IP | Country | PORT | ADDED |
---|---|---|---|
50.217.226.41 | us | 80 | 4 minutes ago |
209.97.150.167 | us | 3128 | 4 minutes ago |
50.174.7.162 | us | 80 | 4 minutes ago |
50.169.37.50 | us | 80 | 4 minutes ago |
190.108.84.168 | pe | 4145 | 4 minutes ago |
50.174.7.159 | us | 80 | 4 minutes ago |
72.10.160.91 | ca | 29605 | 4 minutes ago |
50.171.122.27 | us | 80 | 4 minutes ago |
218.252.231.17 | hk | 80 | 4 minutes ago |
50.220.168.134 | us | 80 | 4 minutes ago |
50.223.246.238 | us | 80 | 4 minutes ago |
185.132.242.212 | ru | 8083 | 4 minutes ago |
159.203.61.169 | ca | 8080 | 4 minutes ago |
50.223.246.239 | us | 80 | 4 minutes ago |
47.243.114.192 | hk | 8180 | 4 minutes ago |
50.169.222.243 | us | 80 | 4 minutes ago |
72.10.160.174 | ca | 1871 | 4 minutes ago |
50.174.7.152 | us | 80 | 4 minutes ago |
50.174.7.157 | us | 80 | 4 minutes ago |
50.174.7.154 | us | 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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If you're developing a web application and want to display scraping results in an inline button, you typically use a combination of HTML, JavaScript, and possibly a backend server (e.g., using Node.js or another server-side technology). Below is a simple example using HTML and JavaScript to demonstrate how you might achieve this. Please note that this example assumes you have a backend server to handle the scraping logic.
Let's create a simple HTML file:
Scraping Result Button
In this example:
scrapeData
function simulates the backend scraping logic. Replace it with your actual scraping code.updateResultContainer
function dynamically creates a button and attaches a click event listener to display the scraped result.Please note that this is a basic example, and in a real-world scenario, you would likely have a backend server to handle scraping, and you would use AJAX or fetch to make asynchronous requests to the server.
To send data back to the client via UDP, you can use a programming language like Python with a library like socket. Here's a step-by-step guide to help you achieve this:
1. Import the socket library:
First, import the socket library in your Python script.
import socket
2. Create a socket object:
Create a socket object using the socket.socket() function. Specify the socket family (AF_INET for IPv4) and the socket type (SOCK_DGRAM for UDP).
server_socket = socket.socket(socket.AF_INET, socket.SOCK_DGRAM)
3. Set the server address and port:
Set the server address and port to the values where you want to listen for incoming UDP packets.
server_address = ('localhost', 10000)
server_socket.bind(server_address)
4. Receive data from the client:
Use the server_socket.recvfrom() method to receive data from the client. This method returns a tuple containing the data and the client address.
data, client_address = server_socket.recvfrom(4096)
5. Process the received data:
Process the received data as needed. This could involve parsing the data, performing calculations, or any other operation.
6. Send data back to the client:
Use the server_socket.sendto() method to send data back to the client. This method takes the data to send and the client address as arguments.
response_data = b"Data processed successfully"
server_socket.sendto(response_data, client_address)
7. Close the socket:
Finally, close the socket using the server_socket.close() method.
server_socket.close()
Here's the complete example:
import socket
def process_data(data):
# Process the received data as needed
return "Processed data"
def send_data_back_to_client(server_socket, client_address, data):
response_data = process_data(data)
server_socket.sendto(response_data, client_address)
if __name__ == '__main__':
server_socket = socket.socket(socket.AF_INET, socket.SOCK_DGRAM)
server_address = ('localhost', 10000)
server_socket.bind(server_address)
data, client_address = server_socket.recvfrom(4096)
send_data_back_to_client(server_socket, client_address, data)
server_socket.close()
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.
Open the Chrome preferences screen, and then, expanding the advanced settings menu, click on the "Advanced" section. Open the "System" item, then on the tab that opens, click on "Open proxy settings for computer". The proxy settings interface will appear in front of you. This will be either the "System Settings" application or the "Browser Properties" application, depending on your operating system.
In AnyDesk, in order to ensure maximum security of transmitted traffic, you can use proxies, including encryption of traffic. The setting is made through the regular menu of the application. You will need to go to "Options", select "Connection", specify the proxy and port number. Connection is made automatically after that.
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