IP | Country | PORT | ADDED |
---|---|---|---|
41.230.216.70 | tn | 80 | 36 minutes ago |
50.168.72.114 | us | 80 | 36 minutes ago |
50.207.199.84 | us | 80 | 36 minutes ago |
50.172.75.123 | us | 80 | 36 minutes ago |
50.168.72.122 | us | 80 | 36 minutes ago |
194.219.134.234 | gr | 80 | 36 minutes ago |
50.172.75.126 | us | 80 | 36 minutes ago |
50.223.246.238 | us | 80 | 37 minutes ago |
178.177.54.157 | ru | 8080 | 37 minutes ago |
190.58.248.86 | tt | 80 | 37 minutes ago |
185.132.242.212 | ru | 8083 | 37 minutes ago |
62.99.138.162 | at | 80 | 37 minutes ago |
50.145.138.156 | us | 80 | 37 minutes ago |
202.85.222.115 | cn | 18081 | 37 minutes ago |
120.132.52.172 | cn | 8888 | 37 minutes ago |
47.243.114.192 | hk | 8180 | 37 minutes ago |
218.252.231.17 | hk | 80 | 37 minutes ago |
50.175.123.233 | us | 80 | 37 minutes ago |
50.175.123.238 | us | 80 | 37 minutes ago |
50.171.122.27 | us | 80 | 37 minutes ago |
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If Selenium in Python is not able to find the ChromeDriver executable on Linux, there are several common reasons and solutions. Here's a step-by-step guide to troubleshoot and resolve the issue
1. Check ChromeDriver Installation
Ensure that ChromeDriver is installed on your Linux machine. You can download the latest version from the ChromeDriver Downloads page.
2. Specify ChromeDriver Path in Your Script
Explicitly specify the path to ChromeDriver in your Python script using the executable_path argument when initializing the webdriver.Chrome() instance.
from selenium import webdriver
chrome_path = "/path/to/chromedriver" # Replace with the actual path
driver = webdriver.Chrome(executable_path=chrome_path)
# Your Selenium script...
driver.quit()
3. Add ChromeDriver to System PATH
Add the directory containing ChromeDriver to your system's PATH environment variable. This allows Selenium to automatically locate the ChromeDriver executable.
export PATH=$PATH:/path/to/directory/containing/chromedriver
Alternatively, you can add this line to your shell configuration file (e.g., ~/.bashrc or ~/.bash_profile) to make the change permanent.
4. Check File Permissions
Ensure that the ChromeDriver executable has the necessary execute permissions. You can use the chmod command to add execute permissions if needed.
chmod +x /path/to/chromedriver
5. Use a Virtual Environment
If you are using a virtual environment, ensure that ChromeDriver is installed within the virtual environment. Activate the virtual environment before running your script.
6. Update Selenium and ChromeDriver
Make sure you are using the latest versions of both Selenium and ChromeDriver. Outdated versions may not be compatible with each other.
pip install --upgrade selenium
Download the latest ChromeDriver version from the ChromeDriver Downloads page.
7. Check Chrome Browser Version
Ensure that the version of ChromeDriver you are using is compatible with the version of the Chrome browser installed on your machine. ChromeDriver versions and Chrome browser versions should be in sync.
8. Run in Headless Mode
If you are running your script in headless mode, ensure that your machine has the necessary dependencies for headless browsing.
from selenium import webdriver
chrome_path = "/path/to/chromedriver" # Replace with the actual path
options = webdriver.ChromeOptions()
options.add_argument('--headless')
driver = webdriver.Chrome(executable_path=chrome_path, options=options)
# Your Selenium script...
driver.quit()
9. Check for Typos
Double-check for any typos or syntax errors in the path to ChromeDriver. Ensure that the path is correct and matches the actual location of the executable.
By addressing these points, you should be able to resolve the issue of Selenium not finding ChromeDriver on Linux. If the problem persists, providing additional details about error messages or behavior would be helpful for further assistance.
UDP Hole Punching is a technique used to establish a connection between two devices behind NAT (Network Address Translation) firewalls. It works by exploiting the fact that some UDP packets can still pass through the NAT firewall even if the source and destination ports are the same. However, UDP Hole Punching does not always bypass NAT for several reasons:
1. Symmetric NAT: In symmetric NAT, both the source and destination ports are translated, and the NAT firewall maintains a table of active connections. If the table is not updated correctly, UDP hole punching may not work.
2. Unstable NAT: Some NAT firewalls are known to be unstable, causing them to drop packets or change their behavior unexpectedly. This can lead to failure in establishing a connection using UDP hole punching.
3. Firewall rules: Some NAT firewalls have strict rules that prevent UDP hole punching from working. For example, if the firewall is configured to block all incoming UDP traffic, UDP hole punching will not be successful.
4. Timeout: NAT firewalls have a timeout for their connection tables. If the timeout occurs before the connection is established, UDP hole punching will fail.
5. Network congestion: If the network is congested, packets may be dropped or delayed, causing UDP hole punching to fail.
In summary, while UDP hole punching can be an effective technique for bypassing NAT, it does not always guarantee a successful connection due to various factors such as NAT behavior, firewall rules, and network conditions.
To set up a proxy in Datacol Parser, follow these steps:
1. Open Datacol Parser and go to the "Settings" menu.
2. Select "Network settings" or "Proxy settings" depending on the version you are using.
3. Click on the "Add" button to create a new proxy profile.
4. Enter the proxy server address, port, and select the protocol (HTTP or HTTPS) from the drop-down menu.
5. If your proxy requires authentication, enter the username and password in the respective fields.
6. Click "Save" to add the proxy profile.
7. To use the proxy, select it from the list of available proxies in the "Proxies" section of your task settings.
Remember to use reliable and trustworthy proxy servers to ensure the security and stability of your tasks in Datacol Parser.
A VPN server address is an IP address or domain name through which you access the Internet. All traffic will be redirected through it. And the address is specified by the user, you can get it directly from the VPN-service, which provides such a service.
The easiest way is to try to open any site or application that requires an Internet connection. If the data download goes well, then the VPN is working properly. If there is a "No connection" error, then the VPN is not working properly for some reason.
What else…