IP | Country | PORT | ADDED |
---|---|---|---|
32.223.6.94 | us | 80 | 32 minutes ago |
50.217.226.44 | us | 80 | 32 minutes ago |
41.207.187.178 | tg | 80 | 32 minutes ago |
50.219.249.62 | us | 80 | 32 minutes ago |
170.78.211.161 | mx | 1080 | 32 minutes ago |
203.99.240.179 | jp | 80 | 32 minutes ago |
80.228.235.6 | 80 | 32 minutes ago | |
50.239.72.17 | us | 80 | 32 minutes ago |
50.232.104.86 | us | 80 | 32 minutes ago |
50.122.86.118 | us | 80 | 32 minutes ago |
80.120.130.231 | at | 80 | 32 minutes ago |
203.99.240.182 | jp | 80 | 32 minutes ago |
50.169.222.241 | us | 80 | 32 minutes ago |
170.254.92.198 | ar | 4153 | 32 minutes ago |
190.58.248.86 | tt | 80 | 32 minutes ago |
213.33.126.130 | at | 80 | 32 minutes ago |
50.207.199.86 | us | 80 | 32 minutes ago |
72.10.164.178 | ca | 30043 | 32 minutes ago |
85.8.68.2 | de | 80 | 32 minutes ago |
84.247.168.26 | de | 1366 | 32 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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Start the program and add a template. Click on it twice to open a window. Here you need to specify the path to the file with the proxy and save the settings. Enter the following format in the file: HTTPS - 195.3.218.232:8000 - if the proxy is bound to your IP, or login:[email protected]:8000 - if you use a proxy with username and password authentication. Under "Settings" click on "Default", or fill everything in manually, and then confirm the changes you made.
Parsing HTML in C++ can be achieved using libraries that provide HTML parsing capabilities. One such popular library is Gumbo, developed by Google. Gumbo is an HTML5 parsing library that provides an easy-to-use API for extracting information from HTML documents.
Here's a basic example of parsing HTML using Gumbo in C++
Install Gumbo Library
Follow the installation instructions on the Gumbo GitHub repository to build and install the library.
Include Gumbo Headers in Your C++ Code:
#include
Write HTML Parsing Code:
#include
#include
void parseHtml(const char* html) {
GumboOutput* output = gumbo_parse(html);
// Process the parsed HTML tree
// ...
// Clean up
gumbo_destroy_output(&kGumboDefaultOptions, output);
}
int main() {
const char* html = "Sample HTML Hello, World!
";
parseHtml(html);
return 0;
}
The parseHtml function takes an HTML string as input, uses Gumbo to parse it, and then you can traverse the resulting parse tree to extract information.
Traverse the Parse Tree:
void traverseNode(GumboNode* node) {
if (node->type == GUMBO_NODE_ELEMENT) {
// Handle element node
GumboElement* element = &node->v.element;
// Extract tag name: element->tag
// Process attributes: element->attributes
} else if (node->type == GUMBO_NODE_TEXT) {
// Handle text node
GumboText* text = &node->v.text;
// Extract text content: text->text
}
// Recursively traverse child nodes
if (node->type != GUMBO_NODE_TEXT && node->v.element.children.length > 0) {
for (unsigned int i = 0; i < node->v.element.children.length; ++i) {
traverseNode(static_cast(node->v.element.children.data[i]));
}
}
}
void processParsedHtml(GumboNode* root) {
// Traverse the parsed HTML tree
traverseNode(root);
}
Modify the traverseNode function according to your needs to extract information from HTML elements and text nodes.
Compile and Run:
Compile your C++ code with the Gumbo library linked.
Run the executable.
Remember to handle memory management properly and check for errors when using Gumbo. The example above provides a basic framework, and you may need to adapt it based on the specific HTML structure you are dealing with.
Building a chain of proxies in Selenium involves configuring a WebDriver with a Proxy object that represents a chain of proxies. Here's an example using Python with Selenium and the Chrome WebDriver:
from selenium import webdriver
from selenium.webdriver.common.proxy import Proxy, ProxyType
# Create a Proxy object for the first proxy in the chain
proxy1 = Proxy()
proxy1.http_proxy = "http://proxy1.example.com:8080"
proxy1.ssl_proxy = "http://proxy1.example.com:8080"
proxy1.proxy_type = ProxyType.MANUAL
# Create a Proxy object for the second proxy in the chain
proxy2 = Proxy()
proxy2.http_proxy = "http://proxy2.example.com:8080"
proxy2.ssl_proxy = "http://proxy2.example.com:8080"
proxy2.proxy_type = ProxyType.MANUAL
# Create a Proxy object for the final proxy in the chain
proxy3 = Proxy()
proxy3.http_proxy = "http://proxy3.example.com:8080"
proxy3.ssl_proxy = "http://proxy3.example.com:8080"
proxy3.proxy_type = ProxyType.MANUAL
# Create a chain of proxies
proxies_chain = f"{proxy1.proxy, proxy2.proxy, proxy3.proxy}"
# Set up ChromeOptions with the proxy chain
chrome_options = webdriver.ChromeOptions()
chrome_options.add_argument(f"--proxy-server={proxies_chain}")
# Create the WebDriver with ChromeOptions
driver = webdriver.Chrome(options=chrome_options)
# Now you can use the driver with the proxy chain for your automation tasks
driver.get("https://example.com")
# Close the browser window when done
driver.quit()
In this example:
Three Proxy objects (proxy1, proxy2, and proxy3) are created, each representing a different proxy in the chain. You need to replace the placeholder URLs (http://proxy1.example.com:8080, etc.) with the actual proxy server URLs.
The ProxyType.MANUAL option is used to indicate that the proxy settings are configured manually.
The proxies_chain variable is a comma-separated string representing the chain of proxies.
The --proxy-server option is added to ChromeOptions to specify the proxy chain.
A Chrome WebDriver instance is created with the configured ChromeOptions.
In Selenium with Python, you can add cookies to your browser session using the add_cookie method of the WebDriver's options or add_cookie method of the WebDriver instance. If you have cookies saved in a file, you can read the file and then add the cookies to your Selenium session. Here's an example:
from selenium import webdriver
import pickle
# Create a new instance of the browser (e.g., Chrome)
driver = webdriver.Chrome()
# Read cookies from a file (replace 'cookies.pkl' with your actual file name)
with open('cookies.pkl', 'rb') as cookies_file:
cookies = pickle.load(cookies_file)
# Add each cookie to the browser session
for cookie in cookies:
driver.add_cookie(cookie)
# Now the browser should have the added cookies
# Example: Navigate to a website after setting cookies
driver.get('https://example.com')
# Continue with your script...
# Close the browser when done
driver.quit()
In this example:
pickle
module. Make sure your cookies file is in the correct format (a list of dictionaries).add_cookie
method.https://example.com
) after setting the cookies. Adjust this part according to your specific use case.driver.quit()
when the script is done.Make sure to replace 'cookies.pkl'
with the actual path to your cookies file.
Note: The format of the cookies file is crucial. It should be a list of dictionaries, and each dictionary should contain at least the keys 'name', 'value', 'domain', and 'path'. If the cookies were obtained using get_cookies()
in a previous Selenium session, you can directly save the result using pickle.dump(cookies, file)
.
Here's a simple example of how to save cookies:
from selenium import webdriver
import pickle
driver = webdriver.Chrome()
driver.get('https://example.com')
# Get cookies
cookies = driver.get_cookies()
# Save cookies to a file
with open('cookies.pkl', 'wb') as cookies_file:
pickle.dump(cookies, cookies_file)
driver.quit()
Then, you can use the first script to load and set these cookies in a new Selenium session.
It is recommended to use third-party programs that allow redirecting all traffic through a proxy server. For example, ProxyDroid, EveryProxy. It is not possible to use proxies through the regular menu. Although in phones from some manufacturers such possibility has been added.
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