IP | Country | PORT | ADDED |
---|---|---|---|
82.119.96.254 | sk | 80 | 13 minutes ago |
32.223.6.94 | us | 80 | 13 minutes ago |
50.207.199.80 | us | 80 | 13 minutes ago |
50.145.138.156 | us | 80 | 13 minutes ago |
50.175.123.232 | us | 80 | 13 minutes ago |
50.221.230.186 | us | 80 | 13 minutes ago |
72.10.160.91 | ca | 12411 | 13 minutes ago |
50.175.123.235 | us | 80 | 13 minutes ago |
50.122.86.118 | us | 80 | 13 minutes ago |
154.16.146.47 | us | 80 | 13 minutes ago |
80.120.130.231 | at | 80 | 13 minutes ago |
50.171.122.28 | us | 80 | 13 minutes ago |
50.168.72.112 | us | 80 | 13 minutes ago |
50.169.222.242 | us | 80 | 13 minutes ago |
190.58.248.86 | tt | 80 | 13 minutes ago |
67.201.58.190 | us | 4145 | 13 minutes ago |
105.214.49.116 | za | 5678 | 13 minutes ago |
183.240.46.42 | cn | 80 | 13 minutes ago |
50.168.61.234 | us | 80 | 13 minutes ago |
213.33.126.130 | at | 80 | 13 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.
Automapper is a library primarily used for mapping data between objects in C# applications. It is not specifically designed for parsing XML, but you can use it in conjunction with other libraries, such as XmlDocument or XDocument, to map XML data to C# objects.
Here's a simple example of parsing XML using XDocument and Automapper:
Assuming you have the following XML structure:
John
Doe
And a corresponding C# class:
public class PersonDto
{
public string FirstName { get; set; }
public string LastName { get; set; }
}
You can use Automapper to map the XML data to your C# object:
using AutoMapper;
using System;
using System.Xml.Linq;
class Program
{
static void Main()
{
// XML data
string xmlData = "John Doe ";
// Parse XML using XDocument
XDocument xmlDoc = XDocument.Parse(xmlData);
// Configure Automapper
MapperConfiguration config = new MapperConfiguration(cfg =>
{
cfg.CreateMap()
.ForMember(dest => dest.FirstName, opt => opt.MapFrom(src => src.Element("FirstName").Value))
.ForMember(dest => dest.LastName, opt => opt.MapFrom(src => src.Element("LastName").Value));
});
IMapper mapper = config.CreateMapper();
// Map XML to C# object
PersonDto personDto = mapper.Map(xmlDoc.Root);
// Print the result
Console.WriteLine($"FirstName: {personDto.FirstName}");
Console.WriteLine($"LastName: {personDto.LastName}");
}
}
In this example, we use Automapper's CreateMap method to define a mapping between XElement and PersonDto. The ForMember method is used to specify how each property of PersonDto should be mapped from the corresponding XML element.
Keep in mind that Automapper may be more beneficial when dealing with complex object mappings rather than simple XML parsing scenarios. For straightforward XML parsing tasks, using XDocument or XmlDocument directly might be sufficient.
Encrypting a UDP connection with TLS is not directly possible, as TLS is designed to work with TCP connections. However, you can use Datagram TLS (DTLS) or Secure Reliable Datagram (SRD) to achieve a similar result. DTLS is an extension of TLS that works with UDP, while SRD is a protocol that provides secure and reliable datagrams over UDP.
Here's an example of how to encrypt a UDP connection with DTLS using the Crypto++ library in C++:
1. First, install the Crypto++ library on your system. You can find the installation instructions at: https://www.cryptopp.com/wiki/Installing
2. Create a new C++ project and include the necessary Crypto++ headers.
3. Define the necessary structures and classes for DTLS:
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
4. Implement the DTLS handshake and data exchange:
int main()
{
try
{
CryptoPP::AutoSeededRandomPool rng;
// Generate a DTLS context
CryptoPP::DTLS_Context dtlsContext(CryptoPP::DTLS_CLIENT);
// Set up the DTLS context
dtlsContext.SetPeerCertVerificationCallback(
[](const CryptoPP::DTLS_PeerCertificate& peerCert, int& errorCode) -> bool
{
// Verify the peer certificate
// Return true if the certificate is valid, false otherwise
});
// Perform the DTLS handshake
dtlsContext.StartHandshake();
// Send data over the encrypted UDP connection
std::string data = "Hello, secure UDP!";
std::vector encryptedData;
dtlsContext.Encrypt(data.data(), data.size(), encryptedData);
// Receive data over the encrypted UDP connection
std::vector receivedData(encryptedData.size());
dtlsContext.Decrypt(receivedData.data(), receivedData.size(), encryptedData);
// Convert the received data to a string
std::string receivedString(receivedData.begin(), receivedData.end());
// Output the received data
To enable proxies in your MacBook, you need to go to "System Preferences" (from the "Apple" menu), then open "Network", then - specify the type of connection you are using. Then select "Advanced Settings" (can be named as "Advanced"), then click on "Proxy". And then - either set the parameters manually, or specify a configuration file.
If you plan to use a proxy every day, it is recommended to pay attention to paid services. There, the connection is as reliable as possible, with no bandwidth limitations. However, the performance of numerous free proxies is not guaranteed.
What else…