IP | Country | PORT | ADDED |
---|---|---|---|
50.174.7.159 | us | 80 | 19 minutes ago |
50.171.187.51 | us | 80 | 19 minutes ago |
50.172.150.134 | us | 80 | 19 minutes ago |
50.223.246.238 | us | 80 | 19 minutes ago |
67.43.228.250 | ca | 16555 | 19 minutes ago |
203.99.240.179 | jp | 80 | 19 minutes ago |
50.219.249.61 | us | 80 | 19 minutes ago |
203.99.240.182 | jp | 80 | 19 minutes ago |
50.171.187.50 | us | 80 | 19 minutes ago |
62.99.138.162 | at | 80 | 19 minutes ago |
50.217.226.47 | us | 80 | 19 minutes ago |
50.174.7.158 | us | 80 | 19 minutes ago |
50.221.74.130 | us | 80 | 19 minutes ago |
50.232.104.86 | us | 80 | 19 minutes ago |
212.69.125.33 | ru | 80 | 19 minutes ago |
50.223.246.237 | us | 80 | 19 minutes ago |
188.40.59.208 | de | 3128 | 19 minutes ago |
50.169.37.50 | us | 80 | 19 minutes ago |
50.114.33.143 | kh | 8080 | 19 minutes ago |
50.174.7.155 | us | 80 | 19 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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It is recommended to use private IPv6 proxies with dedicated IP in order to work with Instagram correctly, and most importantly - securely. With such connection interception of traffic is practically impossible, directly Instagram also will not ban the connection.
In Swift, you can use the Codable protocol to parse JSON data into Swift objects. Here's a basic example:
Assuming you have the following JSON data:
{
"name": "John Doe",
"age": 30,
"city": "New York"
}
And you want to create a Swift struct to represent this data:
import Foundation
// Define a struct conforming to Codable
struct Person: Codable {
let name: String
let age: Int
let city: String
}
// JSON data
let jsonData = """
{
"name": "John Doe",
"age": 30,
"city": "New York"
}
""".data(using: .utf8)!
// Use JSONDecoder to decode JSON data into a Person object
do {
let person = try JSONDecoder().decode(Person.self, from: jsonData)
print("Name: \(person.name)")
print("Age: \(person.age)")
print("City: \(person.city)")
} catch {
print("Error decoding JSON: \(error)")
}
In this example:
Person
struct that conforms to the Codable
protocol. The struct's properties match the keys in the JSON data.Data
using data(using:)
.JSONDecoder
to decode the JSON data into an instance of the Person
struct.Ensure that the keys in your Swift struct match the keys in your JSON data, and the data types match accordingly. The JSONDecoder
automatically maps the JSON data to the struct based on the property names.
This example assumes a simple JSON structure. If your JSON structure is more complex, you may need to define additional structs conforming to Codable
to represent nested structures.
Note: If your JSON data comes from a URL, you can also use URLSession
to fetch the 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.
To configure a Socks5 proxy for Chrome in Selenium using Python, you can use the --proxy-server command-line option with the Socks5 proxy address. Here's an example using the webdriver.Chrome class in Python:
from selenium import webdriver
from selenium.webdriver.chrome.service import Service as ChromeService
# Socks5 proxy configuration
socks5_proxy = "socks5://127.0.0.1:1080" # Replace with your actual Socks5 proxy address
# Configure Chrome options with proxy settings
chrome_options = webdriver.ChromeOptions()
chrome_options.add_argument(f'--proxy-server={socks5_proxy}')
# Create a Chrome WebDriver instance with the configured options
chrome_service = ChromeService(executable_path="path/to/chromedriver") # Replace with the actual path
driver = webdriver.Chrome(service=chrome_service, options=chrome_options)
# Example: Navigate to a website using the configured proxy
driver.get("https://www.example.com")
# Perform other actions with the WebDriver as needed
# Close the browser window
driver.quit()
- Replace "socks5://127.0.0.1:1080" with the actual Socks5 proxy address you want to use.
- Download the ChromeDriver executable from the official ChromeDriver download page and provide the path to the executable in the executable_path parameter of ChromeService.
- Update the driver.get() method to navigate to the website you want.
Make sure to have the selenium library installed (pip install selenium) and ensure that the ChromeDriver version is compatible with the Chrome browser installed on your system.
Paid proxies are definitely better and more reliable than free ones. How do you test them? You can simply use the Hidemy Name service. It also shows which protocols the service uses and how reliable the connection is.
What else…