IP | Country | PORT | ADDED |
---|---|---|---|
162.19.107.54 | fr | 55624 | 40 minutes ago |
178.220.148.82 | rs | 10801 | 40 minutes ago |
85.8.68.2 | de | 80 | 40 minutes ago |
128.140.113.110 | de | 4145 | 40 minutes ago |
117.74.125.210 | id | 1133 | 40 minutes ago |
50.217.226.44 | us | 80 | 40 minutes ago |
79.101.45.94 | rs | 56921 | 40 minutes ago |
84.247.168.26 | de | 1366 | 40 minutes ago |
67.43.236.20 | ca | 27431 | 40 minutes ago |
154.16.146.47 | us | 80 | 40 minutes ago |
154.16.146.48 | us | 80 | 40 minutes ago |
72.10.164.178 | ca | 3117 | 40 minutes ago |
192.111.134.10 | ca | 4145 | 40 minutes ago |
170.78.211.161 | mx | 1080 | 40 minutes ago |
221.153.92.39 | kr | 80 | 40 minutes ago |
170.254.92.198 | ar | 4153 | 40 minutes ago |
192.252.211.193 | us | 4145 | 40 minutes ago |
50.169.222.241 | us | 80 | 40 minutes ago |
176.241.82.149 | iq | 5678 | 40 minutes ago |
181.129.62.2 | co | 47377 | 40 minutes ago |
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When using a proxy, Google Chrome warns the user about it at startup. To connect directly, you must disable proxies at system level. That is, go to "Settings" Windows, then - "Network and Internet", in the section "Proxy server" disable the corresponding item.
SQLite is a relational database management system, and XML is a markup language for encoding structured data. SQLite itself doesn't inherently support XML parsing. However, if you have XML data that you want to store in SQLite or retrieve from SQLite, you can follow a process of converting between XML and SQLite data.
Here's a general approach:
Convert XML to a Text Representation: Convert your XML data into a text representation, for example, by serializing it as a string. This can be done using XML serialization libraries available in your programming language.
Store the Text in a SQLite Table: Create a table in SQLite with a column to store the serialized XML text. Insert the XML data into this table.
CREATE TABLE xml_data (id INTEGER PRIMARY KEY, xml_text TEXT);
INSERT INTO xml_data (xml_text) VALUES ('value ');
Retrieve the Text from the SQLite Table: Query the SQLite table to retrieve the stored XML text.
SELECT xml_text FROM xml_data WHERE id = 1;
Convert Text to XML: Deserialize the retrieved text back into XML using XML parsing libraries.
Example in Python using the xml.etree.ElementTree
module:
import xml.etree.ElementTree as ET
# Retrieve XML text from SQLite (replace with actual retrieval logic)
xml_text = "value "
# Parse XML text
root = ET.fromstring(xml_text)
# Access XML elements as needed
element_value = root.find('element').text
print("Element value:", element_value)
This is a basic approach, and the exact steps may depend on the programming language you're using and the tools available in that language for XML serialization and deserialization.
If you're working with XML data frequently, consider exploring databases designed for handling XML, such as XML databases or document-oriented databases, which may offer more native support for XML storage and retrieval. SQLite, being a relational database, is optimized for relational data rather than XML.
To use Selenium in Python to press a button on a site for a few seconds, you can follow these steps:
1. Install Selenium and a WebDriver for the browser you want to use (e.g., ChromeDriver for Google Chrome, GeckoDriver for Firefox).
2. Import the necessary modules in your Python script:
from selenium import webdriver
from selenium.webdriver.common.by import By
from selenium.webdriver.common.keys import Keys
from selenium.webdriver.support.ui import WebDriverWait
from selenium.webdriver.support import expected_conditions as EC
3. Initialize the WebDriver and navigate to the desired website:
driver = webdriver.Chrome(executable_path='path/to/chromedriver')
driver.get('https://example.com')
4. Locate the button you want to press using one of the methods provided by Selenium, such as find_element_by_* or find_elements_by_*.
5. Use the ActionChains class to simulate a click and hold action on the button:
from selenium.webdriver.common.action_chains import ActionChains
button = driver.find_element(By.ID, 'button-id')
action = ActionChains(driver)
action.move_to_element(button).click_and_hold().perform()
# Wait for a few seconds
time.sleep(5) # Adjust the duration as needed
# Release the button
action.release().perform()
6. Close the WebDriver after the action is complete:
driver.quit()
Note: Make sure to replace 'path/to/chromedriver' with the actual path to your WebDriver executable and 'button-id' with the actual ID of the button you want to press.
Also, the time.sleep(5) function is used to simulate holding the button for a few seconds. Adjust the duration by changing the 5 to the desired number of seconds.
The main task of these two popular technologies is to provide security for the Internet user. Despite a certain similarity of tasks, they are performed absolutely differently. Proxy, although it allows you to remain anonymous and bypass blocked sites, it is still quite vulnerable, especially when it comes to untested services. VPN in this regard looks preferable, because thanks to end-to-end encryption it reliably protects information from the entry point to the exit point.
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.
What else…