IP | Country | PORT | ADDED |
---|---|---|---|
82.119.96.254 | sk | 80 | 3 minutes ago |
178.220.148.82 | rs | 10801 | 3 minutes ago |
50.221.74.130 | us | 80 | 3 minutes ago |
50.171.122.28 | us | 80 | 3 minutes ago |
50.217.226.47 | us | 80 | 3 minutes ago |
79.101.45.94 | rs | 56921 | 3 minutes ago |
212.31.100.138 | cy | 4153 | 3 minutes ago |
211.75.95.66 | tw | 80 | 3 minutes ago |
39.175.85.98 | cn | 30001 | 3 minutes ago |
194.219.134.234 | gr | 80 | 3 minutes ago |
72.10.164.178 | ca | 32263 | 3 minutes ago |
41.230.216.70 | tn | 80 | 3 minutes ago |
50.221.230.186 | us | 80 | 3 minutes ago |
83.1.176.118 | pl | 80 | 3 minutes ago |
176.241.82.149 | iq | 5678 | 3 minutes ago |
125.228.143.207 | tw | 4145 | 3 minutes ago |
125.228.94.199 | tw | 4145 | 3 minutes ago |
67.43.228.250 | ca | 23261 | 3 minutes ago |
189.202.188.149 | mx | 80 | 3 minutes ago |
188.165.192.99 | fr | 8962 | 3 minutes ago |
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Disabling popups using Selenium can be done by interacting with the popup elements or by using JavaScript to close them. Here's an example using Python and Chrome:
from selenium import webdriver
from selenium.webdriver.common.by import By
from selenium.webdriver.support.ui import WebDriverWait
from selenium.webdriver.support import expected_conditions as EC
driver = webdriver.Chrome()
driver.get("https://www.example.com")
# Locate the popup element, if applicable
# For example, if the popup has a button with the ID "close-button"
popup_button = driver.find_element(By.ID, "close-button")
# Click the popup button to close the popup
popup_button.click()
# Alternatively, use JavaScript to close the popup
# driver.execute_script("window.close();")
In this example, the script locates the popup button (if applicable) and clicks on it to close the popup. If the popup does not have a specific button or element to close it, you can use JavaScript to close the popup:
driver.execute_script("window.close();")
This script will close the current window, effectively closing the popup. Note that using JavaScript to close a popup might not work in all cases, as some websites might have additional logic to prevent the popup from being closed programmatically.
Keep in mind that some websites might have multiple popups or modal windows. In such cases, you may need to modify the script to handle each popup individually or use a loop to close all popups.
Remember to replace "https://www.example.com" and "close-button" with the actual values for the website you are working with. Also, ensure that the browser driver (e.g., ChromeDriver for Google Chrome) is installed and properly configured in your environment.
The tool that exists to run Selenium tests in headless mode is called "Headless Browsers". Headless browsers are browser automation tools that run without a graphical user interface (GUI). They are typically used for testing web applications without the need for a visible browser window. Some popular headless browsers include:
1. Chrome's Headless mode: Chrome's headless mode can be enabled by passing the --headless flag when launching a ChromeDriver instance.
2. Firefox's Headless mode: Firefox's headless mode can be enabled by passing the --headless flag when launching a GeckoDriver instance.
3. PhantomJS: PhantomJS is a headless browser that can be used with Selenium to run tests without a visible browser window.
4. Puppeteer: Puppeteer is a Node library that provides a high-level API to control Chrome or Chromium over the DevTools Protocol. It can be used to run tests in headless mode.
5. HtmlUnit: HtmlUnit is a headless browser that can be used with Selenium to run tests without a visible browser window.
It's important to note that the specific implementation of running Selenium tests in headless mode may vary depending on the browser and the version of the Selenium WebDriver being used.
In UDP communication, there is no built-in mechanism to confirm if the client has received data from the server. UDP is a connectionless protocol, which means it does not establish a connection between the client and server, and therefore, it does not provide any reliability guarantees.
However, there are some techniques you can use to improve the reliability of UDP communication and get an indication that the client has received data:
1. Acknowledgment packets: The server can send acknowledgment packets after sending data to the client. The client can then send acknowledgment packets back to the server after receiving the data. If the server does not receive the acknowledgment packets within a specific timeout period, it can assume that the client has not received the data.
2. Timeout and retransmission: The server can implement a timeout and retransmission mechanism. If the server does not receive an acknowledgment packet within a specific timeout period, it can resend the data and continue to do so until it receives an acknowledgment or reaches a predefined limit.
3. Checksums or hashes: The server can send data along with a checksum or hash value. The client can then calculate the checksum or hash of the received data and compare it with the value sent by the server. If the values match, the client can be confident that it has received the data correctly.
A proxy address is the URL or IP address of a proxy server. It is the destination that a client's request is forwarded to, instead of directly to the intended website or server. When a client wants to access a website or resource, the request is sent to the proxy server instead. The proxy server then fetches the requested content and returns it to the client.
In the "System Settings" section, open the "Network" tab, and then, when you highlight the active connection, click "Advanced". Here, in the "Proxies" tab, tick only the HTTP proxy if you do not intend to use other types of proxies temporarily. Enter the address of your proxy server and its port in the designated fields and click "OK".
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