IP | Country | PORT | ADDED |
---|---|---|---|
45.140.143.77 | nl | 18080 | 40 minutes ago |
139.59.1.14 | in | 80 | 40 minutes ago |
81.169.213.169 | de | 8888 | 40 minutes ago |
103.118.46.174 | kh | 8080 | 40 minutes ago |
5.45.126.128 | ee | 8080 | 40 minutes ago |
103.118.46.61 | kh | 8080 | 40 minutes ago |
103.118.46.176 | kh | 8080 | 40 minutes ago |
213.143.113.82 | at | 80 | 40 minutes ago |
91.107.154.214 | de | 80 | 40 minutes ago |
128.140.113.110 | de | 8081 | 40 minutes ago |
80.120.49.242 | at | 80 | 40 minutes ago |
41.230.216.70 | tn | 80 | 40 minutes ago |
158.255.77.168 | ae | 80 | 40 minutes ago |
213.157.6.50 | de | 80 | 40 minutes ago |
143.42.66.91 | sg | 80 | 40 minutes ago |
203.99.240.182 | jp | 80 | 40 minutes ago |
161.35.70.249 | de | 80 | 40 minutes ago |
194.219.134.234 | gr | 80 | 40 minutes ago |
213.33.126.130 | at | 80 | 40 minutes ago |
23.247.136.254 | sg | 80 | 40 minutes ago |
Our proxies work perfectly with all popular tools for web scraping, automation, and anti-detect browsers. Load your proxies into your favorite software or use them in your scripts in just seconds:
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To upload files using Selenium, you can follow these general steps:
Locate the file input element: Use Selenium's methods like find_element_by_id(), find_element_by_name(), or find_element_by_xpath() to locate the file input element on the webpage.
Send keys to the file input element: Use the send_keys() method to send the file path to the file input element. This will upload the file.
Here's an example using Python:
from selenium import webdriver
from selenium.webdriver.common.by import By
from selenium.webdriver.common.keys import Keys
# Replace 'your_url' with the URL of the webpage you want to open
driver = webdriver.Chrome()
driver.get('your_url')
# Replace 'file_input_id' with the ID of the file input element on the webpage
file_input = driver.find_element(By.ID, 'file_input_id')
# Replace 'path/to/your/file' with the path to the file you want to upload
file_path = 'path/to/your/file'
file_input.send_keys(file_path)
# Rest of your code
driver.quit()
Keep in mind that the specific method to locate the file input element and the file input element's ID or name may vary depending on the webpage you're working with.
Additionally, some websites may have specific requirements or restrictions for uploading files. In such cases, you may need to use JavaScript or other methods to bypass these restrictions. If you encounter any issues or need further assistance, please provide more information about the webpage and the specific error message or problem you're facing.
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.
All modern Smart TVs allow you to use proxies to connect to the Internet or local network (both on Android and Tizen OS). You have to go to the device settings, open "Network" tab (can be named as "Ethernet"), and then in "Advanced settings" to activate the proxy, if necessary - specify its settings.
If you want to check the proxy's regionality, use a tool such as the proxy checker. You can either download the program or use it online. To perform the check, which allows you to determine not only the country and city, but also a number of other important indicators, you need to enter your username and password in the appropriate fields.
A proxy server acts as an intermediary between the client and the requested Internet resource. It is assigned the role of a kind of gateway or filter, which is responsible for submitting a request, receiving the required information and providing it to the user. The proxy server, if necessary, can make changes in incoming and outgoing data, the nature of which will depend on the type of proxy and its settings.
What else…