WO2021139052A1 - 文件传输的反馈方法、装置、设备和存储介质 - Google Patents

文件传输的反馈方法、装置、设备和存储介质 Download PDF

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Publication number
WO2021139052A1
WO2021139052A1 PCT/CN2020/087616 CN2020087616W WO2021139052A1 WO 2021139052 A1 WO2021139052 A1 WO 2021139052A1 CN 2020087616 W CN2020087616 W CN 2020087616W WO 2021139052 A1 WO2021139052 A1 WO 2021139052A1
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WO
WIPO (PCT)
Prior art keywords
file
transmission
transmission file
terminal
information
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PCT/CN2020/087616
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English (en)
French (fr)
Inventor
黄武科
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深圳壹账通智能科技有限公司
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Publication of WO2021139052A1 publication Critical patent/WO2021139052A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L67/00Network arrangements or protocols for supporting network services or applications
    • H04L67/01Protocols
    • H04L67/06Protocols specially adapted for file transfer, e.g. file transfer protocol [FTP]
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q40/00Finance; Insurance; Tax strategies; Processing of corporate or income taxes
    • G06Q40/08Insurance
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L1/00Arrangements for detecting or preventing errors in the information received
    • H04L1/004Arrangements for detecting or preventing errors in the information received by using forward error control
    • H04L1/0056Systems characterized by the type of code used
    • H04L1/0061Error detection codes
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L1/00Arrangements for detecting or preventing errors in the information received
    • H04L1/12Arrangements for detecting or preventing errors in the information received by using return channel
    • H04L1/16Arrangements for detecting or preventing errors in the information received by using return channel in which the return channel carries supervisory signals, e.g. repetition request signals
    • H04L1/18Automatic repetition systems, e.g. Van Duuren systems
    • H04L1/1812Hybrid protocols; Hybrid automatic repeat request [HARQ]
    • H04L1/1816Hybrid protocols; Hybrid automatic repeat request [HARQ] with retransmission of the same, encoded, message
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L41/00Arrangements for maintenance, administration or management of data switching networks, e.g. of packet switching networks
    • H04L41/06Management of faults, events, alarms or notifications
    • H04L41/0631Management of faults, events, alarms or notifications using root cause analysis; using analysis of correlation between notifications, alarms or events based on decision criteria, e.g. hierarchy, tree or time analysis
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L63/00Network architectures or network communication protocols for network security
    • H04L63/04Network architectures or network communication protocols for network security for providing a confidential data exchange among entities communicating through data packet networks
    • H04L63/0428Network architectures or network communication protocols for network security for providing a confidential data exchange among entities communicating through data packet networks wherein the data content is protected, e.g. by encrypting or encapsulating the payload
    • H04L63/0442Network architectures or network communication protocols for network security for providing a confidential data exchange among entities communicating through data packet networks wherein the data content is protected, e.g. by encrypting or encapsulating the payload wherein the sending and receiving network entities apply asymmetric encryption, i.e. different keys for encryption and decryption
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L63/00Network architectures or network communication protocols for network security
    • H04L63/08Network architectures or network communication protocols for network security for authentication of entities

Definitions

  • This application relates to the field of software monitoring in financial technology products, and in particular to a method, device, equipment, and storage medium for file transmission feedback under the title of the invention.
  • a new claim settlement service model which applies AI image recognition loss assessment technology to auto insurance accident claims settlement scenarios, provides a convenient client, and allows users to quickly and conveniently complete the entire claims settlement process.
  • this application provides a method for file transfer feedback, including:
  • the transmission protocol is adapted to receive the transmission file request from the second terminal; after the transmission file request is received, the transmission file in a predetermined format is obtained; the transmission file in the predetermined format includes transmission file information and The publication range information corresponding to the transmission file is processed, the transmission file of the predetermined format is processed according to the publication range information corresponding to the transmission file information, the transmission file corresponding to each partition node is generated, and the transmission file to be received is initiated to the second terminal
  • the transmission file When the transmission of the transmission file fails, the transmission file is resent to the server within the set time and the reason for the file transmission failure is analyzed, the warning information and the reason for the failure are sent out, and the transmission file is retransmitted when the detection failure reason is processed . If the time detected by the timeout thread exceeds the set time, repeat the detection of the transfer file until the number of repetitions of the detection thread reaches the set number of warnings, and the failure cause has not been processed, then the warning information is upgraded to advanced warning information and used E-mail or SMS sent out;
  • the advanced warning information is sent out by email or SMS;
  • this application provides a file transfer feedback device, including:
  • the input acquisition module is configured to adapt the transmission protocol according to the connection mode with the second terminal, and receive a file transmission request from the second terminal.
  • the processing module is configured to adapt the transmission protocol according to the connection mode with the second terminal, and receive a request for sending a transmission file from the second terminal; after receiving the transmission file request, obtain a transmission file in a predetermined format; the transmission file in a predetermined format Including transmission file information and publication range information corresponding to the transmission file, processing the transmission file in the predetermined format according to the publication range information corresponding to the transmission file information, generating transmission files corresponding to each partition node, and initiating to the second terminal
  • a file publishing task that carries the partition node identifier of the transmission file to be received; receives the confirmation message from the second terminal, and delivers the transmission file to the corresponding partition node server according to the partition node identifier corresponding to each transmission file; when the transmission file fails to be sent If the transmission file is re-sent to the server within the set time and the reason for the file transmission failure is analyzed, the warning information and the failure reason are sent out, and the transmission file is re-sent when the detection failure reason is processed; if the timeout
  • a computer device which includes at least one connected processor, a memory, and an input/output unit, wherein the memory is used to store program code, and the processor is used to call the program in the memory Code to execute the above-mentioned file transmission feedback method
  • the file transmission feedback method at least includes: adapting the transmission protocol according to the connection mode with the second terminal, receiving a request to send a file for transmission from the second terminal; receiving the transmission file After the request, obtain a transmission file in a predetermined format; the transmission file in the predetermined format includes transmission file information and publication range information corresponding to the transmission file, and the transmission of the predetermined format is processed according to the publication range information corresponding to the transmission file information File, generate a transmission file corresponding to each partition node, and initiate a file publishing task to the second terminal carrying the partition node identification of the transmission file to be received; receive the confirmation message from the second terminal, and transmit according to the partition node identification corresponding to each transmission file The file is delivered to the corresponding partition node server; when the request to send a file
  • the file transmission feedback method at least includes: The connection mode of the second terminal is adapted to the transmission protocol, and the request to send a transmission file is received from the second terminal; after receiving the transmission file request, the transmission file in a predetermined format is obtained; the transmission file in the predetermined format includes transmission file information and transmission file information Corresponding publishing range information, processing the transmission file in the predetermined format according to the publishing range information corresponding to the transmission file information, generating transmission files corresponding to each partition node, and initiating the second terminal to carry the partition node identification of the transmission file to be received
  • the file issuance task receives the confirmation message from the second terminal, and sends the transmission file to the corresponding partition node server according to the partition node identifier corresponding to each transmission file; when the transmission file fails to be sent, the server is retransmitted within the set time Send the transmission file and analyze the reason for the file
  • the invention of this application proposes a new file early warning mode. No matter whether the existing hereassurance products transmit data based on data interface or based on file transmission, there is a certain rate of loss due to various reasons, such as network jitter. It may also be an abnormal system or a natural disaster in some areas. Through this compensation mechanism and early warning mechanism, the success rate of file transmission can be improved, and manual intervention can be notified through early warning emails to ensure a 100% success rate of file data transmission.
  • FIG. 1 is a schematic flowchart of a method for file transmission feedback in an embodiment of this application
  • FIG. 2 is a schematic structural diagram of a file transmission feedback device in an embodiment of this application.
  • FIG. 3 is a schematic diagram of the structure of a computer device in an embodiment of the application.
  • steps or modules may include other steps or modules that are not clearly listed or are inherent to these processes, methods, products, or equipment.
  • the division of modules in this application is only a logical division In actual applications, there may be other divisions when implemented. For example, multiple modules may be combined or integrated in another system, or some features may be ignored or not implemented.
  • the following provides an example of a method for providing feedback on file transmission in this application, and the method includes:
  • the adapted transmission protocol refers to a type of data transmission control between the communicating parties.
  • the agreed protocol defines the format used by the data unit, the information and meaning that the information unit should contain, the connection mode, and the timing of information sending and receiving, thereby Ensure that the data in the network is smoothly transmitted to a certain place.
  • the agreed content includes at least the definition of data format, synchronization mode, transmission speed, transmission procedure, error detection and correction mode, and control character definitions, and the first terminal and the second terminal must jointly abide by it.
  • the product information file to be released in the predetermined format includes transmission file information and publication range information corresponding to the transmission file, and the transmission file in the predetermined format is processed according to the publication range information corresponding to the transmission file information to generate corresponding
  • the partition node transmits the file, and initiates a file publishing task carrying the partition node identifier of the transmission file to be received to the second terminal.
  • the priority level can determine the transmission speed. For example, for the operation of transferring two files at the same time, the abbreviations of the files are A and B. If the priority of A file is higher than that of B file, the transfer speed of A file will be faster than that of B file.
  • the time detected by the timeout thread exceeds the set time, repeat the detection of the transfer file until the number of repetitions of the detection thread reaches the set number of warnings, and the failure cause has not been processed, then the warning information is upgraded to advanced warning information and used The mail or text message is sent out.
  • Warning information acquisition and warning processing implement strict authority level control, that is, according to different job responsibilities, people in different positions are given different warning processing authority and the authority to obtain warning information.
  • A is an operator
  • B is a technician
  • A will receive a warning message and has the processing authority of the warning message
  • B will receive a high-level warning message and have a high-level Permission to process warning messages.
  • the file information includes at least file storage location, file attribute information, file name, and specific error reporting information.
  • the error information includes at least file upload failure information, download failure information, and file push failure information. After the file transfer is over, the file information will be saved to the database and aggregated, and the aggregated information will be presented in the monitoring log.
  • the monitoring log refers to the information that records the hardware, software, and system problems in the system, and can also monitor the events that occur in the system. The user can use it to check the cause of the error.
  • System logs include system logs, application logs, and security logs.
  • the invention of this application proposes a new file early warning mode.
  • the existing hereassurance products whether based on data interface transmission or file transmission, have a certain rate of loss due to various reasons, such as network jitter. It may also be an abnormal system or a natural disaster in some areas.
  • the success rate of file transmission can be improved, and manual intervention can be notified through early warning emails to ensure a 100% success rate of file data transmission.
  • the method further includes:
  • the transmission file is compensated.
  • the compensation includes obtaining the file defect of the transmission file through the Internet transmission protocol and the independent redundant disk array, and obtaining the transmission file from a network source. Defective part.
  • a compensation mechanism which refers to forward compensation and backward compensation.
  • Forward compensation is to repeatedly send a certain proportion of data through the network, but it will reduce the efficiency of transmission and communication.
  • Backward compensation requires the establishment of a large number of data node servers on the Internet to meet the needs of ground data transmission, which will cause the cost of the entire system to be high.
  • This invention breaks through the Internet transmission limitation of traditional backward compensation, reduces the number of ground data node servers, greatly reduces system costs, and can improve ground network compensation speed and network resource utilization. Constructed an effective bank file transfer backward compensation system with lower cost.
  • the compensation for the transmission file includes:
  • the first terminal obtains the segment of the transmission file from the network unstable and causes the defective segment in the transmission process to be lost, then the disk space corresponding to the defective segment is vacant, and The ID number of the defective fragment will not be recorded, so that the missing fragment is searched, and the parity check is performed on the independent redundant disk array of the transmitted file to obtain the defective information of the downloaded file, and the defective fragment includes Missing fragments and damaged fragments.
  • the defective part from the server and other users through the ID number of the defective fragment. After obtaining the defective part, write the defective fragment into the disk space according to the ID number of the defective fragment, and write all the fragments according to the ID number of the defective fragment. The defective fragment is written into the pre-allocated space to supplement the transmission file.
  • the method for compensating the transmission file further includes:
  • the missing indication information is fed back to the second terminal, so that the second terminal will be missing according to the missing indication information
  • the frame file is resent.
  • the method further includes:
  • file transfer is performed in a multi-threaded manner.
  • multithreading refers to:
  • the first thread of the first threshold number is used to perform multithreaded file transfer, and the first threshold refers to threads in the thread pool The upper limit of the number.
  • the number of threads of the number of file transfer requests is used to perform multithreaded file transfer.
  • threads can put the tasks in the long-occupied program in the background for processing, so as to speed up the processing of tasks and reduce the waiting time of users.
  • the method before delivering the transmission file to the corresponding partition node server according to the partition node identifier corresponding to each transmission file, the method further includes:
  • mapping table the first private key corresponding to the first public key is obtained, the mapping table includes the correspondence between the second public key and the second private key, the mapping table is stored in a database, and the first The second public key includes the first public key, and the second private key includes the first private key.
  • the method further includes:
  • Identity verification After receiving the file transfer request from the second terminal, identity verification is performed on the second terminal. Identity verification includes checking whether the file transfer server name, file transfer client name, IP address, port number, user name, and password information are correct.
  • Fig. 2 is a schematic structural diagram of a file transmission feedback device 20, which can be applied to file transmission feedback.
  • the file transmission feedback device in the embodiment of the present application can implement the steps corresponding to the file transmission feedback method performed in the embodiment corresponding to FIG. 1 above.
  • the function implemented by the device 20 for file transmission feedback can be implemented by hardware, or implemented by hardware executing corresponding software.
  • the hardware or software includes one or more modules corresponding to the above-mentioned functions, and the modules may be software and/or hardware.
  • the feedback device for file transmission may include an input/output module 201 and a processing module 202.
  • the function implementation of the processing module 202 and the input/output module 201 can refer to the operations performed in the embodiment corresponding to FIG. Go into details.
  • the input/output module 201 can be used to control the input, output, and acquisition operations of the input/output module 201.
  • the input/output module 201 may be used to adapt the transmission protocol according to the connection mode with the second terminal, and receive a request for sending a file from the second terminal.
  • the processing module 202 may be configured to adapt the transmission protocol according to the connection mode with the second terminal, and receive a request for sending a file from the second terminal; after receiving the file transmission request, obtain a transmission file in a predetermined format;
  • the transmission file includes transmission file information and publication range information corresponding to the transmission file.
  • the transmission file in the predetermined format is processed according to the publication range information corresponding to the transmission file information, and the transmission file corresponding to each partition node is generated and sent to the second
  • the terminal initiates a file publishing task carrying the identification of the partition node of the transmission file to be received; receives the confirmation message from the second terminal, and delivers the transmission file to the corresponding partition node server according to the partition node identification corresponding to each transmission file; when the transmission file When sending fails, resend the transfer file to the server within the set time and analyze the reason for the file transfer failure, send the warning message and the reason for the failure, and resend the transfer file when the detection failure reason is processed; if the timeout thread is passed The detection time exceeds the set time, the transmission file is repeatedly detected until the number of repetitions of the detection thread reaches the set warning number, and the failure cause has not been dealt with, then the warning information is upgraded to advanced warning information through the input and output module And send it out by mail or short message; or, by setting the time and date, detect all the files
  • the processing module 202 is further configured to:
  • the transmission file is compensated.
  • the compensation includes obtaining the file defect of the transmission file through the Internet transmission protocol and the independent redundant disk array, and obtaining the transmission file from a network source. Defective part.
  • the processing module 202 is further configured to:
  • the first terminal obtains the fragment of the transmission file from the network unstable and causes the defective fragment in the transmission process to be lost, then the disk space corresponding to the defective fragment is vacant, and The ID number of the defective fragment will not be recorded, so that the missing fragment is searched, and the parity check of the independent redundant disk array of the transmission file is performed to obtain the defective information of the downloaded file, and the defective fragment includes Missing fragments and damaged fragments.
  • the processing module 202 is further configured to:
  • the missing indication information is fed back to the second terminal, so that the second terminal will be missing according to the missing indication information
  • the frame file is resent.
  • the processing module 202 is further configured to:
  • file transfer is performed in a multi-threaded manner.
  • multithreading refers to:
  • the first thread of the first threshold number is used to perform multithreaded file transfer, and the first threshold refers to threads in the thread pool The upper limit of the number.
  • the number of threads of the number of file transfer requests is used to perform multithreaded file transfer.
  • the processing module 202 is further configured to:
  • mapping table the first private key corresponding to the first public key is obtained, the mapping table includes the correspondence between the second public key and the second private key, the mapping table is stored in a database, and the first The second public key includes the first public key, and the second private key includes the first private key.
  • the processing module 202 is further configured to:
  • Identity verification After receiving the file transfer request from the second terminal, identity verification is performed on the second terminal. Identity verification includes checking whether the file transfer server name, file transfer client name, IP address, port number, user name, and password information are correct.
  • the above describes the creation device in the embodiment of the present application from the perspective of modular functional entities.
  • the following describes a computer device from the perspective of hardware, as shown in Figure 3, which includes: a processor, a memory, an input and output unit (or Is a transceiver, not identified in FIG. 3) and a computer program stored in the memory and running on the processor.
  • the computer program may be a program corresponding to the file transmission feedback method in the embodiment corresponding to FIG. 1.
  • the file transmission feedback method includes: the file transmission feedback method includes: according to the connection mode with the second terminal Adapting the transmission protocol, receiving a transmission file request from the second terminal; after receiving the transmission file request, obtaining a transmission file in a predetermined format; the transmission file in the predetermined format includes transmission file information and publication range information corresponding to the transmission file Process the transmission file in the predetermined format according to the publication range information corresponding to the transmission file information, generate transmission files corresponding to each partition node, and initiate a file publication task carrying the partition node identification of the transmission file to be received to the second terminal; Receive the confirmation message from the second terminal, and deliver the transmission file to the corresponding partition node server according to the partition node identifier corresponding to each transmission file; when the transmission file fails to be sent, resend the transmission file to the server within the set time And analyze the reason for the file transmission failure, send out the warning message and the failure reason, and re-send the transmission file when the detection failure reason is processed; if the time detected by the timeout thread exceeds the set
  • the advanced warning information will be sent out by email or SMS; the file information of the transferred file will be saved and fed back to the second terminal.
  • the computer device realizes the function of the file transmission feedback device 20 shown in FIG. 2
  • the processor executes the computer program to realize the file transmission feedback device in the embodiment corresponding to FIG. 2 20 Perform the steps in the method of file transfer feedback.
  • the processor executes the computer program, the function of each module in the file transmission feedback device 20 of the embodiment corresponding to FIG. 2 is realized.
  • the computer program may be a program corresponding to the method of file transmission feedback in the embodiment corresponding to FIG. 1.
  • the so-called processor can be a central processing unit (Central Processing Unit, CPU), other general-purpose processors, digital signal processors (Digital Signal Processor, DSP), application specific integrated circuits (Application Specific Integrated Circuit, ASIC), off-the-shelf Field-Programmable Gate Array (FPGA) or other programmable logic devices, discrete gates or transistor logic devices, discrete hardware components, etc.
  • the general-purpose processor may be a microprocessor or the processor may also be any conventional processor, etc.
  • the processor is the control center of the computer device, and various interfaces and lines are used to connect various parts of the entire computer device.
  • the memory may be used to store the computer program and/or module, and the processor implements the computer by running or executing the computer program and/or module stored in the memory and calling data stored in the memory.
  • the memory may mainly include a storage program area and a storage data area.
  • the storage program area may store an operating system, an application program required by at least one function (such as a sound playback function, an image playback function, etc.), etc.; the storage data area may store Data created based on the use of mobile phones (such as audio data, video data, etc.), etc.
  • the memory can include high-speed random access memory, and can also include non-volatile memory, such as hard disks, memory, plug-in hard disks, smart media cards (SMC), and secure digital (SD) cards.
  • non-volatile memory such as hard disks, memory, plug-in hard disks, smart media cards (SMC), and secure digital (SD) cards.
  • Flash Card at least one magnetic disk storage device, flash memory device, or other volatile solid-state storage device.
  • the input and output units may also be replaced by receivers and transmitters, and they may be the same or different physical entities. When they are the same physical entity, they can be collectively referred to as input and output units.
  • the input and output can be a transceiver.
  • the memory may be integrated in the processor, or may be provided separately from the processor.
  • the technical solution of this application essentially or the part that contributes to the existing technology can be embodied in the form of a software product, and the computer software product is stored in a readable storage medium (such as ROM/RAM)
  • the storage medium may be non-volatile or volatile.
  • the computer storage medium includes a number of instructions to enable a terminal (which may be a mobile phone, a computer, a server, or a network device, etc.) to execute the operations described in the various embodiments of the present application.
  • the file transmission feedback method includes: the file transmission feedback method includes: adapting the transmission protocol according to the connection mode with the second terminal, and receiving a file transmission request from the second terminal; After the transmission file request, a transmission file in a predetermined format is obtained; the transmission file in the predetermined format includes transmission file information and publication range information corresponding to the transmission file, and the predetermined is processed according to the publication range information corresponding to the transmission file information Format the transmission file, generate the transmission file corresponding to each partition node, and initiate a file publishing task to the second terminal carrying the partition node identification of the transmission file to be received; receive the confirmation message from the second terminal, according to the partition node corresponding to each transmission file Identifies that the transmission file is sent to the corresponding partition node server; when the transmission file fails to be sent, the transmission file is resent to the server within the set time and the reason for the file transmission failure is analyzed, and the warning message and the reason for the failure are sent out and when The transmission file is re-sent when the detection failure reason is

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Abstract

本申请涉及软件监控领域,提供了文件传输的反馈的方法、装置、设备和存储介质,方法包括:根据与第二终端的连接方式适配传输协议,接收来自第二终端的发送传输文件请求;收到传输文件请求后,获取预定格式的传输文件;接收来自第二终端的确认消息,根据各传输文件对应的分区节点标识将传输文件下发至对应的分区节点服务器;当所述传输文件发送失败时,将警告信息和失败原因发送出去并重新执行时检测失败原因是否被处理,当失败原因被处理时才重新执行;保存所述文件的文件信息并反馈给第二终端。通过此补偿机制,预警机制,可以提高文件传输成功率,可通过预警邮件告知人工介入,保证文件数据传输成功率百分之百。

Description

文件传输的反馈方法、装置、设备和存储介质
本申请要求于2020年1月10日提交中国专利局、申请号为202010025292.X,发明名称为“文件传输的反馈方法、装置、设备和存储介质”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
本申请涉及金融科技产品中的软件监控领域,尤其涉及发明名称一种文件传输的反馈的方法、装置、设备和存储介质。
背景技术
现有金融产品无论基于数据接口传输数据或者基于文件传输,都有一定比率会由于各种原因传送失败,比如网络抖动,亦或是系统异常,亦或是部分区域自然灾害等。发明人发现,当文件传输失败以后,操作人员往往不知道文件是否有所遗漏,要对接收的文件进行大量的比对,才能发现传输失败的文件。
发明内容
本申请实例中提出一种新的理赔服务模式,将AI图片识别定损技术运用在车险事故理赔场景,提供便捷的客户端,让用户可以快速方便的完成理赔的全部流程。
第一方面,本申请提供一种文件传输的反馈的方法,包括:
根据与第二终端的连接方式适配传输协议,接收来自第二终端的发送传输文件请求;收到传输文件请求后,获取预定格式的传输文件;所述预定格式的传输文件包括传输文件信息及与传输文件对应的发布范围信息,根据所述与传输文件信息对应的发布范围信息处理所述预定格式的传输文件,生成对应各分区节点的传输文件,并向第二终端发起携带待接收传输文件分区节点标识的文件发布任务;
接收来自第二终端的确认消息,根据各传输文件对应的分区节点标识将传输文件下发至对应的分区节点服务器;
当所述传输文件发送失败时,在设置时间内向服务器重新发送所述传输文件并解析文件传输失败原因,将警告信息和失败原因发送出去以及当检测失败原因被处理时才重新发送所述传输文件。若通过超时线程检测的时间超过设置时间,则重复检测所述传输文件,直到次数检测线程重复次数达到设置预警次数后,失败原因仍未被处理,则将警告信息升级变为高级警告信息并使用邮件或短信发送出去;
或者,通过设定时间的日期,对设定时间当日接口所有接收的文件进行检测,若检测所述传输文件的文件信息没有包含对应的文件信息,则将高级警告信息用邮件或者短信发送出去;
保存所述传输文件的文件信息并反馈给第二终端。
第二方面,本申请提供一种文件传输的反馈的装置,包括:
输入获取模块,用于根据与第二终端的连接方式适配传输协议,接收来自第二终端的发送传输文件请求。
处理模块,用于根据与第二终端的连接方式适配传输协议,接收来自第二终端的发送传输文件请求;收到传输文件请求后,获取预定格式的传输文件;所述预定格式的传输文件包括传输文件信息及与传输文件对应的发布范围信息,根据所述与传输文件信息对应的发布范围信息处理所述预定格式的传输文件,生成对应各分区节点的传输文件,并向第二终端发起携带待接收传输文件分区节点标识的文件发布任务;接收来自第二终端的确认消息,根据各传输文件对应的分区节点标识将传输文件下发至对应的分区节点服务器;当所述传输文件发送失败时,在设置时间内向服务器重新发送所述传输文件并解析文件传输失败原因,将警告信息和失败原因发送出去以及当检测失败原因被处理时才重新发送所述传输文件;若通过超时线程检测的时间超过设置时间,则重复检测所述传输文件,直到次数检测线程重复次数达到设置预警次数后,失败原因仍未被处理,则通过所述输入输出模块将警告信息升级变为高级警告信息并使用邮件或短信发送出去;或者,通过设定时间的日期,对设定时间当日接口所有接收的文件进行检测,若检测所述传输文件的文件信息没有包含对应的文件信息,则通过所述输入输出模块将高级警告信息用邮件或者短信发送出去;保存所述传输文件的文件信息并反馈给第二终端。
本申请又一方面提供了一种计算机设备,其包括至少一个连接的处理器、存储器、输入输出单元,其中,所述存储器用于存储程序代码,所述处理器用于调用所述存储器中的程序代码来执行上述一种文件传输的反馈方法,所述文件传输的反馈方法至少包括:根据与第二终端的连接方式适配传输协议,接收来自第二终端的发送传输文件请求;收到传输文件请求后,获取预定格式的传输文件;所述预定格式的传输文件包括传输文件信息及与传输文件对应的发布范围信息,根据所述与传输文件信息对应的发布范围信息处理所述预定格式的传输文件,生成对应各分区节点的传输文件,并向第二终端发起携带待接收传输文件分区节点标识的文件发布任务;接收来自第二终端的确认消息,根据各传输文件对应的分区节点标识将传输文件下发至对应的分区节点服务器;当所述传输文件发送失败时,在设置时间内向服务器重新发送 所述传输文件并解析文件传输失败原因,将警告信息和失败原因发送出去以及当检测失败原因被处理时才重新发送所述传输文件;若通过超时线程检测的时间超过设置时间,则重复检测所述传输文件,直到次数检测线程重复次数达到设置预警次数后,失败原因仍未被处理,则将警告信息升级变为高级警告信息并使用邮件或短信发送出去;或者,通过设定时间的日期,对设定时间当日接口所有接收的文件进行检测,若检测所述传输文件的文件信息没有包含对应的文件信息,则将高级警告信息用邮件或者短信发送出去;保存所述传输文件的文件信息并反馈给第二终端。
本申请又一方面提供了一种计算机存储介质,其包括指令,当其在计算机上运行时,使得计算机执行上述一种文件传输的反馈方法,所述文件传输的反馈方法至少包括:根据与第二终端的连接方式适配传输协议,接收来自第二终端的发送传输文件请求;收到传输文件请求后,获取预定格式的传输文件;所述预定格式的传输文件包括传输文件信息及与传输文件对应的发布范围信息,根据所述与传输文件信息对应的发布范围信息处理所述预定格式的传输文件,生成对应各分区节点的传输文件,并向第二终端发起携带待接收传输文件分区节点标识的文件发布任务;接收来自第二终端的确认消息,根据各传输文件对应的分区节点标识将传输文件下发至对应的分区节点服务器;当所述传输文件发送失败时,在设置时间内向服务器重新发送所述传输文件并解析文件传输失败原因,将警告信息和失败原因发送出去以及当检测失败原因被处理时才重新发送所述传输文件;若通过超时线程检测的时间超过设置时间,则重复检测所述传输文件,直到次数检测线程重复次数达到设置预警次数后,失败原因仍未被处理,则将警告信息升级变为高级警告信息并使用邮件或短信发送出去;或者,通过设定时间的日期,对设定时间当日接口所有接收的文件进行检测,若检测所述传输文件的文件信息没有包含对应的文件信息,则将高级警告信息用邮件或者短信发送出去;保存所述传输文件的文件信息并反馈给第二终端。
相较于现有技术,本申请发明提出一种新的文件预警模式,现有银保产品无论基于数据接口传输数据或者基于文件传输,都有一定比率会由于各种原因丢失,比如网络抖动,亦或是系统异常,亦或是部分区域自然灾害。通过此补偿机制,预警机制,可以提高文件传输成功率,可通过预警邮件告知人工介入,保证文件数据传输成功率百分之百。
附图说明
图1为本申请实施例中文件传输的反馈的方法的流程示意图;
图2为本申请实施例中文件传输的反馈的装置的结构示意图;
图3为本申请实施例中计算机设备的结构示意图。
具体实施方式
应当理解,此处所描述的具体实施例仅用以解释本申请,并不用于限定本申请。本申请的说明书和权利要求书及上述附图中的术语“第一”、“第二”等是用于区别类似的对象,而不必用于描述特定的顺序或先后次序。应该理解这样使用的数据在适当情况下可以互换,以便这里描述的实施例能够以除了在这里图示或描述的内容以外的顺序实施。此外,术语“包括”和“具有”以及他们的任何变形,意图在于覆盖不排他的包含,例如,包含了一系列步骤或模块的过程、方法、系统、产品或设备不必限于清楚地列出的那些步骤或模块,而是可包括没有清楚地列出的或对于这些过程、方法、产品或设备固有的其它步骤或模块,本申请中所出现的模块的划分,仅仅是一种逻辑上的划分,实际应用中实现时可以有另外的划分方式,例如多个模块可以结合成或集成在另一个系统中,或一些特征可以忽略,或不执行。
请参照图1,以下对本申请提供一种文件传输的反馈的方法进行举例说明,所述方法包括:
101、根据与第二终端的连接方式适配传输协议,接收来自第二终端的发送传输文件请求。
所述适配传输协议是指是指通信双方对数据传送控制的一种,约定协议定义了数据单元使用的格式,信息单元应该包含的信息与含义、连接方式、信息发送和接收的时序,从而确保网络中数据顺利地传送到确定的地方。其中约定的内容至少包括对数据格式、同步方式、传送速度、传送步骤、检纠错方式以及控制字符定义,第一终端与第二终端必须共同遵守。
102、收到传输文件请求后,获取预定格式的传输文件。
所述预定格式的待发布产品信息文件包含传输文件信息及与传输文件对应的发布范围信息,根据所述与传输文件信息对应的发布范围信息对所述预定格式的传输文件进行处理,生成对应各分区节点的传输文件,并向第二终端发起携带待接收传输文件分区节点标识的文件发布任务。
多个文件传输时优先级高低可以决定传输速度的高低。例如同时传输2个文件的操作,文件的简称A和B,设置A文件的优先级高于B文件,A文件传输速度就会比B文件的快。
103、接收来自第二终端的确认消息,根据各传输文件对应的分区节点标识将传输文件下发至对应的分区节点服务器。
检测所述传输文件是否发送完毕,如所述传输文件发送完毕,则进行传输完毕提示;如所述传输文件发送中断,则重新发送所述传输文件或提示传 输错误。
104-1、当所述传输文件发送失败时,在设置时间内向服务器重新发送所述传输文件并解析文件传输失败原因,将警告信息和失败原因发送出去以及当检测失败原因被处理时才重新发送所述传输文件。
若通过超时线程检测的时间超过设置时间,则重复检测所述传输文件,直到次数检测线程重复次数达到设置预警次数后,失败原因仍未被处理,则将警告信息升级变为高级警告信息并使用邮件或短信发送出去。
104-2、通过设定时间的日期,对设定时间当日接口所有接收的文件进行检测,若检测所述传输文件的文件信息没有包含对应的文件信息,则将高级警告信息用邮件或者短信发送出去。
警告信息获取和警告处理实施严格的权限分级控制,即根据岗位职责的不同,对不同岗位的人赋予不同的警告处理权限以及获取警告信息权限。例如以下为权限实施方式的其中一种:A为操作人员,B为技术人员,则A将会收到警告信息,并拥有警告信息的处理权限,B则会收到高级警告信息,并拥有高级警告信息的处理权限。
105、保存所述传输文件的文件信息并反馈给第二终端。
所述文件信息至少包括文件存储位置、文件属性信息、文件名以及报错具体信息。所述错误信息至少包括文件上传失败信息、下载失败信息以及推送文件失败信息。文件传输结束以后,会将文件信息保存到数据库并汇总,汇总成的信息用监控日志进行呈现。监控日志是指是记录系统中硬件、软件和系统问题的信息,同时还可以监视系统中发生的事件。用户可以通过它来检查错误发生的原因。系统日志包括系统日志、应用程序日志以及安全日志。
相较于现有技术,本申请发明提出一种新的文件预警模式,现有银保产品无论基于数据接口传输数据或者基于文件传输,都有一定比率会由于各种原因丢失,比如网络抖动,亦或是系统异常,亦或是部分区域自然灾害。通过此补偿机制,预警机制,可以提高文件传输成功率,可通过预警邮件告知人工介入,保证文件数据传输成功率百分之百。
一些实施方式中,所述在设置时间内向服务器重新所述传输文件并解析文件传输失败原因之后,所述方法还包括:
当所述传输文件产生缺损,对所述传输文件进行补偿,所述补偿包括通过互联网传输协议以及独立冗余磁盘阵列得到所述传输文件的文件缺损,并从网络来源中获取所述传输文件的缺损部分。
还可以通过补偿机制降低文件发送失败的概率,所述补偿机制是指前向补偿和后向补偿。前向补偿即通过网络重复发送一定比例的数据,但会减低传输通信的效率。后向补偿需要在互联网上建立大量的数据节点服务器才能 满足地面数据传输的需要,这样将会造成整个系统的成本偏高。该发明突破了传统后向补偿的互联网传输限制,减少地面数据节点服务器的数量,大大降低系统成本,并能提高地面网络补偿速度和网络资源利用率。用较低成本构建了一个有效的银行文件传输后向补偿系统。
一些实施方式中,所述对传输文件进行补偿,包括:
通过网络获取所述传输文件的标识ID,并为所述传输文件分配预设值的储存空间。
当所述传输文件的缺损部分重新开始传输后,所述第一终端从网络获取所述传输文件的片断不稳定造成传输过程中的缺损片断丢失,则所述缺损片断对应的磁盘空间空缺,且所述缺损片断ID号也不会被记录,从而进行丢失片断的查找,通过将所述传输文件的独立冗余磁盘阵列进行奇偶校验,以得到下载后文件的缺损信息,所述缺损片段包括缺失片段和损坏片段。
通过所述缺损片断ID号,从服务器和其他用户获取缺损部分,获得所述缺损部分后按照所述缺损片断ID号将所述缺损片断写入磁盘空间,并根据所述缺损片断ID号将所述缺损片断写入预分配的空间,以将所述传输文件补充。
通过这个方式减少消息的不必要支出,以减少带宽的使用。
一些实施方式中,所述对传输文件进行补偿,所述方法还包括:
接收所述第二终端发送的对所述缺损片段增加的指示信息,所述指示信息用于指示文件的预设帧数以及文件的重要性。
当传输完成且接收到的所述指示信息中的实际帧数高于帧数阈值时,则判断此次文件接收正常。
若接收到的所述指示信息的实际帧数低于所述帧数阈值,则将缺失的指示信息反馈给所述第二终端,以使得所述第二终端根据所述缺失的指示信息将缺失的帧文件进行重新发送。
一些实施方式中,所述收到传输文件请求后,所述方法还包括:
若接收到多个不同的传输文件请求,则采用多线程的方式进行文件传输。所述采用多线程的方式进行文件传输是指:
当接收到所述多个不同的传输文件请求的数量超过第一阈值时,采用所述第一阈值个数的第一线程进行多线程文件传输,所述第一阈值是指线程池中的线程的数量上限。
当所述多个不同的传输文件请求的数量小于或等于所述第一阈值时,采用所述传输文件请求的数量的线程数量进行多线程文件传输。
使用线程可以把占据时间长的程序中的任务放到后台去处理,以加快任务的处理速度,减少用户的等待时间。
一些实施方式中,所述根据各传输文件对应的分区节点标识将传输文件 下发至对应的分区节点服务器之前,所述方法还还包括:
向所述第二终端发送第一公钥,以使得所述第二终端根据所述第一公钥对传输文件进行加密。
接收所述第二终端发送的所述传输文件。
根据映射表,获取所述第一公钥对应的第一私钥,所述映射表包括第二公钥与第二私钥之间的对应关系,所述映射表存储于数据库中,所述第二公钥包含所述第一公钥,所述第二私钥包含所述第一私钥。
根据所述第一私钥,对所述传输文件进行解密。
以增加增加发送文件安全性。
一些实施方式中,所述收到传输文件请求后,所述方法还包括:
收到第二终端的传输文件的请求后,对第二终端进行身份验证,身份验证包括检查文件传输服务器名、文件传输客户端名、IP地址、端口号、用户名以及口令信息是否正确。
以核验发送的文件是否正常;
如图2所示的一种文件传输的反馈的装置20的结构示意图,其可应用于文件传输的反馈。本申请实施例中的文件传输的反馈的装置能够实现对应于上述图1所对应的实施例中所执行的文件传输的反馈的方法的步骤。文件传输的反馈的装置20实现的功能可以通过硬件实现,也可以通过硬件执行相应的软件实现。硬件或软件包括一个或多个与上述功能相对应的模块,所述模块可以是软件和/或硬件。所述文件传输的反馈的装置可包括输入输出模块201和处理模块202,所述处理模块202和输入输出模块201的功能实现可参考图1所对应的实施例中所执行的操作,此处不作赘述。输入输出模块201可用于控制所述输入输出模块201的输入、输出以及获取操作。
一些实施方式中,所述输入输出模块201可用于根据与第二终端的连接方式适配传输协议,接收来自第二终端的发送传输文件请求。
所述处理模块202可用于根据与第二终端的连接方式适配传输协议,接收来自第二终端的发送传输文件请求;收到传输文件请求后,获取预定格式的传输文件;所述预定格式的传输文件包括传输文件信息及与传输文件对应的发布范围信息,根据所述与传输文件信息对应的发布范围信息处理所述预定格式的传输文件,生成对应各分区节点的传输文件,并向第二终端发起携带待接收传输文件分区节点标识的文件发布任务;接收来自第二终端的确认消息,根据各传输文件对应的分区节点标识将传输文件下发至对应的分区节点服务器;当所述传输文件发送失败时,在设置时间内向服务器重新发送所述传输文件并解析文件传输失败原因,将警告信息和失败原因发送出去以及当检测失败原因被处理时才重新发送所述传输文件;若通过超时线程检测的 时间超过设置时间,则重复检测所述传输文件,直到次数检测线程重复次数达到设置预警次数后,失败原因仍未被处理,则通过所述输入输出模块将警告信息升级变为高级警告信息并使用邮件或短信发送出去;或者,通过设定时间的日期,对设定时间当日接口所有接收的文件进行检测,若检测所述传输文件的文件信息没有包含对应的文件信息,则通过所述输入输出模块将高级警告信息用邮件或者短信发送出去;保存所述传输文件的文件信息并反馈给第二终端。
一些实施方式中,所述处理模块202还用于:
当所述传输文件产生缺损,对所述传输文件进行补偿,所述补偿包括通过互联网传输协议以及独立冗余磁盘阵列得到所述传输文件的文件缺损,并从网络来源中获取所述传输文件的缺损部分。
一些实施方式中,所述处理模块202还用于:
通过网络获取所述传输文件的标识ID,并为所述传输文件分配预设值的储存空间。
当所述传输文件的缺损部分重新开始传输后,所述第一终端从网络获取所述传输文件的片断不稳定造成传输过程中的缺损片断丢失,则所述缺损片断对应的磁盘空间空缺,且所述缺损片断ID号也不会被记录,从而进行丢失片断的查找,通过将所述传输文件的独立冗余磁盘阵列进行奇偶校验,以得到下载后文件的缺损信息,所述缺损片段包括缺失片段和损坏片段。
通过所述缺损片断ID号,从服务器和其他用户获取缺损部分,获得所述缺损部分后按照所述缺损片断ID号将所述缺损片断写入磁盘空间,并根据所述缺损片断ID号将所述缺损片断写入预分配的空间,以将所述传输文件补充。一些实施方式中,所述处理模块202还用于:
接收所述第二终端发送的对所述缺损片段增加的指示信息,所述指示信息用于指示文件的预设帧数以及文件的重要性。
当传输完成且接收到的所述指示信息中的实际帧数高于帧数阈值时,则判断此次文件接收正常。
若接收到的所述指示信息的实际帧数低于所述帧数阈值,则将缺失的指示信息反馈给所述第二终端,以使得所述第二终端根据所述缺失的指示信息将缺失的帧文件进行重新发送。
一些实施方式中,所述处理模块202还用于:
若接收到多个不同的传输文件请求,则采用多线程的方式进行文件传输。所述采用多线程的方式进行文件传输是指:
当接收到所述多个不同的传输文件请求的数量超过第一阈值时,采用所述第一阈值个数的第一线程进行多线程文件传输,所述第一阈值是指线程池 中的线程的数量上限。
当所述多个不同的传输文件请求的数量小于或等于所述第一阈值时,采用所述传输文件请求的数量的线程数量进行多线程文件传输。
一些实施方式中,所述处理模块202还用于:
向所述第二终端发送第一公钥,以使得所述第二终端根据所述第一公钥对传输文件进行加密。
接收所述第二终端发送的所述传输文件。
根据映射表,获取所述第一公钥对应的第一私钥,所述映射表包括第二公钥与第二私钥之间的对应关系,所述映射表存储于数据库中,所述第二公钥包含所述第一公钥,所述第二私钥包含所述第一私钥。
根据所述第一私钥,对所述传输文件进行解密。
一些实施方式中,所述处理模块202还用于:
收到第二终端的传输文件的请求后,对第二终端进行身份验证,身份验证包括检查文件传输服务器名、文件传输客户端名、IP地址、端口号、用户名以及口令信息是否正确。
上面从模块化功能实体的角度分别介绍了本申请实施例中的创建装置,以下从硬件角度介绍一种计算机设备,如图3所示,其包括:处理器、存储器、输入输出单元(也可以是收发器,图3中未标识出)以及存储在所述存储器中并可在所述处理器上运行的计算机程序。例如,该计算机程序可以为图1所对应的实施例中文件传输的反馈的方法对应的程序,该文件传输的反馈方法包括:所述文件传输的反馈方法包括:根据与第二终端的连接方式适配传输协议,接收来自第二终端的发送传输文件请求;收到传输文件请求后,获取预定格式的传输文件;所述预定格式的传输文件包括传输文件信息及与传输文件对应的发布范围信息,根据所述与传输文件信息对应的发布范围信息处理所述预定格式的传输文件,生成对应各分区节点的传输文件,并向第二终端发起携带待接收传输文件分区节点标识的文件发布任务;接收来自第二终端的确认消息,根据各传输文件对应的分区节点标识将传输文件下发至对应的分区节点服务器;当所述传输文件发送失败时,在设置时间内向服务器重新发送所述传输文件并解析文件传输失败原因,将警告信息和失败原因发送出去以及当检测失败原因被处理时才重新发送所述传输文件;若通过超时线程检测的时间超过设置时间,则重复检测所述传输文件,直到次数检测线程重复次数达到设置预警次数后,失败原因仍未被处理,则将警告信息升级变为高级警告信息并使用邮件或短信发送出去;或者,通过设定时间的日期,对设定时间当日接口所有接收的文件进行检测,若检测所述传输文件的文件信息没有包含对应的文件信息,则将高级警告信息用邮件或者短信发送 出去;保存所述传输文件的文件信息并反馈给第二终端。例如,当计算机设备实现如图2所示的文件传输的反馈的装置20的功能时,所述处理器执行所述计算机程序时实现上述图2所对应的实施例中由文件传输的反馈的装置20执行的文件传输的反馈的方法中的各步骤。或者,所述处理器执行所述计算机程序时实现上述图2所对应的实施例的文件传输的反馈的装置20中各模块的功能。又例如,该计算机程序可以为图1所对应的实施例中文件传输的反馈的方法对应的程序。
所称处理器可以是中央处理单元(Central Processing Unit,CPU),还可以是其他通用处理器、数字信号处理器(Digital Signal Processor,DSP)、专用集成电路(Application Specific Integrated Circuit,ASIC)、现成可编程门阵列(Field-Programmable Gate Array,FPGA)或者其他可编程逻辑器件、分立门或者晶体管逻辑器件、分立硬件组件等。通用处理器可以是微处理器或者该处理器也可以是任何常规的处理器等,所述处理器是所述计算机装置的控制中心,利用各种接口和线路连接整个计算机装置的各个部分。
所述存储器可用于存储所述计算机程序和/或模块,所述处理器通过运行或执行存储在所述存储器内的计算机程序和/或模块,以及调用存储在存储器内的数据,实现所述计算机装置的各种功能。所述存储器可主要包括存储程序区和存储数据区,其中,存储程序区可存储操作系统、至少一个功能所需的应用程序(比如声音播放功能、图像播放功能等)等;存储数据区可存储根据手机的使用所创建的数据(比如音频数据、视频数据等)等。此外,存储器可以包括高速随机存取存储器,还可以包括非易失性存储器,例如硬盘、内存、插接式硬盘,智能存储卡(Smart Media Card,SMC),安全数字(Secure Digital,SD)卡,闪存卡(Flash Card)、至少一个磁盘存储器件、闪存器件、或其他易失性固态存储器件。
所述输入输出单元也可以用接收器和发送器代替,可以为相同或者不同的物理实体。为相同的物理实体时,可以统称为输入输出单元。该输入输出可以为收发器。
所述存储器可以集成在所述处理器中,也可以与所述处理器分开设置。
通过以上的实施方式的描述,本领域的技术人员可以清楚地了解到上述实施例方法可借助软件加必需的通用硬件平台的方式来实现,当然也可以通过硬件,但很多情况下前者是更佳的实施方式。基于这样的理解,本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可读存储介质(如ROM/RAM)中,该存储介质可以是非易失性,也可以是易失性,该计算机存储介质包括若干指令用以使得一台终端(可以是手机,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的文件传输的反馈方法,该文件传输的反馈方法包括:所述文件传输的反馈方法包括:根据与第二终端的连接方式适配传输协议,接收来自第二终端的发送传输文件请求;收到传输文件请求后,获取预定格式的传输文件;所述预定格式的传输文件包括传输文件信息及与传输文件对应的发布范围信息,根据所述与传输文件信息对应的发布范围信息处理所述预定格式的传输文件,生成对应各分区节点的传输文件,并向第二终端发起携带待接收传输文件分区节点标识的文件发布任务;接收来自第二终端的确认消息,根据各传输文件对应的分区节点标识将传输文件下发至对应的分区节点服务器;当所述传输文件发送失败时,在设置时间内向服务器重新发送所述传输文件并解析文件传输失败原因,将警告信息和失败原因发送出去以及当检测失败原因被处理时才重新发送所述传输文件;若通过超时线程检测的时间超过设置时间,则重复检测所述传输文件,直到次数检测线程重复次数达到设置预警次数后,失败原因仍未被处理,则将警告信息升级变为高级警告信息并使用邮件或短信发送出去;或者,通过设定时间的日期,对设定时间当日接口所有接收的文件进行检测,若检测所述传输文件的文件信息没有包含对应的文件信息,则将高级警告信息用邮件或者短信发送出去;保存所述传输文件的文件信息并反馈给第二终端。
上面结合附图对本申请的实施例进行了描述,但是本申请并不局限于上述的具体实施方式,上述的具体实施方式仅仅是示意性的,而不是限制性的,本领域的普通技术人员在本申请的启示下,在不脱离本申请宗旨和权利要求所保护的范围情况下,还可做出很多形式,凡是利用本申请说明书及附图内容所作的等效结构或等效流程变换,或直接或间接运用在其他相关的技术领域,这些均属于本申请的保护之内。

Claims (20)

  1. 一种文件传输的反馈方法,其中,所述方法由第一终端执行,所述方法包括:
    根据与第二终端的连接方式适配传输协议,接收来自第二终端的发送传输文件请求;
    收到传输文件请求后,获取预定格式的传输文件;所述预定格式的传输文件包括传输文件信息及与传输文件对应的发布范围信息,根据所述与传输文件信息对应的发布范围信息处理所述预定格式的传输文件,生成对应各分区节点的传输文件,并向第二终端发起携带待接收传输文件分区节点标识的文件发布任务;
    接收来自第二终端的确认消息,根据各传输文件对应的分区节点标识将传输文件下发至对应的分区节点服务器;
    当所述传输文件发送失败时,在设置时间内向服务器重新发送所述传输文件并解析文件传输失败原因,将警告信息和失败原因发送出去以及当检测失败原因被处理时才重新发送所述传输文件;若通过超时线程检测的时间超过设置时间,则重复检测所述传输文件,直到次数检测线程重复次数达到设置预警次数后,失败原因仍未被处理,则将警告信息升级变为高级警告信息并使用邮件或短信发送出去;
    或者,通过设定时间的日期,对设定时间当日接口所有接收的文件进行检测,若检测所述传输文件的文件信息没有包含对应的文件信息,则将高级警告信息用邮件或者短信发送出去;
    保存所述传输文件的文件信息并反馈给第二终端。
  2. 根据权利要求1所述的方法,其中,所述在设置时间内向服务器重新所述传输文件并解析文件传输失败原因之后,所述方法还包括:
    当所述传输文件产生缺损,对所述传输文件进行补偿,所述补偿包括通过互联网传输协议以及独立冗余磁盘阵列得到所述传输文件的文件缺损,并从网络来源中获取所述传输文件的缺损部分。
  3. 根据权利要求2所述的方法,其中,所述对传输文件进行补偿,包括:
    通过网络获取所述传输文件的标识ID,并为所述传输文件分配预设值的储存空间;
    当所述传输文件的缺损部分重新开始传输后,所述第一终端从网络获取所述传输文件的片断不稳定造成传输过程中的缺损片断丢失,则所述缺损片断对应的磁盘空间空缺,且所述缺损片断ID号也不会被记录,从而进行丢失片断的查找,通过将传输文件的独立冗余磁盘阵列奇偶校验,以得到下载后 文件的缺损信息,所述缺损片段包括缺失片段和损坏片段;
    通过所述缺损片断ID号,从服务器和其他用户获取缺损部分,获得所述缺损部分后按照所述缺损片断ID号将所述缺损片断写入磁盘空间,并根据所述缺损片断ID号将所述缺损片断写入预分配的空间,以将所述传输文件补充。
  4. 根据权利要求3所述的方法,其中,所述对传输文件进行补偿,所述方法还包括:
    接收所述第二终端发送的对所述缺损片段增加的指示信息,所述指示信息用于指示文件的预设帧数以及文件的重要性;
    当传输完成且接收到的所述指示信息中的实际帧数高于帧数阈值时,则判断此次文件接收正常;
    若接收到的所述指示信息的实际帧数低于所述帧数阈值,则将缺失的指示信息反馈给所述第二终端,以使得所述第二终端根据所述缺失的指示信息将缺失的帧文件进行重新发送。
  5. 根据权利要求1所述的方法,其中,所述收到传输文件请求后,所述方法还包括:
    若接收到多个不同的传输文件请求,则采用多线程的方式进行文件传输;所述采用多线程的方式进行文件传输是指:
    当接收到所述多个不同的传输文件请求的数量超过第一阈值时,采用所述第一阈值个数的第一线程进行多线程文件传输,所述第一阈值是指线程池中的线程的数量上限;
    当所述多个不同的传输文件请求的数量小于或等于所述第一阈值时,采用所述传输文件请求的数量的线程数量进行多线程文件传输。
  6. 根据权利要求1所述的方法,其中,所述根据各传输文件对应的分区节点标识将传输文件下发至对应的分区节点服务器之前,所述方法还还包括:
    向所述第二终端发送第一公钥,以使得所述第二终端根据所述第一公钥对传输文件进行加密;
    接收所述第二终端发送的所述传输文件;
    根据映射表,获取所述第一公钥对应的第一私钥,所述映射表包括第二公钥与第二私钥之间的对应关系,所述映射表存储于数据库中,所述第二公钥包含所述第一公钥,所述第二私钥包含所述第一私钥;
    根据所述第一私钥,对所述传输文件进行解密。
  7. 根据权利要求1或6所述的方法,其中,所述收到传输文件请求后,所述方法还包括:
    收到第二终端的传输文件的请求后,对第二终端进行身份验证,身份验 证包括检查文件传输服务器名、文件传输客户端名、IP地址、端口号、用户名以及口令信息是否正确。
  8. 一种文件传输的反馈的装置,其中,所述装置包括:
    输入输出模块,用于根据与第二终端的连接方式适配传输协议,接收来自第二终端的发送传输文件请求;
    处理模块,用于根据与第二终端的连接方式适配传输协议,接收来自第二终端的发送传输文件请求;收到传输文件请求后,获取预定格式的传输文件;所述预定格式的传输文件包括传输文件信息及与传输文件对应的发布范围信息,根据所述与传输文件信息对应的发布范围信息处理所述预定格式的传输文件,生成对应各分区节点的传输文件,并向第二终端发起携带待接收传输文件分区节点标识的文件发布任务;接收来自第二终端的确认消息,根据各传输文件对应的分区节点标识将传输文件下发至对应的分区节点服务器;当所述传输文件发送失败时,在设置时间内向服务器重新发送所述传输文件并解析文件传输失败原因,将警告信息和失败原因发送出去以及当检测失败原因被处理时才重新发送所述传输文件;若通过超时线程检测的时间超过设置时间,则重复检测所述传输文件,直到次数检测线程重复次数达到设置预警次数后,失败原因仍未被处理,则通过所述输入输出模块将警告信息升级变为高级警告信息并使用邮件或短信发送出去;或者,通过设定时间的日期,对设定时间当日接口所有接收的文件进行检测,若检测所述传输文件的文件信息没有包含对应的文件信息,则通过所述输入输出模块将高级警告信息用邮件或者短信发送出去;保存所述传输文件的文件信息并反馈给第二终端。
  9. 一种计算机设备,其中,所述计算机设备包括:
    至少一个处理器、存储器和输入输出单元;
    其中,所述存储器用于存储程序代码,所述处理器用于调用所述存储器中存储的程序代码来执行一种文件传输的反馈方法,所述文件传输的反馈方法包括:
    根据与第二终端的连接方式适配传输协议,接收来自第二终端的发送传输文件请求;
    收到传输文件请求后,获取预定格式的传输文件;所述预定格式的传输文件包括传输文件信息及与传输文件对应的发布范围信息,根据所述与传输文件信息对应的发布范围信息处理所述预定格式的传输文件,生成对应各分区节点的传输文件,并向第二终端发起携带待接收传输文件分区节点标识的文件发布任务;
    接收来自第二终端的确认消息,根据各传输文件对应的分区节点标识将 传输文件下发至对应的分区节点服务器;
    当所述传输文件发送失败时,在设置时间内向服务器重新发送所述传输文件并解析文件传输失败原因,将警告信息和失败原因发送出去以及当检测失败原因被处理时才重新发送所述传输文件;若通过超时线程检测的时间超过设置时间,则重复检测所述传输文件,直到次数检测线程重复次数达到设置预警次数后,失败原因仍未被处理,则将警告信息升级变为高级警告信息并使用邮件或短信发送出去;
    或者,通过设定时间的日期,对设定时间当日接口所有接收的文件进行检测,若检测所述传输文件的文件信息没有包含对应的文件信息,则将高级警告信息用邮件或者短信发送出去;
    保存所述传输文件的文件信息并反馈给第二终端。
  10. 根据权利要求9所述的计算机设备,其中,所述在设置时间内向服务器重新所述传输文件并解析文件传输失败原因之后,所述方法还包括:
    当所述传输文件产生缺损,对所述传输文件进行补偿,所述补偿包括通过互联网传输协议以及独立冗余磁盘阵列得到所述传输文件的文件缺损,并从网络来源中获取所述传输文件的缺损部分。
  11. 根据权利要求10所述的计算机设备,其中,所述对传输文件进行补偿,包括:
    通过网络获取所述传输文件的标识ID,并为所述传输文件分配预设值的储存空间;
    当所述传输文件的缺损部分重新开始传输后,所述第一终端从网络获取所述传输文件的片断不稳定造成传输过程中的缺损片断丢失,则所述缺损片断对应的磁盘空间空缺,且所述缺损片断ID号也不会被记录,从而进行丢失片断的查找,通过将传输文件的独立冗余磁盘阵列奇偶校验,以得到下载后文件的缺损信息,所述缺损片段包括缺失片段和损坏片段;
    通过所述缺损片断ID号,从服务器和其他用户获取缺损部分,获得所述缺损部分后按照所述缺损片断ID号将所述缺损片断写入磁盘空间,并根据所述缺损片断ID号将所述缺损片断写入预分配的空间,以将所述传输文件补充。
  12. 根据权利要求11所述的计算机设备,其中,所述对传输文件进行补偿,所述方法还包括:
    接收所述第二终端发送的对所述缺损片段增加的指示信息,所述指示信息用于指示文件的预设帧数以及文件的重要性;
    当传输完成且接收到的所述指示信息中的实际帧数高于帧数阈值时,则判断此次文件接收正常;
    若接收到的所述指示信息的实际帧数低于所述帧数阈值,则将缺失的指示信息反馈给所述第二终端,以使得所述第二终端根据所述缺失的指示信息将缺失的帧文件进行重新发送。
  13. 根据权利要求9所述的计算机设备,其中,所述收到传输文件请求后,所述方法还包括:
    若接收到多个不同的传输文件请求,则采用多线程的方式进行文件传输;所述采用多线程的方式进行文件传输是指:
    当接收到所述多个不同的传输文件请求的数量超过第一阈值时,采用所述第一阈值个数的第一线程进行多线程文件传输,所述第一阈值是指线程池中的线程的数量上限;
    当所述多个不同的传输文件请求的数量小于或等于所述第一阈值时,采用所述传输文件请求的数量的线程数量进行多线程文件传输。
  14. 根据权利要求9所述的计算机设备,其中,所述根据各传输文件对应的分区节点标识将传输文件下发至对应的分区节点服务器之前,所述方法还还包括:
    向所述第二终端发送第一公钥,以使得所述第二终端根据所述第一公钥对传输文件进行加密;
    接收所述第二终端发送的所述传输文件;
    根据映射表,获取所述第一公钥对应的第一私钥,所述映射表包括第二公钥与第二私钥之间的对应关系,所述映射表存储于数据库中,所述第二公钥包含所述第一公钥,所述第二私钥包含所述第一私钥;
    根据所述第一私钥,对所述传输文件进行解密。
  15. 一种计算机存储介质,其中,其包括指令,当其在计算机上运行时,使得计算机执行一种文件传输的反馈方法,其中,所述一种文件传输的反馈方法包括:
    根据与第二终端的连接方式适配传输协议,接收来自第二终端的发送传输文件请求;
    收到传输文件请求后,获取预定格式的传输文件;所述预定格式的传输文件包括传输文件信息及与传输文件对应的发布范围信息,根据所述与传输文件信息对应的发布范围信息处理所述预定格式的传输文件,生成对应各分区节点的传输文件,并向第二终端发起携带待接收传输文件分区节点标识的文件发布任务;
    接收来自第二终端的确认消息,根据各传输文件对应的分区节点标识将传输文件下发至对应的分区节点服务器;
    当所述传输文件发送失败时,在设置时间内向服务器重新发送所述传输 文件并解析文件传输失败原因,将警告信息和失败原因发送出去以及当检测失败原因被处理时才重新发送所述传输文件;若通过超时线程检测的时间超过设置时间,则重复检测所述传输文件,直到次数检测线程重复次数达到设置预警次数后,失败原因仍未被处理,则将警告信息升级变为高级警告信息并使用邮件或短信发送出去;
    或者,通过设定时间的日期,对设定时间当日接口所有接收的文件进行检测,若检测所述传输文件的文件信息没有包含对应的文件信息,则将高级警告信息用邮件或者短信发送出去;
    保存所述传输文件的文件信息并反馈给第二终端。
  16. 根据权利要求15所述的计算机存储介质,其中,所述在设置时间内向服务器重新所述传输文件并解析文件传输失败原因之后,所述方法还包括:
    当所述传输文件产生缺损,对所述传输文件进行补偿,所述补偿包括通过互联网传输协议以及独立冗余磁盘阵列得到所述传输文件的文件缺损,并从网络来源中获取所述传输文件的缺损部分。
  17. 根据权利要求16所述的计算机存储介质,其中,所述对传输文件进行补偿,包括:
    通过网络获取所述传输文件的标识ID,并为所述传输文件分配预设值的储存空间;
    当所述传输文件的缺损部分重新开始传输后,所述第一终端从网络获取所述传输文件的片断不稳定造成传输过程中的缺损片断丢失,则所述缺损片断对应的磁盘空间空缺,且所述缺损片断ID号也不会被记录,从而进行丢失片断的查找,通过将传输文件的独立冗余磁盘阵列奇偶校验,以得到下载后文件的缺损信息,所述缺损片段包括缺失片段和损坏片段;
    通过所述缺损片断ID号,从服务器和其他用户获取缺损部分,获得所述缺损部分后按照所述缺损片断ID号将所述缺损片断写入磁盘空间,并根据所述缺损片断ID号将所述缺损片断写入预分配的空间,以将所述传输文件补充。
  18. 根据权利要求17所述的计算机存储介质,其中,所述对传输文件进行补偿,所述方法还包括:
    接收所述第二终端发送的对所述缺损片段增加的指示信息,所述指示信息用于指示文件的预设帧数以及文件的重要性;
    当传输完成且接收到的所述指示信息中的实际帧数高于帧数阈值时,则判断此次文件接收正常;
    若接收到的所述指示信息的实际帧数低于所述帧数阈值,则将缺失的指示信息反馈给所述第二终端,以使得所述第二终端根据所述缺失的指示信息 将缺失的帧文件进行重新发送。
  19. 根据权利要求15所述的计算机存储介质,其中,所述收到传输文件请求后,所述方法还包括:
    若接收到多个不同的传输文件请求,则采用多线程的方式进行文件传输;所述采用多线程的方式进行文件传输是指:
    当接收到所述多个不同的传输文件请求的数量超过第一阈值时,采用所述第一阈值个数的第一线程进行多线程文件传输,所述第一阈值是指线程池中的线程的数量上限;
    当所述多个不同的传输文件请求的数量小于或等于所述第一阈值时,采用所述传输文件请求的数量的线程数量进行多线程文件传输。
  20. 根据权利要求15所述的计算机存储介质,其中,所述根据各传输文件对应的分区节点标识将传输文件下发至对应的分区节点服务器之前,所述方法还还包括:
    向所述第二终端发送第一公钥,以使得所述第二终端根据所述第一公钥对传输文件进行加密;
    接收所述第二终端发送的所述传输文件;
    根据映射表,获取所述第一公钥对应的第一私钥,所述映射表包括第二公钥与第二私钥之间的对应关系,所述映射表存储于数据库中,所述第二公钥包含所述第一公钥,所述第二私钥包含所述第一私钥;
    根据所述第一私钥,对所述传输文件进行解密。
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