WO2017128676A1 - 应用程序的启动方法、启动装置和终端 - Google Patents

应用程序的启动方法、启动装置和终端 Download PDF

Info

Publication number
WO2017128676A1
WO2017128676A1 PCT/CN2016/092482 CN2016092482W WO2017128676A1 WO 2017128676 A1 WO2017128676 A1 WO 2017128676A1 CN 2016092482 W CN2016092482 W CN 2016092482W WO 2017128676 A1 WO2017128676 A1 WO 2017128676A1
Authority
WO
WIPO (PCT)
Prior art keywords
startup
application
level
mode
parameter
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Ceased
Application number
PCT/CN2016/092482
Other languages
English (en)
French (fr)
Inventor
董黎晨
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Yulong Computer Telecommunication Scientific Shenzhen Co Ltd
Original Assignee
Yulong Computer Telecommunication Scientific Shenzhen Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Yulong Computer Telecommunication Scientific Shenzhen Co Ltd filed Critical Yulong Computer Telecommunication Scientific Shenzhen Co Ltd
Publication of WO2017128676A1 publication Critical patent/WO2017128676A1/zh
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

Links

Images

Classifications

    • GPHYSICS
    • G06COMPUTING OR CALCULATING; COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F9/00Arrangements for program control, e.g. control units
    • G06F9/06Arrangements for program control, e.g. control units using stored programs, i.e. using an internal store of processing equipment to receive or retain programs
    • G06F9/44Arrangements for executing specific programs
    • G06F9/445Program loading or initiating
    • GPHYSICS
    • G06COMPUTING OR CALCULATING; COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F9/00Arrangements for program control, e.g. control units
    • G06F9/06Arrangements for program control, e.g. control units using stored programs, i.e. using an internal store of processing equipment to receive or retain programs
    • G06F9/44Arrangements for executing specific programs
    • G06F9/445Program loading or initiating
    • G06F9/44505Configuring for program initiating, e.g. using registry, configuration files
    • GPHYSICS
    • G06COMPUTING OR CALCULATING; COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F9/00Arrangements for program control, e.g. control units
    • G06F9/06Arrangements for program control, e.g. control units using stored programs, i.e. using an internal store of processing equipment to receive or retain programs
    • G06F9/44Arrangements for executing specific programs
    • G06F9/451Execution arrangements for user interfaces

Definitions

  • the present application relates to the field of terminal technologies, for example, to a method for starting an application, an apparatus for starting an application, and a terminal.
  • the present application proposes a new technical solution.
  • the startup speed of the application can be more consistent with the needs of the user, thereby improving the user experience.
  • a first aspect of the present application provides a method for starting an application, comprising: detecting an activation manner of the application when the application is started; and determining, according to the startup manner, a processor that starts the application Operating frequency and causing the processor to launch the application at the operating frequency.
  • the processor by detecting the startup mode of the application, and determining the operating frequency of the processor (CPU, Central Processing Unit) that starts the application according to the startup mode, the processor starts the application at the working frequency corresponding to the startup mode. .
  • the icon of the application can be touched to cause the processor to launch the application at a higher operating frequency.
  • the program so that the application is launched faster, and when the user wants to start the application slower or at a normal speed, the application can be started by the eyeball startup mode at a lower operating frequency. This makes the launch of the application slower. Therefore, in the above technical solution, by controlling the operating frequency of the processor that starts the application, the startup speed of the application can be made more in line with the needs of the user, thereby improving the user experience.
  • determining an operating frequency of the processor that starts the application according to the startup manner including: determining, according to the startup manner, a startup parameter corresponding to the startup mode; The parameter determines a current launch level; and determines the operating frequency corresponding to the current launch level based on the current launch level.
  • the startup parameter corresponding to the startup mode may be determined, thereby determining the operating frequency of the processor according to the current startup level corresponding to the startup parameter. For example, when it is determined that the startup mode is the touch activation mode, and the startup parameter corresponding to the touch activation mode is the touch pressure value, the operating frequency of the processor may be determined according to the current startup level corresponding to the touch pressure value, and thus, The operating frequency of the processor can be determined more accurately.
  • determining, according to the startup parameter, a current startup level including: searching, in a plurality of startup levels, a startup level corresponding to the startup parameter; and searching for the found The startup level is used as the current startup level.
  • the current startup level can be determined more conveniently and quickly, thereby determining the working of the processor according to the current startup level. frequency.
  • the startup method of the application further includes: using the preset startup level as The current startup level; or prompting to select a startup level as the current activation level.
  • the preset startup level may be used as the current startup level, and the user is prevented from inputting the startup parameter again, thereby avoiding cumbersome operations.
  • the user may be prompted to select a current startup level to determine the operating frequency of the processor according to the current startup level selected by the user, so that the user has a better experience.
  • the method for starting the application further includes: setting a correspondence between the startup parameter and the startup level according to the received setting instruction, and setting the startup level and Correspondence between the operating frequencies.
  • the startup level can be determined according to the startup parameter by setting a correspondence between the startup parameter and the startup level.
  • the operating frequency of the processor can be determined according to the startup level.
  • the startup mode includes: a touch activation mode, a gesture activation mode, an eyeball activation mode, and a biometric activation mode, where the biometric activation mode includes: a face activation mode.
  • the activation mode corresponding to the touch activation mode includes one or a combination of the following: a touch duration, a touch pressure value, a touch area, and the application.
  • the running parameter corresponding to the gesture starting manner includes one or a combination of the following: a gesture stay time, a location of the gesture operation, and historical running data of the application;
  • the startup parameter corresponding to the eyeball startup mode includes One or a combination of the following: a time of gazing at the application, a frequency of blinking, and historical running data of the application;
  • the starting parameter corresponding to the face starting mode includes one or a combination of the following: a face and a The distance of the camera of the terminal and the historical running data of the application;
  • the startup parameter corresponding to the mode includes one or a combination of the following: a volume of the sound, a speech rate of the sound, a frequency of the sound, and historical operation data of the application;
  • the startup parameter corresponding to the fingerprint activation mode includes the following One or a combination thereof: the area of the fingerprint and the historical running data of the application; and the starting parameter corresponding to the iris starting mode includes one or a combination of the following: the size of the iris and the historical running
  • the startup mode includes, but is not limited to, a touch activation mode, a gesture activation mode, an eyeball activation mode, and a biometric activation mode
  • the biometric activation mode includes: a face startup mode, a voiceprint activation mode, and a fingerprint. Start mode and iris start mode.
  • different startup modes correspond to different startup parameters. In this way, the startup mode can be selected according to the user's needs, and different touch parameters can be set, thereby improving the user experience.
  • a plurality of startup parameters may also be combined to implement the technical solution of the present application, thereby increasing sensitivity and accuracy by a combination of a plurality of startup parameters.
  • the activation mode is a biometric activation mode
  • the biometric activation mode includes: a face activation mode, a voiceprint activation mode, a fingerprint activation mode, and an iris activation mode.
  • the biometric activation mode when the startup mode is the biometric activation mode, includes, but is not limited to, a face startup mode, a voiceprint activation mode, a fingerprint activation mode, and an iris activation mode.
  • the iris activation mode when used as the biometric activation mode, the detected current iris of the user is matched with the preset iris, and when the current iris of the user matches the preset iris, the operating frequency of the processor corresponding to the iris activation mode is taken as The operating frequency of the processor that launches the application
  • a second aspect of the present application provides an apparatus for starting an application, comprising: a detecting unit configured to detect a startup mode of the application when an application is started; and a first determining unit configured to The boot mode determines an operating frequency of a processor that launches the application and causes the processor to launch the application at the operating frequency.
  • the processor by detecting the startup mode of the application, and determining the operating frequency of the processor (CPU, Central Processing Unit) that starts the application according to the startup mode, the processor starts the application at the working frequency corresponding to the startup mode.
  • the icon of the application can be touched to cause the processor to launch the application at a higher operating frequency, thereby enabling the application to be launched faster, and when the user wants When the application is slower or starts at normal speed, the application can be launched at a lower operating frequency by eyeball activation, making the application slower. Therefore, in the above technical solution, by controlling the operating frequency of the processor that starts the application, the startup speed of the application can be made more in line with the needs of the user, thereby improving the user experience.
  • the first determining unit includes: a first determining subunit, configured to determine a starting parameter corresponding to the starting manner according to the starting manner; and the second determining subunit is set to Determining a current startup level according to the startup parameter; and a third determining subunit, configured to determine the operating frequency corresponding to the current startup level according to the current startup level.
  • the startup parameter corresponding to the startup mode may be determined, thereby determining the operating frequency of the processor according to the current startup level corresponding to the startup parameter. For example, when it is determined that the startup mode is the startup mode, and the startup parameter corresponding to the startup mode is the touch pressure value, the operating frequency of the processor may be determined according to the current startup level corresponding to the touch pressure value, so that the activation frequency may be more accurately Determine the operating frequency of the processor.
  • the second determining subunit is configured to: search for a startup level corresponding to the startup parameter in a plurality of startup levels; and use the found startup level as a location The current startup level.
  • the current startup level can be determined more conveniently and quickly, thereby The operating frequency of the processor is determined based on the current startup level.
  • the startup device of the application further includes: a second determining unit, configured to: if the startup level corresponding to the startup parameter is not found in the multiple startup levels When the preset startup level is used as the current startup level, or the prompting unit is configured to prompt the user to select a startup if the startup level corresponding to the startup parameter is not found in the multiple startup levels.
  • the level is the current startup level.
  • the preset startup level may be used as the current startup level, and the user is prevented from inputting the startup parameter again, thereby avoiding cumbersome operations.
  • the user may be prompted to select a current startup level to determine the operating frequency of the processor according to the current startup level selected by the user, so that the user has a better experience.
  • the startup device of the application further includes: a setting unit configured to set a correspondence between the startup parameter and the startup level according to the received setting instruction, and set Correspondence between the startup level and the operating frequency.
  • the startup level can be determined according to the startup parameter by setting a correspondence between the startup parameter and the startup level.
  • the operating frequency of the processor can be determined according to the startup level.
  • the startup mode includes: a touch activation mode, a gesture activation mode, an eyeball activation mode, and a biometric activation mode, where the biometric activation mode includes: a face activation mode.
  • the activation mode corresponding to the touch activation mode includes one or a combination of the following: a touch duration, a touch pressure value, a touch area, and the application.
  • the startup parameter corresponding to the gesture activation mode includes one or a combination of the following: a gesture stay time, a location of the gesture operation, and historical operation data of the application; and a startup parameter corresponding to the eyeball startup mode Include one of the following or a combination thereof: the time of gazing at the application, the frequency of blinking, and the historical running data of the application; the starting parameter corresponding to the face starting mode includes one or a combination of the following: face and The distance of the camera of the terminal and the historical running data of the application; the voiceprint
  • the startup parameter corresponding to the dynamic mode includes one or a combination of the following: a volume of the sound, a speech rate of the sound, a frequency of the sound, and historical operation data of the application; and the startup parameter corresponding to the fingerprint activation mode includes One or a combination of the following: an area of the fingerprint and historical running data of the application; and the starting parameter corresponding to the iris starting mode includes one or a combination of the following: the size of the iris and
  • the startup mode includes, but is not limited to, a touch activation mode, a gesture activation mode, an eyeball activation mode, and a biometric activation mode
  • the biometric activation mode includes: a face startup mode, a voiceprint activation mode, and a fingerprint. Start mode and iris start mode.
  • different startup modes correspond to different startup parameters. In this way, the startup mode can be selected according to the user's needs, and different touch parameters can be set, thereby improving the user experience.
  • a plurality of startup parameters may also be combined to implement the technical solution of the present application, thereby increasing sensitivity and accuracy by a combination of a plurality of startup parameters.
  • the third aspect of the present application provides a terminal, comprising the activation device of the application program according to any one of the above aspects, and the terminal has the activation device of the application program according to any one of the above technical solutions. The same technical effect.
  • the startup speed of the application can be made more in line with the needs of the user, thereby improving the user experience.
  • a fourth aspect of the present application is directed to a non-transitory computer readable storage medium storing computer executable instructions arranged to perform an activation method of an application of any of the above.
  • FIG. 1 is a schematic flow chart showing a method for starting an application of an embodiment of the present application
  • FIG. 2 is a schematic structural diagram 1 of an apparatus for starting an application of an embodiment of the present application
  • FIG. 3 is a schematic structural diagram 2 of an apparatus for starting an application of an embodiment of the present application.
  • FIG. 4 is a schematic structural diagram of a terminal according to an embodiment of the present application.
  • FIG. 5 is a schematic diagram showing the hardware structure of a terminal for executing a startup method of an application according to an embodiment of the present application.
  • FIG. 1 is a flow chart showing a method for starting an application of an embodiment of the present application.
  • FIG. 1 a method for starting an application of an embodiment of the present application.
  • step 110 when the application is started, detecting a startup mode of the application
  • step 120 an operating frequency of a processor that launches the application is determined according to the startup mode, and the processor starts the application at the operating frequency.
  • the processor by detecting the startup mode of the application, and determining the operating frequency of the processor (CPU, Central Processing Unit) that starts the application according to the startup mode, the processor starts the application at the working frequency corresponding to the startup mode.
  • the icon of the application can be touched to cause the processor to launch the application at a higher operating frequency, thereby enabling the application to be launched faster, and when the user wants When the application is slower or starts at normal speed, the application can be launched at a lower operating frequency by eyeball activation, making the application slower. Therefore, through the above technical solution, by controlling the operating frequency of the processor that starts the application, the startup speed of the application can be made more in line with the needs of the user, thereby improving the user experience.
  • the step 120 includes: determining a startup parameter corresponding to the startup mode according to the startup manner; determining a current startup level according to the startup parameter; and determining a location according to the current startup level.
  • the operating frequency corresponding to the current startup level is a value that corresponds to the current startup level.
  • the startup parameter corresponding to the startup mode may be determined, thereby determining the operating frequency of the processor according to the current startup level corresponding to the startup parameter. For example, if the touch duration is 1 to 3 seconds, the corresponding startup level is 1 level, and the touch duration is 2 seconds to 5 seconds, and the corresponding startup level is 2, when the startup mode is detected as the touch activation mode. And determining that the start parameter corresponding to the touch activation mode is the touch duration, if the touch duration is 4.3 seconds, determining that the current startup level is level 2, and determining according to the current startup level (ie, level 2) that the current startup level is Corresponding operating frequency, so that the operating frequency of the processor can be determined more accurately.
  • determining the current startup level according to the startup parameter including: searching for a startup level corresponding to the startup parameter among multiple startup levels; The startup level found is taken as the current startup level.
  • the startup level corresponding to the startup parameter found in the multiple startup levels is taken as the current startup level, for example, the multiple startup levels are 0, 1, and 2, respectively, each of the startup levels.
  • the pressure value corresponding to the 0 level is X1 to X2
  • the pressure value corresponding to the first level is X3 to X4
  • the corresponding pressure value of level 2 is X5 to X6
  • the activation level corresponding to the pressure value Y1 can be known.
  • level 1 you can use level 1 as the current startup level.
  • the gesture activation mode is used as the startup mode, and the startup parameter corresponding to the gesture activation mode is the gesture dwell time
  • level 0 corresponding
  • the gesture pause time is 1 second to 3 seconds
  • the level 1 corresponding gesture stay time is 4 seconds to 6 seconds
  • the level 2 corresponding gesture stay time is 7 seconds to 9 seconds
  • the current startup level is level 2. Therefore, with the above technical solution, the current startup level can be determined conveniently and quickly.
  • the method further includes: using a preset startup level as the current startup Level; or prompt the user to select a startup level as the current startup level.
  • the preset startup level may be used as the current startup level, and the user is prevented from inputting the startup parameter again, thereby avoiding cumbersome operations.
  • the user may be prompted to select a current startup level to determine the operating frequency of the processor according to the current startup level selected by the user, so that the user has a better experience.
  • the method for starting the application further includes: setting a correspondence between the startup parameter and the startup level according to the received setting instruction, and setting the startup level and Correspondence between the operating frequencies.
  • the startup level can be determined according to the startup parameter by setting a correspondence between the startup parameter and the startup level.
  • the operating frequency of the processor can be determined according to the startup level.
  • the startup manner includes: a touch activation mode, a gesture activation mode, an eyeball activation mode, and a biometric activation mode
  • the biometric activation mode includes: a face activation mode, a voiceprint activation mode, a fingerprint activation mode, and an iris activation mode
  • the startup parameters corresponding to the touch activation mode include One or a combination of the following: a touch duration, a touch pressure value, a touch area, and historical operation data of the application
  • the startup parameter corresponding to the gesture activation mode includes one or a combination of the following: a gesture stay time, a location of the gesture operation and historical operation data of the application
  • the startup parameter corresponding to the eyeball activation mode includes one or a combination of: time to gaze the application, frequency of blinking, and historical operation of the application Data
  • the startup parameter corresponding to the face startup mode includes one or a combination of the following: a distance between a face and a camera of the terminal and historical operation data of
  • the startup mode includes, but is not limited to, a touch activation mode, a gesture activation mode, an eyeball activation mode, and a biometric activation mode
  • the biometric activation mode includes: a face startup mode, a voiceprint activation mode, and a fingerprint.
  • Start mode and iris start mode For example, when the startup mode of the application is the touch activation mode, it is determined that the operating frequency of the processor is the highest. When the startup mode of the application is the gesture startup mode, it is determined that the operating frequency of the processor is high, when the application is started. When the mode is the eyeball startup mode, it is determined that the operating frequency of the processor is normal.
  • the startup mode of the application is the face startup mode
  • the working frequency of the device different startup modes correspond to different startup parameters.
  • the frequency of the processor may be determined according to different startup parameters. For example, when the startup mode is determined to be touch startup, the touch area is used as a startup parameter. The larger the touch area is, the higher the operating frequency of the corresponding processor is, that is, the operating frequency of the processor can be controlled by controlling the size of the touch area, and the historical running data of the application can also be used as a startup parameter.
  • the application detects that the application has occupied 10% of the terminal memory when it was last run (that is, the historical running data is the amount of terminal memory occupied by the application when it was last run), which means that the application is occupied.
  • Larger storage space automatically adjusts the processor's operating frequency to a high operating frequency, allowing the application to be launched quickly. For example, when determining that the startup mode is the gesture activation mode, the location of the gesture operation is used as the startup parameter, and the position of the gesture operation corresponding to the position of the gesture operation at the top of the screen is higher, and the position of the gesture operation at the bottom of the screen corresponds to The processor's low operating frequency controls the frequency of the processor by controlling the position of the gesture operation.
  • the frequency of the blink can be used as a starting parameter, that is, the application is initiated through the eyeball.
  • the frequency of the blink is detected to determine the operating frequency of the processor according to the speed of the blink.
  • the iris activation mode ie, the biometric activation mode
  • the current iris of the user is matched with the preset iris, and the application is started when the current iris matches the preset iris, and
  • the startup parameter is obtained to start the application according to the operating frequency of the processor corresponding to the startup parameter. If the acquired iris is large (starting parameter), the application is started at a higher working frequency, if obtained. If the iris is small, the application is launched at a lower operating frequency.
  • the startup mode can be selected according to the user's needs, and different startup parameters can be set to improve the user experience.
  • a plurality of startup parameters may also be combined to implement the technical solution of the present application, thereby increasing sensitivity and accuracy by a combination of a plurality of startup parameters.
  • the touch pressure value and the historical running data of the application are used as starting parameters, that is, when the application is started, the touch pressure value and the historical running data of the application are detected, thereby the touch pressure value and the application.
  • the historical running data determines the current starting level together, or, when the application is started, the current starting level can also be determined by detecting the touch pressure value, the touch area, and the historical running data of the application.
  • FIG. 2 is a schematic structural diagram of an apparatus for starting an application of an embodiment of the present application.
  • the application device 200 of the embodiment of the present application includes: a detecting unit 202 and a first determining unit 204, wherein the detecting unit 202 is configured to detect the application when the application is started. a startup mode of the application; the first determining unit 204 is configured to determine an operating frequency of a processor that starts the application according to the startup manner, and enable the processor to start the application at the operating frequency .
  • the processor by detecting the startup mode of the application, and determining the operating frequency of the processor (CPU, Central Processing Unit) that starts the application according to the startup mode, the processor starts the application at the working frequency corresponding to the startup mode.
  • the icon of the application can be touched to cause the processor to launch the application at a higher operating frequency, thereby enabling the application to be launched faster, and when the user wants When the application is slower or starts at normal speed, the processor can be activated at a lower operating frequency by eyeball activation. Launch the application, making it slower to launch the application. Therefore, through the above technical solution, by controlling the operating frequency of the processor that starts the application, the startup speed of the application can be made more in line with the needs of the user, thereby improving the user experience.
  • the first determining unit 204 includes: a first determining subunit 2042, a second determining subunit 2044, and a third determining subunit 2046.
  • the first determining subunit 2042 is configured to determine a startup parameter corresponding to the startup mode according to the startup manner;
  • the second determination subunit 2044 is configured to determine a current startup level according to the startup parameter;
  • a third determination Subunit 2046 configured to determine the operating frequency corresponding to the current activation level based on the current activation level.
  • the startup parameter corresponding to the startup mode may be determined, so that the operating frequency of the processor is determined according to the current startup level corresponding to the startup parameter. For example, if the touch duration is 1 to 3 seconds, the corresponding startup level is 1 level, and the touch duration is 2 seconds to 5 seconds, and the corresponding startup level is 2, when the startup mode is detected as the touch activation mode. And determining that the start parameter corresponding to the touch activation mode is the touch duration, if the touch duration is 4.3 seconds, determining that the current startup level is level 2, and determining according to the current startup level (ie, level 2) that the current startup level is Corresponding operating frequency, so that the operating frequency of the processor can be determined more accurately.
  • the second determining subunit 2044 is configured to search for a startup level corresponding to the startup parameter among a plurality of startup levels; and use the found startup level as a location The current startup level.
  • the startup level corresponding to the startup parameter found in the multiple startup levels is taken as the current startup level, for example, the multiple startup levels are 0, 1, and 2, respectively, each of the startup levels.
  • the pressure value corresponding to the 0 level is X1 to X2
  • the pressure value corresponding to the first level is X3 to X4
  • the corresponding pressure value of level 2 is X5 to X6
  • the activation level corresponding to the pressure value Y1 can be known.
  • level 1 you can use level 1 as the current startup level.
  • the gesture activation mode is used as the startup mode, and the startup parameter corresponding to the gesture activation mode is the gesture dwell time
  • level 0 corresponding
  • the gesture pause time is 1 second to 3 seconds
  • the level 1 corresponding gesture stay time is 4 seconds to 6 seconds
  • the level 2 corresponding gesture stay time is 7 seconds to 9 seconds
  • the gesture stay time is 8 seconds
  • the current startup level can be determined conveniently and quickly.
  • the application startup device 200 further includes: a second determining unit 206, configured to not find the location in the multiple startup levels.
  • the startup level corresponding to the startup parameter is used, the preset startup level is used as the current startup level; or the prompting unit 208 is configured to not find the corresponding to the startup parameter in the multiple startup levels.
  • the startup level is described, the user is prompted to select a startup level as the current startup level.
  • the preset startup level may be used as the current startup level, and the user is prevented from inputting the startup parameter again, thereby avoiding cumbersome operations.
  • the user may be prompted to select a current startup level to determine the operating frequency of the processor according to the current startup level selected by the user, so that the user has a better experience.
  • the startup device 200 of the application further includes: a setting unit 210, configured to set a correspondence between the startup parameter and the startup level according to the received setting instruction, And setting a correspondence between the startup level and the operating frequency.
  • the startup level can be determined according to the startup parameter by setting a correspondence between the startup parameter and the startup level.
  • the operating frequency of the processor can be determined according to the startup level.
  • the startup mode includes: a touch activation mode, a gesture activation mode, an eyeball activation mode, and a biometric activation mode, where the biometric activation mode includes: a face activation mode.
  • the activation mode corresponding to the touch activation mode includes one or a combination of the following: a touch duration, a touch pressure value, a touch area, and the application.
  • the startup parameter corresponding to the gesture activation mode includes one or a combination of the following: a gesture stay time, a location of the gesture operation, and historical operation data of the application; and a startup parameter corresponding to the eyeball startup mode Include one of the following or a combination thereof: the time of gazing at the application, the frequency of blinking, and the historical running data of the application; the starting parameter corresponding to the face starting mode includes one or a combination of the following: face and The distance of the camera of the terminal and the historical running data of the application; the voiceprint
  • the startup parameter corresponding to the dynamic mode includes one or a combination of the following: a volume of the sound, a speech rate of the sound, a frequency of the sound, and historical operation data of the application; and the startup parameter corresponding to the fingerprint activation mode includes One or a combination of the following: an area of the fingerprint and historical running data of the application; and the starting parameter corresponding to the iris starting mode includes one or a combination of the following: the size of the iris and
  • the startup mode includes, but is not limited to, a touch activation mode, a gesture activation mode, an eyeball activation mode, and a biometric activation mode
  • the biometric activation mode includes: a face startup mode, a voiceprint activation mode, and a fingerprint.
  • Start mode and iris start mode For example, when the startup mode of the application is the touch activation mode, it is determined that the operating frequency of the processor is the highest. When the startup mode of the application is the gesture startup mode, it is determined that the operating frequency of the processor is high, when the application is started. When the mode is the eyeball startup mode, it is determined that the operating frequency of the processor is normal.
  • the startup mode of the application is the face startup mode
  • the working frequency of the device different startup modes correspond to different startup parameters.
  • the frequency of the processor may be determined according to different startup parameters. For example, when the startup mode is determined to be touch startup, the touch area is used as a startup parameter. The larger the touch area is, the higher the operating frequency of the corresponding processor is, that is, the operating frequency of the processor can be controlled by controlling the size of the touch area, and the historical running data of the application can also be used as a startup parameter.
  • the application detects that the application has occupied 10% of the terminal memory when it was last run (that is, the historical running data is the amount of terminal memory occupied by the application when it was last run), which means that the application is occupied.
  • Larger storage space automatically adjusts the processor's operating frequency to a high operating frequency, allowing the application to be launched quickly. For example, when determining that the startup mode is the gesture activation mode, the location of the gesture operation is used as the startup parameter, and the position of the gesture operation corresponding to the position of the gesture operation at the top of the screen is higher, and the position of the gesture operation at the bottom of the screen corresponds to The processor's low operating frequency controls the frequency of the processor by controlling the position of the gesture operation.
  • the frequency of the blink can be used as the startup parameter, that is, when the application is started by the eyeball, the frequency of the blink is detected to determine the operating frequency of the processor according to the frequency of the blink.
  • the iris activation mode ie, the biometric activation mode
  • the current iris of the user is matched with the preset iris, and the application is started when the current iris matches the preset iris, and
  • the startup parameter is obtained to start the application according to the operating frequency of the processor corresponding to the startup parameter. If the acquired iris is large (starting parameter), the application is started at a higher working frequency, if obtained. If the iris is small, the application is launched at a lower operating frequency.
  • the startup mode can be selected according to the user's needs, and different startup parameters can be set to enhance the user. Experience.
  • a plurality of startup parameters may also be combined to implement the technical solution of the present application, thereby increasing sensitivity and accuracy by a combination of a plurality of startup parameters.
  • the touch pressure value and the historical running data of the application are used as starting parameters, that is, when the application is started, the touch pressure value and the historical running data of the application are detected, thereby the touch pressure value and the application.
  • the historical running data determines the current starting level together, or, when the application is started, the current starting level can also be determined by detecting the touch pressure value, the touch area, and the historical running data of the application.
  • FIG. 4 is a schematic structural diagram of a terminal of an embodiment of the present application.
  • the terminal 300 of the embodiment of the present application includes the activation device 200 of the application program according to any one of the above aspects, and therefore, the terminal 300 has the method described in any one of the foregoing technical solutions.
  • the application device 200 of the application has the same technical effect.
  • the startup level is set to 3 levels, and the force is sequentially increased, that is, the body sense is from the light to the heavy 3 levels, and the CPUs corresponding to the 3 startup levels are in the normal order. High and highest.
  • the terminal matches the startup level according to the detected touch pressure value, and adjusts the working frequency of the CPU corresponding to the startup level, so that the CPU starts the application according to the working frequency.
  • the startup speed of the application varies with the operating frequency of different CPUs. Generally, the default CPU operating frequency is lower, and the maximum operating frequency of the CPU is not reached when the application is started.
  • This application detects the touch of the user's touch application. Control the value of the pressure, intelligently judge the user's behavior, tap the application's startup speed as the default speed, and press it to speed up the application's startup speed, thus improving the user experience.
  • An embodiment of the present application also proposes a non-transitory computer readable storage medium storing computer executable instructions arranged to perform an activation method of an application of any of the above.
  • FIG. 5 is a schematic diagram showing the hardware structure of a terminal for executing a startup method of an application according to an embodiment of the present application.
  • the terminal in the embodiment of the present application may be any device with a touch display screen, such as a tablet computer, a mobile phone, an e-reader, a remote controller, a personal computer (PC), a notebook computer, an in-vehicle device, a network television, Wearable devices, etc.
  • the terminal in this embodiment of the present application includes: at least one processor 502, such as a CPU, at least one memory 504, and To include at least one receiver 506, at least one transmitter 508, and at least one communication bus 510.
  • the communication bus 510 is used to implement connection communication between these components.
  • the receiver 506 and the transmitter 508 of the device in the embodiment of the present application may be a wired sending port, or may be a wireless device, for example, including an antenna device, for performing communication with data or other data of other node devices.
  • the memory 504 may be a high speed RAM memory or a non-transitory memory such as at least one disk memory.
  • the memory 504 can optionally also be at least one storage device located remotely from the aforementioned processor 502.
  • a set of program code is stored in memory 504, and said processor 502 can invoke code stored in memory 504 via communication bus 510 to perform related functions.
  • the memory 504 stores instructions executable by the at least one processor 502, the instructions being executed by the at least one processor 502 to enable the at least one processor 502 to perform the methods of the above-described embodiments.
  • the terminal may further include an input/output device, such as a touch display screen, where the touch display screen is an integration of the touch screen and the display screen, and the touch display screen may be provided with a pressure sensor array.
  • the terminal can detect the pressure parameter through the pressure sensor array, wherein the pressure sensor can be, for example, a resistance strain gauge pressure sensor, a semiconductor strain gauge pressure sensor, a piezoresistive pressure sensor, an inductive pressure sensor, a capacitive pressure sensor, and a resonant pressure.
  • the sensor or the like is used in the embodiment of the present application, but is not limited to the above manner to obtain touch force.
  • the touch display screen may include: a screen; an indium tin oxide pattern disposed under the screen; a touch sensor disposed under the indium tin oxide pattern; and the touch sensor a lower indium tin oxide substrate; and a pressure sensor disposed on an upper surface or a lower surface of the indium tin oxide substrate; or
  • the touch display screen may include: a screen; an indium tin oxide pattern disposed under the screen; a touch sensor disposed under the indium tin oxide pattern; and disposed on the Touch the pressure sensor below the sensor.
  • the processor 502 is configured to detect a startup mode of the application when the application is started, and determine an operating frequency of the processor that starts the application according to the startup manner, and cause the processor to The operating frequency starts the application.
  • determining an operating frequency of the processor that starts the application according to the startup manner including: determining a startup parameter corresponding to the startup mode according to the startup manner; and determining a current startup level according to the startup parameter; And determining, according to the current startup level, the current startup level Corresponding to the operating frequency.
  • the determining, according to the startup parameter, a current startup level including: searching a startup level corresponding to the startup parameter among a plurality of startup levels; and using the found startup level as the current startup level .
  • the processor 502 is configured to: when the startup level corresponding to the startup parameter is not found in the multiple startup levels, use a preset startup level as the current startup level.
  • the processor 502 is configured to prompt to select a startup level as the current startup level when the startup level corresponding to the startup parameter is not found in the multiple startup levels.
  • the processor 502 is further configured to set a correspondence between the startup parameter and the startup level according to the received setting instruction, and set a correspondence between the startup level and the working frequency.
  • the startup mode includes: a touch activation mode, a gesture activation mode, an eyeball activation mode, and a biometric activation mode, wherein the biometric activation mode includes: a face startup mode, a voiceprint activation mode, and a fingerprint activation mode.
  • a touch activation mode a gesture activation mode
  • an eyeball activation mode a biometric activation mode
  • the biometric activation mode includes: a face startup mode, a voiceprint activation mode, and a fingerprint activation mode.
  • Way and iris activation method
  • the startup parameter corresponding to the touch activation mode includes one or a combination of the following: a touch duration, a touch pressure value, a touch area, and historical operation data of the application;
  • the startup parameter corresponding to the gesture activation mode includes one or a combination of the following: a gesture stay time, a location of the gesture operation, and historical operation data of the application;
  • the startup parameter corresponding to the eyeball activation mode includes one or a combination of the following: a time of gazing at the application, a frequency of blinking, and historical operation data of the application;
  • the startup parameter corresponding to the face startup mode includes one or a combination of the following: a distance between a face and a camera of the terminal, and historical operation data of the application;
  • the activation parameter corresponding to the voiceprint activation mode includes one or a combination of the following: a volume of the sound, a speech rate of the sound, a frequency of the sound, and historical operation data of the application;
  • the startup parameter corresponding to the fingerprint activation mode includes one or a combination of the following: an area of the fingerprint and historical operation data of the application;
  • the startup parameters corresponding to the iris activation mode include one or a combination of the following: the size of the iris and historical operational data of the application.
  • the startup method, the startup device and the terminal of the application provided by the application can improve the user experience by controlling the startup speed of the application to better meet the needs of the user by controlling the operating frequency of the processor that starts the application.

Landscapes

  • Engineering & Computer Science (AREA)
  • Software Systems (AREA)
  • Theoretical Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • General Engineering & Computer Science (AREA)
  • General Physics & Mathematics (AREA)
  • Human Computer Interaction (AREA)
  • User Interface Of Digital Computer (AREA)

Abstract

一种应用程序的启动方法、应用程序的启动装置和终端,其中,所述应用程序的启动方法包括:在应用程序被启动时,检测所述应用程序的启动方式(110);以及根据所述启动方式确定启动所述应用程序的处理器的工作频率,并使所述处理器以所述工作频率启动所述应用程序(120)。

Description

应用程序的启动方法、启动装置和终端
本申请要求于2016年1月29日提交中国专利局,申请号为201610066646.9、发明名称为“应用程序的启动方法、启动装置和终端”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本申请涉及终端技术领域,例如,涉及一种应用程序的启动方法、一种应用程序的启动装置和一种终端。
背景技术
受限于终端的性能,在启动终端的应用程序时,一些占用较大存储空间或者较复杂的应用程序,启动速度非常慢,这样就会导致用户的体验极差。另一方面,当终端因正在充电而温度较高时,用户又希望以适中的速度来启动应用程序(即不要求快速启动应用程序,因为这可能会导致终端的温度升高)。
因此,如何改变应用程序的启动速度,使得应用程序的启动速度更加符合用户的需求成为目前亟待解决的问题。
发明内容
本申请提出了一种新的技术方案,通过控制启动应用程序的处理器的工作频率,可以使得应用程序的启动速度更加符合用户的需求,从而提升用户体验。
本申请的第一方面提出了一种应用程序的启动方法,包括:在应用程序被启动时,检测所述应用程序的启动方式;以及根据所述启动方式确定启动所述应用程序的处理器的工作频率,并使所述处理器以所述工作频率启动所述应用程序。
在该技术方案中,通过检测应用程序的启动方式,并根据启动方式来确定启动应用程序的处理器(CPU,Central Processing Unit)的工作频率,使得处理器以启动方式对应的工作频率启动应用程序。例如,当用户想要快速启动应用程序时,可以触控应用程序的图标来使得处理器以较高的工作频率启动该应用 程序,从而使得启动该应用程序的速度较快,而当用户想要较慢或者以正常速度启动应用程序时,则可以通过眼球启动方式来使得处理器以较低的工作频率启动该应用程序,从而使得启动该应用程序的速度较慢。因此,上述技术方案,通过控制启动应用程序的处理器的工作频率,可以使得应用程序的启动速度更加符合用户的需求,从而提升用户体验。
在上述技术方案中,可选地,根据所述启动方式确定启动所述应用程序的处理器的工作频率,包括:根据所述启动方式确定对应于所述启动方式的启动参数;根据所述启动参数确定当前启动级别;以及根据所述当前启动级别确定与所述当前启动级别相对应的所述工作频率。
在该技术方案中,在确定启动方式后,可以确定对应于该启动方式的启动参数,从而根据启动参数对应的当前启动级别来确定处理器的工作频率。例如,在确定启动方式为触控启动方式,且确定触控启动方式对应的启动参数为触控压力值时,可以根据触控压力值对应的当前启动级别来确定处理器的工作频率,如此,可以更加准确地确定处理器的工作频率。
在上述任一技术方案中,可选地,所述根据所述启动参数确定当前启动级别,包括:在多个启动级别中查找与所述启动参数对应的启动级别;以及将查找到的所述启动级别作为所述当前启动级别。
在该技术方案中,通过将在多个启动级别中查找到的与启动参数对应的启动级别作为当前启动级别,可以更加方便、快捷地确定当前启动级别,从而根据当前启动级别确定处理器的工作频率。
在上述任一技术方案中,可选地,在所述多个启动级别中查找不到与所述启动参数对应的所述启动级别时,应用程序的启动方法还包括:将预设启动级别作为所述当前启动级别;或者提示选择一启动级别作为所述当前启动级别。
在该技术方案中,当在多个启动级别中均查找不到与启动参数对应的启动级别时,可以将预设启动级别作为当前启动级别,避免用户再次输入启动参数,从而避免繁琐的操作。另外,也可以提示用户选择当前启动级别,以根据用户选择的当前启动级别来确定处理器的工作频率,使用户具有较佳使用体验。
在上述任一技术方案中,可选地,应用程序的启动方法还包括:根据接收到的设置指令,设置所述启动参数与所述启动级别之间的对应关系,以及设置所述启动级别与所述工作频率之间的对应关系。
在该技术方案中,通过设置启动参数与启动级别之间的对应关系,从而可以根据启动参数来确定启动级别。另外,通过设置启动级别与处理器的工作频率之间的对应关系,从而可以根据启动级别来确定处理器的工作频率。
在上述任一技术方案中,可选地,所述启动方式包括:触控启动方式、手势启动方式、眼球启动方式以及生物特征启动方式,其中,所述生物特征启动方式包括:人脸启动方式、声纹启动方式、指纹启动方式和虹膜启动方式;以及所述触控启动方式对应的启动参数包括以下之一或其组合:触控时长、触控压力值、触控面积以及所述应用程序的历史运行数据;所述手势启动方式对应的启动参数包括以下之一或其组合:手势停留时间、手势操作的位置以及所述应用程序的历史运行数据;所述眼球启动方式对应的启动参数包括以下之一或其组合:凝视所述应用程序的时间、眨眼的频率以及所述应用程序的历史运行数据;所述人脸启动方式对应的启动参数包括以下之一或其组合:人脸与所述终端的摄像头的距离和所述应用程序的历史运行数据;所述声纹启动方式对应的启动参数包括以下之一或其组合:声音的音量、所述声音的语速、所述声音的频率以及所述应用程序的历史运行数据;所述指纹启动方式对应的启动参数包括以下之一或其组合:指纹的面积以及所述应用程序的历史运行数据;以及所述虹膜启动方式对应的启动参数包括以下之一或其组合:虹膜的大小以及所述应用程序的历史运行数据。
在该技术方案中,启动方式包括但不限于:触控启动方式、手势启动方式、眼球启动方式、生物特征启动方式,而生物特征启动方式又包括:人脸启动方式、声纹启动方式、指纹启动方式和虹膜启动方式。另外,不同启动方式对应不同的启动参数,如此,可以按照用户的需求选择启动方式,以及设置不同的触控参数,从而提升用户体验。
另外,在确定启动参数时,也可以将多个启动参数组合在一起来实现本申请的技术方案,从而通过多个启动参数的组合来增加灵敏度和准确性。
在上述任一技术方案中,可选地,所述启动方式为生物特征启动方式,其中,所述生物特征启动方式包括:人脸启动方式、声纹启动方式、指纹启动方式和虹膜启动方式。
在该技术方案中,当启动方式为生物特征启动方式时,生物特征启动方式包括但不限于:人脸启动方式、声纹启动方式、指纹启动方式和虹膜启动方式。 例如,当将虹膜启动方式作为生物特征启动方式时,将检测的用户当前虹膜与预设虹膜进行匹配,并在用户当前虹膜与预设虹膜匹配时将虹膜启动方式对应的处理器的工作频率作为启动应用程序的处理器的工作频率
本申请的第二方面提出了一种应用程序的启动装置,包括:检测单元,设置为在应用程序被启动时,检测所述应用程序的启动方式;以及第一确定单元,设置为根据所述启动方式确定启动所述应用程序的处理器的工作频率,并使所述处理器以所述工作频率启动所述应用程序。
在该技术方案中,通过检测应用程序的启动方式,并根据启动方式来确定启动应用程序的处理器(CPU,Central Processing Unit)的工作频率,使得处理器以启动方式对应的工作频率启动应用程序。例如,当用户想要快速启动应用程序时,可以触控应用程序的图标来使得处理器以较高的工作频率启动该应用程序,从而使得启动该应用程序的速度较快,而当用户想要较慢或者以正常速度启动应用程序时,则可以通过眼球启动方式来使得处理器以较低的工作频率启动该应用程序,从而使得启动该应用程序的速度较慢。因此,上述技术方案,通过控制启动应用程序的处理器的工作频率,可以使得应用程序的启动速度更加符合用户的需求,从而提升用户体验。
在上述技术方案中,可选地,所述第一确定单元包括:第一确定子单元,设置为根据所述启动方式确定对应于所述启动方式的启动参数;第二确定子单元,设置为根据所述启动参数确定当前启动级别;以及第三确定子单元,设置为根据所述当前启动级别确定与所述当前启动级别相对应的所述工作频率。
在该技术方案中,在确定启动方式后,可以确定对应于该启动方式的启动参数,从而根据启动参数对应的当前启动级别来确定处理器的工作频率。例如,在确定启动方式为启动方式,且确定启动方式对应的启动参数为触控压力值时,可以根据触控压力值对应的当前启动级别来确定处理器的工作频率,如此,可以更加准确地确定处理器的工作频率。
在上述任一技术方案中,可选地,所述第二确定子单元设置为:在多个启动级别中查找与所述启动参数对应的启动级别;以及将查找到的所述启动级别作为所述当前启动级别。
在该技术方案中,通过将在多个启动级别中查找到的与启动参数对应的启动级别作为当前启动级别,可以更加方便、快捷地确定当前启动级别,从而根 据当前启动级别确定处理器的工作频率。
在上述任一技术方案中,可选地,应用程序的启动装置还包括:第二确定单元,设置为若在所述多个启动级别中查找不到与所述启动参数对应的所述启动级别时,将预设启动级别作为所述当前启动级别;或者提示单元,设置为若在所述多个启动级别中查找不到与所述启动参数对应的所述启动级别时,提示用户选择一启动级别作为所述当前启动级别。
在该技术方案中,当在多个启动级别中均查找不到与启动参数对应的启动级别时,可以将预设启动级别作为当前启动级别,避免用户再次输入启动参数,从而避免繁琐的操作。另外,也可以提示用户选择当前启动级别,以根据用户选择的当前启动级别来确定处理器的工作频率,使用户具有较佳使用体验。
在上述任一技术方案中,可选地,应用程序的启动装置还包括:设置单元,设置为根据接收到的设置指令,设置所述启动参数与所述启动级别之间的对应关系,以及设置所述启动级别与所述工作频率之间的对应关系。
在该技术方案中,通过设置启动参数与启动级别之间的对应关系,从而可以根据启动参数来确定启动级别。另外,通过设置启动级别与处理器的工作频率之间的对应关系,从而可以根据启动级别来确定处理器的工作频率。
在上述任一技术方案中,可选地,所述启动方式包括:触控启动方式、手势启动方式、眼球启动方式以及生物特征启动方式,其中,所述生物特征启动方式包括:人脸启动方式、声纹启动方式、指纹启动方式和虹膜启动方式;其中,所述触控启动方式对应的启动参数包括以下之一或其组合:触控时长、触控压力值、触控面积以及所述应用程序的历史运行数据;所述手势启动方式对应的启动参数包括以下之一或其组合:手势停留时间、手势操作的位置以及所述应用程序的历史运行数据;所述眼球启动方式对应的启动参数包括以下之一或其组合:凝视所述应用程序的时间、眨眼的频率以及所述应用程序的历史运行数据;所述人脸启动方式对应的启动参数包括以下之一或其组合:人脸与所述终端的摄像头的距离和所述应用程序的历史运行数据;所述声纹启动方式对应的启动参数包括以下之一或其组合:声音的音量、所述声音的语速、所述声音的频率以及所述应用程序的历史运行数据;所述指纹启动方式对应的启动参数包括以下之一或其组合:指纹的面积以及所述应用程序的历史运行数据;以及所述虹膜启动方式对应的启动参数包括以下之一或其组合:虹膜的大小以及 所述应用程序的历史运行数据。
在该技术方案中,启动方式包括但不限于:触控启动方式、手势启动方式、眼球启动方式、生物特征启动方式,而生物特征启动方式又包括:人脸启动方式、声纹启动方式、指纹启动方式和虹膜启动方式。另外,不同启动方式对应不同的启动参数,如此,可以按照用户的需求选择启动方式,以及设置不同的触控参数,从而提升用户体验。
另外,在确定启动参数时,也可以将多个启动参数组合在一起来实现本申请的技术方案,从而通过多个启动参数的组合来增加灵敏度和准确性。
本申请的第三方面提出了一种终端,包括上述技术方案中任一项所述的应用程序的启动装置,因此,该终端具有和上述技术方案中任一项所述的应用程序的启动装置相同的技术效果。
通过本申请的技术方案,通过控制启动应用程序的处理器的工作频率,可以使得应用程序的启动速度更加符合用户的需求,从而提升用户体验。
本申请的第四方面提出了一种非瞬时性计算机可读存储介质,存储有计算机可执行指令,所述计算机可执行指令设置为执行上述任一项的应用程序的启动方法。
附图说明
图1示出了本申请的一个实施例的应用程序的启动方法的流程示意图;
图2示出了本申请的一个实施例的应用程序的启动装置的结构示意图一;
图3示出了本申请的一个实施例的应用程序的启动装置的结构示意图二;
图4示出了本申请的一个实施例的终端的结构示意图;以及
图5示出了本申请的一个实施例的执行应用程序的启动方法的终端的硬件结构示意图。
具体实施方式
为了可以更清楚地理解本申请的特征和优点,下面结合附图和实施方式对本申请进行详细描述。需要说明的是,在不冲突的情况下,本申请的实施例及实施例中的特征可以相互组合。
在下面的描述中阐述了很多细节以便于充分理解本申请,但是,本申请还可以采用其他不同于在此描述的其他方式来实施,因此,本申请的保护范围并不受下面公开的实施例的限制。
图1示出了本申请的一个实施例的应用程序的启动方法的流程示意图。
如图1所示,本申请的实施例的应用程序的启动方法。
在步骤110中,在应用程序被启动时,检测所述应用程序的启动方式;
在步骤120中,根据所述启动方式确定启动所述应用程序的处理器的工作频率,并使所述处理器以所述工作频率启动所述应用程序。
在该技术方案中,通过检测应用程序的启动方式,并根据启动方式来确定启动应用程序的处理器(CPU,Central Processing Unit)的工作频率,使得处理器以启动方式对应的工作频率启动应用程序。例如,当用户想要快速启动应用程序时,可以触控应用程序的图标来使得处理器以较高的工作频率启动该应用程序,从而使得启动该应用程序的速度较快,而当用户想要较慢或者以正常速度启动应用程序时,则可以通过眼球启动方式来使得处理器以较低的工作频率启动该应用程序,从而使得启动该应用程序的速度较慢。因此,通过上述技术方案,通过控制启动应用程序的处理器的工作频率,可以使得应用程序的启动速度更加符合用户的需求,从而提升用户体验。
在上述技术方案中,可选地,步骤120包括:根据所述启动方式确定对应于所述启动方式的启动参数;根据所述启动参数确定当前启动级别;以及根据所述当前启动级别确定与所述当前启动级别相对应的所述工作频率。
在该技术方案中,在确定启动方式后,可以确定对应于该启动方式的启动参数,从而根据启动参数对应的当前启动级别来确定处理器的工作频率。例如,设置触控时长在1秒至3秒内对应的启动级别为1级,触控时长在3秒至5秒内对应的启动级别为2级,则当检测到启动方式为触控启动方式,且确定触控启动方式对应的启动参数为触控时长时,若该触控时长为4.3秒时则确定当前启动级别为2级,根据当前启动级别(即2级)确定与当前启动级别相对应的工作频率,从而可以更加准确地确定处理器的工作频率。
在上述任一技术方案中,可选地,所述根据所述启动参数确定当前启动级别,包括:在多个启动级别中查找与所述启动参数对应的启动级别;以及将查 找到的所述启动级别作为所述当前启动级别。
在该技术方案中,通过将在多个启动级别中查找到的与启动参数对应的启动级别作为当前启动级别,例如,多个启动级别分别为0级、1级、2级,每一个启动级别对应多个压力值的范围(即将触控启动方式作为启动方式,且触控启动方式对应的启动参数为压力值),如0级对应的压力值为X1至X2,1级对应的压力值为X3至X4,2级对应的压力值为X5至X6,则当用户触控应用程序的压力值为Y1时,且Y1在X3至X4的范围内,则可以知道与压力值Y1对应的启动级别为1级,即可将1级作为当前启动级别。再例如,当多个启动级别中的每个启动级别对应多个手势停留时间的范围时(即将手势启动方式作为启动方式,且手势启动方式对应的启动参数为手势停留时间),如0级对应的手势停留时间为1秒至3秒,1级对应的手势停留时间为4秒至6秒,2级对应的手势停留时间为7秒至9秒,则当手势停留时间为8秒时,即可确定当前启动级别为2级。因此,通过上述技术方案,可以方便、快捷地确定当前启动级别。
在上述任一技术方案中,可选地,若在所述多个启动级别中查找不到与所述启动参数对应的所述启动级别时,还包括:将预设启动级别作为所述当前启动级别;或者提示用户选择一启动级别作为所述当前启动级别。
在该技术方案中,当在多个启动级别中均查找不到与启动参数对应的启动级别时,可以将预设启动级别作为当前启动级别,避免用户再次输入启动参数,从而避免繁琐的操作。另外,也可以提示用户选择当前启动级别,以根据用户选择的当前启动级别来确定处理器的工作频率,使用户具有较佳使用体验。
在上述任一技术方案中,可选地,应用程序的启动方法还包括:根据接收到的设置指令,设置所述启动参数与所述启动级别之间的对应关系,以及设置所述启动级别与所述工作频率之间的对应关系。
在该技术方案中,通过设置启动参数与启动级别之间的对应关系,从而可以根据启动参数来确定启动级别。另外,通过设置启动级别与处理器的工作频率之间的对应关系,从而可以根据启动级别来确定处理器的工作频率。
在上述任一技术方案中,可选地,在上述任一技术方案中,可选地,所述启动方式包括:触控启动方式、手势启动方式、眼球启动方式、生物特征启动方式,其中,所述生物特征启动方式包括:人脸启动方式、声纹启动方式、指纹启动方式和虹膜启动方式;其中,所述触控启动方式对应的启动参数包括以 下之一或其组合:触控时长、触控压力值、触控面积以及所述应用程序的历史运行数据;所述手势启动方式对应的启动参数包括以下之一或其组合:手势停留时间、手势操作的位置以及所述应用程序的历史运行数据;所述眼球启动方式对应的启动参数包括以下之一或其组合:凝视所述应用程序的时间、眨眼的频率以及所述应用程序的历史运行数据;所述人脸启动方式对应的启动参数包括以下之一或其组合:人脸与所述终端的摄像头的距离和所述应用程序的历史运行数据;所述声纹启动方式对应的启动参数包括以下之一或其组合:声音的音量、所述声音的语速、所述声音的频率以及所述应用程序的历史运行数据;所述指纹启动方式对应的启动参数包括以下之一或其组合:指纹的面积以及所述应用程序的历史运行数据;以及所述虹膜启动方式对应的启动参数包括以下之一或其组合:虹膜的大小以及所述应用程序的历史运行数据。
在该技术方案中,启动方式包括但不限于:触控启动方式、手势启动方式、眼球启动方式、生物特征启动方式,而生物特征启动方式又包括:人脸启动方式、声纹启动方式、指纹启动方式和虹膜启动方式。例如,当应用程序的启动方式为触控启动方式时,确定处理器的工作频率为最高,当应用程序的启动方式为手势启动方式时,确定处理器的工作频率为高,当应用程序的启动方式为眼球启动方式时,确定处理器的工作频率为普通,当应用程序的启动方式为人脸启动方式时,确定处理器的工作频率为较低,从而可以根据启动方式来确定启动应用程序的处理器的工作频率。另外,不同启动方式对应不同的启动参数,在确定启动方式后,可以根据不同的启动参数来确定处理器的频率,例如,在确定启动方式为触控启动时,将触控面积作为启动参数,且触控面积越大则其对应的处理器的工作频率越高,即可以通过控制触控面积的大小来控制处理器的工作频率,也可以将应用程序的历史运行数据作为启动参数,若启动应用程序时检测到该应用程序在上次运行时所占用的终端内存达到10%(即历史运行数据为应用程序在上次运行时所占用的终端内存大小),也就说明该应用程序占用了较大的存储空间,则可自动调整处理器的工作频率为高工作频率,从而可以快速地启动该应用程序。再例如,在确定启动方式为手势启动方式时,将手势操作的位置作为启动参数,则处于屏幕上方的手势操作的位置对应的处理器的工作频率高、处于屏幕下方的手势操作的位置对应的处理器的工作频率低,即可通过控制手势操作的位置来控制处理器的频率。又例如,在确定启动方式为眼球启动方式时,可以将眨眼的频率作为启动参数,即在通过眼球启动应用 程序时,检测眨眼的频率,以根据眨眼的频率的快慢来确定处理器的工作频率。
另外,当将虹膜启动方式(即生物特征启动方式)作为启动应用程序的启动方式时,则将用户的当前虹膜与预设虹膜进行匹配,在当前虹膜与预设虹膜匹配时启动应用程序,并同时获取启动参数以根据启动参数对应的处理器的工作频率来启动应用程序,如此时若获取到的虹膜较大(启动参数),则以较高的工作频率来启动应用程序,若获取到的虹膜较小,则以较低的工作频率来启动应用程序。或者,当将声纹启动方式作为启动方式,且声纹启动方式对应的启动参数为声音的语速时,若声音的语速快,则以较高处理器的工作频率启动应用程序,若声音的语速慢,则以较低处理器的工作频率启动应用程序。如此,可以按照用户的需求选择启动方式,以及设置不同的启动参数,从而提升用户体验。
另外,在确定启动参数时,也可以将多个启动参数组合在一起来实现本申请的技术方案,从而通过多个启动参数的组合来增加灵敏度和准确性。例如,将触控压力值和应用程序的历史运行数据作为启动参数,即在应用程序被启动时,检测触控压力值和该应用程序的历史运行数据,从而根据触控压力值和该应用程序的历史运行数据一起确定当前启动级别,或者,在应用程序被启动时,也可以通过检测触控压力值、触控面积和该应用程序的历史运行数据来确定当前启动级别。
图2示出了本申请的一个实施例的应用程序的启动装置的结构示意图。
如图2所示,本申请实施例的应用程序的启动装置200,包括:检测单元202和第一确定单元204,其中,所述检测单元202,设置为在应用程序被启动时,检测所述应用程序的启动方式;所述第一确定单元204,设置为根据所述启动方式确定启动所述应用程序的处理器的工作频率,并使所述处理器以所述工作频率启动所述应用程序。
在该技术方案中,通过检测应用程序的启动方式,并根据启动方式来确定启动应用程序的处理器(CPU,Central Processing Unit)的工作频率,使得处理器以启动方式对应的工作频率启动应用程序。例如,当用户想要快速启动应用程序时,可以触控应用程序的图标来使得处理器以较高的工作频率启动该应用程序,从而使得启动该应用程序的速度较快,而当用户想要较慢或者以正常速度启动应用程序时,则可以通过眼球启动方式来使得处理器以较低的工作频率 启动该应用程序,从而使得启动该应用程序的速度较慢。因此,通过上述技术方案,通过控制启动应用程序的处理器的工作频率,可以使得应用程序的启动速度更加符合用户的需求,从而提升用户体验。
在上述技术方案中,可选地,所述第一确定单元204包括:第一确定子单元2042、第二确定子单元2044以及第三确定子单元2046。其中,第一确定子单元2042,设置为根据所述启动方式确定对应于所述启动方式的启动参数;第二确定子单元2044,设置为根据所述启动参数确定当前启动级别;以及第三确定子单元2046,设置为根据所述当前启动级别确定与所述当前启动级别相对应的所述工作频率。
在该技术方案中,在确定启动方式后,可以再确定对应于该启动方式的启动参数,从而根据启动参数对应的当前启动级别来确定处理器的工作频率。例如,设置触控时长在1秒至3秒内对应的启动级别为1级,触控时长在3秒至5秒内对应的启动级别为2级,则当检测到启动方式为触控启动方式,且确定触控启动方式对应的启动参数为触控时长时,若该触控时长为4.3秒时则确定当前启动级别为2级,根据当前启动级别(即2级)确定与当前启动级别相对应的工作频率,从而可以更加准确地确定处理器的工作频率。
在上述任一技术方案中,可选地,所述第二确定子单元2044设置为在多个启动级别中查找与所述启动参数对应的启动级别;以及将查找到的所述启动级别作为所述当前启动级别。
在该技术方案中,通过将在多个启动级别中查找到的与启动参数对应的启动级别作为当前启动级别,例如,多个启动级别分别为0级、1级、2级,每一个启动级别对应多个压力值的范围(即将触控启动方式作为启动方式,且触控启动方式对应的启动参数为压力值),如0级对应的压力值为X1至X2,1级对应的压力值为X3至X4,2级对应的压力值为X5至X6,则当用户触控应用程序的压力值为Y1时,且Y1在X3至X4的范围内,则可以知道与压力值Y1对应的启动级别为1级,即可将1级作为当前启动级别。再例如,当多个启动级别中的每个启动级别对应多个手势停留时间的范围时(即将手势启动方式作为启动方式,且手势启动方式对应的启动参数为手势停留时间),如0级对应的手势停留时间为1秒至3秒,1级对应的手势停留时间为4秒至6秒,2级对应的手势停留时间为7秒至9秒,则当手势停留时间为8秒时,即可确定当前启动 级别为2级。因此,通过上述技术方案,可以方便、快捷地确定当前启动级别。
在上述任一技术方案中,参见图2和图3,可选地,应用程序的启动装置200还包括:第二确定单元206,设置为若在所述多个启动级别中查找不到与所述启动参数对应的所述启动级别时,将预设启动级别作为所述当前启动级别;或者提示单元208,设置为若在所述多个启动级别中查找不到与所述启动参数对应的所述启动级别时,提示用户选择一启动级别作为所述当前启动级别。
在该技术方案中,当在多个启动级别中均查找不到与启动参数对应的启动级别时,可以将预设启动级别作为当前启动级别,避免用户再次输入启动参数,从而避免繁琐的操作。另外,也可以提示用户选择当前启动级别,以根据用户选择的当前启动级别来确定处理器的工作频率,使用户具有较佳使用体验。
在上述任一技术方案中,可选地,应用程序的启动装置200还包括:设置单元210,设置为根据接收到的设置指令,设置所述启动参数与所述启动级别之间的对应关系,以及设置所述启动级别与所述工作频率之间的对应关系。
在该技术方案中,通过设置启动参数与启动级别之间的对应关系,从而可以根据启动参数来确定启动级别。另外,通过设置启动级别与处理器的工作频率之间的对应关系,从而可以根据启动级别来确定处理器的工作频率。
在上述任一技术方案中,可选地,所述启动方式包括:触控启动方式、手势启动方式、眼球启动方式以及生物特征启动方式,其中,所述生物特征启动方式包括:人脸启动方式、声纹启动方式、指纹启动方式和虹膜启动方式;其中,所述触控启动方式对应的启动参数包括以下之一或其组合:触控时长、触控压力值、触控面积以及所述应用程序的历史运行数据;所述手势启动方式对应的启动参数包括以下之一或其组合:手势停留时间、手势操作的位置以及所述应用程序的历史运行数据;所述眼球启动方式对应的启动参数包括以下之一或其组合:凝视所述应用程序的时间、眨眼的频率以及所述应用程序的历史运行数据;所述人脸启动方式对应的启动参数包括以下之一或其组合:人脸与所述终端的摄像头的距离和所述应用程序的历史运行数据;所述声纹启动方式对应的启动参数包括以下之一或其组合:声音的音量、所述声音的语速、所述声音的频率以及所述应用程序的历史运行数据;所述指纹启动方式对应的启动参数包括以下之一或其组合:指纹的面积以及所述应用程序的历史运行数据;以及所述虹膜启动方式对应的启动参数包括以下之一或其组合:虹膜的大小以及 所述应用程序的历史运行数据。。
在该技术方案中,启动方式包括但不限于:触控启动方式、手势启动方式、眼球启动方式、生物特征启动方式,而生物特征启动方式又包括:人脸启动方式、声纹启动方式、指纹启动方式和虹膜启动方式。例如,当应用程序的启动方式为触控启动方式时,确定处理器的工作频率为最高,当应用程序的启动方式为手势启动方式时,确定处理器的工作频率为高,当应用程序的启动方式为眼球启动方式时,确定处理器的工作频率为普通,当应用程序的启动方式为人脸启动方式时,确定处理器的工作频率为较低,从而可以根据启动方式来确定启动应用程序的处理器的工作频率。另外,不同启动方式对应不同的启动参数,在确定启动方式后,可以根据不同的启动参数来确定处理器的频率,例如,在确定启动方式为触控启动时,将触控面积作为启动参数,且触控面积越大则其对应的处理器的工作频率越高,即可以通过控制触控面积的大小来控制处理器的工作频率,也可以将应用程序的历史运行数据作为启动参数,若启动应用程序时检测到该应用程序在上次运行时所占用的终端内存达到10%(即历史运行数据为应用程序在上次运行时所占用的终端内存大小),也就说明该应用程序占用了较大的存储空间,则可自动调整处理器的工作频率为高工作频率,从而可以快速地启动该应用程序。再例如,在确定启动方式为手势启动方式时,将手势操作的位置作为启动参数,则处于屏幕上方的手势操作的位置对应的处理器的工作频率高、处于屏幕下方的手势操作的位置对应的处理器的工作频率低,即可通过控制手势操作的位置来控制处理器的频率。又例如,在确定启动方式为眼球启动方式时,可以将眨眼的频率作为启动参数,即在通过眼球启动应用程序时,检测眨眼的频率,以根据眨眼的频率的快慢来确定处理器的工作频率。
另外,当将虹膜启动方式(即生物特征启动方式)作为启动应用程序的启动方式时,则将用户的当前虹膜与预设虹膜进行匹配,在当前虹膜与预设虹膜匹配时启动应用程序,并同时获取启动参数以根据启动参数对应的处理器的工作频率来启动应用程序,如此时若获取到的虹膜较大(启动参数),则以较高的工作频率来启动应用程序,若获取到的虹膜较小,则以较低的工作频率来启动应用程序。或者,当将声纹启动方式作为启动方式,且声纹启动方式对应的启动参数为声音的语速时,若声音的语速快,则以较高处理器的工作频率启动应用程序,若声音的语速慢,则以较低处理器的工作频率启动应用程序。如此,可以按照用户的需求选择启动方式,以及设置不同的启动参数,从而提升用户 体验。
另外,在确定启动参数时,也可以将多个启动参数组合在一起来实现本申请的技术方案,从而通过多个启动参数的组合来增加灵敏度和准确性。例如,将触控压力值和应用程序的历史运行数据作为启动参数,即在应用程序被启动时,检测触控压力值和该应用程序的历史运行数据,从而根据触控压力值和该应用程序的历史运行数据一起确定当前启动级别,或者,在应用程序被启动时,也可以通过检测触控压力值、触控面积和该应用程序的历史运行数据来确定当前启动级别。
图4示出了本申请的一个实施例的终端的结构示意图。
如图4所示,本申请的实施例的终端300,包括上述技术方案中任一项所述的应用程序的启动装置200,因此,该终端300具有和上述技术方案中任一项所述的应用程序的启动装置200相同的技术效果。
下面说明当将触控压力值作为启动参数时本申请的技术方案。
当将触控压力值作为启动参数时,设置启动级别为3个等级,力度依次增加,即体感上是从轻到重的3个级别,3个启动级别对应的CPU的工作频率依次为普通、高、最高。当用户触控应用程序的图标时,终端根据检测到的触控压力值大小匹配启动级别,同时调整与启动级别对应的CPU的工作频率,以使CPU根据该工作频率启动应用程序。不同CPU的工作频率下应用程序的启动速度有所差异,一般终端默认CPU的工作频率较低,启动应用程序时也不会达到CPU的最高工作频率,本申请通过检测用户触控应用程序的触控压力值的大小,智能判断用户的行为,轻按时应用程序的启动速度为默认速度,重按时则加快应用程序的启动速度,从而提升用户体验。
本申请的一个实施例还提出了一种非瞬时性计算机可读存储介质,存储有计算机可执行指令,所述计算机可执行指令设置为执行上述任一项的应用程序的启动方法。
图5示出了本申请的一个实施例的执行应用程序的启动方法的终端的硬件结构示意图。本申请实施例中的终端可以是任何具备触控显示屏的设备,例如:平板电脑、手机、电子阅读器、遥控器、个人计算机(Personal Computer,PC)、笔记本电脑、车载设备、网络电视、可穿戴设备等。如图5所示,本申请实施例中的终端包括:至少一个处理器502,例如CPU,至少一个存储器504,还可 以包括至少一个接收器506,至少一个发送器508,至少一个通信总线510。其中,通信总线510用于实现这些组件之间的连接通信。其中,本申请实施例中装置的接收器506和发送器508可以是有线发送端口,也可以为无线设备,例如包括天线装置,用于与其他节点设备进行信今或数据的通信。存储器504可以是高速RAM存储器,也可以是非瞬时性的存储器(non-transitory memory),例如至少一个磁盘存储器。存储器504可选的还可以是至少一个位于远离前述处理器502的存储装置。存储器504中存储一组程序代码,且所述处理器502可通过通信总线510,调用存储器504中存储的代码以执行相关的功能。所述存储器504存储有可被所述至少一个处理器502执行的指令,所述指令被所述至少一个处理器502执行,以使所述至少一个处理器502能够执行上述实施例的方法。
所述终端还可以包括输入/输出装置,例如触控显示屏,所述触控显示屏为所述触控屏和所述显示屏的集成,该触控显示屏中可以设置有压力传感器阵列,终端能够通过该压力传感器阵列检测压力参数,其中,上述压力传感器例如可以是电阻应变片压力传感器、半导体应变片压力传感器、压阻式压力传感器、电感式压力传感器、电容式压力传感器、谐振式压力传感器等,本申请实施例中采用但不限于上述方式来获取触控力度。
举例来说,所述触控显示屏可以包括:屏面;设置于所述屏面下方的铟锡氧化物图形;设置于所述铟锡氧化物图形下方的触摸传感器;设置于所述触摸传感器下方的铟锡氧化物基板;以及设置于所述铟锡氧化物基板的上表面或者下表面的压力传感器;或者
又举例来说,所述触控显示屏可以包括:屏面;设置于所述屏面下方的铟锡氧化物图形;设置于所述铟锡氧化物图形下方的触摸传感器;以及设置于所述触摸传感器下方的压力传感器。
处理器502设置为,在应用程序被启动时,检测所述应用程序的启动方式;以及根据所述启动方式确定启动所述应用程序的处理器的工作频率,并使所述处理器以所述工作频率启动所述应用程序。
可选地,根据所述启动方式确定启动所述应用程序的处理器的工作频率,包括:根据所述启动方式确定对应于所述启动方式的启动参数;根据所述启动参数确定当前启动级别;以及根据所述当前启动级别确定与所述当前启动级别 相对应的所述工作频率。
可选地,所述根据所述启动参数确定当前启动级别,包括:在多个启动级别中查找与所述启动参数对应的启动级别;以及将查找到的所述启动级别作为所述当前启动级别。
可选地,处理器502设置为,在所述多个启动级别中查找不到与所述启动参数对应的所述启动级别时,将预设启动级别作为所述当前启动级别。
可选地,处理器502设置为,在所述多个启动级别中查找不到与所述启动参数对应的所述启动级别时,提示选择一启动级别作为所述当前启动级别。
可选地,处理器502还设置为根据接收到的设置指令,设置所述启动参数与所述启动级别之间的对应关系,以及设置所述启动级别与所述工作频率之间的对应关系。
可选地,所述启动方式包括:触控启动方式、手势启动方式、眼球启动方式以及生物特征启动方式,其中,所述生物特征启动方式包括:人脸启动方式、声纹启动方式、指纹启动方式和虹膜启动方式;以及
所述触控启动方式对应的启动参数包括以下之一或其组合:触控时长、触控压力值、触控面积以及所述应用程序的历史运行数据;
所述手势启动方式对应的启动参数包括以下之一或其组合:手势停留时间、手势操作的位置以及所述应用程序的历史运行数据;
所述眼球启动方式对应的启动参数包括以下之一或其组合:凝视所述应用程序的时间、眨眼的频率以及所述应用程序的历史运行数据;
所述人脸启动方式对应的启动参数包括以下之一或其组合:人脸与所述终端的摄像头的距离和所述应用程序的历史运行数据;
所述声纹启动方式对应的启动参数包括以下之一或其组合:声音的音量、所述声音的语速、所述声音的频率以及所述应用程序的历史运行数据;
所述指纹启动方式对应的启动参数包括以下之一或其组合:指纹的面积以及所述应用程序的历史运行数据;以及
所述虹膜启动方式对应的启动参数包括以下之一或其组合:虹膜的大小以及所述应用程序的历史运行数据。
以上结合附图详细说明了本申请的技术方案,通过控制启动应用程序的处理器的工作频率,可以使得应用程序的启动速度更加符合用户的需求,从而提升用户体验。
工业实用性
本申请提供的应用程序的启动方法、启动装置和终端,通过控制启动应用程序的处理器的工作频率,可以使得应用程序的启动速度更加符合用户的需求,从而提升用户体验。

Claims (16)

  1. 一种应用程序的启动方法,包括:
    在应用程序被启动时,检测所述应用程序的启动方式;以及
    根据所述启动方式确定启动所述应用程序的处理器的工作频率,并使所述处理器以所述工作频率启动所述应用程序。
  2. 根据权利要求1所述的应用程序的启动方法,其中,根据所述启动方式确定启动所述应用程序的处理器的工作频率,包括:
    根据所述启动方式确定对应于所述启动方式的启动参数;
    根据所述启动参数确定当前启动级别;以及
    根据所述当前启动级别确定与所述当前启动级别相对应的所述工作频率。
  3. 根据权利要求2所述的应用程序的启动方法,其中,所述根据所述启动参数确定当前启动级别,包括:
    在多个启动级别中查找与所述启动参数对应的启动级别;以及
    将查找到的所述启动级别作为所述当前启动级别。
  4. 根据权利要求3所述的应用程序的启动方法,在所述多个启动级别中查找不到与所述启动参数对应的所述启动级别时,所述方法还包括:
    将预设启动级别作为所述当前启动级别。
  5. 根据权利要求3所述的应用程序的启动方法,在所述多个启动级别中查找不到与所述启动参数对应的所述启动级别时,所述方法还包括:
    提示选择一启动级别作为所述当前启动级别。
  6. 根据权利要求3-5任一项所述的应用程序的启动方法,还包括:
    根据接收到的设置指令,设置所述启动参数与所述启动级别之间的对应关系,以及设置所述启动级别与所述工作频率之间的对应关系。
  7. 根据权利要求2至6中任一项所述的应用程序的启动方法,其中,
    所述启动方式包括:触控启动方式、手势启动方式、眼球启动方式以及生物特征启动方式,其中,所述生物特征启动方式包括:人脸启动方式、声纹启动方式、指纹启动方式和虹膜启动方式;以及
    所述触控启动方式对应的启动参数包括以下之一或其组合:触控时长、触控压力值、触控面积以及所述应用程序的历史运行数据;
    所述手势启动方式对应的启动参数包括以下之一或其组合:手势停留时间、手势操作的位置以及所述应用程序的历史运行数据;
    所述眼球启动方式对应的启动参数包括以下之一或其组合:凝视所述应用程序的时间、眨眼的频率以及所述应用程序的历史运行数据;
    所述人脸启动方式对应的启动参数包括以下之一或其组合:人脸与所述终端的摄像头的距离和所述应用程序的历史运行数据;
    所述声纹启动方式对应的启动参数包括以下之一或其组合:声音的音量、所述声音的语速、所述声音的频率以及所述应用程序的历史运行数据;
    所述指纹启动方式对应的启动参数包括以下之一或其组合:指纹的面积以及所述应用程序的历史运行数据;以及
    所述虹膜启动方式对应的启动参数包括以下之一或其组合:虹膜的大小以及所述应用程序的历史运行数据。
  8. 一种应用程序的启动装置,包括:
    检测单元,设置为在应用程序被启动时,检测所述应用程序的启动方式;以及
    第一确定单元,设置为根据所述启动方式确定启动所述应用程序的处理器的工作频率,并使所述处理器以所述工作频率启动所述应用程序。
  9. 根据权利要求8所述的应用程序的启动装置,其中,所述第一确定单元 包括:
    第一确定子单元,设置为根据所述启动方式确定对应于所述启动方式的启动参数;
    第二确定子单元,设置为根据所述启动参数确定当前启动级别;以及
    第三确定子单元,设置为根据所述当前启动级别确定与所述当前启动级别相对应的所述工作频率。
  10. 根据权利要求9所述的应用程序的启动装置,其中,所述第二确定子单元设置为:
    在多个启动级别中查找与所述启动参数对应的启动级别;以及
    将查找到的所述启动级别作为所述当前启动级别。
  11. 根据权利要求10所述的应用程序的启动装置,还包括:
    第二确定单元,设置为在所述多个启动级别中查找不到与所述启动参数对应的所述启动级别时,将预设启动级别作为所述当前启动级别。
  12. 根据权利要求10所述的应用程序的启动装置,还包括:
    提示单元,设置为若在所述多个启动级别中查找不到与所述启动参数对应的所述启动级别时,提示选择一启动级别作为所述当前启动级别。
  13. 根据权利要求10-12任一项所述的应用程序的启动装置,还包括:
    设置单元,设置为根据接收到的设置指令,设置所述启动参数与所述启动级别之间的对应关系,以及设置所述启动级别与所述工作频率之间的对应关系。
  14. 根据权利要求9至13中任一项所述的应用程序的启动装置,其中,
    所述启动方式包括:触控启动方式、手势启动方式、眼球启动方式以及生物特征启动方式,其中,所述生物特征启动方式包括:人脸启动方式、声纹启动方式、指纹启动方式和虹膜启动方式;
    其中,所述触控启动方式对应的启动参数包括以下之一或其组合:触控时长、触控压力值、触控面积以及所述应用程序的历史运行数据;
    所述手势启动方式对应的启动参数包括以下之一或其组合:手势停留时间、手势操作的位置以及所述应用程序的历史运行数据;
    所述眼球启动方式对应的启动参数包括以下之一或其组合:凝视所述应用程序的时间、眨眼的频率以及所述应用程序的历史运行数据;
    所述人脸启动方式对应的启动参数包括以下之一或其组合:人脸与所述终端的摄像头的距离和所述应用程序的历史运行数据;
    所述声纹启动方式对应的启动参数包括以下之一或其组合:声音的音量、所述声音的语速、所述声音的频率以及所述应用程序的历史运行数据;
    所述指纹启动方式对应的启动参数包括以下之一或其组合:指纹的面积以及所述应用程序的历史运行数据;以及
    所述虹膜启动方式对应的启动参数包括以下之一或其组合:虹膜的大小以及所述应用程序的历史运行数据。
  15. 一种终端,包括:如权利要求8至14中任一项所述的应用程序的启动装置。
  16. 一种非瞬时性计算机可读存储介质,存储有计算机可执行指令,所述计算机可执行指令设置为执行权利要求1-7中任一项应用程序的启动方法。
PCT/CN2016/092482 2016-01-29 2016-07-30 应用程序的启动方法、启动装置和终端 Ceased WO2017128676A1 (zh)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201610066646.9 2016-01-29
CN201610066646.9A CN105740020A (zh) 2016-01-29 2016-01-29 应用程序的启动方法、启动装置和终端

Publications (1)

Publication Number Publication Date
WO2017128676A1 true WO2017128676A1 (zh) 2017-08-03

Family

ID=56248052

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2016/092482 Ceased WO2017128676A1 (zh) 2016-01-29 2016-07-30 应用程序的启动方法、启动装置和终端

Country Status (2)

Country Link
CN (1) CN105740020A (zh)
WO (1) WO2017128676A1 (zh)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111273769A (zh) * 2020-01-15 2020-06-12 Oppo广东移动通信有限公司 一种设备控制方法、装置、电子设备及存储介质
CN112346764A (zh) * 2020-11-05 2021-02-09 深圳Tcl新技术有限公司 数据更新方法、终端设备及计算机可读存储介质

Families Citing this family (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105740020A (zh) * 2016-01-29 2016-07-06 宇龙计算机通信科技(深圳)有限公司 应用程序的启动方法、启动装置和终端
CN106599663A (zh) * 2016-12-14 2017-04-26 广东欧珀移动通信有限公司 信息安全保护方法及移动终端
CN107102870A (zh) * 2017-02-20 2017-08-29 北京海杭通讯科技有限公司 应用程序快速启动方法及智能终端
CN107273023A (zh) * 2017-05-19 2017-10-20 努比亚技术有限公司 一种终端及终端资源分配的方法
CN109426404A (zh) * 2017-08-23 2019-03-05 触信(厦门)智能科技有限公司 应用程序图标显示方法及装置、应用程序、终端
CN107767857B (zh) * 2017-09-27 2021-06-15 联想(北京)有限公司 一种信息播放方法、第一电子设备和计算机存储介质
CN107831887B (zh) * 2017-12-21 2021-03-23 青岛海信移动通信技术股份有限公司 一种应用启动方法及装置
CN108733194A (zh) * 2018-04-27 2018-11-02 珠海格力电器股份有限公司 降频处理方法及装置,存储介质,电子装置
CN109547611B (zh) * 2018-12-19 2021-09-24 朱彧 一种手机指环支架及采用该支架的报警系统和报警方法
CN113377462A (zh) * 2021-07-01 2021-09-10 北京百度网讯科技有限公司 用于小程序的处理方法、装置、设备和存储介质

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103324508A (zh) * 2013-06-26 2013-09-25 宇龙计算机通信科技(深圳)有限公司 启动应用的方法及装置
CN104360885A (zh) * 2014-11-18 2015-02-18 深圳市中兴移动通信有限公司 一种启动控制方法、装置及终端
CN104899124A (zh) * 2015-04-28 2015-09-09 深圳市万普拉斯科技有限公司 移动终端的安全操作控制方法和系统及移动终端
CN105740020A (zh) * 2016-01-29 2016-07-06 宇龙计算机通信科技(深圳)有限公司 应用程序的启动方法、启动装置和终端

Family Cites Families (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2005106623A1 (ja) * 2004-04-28 2005-11-10 Matsushita Electric Industrial Co., Ltd. Cpuクロック制御装置、cpuクロック制御方法、cpuクロック制御プログラム、記録媒体、及び伝送媒体
CN101770385B (zh) * 2010-02-04 2013-05-22 青岛海信移动通信技术股份有限公司 一种基于Linux系统的设备及其应用启动的方法
CN103226382B (zh) * 2012-01-31 2016-03-30 联想(北京)有限公司 应用运行方法和电子设备
CN103513748A (zh) * 2012-06-29 2014-01-15 联想(北京)有限公司 一种信息处理方法、信息处理器及电子设备
CN104899494B (zh) * 2015-05-29 2017-12-22 努比亚技术有限公司 基于多功能按键的操作控制方法及移动终端

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103324508A (zh) * 2013-06-26 2013-09-25 宇龙计算机通信科技(深圳)有限公司 启动应用的方法及装置
CN104360885A (zh) * 2014-11-18 2015-02-18 深圳市中兴移动通信有限公司 一种启动控制方法、装置及终端
CN104899124A (zh) * 2015-04-28 2015-09-09 深圳市万普拉斯科技有限公司 移动终端的安全操作控制方法和系统及移动终端
CN105740020A (zh) * 2016-01-29 2016-07-06 宇龙计算机通信科技(深圳)有限公司 应用程序的启动方法、启动装置和终端

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111273769A (zh) * 2020-01-15 2020-06-12 Oppo广东移动通信有限公司 一种设备控制方法、装置、电子设备及存储介质
CN112346764A (zh) * 2020-11-05 2021-02-09 深圳Tcl新技术有限公司 数据更新方法、终端设备及计算机可读存储介质

Also Published As

Publication number Publication date
CN105740020A (zh) 2016-07-06

Similar Documents

Publication Publication Date Title
WO2017128676A1 (zh) 应用程序的启动方法、启动装置和终端
EP2930716B1 (en) Speech recognition using electronic device and server
EP3316123B1 (en) Electronic device and controlling method thereof
KR102880884B1 (ko) 전자 장치 및 그의 동작 방법
CN103973986B (zh) 一种基于移动终端照相机的调焦及其镜头切换方法
RU2017124103A (ru) Совершение задачи без монитора в цифровом персональном помощнике
US9513790B2 (en) Electronic device and method for unlocking screen of electronic device
US10282019B2 (en) Electronic device and method for processing gesture input
CN106453859B (zh) 一种语音控制方法及移动终端
US20150067829A1 (en) Electronic Device and Method for Unlocking Screen of Electronic Device
US10802622B2 (en) Electronic device and method for controlling same
JP2017534993A (ja) 指の圧力および方向に基づいてカーソルを制御するためのシステムおよび方法
US20180203568A1 (en) Method for Enabling Function Module of Terminal, and Terminal Device
TWI522917B (zh) 應用程式的啓動控制方法與裝置及電腦可讀取儲存介質
EP3839702B1 (en) Electronic device and method for processing letter input in electronic device
EP2840477A1 (en) Electronic equipment and unlocking method of screen thereof
WO2018045487A1 (zh) 数据共享的方法与终端
WO2015043253A1 (zh) 快捷进入终端应用的方法及终端
EP4160363B1 (en) Expanding physical motion gesture lexicon for an automated assistant
TW201543269A (zh) 用於電子裝置之操控噪音為基的姿勢控制
CN104123109A (zh) 一种系统控制方法及电子设备
CN105183314B (zh) 一种亮屏时长调节方法及移动终端
WO2018010223A1 (zh) 应用程序的操控方法、操控装置和终端
CN111142679A (zh) 一种显示处理方法及电子设备
US9697727B2 (en) Remote control apparatus

Legal Events

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

Ref document number: 16887554

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 16887554

Country of ref document: EP

Kind code of ref document: A1