WO2017206880A1 - 终端数据处理方法、装置、存储介质及电子设备 - Google Patents

终端数据处理方法、装置、存储介质及电子设备 Download PDF

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Publication number
WO2017206880A1
WO2017206880A1 PCT/CN2017/086477 CN2017086477W WO2017206880A1 WO 2017206880 A1 WO2017206880 A1 WO 2017206880A1 CN 2017086477 W CN2017086477 W CN 2017086477W WO 2017206880 A1 WO2017206880 A1 WO 2017206880A1
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Prior art keywords
application process
data
wake
terminal
target application
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Application number
PCT/CN2017/086477
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English (en)
French (fr)
Inventor
张俊
Original Assignee
广东欧珀移动通信有限公司
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Publication of WO2017206880A1 publication Critical patent/WO2017206880A1/zh

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W52/00Power management, e.g. TPC [Transmission Power Control], power saving or power classes
    • H04W52/02Power saving arrangements
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W52/00Power management, e.g. TPC [Transmission Power Control], power saving or power classes
    • H04W52/02Power saving arrangements
    • H04W52/0209Power saving arrangements in terminal devices
    • H04W52/0225Power saving arrangements in terminal devices using monitoring of external events, e.g. the presence of a signal
    • H04W52/0229Power saving arrangements in terminal devices using monitoring of external events, e.g. the presence of a signal where the received signal is a wanted signal
    • H04W52/0232Power saving arrangements in terminal devices using monitoring of external events, e.g. the presence of a signal where the received signal is a wanted signal according to average transmission signal activity
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W76/00Connection management
    • H04W76/20Manipulation of established connections
    • H04W76/27Transitions between radio resource control [RRC] states
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W88/00Devices specially adapted for wireless communication networks, e.g. terminals, base stations or access point devices
    • H04W88/02Terminal devices
    • 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
    • Y02D30/00Reducing energy consumption in communication networks
    • Y02D30/70Reducing energy consumption in communication networks in wireless communication networks

Definitions

  • the present invention relates to the field of communications, and in particular, to a terminal data processing method, apparatus, storage medium, and electronic device.
  • the embodiment of the invention provides a method, a device, a storage medium and an electronic device for processing data of a terminal, which can effectively reduce power consumption of the terminal.
  • the embodiment of the invention provides a terminal data processing method, including:
  • the wake-up data is prohibited from waking up the terminal.
  • An embodiment of the present invention provides a terminal data processing apparatus, including:
  • a data acquisition module configured to acquire wake-up data sent by a modem module of the terminal, where the wake-up data is used to wake up the terminal;
  • a frequency acquisition module configured to acquire a sending frequency corresponding to the wakeup data
  • a frequency determining module configured to determine whether the sending frequency is greater than a preset threshold
  • the wake-up module is disabled, and if it is greater than a preset threshold, the wake-up data is prohibited from waking up the terminal.
  • the embodiment of the present invention provides a storage medium, including a computer program, which is implemented in the terminal data processing method provided by the embodiment of the present invention when the computer program is loaded and executed by the processor.
  • An embodiment of the present invention provides an electronic device including a memory, a processor, and a computer program stored in the memory and operable in the processor.
  • the processor executes the computer program, the following steps are implemented. :
  • the wake-up data is prohibited from waking up the electronic device.
  • the embodiment of the invention provides a method, a device, a storage medium and an electronic device for processing data of a terminal, which can effectively reduce power consumption of the terminal.
  • FIG. 1 is a schematic flowchart diagram of a terminal data processing method according to an embodiment of the present invention.
  • FIG. 2 is another schematic flowchart of a terminal data processing method according to an embodiment of the present invention.
  • FIG. 3 is a schematic structural diagram of a terminal data processing apparatus according to an embodiment of the present invention.
  • FIG. 4 is still another schematic flowchart of a terminal data processing method according to an embodiment of the present invention.
  • FIG. 5 is a schematic structural diagram of an electronic device according to an embodiment of the present invention.
  • FIG. 6 is another schematic structural diagram of an electronic device according to an embodiment of the present invention.
  • Embodiments of the present invention provide a terminal data processing method, apparatus, storage medium, and electronic device. The details will be described separately below.
  • the present embodiment can be applied to the installation of the Andriod system, the IOS system, the Symbian system, and the Windows.
  • the smart device of any operating system in the Phone system or the BlackBerry OS system is applicable to a variety of operating systems and has a wide range of applications.
  • third-party applications have greatly met people's needs, they have also caused problems.
  • these third-party applications maintain a long connection with the server even when running in the background, such as pushing advertisements, notifications, and the like to the user.
  • the client system is frequently awake by sending a packet through a modem. This will cause the client system to wake up frequently, resulting in resource consumption.
  • the embodiment of the invention provides a terminal data processing method, including:
  • the wakeup data is prohibited from waking up the terminal.
  • the step of disabling the wake-up data from waking up the terminal may include:
  • the target application process is closed to prohibit the wakeup data from waking up the terminal.
  • the step of acquiring the target application process corresponding to the wakeup data may include:
  • the step of shutting down the target application process to prohibit the wakeup data from waking up the terminal may include:
  • the target application process is closed to prohibit the wakeup data from waking up the terminal.
  • the method may further include:
  • the step of disabling the wake-up data from waking up the terminal may include:
  • the target application process is prohibited from connecting to the network to prohibit the wake-up data from waking up the terminal.
  • the acquiring the sending frequency corresponding to the wake-up data may include:
  • the number of times of sending the wake-up data is obtained according to the Internet Protocol address and port information corresponding to the wake-up data, and the sending frequency of the wake-up data is calculated according to the number of times of sending.
  • the terminal data processing device may be integrated in a terminal, and the terminal may be a device such as a smart phone or a tablet computer.
  • FIG. 1 is a schematic flowchart of a terminal data processing method according to an embodiment of the present invention. The process may be as follows:
  • Step S101 Acquire wake-up data sent by a modem module of the terminal, where the wake-up data is used to wake up the terminal.
  • Step S102 Acquire a transmission frequency corresponding to the wakeup data.
  • Step S103 determining whether the transmission frequency is greater than a preset threshold.
  • step S104 if it is greater than the preset threshold, the wake-up data is prohibited from waking up the terminal.
  • step S101 the terminal acquires wake-up data sent by the modem module of the terminal, where the wake-up data is used to wake up the terminal.
  • the modem module is configured to convert binary digital information into an analog signal that can be transmitted through a common public information system, or convert the received analog signal into a digital signal.
  • the above functions can be implemented by a dedicated modem.
  • the application After the application is retired to run in the background, it needs to maintain a long connection with the server for message push.
  • To push a message wake up the data through the modem module to wake up the terminal.
  • the wakeup data carries an internet protocol address (Internet) Protocol Address (IP address) and port information can help you get the application process to wake up the terminal.
  • IP address Internet Protocol Address
  • the modem module in this embodiment is equivalent to a large relay station.
  • the wake-up data is sent to the modem module, and then modulated and demodulated, and then forwarded to the terminal, thereby achieving the purpose of waking up the terminal. . Therefore, it can be seen that the modem module has to process a considerable amount of wake-up data. Since these wake-up data carry a unique IP address and port information, the IP address and port information can be used as an identifier for distinguishing wake-up data, that is, having the same IP address. The wakeup data is the same as the wakeup data of the port information. Then, the process proceeds to step S102.
  • step S102 the terminal acquires a transmission frequency corresponding to the wakeup data.
  • the transmission frequency is the number of times the modem module sends wake-up data to the terminal within a unit time. The larger the transmission frequency is, the more frequently the application process corresponding to the wake-up data requests to wake up the terminal, and the terminal consumes more power.
  • the number of times of waking up data transmission may be recorded by establishing an index table, where the index table includes the wake-up data IP address and the port number, and the number of transmissions.
  • the terminal searches the index table for the same IP address and port number according to the IP address and port number of the wake-up data, and if so, increases the original number of transmissions by one. If not, add the IP address and port number to the index table and set the number of transmissions to 1. If the unit time is exceeded, the index table is cleared.
  • the terminal when the terminal receives the wake-up data, it can quickly find the number of transmissions based on the IP address and the port number, and then proceeds to step S103.
  • the terminal determines whether the transmission frequency is greater than a preset threshold.
  • the preset threshold may be a value stored in the corresponding storage area (built-in storage area or external storage area) of the terminal when the terminal is shipped from the factory, or may be a value set by the user and stored in the corresponding storage area of the terminal.
  • a method for determining whether the sending frequency is greater than a preset threshold is used. For example, after acquiring the sending frequency, the preset threshold is called from a corresponding storage area of the terminal, and a difference between the sending frequency and the preset threshold is calculated. If the value is greater than zero, it is determined that the sending frequency is greater than the preset threshold, otherwise it is determined that the sending frequency is not greater than the preset threshold. Then, the process proceeds to step S104.
  • step S104 if the threshold is greater than the preset threshold, the frequency of the application wake-up terminal is too frequent, so the terminal prohibits the wake-up data from waking up the terminal.
  • the above is the process of processing the wake-up terminal behavior by the terminal data processing method of this embodiment.
  • the terminal data processing method of the embodiment of the present invention acquires the wake-up data sent by the modem module of the terminal, acquires the sending frequency corresponding to the wake-up data, and determines whether the sending frequency is greater than a preset threshold. If the threshold is greater than the preset threshold, the data is forbidden to be awakened.
  • the terminal data processing device may be integrated in a terminal, and the terminal may be a device such as a smart phone or a tablet computer.
  • FIG. 2 is another schematic flowchart of a method for processing terminal data according to an embodiment of the present invention, where the process is as follows:
  • Step S201 Acquire wake-up data sent by a modem module of the terminal, where the wake-up data is used to wake up the terminal.
  • Step S202 Acquire a transmission frequency corresponding to the wakeup data.
  • Step S203 determining whether the transmission frequency is greater than a preset threshold.
  • Step S204 If the threshold is greater than the preset threshold, obtain a target application process corresponding to the wakeup data.
  • Step S205 Determine whether there is an application process in the preset application process set that is the same as the target application process.
  • Step S206 if there is an application process that is the same as the target application process, the target application process is closed to prohibit the wake-up data from waking up the terminal.
  • step S201 the terminal acquires wake-up data sent by the modem module of the terminal, where the wake-up data is used to wake up the terminal.
  • the modem module is configured to convert binary digital information into an analog signal that can be transmitted through a common public information system, or convert the received analog signal into a digital signal.
  • the above functions can be implemented by a dedicated modem.
  • the application After the application is retired to run in the background, it needs to maintain a long connection with the server for message push.
  • To push a message wake up the data through the modem module to wake up the terminal.
  • the wakeup data carries an internet protocol address (Internet) Protocol Address (IP address) and port information can help you get the application process to wake up the terminal.
  • IP address Internet Protocol Address
  • the modem module in this embodiment is equivalent to a large relay station.
  • the wake-up data is sent to the modem module, and then modulated and demodulated, and then forwarded to the terminal, thereby achieving the purpose of waking up the terminal. . Therefore, it can be seen that the modem module has to process a considerable amount of wake-up data. Since these wake-up data carry a unique IP address and port information, the IP address and port information can be used as an identifier for distinguishing wake-up data, that is, having the same IP address. The wakeup data is the same as the wakeup data of the port information. Then, the process proceeds to step S202.
  • step S202 the terminal acquires a transmission frequency corresponding to the wakeup data.
  • the transmission frequency is the number of times the modem module sends wake-up data to the terminal within a unit time. The larger the transmission frequency is, the more frequently the application process corresponding to the wake-up data requests to wake up the terminal, and the terminal consumes more power.
  • the number of times of waking up data transmission may be recorded by establishing an index table, where the index table includes the wake-up data IP address and the port number, and the number of transmissions.
  • the terminal searches the index table for the same IP address and port number according to the IP address and port number of the wake-up data, and if so, increases the original number of transmissions by one. If not, add the IP address and port number to the index table and set the number of transmissions to 1. If the unit time is exceeded, the index table is cleared.
  • the terminal when the terminal receives the wake-up data, it can quickly find the number of transmissions based on the IP address and the port number, and then proceeds to step S203.
  • the step of the terminal acquiring the transmission frequency corresponding to the wakeup data in the S202 may include:
  • the number of transmissions corresponding to the wake-up data is obtained according to the Internet Protocol address and port information corresponding to the wake-up data, and the sending frequency of the wake-up data is calculated according to the number of times of sending.
  • the terminal determines whether the transmission frequency is greater than a preset threshold.
  • the preset threshold may be a value stored in the corresponding storage area (built-in storage area or external storage area) of the terminal when the terminal is shipped from the factory, or may be a value set by the user and stored in the corresponding storage area of the terminal.
  • a method for determining whether the sending frequency is greater than a preset threshold is used. For example, after acquiring the sending frequency, the preset threshold is called from a corresponding storage area of the terminal, and a difference between the sending frequency and the preset threshold is calculated. If the value is greater than zero, it is determined that the sending frequency is greater than the preset threshold, otherwise it is determined that the sending frequency is not greater than the preset threshold. Then, the process proceeds to step S204.
  • step S204 if it is greater than a preset threshold, the terminal acquires a target application process corresponding to the wakeup data.
  • User ID of the application process due to the IP address and port information carried by the wakeup data User The identification (UID) has an association relationship. Therefore, the corresponding user identifier can be obtained according to the wakeup data. Then, the corresponding application process identifier can be obtained according to the UID.
  • Identification, PID Since the PID is a unique identifier of the application process, the corresponding target application process can be obtained according to the application process identifier.
  • step S203 If it is less than or equal to the preset threshold, the index table in step S203 may be updated, and the number of transmissions is increased by one. Then, the process proceeds to step S205.
  • step S205 the terminal determines whether there is an application process in the preset application process set that is the same as the target application process.
  • the process of establishing the preset application process set is as follows: firstly, the application process on the terminal is obtained; and then the target application process is selected from the application process according to the attribute information of the application process to establish a preset application process set.
  • the attribute information may be authorization information, such as an application process that allows the terminal to process, and establish a set of authorized application processes; the attribute information may be application function classification information, such as an application process that is not a basic function such as a mobile phone call or a photographing. Select it to create a preset application process collection. Of course, it may also be other attribute information of the application process, which is not specifically limited herein. In this way, the application process that can prohibit the wake-up operation can be effectively selected according to the user's needs or according to the importance of the application process.
  • the terminal searches for the same application process as the target application process, and determines whether the same application process exists according to the specific search result, and then proceeds to step S206.
  • step S206 if the terminal determines in step S205 that there is an application process in the preset application process set that is the same as the target application process, the terminal closes the target application process to prohibit the target application process from waking up the terminal by waking up the data.
  • a network application ie, an application that can communicate with the server
  • a network connection needs to be established between the application and the server for data exchange. If the application and the server are always connected by establishing a long connection, after the application establishes a long connection with the server, in order to ensure that the long-connected link is always available, the server periodically sends the application to the application through the network. data pack. Therefore, the wake-up data wake-up terminal can be implemented by acquiring the target application process corresponding to the wake-up data and prohibiting the target application process from connecting to the network.
  • the above is the process of processing the wake-up terminal behavior by the terminal data processing method of this embodiment.
  • the terminal data processing method of this embodiment determines whether to prohibit the wake-up data from awakening the terminal by determining whether there is an application process that is the same as the target application process in the preset application process set. This not only reduces the power consumption of the terminal, but also avoids the situation that prohibits the important application process from waking up the terminal, thereby improving the correctness of the behavior of waking up the terminal without waking up the data.
  • the embodiment of the invention further provides a terminal data processing device, which can be integrated in a terminal, which can include a mobile phone, a tablet computer, a notebook computer or a personal computing (PC, Personal) Computer) and other equipment.
  • a terminal data processing device which can be integrated in a terminal, which can include a mobile phone, a tablet computer, a notebook computer or a personal computing (PC, Personal) Computer) and other equipment.
  • An embodiment of the present invention provides a terminal data processing apparatus, including:
  • a data acquisition module configured to acquire wake-up data sent by a modem module of the terminal, where the wake-up data is used to wake up the terminal;
  • a frequency acquisition module configured to acquire a sending frequency corresponding to the wake-up data
  • a frequency determining module configured to determine whether the sending frequency is greater than a preset threshold
  • the wake-up module is disabled, and if the threshold is greater than a preset threshold, the wake-up data is prohibited from waking up the terminal.
  • the prohibiting the waking module may further include:
  • the sub-module is closed for shutting down the target application process to prohibit the wake-up data from waking up the terminal.
  • the obtaining submodule can be used to:
  • the closing sub-module can be used to:
  • the target application process is closed to prohibit the wakeup data from waking up the terminal.
  • the forbidden wake-up module can be used to:
  • the target application process is prohibited from connecting to the network to prohibit the wake-up data from waking up the terminal.
  • FIG. 3 is a schematic structural diagram of a terminal data processing apparatus according to an embodiment of the present invention.
  • the terminal data processing apparatus may include a data acquisition module 301, a frequency acquisition module 302, a frequency determination module 303, a forbidden wakeup module 304, an application process acquisition module 305, and a set establishment module 306.
  • the data obtaining module 301 is configured to acquire wake-up data sent by a modem module of the terminal, where the wake-up data is used to wake up the terminal.
  • the frequency acquisition module 302 is configured to acquire a transmission frequency corresponding to the wakeup data.
  • the frequency determining module 303 is configured to determine whether the sending frequency is greater than a preset threshold.
  • the wake-up prevention module 304 is configured to prohibit wake-up data from waking up the terminal when it is greater than a preset threshold.
  • the application process obtaining module 305 is configured to acquire an application process on the terminal.
  • the collection establishing module 306 is configured to select a target application process from the application process according to the attribute information of the application process to establish a preset application process set.
  • the forbidden wake-up module 304 can include: an acquisition sub-module 3041, a close sub-module 3042, and a disable connection sub-module 3043.
  • the obtaining sub-module 3041 is configured to acquire a target application process corresponding to the wake-up data.
  • the close sub-module 3042 is used to close the target application process to disable wake-up data from waking up the terminal.
  • the connection prohibiting sub-module 3043 is configured to prohibit the target application process from connecting to the network to prohibit the wake-up data from waking up the terminal.
  • the obtaining sub-module 3041 may be configured to obtain a corresponding user identifier according to the wake-up data, obtain a corresponding process identifier according to the user identifier, and obtain a corresponding target application process according to the process identifier.
  • the closing sub-module 3042 can be configured to determine whether there is an application process in the preset application process set that is the same as the target application process; if there is an application process that is the same as the target application process, the target application process is closed. Wake up the terminal with no wake-up data.
  • the data acquisition module 301 is first called to acquire the wake-up data sent by the modem module of the terminal, where the wake-up data is used to wake up the terminal.
  • the modem module is configured to convert binary digital information into an analog signal that can be transmitted through a common public information system, or convert the received analog signal into a digital signal.
  • the above functions can be implemented by a dedicated modem.
  • the application After the application is retired to run in the background, it needs to maintain a long connection with the server for message push.
  • To push a message wake up the data through the modem module to wake up the terminal.
  • the wakeup data carries an internet protocol address (Internet) Protocol Address (IP address) and port information can help you get the application process to wake up the terminal.
  • IP address Internet Protocol Address
  • the modem module in this embodiment is equivalent to a large relay station.
  • the wake-up data is sent to the modem module, and then modulated and demodulated, and then forwarded to the terminal, thereby achieving the purpose of waking up the terminal. . Therefore, it can be seen that the modem module has to process a considerable amount of wake-up data. Since these wake-up data carry a unique IP address and port information, the IP address and port information can be used as an identifier for distinguishing wake-up data, that is, having the same IP address. The wakeup data is the same as the wakeup data of the port information.
  • the frequency acquisition module 302 is then invoked.
  • the frequency acquisition module 302 acquires a transmission frequency corresponding to the wakeup data.
  • the transmission frequency is the number of times the modem module sends wake-up data to the terminal within a unit time. The larger the transmission frequency is, the more frequently the application process corresponding to the wake-up data requests to wake up the terminal, and the terminal consumes more power.
  • the number of times of waking up data transmission may be recorded by establishing an index table, where the index table includes the wake-up data IP address and the port number, and the number of transmissions.
  • the terminal searches the index table for the same IP address and port number according to the IP address and port number of the wake-up data, and if so, increases the original number of transmissions by one. If not, add the IP address and port number to the index table and set the number of transmissions to 1. If the unit time is exceeded, the index table is cleared.
  • the number of transmissions can be quickly found based on the IP address and the port number, and then the frequency judgment module 303 is called.
  • the frequency determining module 303 determines whether the transmission frequency is greater than a preset threshold.
  • the preset threshold may be a value stored in the corresponding storage area (built-in storage area or external storage area) of the terminal when the terminal is shipped from the factory, or may be a value set by the user and stored in the corresponding storage area of the terminal.
  • the frequency determining module 303 determines whether the sending frequency is greater than the preset threshold. For example, after acquiring the sending frequency, the preset threshold is called from the corresponding storage area of the terminal, and the sending frequency and the preset threshold are calculated. When the difference is greater than zero, the frequency determining module 303 determines that the sending frequency is greater than the preset threshold, otherwise determines that the sending frequency is not greater than the preset threshold. The acquisition sub-module 3041 in the disable wake-up module 304 is then invoked.
  • the acquiring sub-module 3041 acquires the target application process corresponding to the wake-up data.
  • User ID of the application process due to the IP address and port information carried by the wakeup data (User The identification, UID) has an association relationship, so the frequency judging module 303 can first obtain the corresponding user identifier according to the awake data; then, similarly, the corresponding application process identifier can be obtained according to the UID (Process Identification, PID); Since the PID is a unique identifier of the application process, the corresponding target application process can be obtained according to the application process identifier.
  • the index table can be updated to increase the number of transmissions by one.
  • the close sub-module 3042 in the disable wake-up module 304 is then invoked.
  • the closing sub-module 3042 first determines whether there is an application process in the preset application process set that is the same as the target application process.
  • the process of establishing the preset application process set is as follows: first, the application process obtaining module 305 is called to acquire the application process on the terminal; then the call set establishing module 306 selects the target application process from the application process according to the attribute information of the application process to establish a pre- Set the application process collection.
  • the attribute information may be authorization information, such as an application process that allows the terminal to process, and establish a set of authorized application processes; the attribute information may be application function classification information, such as an application process that is not a basic function such as a mobile phone call or a photographing. Select it to create a preset application process collection. Of course, it may also be other attribute information of the application process, which is not specifically limited herein. In this way, the application process that can prohibit the wake-up operation can be effectively selected according to the user's needs or according to the importance of the application process.
  • the terminal searches for the same application process from the preset application process set, and can determine whether the same application process exists according to the specific search result.
  • the closing sub-module 3042 closes the target application process to prohibit the target application process from waking up the terminal by waking up the data.
  • a network application ie, an application that can communicate with the server
  • a network connection needs to be established between the application and the server for data exchange. If the application and the server are always connected by establishing a long connection, after the application establishes a long connection with the server, in order to ensure that the long-connected link is always available, the server periodically sends the application to the application through the network. data pack. Therefore, the target application process corresponding to the wakeup data can be obtained by calling the acquisition submodule 3041 in the prohibition wakeup module 304, and the forbidden connection submodule 3043 in the disable wakeup module 304 is invoked to prohibit the target application process from connecting to the network, thereby implementing wake-up data prohibition. terminal.
  • the above is the process of processing the wake-up terminal behavior by the terminal data processing apparatus provided in this embodiment.
  • the terminal data processing apparatus obtains the wake-up data sent by the modem module of the terminal, acquires the sending frequency corresponding to the wake-up data, and determines whether the sending frequency is greater than a preset threshold.
  • the data wakes up the terminal.
  • the solution can monitor the sending frequency of the wake-up data. When the sending frequency is greater than the preset threshold, the terminal system is prohibited from being woken up by the wake-up data, thereby avoiding the situation that the terminal system is frequently woken up, thereby effectively reducing the work of the terminal. Consumption.
  • FIG. 4 is a schematic flowchart diagram of still another embodiment of a method for processing terminal data according to an embodiment of the present invention.
  • step S401 after receiving the wake-up data sent by the modem, the smart phone searches for 10 times of the wake-up data in the index table, and then obtains the time of 50 seconds, and calculates the sending frequency as 1/5 times. second.
  • step S402 the smart phone compares the sending frequency with the preset threshold by 1/6 times per second, and finds that the sending frequency is greater than the preset threshold, that is, the wake-up data is frequently sent to the smart phone to reach Frequently wake up the purpose of the smartphone.
  • step S403 the smart phone obtains the corresponding UID according to the IP address and port number carried in the wake-up data, and then obtains the corresponding PID according to the UID, and finally obtains the target application process according to the PID.
  • step S404 since there is an application in the preset application process set that is the same as the target application process, the smart phone closes the target application process to prohibit the wake-up data from being woken up.
  • the terminal data processing method and device of the embodiment of the present invention acquires the wake-up data sent by the modem module of the terminal, acquires the sending frequency corresponding to the wake-up data, and determines whether the sending frequency is greater than a preset threshold. Wake up the data to wake up the terminal.
  • the solution can monitor the sending frequency of the wake-up data. When the sending frequency is greater than the preset threshold, the terminal system is prohibited from being woken up by the wake-up data, thereby avoiding the situation that the terminal system is frequently woken up, thereby effectively reducing the work of the terminal. Consumption.
  • the embodiment of the present invention further provides a computer readable storage medium, including a computer program.
  • a computer program When the computer program is loaded and executed by a processor, the steps in the terminal data processing method provided by the embodiment of the present invention may be implemented.
  • An embodiment of the present invention further provides an electronic device, including a memory, a processor, and a computer program stored in the memory and operable in the processor, where the processor can implement the computer program The steps in the terminal data processing method provided by the embodiment of the invention.
  • the electronic device can be a mobile terminal device such as a smartphone or tablet.
  • FIG. 5 is a schematic structural diagram of an electronic device according to an embodiment of the present invention.
  • the electronic device 500 can include components such as a memory 501, a processor 502, and a modem module 503. It will be understood by those skilled in the art that the electronic device structure illustrated in FIG. 5 does not constitute a limitation to the electronic device, and may include more or less components than those illustrated, or a combination of certain components, or different component arrangements.
  • Memory 501 can be used to store applications and data.
  • the application stored in the memory 501 contains executable code.
  • Applications can form various functional modules.
  • the processor 502 executes various functional applications and data processing by running an application stored in the memory 501.
  • the processor 502 is a control center of the electronic device, and connects various parts of the entire electronic device using various interfaces and lines, executes the electronic device by running or executing an application stored in the memory 501, and calling data stored in the memory 501.
  • the various functions and processing of data to provide overall monitoring of the electronic device.
  • the modem module 503 is for converting binary digital information into an analog signal that can be transmitted through a common public information system, or converting the received analog signal into a digital signal.
  • the above functions can be implemented by a dedicated modem.
  • the processor 502 in the electronic device loads the executable code corresponding to the process of one or more applications into the memory 501 according to the following instructions, and is executed by the processor 502 to be stored in the memory.
  • the application in 501 thus implementing the steps:
  • the processor 502 when the processor 502 performs the step of disabling the wake-up data to wake up the electronic device, the following steps may be performed: acquiring a target application process corresponding to the wake-up data; and closing the target application process, The electronic device is woken up by disabling the wake-up data.
  • the processor 502 when performing the step of acquiring the target application process corresponding to the wake data, may perform the following steps: acquiring a corresponding user identifier according to the wake data; and obtaining a corresponding according to the user identifier The application process identifier is obtained; and the corresponding target application process is obtained according to the application process identifier.
  • the processor 502 when the processor 502 performs the step of shutting down the target application process to prohibit the wakeup data from waking up the electronic device, the following steps may be performed: determining whether a preset application process set exists in the set And the target application process is the same application process; if there is an application process that is the same as the target application process, the target application process is closed to prohibit the wake-up data from waking up the electronic device.
  • the processor 502 may further perform the following steps: acquiring an application process on the electronic device; selecting a target application process from the application process according to attribute information of the application process, to establish a preset application. Process collection.
  • the processor 502 when the processor 502 performs the step of disabling the wake-up data to wake up the electronic device, the following steps may be performed: acquiring a target application process corresponding to the wake-up data; and prohibiting the target application process from connecting a network to wake up the electronic device by disabling the wakeup data.
  • the processor 502 when the processor 502 performs the step of acquiring the sending frequency corresponding to the wake-up data, the following steps may be performed: acquiring a preset index table, where the preset index table records different Internet protocols. Address and port information, and corresponding number of times of sending; obtaining corresponding Internet Protocol address and port information according to the wake-up data; and in the preset index table, according to the Internet protocol address and port information corresponding to the wake-up data, Obtaining a number of times of sending the wake-up data, and calculating a sending frequency of the wake-up data according to the number of times of sending.
  • FIG. 6 is another schematic structural diagram of an electronic device according to an embodiment of the present invention.
  • the electronic device 500 may further include a radio frequency (RF, Radio) Frequency circuit 504, input unit 505, and output unit 506.
  • RF radio frequency
  • the radio frequency circuit 504 can be used for transmitting and receiving information, or receiving and transmitting signals during a call. Specifically, after receiving the downlink information of the base station, the radio network is processed by one or more processors 502; in addition, the data related to the uplink is sent to the base station. .
  • the input unit 505 can be configured to receive input numbers, character information or user characteristic information (such as fingerprints), and to generate keyboard, mouse, joystick, optical or trackball signal inputs related to user settings and function controls.
  • the input unit 505 can include a touch-sensitive surface as well as other input devices. Touch-sensitive surfaces, also known as touch screens or trackpads.
  • the output unit 506 can be used to display information entered by the user or information provided to the user as well as various graphical user interfaces of the mobile terminal, which can be composed of graphics, text, icons, video, and any combination thereof.
  • the output unit 506 can be a display panel.
  • the electronic device may further include a camera, a Bluetooth module, a wireless fidelity module, and the like, and details are not described herein.
  • the program may be stored in a computer readable storage medium, and the storage medium may include: Read only memory (ROM, Read Only Memory), Random Access Memory (RAM), disk or CD.
  • ROM Read only memory
  • RAM Random Access Memory

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Abstract

本发明实施例公开了一种终端数据处理方法、装置、存储介质及电子设备。该方法包括:获取终端的调制解调模块发送的唤醒数据,其中唤醒数据用于唤醒终端;获取唤醒数据对应的发送频率;判断发送频率是否大于预设阈值;如大于预设阈值,则禁止唤醒数据唤醒终端。本发明实施例可以有效地降低终端功耗。

Description

终端数据处理方法、装置、存储介质及电子设备 技术领域
本发明涉及通信领域,尤其涉及一种终端数据处理方法、装置、存储介质及电子设备。
背景技术
随着互联网的发展和移动通信网络的发展,同时也伴随着移动终端的处理能力和存储能力的迅猛发展,海量的应用程序得到了迅速传播和使用。以智能手机为例,智能手机出货前会安装一些基本应用,以满足人们的基本需求,如提供音频播放器供用户听音乐、提供视频播放器供人们观看视频等。同时用户还会安装一些第三方应用以满足其特定需求,如用户想网上购物,则安装购物应用,想玩某款游戏,则自己安装相应的游戏应用。
技术问题
本发明实施例提供一种终端数据处理方法、装置、存储介质及电子设备,可以有效降低终端功耗。
技术解决方案
本发明实施例提供一种终端数据处理方法,包括:
获取终端的调制解调模块发送的唤醒数据,其中唤醒数据用于唤醒终端;
获取唤醒数据对应的发送频率;
判断发送频率是否大于预设阈值;
如大于预设阈值,则禁止唤醒数据唤醒终端。
本发明实施例提供了一种终端数据处理装置,包括:
数据获取模块,用于获取终端的调制解调模块发送的唤醒数据,其中唤醒数据用于唤醒终端;
频率获取模块,用于获取唤醒数据对应的发送频率;
频率判断模块,用于判断发送频率是否大于预设阈值;
禁止唤醒模块,用于如大于预设阈值,则禁止唤醒数据唤醒终端。
本发明实施例提供一种存储介质,包括计算机程序,所述计算机程序被处理器加载并执行时,实现本发明实施例提供的终端数据处理方法中的步骤。
本发明实施例提供一种电子设备,包括存储器,处理器,以及存储在所述存储器中并可在所述处理器中运行的计算机程序,所述处理器执行所述计算机程序时,实现如下步骤:
获取电子设备的调制解调模块发送的唤醒数据,其中所述唤醒数据用于唤醒所述电子设备;
获取所述唤醒数据对应的发送频率;
判断所述发送频率是否大于预设阈值;
如大于预设阈值,则禁止所述唤醒数据唤醒所述电子设备。
有益效果
本发明实施例提供一种终端数据处理方法、装置、存储介质及电子设备,可以有效降低终端功耗。
附图说明
图1是本发明实施例提供的终端数据处理方法的流程示意图。
图2是本发明实施例提供的终端数据处理方法的另一流程示意图。
图3是本发明实施例提供的终端数据处理装置的结构示意图。
图4是本发明实施例提供的终端数据处理方法的又一流程示意图。
图5是本发明实施例提供的电子设备的结构示意图。
图6是本发明实施例提供的电子设备的另一结构示意图。
本发明的最佳实施方式
下面将结合本发明实施例中的附图,对本发明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发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,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,都属于本发明保护的范围。
本发明实施例提供一种终端数据处理方法、装置、存储介质及电子设备。以下将分别进行详细说明。
本领域技术人员可以理解,本实施方式可以应用于安装了Andriod系统、IOS系统、Symbian系统、Windows Phone系统、BlackBerryOS系统中的任一种操作系统的智能设备,适用于多种操作系统,应用广泛。
第三方应用虽然大大满足了人们的需求,但也带来了困扰。这些第三方应用为了便于扩展业务,即使在后台运行时也会与服务器保持长连接,如推送广告、通知等信息给用户。这过程中会通过调制解调器(modem)发送数据包频繁唤醒客户端系统。这样会使客户端系统被频繁唤醒,从而导致资源的消耗。
本发明实施例提供一种终端数据处理方法,包括:
获取终端的调制解调模块发送的唤醒数据,其中所述唤醒数据用于唤醒所述终端;
获取所述唤醒数据对应的发送频率;
判断所述发送频率是否大于预设阈值;
如大于预设阈值,则禁止所述唤醒数据唤醒所述终端。
在一种实施方式中,所述禁止所述唤醒数据唤醒所述终端的步骤,可以包括:
获取所述唤醒数据对应的目标应用进程;
关闭所述目标应用进程,以禁止所述唤醒数据唤醒所述终端。
在一种实施方式中,所述获取所述唤醒数据对应的目标应用进程的步骤,可以包括:
根据所述唤醒数据获取对应的用户标识;
根据所述用户标识获取对应的应用进程标识;
根据所述应用进程标识获取对应的目标应用进程。
在一种实施方式中,所述关闭所述目标应用进程,以禁止所述唤醒数据唤醒所述终端的步骤,可以包括:
判断预设应用进程集合中是否存在与所述目标应用进程相同的应用进程;
若存在与所述目标应用进程相同的应用进程,则关闭所述目标应用进程,以禁止所述唤醒数据唤醒所述终端。
在一种实施方式中,在所述判断预设应用进程集合中是否存在与所述目标应用进程相同的应用进程的步骤之前,还可以包括:
获取所述终端上的应用进程;
根据所述应用进程的属性信息从所述应用进程中选取目标应用进程,以建立预设应用进程集合。
在一种实施方式中,所述禁止所述唤醒数据唤醒所述终端的步骤,可以包括:
获取所述唤醒数据对应的目标应用进程;
禁止所述目标应用进程连接网络,以禁止所述唤醒数据唤醒所述终端。
在一种实施方式中,所述获取所述唤醒数据对应的发送频率,可以包括:
获取预设索引表,所述预设索引表中记载有不同的互联网协议地址和端口信息,及对应的发送次数;
根据所述唤醒数据,获取对应的互联网协议地址和端口信息;
在所述预设索引表中,根据所述唤醒数据对应的互联网协议地址和端口信息,获取所述唤醒数据对应的发送次数,并根据所述发送次数计算所述唤醒数据的发送频率。
本实施例将从终端数据处理装置的角度进行描述,该终端数据处理装置可以集成在终端中,该终端可以为智能手机、平板电脑等设备。
请参照图1,图1为本发明实施例提供的终端数据处理方法的流程示意图,流程可以如下:
步骤S101,获取终端的调制解调模块发送的唤醒数据,其中唤醒数据用于唤醒终端。
步骤S102,获取唤醒数据对应的发送频率。
步骤S103,判断发送频率是否大于预设阈值。
步骤S104,如大于预设阈值,则禁止唤醒数据唤醒终端。
下面详细说明本实施例的终端数据处理方法的各步骤的流程。
在步骤S101中,终端获取终端的调制解调模块发送的唤醒数据,其中唤醒数据用于唤醒终端。需要说明的是,该调制解调模块用于将二进制数字信息转换成可以通过普通公共信息系统传送的模拟信号,或将接收的模拟信号转换成数字信号。在一种实施方式中,可以通过专门的调制解调器实现上述功能。
应用退到后台运行后,需要与服务器保持长连接,以进行消息推送。要进行消息推送时,需通过调制解调模块发送唤醒数据来唤醒终端。其中,该唤醒数据携带了互联网协议地址(Internet Protocol Address,简称IP地址)和端口信息,可以帮助得到欲唤醒终端的应用进程。
本实施例中的调制解调模块相当于一个大的中转站,当希望唤醒终端时就会向该调制解调模块发送唤醒数据,经调制解调后再转发给终端,从而实现唤醒终端的目的。因此可以看出调制解调模块要处理相当多的唤醒数据,由于这些唤醒数据中携带唯一的IP地址和端口信息,因此可以以IP地址和端口信息作为区分唤醒数据的标识,即具有相同IP地址和端口信息的唤醒数据为同一类。随后转入步骤S102。
在步骤S102中,终端获取唤醒数据对应的发送频率。其中,该发送频率是调制解调模块单位时间内向终端发送唤醒数据的次数。发送频率越大,说明该唤醒数据对应的应用进程越频繁的请求唤醒终端,此时终端电量消耗的也越大。
在一种实施方式中,可以通过建立索引表的方式记录唤醒数据发送的次数,该索引表包括唤醒数据IP地址和端口号,发送次数两项。在单位时间内,当终端接收到唤醒数据时,根据该唤醒数据的IP地址和端口号查找索引表上是否有相同的IP地址和端口号,如有,则将原有的发送次数加1,如没有,则在索引表上增加该IP地址和端口号,并将发送次数设为1。如超过了单位时间,则清空索引表。
于是,当终端接收到唤醒数据时,可以根据IP地址和端口号快速查找发送次数,随后转入步骤S103。
在步骤S103中,终端判断发送频率是否大于预设阈值。其中,该预设阈值可以是终端在出厂时存储在终端相应存储区域(内置存储区域或外置存储区域)中的一个数值,也可以是用户设置并存储在终端相应存储区域的一个数值。
判断该发送频率是否大于预设阈值的方式有多种,例如,在获取该发送频率后,从终端的相应存储区域中调用该预设阈值,计算该发送频率与该预设阈值之间的差值,当该差值大于零时,判断为该发送频率大于该预设阈值,否则判断为该发送频率不大于该预设阈值。随后转入步骤S104。
在步骤S104中,如大于预设阈值,说明应用唤醒终端的频率过于频繁,因此终端禁止该唤醒数据唤醒终端。
以上即本实施例的终端数据处理方法对唤醒终端行为进行处理的过程。
本发明实施例的终端数据处理方法,采用获取终端的调制解调模块发送的唤醒数据,获取唤醒数据对应的发送频率并判断发送频率是否大于预设阈值,如大于预设阈值,则禁止唤醒数据唤醒终端的技术方案。该方案可以监控该唤醒数据的发送频率,当该发送频率大于预设阈值时,禁止通过该唤醒数据唤醒该终端系统,避免了终端系统被频繁唤醒的情况,从而有效的降低了终端的功耗。
本实施例将从终端数据处理装置的角度进行描述,该终端数据处理装置可以集成在终端中,该终端可以为智能手机、平板电脑等设备。
请参照图2,图2为本发明实施例提供的终端数据处理方法的另一流程示意图,流程如下:
步骤S201,获取终端的调制解调模块发送的唤醒数据,其中唤醒数据用于唤醒终端。
步骤S202,获取唤醒数据对应的发送频率。
步骤S203,判断发送频率是否大于预设阈值。
步骤S204,如大于预设阈值,获取唤醒数据对应的目标应用进程。
步骤S205,判断预设应用进程集合中是否存在与目标应用进程相同的应用进程。
步骤S206,若存在与目标应用进程相同的应用进程,则关闭目标应用进程,以禁止唤醒数据唤醒终端。
下面详细说明本实施例提供的终端数据处理方法的各步骤的流程。
在步骤S201中,终端获取终端的调制解调模块发送的唤醒数据,其中唤醒数据用于唤醒终端。需要说明的是,该调制解调模块用于将二进制数字信息转换成可以通过普通公共信息系统传送的模拟信号,或将接收的模拟信号转换成数字信号。在一种实施方式中,可以通过专门的调制解调器实现上述功能。
应用退到后台运行后,需要与服务器保持长连接,以进行消息推送。要进行消息推送时,需通过调制解调模块发送唤醒数据来唤醒终端。其中,该唤醒数据携带了互联网协议地址(Internet Protocol Address,简称IP地址)和端口信息,可以帮助得到欲唤醒终端的应用进程。
本实施例中的调制解调模块相当于一个大的中转站,当希望唤醒终端时就会向该调制解调模块发送唤醒数据,经调制解调后再转发给终端,从而实现唤醒终端的目的。因此可以看出调制解调模块要处理相当多的唤醒数据,由于这些唤醒数据中携带唯一的IP地址和端口信息,因此可以以IP地址和端口信息作为区分唤醒数据的标识,即具有相同IP地址和端口信息的唤醒数据为同一类。随后转入步骤S202。
在步骤S202中,终端获取唤醒数据对应的发送频率。其中,该发送频率是调制解调模块单位时间内向终端发送唤醒数据的次数。发送频率越大,说明该唤醒数据对应的应用进程越频繁的请求唤醒终端,此时终端电量消耗的也越大。
在一种实施方式中,可以通过建立索引表的方式记录唤醒数据发送的次数,该索引表包括唤醒数据IP地址和端口号,发送次数两项。在单位时间内,当终端接收到唤醒数据时,根据该唤醒数据的IP地址和端口号查找索引表上是否有相同的IP地址和端口号,如有,则将原有的发送次数加1,如没有,则在索引表上增加该IP地址和端口号,并将发送次数设为1。如超过了单位时间,则清空索引表。
于是,当终端接收到唤醒数据时,可以根据IP地址和端口号快速查找发送次数,随后转入步骤S203。
因此,在一种实施方式中,S202中终端获取唤醒数据对应的发送频率的步骤可以包括:
获取预设索引表,该预设索引表中记载有不同的互联网协议地址和端口信息,及对应的发送次数;
根据唤醒数据,获取对应的互联网协议地址和端口信息;
在该预设索引表中,根据该唤醒数据对应的互联网协议地址和端口信息,获取该唤醒数据对应的发送次数,并根据该发送次数计算该唤醒数据的发送频率。
在步骤S203中,终端判断发送频率是否大于预设阈值。其中,该预设阈值可以是终端在出厂时存储在终端相应存储区域(内置存储区域或外置存储区域)中的一个数值,也可以是用户设置并存储在终端相应存储区域的一个数值。
判断该发送频率是否大于预设阈值的方式有多种,例如,在获取该发送频率后,从终端的相应存储区域中调用该预设阈值,计算该发送频率与该预设阈值之间的差值,当该差值大于零时,判断为该发送频率大于该预设阈值,否则判断为该发送频率不大于该预设阈值。随后转入步骤S204。
在步骤S204中,如大于预设阈值,终端获取唤醒数据对应的目标应用进程。由于唤醒数据携带的IP地址和端口信息与应用进程的用户标识(User identification,UID)具有关联关系,因此可以先根据唤醒数据获取对应的用户标识;接着,同理可以根据UID获取对应的应用进程标识(Process identification,PID);由于PID是应用进程的唯一标识,故可以根据应用进程标识获取对应的目标应用进程。
如小于或等于预设阈值,则可以对步骤S203中的索引表进行更新,将发送次数加1。随后转入步骤S205。
在步骤S205中,终端判断预设应用进程集合中是否存在与目标应用进程相同的应用进程。其中该预设应用进程集合的建立过程如下:首先获取终端上的应用进程;接着根据应用进程的属性信息从应用进程中选取目标应用进程,以建立预设应用进程集合。
其中,属性信息可以是授权信息,如将允许终端进行处理的应用进程选取出来,建立授权应用进程集合;属性信息可以是应用功能分类信息,如将不是实现手机通话、拍照等基本功能的应用进程选取出来,建立预设应用进程集合。当然还可以是应用进程的其他属性信息,此处不作具体限定。这样可以根据用户需求或者根据应用进程的重要性有效的挑选出可以进行禁止唤醒操作的应用进程。
当终端获取到目标应用进程后,将从该预设应用进程集合中寻找与目标应用进程相同的应用进程,根据具体的查找结果可以判断是否存在相同的应用进程,随后转入步骤S206。
在步骤S206中,若步骤S205中终端判断出预设应用进程集合中存在与目标应用进程相同的应用进程,则终端关闭目标应用进程,以禁止该目标应用进程通过唤醒数据唤醒终端。
在一种实施方式中,由于终端上运行网络应用程序(即可以与服务器进行通信的应用程序)时,需要在该应用程序与服务器之间建立网络连接以进行数据交换。如通过建立长连接使应用程序与服务器一直保持连接状态,当应用程序与服务器之间建立长连接后,为了确保该长连接的链路一直处于可用状态,服务器会定时通过网络向该应用程序发送数据包。故而可以通过获取唤醒数据对应的目标应用进程,并禁止目标应用进程连接网络,来实现禁止唤醒数据唤醒终端。
以上即本实施例的终端数据处理方法对唤醒终端行为进行处理的过程。
本实施例的终端数据处理方法通过判断预设应用进程集合中是否存在与目标应用进程相同的应用进程,来确定是否禁止唤醒数据唤醒终端。这样不仅降低了终端功耗,而且可以避免出现禁止了重要应用进程唤醒终端的情况,从而提高了禁止唤醒数据唤醒终端行为的正确性。
本发明实施例还提供一种终端数据处理装置,该终端数据处理装置可以集成在终端中,该终端可以包括手机、平板电脑、笔记本电脑或个人计算(PC,Personal Computer)等设备。
本发明实施例提供一种终端数据处理装置,包括:
数据获取模块,用于获取终端的调制解调模块发送的唤醒数据,其中所述唤醒数据用于唤醒所述终端;
频率获取模块,用于获取所述唤醒数据对应的发送频率;
频率判断模块,用于判断所述发送频率是否大于预设阈值;
禁止唤醒模块,用于如大于预设阈值,则禁止所述唤醒数据唤醒所述终端。
在一种实施方式中,所述禁止唤醒模块,还可以包括:
获取子模块,用于获取所述唤醒数据对应的目标应用进程;
关闭子模块,用于关闭所述目标应用进程,以禁止所述唤醒数据唤醒所述终端。
在一种实施方式中,所述获取子模块,可以用于:
根据所述唤醒数据获取对应的用户标识;
根据所述用户标识获取对应的应用进程标识;
根据所述应用进程标识获取对应的目标应用进程。
在一种实施方式中,所述关闭子模块,可以用于:
判断预设应用进程集合中是否存在与所述目标应用进程相同的应用进程;
若存在与所述目标应用进程相同的应用进程,则关闭所述目标应用进程,以禁止所述唤醒数据唤醒所述终端。
在一种实施方式中,所述禁止唤醒模块,可以用于:
获取所述唤醒数据对应的目标应用进程;
禁止所述目标应用进程连接网络,以禁止所述唤醒数据唤醒所述终端。
请参照图3,图3为本发明实施例提供的终端数据处理装置的结构示意图。该终端数据处理装置可以包括数据获取模块301、频率获取模块302、频率判断模块303、禁止唤醒模块304、应用进程获取模块305和集合建立模块306。其中,数据获取模块301用于获取终端的调制解调模块发送的唤醒数据,其中唤醒数据用于唤醒终端。频率获取模块302用于获取唤醒数据对应的发送频率。频率判断模块303用于判断发送频率是否大于预设阈值。禁止唤醒模块304用于在大于预设阈值时,禁止唤醒数据唤醒终端。应用进程获取模块305用于获取终端上的应用进程。集合建立模块306用于根据应用进程的属性信息从应用进程中选取目标应用进程,以建立预设应用进程集合。
在一种实施方式中,该禁止唤醒模块304可以包括:获取子模块3041、关闭子模块3042和禁止连接子模块3043。其中获取子模块3041用于获取唤醒数据对应的目标应用进程。关闭子模块3042用于关闭目标应用进程,以禁止唤醒数据唤醒终端。禁止连接子模块3043用于禁止目标应用进程连接网络,以禁止唤醒数据唤醒终端。
在一种实施方式中,该获取子模块3041可以用于根据唤醒数据获取对应的用户标识;根据用户标识获取对应的进程标识;根据进程标识获取对应的目标应用进程。
在一种实施方式中,该关闭子模块3042可以用于判断预设应用进程集合中是否存在与目标应用进程相同的应用进程;若存在与目标应用进程相同的应用进程,则关闭目标应用进程,以禁止唤醒数据唤醒终端。
本终端数据处理装置使用时,首先调用数据获取模块301获取终端的调制解调模块发送的唤醒数据,其中唤醒数据用于唤醒终端。需要说明的是,该调制解调模块用于将二进制数字信息转换成可以通过普通公共信息系统传送的模拟信号,或将接收的模拟信号转换成数字信号。在一种实施方式中,可以通过专门的调制解调器实现上述功能。
应用退到后台运行后,需要与服务器保持长连接,以进行消息推送。要进行消息推送时,需通过调制解调模块发送唤醒数据来唤醒终端。其中,该唤醒数据携带了互联网协议地址(Internet Protocol Address,简称IP地址)和端口信息,可以帮助得到欲唤醒终端的应用进程。
本实施例中的调制解调模块相当于一个大的中转站,当希望唤醒终端时就会向该调制解调模块发送唤醒数据,经调制解调后再转发给终端,从而实现唤醒终端的目的。因此可以看出调制解调模块要处理相当多的唤醒数据,由于这些唤醒数据中携带唯一的IP地址和端口信息,因此可以以IP地址和端口信息作为区分唤醒数据的标识,即具有相同IP地址和端口信息的唤醒数据为同一类。随后调用频率获取模块302。
接着,频率获取模块302获取唤醒数据对应的发送频率。其中,该发送频率是调制解调模块单位时间内向终端发送唤醒数据的次数。发送频率越大,说明该唤醒数据对应的应用进程越频繁的请求唤醒终端,此时终端电量消耗的也越大。
在一种实施方式中,可以通过建立索引表的方式记录唤醒数据发送的次数,该索引表包括唤醒数据IP地址和端口号,发送次数两项。在单位时间内,当终端接收到唤醒数据时,根据该唤醒数据的IP地址和端口号查找索引表上是否有相同的IP地址和端口号,如有,则将原有的发送次数加1,如没有,则在索引表上增加该IP地址和端口号,并将发送次数设为1。如超过了单位时间,则清空索引表。
于是,当接收到唤醒数据时,可以根据IP地址和端口号快速查找发送次数,随后调用频率判断模块303。
紧接着,频率判断模块303判断发送频率是否大于预设阈值。其中,该预设阈值可以是终端在出厂时存储在终端相应存储区域(内置存储区域或外置存储区域)中的一个数值,也可以是用户设置并存储在终端相应存储区域的一个数值。
频率判断模块303判断该发送频率是否大于预设阈值的方式有多种,例如,在获取该发送频率后,从终端的相应存储区域中调用该预设阈值,计算该发送频率与该预设阈值之间的差值,当该差值大于零时,频率判断模块303判断为该发送频率大于该预设阈值,否则判断为该发送频率不大于该预设阈值。随后调用禁止唤醒模块304中的获取子模块3041。
如频率判断模块303判断大于预设阈值,获取子模块3041获取唤醒数据对应的目标应用进程。由于唤醒数据携带的IP地址和端口信息与应用进程的用户标识(User identification,UID)具有关联关系,因此频率判断模块303可以先根据唤醒数据获取对应的用户标识;接着,同理可以根据UID获取对应的应用进程标识(Process identification,PID);由于PID是应用进程的唯一标识,故可以根据应用进程标识获取对应的目标应用进程。
如小于或等于预设阈值,则可以对索引表进行更新,将发送次数加1。随后调用禁止唤醒模块304中的关闭子模块3042。
在一种实施方式中,关闭子模块3042先判断预设应用进程集合中是否存在与目标应用进程相同的应用进程。其中该预设应用进程集合的建立过程如下:首先调用应用进程获取模块305获取终端上的应用进程;接着调用集合建立模块306根据应用进程的属性信息从应用进程中选取目标应用进程,以建立预设应用进程集合。
其中,属性信息可以是授权信息,如将允许终端进行处理的应用进程选取出来,建立授权应用进程集合;属性信息可以是应用功能分类信息,如将不是实现手机通话、拍照等基本功能的应用进程选取出来,建立预设应用进程集合。当然还可以是应用进程的其他属性信息,此处不作具体限定。这样可以根据用户需求或者根据应用进程的重要性有效的挑选出可以进行禁止唤醒操作的应用进程。
当终端获取到目标应用进程后,将从该预设应用进程集合中寻找与目标应用进程相同的应用进程,根据具体的查找结果可以判断是否存在相同的应用进程。
然后在判断出预设应用进程集合中存在与目标应用进程相同的应用进程时,关闭子模块3042关闭目标应用进程,以禁止该目标应用进程通过唤醒数据唤醒终端。
在一种实施方式中,由于终端上运行网络应用程序(即可以与服务器进行通信的应用程序)时,需要在该应用程序与服务器之间建立网络连接以进行数据交换。如通过建立长连接使应用程序与服务器一直保持连接状态,当应用程序与服务器之间建立长连接后,为了确保该长连接的链路一直处于可用状态,服务器会定时通过网络向该应用程序发送数据包。故而可以通过调用禁止唤醒模块304中的获取子模块3041获取唤醒数据对应的目标应用进程,并调用禁止唤醒模块304中的禁止连接子模块3043来禁止目标应用进程连接网络,来实现禁止唤醒数据唤醒终端。
以上即本实施例提供的终端数据处理装置对唤醒终端行为进行处理的过程。
本发明实施例提供的终端数据处理装置,通过获取终端的调制解调模块发送的唤醒数据,获取唤醒数据对应的发送频率并判断发送频率是否大于预设阈值,如大于预设阈值,则禁止唤醒数据唤醒终端。该方案可以监控该唤醒数据的发送频率,当该发送频率大于预设阈值时,禁止通过该唤醒数据唤醒该终端系统,因此避免了终端系统被频繁唤醒的情况,从而有效的降低了终端的功耗。
请参照图4,图4为本发明实施例提供的终端数据处理方法的又一实施例的流程示意图。
在步骤S401中,智能手机接收到调制解调器发送的唤醒数据后,在索引表中查找到该唤醒数据的发送次数为10次,再获取到时间为50秒,计算得到发送频率为1/5次每秒。
在步骤S402中,智能手机将发送频率1/5次每秒与预设阈值1/6次每秒做比较,发现发送频率大于预设阈值即该唤醒数据被频繁的发送给智能手机,以达到频繁唤醒智能手机的目的。
在步骤S403中,智能手机根据该唤醒数据中携带的IP地址和端口号获取到对应的UID,再根据UID得到对应的PID,最后根据PID得到目标应用进程。
在步骤S404中,由于预设应用进程集合中有与该目标应用进程相同的应用,因此智能手机关闭该目标应用进程,以禁止被该唤醒数据唤醒。
本发明实施例的终端数据处理方法及装置,通过获取终端的调制解调模块发送的唤醒数据,获取唤醒数据对应的发送频率并判断发送频率是否大于预设阈值,如大于预设阈值,则禁止唤醒数据唤醒终端。该方案可以监控该唤醒数据的发送频率,当该发送频率大于预设阈值时,禁止通过该唤醒数据唤醒该终端系统,因此避免了终端系统被频繁唤醒的情况,从而有效的降低了终端的功耗。
本发明实施例还提供一种计算机可读的存储介质,包括计算机程序,所述计算机程序被处理器加载并执行时,可以实现本发明实施例提供的终端数据处理方法中的步骤。
本发明实施例还提供一种电子设备,包括存储器,处理器,以及存储在所述存储器中并可在所述处理器中运行的计算机程序,所述处理器执行所述计算机程序时可以实现本发明实施例提供的终端数据处理方法中的步骤。
例如,该电子设备可以是诸如智能手机或平板电脑等的移动终端设备。请参阅图5,图5为本发明实施例提供的电子设备的结构示意图。该电子设备500可以包括存储器501、处理器502以及调制解调模块503等部件。本领域技术人员可以理解,图5中示出的电子设备结构并不构成对电子设备的限定,可以包括比图示更多或更少的部件,或者组合某些部件,或者不同的部件布置。
存储器501可用于存储应用程序和数据。存储器501存储的应用程序中包含有可执行代码。应用程序可以组成各种功能模块。处理器502通过运行存储在存储器501的应用程序,从而执行各种功能应用以及数据处理。
处理器502是电子设备的控制中心,利用各种接口和线路连接整个电子设备的各个部分,通过运行或执行存储在存储器501内的应用程序,以及调用存储在存储器501内的数据,执行电子设备的各种功能和处理数据,从而对电子设备进行整体监控。
调制解调模块503用于将二进制数字信息转换成可以通过普通公共信息系统传送的模拟信号,或将接收的模拟信号转换成数字信号。在一种实施方式中,可以通过专门的调制解调器实现上述功能。
在本实施例中,电子设备中的处理器502会按照如下的指令,将一个或一个以上的应用程序的进程对应的可执行代码加载到存储器501中,并由处理器502来运行存储在存储器501中的应用程序,从而实现步骤:
获取电子设备的调制解调模块发送的唤醒数据,其中所述唤醒数据用于唤醒所述电子设备;获取所述唤醒数据对应的发送频率;判断所述发送频率是否大于预设阈值;如大于预设阈值,则禁止所述唤醒数据唤醒所述电子设备。
在一种实施方式中,处理器502执行所述禁止所述唤醒数据唤醒所述电子设备的步骤时,可以执行如下步骤:获取所述唤醒数据对应的目标应用进程;关闭所述目标应用进程,以禁止所述唤醒数据唤醒所述电子设备。
在一种实施方式中,处理器502执行所述获取所述唤醒数据对应的目标应用进程的步骤时,可以执行如下步骤:根据所述唤醒数据获取对应的用户标识;根据所述用户标识获取对应的应用进程标识;根据所述应用进程标识获取对应的目标应用进程。
在一种实施方式中,处理器502执行所述关闭所述目标应用进程,以禁止所述唤醒数据唤醒所述电子设备的步骤时,可以执行如下步骤:判断预设应用进程集合中是否存在与所述目标应用进程相同的应用进程;若存在与所述目标应用进程相同的应用进程,则关闭所述目标应用进程,以禁止所述唤醒数据唤醒所述电子设备。
在一种实施方式中,处理器502还可以执行如下步骤:获取所述电子设备上的应用进程;根据所述应用进程的属性信息从所述应用进程中选取目标应用进程,以建立预设应用进程集合。
在一种实施方式中,处理器502执行所述禁止所述唤醒数据唤醒所述电子设备的步骤时,可以执行如下步骤:获取所述唤醒数据对应的目标应用进程;禁止所述目标应用进程连接网络,以禁止所述唤醒数据唤醒所述电子设备。
在一种实施方式中,处理器502执行所述获取所述唤醒数据对应的发送频率的步骤时,可以执行如下步骤:获取预设索引表,所述预设索引表中记载有不同的互联网协议地址和端口信息,及对应的发送次数;根据所述唤醒数据,获取对应的互联网协议地址和端口信息;在所述预设索引表中,根据所述唤醒数据对应的互联网协议地址和端口信息,获取所述唤醒数据对应的发送次数,并根据所述发送次数计算所述唤醒数据的发送频率。
请参阅图6,图6为本发明实施例提供的电子设备的另一结构示意图。在一种实施方式中,电子设备500还可以包括射频(RF,Radio Frequency)电路504、输入单元505以及输出单元506。
射频电路504可用于收发信息,或通话过程中信号的接收和发送,特别地,将基站的下行信息接收后,交由一个或者一个以上处理器502处理;另外,将涉及上行的数据发送给基站。
输入单元505可用于接收输入的数字、字符信息或用户特征信息(比如指纹),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。在一实施例中,输入单元505可包括触敏表面以及其他输入设备。触敏表面,也称为触摸显示屏或者触控板。
输出单元506可用于显示由用户输入的信息或提供给用户的信息以及移动终端的各种图形用户接口,这些图形用户接口可以由图形、文本、图标、视频和其任意组合来构成。例如,输出单元506可以为显示面板。
尽管图6中未示出,电子设备还可以包括摄像头、蓝牙模块、无线保真模块等,在此不再赘述。
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程序来指令相关的硬件来完成,该程序可以存储于一计算机可读存储介质中,存储介质可以包括:只读存储器(ROM,Read Only Memory)、随机存取记忆体(RAM,Random Access Memory)、磁盘或光盘等。
以上对本发明实施例所提供的一种终端数据处理方法、装置、存储介质及电子设备进行了详细介绍,本文中应用程序了具体个例对本发明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发明的方法及其核心思想;同时,对于本领域的技术人员,依据本发明的思想,在具体实施方式及应用程序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发明的限制。

Claims (20)

  1. 一种终端数据处理方法,其中,包括:
    获取终端的调制解调模块发送的唤醒数据,其中所述唤醒数据用于唤醒所述终端;
    获取所述唤醒数据对应的发送频率;
    判断所述发送频率是否大于预设阈值;
    如大于预设阈值,则禁止所述唤醒数据唤醒所述终端。
  2. 根据权利要求1所述的终端数据处理方法,其中,所述禁止所述唤醒数据唤醒所述终端的步骤包括:
    获取所述唤醒数据对应的目标应用进程;
    关闭所述目标应用进程,以禁止所述唤醒数据唤醒所述终端。
  3. 根据权利要求2所述的终端数据处理方法,其中,所述获取所述唤醒数据对应的目标应用进程的步骤包括:
    根据所述唤醒数据获取对应的用户标识;
    根据所述用户标识获取对应的应用进程标识;
    根据所述应用进程标识获取对应的目标应用进程。
  4. 根据权利要求2所述的终端数据处理方法,其中,所述关闭所述目标应用进程,以禁止所述唤醒数据唤醒所述终端的步骤包括:
    判断预设应用进程集合中是否存在与所述目标应用进程相同的应用进程;
    若存在与所述目标应用进程相同的应用进程,则关闭所述目标应用进程,以禁止所述唤醒数据唤醒所述终端。
  5. 根据权利要求4所述的终端数据处理方法,其中,所述判断预设应用进程集合中是否存在与所述目标应用进程相同的应用进程的步骤之前还包括:
    获取所述终端上的应用进程;
    根据所述应用进程的属性信息从所述应用进程中选取目标应用进程,以建立预设应用进程集合。
  6. 根据权利要求1所述的终端数据处理方法,其中,所述禁止所述唤醒数据唤醒所述终端的步骤包括:
    获取所述唤醒数据对应的目标应用进程;
    禁止所述目标应用进程连接网络,以禁止所述唤醒数据唤醒所述终端。
  7. 根据权利要求1所述的终端数据处理方法,其中,所述获取所述唤醒数据对应的发送频率,包括:
    获取预设索引表,所述预设索引表中记载有不同的互联网协议地址和端口信息,及对应的发送次数;
    根据所述唤醒数据,获取对应的互联网协议地址和端口信息;
    在所述预设索引表中,根据所述唤醒数据对应的互联网协议地址和端口信息,获取所述唤醒数据对应的发送次数,并根据所述发送次数计算所述唤醒数据的发送频率。
  8. 一种终端数据处理装置,其中,包括:
    数据获取模块,用于获取终端的调制解调模块发送的唤醒数据,其中所述唤醒数据用于唤醒所述终端;
    频率获取模块,用于获取所述唤醒数据对应的发送频率;
    频率判断模块,用于判断所述发送频率是否大于预设阈值;
    禁止唤醒模块,用于如大于预设阈值,则禁止所述唤醒数据唤醒所述终端。
  9. 根据权利要求8所述的终端数据处理装置,其中,所述禁止唤醒模块还包括:
    获取子模块,用于获取所述唤醒数据对应的目标应用进程;
    关闭子模块,用于关闭所述目标应用进程,以禁止所述唤醒数据唤醒所述终端。
  10. 根据权利要求9所述的终端数据处理装置,其中,所述获取子模块用于:
    根据所述唤醒数据获取对应的用户标识;
    根据所述用户标识获取对应的应用进程标识;
    根据所述应用进程标识获取对应的目标应用进程。
  11. 根据权利要求9所述的终端数据处理装置,其中,所述关闭子模块用于:
    判断预设应用进程集合中是否存在与所述目标应用进程相同的应用进程;
    若存在与所述目标应用进程相同的应用进程,则关闭所述目标应用进程,以禁止所述唤醒数据唤醒所述终端。
  12. 根据权利要求8所述的终端数据处理装置,其中,所述禁止唤醒模块用于:
    获取所述唤醒数据对应的目标应用进程;
    禁止所述目标应用进程连接网络,以禁止所述唤醒数据唤醒所述终端。
  13. 一种存储介质,包括计算机程序,其中,所述计算机程序被处理器加载并执行时,实现权利要求1至7中任一所述的终端数据处理方法中的步骤。
  14. 一种电子设备,包括存储器,处理器,以及存储在所述存储器中并可在所述处理器中运行的计算机程序,其中,所述处理器执行所述计算机程序时,执行如下步骤:
    获取电子设备的调制解调模块发送的唤醒数据,其中所述唤醒数据用于唤醒所述电子设备;
    获取所述唤醒数据对应的发送频率;
    判断所述发送频率是否大于预设阈值;
    如大于预设阈值,则禁止所述唤醒数据唤醒所述电子设备。
  15. 根据权利要求14所述的电子设备,其中,所述处理器执行如下步骤:
    获取所述唤醒数据对应的目标应用进程;
    关闭所述目标应用进程,以禁止所述唤醒数据唤醒所述电子设备。
  16. 根据权利要求15所述的电子设备,其中,所述处理器执行如下步骤:
    根据所述唤醒数据获取对应的用户标识;
    根据所述用户标识获取对应的应用进程标识;
    根据所述应用进程标识获取对应的目标应用进程。
  17. 根据权利要求15所述的电子设备,其中,所述处理器执行如下步骤:
    判断预设应用进程集合中是否存在与所述目标应用进程相同的应用进程;
    若存在与所述目标应用进程相同的应用进程,则关闭所述目标应用进程,以禁止所述唤醒数据唤醒所述电子设备。
  18. 根据权利要求17所述的电子设备,其中,所述处理器执行如下步骤:
    获取所述电子设备上的应用进程;
    根据所述应用进程的属性信息从所述应用进程中选取目标应用进程,以建立预设应用进程集合。
  19. 根据权利要求14所述的电子设备,其中,所述处理器执行如下步骤:
    获取所述唤醒数据对应的目标应用进程;
    禁止所述目标应用进程连接网络,以禁止所述唤醒数据唤醒所述电子设备。
  20. 根据权利要求14所述的电子设备,其中,所述处理器执行如下步骤:
    获取预设索引表,所述预设索引表中记载有不同的互联网协议地址和端口信息,及对应的发送次数;
    根据所述唤醒数据,获取对应的互联网协议地址和端口信息;
    在所述预设索引表中,根据所述唤醒数据对应的互联网协议地址和端口信息,获取所述唤醒数据对应的发送次数,并根据所述发送次数计算所述唤醒数据的发送频率。
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