WO2019192133A1 - 电子装置、数据链路风险预警方法及存储介质 - Google Patents

电子装置、数据链路风险预警方法及存储介质 Download PDF

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Publication number
WO2019192133A1
WO2019192133A1 PCT/CN2018/102215 CN2018102215W WO2019192133A1 WO 2019192133 A1 WO2019192133 A1 WO 2019192133A1 CN 2018102215 W CN2018102215 W CN 2018102215W WO 2019192133 A1 WO2019192133 A1 WO 2019192133A1
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Prior art keywords
data
risk
service
traffic
information
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English (en)
French (fr)
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包晓华
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Ping An Technology Shenzhen Co Ltd
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Ping An Technology Shenzhen Co Ltd
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    • 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
    • H04L41/50Network service management, e.g. ensuring proper service fulfilment according to agreements
    • 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
    • H04L41/00Arrangements for maintenance, administration or management of data switching networks, e.g. of packet switching networks
    • H04L41/14Network analysis or design
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L43/00Arrangements for monitoring or testing data switching networks
    • H04L43/06Generation of reports
    • H04L43/062Generation of reports related to network traffic
    • 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
    • H04L43/0876Network utilisation, e.g. volume of load or congestion level
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L45/00Routing or path finding of packets in data switching networks
    • H04L45/28Routing or path finding of packets in data switching networks using route fault recovery

Definitions

  • the present application relates to the field of network service management, and in particular, to an electronic device, a data link risk warning method, and a storage medium.
  • the transmission path through which the service data passes when the enterprise service platform and the client terminal transmit the service data is referred to as a data link
  • the data link includes a plurality of intermediate service systems (service nodes), and each service node is used to transfer the service data.
  • the data link monitoring platform mainly checks the risk service node according to the data traffic information uploaded by each service node, and needs to manually locate the risk when necessary.
  • the specific information of the service node leads to inefficient troubleshooting and is prone to errors, which seriously affects the transmission efficiency of business data.
  • the present application provides an electronic device, a data link risk warning method, and a storage medium, which can provide an early warning of the risk of the data link, reduce the probability of occurrence of the risk, and improve the transmission efficiency of the service data.
  • the present application provides an electronic device including a memory and a processor connected to the memory, the processor for executing a data link risk warning program stored on the memory
  • the data link risk warning program is implemented by the processor to implement the following steps:
  • A1. Obtain service data information of each service node included in the predetermined data link, respectively.
  • A2 analyzing the obtained service data information according to a predetermined analysis rule to determine whether there is a preset type of risk in the data link, where the data link includes a data transmission channel between each service node and each service node,
  • the preset type risk includes the service node responding to the bottleneck risk and the data transmission channel transmission congestion risk;
  • the risk warning information is sent to the predetermined data link monitoring platform.
  • the present application provides a data link risk warning method, and the method includes the following steps:
  • S2 analyzing the obtained service data information according to a predetermined analysis rule, determining whether the data link has a preset type of risk, where the data link includes a data transmission channel between each service node and each service node, where The preset type risk includes the service node responding to the bottleneck risk and the data transmission channel transmission congestion risk;
  • the risk warning information is sent to the predetermined data link monitoring platform.
  • the present application further provides a computer readable storage medium storing a data link risk warning program, the data link risk warning program being executable by at least one processor And causing the at least one processor to perform the steps of the data link risk alerting method as described above.
  • FIG. 1 is a schematic diagram of an optional hardware architecture of an electronic device proposed by the present application.
  • FIG. 2 is a schematic diagram of a program module of a data link risk early warning program in an embodiment of an electronic device of the present application
  • FIG. 3 is a flow chart of an implementation of a preferred embodiment of the data link risk warning method of the present application.
  • the electronic device 10 may include, but is not limited to, a memory 11, a processor 12, and a network interface 13 communicably connected to each other through a communication bus 14. It should be noted that FIG. 1 only shows the electronic device 10 having the components 11-14, but it should be understood that not all illustrated components may be implemented, and more or fewer components may be implemented instead.
  • the memory 11 includes at least one type of computer readable storage medium including a flash memory, a hard disk, a multimedia card, a card type memory (for example, SD or DX memory, etc.), a random access memory (RAM), and a static memory.
  • the memory 11 may be an internal storage unit of the electronic device 10, such as a hard disk or memory of the electronic device 10.
  • the memory 11 may also be an outsourced storage device of the electronic device 10, such as a plug-in hard disk equipped on the electronic device 10, a smart memory card (SMC), and a secure digital (Secure Digital, SD) ) cards, flash cards, etc.
  • the memory 11 can also include both an internal storage unit of the electronic device 10 and an outsourced storage device thereof.
  • the memory 11 is generally used to store an operating system installed on the electronic device 10 and various types of application software, such as a data link risk warning program. Further, the memory 11 can also be used to temporarily store various types of data that have been output or are to be output.
  • Processor 12 may be a Central Processing Unit (CPU), controller, microcontroller, microprocessor, or other data processing chip in some embodiments.
  • the processor 12 is typically used to control the overall operation of the electronic device 10.
  • the processor 12 is configured to run program code or processing data stored in the memory 11, such as a running data link risk warning program.
  • the network interface 13 may include a wireless network interface or a wired network interface, which is typically used to establish a communication connection between the electronic device 10 and other electronic devices.
  • Communication bus 14 is used to implement a communication connection between components 11-13.
  • Figure 1 shows only the electronic device 10 with components 11-14 and the data link risk warning program, but it should be understood that not all illustrated components may be implemented and that more or fewer components may be implemented instead. .
  • the electronic device 10 may further include a user interface (not shown in FIG. 1), and the user interface may include a display, an input unit such as a keyboard, wherein the user interface may further include a standard wired interface, a wireless interface, and the like.
  • the display may be an LED display, a liquid crystal display, a touch-sensitive liquid crystal display, an OLED touch device, or the like. Further, the display may also be referred to as a display screen or display unit for displaying information processed in the electronic device 10 and a user interface for displaying visualizations.
  • the service data information includes first identification information of a first serving node that sends a data packet, second identification information of a second serving node that receives the data packet, and traffic occupied by the data packet;
  • the predetermined data link is assumed to be a data service node through which the mail data packet passes when the mail server and the email client perform mail delivery, and the respective services of the service nodes included in the predetermined data link are respectively acquired.
  • the step of the data information includes: monitoring the data packet of the traffic information of the data link in real time or periodically, and after detecting that the data packet with the traffic information reaches the second service node, acquiring the second identification information of the second service node and Decoding the obtained first data packet, parsing the traffic occupied by the first data packet, and transmitting the first service node of the first data packet, and acquiring first identification information of the first service node.
  • the preset type risk includes the service node responding to the bottleneck risk and the data transmission channel transmission congestion risk;
  • the risk warning information is sent to the predetermined data link monitoring platform.
  • the predetermined analysis rule may be: determining, according to the service data information, whether a sum of traffic occupied by each service node and a traffic occupied by the data packet exceeds a preset traffic threshold, and After determining that the sum of the traffic occupied by the service node exceeds the preset traffic threshold, determining that the service state of the service node is in response to the bottleneck risk state, the risk alert information is sent to the predetermined data link monitoring platform.
  • the predetermined analysis rule may be: calculating data on a data link between the first serving node and the second serving node based on the service data information.
  • the ratio of the traffic occupied by the packet (for example, the traffic is denoted as X1) relative to the preset total traffic threshold on the link (for example, the total traffic threshold is recorded as X2) (for example, the ratio is X1/X2)
  • X1 The ratio of the traffic occupied by the packet
  • X2 the traffic is denoted as X1
  • the preset total traffic threshold on the link for example, the total traffic threshold is recorded as X2
  • the ratio is X1/X2
  • the calculated ratio is greater than the preset ratio threshold, determining that the data transmission channel between the first serving node and the second serving node has a transmission congestion risk.
  • the electronic device proposed by the present application obtains the service data information of each service node included in the predetermined data link, and analyzes the acquired service data information to determine whether the data link has a preset.
  • Type of risk the data link includes a data transmission channel between each service node and each service node, and the preset type of risk includes a service node responding to a bottleneck risk and a data transmission channel transmission congestion risk; determining that a service node exists In response to the bottleneck risk, or after determining that there is a transmission congestion risk in the data transmission channel, the risk warning information is sent to the predetermined data link monitoring platform. It reduces the probability of occurrence of risks and improves the transmission efficiency of business data.
  • the data link risk warning program of the present application may be described by using a program module having the same function according to different functions implemented by each part thereof.
  • FIG. 2 is a schematic diagram of a program module of a data link risk warning program in an embodiment of the electronic device of the present application.
  • the data link risk warning program may be divided into an obtaining module 201, an analyzing module 202, and a sending module 203 according to different functions implemented by the respective parts.
  • the program module referred to in the present application refers to a series of computer program instruction segments capable of performing a specific function, and is more suitable than the program to describe the execution process of the data link risk warning program in the electronic device 10.
  • the functions or operational steps implemented by the modules 201-202 are similar to the above, and are not described in detail herein, by way of example, for example:
  • the obtaining module 201 is configured to separately obtain service data information of each service node included in the predetermined data link;
  • the analyzing module 202 is configured to analyze the obtained service data information according to the predetermined analysis rule to determine whether the data link has a preset type of risk, and the data link includes a data transmission channel between each service node and each service node.
  • the preset type risk includes a service node responding to a bottleneck risk and a data transmission channel transmission congestion risk;
  • the sending module 203 is configured to: when it is determined that the serving node has a risk of responding to the bottleneck, or after determining that there is a risk of transmission congestion in the data transmission channel, send the risk warning information to the predetermined data link monitoring platform.
  • the present application also provides a data link risk warning method.
  • the data link risk warning method includes the following steps:
  • Step S301 respectively acquiring service data information of each service node included in the predetermined data link;
  • the service data information includes first identification information of a first serving node that sends a data packet, second identification information of a second serving node that receives the data packet, and traffic occupied by the data packet;
  • the predetermined data link is assumed to be a data service node through which the mail data packet passes when the mail server and the email client perform mail delivery, and the respective services of the service nodes included in the predetermined data link are respectively acquired.
  • the step of the data information includes: monitoring the data packet of the traffic information of the data link in real time or periodically, and after detecting that the data packet with the traffic information reaches the second service node, acquiring the second identification information of the second service node and Decoding the obtained first data packet, parsing the traffic occupied by the first data packet, and transmitting the first service node of the first data packet, and acquiring first identification information of the first service node.
  • Step S302 Analyze the acquired service data information according to the predetermined analysis rule to determine whether there is a preset type of risk in the data link, where the data link includes a data transmission channel between each service node and each service node.
  • the preset type of risk includes the service node responding to the bottleneck risk and the data transmission channel transmission congestion risk;
  • Step S303 after determining that there is a service bottleneck risk in the service node, or after determining that there is a transmission congestion risk in the data transmission channel, sending the risk warning information to the predetermined data link monitoring platform.
  • the predetermined analysis rule may be: determining, according to the service data information, whether a sum of traffic occupied by each service node and a traffic occupied by the data packet exceeds a preset traffic threshold, and After determining that the sum of the traffic occupied by the service node exceeds the preset traffic threshold, determining that the service state of the service node is in response to the bottleneck risk state, the risk alert information is sent to the predetermined data link monitoring platform.
  • the predetermined analysis rule may be: determining, according to the service data information, a data packet on a data link between the first serving node and the second serving node.
  • the occupied traffic eg, the traffic is denoted as X1
  • the ratio of the total traffic threshold on the link eg, the total traffic threshold is recorded as X2
  • the ratio is X1/X2
  • the calculated ratio is greater than the preset ratio threshold, determining that the data transmission channel between the first serving node and the second serving node has a transmission congestion risk.
  • the data link risk early warning method proposed by the present application separately obtains service data information of each service node included in a predetermined data link, and analyzes the acquired service data information to determine the data link.
  • the data link includes a data transmission channel between each service node and each service node, and the preset type risk includes a service node responding to a bottleneck risk and a data transmission channel transmission congestion risk;
  • a service node has a risk of responding to bottlenecks, or sends a risk warning message to a predetermined data link monitoring platform after determining that there is a risk of transmission congestion in the data transmission channel. It reduces the probability of occurrence of risks and improves the transmission efficiency of business data.
  • the present application further provides a computer readable storage medium, where the data link risk warning program is stored, and the data link risk warning program is executed by the processor to:
  • the risk warning information is sent to the predetermined data link monitoring platform.
  • the service data information includes first identification information of a first serving node that sends a data packet, second identification information of a second serving node that receives the data packet, and traffic occupied by the data packet;
  • the predetermined data link is assumed to be a data service node through which the mail data packet passes when the mail server and the email client perform mail delivery, and the respective services of the service nodes included in the predetermined data link are respectively acquired.
  • the step of the data information includes: monitoring the data packet of the traffic information of the data link in real time or periodically, and after detecting that the data packet with the traffic information reaches the second service node, acquiring the second identification information of the second service node and Decoding the obtained first data packet, parsing the traffic occupied by the first data packet, and transmitting the first service node of the first data packet, and acquiring first identification information of the first service node.
  • the predetermined analysis rule may be: determining, according to the service data information, whether a sum of traffic occupied by each service node and a traffic occupied by the data packet exceeds a preset traffic threshold, and After determining that the sum of the traffic occupied by the service node exceeds the preset traffic threshold, determining that the service state of the service node is in response to the bottleneck risk state, the risk alert information is sent to the predetermined data link monitoring platform.
  • the predetermined analysis rule may be: determining, according to the service data information, a data packet on a data link between the first serving node and the second serving node.
  • the occupied traffic eg, the traffic is denoted as X1
  • the ratio of the total traffic threshold on the link eg, the total traffic threshold is recorded as X2
  • the ratio is X1/X2
  • the calculated ratio is greater than the preset ratio threshold, determining that the data transmission channel between the first serving node and the second serving node has a transmission congestion risk.
  • the computer readable storage medium proposed by the present application separately obtains service data information of each service node included in a predetermined data link, and analyzes the acquired service data information to determine whether the data link is There is a preset type of risk, the data link includes a data transmission channel between each service node and each service node, and the preset type risk includes a service node responding to a bottleneck risk and a data transmission channel transmission congestion risk;
  • the service node has a risk of responding to the bottleneck, or sends a risk warning message to the predetermined data link monitoring platform after determining that there is a risk of transmission congestion in the data transmission channel. It reduces the probability of occurrence of risks and improves the transmission efficiency of business data.
  • the foregoing embodiment method can be implemented by means of software plus a necessary general hardware platform, and of course, can also be through hardware, but in many cases, the former is better.
  • Implementation Based on such understanding, the technical solution of the present application, which is essential or contributes to the prior art, may be embodied in the form of a software product stored in a storage medium (such as ROM/RAM, disk,
  • the optical disc includes a number of instructions for causing a terminal device (which may be a mobile phone, a computer, a server, an air conditioner, or a network device, etc.) to perform the methods described in various embodiments of the present application.

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Abstract

一种电子装置、数据链路风险预警方法及存储介质,通过分别获取预先确定的数据链路包含的各个服务节点的业务数据信息(S301),根据预先确定的分析规则分析获取的业务数据信息,确定所述数据链路是否存在预设类型风险(S302),所述数据链路包括各个服务节点及各个服务节点之间的数据传输通道,所述预设类型风险包括服务节点响应瓶颈风险及数据传输通道传输拥塞风险;在判断出有服务节点存在响应瓶颈风险,或者在判断出有数据传输通道存在传输拥塞风险后,向预先确定的数据链路监控平台发送风险预警信息(S303)。所述方法降低了风险发生的概率,提高业务数据的传输效率。

Description

电子装置、数据链路风险预警方法及存储介质
本申请要求于2018年4月2日提交中国专利局,申请号为201810283896.7、发明名称为“电子装置、数据链路风险预警方法及存储介质”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
本申请涉及网络服务管理领域,尤其涉及一种电子装置、数据链路风险预警方法及存储介质。
背景技术
通常,将企业服务平台与客户终端进行业务数据传输时业务数据经过的传输路径称为数据链路,数据链路包括多个中间服务系统(服务节点),各个服务节点用来中转业务数据。目前,在业务数据传输过程中,如果遇到数据链路出现故障,则数据链路监测平台主要根据各个服务节点上传的数据流量信息来排查风险服务节点,在必要的时候需要借助人工来定位风险服务节点的具体信息,导致风险排查效率低下,且容易出错,严重影响业务数据的传输效率。
发明内容
有鉴于此,本申请提出一种电子装置、数据链路风险预警方法及存储介质,能够对数据链路存在的风险进行预警,降低了风险发生的概率,提高业务数据的传输效率。
首先,为实现上述目的,本申请提出一种电子装置,所述电子装置包括存储器、及与所述存储器连接的处理器,所述处理器用于执行所述存储器上存储的数据链路风险预警程序,所述数据链路风险预警程序被所述处理器执 行时实现如下步骤:
A1、分别获取预先确定的数据链路包含的各个服务节点的业务数据信息;
A2、根据预先确定的分析规则分析获取的业务数据信息,确定所述数据链路是否存在预设类型风险,所述数据链路包括各个服务节点及各个服务节点之间的数据传输通道,所述预设类型风险包括服务节点响应瓶颈风险、及数据传输通道传输拥塞风险;
A3、在判断出有服务节点存在响应瓶颈风险,或者在判断出有数据传输通道存在传输拥塞风险后,向预先确定的数据链路监控平台发送风险预警信息。
此外,为实现上述目的,本申请提出一种数据链路风险预警方法,所述方法包括如下步骤:
S1、分别获取预先确定的数据链路包含的各个服务节点的业务数据信息;
S2、根据预先确定的分析规则分析获取的业务数据信息,确定所述数据链路是否存在预设类型风险,所述数据链路包括各个服务节点及各个服务节点之间的数据传输通道,所述预设类型风险包括服务节点响应瓶颈风险及数据传输通道传输拥塞风险;
S3、在判断出有服务节点存在响应瓶颈风险,或者在判断出有数据传输通道存在传输拥塞风险后,向预先确定的数据链路监控平台发送风险预警信息。
此外,为实现上述目的,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数据链路风险预警程序,所述数据链路风险预警程序可被至少一个处理器执行,以使所述至少一个处理器执行如上述的数据链路风险预警方法的步骤。
附图说明
图1是本申请提出的电子装置一可选的硬件架构的示意图;
图2是本申请电子装置一实施例中数据链路风险预警程序的程序模块示意图;
图3是本申请数据链路风险预警方法较佳实施例的实施流程图。
本申请目的的实现、功能特点及优点将结合实施例,参照附图做进一步说明。
具体实施方式
为了使本申请的目的、技术方案及优点更加清楚明白,以下结合附图及实施例,对本申请进行进一步详细说明。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。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。
需要说明的是,在本申请中涉及“第一”、“第二”等的描述仅用于描述目的,而不能理解为指示或暗示其相对重要性或者隐含指明所指示的技术特征的数量。由此,限定有“第一”、“第二”的特征可以明示或者隐含地包括至少一个该特征。另外,各个实施例之间的技术方案可以相互结合,但是必须是以本领域普通技术人员能够实现为基础,当技术方案的结合出现相互矛盾或无法实现时应当认为这种技术方案的结合不存在,也不在本申请要求的保护范围之内。
参阅图1所示,是本申请提出的电子装置一可选的硬件架构示意图。本实施例中,电子装置10可包括,但不仅限于,可通过通信总线14相互通信连接的存储器11、处理器12、网络接口13。需要指出的是,图1仅示出了具有组件11-14的电子装置10,但是应理解的是,并不要求实施所有示出的组件,可以替代的实施更多或者更少的组件。
其中,存储器11至少包括一种类型的计算机可读存储介质,计算机可读存储介质包括闪存、硬盘、多媒体卡、卡型存储器(例如,SD或DX存储器 等)、随机访问存储器(RAM)、静态随机访问存储器(SRAM)、只读存储器(ROM)、电可擦除可编程只读存储器(EEPROM)、可编程只读存储器(PROM)、磁性存储器、磁盘、光盘等。在一些实施例中,存储器11可以是电子装置10的内部存储单元,例如电子装置10的硬盘或内存。在另一些实施例中,存储器11也可以是电子装置10的外包存储设备,例如电子装置10上配备的插接式硬盘,智能存储卡(Smart Media Card,SMC),安全数字(Secure Digital,SD)卡,闪存卡(Flash Card)等。当然,存储器11还可以既包括电子装置10的内部存储单元也包括其外包存储设备。本实施例中,存储器11通常用于存储安装于电子装置10的操作系统和各类应用软件,例如数据链路风险预警程序等。此外,存储器11还可以用于暂时地存储已经输出或者将要输出的各类数据。
处理器12在一些实施例中可以是中央处理器(Central Processing Unit,CPU)、控制器、微控制器、微处理器、或其他数据处理芯片。处理器12通常用于控制电子装置10的总体操作。本实施例中,处理器12用于运行存储器11中存储的程序代码或者处理数据,例如运行的数据链路风险预警程序等。
网络接口13可包括无线网络接口或有线网络接口,网络接口13通常用于在电子装置10与其他电子设备之间建立通信连接。
通信总线14用于实现组件11-13之间的通信连接。
图1仅示出了具有组件11-14以及数据链路风险预警程序的电子装置10,但是应理解的是,并不要求实施所有示出的组件,可以替代的实施更多或者更少的组件。
可选地,电子装置10还可以包括用户接口(图1中未示出),用户接口可以包括显示器、输入单元比如键盘,其中,用户接口还可以包括标准的有线接口、无线接口等。
可选地,在一些实施例中,显示器可以是LED显示器、液晶显示器、触控式液晶显示器以及OLED触摸器等。进一步地,显示器也可称为显示屏或 显示单元,用于显示在电子装置10中处理信息以及用于显示可视化的用户界面。
在一实施例中,存储器11中存储的数据链路风险预警程序被处理器12执行时,实现如下操作:
A.分别获取预先确定的数据链路包含的各个服务节点的业务数据信息;
在本实施例中,所述业务数据信息包括发送数据包的第一服务节点的第一标识信息、接收数据包的第二服务节点的第二标识信息、及所述数据包占用的流量;
所述预先确定的数据链路假设为邮件服务器与电子邮件客户端之间进行邮件传递时邮件数据包经过的各个数据服务节点,所述分别获取预先确定的数据链路包含的各个服务节点的业务数据信息的步骤包括:实时或定时监测所述数据链路的流量信息的数据包,在监测到有流量信息的数据包到达第二服务节点后,获取该第二服务节点的第二标识信息及该第一数据包;解析获取的第一数据包,解析出该第一数据包占用的流量及发送该第一数据包的第一服务节点,并获取该第一服务节点的第一标识信息。
B.根据预先确定的分析规则分析获取的业务数据信息,确定所述数据链路是否存在预设类型风险,所述数据链路包括各个服务节点及各个服务节点之间的数据传输通道,所述预设类型风险包括服务节点响应瓶颈风险及数据传输通道传输拥塞风险;
C、在判断出有服务节点存在响应瓶颈风险,或者在判断出有数据传输通道存在传输拥塞风险后,向预先确定的数据链路监控平台发送风险预警信息。
在本实施例中,所述预先确定的分析规则可以是,基于所述业务数据信息判断各个服务节点发送数据包占用的流量和接收数据包占用的流量之和是否超过预先设置的流量阈值,并且在判断出有服务节点占用的流量之和超过预先设置的流量阈值后,确定该服务节点的服务状态为响应瓶颈风险状态,向预先确定的数据链路监控平台发送风险预警信息。
在本申请的另一实施例中,所述预先确定的分析规则可以是,基于所述业务数据信息计算出所述第一服务节点与所述第二服务节点之间的数据链路上的数据包占用的流量(例如,该流量记为X1),相对于预先设置的该链路上的总流量阈值(例如,该总流量阈值记为X2)的比值(例如,所述比值为X1/X2),并分析计算出的比值是否超过预设比值阈值;
若计算出的比值大于预设比值阈值,则确定所述第一服务节点与所述第二服务节点之间的数据传输通道存在传输拥塞风险。
由上述事实施例可知,本申请提出的电子装置通过分别获取预先确定的数据链路包含的各个服务节点的业务数据信息,并分析获取的业务数据信息,确定所述数据链路是否存在预设类型风险,所述数据链路包括各个服务节点及各个服务节点之间的数据传输通道,所述预设类型风险包括服务节点响应瓶颈风险及数据传输通道传输拥塞风险;在判断出有服务节点存在响应瓶颈风险,或者在判断出有数据传输通道存在传输拥塞风险后,向预先确定的数据链路监控平台发送风险预警信息。降低了风险发生的概率,提高业务数据的传输效率。
进一步需要说明的是,本申请的数据链路风险预警程序依据其各部分所实现的功能不同,可用具有相同功能的程序模块进行描述。请参阅图2所示,是本申请电子装置一实施例中数据链路风险预警程序的程序模块示意图。本实施例中,数据链路风险预警程序依据其各部分所实现的功能的不同,可以被分割成获取模块201、分析模块202、发送模块203。由上面的描述可知,本申请所称的程序模块是指能够完成特定功能的一系列计算机程序指令段,比程序更适合于描述数据链路风险预警程序在电子装置10中的执行过程。所述模块201-202所实现的功能或操作步骤均与上文类似,此处不再详述,示例性地,例如其中:
获取模块201用于分别获取预先确定的数据链路包含的各个服务节点的业务数据信息;
分析模块202用于根据预先确定的分析规则分析获取的业务数据信息,确定所述数据链路是否存在预设类型风险,所述数据链路包括各个服务节点及各个服务节点之间的数据传输通道,所述预设类型风险包括服务节点响应瓶颈风险及数据传输通道传输拥塞风险;
发送模块203用于在判断出有服务节点存在响应瓶颈风险,或者在判断出有数据传输通道存在传输拥塞风险后,向预先确定的数据链路监控平台发送风险预警信息。
此外,本申请还提出一种数据链路风险预警方法,请参阅图3所示,所述数据链路风险预警方法包括如下步骤:
步骤S301,分别获取预先确定的数据链路包含的各个服务节点的业务数据信息;
在本实施例中,所述业务数据信息包括发送数据包的第一服务节点的第一标识信息、接收数据包的第二服务节点的第二标识信息、及所述数据包占用的流量;
所述预先确定的数据链路假设为邮件服务器与电子邮件客户端之间进行邮件传递时邮件数据包经过的各个数据服务节点,所述分别获取预先确定的数据链路包含的各个服务节点的业务数据信息的步骤包括:实时或定时监测所述数据链路的流量信息的数据包,在监测到有流量信息的数据包到达第二服务节点后,获取该第二服务节点的第二标识信息及该第一数据包;解析获取的第一数据包,解析出该第一数据包占用的流量及发送该第一数据包的第一服务节点,并获取该第一服务节点的第一标识信息。
步骤S302,根据预先确定的分析规则分析获取的业务数据信息,确定所述数据链路是否存在预设类型风险,所述数据链路包括各个服务节点及各个服务节点之间的数据传输通道,所述预设类型风险包括服务节点响应瓶颈风险及数据传输通道传输拥塞风险;
步骤S303,在判断出有服务节点存在响应瓶颈风险,或者在判断出有数 据传输通道存在传输拥塞风险后,向预先确定的数据链路监控平台发送风险预警信息。
在本实施例中,所述预先确定的分析规则可以是,基于所述业务数据信息判断各个服务节点发送数据包占用的流量和接收数据包占用的流量之和是否超过预先设置的流量阈值,并且在判断出有服务节点占用的流量之和超过预先设置的流量阈值后,确定该服务节点的服务状态为响应瓶颈风险状态,向预先确定的数据链路监控平台发送风险预警信息。
在本申请的另一实施例中,所述预先确定的分析规则可以是,基于所述业务数据信息判断所述第一服务节点与所述第二服务节点之间的数据链路上的数据包占用的流量(例如,该流量记为X1),相对于预先设置的该链路上的总流量阈值(例如,该总流量阈值记为X2)的比值(例如,所述比值为X1/X2),并分析计算出的比值是否超过预设比值阈值;
若计算出的比值大于预设比值阈值,则确定所述第一服务节点与所述第二服务节点之间的数据传输通道存在传输拥塞风险。
由上述事实施例可知,本申请提出的数据链路风险预警方法通过分别获取预先确定的数据链路包含的各个服务节点的业务数据信息,并分析获取的业务数据信息,确定所述数据链路是否存在预设类型风险,所述数据链路包括各个服务节点及各个服务节点之间的数据传输通道,所述预设类型风险包括服务节点响应瓶颈风险及数据传输通道传输拥塞风险;在判断出有服务节点存在响应瓶颈风险,或者在判断出有数据传输通道存在传输拥塞风险后,向预先确定的数据链路监控平台发送风险预警信息。降低了风险发生的概率,提高业务数据的传输效率。
此外,本申请还提出一种计算机可读存储介质,所述计算机可读存储介质上存储有数据链路风险预警程序,所述数据链路风险预警程序被处理器执行时实现如下操作:
分别获取预先确定的数据链路包含的各个服务节点的业务数据信息;
根据预先确定的分析规则分析获取的业务数据信息,确定所述数据链路是否存在预设类型风险,所述数据链路包括各个服务节点及各个服务节点之间的数据传输通道,所述预设类型风险包括服务节点响应瓶颈风险及数据传输通道传输拥塞风险;
在判断出有服务节点存在响应瓶颈风险,或者在判断出有数据传输通道存在传输拥塞风险后,向预先确定的数据链路监控平台发送风险预警信息。
在本实施例中,所述业务数据信息包括发送数据包的第一服务节点的第一标识信息、接收数据包的第二服务节点的第二标识信息、及所述数据包占用的流量;
所述预先确定的数据链路假设为邮件服务器与电子邮件客户端之间进行邮件传递时邮件数据包经过的各个数据服务节点,所述分别获取预先确定的数据链路包含的各个服务节点的业务数据信息的步骤包括:实时或定时监测所述数据链路的流量信息的数据包,在监测到有流量信息的数据包到达第二服务节点后,获取该第二服务节点的第二标识信息及该第一数据包;解析获取的第一数据包,解析出该第一数据包占用的流量及发送该第一数据包的第一服务节点,并获取该第一服务节点的第一标识信息。
在本实施例中,所述预先确定的分析规则可以是,基于所述业务数据信息判断各个服务节点发送数据包占用的流量和接收数据包占用的流量之和是否超过预先设置的流量阈值,并且在判断出有服务节点占用的流量之和超过预先设置的流量阈值后,确定该服务节点的服务状态为响应瓶颈风险状态,向预先确定的数据链路监控平台发送风险预警信息。
在本申请的另一实施例中,所述预先确定的分析规则可以是,基于所述业务数据信息判断所述第一服务节点与所述第二服务节点之间的数据链路上的数据包占用的流量(例如,该流量记为X1),相对于预先设置的该链路上的总流量阈值(例如,该总流量阈值记为X2)的比值(例如,所述比值为X1/X2),并分析计算出的比值是否超过预设比值阈值;
若计算出的比值大于预设比值阈值,则确定所述第一服务节点与所述第二服务节点之间的数据传输通道存在传输拥塞风险。
由上述事实施例可知,本申请提出的计算机可读存储介质通过分别获取预先确定的数据链路包含的各个服务节点的业务数据信息,并分析获取的业务数据信息,确定所述数据链路是否存在预设类型风险,所述数据链路包括各个服务节点及各个服务节点之间的数据传输通道,所述预设类型风险包括服务节点响应瓶颈风险及数据传输通道传输拥塞风险;在判断出有服务节点存在响应瓶颈风险,或者在判断出有数据传输通道存在传输拥塞风险后,向预先确定的数据链路监控平台发送风险预警信息。降低了风险发生的概率,提高业务数据的传输效率。
上述本申请实施例序号仅仅为了描述,不代表实施例的优劣。
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存储介质(如ROM/RAM、磁碟、光盘)中,包括若干指令用以使得一台终端设备(可以是手机,计算机,服务器,空调器,或者网络设备等)执行本申请各个实施例所述的方法。
以上仅为本申请的优选实施例,并非因此限制本申请的专利范围,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,均同理包括在本申请的专利保护范围内。

Claims (20)

  1. 一种电子装置,其特征在于,所述电子装置包括存储器、及与所述存储器连接的处理器,所述处理器用于执行所述存储器上存储的数据链路风险预警程序,所述数据链路风险预警程序被所述处理器执行时实现如下步骤:
    A1、分别获取预先确定的数据链路包含的各个服务节点的业务数据信息;
    A2、根据预先确定的分析规则分析获取的业务数据信息,确定所述数据链路是否存在预设类型风险,所述数据链路包括各个服务节点及各个服务节点之间的数据传输通道,所述预设类型风险包括服务节点响应瓶颈风险、及数据传输通道传输拥塞风险;
    A3、在判断出有服务节点存在响应瓶颈风险,或者在判断出有数据传输通道存在传输拥塞风险后,向预先确定的数据链路监控平台发送风险预警信息。
  2. 如权利要求1所述的电子装置,其特征在于,所述业务数据信息包括发送数据包的第一服务节点的第一标识信息、接收数据包的第二服务节点的第二标识信息、及所述数据包占用的流量。
  3. 如权利要求2所述的电子装置,其特征在于,所述步骤A1包括:
    实时或定时监测所述数据链路的流量信息的数据包;
    在监测到有流量信息的数据包到达第二服务节点后,获取该第二服务节点的第二标识信息及该数据包;
    解析获取的数据包,解析出该数据包占用的流量及发送该第一数据包的第一服务节点,并获取该第一服务节点的第一标识信息。
  4. 如权利要求2所述的电子装置,其特征在于,所述预先确定的分析规则包括:
    基于所述业务数据信息分别判断各个服务节点发送数据包占用的流量和接收数据包占用的流量之和是否超过预先设置的流量阈值;
    在判断出有服务节点占用的流量之和超过预先设置的流量阈值后,确定 该服务节点存在响应瓶颈风险。
  5. 如权利要求3所述的电子装置,其特征在于,所述预先确定的分析规则包括:
    基于所述业务数据信息分别判断各个服务节点发送数据包占用的流量和接收数据包占用的流量之和是否超过预先设置的流量阈值;
    在判断出有服务节点占用的流量之和超过预先设置的流量阈值后,确定该服务节点存在响应瓶颈风险。
  6. 如权利要求2所述的电子装置,其特征在于,所述预先确定的分析规则包括:
    基于所述业务数据信息计算出所述第一服务节点与所述第二服务节点之间的数据传输通道上的数据包占用的流量,相对于预先设置的该链路上的总流量阈值的比值,并分析计算出的比值是否超过预设比值阈值;
    若计算出的比值大于预设比值阈值,则确定所述第一服务节点与所述第二服务节点之间的数据传输通道存在传输拥塞风险。
  7. 如权利要求3所述的电子装置,其特征在于,所述预先确定的分析规则包括:
    基于所述业务数据信息计算出所述第一服务节点与所述第二服务节点之间的数据传输通道上的数据包占用的流量,相对于预先设置的该链路上的总流量阈值的比值,并分析计算出的比值是否超过预设比值阈值;
    若计算出的比值大于预设比值阈值,则确定所述第一服务节点与所述第二服务节点之间的数据传输通道存在传输拥塞风险。
  8. 一种数据链路风险预警方法,其特征在于,所述方法包括如下步骤:
    S1、分别获取预先确定的数据链路包含的各个服务节点的业务数据信息;
    S2、根据预先确定的分析规则分析获取的业务数据信息,确定所述数据链路是否存在预设类型风险,所述数据链路包括各个服务节点及各个服务节点之间的数据传输通道,所述预设类型风险包括服务节点响应瓶颈风险及数 据传输通道传输拥塞风险;
    S3、在判断出有服务节点存在响应瓶颈风险,或者在判断出有数据传输通道存在传输拥塞风险后,向预先确定的数据链路监控平台发送风险预警信息。
  9. 如权利要求8所述的数据链路风险预警方法,其特征在于,所述业务数据信息包括发送数据包的第一服务节点的第一标识信息、接收数据包的第二服务节点的第二标识信息、及所述数据包占用的流量。
  10. 如权利要求9所述的数据链路风险预警方法,其特征在于,所述步骤S1包括:
    实时或定时监测所述数据链路的流量信息的数据包;
    在监测到有流量信息的数据包到达第二服务节点后,获取该第二服务节点的第二标识信息及该数据包;
    解析获取的数据包,解析出该数据包占用的流量及发送该第一数据包的第一服务节点,并获取该第一服务节点的第一标识信息。
  11. 如权利要求9所述的数据链路风险预警方法,其特征在于,所述预先确定的分析规则包括:
    基于所述业务数据信息分别判断各个服务节点发送数据包占用的流量和接收数据包占用的流量之和是否超过预先设置的流量阈值;
    在判断出有服务节点占用的流量之和超过预先设置的流量阈值后,确定该服务节点存在响应瓶颈风险。
  12. 如权利要求10所述的数据链路风险预警方法,其特征在于,所述预先确定的分析规则包括:
    基于所述业务数据信息分别判断各个服务节点发送数据包占用的流量和接收数据包占用的流量之和是否超过预先设置的流量阈值;
    在判断出有服务节点占用的流量之和超过预先设置的流量阈值后,确定该服务节点存在响应瓶颈风险。
  13. 如权利要求9所述的数据链路风险预警方法,其特征在于,所述预先确定的分析规则包括:
    基于所述业务数据信息计算出所述第一服务节点与所述第二服务节点之间的数据传输通道上的数据包占用的流量,相对于预先设置的该链路上的总流量阈值的比值,并分析计算出的比值是否超过预设的比值阈值;
    若计算出的比值大于预设的比值阈值,则确定所述第一服务节点与所述第二服务节点之间的数据传输通道存在传输拥塞风险。
  14. 如权利要求10所述的数据链路风险预警方法,其特征在于,所述预先确定的分析规则包括:
    基于所述业务数据信息计算出所述第一服务节点与所述第二服务节点之间的数据传输通道上的数据包占用的流量,相对于预先设置的该链路上的总流量阈值的比值,并分析计算出的比值是否超过预设的比值阈值;
    若计算出的比值大于预设的比值阈值,则确定所述第一服务节点与所述第二服务节点之间的数据传输通道存在传输拥塞风险。
  15. 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数据链路风险预警程序,所述数据链路风险预警程序可被至少一个处理器执行,以使所述至少一个处理器执行如下步骤:
    S1、分别获取预先确定的数据链路包含的各个服务节点的业务数据信息;
    S2、根据预先确定的分析规则分析获取的业务数据信息,确定所述数据链路是否存在预设类型风险,所述数据链路包括各个服务节点及各个服务节点之间的数据传输通道,所述预设类型风险包括服务节点响应瓶颈风险及数据传输通道传输拥塞风险;
    S3、在判断出有服务节点存在响应瓶颈风险,或者在判断出有数据传输通道存在传输拥塞风险后,向预先确定的数据链路监控平台发送风险预警信息。
  16. 如权利要求15所述的计算机可读存储介质,其特征在于,所述业务 数据信息包括发送数据包的第一服务节点的第一标识信息、接收数据包的第二服务节点的第二标识信息、及所述数据包占用的流量。
  17. 如权利要求16所述的计算机可读存储介质,其特征在于,所述步骤S1包括:
    实时或定时监测所述数据链路的流量信息的数据包;
    在监测到有流量信息的数据包到达第二服务节点后,获取该第二服务节点的第二标识信息及该数据包;
    解析获取的数据包,解析出该数据包占用的流量及发送该第一数据包的第一服务节点,并获取该第一服务节点的第一标识信息。
  18. 如权利要求16所述的计算机可读存储介质,其特征在于,所述预先确定的分析规则包括:
    基于所述业务数据信息分别判断各个服务节点发送数据包占用的流量和接收数据包占用的流量之和是否超过预先设置的流量阈值;
    在判断出有服务节点占用的流量之和超过预先设置的流量阈值后,确定该服务节点存在响应瓶颈风险。
  19. 如权利要求17所述的计算机可读存储介质,其特征在于,所述预先确定的分析规则包括:
    基于所述业务数据信息分别判断各个服务节点发送数据包占用的流量和接收数据包占用的流量之和是否超过预先设置的流量阈值;
    在判断出有服务节点占用的流量之和超过预先设置的流量阈值后,确定该服务节点存在响应瓶颈风险。
  20. 如权利要求16或17所述的计算机可读存储介质,其特征在于,所述预先确定的分析规则包括:
    基于所述业务数据信息计算出所述第一服务节点与所述第二服务节点之间的数据传输通道上的数据包占用的流量,相对于预先设置的该链路上的总流量阈值的比值,并分析计算出的比值是否超过预设的比值阈值;
    若计算出的比值大于预设的比值阈值,则确定所述第一服务节点与所述第二服务节点之间的数据传输通道存在传输拥塞风险。
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