IP | Country | PORT | ADDED |
---|---|---|---|
41.230.216.70 | tn | 80 | 42 minutes ago |
50.168.72.114 | us | 80 | 42 minutes ago |
50.207.199.84 | us | 80 | 42 minutes ago |
50.172.75.123 | us | 80 | 42 minutes ago |
50.168.72.122 | us | 80 | 42 minutes ago |
194.219.134.234 | gr | 80 | 42 minutes ago |
50.172.75.126 | us | 80 | 42 minutes ago |
50.223.246.238 | us | 80 | 42 minutes ago |
178.177.54.157 | ru | 8080 | 42 minutes ago |
190.58.248.86 | tt | 80 | 42 minutes ago |
185.132.242.212 | ru | 8083 | 42 minutes ago |
62.99.138.162 | at | 80 | 42 minutes ago |
50.145.138.156 | us | 80 | 42 minutes ago |
202.85.222.115 | cn | 18081 | 42 minutes ago |
120.132.52.172 | cn | 8888 | 42 minutes ago |
47.243.114.192 | hk | 8180 | 42 minutes ago |
218.252.231.17 | hk | 80 | 42 minutes ago |
50.175.123.233 | us | 80 | 42 minutes ago |
50.175.123.238 | us | 80 | 42 minutes ago |
50.171.122.27 | us | 80 | 42 minutes ago |
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It means that now all the traffic is sent to a VPN server (which can be an ordinary proxy). This is a kind of warning that the remote server can now collect data. Therefore, you should use only well-tested VPN services.
To change the language of an internet page using Selenium, you can follow these steps:
1. Locate the language selector element: First, you need to find the element that contains the language selector or the link to the desired language. This can be a dropdown, a list of flags, or a simple link.
2. Locate the desired language option: Once you've found the language selector element, locate the specific language option you want to switch to.
3. Click the desired language option: Use Selenium to click the desired language option, which will change the language of the page.
Here's an example using Python:
Install the required package:
pip install selenium
Create a method to change the language of a web page:
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
def change_language(driver, locator, language_code):
element = WebDriverWait(driver, 10).until(EC.visibility_of_element_located(locator))
element.click()
# Locate the desired language option and click it
desired_language_locator = (By.CSS_SELECTOR, f"a[href*='{language_code}']")
desired_language_element = WebDriverWait(driver, 10).until(EC.visibility_of_element_located(desired_language_locator))
desired_language_element.click()
Use the change_language method in your test code:
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
# Set up the WebDriver
driver = webdriver.Chrome()
driver.maximize_window()
# Navigate to the target web page
driver.get("https://www.example.com")
# Locate the language selector element
language_selector_locator = (By.ID, "language-selector")
# Change the language of the web page
change_language(driver, language_selector_locator, "en")
# Perform any additional actions as needed
# Close the browser
driver.quit()
In this example, we first create a method called change_language that takes a driver instance, a locator tuple containing the locator strategy and locator value, and a language_code string containing the desired language code. Inside the method, we use the WebDriverWait class to wait for the element to become visible and then click the element.
In the test code, we set up the WebDriver, navigate to the target web page, and locate the language selector element using the language_selector_locator variable. We then call the change_language method with the driver, language_selector_locator, and "en" as input. After changing the language, you can perform any additional actions as needed.
Remember to replace "https://www.example.com", "language-selector", and "en" with the actual URL, language selector element ID or locator, and desired language code.
To read a video stream received via UDP, you can follow these steps:
1. Choose a programming language: Python, C++, Java, or any other language that supports UDP communication.
2. Set up a UDP server: Create a UDP server that listens for incoming video stream data. This server will receive the video stream packets and store them in memory or on disk.
3. Parse the UDP packets: The video stream data will be sent in a series of UDP packets. You will need to parse these packets to extract the video frames and reassemble them into a complete video stream.
4. Decode the video frames: Once you have the video frames, you need to decode them to convert them from their compressed format (e.g., H.264, MPEG-4) to a raw video format that can be displayed.
5. Display or save the video stream: After decoding the video frames, you can either display them in real-time or save them to a file for later playback.
Here's an example of how you might implement this in Python using the socket and cv2 libraries:
import socket
import cv2
import struct
# Create a UDP server socket
server_socket = socket.socket(socket.AF_INET, socket.SOCK_DGRAM)
server_socket.bind(('0.0.0.0', 12345))
# Variables to store the video stream
frame_length = 0
frame_data = b''
# Loop to receive video stream packets
while True:
data, address = server_socket.recvfrom(1024)
frame_length += struct.unpack('I', data[:4])[0]
frame_data += data[4:]
# Check if we have enough data for a complete frame
if frame_length > 0 and len(frame_data) >= frame_length:
# Extract the video frame
frame = cv2.imdecode(np.frombuffer(frame_data[:frame_length], dtype=np.uint8), cv2.IMREAD_COLOR)
# Display or save the video frame
cv2.imshow('Video Stream', frame)
cv2.waitKey(1)
# Reset variables for the next frame
frame_length = 0
frame_data = b''
Note that this is a simplified example and assumes that the video stream is using a specific protocol for packetization and framing. In practice, you will need to adapt this code to the specific format of the video stream you are receiving. Additionally, you may need to handle network errors, packet loss, and other issues that can arise during UDP communication.
A proxy for calls refers to a tool or service that acts as an intermediary between the caller and the recipient of the call. It can be used for various purposes, such as anonymity, security, or call routing. Some common types of proxy services for calls include:
1. Call forwarding: This is a service that allows incoming calls to be redirected to a different phone number, often used when the recipient is not available or unable to answer the call.
2. VoIP proxies: These are servers that facilitate voice over IP (VoIP) calls, allowing users to make and receive calls over the internet. VoIP proxies can be used for various purposes, such as hiding the caller's IP address or bypassing geographical restrictions.
3. Call masking: This is a service that hides the caller's phone number, allowing the caller to remain anonymous.
4. Call recording proxies: These are used to record incoming or outgoing calls, often used for quality assurance, training, or monitoring purposes.
5. Call routing proxies: These are used to route calls to different destinations based on specific criteria, such as time of day, location, or the caller's number.
You can bypass the blocking of the messenger by using the built-in proxy server in the application. To do this, go to "Settings" and then to the section "Data and storage". Here, in the "Proxy settings" tab, you will find the "Add proxy" item. A shield icon on the top line of the menu will indicate that the proxy is enabled.
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