WO2021109882A1 - 应用启动方法、装置、存储介质及电子设备 - Google Patents

应用启动方法、装置、存储介质及电子设备 Download PDF

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Publication number
WO2021109882A1
WO2021109882A1 PCT/CN2020/130401 CN2020130401W WO2021109882A1 WO 2021109882 A1 WO2021109882 A1 WO 2021109882A1 CN 2020130401 W CN2020130401 W CN 2020130401W WO 2021109882 A1 WO2021109882 A1 WO 2021109882A1
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WIPO (PCT)
Prior art keywords
control chip
application
target application
control
electronic device
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PCT/CN2020/130401
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English (en)
French (fr)
Inventor
王涛
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Oppo广东移动通信有限公司
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Publication of WO2021109882A1 publication Critical patent/WO2021109882A1/zh

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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR 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; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/048Interaction techniques based on graphical user interfaces [GUI]
    • G06F3/0487Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser
    • G06F3/0488Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser using a touch-screen or digitiser, e.g. input of commands through traced gestures
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02DCLIMATE CHANGE MITIGATION TECHNOLOGIES IN INFORMATION AND COMMUNICATION TECHNOLOGIES [ICT], I.E. INFORMATION AND COMMUNICATION TECHNOLOGIES AIMING AT THE REDUCTION OF THEIR OWN ENERGY USE
    • Y02D10/00Energy efficient computing, e.g. low power processors, power management or thermal management

Definitions

  • This application relates to the field of computer technology, and in particular to an application startup method, device, storage medium, and electronic equipment.
  • the embodiments of the present application provide an application startup method, device, storage medium, and electronic equipment, which can reduce the power consumption of the electronic equipment.
  • an embodiment of the present application provides an application startup method applied to an electronic device.
  • the electronic device includes a first control chip and a second control chip.
  • the power consumption of the second control chip during operation is lower than that of the second control chip.
  • the power consumption of the first control chip during operation, and the application startup method includes:
  • the first control chip wakes up the second control chip when detecting that the electronic device enters the off-screen display mode, and enters a sleep state after waking up the second control chip;
  • the second control chip detects a touch signal, and the touch signal instructs to start a target application
  • the second control chip starts the target application according to the application type of the target application, or wakes up the first control chip according to the application type of the target application, and the first control chip starts the target application .
  • an embodiment of the present application provides an application startup device applied to an electronic device.
  • the electronic device includes a first control chip and a second control chip.
  • the power consumption of the second control chip during operation is lower than that of the second control chip.
  • the first control chip is configured to wake up the second control chip when it is detected that the electronic device enters the off-screen display mode, and enter a sleep state after waking up the second control chip;
  • the touch signal detection module is used to detect a touch signal, and the touch signal indicates to start a target application
  • the second application startup module is configured to: start the target application according to the application type of the target application;
  • the second control chip is further configured to: wake up the first control chip according to the application type of the target application;
  • the first application starting module is used for starting the target application after the first control chip is awakened.
  • an embodiment of the present application provides a storage medium applied to an electronic device.
  • the electronic device includes a first control chip and a second control chip.
  • the power consumption of the second control chip during operation is lower than that of the first control chip. 1.
  • Control the power consumption of the chip during operation; a computer program is stored in the storage medium, and when the computer program is executed, such that:
  • the first control chip wakes up the second control chip when detecting that the electronic device enters the off-screen display mode, and enters a sleep state after waking up the second control chip;
  • the second control chip detects a touch signal, and the touch signal instructs to start a target application
  • the second control chip starts the target application according to the application type of the target application, or wakes up the first control chip according to the application type of the target application, and the first control chip starts the target application .
  • an embodiment of the present application also provides an electronic device, including a first control chip and a second control chip, the power consumption of the second control chip during operation is lower than the power consumption of the first control chip during operation ;
  • the first control chip wakes up the second control chip when detecting that the electronic device enters the off-screen display mode, and enters a sleep state after waking up the second control chip;
  • the second control chip detects a touch signal, and the touch signal instructs to start a target application
  • the second control chip starts the target application according to the application type of the target application, or wakes up the first control chip according to the application type of the target application, and the first control chip starts the target application .
  • FIG. 1 is a schematic diagram of the first structure of an electronic device provided by an embodiment of this application.
  • FIG. 2 is a schematic diagram when the electronic device provided by the embodiment of the application works in the first mode.
  • FIG. 3 is a schematic diagram when the electronic device provided by the embodiment of the application works in the second mode.
  • FIG. 4 is another schematic diagram when the electronic device provided by the embodiment of the present application works in the second mode.
  • FIG. 5 is a schematic diagram of a second structure of an electronic device provided by an embodiment of this application.
  • FIG. 6 is a schematic flowchart of the first method for starting an application according to an embodiment of the application.
  • FIG. 7 is a schematic diagram of a second flow of an application startup method provided by an embodiment of the application.
  • FIG. 8 is a schematic diagram of the third process of the application startup method provided by an embodiment of the application.
  • FIG. 9 is a schematic structural diagram of an application launching device provided by an embodiment of the application.
  • FIG. 10 is a schematic diagram of a third structure of an electronic device provided by an embodiment of the application.
  • FIG. 11 is a schematic diagram of a fourth structure of an electronic device provided by an embodiment of the application.
  • An embodiment of the application provides an application startup method.
  • the execution subject of the application startup method may be the application startup device provided in the embodiment of the application, or an electronic device integrated with the application startup device, wherein the application startup device may use hardware or Realized by software.
  • the electronic device can be a smart phone, a tablet computer, a palmtop computer, a notebook computer, or a desktop computer and other devices.
  • An embodiment of the present application provides an application startup method, which is applied to an electronic device.
  • the electronic device includes a first control chip and a second control chip.
  • the power consumption of the second control chip during operation is lower than that of the second control chip.
  • the power consumption of the first control chip during operation, and the application startup method includes:
  • the first control chip wakes up the second control chip when detecting that the electronic device enters the off-screen display mode, and enters a sleep state after waking up the second control chip;
  • the second control chip detects a touch signal, and the touch signal instructs to start a target application
  • the second control chip starts the target application according to the application type of the target application, or wakes up the first control chip according to the application type of the target application, and the first control chip starts the target application .
  • the first control chip is installed with a first type of target application
  • the second control chip is installed with a second type of target application
  • the second control chip is based on the application type of the target application Starting the target application, or waking up the first control chip according to the application type of the target application, and starting the target application by the first control chip includes: if the target application is of the second type The second control chip starts the target application; if the target application is the first type of target application, the second control chip wakes up the first control chip, and wakes up the After the second control chip enters a sleep state, the first control chip starts the target application.
  • the first control chip to start the target application includes: the first control chip detects the current running state of the target application; if the current running state is a background running state, the first control chip A control chip controls the target application to switch to the foreground running; if the current running state is a non-running state, the first control chip starts the target application.
  • the method before the step of detecting the touch signal by the second control chip, the method further includes: the second control chip controls the electronic device to turn off the screen and display the application identifiers of one or more applications, the one or The multiple applications include the target application.
  • the electronic device further includes a switching module and a display screen, and the switching module is electrically connected to the first control chip, the second control chip, and the display screen, respectively;
  • the application startup method further includes: the second control chip outputs a switching control signal to control the switching module to perform a switching operation, so that the switching module turns on the first control chip
  • the output display data is switched to the display screen to turn on the display data output by the second control chip to the display screen, so as to realize the display control of the second control chip on the display screen;
  • the second control chip After waking up the first control chip, the application startup method further includes: the second control chip outputs a switching control signal to control the switching module to perform a switching operation, so that the switching module outputs from the turned-on second control chip
  • the display data is switched to the display screen to turn on the display data output by the first control chip to the display screen, so as to realize the display control of the display screen by the first control chip.
  • the waking up the second control chip includes: the first control chip sends a first wake-up instruction to the second control chip; the second control chip is based on the first wake-up instruction Switching from the sleep state to the working state; the waking up the first control chip includes: the second control chip sends a second wake-up instruction to the first control chip; the first control chip is based on the second The wake-up command switches from the sleep state to the working state.
  • the first control chip runs an application set in the first operating system based on a first operating system
  • the second control chip runs an application set in the second operating system based on a second operating system.
  • the second control chip starts the target application according to the application type of the target application, or wakes up the first control chip according to the application type of the target application, and is started by the first control chip
  • the target application includes: the second control chip starts the target application set in the second operating system based on the second operating system according to the application type of the target application, or according to the target application The application type of awakens the first control chip, and the first control chip starts the target application set in the first operating system based on the first operating system.
  • the resources required when the second operating system is running are less than the resources required when the first operating system is running.
  • FIG. 1 is a schematic diagram of the first structure of the electronic device provided by the embodiment of the present application.
  • the electronic device 100 proposed in the embodiment of the present application includes a first control chip 110, a second control chip 120, and a display screen 130, and the power consumption of the second control chip 120 is lower than that of the first control chip 110.
  • the first control chip 110 and the second control chip 120 are connected to the display screen 130 through a communication bus.
  • the first control chip 110 and the second control chip 120 are electrically connected to the display screen 130.
  • the communication bus may be an I2C (Inter-Integrated Circuit, two-wire serial bus) or SPI (Serial Peripheral Interface, serial peripheral interface) bus.
  • I2C Inter-Integrated Circuit, two-wire serial bus
  • SPI Serial Peripheral Interface, serial peripheral interface
  • the first control chip 110 may be used as the main control SOC (System on Chip, system-on-chip) of the electronic device 100.
  • a first processor is integrated on the first control chip 110.
  • a first memory is also integrated on the first control chip 110.
  • the second control chip 120 is a low-power SOC, the power consumption in the working state is much smaller than the power consumption of the first control chip 110 in the working state, and the second processor and the second memory are integrated thereon.
  • the frequency of the second processor is much smaller than that of the first processor, and the memory capacity of the second control chip 120 is also smaller than the memory capacity of the first control chip 110.
  • the first control chip 110 can control the electronic device 100 to work in the first mode based on the first operating system and enter the sleep state when the electronic device is working in the second mode.
  • the first control chip 110 does not perform data processing, and some or all of the electronic devices of the first control chip 110 can be powered off.
  • the second control chip 120 can control the electronic device 100 to work in the second mode based on the second operating system.
  • the first operating system and the second operating system are different operating systems, and the resources required by the second operating system when running are less than the resources required by the first operating system when running.
  • the resource can be storage space, computing frequency, required power, and so on.
  • the first operating system may be an Android operating system, a Linux operating system, a Windows operating system, or an ios operating system
  • the second operating system is a real-time operating system.
  • the electronic device 100 can run either the first operating system or the second operating system. It should be noted that the first operating system and the second operating system are two independent operating systems.
  • the first mode and the second mode may be different working modes of the electronic device 100. 2 and 3 at the same time, FIG. 2 is a schematic diagram of the electronic device provided by an embodiment of the application working in the first mode, and FIG. 3 is a schematic diagram of the electronic device provided by an embodiment of the application working in the second mode Schematic.
  • the first mode can be understood as the normal working mode of the electronic device 100 or the standard power consumption mode.
  • the power consumption of the electronic device 100 is the standard power consumption, that is, the normal power consumption.
  • the first mode may include a bright screen work mode or a bright screen display mode.
  • the display screen of the electronic device 100 lights up, and the display screen of the electronic device 100 may display icons and names of multiple applications.
  • the user clicks the application icon the electronic device 100 can start the corresponding application.
  • the display screen of the electronic device 100 may also display information such as time, date, weather, and temperature.
  • the second mode can be understood as a low power consumption mode of the electronic device 100.
  • the power consumption of the electronic device 100 is relatively low.
  • the power consumption of the electronic device 100 is lower than the standard power consumption, that is, lower than the normal power consumption. That is, the power consumption of the electronic device 100 when operating in the second mode is less than the power consumption of the electronic device 100 when operating in the first mode.
  • the second mode may include an off-screen display mode or a simple operation mode.
  • the always-on display (AOD) mode refers to a display mode in which the electronic device 100 displays information on the display screen 130 in the off-screen display mode.
  • the first control chip 110 can enter the dormant state, and the second control chip 120 enters the working state, and realizes dynamic display, refresh, and touch screen processing of the screen with extremely low power consumption. And the operation of some applications.
  • the second control chip 120 can control the update and display of information such as time, date, weather, calendar, etc., and can also control the display of shortcut tool icons on the off-screen display interface. It can also support the running of some lightweight applications such as e-books, compasses, and calculators.
  • FIG. 4 is another schematic diagram of the electronic device provided by the embodiment of the application when operating in the second mode.
  • the application identifier can be the icon identifier corresponding to some shortcut applications, such as calculator application, mini game application, memo application, unlock application, clock application, camera application, flashlight application, compass application and other shortcut applications corresponding to Application ID.
  • the user can start the corresponding shortcut application by operating the corresponding application identification.
  • the multiple application identities may be arranged in a ring on the display screen 130 with the unlocked application as the center, and the multiple application identities may also be arranged in a matrix, star shape, etc. The shape is arranged.
  • the embodiment of the present application does not specifically limit the arrangement form of multiple application identifiers.
  • the application identifier may also be a prompt icon identifier of some notification information. For example, missed call notification icon identification, unread information notification icon identification, etc.
  • the user can start the application that generates the notification information by operating on the corresponding prompt icon identification.
  • the notification information may be received when the electronic device 100 is in the off-screen display mode, and the notification information may also be received when the electronic device 100 is in the on-screen display mode.
  • the radio frequency circuit inside the electronic device 100 implements wireless signal transmission between the electronic device 100 and the base station through the antenna system of the electronic device 100.
  • the radio frequency circuit After receiving the wireless signal transmitted by the base station, the radio frequency circuit transmits the wireless signal to the first control chip 110, and the first control chip 110 generates notification information to remind the event according to the wireless signal.
  • the first control chip 110 may send the information to the second control chip 120 to remind the event, such as the notification information prompting icon identification, and wake up the second control chip 120, and then the first control chip 110 It enters a dormant state by itself.
  • the display data of the second control chip 120 is input to the display screen 130 for control, and the second control chip 120 can display the prompt icon mark of the notification information on the display screen 130 to remind The user views the notification information.
  • the radio frequency circuit can send a wake-up instruction to the first control chip 110, and the first control chip 110 can be controlled by the first control chip 110 according to the wake-up instruction.
  • the sleep state is switched to the working state (at this time, in order to save power consumption, the first control chip 110 may send a sleep instruction to the second control chip 120, so that the second control chip 120 enters the sleep state).
  • the first control chip 110 receives the wireless signal transmitted by the radio frequency circuit and generates notification information reminding events (for example, the aforementioned notification information prompting icon identification).
  • the first control chip 110 When the first control chip 110 receives the off-screen display instruction, the first control chip 110 The notification information is sent to the second control chip 120 to remind the event, and the second control chip 120 is awakened, and then the first control chip 110 itself enters the sleep state. After the second control chip 120 is awakened, the display data of the second control chip 120 is input to the display screen 130 for control, and the second control chip 120 can display the prompt icon mark of the notification information on the display screen 130 to remind The user views the notification information.
  • the electronic device of the embodiment of this application can also display other time, off-screen when operating in the second mode, Live wallpapers, etc.
  • the first operating system can be understood as a standard power consumption operating system
  • the second operating system can be understood as a low power consumption operating system. Therefore, in the electronic device 100, it can also be understood that the first control chip 110 is used to control the electronic device 100 to operate in the standard power consumption mode under the standard power consumption operating system, and the second control chip 120 is used to control the electronic device 100 to operate in low power mode. It runs in low power consumption mode under the power consumption operating system.
  • the first control chip 110 controls the electronic device 100 to run in a standard mode under a standard power consumption operating system
  • the second control chip 120 may be in a sleep state.
  • the first control chip 110 may be in a sleep state.
  • the display screen of the electronic device 100 is locked and the screen is off, but the display screen of the electronic device 100 can display part of the information in the off-screen display mode, for example, the electronic device 100 can display the time, lock screen identification, Quick application icons and other information.
  • the electronic device 100 can quickly launch applications to meet all functional requirements of the user, such as performing online shopping functions, game functions, audio-visual functions, etc. required by the user.
  • the electronic device 100 can quickly launch a quick application to meet some of the user's functional requirements, such as executing calculator functions, game console functions, memo functions, camera functions, flashlight functions, etc., and is satisfying the user's part Under the premise of functional requirements, the power consumption of the electronic device 100 can be effectively reduced, and the battery life of the electronic device 100 can be prolonged.
  • the processing capacity of the second control chip 120 is less than the processing capacity of the first control chip 110, and the processing capacity of the first control chip 110 is smaller than that of the first control chip 110.
  • the processing capability is relatively strong, while the processing capability of the second control chip 120 is relatively weak.
  • the first control chip 110 can perform all data processing and control all functional components of the electronic device 100 based on the first operating system.
  • the second control chip 120 can only perform part of the data processing and control part of the functional components of the electronic device 100 based on the second operating system.
  • the second control chip 120 can perform simple data processing based on the second operating system and control functional components with low data processing requirements, and the second control chip 120 cannot perform complex data processing or control high data processing requirements. Functional components.
  • the first control chip 110 controls the electronic device 100 to work in the first mode based on the first operating system
  • the second control chip 120 controls the electronic device 100 to work in the second mode based on the second operating system
  • the first control chip 110 When the electronic device 100 is working in the second mode, it enters the dormant state. Therefore, when the electronic device 100 is working in the second mode, the power consumption of the first control chip 110 can be saved, and since the operating power consumption of the second control chip 120 is less than that of the first To control the operating power consumption of the chip 110, the resources required when the second operating system is running are less than those required when the first operating system is running.
  • the power consumption of the electronic device 100 when working in the second mode is less than when the electronic device 100 is working
  • the power consumption in the first mode can not only ensure the continuous operation of the electronic device 100 to meet the needs of users, but also effectively reduce the power consumption of the electronic device 100 and extend the battery life of the electronic device 100.
  • FIG. 5 is a schematic diagram of a second structure of an electronic device provided by an embodiment of this application.
  • the electronic device 100 of the embodiment of the present application may further include a switching module 140.
  • the switching module 140 includes at least two data input terminals 141 and 142, at least one output terminal 143, and at least one switching control terminal 144.
  • one data input terminal 141 of the switching module 140 can be connected to the display data output terminal 111 of the first control chip 110, and the other data input terminal 142 of the switching module 140 can be connected to the display data output terminal 121 of the second control chip 120 to switch
  • the switching control terminal 144 of the module 140 is connected to the switching control signal output terminal 122 of the second control chip 120, and the data output terminal 143 of the switching module 140 can be connected to the display screen 130.
  • the switching module 140 is used to switch the display data conduction path of the display screen 130 between the first control chip 110 and the second control chip 120.
  • scenario A when the first control chip 110 is in a working state and the second control chip 120 is in a sleep state, the display data of the first control chip 110 is input to the display screen 130 through the switching module 140 for display control.
  • Case B When the first control chip 110 detects that the display screen 130 enters the off-screen display mode, the second control chip 120 is awakened, and the first control chip 110 enters the sleep state.
  • the switching module 140 switches the input source of the display data of the display screen 130 from the first control chip 110 to the second control chip 120, that is, the second control chip
  • the display data of 120 is input to the display screen 130 through the switching module 140 for display control.
  • Scenario C When the first control chip 110 is awakened and enters the working state, if the first control chip 110 needs to display information on the display screen 130, the second control chip 120 controls the switching module 140 to perform the switching operation and switch to ON The display data output by the first control chip 110 is sent to the display screen 130 for display control. After the switching, the second control chip 120 can enter the sleep state, that is, return to the situation A, and realize the switching control of the display screen 130 in this way.
  • the switching of the switching module 140 is always controlled by the second control chip 120, which can save the interface occupation of the first control chip 110 at the hardware design level.
  • the first control chip 110 is a main control SOC chip in the electronic device 100, for example, an application processor (Application Processor, AP for short).
  • the main control SOC generally assumes more function control, and its interface resources are relatively tight.
  • the second control chip 120 outputs the switching control signal to control the switching of the switching module 140, so that the interface of the main control SOC (for example, the bus interface) is not occupied, and the circuit design complexity is reduced.
  • the electronic device 100 of the embodiment of the present application may further include a touch circuit, and the touch circuit may be electrically connected to the first control chip 110 and the second control chip 120.
  • the touch circuit can be arranged at any position on the surface of the electronic device 100 as required.
  • the touch circuit may be provided on the surface of the back panel of the electronic device 100, or the touch circuit may be covered on the display screen 130 in the form of a touch screen.
  • the second control chip 120 may communicate with the touch screen through I2C, and communicate with the display screen 130 through MIPI (Mobile Industry Processor Interface).
  • the touch control circuit can be used to receive touch commands from the user.
  • the first control chip 110 may receive the user's screen-off event touch command based on the touch circuit
  • the second control chip 120 may receive the user's screen-on event touch command based on the touch circuit.
  • the electronic device 100 when the electronic device 100 is in the bright-screen display mode, if the first control chip 110 receives a touch command for the screen-off event, it can send a wake-up request to the second control chip 120, and the second control chip 120 receives the wake-up request After that, the second control chip 120 enters the working state.
  • the electronic device 100 is in the off-screen display mode, if the second control chip 120 receives the touch command of the screen-on event, it can send a wake-up request to the first control chip 110. After the first control chip 110 receives the wake-up request, The first control chip 110 enters the working state.
  • FIG. 6 is a schematic flowchart of the first method for starting an application according to an embodiment of the present application.
  • the specific process of the application startup method provided in the embodiment of the present application may be as follows:
  • the first control chip wakes up the second control chip when detecting that the electronic device enters the off-screen display mode, and enters the sleep state after waking up the second control chip.
  • the electronic device 100 triggers a screen-off event when it receives a screen-locking instruction or a screen-off instruction.
  • the user triggers the screen-locking instruction through the lock screen key or lock screen control; or when the electronic device 100 is on In the screen display mode, the user does not operate the electronic device 100 within a certain period of time to trigger a screen-off event.
  • the first control chip 110 When the first control chip 110 detects the screen-off event, it controls the display screen 130 to enter the screen-off display mode. At the same time, the first control chip 110 sends a first wake-up instruction to the second control chip 120 to wake up the second control chip 120, and the first control chip 110 enters a sleep state after waking up the second control chip 120.
  • the second control chip 120 can output a switching control signal to control the switching module 140 to perform a switching operation, so that the switching module 140 switches from turning on the display data output by the first control chip 110 to the display screen 130 to turning on the second control chip 120
  • the output display data is sent to the display screen 130 to realize the display control of the second control chip 120 on the display screen 130.
  • the second control chip detects a touch signal, and the touch signal indicates to start the target application.
  • the second control chip 120 can detect the touch signal through the touch circuit.
  • the touch signal may instruct the electronic device 100 to start the target application, that is, the touch signal may be a trigger signal for starting the target application.
  • the touch signal may be a signal generated by an operation such as an application mark, a prompt mark, etc., acting on the display screen 130, such as a sliding touch signal, a long-press touch signal, and a concurrent multi-touch signal.
  • the sliding touch signal may be a sliding trigger signal triggered when the second control chip 120 receives a sliding operation.
  • the sliding operation acts as a touch operation indicating sliding from the first position of the display screen 130 to the second position, where the first position can be a preset position in the display screen 130, and the second position can also be where the application logo or prompt icon is located. s position.
  • the long-press touch signal may also be a long-press touch signal triggered when the second control chip 120 receives a target long-press operation, and the target long-press operation may also be a long-press operation acting on an application logo or a prompt icon.
  • the concurrent multi-touch signal may also be a concurrent multi-touch signal that is triggered when the second control chip 120 receives at least two target touch operations at the same time, and the positions of the at least two target touch operations include at least the third position and the first position.
  • the third position may be a preset position in the display screen 130
  • the fourth position may be a position where the application identifier or the prompt icon is located.
  • the touch signal When the touch signal is set to the above sliding touch signal, long-press touch signal, and concurrent multi-touch signal, it can effectively prevent the application logo in the off-screen display interface from being touched by mistake, and can effectively prevent the application corresponding to the application logo Start when the user does not want to start.
  • the touch signal is not limited to the above examples.
  • the touch circuit After receiving the above touch signals, the touch circuit sends these touch signals to the second control chip 120, and the second control chip 120 recognizes and detects the above touch signals.
  • the second control chip starts the target application according to the application type of the target application, or wakes up the first control chip according to the application type of the target application, and the first control chip starts the target application.
  • Target applications of different application types can correspond to different startup methods.
  • the second control chip 120 can directly start the target application; or the second control chip 120 can wake up the first control chip 110, and then the first control chip 110 can start the target application.
  • the second control chip 120 wakes up the first control chip 110, it can enter a sleep state by itself to save power consumption.
  • the first control chip 110 can start and run applications set on the first operating system based on the first operating system
  • the second control chip 120 can start and run applications set on the second operating system based on the second operating system
  • the resources required by the second operating system when running may be less than the resources required by the first operating system when running. Therefore, when the target application is an application set in the first operating system, the second control chip 120 can wake up the first control chip 110, and the first control chip 110 can start and run the target application based on the first operating system after being awakened.
  • the second control chip 120 can directly start and run the target application based on the second operating system, and there is no need to wake up the first control chip 110, which can save the power of the electronic device 100. Consumption.
  • the second control chip 120 can also output a switching control signal to control the switching module 140 to perform a switching operation, so that the switching module 140 turns on the display output from the second control chip 120
  • the data to the display screen 130 is switched to turn on the display data output by the first control chip 110 to the display screen 130, so as to realize the display control of the first control chip 110 on the display screen 130.
  • the electronic device when the electronic device is in the off-screen display mode, if the user wants to start the target application and perform a touch operation on the electronic device, there is no need to wake up the first control chip, and the low-power
  • the second control chip that consumes power detects the touch signal generated by the touch operation in the off-screen display mode, that is, once it enters the off-screen display mode, the first control chip can stay in the dormant state after entering the dormant state, and there is no need to detect the touch.
  • the control signal is awakened, so that the power consumption caused by the frequent awakening of the first control chip can be saved.
  • the first control chip 110 with higher power consumption enters a sleep state, and the second control chip 120 with lower power consumption is used to detect touch signals, which can also reduce the cost of detecting touch signals. Power consumption.
  • the overall power consumption of the electronic device 100 can be reduced in the end.
  • FIG. 7 is a schematic diagram of the second flow of the application startup method provided by the embodiment of the application. 103.
  • the second control chip starts the target application according to the application type of the target application, or wakes up the first control chip according to the application type of the target application, and the first control chip starts the target application, which further includes:
  • the second control chip starts the target application.
  • the second control chip wakes up the first control chip, and enters a sleep state after waking up the second control chip.
  • the first control chip starts the target application.
  • the target application of the first type may be an application installed on the first control chip 110. Specifically, it may be stored in the memory of the first control chip 110 and run based on the first operating system on the memory.
  • the first type of target applications may be heavyweight applications such as video playback applications, social communication applications, and music playback applications. During the startup and operation of these first-type target applications, the first control chip 110 requires a lot of resources, so that the first operating system of the first control chip 110 becomes a heavyweight operating system.
  • the target application of the second type may be an application installed on the second control chip 120. Specifically, it can be installed on the memory of the second control chip 120 and run based on the second operating system on the memory.
  • the second operating system is a lightweight relative to the first operating system on the first control chip 110. Operating system.
  • the second type of target application can be a lightweight and quick application such as a calculator application, a mini game application, a memo application, an unlocking application, a clock application, a camera application, a flashlight application, and a guide application.
  • the second control chip 120 may control the electronic device 100 to turn off the screen to display the application identification of one or more applications, and the one or more applications include the target application.
  • the second control chip 120 may control the display screen 130 to turn off the screen to display the application identification of the first type of target application, and the second control chip 120 may also control the display screen 130 to turn off the screen to display the application identification of the second type of target application.
  • the second control chip 120 may also simultaneously control the display screen 130 to turn off the screen to display the application identifiers of the first type of target application and the second type of target application.
  • the touch signal may be an operation signal that acts on application identifiers of different types of target applications.
  • the second control chip 120 detects that the touch signal is a signal generated by the application identifier acting on the second type of target application, it means that the user wants to start the second type of target application installed on the second control chip 120. At this time, the second control chip 120 can directly start the second type of target application. Since the applications installed on the second control chip 120 are lightweight applications, using the second control chip 120 with lower power consumption to start the second type of target application can reduce the overall size of the electronic device 100. Power consumption.
  • the second control chip 120 When the second control chip 120 detects that the touch signal is a signal generated by the application identifier acting on the first type of target application, it means that the user wants to start the first type of target application installed on the first control chip 110. , The resources that can be called by the second control chip 120 are not enough to start the first type of target application. At this time, the second control chip 120 wakes up the first control chip 110, and the first control chip 110 starts the first type of target Application can ensure the normal operation of the target application.
  • the second control chip 120 After the second control chip 120 wakes up the first control chip 110, the second control chip 120 can perform a switching operation on the switching module 140, so that the second control chip 120 enters a sleep state to save the power consumption of the electronic device 100. At the same time, after the first control chip 110 is awakened, the display data output by the first control chip 110 is input to the display screen 130. The first control chip 110 can control the display screen 130 to display the first type of target application in the bright screen display mode. The startup interface or display interface of the computer.
  • FIG. 8 is a schematic diagram of the third process of the application startup method provided by the embodiment of the application.
  • the first control chip starts the first type of target application, including:
  • the first control chip detects the current running state of the target application.
  • the first control chip controls the target application to switch to the foreground running.
  • the first control chip starts the target application.
  • the first control chip 110 can detect the current state of the first type of target application.
  • the current state may include being in a background running state or being in a non-running state.
  • the first control chip 110 may directly control the target application to switch to the foreground to run.
  • the display screen 130 may directly display the display interface of the target application, and may skip the main display unlocking interface, the target application unlocking interface, and the target application launching interface of the electronic device 100.
  • the first control chip 110 may directly start the target application of the first type.
  • the display screen 130 may display the startup interface of the first type of target application, and skip the main display unlocking interface, the target application unlocking interface, etc. of the electronic device 100.
  • the first control chip 110 starts the target application according to the state of the target application, and the electronic device 100 directly starts the target application without going through a complicated main display unlocking interface, which realizes that the electronic device 100 can directly start the target application without unlocking. effect.
  • the first control chip 110 When the first control chip 110 detects that the display screen 130 enters the off-screen display mode, it sends a first wake-up command to the second control chip 120 to wake up the second control chip 120, and the second control chip 120 switches from the sleep state according to the first wake-up command.
  • the first control chip 110 enters the dormant state after waking up the second control chip 120; the second control chip 120 displays the icon of the second type of target application-the compass application logo off the screen on the display screen 130
  • the second control chip 120 detects the touch signal through the touch circuit; the second control chip 120 determines that the touch signal indicates to start the icon of the second type of target application-the compass application, the second control chip 120 directly starts the first
  • the second type of target application-the compass application continues to display the startup interface/display interface of the second type of target application-the startup interface/display interface of the compass application in the off-screen display mode.
  • the user in the off-screen display mode, operates the first type of target application-social application as an example to specifically introduce the application startup method of the embodiment of the present application:
  • the first control chip 110 When the first control chip 110 detects that the display screen 130 enters the off-screen display mode, it sends a first wake-up command to the second control chip 120 to wake up the second control chip 120, and the second control chip 120 switches from the sleep state according to the first wake-up command.
  • the first control chip 110 enters the dormant state after waking up the second control chip 120; the second control chip 120 turns off the screen of the received first type of target application identification-social application unread notification information Displayed on the display screen 130; the second control chip 120 detects the touch signal through the touch circuit; the second control chip 120 determines that the touch signal indicates to start the first type of target application-social application, the second control chip 120 Send a second wake-up instruction to the first control chip 110, and the first control chip 110 switches from the sleep state to the working state according to the second wake-up instruction; at the same time, the second control chip 120 enters the sleep state after waking up the first control chip 110; The first control chip 110 detects the current state of the first type of target application-social application; if the current state is the background running state, the first control chip 110 controls the first type of target application-social application to directly switch to the foreground to run; The current state is a non-running state, and the first control chip 110 starts the first
  • the embodiment of the present application also provides an application startup device, which is applied to an electronic device.
  • the electronic device includes a first control chip and a second control chip.
  • the power consumption of the second control chip during operation is lower than that of the first control chip.
  • the first control chip is configured to wake up the second control chip when it is detected that the electronic device enters the off-screen display mode, and enter a sleep state after waking up the second control chip;
  • the touch signal detection module is used to detect a touch signal, and the touch signal indicates to start a target application
  • the second application startup module is configured to: start the target application according to the application type of the target application;
  • the second control chip is further configured to: wake up the first control chip according to the application type of the target application;
  • the first application starting module is used for starting the target application after the first control chip is awakened.
  • the first control chip is installed with a first type of target application
  • the second control chip is installed with a second type of target application
  • the second application startup module is further used for: when the target application is a second type of target Application, the second application startup module starts the second type of target application;
  • the second control chip is also used to: when the target application is the first type of target application, wake up the first control chip, and enter sleep after waking up the first control chip State, the first application start module is also used to start the first type of target application after the first control chip is awakened.
  • the first application startup module can also be used to execute: detect the current running status of the target application, if the current running status is the background running status, control the target application to switch to the foreground running, if the current running status is the non-running status To start the target application.
  • the second control chip may further include a display control module, the display control module is used to control the off-screen display of the application identification of one or more applications, and the one or more applications include the target application.
  • the electronic device further includes a switching module and a display screen.
  • the switching module is electrically connected to the first control chip, the second control chip, and the display screen, respectively, and the switching module is used to execute: wake up the first control chip on the first control chip.
  • the second control chip After the second control chip, the second control chip outputs a switching control signal to control the switching module to perform a switching operation, so that the switching module switches from turning on the display data output by the first control chip to the screen to turning on the display output by the second control chip Data is sent to the display screen to realize the display control of the display screen by the second control chip; after the second control chip wakes up the first control chip, the second control chip outputs a switching control signal to control the switching module to perform the switching operation , So that the switching module switches from turning on the display data output by the second control chip to the display screen to turning on the display data output by the first control chip to the display screen, so as to realize the display of the display screen by the first control chip control.
  • the first control chip is also used to send a first wake-up instruction to the second control chip; the second control chip is also used to switch from a sleep state to a working state according to the first wake-up instruction; the second control chip is also used Sending a second wake-up instruction to the first control chip; the first control chip is also used to switch from the sleep state to the working state according to the second wake-up instruction.
  • the first control chip runs an application set in the first operating system based on the first operating system
  • the second control chip runs an application set in the second operating system based on the second operating system
  • the second control chip According to the application type of the target application, the target application set in the second operating system is started based on the second operating system, or the first control chip is awakened according to the application type of the target application, and the first control chip is started based on the first operating system.
  • the target application in the first operating system is based on the first operating system.
  • the resources required when the second operating system is running are less than the resources required when the first operating system is running.
  • FIG. 9 is a schematic structural diagram of an application launching device provided by an embodiment of the application.
  • the application activation device 300 can be applied to an electronic device, and the electronic device can include a first control chip 310, a second control chip 320, and a display screen, and the power consumption of the second control chip 320 when running is lower than that of the first control chip 310 Power consumption during operation.
  • the first control chip 310 includes a first application activation module 301
  • the second control chip 320 includes a touch signal detection module 302 and a second application activation module 303. among them:
  • the first control chip 310 is configured to wake up the second control chip 320 when detecting that the electronic device enters the off-screen display mode, and enter the sleep state after waking up the second control chip 320;
  • the touch signal detection module 302 is configured to detect touch signals, which indicate to start the target application
  • the second application starting module 303 is configured to start the target application according to the application type of the target application
  • the second control chip 320 is further configured to wake up the first control chip 310 according to the application type of the target application, and enter the sleep state after waking up the first control chip 310;
  • the first application starting module 301 is also used to start the target application after the first control chip 310 is awakened.
  • the first control chip 310 is installed with a first type of target application
  • the second control chip 320 is installed with a second type of target application.
  • the second application starting module 303 is further configured to: when the target application is a second type of target application, the second application starting module 303 starts the second type of target application.
  • the second control chip 320 is also used to wake up the first control chip 310 when the target application is the first type of target application, and enter the sleep state after waking up the first control chip 310.
  • the first application launching module 301 is also used to launch the first type of target application after the first control chip 310 is awakened.
  • the first application startup module 301 can also be used to execute: detecting the current running state of the target application. If the current running state is the background running state, the control target application is switched to the foreground running. If the current running state is not running, start the target application.
  • the second control chip 320 may further include: a display control module, which is used to control the screen to be turned off to display the application identifiers of one or more applications, and the one or more applications include the target application.
  • a display control module which is used to control the screen to be turned off to display the application identifiers of one or more applications, and the one or more applications include the target application.
  • the electronic device may also include a switching module and a display screen.
  • the two data input terminals of the switching module are respectively connected to the display data output terminals of the first control chip 310 and the second control chip 320, and the switching control terminal of the switching module is connected to the first control chip 310 and the display data output terminal of the second control chip 320.
  • the switching control signal output terminal of the control chip 320, and the data output terminal of the switching module is connected to the display screen.
  • the switching module is used to execute: after the first control chip 310 wakes up the second control chip 320, the second control chip 320 outputs a switching control signal to control the switching module to perform a switching operation, so that the switching module turns on the first control chip 310
  • the output display data is switched to the display screen to turn on the display data output by the second control chip 320 to the display screen, so as to realize the display control of the second control chip 320 on the display screen.
  • the second control chip 320 After the second control chip 320 wakes up the first control chip 310, the second control chip 320 outputs a switching control signal to control the switching module to perform the switching operation, so that the switching module turns on the display data output by the second control chip 320 Until the display screen is switched to turn on the display data output by the first control chip 310 to the display screen, so as to realize the display control of the first control chip 310 on the display screen.
  • the first control chip 310 is further used for: sending a first wake-up instruction to the second control chip 320; the second control chip 320 is further used for: switching from a sleep state to a working state according to the first wake-up instruction.
  • the second control chip 320 is further used for: sending a second wake-up instruction to the first control chip 310; the first control chip 310 is also used for: switching from a sleep state to a working state according to the second wake-up instruction.
  • the electronic device further includes a touch circuit, and the touch circuit is electrically connected to the first control chip 310 and the second control chip 320.
  • the touch signal detection module 302 detects the touch signal through the touch circuit.
  • the application launching device 300 provided in this embodiment of the application belongs to the same concept as the application launching method in the above embodiment, and any method provided in the application launching method embodiment can be run on the application launching device 300, which For the specific implementation process, please refer to the application startup method embodiment, which will not be repeated here.
  • the application launching apparatus 300 of the embodiment of the present application does not need to wake up the first control chip, and the user does not need to wake up the first control chip.
  • the second control chip for power consumption detects the touch signal generated by the touch operation in the off-screen display mode, that is, once the off-screen display mode is entered, the first control chip can remain in the dormant state after entering the dormant state, and there is no need to detect The touch signal is awakened, thereby saving power consumption caused by the frequent awakening of the first control chip.
  • the 310 first control chips with higher power consumption enter the dormant state, and the second control chip 320 with lower power consumption is used to detect touch signals, which can also reduce the cost of detecting touch signals. Power consumption.
  • the overall power consumption of the application launching device 300 can be finally reduced.
  • An embodiment of the present application also provides an electronic device, including a first control chip and a second control chip, the power consumption of the second control chip during operation is lower than the power consumption of the first control chip during operation;
  • the first control chip wakes up the second control chip when detecting that the electronic device enters the off-screen display mode, and enters a sleep state after waking up the second control chip;
  • the second control chip detects a touch signal, and the touch signal instructs to start a target application
  • the second control chip starts the target application according to the application type of the target application, or wakes up the first control chip according to the application type of the target application, and the first control chip starts the target application .
  • the first control chip is installed with a first type of target application
  • the second control chip is installed with a second type of target application
  • the second control chip is based on the application type of the target application Starting the target application, or waking up the first control chip according to the application type of the target application, and starting the target application by the first control chip includes: if the target application is of the second type The second control chip starts the target application; if the target application is the first type of target application, the second control chip wakes up the first control chip, and wakes up the After the second control chip enters a sleep state, the first control chip starts the target application.
  • the first control chip to start the target application includes: the first control chip detects the current running state of the target application; if the current running state is a background running state, the first control chip A control chip controls the target application to switch to the foreground running; if the current running state is a non-running state, the first control chip starts the target application.
  • the method before the step of detecting the touch signal by the second control chip, the method further includes: the second control chip controls the electronic device to turn off the screen and display the application identifiers of one or more applications, the one or The multiple applications include the target application.
  • the electronic device further includes a switching module and a display screen, and the switching module is electrically connected to the first control chip, the second control chip, and the display screen, respectively;
  • the application startup method further includes: the second control chip outputs a switching control signal to control the switching module to perform a switching operation, so that the switching module is guided Switching the display data output by the first control chip to the display screen to switch the display data output by the second control chip to the display screen, so as to realize the display control of the display screen by the second control chip;
  • the application startup method further includes: the second control chip outputs a switching control signal to control the switching module to perform a switching operation, so that the switching module is guided
  • the display data output by the second control chip is switched to the display screen to switch the display data output by the first control chip to the display screen, so as to realize the display control of the display screen by the first control chip.
  • the waking up the second control chip includes: the first control chip sends a first wake-up instruction to the second control chip; the second control chip is based on the first wake-up instruction Switch from sleep state to working state;
  • the waking up the first control chip includes: the second control chip sends a second wake-up instruction to the first control chip; and the first control chip switches from a sleep state to work according to the second wake-up instruction status.
  • the first control chip runs an application set in the first operating system based on a first operating system
  • the second control chip runs an application set in the second operating system based on a second operating system
  • the second control chip starts the target application according to the application type of the target application, or wakes up the first control chip according to the application type of the target application, and the first control chip starts the target application , Including: the second control chip starts the target application set in the second operating system based on the second operating system according to the application type of the target application, or wakes up according to the application type of the target application.
  • the first control chip, and the target application set in the first operating system is started by the first control chip based on the first operating system.
  • the resources required when the second operating system is running are less than the resources required when the first operating system is running.
  • the electronic device may be a smart phone, a tablet computer, or other devices.
  • FIG. 10 is a schematic diagram of a third structure of an electronic device provided by an embodiment of this application.
  • the first control chip 401 includes a first processor 4011 and a first memory 4012.
  • the second control chip 402 includes a second processor 4021 and a second memory 4022.
  • the second processor 4021 is electrically connected to the second memory 4022.
  • the first processor 4011 and the first memory 4012 are electrically connected.
  • the first memory 4012 may also be provided separately and not integrated in the first control chip 401.
  • the first control chip 401 can be used as the main control SOC of the electronic device 400; the second control chip 402 is a low power consumption SOC, and its power consumption is less than that of the first control chip 401.
  • the first processor 4011 is the control center of the electronic device 400. It uses various interfaces and lines to connect the various parts of the entire electronic device 400, runs or calls the first computer program stored in the first memory 4012, and calls the first computer program stored in the first memory 4012.
  • the data in a memory 4012 executes various functions of the electronic device 400 and processes data, thereby monitoring the electronic device 400 as a whole.
  • the first memory 4012 may be used to store the first computer program and data.
  • the first computer program stored in the first memory 4012 contains instructions that can be executed in the first processor 4011.
  • the first computer program can constitute various functional modules.
  • the first processor 4011 executes various functional applications and data processing by calling the first computer program stored in the first memory 4012.
  • the second processor 4021 can also be used as the control center of the electronic device 400, using various interfaces and lines to connect various parts of the entire electronic device 400, by running or calling the second computer program stored in the second memory 4022, and calling the storage
  • the data in the second memory 4022 executes various functions of the electronic device 400 and processes the data, thereby monitoring the electronic device 400 as a whole.
  • the second memory 4022 may be used to store a second computer program and data.
  • the second computer program stored in the second memory 4022 contains instructions that can be executed in the first processor 4011.
  • the first computer program can constitute various functional modules.
  • the second processor 4021 calls the second computer program stored in the second memory 4022 to execute various functional applications and data processing.
  • the first processor 4011 in the electronic device 400 will load one or more instructions corresponding to the process of the first computer program into the first memory 4012 according to the following steps, and the first processor 4012
  • the device 4011 calls a first computer program stored in the first memory 4012, and is used to: when detecting that the display screen enters the off-screen display mode, wake up the second control chip 402, and wake up the second control chip 402
  • the chip 402 then controls the first control chip 401 to enter the sleep state.
  • the second processor 4021 in the electronic device 400 will load the instructions corresponding to the process of one or more second computer programs into the second memory 4022 according to the following steps, and the second processor 4021 will call and store the instructions in the first memory 4022.
  • the first control chip 401 is installed with a first type of target application
  • the second control chip 402 is installed with a second type of target application.
  • the second processor 4021 is further configured to: when the target application is a second type of target application, start the target application.
  • the target application is the first type of target application
  • the first control chip 401 is awakened
  • the second control chip 402 is awakened and enters the sleep state.
  • the first processor 4011 is further configured to: after the first control chip 401 is awakened, the first control chip 401 starts the target application. Specifically, the first processor 4011 is further configured to: detect the current running state of the target application; if the current running state is the background running state, control the target application to switch to the foreground running; if the current running state is the non-running state, start the target application.
  • the second processor 4021 is further configured to: control the application identifier of one or more applications to turn off the display screen, and the one or more applications include the target application.
  • the electronic device 400 further includes a switching module, the two data input terminals of the switching module are respectively connected to the display data output terminals of the first control chip 401 and the second control chip 402, and the switching control terminal of the switching module is connected to the second control chip 402.
  • the switching control signal output terminal of the control chip 402, and the data output terminal of the switching module is connected to the display screen; the second processor 4021 is also used for: the second control chip 402 outputs a switching control signal to control the switching module to perform a switching operation , So that the switching module switches from turning on the display data output by the first control chip 401 to the display screen to turning on the display data output by the second control chip 402 to the display screen, so that the second control chip 402 is Describes the display control of the display screen.
  • the second control chip 402 outputs a switching control signal to control the switching module to perform a switching operation, so that the switching module switches from turning on the display data output by the second control chip 402 to turning on the display screen to turning on the first control chip 401
  • the output display data is sent to the display screen to realize the display control of the first control chip 401 on the display screen.
  • the first processor 4011 is further configured to send a first wake-up instruction to the second control chip 402; the second processor 4021 is further configured to switch from a sleep state to a working state according to the first wake-up instruction.
  • the second processor 4021 is further configured to send a second wake-up instruction to the first control chip 401; the first processor 4011 is also configured to switch from a sleep state to a working state according to the second wake-up instruction.
  • the electronic device 400 further includes a touch circuit, and the touch circuit is electrically connected to the first control chip 401 and the second control chip 402.
  • the second processor 4021 is also used to detect touch signals through the touch circuit.
  • FIG. 11 is a schematic diagram of a fourth structure of an electronic device provided by an embodiment of the application.
  • the electronic device 400 further includes: a radio frequency circuit 403, a display screen 404, a control circuit 405, an input unit 406, an audio circuit 407, a sensor 408, a touch circuit 410, and a power supply 409.
  • the first control chip 401 and the second control chip 402 are electrically connected to the radio frequency circuit 403, the display screen 404, the control circuit 405, the input unit 406, the audio circuit 407, the sensor 408, the touch circuit 410, and the power supply 409, respectively.
  • the radio frequency circuit 403 is used to transmit and receive radio frequency signals to communicate with network equipment or other electronic equipment through wireless communication.
  • the display screen 404 may be used to display information input by the user or information provided to the user, and various graphical user interfaces of the electronic device 400. These graphical user interfaces may be composed of images, text, icons, videos, and any combination thereof.
  • the control circuit 405 is electrically connected to the display screen 404 for controlling the display screen 404 to display information.
  • the input unit 406 can be used to receive inputted numbers, character information, or user characteristic information (such as fingerprints), and generate keyboard, mouse, joystick, optical or trackball signal input related to user settings and function control. Wherein, the input unit 406 may include a fingerprint recognition module.
  • the audio circuit 407 can provide an audio interface between the user and the electronic device 400 through a speaker and a microphone.
  • the audio circuit 407 includes a microphone.
  • the microphone is electrically connected to the processor 401.
  • the microphone is used to receive voice information input by the user.
  • the sensor 408 is used to collect external environmental information.
  • the sensor 408 may include one or more of sensors such as an environmental brightness sensor, an acceleration sensor, and a gyroscope.
  • the power supply 409 is used to supply power to various components of the electronic device 400.
  • the power supply 409 may be logically connected to the processor 401 through a power management system, so that functions such as charging, discharging, and power consumption management can be managed through the power management system.
  • the electronic device 400 may also include a camera, a Bluetooth module, etc., which will not be repeated here.
  • the electronic device 400 when the electronic device is in the off-screen display mode, if the user wants to start the target application and perform a touch operation on the electronic device, there is no need to wake up the first control chip, and the low
  • the second control chip for power consumption detects the touch signal generated by the touch operation in the off-screen display mode, that is, once the off-screen display mode is entered, the first control chip can remain in the dormant state after entering the dormant state, and there is no need to detect The touch signal is awakened, thereby saving power consumption caused by the frequent awakening of the first control chip.
  • the first control chip 401 with higher power consumption enters the dormant state, and the second control chip 402 with lower power consumption detects the information reminder signal and the first preset touch signal, which can also be reduced The power consumption required to detect touch signals.
  • the overall power consumption of the electronic device 100 can be reduced in the end.
  • the embodiment of the present application also provides a storage medium, which is applied to an electronic device, the electronic device includes a first control chip and a second control chip, and the power consumption of the second control chip during operation is lower than that of the first control chip Power consumption during operation; the storage medium stores a computer program, and when the computer program is executed, the application startup method described in any of the above embodiments can be executed.
  • the first control chip when the computer program is executed, when the computer program is executed by the first processor in the first control chip, the first control chip detects that the electronic device enters In the off-screen display mode, the second control chip is awakened, and enters the sleep state after waking up the second control chip; when the computer program is run by the second processor in the second control chip, the second control chip detects Touch signal, the touch signal instructs to start the target application; the second control chip starts the target application according to the application type of the target application, or wakes up the first control chip according to the application type of the target application; when the computer program is When the first processor in the first control chip is running, the first control chip may also start the target application after being awakened.
  • the storage medium may include, but is not limited to: read only memory (ROM, Read Only Memory), random access memory (RAM, Random Access Memory), magnetic disk or optical disk, etc.

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Abstract

一种应用启动方法、装置、存储介质及电子设备,包括:第一控制芯片在检测显示屏进入熄屏显示模式时唤醒第二控制芯片,并在唤醒第二控制芯片后进入休眠状态,第二控制芯片检测触控信号;第二控制芯片根据目标应用的应用类型启动目标应用,或根据目标应用的应用类型唤醒第一控制芯片,并由第一控制芯片启动目标应用。

Description

应用启动方法、装置、存储介质及电子设备
本申请要求于2019年12月02日提交中国专利局、申请号为201911214774.3、发明名称为“应用启动方法、装置、存储介质及电子设备”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
本申请涉及计算机技术领域,特别涉及一种应用启动方法、装置、存储介质及电子设备。
背景技术
随着电子设备技术的发展,各式各样的电子设备已成为人们生活工作中不可或缺的工具,电子设备能够支持的功能也越来越多。例如,用户可以通过电子设备实现通话功能、网购功能、导航功能、游戏功能等。
发明内容
本申请实施例提供一种应用启动方法、装置、存储介质及电子设备,能够降低电子设备的功耗。
第一方面,本申请实施例提供一种应用启动方法,应用于电子设备,所述电子设备包括第一控制芯片和第二控制芯片,所述第二控制芯片运行时的功耗低于所述第一控制芯片运行时的功耗,所述应用启动方法包括:
所述第一控制芯片在检测到所述电子设备进入熄屏显示模式时,唤醒所述第二控制芯片,并在唤醒所述第二控制芯片后进入休眠状态;
所述第二控制芯片检测触控信号,所述触控信号指示启动目标应用;
所述第二控制芯片根据所述目标应用的应用类型启动所述目标应用,或者根据所述目标应用的应用类型唤醒所述第一控制芯片,并由所述第一控制芯片启动所述目标应用。
第二方面,本申请实施例提供一种应用启动装置,应用于电子设备,所述电子设备包括第一控制芯片和第二控制芯片,所述第二控制芯片运行时的功耗低于所述第一控制芯片运行时的功耗,所述第一控制芯片包括第一应用启动模块,所述第二控制芯片包括触控信号检测模块和第二应用启动模块,其中:
所述第一控制芯片用于:在检测到所述电子设备进入熄屏显示模式时,唤醒所述第二控制芯片,并在唤醒所述第二控制芯片后进入休眠状态;
所述触控信号检测模块用于:检测触控信号,所述触控信号指示启动目标应用;
所述第二应用启动模块用于:根据所述目标应用的应用类型启动所述目标应用;
所述第二控制芯片还用于:根据所述目标应用的应用类型唤醒所述第一控制芯片;
第一应用启动模块用于:在所述第一控制芯片被唤醒后,启动所述目标应用。
第三方面,本申请实施例提供一种存储介质,应用于电子设备,所述电子设备包括第一控制芯片和第二控制芯片,所述第二控制芯片运行时的功耗低于所述第一控制芯片运行时的功耗;所述存储介质中存储有计算机程序,当所述计算机程序被运行时,使得:
所述第一控制芯片在检测到所述电子设备进入熄屏显示模式时,唤醒所述第二控制芯片,并在唤醒所述第二控制芯片后进入休眠状态;
所述第二控制芯片检测触控信号,所述触控信号指示启动目标应用;
所述第二控制芯片根据所述目标应用的应用类型启动所述目标应用,或者根据所述目标应用的应用类型唤醒所述第一控制芯片,并由所述第一控制芯片启动所述目标应用。
第四方面,本申请实施例还提供一种电子设备,包括第一控制芯片和第二控制芯片,所述第二控制芯片运行时的功耗低于所述第一控制芯片运行时的功耗;
所述第一控制芯片在检测到所述电子设备进入熄屏显示模式时,唤醒所述第二控制芯 片,并在唤醒所述第二控制芯片后进入休眠状态;
所述第二控制芯片检测触控信号,所述触控信号指示启动目标应用;
所述第二控制芯片根据所述目标应用的应用类型启动所述目标应用,或者根据所述目标应用的应用类型唤醒所述第一控制芯片,并由所述第一控制芯片启动所述目标应用。
附图说明
为了更清楚地说明本申请实施例中的技术方案,下面将对实施例描述中所需要使用的附图作简单地介绍。显而易见地,下面描述中的附图仅仅是本申请的一些实施例,对于本领域技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1为本申请实施例提供的电子设备的第一种结构示意图。
图2为本申请实施例提供的电子设备工作于第一模式时的一种示意图。
图3为本申请实施例提供的电子设备工作于第二模式时的一种示意图。
图4位本申请实施例提供的电子设备工作于第二模式时的另一种示意图。
图5为本申请实施例提供的电子设备的第二种结构示意图。
图6为本申请实施例提供的应用启动方法的第一种流程示意图。
图7为本申请实施例提供的应用启动方法的第二种流程示意图。
图8为本申请实施例提供的应用启动方法的第三种流程示意图。
图9为本申请实施例提供的应用启动装置的结构示意图。
图10为本申请实施例提供的电子设备的第三种结构示意图。
图11为本申请实施例提供的电子设备的第四种结构示意图。
具体实施方式
下面将结合本申请实施例中的附图1至11,对本申请实施例中的技术方案进行清楚、完整地描述。显然,所描述的实施例仅仅是本申请一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本申请保护的范围。
在本文中提及“实施例”意味着,结合实施例描述的特定特征、结构或特性可以包含在本申请的至少一个实施例中。在说明书中的各个位置出现该短语并不一定均是指相同的实施例,也不是与其它实施例互斥的独立的或备选的实施例。本领域技术人员显式地和隐式地理解的是,本文所描述的实施例可以与其它实施例相结合。
本申请实施例提供一种应用启动方法,该应用启动方法的执行主体可以是本申请实施例提供的应用启动装置,或者集成了该应用启动装置的电子设备,其中该应用启动装置可以采用硬件或者软件的方式实现。其中,电子设备可以是智能手机、平板电脑、掌上电脑、笔记本电脑、或者台式电脑等设备。
本申请实施例提供一种应用启动方法,该应用启动方法应用于电子设备,所述电子设备包括第一控制芯片和第二控制芯片,所述第二控制芯片运行时的功耗低于所述第一控制芯片运行时的功耗,所述应用启动方法包括:
所述第一控制芯片在检测到所述电子设备进入熄屏显示模式时,唤醒所述第二控制芯片,并在唤醒所述第二控制芯片后进入休眠状态;
所述第二控制芯片检测触控信号,所述触控信号指示启动目标应用;
所述第二控制芯片根据所述目标应用的应用类型启动所述目标应用,或者根据所述目标应用的应用类型唤醒所述第一控制芯片,并由所述第一控制芯片启动所述目标应用。
在一些实施例中,所述第一控制芯片安装有第一类型的目标应用,所述第二控制芯片安装有第二类型的目标应用;所述第二控制芯片根据所述目标应用的应用类型启动所述目标应用,或者根据所述目标应用的应用类型唤醒所述第一控制芯片,并由所述第一控制芯片启动所述目标应用,包括:若所述目标应用为所述第二类型的目标应用,所述第二控制 芯片启动所述目标应用;若所述目标应用为所述第一类型的目标应用,所述第二控制芯片唤醒所述第一控制芯片,并在唤醒所述第二控制芯片后进入休眠状态,所述第一控制芯片启动所述目标应用。
在一些实施例中,所述第一控制芯片启动所述目标应用,包括:所述第一控制芯片检测所述目标应用的当前运行状态;若所述当前运行状态为后台运行状态,所述第一控制芯片控制所述目标应用切换至前台运行;若所述当前运行状态为未运行状态,所述第一控制芯片启动所述目标应用。
在一些实施例中,所述第二控制芯片检测触控信号的步骤之前,还包括:所述第二控制芯片控制所述电子设备熄屏显示一个或多个应用的应用标识,所述一个或多个应用包括所述目标应用。
在一些实施例中,所述电子设备还包括切换模块和显示屏,所述切换模块分别与所述第一控制芯片、所述第二控制芯片和所述显示屏电连接;所述第一控制芯片唤醒所述第二控制芯片后,所述应用启动方法还包括:所述第二控制芯片输出切换控制信号控制所述切换模块执行切换操作,以使所述切换模块从导通第一控制芯片输出的显示数据至所述显示屏切换为导通第二控制芯片输出的显示数据至所述显示屏,以实现所述第二控制芯片对所述显示屏的显示控制;所述第二控制芯片唤醒所述第一控制芯片后,所述应用启动方法还包括:所述第二控制芯片输出切换控制信号控制所述切换模块执行切换操作,以使所述切换模块从导通第二控制芯片输出的显示数据至所述显示屏切换为导通第一控制芯片输出的显示数据至所述显示屏,以实现所述第一控制芯片对所述显示屏的显示控制。
在一些实施例中,所述唤醒所述第二控制芯片,包括:所述第一控制芯片向所述第二控制芯片发送第一唤醒指令;所述第二控制芯片根据所述第一唤醒指令由休眠状态切换至工作状态;所述唤醒所述第一控制芯片,包括:所述第二控制芯片向所述第一控制芯片发送第二唤醒指令;所述第一控制芯片根据所述第二唤醒指令由休眠状态切换至工作状态。
在一些实施例中,所述第一控制芯片基于第一操作系统运行设置于所述第一操作系统中的应用,所述第二控制芯片基于第二操作系统运行设置于所述第二操作系统中的应用;所述第二控制芯片根据所述目标应用的应用类型启动所述目标应用,或者根据所述目标应用的应用类型唤醒所述第一控制芯片,并由所述第一控制芯片启动所述目标应用,包括:所述第二控制芯片根据所述目标应用的应用类型基于所述第二操作系统启动设置于所述第二操作系统中的所述目标应用,或者根据所述目标应用的应用类型唤醒所述第一控制芯片,并由所述第一控制芯片基于所述第一操作系统启动设置于所述第一操作系统中的所述目标应用。
在一些实施例中,所述第二操作系统运行时所需的资源少于所述第一操作系统运行时所需的资源。
本申请实施例还提供一种电子设备,请参阅图1,图1为本申请实施例提供的电子设备的第一种结构示意图。本申请实施例提出的电子设备100包括第一控制芯片110、第二控制芯片120和显示屏130,第二控制芯片120的功耗低于第一控制芯片110。第一控制芯片110和第二控制芯片120通过通信总线与显示屏130连接。并且,第一控制芯片110和第二控制芯片120与显示屏130电连接。其中,通信总线可以是I2C(Inter-Integrated Circuit,两线式串行总线)或者SPI(Serial Peripheral Interface,串行外设接口)总线。在其他实施例中也可以采用其他格式的通信总线,在此不作具体限制。
其中,第一控制芯片110可以作为电子设备100的主控SOC(System on Chip,系统级芯片)。在一些实施例中,第一控制芯片110上集成有第一处理器。在一些实施例中,第一控制芯片110上还集成有第一存储器。
其中,第二控制芯片120是一个低功耗SOC,在工作状态下的功耗远小于第一控制芯 片110在工作状态下的功耗,其上集成有第二处理器和第二存储器,第二处理器的频率远小于第一处理器,第二控制芯片120的内存的容量也小于第一控制芯片110的内存的容量。
其中,第一控制芯片110可以基于第一操作系统控制电子设备100工作于第一模式、以及在电子设备工作于第二模式时进入休眠状态。处于休眠状态时,第一控制芯片110不进行数据处理,第一控制芯片110的部分或者所有电子器件可以断电。第二控制芯片120可以基于第二操作系统控制电子设备100工作于所述第二模式。
可以理解的是,第一操作系统和第二操作系统为不同的操作系统,第二操作系统运行时所需资源少于第一操作系统运行时所需资源。其中,资源可为存储空间、运算频率、所需的电量等。例如,第一操作系统可以为安卓操作系统、Linux操作系统、Windows操作系统或ios操作系统,第二操作系统为实时操作系统。电子设备100既可以运行第一操作系统,也可以运行第二操作系统。需要说明的是,第一操作系统与第二操作系统是两个彼此独立的操作系统。
其中,第一模式和第二模式可以是电子设备100的不同工作模式。同时参考图2和图3,图2为本申请实施例提供的电子设备工作于第一模式时的一种示意图,图3为本申请实施例提供的电子设备工作于第二模式时的一种示意图。
如图2所示,第一模式可以理解为电子设备100的正常工作模式,或者标准功耗模式。电子设备100工作于第一模式时,电子设备100的功耗为标准功耗,也即正常功耗。其中,第一模式可以包括亮屏工作模式,或者亮屏显示模式。在亮屏工作模式下,电子设备100的显示屏点亮,电子设备100的显示屏上可以显示多个应用的图标和名称。当用户点击应用图标时,电子设备100即可启动对应的应用。此外,电子设备100的显示屏上还可以显示诸如时间、日期、天气、温度等信息。
如3所示,第二模式可以理解为电子设备100的低功耗模式。电子设备100工作于所述第二模式时,电子设备100的功耗较低,此时电子设备100的功耗小于标准功耗,也即低于正常功耗。也即,电子设备100工作于第二模式时的功耗小于电子设备100工作于第一模式时的功耗。其中,第二模式可以包括熄屏显示模式,或者简易操作模式。其中,熄屏显示模式(Always On Display,AOD)模式,指电子设备100在熄屏显示模式下由显示屏130显示信息的一种显示模式。例如,电子设备100进入熄屏显示模式后,第一控制芯片110可以进入休眠状态,第二控制芯片120进入工作状态,在极低功耗下,实现屏幕的动态显示、刷新、触屏处理,以及一些应用程序的运行。例如,在电子设备100处于熄屏显示模式下,第二控制芯片120可以控制时间、日期、天气、日历等信息的更新与显示,还可以控制快捷工具的图标在熄屏显示界面上的显示,还可以支持一些如电子书、指南针、计算器等轻量级应用程序的运行。
以熄屏显示应用标识为例,请继续参考图3和图4,图4为本申请实施例提供的电子设备工作于第二模式时的另一种示意图。如图3所示,应用标识可以是某些快捷应用对应的图标标识,例如计算器应用、小游戏应用、备忘录应用、解锁应用、时钟应用、相机应用、手电筒应用、指南针应用等快捷应用对应的应用标识。用户对相应的应用标识操作,可以启动相应的快捷应用。可以理解的是,显示屏130熄屏显示上述多个应用标识时,多个应用标识可在显示屏130上以解锁应用为中心呈环形排布,多个应用标识也可呈矩阵、星形等形状排布。本申请实施例对多个应用标识的排布形式不作具体限定。
如图4所示,应用标识也可以是某些通知信息的提示图标标识。例如未接来电提示图标标识、未读信息提示图标标识等。用户对相对应的提示图标标识操作,可以启动产生该通知信息的应用。其中,通知信息可以是电子设备100处于熄屏显示模式下接收的,通知信息也可以是电子设备100处于亮屏显示模式下接收的。
具体的,当电子设备100处于亮屏显示模式时,电子设备100内部的射频电路通过电 子设备100的天线系统实现电子设备100与基站之间的无线信号传输。射频电路接收到基站传输的无线信号后,将该无线信号传输至第一控制芯片110,第一控制芯片110根据该无线信号生成通知信息提醒事件。在接收到熄屏触发事件时,第一控制芯片110可以将该信息提醒事件-例如通知信息提示图标标识,发送至第二控制芯片120,并唤醒第二控制芯片120,然后第一控制芯片110自身进入休眠状态。第二控制芯片120被唤醒后,第二控制芯片120的显示数据输入至显示屏130进行控制,第二控制芯片120可以将该通知信息的提示图标标识熄屏显示在显示屏130上,以提醒用户查看该通知信息。
当电子设备100处于熄屏显示模式时,电子设备100的射频电路接收到基站传输的无线信号后,射频电路可以向第一控制芯片110发送一唤醒指令,第一控制芯片110根据该唤醒指令由休眠状态切换至工作状态(此时,为了节省功耗,第一控制芯片110可以向第二控制芯片120发送休眠指令,使得第二控制芯片120进入休眠状态)。然后,第一控制芯片110接收射频电路传输的无线信号并生成通知信息提醒事件(例如上述的通知信息提示图标标识),当第一控制芯片110接收到熄屏显示指令时,第一控制芯片110向第二控制芯片120发送该通知信息提醒事件,并唤醒第二控制芯片120,然后第一控制芯片110自身进入休眠状态。第二控制芯片120被唤醒后,第二控制芯片120的显示数据输入至显示屏130进行控制,第二控制芯片120可以将该通知信息的提示图标标识熄屏显示在显示屏130上,以提醒用户查看该通知信息。
以上只是本申请实施例中电子设备工作于第二模式的个别实施例,除了熄屏显示应用标识外,本申请实施例的电子设备工作于第二模式时,还可以熄屏显示其他的时间、动态壁纸等。
其中,由于第一模式为标准功耗模式,第二模式为低功耗模式,因此第一操作系统可以理解为标准功耗操作系统,第二操作系统可以理解为低功耗操作系统。因此,在电子设备100中,也可以理解为第一控制芯片110用于控制电子设备100在标准功耗操作系统下以标准功耗模式运行,第二控制芯片120用于控制电子设备100在低功耗操作系统下以低功耗模式运行。其中,第一控制芯片110控制电子设备100在标准功耗操作系统下以标准模式运行时,第二控制芯片120可以处于休眠状态。第二控制芯片120控制电子设备100在低功耗操作系统下以低功耗模式运行时,第一控制芯片110可以处于休眠状态。
需要说明的是,在第二模式下,电子设备100的部分功能锁定,其他部分功能仍可使用。例如,熄屏显示模式下,电子设备100的显示屏锁定并熄屏,但是电子设备100的显示屏可以以熄屏显示的方式显示部分信息,例如电子设备100上可以显示时间、锁屏标识、快捷应用图标等信息。
可以理解的,在第一模式下,电子设备100可以快速启动应用,以满足用户的所有功能需求,例如执行用户所需的网购功能、游戏功能、影音功能等。而在第二模式下,电子设备100可以快速启动快捷应用,以满足用户的部分功能需求,例如执行计算器功能、游戏机功能、便签功能、照相机功能、手电筒功能等,并且在满足用户的部分功能需求的前提下,可以有效地降低电子设备100的功耗,延长电子设备100的续航时间。
可以理解的,由于第二控制芯片120的运行功耗小于第一控制芯片110的运行功耗,因此第二控制芯片120的处理能力小于第一控制芯片110的处理能力,第一控制芯片110的处理能力较强,而第二控制芯片120的处理能力较弱。在电子设备100工作于第一模式时,第一控制芯片110可以基于第一操作系统进行所有的数据处理以及控制电子设备100的所有功能组件。在电子设备100工作于第二模式时,第二控制芯片120只能基于第二操作系统进行部分数据处理以及控制电子设备100的部分功能组件。例如,第二控制芯片120可以基于第二操作系统进行简单的数据处理以及控制对数据处理需求较低的功能组件,第二控制芯片120不能进行复杂的数据处理,也不能控制对数据处理需求高的功能组件。
可以理解的,第一控制芯片110基于第一操作系统控制电子设备100工作于第一模式,第二控制芯片120基于第二操作系统控制电子设备100工作于第二模式,并且第一控制芯片110在电子设备100工作于第二模式时进入休眠状态,因此在电子设备100工作于第二模式时可以节省第一控制芯片110的功耗,并且由于第二控制芯片120的运行功耗小于第一控制芯片110的运行功耗,第二操作系统运行时所需的资源少于第一操作系统运行时所需的资源,因此电子设备100工作于第二模式时的功耗小于电子设备100工作于第一模式时的功耗,从而既可以保证电子设备100的持续工作以满足用户的需求,又可以有效降低电子设备100的功耗,延长电子设备100的续航时间。
在本申请的描述中,需要理解的是,诸如“第一”、“第二”等术语仅用于区分类似的对象,而不能理解为指示或暗示相对重要性或者隐含指明所指示的技术特征的数量。
可以理解的,电子设备100既可以工作于第一模式,也可以工作于第二模式,因此电子设备100可以在第一模式和第二模式之间进行切换。请参阅图5,图5为本申请实施例提供的电子设备的第二种结构示意图。
本申请实施例的电子设备100还可以包括切换模块140,切换模块140包括至少两个数据输入端141和142、至少一个输出端143和至少一个切换控制端144。其中,切换模块140的一个数据输入端141可以连接第一控制芯片110的显示数据输出端111,切换模块140的另一个数据输入端142可以连接第二控制芯片120的显示数据输出端121,切换模块140的切换控制端144连接第二控制芯片120的切换控制信号输出端122,切换模块140的数据输出端143可以连接显示屏130。
可以理解的是,切换模块140用于将显示屏130的显示数据导通通路在第一控制芯片110和第二控制芯片120之间切换。例如,情形A:当第一控制芯片110处于工作状态,第二控制芯片120处于休眠状态时,第一控制芯片110的显示数据通过切换模块140输入至显示屏130进行显示控制。情形B:当第一控制芯片110在检测到显示屏130进入熄屏显示模式时,唤醒第二控制芯片120,且第一控制芯片110进入休眠状态。第二控制芯片120被唤醒后,控制切换模块140执行切换操作后,切换模块140将显示屏130的显示数据的输入源由第一控制芯片110切换为第二控制芯片120,即第二控制芯片120的显示数据通过切换模块140输入至显示屏130进行显示控制。情形C:当第一控制芯片110被唤醒进入工作状态时,如果第一控制芯片110需要将信息显示在显示屏130上,则第二控制芯片120控制切换模块140执行切换操作,切换为导通第一控制芯片110输出的显示数据至显示屏130进行显示控制。切换后,第二控制芯片120可进行休眠状态,即回到情形A,如此循环实现对显示屏130的切换控制。
上述方式下,始终通过第二控制芯片120控制切换模块140的切换,可在硬件设计层面节省第一控制芯片110的接口占用。第一控制芯片110为电子设备100中的主控SOC芯片,例如为应用处理器(Application Processor,简称AP),主控SOC一般因承担较多功能控制,其接口资源较为紧张。通过第二控制芯片120输出切换控制信号控制切换模块140的切换,从而可不占用主控SOC的接口(例如总线接口),便于降低电路设计复杂度。
其中,本申请实施例的电子设备100还可以包括触控电路,该触控电路可以与第一控制芯片110、第二控制芯片120电连接。该触控电路可以根据需要设置在电子设备100表面的任意位置。例如,该触控电路可以设置在电子设备100的背板表面,或者,该触控电路还可以触控屏的形式覆盖于显示屏130之上。第二控制芯片120可通过I2C与触控屏通信,通过MIPI(Mobile Industry Processor Interface,移动产业处理器接口)与显示屏130通信。
可以理解的是,触控电路可以用于接收用户的触控指令。第一控制芯片110可以基于该触控电路接收用户的熄屏事件触控指令,第二控制芯片120可以基于该触控电路接收用户的亮屏事件触控指令。
例如,当电子设备100处于亮屏显示模式时,若第一控制芯片110接收到熄屏事件的触控指令,可以向第二控制芯片120发送唤醒请求,第二控制芯片120接收到该唤醒请求后,第二控制芯片120进入工作状态。当电子设备100处于熄屏显示模式时,若第二控制芯片120接收到亮屏事件的触控指令,可以向第一控制芯片110发送唤醒请求,第一控制芯片110接收到该唤醒请求后,第一控制芯片110进入工作状态。
基于以上电子设备100的结构,对本申请实施例提供的应用启动方法进行说明。请参阅图6,图6为本申请实施例提供的应用启动方法的第一种流程示意图。本申请实施例提供应用启动方法的具体流程可以如下:
在101中,第一控制芯片在检测到电子设备进入熄屏显示模式时,唤醒第二控制芯片,并在唤醒第二控制芯片后进入休眠状态。
电子设备100在亮屏显示模式下,当接收到锁屏指令或者熄屏指令时,触发熄屏事件,例如,用户通过锁屏键或锁屏控件触发锁屏指令;或者当电子设备100在亮屏显示模式下,一定时长内用户未操作电子设备100触发熄屏事件。
第一控制芯片110在检测到熄屏事件时,控制显示屏130进入熄屏显示模式。同时,第一控制芯片110向第二控制芯片120发送第一唤醒指令,以唤醒第二控制芯片120,并且第一控制芯片110在唤醒第二控制芯片120后进入休眠状态。
其中,第二控制芯片120可以输出切换控制信号控制切换模块140执行切换操作,以使切换模块140从导通第一控制芯片110输出的显示数据至显示屏130切换为导通第二控制芯片120输出的显示数据至显示屏130,以实现第二控制芯片120对显示屏130的显示控制。
在102中,第二控制芯片检测触控信号,所述触控信号指示启动目标应用。
第二控制芯片120被唤醒后,第二控制芯片120可以通过触控电路来检测触控信号。触控信号可以指示电子设备100启动目标应用,也即,触控信号可以是目标应用启动的触发信号。其中,触控信号可以是作用于显示屏130上应用标识、提示标识等操作产生的信号,例如滑动触控信号、长按触控信号和并发多点触控信号等。
滑动触控信号可以是第二控制芯片120接收到滑动操作时触发的滑动触发信号。该滑动操作作用于指示从显示屏130的第一位置滑动至第二位置的触摸操作,其中第一位置可以是显示屏130中预设的位置,第二位置也可以是应用标识或提示图标所在的位置。
长按触控信号也可是第二控制芯片120接收到目标长按操作时触发的长按触控信号,该目标长按操作也可是作用于应用标识或提示图标的长按操作。
并发多点触控信号还可以是第二控制芯片120同时接收到至少两个目标触摸操作时触发的并发多点触控信号,该至少两个目标触摸操作作用的位置至少包括第三位置和第四位置,其中第三位置可以是显示屏130中预设的位置,第四位置可以是应用标识或提示图标所在的位置。
当触控信号设置为上述滑动触控信号、长按触控信号、并发多点触控信号时,可以有效地防止熄屏显示界面中应用标识被误碰,可以有效地防止应用标识对应的应用在用户不希望启动时启动。当然,触控信号并不局限于上述举例。
触控电路接收到上述触控信号后将这些触控信号发送至第二控制芯片120,第二控制芯片120对上述触控信号进行识别和检测。
在103中,第二控制芯片根据目标应用的应用类型启动目标应用,或者根据目标应用的应用类型唤醒第一控制芯片,并由第一控制芯片启动目标应用。
不同应用类型的目标应用可以对应不同的启动方式。根据目标应用的应用类型,第二控制芯片120可以直接启动目标应用;或者第二控制芯片120可以唤醒第一控制芯片110,然后由第一控制芯片110启动目标应用。当第二控制芯片120在唤醒第一控制芯片110后,自身可进入休眠状态,以节省功耗。
可以理解的是,第一控制芯片110可以基于第一操作系统启动并运用设置于第一操作系统上的应用,第二控制芯片120可以基于第二操作系统启动并运行设置于第二操作系统上的应用,第二操作系统运行时所需的资源可以少于第一操作系统运行时所需的资源。因此,当目标应用为设置于第一操作系统中的应用时,第二控制芯片120可以唤醒第一控制芯片110,第一控制芯片110被唤醒后可基于第一操作系统启动并运行目标应用。当目标应用为设置于第二操作系统中的应用时,第二控制芯片120可直接基于第二操作系统启动并运行该目标应用,进而无需唤醒第一控制芯片110,可以节省电子设备100的功耗。
其中,第二控制芯片120唤醒第一控制芯片110后,第二控制芯片120也可以输出切换控制信号控制切换模块140执行切换操作,以使切换模块140从导通第二控制芯片120输出的显示数据至显示屏130切换为导通第一控制芯片110输出的显示数据至显示屏130,以实现第一控制芯片110对显示屏130的显示控制。
可以理解的是,具体实施例中,本申请不受所描述的各个步骤的执行顺序的限制,在不产生冲突的情况下,某些步骤还可以采用其它顺序进行或者同时进行。
由上可知,本申请实施例的应用启动方法,当电子设备处于熄屏显示模式下,如果用户想启动目标应用而对电子设备实施触控操作,则无需唤醒第一控制芯片,而由低功耗的第二控制芯片在熄屏显示屏模式下检测该触控操作产生的触控信号,也即,一旦进入熄屏显示模式第一控制芯片进入休眠状态后可保持休眠状态,无需因检测触控信号被唤醒,从而可以节省第一控制芯片频繁被唤醒导致的功耗。另外,在熄屏显示模式下,功耗较高的第一控制芯片110进入休眠状态,通过功耗较低第二控制芯片120来检测触控信号,也可以降低检测触控信号所需耗费的功耗。通过以上两方面,最终可以降低电子设备100的总体功耗。
根据前面实施例所描述的方法,以下将举例作进一步详细说明。
在一些实施例中,请参阅图7,图7为本申请实施例提供的应用启动方法的第二种流程示意图。103,第二控制芯片根据目标应用的应用类型启动目标应用,或者根据目标应用的应用类型唤醒第一控制芯片,并由第一控制芯片启动目标应用,还包括:
1031、若目标应用为第二类型的目标应用,第二控制芯片启动目标应用。
1032、若目标应用为第一类型的目标应用,第二控制芯片唤醒第一控制芯片,并在唤醒第二控制芯片后进入休眠状态。
1033、第一控制芯片启动目标应用。
其中,第一类型的目标应用可以是安装在第一控制芯片110上的应用。具体的,可以存储在第一控制芯片110的存储器中,基于该存储器上的第一操作系统运行。第一类型的目标应用可以是视频播放应用、社交通信应用、音乐播放应用等重量级应用程序。这些第一类型的目标应用启动和运行的过程中,第一控制芯片110需要大量资源,使得第一控制芯片110的第一操作系统成为一个重量级的操作系统。
第二类型的目标应用可以是安装在第二控制芯片120上的应用。具体的,可以安装在第二控制芯片120的存储器上,基于该存储器上的第二操作系统运行,该第二操作系统相对于第一控制芯片110上的第一操作系统,是一个轻量级的操作系统。第二类型的目标应用可以是计算器应用、小游戏应用、备忘录应用、解锁应用、时钟应用、相机应用、手电筒应用、指南中应用等轻量级快捷应用程序。
第二控制芯片检测触控信号的步骤之前,第二控制芯片120可以控制电子设备100熄屏显示一个或多个应用的应用标识,该一个或多个应用包括目标应用。例如,第二控制芯片120可以控制显示屏130熄屏显示第一类型的目标应用的应用标识,第二控制芯片120也可以控制显示屏130熄屏显示第二类型的目标应用的应用标识,第二控制芯片120也可以同时控制显示屏130熄屏显示第一类型的目标应用以及第二类型的目标应用的应用标识。
触控信号可以是作用于不同类型的目标应用的应用标识上的操作信号。当第二控制芯片120检测到触控信号为作用于第二类型的目标应用的应用标识而产生的信号时,表示用户想启动安装在第二控制芯片120上的第二类型的目标应用,此时,第二控制芯片120可以直接启动该第二类型的目标应用。由于安装在第二控制芯片120上的应用都是一些轻量级的应用,因此,利用功耗较小的第二控制芯片120来启动该第二类型的目标应用,可以降低电子设备100的总体功耗。
当第二控制芯片120检测到触控信号为作用于第一类型的目标应用的应用标识而产生的信号时,表示用户想启动安装在第一控制芯片110上的第一类型的目标应用,由于,第二控制芯片120可以调用的资源不足以启动该第一类型的目标应用,此时,第二控制芯片120唤醒第一控制芯片110,由第一控制芯片110来启动该第一类型的目标应用,可以保证目标应用的正常运行。
第二控制芯片120在唤醒第一控制芯片110后,第二控制芯片120可以执行对切换模块140的切换操作,使得在第二控制芯片120进入休眠状态以节约电子设备100的功耗。同时,第一控制芯片110被唤醒后,第一控制芯片110输出的显示数据输入至显示屏130中,第一控制芯片110可以在亮屏显示模式下控制显示屏130显示第一类型的目标应用的启动界面或显示界面等。
在一些实施例中,请参阅图8,图8为本申请实施例提供的应用启动方法的第三种流程示意图。步骤1033中,第一控制芯片启动第一类型的目标应用,包括:
10331、第一控制芯片检测目标应用的当前运行状态。
10332、若当前运行状态为后台运行状态,第一控制芯片控制目标应用切换至前台运行。
10333、若当前运行状态为未运行状态,第一控制芯片启动目标应用。
第一控制芯片110被唤醒后,第一控制芯片110可以检测第一类型的目标应用的当前状态。该当前状态可以包括处于后台运行状态或者处于未运行状态。当第一类型的目标应用处于后台状态时,第一控制芯片110可以直接控制目标应用切换至前台运行。此时,显示屏130可以直接显示目标应用的显示界面,而可以跳过电子设备100的主显示解锁界面、目标应用解锁界面、目标应用启动界面等。当第一类型的目标应用处于未运行状态时,第一控制芯片110可以直接启动第一类型的目标应用。此时,显示屏130可以显示第一类型的目标应用的启动界面,而跳过电子设备100的主显示解锁界面、目标应用解锁界面等。
本申请实施例中,第一控制芯片110根据目标应用的状态来启动目标应用,电子设备100无需经过复杂的主显示解锁界面而直接启动目标应用,实现了电子设备100免解锁直接启动目标应用的效果。
下面以熄屏显示模式下,用户操作第二类型的目标应用-指南针应用为例,具体介绍本申请实施例的应用启动方法:
第一控制芯片110在检测到显示屏130进入熄屏显示模式时,向第二控制芯片120发送第一唤醒指令以唤醒第二控制芯片120,第二控制芯片120根据第一唤醒指令由休眠状态切换至工作状态,同时,第一控制芯片110在唤醒第二控制芯片120后进入休眠状态;第二控制芯片120将第二类型的目标应用的图标-指南针应用标识熄屏显示在显示屏130上;第二控制芯片120通过触控电路检测触控信号;第二控制芯片120确定出该触控信号指示启动该第二类型的目标应用的图标-指南针应用,第二控制芯片120直接启动该第二类型的目标应用-指南针应用,继续在熄屏显示模式下显示该第二类型的目标应用的启动界面/显示界面-指南针应用的启动界面/显示界面。
下面以熄屏显示模式下,用户操作第一类型的目标应用-社交应用为例,具体介绍本申请实施例的应用启动方法:
第一控制芯片110在检测到显示屏130进入熄屏显示模式时,向第二控制芯片120发 送第一唤醒指令以唤醒第二控制芯片120,第二控制芯片120根据第一唤醒指令由休眠状态切换至工作状态,同时,第一控制芯片110在唤醒第二控制芯片120后进入休眠状态;第二控制芯片120将接收到的第一类型的目标应用标识-社交应用未读通知信息标识熄屏显示在显示屏130上;第二控制芯片120通过触控电路检测触控信号;第二控制芯片120确定出该触控信号指示启动该第一类型的目标应用-社交应用,第二控制芯片120向第一控制芯片110发送第二唤醒指令,第一控制芯片110根据该第二唤醒指令由休眠状态切换至工作状态;同时,第二控制芯片120在唤醒第一控制芯片110后进入休眠状态;第一控制芯片110检测第一类型的目标应用-社交应用的当前状态;若当前状态为后台运行状态,第一控制芯片110控制第一类型的目标应用-社交应用直接切换至前台运行;若所述当前状态为未运行状态,第一控制芯片110启动该第一类型的目标应用-社交应用。
以上实施例仅是本申请应用启动方法的两个具体应用场景,可以理解的是,本申请的应用启动方法还可以用于其他的第一类型的目标应用、第二类型的目标应用的场景,本申请实施例对应用启动方法的具体应用场景不作限定。
本申请实施例还提供一种应用启动装置,应用于电子设备,所述电子设备包括第一控制芯片和第二控制芯片,所述第二控制芯片运行时的功耗低于所述第一控制芯片运行时的功耗,所述第一控制芯片包括第一应用启动模块,所述第二控制芯片包括触控信号检测模块和第二应用启动模块,其中:
所述第一控制芯片用于:在检测到所述电子设备进入熄屏显示模式时,唤醒所述第二控制芯片,并在唤醒所述第二控制芯片后进入休眠状态;
所述触控信号检测模块用于:检测触控信号,所述触控信号指示启动目标应用;
所述第二应用启动模块用于:根据所述目标应用的应用类型启动所述目标应用;
所述第二控制芯片还用于:根据所述目标应用的应用类型唤醒所述第一控制芯片;
第一应用启动模块用于:在所述第一控制芯片被唤醒后,启动所述目标应用。
在一些实施例中,第一控制芯片安装有第一类型的目标应用,第二控制芯片安装有第二类型的目标应用,第二应用启动模块还用于:当目标应用为第二类型的目标应用,第二应用启动模块启动第二类型的目标应用;第二控制芯片还用于:当目标应用为第一类型的目标应用,唤醒第一控制芯片,并在唤醒第一控制芯片后进入休眠状态,第一应用启动模块还用于在第一控制芯片被唤醒后,启动第一类型的目标应用。
在一些实施例中,第一应用启动模块还可以用于执行:检测目标应用的当前运行状态,若当前运行状态为后台运行状态,控制目标应用切换至前台运行,若当前运行状态为未运行状态,启动目标应用。
在一些实施例中,第二控制芯片还可以包括显示控制模块,显示控制模块用于控制熄屏显示一个或多个应用的应用标识,一个或多个应用包括目标应用。
在一些实施例中,所述电子设备还包括切换模块和显示屏,切换模块分别与第一控制芯片、第二控制芯片和显示屏电连接,切换模块用于执行:在第一控制芯片唤醒第二控制芯片后,第二控制芯片输出切换控制信号控制切换模块执行切换操作,以使切换模块从导通第一控制芯片输出的显示数据至所述屏切换为导通第二控制芯片输出的显示数据至所述显示屏,以实现所述第二控制芯片对所述显示屏的显示控制;在第二控制芯片唤醒第一控制芯片后,第二控制芯片输出切换控制信号控制切换模块执行切换操作,以使所述切换模块从导通第二控制芯片输出的显示数据至显示屏切换为导通第一控制芯片输出的显示数据至显示屏,以实现第一控制芯片对所述显示屏的显示控制。
在一些实施例中,第一控制芯片还用于向第二控制芯片发送第一唤醒指令;第二控制芯片还用于根据第一唤醒指令由休眠状态切换至工作状态;第二控制芯片还用于向第一控制芯片发送第二唤醒指令;第一控制芯片还用于根据第二唤醒指令由休眠状态切换至工作 状态。
在一些实施例中,第一控制芯片基于第一操作系统运行设置于第一操作系统中的应用,第二控制芯片基于第二操作系统运行设置于第二操作系统中的应用;第二控制芯片根据目标应用的应用类型基于第二操作系统启动设置于第二操作系统中的目标应用,或者根据目标应用的应用类型唤醒第一控制芯片,并由第一控制芯片基于第一操作系统启动设置于第一操作系统中的目标应用。
在一些实施例中,第二操作系统运行时所需的资源少于第一操作系统运行时所需的资源。
基于上述电子设备100的结构,对本申请实施例提供的应用启动装置300进行说明。请参阅图9,图9为本申请实施例提供的应用启动装置的结构示意图。其中,该应用启动装置300可以应用于电子设备,该电子设备可以包括第一控制芯片310、第二控制芯片320和显示屏,第二控制芯片320运行时的功耗低于第一控制芯片310运行时的功耗。第一控制芯片310包括第一应用启动模块301,第二控制芯片320包括触控信号检测模块302和第二应用启动模块303。其中:
第一控制芯片310,用于在检测到电子设备进入熄屏显示模式时,唤醒所述第二控制芯片320,并在唤醒第二控制芯片320后进入休眠状态;
触控信号检测模块302,用于检测触控信号,所述触控信号指示启动目标应用;
第二应用启动模块303,用于根据所述目标应用的应用类型启动所述目标应用;
第二控制芯片320,还用于根据所述目标应用的应用类型唤醒所述第一控制芯片310,并在唤醒第一控制芯片310后进入休眠状态;
第一应用启动模块301,还用于在所述第一控制芯片310被唤醒后,启动目标应用。
其中,第一控制芯片310安装有第一类型的目标应用,第二控制芯片320安装有第二类型的目标应用。第二应用启动模块303还用于:当目标应用为第二类型的目标应用,第二应用启动模块303启动第二类型的目标应用。第二控制芯片320还用于:当目标应用为第一类型的目标应用,唤醒第一控制芯片310,并在唤醒第一控制芯片310后进入休眠状态。第一应用启动模块301还用于:在第一控制芯片310被唤醒后,启动第一类型的目标应用。
并且,第一应用启动模块301还可以用于执行:检测目标应用的当前运行状态。若当前运行状态为后台运行状态,控制目标应用切换至前台运行。若当前运行状态为未运行状态,启动目标应用。
其中,第二控制芯片320还可以包括:显示控制模块,显示控制模块用于控制熄屏显示一个或多个应用的应用标识,所述一个或多个应用包括所述目标应用。
其中,电子设备还可以包括切换模块和显示屏,切换模块的两个数据输入端分别连接第一控制芯片310和第二控制芯片320的显示数据输出端,切换模块的切换控制端连接所述第二控制芯片320的切换控制信号输出端,切换模块的数据输出端连接所述显示屏。
切换模块用于执行:在第一控制芯片310唤醒第二控制芯片320后,第二控制芯片320输出切换控制信号控制所述切换模块执行切换操作,以使切换模块从导通第一控制芯片310输出的显示数据至所述显示屏切换为导通第二控制芯片320输出的显示数据至所述显示屏,以实现所述第二控制芯片320对所述显示屏的显示控制。在第二控制芯片320唤醒第一控制芯片310后,第二控制芯片320输出切换控制信号控制所述切换模块执行切换操作,以使所述切换模块从导通第二控制芯片320输出的显示数据至所述显示屏切换为导通第一控制芯片310输出的显示数据至所述显示屏,以实现所述第一控制芯片310对所述显示屏的显示控制。
其中,第一控制芯片310还用于:向所述第二控制芯片320发送第一唤醒指令;第二控 制芯片320还用于:根据所述第一唤醒指令由休眠状态切换至工作状态。
其中,第二控制芯片320还用于:向所述第一控制芯片310发送第二唤醒指令;第一控制芯片310还用于:根据所述第二唤醒指令由休眠状态切换至工作状态。
其中,电子设备还包括触控电路,触控电路与第一控制芯片310、第二控制芯片320电连接。触控信号检测模块302通过所述触控电路检测所述触控信号。
可以理解的是,具体实施时,以上各个模块可以作为独立的实体来实现,也可以进行任意组合,作为同一或若干个实体来实现,以上各个模块的具体实施可参见前面的方法实施例,在此不再赘述。
应当说明的是,本申请实施例提供的应用启动装置300与上文实施例中的应用启动方法属于同一构思,在应用启动装置300上可以运行应用启动方法实施例中提供的任一方法,其具体实现过程详见应用启动方法实施例,此处不再赘述。
由上可知,本申请实施例的应用启动装置300,当电子设备处于熄屏显示模式下,如果用户想启动目标应用而对电子设备实施触控操作,则无需唤醒第一控制芯片,而由低功耗的第二控制芯片在熄屏显示屏模式下检测该触控操作产生的触控信号,也即,一旦进入熄屏显示模式第一控制芯片进入休眠状态后可保持休眠状态,无需因检测触控信号被唤醒,从而可以节省第一控制芯片频繁被唤醒导致的功耗。另外,在熄屏显示模式下,功耗较高的第一控制芯310片进入休眠状态,通过功耗较低第二控制芯片320来检测触控信号,也可以降低检测触控信号所需耗费的功耗。通过以上两方面,最终可以降低应用启动装置300的总体功耗。
本申请实施例还提供一种电子设备,包括第一控制芯片和第二控制芯片,所述第二控制芯片运行时的功耗低于所述第一控制芯片运行时的功耗;
所述第一控制芯片在检测到所述电子设备进入熄屏显示模式时,唤醒所述第二控制芯片,并在唤醒所述第二控制芯片后进入休眠状态;
所述第二控制芯片检测触控信号,所述触控信号指示启动目标应用;
所述第二控制芯片根据所述目标应用的应用类型启动所述目标应用,或者根据所述目标应用的应用类型唤醒所述第一控制芯片,并由所述第一控制芯片启动所述目标应用。
在一些实施例中,所述第一控制芯片安装有第一类型的目标应用,所述第二控制芯片安装有第二类型的目标应用;所述第二控制芯片根据所述目标应用的应用类型启动所述目标应用,或者根据所述目标应用的应用类型唤醒所述第一控制芯片,并由所述第一控制芯片启动所述目标应用,包括:若所述目标应用为所述第二类型的目标应用,所述第二控制芯片启动所述目标应用;若所述目标应用为所述第一类型的目标应用,所述第二控制芯片唤醒所述第一控制芯片,并在唤醒所述第二控制芯片后进入休眠状态,所述第一控制芯片启动所述目标应用。
在一些实施例中,所述第一控制芯片启动所述目标应用,包括:所述第一控制芯片检测所述目标应用的当前运行状态;若所述当前运行状态为后台运行状态,所述第一控制芯片控制所述目标应用切换至前台运行;若所述当前运行状态为未运行状态,所述第一控制芯片启动所述目标应用。
在一些实施例中,所述第二控制芯片检测触控信号的步骤之前,还包括:所述第二控制芯片控制所述电子设备熄屏显示一个或多个应用的应用标识,所述一个或多个应用包括所述目标应用。
在一些实施例中,所述电子设备还包括切换模块和显示屏,所述切换模块分别与所述第一控制芯片、所述第二控制芯片和所述显示屏电连接;
所述第一控制芯片唤醒所述第二控制芯片后,所述应用启动方法还包括:所述第二控制芯片输出切换控制信号控制所述切换模块执行切换操作,以使所述切换模块从导通第一 控制芯片输出的显示数据至所述显示屏切换为导通第二控制芯片输出的显示数据至所述显示屏,以实现所述第二控制芯片对所述显示屏的显示控制;
所述第二控制芯片唤醒所述第一控制芯片后,所述应用启动方法还包括:所述第二控制芯片输出切换控制信号控制所述切换模块执行切换操作,以使所述切换模块从导通第二控制芯片输出的显示数据至所述显示屏切换为导通第一控制芯片输出的显示数据至所述显示屏,以实现所述第一控制芯片对所述显示屏的显示控制。
在一些实施例中,所述唤醒所述第二控制芯片,包括:所述第一控制芯片向所述第二控制芯片发送第一唤醒指令;所述第二控制芯片根据所述第一唤醒指令由休眠状态切换至工作状态;
所述唤醒所述第一控制芯片,包括:所述第二控制芯片向所述第一控制芯片发送第二唤醒指令;所述第一控制芯片根据所述第二唤醒指令由休眠状态切换至工作状态。
在一些实施例中,所述第一控制芯片基于第一操作系统运行设置于所述第一操作系统中的应用,所述第二控制芯片基于第二操作系统运行设置于所述第二操作系统中的应用;
所述第二控制芯片根据所述目标应用的应用类型启动所述目标应用,或者根据所述目标应用的应用类型唤醒所述第一控制芯片,并由所述第一控制芯片启动所述目标应用,包括:所述第二控制芯片根据所述目标应用的应用类型基于所述第二操作系统启动设置于所述第二操作系统中的所述目标应用,或者根据所述目标应用的应用类型唤醒所述第一控制芯片,并由所述第一控制芯片基于所述第一操作系统启动设置于所述第一操作系统中的所述目标应用。
在一些实施例中,所述第二操作系统运行时所需的资源少于所述第一操作系统运行时所需的资源。
所述电子设备可以是智能手机、平板电脑等设备。请参阅图10,图10为本申请实施例提供的电子设备的第三种结构示意图。基于上述电子设备的结构,第一控制芯片401包括第一处理器4011和第一存储器4012。第二控制芯片402包括第二处理器4021和第二存储器4022。其中,第二处理器4021与第二存储器4022电性连接。第一处理器4011与第一存储器4012电性连接。在其他实施例中,第一存储器4012还可以单独设置,不集成在第一控制芯片401中。
在一些实施例中,第一控制芯片401可以作为电子设备400的主控SOC;第二控制芯片402是一个低功耗SOC,其功耗小于第一控制芯片401。
第一处理器4011是电子设备400的控制中心,利用各种接口和线路连接整个电子设备400的各个部分,通过运行或调用存储在第一存储器4012内的第一计算机程序,以及调用存储在第一存储器4012内的数据,执行电子设备400的各种功能和处理数据,从而对电子设备400进行整体监控。
第一存储器4012可用于存储第一计算机程序和数据。第一存储器4012存储的第一计算机程序中包含有可在第一处理器4011中执行的指令。第一计算机程序可以组成各种功能模块。第一处理器4011通过调用存储在第一存储器4012的第一计算机程序,从而执行各种功能应用以及数据处理。
第二处理器4021也可以作为电子设备400的控制中心,利用各种接口和线路连接整个电子设备400的各个部分,通过运行或调用存储在第二存储器4022内的第二计算机程序,以及调用存储在第二存储器4022内的数据,执行电子设备400的各种功能和处理数据,从而对电子设备400进行整体监控。
第二存储器4022可用于存储第二计算机程序和数据。第二存储器4022存储的第二计算机程序中包含有可在第一处理器4011中执行的指令。第一计算机程序可以组成各种功能模块。第二处理器4021通过调用存储在第二存储器4022的第二计算机程序,从而执行各 种功能应用以及数据处理。
在本实施例中,电子设备400中的第一处理器4011会按照如下的步骤,将一个或一个以上的第一计算机程序的进程对应的指令加载到第一存储器4012中,并由第一处理器4011调用存储在第一存储器4012中的第一计算机程序,用于:在检测到所述显示屏进入熄屏显示模式时,唤醒所述第二控制芯片402,并在唤醒所述第二控制芯片402后控制第一控制芯片401进入休眠状态。
电子设备400中的第二处理器4021会按照如下的步骤,将一个或一个以上的第二计算机程序的进程对应的指令加载到第二存储器4022中,并由第二处理器4021调用存储在第二存储器4022中的第二计算机程序,用于:检测触控信号,所述触控信号指示启动目标应用;根据所述目标应用的应用类型启动所述目标应用,或者根据所述目标应用的应用类型唤醒所述第一控制芯片401,并由所述第一控制芯片401启动所述目标应用。
其中,第一控制芯片401安装有第一类型的目标应用,第二控制芯片402安装有第二类型的目标应用。第二处理器4021还用于:当目标应用为第二类型的目标应用,启动目标应用。当目标应用为第一类型的目标应用,唤醒所述第一控制芯片401,并在唤醒所述第二控制芯片402后进入休眠状态。
第一处理器4011还用于:在第一控制芯片401被唤醒后,第一控制芯片401启动目标应用。具体的,第一处理器4011还用于:检测目标应用的当前运行状态;若当前运行状态为后台运行状态,控制目标应用切换至前台运行;若当前运行状态为未运行状态,启动目标应用。
其中,第二处理器4021还用于:控制所述显示屏熄屏一个或多个应用的应用标识,所述一个或多个应用包括所述目标应用。
其中,电子设备400还包括切换模块,切换模块的两个数据输入端分别连接第一控制芯片401和第二控制芯片402的显示数据输出端,所述切换模块的切换控制端连接所述第二控制芯片402的切换控制信号输出端,所述切换模块的数据输出端连接所述显示屏;第二处理器4021还用于:第二控制芯片402输出切换控制信号控制所述切换模块执行切换操作,以使所述切换模块从导通第一控制芯片401输出的显示数据至所述显示屏切换为导通第二控制芯片402输出的显示数据至显示屏,以实现第二控制芯片402对所述显示屏的显示控制。第二控制芯片402输出切换控制信号控制所述切换模块执行切换操作,以使所述切换模块从导通第二控制芯片402输出的显示数据至所述显示屏切换为导通第一控制芯片401输出的显示数据至所述显示屏,以实现所述第一控制芯片401对所述显示屏的显示控制。
其中,第一处理器4011还用于向第二控制芯片402发送第一唤醒指令;第二处理器4021还用于根据所述第一唤醒指令由休眠状态切换至工作状态。
其中,第二处理器4021还用于向第一控制芯片401发送第二唤醒指令;第一处理器4011还用于根据第二唤醒指令由休眠状态切换至工作状态。
其中,电子设备400还包括触控电路,触控电路与第一控制芯片401、第二控制芯片402电连接。第二处理器4021还用于通过触控电路检测触控信号。
其中,请参阅图11,图11为本申请实施例提供的电子设备的第四种结构示意图。电子设备400还包括:射频电路403、显示屏404、控制电路405、输入单元406、音频电路407、传感器408、触控电路410以及电源409。其中,第一控制芯片401和第二控制芯片402分别与射频电路403、显示屏404、控制电路405、输入单元406、音频电路407、传感器408、触控电路410以及电源409电性连接。
射频电路403用于收发射频信号,以通过无线通信与网络设备或其他电子设备进行通信。显示屏404可用于显示由用户输入的信息或提供给用户的信息以及电子设备400的各种图形用户接口,这些图形用户接口可以由图像、文本、图标、视频和其任意组合来构成。 控制电路405与显示屏404电性连接,用于控制显示屏404显示信息。输入单元406可用于接收输入的数字、字符信息或用户特征信息(例如指纹),以及产生与用户设置以及功能控制有关的键盘、鼠标、操作杆、光学或者轨迹球信号输入。其中,输入单元406可以包括指纹识别模组。音频电路407可通过扬声器、传声器提供用户与电子设备400之间的音频接口。其中,音频电路407包括麦克风。所述麦克风与所述处理器401电性连接。所述麦克风用于接收用户输入的语音信息。传感器408用于采集外部环境信息。传感器408可以包括环境亮度传感器、加速度传感器、陀螺仪等传感器中的一种或多种。电源409用于给电子设备400的各个部件供电。在一些实施例中,电源409可以通过电源管理系统与处理器401逻辑相连,从而通过电源管理系统实现管理充电、放电、以及功耗管理等功能。
尽管图11中未示出,电子设备400还可以包括摄像头、蓝牙模块等,在此不再赘述。
由上可知,本申请实施例提供的电子设备400,当电子设备处于熄屏显示模式下,如果用户想启动目标应用而对电子设备实施触控操作,则无需唤醒第一控制芯片,而由低功耗的第二控制芯片在熄屏显示屏模式下检测该触控操作产生的触控信号,也即,一旦进入熄屏显示模式第一控制芯片进入休眠状态后可保持休眠状态,无需因检测触控信号被唤醒,从而可以节省第一控制芯片频繁被唤醒导致的功耗。另外,在熄屏显示模式下,功耗较高的第一控制芯片401进入休眠状态,通过功耗较低第二控制芯片402来检测信息提醒信号和第一预设触控信号,也可以降低检测触控信号所需耗费的功耗。通过以上两方面,最终可以降低电子设备100的总体功耗。
本申请实施例还提供一种存储介质,应用于电子设备,所述电子设备包括第一控制芯片和第二控制芯片,所述第二控制芯片运行时的功耗低于所述第一控制芯片运行时的功耗;所述存储介质中存储有计算机程序,当计算机程序被运行时,使得上述任一实施例所述的实现应用启动方法可以被执行。
例如,在一些实施例中,当所述计算机程序被运行时,使得:当所述计算机程序被所述第一控制芯片中的第一处理器运行时,第一控制芯片在检测到电子设备进入熄屏显示模式时,唤醒第二控制芯片,并在唤醒第二控制芯片后进入休眠状态;当所述计算机程序被所述第二控制芯片中的第二处理器运行时,第二控制芯片检测触控信号,所述触控信号指示启动目标应用;第二控制芯片根据目标应用的应用类型启动所述目标应用,或者根据目标应用的应用类型唤醒第一控制芯片;当所述计算机程序被所述第一控制芯片中的第一处理器运行时,第一控制芯片还可以在被唤醒后启动所述目标应用。
需要说明的是,本领域普通技术人员可以理解上述实施例的各种方法中的全部或部分步骤是可以通过计算机程序来指令相关的硬件来完成,所述计算机程序可以存储于计算机可读存储介质中,所述存储介质可以包括但不限于:只读存储器(ROM,Read Only Memory)、随机存取存储器(RAM,Random Access Memory)、磁盘或光盘等。
以上对本申请实施例提供的应用启动方法、装置、存储介质和电子设备进行了详细介绍。本文中应用了具体个例对本申请的原理及实施方式进行了阐述,以上实施例的说明只是用于帮助理解本申请。同时,对于本领域的技术人员,依据本申请的思想,在具体实施方式及应用范围上均会有改变之处,综上所述,本说明书内容不应理解为对本申请的限制。

Claims (20)

  1. 一种应用启动方法,应用于电子设备,所述电子设备包括第一控制芯片和第二控制芯片,所述第二控制芯片运行时的功耗低于所述第一控制芯片运行时的功耗,所述应用启动方法包括:
    所述第一控制芯片在检测到所述电子设备进入熄屏显示模式时,唤醒所述第二控制芯片,并在唤醒所述第二控制芯片后进入休眠状态;
    所述第二控制芯片检测触控信号,所述触控信号指示启动目标应用;
    所述第二控制芯片根据所述目标应用的应用类型启动所述目标应用,或者根据所述目标应用的应用类型唤醒所述第一控制芯片,并由所述第一控制芯片启动所述目标应用。
  2. 根据权利要求1所述的应用启动方法,其中,所述第一控制芯片安装有第一类型的目标应用,所述第二控制芯片安装有第二类型的目标应用;
    所述第二控制芯片根据所述目标应用的应用类型启动所述目标应用,或者根据所述目标应用的应用类型唤醒所述第一控制芯片,并由所述第一控制芯片启动所述目标应用,包括:
    若所述目标应用为所述第二类型的目标应用,所述第二控制芯片启动所述目标应用;
    若所述目标应用为所述第一类型的目标应用,所述第二控制芯片唤醒所述第一控制芯片,并在唤醒所述第二控制芯片后进入休眠状态,所述第一控制芯片启动所述目标应用。
  3. 根据权利要求1所述的应用启动方法,其中,所述第一控制芯片启动所述目标应用,包括:
    所述第一控制芯片检测所述目标应用的当前运行状态;
    若所述当前运行状态为后台运行状态,所述第一控制芯片控制所述目标应用切换至前台运行;
    若所述当前运行状态为未运行状态,所述第一控制芯片启动所述目标应用。
  4. 根据权利要求1所述的应用启动方法,其中,所述第二控制芯片检测触控信号的步骤之前,还包括:
    所述第二控制芯片控制所述电子设备熄屏显示一个或多个应用的应用标识,所述一个或多个应用包括所述目标应用。
  5. 根据权利要求1所述的应用启动方法,其中,所述电子设备还包括切换模块和显示屏,所述切换模块分别与所述第一控制芯片、所述第二控制芯片和所述显示屏电连接;
    所述第一控制芯片唤醒所述第二控制芯片后,所述应用启动方法还包括:
    所述第二控制芯片输出切换控制信号控制所述切换模块执行切换操作,以使所述切换模块从导通第一控制芯片输出的显示数据至所述显示屏切换为导通第二控制芯片输出的显示数据至所述显示屏,以实现所述第二控制芯片对所述显示屏的显示控制;
    所述第二控制芯片唤醒所述第一控制芯片后,所述应用启动方法还包括:
    所述第二控制芯片输出切换控制信号控制所述切换模块执行切换操作,以使所述切换模块从导通第二控制芯片输出的显示数据至所述显示屏切换为导通第一控制芯片输出的显示数据至所述显示屏,以实现所述第一控制芯片对所述显示屏的显示控制。
  6. 根据权利要求1所述的应用启动方法,其中,所述唤醒所述第二控制芯片,包括:
    所述第一控制芯片向所述第二控制芯片发送第一唤醒指令;
    所述第二控制芯片根据所述第一唤醒指令由休眠状态切换至工作状态;
    所述唤醒所述第一控制芯片,包括:
    所述第二控制芯片向所述第一控制芯片发送第二唤醒指令;
    所述第一控制芯片根据所述第二唤醒指令由休眠状态切换至工作状态。
  7. 根据权利要求1所述的应用启动方法,其中,所述第一控制芯片基于第一操作系统 运行设置于所述第一操作系统中的应用,所述第二控制芯片基于第二操作系统运行设置于所述第二操作系统中的应用;
    所述第二控制芯片根据所述目标应用的应用类型启动所述目标应用,或者根据所述目标应用的应用类型唤醒所述第一控制芯片,并由所述第一控制芯片启动所述目标应用,包括:
    所述第二控制芯片根据所述目标应用的应用类型基于所述第二操作系统启动设置于所述第二操作系统中的所述目标应用,或者根据所述目标应用的应用类型唤醒所述第一控制芯片,并由所述第一控制芯片基于所述第一操作系统启动设置于所述第一操作系统中的所述目标应用。
  8. 根据权利要求7所述的应用启动方法,其中,所述第二操作系统运行时所需的资源少于所述第一操作系统运行时所需的资源。
  9. 一种应用启动装置,应用于电子设备,所述电子设备包括第一控制芯片和第二控制芯片,所述第二控制芯片运行时的功耗低于所述第一控制芯片运行时的功耗,所述第一控制芯片包括第一应用启动模块,所述第二控制芯片包括触控信号检测模块和第二应用启动模块,其中:
    所述第一控制芯片用于:在检测到所述电子设备进入熄屏显示模式时,唤醒所述第二控制芯片,并在唤醒所述第二控制芯片后进入休眠状态;
    所述触控信号检测模块用于:检测触控信号,所述触控信号指示启动目标应用;
    所述第二应用启动模块用于:根据所述目标应用的应用类型启动所述目标应用;
    所述第二控制芯片还用于:根据所述目标应用的应用类型唤醒所述第一控制芯片;
    第一应用启动模块用于:在所述第一控制芯片被唤醒后,启动所述目标应用。
  10. 根据权利要求9所述的应用启动装置,其中,所述第一控制芯片安装有第一类型的目标应用,所述第二控制芯片安装有第二类型的目标应用;
    所述第二应用启动模块还用于:当目标应用为第二类型的目标应用,启动所述第二类型的目标应用;
    所述第二控制芯片还用于:当目标应用为第一类型的目标应用,唤醒所述第一控制芯片,并在唤醒所述第一控制芯片后进入休眠状态;
    所述第一应用启动模块还用于:在所述第一控制芯片被唤醒后,启动所述第一类型的目标应用。
  11. 根据权利要求9所述的应用启动装置,其中,所述第一应用启动模块还可以用于执行:
    检测所述目标应用的当前运行状态;
    若所述当前运行状态为后台运行状态,控制所述目标应用切换至前台运行;
    若所述当前运行状态为未运行状态,启动所述目标应用。
  12. 根据权利要求9所述的应用启动装置,其中,所述第二控制芯片还包括:
    显示控制模块,所述显示控制模块用于控制所述电子设备熄屏显示一个或多个应用的应用标识,所述一个或多个应用包括所述目标应用。
  13. 根据权利要求9所述的应用启动装置,其中,所述电子设备还包括切换模块和显示屏,所述切换模块分别与所述第一控制芯片、所述第二控制芯片和所述显示屏电连接;
    所述切换模块用于执行:
    在所述第一控制芯片唤醒所述第二控制芯片后,所述第二控制芯片输出切换控制信号控制所述切换模块执行切换操作,以使所述切换模块从导通第一控制芯片输出的显示数据至所述显示屏切换为导通第二控制芯片输出的显示数据至所述显示屏,以实现所述第二控制芯片对所述显示屏的显示控制;
    在所述第二控制芯片唤醒所述第一控制芯片后,所述第二控制芯片输出切换控制信号控制所述切换模块执行切换操作,以使所述切换模块从导通第二控制芯片输出的显示数据至所述显示屏切换为导通第一控制芯片输出的显示数据至所述显示屏,以实现所述第一控制芯片对所述显示屏的显示控制。
  14. 根据权利要求9所述的应用启动装置,其中,所述第一控制芯片还用于向所述第二控制芯片发送第一唤醒指令,所述第二控制芯片还用于根据所述第一唤醒指令由休眠状态切换至工作状态;
    所述第二控制芯片还用于向所述第一控制芯片发送第二唤醒指令;所述第一控制芯片还用于根据所述第二唤醒指令由休眠状态切换至工作状态。
  15. 一种存储介质,应用于电子设备,所述电子设备包括第一控制芯片和第二控制芯片,所述第二控制芯片运行时的功耗低于所述第一控制芯片运行时的功耗;所述存储介质中存储有计算机程序,当所述计算机程序被运行时,使得:
    所述第一控制芯片在检测到所述电子设备进入熄屏显示模式时,唤醒所述第二控制芯片,并在唤醒所述第二控制芯片后进入休眠状态;
    所述第二控制芯片检测触控信号,所述触控信号指示启动目标应用;
    所述第二控制芯片根据所述目标应用的应用类型启动所述目标应用,或者根据所述目标应用的应用类型唤醒所述第一控制芯片,并由所述第一控制芯片启动所述目标应用。
  16. 一种电子设备,包括第一控制芯片和第二控制芯片,所述第二控制芯片运行时的功耗低于所述第一控制芯片运行时的功耗;
    所述第一控制芯片在检测到所述电子设备进入熄屏显示模式时,唤醒所述第二控制芯片,并在唤醒所述第二控制芯片后进入休眠状态;
    所述第二控制芯片检测触控信号,所述触控信号指示启动目标应用;
    所述第二控制芯片根据所述目标应用的应用类型启动所述目标应用,或者根据所述目标应用的应用类型唤醒所述第一控制芯片,并由所述第一控制芯片启动所述目标应用。
  17. 根据权利要求16所述的电子设备,其中,所述第一控制芯片安装有第一类型的目标应用,所述第二控制芯片安装有第二类型的目标应用;
    所述第二控制芯片根据所述目标应用的应用类型启动所述目标应用,或者根据所述目标应用的应用类型唤醒所述第一控制芯片,并由所述第一控制芯片启动所述目标应用,用于:
    若所述目标应用为所述第二类型的目标应用,所述第二控制芯片启动所述目标应用;
    若所述目标应用为所述第一类型的目标应用,所述第二控制芯片唤醒所述第一控制芯片,并在唤醒所述第二控制芯片后进入休眠状态,所述第一控制芯片启动所述目标应用。
  18. 根据权利要求16所述的电子设备,其中,所述电子设备还包括切换模块和显示屏,所述切换模块分别与所述第一控制芯片、所述第二控制芯片和所述显示屏电连接;
    所述第一控制芯片唤醒所述第二控制芯片后,所述应用启动方法还包括:
    所述第二控制芯片输出切换控制信号控制所述切换模块执行切换操作,以使所述切换模块从导通第一控制芯片输出的显示数据至所述显示屏切换为导通第二控制芯片输出的显示数据至所述显示屏,以实现所述第二控制芯片对所述显示屏的显示控制;
    所述第二控制芯片唤醒所述第一控制芯片后,所述应用启动方法还包括:
    所述第二控制芯片输出切换控制信号控制所述切换模块执行切换操作,以使所述切换模块从导通第二控制芯片输出的显示数据至所述显示屏切换为导通第一控制芯片输出的显示数据至所述显示屏,以实现所述第一控制芯片对所述显示屏的显示控制。
  19. 根据权利要求16所述的电子设备,其中,所述第一控制芯片基于第一操作系统运行设置于所述第一操作系统中的应用,所述第二控制芯片基于第二操作系统运行设置于所 述第二操作系统中的应用;
    所述第二控制芯片根据所述目标应用的应用类型基于所述第二操作系统启动设置于所述第二操作系统中的所述目标应用,或者根据所述目标应用的应用类型唤醒所述第一控制芯片,并由所述第一控制芯片基于所述第一操作系统启动设置于所述第一操作系统中的所述目标应用。
  20. 根据权利要求19所述的电子设备,其中,所述第二操作系统运行时所需的资源少于所述第一操作系统运行时所需的资源。
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