IP | Country | PORT | ADDED |
---|---|---|---|
50.174.7.159 | us | 80 | 12 minutes ago |
50.171.187.51 | us | 80 | 12 minutes ago |
50.172.150.134 | us | 80 | 12 minutes ago |
50.223.246.238 | us | 80 | 12 minutes ago |
67.43.228.250 | ca | 16555 | 12 minutes ago |
203.99.240.179 | jp | 80 | 12 minutes ago |
50.219.249.61 | us | 80 | 12 minutes ago |
203.99.240.182 | jp | 80 | 12 minutes ago |
50.171.187.50 | us | 80 | 12 minutes ago |
62.99.138.162 | at | 80 | 12 minutes ago |
50.217.226.47 | us | 80 | 12 minutes ago |
50.174.7.158 | us | 80 | 12 minutes ago |
50.221.74.130 | us | 80 | 12 minutes ago |
50.232.104.86 | us | 80 | 12 minutes ago |
212.69.125.33 | ru | 80 | 12 minutes ago |
50.223.246.237 | us | 80 | 12 minutes ago |
188.40.59.208 | de | 3128 | 12 minutes ago |
50.169.37.50 | us | 80 | 12 minutes ago |
50.114.33.143 | kh | 8080 | 12 minutes ago |
50.174.7.155 | us | 80 | 12 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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Proxy servers are of the following types:
FTP proxy designed to send data to FTP servers.
CGI proxy, which is used to browse web services in a browser. You do not need to configure any settings. All actions are performed anonymously. Often such proxies are designed in the form of a page where you have to specify the address of a desired site.
SMTP, POP3 and IMAP proxy are designed for sending and receiving email.
HTTP and HTTPS proxies are for scrolling web services.
Socks proxy are used as an anonymizer. No one will know about the user's actions.
Google Chrome doesn't have a built-in function to work with a proxy server, although there is such an item in the settings. But when you click on it, you are automatically "redirected" to the standard proxy settings in Windows (or any other operating system).
To scrape tags from XML with Python, you can use the xml.etree.ElementTree module, which is part of the Python standard library. Here's an example of how to extract tags from an XML document
Assuming you have an XML file named example.xml like this:
-
Item 1
10.99
-
Item 2
19.99
You can use the following Python code to extract tags:
import xml.etree.ElementTree as ET
# Load the XML file
xml_file_path = 'path/to/example.xml'
tree = ET.parse(xml_file_path)
root = tree.getroot()
# Extract tags
tags = set()
for element in root.iter():
tags.add(element.tag)
# Print the extracted tags
print("Extracted Tags:")
for tag in tags:
print(tag)
This example uses xml.etree.ElementTree to parse the XML file, iterates over the elements, and adds each tag to a set to ensure uniqueness. You can modify this example based on your specific needs.
If you want to extract tags with attributes, you can modify the code accordingly. For example:
import xml.etree.ElementTree as ET
# Load the XML file
xml_file_path = 'path/to/example.xml'
tree = ET.parse(xml_file_path)
root = tree.getroot()
# Extract tags with attributes
tags_with_attributes = set()
for element in root.iter():
tag_with_attributes = element.tag
if element.attrib:
attributes = ', '.join([f"{key}={value}" for key, value in element.attrib.items()])
tag_with_attributes += f" ({attributes})"
tags_with_attributes.add(tag_with_attributes)
# Print the extracted tags with attributes
print("Extracted Tags with Attributes:")
for tag in tags_with_attributes:
print(tag)
This example includes attributes in the extracted tags, displaying them in a format like tag_name (attribute1=value1, attribute2=value2). Adjust the code based on your XML structure and specific requirements.
When scraping a dynamic list where the content is loaded dynamically, you often need to use a web scraping library that supports interaction with JavaScript or a headless browser. The selenium library is a popular choice for this task.
Below is an example of scraping a dynamic list from a website using Python with selenium. In this example, the list items are loaded dynamically through JavaScript, and we'll use selenium to interact with the 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
# Replace 'your_url' with the actual URL of the page
url = 'your_url'
# Initialize the webdriver (you may need to download the appropriate webdriver for your browser)
driver = webdriver.Chrome()
# Open the webpage
driver.get(url)
# Use WebDriverWait to wait for the dynamic content to load
try:
# Adjust the timeout and conditions based on your webpage's behavior
WebDriverWait(driver, 10).until(
EC.presence_of_element_located((By.XPATH, '//div[@class="your-list-item-class"]'))
)
# Extract the list items using XPath (adjust the XPath based on your HTML structure)
list_items = driver.find_elements(By.XPATH, '//div[@class="your-list-item-class"]')
# Process the list items
for index, item in enumerate(list_items):
print(f"Item {index + 1}: {item.text}")
finally:
# Close the browser window
driver.quit()
In this example:
'your_url'
with the actual URL of the page you want to scrape.driver.find_elements
based on the structure of your HTML. This XPath should point to the dynamic list items.Remember to install the selenium
library (pip install selenium
) and download the appropriate WebDriver (e.g., ChromeDriver) for your browser.
Proxy service settings refer to the configuration and settings related to the use of a proxy server. A proxy server is an intermediary server that sits between a client and a destination server, acting as an intermediary to request and deliver content on behalf of the client. The main purpose of a proxy server is to improve performance, enhance security, or bypass restrictions on accessing certain content.
Proxy service settings include the following components:
1. Proxy server address: The IP address or domain name of the proxy server that the client will use to route requests and receive responses.
2. Proxy server port: The port number on which the proxy server is listening for incoming connections.
3. Protocol: The communication protocol used by the proxy server, such as HTTP, HTTPS, or SOCKS.
4. Authentication: The credentials required to access the proxy server, including username and password, if the proxy server requires authentication.
5. Connection timeout: The maximum amount of time, in seconds, that the client will wait for a response from the proxy server before timing out and attempting to reconnect.
6. Socks version: The version of the SOCKS protocol used by the proxy server, such as SOCKS4 or SOCKS5.
7. Proxy type: The type of proxy server, such as HTTP, HTTPS, or SOCKS, that the client will use to route requests and receive responses.
8. Bypass list: A list of domains or IP addresses that the client will bypass the proxy server for, allowing direct access to those resources.
9. Connection encryption: The method used to encrypt the data transmitted between the client and the proxy server, such as SSL or TLS.
10. User-agent: The user-agent string that the client will use to identify itself to the proxy server and destination server.
What else…