WO2015061957A1 - 一种业务代理的方法、调制解调器及终端 - Google Patents

一种业务代理的方法、调制解调器及终端 Download PDF

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Publication number
WO2015061957A1
WO2015061957A1 PCT/CN2013/086120 CN2013086120W WO2015061957A1 WO 2015061957 A1 WO2015061957 A1 WO 2015061957A1 CN 2013086120 W CN2013086120 W CN 2013086120W WO 2015061957 A1 WO2015061957 A1 WO 2015061957A1
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WO
WIPO (PCT)
Prior art keywords
application
heartbeat
processor
data
applications
Prior art date
Application number
PCT/CN2013/086120
Other languages
English (en)
French (fr)
Inventor
彭钰
邓宇
李启林
Original Assignee
华为终端有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 华为终端有限公司 filed Critical 华为终端有限公司
Priority to EP13881460.3A priority Critical patent/EP2882233B1/en
Priority to KR1020167010665A priority patent/KR101785483B1/ko
Priority to PCT/CN2013/086120 priority patent/WO2015061957A1/zh
Priority to JP2015544330A priority patent/JP5944065B2/ja
Priority to CN201380003023.1A priority patent/CN103843418B/zh
Priority to US14/523,631 priority patent/US9568989B2/en
Publication of WO2015061957A1 publication Critical patent/WO2015061957A1/zh

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Classifications

    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F1/00Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
    • G06F1/26Power supply means, e.g. regulation thereof
    • G06F1/32Means for saving power
    • G06F1/3203Power management, i.e. event-based initiation of a power-saving mode
    • G06F1/3234Power saving characterised by the action undertaken
    • G06F1/3293Power saving characterised by the action undertaken by switching to a less power-consuming processor, e.g. sub-CPU
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L43/00Arrangements for monitoring or testing data switching networks
    • H04L43/10Active monitoring, e.g. heartbeat, ping or trace-route
    • H04L43/103Active monitoring, e.g. heartbeat, ping or trace-route with adaptive polling, i.e. dynamically adapting the polling rate
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L67/00Network arrangements or protocols for supporting network services or applications
    • H04L67/14Session management
    • H04L67/143Termination or inactivation of sessions, e.g. event-controlled end of session
    • H04L67/145Termination or inactivation of sessions, e.g. event-controlled end of session avoiding end of session, e.g. keep-alive, heartbeats, resumption message or wake-up for inactive or interrupted session
    • 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
    • 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
    • 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
    • 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 technologies, and in particular, to a method, a modem, and a terminal for a service agent.
  • the Modem is responsible for communicating with the network, receiving the data packets of the network and then forwarding them to the AP, or sending the data sent by the AP to the air interface network.
  • the embodiments of the present invention provide a service proxy method, in which a modem proxy application processor establishes a heartbeat connection with an application server corresponding to an application to prevent the AP from being frequently woken up, thereby reducing terminal power consumption and prolonging the standby time of the terminal.
  • Embodiments of the present invention also provide corresponding modems and terminals.
  • a first aspect of the present invention provides a method for a service agent, including:
  • the modem receives the heartbeat configuration information corresponding to the application sent by the application processor, where the application processor sends the heartbeat configuration information corresponding to the application, and is in a dormant state;
  • the modem corresponding to the application according to the heartbeat configuration information corresponding to the application Wake up.
  • the heartbeat configuration information includes an initial heartbeat period of the application.
  • the modem is configured according to the heartbeat configuration information corresponding to the application, and the application
  • the corresponding application server establishes a heartbeat connection, including:
  • the modem compares an initial heartbeat period of the at least two applications with a preset time threshold value
  • the application when the initial heartbeat period of the at least two applications is less than the preset time threshold, the application is not adjusted.
  • the initial heartbeat cycle when the initial heartbeat period of the at least two applications is less than the preset time threshold, the application is not adjusted.
  • Adjusting an initial alert period of one of the at least two applications including:
  • a minimum initial heartbeat period according to an initial heartbeat period of the at least two applications; dividing an initial heartbeat period by the minimum initial heartbeat period, multiplying the minimum initial heartbeat period, and determining the at least two after the adjustment
  • the heartbeat cycle of an application in an application
  • the establishing, according to the heartbeat configuration information corresponding to the application, establishing a heartbeat connection with the application server corresponding to the application including:
  • the heartbeat connection is established by the application server corresponding to the application by sending an online prompt message to the application server corresponding to the application according to the heartbeat configuration information corresponding to the application.
  • the modem and the application processor share the memory SM or the AT Command channel communication.
  • the method further includes: the modem receiving the Data sent by the application server;
  • the modem analyzes whether the data sent by the application server is application data according to the received data sent by the application server;
  • the application processor When it is analyzed that the data is application data that is normally pushed by the application server, the application processor is woken up, and the application data is sent to the application processor.
  • the application processor When the data is analyzed as abnormal response data fed back by the application server for the online prompt message, the application processor is woken up, and the abnormal response number is sent to the application processor when the data is analyzed.
  • the normal response data that is sent back by the application server for the online prompt message, the normal response data is discarded, and the application processor is not awake, and the normal response data is used to indicate that the application server has received the The online prompt message.
  • the modem receives the heartbeat configuration information corresponding to the application sent by the application processor Afterwards, the method further includes:
  • the modem receives the deletion indication information of the heartbeat configuration information corresponding to the application sent by the application processor, where the deletion indication information is used to indicate that the heartbeat configuration information of the application specified by the application processor is deleted;
  • the modem deletes heartbeat configuration information of the application specified by the application processor according to the received deletion indication information.
  • a second aspect of the present invention provides a modem comprising: an input device, an output device, a processor, and a memory,
  • the input device is configured to receive heartbeat configuration information corresponding to an application sent by an application processor, where After the application processor sends the heartbeat configuration information corresponding to the application, the processor is in a dormant state; the processor is configured to establish a heartbeat connection with the application server corresponding to the application according to the heartbeat configuration information corresponding to the application. Causing the application processor to not wake up when the application has no content updates.
  • the heartbeat configuration information includes an initial heartbeat period of the application
  • the processor is configured to compare an initial heartbeat period of the at least two applications with a preset time threshold when the application is at least two applications, when one of the at least two applications When an initial heartbeat period of the application is not less than the preset time threshold, adjusting an initial heartbeat period of one of the at least two applications, according to the adjusted initial heartbeat period, and the at least two applications An application server corresponding to an application establishes a heartbeat connection.
  • the processor is configured to determine a minimum initial heartbeat period, an initial heartbeat period, according to an initial heartbeat period of the at least two applications. Dividing the minimum initial heartbeat period and multiplying the minimum initial heartbeat period to determine a heartbeat period of one of the at least two applications after the adjustment, according to the adjusted at least two applications The heartbeat period of an application, the initial heartbeat period of one of the at least two applications being adjusted.
  • the processor is configured to trigger a location according to the heartbeat configuration information corresponding to the application
  • the application server corresponding to the application sends an online prompt message
  • the output device is configured to send an online prompt message to an application server corresponding to the application, and establish a heartbeat connection with an application server corresponding to the application.
  • the input device is further configured to receive data sent by the application server;
  • the processor is further configured to analyze, according to the received data sent by the application server, whether the data sent by the application server is application data;
  • the processor and the output device are further configured to perform at least the following steps according to the analysis result One or more of:
  • the processor wakes up the application processor when the data is normally pushed by the application server, and the output device sends the application data to the application processor.
  • the processor When the processor analyzes that the data is abnormal response data fed back by the application server for the online prompt message, the processor wakes up the application processor, and the output device processes the interaction data of the processor with the application. ;
  • the processor analyzes that the data is normal response data fed back by the application server for the online prompt message, discarding the normal response data does not wake up the application processor, and the normal response data is used by The indication that the application server has received the online prompt message.
  • any one of the first to fourth possible implementation manners of the second aspect in a fifth possible implementation manner,
  • the input device is further configured to receive the deletion indication information of the heartbeat configuration information corresponding to the application sent by the application processor, where the deletion indication information is used to indicate that the heartbeat configuration information of the application specified by the application processor is deleted;
  • the processor is further configured to delete the heartbeat configuration information of the application specified by the application processor according to the received deletion indication information.
  • a third aspect of the present invention provides a terminal, including: a modem and an application processor, where the application processor is configured to send, to the modem, heartbeat configuration information corresponding to an application, and after sending the heartbeat configuration information corresponding to the application, a sleep state, and the application processor is not woken up when the application has no content update;
  • the modem is configured to receive the heartbeat configuration information corresponding to the application sent by the application processor, and establish a heartbeat connection with the application server corresponding to the application according to the heartbeat configuration information corresponding to the application.
  • the modem when the application is at least two applications, the modem is further configured to use an initial heartbeat period of the at least two applications with a preset time threshold. Comparing values, when an initial heartbeat period of one of the at least two applications is not less than the preset time threshold, adjusting an initial heartbeat week of one of the at least two applications And establishing, according to the adjusted initial heartbeat period, a heartbeat connection with an application server corresponding to one of the at least two applications.
  • the modem is further configured to determine an initial heartbeat period of the minimum initial heartbeat divided by the initial heartbeat period of the at least two applications. Determining the minimum initial heartbeat period, multiplying the minimum initial heartbeat period, determining a heartbeat period of one of the at least two applications after the adjustment, and according to one of the adjusted at least two applications The heartbeat period of the application adjusts an initial heartbeat period of one of the at least two applications.
  • the modem is further configured to: according to the heartbeat configuration information corresponding to the application, The application server sends an online prompt message to establish an heartbeat connection with the application server corresponding to the application.
  • the data sent by the application server is analyzed, and the application server sends the data according to the received data sent by the application server. Whether the data is application data;
  • the application processor When it is analyzed that the data is application data that is normally pushed by the application server, the application processor is woken up, and the application data is sent to the application processor.
  • the application processor When the data is analyzed as abnormal response data fed back by the application server for the online prompt message, the application processor is woken up, and the abnormal response number is sent to the application processor when the data is analyzed.
  • the normal response data that is sent back by the application server for the online prompt message, the normal response data is discarded, and the application processor is not awake, and the normal response data is used to indicate that the application server has received the The online prompt message.
  • the modem is further configured to: after receiving the heartbeat configuration information corresponding to the application sent by the application processor, receive the deletion indication information of the heartbeat configuration information corresponding to the application sent by the application processor, where the deletion indication information is used to indicate deleting the
  • the application processor specifies the heartbeat configuration information of the application; the modem is further configured to delete the heartbeat configuration information of the application specified by the application processor according to the received deletion indication information.
  • the modem receives the heartbeat configuration information corresponding to the application sent by the application processor, and the application processor is not woken up when the application has no content update.
  • the solution of the embodiment of the present invention can avoid the AP being frequently woken up, thereby reducing the power consumption of the terminal. Extends the standby time of the terminal.
  • FIG. 1 is a schematic diagram of an embodiment of a method of a service agent in the present invention
  • FIG. 2 is a schematic diagram of another embodiment of a method of a service agent in the present invention.
  • FIG. 3 is a schematic diagram of another embodiment of a method of a service agent in the present invention.
  • FIG. 4 is a schematic diagram of another embodiment of a method of a service agent in the present invention.
  • FIG. 5 is a schematic diagram of another embodiment of a method of a service agent in the present invention.
  • FIG. 6 is a schematic diagram of another embodiment of a method of a service agent in the present invention.
  • FIG. 7 is a schematic diagram of another embodiment of a method of a service agent in the present invention.
  • FIG. 8 is a schematic diagram of another embodiment of a method of a service agent in the present invention.
  • FIG. 9 is a schematic diagram of another embodiment of a method of a service agent in the present invention.
  • FIG. 10 is a schematic diagram of another embodiment of a method of a service agent in the present invention.
  • Figure 11 is a schematic diagram of an embodiment of a modem in the present invention
  • Figure 12 is a schematic diagram of an embodiment of a terminal in the present invention.
  • An embodiment of the present invention provides a service proxy method, in which a modem proxy application processor establishes a heartbeat connection with an application server corresponding to an application, and prevents an application processor (AP) from being frequently woken up, thereby reducing power consumption of the terminal. Extends the standby time of the terminal.
  • Embodiments of the present invention also provide corresponding modems and terminals. The details are described below separately.
  • a method for a service agent includes:
  • the modem receives the heartbeat configuration information corresponding to the application sent by the application processor, where the application processor is in a sleep state after transmitting the heartbeat configuration information corresponding to the application.
  • the heartbeat configuration information includes an initial heartbeat period of the application.
  • the initial heartbeat period of the application is a period in which the application processor establishes a heartbeat connection with the application server of the application, that is, how long the application processor establishes a heartbeat server with the application server of the application.
  • the modem communicates with the application processor through a shared memory (SM) or (attention, AT) command channel.
  • SM shared memory
  • AT attention, AT
  • the application in the embodiment of the present invention may be an application related to the prior art such as WeChat, Weibo, and email.
  • the modem establishes a heartbeat connection with an application server corresponding to the application according to the heartbeat configuration information corresponding to the application, so that the application processor is not woken up when the application has no content update.
  • the application server and the application processor connect through a heartbeat to determine whether the application is connected.
  • the modem receives the heartbeat configuration letter corresponding to the application sent by the application processor.
  • the application processor is not woken up when the application has no content updates.
  • the solution of the embodiment of the present invention can avoid the AP being frequently woken up, thereby reducing the power consumption of the terminal. Extends the standby time of the terminal.
  • FIG. 2 is a schematic diagram of another embodiment of a method for a service agent according to an embodiment of the present invention.
  • Steps 101 and 102 when the application is at least two applications, step 102 may specifically include: 102-1, 102-2, and 102-3.
  • Steps 101 and 102 can be understood by referring to the descriptions of steps 101 and 102 in the corresponding embodiment of FIG. 1, and details are not described herein again.
  • Steps 102-1, 102-2, and 102-3 may specifically be:
  • the modem compares an initial heartbeat period of the at least two applications with a preset time threshold.
  • the preset time threshold may be set by the application processor.
  • the initial heartbeat periods of the 3 applications are 5 minutes, 7 minutes, and 10 minutes respectively.
  • the preset time threshold is 6 minutes. Then the initial heartbeat periods of the 3 applications are 5 minutes. , 7 minutes and 10 minutes were compared with 6 minutes respectively.
  • step 102-1 if there is an initial heartbeat period of 7 minutes and 10 minutes which is not less than the preset time threshold of 6 minutes, then the initial heartbeat period needs to be adjusted for 7 minutes and 10 minutes.
  • the initial heartbeat period needs to be adjusted in 7 minutes and 10 minutes, and the heartbeat connection is established with the application server corresponding to one of the at least two applications according to the adjusted initial heartbeat period.
  • the solution provided by the embodiment of the present invention can prevent the AP from being frequently awakened.
  • the terminal power consumption is reduced, the standby time of the terminal is prolonged, and the initial heartbeat period not less than the preset threshold is adjusted, which can reduce the number of times the modem establishes a link with the application server. For example: Adjust 7 minutes and 10 minutes to 6 minutes, or 10 minutes to 7 minutes, you can only establish a link at 6 minutes or 7 minutes, and the initial heartbeat period is 7 minutes.
  • the application server corresponding to the 10-minute application establishes a heartbeat connection, thereby reducing the number of times the link is established, reducing the power consumption of the modem, and further reducing the power consumption of the terminal.
  • FIG. 3 is a schematic diagram of another embodiment of a method for a service agent according to an embodiment of the present invention.
  • Steps 101 and 102 wherein step 102 specifically includes 102-1, 102-2, 102-3, and 102-4, wherein steps 102-2 and 102-3 may be performed in sequence after step 102-1, in step 102.
  • Step 102-4 can also be performed after -1.
  • Steps 101, 102, and 102-1, 102-2, and 102-3 can be understood by referring to the descriptions of steps 101, 102, and 102-1, 102-2, and 102-3 in the above embodiment, and are no longer Narration.
  • Step 102-4 may specifically be:
  • step 102-1 if the initial heartbeat period is less than the preset time threshold of 6 minutes and there is an initial heartbeat period of 5 minutes, then the initial heartbeat period is not adjusted for 5 minutes.
  • the application server of the application Since the initial heartbeat period of the application is predetermined by the application server of the application, the application server of the application establishes a heartbeat with the application processor in the terminal where the application is located in the initial heartbeat period of the application. Connecting, the application is confirmed to be online, if the heartbeat connection is not established with the application processor in the terminal where the application is located in the initial heartbeat period of the application, the application server of the application defaults to the application. line. Therefore, the initial heartbeat period of the application can only be shortened during the adjustment, and cannot be extended. Therefore, the initial heartbeat period less than the preset time threshold is not adjusted.
  • FIG. 4 is a schematic diagram of another embodiment of a method for a service agent according to an embodiment of the present invention.
  • Steps 101 and 102 wherein step 102 specifically includes 102-1, 102-2, and 102-3, wherein step 102-2 may specifically include: 102-21, 102-22, and 102-23.
  • Steps 101, 102, and 102-1, 102-2, and 102-3 may refer to step 101 in the above embodiment.
  • Steps 102-21, 102-22, and 102-23 may specifically be:
  • a minimum initial heartbeat period according to an initial heartbeat period of the at least two applications. For example: When there are four applications whose initial heartbeat period is not less than the preset time threshold, for example: the initial heartbeat periods of the four applications are 6 minutes, 7 minutes, 10 minutes, and 13 minutes, respectively.
  • the minimum initial heartbeat period is determined in the four initial heartbeat cycles, in this example, the minimum initial heartbeat period is 6 minutes.
  • the initial heartbeat period of the application is divided by the minimum initial heartbeat period, and then multiplied by the minimum initial heartbeat period, and the heartbeat period of one of the at least two applications after the adjustment is determined.
  • T adjustment [T application I ⁇ X ⁇ represents, where ⁇ application is the initial heartbeat period of the application, T mm is the minimum initial heartbeat period, [T application IT mm ] indicates the initial heartbeat period of the application Divided by the minimum initial heartbeat period, [T application / ⁇ XT mm means [ ⁇ application IT mm ] is rounded up and multiplied by the minimum initial heartbeat period.
  • T mm is 6 minutes
  • the initial heartbeat cycle is 7 minutes
  • the T adjustment obtained after the above formula is taken 6 minutes
  • the initial heartbeat cycle is 10 minutes.
  • the T adjustment obtained after the above formula is obtained 6 minutes.
  • T-adjustment obtained after bringing the above formula into the initial heartbeat cycle for 13 minutes 12 minutes.
  • the heartbeat periods of the last three applications are adjusted in the above four applications, and the initial heartbeat periods corresponding to each application after adjustment are 6 minutes, 6 minutes, and 12 minutes, respectively, then The initial heartbeat periods of the three applications were adjusted to 6 minutes, 6 minutes, and 12 minutes, respectively.
  • the solution provided by the embodiment of the present invention can prevent the AP from being frequently woken up, thereby reducing the power consumption of the terminal and prolonging the standby time of the terminal.
  • adjusting the initial heartbeat period that is not less than the preset threshold can reduce the number of times the modem establishes a link with the application server.
  • the application server corresponding to the 10-minute application establishes a heartbeat connection, and establishes a link at the 12-minute time point to establish a heartbeat respectively with the application server corresponding to the application with the initial heartbeat period of 6 minutes, 7 minutes, 10 minutes, and 13 minutes.
  • the connection reduces the number of times the link is established, reduces the power consumption of the modem, and further reduces the power consumption of the terminal.
  • FIG. 5 is a schematic diagram of another embodiment of a method for a service agent according to an embodiment of the present invention.
  • Steps 101 and 102 can be understood by referring to the descriptions of steps 101 and 102 in the corresponding embodiment of FIG. 1, and details are not described herein again.
  • Step 102-5 is specifically as follows:
  • the application according to the heartbeat configuration information corresponding to the application, sends an online prompt message to the application server corresponding to the application, and establishes a heartbeat connection with the application server corresponding to the application.
  • the solution provided by the embodiment of the present invention can prevent the AP from being frequently woken up, thereby reducing the power consumption of the terminal and prolonging the standby time of the terminal.
  • FIG. 6 is a schematic diagram of another embodiment of a method for a service agent according to an embodiment of the present invention.
  • Steps 101, 102-5, and steps 103-107 performed after step 102-5.
  • Steps 101 and 102-5 can be understood by referring to the descriptions of steps 101 and 102-5 in the above embodiment, and details are not described herein again.
  • 103-107 can be specifically:
  • the modem receives data sent by the application server.
  • the modem analyzes the data according to the received data sent by the application server. Whether the data sent by the application server is application data.
  • the data is application data that is normally pushed by the application server, wake up the application processor, and send the application data to the application processor.
  • Normally pushed application data refers to data that is not sent for online prompt messages. As long as the application server confirms that it needs to be pushed down, it is pushed to the terminal.
  • the modem can receive the data according to how long the online prompt message is sent to determine whether the data belongs to the application data, for example: 1 minute after the online prompt message is sent as the demarcation point, and the data received after the online prompt message is sent 1 minute later. Both are considered to be normal push application data, and the data received within 1 minute is considered to be response data for online prompt message feedback.
  • the application server only needs to push the mail to the modem of the terminal where the account is logged, and the modem needs to wake up the AP and push to the AP. Received application data.
  • the application processor is woken up, and the abnormal response is sent to the application processor.
  • the analysis of the normal response data and the abnormal response data fed back for the online prompt message can be distinguished by the number of bits of the data, for example: 30 KB as a demarcation point, data larger than 30 KB is abnormal response data, and data smaller than 30 KB is abnormal. Answer the data.
  • the abnormal response data may specifically be: the interaction data fed back by the application server for the received online prompt message, or the application is a mail: the abnormal response data may be a new mail, and the specific data content of the mail, the modem is The application may be determined to have a content update based on the abnormality response data to wake up the application processor.
  • the normal response data may be that there is no new mail at present. This data does not make any sense to the application processor.
  • the modem can discard the data directly without waking up the application processor.
  • the solution provided by the embodiment of the present invention can prevent the AP from being frequently woken up, thereby reducing the power consumption of the terminal and prolonging the standby time of the terminal.
  • the modem first analyzes the received data, and does not wake up the application processor when the data has no content update, thereby further saving power consumption of the terminal.
  • FIG. 7 is a schematic diagram of another embodiment of a method for a service agent according to an embodiment of the present invention.
  • Steps 101, 102, and steps 108 and 109 performed after step 101.
  • Steps 101 and 102 can be understood by referring to the descriptions of steps 101 and 102 in the corresponding embodiment of FIG. 1, and details are not described herein again.
  • Steps 108 and 109 may specifically be:
  • the modem receives the deletion indication information of the heartbeat configuration information corresponding to the application sent by the application processor, where the deletion indication information is used to indicate that the heartbeat configuration information of the application specified by the application processor is deleted.
  • the AP can send the deletion indication information of the heartbeat configuration information to the modem.
  • the modem deletes the heartbeat configuration information of the application specified by the application processor according to the received deletion indication information.
  • the modem deletes the heartbeat configuration information of the application specified by the application processor according to the received deletion indication information.
  • the solution provided by the embodiment of the present invention can prevent the AP from being frequently woken up, thereby reducing the power consumption of the terminal and prolonging the standby time of the terminal.
  • the modem deletes the heartbeat configuration information of the application specified by the application processor in time according to the deletion indication information sent by the application processor, and can effectively save the memory of the modem.
  • steps 108 and 109 are also performed after step 101, actually Steps 108 and 109 may also be performed after step 101 in each of the above embodiments, which are not illustrated in the embodiment of the present invention.
  • the specific process can be understood by referring to the descriptions in steps 108 and 109 above. .
  • the application processor AP can be configured with an agent service module (Agent Service).
  • Agent Service Agent Service
  • the modem platform can be set up on the modem. As shown in Figure 8,
  • the AP side constructs an Agent Service service in the Framework Framework layer, provides a heartbeat configuration interface to each application (apk), stores heartbeat content, and sends heartbeat configuration information to the modem.
  • the Modem constructs an Agent platform processing platform on the non-access layer, receives heartbeat configuration information, and adjusts a heartbeat period of sending an online prompt message to the application server corresponding to the application according to the heartbeat configuration information of the application, so that the adjusted Applying a relationship between any one of the heartbeat periods of the corresponding heartbeat period and the first one of the heartbeat periods, the online prompt message corresponding to the application is periodically sent to the application server corresponding to the application according to the adjusted heartbeat period.
  • the AP communicates with the Modem to establish a dedicated communication protocol based on the shared memory (SM) or (attention, AT) command channel.
  • SM shared memory
  • AT attention, AT
  • Figure 9 is the processing framework of the Agent platform.
  • Agent Plantform can be subdivided into multiple modules in Figure 9.
  • SM/AT communication module It is used to parse the heartbeat data communication protocol, and synchronize the heartbeat configuration information sent by the AP to the storage module. At the same time, it is responsible for transmitting the protocol encapsulation of the server abnormal response data by the heartbeat logic control module, and calling the interface to transmit to the AP.
  • Heartbeat configuration storage module Used to store heartbeat configuration information sent by the AP.
  • Heartbeat logic control module used to classify, adjust, and sort according to the heartbeat configuration information in the storage module, set the corresponding timer, and use the Transmission Control Protocol/Internet Connection 10 when the preset time arrives (Transmission Control)
  • the Protocol/Internet Protocol, TCP/IP) module interface sends an online prompt message.
  • the TCP/IP protocol module encodes the online prompt message to be sent according to the coding mode negotiated with the network side.
  • the coding mode negotiated is TCP/IP coding, and after TCP/IP coding, the data is assembled into A point-to-point protocl (PPP) packet format can be transmitted over a Long Term Evolution (LTE) wireless link of the 3rd Generation Partnership Project (3GPP).
  • PPP point-to-point protocl
  • 3GPP communication receiving and sending module It is used to provide an interface for transmitting air interface data and intercepting air interface data.
  • Figure 10 is a schematic diagram of the agent platform Agent platform processing flow:
  • the AP sends heartbeat configuration information to the modem through the SM or AT communication interface, and the heartbeat storage module stores the heartbeat configuration information. After the heartbeat adjustment module adjusts the heartbeat period, the proxy AP sends an online prompt message to the task.
  • the modem After receiving the downlink data sent by the application server, the modem analyzes the downlink data. If the downlink data is analyzed, the data that is normally pushed by the application server is sent to the AP, and the downlink data is analyzed. The data is directly discarded by the application server for the normal response data fed back by the online prompt message, where the normal response data is used to indicate that the application server has received the online prompt message.
  • the application processor is woken up, and the abnormal response data is sent to the application processor, and the abnormal response data is sent. The interaction data that is fed back to the application processor for the application server.
  • the present invention also provides a computer storage medium storing a program that, when executed, includes some or all of the steps in the method of the modem side service agent described above.
  • FIG. 11 is a block diagram showing the structure of a modem 20 in accordance with an embodiment of the present invention.
  • Modem 20 can include input device 210, output device 220, processor 230, and memory 240.
  • Memory 240 can include read only memory and random access memory and provides instructions and data to processor 230. A portion of memory 240 may also include non-volatile random access memory (NVRAM).
  • NVRAM non-volatile random access memory
  • Memory 240 stores the following elements, executable modules or data structures, or a subset thereof, or an extended set of them:
  • Operation instructions Includes various operation instructions for implementing various operations.
  • Operating System Includes a variety of system programs for implementing a variety of basic services and handling hardware-based tasks.
  • the processor 230 performs the following operations by calling an operation instruction stored in the memory 240 (the operation instruction can be stored in the operating system):
  • the application server corresponding to the application establishes a heartbeat
  • the modem provided by the embodiment of the present invention can proxy the application server to establish a heartbeat connection with the application server corresponding to the application, which can prevent the AP from being frequently awakened, thereby reducing terminal power consumption. , prolongs the standby time of the terminal.
  • the processor 230 controls the operation of the modem 20, which may also be referred to as a CPU (Central Processing Unit).
  • Memory 240 can include read only memory and random access memory and provides instructions and data to processor 230. A portion of memory 240 may also include non-volatile random access memory (NVRAM).
  • NVRAM non-volatile random access memory
  • the various components of the modem 20 are coupled together by a bus system 250, which may include, in addition to the data bus, a power bus, a control bus, and a status signal bus. However, for clarity of description, various buses are labeled as bus system 250 in the figure.
  • Processor 230 may be an integrated circuit chip with signal processing capabilities.
  • the instruction in the form of the implementation is completed.
  • the processor 230 described above may be a general purpose processor, a digital signal processor (DSP), an application specific integrated circuit (ASIC), an off-the-shelf programmable gate array (FPGA) or other programmable logic device, discrete gate or transistor logic device, discrete hardware. Component.
  • the methods, steps, and logical block diagrams disclosed in the embodiments of the present invention may be implemented or executed.
  • the general purpose processor may be a microprocessor or the processor or any conventional processor or the like.
  • the steps of the method disclosed in the embodiments of the present invention may be directly implemented by the hardware decoding processor, or may be performed by a combination of hardware and software modules in the decoding processor.
  • Software modules can be located in random access memory, flash memory, read-only storage , programmable read-only memory or electrically erasable programmable memory, registers, etc., are well-known storage media in the field.
  • the storage medium is located in the memory 240.
  • the processor 230 reads the information in the memory 240 and completes the steps of the above method in combination with its hardware.
  • the heartbeat configuration information includes an initial heartbeat period of the application
  • the processor 230 is configured to compare an initial heartbeat period of the at least two applications with a preset time threshold when the application is at least two applications, in the at least two applications When an initial heartbeat period of an application is not less than the preset time threshold, adjusting an initial heartbeat period of one of the at least two applications, according to the adjusted initial heartbeat period, and the at least two applications An application corresponding to the application server establishes a heartbeat connection.
  • the processor 230 is configured to determine, according to an initial heartbeat period of the at least two applications, a minimum initial heartbeat period, where the at least two are not less than the preset time threshold.
  • the initial heartbeat period of one application in the application is divided by the minimum initial heartbeat period, and then multiplied by the minimum initial heartbeat period, and the heartbeat period of one of the at least two applications after the adjustment is determined, according to the adjustment
  • the heartbeat period of one of the at least two applications is adjusted for an initial heartbeat period of one of the at least two applications.
  • the processor 230 is configured to send, according to the heartbeat configuration information corresponding to the application, an online prompt message to an application server corresponding to the application;
  • the output device 220 is configured to send an online prompt message to the application server corresponding to the application, and establish a heartbeat connection with the application server corresponding to the application.
  • the input device 210 is further configured to receive data sent by the application server, where the processor 230 is further configured to analyze data sent by the application server according to the received data sent by the application server. Whether it is application data;
  • the processor 230 and the output device 220 are further configured to perform at least one or more of the following steps according to the analysis result:
  • the processor 230 wakes up the application processor when the data is normally pushed by the application server, and the output device 220 sends the application data to the application processor.
  • the processor 230 analyzes the data as the application server for the online prompt cancellation Wake up the application processor when the abnormal feedback data is fed back, the output device 220 sends the abnormal response data to the application processor, and the abnormal response data is fed back to the application processor by the application server. Interaction data;
  • the processor 230 discards the normal response data when the data is the normal response data fed back by the application server for the online prompt message, and does not wake up the application processor, the normal response data. And is used to indicate that the application server has received the online prompt message.
  • the input device 210 is further configured to receive deletion indication information of the heartbeat configuration information corresponding to the application sent by the application processor, where the deletion indication information is used to indicate that the heartbeat of the application specified by the application processor is deleted.
  • Configuration information ;
  • the processor 230 is further configured to delete the heartbeat configuration information of the application specified by the application processor according to the received deletion indication information.
  • an embodiment of the terminal 10 provided by the embodiment of the present invention includes: a modem 20 and an application processor 30,
  • the application processor 30 sends the heartbeat configuration information corresponding to the application to the modem 20, and after the heartbeat configuration information corresponding to the application is sent, is in a sleep state;
  • the modem 20 receives the heartbeat configuration information corresponding to the application sent by the application processor, and establishes a heartbeat connection with the application server corresponding to the application according to the heartbeat configuration information corresponding to the application; optionally, corresponding to FIG. 12 above.
  • the heartbeat configuration information includes an initial heartbeat period of the application, when the application is at least two applications,
  • the modem 20 compares an initial heartbeat period of the at least two applications with a preset time threshold, when an initial heartbeat period of one of the at least two applications is not less than the preset time gate During the limit, the initial heartbeat period of one of the at least two applications is adjusted, and the heartbeat connection is established with the application server corresponding to one of the at least two applications according to the adjusted initial heartbeat period.
  • the terminal provided by the embodiment of the present invention In another embodiment of the end,
  • the modem 20 determines, according to an initial heartbeat period of the at least two applications, an initial initial heartbeat period of the minimum initial application divided by the minimum initial heartbeat period, and multiplied by the minimum initial heartbeat period to determine the adjusted
  • the heartbeat period of one of the at least two applications is adjusted according to an adjusted heartbeat period of one of the at least two applications, and an initial heartbeat period of one of the at least two applications is adjusted.
  • the modem 20 establishes a heartbeat connection with an application server corresponding to the application by sending an online prompt message to the application server corresponding to the application according to the heartbeat configuration information corresponding to the application.
  • the modem 20 sends an online prompt message to the application server corresponding to the application, receiving data sent by the application server, and analyzing whether the data sent by the application server is application data according to the received data sent by the application server. ;
  • the application processor When it is analyzed that the data is application data that is normally pushed by the application server, the application processor is woken up, and the application data is sent to the application processor.
  • the application processor When the data is analyzed as abnormal response data fed back by the application server for the online prompt message, the application processor is woken up, and the abnormal response number is sent to the application processor when the data is analyzed.
  • the normal response data that is sent back by the application server for the online prompt message, the normal response data is discarded, and the application processor is not awake, and the normal response data is used to indicate that the application server has received the The online prompt message.
  • the modem 20 After receiving the heartbeat configuration information corresponding to the application sent by the application processor, the modem 20 receives the deletion indication information of the heartbeat configuration information corresponding to the application sent by the application processor, where the deletion indication information is used to indicate that the application processing is deleted. Specify the heartbeat configuration information of the application;
  • the modem deletes heartbeat configuration information of the application specified by the application processor according to the received deletion indication information.
  • the program may be stored in a computer readable storage medium, and the storage medium may include: ROM, RAM, disk or CD, etc.

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Abstract

本发明公开了一种业务代理的方法,包括:调制解调器接收应用处理器发送的应用对应的心跳配置信息,其中,所述应用处理器发送所述应用对应的心跳配置信息后,处于休眠状态,所述调制解调器根据所述应用对应的心跳配置信息,与所述应用对应的应用服务器建立心跳连接,使所述应用处理器在所述应用无内容更新时不被唤醒。本发明实施例提供的方案,可以避免AP被频繁唤醒,从而减少了终端功耗,延长了终端的待机时间。

Description

一种业务代理的方法、 调制解调器及终端 技术领域
本发明涉及通信技术领域, 具体涉及一种业务代理的方法、调制解调器及 终端。
背景技术
目前大部分终端基于应用处理器( Application Processor, AP)和调制解调 器(Modem ) 的模式。 Modem负责与网络通讯, 接收网络的数据包然后转发 给 AP, 或将 AP发过来的数据发送到空口网络。
在终端连接数据业务状态下, 一些 AP的应用或服务, 例如: 邮件、微信、
QQ、 微博等都会定时和相应的应用服务器进行交互, 如果此时 AP是处于睡 眠状态, 就会唤醒 AP。
现有技术中, 终端上的应用与对应的应用服务器在进行心跳连接时, 终端 上的调制解调器和应用处理器都会被唤醒,从而共同来完成心跳任务。 由于不 同的应用与对应的应用服务器进行心跳连接时, 应用处理器会被频繁的唤醒, 导致终端的功耗高, 缩短了终端的待机时间。 发明内容 本发明实施例提供一种业务代理的方法,由调制解调器代理应用处理器与 应用对应的应用服务器建立心跳连接, 避免 AP被频繁唤醒, 从而减少了终端 功耗,延长了终端的待机时间。本发明实施例还提供了相应的调制解调器及终 端。
本发明第一方面提供一种业务代理的方法, 包括:
调制解调器接收应用处理器发送的应用对应的心跳配置信息, 其中, 所述 应用处理器发送所述应用对应的心跳配置信息后, 处于休眠状态;
所述调制解调器根据所述应用对应的心跳配置信息 ,与所述应用对应的应 醒。
结合第一方面,在第一种可能的实现方式中, 所述心跳配置信息包括所述 应用的初始心跳周期。
结合第一方面第一种可能的实现方式, 在第二种可能的实现方式中, 当所 述应用为至少两个应用时, 所述调制解调器根据所述应用对应的心跳配置信 息, 与所述应用对应的应用服务器建立心跳连接, 包括:
所述调制解调器将所述至少两个应用的初始心跳周期与预设的时间门限 值进行比较;
当所述至少两个应用中的一个应用的初始心跳周期不小于所述预设的时 间门限值时, 调整所述至少两个应用中的一个应用的初始心跳周期;
根据调整的初始心跳周期,与所述至少两个应用中的一个应用对应的应用 服务器建立心跳连接。
结合第一方面第二种可能的实现方式, 在第三种可能的实现方式中, 当所 述至少两个应用的初始心跳周期小于所述预设的时间门限值时,不调整所述应 用的初始心跳周期。
结合第一方面第二种可能的实现方式, 在第四种可能的实现方式中, 当所 述至少两个应用中的一个应用的初始心跳周期不小于所述预设的时间门限值 时, 调整所述至少两个应用中的一个应用的初始心兆周期, 包括:
根据所述至少两个应用的初始心跳周期, 确定最小初始心跳周期; 的初始心跳周期除以所述最小初始心跳周期取整,再乘以所述最小初始心跳周 期, 确定调整后所述至少两个应用中的一个应用的心跳周期;
根据调整后的所述至少两个应用中的一个应用的心跳周期,对所述至少两 个应用中的一个应用的初始心跳周期进行调整。
结合第一方面,在第五种可能的实现方式中, 所述根据所述应用对应的心 跳配置信息, 与所述应用对应的应用服务器建立心跳连接, 包括:
根据所述应用对应的心跳配置信息 ,通过向所述应用对应的应用服务器发 送在线提示消息, 与所述应用对应的应用服务器建立心跳连接。 结合第一方面、 第一方面第一种至第五种可能的实现方式中的任意一种, 在第六种可能的实现方式中,所述调制解调器与所述应用处理器通过共享内存 SM或者 AT指令通道通信。
结合第一方面第五种可能的实现方式, 在第七种可能的实现方式中, 所述 向所述应用对应的应用服务器发送在线提示消息之后, 所述方法还包括: 所述调制解调器接收所述应用服务器发送的数据;
所述调制解调器根据接收的所述应用服务器发送的数据,分析所述应用服 务器发送的数据是否为应用数据;
根据分析结果, 至少执行如下步骤中的一种或多种:
当分析出所述数据为所述应用服务器正常推送的应用数据时,唤醒所述应 用处理器, 并向所述应用处理器发送所述应用数据。
当分析出所述数据为所述应用服务器针对所述在线提示消息反馈的异常 应答数据时, 唤醒所述应用处理器, 并向所述应用处理器发送所述异常应答数 当分析出所述数据为所述应用服务器针对所述在线提示消息反馈的正常 应答数据时, 丟弃所述正常应答数据, 不唤醒所述应用处理器, 所述正常应答 数据用于指示所述应用服务器已接收到所述在线提示消息。
结合第一方面、 第一方面第一种至第七种可能的实现方式中的任意一种, 在第八种可能的实现方式中,所述调制解调器接收应用处理器发送的应用对应 的心跳配置信息之后, 所述方法还包括:
所述调制解调器接收所述应用处理器发送的应用对应的心跳配置信息的 删除指示信息,所述删除指示信息用于指示删除所述应用处理器指定应用的心 跳配置信息;
所述调制解调器根据所述接收的删除指示信息,删除所述应用处理器指定 应用的心跳配置信息。
本发明第二方面提供一种调制解调器, 包括: 输入设备、 输出设备、 处理 器和存储器,
所述输入设备, 用于接收应用处理器发送的应用对应的心跳配置信息, 其 中, 所述应用处理器发送所述应用对应的心跳配置信息后, 处于休眠状态; 所述处理器, 用于根据所述应用对应的心跳配置信息, 与所述应用对应的 应用服务器建立心跳连接,使所述应用处理器在所述应用无内容更新时不被唤 醒。
结合第二方面,在第一种可能的实现方式中, 所述心跳配置信息包括所述 应用的初始心跳周期,
所述处理器, 用于当所述应用为至少两个应用时,将所述至少两个应用的 初始心跳周期与预设的时间门限值进行比较,当所述至少两个应用中的一个应 用的初始心跳周期不小于所述预设的时间门限值时,调整所述至少两个应用中 的一个应用的初始心跳周期,根据调整的初始心跳周期, 与所述至少两个应用 中的一个应用对应的应用服务器建立心跳连接。
结合第二方面第一种可能的实现方式, 在第二种可能的实现方式中, 所述 处理器,用于根据所述至少两个应用的初始心跳周期,确定最小初始心跳周期, 始心跳周期除以所述最小初始心跳周期取整, 再乘以所述最小初始心跳周期, 确定调整后所述至少两个应用中的一个应用的心跳周期,根据调整后的所述至 少两个应用中的一个应用的心跳周期 ,对所述至少两个应用中的一个应用的初 始心跳周期进行调整。
结合第二方面、第二方面第一种或第二种可能的实现方式,在第三种可能 的实现方式中, 所述处理器, 用于根据所述应用对应的心跳配置信息, 触发向 所述应用对应的应用服务器发送在线提示消息;
所述输出设备, 用于向所述应用对应的应用服务器发送在线提示消息, 与 所述应用对应的应用服务器建立心跳连接。
结合第二方面第三种可能的实现方式, 在第四种可能的实现方式中, 所述输入设备, 还用于接收所述应用服务器发送的数据;
所述处理器,还用于根据接收的所述应用服务器发送的数据, 分析所述应 用服务器发送的数据是否为应用数据;
所述处理器和所述输出设备,还用于根据分析结果, 至少执行如下步骤中 的一种或多种:
所述处理器当分析出所述数据为所述应用服务器正常推送的应用数据时, 唤醒所述应用处理器, 所述输出设备向所述应用处理器发送所述应用数据。
所述处理器当分析出所述数据为所述应用服务器针对所述在线提示消息 反馈的异常应答数据时, 唤醒所述应用处理器, 所述输出设备向所述应用处理 用处理器的交互数据;
所述处理器当分析出所述数据为所述应用服务器针对所述在线提示消息 反馈的正常应答数据时, 丟弃所述正常应答数据, 不唤醒所述应用处理器, 所 述正常应答数据用于指示所述应用服务器已接收到所述在线提示消息。
结合第二方面、 第二方面第一种至第四种可能的实现方式中的任意一种, 在第五种可能的实现方式中,
所述输入设备,还用于接收所述应用处理器发送的应用对应的心跳配置信 息的删除指示信息,所述删除指示信息用于指示删除所述应用处理器指定应用 的心跳配置信息;
所述处理器,还用于根据所述接收的删除指示信息,删除所述应用处理器 指定应用的心跳配置信息。
本发明第三方面提供一种终端, 包括: 调制解调器和应用处理器, 所述应用处理器用于向所述调制解调器发送应用对应的心跳配置信息,并 在发送所述应用对应的心跳配置信息后, 处于休眠状态, 并且所述应用处理器 在所述应用无内容更新时不被唤醒;
所述调制解调器用于接收应用处理器发送的应用对应的心跳配置信息,并 根据所述应用对应的心跳配置信息 ,与所述应用对应的应用服务器建立心跳连 接。
结合第三方面,在第一种可能的实现方式中, 当所述应用为至少两个应用 时,所述调制解调器还用于将所述至少两个应用的初始心跳周期与预设的时间 门限值进行比较,当所述至少两个应用中的一个应用的初始心跳周期不小于所 述预设的时间门限值时, 调整所述至少两个应用中的一个应用的初始心跳周 期, 并根据调整的初始心跳周期, 与所述至少两个应用中的一个应用对应的应 用服务器建立心跳连接。
结合第三方面第一种可能的实现方式, 在第二种可能的实现方式中, 所述 调制解调器还用于根据所述至少两个应用的初始心跳周期,确定最小初始心跳 的初始心跳周期除以所述最小初始心跳周期取整,再乘以所述最小初始心跳周 期,确定调整后所述至少两个应用中的一个应用的心跳周期, 并根据调整后的 所述至少两个应用中的一个应用的心跳周期 ,对所述至少两个应用中的一个应 用的初始心跳周期进行调整。
结合第三方面、第三方面第一种或第二种可能的实现方式,在第三种可能 的实现方式中, 所述调制解调器还用于根据所述应用对应的心跳配置信息, 通 过向所述应用对应的应用服务器发送在线提示消息,与所述应用对应的应用服 务器建立心跳连接。
结合第三方面第三种可能的实现方式, 在第四种可能的实现方式中, 所述 所述应用服务器发送的数据, 并根据接收的所述应用服务器发送的数据, 分析 所述应用服务器发送的数据是否为应用数据;
根据分析结果, 至少执行如下步骤中的一种或多种:
当分析出所述数据为所述应用服务器正常推送的应用数据时,唤醒所述应 用处理器, 并向所述应用处理器发送所述应用数据。
当分析出所述数据为所述应用服务器针对所述在线提示消息反馈的异常 应答数据时, 唤醒所述应用处理器, 并向所述应用处理器发送所述异常应答数 当分析出所述数据为所述应用服务器针对所述在线提示消息反馈的正常 应答数据时, 丟弃所述正常应答数据, 不唤醒所述应用处理器, 所述正常应答 数据用于指示所述应用服务器已接收到所述在线提示消息。
结合第三方面、 第三方面第一种至第四种可能的实现方式中的任意一种, 在第五种可能的实现方式中, 所述调制解调器还用于接收应用处理器发送的应用对应的心跳配置信息 之后, 接收所述应用处理器发送的应用对应的心跳配置信息的删除指示信息, 所述删除指示信息用于指示删除所述应用处理器指定应用的心跳配置信息; 所述调制解调器还用于根据所述接收的删除指示信息,删除所述应用处理 器指定应用的心跳配置信息。
本发明实施例调制解调器接收应用处理器发送的应用对应的心跳配置信 述应用处理器在所述应用无内容更新时不被唤醒。与现有技术中应用处理器每 次与应用对应的应用服务器建立心跳连接时, 都要唤醒 AP相比, 本发明实施 例提供的方案, 可以避免 AP被频繁唤醒, 从而减少了终端功耗, 延长了终端 的待机时间。 附图说明
为了更清楚地说明本发明实施例中的技术方案,下面将对实施例描述中所 需要使用的附图作筒单地介绍,显而易见地, 下面描述中的附图仅仅是本发明 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是本发明中业务代理的方法的一个实施例示意图;
图 2是本发明中业务代理的方法的另一个实施例示意图;
图 3是本发明中业务代理的方法的另一个实施例示意图;
图 4是本发明中业务代理的方法的另一个实施例示意图;
图 5是本发明中业务代理的方法的另一个实施例示意图;
图 6是本发明中业务代理的方法的另一个实施例示意图;
图 7是本发明中业务代理的方法的另一个实施例示意图;
图 8是本发明中业务代理的方法的另一个实施例示意图;
图 9是本发明中业务代理的方法的另一个实施例示意图;
图 10是本发明中业务代理的方法的另一个实施例示意图;
图 11是本发明中调制解调器的一个实施例示意图; 图 12是本发明中终端的一个实施例示意图。
具体实施方式
本发明实施例提供一种业务代理的方法,由调制解调器代理应用处理器与 应用对应的应用服务器建立心跳连接,避免应用处理器( Application Processor, AP) )被频繁唤醒, 从而减少了终端功耗, 延长了终端的待机时间。 本发明实 施例还提供了相应的调制解调器及终端。 以下分別进行详细说明。
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。
参阅图 1 , 本发明实施例提供的业务代理的方法包括:
101、调制解调器接收应用处理器发送的应用对应的心跳配置信息, 其中, 所述应用处理器发送所述应用对应的心跳配置信息后, 处于休眠状态。
其中, 所述心跳配置信息包括所述应用的初始心跳周期。
所述应用的初始心跳周期为应用处理器与所述应用的应用服务器建立心 跳连接的周期,即应用处理器与所述应用的应用服务器多长时间建立一次心跳 服务器获取的。
其中, 所述调制解调器与所述应用处理器通过共享内存 (Share Memory, SM)或 (attention , AT )指令通道通信。
本发明实施例中的应用可以为微信、微博、 电子邮件等现有技术中所涉及 的应用。
102、 所述调制解调器根据所述应用对应的心跳配置信息, 与所述应用对 应的应用服务器建立心跳连接,使所述应用处理器在所述应用无内容更新时不 被唤醒。
应用服务器与应用处理器通过心跳连接, 确定应用是否处于连接状态。 本发明实施例调制解调器接收应用处理器发送的应用对应的心跳配置信 述应用处理器在所述应用无内容更新时不被唤醒。与现有技术中应用处理器每 次与应用对应的应用服务器建立心跳连接时, 都要唤醒 AP相比, 本发明实施 例提供的方案, 可以避免 AP被频繁唤醒, 从而减少了终端功耗, 延长了终端 的待机时间。
可选地,参阅图 2,图 2是本发明中业务代理的方法的另一个实施例示意图, 本发明实施例提供的业务代理的方法的另一实施例包括:
步骤 101和 102, 当所述应用为至少两个应用时, 步骤 102具体可以包括: 102-1、 102-2和 102-3。
步骤 101和 102可参阅图 1对应的实施例中有关步骤 101和 102的描述进行理 解, 在此不再赘述。
步骤 102-1、 102-2和 102-3具体可以为:
102- 1、 所述调制解调器将所述至少两个应用的初始心跳周期与预设的时 间门限值进行比较。
所述预设的时间门限值可以由所述应用处理器设置。
假设有 3个应用, 所述 3个应用的初始心跳周期分別为 5分钟、 7分钟和 10 分钟, 预设的时间门限值为 6分钟, 那么将 3个应用的初始心跳周期分別为 5分 钟、 7分钟和 10分钟分別与 6分钟进行比较。
102-2、 当所述至少两个应用中的一个应用的初始心跳周期不小于所述预 设的时间门限值时, 调整所述至少两个应用中的一个应用的初始心跳周期。
在步骤 102-1的例子中, 不小于所述预设的时间门限值 6分钟的有初始心跳 周期 7分钟和 10分钟, 那么就需要调整初始心跳周期 7分钟和 10分钟。
102-3、 根据调整的初始心跳周期, 与所述至少两个应用中的一个应用对 应的应用服务器建立心跳连接。
在步骤 102-2的例子中, 初始心跳周期 7分钟和 10分钟需要调整, 就根据调 整的初始心跳周期,与所述至少两个应用中的一个应用对应的应用服务器建立 心跳连接。 都要唤醒 AP相比, 本发明实施例提供的方案, 可以避免 AP被频繁唤醒, 从而 减少了终端功耗, 延长了终端的待机时间, 而且, 将不小于预置门限值的初始 心跳周期进行调整,可以减少调制解调器与应用服务器建立链路的次数。例如: 将 7分钟和 10分钟都调整为 6分钟, 或者将 10分钟调整为 7分钟, 就可以在 6分钟 或者 7分钟的时间点上只建立一次链路, 就可以与初始心跳周期为 7分钟和 10 分钟的应用对应的应用服务器分別建立心跳连接, 从而减少了建立链路的次 数, 降低了调制解调器的功耗, 也进一步降低了终端的功耗。
可选地,参阅图 3,图 3是本发明中业务代理的方法的另一个实施例示意图, 本发明实施例提供的业务代理的方法的另一实施例包括:
步骤 101和 102, 其中步骤 102具体包括 102-1、 102-2、 102-3和 102-4, 其中, 在步骤 102- 1后可以按顺序执行步骤 102-2和 102-3 , 在步骤 102- 1后也可以执行 步骤 102-4。
步骤 101、 102,以及 102-1、 102-2和 102-3可参阅上述实施例中有关步骤 101、 102, 以及 102-1、 102-2和 102-3的描述进行理解, 在此不再赘述。
步骤 102-4具体可以为:
102-4、 当所述至少两个应用的初始心跳周期小于所述预设的时间门限值 时, 不调整所述应用的初始心跳周期。
在步骤 102-1的例子中, 小于所述预设的时间门限值 6分钟的有初始心跳周 期 5分钟, 那么就不调整这个初始心跳周期 5分钟。
因应用的初始心跳周期都是所述应用的应用服务器预先规定好的, 因此, 所述 应用的应用服务器在所述应用的初始心跳周期内与所述应用所在的终端中的 应用处理器建立心跳连接, 就会确认所述应用在线,如果在所述应用的初始心 跳周期内没有与所述应用所在的终端中的应用处理器建立心跳连接 ,所述应用 的应用服务器就会默认所述应用下线。 因此, 所述应用的初始心跳周期在调整 时只能缩短, 不能延长, 因此, 对于小于所述预设的时间门限值的初始心跳周 期不调整。 都要唤醒 AP相比, 本发明实施例提供的方案, 可以避免 AP被频繁唤醒, 从而 减少了终端功耗, 延长了终端的待机时间。 可选地,参阅图 4,图 4是本发明中业务代理的方法的另一个实施例示意图, 本发明实施例提供的业务代理的方法的另一实施例包括:
步骤 101和 102, 其中步骤 102具体包括 102-1、 102-2和 102-3 , 其中, 步骤 102-2具体可以包括: 102-21、 102-22和 102-23。
步骤 101、 102,以及 102-1、 102-2和 102-3可参阅上述实施例中有关步骤 101、
102, 以及 102-1、 102-2和 102-3的描述进行理解, 在此不再赘述。
步骤 102-21、 102-22和 102-23具体可以为:
102-21、根据所述至少两个应用的初始心跳周期,确定最小初始心跳周期。 例如: 当有四个应用的初始心跳周期不小于所述预设的时间门限值时, 例 如: 这四个应用的初始心跳周期分別为 6分钟、 7分钟、 10分钟和 13分钟, 从这 四个初始心跳周期中确定最小初始心跳周期,在这个例子中, 最小初始心跳周 期为 6分钟。 个应用的初始心跳周期除以所述最小初始心跳周期取整,再乘以所述最小初始 心跳周期, 确定调整后所述至少两个应用中的一个应用的心跳周期。
本步骤的描述可以用公式: T调整 = 【T应用 I Τ X τ 表示, 其中 Τ应用为 应用的初始心跳周期, Tmm为最小初始心跳周期, 【T应用 I Tmm】表示应用的初 始心跳周期除以所述最小初始心跳周期取整,【T应用 / Τ X Tmm表示【Τ应用 I Tmm】取整后, 再乘以所述最小初始心跳周期。
延续步骤 102-21中的例子, Tmm为 6分钟, 初始心跳周期 7分钟带入上述公 式后得到的 T调整 =6分钟, 初始心跳周期 10分钟带入上述公式后得到的 T调整 =6分 钟, 初始心跳周期 13分钟带入上述公式后得到的 T调整 =12分钟。
102-23、 根据调整后的所述至少两个应用中的一个应用的心跳周期, 对所 述至少两个应用中的一个应用的初始心跳周期进行调整。
延续步骤 102-22中的例子, 上述四个应用中调整了后三个应用的心跳周 期,调整后每个应用对应的初始心跳周期分別为 6分钟、 6分钟和 12分钟,那么, 就将这三个应用的初始心跳周期分別调整为 6分钟、 6分钟和 12分钟。 都要唤醒 AP相比, 本发明实施例提供的方案, 可以避免 AP被频繁唤醒, 从而 减少了终端功耗, 延长了终端的待机时间。 而且, 将不小于预置门限值的初始 心跳周期进行调整,可以减少调制解调器与应用服务器建立链路的次数。例如: 将 7分钟和 10分钟都调整为 6分钟, 将 13分钟调整为 12分钟, 就可以在 6分钟的 时间点上只建立一次链路, 就可以与初始心跳周期为 6分钟、 7分钟和 10分钟的 应用对应的应用服务器分別建立心跳连接,在 12分钟时间点建立一次链路, 就 可以与初始心跳周期为 6分钟、 7分钟、 10分钟和 13分钟的应用对应的应用服务 器分別建立心跳连接, 从而减少了建立链路的次数, 降低了调制解调器的功 耗, 也进一步降低了终端的功耗。
参阅图 5, 图 5是本发明中业务代理的方法的另一个实施例示意图, 本发明 实施例提供的业务代理的方法的另一实施例包括:
步骤 101和 102, 其中步骤 102具体可以为步骤 102-5。
步骤 101和 102可参阅图 1对应的实施例中有关步骤 101和 102的描述进行理 解, 在此不再赘述。
步骤 102-5具体为:
102- 5、 根据所述应用对应的心跳配置信息, 通过向所述应用对应的应用 服务器发送在线提示消息, 与所述应用对应的应用服务器建立心跳连接。 都要唤醒 AP相比, 本发明实施例提供的方案, 可以避免 AP被频繁唤醒, 从而 减少了终端功耗, 延长了终端的待机时间。
可选地,参阅图 6,图 6是本发明中业务代理的方法的另一个实施例示意图, 本发明实施例提供的业务代理的方法的另一实施例包括:
步骤 101、 102-5, 以及步骤 102-5后执行的步骤 103-步骤 107。
步骤 101和 102-5可参阅上述实施例中有关步骤 101和 102-5的描述进行理 解, 在此不再赘述。
103- 107具体可以为:
103、 所述调制解调器接收所述应用服务器发送的数据。
104、 所述调制解调器根据接收的所述应用服务器发送的数据, 分析所述 应用服务器发送的数据是否为应用数据。
根据分析结果, 至少执行如下步骤中的一种或多种:
105、 当分析出所述数据为所述应用服务器正常推送的应用数据时, 唤醒 所述应用处理器, 并向所述应用处理器发送所述应用数据。
正常推送的应用数据指的是并不是针对在线提示消息发送的数据,只要应 用服务器确认需要向下推送, 就会推送到终端。调制解调器可以根据该在线提 示消息发出多长时间后接收到该数据来确定该数据是否属于应用数据, 例如: 以发出在线提示消息后 1分钟为分界点,发出在线提示消息 1分钟后接收到的数 据都认为是正常推送的应用数据, 1分钟内接收到的数据认为是针对在线提示 消息反馈的应答数据。
以邮件为例, 当是自动推送的场景中,应用服务器只要接收到某个账户的 邮件, 就会将该邮件推送到该账户登陆所在的终端的调制解调器,调制解调器 就需要唤醒 AP, 并向 AP推送接收到的应用数据。
106、 当分析出所述数据为所述应用服务器针对所述在线提示消息反馈的 异常应答数据时, 唤醒所述应用处理器, 并向所述应用处理器发送所述异常应 据。
对于针对所述在线提示消息反馈的正常应答数据和异常应答数据的分析 可以通过数据的比特数来区分, 例如: 以 30KB为分界点, 大于 30KB的数据为 异常应答数据, 小于 30KB的数据为异常应答数据。
异常应答数据具体可以为:应用服务器针对接收到的在线提示消息反馈的 交互数据, 还是以应用是邮件为例: 该异常应答数据可以为有一封新邮件, 以 及该邮件的具体数据内容,调制解调器就可以根据该异常应答数据确定所述应 用有内容更新, 从而唤醒所述应用处理器。
107、 当分析出所述数据为所述应用服务器针对所述在线提示消息反馈的 正常应答数据时, 丟弃所述正常应答数据, 不唤醒所述应用处理器, 所述正常 应答数据用于指示所述应用服务器已接收到所述在线提示消息。
当本发明实施例中的应用为邮件时,该正常应答数据可以为目前没有新邮 件, 这个数据对应用处理器来说没有任何意义,调制解调器可以直接丟弃该数 据, 不需要唤醒应用处理器。 都要唤醒 AP相比, 本发明实施例提供的方案, 可以避免 AP被频繁唤醒, 从而 减少了终端功耗, 延长了终端的待机时间。 而且, 调制解调器在接收到应用对 应的应用服务器返回数据时, 先分析接收到的数据, 在数据没有内容更新时, 不唤醒应用处理器, 从而进一步节省了终端的功耗。
可选地,参阅图 7,图 7是本发明中业务代理的方法的另一个实施例示意图, 本发明实施例提供的业务代理的方法的另一实施例包括:
步骤 101、 102, 以及在步骤 101之后执行的步骤 108和 109。
步骤 101和 102可参阅图 1对应的实施例中有关步骤 101和 102的描述进行理 解, 在此不再赘述。
步骤 108和 109具体可以为:
108、 所述调制解调器接收所述应用处理器发送的应用对应的心跳配置信 息的删除指示信息,所述删除指示信息用于指示删除所述应用处理器指定应用 的心跳配置信息。
当 AP侧删除安装的应用时, 可以向 modem发送心跳配置信息的删除指示 信息。
109、 所述调制解调器才艮据所述接收的删除指示信息, 删除所述应用处理 器指定应用的心跳配置信息。
调制解调器根据所述接收的删除指示信息,对应的删除已存储所述应用处 理器指定的应用的心跳配置信息。 都要唤醒 AP相比, 本发明实施例提供的方案, 可以避免 AP被频繁唤醒, 从而 减少了终端功耗, 延长了终端的待机时间。 而且, 调制解调器根据应用处理器 发送的删除指示信息,及时删除所述应用处理器指定应用的心跳配置信息,还 可以有效的节省调制解调器的内存。
在图 7所示出的实施例中, 在步骤 101之后还执行了步骤 108和 109, 实际 上, 在上述每个实施例中步骤 101之后都还可以执行步骤 108和 109, 本发明实 施例中就不——的画图说明,具体过程都可以参阅图上述步骤 108和 109中的描 述进行理解。
为了便于理解, 下面以几个应用场景为例,说明本发明实施例中在线提示 消息的处理的过程:
参阅图 8, 应用处理器 AP上可以设置有代理服务模块(Agent Service ), 调 制解调器 modem上可以设置有代理平台模块( Agent Platform) , 如图 8所示,
AP侧在框架 Framework层构建 Agent Service服务, 向各个应用(apk )提供 心跳配置接口、存储心跳内容并发送心跳配置信息给 modem。 Modem在非接入 层构建 Agent platform处理平台, 接收心跳配置信息, 并根据所述应用的心跳 配置信息, 调整向所述应用对应的应用服务器发送在线提示消息的心跳周期, 使调整后的所述应用对应的心跳周期中任意一个心跳周期与其中第一最小心 跳周期都成整数倍的关系,根据调整后的心跳周期, 周期性向所述应用对应的 应用服务器发送所述应用对应的在线提示消息。 其中 AP与 Modem通信在共享 内存 (Share Memory, SM)或(attention , AT )指令通道的基础上搭建专用通 信协议。
参阅图 9, 图 9为 Agent platform的处理框架,
Agent Plantform作为心跳代理的主要实现部分, 可以细分为上图 9中的多 个模块。
SM/AT通信模块: 用于解析心跳数据通信协议, 将 AP发送过来的心跳配 置信息同步到存储模块。同时负责心跳逻辑控制模块传送过来服务器异常应答 数据的协议封装, 并调用接口传送到 AP。
心跳配置存储模块: 用于存储 AP发送的心跳配置信息。
心跳逻辑控制模块:用于根据存储模块里的心跳配置信息进行归类、调整、 排序, 设置相应的定时器, 并在预置时间到达时, 利用传输控制协议 /因特网 互联十办议 ( Transmission Control Protocol/Internet Protocol, TCP/IP )模块接口 发送在线提示消息。 另外需要负责分析应用服务器的应答数据, 区分应用服务 器发送的应答数据是否正常, 是否需要转发 AP。 TCP/IP协议模块:将待发送的在线提示消息按照与网络侧协商的编码方式 进行编码,本发明实施例中协商的编码方式为 TCP/IP编码,经过 TCP/IP编码后, 将数据组装成可在第三代合作伙伴计划(3rd Generation Partnership Project, 3GPP)的长期演进 ( Long Term Evolution, LTE )无线链路上传递的点对点传输 十办议 ( point-to-point protocl, PPP ) 包格式。
3GPP通信收包发包模块: 用于提供发送空口数据、 拦截空口数据的接口。 参阅图 10, 图 10为代理平台 Agent platform处理流程示意图:
图 10中, AP通过 SM或 AT通信接口向 modem下发心跳配置信息, 心跳存储 模块存储该心跳配置信息, 心跳调整模块调整心跳周期后, 代理 AP的在线提 示消息发送的任务。
Modem接收应用服务器发送的下行数据后,对该下行数据进行分析,如果 分析出该下行数据是应用服务器正常推送的数据,则将该应用服务器正常推送 的数据发送给 AP, 如果分析出该下行数据为所述应用服务器针对所述在线提 示消息反馈的正常应答数据, 直接丟弃该数据, 所述正常应答数据用于指示所 述应用服务器已接收到所述在线提示消息。当分析出所述数据为所述应用服务 器针对所述在线提示消息反馈的异常应答数据时, 唤醒所述应用处理器, 并向 所述应用处理器发送所述异常应答数据,所述异常应答数据为所述应用服务器 反馈给所述应用处理器的交互数据。
本发明还提供一种计算机存储介质, 该介质存储有程序, 该程序执行时包 括上述调制解调器侧业务代理的方法中的部分或者全部步骤。
图 11是本发明实施例调制解调器 20的结构示意图。调制解调器 20可包括输 入设备 210、 输出设备 220、 处理器 230和存储器 240。
存储器 240可以包括只读存储器和随机存取存储器,并向处理器 230提供指 令和数据。 存储器 240的一部分还可以包括非易失性随机存取存储器 ( NVRAM )。
存储器 240存储了如下的元素, 可执行模块或者数据结构, 或者它们的子 集, 或者它们的扩展集:
操作指令: 包括各种操作指令, 用于实现各种操作。 操作系统: 包括各种系统程序, 用于实现各种基础业务以及处理基于硬件 的任务。
在本发明实施例中, 处理器 230通过调用存储器 240存储的操作指令(该操 作指令可存储在操作系统中), 执行如下操作:
通过输入设备 210接接收应用处理器发送的应用对应的心跳配置信息, 其 中, 所述应用处理器发送所述应用对应的心跳配置信息后, 处于休眠状态, 根 据所述应用对应的心跳配置信息, 与所述应用对应的应用服务器建立心跳连 本发明实施例提供的调制解调器,可以代理所述应用服务器与所述应用对 应的应用服务器建立心跳连接, 可以避免 AP被频繁唤醒, 从而减少了终端功 耗, 延长了终端的待机时间。
处理器 230控制调制解调器 20的操作, 处理器 230还可以称为 CPU ( Central Processing Unit, 中央处理单元)。 存储器 240可以包括只读存储器和随机存取 存储器, 并向处理器 230提供指令和数据。存储器 240的一部分还可以包括非易 失性随机存取存储器 (NVRAM )。 具体的应用中, 调制解调器 20的各个组件 通过总线系统 250耦合在一起, 其中总线系统 250除包括数据总线之外,还可以 包括电源总线、控制总线和状态信号总线等。 但是为了清楚说明起见, 在图中 将各种总线都标为总线系统 250。
上述本发明实施例揭示的方法可以应用于处理器 230中,或者由处理器 230 实现。 处理器 230可能是一种集成电路芯片, 具有信号的处理能力。 在实现过 件形式的指令完成。 上述的处理器 230可以是通用处理器、 数字信号处理器 ( DSP )、 专用集成电路(ASIC )、 现成可编程门阵列 (FPGA )或者其他可编 程逻辑器件、 分立门或者晶体管逻辑器件、 分立硬件组件。 可以实现或者执行 本发明实施例中的公开的各方法、 步骤及逻辑框图。通用处理器可以是微处理 器或者该处理器也可以是任何常规的处理器等。结合本发明实施例所公开的方 法的步骤可以直接体现为硬件译码处理器执行完成,或者用译码处理器中的硬 件及软件模块组合执行完成。 软件模块可以位于随机存储器, 闪存、 只读存储 器, 可编程只读存储器或者电可擦写可编程存储器、寄存器等本领域成熟的存 储介质中。 该存储介质位于存储器 240, 处理器 230读取存储器 240中的信息, 结合其硬件完成上述方法的步骤。
可选地, 所所述心跳配置信息包括所述应用的初始心跳周期,
所述处理器 230, 用于当所述应用为至少两个应用时, 将所述至少两个应 用的初始心跳周期与预设的时间门限值进行比较,当所述至少两个应用中的一 个应用的初始心跳周期不小于所述预设的时间门限值时,调整所述至少两个应 用中的一个应用的初始心跳周期,根据调整的初始心跳周期, 与所述至少两个 应用中的一个应用对应的应用服务器建立心跳连接。
可选地, 所述处理器 230, 用于根据所述至少两个应用的初始心跳周期, 确定最小初始心跳周期,将所述不小于所述预设的时间门限值的所述至少两个 应用中的一个应用的初始心跳周期除以所述最小初始心跳周期取整,再乘以所 述最小初始心跳周期, 确定调整后所述至少两个应用中的一个应用的心跳周 期,根据调整后的所述至少两个应用中的一个应用的心跳周期,对所述至少两 个应用中的一个应用的初始心跳周期进行调整。
可选地, 所述处理器 230, 用于根据所述应用对应的心跳配置信息, 触发 向所述应用对应的应用服务器发送在线提示消息;
所述输出设备 220,用于向所述应用对应的应用服务器发送在线提示消息, 与所述应用对应的应用服务器建立心跳连接。
可选地, 所述输入设备 210, 还用于接收所述应用服务器发送的数据; 所述处理器 230, 还用于根据接收的所述应用服务器发送的数据, 分析所 述应用服务器发送的数据是否为应用数据;
所述处理器 230和所述输出设备 220,还用于根据分析结果, 至少执行如下 步骤中的一种或多种:
所述处理器 230当分析出所述数据为所述应用服务器正常推送的应用数据 时, 唤醒所述应用处理器, 所述输出设备 220向所述应用处理器发送所述应用 数据。
所述处理器 230当分析出所述数据为所述应用服务器针对所述在线提示消 息反馈的异常应答数据时, 唤醒所述应用处理器, 所述输出设备 220向所述应 用处理器发送所述异常应答数据,所述异常应答数据为所述应用服务器反馈给 所述应用处理器的交互数据;
所述处理器 230当分析出所述数据为所述应用服务器针对所述在线提示消 息反馈的正常应答数据时, 丟弃所述正常应答数据, 不唤醒所述应用处理器, 所述正常应答数据用于指示所述应用服务器已接收到所述在线提示消息。
可选地, 所述输入设备 210, 还用于接收所述应用处理器发送的应用对应 的心跳配置信息的删除指示信息,所述删除指示信息用于指示删除所述应用处 理器指定应用的心跳配置信息;
所述处理器 230, 还用于根据所述接收的删除指示信息, 删除所述应用处 理器指定应用的心跳配置信息。
参阅图 12 , 本发明实施例提供的终端 10的一实施例包括: 调制解调器 20 和应用处理器 30,
所述应用处理器 30向所述调制解调器 20发送应用对应的心跳配置信息,并 在发送所述应用对应的心跳配置信息后, 处于休眠状态;
所述调制解调器 20接收应用处理器发送的应用对应的心跳配置信息,并根 据所述应用对应的心跳配置信息, 与所述应用对应的应用服务器建立心跳连 接; 可选地,在上述图 12对应的实施例的基础上, 本发明实施例提供的终端的 另一实施例中, 所述心跳配置信息包括所述应用的初始心跳周期, 当所述应用 为至少两个应用时,
所述调制解调器 20将所述至少两个应用的初始心跳周期与预设的时间门 限值进行比较,当所述至少两个应用中的一个应用的初始心跳周期不小于所述 预设的时间门限值时, 调整所述至少两个应用中的一个应用的初始心跳周期, 根据调整的初始心跳周期,与所述至少两个应用中的一个应用对应的应用服务 器建立心跳连接。
可选地,在上述图 12对应的可选实施例的基石出上, 本发明实施例提供的终 端的另一实施例中,
所述调制解调器 20根据所述至少两个应用的初始心跳周期,确定最小初始 应用的初始心跳周期除以所述最小初始心跳周期取整,再乘以所述最小初始心 跳周期,确定调整后所述至少两个应用中的一个应用的心跳周期,根据调整后 的所述至少两个应用中的一个应用的心跳周期,对所述至少两个应用中的一个 应用的初始心跳周期进行调整。
在上述任一终端实施例的基石出上,本发明实施例提供的终端的另一实施例 中,
所述调制解调器 20根据所述应用对应的心跳配置信息,通过向所述应用对 应的应用服务器发送在线提示消息,与所述应用对应的应用服务器建立心跳连 接。
在上一个终端的实施例的基石出上,本发明实施例提供的终端的另一实施例 中,
所述调制解调器 20向所述应用对应的应用服务器发送在线提示消息之后, 接收所述应用服务器发送的数据,根据接收的所述应用服务器发送的数据, 分 析所述应用服务器发送的数据是否为应用数据;
根据分析结果, 至少执行如下步骤中的一种或多种:
当分析出所述数据为所述应用服务器正常推送的应用数据时,唤醒所述应 用处理器, 并向所述应用处理器发送所述应用数据。
当分析出所述数据为所述应用服务器针对所述在线提示消息反馈的异常 应答数据时, 唤醒所述应用处理器, 并向所述应用处理器发送所述异常应答数 当分析出所述数据为所述应用服务器针对所述在线提示消息反馈的正常 应答数据时, 丟弃所述正常应答数据, 不唤醒所述应用处理器, 所述正常应答 数据用于指示所述应用服务器已接收到所述在线提示消息。
在上述任一终端的实施例的基础上,本发明实施例提供的终端的另一实施 例中, 所述调制解调器 20接收应用处理器发送的应用对应的心跳配置信息之后, 接收所述应用处理器发送的应用对应的心跳配置信息的删除指示信息,所述删 除指示信息用于指示删除所述应用处理器指定应用的心跳配置信息;
所述调制解调器根据所述接收的删除指示信息,删除所述应用处理器指定 应用的心跳配置信息。
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: ROM、 RAM, 磁盘或光盘等。
以上对本发明实施例所提供的业务代理的方法、调制解调器以及终端进行 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 本领域的一般技术人员,依据本发明的思想,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发明的限制。

Claims

权 利 要 求
1、 一种业务代理的方法, 其特征在于, 包括:
调制解调器接收应用处理器发送的应用对应的心跳配置信息, 其中, 所述 应用处理器发送所述应用对应的心跳配置信息后, 处于休眠状态;
所述调制解调器根据所述应用对应的心跳配置信息,与所述应用对应的应 醒。
2、根据权利要求 1所述的方法, 其特征在于, 所述心跳配置信息包括所述 应用的初始心跳周期。
3、根据权利要求 2所述的方法, 其特征在于, 当所述应用为至少两个应用 时, 所述调制解调器根据所述应用对应的心跳配置信息, 与所述应用对应的应 用服务器建立心跳连接, 包括:
所述调制解调器将所述至少两个应用的初始心跳周期与预设的时间门限 值进行比较;
当所述至少两个应用中的一个应用的初始心跳周期不小于所述预设的时 间门限值时, 调整所述至少两个应用中的一个应用的初始心跳周期;
根据调整的初始心跳周期,与所述至少两个应用中的一个应用对应的应用 服务器建立心跳连接。
4、根据权利要求 3所述的方法, 其特征在于, 当所述至少两个应用的初始 心跳周期小于所述预设的时间门限值时, 不调整所述应用的初始心跳周期。
5、根据权利要求 3所述的方法, 其特征在于, 当所述至少两个应用中的一 个应用的初始心跳周期不小于所述预设的时间门限值时,调整所述至少两个应 用中的一个应用的初始心跳周期, 包括:
根据所述至少两个应用的初始心跳周期, 确定最小初始心跳周期; 的初始心跳周期除以所述最小初始心跳周期取整,再乘以所述最小初始心跳周 期, 确定调整后所述至少两个应用中的一个应用的心跳周期;
根据调整后的所述至少两个应用中的一个应用的心跳周期,对所述至少两 个应用中的一个应用的初始心跳周期进行调整。
6、根据权利要求 1所述的方法, 其特征在于, 所述根据所述应用对应的心 跳配置信息, 与所述应用对应的应用服务器建立心跳连接, 包括:
根据所述应用对应的心跳配置信息 ,通过向所述应用对应的应用服务器发 送在线提示消息, 与所述应用对应的应用服务器建立心跳连接。
7、 根据权利要求 1-6中任一所述的方法, 其特征在于, 所述调制解调器与 所述应用处理器通过共享内存 SM或者 AT指令通道通信。
8、根据权利要求 6中任一所述的方法, 其特征在于, 所述向所述应用对应 的应用服务器发送在线提示消息之后, 所述方法还包括:
所述调制解调器接收所述应用服务器发送的数据;
所述调制解调器根据接收的所述应用服务器发送的数据,分析所述应用服 务器发送的数据是否为应用数据;
根据分析结果, 至少执行如下步骤中的一种或多种:
当分析出所述数据为所述应用服务器正常推送的应用数据时,唤醒所述应 用处理器, 并向所述应用处理器发送所述应用数据。
当分析出所述数据为所述应用服务器针对所述在线提示消息反馈的异常 应答数据时, 唤醒所述应用处理器, 并向所述应用处理器发送所述异常应答数 当分析出所述数据为所述应用服务器针对所述在线提示消息反馈的正常 应答数据时, 丟弃所述正常应答数据, 不唤醒所述应用处理器, 所述正常应答 数据用于指示所述应用服务器已接收到所述在线提示消息。
9、 根据权利要求 1-8任一所述的方法, 其特征在于, 所述调制解调器接收 应用处理器发送的应用对应的心跳配置信息之后, 所述方法还包括:
所述调制解调器接收所述应用处理器发送的应用对应的心跳配置信息的 删除指示信息,所述删除指示信息用于指示删除所述应用处理器指定应用的心 跳配置信息;
所述调制解调器根据所述接收的删除指示信息,删除所述应用处理器指定 应用的心跳配置信息。
10、 一种调制解调器, 其特征在于, 包括: 输入设备、 输出设备、 处理器 和存储器,
所述输入设备, 用于接收应用处理器发送的应用对应的心跳配置信息, 其 中, 所述应用处理器发送所述应用对应的心跳配置信息后, 处于休眠状态; 所述处理器, 用于根据所述应用对应的心跳配置信息, 与所述应用对应的 应用服务器建立心跳连接,使所述应用处理器在所述应用无内容更新时不被唤 醒。
11、 根据权利要求 10所述的调制解调器, 其特征在于, 所述心跳配置信息 包括所述应用的初始心跳周期,
所述处理器, 用于当所述应用为至少两个应用时,将所述至少两个应用的 初始心跳周期与预设的时间门限值进行比较,当所述至少两个应用中的一个应 用的初始心跳周期不小于所述预设的时间门限值时,调整所述至少两个应用中 的一个应用的初始心跳周期,根据调整的初始心跳周期, 与所述至少两个应用 中的一个应用对应的应用服务器建立心跳连接。
12、 根据权利要求 11所述的调制解调器, 其特征在于,
所述处理器, 用于根据所述至少两个应用的初始心跳周期,确定最小初始 应用的初始心跳周期除以所述最小初始心跳周期取整,再乘以所述最小初始心 跳周期,确定调整后所述至少两个应用中的一个应用的心跳周期,根据调整后 的所述至少两个应用中的一个应用的心跳周期,对所述至少两个应用中的一个 应用的初始心跳周期进行调整。
13、 根据权利要求 10-12任一所述的调制解调器, 其特征在于,
所述处理器, 用于根据所述应用对应的心跳配置信息,触发向所述应用对 应的应用服务器发送在线提示消息;
所述输出设备, 用于向所述应用对应的应用服务器发送在线提示消息, 与 所述应用对应的应用服务器建立心跳连接。
14、 根据权利要求 13所述的调制解调器, 其特征在于,
所述输入设备, 还用于接收所述应用服务器发送的数据; 所述处理器,还用于根据接收的所述应用服务器发送的数据, 分析所述应 用服务器发送的数据是否为应用数据;
所述处理器和所述输出设备,还用于根据分析结果, 至少执行如下步骤中 的一种或多种:
所述处理器当分析出所述数据为所述应用服务器正常推送的应用数据时, 唤醒所述应用处理器, 所述输出设备向所述应用处理器发送所述应用数据。
所述处理器当分析出所述数据为所述应用服务器针对所述在线提示消息 反馈的异常应答数据时, 唤醒所述应用处理器, 所述输出设备向所述应用处理 用处理器的交互数据;
所述处理器当分析出所述数据为所述应用服务器针对所述在线提示消息 反馈的正常应答数据时, 丟弃所述正常应答数据, 不唤醒所述应用处理器, 所 述正常应答数据用于指示所述应用服务器已接收到所述在线提示消息。
15、 根据权利要求 10-14任一所述的调制解调器, 其特征在于,
所述输入设备,还用于接收所述应用处理器发送的应用对应的心跳配置信 息的删除指示信息,所述删除指示信息用于指示删除所述应用处理器指定应用 的心跳配置信息;
所述处理器,还用于根据所述接收的删除指示信息,删除所述应用处理器 指定应用的心跳配置信息。
16、 一种终端, 其特征在于, 包括: 调制解调器和应用处理器, 所述应用处理器用于向所述调制解调器发送应用对应的心跳配置信息,并 在发送所述应用对应的心跳配置信息后, 处于休眠状态, 并且所述应用处理器 在所述应用无内容更新时不被唤醒;
所述调制解调器用于接收应用处理器发送的应用对应的心跳配置信息,并 根据所述应用对应的心跳配置信息 ,与所述应用对应的应用服务器建立心跳连 接。
17、 根据权利要求 16所述的终端, 其特征在于, 当所述应用为至少两个应 用时,所述调制解调器还用于将所述至少两个应用的初始心跳周期与预设的时 间门限值进行比较,当所述至少两个应用中的一个应用的初始心跳周期不小于 所述预设的时间门限值时,调整所述至少两个应用中的一个应用的初始心跳周 期, 并根据调整的初始心跳周期, 与所述至少两个应用中的一个应用对应的应 用服务器建立心跳连接。
18、 根据权利要求 17所述的终端, 其特征在于, 所述调制解调器还用于根 据所述至少两个应用的初始心跳周期, 确定最小初始心跳周期,将所述不小于 以所述最小初始心跳周期取整,再乘以所述最小初始心跳周期,确定调整后所 述至少两个应用中的一个应用的心跳周期,并根据调整后的所述至少两个应用 中的一个应用的心跳周期,对所述至少两个应用中的一个应用的初始心跳周期 进行调整。
19、 根据权利要求 16-18任一所述的终端, 其特征在于,
所述调制解调器还用于根据所述应用对应的心跳配置信息,通过向所述应 用对应的应用服务器发送在线提示消息,与所述应用对应的应用服务器建立心 跳连接。
20、 根据权利要求 19所述的终端, 其特征在于, 之后,接收所述应用服务器发送的数据, 并根据接收的所述应用服务器发送的 数据, 分析所述应用服务器发送的数据是否为应用数据;
根据分析结果, 至少执行如下步骤中的一种或多种:
当分析出所述数据为所述应用服务器正常推送的应用数据时,唤醒所述应 用处理器, 并向所述应用处理器发送所述应用数据。
当分析出所述数据为所述应用服务器针对所述在线提示消息反馈的异常 应答数据时, 唤醒所述应用处理器, 并向所述应用处理器发送所述异常应答数 当分析出所述数据为所述应用服务器针对所述在线提示消息反馈的正常 应答数据时, 丟弃所述正常应答数据, 不唤醒所述应用处理器, 所述正常应答 数据用于指示所述应用服务器已接收到所述在线提示消息。
21、 根据权利要求 16-20任一所述的终端, 其特征在于,
所述调制解调器还用于接收应用处理器发送的应用对应的心跳配置信息 之后, 接收所述应用处理器发送的应用对应的心跳配置信息的删除指示信息, 所述删除指示信息用于指示删除所述应用处理器指定应用的心跳配置信息; 所述调制解调器还用于根据所述接收的删除指示信息,删除所述应用处理 器指定应用的心跳配置信息。
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