WO2019019329A1 - 一种网络性能优化方法、系统及计算机可读存储介质 - Google Patents

一种网络性能优化方法、系统及计算机可读存储介质 Download PDF

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Publication number
WO2019019329A1
WO2019019329A1 PCT/CN2017/102860 CN2017102860W WO2019019329A1 WO 2019019329 A1 WO2019019329 A1 WO 2019019329A1 CN 2017102860 W CN2017102860 W CN 2017102860W WO 2019019329 A1 WO2019019329 A1 WO 2019019329A1
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Prior art keywords
network connection
preset
request
time
consuming
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PCT/CN2017/102860
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English (en)
French (fr)
Inventor
何兵
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Ping An Technology Shenzhen Co Ltd
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Ping An Technology Shenzhen Co Ltd
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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L43/00Arrangements for monitoring or testing data switching networks
    • H04L43/08Monitoring or testing based on specific metrics, e.g. QoS, energy consumption or environmental parameters
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L43/00Arrangements for monitoring or testing data switching networks
    • H04L43/16Threshold monitoring
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L47/00Traffic control in data switching networks
    • H04L47/10Flow control; Congestion control
    • H04L47/24Traffic characterised by specific attributes, e.g. priority or QoS
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W24/00Supervisory, monitoring or testing arrangements
    • H04W24/02Arrangements for optimising operational condition
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W24/00Supervisory, monitoring or testing arrangements
    • H04W24/08Testing, supervising or monitoring using real traffic

Definitions

  • the present application relates to the field of computer technologies, and in particular, to a network performance optimization method, system, and computer readable storage medium.
  • the server is only responsible for receiving the network request from the mobile terminal and making a corresponding response according to the network request, and cannot determine whether the terminal successfully receives the data. Therefore, we need to perform network performance detection on the communication connection between the mobile terminal and the server to obtain network parameters for network performance analysis or optimization.
  • the embodiment of the present application provides a network performance optimization method, system, and computer readable storage medium, which can quickly and accurately collect network parameters of a network connection and optimize performance of the network connection.
  • an embodiment of the present application provides a network performance optimization method, where the method includes:
  • the network connection is optimized by the server according to the network connection parameter and a preset optimization policy.
  • the embodiment of the present application provides a network performance optimization system, where the system includes a terminal and a server, and the terminal includes:
  • a first acquiring unit configured to obtain a corresponding class file according to the current network connection
  • a second obtaining unit configured to acquire network connection parameters of the network connection according to the class file
  • a first determining unit configured to determine whether the network connection parameter meets a preset uploading condition
  • the uploading unit is configured to upload the network connection parameter to the server if the network connection parameter meets a preset uploading condition
  • the server is configured to optimize the network connection according to the network connection parameter and a preset optimization policy.
  • an embodiment of the present application provides another network performance optimization system, where the system includes a terminal and a server, the terminal includes: a first memory and a first processor; and the first memory is stored with an executable Program data; the server includes a second memory and a second processor; the second memory also stores executable program data; the first processor is configured to run program data stored in the first memory, The second processor is configured to run program data stored in the second memory to jointly perform the following operations:
  • the network connection is optimized by the server according to the network connection parameter and a preset optimization policy.
  • an embodiment of the present application provides a computer readable storage medium, where the computer readable storage medium stores one or more program data, and the one or more program data may be executed by one or more processors to implement the following: step:
  • the network connection is optimized by the server according to the network connection parameter and a preset optimization policy.
  • the embodiment of the present application provides a network performance optimization method, a system, and a computer readable storage medium.
  • the network connection parameters of the network connection are obtained according to the class file corresponding to the current network connection, and the acquired network connection parameters meet the preset Upload conditions, upload the network connection parameters to the server, and optimize the network connection according to the network connection parameters and the preset optimization policy by the server.
  • the collection of network parameters of the network connection can be completed quickly and accurately, and the performance of the network connection is optimized.
  • FIG. 1 is a schematic flowchart of a network performance optimization method according to an embodiment of the present application.
  • FIG. 2 is a schematic diagram of a sub-flow of a network performance optimization method according to an embodiment of the present application
  • FIG. 3 is a schematic diagram of a sub-flow of a network performance optimization method according to an embodiment of the present application.
  • FIG. 4 is a schematic diagram of a sub-flow of a network performance optimization method according to an embodiment of the present application.
  • FIG. 5 is a schematic diagram of a sub-flow of a network performance optimization method according to an embodiment of the present application.
  • FIG. 6 is a schematic block diagram of a network performance optimization system according to an embodiment of the present application.
  • FIG. 7 is a schematic block diagram of a second acquiring unit in a network performance optimization system according to an embodiment of the present disclosure
  • FIG. 8 is a schematic block diagram of another network performance optimization system provided by an embodiment of the present application.
  • the terminal described in the embodiment of the present application includes but is not limited to other portable terminals such as a mobile phone, a laptop computer or a tablet computer that can execute an application. It should also be understood that in some embodiments, the terminal is not a portable communication terminal, but also includes a desktop computer, television, etc., that can execute an application. The terminal can install and execute various applications.
  • FIG. 1 is a schematic flowchart of a network performance optimization method according to an embodiment of the present application.
  • the method includes the following steps S101-S104.
  • the network connection is established between the terminal and the server.
  • the establishment of the network connection may be completed through a wired network, for example, IP (Internet) Protocol, Internet Protocol) network; it can also be done over a wireless network, for example, WiFi (Wireless) Fidelity, wireless fidelity) network, can also be a mobile communication network, such as second generation mobile communication network (Second Generation, 2G), third generation mobile communication network (Third) Generation, 3G), fourth-generation mobile communication network (Fourth Generation, 4G).
  • the network is established between the terminal and the server, and the terminal sends a network request to the server, and can connect to the server by calling a system network interface or a third-party network interface, such as an interface such as OKhttp, and can connect to the network when the terminal invokes the network interface.
  • the class file is collected.
  • the class file of the system management network can be obtained through the runtime characteristics of the object-c language. This type of file can be a piece of code or a file with related code.
  • the network connection parameters include, but are not limited to, a network address, a request time consuming, a request number, a data transmission amount, and an HTTP status code.
  • the network address is a unique resource locator (URL) uniquely corresponding to each web page in the network connection.
  • the request takes time to elapse the time it takes to establish the network connection.
  • the number of requests is the number of network requests corresponding to the network address.
  • the amount of data transferred is the amount of data that is exchanged between the terminal and the server in the network connection.
  • the HTTP status code is a 3-digit code used to indicate the HTTP response status of the web server. For example, 404 can be used to indicate that the request parameter is incorrect.
  • the acquisition of network connection parameters can be done in various forms.
  • hooks can be used to obtain relevant network connection parameters by means of code injection.
  • the uploading condition may be set according to time, a packet size of the network connection parameter, or a usage scenario of the terminal application. For example, the uploading condition may be set whether the uploading interval is greater than 30 minutes, or whether the data packet size of the network connection parameter is greater than 1 Mb, or whether the usage scenario of the terminal application is an application open state. If the uploading interval is greater than 30 minutes or the data packet size of the network connection parameter is greater than 1 Mb or the usage scenario of the terminal application is the application open state, it is determined that the network connection parameter meets the preset uploading condition.
  • the upload condition is whether the packet size of the network connection parameter is greater than 1M. If the data packet size of the network connection parameter is greater than 1 Mb, it is determined that the network connection parameter meets a preset upload condition, and then the network connection parameter is uploaded to the server.
  • the server optimizes the network connection according to the network connection parameter and a preset optimization policy.
  • the network connection parameters obtained by the terminal are uploaded to the server, the network connection parameters are analyzed, and the network connection is optimized according to a preset optimization strategy, thereby reducing the processing load pressure of the terminal. Increased processing speed.
  • the network connection parameter is an HTTP status code. Assuming that the obtained HTTP status code is 404, the administrator is sent a notification that the webpage content corresponding to the network address is lost.
  • the network connection parameter of the network connection is obtained according to the class file corresponding to the current network connection. If the obtained network connection parameter meets the preset upload condition, the network connection parameter is uploaded to the server, and the server is used according to the network.
  • the connection parameters and preset optimization strategies optimize the network connection. By implementing the embodiments of the present application, the collection of network parameters of the network connection can be completed quickly and accurately, and the performance of the network connection is optimized.
  • FIG. 2 is a schematic diagram of a sub-flow of a network performance optimization method according to an embodiment of the present application.
  • the network connection parameter is a time-consuming request
  • the acquiring the network connection parameter of the network connection according to the class file specifically includes the following steps S201-S204.
  • the class file includes a request function for establishing a network connection and a response function.
  • the request function is obtained in the class file, the request time when the request function is obtained is recorded.
  • the response time when the response function is acquired is recorded.
  • the request function and the response function in each class file correspond to the same unique identification code.
  • the number of network connections established by the terminal at the same time is not unique, and the corresponding request function corresponding to the response function in the same network connection established by the terminal is the same. If the unique identification code of the request function is the same as the unique identification code of the response function, it is determined that the request function belongs to the same network connection as the response function.
  • the unique identification code of the request function is the same as the unique identification code of the response function, it is determined that the request function and the response function belong to the same network connection. The difference between the request time and the response time is calculated, and the obtained absolute value result is time-consuming for the request of the network connection corresponding to the request function or the response function.
  • the foregoing embodiment performs time recording by using a request function corresponding to a class file corresponding to the network file and a response function, and determines whether the recorded time belongs to the same network connection according to the unique identification code of the request function and the response function, according to the request time and the response time. It can be calculated that the request for this network connection is time consuming. By implementing the embodiment, it takes time and time to obtain the request of the network connection accurately and quickly.
  • FIG. 3 is a schematic diagram of a sub-flow of a network performance optimization method according to an embodiment of the present application.
  • optimizing the network connection by the server according to the network connection parameter and a preset optimization policy includes the following steps S301-S304.
  • the preset time-consuming threshold may be 50 ms or other values.
  • the network address corresponding to the network connection is counted. If the request takes 60 ms, it is determined that the request takes longer than the preset time-consuming threshold. Further, the network address corresponding to the time-consuming request is recorded in the form of a number of times.
  • an abnormal reminder may be generated for outputting the network address, and then according to a preset optimization policy.
  • the network address is optimized.
  • the preset optimization strategy includes, but is not limited to, buffering resources corresponding to the network address on the terminal side, so as to avoid repeatedly requesting the same content every time, for example, multi-image downloading may consider using a cache.
  • the foregoing embodiment determines that the network address is abnormal according to a network address that is longer than a preset time-consuming threshold, and determines whether the network address is greater than a preset count threshold.
  • the network address is optimized. By analyzing the collected network connection parameters, the corresponding analysis results are obtained, and the analysis results are optimized to improve the optimization efficiency of the network connection.
  • FIG. 4 is a schematic diagram of a sub-flow of a network performance optimization method according to an embodiment of the present application. Based on the foregoing embodiment, before determining whether the request takes time is greater than a preset time-consuming threshold, the following steps S401-S404 are further included.
  • Obtaining a request corresponding to at least two different network addresses takes time.
  • the request time corresponding to the four different network addresses is 30ms, 70ms, 25ms, and 75ms, respectively.
  • the number of network addresses collected may be two or more.
  • the above embodiment calculates the average request time-consuming by calculating the time-consuming calculation of the request corresponding to the at least two different network addresses, and sets the average request time-consuming to the preset time-consuming threshold in the foregoing embodiment.
  • the reliability of the preset time-consuming threshold can be improved, which is beneficial to improve the accuracy of network performance analysis.
  • FIG. 5 is a schematic diagram of a sub-flow of a network performance optimization method according to an embodiment of the present application.
  • the network connection parameter includes the number of requests and the amount of data transmission.
  • the network connection optimization by the server according to the network connection parameter and the preset optimization policy specifically includes the following steps S501-S502.
  • S501 Determine whether the number of requests is less than a preset number of times threshold, and determine whether the data transmission amount is greater than a preset transmission amount threshold.
  • the preset optimization policy may be: determining whether the file type requested by the network is a webpage file type, and if the file type requested by the network is a webpage file type, the webpage file is paged.
  • the above embodiment analyzes the number of requests and the amount of data transmission in the network connection to obtain a corresponding optimization. Helps to enhance the user experience.
  • the embodiment of the present application further provides a network performance optimization system 100, including a terminal 110 and a server 120.
  • the terminal 110 includes a first obtaining unit 111, a second obtaining unit 112, a first determining unit 113, and an uploading unit 114.
  • the first obtaining unit 111 is configured to obtain a corresponding class file according to the current network connection.
  • the network connection may be established between the terminal 110 and the server 120, or may be established between the terminal and the terminal or the server and the server.
  • the embodiment of the present application does not limit the entity established by the network connection.
  • the establishment of the network connection may be completed through a wired network, for example, IP (Internet) Protocol, Internet Protocol) network; it can also be done over a wireless network, for example, WiFi (Wireless) Fidelity, wireless fidelity) network, can also be a mobile communication network, such as second generation mobile communication network (Second Generation, 2G), third generation mobile communication network (Third) Generation, 3G), fourth-generation mobile communication network (Fourth Generation, 4G).
  • the terminal 110 sends a network request to the server 120, and can connect to the server 120 by calling a system network interface or a third-party network interface, such as an interface such as OKhttp.
  • the terminal 110 invokes the network interface, the class file of the network connection is collected.
  • the class file of the system management network can be obtained through the runtime characteristics of the object-c language. This type of file can be a piece of code or a file with related code.
  • the second obtaining unit 112 is configured to obtain network connection parameters of the network connection according to the type of file.
  • the network connection parameters include, but are not limited to, a network address, a request time consuming, a request number, a data transmission amount, and an HTTP status code.
  • the network address is a unique resource locator (URL) uniquely corresponding to each web page in the network connection.
  • the request takes time to elapse the time it takes to establish the network connection.
  • the number of requests is the number of network requests corresponding to the network address.
  • the amount of data transmission is the amount of data that is exchanged between the terminal 110 and the server 120 in the network connection.
  • the HTTP status code is a 3-digit code used to indicate the HTTP server response status of the web server 120. For example, 404 can be used to indicate that the request parameter is incorrect.
  • the acquisition of network connection parameters can be done in various forms.
  • hooks can be used to obtain related network connection parameters by means of code injection.
  • the first determining unit 113 is configured to determine whether the network connection parameter meets a preset uploading condition.
  • the uploading condition may be set according to time, a packet size of the network connection parameter, or a usage scenario applied by the terminal 110.
  • the uploading condition may be set to whether the uploading interval is greater than 30 minutes, or whether the data packet size of the network connection parameter is greater than 1 Mb, or whether the usage scenario applied by the terminal 110 is an application open state. If the uploading interval is greater than 30 minutes or the data packet size of the network connection parameter is greater than 1 Mb or the usage scenario of the terminal 110 application is the application open state, it is determined that the network connection parameter meets the preset uploading condition.
  • the uploading unit 114 is configured to upload the network connection parameter to the server 120 if the network connection parameter satisfies a preset uploading condition.
  • the upload condition is whether the packet size of the network connection parameter is greater than 1M. If the data packet size of the network connection parameter is greater than 1 Mb, it is determined that the network connection parameter meets a preset upload condition, and then the network connection parameter is uploaded to the server 120.
  • the server 120 is configured to optimize the network connection according to the network connection parameter and a preset optimization policy.
  • the network connection parameters are analyzed, and the network connection is optimized according to a preset optimization policy, thereby reducing the terminal 110. Handling load pressure and increasing processing speed.
  • the network connection parameter is an HTTP status code. Assuming that the obtained HTTP status code is 404, the administrator is sent a notification that the webpage content corresponding to the network address is lost.
  • the above embodiment obtains the network connection parameter of the network connection according to the class file corresponding to the current network connection. If the obtained network connection parameter meets the preset upload condition, the network connection parameter is uploaded to the server 120 and passes through the server.
  • the network connection is optimized according to the network connection parameter and a preset optimization policy.
  • the network connection parameter includes a request time consuming
  • the second obtaining unit 112 includes a third obtaining unit 1121, a fourth obtaining unit 1122, a second determining unit 1123, and a first calculating unit 1124.
  • the third obtaining unit 1121 is configured to acquire a request function in the class file and record a request time when the request function is obtained.
  • the class file includes a request function for establishing a network connection and a response function.
  • the request function is obtained in the class file, the request time when the request function is obtained is recorded.
  • the fourth obtaining unit 1122 is configured to acquire a response function in the class file and record a response time when the response function is acquired.
  • the response time when the response function is acquired is recorded.
  • the second determining unit 1123 is configured to determine whether the unique identification code of the request function is the same as the unique identification code of the response function.
  • the request function and the response function in each class file correspond to the same unique identification code.
  • the number of network connections established by the terminal 110 at the same time is not unique, and the corresponding request function corresponding to the response function in the same network connection established by the terminal is the same. If the unique identification code of the request function is the same as the unique identification code of the response function, it is determined that the request function belongs to the same network connection as the response function.
  • the first calculating unit 1124 is configured to: if the unique identification code of the request function is the same as the unique identification code of the response function, calculate the time-consuming of the request according to the request time and the response time.
  • the unique identification code of the request function is the same as the unique identification code of the response function, it is determined that the request function and the response function belong to the same network connection. The difference between the request time and the response time is calculated, and the obtained absolute value result is time-consuming for the request of the network connection corresponding to the request function or the response function.
  • the foregoing embodiment performs time recording by using a request function corresponding to a class file corresponding to the network file and a response function, and determines whether the recorded time belongs to the same network connection according to the unique identification code of the request function and the response function, according to the request time and the response time. It can be calculated that the request for this network connection is time consuming. By implementing the embodiment, it takes time and time to obtain the request of the network connection accurately and quickly.
  • the server 120 includes a third determining unit 121 , a counting unit 122 , a fourth determining unit 123 , and an address optimizing unit 124 . among them,
  • the third determining unit 121 is configured to determine whether the time consumption of the request is greater than a preset time-consuming threshold.
  • the preset time-consuming threshold may be 50 ms or other values.
  • the counting unit 122 is configured to count the network address corresponding to the network connection if the request takes longer than a preset time-consuming threshold. If the request takes 60 ms, it is determined that the request takes longer than the preset time-consuming threshold. Further, the network address corresponding to the time-consuming request is recorded in the form of a number of times.
  • the fourth determining unit 123 is configured to determine whether the count is greater than a preset count threshold.
  • the counting threshold may be 10 times.
  • the address optimization unit 124 is configured to optimize the network address according to a preset optimization policy if the count is greater than a preset count threshold.
  • an abnormal reminder may be generated for outputting the network address, and then according to a preset optimization policy.
  • the network address is optimized.
  • the preset optimization strategy includes, but is not limited to, buffering the resource corresponding to the network address on the terminal 110 side, so as to avoid repeatedly requesting the same content every time. For example, the multi-image download may consider using the cache.
  • the foregoing embodiment determines that the network address is abnormal according to a network address that is longer than a preset time-consuming threshold, and determines whether the network address is greater than a preset count threshold.
  • the network address is optimized. By analyzing the collected network connection parameters, the corresponding analysis results are obtained, and the analysis results are optimized to improve the optimization efficiency of the network connection.
  • the server 120 further includes a second calculating unit, a third calculating unit, and a setting unit.
  • the second calculating unit is configured to acquire a request time corresponding to at least two different network addresses.
  • the request time corresponding to the four different network addresses is 30ms, 70ms, 25ms, and 75ms, respectively.
  • the number of network addresses collected may be two or more.
  • the third calculating unit is configured to calculate an average request time consuming time of the request corresponding to the at least two different network addresses. According to the above-mentioned obtained request time-consuming, the corresponding average request time is calculated to be 50 ms.
  • the setting unit is configured to set the average request time-consuming to the preset time-consuming threshold.
  • the above embodiment calculates the average request time-consuming by calculating the time-consuming calculation of the request corresponding to the at least two different network addresses, and sets the average request time-consuming to the preset time-consuming threshold in the foregoing embodiment.
  • the reliability of the preset time-consuming threshold can be improved, which is beneficial to improve the accuracy of network performance analysis.
  • the network connection parameter includes the number of requests and the amount of data transmission
  • the server 120 may further include a fifth determining unit and a data optimizing unit.
  • the fifth determining unit is configured to determine whether the number of requests is less than a preset number of times threshold, and determine whether the data transmission amount is greater than a preset transmission amount threshold.
  • the data optimization unit is configured to optimize the data transmission mode of the network connection according to a preset optimization policy, if the number of requests is less than a preset number of times threshold, and the data transmission amount is greater than a preset transmission amount threshold.
  • the preset optimization policy may be: determining whether the file type requested by the network is a webpage file type, and if the file type requested by the network is a webpage file type, the webpage file is paged.
  • the above embodiment analyzes the number of requests and the amount of data transmission in the network connection to obtain a corresponding optimization. Helps to enhance the user experience.
  • the system 200 includes a terminal 210 and a server 220.
  • the terminal 210 includes: one or more first input devices 211; one or more first output devices 212; a first memory 213 and a first processor 214.
  • the first input device 211, the first output device 212, the first memory 213, and the first processor 214 are connected by a first bus 215, and the first memory 213 stores executable program data.
  • the server 220 includes one or more second input devices 221; one or more second output devices 222; a second memory 223 and a second processor 224.
  • the second input device 221, the second output device 222, the second memory 223, and the second processor 224 are connected by a second bus 225, which also stores executable program data. among them:
  • the first input device 211 or the second input device 221 is configured to provide a request for the user to send a network request, and provide a request instance for the user to re-send the network request.
  • the first input device 211 or the second input device 221 of the embodiment of the present application may include a keyboard, a mouse, a photoelectric input device, a sound input device, a touch input device, and the like.
  • the first output device 212 or the second output device 222 is configured to display a status after the execution of the network request is successful, a reason why the network request of the request instance is not successfully executed, and the like.
  • the first output device 212 or the second output device 222 of the embodiment of the present application may include a display, a display screen, a touch screen, a sound output device, and the like.
  • the first memory 213 or the second memory 223 is used to store program data with various functions.
  • the data stored in the first memory 213 or the second memory 223 in the embodiment of the present application includes a network request, a request instance, a priority of the request instance, a preset time, a preset number, a preset number of times, a suspension waiting time, a suspension queue, and a wait.
  • the first memory 213 or the second memory 223 of the embodiment of the present application may be a system memory, such as a non-volatile (such as a ROM, a flash memory, etc.).
  • the first memory 213 or the second memory 223 of the embodiment of the present application may also be an external memory outside the system, such as a magnetic disk, an optical disk, a magnetic tape, or the like.
  • the first processor 214 is configured to call and run the program data stored in the first memory 213 to perform the following operations:
  • the network connection parameter is uploaded to the server 220.
  • the second processor 224 is configured to call and run the program data stored in the second memory 223 to perform the following operations:
  • the network connection parameter includes a request time consuming, and the first processor 214 further performs the following operations:
  • the request time is calculated according to the request time and the response time.
  • the second processor 224 when the server 220 optimizes the network connection according to the network connection parameter and the preset optimization policy, the second processor 224 further performs the following operations:
  • Determining whether the request is time-consuming is greater than a preset time-consuming threshold
  • the network address corresponding to the network connection is counted
  • the network address is optimized according to a preset optimization policy.
  • the second processor 224 further performs the following operations:
  • the average request time consuming is set to the preset time consuming threshold.
  • the network connection parameter includes a number of requests and a data transmission amount
  • the second processor 224 further performs the following operations:
  • the data transmission mode of the network connection is optimized according to a preset optimization policy.
  • the embodiment of the present application provides a network performance optimization system, which is implemented by the second processor 224 in the server 220 and runs the program data stored in the second memory 223, so that the server provided by the foregoing embodiment can be implemented.
  • the application further provides a computer readable storage medium storing more than one program data, the one or more program data being executable by more than one processor to implement the following steps:
  • the network connection is optimized by the server according to the network connection parameter and a preset optimization policy.
  • the network connection parameter includes a time-consuming request
  • the network connection parameter of the network connection is obtained according to the class file, and the step further includes:
  • the request time is calculated according to the request time and the response time.
  • the network is optimized by the server according to the network connection parameter and a preset optimization policy, and the step further includes:
  • Determining whether the request is time-consuming is greater than a preset time-consuming threshold
  • the network address corresponding to the network connection is counted
  • the network address is optimized according to a preset optimization policy.
  • the step further includes:
  • the average request time consuming is set to the preset time consuming threshold.
  • the network connection parameter includes a request quantity and a data transmission quantity
  • the network connection is optimized by the server according to the network connection parameter and a preset optimization policy, and the step further includes:
  • the data transmission mode of the network connection is optimized according to a preset optimization policy.
  • the disclosed terminal, server, and method may be implemented in other manners.
  • the terminal and server embodiments described above are merely illustrative.
  • the division of the unit is only a logical function division.
  • the mutual coupling or direct coupling or communication connection shown or discussed may be an indirect coupling or communication connection through some interface, terminal or unit, or an electrical, mechanical or other form of connection.
  • the units described as separate components may or may not be physically separated, and the components displayed as units may or may not be physical units, that is, may be located in one place, or may be distributed to multiple network units. Some or all of the units may be selected according to actual needs to achieve the objectives of the embodiments of the present application.
  • each functional unit in each embodiment of the present application may be integrated into one processing unit, or each unit may exist physically separately, or two or more units may be integrated into one unit.
  • the above integrated unit can be implemented in the form of hardware or in the form of a software functional unit.
  • the integrated unit if implemented in the form of a software functional unit and sold or used as a standalone product, may be stored in a computer readable storage medium.
  • the technical solution of the present application may be in essence or part of the contribution to the prior art, or all or part of the technical solution may be embodied in the form of a software product stored in a storage medium.
  • Including several instructions to make a computer device may be a personal computer, server, or network device, etc.
  • the foregoing storage medium includes: a USB flash drive, a mobile hard disk, and a read only memory. (ROM, Read-Only Memory), disk or optical disc, etc.
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Abstract

本申请实施例提供一种网络性能优化方法、系统及计算机可读存储介质。所述方法包括:根据当前的网络连接获取相对应的类文件;根据所述类文件获取所述网络连接的网络连接参数;判断所述网络连接参数是否满足预设的上传条件;若所述网络连接参数满足预设的上传条件,将所述网络连接参数上传至服务器;由所述服务器根据所述网络连接参数以及预设的优化策略,对所述网络连接进行优化。实施本申请实施例,可快速精准地完成对网络连接的网络参数的收集并对该网络连接的性能进行优化。

Description

一种网络性能优化方法、系统及计算机可读存储介质
本申请要求于2017年7月24日提交中国专利局、申请号为201710606532.3 、发明名称为“一种网络性能优化方法、系统及计算机可读存储介质”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本申请涉及计算机技术领域,尤其涉及一种网络性能优化方法、系统及计算机可读存储介质。
背景技术
随着移动互联网的普及,越来越多移动终端通过无线网络与服务器建立通讯连接。 现有技术中,在通讯连接过程中服务器只负责接收来自移动终端的网络请求并根据该网络请求作出相对应的响应,而无法确定终端是否成功接收数据。因此我们需要对移动终端与服务器之间的通讯连接进行网络性能检测,以获取网络参数进行网络性能的分析或者优化。
发明内容
本申请实施例提供了一种网络性能优化方法、系统及计算机可读存储介质,可快速精准地完成对网络连接的网络参数的收集并对该网络连接的性能进行优化。
第一方面,本申请实施例提供了一种网络性能优化方法,所述方法包括:
根据当前的网络连接获取相对应的类文件;
根据所述类文件获取所述网络连接的网络连接参数;
判断所述网络连接参数是否满足预设的上传条件;
若所述网络连接参数满足预设的上传条件,将所述网络连接参数上传至服务器;
由所述服务器根据所述网络连接参数以及预设的优化策略,对所述网络连接进行优化。
第二方面,本申请实施例提供了一种网络性能优化系统,所述系统包括终端以及服务端,所述终端包括:
第一获取单元,用于根据当前的网络连接获取相对应的类文件;
第二获取单元,用于根据所述类文件获取所述网络连接的网络连接参数;
第一判断单元,用于判断所述网络连接参数是否满足预设的上传条件;
上传单元,用于若所述网络连接参数满足预设的上传条件,将所述网络连接参数上传至服务端;
所述服务端用于根据所述网络连接参数以及预设的优化策略,对所述网络连接进行优化。
第三方面,本申请实施例提供了另一种网络性能优化系统,所述系统包括终端以及服务器,所述终端包括:第一存储器和第一处理器;所述第一存储器存储有可执行的程序数据;所述服务器包括第二存储器和第二处理器;所述第二存储器也存储有可执行的程序数据;所述第一处理器用于运行所述第一存储器中存储的程序数据,所述第二处理器用于运行所述第二存储器中存储的程序数据,以共同执行如下操作:
根据当前的网络连接获取相对应的类文件;
根据所述类文件获取所述网络连接的网络连接参数;
判断所述网络连接参数是否满足预设的上传条件;
若所述网络连接参数满足预设的上传条件,将所述网络连接参数上传至服务器;
由所述服务器根据所述网络连接参数以及预设的优化策略,对所述网络连接进行优化。
第四方面,本申请实施例提供了一种计算机可读存储介质,所述计算机可读存储介质存储有一个以上程序数据,所述一个以上程序数据可被一个以上的处理器执行,以实现以下步骤:
根据当前的网络连接获取相对应的类文件;
根据所述类文件获取所述网络连接的网络连接参数;
判断所述网络连接参数是否满足预设的上传条件;
若所述网络连接参数满足预设的上传条件,将所述网络连接参数上传至服务器;
由所述服务器根据所述网络连接参数以及预设的优化策略,对所述网络连接进行优化。
本申请实施例提供了一种网络性能优化方法、系统及计算机可读存储介质,通过根据当前网络连接对应的类文件获取该网络连接的网络连接参数,若所获取的网络连接参数满足预设的上传条件,将该网络连接参数上传至服务器,并通过服务器根据该网络连接参数以及预设的优化策略,对该网络连接进行优化。实施本申请实施例,可快速精准地完成对网络连接的网络参数的收集并对该网络连接的性能进行优化。
附图说明
为了更清楚地说明本申请实施例技术方案,下面将对实施例描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图是本申请的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1是本申请实施例提供的一种网络性能优化方法的流程示意图;
图2是本申请实施例提供的一种网络性能优化方法的子流程示意图;
图3是本申请实施例提供的一种网络性能优化方法的子流程示意图;
图4是本申请实施例提供的一种网络性能优化方法的子流程示意图;
图5是本申请实施例提供的一种网络性能优化方法的子流程示意图;
图6是本申请实施例提供的一种网络性能优化系统的示意性框图;
图7是本申请实施例提供的一种网络性能优化系统中第二获取单元的示意性框图;
图8是本申请实施例提供的另一种网络性能优化系统的示意性框图。
具体实施方式
下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例是本申请一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本申请保护的范围。
应当理解,当在本说明书和所附权利要求书中使用时,术语“包括”和 “包含”指示所描述特征、整体、步骤、操作、元素和/或组件的存在,但并不排除一个或多个其它特征、整体、步骤、操作、元素、组件和/或其集合的存在或添加。
还应当理解,在本申请说明书和所附权利要求书中使用的术语“和/ 或”是指相关联列出的项中的一个或多个的任何组合以及所有可能组合,并且包括这些组合。
具体实施中,本申请实施例中描述的终端包括但不限于可以执行应用程序的诸如移动电话、膝上型计算机或平板计算机之类的其它便携式终端。还应当理解的是,在某些实施例中,所述终端并非便携式通信终端,还包括可以执行应用程序的台式计算机、电视等。终端可以安装并执行各种应用程序。
请参阅图1,其为本申请实施例提供的一种网络性能优化方法的流程示意图。该方法包括以下步骤S101-S104。
S101,根据当前的网络连接获取相对应的类文件。
具体实施中,网络连接建立于终端与服务器之间。其中,网络连接的建立可以是通过有线网络完成,例如,IP(Internet Protocol,网际互联协议)网络;也可以是通过无线网络完成,例如,WiFi(Wireless Fidelity,无线保真)网络,还可以是移动通讯网络,例如第二代移动通讯网络(Second Generation,2G)、第三代移动通讯网络(Third Generation,3G)、第四代移动通讯网络(Fourth Generation,4G)等。
假设该网络建立于终端与服务器之间,终端向服务器发送网络请求,可以通过调用系统网络接口或者第三方网络接口,例如OKhttp等接口与服务器进行网络连接,可在终端调用网络接口时对网络连接的类文件完成收集。例如,在iOS系统中,可通过object-c语言的运行时特性,获取到系统管理网络的类文件。该类文件可以是一段代码,也可以是记载有相关代码的文件。
S102,根据该类文件获取该网络连接的网络连接参数。
具体实施中,该网络连接参数包括但不限于网络地址、请求耗时、请求次数、数据传输量、HTTP状态码。其中,网络地址为网络连接中,每一个网页页面唯一对应的一个统一资源定位符(URL)。请求耗时为建立该网络连接所消耗的时间。请求次数为网络地址对应的网络请求的次数。数据传输量为网络连接中终端与服务器之间交互的数据量。HTTP状态码是用以表示网页服务器HTTP响应状态的3位数字代码,例如404可以用来表示请求参数有误。
网络连接参数的获取可以通过各种形式完成。例如,在iOS系统中可利用hook(挂钩技术)通过代码注入的方式去获取相关网络连接参数。
S103,判断该网络连接参数是否满足预设的上传条件。
具体地,上传条件可以根据时间、网络连接参数的数据包大小或者终端应用的使用场景进行设定。例如,上传条件可以设为是上传间隔时间是否大于30分钟,或者网络连接参数的数据包大小是否大于1Mb,又或者终端应用的使用场景是否为应用开启状态。若上传时间间隔大于30分钟或者网络连接参数的数据包大小大于1Mb或者终端应用的使用场景为应用开启状态,则判定该网络连接参数满足预设的上传条件。
S104,若该网络连接参数满足预设的上传条件,将该网络连接参数上传至服务器。
具体地,假设该上传条件为网络连接参数的数据包大小是否大于1M。若该网络连接参数的数据包大小大于1Mb,则判定该网络连接参数满足预设的上传条件,进而将该网络连接参数上传至服务器。
S105,该服务器根据该网络连接参数以及预设的优化策略,对该网络连接进行优化。
具体实施中,通过将在终端所获取得到的网络连接参数上传至服务器,以对该网络连接参数进行分析,并根据预设的优化策略对该网络连接进行优化,减轻了终端的处理负载压力,提高了处理速度。例如,该网络连接参数为HTTP状态码。假设所获取的HTTP状态码为404,则向管理员发送该网络地址对应的网页内容丢失的通知。
上述实施例通过根据当前网络连接对应的类文件获取该网络连接的网络连接参数,若所获取的网络连接参数满足预设的上传条件,将该网络连接参数上传至服务器,并通过服务器根据该网络连接参数以及预设的优化策略,对该网络连接进行优化。实施本申请实施例,可快速精准地完成对网络连接的网络参数的收集并对该网络连接的性能进行优化。
进一步地,请参阅图2,其为本申请实施例提供的一种网络性能优化方法的子流程示意图。在该实施例中,所述网络连接参数为请求耗时,所述根据所述类文件获取所述网络连接的网络连接参数具体包括以下步骤S201-S204。
S201,获取该类文件中的请求函数并记录获取该请求函数时的请求时间。
具体地,该类文件包括用于建立网络连接的请求函数以及响应函数。当在该类文件中获取到该请求函数时,记录获取该请求函数时的请求时间。
S202,获取该类文件中的响应函数并记录获取该响应函数时的响应时间。
具体地,当在该类文件中获取到该响应函数时,记录获取该响应函数时的响应时间。
S203,判断该请求函数的唯一标识码与该响应函数的唯一标识码是否相同。
具体实施中,每一个类文件中的请求函数与响应函数都对应着相同的唯一标识码。终端同一时间建立的网络连接数量并非唯一的,而其建立的同一个网络连接中对应的请求函数与响应函数对应的唯一标识码是相同的。若请求函数的唯一标识码与响应函数的唯一标识码相同,则判定该请求函数与该响应函数属于同一个网络连接。
S204,若该请求函数的唯一标识码与该响应函数的唯一标识码相同,根据该请求时间与该响应时间计算得出该请求耗时。
具体实施中,若请求函数的唯一标识码与响应函数的唯一标识码相同,则判定该请求函数与该响应函数属于同一个网络连接。将请求时间与响应时间进行差值计算,所得出的绝对值结果则为该请求函数或者响应函数对应的网络连接的请求耗时。
上述实施例通过网络连接对应的类文件对应的请求函数以及响应函数进行时间记录,并根据请求函数与响应函数的唯一标识码判定所记录的时间是否属于同一个网络连接,根据请求时间与响应时间可计算得出该网络连接的请求耗时。实施本实施例,可精准快速地获取网络连接的请求耗时。
进一步地,请参阅图3,其为本申请实施例提供的一种网络性能优化方法的子流程示意图。在所述网络连接参数为请求耗时的情况下,由所述服务器根据所述网络连接参数以及预设的优化策略,对所述网络连接进行优化包括以下步骤S301-S304。
S301,判断该请求耗时是否大于预设的耗时阈值。其中,该预设的耗时阈值可以为50ms或者其他数值。
S302,若该请求耗时大于预设的耗时阈值,对该网络连接对应的网络地址进行计数。其中,若该请求耗时为60ms,则判断该请求耗时大于预设的耗时阈值。进而将该请求耗时对应的网络地址以次数的形式进行记录。
S303,判断该计数是否大于预设的计数阈值。其中,该计数阈值可以为10次。
S304,若该计数大于预设的计数阈值,根据预设的优化策略对该网络地址进行优化。
具体实施中,若同一网络地址所记录的次数大于预设的计数阈值,例如,同一网络地址所记录的次数为30次,则输出该网络地址可能存在异常提醒,进而根据预设的优化策略对该网络地址进行优化。该预设的优化策略包括但不限于在终端侧缓存该网络地址对应的资源,避免每次都重复请求相同的内容,例如多图片下载可以考虑使用缓存。
上述实施例通过根据对请求耗时大于预设的耗时阈值的网络地址进行计数,并判断该网络地址的计数是否大于预设的计数阈值,若是,则判定该网络地址存在异常,并对该网络地址进行优化处理。通过对所采集到的网络连接参数进行分析,进而得出相对应的分析结果,并对该分析结果执行优化处理,提高了网络连接的优化效率。
进一步地,请参阅图4,其为本申请实施例提供的一种网络性能优化方法的子流程示意图。基于上述实施例,该判断该请求耗时是否大于预设的耗时阈值之前,还包括以下步骤S401-S404。
S401,获取至少两个不相同的网络地址对应的请求耗时。例如所获得到4个不相同的网络地址对应的请求耗时分别为30ms,70ms,25ms以及75ms。所采集的网络地址的个数可以为两个或者两个以上。
S402,计算该至少两个不相同的网络地址对应的请求耗时的平均请求耗时。根据上述所获取得到的请求耗时,所计算得出对应的平均请求耗时为50ms。
S403,将该平均请求耗时设置为该预设的耗时阈值。
上述实施例通过对至少两个不相同的网络地址对应的请求耗时计算,以得出平均请求耗时,并将该平均请求耗时设置为前述实施例中预设的耗时阈值。可提高该预设的耗时阈值的可靠性,有利于提高对网络性能分析的准确性。
进一步地,请参阅图5,其为本申请实施例提供的一种网络性能优化方法的子流程示意图。在该实施例中,网络连接参数包括请求次数以及数据传输量,由所述服务器根据所述网络连接参数以及预设的优化策略,对所述网络连接进行优化具体包括以下步骤S501-S502。
S501,判断该请求次数是否小于预设的次数阈值,以及判断该数据传输量是否大于预设的传输量阈值。
S502,若该请求次数小于预设的次数阈值,且该数据传输量大于预设的传输量阈值,根据预设的优化策略对该网络连接的数据传输方式进行优化。
具体实施中,假设该请求次数小于预设的次数阈值,且该数据传输量大于预设的传输量阈值,则判定该网络地址对应的数据传输量出现异常,即出现单次的网络请求的数据传输量过大,如果该网络请求的文件类型为网页文件则容易造成用户体验差,则需要根据预设的优化策略对该网络连接的数据传输方式进行优化。具体地,该预设的优化策略可以为:判断该网络请求的文件类型是否为网页文件类型,若该网络请求的文件类型为网页文件类型,将该网页文件进行分页处理。通过该分页处理,可根据用户的翻页情况发送多次请求,而不是一次去请求多页数据,数据传输量不变,但是用户看到的效果却是每翻一页,只要很少的时间就可以显示出图片,有利于提升用户体验。
上述实施例通过对网络连接中的请求次数以及数据传输量进行分析,以得出相对应的优化。有利于提升用户体验感。
请参阅图6,对应上述一种网络性能优化方法,本申请实施例还提出一种网络性能优化系统100,包括终端110以及服务端120。该终端110包括第一获取单元111、第二获取单元112、第一判断单元113以及上传单元114。
其中,第一获取单元111用于根据当前的网络连接获取相对应的类文件。
具体实施中,网络连接可以是建立于终端110与服务端120之间,也可以建立于终端与终端或者服务器与服务器,本申请实施例并不对网络连接建立的主体进行限定。其中,网络连接的建立可以是通过有线网络完成,例如,IP(Internet Protocol,网际互联协议)网络;也可以是通过无线网络完成,例如, WiFi(Wireless Fidelity,无线保真)网络,还可以是移动通讯网络,例如第二代移动通讯网络(Second Generation,2G)、第三代移动通讯网络(Third Generation,3G)、第四代移动通讯网络(Fourth Generation,4G)等。
假设该网络建立于终端110与服务端120之间,终端110向服务端120发送网络请求,可以通过调用系统网络接口或者第三方网络接口,例如OKhttp等接口与服务端120进行网络连接,可在终端110调用网络接口时对网络连接的类文件完成收集。例如,在iOS系统中,可通过object-c语言的运行时特性,获取到系统管理网络的类文件。该类文件可以是一段代码,也可以是记载有相关代码的文件。
第二获取单元112用于根据该类文件获取该网络连接的网络连接参数。
具体实施中,该网络连接参数包括但不限于网络地址、请求耗时、请求次数、数据传输量、HTTP状态码。其中,网络地址为网络连接中,每一个网页页面唯一对应的一个统一资源定位符(URL)。请求耗时为建立该网络连接所消耗的时间。请求次数为网络地址对应的网络请求的次数。数据传输量为网络连接中终端110与服务端120之间交互的数据量。HTTP状态码是用以表示网页服务端120HTTP响应状态的3位数字代码,例如404可以用来表示请求参数有误。
网络连接参数的获取可以通过各种形式完成。例如,在iOS系统中可利用hook(挂钩技术)通过代码注入的方式去获取相关网连接参数。
第一判断单元113用于判断该网络连接参数是否满足预设的上传条件。
具体地,上传条件可以根据时间、网络连接参数的数据包大小或者终端110应用的使用场景进行设定。例如,上传条件可以设为是上传间隔时间是否大于30分钟,或者网络连接参数的数据包大小是否大于1Mb,又或者终端110应用的使用场景是否为应用开启状态。若上传时间间隔大于30分钟或者网络连接参数的数据包大小大于1Mb或者终端110应用的使用场景为应用开启状态,则判定该网络连接参数满足预设的上传条件。
上传单元114用于若该网络连接参数满足预设的上传条件,将该网络连接参数上传至服务端120。
具体地,假设该上传条件为网络连接参数的数据包大小是否大于1M。若该网络连接参数的数据包大小大于1Mb,则判定该网络连接参数满足预设的上传条件,进而将该网络连接参数上传至服务端120。
该服务端120用于根据该网络连接参数以及预设的优化策略,对该网络连接进行优化。
具体实施中,通过将在终端110所获取得到的网络连接参数上传至服务端120,以对该网络连接参数进行分析,并根据预设的优化策略对该网络连接进行优化,减轻了终端110的处理负载压力,提高了处理速度。例如,该网络连接参数为HTTP状态码。假设所获取的HTTP状态码为404,则向管理员发送该网络地址对应的网页内容丢失的通知。
上述实施例通过根据当前网络连接对应的类文件获取该网络连接的网络连接参数,若所获取的网络连接参数满足预设的上传条件,将该网络连接参数上传至服务端120,并通过服务端120根据该网络连接参数以及预设的优化策略,对该网络连接进行优化。实施本申请实施例,可快速精准地完成对网络连接的网络参数的收集并对该网络连接的性能进行优化。
进一步地,请参阅图7,该网络连接参数包括请求耗时,该第二获取单元112包括第三获取单元1121、第四获取单元1122、第二判断单元1123以及第一计算单元1124。
其中,第三获取单元1121用于获取该类文件中的请求函数并记录获取该请求函数时的请求时间。
具体地,该类文件包括用于建立网络连接的请求函数以及响应函数。当在该类文件中获取到该请求函数时,记录获取该请求函数时的请求时间。
第四获取单元1122用于获取该类文件中的响应函数并记录获取该响应函数时的响应时间。
具体地,当在该类文件中获取到该响应函数时,记录获取该响应函数时的响应时间。
第二判断单元1123用于判断该请求函数的唯一标识码与该响应函数的唯一标识码是否相同。
具体实施中,每一个类文件中的请求函数与响应函数都对应着相同的唯一标识码。终端110同一时间建立的网络连接数量并非唯一的,而其建立的同一个网络连接中对应的请求函数与响应函数对应的唯一标识码是相同的。若请求函数的唯一标识码与响应函数的唯一标识码相同,则判定该请求函数与该响应函数属于同一个网络连接。
第一计算单元1124用于若该请求函数的唯一标识码与该响应函数的唯一标识码相同,根据该请求时间与该响应时间计算得出该请求耗时。
具体实施中,若请求函数的唯一标识码与响应函数的唯一标识码相同,则判定该请求函数与该响应函数属于同一个网络连接。将请求时间与响应时间进行差值计算,所得出的绝对值结果则为该请求函数或者响应函数对应的网络连接的请求耗时。
上述实施例通过网络连接对应的类文件对应的请求函数以及响应函数进行时间记录,并根据请求函数与响应函数的唯一标识码判定所记录的时间是否属于同一个网络连接,根据请求时间与响应时间可计算得出该网络连接的请求耗时。实施本实施例,可精准快速地获取网络连接的请求耗时。
进一步地,请继续参阅图6,该服务端120包括第三判断单元121、计数单元122、第四判断单元123以及地址优化单元124。其中,
第三判断单元121用于判断该请求耗时是否大于预设的耗时阈值。其中,该预设的耗时阈值可以为50ms或者其他数值。
计数单元122用于若该请求耗时大于预设的耗时阈值,对该网络连接对应的网络地址进行计数。其中,若该请求耗时为60ms,则判断该请求耗时大于预设的耗时阈值。进而将该请求耗时对应的网络地址以次数的形式进行记录。
第四判断单元123用于判断该计数是否大于预设的计数阈值。其中,该计数阈值可以为10次。
地址优化单元124用于若该计数大于预设的计数阈值,根据预设的优化策略对该网络地址进行优化。
具体实施中,若同一网络地址所记录的次数大于预设的计数阈值,例如,同一网络地址所记录的次数为30次,则输出该网络地址可能存在异常提醒,进而根据预设的优化策略对该网络地址进行优化。该预设的优化策略包括但不限于在终端110侧缓存该网络地址对应的资源,避免每次都重复请求相同的内容,例如多图片下载可以考虑使用缓存。
上述实施例通过根据对请求耗时大于预设的耗时阈值的网络地址进行计数,并判断该网络地址的计数是否大于预设的计数阈值,若是,则判定该网络地址存在异常,并对该网络地址进行优化处理。通过对所采集到的网络连接参数进行分析,进而得出相对应的分析结果,并对该分析结果执行优化处理,提高了网络连接的优化效率。
进一步地,基于上述实施例,该服务端120还包括第二计算单元、第三计算单元以及设置单元。
第二计算单元用于获取至少两个不相同的网络地址对应的请求耗时。例如所获得到4个不相同的网络地址对应的请求耗时分别为30ms,70ms,25ms以及75ms。所采集的网络地址的个数可以为两个或者两个以上。
第三计算单元用于计算该至少两个不相同的网络地址对应的请求耗时的平均请求耗时。根据上述所获取得到的请求耗时,所计算得出对应的平均请求耗时为50ms。
设置单元用于将该平均请求耗时设置为该预设的耗时阈值。
上述实施例通过对至少两个不相同的网络地址对应的请求耗时计算,以得出平均请求耗时,并将该平均请求耗时设置为前述实施例中预设的耗时阈值。可提高该预设的耗时阈值的可靠性,有利于提高对网络性能分析的准确性。
进一步地,网络连接参数包括请求次数以及数据传输量,该服务端120还可以包括第五判断单元以及数据优化单元。
第五判断单元用于判断该请求次数是否小于预设的次数阈值,以及判断该数据传输量是否大于预设的传输量阈值。
数据优化单元用于若该请求次数小于预设的次数阈值,且该数据传输量大于预设的传输量阈值,根据预设的优化策略对该网络连接的数据传输方式进行优化。
具体实施中,假设该请求次数小于预设的次数阈值,且该数据传输量大于预设的传输量阈值,则判定该网络地址对应的数据传输量出现异常,即出现单次的网络请求的数据传输量过大,如果该网络请求的文件类型为网页文件则容易造成用户体验差,则需要根据预设的优化策略对该网络连接的数据传输方式进行优化。具体地,该预设的优化策略可以为:判断该网络请求的文件类型是否为网页文件类型,若该网络请求的文件类型为网页文件类型,将该网页文件进行分页处理。通过该分页处理,可根据用户的翻页情况发送多次请求,而不是一次去请求多页数据,数据传输量不变,但是用户看到的效果却是每翻一页,只要很少的时间就可以显示出图片,有利于提升用户体验。
上述实施例通过对网络连接中的请求次数以及数据传输量进行分析,以得出相对应的优化。有利于提升用户体验感。
请参阅图8,该系统200包括终端210以及服务器220,该终端210包括:一个或多个第一输入装置211;一个或多个第一输出装置212;第一存储器213和第一处理器214,上述第一输入装置211、第一输出装置212、第一存储器213和第一处理器214通过第一总线215连接,该第一存储器213存储有可执行的程序数据。
该服务器220包括一个或多个第二输入装置221;一个或多个第二输出装置222;第二存储器223和第二处理器224。上述第二输入装置221、第二输出装置222、第二存储器223和第二处理器224通过第二总线225连接,该第二存储器223也存储有可执行的程序数据。其中:
第一输入装置211或者第二输入装置221用于提供用户发送网络请求、提供用户再次发送创建网络请求的请求实例的请求。具体实施中,本申请实施例的第一输入装置211或者第二输入装置221可包括键盘、鼠标、光电输入装置、声音输入装置、触摸式输入装置等。
第一输出装置212或者第二输出装置222用于显示执行网络请求成功后的状态、该请求实例的网络请求未成功执行的原因等。具体实施中,本申请实施例的第一输出装置212或者第二输出装置222可包括显示器、显示屏、触摸屏、声音输出装置等。
第一存储器213或者第二存储器223用于存储带有各种功能的程序数据。本申请实施例中第一存储器213或者第二存储器223存储的数据包括网络请求、请求实例、请求实例的优先级、预设时间、预设数量、预设次数、暂缓等待时间、暂缓队列、等待队列、同时执行网络请求的个数等,以及其他可调用并运行的程序数据。具体实施中,本申请实施例的第一存储器213或者第二存储器223可以是系统存储器,比如,非易失性的(诸如ROM,闪存等)。具体实施中,本申请实施例的第一存储器213或者第二存储器223还可以是系统之外的外部存储器,比如,磁盘、光盘、磁带等。
第一处理器214用于调用并运行第一存储器213中存储的程序数据,以执行如下操作:
根据当前的网络连接获取相对应的类文件;
根据所述类文件获取所述网络连接的网络连接参数;
判断所述网络连接参数是否满足预设的上传条件;
若所述网络连接参数满足预设的上传条件,将所述网络连接参数上传至服务器220。
第二处理器224用于调用并运行第二存储器223中存储的程序数据,以执行如下操作:
根据所述网络连接参数以及预设的优化策略,对所述网络连接进行优化
进一步地,所述网络连接参数包括请求耗时,第一处理器214还执行如下操作:
获取所述类文件中的请求函数并记录获取所述请求函数时的请求时间;
获取所述类文件中的响应函数并记录获取所述响应函数时的响应时间;
判断所述请求函数的唯一标识码与所述响应函数的唯一标识码是否相同;
若所述请求函数的唯一标识码与所述响应函数的唯一标识码相同,根据所述请求时间与所述响应时间计算得出所述请求耗时。
进一步地,由所述服务器220根据所述网络连接参数以及预设的优化策略,对所述网络连接进行优化时,第二处理器224还执行如下操作:
判断所述请求耗时是否大于预设的耗时阈值;
若所述请求耗时大于预设的耗时阈值,对所述网络连接对应的网络地址进行计数;
判断所述计数是否大于预设的计数阈值;
若所述计数大于预设的计数阈值,根据预设的优化策略对所述网络地址进行优化。
进一步地,所述判断所述请求耗时是否大于预设的耗时阈值之前,第二处理器224还执行如下操作:
获取至少两个不相同的网络地址对应的请求耗时;
计算所述至少两个不相同的网络地址对应的请求耗时的平均请求耗时;
将所述平均请求耗时设置为所述预设的耗时阈值。
进一步地,所述网络连接参数包括请求次数以及数据传输量,第二处理器224还执行如下操作:
判断所述请求次数是否小于预设的次数阈值,以及判断所述数据传输量是否大于预设的传输量阈值;
若所述请求次数小于预设的次数阈值,且所述数据传输量大于预设的传输量阈值,根据预设的优化策略对所述网络连接的数据传输方式进行优化。
本申请实施例所提供了一种网络性能优化系统,该系统200通过服务器220中的第二处理器224调用并运行第二存储器223中存储的程序数据,可实现前述实施例所提供的服务端的功能。
本申请还提供一种计算机可读存储介质,所述计算机可读存储介质存储有一个以上的程序数据,所述一个以上的程序数据可被一个以上的处理器执行,以实现以下步骤:
根据当前的网络连接获取相对应的类文件;
根据所述类文件获取所述网络连接的网络连接参数;
判断所述网络连接参数是否满足预设的上传条件;
若所述网络连接参数满足预设的上传条件,将所述网络连接参数上传至服务器;
由所述服务器根据所述网络连接参数以及预设的优化策略,对所述网络连接进行优化。
进一步地,所述网络连接参数包括请求耗时,所述根据所述类文件获取所述网络连接的网络连接参数,所述步骤还包括:
获取所述类文件中的请求函数并记录获取所述请求函数时的请求时间;
获取所述类文件中的响应函数并记录获取所述响应函数时的响应时间;
判断所述请求函数的唯一标识码与所述响应函数的唯一标识码是否相同;
若所述请求函数的唯一标识码与所述响应函数的唯一标识码相同,根据所述请求时间与所述响应时间计算得出所述请求耗时。
进一步地,由所述服务器根据所述网络连接参数以及预设的优化策略,对所述网络连接进行优化,所述步骤还包括:
判断所述请求耗时是否大于预设的耗时阈值;
若所述请求耗时大于预设的耗时阈值,对所述网络连接对应的网络地址进行计数;
判断所述计数是否大于预设的计数阈值;
若所述计数大于预设的计数阈值,根据预设的优化策略对所述网络地址进行优化。
进一步地,所述判断所述请求耗时是否大于预设的耗时阈值之前,所述步骤还包括:
获取至少两个不相同的网络地址对应的请求耗时;
计算所述至少两个不相同的网络地址对应的请求耗时的平均请求耗时;
将所述平均请求耗时设置为所述预设的耗时阈值。
进一步地,所述网络连接参数包括请求次数以及数据传输量,由所述服务器根据所述网络连接参数以及预设的优化策略,对所述网络连接进行优化,所述步骤还包括:
判断所述请求次数是否小于预设的次数阈值,以及判断所述数据传输量是否大于预设的传输量阈值;
若所述请求次数小于预设的次数阈值,且所述数据传输量大于预设的传输量阈值,根据预设的优化策略对所述网络连接的数据传输方式进行优化。
所属领域的技术人员可以清楚地了解到,为了描述的方便和简洁,上述描述的终端、服务端和单元的具体工作过程,可以参考前述方法实施例中的对应过程,在此不再赘述。本领域普通技术人员可以意识到,结合本文中所公开的实施例描述的各示例的单元及算法步骤,能够以电子硬件、计算机软件或者二者的结合来实现,为了清楚地说明硬件和软件的可互换性,在上述说明中已经按照功能一般性地描述了各示例的组成及步骤。这些功能究竟以硬件还是软件方式来执行取决于技术方案的特定应用和设计约束条件。专业技术人员可以对每个特定的应用来使用不同方法来实现所描述的功能,但是这种实现不应认为超出本申请的范围。
在本申请所提供的几个实施例中,应该理解到,所揭露的终端、服务端和方法,可以通过其它的方式实现。例如,以上所描述的终端、服务端实施例仅仅是示意性的,例如,所述单元的划分,仅仅为一种逻辑功能划分,实际实现时可以有另外的划分方式,例如多个单元或组件可以结合或者可以集成到另一个系统,或一些特征可以忽略,或不执行。另外,所显示或讨论的相互之间的耦合或直接耦合或通信连接可以是通过一些接口、终端或单元的间接耦合或通信连接,也可以是电的,机械的或其它的形式连接。
所述作为分离部件说明的单元可以是或者也可以不是物理上分开的,作为单元显示的部件可以是或者也可以不是物理单元,即可以位于一个地方,或者也可以分布到多个网络单元上。可以根据实际的需要选择其中的部分或者全部单元来实现本申请实施例方案的目的。
另外,在本申请各个实施例中的各功能单元可以集成在一个处理单元中,也可以是各个单元单独物理存在,也可以是两个或两个以上单元集成在一个单元中。上述集成的单元既可以采用硬件的形式实现,也可以采用软件功能单元的形式实现。
所述集成的单元如果以软件功能单元的形式实现并作为独立的产品销售或使用时,可以存储在一个计算机可读存储介质中。基于这样的理解,本申请的技术方案本质上或者说对现有技术做出贡献的部分,或者该技术方案的全部或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中,包括若干指令用以使得一台计算机设备 ( 可以是个人计算机,服务器,或者网络设备等 ) 执行本申请各个实施例所述方法的全部或部分步骤。而前述的存储介质包括 :U 盘、移动硬盘、只读存储器 (ROM,Read-Only Memory)、磁碟或者光盘等各种可以存储程序代码的介质。
以上所述,仅为本申请的具体实施方式,但本申请的保护范围并不局限于此,任何熟悉本技术领域的技术人员在本申请揭露的技术范围内,可轻易想到各种等效的修改或替换,这些修改或替换都应涵盖在本申请的保护范围之内。因此,本申请的保护范围应以权利要求的保护范围为准。

Claims (20)

  1. 一种网络性能优化方法,其特征在于,所述方法包括:
    根据当前的网络连接获取相对应的类文件;
    根据所述类文件获取所述网络连接的网络连接参数;
    判断所述网络连接参数是否满足预设的上传条件;
    若所述网络连接参数满足预设的上传条件,将所述网络连接参数上传至服务器;
    由所述服务器根据所述网络连接参数以及预设的优化策略,对所述网络连接进行优化。
  2. 如权利要求1所述的方法,其特征在于,所述网络连接参数包括请求耗时,所述根据所述类文件获取所述网络连接的网络连接参数,包括:
    获取所述类文件中的请求函数并记录获取所述请求函数时的请求时间;
    获取所述类文件中的响应函数并记录获取所述响应函数时的响应时间;
    判断所述请求函数的唯一标识码与所述响应函数的唯一标识码是否相同;
    若所述请求函数的唯一标识码与所述响应函数的唯一标识码相同,根据所述请求时间与所述响应时间计算得出所述请求耗时。
  3. 如权利要求2所述的方法,其特征在于,由所述服务器根据所述网络连接参数以及预设的优化策略,对所述网络连接进行优化,包括:
    判断所述请求耗时是否大于预设的耗时阈值;
    若所述请求耗时大于预设的耗时阈值,对所述网络连接对应的网络地址进行计数;
    判断所述计数是否大于预设的计数阈值;
    若所述计数大于预设的计数阈值,根据预设的优化策略对所述网络地址进行优化。
  4. 如权利要求3所述的方法,其特征在于,所述判断所述请求耗时是否大于预设的耗时阈值之前,还包括:
    获取至少两个不相同的网络地址对应的请求耗时;
    计算所述至少两个不相同的网络地址对应的请求耗时的平均请求耗时;
    将所述平均请求耗时设置为所述预设的耗时阈值。
  5. 如权利要求1所述的方法,其特征在于,所述网络连接参数包括请求次数以及数据传输量,由所述服务器根据所述网络连接参数以及预设的优化策略,对所述网络连接进行优化,包括:
    判断所述请求次数是否小于预设的次数阈值,以及判断所述数据传输量是否大于预设的传输量阈值;
    若所述请求次数小于预设的次数阈值,且所述数据传输量大于预设的传输量阈值,根据预设的优化策略对所述网络连接的数据传输方式进行优化。
  6. 一种网络性能优化系统,包括终端以及服务端,其特征在于,所述终端包括:
    第一获取单元,用于根据当前的网络连接获取相对应的类文件;
    第二获取单元,用于根据所述类文件获取所述网络连接的网络连接参数;
    第一判断单元,用于判断所述网络连接参数是否满足预设的上传条件;
    上传单元,用于若所述网络连接参数满足预设的上传条件,将所述网络连接参数上传至服务端;
    所述服务端用于根据所述网络连接参数以及预设的优化策略,对所述网络连接进行优化。
  7. 如权利要求6所述的系统,其特征在于,所述网络连接参数包括请求耗时,所述第二获取单元包括:
    第三获取单元,用于获取所述类文件中的请求函数并记录获取所述请求函数时的请求时间;
    第四获取单元,用于获取所述类文件中的响应函数并记录获取所述响应函数时的响应时间;
    第二判断单元,用于判断所述请求函数的唯一标识码与所述响应函数的唯一标识码是否相同;
    第一计算单元,用于若所述请求函数的唯一标识码与所述响应函数的唯一标识码相同,根据所述请求时间与所述响应时间计算得出所述请求耗时。
  8. 如权利要求7所述的系统,其特征在于,所述服务端包括:
    第三判断单元,用于判断所述请求耗时是否大于预设的耗时阈值;
    计数单元,用于若所述请求耗时大于预设的耗时阈值,对所述网络连接对应的网络地址进行计数;
    第四判断单元,用于判断所述计数是否大于预设的计数阈值;
    地址优化单元,用于若所述计数大于预设的计数阈值,根据预设的优化策略对所述网络地址进行优化。
  9. 如权利要求8所述的系统,其特征在于,所述服务端还包括:
    第二计算单元,用于获取至少两个不相同的网络地址对应的请求耗时;
    第三计算单元,用于计算所述至少两个不相同的网络地址对应的请求耗时的平均请求耗时;
    设置单元,用于将所述平均请求耗时设置为所述预设的耗时阈值。
  10. 如权利要求6所述的系统,其特征在于,所述服务端还包括:
    第五判断单元,用于判断所述请求次数是否小于预设的次数阈值,以及判断所述数据传输量是否大于预设的传输量阈值;
    数据优化单元,用于若所述请求次数小于预设的次数阈值,且所述数据传输量大于预设的传输量阈值,根据预设的优化策略对所述网络连接的数据传输方式进行优化。
  11. 一种网络性能优化系统,包括终端以及服务器,其特征在于,所述终端包括:第一存储器和第一处理器;所述第一存储器存储有可执行的程序数据;所述服务器包括第二存储器和第二处理器;所述第二存储器也存储有可执行的程序数据;所述第一处理器用于运行所述第一存储器中存储的程序数据,所述第二处理器用于运行所述第二存储器中存储的程序数据,以共同执行如下操作:
    根据当前的网络连接获取相对应的类文件;
    根据所述类文件获取所述网络连接的网络连接参数;
    判断所述网络连接参数是否满足预设的上传条件;
    若所述网络连接参数满足预设的上传条件,将所述网络连接参数上传至服务器;
    由所述服务器根据所述网络连接参数以及预设的优化策略,对所述网络连接进行优化。
  12. 如权利要求11所述的系统,其特征在于,所述网络连接参数包括请求耗时,所述根据所述类文件获取所述网络连接的网络连接参数,包括:
    获取所述类文件中的请求函数并记录获取所述请求函数时的请求时间;
    获取所述类文件中的响应函数并记录获取所述响应函数时的响应时间;
    判断所述请求函数的唯一标识码与所述响应函数的唯一标识码是否相同;
    若所述请求函数的唯一标识码与所述响应函数的唯一标识码相同,根据所述请求时间与所述响应时间计算得出所述请求耗时。
  13. 如权利要求12所述的系统,其特征在于,由所述服务器根据所述网络连接参数以及预设的优化策略,对所述网络连接进行优化,包括:
    判断所述请求耗时是否大于预设的耗时阈值;
    若所述请求耗时大于预设的耗时阈值,对所述网络连接对应的网络地址进行计数;
    判断所述计数是否大于预设的计数阈值;
    若所述计数大于预设的计数阈值,根据预设的优化策略对所述网络地址进行优化。
  14. 如权利要求13所述的系统,其特征在于,所述判断所述请求耗时是否大于预设的耗时阈值之前,还包括:
    获取至少两个不相同的网络地址对应的请求耗时;
    计算所述至少两个不相同的网络地址对应的请求耗时的平均请求耗时;
    将所述平均请求耗时设置为所述预设的耗时阈值。
  15. 如权利要求11所述的系统,其特征在于,所述网络连接参数包括请求次数以及数据传输量,由所述服务器根据所述网络连接参数以及预设的优化策略,对所述网络连接进行优化,包括:
    判断所述请求次数是否小于预设的次数阈值,以及判断所述数据传输量是否大于预设的传输量阈值;
    若所述请求次数小于预设的次数阈值,且所述数据传输量大于预设的传输量阈值,根据预设的优化策略对所述网络连接的数据传输方式进行优化。
  16. 一种计算机可读存储介质,其特征在于,所述计算机可读存储介质存储有一个以上程序数据,所述一个以上程序数据可被一个以上的处理器执行,以实现以下步骤:
    根据当前的网络连接获取相对应的类文件;
    根据所述类文件获取所述网络连接的网络连接参数;
    判断所述网络连接参数是否满足预设的上传条件;
    若所述网络连接参数满足预设的上传条件,将所述网络连接参数上传至服务器;
    由所述服务器根据所述网络连接参数以及预设的优化策略,对所述网络连接进行优化。
  17. 如权利要求16所述的计算机可读存储介质,其特征在于,所述网络连接参数包括请求耗时,所述根据所述类文件获取所述网络连接的网络连接参数,包括:
    获取所述类文件中的请求函数并记录获取所述请求函数时的请求时间;
    获取所述类文件中的响应函数并记录获取所述响应函数时的响应时间;
    判断所述请求函数的唯一标识码与所述响应函数的唯一标识码是否相同;
    若所述请求函数的唯一标识码与所述响应函数的唯一标识码相同,根据所述请求时间与所述响应时间计算得出所述请求耗时。
  18. 如权利要求17所述的计算机可读存储介质,其特征在于,由所述服务器根据所述网络连接参数以及预设的优化策略,对所述网络连接进行优化,包括:
    判断所述请求耗时是否大于预设的耗时阈值;
    若所述请求耗时大于预设的耗时阈值,对所述网络连接对应的网络地址进行计数;
    判断所述计数是否大于预设的计数阈值;
    若所述计数大于预设的计数阈值,根据预设的优化策略对所述网络地址进行优化。
  19. 如权利要求18所述的计算机可读存储介质,其特征在于,所述判断所述请求耗时是否大于预设的耗时阈值之前,还包括:
    获取至少两个不相同的网络地址对应的请求耗时;
    计算所述至少两个不相同的网络地址对应的请求耗时的平均请求耗时;
    将所述平均请求耗时设置为所述预设的耗时阈值。
  20. 如权利要求16所述的计算机可读存储介质,其特征在于,所述网络连接参数包括请求次数以及数据传输量,由所述服务器根据所述网络连接参数以及预设的优化策略,对所述网络连接进行优化,包括:
    判断所述请求次数是否小于预设的次数阈值,以及判断所述数据传输量是否大于预设的传输量阈值;
    若所述请求次数小于预设的次数阈值,且所述数据传输量大于预设的传输量阈值,根据预设的优化策略对所述网络连接的数据传输方式进行优化。
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Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101815314A (zh) * 2009-02-20 2010-08-25 华为技术有限公司 发现无线网络问题的方法、装置及系统
WO2016046606A1 (en) * 2014-09-26 2016-03-31 Nokia Technologies Oy Methods and apparatus for minimization of drive testing
CN105577480A (zh) * 2016-02-01 2016-05-11 新浪网技术(中国)有限公司 一种网络连接性能的监测方法及装置
CN106922038A (zh) * 2015-12-24 2017-07-04 中兴通讯股份有限公司 数据传输的管理方法及装置

Family Cites Families (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20040100684A1 (en) * 2001-06-07 2004-05-27 Jones Kevan Peter Line amplification system for wavelength switched optical networks
JP4057983B2 (ja) * 2003-09-04 2008-03-05 株式会社エヌ・ティ・ティ・ドコモ 通信システム及び通信制御方法
CN105050163A (zh) * 2015-08-24 2015-11-11 小米科技有限责任公司 网络连接方法及装置

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101815314A (zh) * 2009-02-20 2010-08-25 华为技术有限公司 发现无线网络问题的方法、装置及系统
WO2016046606A1 (en) * 2014-09-26 2016-03-31 Nokia Technologies Oy Methods and apparatus for minimization of drive testing
CN106922038A (zh) * 2015-12-24 2017-07-04 中兴通讯股份有限公司 数据传输的管理方法及装置
CN105577480A (zh) * 2016-02-01 2016-05-11 新浪网技术(中国)有限公司 一种网络连接性能的监测方法及装置

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