CN108966206B - Data traffic sharing method and device, terminal and storage medium - Google Patents

Data traffic sharing method and device, terminal and storage medium Download PDF

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Publication number
CN108966206B
CN108966206B CN201810948917.2A CN201810948917A CN108966206B CN 108966206 B CN108966206 B CN 108966206B CN 201810948917 A CN201810948917 A CN 201810948917A CN 108966206 B CN108966206 B CN 108966206B
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traffic
terminal
free
target application
information
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CN108966206A (en
Inventor
胡慧
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Guangdong Oppo Mobile Telecommunications Corp Ltd
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Guangdong Oppo Mobile Telecommunications Corp Ltd
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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W8/00Network data management
    • H04W8/18Processing of user or subscriber data, e.g. subscribed services, user preferences or user profiles; Transfer of user or subscriber data
    • H04W8/183Processing at user equipment or user record carrier
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W28/00Network traffic management; Network resource management
    • H04W28/02Traffic management, e.g. flow control or congestion control
    • H04W28/10Flow control between communication endpoints
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W8/00Network data management
    • H04W8/18Processing of user or subscriber data, e.g. subscribed services, user preferences or user profiles; Transfer of user or subscriber data
    • H04W8/20Transfer of user or subscriber data
    • H04W8/205Transfer to or from user equipment or user record carrier

Abstract

The application discloses a data traffic sharing method, a data traffic sharing device, a terminal and a storage medium, and belongs to the technical field of terminals. The method comprises the following steps: the method comprises the steps of obtaining flow-free information corresponding to a flow-free SIM when a sharing function of the wireless sharing network is started, and sending configuration information carrying the flow-free information to a second terminal when a connection request which is sent by the second terminal and used for requesting to access the wireless sharing network is received. According to the embodiment of the application, the flow-free information is carried in the configuration information, so that after the second terminal is successfully accessed to the wireless sharing network, a flow-free strategy is adopted for the target application program when the target application program indicated by the flow-free information is started, and further, the data flow generated when the second terminal is connected to the wireless sharing network of the first terminal can be suitable for a flow-free package corresponding to a flow-free SIM of the first terminal, and the flow cost during data flow sharing is saved.

Description

Data traffic sharing method and device, terminal and storage medium
Technical Field
The embodiment of the application relates to the technical field of terminals, in particular to a data traffic sharing method, a data traffic sharing device, a data traffic sharing terminal and a storage medium.
Background
With the popularization of terminals such as mobile phones, users have increasingly strong use and dependence on data traffic in the terminals.
Most of the current terminals have a sharing function of a Wireless Fidelity (WiFi) hotspot. Generally, when the first terminal has more data traffic remaining, the sharing function of the wireless sharing network may be started to allow other terminals to connect to the wireless sharing network to share the remaining data traffic of the first terminal.
Disclosure of Invention
The embodiment of the application provides a data traffic sharing method, a data traffic sharing device, a data traffic sharing terminal and a storage medium, which can be used for solving the problem that if a Subscriber Identity Module (SIM) of a first terminal is a traffic-free SIM, other terminals cannot use a traffic-free package when connected to a wireless sharing network corresponding to the traffic-free SIM, so that unnecessary traffic cost is generated. The technical scheme is as follows:
according to a first aspect of an embodiment of the present application, a data traffic sharing method is provided, where the method is used in a first terminal of a network having a traffic-exempt SIM access, where the traffic-exempt SIM is an SIM that adopts a traffic-exempt policy for a target application, and the method includes:
acquiring flow-free information corresponding to the flow-free SIM when a sharing function of a wireless sharing network is started, wherein the flow-free information is used for indicating that the target application program is a flow-free application program;
when a connection request which is sent by a second terminal and used for requesting to access the wireless sharing network is received, generating configuration information matched with the wireless sharing network, wherein the configuration information carries the flow-free information;
sending the configuration information to the second terminal, where the configuration information is used to instruct the second terminal to access the wireless shared network, read the traffic exemption information in the configuration information, and when the target application program indicated by the traffic exempt information is started, adopt the traffic exemption policy for the target application program.
According to a second aspect of the embodiments of the present application, a data traffic sharing method is provided, which is used in a second terminal, and the method includes:
sending a connection request for requesting access to a wireless sharing network to a first terminal, wherein the connection request is used for indicating that the first terminal feeds back configuration information matched with the wireless sharing network to a second terminal after starting a sharing function of the wireless sharing network, the first terminal is a terminal with a traffic-free SIM, and the traffic-free SIM is an SIM adopting a traffic-free strategy for a target application program;
receiving the configuration information fed back by the first terminal, where the configuration information carries traffic-free information corresponding to the traffic-free SIM, and the traffic-free information is used to indicate that the target application program is a traffic-free application program;
accessing the wireless sharing network according to the configuration information, and reading the traffic-free information in the configuration information;
and adopting the traffic-exempt strategy for the target application program when the target application program indicated by the traffic-exempt information is started.
According to a third aspect of the embodiments of the present application, there is provided a data traffic sharing apparatus, configured to be used in a first terminal having a traffic-exempt SIM, where the traffic-exempt SIM is an SIM that adopts a traffic-exempt policy for a target application, and the apparatus includes:
the acquisition module is used for acquiring traffic-free information corresponding to the traffic-free SIM when a sharing function of a wireless sharing network is started, wherein the traffic-free information is used for indicating that the target application program is a traffic-free application program;
a generating module, configured to generate configuration information matched with the wireless sharing network when receiving a connection request for requesting access to the wireless sharing network sent by a second terminal, where the configuration information carries the traffic-free information;
a sending module, configured to send the configuration information to the second terminal, where the configuration information is used to instruct the second terminal to access the wireless shared network, read the traffic-free information in the configuration information, and apply the traffic-free policy to the target application program when the target application program indicated by the traffic-free information is started.
According to a fourth aspect of the embodiments of the present application, there is provided a data traffic sharing apparatus, for use in a second terminal, the apparatus including:
the wireless sharing system comprises a sending module, a sending module and a sending module, wherein the sending module is used for sending a connection request for requesting to access a wireless sharing network to a first terminal, the connection request is used for indicating the first terminal to feed back configuration information matched with the wireless sharing network to a second terminal after starting a sharing function of the wireless sharing network, the first terminal is a terminal with a flow-free SIM, and the flow-free SIM is an SIM adopting a flow-free strategy for a target application program;
a receiving module, configured to receive the configuration information fed back by the first terminal, where the configuration information carries traffic-free information corresponding to the traffic-free SIM, and the traffic-free information is used to indicate that the target application is a traffic-free application;
the processing module is used for accessing the wireless sharing network according to the configuration information and reading the flow-free information in the configuration information;
the processing module is further configured to apply the traffic exemption policy to the target application program when the target application program indicated by the traffic exemption information is started.
According to a fifth aspect of embodiments of the present application, a terminal is provided, where the terminal includes a processor and a memory, where the memory stores at least one instruction, and the instruction is loaded and executed by the processor to implement the data traffic sharing method according to the first aspect or the second aspect of the present application.
According to a sixth aspect of embodiments of the present application, there is provided a computer-readable storage medium having at least one instruction stored therein, where the instruction is loaded and executed by a processor to implement the data traffic sharing method according to the first aspect or the second aspect of the present application.
The beneficial effects brought by the technical scheme provided by the embodiment of the application at least comprise:
the method comprises the steps that when a sharing function of the wireless sharing network is started, flow-free information corresponding to a flow-free SIM is obtained, when a connection request which is sent by a second terminal and used for requesting to access the wireless sharing network is received, configuration information carrying the flow-free information is sent to the second terminal, and the flow-free information is used for indicating that a target application program is a flow-free application program; the flow-free information in the configuration information can be read when the second terminal is accessed to the wireless sharing network of the first terminal, and the flow-free strategy is adopted for the target application program when the target application program is started, so that the data flow generated by the second terminal when the second terminal is connected with the wireless sharing network of the first terminal can be suitable for the flow-free package corresponding to the flow-free SIM of the first terminal, and the flow cost of the first terminal during data flow sharing is saved.
Drawings
Fig. 1 is a schematic structural diagram of a terminal provided in an exemplary embodiment of the present application;
fig. 2 is a flowchart of a data traffic sharing method according to an exemplary embodiment of the present application;
fig. 3 is a flowchart of a data traffic sharing method according to another exemplary embodiment of the present application;
fig. 4 is a flowchart of a data traffic sharing method according to another exemplary embodiment of the present application;
fig. 5 is a schematic structural diagram of a data traffic sharing apparatus according to an embodiment of the present disclosure;
fig. 6 is a schematic structural diagram of a data traffic sharing device according to an embodiment of the present disclosure.
Detailed Description
To make the objects, technical solutions and advantages of the present application more clear, embodiments of the present application will be described in further detail below with reference to the accompanying drawings.
When the following description refers to the accompanying drawings, like numbers in different drawings represent the same or similar elements unless otherwise indicated. The embodiments described in the following exemplary embodiments do not represent all embodiments consistent with the present application. Rather, they are merely examples of apparatus and methods consistent with certain aspects of the present application, as detailed in the appended claims.
In the description of the present application, it is to be understood that the terms "first," "second," and the like are used for descriptive purposes only and are not to be construed as indicating or implying relative importance. In the description of the present application, it is to be noted that, unless otherwise explicitly specified or limited, the terms "connected" and "connected" are to be interpreted broadly, e.g., as being fixed or detachable or integrally connected; can be mechanically or electrically connected; may be directly connected or indirectly connected through an intermediate. The specific meaning of the above terms in the present application can be understood in a specific case by those of ordinary skill in the art. Further, in the description of the present application, "a plurality" means two or more unless otherwise specified. "and/or" describes the association relationship of the associated objects, meaning that there may be three relationships, e.g., a and/or B, which may mean: a exists alone, A and B exist simultaneously, and B exists alone. The character "/" generally indicates that the former and latter associated objects are in an "or" relationship.
In the related art, with the increasing demand of large flow scenes, flow-free packages are more and more popular. Each operator actively combines with each large internet company to release a flow-free package, which is used for indicating that data flow generated when the terminal uses a specified application program does not account for flow charge. However, if the SIM of the first terminal is a traffic-free SIM having an application traffic-free protocol, when another terminal is connected to the wireless sharing network corresponding to the traffic-free SIM, the traffic-free package corresponding to the traffic-free SIM cannot be used, which results in unnecessary traffic cost for the first terminal. At present, a convenient and reliable data traffic sharing method is not provided.
The embodiment of the application provides a data traffic sharing method, a data traffic sharing device, a terminal and a storage medium, so as to solve the problems in the related art. According to the technical scheme, when a sharing function of the wireless sharing network is started, flow-free information corresponding to a flow-free SIM is obtained, when a connection request which is sent by a second terminal and used for requesting to access the wireless sharing network is received, configuration information carrying the flow-free information is sent to the second terminal, and the flow-free information is used for indicating a target application program as a flow-free application program; the flow-free information in the configuration information can be read when the second terminal is accessed to the wireless sharing network of the first terminal, and the flow-free strategy is adopted for the target application program when the target application program is started, so that the data flow generated by the second terminal when the second terminal is connected with the wireless sharing network of the first terminal can be suitable for the flow-free package corresponding to the flow-free SIM of the first terminal, and the flow cost of the first terminal during data flow sharing is saved.
Before explaining the embodiments of the present application, an application scenario of the embodiments of the present application is explained. Fig. 1 shows a schematic structural diagram of a terminal provided in an exemplary embodiment of the present application.
The terminal 100 is a terminal having a SIM. Two or more SIMs may be installed in the terminal 100.
Optionally, the terminal 100 is a terminal having a traffic-exempt SIM, which may be a physical SIM (also called a subscriber identity card or a smart card) or a virtual SIM. This embodiment is not limited thereto.
The traffic-free SIM is an SIM that applies a traffic-free policy to the target application program, that is, the traffic-free policy is applied to the target application program when the terminal uses the traffic-free SIM.
Optionally, the terminal is an electronic device installed with the target application program. The target application is a system program or a third party application. Wherein the third party application is an application created by a third party other than the user and the operating system.
The terminal 100 is an electronic device having a communication function. For example, the terminal is a mobile phone.
It should be noted that, in the embodiment of the present application, the terminal 100 is a first terminal or a second terminal. The first terminal is a terminal with a flow-free SIM, and the first terminal is a terminal for starting a sharing function of the wireless sharing network. The second terminal is a terminal other than the first terminal, and the second terminal is a terminal that transmits a connection request for requesting access to the wireless shared network to the first terminal and accesses the wireless shared network of the first terminal.
Optionally, the terminal 100 includes: a processor 120 and a memory 140.
Processor 120 may include one or more processing cores. The processor 120 connects various parts within the overall terminal 100 using various interfaces and lines, and performs various functions of the terminal 100 and processes data by executing or executing instructions, programs, code sets, or instruction sets stored in the memory 140 and calling data stored in the memory 140. Optionally, the processor 120 may be implemented in at least one hardware form of Digital Signal Processing (DSP), Field-Programmable Gate Array (FPGA), and Programmable Logic Array (PLA). The processor 120 may integrate one or more of a Central Processing Unit (CPU), a Graphics Processing Unit (GPU), a modem, and the like. Wherein, the CPU mainly processes an operating system, a user interface, an application program and the like; the GPU is used for rendering and drawing the content required to be displayed by the display screen; the modem is used to handle wireless communications. It is understood that the modem may not be integrated into the processor 120, but may be implemented by a single chip.
The Memory 140 may include a Random Access Memory (RAM) or a Read-Only Memory (Read-Only Memory). Optionally, the memory 140 includes a non-transitory computer-readable medium. The memory 140 may be used to store instructions, programs, code sets, or instruction sets. The memory 140 may include a stored program area and a stored data area, wherein the stored program area may store instructions for implementing an operating system, instructions for at least one function (such as a touch function, a sound playing function, an image playing function, etc.), instructions for implementing various method embodiments described below, and the like; the storage data area may store data and the like referred to in the following respective method embodiments.
Referring to fig. 2, a flowchart of a data traffic sharing method according to an exemplary embodiment of the present application is shown. The embodiment exemplifies that the data traffic sharing method is applied to the terminal shown in fig. 1. The data traffic sharing method comprises the following steps:
step 201, when the first terminal starts the sharing function of the wireless sharing network, obtaining traffic-free information corresponding to the traffic-free SIM, where the traffic-free information is used to indicate that the target application program is a traffic-free application program.
The Wireless shared network may include a Wireless Local Area Network (WLAN); for example, the wireless shared network is a WiFi network. The Wireless sharing Network may also include a Wireless Personal Area Network (WPAN); for example, the wireless sharing network is a Bluetooth (Bluetooth) network, a Near Field Communication (NFC) network, a ZigBee (english: ZigBee) network, or the like.
Optionally, the first terminal starts a sharing function of the wireless sharing network through a preset trigger mode. The preset triggering mode comprises at least one of a touch mode, a voice control mode and a gesture recognition control mode.
Optionally, when the first terminal starts the sharing function of the wireless sharing network, the terminal determines whether the SIM is a traffic-free SIM, and if the SIM is a traffic-free SIM, acquires traffic-free information corresponding to the traffic-free SIM.
The flow-free SIM is an SIM with an application flow-free protocol, namely a flow-free strategy is adopted for a target application program when the terminal uses the flow-free SIM.
The traffic-free information corresponding to the traffic-free SIM is information related to the application free traffic option in a traffic-free package corresponding to the traffic-free SIM, and the traffic-free information is used for indicating that the target application program is a traffic-free application program.
The traffic exempting application program is a traffic exempting application program corresponding to an operator, which is set by an internet company developing a target application program after an application traffic exempting protocol is signed between the internet company and the operator. An operator is a provider that provides network services. In general, the application traffic-free protocol may specify: when a SIM with some subscription protocol, i.e. a traffic-exempt SIM, is used, a traffic-exempt policy is adopted for the target application.
Optionally, the traffic-exempt information is used to indicate that the n target applications are traffic-exempt applications, and n is a positive integer. Wherein the target application is a system program or a third party application.
In step 202, the second terminal sends a connection request for requesting access to the wireless shared network to the first terminal.
The connection request is used for indicating the first terminal to feed back configuration information matched with the wireless sharing network to the second terminal after the sharing function of the wireless sharing network is started.
Optionally, after the first terminal starts the sharing function of the wireless sharing network, the wireless sharing network of the first terminal is in an open state, and other terminals within a preset distance of the first terminal may search for the wireless sharing network. And when the second terminal searches the wireless sharing network which is started by the first terminal, sending a connection request for requesting to access the wireless sharing network to the first terminal.
Optionally, the second terminal obtains the terminal identifier of the second terminal, generates a connection request carrying the terminal identifier of the second terminal and requesting to access the wireless shared network, and sends the connection request requesting to access the wireless shared network to the first terminal.
The terminal identifier of the second terminal is used to uniquely identify the second terminal, for example, the terminal identifier is an International Mobile Equipment Identity (IMEI) of the second terminal.
Step 203, when the first terminal receives the connection request sent by the second terminal, generating configuration information matched with the wireless sharing network, wherein the configuration information carries traffic-free information.
The first terminal receives a connection request which is sent by the second terminal and used for requesting to access the wireless sharing network, and generates configuration information matched with the wireless sharing network according to the connection request.
And the terminal generates configuration information carrying the flow-free information according to the acquired flow-free information corresponding to the flow-free SIM.
Optionally, the flow-free information includes a package identifier for indicating a flow-free package type, or the flow-free information includes target application identifiers corresponding to n target application programs, where n is a positive integer.
The configuration information further includes at least one of a Service Set Identifier (SSID), a Basic Service Set Identifier (BSSID), an encryption type, and a signal strength. The SSID is a network name of a wireless sharing network of the first terminal, and the name is not unique and can be a default value or set by a user; BSSID is a Media Access Control (MAC) address of the first terminal; the signal strength is used to characterize the network signal quality of the wireless shared network.
Step 204, the first terminal sends configuration information to the second terminal.
After generating the configuration information carrying the traffic-free information, the first terminal sends the configuration information to the second terminal.
The configuration information is used for indicating the second terminal to access the wireless sharing network, reading the traffic-free information in the configuration information, and adopting a traffic-free strategy for the target application program when the target application program indicated by the traffic-free information is started.
In step 205, the second terminal receives the configuration information fed back by the first terminal.
The configuration information carries flow-free information, and the flow-free information is used for indicating that the target application program is a flow-free application program.
And step 206, the second terminal accesses the wireless shared network according to the configuration information and reads the traffic-free information in the configuration information.
Optionally, the second terminal obtains the service set identifier in the configuration information, scans an available hotspot wireless shared network list within a preset range, selects a wireless shared network corresponding to the service set identifier from the hotspot wireless shared network list, and connects with the wireless shared network.
Optionally, the terminal reads the traffic-exempt information from the configuration information, and acquires the target application indicated by the traffic-exempt information.
It should be noted that, the process of the terminal acquiring the target application indicated by the traffic exempt information may refer to the related description in the following embodiments, which will not be described herein.
And step 207, when the target application program indicated by the traffic exemption information is started, the second terminal adopts a traffic exemption strategy for the target application program.
Optionally, when the application program is started, the second terminal obtains an application identifier of the started application program, determines whether the application identifier is an application identifier of a target application program, determines the started application program as a traffic-free application program if the application identifier of the target application program is the application identifier of the target application program, and applies a traffic-free policy to the application program; if the application identifier is not the application identifier of the target application program, the started application program is determined to be a non-flow-exempting application program, and the flow of the application program in the using process is charged.
The application identification of the application program comprises the following steps: at least one of a name of the application, code, issue number, software development kit.
The second terminal adopts a flow-free strategy for the target application program, namely, in the process that the second terminal is connected with the wireless shared network corresponding to the flow-free SIM of the first terminal, the flow cost corresponding to the flow generated by using the target application program is zero, namely, the flow cost generated by using the target application program is not counted in the flow cost of the first terminal.
In summary, in the embodiment, the traffic-free information corresponding to the traffic-free SIM is obtained when the sharing function of the wireless shared network is started, and when a connection request sent by the second terminal for requesting access to the wireless shared network is received, configuration information carrying the traffic-free information is sent to the second terminal, where the traffic-free information is used to indicate that the target application is a traffic-free application; the flow-free information in the configuration information can be read when the second terminal is accessed to the wireless sharing network of the first terminal, and the flow-free strategy is adopted for the target application program when the target application program is started, so that the data flow generated by the second terminal when the second terminal is connected with the wireless sharing network of the first terminal can be suitable for the flow-free package corresponding to the flow-free SIM of the first terminal, and the flow cost of the first terminal during data flow sharing is saved.
Referring to fig. 3, a flowchart of a data traffic sharing method according to an exemplary embodiment of the present application is shown. The embodiment exemplifies that the data traffic sharing method is applied to the terminal shown in fig. 1. The data traffic sharing method comprises the following steps:
step 301, when the first terminal starts a sharing function of the wireless shared network, obtaining traffic-free information corresponding to the traffic-free SIM, where the traffic-free information is used to indicate that the target application is a traffic-free application.
The target application indicated by the traffic exempt information may be determined based on an application traffic exempt agreement signed between the internet company and the operator, and the target application indicated by the traffic exempt information may also be set in advance and stored in the non-volatile memory of the first terminal.
Optionally, the flow exemption information includes a package identifier indicating a flow exemption package type.
The package identifier is used to uniquely indicate the flow free package type. The package identification and the target application program have a preset corresponding relation. In a possible implementation manner, the preset corresponding relationship is shown in table one. The corresponding target application includes "application a" when the package identification is "01," application a and application D "when the package identification is" 01, "and application B, application C, and application E" when the package identification is "01.
Watch 1
Set meal mark Target application program
01 Application A
02 Application A and application D
03 Application B, application C, and application E
Optionally, there is an intersection between the target application programs corresponding to the at least two package identifiers, and the number of the target application programs corresponding to the at least two package identifiers is the same or different. In this embodiment, neither the number nor the type of the target application program corresponding to the package identifier is limited.
In a possible implementation manner, when a first terminal starts a sharing function of a wireless sharing network, acquiring authentication information corresponding to the first terminal; sending a data acquisition request carrying authentication information to a server, wherein the data acquisition request is used for indicating the server to issue traffic-free information to a first terminal after the authentication information is verified to pass; and receiving traffic-free information sent by the server.
Optionally, the terminal obtains authentication information corresponding to the first terminal, where the authentication information is used to instruct the server to determine whether the first terminal has the right to obtain the traffic-free information corresponding to the traffic-free SIM.
The authentication information comprises a terminal identification of the first terminal. Optionally, the authentication information further includes an identification code or a character string carrying the authentication information.
Optionally, the first terminal sends a data acquisition request carrying authentication information to the server, and correspondingly, the server receives the data acquisition request, acquires the authentication information from the data acquisition request, verifies whether the authentication information is legal, and if the authentication information is legal, the server issues flow-free information to the first terminal; and if the first terminal does not have the legality, the server issues information for indicating that the data cannot be acquired to the first terminal.
Step 302, the second terminal sends a connection request for requesting access to the wireless shared network to the first terminal.
The connection request is used for indicating the first terminal to feed back configuration information matched with the wireless sharing network to the second terminal after the sharing function of the wireless sharing network is started through the network accessed by the flow-free SIM.
The connection request for requesting access to the wireless shared network carries the terminal identifier of the second terminal.
Step 303, when the first terminal receives the connection request sent by the second terminal, the terminal identifier of the second terminal in the connection request is obtained.
The first terminal receives a connection request which is sent by the second terminal and used for requesting to access the wireless sharing network, and obtains a terminal identification of the second terminal in the connection request used for requesting to access the wireless sharing network.
Step 304, when the terminal identifier is in the traffic sharing identifier list, the first terminal generates configuration information matched with the wireless sharing network.
The flow sharing identification list comprises m preset terminal identifications used for sharing data flow, and m is a positive integer.
The method comprises the steps that a preset flow sharing identification list is stored in a first terminal and comprises m terminal identifications, and the m terminal identifications are determined by the first terminal according to historical connection records or are set by a user in a user-defined mode. In this embodiment, the setting manner of the m terminal identifiers is not limited.
And when the terminal identifier of the second terminal is in the traffic sharing identifier list, the first terminal generates configuration information carrying traffic-free information.
Step 305, the first terminal sends configuration information to the second terminal.
And the first terminal sends the configuration information carrying the traffic-free information to the second terminal.
The configuration information is used for indicating the second terminal to access the wireless sharing network, reading the traffic-free information in the configuration information, and adopting a traffic-free strategy for the target application program when the target application program indicated by the traffic-free information is started.
And step 306, the second terminal receives the configuration information fed back by the first terminal.
The configuration information carries flow-free information, and the flow-free information is used for indicating that the target application program is a flow-free application program.
And 307, the second terminal accesses the wireless shared network according to the configuration information and reads the traffic-free information in the configuration information.
Optionally, the second terminal obtains the service set identifier from the configuration information, and connects to the wireless shared network corresponding to the service set identifier.
Optionally, the second terminal reads the flow-free information in the configuration information, where the flow-free information includes a package identifier for indicating a flow-free package type.
And 308, the second terminal determines the flow-free application program list corresponding to the package identification as a target application program list according to the preset corresponding relation.
The preset corresponding relation comprises a corresponding relation between the package identification and a flow-free application program list, and the target application program list comprises n target application programs.
And the second terminal acquires a flow-free application program list corresponding to the package identification according to the preset corresponding relation, and determines the flow-free application program list as a target application program list.
The second terminal obtains the flow-free application program list corresponding to the package identifier according to the preset corresponding relationship, including but not limited to the following two possible implementation manners.
In a possible implementation manner, a preset corresponding relationship between the package identifier and the flow-free application program list is stored in the second terminal. And the second terminal acquires a preset corresponding relation stored by the second terminal and acquires a flow-free application program list corresponding to the package identification according to the preset corresponding relation.
It should be noted that the preset corresponding relationship obtained by the first terminal and the preset corresponding relationship obtained by the second terminal are the same.
In another possible implementation manner, the second terminal sends a data acquisition request carrying the package identifier to the server, and correspondingly, the server receives the data acquisition request, the server acquires the package identifier from the data acquisition request, and the server acquires the flow-free application program list corresponding to the package identifier and sends the flow-free application program list to the second terminal. And the second terminal receives the flow-free application program list sent by the server.
Step 309, when the target application program in the target application program list is in foreground operation, adopting a traffic-free strategy for the target application program.
Optionally, when the second terminal obtains the application identifier of the application program running in the foreground, it is determined whether the application identifier of the application program is the target application identifier of the target application program in the target application program list, and if the application identifier of the application program is the target application identifier, the application program running in the foreground is determined as the target application program, and a traffic-free policy is applied to the target application program.
The application identification of the application program comprises the following steps: at least one of a name of the application, code, issue number, software development kit.
Optionally, the second terminal obtains an application identifier of the application program running in the foreground from a predetermined stack of the operating system; illustratively, the predetermined stack is a predetermined active stack.
Optionally, the terminal monitors the application identifier of the application program running in the foreground in an active polling manner. Taking an operating system as an android operating system as an example, activities (English) can be layered, and each time a new Activity is started, the new Activity is overlaid on the original Activity; and storing the started activities by using an activity stack, wherein the activity stack is a last-in first-out data structure, and the activity can be stacked in the activity stack and positioned at the top of the stack when starting one activity in the default condition, and the activity positioned at the top of the stack is foreground operation activity. When the operation activity of the foreground changes, the activity at the top of the stack in the active stack also changes, the terminal monitors the operation activity of the foreground in an active polling mode through the program manager, and acquires the application identifier of the application program corresponding to the operation activity of the foreground.
In a possible implementation manner, the traffic-free information includes target application identifiers corresponding to n target application programs, and the steps 308 and 309 may be alternatively implemented as the following steps: the second terminal acquires a first application identifier of an application program running in a foreground; and when the first application identifier is the target application identifier, the second terminal determines the application program in foreground operation as the target application program, and adopts a flow-free strategy for the target application program.
After the second terminal reads the traffic-free information including n target application identifiers in the configuration information, acquiring a first application identifier of an application program running in the foreground, judging whether the first application identifier is the target application identifier, if so, determining the application program running in the foreground as the target application program, and adopting a traffic-free strategy for the target application program; if not, the process is ended.
Wherein the first application identifier of the application program comprises: at least one of a name of the application, code, issue number, software development kit.
It should be noted that, for the process of the second terminal acquiring the first application identifier of the application program running in the foreground, reference may be made to relevant details in the foregoing embodiment, and details are not described here again.
In summary, in this embodiment, the configuration information includes a package identifier for indicating a flow-free package type, so that the second terminal determines, according to the preset correspondence, a flow-free application list corresponding to the package identifier as a target application list, and when a target application in the target application list is in foreground operation, a flow-free policy is applied to the target application, thereby avoiding a situation that the configuration information needs to carry target application identifiers corresponding to n target applications, and improving generation and sending efficiency of the configuration information.
In a possible implementation manner, the step 309 further includes the following steps, as shown in fig. 4:
step 401, the first terminal obtains the terminal identifier of the second terminal in the connection request.
After receiving a connection request sent by a second terminal and used for requesting access to the wireless sharing network, the first terminal acquires a terminal identification of the second terminal from the connection request used for requesting access to the wireless sharing network.
The terminal identifier of the second terminal is used to uniquely identify the second terminal, for example, the terminal identifier is the IMEI of the second terminal.
Step 402, the first terminal obtains a traffic threshold corresponding to the terminal identifier of the second terminal.
The traffic threshold is a preset maximum data traffic generated in the process of connecting the wireless shared network of the first terminal. The flow threshold value is set by the terminal in a default mode or is set by a user in a self-defining mode.
Optionally, the first terminal stores a correspondence between the terminal identifier and the traffic threshold. In a possible implementation manner, the correspondence between the terminal identifier (such as the IMEI of the terminal) and the traffic threshold is shown in table two. The unit of the flow threshold is Gigabyte (GB).
Watch two
IMEI of terminal identification Flow threshold (GB)
862576029883176 5
862576029883177 3.5
862576029883178 10
In an illustrative example, the terminal acquires the terminal identifier "862576029883176" of the second terminal in the connection request for requesting access to the wireless shared network, and determines that the traffic threshold corresponding to the terminal identifier "862576029883176" is "5 GB" according to the correspondence shown in table two.
It should be noted that step 401 and step 402 may be executed after step 309, before step 309 and after step 203, or may be executed in parallel with step 203, and this embodiment is not limited thereto.
Step 403, after the second terminal successfully accesses the wireless sharing network, the first terminal counts data traffic generated by the second terminal in the process of accessing the wireless sharing network.
Optionally, the second terminal sends success notification information to the first terminal when the second terminal successfully accesses the wireless sharing network, and correspondingly, the first terminal starts to count data traffic generated by the second terminal in the process of accessing the wireless sharing network after receiving the notification information.
Optionally, the data traffic generated by the second terminal during accessing the wireless shared network does not include the data traffic generated during the use of the target application.
In step 404, the first terminal determines whether the counted data traffic reaches a traffic threshold.
The first terminal detects whether the counted data traffic reaches a traffic threshold in real time, and if the counted data traffic does not reach the traffic threshold, the step 403 is continuously executed; if the statistical data traffic reaches the traffic threshold, step 405 is executed.
Step 405, when the counted data traffic reaches the traffic threshold, the first terminal disconnects the second terminal from the wireless sharing network.
And when the first terminal judges that the data traffic generated by the second terminal in the process of accessing the wireless sharing network reaches the traffic threshold, disconnecting the second terminal from the wireless sharing network.
To sum up, in the embodiment of the present application, a traffic threshold corresponding to a terminal identifier of a second terminal is obtained by obtaining the terminal identifier of the second terminal in a connection request for requesting access to a wireless shared network, and after the second terminal successfully accesses the wireless shared network, data traffic generated by the second terminal in the process of accessing the wireless shared network is counted; when the first terminal provides the wireless sharing network for the second terminal, if the time for the second terminal to access the wireless sharing network is too long or the data traffic consumption is large, the connection between the second terminal and the wireless sharing network can be automatically disconnected when the data traffic exceeds the traffic threshold, so that the first terminal can monitor the data traffic used by the second terminal accessing the wireless sharing network.
The following are embodiments of the apparatus of the present application that may be used to perform embodiments of the method of the present application. For details which are not disclosed in the embodiments of the apparatus of the present application, reference is made to the embodiments of the method of the present application.
Please refer to fig. 5, which illustrates a schematic structural diagram of a data traffic sharing device according to an embodiment of the present application. The data traffic sharing apparatus may be implemented by a dedicated hardware circuit, or a combination of hardware and software, to be all or a part of the terminal in fig. 1, where the terminal is a first terminal having a traffic-free SIM, and the traffic-free SIM is an SIM that applies a traffic-free policy to a target application program. This data traffic sharing device includes: an acquisition module 510, a generation module 520, and a transmission module 530.
An obtaining module 510, configured to obtain traffic-free information corresponding to a traffic-free SIM when a sharing function of a wireless shared network is started, where the traffic-free information is used to indicate that a target application is a traffic-free application;
a generating module 520, configured to generate configuration information matched with the wireless sharing network when receiving a connection request for requesting access to the wireless sharing network sent by the second terminal, where the configuration information carries traffic-free information;
a sending module 530, configured to send configuration information to the second terminal, where the configuration information is used to instruct the second terminal to access the wireless shared network, read traffic-free information in the configuration information, and apply a traffic-free policy to the target application program when the target application program indicated by the traffic-free information is started.
Optionally, the flow exemption information includes a package identifier for indicating a flow exemption package type; alternatively, the first and second electrodes may be,
the traffic-free information includes target application identifiers corresponding to n target application programs, where n is a positive integer.
Optionally, the obtaining module 510 is further configured to obtain authentication information corresponding to the first terminal when the sharing function of the wireless shared network is started; sending a data acquisition request carrying authentication information to a server, wherein the data acquisition request is used for indicating the server to issue traffic-free information to a first terminal after the authentication information is verified to pass; and receiving traffic-free information sent by the server.
Optionally, the generating module 520 is further configured to, when receiving a connection request sent by a second terminal, obtain a terminal identifier of the second terminal in the connection request; when the terminal identifier is in a traffic sharing identifier list, generating configuration information matched with the wireless sharing network, wherein the traffic sharing identifier list comprises m preset terminal identifiers used for sharing data traffic, and m is a positive integer.
Optionally, the apparatus further comprises: and a disconnection module. The disconnection module is used for acquiring the terminal identifier of the second terminal in the connection request; acquiring a flow threshold corresponding to a terminal identifier of a second terminal; after the second terminal is successfully accessed to the wireless sharing network, counting data traffic generated in the process of accessing the wireless sharing network by the second terminal; and when the counted data flow reaches the flow threshold value, disconnecting the second terminal from the wireless shared network.
The relevant details may be combined with the method embodiments described with reference to fig. 2-4. The obtaining module 510 is further configured to implement any other implicit or public functions related to the obtaining step in the foregoing method embodiments; the generating module 520 is further configured to implement any other implicit or disclosed functionality related to the generating step in the above method embodiments; the sending module 530 is further configured to implement any other implicit or disclosed functionality related to the sending step in the above method embodiments.
Please refer to fig. 6, which illustrates a schematic structural diagram of a data traffic sharing device according to an embodiment of the present application. The data traffic sharing apparatus may be implemented by a dedicated hardware circuit, or a combination of hardware and software, to become all or a part of the terminal in fig. 1, and includes: a sending module 610, a receiving module 620 and a processing module 630.
A sending module 610, configured to send a connection request for requesting access to a wireless sharing network to a first terminal, where the connection request is used to instruct the first terminal to feed back configuration information matched with the wireless sharing network to a second terminal after starting a sharing function of the wireless sharing network;
a receiving module 620, configured to receive configuration information fed back by the first terminal, where the configuration information carries traffic-free information, and the traffic-free information is used to indicate that the target application is a traffic-free application;
the processing module 630 is configured to access the wireless shared network according to the configuration information, and read traffic-free information in the configuration information;
the processing module 630 is further configured to apply the traffic exempt policy to the target application when the target application indicated by the traffic exempt information is started.
Optionally, the flow exemption information includes a package identifier for indicating a flow exemption package type; the processing module 630 is further configured to determine, according to a preset correspondence, a flow-free application list corresponding to the package identifier as a target application list, where the preset correspondence includes a correspondence between the package identifier and the flow-free application list, and the target application list includes n target applications; and when the target application program in the target application program list is in foreground operation, adopting a flow-free strategy for the target application program.
Optionally, the traffic-free information includes target application identifiers corresponding to the n target application programs respectively; the processing module 630 is further configured to obtain a first application identifier of the application program running in the foreground; and when the first application identifier is the target application identifier, determining the application program running in the foreground as the target application program, and adopting a flow-free strategy for the target application program.
The relevant details may be combined with the method embodiments described with reference to fig. 2-4. The sending module 610 is further configured to implement any other implicit or public functions related to the sending step in the foregoing method embodiment; the receiving module 620 is further configured to implement any other implicit or disclosed functionality related to the receiving step in the above method embodiments; the processing module 630 is also used to implement any other implicit or disclosed functionality related to the processing steps in the above method embodiments.
It should be noted that, when the apparatus provided in the foregoing embodiment implements the functions thereof, only the division of the functional modules is illustrated, and in practical applications, the functions may be distributed by different functional modules according to needs, that is, the internal structure of the apparatus may be divided into different functional modules to implement all or part of the functions described above. In addition, the apparatus and method embodiments provided by the above embodiments belong to the same concept, and specific implementation processes thereof are described in the method embodiments for details, which are not described herein again.
The present application further provides a computer-readable medium, on which program instructions are stored, and when the program instructions are executed by a processor, the data traffic sharing method provided by the above-mentioned method embodiments is implemented.
The present application further provides a computer program product containing instructions, which when run on a computer, causes the computer to execute the data traffic sharing method according to the above embodiments.
The above-mentioned serial numbers of the embodiments of the present application are merely for description and do not represent the merits of the embodiments.
It will be understood by those skilled in the art that all or part of the steps in the data traffic sharing method for implementing the above embodiments may be implemented by hardware, or may be implemented by a program instructing associated hardware, where the program may be stored in a computer-readable storage medium, and the above-mentioned storage medium may be a read-only memory, a magnetic disk, an optical disk, or the like. The above description is only exemplary of the present application and should not be taken as limiting the present application, as any modification, equivalent replacement, or improvement made within the spirit and principle of the present application should be included in the protection scope of the present application.

Claims (11)

1. A data traffic sharing method is used in a first terminal having a traffic-free Subscriber Identity Module (SIM), wherein the traffic-free SIM is an SIM which adopts a traffic-free strategy for a target application program, and the method comprises the following steps:
acquiring flow-free information corresponding to the flow-free SIM when a sharing function of a wireless sharing network is started, wherein the flow-free information is used for indicating that the target application program is a flow-free application program;
when a connection request which is sent by a second terminal and used for requesting access to the wireless sharing network is received, generating configuration information matched with the wireless sharing network, wherein the configuration information carries flow-free information, the flow-free information comprises a package identifier used for indicating a flow-free package type, or the flow-free information comprises target application identifiers corresponding to n target application programs respectively, and n is a positive integer;
sending the configuration information to the second terminal, where the configuration information is used to instruct the second terminal to access the wireless shared network, read the traffic exemption information in the configuration information, and when the target application program indicated by the traffic exempt information is started, adopt the traffic exemption policy for the target application program.
2. The method according to claim 1, wherein the obtaining of the traffic-free information corresponding to the traffic-free SIM when starting the sharing function of the wireless shared network includes:
when the sharing function of the wireless sharing network is started, acquiring authentication information corresponding to the first terminal;
sending a data acquisition request carrying the authentication information to a server, wherein the data acquisition request is used for indicating the server to issue the flow-free information to the first terminal after the authentication information is verified to pass;
and receiving the traffic-free information sent by the server.
3. The method according to claim 1, wherein the generating configuration information matching with the wireless sharing network when receiving a connection request sent by a second terminal for requesting access to the wireless sharing network comprises:
when the connection request sent by the second terminal is received, acquiring a terminal identifier of the second terminal in the connection request;
and when the terminal identifier is in a traffic sharing identifier list, generating the configuration information matched with the wireless sharing network, wherein the traffic sharing identifier list comprises m preset terminal identifiers used for sharing data traffic, and m is a positive integer.
4. The method of any of claims 1 to 3, further comprising:
acquiring a terminal identifier of the second terminal in the connection request;
acquiring a flow threshold corresponding to the terminal identifier of the second terminal;
after the second terminal is successfully accessed to the wireless sharing network, counting data traffic generated in the process of accessing the wireless sharing network by the second terminal, wherein the data traffic generated in the process of accessing the wireless sharing network by the second terminal does not include the data traffic generated in the use process of the target application program;
and when the counted data traffic reaches the traffic threshold, disconnecting the second terminal from the wireless shared network.
5. A data traffic sharing method is used in a second terminal, and the method comprises the following steps:
sending a connection request for requesting access to a wireless sharing network to a first terminal, wherein the connection request is used for indicating that the first terminal feeds back configuration information matched with the wireless sharing network to a second terminal after starting a sharing function of the wireless sharing network, the first terminal is a terminal with a traffic-free Subscriber Identity Module (SIM), and the traffic-free SIM is an SIM adopting a traffic-free strategy for a target application program;
receiving the configuration information fed back by the first terminal, where the configuration information carries traffic-free information corresponding to the traffic-free SIM, and the traffic-free information is used to indicate that the target application program is a traffic-free application program;
accessing the wireless shared network according to the configuration information, and reading the traffic-free information in the configuration information, where the traffic-free information includes a package label indicating a type of a traffic-free package, or the traffic-free information includes target application identifiers corresponding to n target application programs, where n is a positive integer;
and adopting the traffic-exempt strategy for the target application program when the target application program indicated by the traffic-exempt information is started.
6. The method of claim 5, wherein in the case that the traffic-exempt information includes a package identifier indicating a traffic-exempt package type, said employing the traffic-exempt policy for the target application when the target application indicated by the traffic-exempt information is started comprises:
determining a flow-free application program list corresponding to the package identifier as a target application program list according to a preset corresponding relationship, wherein the preset corresponding relationship comprises a corresponding relationship between the package identifier and the flow-free application program list, and the target application program list comprises n target application programs;
and when the target application program in the target application program list is in foreground operation, adopting the traffic-free strategy for the target application program.
7. The method according to claim 5, wherein in a case that the traffic-exempt information includes target application identifications corresponding to n target applications, the adopting the traffic-exempt policy for the target application when the target application indicated by the traffic-exempt information is started comprises:
acquiring a first application identifier of an application program running in a foreground;
and when the first application identifier is the target application identifier, determining the application program in foreground operation as the target application program, and adopting the traffic-free strategy for the target application program.
8. A data traffic sharing apparatus is used in a first terminal having a traffic-free Subscriber Identity Module (SIM), wherein the traffic-free SIM is an SIM that adopts a traffic-free policy for a target application, and the apparatus includes:
the acquisition module is used for acquiring traffic-free information corresponding to the traffic-free SIM when a sharing function of a wireless sharing network is started, wherein the traffic-free information is used for indicating that the target application program is a traffic-free application program;
a generating module, configured to generate configuration information matched with the wireless shared network when a connection request for requesting access to the wireless shared network is received, where the configuration information carries the traffic-free information, where the traffic-free information includes a package identifier for indicating a type of the traffic-free package, or the traffic-free information includes target application identifiers corresponding to n target application programs, where n is a positive integer;
a sending module, configured to send the configuration information to the second terminal, where the configuration information is used to instruct the second terminal to access the wireless shared network, read the traffic-free information in the configuration information, and apply the traffic-free policy to the target application program when the target application program indicated by the traffic-free information is started.
9. A data traffic sharing apparatus, for use in a second terminal, the apparatus comprising:
the wireless sharing system comprises a sending module, a receiving module and a sending module, wherein the sending module is used for sending a connection request for requesting to access a wireless sharing network to a first terminal, the connection request is used for indicating the first terminal to feed back configuration information matched with the wireless sharing network to a second terminal after starting a sharing function of the wireless sharing network, the first terminal is a terminal with a traffic-free user identity module (SIM), and the traffic-free SIM is an SIM adopting a traffic-free strategy for a target application program;
a receiving module, configured to receive the configuration information fed back by the first terminal, where the configuration information carries traffic-free information corresponding to the traffic-free SIM, and the traffic-free information is used to indicate that the target application is a traffic-free application;
a processing module, configured to access the wireless shared network according to the configuration information, and read the traffic-free information in the configuration information, where the traffic-free information includes a package label used to indicate a type of a traffic-free package, or the traffic-free information includes target application identifiers corresponding to n target application programs, where n is a positive integer;
the processing module is further configured to apply the traffic exemption policy to the target application program when the target application program indicated by the traffic exemption information is started.
10. A terminal, comprising a processor, a memory coupled to the processor, and program instructions stored on the memory, wherein the processor, when executing the program instructions, implements the data traffic sharing method according to any one of claims 1 to 7.
11. A computer-readable storage medium having stored thereon program instructions which, when executed by a processor, implement the data traffic sharing method according to any one of claims 1 to 7.
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