IP | Country | PORT | ADDED |
---|---|---|---|
50.218.208.13 | us | 80 | 4 minutes ago |
50.218.208.14 | us | 80 | 4 minutes ago |
50.175.123.235 | us | 80 | 4 minutes ago |
183.247.211.41 | cn | 30001 | 4 minutes ago |
50.175.123.238 | us | 80 | 4 minutes ago |
128.140.113.110 | de | 5678 | 4 minutes ago |
39.175.85.98 | cn | 30001 | 4 minutes ago |
78.80.228.150 | cz | 80 | 4 minutes ago |
46.0.205.8 | ru | 1080 | 4 minutes ago |
178.178.2.177 | ru | 1080 | 4 minutes ago |
72.10.164.178 | ca | 29745 | 4 minutes ago |
178.207.13.88 | ru | 1080 | 4 minutes ago |
102.213.22.59 | za | 8080 | 4 minutes ago |
89.104.71.70 | ru | 1080 | 4 minutes ago |
102.165.58.218 | kh | 8080 | 4 minutes ago |
31.47.58.37 | ir | 80 | 4 minutes ago |
125.228.143.207 | tw | 4145 | 4 minutes ago |
46.146.220.247 | ru | 1080 | 4 minutes ago |
103.118.47.243 | kh | 8080 | 4 minutes ago |
203.99.240.179 | jp | 80 | 4 minutes ago |
Simple tool for complete proxy management - purchase, renewal, IP list update, binding change, upload lists. With easy integration into all popular programming languages, PapaProxy API is a great choice for developers looking to optimize their systems.
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To simulate manual text input in Selenium WebDriver, you can use the send_keys method to send a sequence of keys to an input field. Here's an example of how to do this in Python:
Install the required package:
pip install selenium
Create a method to simulate manual text input:
from selenium import webdriver
from selenium.webdriver.common.keys import Keys
from selenium.webdriver.common.by import By
from selenium.webdriver.support.ui import WebDriverWait
from selenium.webdriver.support import expected_conditions as EC
def simulate_manual_text_input(driver, locator, text_to_send):
element = WebDriverWait(driver, 10).until(EC.visibility_of_element_located(locator))
element.clear()
element.send_keys(text_to_send)
Use the simulate_manual_text_input 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 input field
locator = (By.ID, "username")
# Simulate manual text input
simulate_manual_text_input(driver, locator, "your_username")
# Perform any additional actions as needed
# Close the browser
driver.quit()
In this example, we first create a method called simulate_manual_text_input that takes a driver instance, a locator tuple containing the locator strategy and locator value, and a text_to_send string containing the text to send to the input field. Inside the method, we use the WebDriverWait class to wait for the element to become visible and then clear the input field and send the text using the send_keys method.
In the test code, we set up the WebDriver, navigate to the target web page, and locate the input field using the locator variable. We then call the simulate_manual_text_input method with the driver, locator, and "your_username" as input. After simulating the manual text input, you can perform any additional actions as needed.
Remember to replace "https://www.example.com", "username", and "your_username" with the actual URL, input field ID or name, and the text you want to type into the input field.
Transferring a large byte array using UDP involves breaking the data into smaller chunks and sending each chunk as a separate UDP datagram. Since UDP is a connectionless protocol, there's no guarantee that the chunks will arrive in the same order they were sent. Therefore, you'll also need to send additional information to reassemble the data correctly at the receiver side.
Here's a simple example using Python to send and receive large byte arrays using UDP:
1. Sender (Python script send_large_data.py):
import socket
def send_large_data(data, host, port):
sock = socket.socket(socket.AF_INET, socket.SOCK_DGRAM)
chunk_size = 1024
total_chunks = len(data) // chunk_size + 1
sequence_number = 0
for i in range(total_chunks):
start = sequence_number * chunk_size
end = start + chunk_size
chunk = data[start:end]
sock.sendto(chunk, (host, port))
sequence_number += 1
sock.close()
if __name__ == "__main__":
large_data = b"This is a large byte array sent using UDP." * 100
host = "127.0.0.1"
port = 12345
send_large_data(large_data, host, port)
2. Receiver (Python script receive_large_data.py):
import socket
def receive_large_data(host, port):
sock = socket.socket(socket.AF_INET, socket.SOCK_DGRAM)
chunk_size = 1024
total_chunks = 0
received_data = b""
while True:
data, address = sock.recvfrom(chunk_size)
total_chunks += 1
received_data += data
if len(received_data) >= (total_chunks - 1) * chunk_size:
break
sock.close()
return received_data
if __name__ == "__main__":
host = "127.0.0.1"
port = 12345
large_data = receive_large_data(host, port)
print("Received data:", large_data)
In this example, the sender script send_large_data.py breaks the large byte array into chunks of 1024 bytes and sends each chunk as a separate UDP datagram. The receiver script receive_large_data.py receives the chunks and reassembles them into the original byte array.
Open the torrent and through the "Menu" enter the subsection "Connection". Under "Proxy" choose a proxy type (Socks5 is best). In the box "Proxy" put IP address of your proxy, and in the "Port" box, respectively, the port of your proxy. If you are going to use proxy authentication, you will have to give your name and password in the corresponding fields. Click "Apply".
Open the Telegram app, and then go to "Settings. Find "Data and Drive", then tap "Proxy". Activate the "Use proxy" toggle switch, then select the desired option from the suggested list. The setting is successfully completed.
There are several options for its use: bypassing the blocking of websites, shopping in foreign online stores at regional (local) prices, access to a full library of media content, hiding your real IP-address.
What else…