IP | Country | PORT | ADDED |
---|---|---|---|
41.230.216.70 | tn | 80 | 34 minutes ago |
50.168.72.114 | us | 80 | 34 minutes ago |
50.207.199.84 | us | 80 | 34 minutes ago |
50.172.75.123 | us | 80 | 34 minutes ago |
50.168.72.122 | us | 80 | 34 minutes ago |
194.219.134.234 | gr | 80 | 34 minutes ago |
50.172.75.126 | us | 80 | 34 minutes ago |
50.223.246.238 | us | 80 | 34 minutes ago |
178.177.54.157 | ru | 8080 | 34 minutes ago |
190.58.248.86 | tt | 80 | 34 minutes ago |
185.132.242.212 | ru | 8083 | 34 minutes ago |
62.99.138.162 | at | 80 | 34 minutes ago |
50.145.138.156 | us | 80 | 34 minutes ago |
202.85.222.115 | cn | 18081 | 34 minutes ago |
120.132.52.172 | cn | 8888 | 34 minutes ago |
47.243.114.192 | hk | 8180 | 34 minutes ago |
218.252.231.17 | hk | 80 | 34 minutes ago |
50.175.123.233 | us | 80 | 34 minutes ago |
50.175.123.238 | us | 80 | 34 minutes ago |
50.171.122.27 | us | 80 | 34 minutes ago |
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If Selenium is returning a blank page when you query it, there could be several reasons for this issue. Here are some common causes and solutions:
1. Timing Issues
Selenium might be trying to interact with the page before it has fully loaded. Ensure that you use explicit waits (WebDriverWait) to wait for the elements to be present, visible, or interactive before interacting with them.
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://example.com")
# Wait for the page title to be present
WebDriverWait(driver, 10).until(EC.presence_of_element_located((By.TAG_NAME, 'title')))
# Continue with your script...
2. Incorrect Locator or Query
Double-check your locators and queries to ensure that you are selecting the correct elements. Incorrect locators might lead to the selection of non-existent or hidden elements.
3. Browser Window Size
In headless mode or when the browser window is too small, elements might not be visible. Ensure that your script maximizes the browser window or sets an appropriate window size.
driver.maximize_window()
4. JavaScript Errors
Check the browser console for any JavaScript errors that might be affecting the page. Use console.log statements in JavaScript to debug if needed.
console.log("Debug message from JavaScript");
5. Network Issues
Network issues might prevent the page from loading completely. Ensure that your network connection is stable.
6. Browser Extensions
Certain browser extensions might interfere with Selenium. Disable extensions or use a clean browser profile for testing.
7. Headless Mode Issues
If you are running Selenium in headless mode, try running the script in non-headless mode to see if the issue persists. Some websites may behave differently in headless mode.
8. Check for Captchas or Security Measures
Some websites use captchas or additional security measures that could interfere with automated scripts. Ensure that your script is not encountering captchas.
9. Web Page Structure Changes
Web pages are dynamic, and changes in the structure of the page might affect your script. Inspect the HTML source code of the page to ensure that your locators are still valid.
10. Logging
Add logging statements to your script to output information at different stages. This can help in identifying where the issue might be occurring.
11. Browser Version Compatibility
Ensure that your Selenium WebDriver version is compatible with the browser version you are using. Update your WebDriver if necessary.
To test a UDP sender, you can create a mock UDP client that simulates the behavior of the real UDP client. This way, you can test the sending functionality without actually sending data over the network.
Here's an example of how to create a mock UDP client and write a unit test for a UDP sender in C#:
1. Create a mock UDP client class:
public class MockUdpClient : IDisposable
{
private readonly byte[] _receivedBytes;
private int _receivedCount;
public MockUdpClient()
{
_receivedBytes = new byte[1024];
_receivedCount = 0;
}
public void Receive(byte[] data, int length)
{
Array.Copy(data, _receivedBytes, length);
_receivedCount++;
}
public void Dispose()
{
// Clean up any resources if needed
}
public int ReceivedCount => _receivedCount;
public byte[] ReceivedData => _receivedBytes;
}
2. Modify the UDP sender to accept a mock UDP client:
public class UdpSender
{
private readonly MockUdpClient _mockUdpClient;
public UdpSender(MockUdpClient mockUdpClient)
{
_mockUdpClient = mockUdpClient;
}
public void SendData(string data)
{
var bytes = Encoding.ASCII.GetBytes(data);
_mockUdpClient.Receive(bytes, bytes.Length);
}
}
3. Write a unit test for the UDP sender:
[TestClass]
public class UdpSenderTests
{
[TestMethod]
public void TestSendData()
{
// Arrange
var mockUdpClient = new MockUdpClient();
var udpSender = new UdpSender(mockUdpClient);
var data = "Test data";
// Act
udpSender.SendData(data);
// Assert
Assert.AreEqual(1, mockUdpClient.ReceivedCount);
CollectionAssert.AreEqual(Encoding.ASCII.GetBytes(data), mockUdpClient.ReceivedData);
}
}
In this example, we created a MockUdpClient class that simulates the behavior of a real UDP client. The UdpSender class now accepts a MockUdpClient as a parameter, allowing us to test the sending functionality without actually sending data over the network.
Finally, we wrote a unit test using the TestClass and TestMethod attributes from the Microsoft.VisualStudio.TestTools.UnitTesting namespace. The test method TestSendData checks whether the UdpSender class sends data correctly by comparing the received data with the expected data.
Bypassing or disabling UDP client isolation on Android is not recommended, as it may expose your device to security risks and vulnerabilities. UDP client isolation is a security feature that helps protect your device from malicious traffic and potential attacks.
However, if you still want to proceed, you can try the following steps:
1. Root your Android device: Rooting your device gives you administrative access, allowing you to bypass certain restrictions and modify system files. Be aware that rooting may void your device's warranty and expose your device to security risks.
2. Edit the system configuration file: After rooting your device, you can edit the system configuration file to disable UDP client isolation. The file you need to edit is called "inet_ipv4.conf" and is located in the "/etc/sysconfig/network-scripts" directory. Open the file using a text editor and look for the line "udp_client_isolation=1". Change the value to "0" to disable UDP client isolation.
3. Reboot your device: After making the changes, save the file and reboot your device. The changes should take effect, and UDP client isolation will be disabled.
Please note that disabling UDP client isolation may expose your device to security risks, and it is not recommended to do so unless you have a specific reason and understand the potential consequences. Always consider the security of your device and data before making any changes to your system.
Rotary proxies are proxies that cyclically change their real IP address. This is used to make it harder to track their location. The port usually changes as well. How this happens depends on the software used on the proxy server.
In Android to disable the proxy, you need to go to "Settings", then - "Connection and sharing", then - to "VPN". And then just deactivate the item. Many phones also provide for automatic disabling of proxies and VPNs when the device is rebooted. That is, if the user is difficult to understand the settings of the gadget, then you can trivially restart it through a long press the lock button (forced reboot).
What else…