WO2017173899A1 - 一种终端、设备服务器、网络消息处理方法、系统及存储介质 - Google Patents

一种终端、设备服务器、网络消息处理方法、系统及存储介质 Download PDF

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Publication number
WO2017173899A1
WO2017173899A1 PCT/CN2017/074973 CN2017074973W WO2017173899A1 WO 2017173899 A1 WO2017173899 A1 WO 2017173899A1 CN 2017074973 W CN2017074973 W CN 2017074973W WO 2017173899 A1 WO2017173899 A1 WO 2017173899A1
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WIPO (PCT)
Prior art keywords
network message
terminal
application
network
device server
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Application number
PCT/CN2017/074973
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English (en)
French (fr)
Inventor
张树冲
钱勇
潘康
张舒兴
毛沙
Original Assignee
中兴通讯股份有限公司
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Publication of WO2017173899A1 publication Critical patent/WO2017173899A1/zh

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Classifications

    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F9/00Arrangements for program control, e.g. control units
    • G06F9/06Arrangements for program control, e.g. control units using stored programs, i.e. using an internal store of processing equipment to receive or retain programs
    • G06F9/46Multiprogramming arrangements
    • G06F9/48Program initiating; Program switching, e.g. by interrupt
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/72Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
    • H04M1/724User interfaces specially adapted for cordless or mobile telephones
    • H04M1/72403User interfaces specially adapted for cordless or mobile telephones with means for local support of applications that increase the functionality
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F9/00Arrangements for program control, e.g. control units
    • G06F9/06Arrangements for program control, e.g. control units using stored programs, i.e. using an internal store of processing equipment to receive or retain programs
    • G06F9/46Multiprogramming arrangements
    • G06F9/48Program initiating; Program switching, e.g. by interrupt
    • G06F9/4806Task transfer initiation or dispatching
    • G06F9/4843Task transfer initiation or dispatching by program, e.g. task dispatcher, supervisor, operating system
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L12/00Data switching networks
    • H04L12/28Data switching networks characterised by path configuration, e.g. LAN [Local Area Networks] or WAN [Wide Area Networks]
    • H04L12/46Interconnection of networks
    • H04L12/4641Virtual LANs, VLANs, e.g. virtual private networks [VPN]
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/72Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
    • H04M1/724User interfaces specially adapted for cordless or mobile telephones
    • H04M1/72448User interfaces specially adapted for cordless or mobile telephones with means for adapting the functionality of the device according to specific conditions
    • H04M1/72463User interfaces specially adapted for cordless or mobile telephones with means for adapting the functionality of the device according to specific conditions to restrict the functionality of the device
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/72Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
    • H04M1/724User interfaces specially adapted for cordless or mobile telephones
    • H04M1/72484User interfaces specially adapted for cordless or mobile telephones wherein functions are triggered by incoming communication events
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M11/00Telephonic communication systems specially adapted for combination with other electrical systems
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W68/00User notification, e.g. alerting and paging, for incoming communication, change of service or the like
    • H04W68/005Transmission of information for alerting of incoming communication

Definitions

  • the present disclosure relates to the field of network communications, and in particular, to a terminal, a device server, a network message processing method, a system, and a storage medium.
  • the current mainstream Android operating system is an open source operating system based on the LINUX kernel.
  • the operating system has a very significant feature: multi-user, multi-tasking.
  • Multi-user, multi-tasking operating systems have many benefits, but for handheld mobile devices, it seems a bit cumbersome. Because the more tasks you run, the more CPU and RAM you use. Therefore, for the majority of mobile phone users, the mobile phone hardware configuration on the market is getting higher and higher, but the mobile phone is not much faster, because the Android operating system background has been running a large number of applications, occupying the CPU of the mobile phone all the time. , RAM.
  • These applications may be built by mobile terminals, such as calls, text messages, music, etc., and some may be downloaded from official or unofficial channels; Whether the application is running or not, it is possible to receive information from the outside world; for example, the application that receives the call will receive a call from someone else, and the application will receive a text message sent by someone else.
  • the music application is also used. It may receive push messages from official song list recommendations. These messages are not received when the application is not started, and can only be received by the user after the application is started. Therefore, in order to ensure that these messages are not missed, many applications must remain running and remain running.
  • the resources in the mobile terminal are excessively occupied, resulting in the smoothness and stagnation of the mobile terminal during use; the fluency and the stagnation cause the user experience to be poor; how to utilize the high compatibility of the Android system.
  • the present disclosure provides a terminal, a device server, a network message processing method, a system, and a storage medium.
  • the related art requires that a terminal needs to process various network messages at any time and must open multiple applications, so that the terminal does not run smoothly, and the user experience is Poor question.
  • a network message processing method including:
  • the network message is notified on the terminal.
  • the receiving, by the terminal, the network message sent by the device server includes: receiving, by the base station, the network message sent by the device server by using the base station.
  • the network message is processed by the application.
  • the method further includes: when the user inputs a trigger instruction, launching an application associated with the network message, where the application is Network messages are processed.
  • the launching the application associated with the network message comprises: exiting another application of the same class as the application.
  • the application of the terminal is classified according to a preset rule, and only one application of the same type of application is run at the same time point.
  • the present disclosure further provides a network message processing method, including:
  • the device server receives the network message
  • the device server Sending, by the device server, the network message to a terminal, where the network message is used by the terminal to determine whether an application associated with the network message is running, where the application program associated with the network message includes An application capable of processing the network message; if not, notifying the network message on the terminal.
  • the method further includes: the device server sending the network message to the base station.
  • the method further includes: the device server receiving the network message from the base station, or the device server receiving the network message from another base station.
  • the sending, by the device server, the network message to the base station includes: sending the network message to the base station by using a tunnel link.
  • the tunnel link includes: a virtual scalable local area network tunnel, a protocol tunnel interconnected between networks, and a virtual private network tunnel.
  • the method further includes: encapsulating the network message according to a format of the tunnel link.
  • the present disclosure also provides a terminal, including:
  • a second receiving module configured to receive a network message sent by the device server
  • An application determining module configured to determine whether an application associated with the network message is running, wherein the application associated with the network message includes an application capable of processing the network message;
  • the notification module is configured to notify the network message on the terminal when the application determining module determines to be no.
  • the method further includes: a first processing module, configured to: when the application determining module determines to be YES, to cause the application to process the network message.
  • a first processing module configured to: when the application determining module determines to be YES, to cause the application to process the network message.
  • the method further includes a second processing module, the second processing module is configured to notify the network message on the terminal Thereafter, in the case where the user inputs a departure instruction, an application associated with the network message is activated to cause the application to process the network message.
  • the second processing module further includes an application exit unit, and the application exit unit is configured to exit other applications of the same class as the application when launching an application associated with the network message.
  • the method further includes a classification module, where the classification module is configured to classify the application of the terminal according to a preset rule, and only run one for the same type of application at the same time point.
  • the classification module is configured to classify the application of the terminal according to a preset rule, and only run one for the same type of application at the same time point.
  • the present disclosure further provides a device server, including:
  • a first receiving module configured to receive a network message
  • a message sending module configured to send a network message to the terminal, where the network message is used by the terminal to determine whether an application associated with the network message is running, where the application program associated with the network message includes An application capable of processing the network message; if not, notifying the network message on the terminal.
  • the message sending module includes: a message sending unit, configured to send the network message to the terminal by using a tunnel link.
  • the present disclosure further provides a network message processing system, including a device server and a base station, where the device server is configured to:
  • the network message being set to determine, by the terminal, whether an application associated with the network message is running, wherein the application associated with the network message includes capable of processing the network An application of the message; if not, notifying the network message on the terminal;
  • the base station is configured to forward the received network message to the terminal.
  • the system further includes a terminal, where the terminal is configured to:
  • the network message is notified by a preset processing unit.
  • the present disclosure also provides a non-transitory computer readable storage medium storing computer program instructions, when the one or more processors of the terminal execute the computer program instructions, the terminal executes a A network message processing method, the method comprising: receiving a network message sent by a device server; determining whether an application associated with the network message is running, wherein the application associated with the network message includes The application of the network message; if not, the network message is notified.
  • the present disclosure also provides a non-transitory computer readable storage medium storing computer program instructions, when the one or more processors of the device server execute the computer program instructions, the device server Performing a network message processing method, the method comprising: receiving a network message; sending the network message to a terminal, where the network message is used by the terminal to determine whether an application associated with the network message is running, wherein The application associated with the network message includes an application capable of processing the network message.
  • the present disclosure provides a terminal, a device server, a network message processing method, and a system.
  • the device server receives a network message, and sends the network message to the terminal. If the associated application is not started in the terminal, the terminal accesses the network. The message is notified, so that the application that does not need to run the association can receive the network message in time, and the terminal does not need to start too many applications, thereby saving the hardware resources of the terminal, improving the user experience, and the performance of the terminal hardware is exhausted. Possible play.
  • FIG. 1 is a schematic diagram of a network message processing procedure in the related art
  • FIG. 2 is a schematic diagram of a network message processing procedure in various embodiments of the present disclosure
  • FIG. 3 is a flowchart of a network message processing method according to Embodiment 1 of the present disclosure
  • FIG. 4 is a flowchart of a network message processing method according to Embodiment 2 of the present disclosure.
  • FIG. 5 is a schematic structural diagram of a device server according to Embodiment 3 of the present disclosure.
  • FIG. 6 is a schematic structural diagram of a terminal according to Embodiment 4 of the present disclosure.
  • FIG. 7 is a flowchart of a network message processing method according to Embodiment 5 of the present disclosure.
  • the idea of the present invention is that the network message that is originally sent to the terminal is received by the device server and encapsulated by the base station, and then forwarded to the terminal by the base station, and the terminal can pass the preset processing unit even if the application associated with the network message is not running.
  • the network message is reminded, so that the associated network message cannot be known because the associated application is not started in the terminal, and the terminal does not need to start too many applications, thereby saving the hardware resources of the terminal and making the performance of the terminal hardware. Got it as much as possible.
  • FIG. 1 shows a process of processing a network message in the related art.
  • a network message corresponding to an application in the terminal 102 the reception is performed by the base station 101, that is, the base station 101 will be in the terminal 102.
  • the network message corresponding to the application is sent to the terminal 102. Since the application in the terminal 102 cannot directly receive the network message when it is not running, as shown in FIG. 2, FIG. 2 shows a network message processing procedure in various embodiments of the present invention: in this embodiment, the base station
  • the network message sent by 101 is sent to the device server 20; after receiving the network message related to a terminal 30, the device server 20 parses and encapsulates the network message to be in compliance with the device server 20 and the base station 101.
  • the network message of the transmission format of the predetermined communication link is transmitted to the base station 101 via the communication link, and then transmitted to the terminal 30 by the base station 101.
  • the device server 20 herein may be provided by the manufacturer of the terminal, and the communication is inseparable from the base stations of the respective operators. Therefore, the manufacturer needs to establish a tunnel link between the device server 20 and the base station to enable the network server to receive the network message. It can be transmitted to the base station 101 through a tunnel link and transmitted by the base station 101 to the terminal 30.
  • This embodiment provides a network message processing method. Referring to FIG. 3, the method includes:
  • the device server 20 receives a network message.
  • the device server 20 sends a network message to the terminal 30.
  • the network message sent by the sender is forwarded by the base station 101; in this embodiment, the network message is sent to the device server 20 via the base station 101.
  • the device server 20 may receive the network message from the base station 101, or may receive a network message from another base station.
  • the base station that sends the network message and the base station that receives the network message may be the same base station, which may be determined according to a specific situation.
  • the network message is typically processed by the base station closest to the device server 20.
  • the network message is sent from the device server 20 to the base station 101 through the tunnel link, that is, the communication link Includes tunnel links.
  • Tunneling is a way of passing data between networks by using the infrastructure of the Internet.
  • the data (or load) passed using the tunnel can be a data frame or packet of a different protocol.
  • the tunneling protocol repackages the data frames or packets of other protocols and sends them through the tunnel.
  • the new data frame header provides routing information to pass the encapsulated payload data over the Internet.
  • the tunnel link between the device server 20 and the base station 101 may be a plurality of tunnel links, such as an IP (Internet Protocol) protocol, a VPN (Virtual Private Network) tunnel, or a VXLAN. (Virtual Extensible LAN, tunnels, tunnels, etc.).
  • VXLAN is an overlay (overlay) network technology, which uses MAC (Media Access Control) in UDP (User Datagram Protocol) to encapsulate 50B (bytes). Encapsulating the packet header, VXLAN provides a capability to overlay the Layer 2 network on the Layer 3 network.
  • the VNI Visual Networking Index
  • Sub-interface VLAN Virtual Local Area Network
  • VXLAN is a UDP encapsulation that can traverse a three-layer network and has better scalability than VLANs, which removes technical obstacles for information transmission in the network.
  • the tunnel link may also include other customized tunnel link formats available in the local area network, which are characterized in that they cannot be connected with other devices, but their own devices are mutually recognized and processed. No problem, the tunnel link is only one method in this embodiment, whether it is a general, extensive tunnel link, or customized, and can be applied in this embodiment.
  • the network message should also be encapsulated into the format of the corresponding tunnel link, so that the network message can be smoothly transmitted to the base station 101 through the tunnel link.
  • Each terminal 30 is manufactured by a manufacturer; at the same time, optionally, the device server 20 is also in this embodiment. It is provided by the manufacturer. Therefore, the device server 20 receives network messages of more than one terminal 30 during operation. Therefore, the device server 20 needs to distinguish and identify each terminal 30, that is, the device server 20 needs to send a network message to the corresponding device.
  • the terminal 30 can not be erroneous; at this time, each terminal 30 can be associated according to the unique identification code on the terminal 30; optionally, the unique identification code in this embodiment is the MAC address identifier of the terminal 30, and each The MAC address identifiers of the terminals 30 are all different, and it is ensured that the correspondence relationship with each terminal 30 is determined without error.
  • the unique identifier of the other terminal 30, such as IMEI (International Mobile Equipment Identity), may be utilized, but it can only be distinguished from mobile devices (especially mobile phones) and cannot be widely applied to all terminals. 30, has its limitations.
  • This embodiment provides a network message processing method. Referring to FIG. 4, the method includes:
  • the terminal 30 receives the network message sent by the device server 20;
  • the terminal 30 determines whether an application associated with the network message is running.
  • the terminal 30 receives the network message sent by the device server 20, usually by the base station 101; that is, the device server 30 transmits the network message to the base station 101, and the base station 101 transmits the network message to the terminal 30.
  • the terminal 30 After receiving the network message forwarded by the base station 101, the terminal 30 first needs to determine whether the application associated with the network message is running; the application associated with the network message refers to the network message that the network message can be processed by the application. If the network message is a short message, the associated application is a short message, and if the network message is a mail, the associated application is a mailbox; some network messages have more than one associated application, at this time, as long as it is determined Is there any associated application running?
  • the terminal 30 determines that the application associated with the network message is running, the network message is directly processed by the application, and the processing process depends on the network message, and generally includes starting from the message reminder, displaying, and viewing the details. Or the user's reply, generally these operations are related to the user's instructions.
  • the network message is notified on the terminal 30; the form of the notification is not particularly limited herein.
  • the notification form on the existing terminal 30 may include a voice reminder, a reminder light reminder, or a display on the screen; the degree of the notification of the network message may be a simple notification of the application associated with the network message.
  • the user can know which application the network message corresponds to; the specific content of the network message can also be included in the notification, and the user can operate the terminal 30 according to the specific content of the network message.
  • the preset processing unit is a network message on the terminal 30 for notifying those applications that are not running.
  • the notification condition in this embodiment is not notified when the application associated with the network message is not running, but the application associated with the network message can still be notified;
  • the notification means on the terminal in the present application is still applicable, that is, the notification means in the related art can be adopted on the premise that the application associated with the network message is running.
  • the user After the preset processing unit notifies the network message, the user initiates a triggering instruction to the terminal 30 according to the network message, that is, the user intends to start the application associated with the network message, and after receiving the triggering instruction, the terminal 30 The application is launched and the network message is processed by the application. Since the preset processing unit notifies the network message, the user may further decide whether to send a trigger instruction for starting the associated application according to the content of the notification, such as the network message is an unimportant push message, like the weather, a short News, an advertisement message, etc., or any other network message that the user does not think is important, the user can ignore the network message without opening the associated application.
  • a trigger instruction for starting the associated application such as the network message is an unimportant push message, like the weather, a short News, an advertisement message, etc., or any other network message that the user does not think is important, the user can ignore the network message without opening the associated application.
  • the time to exit can be either before starting the application, or concurrently with launching the application, or even starting the application. After that, the exit is a complete exit.
  • the exited application no longer occupies the resources of the terminal 30, but releases the resources for use by other applications. In this way, the CPU, RAM resources, and the like of the terminal 30 can have a relatively large degree of flexible use, and the terminal 30 does not run smoothly due to running too many applications at the same time, thereby affecting the user experience.
  • the application of the terminal 30 is classified according to a preset rule, and only one application of the same type of application is run at the same time point.
  • all applications need to be divided into at least two categories; the classification rules are not fixed, and can be classified according to the respective characteristics of the application, such as the application that comes with the terminal 30 as a class, and the user downloads itself.
  • the application is classified as another class; it can also be classified according to the user's preference, and the classified categories and classes are optional and have great flexibility.
  • the device server 20 establishes a corresponding relationship with each terminal 30, that is, each terminal 30 has its own independent correspondence in the device server 20; the corresponding relationship here is mainly when the device server 20 receives the network message.
  • the network message is sent to the corresponding terminal 30.
  • the MAC address identifier of the terminal 30 is used as the corresponding identifier of the terminal 30 at the device server 20, and the terminal 30 corresponding to the network message can be identified according to the MAC address identifier. .
  • the sender of the network message needs to establish contact with the destination terminal 30, and the network message needs to be sent to the base station 101 of the operator, and the message is transmitted through the base station 101; the base station 101 sends the network message to the device server.
  • the device server 20 packages and encapsulates the network message; at this time, the device server 20 is equivalent to a network message sending source, and the device server 20 needs to associate the target terminal 30 with the application message.
  • the base station 101 which is transmitted to the operator, transmits a network message to the terminal 30 through the base station 101.
  • the application acts as an application running in the foreground; at this time, a direct communication link between the terminal 30 and the base station 101 can be established, so that the network message of the launched application can be directly
  • the base station 101 transmits to the terminal 30. Since the associated application on the terminal 30 is running, the network message can be successfully received and processed accordingly.
  • Tunneling is a way of passing data between networks by using the infrastructure of the Internet.
  • the data (or load) passed using the tunnel can be a data frame or packet of a different protocol.
  • the number of other protocols in the tunneling protocol Repackaged according to frames or packets and then sent through the tunnel.
  • the new data frame header provides routing information to pass the encapsulated payload data over the Internet.
  • the tunnel link between the device server 20 and the base station 101 may be a plurality of tunnel links, such as an IP tunnel, a VPN tunnel, or a VXLAN tunnel.
  • VXLAN is an overlay network technology, which uses MAC in UDP to encapsulate the packet headers of 50B (bytes).
  • VXLAN provides a capability to overlay the Layer 2 network on the Layer 3 network.
  • the VNI in the VXLAN Header has 24 bits, which is much larger than the VLAN value of the 4096 common sub-interface. This makes it possible to assign an ID to each smart mobile device.
  • VXLAN is a UDP encapsulation that can traverse a three-layer network and has better scalability than VLANs, which removes technical obstacles for information transmission in the network.
  • the tunnel link may also include other customized tunnel link formats available in the local area network, which are characterized in that they cannot be connected with other devices, but their own devices are mutually recognized and processed. No problem, the tunnel link is only one method in this embodiment, whether it is a general, extensive tunnel link, or customized, and can be applied in this embodiment.
  • the present embodiment provides only a network message processing method, and does not mean that the terminal 30 can only perform the application running, and the user can still actively launch the application, which is related to the user.
  • the usual operation is not contrary.
  • This embodiment provides a device server. Referring to FIG. 5, the method includes:
  • the first receiving module 201 is configured to receive a network message.
  • the message sending module 203 sends the network message to the terminal 30.
  • the network message sent by the sending end is forwarded by the base station 101.
  • the message encapsulating module 202 is further configured to encapsulate the network message; the network message is sent to the device server 20 through the base station 101, and the device server 20 The network message is encapsulated and then transmitted to the terminal 30 via the base station 101.
  • the device is sent from the device server 20 to the terminal 30, and needs to be forwarded by the base station 101.
  • the message sending module 203 includes a message sending unit, configured to send the network message to the terminal through the base station through the tunnel link.
  • the device is sent from the device server 20 to the base station 101.
  • the communication link in this embodiment is a tunnel link, and is used to send network messages from the device server 20 to the base station 101 through a tunnel link.
  • Tunneling is a way of passing data between networks by using the infrastructure of the Internet.
  • the data (or load) passed using the tunnel can be a data frame or packet of a different protocol.
  • the tunneling protocol repackages the data frames or packets of other protocols and sends them through the tunnel.
  • the new data frame header provides routing information to pass the encapsulated payload data over the Internet.
  • the tunnel link between the device server 20 and the base station 101 may be a plurality of tunnel links, such as an IP tunnel, a VPN tunnel, or a VXLAN tunnel.
  • VXLAN is an overlay network technology, which uses MAC in UDP to encapsulate the packet headers of 50B (bytes).
  • VXLAN provides a capability to overlay the Layer 2 network on the Layer 3 network.
  • the VNI in the VXLAN Header has 24 bits, which is much larger than the VLAN value of the 4096 common sub-interface. This makes it possible to assign an ID to each smart mobile device.
  • VXLAN is a UDP encapsulation that can traverse a three-layer network and has better scalability than VLANs, which removes technical obstacles for information transmission in the network.
  • the tunnel link may also include other customized tunnel link formats available in the local area network, which are characterized in that they cannot be connected with other devices, but their own devices are mutually recognized and processed. No problem, the tunnel link is only one method in this embodiment, whether it is a general, extensive tunnel link, or customized, and can be applied in this embodiment.
  • the network message is encapsulated by the message encapsulating module 202 into the format of the corresponding tunnel link, so that the network message can be smoothly transmitted to the base station 101 through the tunnel link.
  • Each terminal 30 is manufactured by a manufacturer; at the same time, optionally, the device server 20 is also provided by the manufacturer in this embodiment, and therefore, the device server 20 receives network messages of more than one terminal 30 during operation,
  • the device server 20 needs to distinguish and identify each terminal 30, that is, the device server 20 needs to send a network message to the corresponding terminal 30 without error; at this time, each terminal 30 can be corresponding according to the unique identification code on the terminal 30.
  • the correspondence between each terminal 30 is established according to the MAC address identifier of each terminal 30; the MAC address identifier of each terminal 30 is different, and the correspondence between each terminal 30 and each terminal 30 can be ensured without There will be an error.
  • This embodiment provides a terminal. Referring to FIG. 6, the method includes:
  • the second receiving module 301 is configured to receive a network message sent by the device server 20;
  • the application determining module 302 is configured to determine whether an application associated with the network message is running.
  • the notification module 304 is configured to notify the network message on the terminal when the application determining module 302 determines to be no.
  • the terminal 30 receives the network message sent by the device server 20, usually by the base station 101; that is, the device server 30 transmits the network message to the base station 101, and the base station 101 transmits the network message to the terminal 30.
  • the second receiving module 301 After receiving the network message forwarded by the base station 101, the second receiving module 301 first needs to determine, by the application determining module 302, whether the application associated with the network message is running; the application associated with the network message refers to the network message is What application can handle network messages, such as network messages are short messages, the associated application is a short message, and if the network message is a mail, the associated application is a mailbox; some network messages are not related to the application. One, at this time, just determine if any of them are associated The program is running.
  • the first processing module 303 causes the application to process the network message, and the processing process depends on the network message, and generally includes a message reminder. Start, to display, to view details, or to the user's response, generally these operations are related to the user's instructions.
  • the form of the notification is not particularly limited herein.
  • the notification form on the existing terminal 30 may include a voice reminder, a reminder light reminder, or a display on the screen; the degree of notification of the network message by the notification module 304 may be simply associated with the network message.
  • the application can notify the user that the network message corresponds to which application; the specific content of the network message can also be included in the notification, and the user can operate the terminal 30 according to the specific content of the network message.
  • the notification condition of the network message in this embodiment is notified only when the application associated with the network message is not running, but the application associated with the network message can still be notified if it is running.
  • the notification logic on the terminal in the related art is still applicable to the terminal in the present application, that is, the notification logic in the related art can be adopted on the premise that the application associated with the network message is running.
  • the user After the preset processing unit notifies the network message, the user initiates a triggering instruction to the terminal 30 according to the network message, that is, the user intends to start the application associated with the network message, and optionally includes the second processing module 305. And configured to receive a trigger instruction of the user, start an application associated with the network message, and enable the application to process the network message. Since the preset processing unit notifies the network message, the user may further decide whether to send a trigger instruction for starting the associated application according to the content of the notification, such as the network message is an unimportant push message, like the weather, a short News, an advertisement message, etc., or any other network message that the user does not think is important, the user can ignore the network message without opening the associated application.
  • the network message is an unimportant push message, like the weather, a short News, an advertisement message, etc., or any other network message that the user does not think is important, the user can ignore the network message without opening the associated application.
  • the second processing module 305 further includes an application exit unit 3051, for exiting an application of the same class as the application when starting the application associated with the network message; the timing of exiting may be starting the application Previously, or at the same time as launching the application, even after launching the application; the exit here is a complete exit, the exited application no longer occupies the resources of the terminal 30, and the resources are released for other applications.
  • the program is used. In this way, the CPU, RAM resources, and the like of the terminal 30 can have a relatively large degree of flexible use, and the terminal 30 does not run smoothly due to running too many applications at the same time, thereby affecting the user experience.
  • a classification module is further included for classifying the applications in the terminal 30, and only one of the same type of applications is run at the same time.
  • all applications need to be divided into at least two categories; the classification rules are not fixed, and can be classified according to the respective characteristics of the application, such as the application that comes with the terminal 30 as a class, and the user downloads itself.
  • Application is classified as another One type; it can also be classified according to the user's preference.
  • the classified categories and classes are optional and have great flexibility.
  • the application acts as an application running in the foreground; at this time, a direct communication link between the terminal 30 and the base station 101 can be established, so that the network message of the launched application can be directly
  • the base station 101 transmits to the terminal 30. Since the associated application on the terminal 30 is running, the network message can be successfully received and processed accordingly.
  • Tunneling is a way of passing data between networks by using the infrastructure of the Internet.
  • the data (or load) passed using the tunnel can be a data frame or packet of a different protocol.
  • the tunneling protocol repackages the data frames or packets of other protocols and sends them through the tunnel.
  • the new data frame header provides routing information to pass the encapsulated payload data over the Internet.
  • the tunnel link between the device server 20 and the base station 101 may be a plurality of tunnel links, such as an IP tunnel, a VPN tunnel, or a VXLAN tunnel.
  • VXLAN is an overlay network technology that uses MAC in UDP for encapsulation. A total of 50B encapsulates the packet header. VXLAN provides a capability to overlay the Layer 2 network on the Layer 3 network. VXLAN Header The VNI has 24 bits, and the number is much larger than the 4096 common sub-interface VLAN value, which makes it possible to assign an ID to each smart mobile device. Moreover, VXLAN is a UDP encapsulation that can traverse a three-layer network and has better scalability than VLANs, which removes technical obstacles for information transmission in the network.
  • the tunnel link may also include other customized tunnel link formats available in the local area network, which are characterized in that they cannot be connected with other devices, but their own devices are mutually recognized and processed. No problem, the tunnel link is only one method in this embodiment, whether it is a general, extensive tunnel link, or customized, and can be applied in this embodiment.
  • network message processing method in this embodiment is not limited to the Android operating system, and is applicable to other operating systems, and is not particularly limited.
  • the present embodiment provides only a network message processing method, and does not mean that the terminal 30 can only perform the application running, and the user can still actively launch the application, which is related to the user.
  • the usual operation is not contrary.
  • This embodiment provides a network message processing method. Referring to FIG. 7, the method includes:
  • the device server 20 receives the network message.
  • the device server 20 sends a network message to the base station 101;
  • the base station 101 forwards the received network message to the terminal 30;
  • the network message sent by the sender is forwarded by the base station 101.
  • the network message is sent to the device server 20 through the base station 101, and the device server 20 encapsulates the network message, and then The base station 101 transmits to the terminal 30.
  • the network message is transmitted from the device server 20 to the base station 101 through the tunnel link.
  • Tunneling is a way of passing data between networks by using the infrastructure of the Internet.
  • the data (or load) passed using the tunnel can be a data frame or packet of a different protocol.
  • the tunneling protocol repackages the data frames or packets of other protocols and sends them through the tunnel.
  • the new data frame header provides routing information to pass the encapsulated payload data over the Internet.
  • the tunnel link between the device server 20 and the base station 101 may be a plurality of tunnel links, such as an IP tunnel, a VPN tunnel, or a VXLAN tunnel.
  • VXLAN is an overlay network technology, which uses MAC in UDP to encapsulate the packet headers of 50B (bytes).
  • VXLAN provides a capability to overlay the Layer 2 network on the Layer 3 network.
  • the VNI in the VXLAN Header has 24 bits, which is much larger than the VLAN value of the 4096 common sub-interface. This makes it possible to assign an ID to each smart mobile device.
  • VXLAN is a UDP encapsulation that can traverse a three-layer network and has better scalability than VLANs, which removes technical obstacles for information transmission in the network.
  • the tunnel link may also include other customized tunnel link formats available in the local area network, which are characterized in that they cannot be connected with other devices, but their own devices are mutually recognized and processed. No problem, the tunnel link is only one method in this embodiment, whether it is a general, extensive tunnel link, or customized, and can be applied in this embodiment.
  • the network message should also be encapsulated into the format of the corresponding tunnel link to obtain a network message, so that the network message can be smoothly transmitted to the base station 101 through the tunnel link.
  • Each terminal 30 is manufactured by a manufacturer; at the same time, optionally, the device server 20 is also provided by the manufacturer in this embodiment, and therefore, the device server 20 receives network messages of more than one terminal 30 during operation,
  • the device server 20 needs to distinguish and identify each terminal 30, that is, the device server 20 needs to send a network message to the corresponding terminal 30 without error; at this time, each terminal 30 can be corresponding according to the unique identification code on the terminal 30.
  • the unique identification code in this embodiment is the MAC address identifier of the terminal 30, and the MAC address identifier of each terminal 30 is different, and the correspondence between each terminal 30 and the terminal 30 can be ensured without error.
  • the unique identifier of the other terminal 30, such as IMEI (International Mobile Equipment Identity), may be utilized, but it can only be distinguished from mobile devices (especially mobile phones) and cannot be widely applied to all terminals. 30, has its limitations.
  • the method includes:
  • the terminal 30 receives the encapsulated network message sent by the base station 101.
  • the terminal 30 determines whether an application associated with the network message is running.
  • the terminal 30 After receiving the network message forwarded by the base station 101, the terminal 30 first needs to determine whether the application associated with the network message is running; the application associated with the network message refers to the network message that the network message can be processed by the application. If the network message is a short message, the associated application is a short message, and if the network message is a mail, the associated application is a mailbox; some network messages have more than one associated application, at this time, as long as it is determined Is there any associated application running?
  • the application associated with the network message is running at this time, the network message is directly processed by the application, and the process is determined according to the network message, generally starting from the message reminder, to the display, and the details View, or a user's reply, usually these actions are related to the user's instructions.
  • the network message is notified by using a preset processing unit, that is, the preset processing unit
  • the network message is notified on the terminal 30; the form of the notification is not particularly limited herein, and the notification form on the existing terminal 30 includes a voice reminder, a reminder light reminder, or a display on the screen; the notification unit
  • the degree of the notification of the network message may be simple to notify the application associated with the network message, the user may know which application the network message corresponds to; and may also include the specific content of the network message in the notification. The user can operate the terminal 30 according to the specific content of the network message.
  • the preset processing unit is a network message on the terminal 30 for notifying those applications that are not running.
  • the user After the preset processing unit notifies the network message, the user initiates a triggering instruction to the terminal 30 according to the network message, that is, the user intends to start the application associated with the network message, and after receiving the triggering instruction, the terminal 30 The application is launched and the network message is processed by the application. Since the preset processing unit notifies the network message, the user may further decide whether to send a trigger instruction for starting the associated application according to the content of the notification, such as the network message is an unimportant push message, like the weather, a short News, an advertisement message, etc., or any other network message that the user does not think is important, the user can ignore the network message without opening the associated application.
  • a trigger instruction for starting the associated application such as the network message is an unimportant push message, like the weather, a short News, an advertisement message, etc., or any other network message that the user does not think is important, the user can ignore the network message without opening the associated application.
  • the application of the same class as the application should be exited; the time of exiting may be before starting the application, or concurrently with launching the application, or even It is also possible to start the application; the exit here is a complete exit, and the exited application no longer occupies the resources of the terminal 30, but releases the resources for use by other applications.
  • the CPU, RAM resources, and the like of the terminal 30 can have a relatively large degree of flexible use, and the terminal 30 does not run smoothly due to running too many applications at the same time, thereby affecting the user experience.
  • the applications in the terminal 30 are classified, wherein each type of application runs at most one; in general, all applications need to be divided into at least two categories; The rules are not fixed. They can be classified according to the characteristics of the application. For example, the application that comes with the terminal 30 is used as one class, and the application downloaded by the user is classified into another class; Classification, classification of categories and number of classes are optional and have great flexibility.
  • the sender of the network message needs to establish contact with the destination terminal 30, and the network needs to be
  • the network message is sent to the base station 101 of the operator, and the message is transmitted through the base station 101; the base station 101 sends the network message to the device server 20; after receiving the network message, the device server 20 packages and encapsulates the network message;
  • the server 20 is equivalent to a source of network messages.
  • the device server 20 needs to send an application message to the base station 101 of the operator, and the base station 101 sends the network message to the terminal 30.
  • the application acts as an application running in the foreground; at this time, a direct communication link between the terminal 30 and the base station 101 can be established, so that the network message of the launched application can be directly
  • the base station 101 transmits to the terminal 30. Since the associated application on the terminal 30 is running, the network message can be successfully received and processed accordingly.
  • network message processing method in this embodiment is not limited to the Android operating system, and is applicable to other operating systems, and is not particularly limited.
  • the present embodiment provides only a network message processing method, and does not mean that the terminal 30 can only perform the application running, and the user can still actively launch the application, which is related to the user.
  • the usual operation is not contrary.
  • This embodiment provides a network message processing system, including a device server 20 and a base station 101.
  • the device server 20 is configured to:
  • the device server 20 sends a network message to the base station 101;
  • the base station 101 is configured to forward the received network message to the terminal 30.
  • the network message sent by the sending end is forwarded by the base station 101.
  • the message sending module 203 includes a message sending unit, configured to send the network message to the terminal through the base station through the tunnel link.
  • the network message is sent to the device server 20 via the base station 101.
  • the device server 20 encapsulates the network message and then sends it to the terminal 30 via the base station 101.
  • the device is sent from the device server 20 to the base station 101.
  • the communication link in this embodiment includes a tunnel link, and the network message is sent from the device server 20 to the base station 101 through a tunnel link.
  • Tunneling is a way of passing data between networks by using the infrastructure of the Internet.
  • the data (or load) passed using the tunnel can be a data frame or packet of a different protocol.
  • the tunneling protocol repackages the data frames or packets of other protocols and sends them through the tunnel.
  • the new data frame header provides routing information to pass the encapsulated payload data over the Internet.
  • the tunnel link between the device server 20 and the base station 101 may be a plurality of tunnel links, such as an IP tunnel, a VPN tunnel, or a VXLAN tunnel.
  • VXLAN is an overlay network technology, which uses MAC in UDP to encapsulate the packet headers of 50B (bytes).
  • VXLAN provides a Layer 2 network overlay on the third layer.
  • the ability of the network, VNI in the VXLAN Header has 24bit, the number is far greater than the VLAN value of 4096 ordinary sub-interfaces, so it is possible to assign an ID to each smart mobile device.
  • VXLAN is a UDP encapsulation that can traverse a three-layer network and has better scalability than VLANs, which removes technical obstacles for information transmission in the network.
  • the tunnel link may also include other customized tunnel link formats available in the local area network, which are characterized in that they cannot be connected with other devices, but their own devices are mutually recognized and processed. No problem, the tunnel link is only one method in this embodiment, whether it is a general, extensive tunnel link, or customized, and can be applied in this embodiment.
  • the network message should also be encapsulated into the format of the corresponding tunnel link. Therefore, in this embodiment, the network message is encapsulated into a tunnel link format, and the network is obtained. The message is such that the network message can be smoothly transmitted to the base station 101 through the tunnel link.
  • Each terminal 30 is manufactured by a manufacturer; at the same time, optionally, the device server 20 is also provided by the manufacturer in this embodiment, and therefore, the device server 20 receives network messages of more than one terminal 30 during operation,
  • the device server 20 needs to distinguish and identify each terminal 30, that is, the device server 20 needs to send a network message to the corresponding terminal 30 without error; at this time, each terminal 30 can be corresponding according to the unique identification code on the terminal 30.
  • the correspondence between each terminal 30 is established according to the MAC address identifier of each terminal 30; the MAC address identifier of each terminal 30 is different, and the correspondence between each terminal 30 and each terminal 30 can be ensured without There will be an error.
  • the network message processing system in this embodiment further includes a terminal 30, configured to:
  • the network message is notified on the terminal.
  • the application associated with the network message refers to a network message that the network message can be processed by the application, such as If the network message is a short message, the associated application is a short message, and if the network message is a mail, the associated application is a mailbox; some network messages have more than one associated application. At this time, it is only necessary to determine whether there is any Any associated application is running.
  • the network message is processed by the application, and the processing process depends on the network message, generally starting from the message reminder, to the display, the detailed view, or The user's reply, generally these operations are related to the user's instructions.
  • the network message is notified by the preset processing unit; the form of the notification is not particularly special here. Limited, the existing notification form on the terminal 30, including a voice reminder, a reminder light reminder or on the screen
  • the display may be in the form of a display; the degree of notification of the notification message to the network message may be simple to notify the application associated with the network message, the user may know which application the network message corresponds to; The specific content of the network message is included, and the user can operate the terminal 30 according to the specific content of the network message.
  • the preset processing unit is a network message on the terminal 30 for notifying those applications that are not running.
  • the user After the preset processing unit notifies the network message, the user initiates a trigger instruction to the terminal 30 according to the network message, that is, the user intends to start the application associated with the network message, and then optionally, receives the trigger instruction of the user, and starts.
  • the application associated with the network message causes the application to process network messages. Since the preset processing unit notifies the network message, the user may further decide whether to send a trigger instruction for starting the associated application according to the content of the notification, such as the network message is an unimportant push message, like the weather, a short News, an advertisement message, etc., or any other network message that the user does not think is important, the user can ignore the network message without opening the associated application.
  • the second processing module 5 further includes an application exiting unit 51, for exiting an application of the same class as the application when launching the application associated with the network message; the timing of exiting may be starting the application Previously, or at the same time as launching the application, even after launching the application; the exit here is a complete exit, the exited application no longer occupies the resources of the terminal 30, and the resources are released for other applications.
  • the program is used. In this way, the CPU, RAM resources, and the like of the terminal 30 can have a relatively large degree of flexible use, and the terminal 30 does not run smoothly due to running too many applications at the same time, thereby affecting the user experience.
  • the applications in the terminal 30 are classified, wherein each type of application runs at most one; in general, all applications need to be divided into at least two categories; The rules are not fixed. They can be classified according to the characteristics of the application. For example, the application that comes with the terminal 30 is used as one class, and the application downloaded by the user is classified into another class; Classification, classification of categories and number of classes are optional and have great flexibility.
  • the application acts as an application running in the foreground; at this time, a direct communication link between the terminal 30 and the base station 101 can be established, so that the network message of the launched application can be directly
  • the base station 101 transmits to the terminal 30. Since the associated application on the terminal 30 is running, the network message can be successfully received and processed accordingly.
  • network message processing method in this embodiment is not limited to the Android operating system, and is applicable to other operating systems, and is not particularly limited.
  • the present embodiment provides only a network message processing method, and does not mean that the terminal 30 can only perform the application running, and the user can still actively launch the application, which is related to the user.
  • the usual operation is not contrary.
  • Embodiments of the present invention also provide a non-transitory computer readable storage medium having stored therein computer program instructions for executing a network message when one or more processors of a terminal execute the computer program instructions Processing method, the method comprising: receiving a network message sent by a device server; determining whether an application associated with the network message is running, wherein the application associated with the network message includes a network message capable of processing the network message The application; if not, notifying the network message.
  • Embodiments of the present invention also provide a non-transitory computer readable storage medium having stored therein computer program instructions that, when one or more processors of a device server execute the computer program instructions, perform a a network message processing method, the method comprising: receiving a network message; sending the network message to a terminal, where the network message is used by the terminal to determine whether an application associated with the network message is running, wherein The application associated with the network message includes an application capable of processing the network message.
  • the disclosure is applicable to the field of network communication, and can realize receiving network messages in time without using an application running association, and the terminal does not need to start too many applications, thereby saving hardware resources of the terminal, improving user experience, and obtaining performance of the terminal hardware. Play as much as possible.

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Abstract

本公开提供了一种终端、设备服务器、网络消息处理方法、系统及存储介质,设备服务器接收网络消息,并将所述网络消息发送给终端,若终端中未启动关联的应用程序,则终端对所述网络消息进行通知,从而实现了无须运行关联的应用程序也能及时接收网络消息,终端不必启动过多的应用程序,因此节约了终端的硬件资源,提高了用户体验,使终端硬件的性能得到了尽可能的发挥。

Description

一种终端、设备服务器、网络消息处理方法、系统及存储介质 技术领域
本公开涉及网络通信领域,尤其涉及一种终端、设备服务器、网络消息处理方法、系统及存储介质。
背景技术
当前国际国内市场,移动终端竞争异常激烈,大有得移动终端,尤其是得智能手机市场得通信天下之势。国际国内主流移动终端设备制造商(主要指手机市场),都陷入拼硬件的混战中。
目前市场主流的安卓操作系统是基于LINUX内核发展而成的开源操作系统,该操作系统有个非常显著的特点:多用户、多任务。多用户、多任务的操作系统有很多好处,但是对于掌上移动设备,倒显得有些累赘。因为运行的任务越多,占用的CPU运算与RAM的大小就越多。所以,对于广大手机用户一族会发现,市场上的手机硬件配置越来越高,但是手机并没有快了多少,因为,安卓操作系统后台一直在运行着大量的应用程序,无时无刻不在占用手机的CPU、RAM。
在一个移动终端上存在若干个应用程序,这些应用程序可能是移动终端自带的,如通话、短信、音乐等应用程序,还有一些可能是用户从官方或非官方的渠道下载的;不论这些应用程序是否在运行中,都有可能接收来自外界的信息;例如,通话这个应用程序会接收到别人所打来的电话,短信这个应用程序会接收到别人所发送的短信,音乐这个应用程序也可能接收到来自官方的歌单推荐等推送消息。而这些消息,在应用程序未启动时是无法接收到的,只有在应用程序启动后用户才能接收到,因此,为了保证不错过这些消息,很多应用程序都得保持运行状态,保持运行状态则会导致移动终端中的资源被过多的占用,从而导致移动终端在使用过程中的不流畅、卡顿;而不流畅、卡顿就会导致用户体验变差;如何在利用安卓系统高兼容性的同时,也要能使手机运行流畅,且无需很高的手机CPU、RAM等配置,成为一个亟需解决的问题。
发明内容
本公开提供了一种终端、设备服务器、网络消息处理方法、系统及存储介质,解决了相关技术中终端需要随时处理各种网络消息而必须开启多个应用程序,使得终端运行不流畅,用户体验差的问题。
为了解决上述技术问题,本公开提供了一种网络消息处理方法,包括:
终端接收设备服务器发送的网络消息;
所述终端判断与所述网络消息关联的应用程序是否正在运行,其中,与所述网络消息关联的所述应用程序包括能处理该网络消息的应用程序;
若否,则在所述终端上通知所述网络消息。
可选的,所述终端接收设备服务器发送的网络消息包括:所述终端通过基站接收所述设备服务器发送的网络消息。
可选地,若是,则由所述应用程序对所述网络消息进行处理。
可选地,在所述终端上通知所述网络消息之后,所述方法还包括:在用户输入触发指令的情况下,启动与所述网络消息关联的应用程序,由所述应用程序对所述网络消息进行处理。
可选地,所述启动与网络消息关联的应用程序包括:退出与所述应用程序同一类的其他应用程序。
可选地,所述终端的应用程序按照预设的规则进行分类,在同一时间点对同一类应用程序仅运行一个。
为了解决上述技术问题,本公开还提供了一种网络消息处理方法,包括:
设备服务器接收网络消息;
所述设备服务器将所述网络消息发送给终端,所述网络消息用于所述终端判断与所述网络消息关联的应用程序是否正在运行,其中,与所述网络消息关联的所述应用程序包括能处理该网络消息的应用程序;若否,则在所述终端上通知所述网络消息。
可选地,在所述服务器将所述网络消息发送给终端之前,所述方法还包括:所述设备服务器将所述网络消息发送给基站。
可选地,在所述设备服务器将所述网络消息发送给基站之前,还包括:设备服务器从所述基站接收所述网络消息,或者设备服务器从另一基站接收所述网络消息。
可选地,所述设备服务器将所述网络消息发送给基站包括:通过隧道链路将所述网络消息发送给基站。
可选地,所述隧道链路包括:虚拟可扩展局域网隧道、网络之间互连的协议隧道、虚拟专用网络隧道中的任一种。
可选地,在所述设备服务器将网络消息发送给基站之前,还包括:将所述网络消息按照所述隧道链路的格式进行封装。
为了解决上述技术问题,本公开还提供了一种终端,包括:
第二接收模块,设置为接收设备服务器发送的网络消息;
应用判断模块,设置为判断与所述网络消息关联的应用程序是否正在运行,其中,与所述网络消息关联的所述应用程序包括能处理该网络消息的应用程序;
通知模块,设置为当所述应用判断模块判断为否时,在所述终端上通知所述网络消息。
可选地,还包括第一处理模块,所述第一处理模块设置为当所述应用判断模块判断为是时,使所述应用程序对所述网络消息进行处理。
可选地,还包括第二处理模块,所述第二处理模块设置为在终端上通知网络消息 之后,在用户输入出发指令的情况下,启动与所述网络消息关联的应用程序,使所述应用程序对所述网络消息进行处理。
可选地,所述第二处理模块还包括应用退出单元,所述应用退出单元设置为在启动与所述网络消息关联的应用程序时,退出与所述应用程序同一类的其他应用程序。
可选地,还包括分类模块,所述分类模块设置为对所述终端的应用程序按照预设的规则进行分类,在同一时间点对同一类应用程序仅运行一个。
为了解决上述技术问题,本公开还提供了一种设备服务器,包括:
第一接收模块,设置为接收网络消息;
消息发送模块,设置为将网络消息发送给终端,所述网络消息用于所述终端判断与所述网络消息关联的应用程序是否正在运行,其中,与所述网络消息关联的所述应用程序包括能处理该网络消息的应用程序;若否,则在所述终端上通知所述网络消息。
可选地,所述消息发送模块包括:消息发送单元,设置为通过隧道链路将所述网络消息通过基站发送给所述终端。
为了解决上述技术问题,本公开还提供了一种网络消息处理系统,包括设备服务器和基站,所述设备服务器设置为:
接收网络消息;
将所述网络消息发送给所述基站,所述网络消息设置为终端判断与所述网络消息关联的应用程序是否正在运行,其中,与所述网络消息关联的所述应用程序包括能处理该网络消息的应用程序;若否,则在所述终端上通知所述网络消息;
所述基站设置为将接收到的所述网络消息转发给终端。
可选地,所述系统还包括终端,所述终端设置为:
接收所述基站发送所述网络消息;
判断与所述网络消息关联的应用程序是否正在运行;
若否,则由预设的处理单元对所述网络消息进行通知。
为了解决上述技术问题,本公开还提供一种非临时性计算机可读存储介质,其中存储有计算机程序指令,当终端的一个或多个处理器执行所述计算机程序指令时,所述终端执行一种网络消息处理方法,所述方法包括:接收设备服务器发送的网络消息;判断与所述网络消息关联的应用程序是否正在运行,其中,与所述网络消息关联的所述应用程序包括能处理该网络消息的应用程序;若否,则对所述网络消息进行通知。
为了解决上述技术问题,本公开还提供一种非临时性计算机可读存储介质,其中存储有计算机程序指令,当设备服务器的一个或多个处理器执行所述计算机程序指令时,所述设备服务器执行一种网络消息处理方法,所述方法包括:接收网络消息;将所述网络消息发送给终端,所述网络消息用于所述终端判断与所述网络消息关联的应用程序是否正在运行,其中,与所述网络消息关联的所述应用程序包括能处理该网络消息的应用程序。
本公开的有益效果:
本公开提供了一种终端、设备服务器、网络消息处理方法及系统,设备服务器接收网络消息,并将所述网络消息发送给终端,若终端中未启动关联的应用程序,则终端对所述网络消息进行通知,从而实现了无须运行关联的应用程序也能及时接收网络消息,终端不必启动过多的应用程序,因此节约了终端的硬件资源,提高了用户体验,使终端硬件的性能得到了尽可能的发挥。
附图说明
图1是相关技术中网络消息处理过程的示意图;
图2是本公开各个实施例中网络消息处理过程的示意图;
图3是本公开实施例一提供的一种网络消息处理方法的流程图;
图4是本公开实施例二提供的一种网络消息处理方法的流程图;
图5是本公开实施例三提供的设备服务器的结构示意图;
图6是本公开实施例四提供的终端的结构示意图;
图7是本公开实施例五提供的一种网络消息处理方法的流程图。
具体实施方式
本发明的构思在于:由设备服务器对本来发送至终端的网络消息进行接收并封装后通过基站转发给终端,终端中即使没有运行与该网络消息关联的应用程序,也可以通过预设的处理单元对该网络消息进行提醒,从而避免了由于终端中未启动关联的应用程序而不能得知关联的网络消息,终端不必启动过多的应用程序,因此节约了终端的硬件资源,使终端硬件的性能得到了尽可能的发挥。
图1示出了相关技术中网络消息的处理过程,请参考图1:终端102中的应用程序对应的网络消息,其接收是通过基站101的转发,也就是说,基站101会将终端102中的应用程序对应的网络消息发送给终端102。由于终端102中的应用程序在未运行时,不能直接接收到网络消息,那么,如图2所示,图2示出了本发明各个实施例中的网络消息处理过程:本实施例中,基站101发出的网络消息会发送至设备服务器20中;设备服务器20在接收到与某终端30相关的网络消息后,设备服务器20对该网络消息进行解析并封装为符合设备服务器20和基站101之间预定的通信链路的传输格式的网络消息,并通过通信链路将该网络消息发送至基站101,再由基站101发送给终端30。这里的设备服务器20可以是终端的生产厂商提供的,而通信离不开各个运营商的基站,因此,厂商需要在设备服务器20和基站之间建立隧道链路,使设备服务器接收到的网络消息可以通过隧道链路发送至基站101,并由基站101发送给终端30。
下面结合附图对本发明的具体实施作进一步说明。
实施例一
本实施例提供了一种网络消息处理方法,请参考图3,包括:
S101、设备服务器20接收网络消息;
S102、设备服务器20将网络消息发送给终端30。
发送端所发送的网络消息,会通过基站101转发;在本实施例中,网络消息会经过基站101发送到设备服务器20。
设备服务器20可以从基站101接收该网络消息,也可以从另一基站接收网络消息,换言之,发送网络消息的基站和接收网络消息的基站可以是同一个基站,这可以根据具体的情况而定,一般是通过与设备服务器20最近的基站对网络消息进行处理。
而从设备服务器20发送到终端30,需要经过基站101的转发;从设备服务器20发送到基站101,可选的,通过隧道链路将网络消息从设备服务器20发送至基站101,即通信链路包括隧道链路。
隧道技术是一种通过使用互联网络的基础设施在网络之间传递数据的方式。使用隧道传递的数据(或负载)可以是不同协议的数据帧或包。隧道协议将其它协议的数据帧或包进行重新封装然后通过隧道发送。新的数据帧头提供路由信息,以便通过互联网传递被封装的负载数据。设备服务器20和基站101之间的隧道链路,可以是多种隧道链路,如IP(Internet Protocol,网络之间互连的协议)隧道、VPN(Virtual Private Network,虚拟专用网络)隧道或者VXLAN(Virtual Extensible LAN,虚拟可扩展局域网)隧道等等隧道均可。
其中,VXLAN是一种overlay(覆盖)的网络技术,使用MAC(Media Access Control,介质访问控制)in UDP(User Datagram Protocol,用户数据报协议)的方式进行封装,共50B(字节)上下的封装报文头,VXLAN提供了一种将二层网络overlay在三层网络上的能力,VXLAN Header(标头)中的VNI(Visual Networking Index,可视化网络标识)有24bit,数量远远大于4096普通子接口VLAN(Virtual Local Area Network,虚拟局域网)值,这样就为不同的智能移动设备各自分配一个ID成为可能。而且VXLAN为UDP的封装,可以穿越三层网络,比VLAN有更好的扩展性,为信息在网络传输扫除了技术上的障碍。
此外,隧道链接除了以上使用广泛的几种隧道链接外,还可以包括其他的一些在局域网内可用的、定制的隧道链接格式,其特点是不可以和其他设备对接,但是自己设备相互识别处理就没有问题,隧道链接只是在本实施例中的一种方法,不论是通用的、广泛的隧道链接,还是定制的,在本实施例中均可以适用。
在设备服务器20和基站101之间通过隧道链路传输时,网络消息也应该被封装为相应的隧道链路的格式,这样可以顺利的通过隧道链路将网络消息发送给基站101。
各个终端30是由厂商所制造的;同时,可选的,设备服务器20在本实施例中也 是由厂商所提供的,因此,设备服务器20在工作中会接收不止一个终端30的网络消息,因此,设备服务器20需要对各个终端30进行区分辨识,即设备服务器20需要将网络消息发送给对应的终端30而不能出错;这时,就可以根据终端30上的唯一识别码来将各个终端30对应起来;可选的,本实施例中的唯一识别码为终端30的MAC地址标识,每一个终端30的MAC地址标识均不同,可以保证确定和各个终端30之间的对应关系而不会出错。此外,还可以利用其他终端30的唯一标识,如IMEI(International Mobile Equipment Identity,国际移动设备标识),不过其只能对移动设备(尤其指手机)进行区分而不能广泛性的应用于所有的终端30,有其局限性。
实施例二
本实施例提供了一种网络消息处理方法,请参考图4,包括:
S201、终端30接收设备服务器20发送的网络消息;
S202、终端30判断与网络消息关联的应用程序是否正在运行;
S203、若否,则在终端30上通知网络消息。
终端30接收设备服务器20发送的网络消息,通常是通过基站101的转发;即设备服务器30将网络消息发送给基站101,由基站101将该网络消息发送给终端30。
终端30在接收到基站101转发的网络消息后,首先,需确定该网络消息关联的应用程序是否在运行;网络消息所关联的应用程序即是指该网络消息是什么应用程序可以处理的网络消息,如网络消息是短信的话,其关联的应用程序就是短信,而网络消息是邮件的话,其关联的应用程序就是邮箱;有的网络消息其关联的应用程序并不止一个,此时,只要确定其中是否有任何一个关联的应用程序正在运行即可。
若终端30判断与网络消息关联的应用程序正在运行,那么则直接由该应用程序对该网络消息进行处理,处理的过程视网络消息而定,一般包括从消息提醒开始,到显示,详情查看,或者是用户的回复,一般这些操作是和用户的指令相关的。
若此时该网络消息所关联的应用程序没有运行,那么就不能直接对该网络消息进行处理,此时则将该网络消息在终端30上进行通知;通知的形式在此处并没有特别的限定,现有的终端30上的通知形式,包括声音提醒、提示灯提醒或者在屏幕上显示等形式均可;该网络消息的通知的程度可以是简单的对该网络消息所关联的应用程序进行通知,用户可以得知该网络消息对应于哪个应用程序;也可以在通知中包括该网络消息的具体内容,用户可以根据该网络消息的具体内容对终端30进行操作。预设的处理单元是终端30上用于通知那些未运行的应用程序关联的网络消息。此外,值得注意的是,本实施例中的通知条件虽然是当网络消息关联的应用程序未运行时才进行通知,但网络消息关联的应用程序正在运行的话,仍然可以对其进行通知;相关技术中的终端上的通知手段本申请中的终端仍然适用,即在网络消息关联的应用程序正在运行的前提下,可以采用相关技术中的通知手段。
在预设的处理单元对网络消息进行通知之后,用户根据该网络消息,向终端30发起触发指令,即用户意欲启动该网络消息关联的应用程序,那么终端30在接收到该触发指令后,即会启动该应用程序,然后由该应用程序对网络消息进行处理。由于预设的处理单元对网络消息进行了通知,用户还可以根据通知的内容决定是否发送启动关联的应用程序的触发指令,如该网络消息是不重要的推送消息,像天气,一则短小的新闻,一条广告信息等,或是其他任何用户觉得不重要的网络消息,用户都可以对该网络消息进行忽略,而无须开启关联的应用程序。
在启动与网络消息关联的应用程序时,应该退出与该应用程序同一类的应用程序;退出的时机可以是在启动该应用程序之前,或者与启动该应用程序同时进行,甚至在启动该应用程序之后也可;这里的退出是彻底的退出,退出后的应用程序不再占用终端30的资源,而将资源释放出来供其他应用程序使用。这样可以使终端30的CPU、RAM资源等可以有一个比较大的灵活使用度,不会因为同时运行了太多应用程序而使终端30运行不流畅,影响用户体验。
为了使终端30的运行流畅,可选的,终端30的应用程序按照预设的规则进行分类,在同一时间点对同一类应用程序仅运行一个。一般而言,需要将所有应用程序至少分为两类;分类的规则并不是固定的,可以依照应用程序各自的特点进行分类,如将终端30自带的应用程序作为一类,将用户自行下载的应用程序归为另一类;还可以以用户的喜好进行分类,分类的类目和类数都是可选的,具有很强的灵活性。
设备服务器20与每个终端30均建立了各自的联系,即每个终端30在设备服务器20中均有各自独立的对应关系;这里的对应关系,主要是设备服务器20在接收到网络消息时可以准确的将网络消息发送给对应的终端30;可选的,采用终端30的MAC地址标识作为终端30在设备服务器20端的对应标识,根据该MAC地址标识就可以识别出该网络消息对应的终端30。
对于网络消息来说,网络消息的发送端要与目的终端30建立联系,就需要将网络消息发送给运营商的基站101,通过基站101来完成消息的传递;基站101将网络消息发送给设备服务器20;设备服务器20接收到网络消息后,对网络消息进行打包封装;此时,设备服务器20则相当于一个网络消息的发送源,设备服务器20要和目的终端30建立联系则需要将应用程序消息发送给运营商的基站101,通过基站101把网络消息发送给终端30。
在启动了关联的应用程序后,该应用程序就作为前台运行的应用程序;此时,可以建立终端30和基站101之间直接的通信链路,使启动的应用程序的网络消息可以直接的由基站101发送到终端30,由于终端30上关联的应用程序在运行中,因此可以顺利的接收到该网络消息并进行相应的处理。
隧道技术是一种通过使用互联网络的基础设施在网络之间传递数据的方式。使用隧道传递的数据(或负载)可以是不同协议的数据帧或包。隧道协议将其它协议的数 据帧或包进行重新封装然后通过隧道发送。新的数据帧头提供路由信息,以便通过互联网传递被封装的负载数据。
设备服务器20和基站101之间的隧道链路,可以是多种隧道链路,如IP隧道、VPN隧道或者VXLAN隧道等等隧道均可。
其中,VXLAN是一种overlay的网络技术,使用MAC in UDP的方式进行封装,共50B(字节)上下的封装报文头,VXLAN提供了一种将二层网络overlay在三层网络上的能力,VXLAN Header中的VNI有24bit,数量远远大于4096普通子接口VLAN值,这样就为不同的智能移动设备各自分配一个ID成为可能。而且VXLAN为UDP的封装,可以穿越三层网络,比VLAN有更好的扩展性,为信息在网络传输扫除了技术上的障碍。
此外,隧道链接除了以上使用广泛的几种隧道链接外,还可以包括其他的一些在局域网内可用的、定制的隧道链接格式,其特点是不可以和其他设备对接,但是自己设备相互识别处理就没有问题,隧道链接只是在本实施例中的一种方法,不论是通用的、广泛的隧道链接,还是定制的,在本实施例中均可以适用。
此外,值得一提的是,本实施例提供的仅仅是一种网络消息处理方法,并不意味着终端30只能以此进行应用程序的运行,用户仍然可以主动的启动应用程序,这与用户的惯常操作并不相悖。
实施例三
本实施例提供了一种设备服务器,请参考图5,包括:
第一接收模块201,用于接收网络消息;
消息发送模块203,将网络消息发送给终端30。
发送端所发送的网络消息,会通过基站101转发;在本实施例中,还包括消息封装模块202,用于对网络消息进行封装;网络消息会经过基站101发送到设备服务器20,设备服务器20对该网络消息进行封装,然后再经过基站101发送给终端30。
而从设备服务器20发送到终端30,需要经过基站101的转发;可选的,消息发送模块203包括消息发送单元,用于通过隧道链路将网络消息通过基站发送给终端。从设备服务器20发送到基站101,可选的,本实施例中的通信链路为隧道链路,用于将网络消息通过隧道链路从设备服务器20发送至基站101。
隧道技术是一种通过使用互联网络的基础设施在网络之间传递数据的方式。使用隧道传递的数据(或负载)可以是不同协议的数据帧或包。隧道协议将其它协议的数据帧或包进行重新封装然后通过隧道发送。新的数据帧头提供路由信息,以便通过互联网传递被封装的负载数据。
设备服务器20和基站101之间的隧道链路,可以是多种隧道链路,如IP隧道、VPN隧道或者VXLAN隧道等等隧道均可。
其中,VXLAN是一种overlay的网络技术,使用MAC in UDP的方式进行封装,共50B(字节)上下的封装报文头,VXLAN提供了一种将二层网络overlay在三层网络上的能力,VXLAN Header中的VNI有24bit,数量远远大于4096普通子接口VLAN值,这样就为不同的智能移动设备各自分配一个ID成为可能。而且VXLAN为UDP的封装,可以穿越三层网络,比VLAN有更好的扩展性,为信息在网络传输扫除了技术上的障碍。
此外,隧道链接除了以上使用广泛的几种隧道链接外,还可以包括其他的一些在局域网内可用的、定制的隧道链接格式,其特点是不可以和其他设备对接,但是自己设备相互识别处理就没有问题,隧道链接只是在本实施例中的一种方法,不论是通用的、广泛的隧道链接,还是定制的,在本实施例中均可以适用。
在设备服务器20和基站101之间通过隧道链路传输时,网络消息被消息封装模块202封装为相应的隧道链路的格式,这样可以顺利的通过隧道链路将网络消息发送给基站101。
各个终端30是由厂商所制造的;同时,可选的,设备服务器20在本实施例中也是由厂商所提供的,因此,设备服务器20在工作中会接收不止一个终端30的网络消息,因此,设备服务器20需要对各个终端30进行区分辨识,即设备服务器20需要将网络消息发送给对应的终端30而不能出错;这时,就可以根据终端30上的唯一识别码来将各个终端30对应起来;可选的,根据各个终端30的MAC地址标识建立与各个终端30之间的对应关系;每一个终端30的MAC地址标识均不同,可以保证确定和各个终端30之间的对应关系而不会出错。此外,还可以利用其他终端30的唯一标识,如IMEI,不过其只能对移动设备(尤其指手机)进行区分而不能广泛性的应用于所有的终端30,有其局限性。
实施例四
本实施例提供了一种终端,请参考图6,包括:
第二接收模块301,用于接收设备服务器20发送的网络消息;
应用判断模块302,用于判断该网络消息关联的应用程序是否正在运行;
通知模块304,用于当应用判断模块302判断为否时,在终端上通知该网络消息。
终端30接收设备服务器20发送的网络消息,通常是通过基站101的转发;即设备服务器30将网络消息发送给基站101,由基站101将该网络消息发送给终端30。
第二接收模块301在接收到基站101转发的网络消息后,首先,需由应用判断模块302确定该网络消息关联的应用程序是否在运行;网络消息所关联的应用程序即是指该网络消息是什么应用程序可以处理的网络消息,如网络消息是短信的话,其关联的应用程序就是短信,而网络消息是邮件的话,其关联的应用程序就是邮箱;有的网络消息其关联的应用程序并不止一个,此时,只要确定其中是否有任何一个关联的应 用程序正在运行即可。
可选的,若此时该网络消息所关联的应用程序正在运行,那么由第一处理模块303使该应用程序对该网络消息进行处理,处理的过程视网络消息而定,一般包括从消息提醒开始,到显示,详情查看,或者是用户的回复,一般这些操作是和用户的指令相关的。
若此时该网络消息所关联的应用程序没有运行,那么就不能直接对该网络消息进行处理,此时则通过通知模块304对该网络消息进行通知;通知的形式在此处并没有特别的限定,现有的终端30上的通知形式,包括声音提醒、提示灯提醒或者在屏幕上显示等形式均可;通知模块304对该网络消息的通知的程度可以是简单的对该网络消息所关联的应用程序进行通知,用户可以得知该网络消息对应于哪个应用程序;也可以在通知中包括该网络消息的具体内容,用户可以根据该网络消息的具体内容对终端30进行操作。此外,值得注意的是,本实施例中的网络消息的通知条件虽然是当网络消息关联的应用程序未运行时才进行通知,但网络消息关联的应用程序正在运行的话,仍然可以对其进行通知;相关技术中的终端上的通知逻辑本申请中的终端仍然适用,即在网络消息关联的应用程序正在运行的前提下,可以采用相关技术中的通知逻辑。
在预设的处理单元对网络消息进行通知之后,用户根据该网络消息,向终端30发起触发指令,即用户意欲启动该网络消息关联的应用程序,那么可选的,还包括第二处理模块305,用于接收用户的触发指令,启动该网络消息关联的应用程序,使该应用程序对网络消息进行处理。由于预设的处理单元对网络消息进行了通知,用户还可以根据通知的内容决定是否发送启动关联的应用程序的触发指令,如该网络消息是不重要的推送消息,像天气,一则短小的新闻,一条广告信息等,或是其他任何用户觉得不重要的网络消息,用户都可以对该网络消息进行忽略,而无须开启关联的应用程序。
可选的,第二处理模块305还包括应用退出单元3051,用于在启动与网络消息关联的应用程序时,退出与该应用程序同一类的应用程序;退出的时机可以是在启动该应用程序之前,或者与启动该应用程序同时进行,甚至在启动该应用程序之后也可;这里的退出是彻底的退出,退出后的应用程序不再占用终端30的资源,而将资源释放出来供其他应用程序使用。这样可以使终端30的CPU、RAM资源等可以有一个比较大的灵活使用度,不会因为同时运行了太多应用程序而使终端30运行不流畅,影响用户体验。
为了使终端30的运行流畅,可选的,还包括分类模块,用于对终端30中的应用程序进行分类,在同一时间点对同一类应用程序仅运行一个。一般而言,需要将所有应用程序至少分为两类;分类的规则并不是固定的,可以依照应用程序各自的特点进行分类,如将终端30自带的应用程序作为一类,将用户自行下载的应用程序归为另 一类;还可以以用户的喜好进行分类,分类的类目和类数都是可选的,具有很强的灵活性。
在启动了关联的应用程序后,该应用程序就作为前台运行的应用程序;此时,可以建立终端30和基站101之间直接的通信链路,使启动的应用程序的网络消息可以直接的由基站101发送到终端30,由于终端30上关联的应用程序在运行中,因此可以顺利的接收到该网络消息并进行相应的处理。
隧道技术是一种通过使用互联网络的基础设施在网络之间传递数据的方式。使用隧道传递的数据(或负载)可以是不同协议的数据帧或包。隧道协议将其它协议的数据帧或包进行重新封装然后通过隧道发送。新的数据帧头提供路由信息,以便通过互联网传递被封装的负载数据。
设备服务器20和基站101之间的隧道链路,可以是多种隧道链路,如IP隧道、VPN隧道或者VXLAN隧道等等隧道均可。
其中,VXLAN是一种overlay的网络技术,使用MAC in UDP的方式进行封装,共50B上下的封装报文头,VXLAN提供了一种将二层网络overlay在三层网络上的能力,VXLAN Header中的VNI有24bit,数量远远大于4096普通子接口VLAN值,这样就为不同的智能移动设备各自分配一个ID成为可能。而且VXLAN为UDP的封装,可以穿越三层网络,比VLAN有更好的扩展性,为信息在网络传输扫除了技术上的障碍。
此外,隧道链接除了以上使用广泛的几种隧道链接外,还可以包括其他的一些在局域网内可用的、定制的隧道链接格式,其特点是不可以和其他设备对接,但是自己设备相互识别处理就没有问题,隧道链接只是在本实施例中的一种方法,不论是通用的、广泛的隧道链接,还是定制的,在本实施例中均可以适用。
需要说明的是,本实施例中的网络消息处理方法,其并不局限于安卓操作系统,对于其他的操作系统也是可以适用的,并没有对此作特别的限定。
此外,值得一提的是,本实施例提供的仅仅是一种网络消息处理方法,并不意味着终端30只能以此进行应用程序的运行,用户仍然可以主动的启动应用程序,这与用户的惯常操作并不相悖。
实施例五
本实施例提供了一种网络消息处理方法,请参考图7,包括:
S501、设备服务器20接收网络消息;
S502、设备服务器20将网络消息发送给基站101;
S503、基站101将接收到的网络消息转发给终端30;
发送端所发送的网络消息,会通过基站101转发;在本实施例中,网络消息会经过基站101发送到设备服务器20,设备服务器20对该网络消息进行封装,然后再经 过基站101发送给终端30。
而从设备服务器20发送到基站101,可选的,通过隧道链路将网络消息从设备服务器20发送至基站101。
隧道技术是一种通过使用互联网络的基础设施在网络之间传递数据的方式。使用隧道传递的数据(或负载)可以是不同协议的数据帧或包。隧道协议将其它协议的数据帧或包进行重新封装然后通过隧道发送。新的数据帧头提供路由信息,以便通过互联网传递被封装的负载数据。
设备服务器20和基站101之间的隧道链路,可以是多种隧道链路,如IP隧道、VPN隧道或者VXLAN隧道等等隧道均可。
其中,VXLAN是一种overlay的网络技术,使用MAC in UDP的方式进行封装,共50B(字节)上下的封装报文头,VXLAN提供了一种将二层网络overlay在三层网络上的能力,VXLAN Header中的VNI有24bit,数量远远大于4096普通子接口VLAN值,这样就为不同的智能移动设备各自分配一个ID成为可能。而且VXLAN为UDP的封装,可以穿越三层网络,比VLAN有更好的扩展性,为信息在网络传输扫除了技术上的障碍。
此外,隧道链接除了以上使用广泛的几种隧道链接外,还可以包括其他的一些在局域网内可用的、定制的隧道链接格式,其特点是不可以和其他设备对接,但是自己设备相互识别处理就没有问题,隧道链接只是在本实施例中的一种方法,不论是通用的、广泛的隧道链接,还是定制的,在本实施例中均可以适用。
在设备服务器20和基站101之间通过隧道链路传输时,网络消息也应该被封装为相应的隧道链路的格式,得到网络消息,这样可以顺利的通过隧道链路将网络消息发送给基站101。
各个终端30是由厂商所制造的;同时,可选的,设备服务器20在本实施例中也是由厂商所提供的,因此,设备服务器20在工作中会接收不止一个终端30的网络消息,因此,设备服务器20需要对各个终端30进行区分辨识,即设备服务器20需要将网络消息发送给对应的终端30而不能出错;这时,就可以根据终端30上的唯一识别码来将各个终端30对应起来;可选的,本实施例中的唯一识别码为终端30的MAC地址标识,每一个终端30的MAC地址标识均不同,可以保证确定和各个终端30之间的对应关系而不会出错。此外,还可以利用其他终端30的唯一标识,如IMEI(International Mobile Equipment Identity,国际移动设备标识),不过其只能对移动设备(尤其指手机)进行区分而不能广泛性的应用于所有的终端30,有其局限性。
基站101将网络消息转发给终端30之后,可选的,包括:
S504、终端30接收基站101发送封装后的网络消息;
S505、终端30判断与该网络消息关联的应用程序是否正在运行;
S506、若否,则在终端上通知该网络消息。
终端30在接收到基站101转发的网络消息后,首先,需确定该网络消息关联的应用程序是否在运行;网络消息所关联的应用程序即是指该网络消息是什么应用程序可以处理的网络消息,如网络消息是短信的话,其关联的应用程序就是短信,而网络消息是邮件的话,其关联的应用程序就是邮箱;有的网络消息其关联的应用程序并不止一个,此时,只要确定其中是否有任何一个关联的应用程序正在运行即可。
S507、若此时该网络消息所关联的应用程序正在运行,那么则直接由该应用程序对该网络消息进行处理,处理的过程视网络消息而定,一般包括从消息提醒开始,到显示,详情查看,或者是用户的回复,通常这些操作是和用户的指令相关的。
若此时该网络消息所关联的应用程序没有运行,那么就不能直接对该网络消息进行处理,此时则通过预设的处理单元对该网络消息进行通知,即通过预设的处理单元将该网络消息在终端30上进行通知;通知的形式在此处并没有特别的限定,现有的终端30上的通知形式,包括声音提醒、提示灯提醒或者在屏幕上显示等形式均可;通知单元对该网络消息的通知的程度可以是简单的对该网络消息所关联的应用程序进行通知,用户可以得知该网络消息对应于哪个应用程序;也可以在通知中包括该网络消息的具体内容,用户可以根据该网络消息的具体内容对终端30进行操作。预设的处理单元是终端30上用于通知那些未运行的应用程序关联的网络消息。
在预设的处理单元对网络消息进行通知之后,用户根据该网络消息,向终端30发起触发指令,即用户意欲启动该网络消息关联的应用程序,那么终端30在接收到该触发指令后,即会启动该应用程序,然后由该应用程序对网络消息进行处理。由于预设的处理单元对网络消息进行了通知,用户还可以根据通知的内容决定是否发送启动关联的应用程序的触发指令,如该网络消息是不重要的推送消息,像天气,一则短小的新闻,一条广告信息等,或是其他任何用户觉得不重要的网络消息,用户都可以对该网络消息进行忽略,而无须开启关联的应用程序。
可选的,在启动与网络消息关联的应用程序时,应该退出与该应用程序同一类的应用程序;退出的时机可以是在启动该应用程序之前,或者与启动该应用程序同时进行,甚至在启动该应用程序之后也可;这里的退出是彻底的退出,退出后的应用程序不再占用终端30的资源,而将资源释放出来供其他应用程序使用。这样可以使终端30的CPU、RAM资源等可以有一个比较大的灵活使用度,不会因为同时运行了太多应用程序而使终端30运行不流畅,影响用户体验。
为了使终端30的运行流畅,可选的,对终端30中的应用程序进行分类,其中,每一类应用程序各自最多运行一个;一般而言,需要将所有应用程序至少分为两类;分类的规则并不是固定的,可以依照应用程序各自的特点进行分类,如将终端30自带的应用程序作为一类,将用户自行下载的应用程序归为另一类;还可以以用户的喜好进行分类,分类的类目和类数都是可选的,具有很强的灵活性。
对于网络消息来说,网络消息的发送端要与目的终端30建立联系,就需要将网 络消息发送给运营商的基站101,通过基站101来完成消息的传递;基站101将网络消息发送给设备服务器20;设备服务器20接收到网络消息后,对网络消息进行打包封装;此时,设备服务器20则相当于一个网络消息的发送源,设备服务器20要和目的终端30建立联系则需要将应用程序消息发送给运营商的基站101,通过基站101把网络消息发送给终端30。
在启动了关联的应用程序后,该应用程序就作为前台运行的应用程序;此时,可以建立终端30和基站101之间直接的通信链路,使启动的应用程序的网络消息可以直接的由基站101发送到终端30,由于终端30上关联的应用程序在运行中,因此可以顺利的接收到该网络消息并进行相应的处理。
需要说明的是,本实施例中的网络消息处理方法,其并不局限于安卓操作系统,对于其他的操作系统也是可以适用的,并没有对此作特别的限定。
此外,值得一提的是,本实施例提供的仅仅是一种网络消息处理方法,并不意味着终端30只能以此进行应用程序的运行,用户仍然可以主动的启动应用程序,这与用户的惯常操作并不相悖。
实施例六
本实施例提供了一种网络消息处理系统,包括设备服务器20和基站101,设备服务器20用于:
接收网络消息;
设备服务器20将网络消息发送给基站101;
基站101用于将接收到的网络消息转发给终端30。
发送端所发送的网络消息,会通过基站101转发;可选的,消息发送模块203包括消息发送单元,用于通过隧道链路将网络消息通过基站发送给终端。在本实施例中,网络消息会经过基站101发送到设备服务器20,设备服务器20对该网络消息进行封装,然后再经过基站101发送给终端30。
而从设备服务器20发送到基站101,可选的,本实施例中的通信链路包括隧道链路,将网络消息通过隧道链路从设备服务器20发送至基站101。
隧道技术是一种通过使用互联网络的基础设施在网络之间传递数据的方式。使用隧道传递的数据(或负载)可以是不同协议的数据帧或包。隧道协议将其它协议的数据帧或包进行重新封装然后通过隧道发送。新的数据帧头提供路由信息,以便通过互联网传递被封装的负载数据。
设备服务器20和基站101之间的隧道链路,可以是多种隧道链路,如IP隧道、VPN隧道或者VXLAN隧道等等隧道均可。
其中,VXLAN是一种overlay的网络技术,使用MAC in UDP的方式进行封装,共50B(字节)上下的封装报文头,VXLAN提供了一种将二层网络overlay在三层 网络上的能力,VXLAN Header中的VNI有24bit,数量远远大于4096普通子接口VLAN值,这样就为不同的智能移动设备各自分配一个ID成为可能。而且VXLAN为UDP的封装,可以穿越三层网络,比VLAN有更好的扩展性,为信息在网络传输扫除了技术上的障碍。
此外,隧道链接除了以上使用广泛的几种隧道链接外,还可以包括其他的一些在局域网内可用的、定制的隧道链接格式,其特点是不可以和其他设备对接,但是自己设备相互识别处理就没有问题,隧道链接只是在本实施例中的一种方法,不论是通用的、广泛的隧道链接,还是定制的,在本实施例中均可以适用。
在设备服务器20和基站101之间通过隧道链路传输时,网络消息也应该被封装为相应的隧道链路的格式,因此,本实施例中将网络消息封装为隧道链路的格式,得到网络消息,这样可以顺利的通过隧道链路将网络消息发送给基站101。
各个终端30是由厂商所制造的;同时,可选的,设备服务器20在本实施例中也是由厂商所提供的,因此,设备服务器20在工作中会接收不止一个终端30的网络消息,因此,设备服务器20需要对各个终端30进行区分辨识,即设备服务器20需要将网络消息发送给对应的终端30而不能出错;这时,就可以根据终端30上的唯一识别码来将各个终端30对应起来;可选的,根据各个终端30的MAC地址标识建立与各个终端30之间的对应关系;每一个终端30的MAC地址标识均不同,可以保证确定和各个终端30之间的对应关系而不会出错。此外,还可以利用其他终端30的唯一标识,如IMEI,不过其只能对移动设备(尤其指手机)进行区分而不能广泛性的应用于所有的终端30,有其局限性。
可选的,本实施例中的网络消息处理系统还包括终端30,用于:
接收基站101发送网络消息;
判断与网络消息关联的应用程序是否正在运行;
若否,则在终端上通知该网络消息。
在接收到基站101转发的网络消息后,首先,需确定该网络消息关联的应用程序是否正在运行;网络消息所关联的应用程序即是指该网络消息是什么应用程序可以处理的网络消息,如网络消息是短信的话,其关联的应用程序就是短信,而网络消息是邮件的话,其关联的应用程序就是邮箱;有的网络消息其关联的应用程序并不止一个,此时,只要确定其中是否有任何一个关联的应用程序正在运行即可。
若此时该网络消息所关联的应用程序正在运行,那么由该应用程序对该网络消息进行处理,处理的过程视网络消息而定,一般包括从消息提醒开始,到显示,详情查看,或者是用户的回复,一般这些操作是和用户的指令相关的。
若此时该网络消息所关联的应用程序没有运行,那么就不能直接对该网络消息进行处理,此时则由预设的处理单元对该网络消息进行通知;通知的形式在此处并没有特别的限定,现有的终端30上的通知形式,包括声音提醒、提示灯提醒或者在屏幕 上显示等形式均可;通知单元对该网络消息的通知的程度可以是简单的对该网络消息所关联的应用程序进行通知,用户可以得知该网络消息对应于哪个应用程序;也可以在通知中包括该网络消息的具体内容,用户可以根据该网络消息的具体内容对终端30进行操作。预设的处理单元是终端30上用于通知那些未运行的应用程序关联的网络消息。
在预设的处理单元对网络消息进行通知之后,用户根据该网络消息,向终端30发起触发指令,即用户意欲启动该网络消息关联的应用程序,那么可选的,接收用户的触发指令,启动该网络消息关联的应用程序,使该应用程序对网络消息进行处理。由于预设的处理单元对网络消息进行了通知,用户还可以根据通知的内容决定是否发送启动关联的应用程序的触发指令,如该网络消息是不重要的推送消息,像天气,一则短小的新闻,一条广告信息等,或是其他任何用户觉得不重要的网络消息,用户都可以对该网络消息进行忽略,而无须开启关联的应用程序。
可选的,第二处理模块5还包括应用退出单元51,用于在启动与网络消息关联的应用程序时,退出与该应用程序同一类的应用程序;退出的时机可以是在启动该应用程序之前,或者与启动该应用程序同时进行,甚至在启动该应用程序之后也可;这里的退出是彻底的退出,退出后的应用程序不再占用终端30的资源,而将资源释放出来供其他应用程序使用。这样可以使终端30的CPU、RAM资源等可以有一个比较大的灵活使用度,不会因为同时运行了太多应用程序而使终端30运行不流畅,影响用户体验。
为了使终端30的运行流畅,可选的,对终端30中的应用程序进行分类,其中,每一类应用程序各自最多运行一个;一般而言,需要将所有应用程序至少分为两类;分类的规则并不是固定的,可以依照应用程序各自的特点进行分类,如将终端30自带的应用程序作为一类,将用户自行下载的应用程序归为另一类;还可以以用户的喜好进行分类,分类的类目和类数都是可选的,具有很强的灵活性。
在启动了关联的应用程序后,该应用程序就作为前台运行的应用程序;此时,可以建立终端30和基站101之间直接的通信链路,使启动的应用程序的网络消息可以直接的由基站101发送到终端30,由于终端30上关联的应用程序在运行中,因此可以顺利的接收到该网络消息并进行相应的处理。
需要说明的是,本实施例中的网络消息处理方法,其并不局限于安卓操作系统,对于其他的操作系统也是可以适用的,并没有对此作特别的限定。
此外,值得一提的是,本实施例提供的仅仅是一种网络消息处理方法,并不意味着终端30只能以此进行应用程序的运行,用户仍然可以主动的启动应用程序,这与用户的惯常操作并不相悖。
通过以上的实施方式的描述,本领域的技术人员可以清楚地了解到上述实施例方法可借助软件加必需的通用硬件平台的方式来实现。软件加必需的通用硬件平台的方 式来实现,当然也可以通过硬件,但很多情况下前者是更佳的实施方式。基于这样的理解,本发明的技术方案本质上或者说对相关技术做出贡献的部分可以以软件产品的形式体现出来,该计算机软件产品存储在一个存储介质(如ROM/RAM、磁碟、光盘)中,包括若干指令用以使得一台终端设备(可以是手机,计算机,服务器,空调器,或者网络设备等)执行本发明各个实施例所述的方法。
本发明的实施例还提供一种非临时性计算机可读存储介质,其中存储有计算机程序指令,当终端的一个或多个处理器执行所述计算机程序指令时,所述终端执行一种网络消息处理方法,所述方法包括:接收设备服务器发送的网络消息;判断与所述网络消息关联的应用程序是否正在运行,其中,与所述网络消息关联的所述应用程序包括能处理该网络消息的应用程序;若否,则对所述网络消息进行通知。
本发明的实施例还提供一种非临时性计算机可读存储介质,其中存储有计算机程序指令,当设备服务器的一个或多个处理器执行所述计算机程序指令时,所述设备服务器执行一种网络消息处理方法,所述方法包括:接收网络消息;将所述网络消息发送给终端,所述网络消息用于所述终端判断与所述网络消息关联的应用程序是否正在运行,其中,与所述网络消息关联的所述应用程序包括能处理该网络消息的应用程序。
以上内容是结合具体的实施方式对本发明所作的进一步详细说明,不能认定本发明的具体实施只局限于这些说明。对于本发明所属技术领域的普通技术人员来说,在不脱离本发明构思的前提下,还可以做出若干简单推演或替换,都应当视为属于本发明的保护范围。
工业实用性
本公开适用于网络通信领域,用以实现无须运行关联的应用程序也能及时接收网络消息,终端不必启动过多的应用程序,因而节约终端的硬件资源,提高用户体验,使终端硬件的性能得到尽可能的发挥。

Claims (23)

  1. 一种网络消息处理方法,包括:
    终端接收设备服务器发送的网络消息;
    所述终端判断与所述网络消息关联的应用程序是否正在运行,其中,与所述网络消息关联的所述应用程序包括能处理该网络消息的应用程序;
    若否,则在所述终端上通知所述网络消息。
  2. 如权利要求1所述的网络消息处理方法,其中,所述终端接收设备服务器发送的网络消息包括:所述终端通过基站接收所述设备服务器发送的网络消息。
  3. 如权利要求1所述的网络消息处理方法,其中,若是,则由所述应用程序对所述网络消息进行处理。
  4. 如权利要求1所述的网络消息处理方法,其中,在所述终端上通知所述网络消息之后,所述方法还包括:在用户输入触发指令的情况下,启动与所述网络消息关联的应用程序,由所述应用程序对所述网络消息进行处理。
  5. 如权利要求4所述的网络消息处理方法,其中,所述启动与网络消息关联的应用程序包括:退出与所述应用程序同一类的其他应用程序,启动与网络消息关联的应用程序。
  6. 如权利要求1-5任一项所述的网络消息处理方法,其中,所述终端的应用程序按照预设的规则进行分类,在同一时间点对同一类应用程序仅运行一个。
  7. 一种网络消息处理方法,包括:
    设备服务器接收网络消息;
    所述设备服务器将所述网络消息发送给终端,所述网络消息用于所述终端判断与所述网络消息关联的应用程序是否正在运行,其中,与所述网络消息关联的所述应用程序包括能处理该网络消息的应用程序。
  8. 如权利要求7所述的网络消息处理方法,其中,在所述服务器将所述网络消息发送给终端之前,所述方法还包括:所述设备服务器将所述网络消息发送给基站。
  9. 如权利要求8所述的网络消息处理方法,其中,在所述设备服务器将所述网络消息发送给基站之前,还包括:设备服务器从所述基站接收所述网络消息,或者设备服务器从另一基站接收所述网络消息。
  10. 如权利要求8所述的网络消息处理方法,其中,所述设备服务器将所述网络消息发送给基站包括:通过隧道链路将所述网络消息发送给基站。
  11. 如权利要求10所述的网络消息处理方法,其中,所述隧道链路包括:虚拟可扩展局域网隧道、网络之间互连的协议隧道、虚拟专用网络隧道中的任一种。
  12. 如权利要求10或11所述的网络消息处理方法,其中,在所述设备服务器将所述网络消息发送给基站之前,所述方法还包括:将所述网络消息按照所述隧道链路的格式进行封装。
  13. 一种终端,包括:
    第二接收模块,设置为接收设备服务器发送的网络消息;
    应用判断模块,设置为判断与所述网络消息关联的应用程序是否正在运行,其中,与所述网络消息关联的所述应用程序包括能处理该网络消息的应用程序;
    通知模块,设置为当所述应用判断模块判断为否时,在所述终端上通知所述网络消息。
  14. 如权利要求13所述的终端,其中,所述终端还包括第一处理模块,所述第一处理模块设置为当所述应用判断模块判断为是时,使所述应用程序对所述网络消息进行处理。
  15. 如权利要求13所述的终端,其中,所述终端还包括第二处理模块,所述第二处理模块设置为在终端上通知网络消息之后,在用户输入出发指令的情况下,启动与所述网络消息关联的应用程序,使所述应用程序对所述网络消息进行处理。
  16. 如权利要求15所述的终端,其中,所述第二处理模块还包括应用退出单元,所述应用退出单元设置为在启动与所述网络消息关联的应用程序时,退出与所述应用程序同一类的其他应用程序。
  17. 如权利要求13-16任一项所述的终端,其中,所述终端还包括分类模块,所述分类模块设置为对所述终端的应用程序按照预设的规则进行分类,在同一时间点对同一类应用程序仅运行一个。
  18. 一种设备服务器,包括:
    第一接收模块,设置为接收网络消息;
    消息发送模块,设置为将网络消息发送给终端,所述网络消息用于所述终端判断与所述网络消息关联的应用程序是否正在运行,其中,与所述网络消息关联的所述应用程序包括能处理该网络消息的应用程序。
  19. 如权利要求18所述的设备服务器,其中,所述消息发送模块包括:
    消息发送单元,设置为通过隧道链路将所述网络消息通过基站发送给所述终端。
  20. 一种网络消息处理系统,其中,包括设备服务器和基站,所述设备服务器设置为:
    接收网络消息;
    将所述网络消息发送给所述基站,所述网络消息用于终端判断与所述网络消息关联的应用程序是否正在运行,其中,与所述网络消息关联的所述应用程序包括能处理该网络消息的应用程序;
    所述基站设置为将接收到的所述网络消息转发给终端。
  21. 如权利要求20所述的网络消息处理系统,其中,所述系统还包括终端,所述终端设置为:
    接收所述基站发送所述网络消息;
    判断与所述网络消息关联的应用程序是否正在运行;
    若否,则对所述网络消息进行通知。
  22. 一种非临时性计算机可读存储介质,其中存储有计算机程序指令,当终端的一个或多个处理器执行所述计算机程序指令时,所述终端执行一种网络消息处理方法,所述方法包括:
    接收设备服务器发送的网络消息;
    判断与所述网络消息关联的应用程序是否正在运行,其中,与所述网络消息关联的所述应用程序包括能处理该网络消息的应用程序;
    若否,则对所述网络消息进行通知。
  23. 一种非临时性计算机可读存储介质,其中存储有计算机程序指令,当设备服务器的一个或多个处理器执行所述计算机程序指令时,所述设备服务器执行一种网络消息处理方法,所述方法包括:
    接收网络消息;
    将所述网络消息发送给终端,所述网络消息用于所述终端判断与所述网络消息关联的应用程序是否正在运行,其中,与所述网络消息关联的所述应用程序包括能处理该网络消息的应用程序。
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