翻转手机但手机无法识别出该翻转动作。这些情况下,用户虽然做出了翻转手机的动作,但却不能达到控制手机静音的效果,给用户带来的不便。
因此,现有技术还有待于改进和发展。
技术问题
本发明要解决的技术问题在于,针对现有技术的上述缺陷,提供一种手机翻转静音控制的方法及手机。
技术解决方案
本发明解决技术问题所采用的技术方案如下:
提供一种手机翻转静音控制的方法,其包括步骤:
当手机有来电时,检测所述手机的情景模式;如所述手机的情景模式为响铃模式,控制设置在所述手机的主操作界面所在面上的前置摄像头每隔一预定时间获取一次图像数据;
将所述图像数据传送给手机基带芯片;以及
使用所述手机基带芯片判断所述图像数据是否为全黑图像数据并将判断结果进行缓存,如当前图像数据为全黑图像数据且上一次获取的图像数据不是全黑图像数据,则将所述手机的情景模式切换为静音模式,并控制所述前置摄像头停止获取所述图像数据。
还提供一种手机翻转静音控制的方法,其包括步骤:
当手机有来电时,检测所述手机的情景模式,如所述手机的情景模式为响铃模式,控制设置在所述手机的主操作界面所在面上的前置摄像头每隔一预定时间获取一次图像数据;以及
判断所述图像数据是否为全黑图像数据并将判断结果进行缓存,如当前图像数据为全黑图像数据且上一次获取的图像数据不是全黑图像数据,则将所述手机的情景模式切换为静音模式,并控制所述前置摄像头停止获取所述图像数据。
还提供一种翻转静音的手机,其包括基带芯片、前置摄像头以及铃声输出模块,所述基带芯片还包括图像获取模块、全黑色判断模块、翻转判断模块以及铃声控制模块;其中,
所述前置摄像头设置在所述手机的主操作界面所在面,用于当所述手机有来电,且所述手机的情景模式处于响铃模式时,每隔一预定时间获取一次图像数据,并将所述图像数据传送给所述图像获取模块;
所述图像获取模块,用于当所述手机有来电,且所述手机的情景模式为响铃模式时,获取所述前置摄像头传送的所述图像数据;
所述全黑色判断模块,用于判断所述图像获取模块获取的所述图像数据是否为全黑图像数据并将判断结果进行缓存;
所述翻转判断模块,用于当所述全黑色判断模块判断出当前图像数据为全黑图像数据,且上一次获取图像数据不是全黑图像数据时,发送静音控制消息给所述铃声控制模块,同时触发所述基带芯片控制所述前置摄像头停止获取所述图像数据;
所述铃声控制模块,用于控制所述铃声输出模块输出不同模式的铃声。
有益效果
本发明所提供的一种手机翻转静音控制的方法及手机,使手机增加了新的功能,即当手机有来电时,手机自行检测情景模式,当为非静音模式时,通过手机前置摄像头实时获取图像数据,并将获取的图像数据传送给手机基带芯片,当判断出当前获取的图像数据是全黑图像数据且上一次获取的图像数据不是全黑图像数据时,则认为手机发生了一次翻转,手机自动将情景模式切换为静音模式。通过本发明所述的技术方案,当用户处于开会、上课等特定场合不适合来电响铃或者震动提示时,只需一个简单的翻转手机的动作就能方便、快速的将手机情景模式切换为静音模式,无需拒接来电就能快捷的使手机安静下来,尤其适合于当手机处于运动状态或位于斜面上的情况,且其结构简单,控制精度高,为用户提供了方便。
附图说明
图1是本发明一种手机翻转静音控制的方法的较佳实施例流程图。
图2是本发明一种手机翻转静音控制的方法的较佳实施例中判断一帧图像数据是否为全黑图像数据的流程图。
图3是本发明一种手机翻转静音控制的方法的具体应用实施流程图。
图4是本发明一种翻转静音控制的手机的较佳实施例的结构框图。
图5是本发明一种翻转静音控制的手机的较佳实施例的前置摄像头与图像获取模块的连接示意图。
图6是本发明一种翻转静音控制的手机的较佳实施例的全黑色判断模块的具体结构框图。
图7是本发明一种翻转静音控制的手机的较佳实施例的铃声控制模块的具体结构框图。
本发明的最佳实施方式
为使本发明的目的、技术方案及优点更加清楚、明确,以下参照附图并举实施例对本发明进一步详细说明。应当理解,此处所描述的具体实施例仅仅用以解释本发明,并不用于限定本发明。
本发明实施例提供一翻转静音的手机,可以用于实施本发明实施例的提供手机翻转静音控制的方法,具体在本实施例中,翻转静音的手机包括有存储器,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本发明实施例的手机翻转静音控制的方法。当然本发明实施例的手机翻转静音控制的方法也可用于其他的移动电子终端,其包括但不限于智能手机、平板电脑、电子书阅读器以及MP4(Moving Picture Experts Group Audio Layer IV,动态影像专家压缩标准音频层面4)播放器等等。
如图1所示。图1是本发明一种手机翻转静音控制的方法的较佳实施例流程图。所述方法包括步骤:
S110、当手机有来电时,手机自行检测其情景模式,当为非静音模式(如响铃模式)时,通过设置在手机主操作界面所在面的前置摄像头获取图像数据,并将获取的图像数据传送给手机基带芯片。其中,所述手机主操作界面所在的面是一个平整的平面,且前置摄像头设置在该平面。较佳的,所述手机的前置摄像头每隔一预设时间获取一次图像数据;所述预设时间可以是100ms、50ms等,该值可在手机出厂时设置好保存在手机系统中。如所述手机的前置摄像头每隔50ms获取一次图像数据,一次获取的图像数据可以为一帧图像数据,也可以多帧图像数据。
S120、判断所述图像数据是否为全黑图像数据,并将判断结果进行缓存;当判断出当前获取的图像数据是全黑图像数据时,检查缓存的上一次获取的图像数据是否为全黑图像数据,当当前获取的图像数据是全黑图像数据且其上一次获取的图像数据不是全黑图像数据时,则认为手机发生一次翻转动作,控制手机的情景模式切换为静音模式,并控制所述前置摄像头停止继续获取图像数据。
由于正常情况下手机为正面朝上放置的,翻转手机后手机正面向下与桌面等支撑面接触,此时安装在手机的主操作界面所在面(即手机正面)的前置摄像头拍摄到的图像数据必然为全黑的图像数据,而当手机放置于口袋或者包包里时,虽然手机获取的图像数据为全黑图像数据,当由于其上一次获取的图像数据也是全黑图像数据,即手机没有一个从非全黑的环境变为全黑的环境的动作,因此此时不会自动将手机的铃声切换为静音模式。采用本发明所述方式来识别手机是否已翻转以控制手机切换情景模式,不受手机所放置的支撑面及所在的环境加速度的限制,控制精度很高;同时通过比对前后两次获取的图像数据,也避免了当用户将手机放在口袋或者包里时,手机来电静音导致用户漏掉来电的情况。
另外,本发明实施例中,当手机有来电呼入后,手机基带芯片实时监测是否有挂断电话的信号,当监测到对方挂断电话时,则控制手机终止响铃,同时控制所述前置摄像头停止获取图像数据。该步骤可独立执行,不受上述翻转静音控制的实施步骤的影响。
较佳的,所述步骤S110具体包括:当手机有来电时,手机自行检测其情景模式,当为非静音模式时,控制手机的前置摄像头每隔一预设时间获取一次图像数据,且一次获取一帧图像数据;前置摄像头由帧同步信号触发将所述获取的当前帧的图像数据传送给基带芯片,且每收到一个帧同步信号,触发传送一帧图像数据。
进一步的,一帧图像由若干个像素组成,如一帧图像由CMAX个像素组成,因此所述判断图像数据是否为全黑图像数据包括:逐一判断所述图像数据的各个像素是否为黑色,本实施例根据基带芯片与前置摄像头之间传送图像数据的格式来判断所述图像的各个像素是否为黑色,包括两种情况:
情况一,当图像数据的传送格式为YUV时,此时传送的图像像素数据中包括Y、U、V三个表示像素色彩的变量,当一个像素数据的所述三个变量为Y=0、U=128、V=128时,则表示该像素为黑色。逐一判断所述图像数据的各像素是否满足Y=0、U=128、V=128,即逐一判断所述图像数据的各像素是否为黑色。当判断出所述图像数据包含的所有像素均为黑色时,则认为所述图像数据为全黑图像数据。
情况二、当所述图像数据的传送格式为RGB时,此时传送的图像像素数据中包括R、G、B三个表示像素色彩的变量,当一个像素数据的所述三个变量为R=0、G=0、B=0时,则表示所述像素为黑色。逐一判断所述图像数据的各像素是否满足R=0、G=0、B=0,即逐一判断所述图像数据的各像素是否为黑色。当判断出所述图像数据包含的所有像素均为黑色时,则认为所述图像数据为全黑图像数据。
较佳的,上述两种情况中,当检测到所述图像中的某一个像素不为黑色时,则直接判断所述图像数据不是全黑图像数据,无需再判断所述图像的其他像素是否为黑色,有利于节省大量内存,提高系统运行速度。
较佳地,以下举具体实施过程对上述全黑图像的判断作进一步解释,如图2所示,图2是本发明一种手机翻转静音控制的方法中判断一帧图像数据是否为全黑图像数据的流程图,若一帧图像由CMAX个像素组成,所述全黑判断具体包括如下步骤。
步骤301、前置摄像头收到一个帧同步信号,传送一帧图像数据给手机基带芯片,即前置摄像头收到一个帧同步信号,传送一帧图像的CMAX个像素数据给手机基带芯片。
步骤302、基带芯片初始化一个计数器C,初始值为1,进入步骤303。
步骤303、将计数器C的当前值与所述图像所包含的像素个数CMAX进行比对,检测计数器C的当前值是否小于等于CMAX,若是,则进入步骤304,否则进入步骤307。
步骤304、从当前帧图像数据中获取一个像素的数据,进入步骤305。
步骤305、判断获取的当前像素数据是否为黑色,具体判断方法如上述所述。若当前像素为黑色,则进入步骤306,否则,进入步骤308。
步骤306、计数器C加1,返回步骤303,继续判断其他像素数据是否为黑色。
步骤307、当所述图像数据中所有像素均为黑色时,判断所述图像数据为全黑图像数据。结束全黑图像数据判断的过程。
步骤308、当发现所述图像数据中某一个像素不为黑色时,直接判断所述图像不是全黑图像,不再对所述图像中其他剩余的像素进行判断。结束全黑图像数据判断的过程。
进一步地,以下举具体实施过程对本发明所述的一种手机翻转静音控制的方法作进一步解释,如图3所示,图3是本发明一种手机翻转静音控制的方法的具体实施流程图,具体包括如下步骤。
步骤001、手机有来电呼入,进入步骤21。
步骤21、手机监测其情景模式是否为非静音模式,若是静音模式,则直接跳转到步骤002。否则,进入步骤22。
步骤22、前置摄像头每隔一定时间拍摄一帧图像,并将拍摄到的该帧图像传送给手机基带芯片。
步骤23、手机基带芯片判断所述图像数据是否为全黑图像数据,若是,进入步骤24,否则返回步骤22。
步骤24、检查上一帧图像是否为非全黑图像数据,若是,则进入步骤25,否则返回步骤22。
步骤25、控制手机情景模式切换为静音模式,进入步骤002。
步骤002、控制手机前置摄像头停止继续拍摄图像,手机完成了翻转静音控制。
与此同时,手机基带芯片还实时监测是否有挂断来电的信号,因此本实施例中手机来电后翻转静音控制的过程中,即步骤001之后还同时进入如下步骤。
步骤001、手机有来电呼入,同时进入步骤31。
步骤31、手机基带芯片实时监测来电挂断的信号。
步骤32、是否监测到对方已挂断来电?当是时,进入步骤33,否则返回步骤31继续监测来电挂断信号。
步骤33、当监测到对方已挂断来电时,手机终止响铃,立即进入步骤002。
步骤002、前置摄像头停止拍摄图像。
由于步骤31~33是异步于上述步骤21~25执行的,因此无论是步骤21、22、23、24、25执行到哪个步骤,步骤31~33的执行均不受影响,且只要步骤32判断结果为真,即一旦监测到来电被挂断,则立即执行步骤33并进入步骤002,翻转静音的功能也随之关闭,即立即终止步骤21~25的执行。
基于上述实施例,本发明实施例还提供了一种翻转静音的手机,如图4所示,所述手机包括前置摄像头510、基带芯片520和铃声输出模块530,且所述基带芯片520还具体包括图像获取模块521、全黑色判断模块522、翻转判断模块523、铃声控制模块524和挂断检测模块525。
其中,所述前置摄像头510设置在手机主操作界面所在面,用于当手机来电,且手机处于非静音模式时,每隔一预设时间获取一帧图像数据,并将获取的该帧图像数据传送给基带芯片520。所述预设时间可以是100ms、50ms等,该值可在手机出厂时设置好保存在手机系统中,具体如上述实施例所述,不再赘述。
所述图像获取模块521,用于当手机有来电,且手机的情景模式为响铃模式时,获取前置摄像头510传送的图像数据;具体如上述实施例所述。
所述全黑色判断模块522,用于判断图像获取模块521接收到的图像数据是否为全黑图像数据,并将判断结果进行缓存;具体如上述实施例所述。
所述翻转判断模块523,用于当全黑色判断模块522判断出当前获取的图像数据为全黑图像数据时,检查上一次获取的图像数据的全黑色判断模块522判断结果是否不是全黑色图像数据,当上一次获取的图像数据不是全黑图像数据时,则判断手机发生了翻转动作,发送静音控制消息给所述铃声控制模块524;具体如上述实施例所述。
所述挂断监测模块525,用于监测挂断电话的信号,当监测到对方已挂断电话时,向所述铃声控制模块524发送终止铃声的消息,具体如上述实施例所述。
所述铃声控制模块524与所述铃声输出模块530相连接,用于收到所述静音控制消息后,控制所述铃声输出模块530输出静音,以及用于收到所述终止铃声的消息后,控制所述铃声输出模块530终止输出铃声。
进一步的,所述基带芯片520,还用于当所述翻转判断模块523判断出所述手机发生翻转动作时,或者所述挂断监测模块525监测到对方已挂断电话时,控制所述前置摄像头510停止继续拍摄图像(获取图像数据);具体如上述实施例所述。
进一步的,所述前置摄像头510与手机基带芯片的所述图像获取模块521的连接情况如图5所示,所述前置摄像头510的帧同步信号线CAMVS与所述图像获取模块521的帧同步信号线VSYNC相连接,前置摄像头510的数据信号线CAMD0~CAMD7分别与图像获取模块521的数据信号线DATA0~DATA7相连接。通过这种连接关系,当前置摄像头收到一个帧同步信号时传送一帧图像数据的具体过程为:当前置摄像头的所述帧同步信号线CAMVS从低电平变为高电平时,触发图像获取模块521开始接收一帧图像数据,所述一帧图像数据的CMAX个像素逐一通过前置摄像头的数据信号线CAMD0~CAMD7输出,由图像获取模块521的数据信号线DATA0~DATA7接收;当所述帧同步信号线CAMVS由高电平变为低电时,则通知图像获取模块521当前帧图像数据传送完毕,图像获取模块521的数据信号线DATA0~DATA7停止接收数据。
较佳的,如图6所示,所述全黑色判断模块522进一步包括:
第一像素判断单元201,用于当图像数据传送格式为YUV时,判断所述图像数据的各像素是否满足Y=0、U=128、V=128;若满足,则判断所述像素为黑色。
第二像素判断单元202,用于当图片数据传送格式为RGB时,判断所述图像数据的各像素是否满足R=0、G=0、B=0,若满足,则判断所述像素为黑色。
第一图像判断单元203,用于当所述图像数据包含的所有像素均为黑色时,判断所述图像数据为全黑图像数据。
第二图像判断单元204,用于当检测到图像数据某一个像素不为黑色时,判断所述图像数据不是全黑图像数据。
较佳的,如图7所示,所述铃声控制模块524进一步包括:
静音控制单元401,用于收到所述静音控制消息后,控制所述铃声输出模块530输出静音;
终止铃声单元402,用于当所述挂断监测模块521监测到对方已挂断电话时,控制铃声输出模块530终止铃声。
进一步的,本发明实施例所述的手机,其主操作界面所在面是一个平整的平面,所述前置摄像头设置在该平面上。
综上所述,本发明所述的一种手机翻转静音的控制方法及手机,使手机增加了新的功能,即当手机有来电时,手机自行检测情景模式,当为非静音模式时,通过手机前置摄像头实时获取图像数据,并将获取的图像数据传送给手机基带芯片,当判断出当前获取的所述图像数据是全黑图像数据且上一次获取的图像数据不是全黑图像数据时,认为手机发生翻转,自动将手机的情景模式切换为静音模式。通过本发明所述的技术方案,当用户处于开会、上课等特定场合不适合来电响铃或者震动提示时,只需一个简单的翻转手机的动作就能方便、快速的将手机情景模式切换为静音模式,无需拒接来电就能快捷的使手机安静下来,尤其适合于当手机处于运动状态或位于斜面上的情况实现手机翻转静音的功能,且其结构简单,翻转静音的控制精度高,为用户提供了方便。
本领域普通技术人员可以理解实现上述实施例方法中的全部或部分流程,是可以通过计算机程序来指令相关的硬件来完成,所述的程序可存储于一计算机可读取存储介质中,该程序在执行时,可包括如上述各方法的实施例的流程。其中,所述的存储介质可为磁碟、光盘、只读存储记忆体(Read-Only Memory,ROM)或随机存储记忆体(Random Access Memory,RAM)等。
应当理解的是,本发明的应用不限于上述的举例,对本领域普通技术人员来说,可以根据上述说明加以改进或变换,例如可将其应用到其他移动终端上,所有这些改进和变换都应属于本发明所附权利要求的保护范围。
本发明的实施方式
工业实用性
序列表自由内容

Claims (19)

  1. 一种手机翻转静音控制的方法,其包括步骤:
    当手机有来电时,检测所述手机的情景模式;
    如所述手机的情景模式为响铃模式,控制设置在所述手机的主操作界面所在面上的前置摄像头每隔一预定时间获取一次图像数据;
    将所述图像数据传送给手机基带芯片;以及
    使用所述手机基带芯片判断所述图像数据是否为全黑图像数据并将判断结果进行缓存,如当前图像数据为全黑图像数据且上一次获取的图像数据不是全黑图像数据,则将所述手机的情景模式切换为静音模式,并控制所述前置摄像头停止获取所述图像数据。
  2. 根据权利要求1所述的手机翻转静音控制的方法,其还包括步骤:
    当监测到电话挂断时,控制所述手机终止响铃,并控制所述前置摄像头停止获取所述图像数据。
  3. 根据权利要求1所述的手机翻转静音控制的方法,其中所述将所述图像数据传送给手机基带芯片的步骤包括:
    使用所述前置摄像头的帧同步信号触发所述前置摄像头将所述图像数据传送给手机基带芯片。
  4. 根据权利要求3所述的手机翻转静音控制的方法,其中一个所述帧同步信号触发所述前置摄像头传送一帧所述图像数据。
  5. 据权利要求1所述的手机翻转静音控制的方法,其中所述判断所述图像数据是否为全黑图像数据的步骤包括:
    判断所述图像数据中每个像素是否为黑色;且如检测到有所述像素中的其中一个不为黑色,则判断所述图像数据不是所述全黑图像数据。
  6. 根据权利要求5所述的手机翻转静音控制的方法,其中所述判断所述图像数据是否为全黑图像数据的步骤包括:
    如所述图像数据的传送格式为YUV时,则逐一判断所述图像数据的各像素是否满足Y=0、U=128、V=128;若满足,则判断所述像素为黑色;
    如所述图像数据的传送格式为RGB时,则逐一判断所述图像数据的各像素是否满足R=0、G=0、B=0,若满足,则判断所述像素为黑色;以及
    如所述图像数据包含的所有像素均为黑色时,则判断所述图像数据为所述全黑图像数据。
  7. 一种手机翻转静音控制的方法,其包括步骤:
    当手机有来电时,检测所述手机的情景模式,如所述手机的情景模式为响铃模式,控制设置在所述手机的主操作界面所在面上的前置摄像头每隔一预定时间获取一次图像数据;以及
    判断所述图像数据是否为全黑图像数据并将判断结果进行缓存,如当前图像数据为全黑图像数据且上一次获取的图像数据不是全黑图像数据,则将所述手机的情景模式切换为静音模式,并控制所述前置摄像头停止获取所述图像数据。
  8. 根据权利要求7所述手机翻转静音控制的方法,其还包括步骤:
    当监测到电话挂断时,控制所述手机终止响铃,并控制所述前置摄像头停止获取所述图像数据。
  9. 根据权利要求7所述手机翻转静音控制的方法,其中在所述当手机有来电时,检测所述手机的情景模式,如所述手机的情景模式为响铃模式,控制设置在所述手机的主操作界面所在面上的前置摄像头每隔一预定时间获取一次图像数据的步骤之后,所述判断所述图像数据是否为全黑图像数据并将判断结果进行缓存,如当前图像数据为全黑图像数据且上一次获取的图像数据不是全黑图像数据,则将所述手机的情景模式切换为静音模式,并控制所述前置摄像头停止获取所述图像数据的步骤之前还包括步骤:
    使用所述前置摄像头的帧同步信号触发所述前置摄像头将所述图像数据传送给手机基带芯片。
  10. 根据权利要求9所述手机翻转静音控制的方法,其中一个所述帧同步信号触发所述前置摄像头传送一帧所述图像数据。
  11. 根据权利要求7所述手机翻转静音控制的方法,其中所述判断所述图像数据是否为全黑图像数据的步骤包括:
    判断所述图像数据中每个像素是否为黑色;且如检测到有所述像素中的其中一个不为黑色,则判断所述图像数据不是全黑图像数据。
  12. 根据权利要求11所述手机翻转静音控制的方法,其中所述判断所述图像数据是否为全黑图像数据的步骤包括:
    如所述图像数据的传送格式为YUV时,则判断所述图像数据的各像素是否满足Y=0、U=128、V=128;若满足则判断所述像素为黑色;
    如所述图像数据的传送格式为RGB时,则判断所述图像数据的各像素是否满足R=0、G=0、B=0,若满足则判断所述像素为黑色;以及
    如所述图像数据包含的所有像素均为黑色时,则判断所述图像数据为所述全黑图像数据。
  13. 一种翻转静音的手机,其包括:
    基带芯片,包括图像获取模块、全黑色判断模块、翻转判断模块以及铃声控制模块;
    前置摄像头,设置在所述手机的主操作界面所在面,用于当所述手机有来电,且所述手机的情景模式处于响铃模式时,每隔一预定时间获取一次图像数据,并将所述图像数据传送给所述图像获取模块;以及
    铃声输出模块;
    其中,所述图像获取模块,用于当所述手机有来电,且所述手机的情景模式为响铃模式时,获取所述前置摄像头传送的所述图像数据;
    其中,所述全黑色判断模块,用于判断所述图像获取模块获取的所述图像数据是否为全黑图像数据并将判断结果进行缓存;
    其中,所述翻转判断模块,用于当所述全黑色判断模块判断出当前图像数据为全黑图像数据,且上一次获取图像数据不是全黑图像数据时,发送静音控制消息给所述铃声控制模块,同时触发所述基带芯片控制所述前置摄像头停止获取所述图像数据;
    其中,所述铃声控制模块,用于控制所述铃声输出模块输出不同模式的铃声。
  14. 根据权利要求13所述的翻转静音的手机,其中所述基带芯片还包括:
    挂断监测模块,用于监测到电话挂断时,发送终止铃声的消息给所述铃声控制模块,同时还触发所述基带芯片控制所述前置摄像头停止获取所述图像数据。
  15. 根据权利要求13所述的翻转静音的手机,其中使用所述前置摄像头的帧同步信号触发所述前置摄像头将所述图像数据传送给所述图像获取模块。
  16. 根据权利要求15所述的翻转静音的手机,其中一个所述帧同步信号触发所述前置摄像头传送一帧所述图像数据。
  17. 根据权利要求13所述的翻转静音的手机,其中所述全黑色判断模块用于判断所述图像数据中每个像素是否为黑色;且如检测到有所述像素中的其中一个不为黑色,则判断所述图像数据不是全黑图像数据。
  18. 根据权利要求17所述的翻转静音的手机,其中所述全黑色判断模块包括:
    第一像素判断单元,用于当图片数据传送格式为YUV时,判断所述图像数据的各像素是否满足Y=0、U=128、V=128;若满足,则判断所述像素为黑色;
    第二像素判断单元,用于当图片数据传送格式为RGB时,判断所述图像数据的各像素是否满足R=0、G=0、B=0,若满足,则判断所述像素为黑色;以及
    第一图像判断单元,用于当所述图像数据包含的所有像素均为黑色时,则判断所述图像数据为所述全黑图像数据;
    第二图像判断单元,用于当所述图像数据有一个像素不为黑色时,则判断所述图像数据不是所述全黑图像数据。
  19. 根据权利要求14所述的手机,其中所述铃声控制模块包括:
    静音控制单元,用于当收到所述静音控制消息时,控制所述铃声输出模块输出静音;以及
    终止铃声单元,用于收到所述终止铃声的消息时,控制所述铃声输出模块终止铃声。
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