Nagios is an open source free network monitoring tool that can effectively monitor the host status of Windows, Linux and Unix, network settings such as switches and routers, printers, etc. When the system or service status is abnormal, an email or SMS alarm will be sent to notify the website operation and maintenance personnel immediately, and a normal email or SMS notification will be sent out after the status is restored.
Nagios calls the API interface of the WeChat public platform to send alarm emails. Before the official operation, there are several preparations to be done. First install nagios, you can use the nagios one-click installation script I provided. Then I went to the WeChat public platform to apply for an enterprise account. When I applied, I filled in the name of organization. It can be used without certification. Finally, log in to the public platform to add an address book, and create a new application (such as nagios). Record the application ID for later use. User permissions are set by yourself.
WeChat script
After nagios and WeChat platform are ready, download the WeChat command script. Right-click Download and save. Then upload it to the nagios server, such as the /usr/local/nagios/python/weixin directory, and set the file permissions to executable. Create a new config.py file in the /usr/local/nagios/python/weixin directory and add the following configuration.
#coding:utf-8 CorpID='xxxxx' Secret='xxxxxxxxxxxxxxxxx' DEBUG=0 ToUser='sijitao.net' AgentId=1
CorpID and Secret can be obtained by logging into the WeChat public platform and opening the added application (such as nagios).
The parameters passed by the WeChat script command are separated by the "-@@-" symbol. For detailed instructions, please refer to my github address: https://github.com/zhangnq/nagios/tree/master/weixin
Nagios configuration
The following is the general configuration on nagios.
Add the weixin command to the commands.cfg command file:
define command{ command_name notify-host-by-weixin command_line /usr/local/nagios/python/weixin/NotifyByWeixin.py "host-@@-$NOTIFICATIONTYPE$-@@-$HOSTNAME$-@@-$HOSTSTATE$-@@-$HOSTADDRESS$-@@-$HOSTOUTPUT$-@@-$CONTACTALIAS$" } define command{ command_name notify-service-by-weixin command_line /usr/local/nagios/python/weixin/NotifyByWeixin.py "service-@@-$NOTIFICATIONTYPE$-@@-$SERVICEDESC$-@@-$HOSTALIAS$-@@-$HOSTADDRESS$-@@-$SERVICESTATE$-@@-$SERVICEOUTPUT$-@@-$CONTACTALIAS$" }
Add the contact template to the templates.cfg template file:
define contact{ name weixin-contact service_notification_period 24x7 host_notification_period 24x7 service_notification_options w,u,c,r,f,s host_notification_options d,u,r,f,s service_notification_commands notify-service-by-weixin host_notification_commands notify-host-by-weixin register 0 }
contacts.cfg Add a WeChat notification contact to the contacts. The alias name here must be the same as the name account in the WeChat public platform address book before it can be sent successfully.
define contact{ contact_name zhangnq-weixin use weixin-contact alias zhangnq email admin@sijitao.net }
Finally, after adding the contact zhangnq-weixin when configuring the service, you can send alarm emails through WeChat.
This is all about the Python function that the editor shared with you about using Nagios to add WeChat alarm notifications. I hope it will be helpful to you.
For more Python using Nagios to add the function of WeChat alarm notification, please pay attention to the PHP Chinese website!

Python and C each have their own advantages, and the choice should be based on project requirements. 1) Python is suitable for rapid development and data processing due to its concise syntax and dynamic typing. 2)C is suitable for high performance and system programming due to its static typing and manual memory management.

Choosing Python or C depends on project requirements: 1) If you need rapid development, data processing and prototype design, choose Python; 2) If you need high performance, low latency and close hardware control, choose C.

By investing 2 hours of Python learning every day, you can effectively improve your programming skills. 1. Learn new knowledge: read documents or watch tutorials. 2. Practice: Write code and complete exercises. 3. Review: Consolidate the content you have learned. 4. Project practice: Apply what you have learned in actual projects. Such a structured learning plan can help you systematically master Python and achieve career goals.

Methods to learn Python efficiently within two hours include: 1. Review the basic knowledge and ensure that you are familiar with Python installation and basic syntax; 2. Understand the core concepts of Python, such as variables, lists, functions, etc.; 3. Master basic and advanced usage by using examples; 4. Learn common errors and debugging techniques; 5. Apply performance optimization and best practices, such as using list comprehensions and following the PEP8 style guide.

Python is suitable for beginners and data science, and C is suitable for system programming and game development. 1. Python is simple and easy to use, suitable for data science and web development. 2.C provides high performance and control, suitable for game development and system programming. The choice should be based on project needs and personal interests.

Python is more suitable for data science and rapid development, while C is more suitable for high performance and system programming. 1. Python syntax is concise and easy to learn, suitable for data processing and scientific computing. 2.C has complex syntax but excellent performance and is often used in game development and system programming.

It is feasible to invest two hours a day to learn Python. 1. Learn new knowledge: Learn new concepts in one hour, such as lists and dictionaries. 2. Practice and exercises: Use one hour to perform programming exercises, such as writing small programs. Through reasonable planning and perseverance, you can master the core concepts of Python in a short time.

Python is easier to learn and use, while C is more powerful but complex. 1. Python syntax is concise and suitable for beginners. Dynamic typing and automatic memory management make it easy to use, but may cause runtime errors. 2.C provides low-level control and advanced features, suitable for high-performance applications, but has a high learning threshold and requires manual memory and type safety management.


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