实例介绍
【实例截图】
【核心代码】
using System;
using System.Collections.Generic;
using System.ComponentModel;
using System.Data;
using System.Drawing;
using System.Linq;
using System.Text;
using System.Windows.Forms;
using System.Security.Cryptography;
using System.Security.Cryptography.X509Certificates;
using System.Text;
namespace 用RSA证书文件加密和解密示例
{
public partial class Form1 : Form
{
public Form1()
{
InitializeComponent();
}
private void button1_Click(object sender, EventArgs e)
{
try
{
UnicodeEncoding ByteConverter = new UnicodeEncoding();
//Create byte arrays to hold original, encrypted, and decrypted data.
byte[] dataToEncrypt = ByteConverter.GetBytes(this.textBox1.Text.ToString());
byte[] encryptedData;
byte[] decryptedData;
X509Certificate2 pubcrt = new X509Certificate2(AppDomain.CurrentDomain.BaseDirectory "localhost.cer");
RSACryptoServiceProvider pubkey = (RSACryptoServiceProvider)pubcrt.PublicKey.Key;
//X509Certificate2 prvcrt = new X509Certificate2(AppDomain.CurrentDomain.BaseDirectory "localhost.pfx", "***password***", X509KeyStorageFlags.Exportable);
X509Certificate2 prvcrt = new X509Certificate2(AppDomain.CurrentDomain.BaseDirectory "localhost.pfx", "a", X509KeyStorageFlags.Exportable);
RSACryptoServiceProvider prvkey = (RSACryptoServiceProvider)prvcrt.PrivateKey;
//Create a new instance of RSACryptoServiceProvider to generate
//public and private key data.
//using (RSACryptoServiceProvider RSA = new RSACryptoServiceProvider())
//{
//Console.WriteLine(RSA.ToXmlString(false));
//Pass the data to ENCRYPT, the public key information
//(using RSACryptoServiceProvider.ExportParameters(false),
//and a boolean flag specifying no OAEP padding.
encryptedData = RSAEncrypt(dataToEncrypt, pubkey.ExportParameters(false), false);
this.label1.Text= this.label1.Text "Encrypted plaintext: " Convert.ToBase64String(encryptedData);
//Pass the data to DECRYPT, the private key information
//(using RSACryptoServiceProvider.ExportParameters(true),
//and a boolean flag specifying no OAEP padding.
decryptedData = RSADecrypt(encryptedData, prvkey.ExportParameters(true), false);
//Display the decrypted plaintext to the console.
this.label2.Text=this.label2.Text "Decrypted plaintext: " ByteConverter.GetString(decryptedData);
//}
prvkey.Clear();
pubkey.Clear();
Console.Read();
}
catch (ArgumentNullException)
{
//Catch this exception in case the encryption did
//not succeed.
Console.WriteLine("Encryption failed.");
}
}
static public byte[] RSAEncrypt(byte[] DataToEncrypt, RSAParameters RSAKeyInfo, bool DoOAEPPadding)
{
try
{
byte[] encryptedData;
//Create a new instance of RSACryptoServiceProvider.
using (RSACryptoServiceProvider RSA = new RSACryptoServiceProvider())
{
//Import the RSA Key information. This only needs
//toinclude the public key information.
RSA.ImportParameters(RSAKeyInfo);
//Encrypt the passed byte array and specify OAEP padding.
//OAEP padding is only available on Microsoft Windows XP or
//later.
encryptedData = RSA.Encrypt(DataToEncrypt, DoOAEPPadding);
}
return encryptedData;
}
//Catch and display a CryptographicException
//to the console.
catch (CryptographicException e)
{
Console.WriteLine(e.Message);
return null;
}
}
static public byte[] RSADecrypt(byte[] DataToDecrypt, RSAParameters RSAKeyInfo, bool DoOAEPPadding)
{
try
{
byte[] decryptedData;
//Create a new instance of RSACryptoServiceProvider.
using (RSACryptoServiceProvider RSA = new RSACryptoServiceProvider())
{
//Import the RSA Key information. This needs
//to include the private key information.
RSA.ImportParameters(RSAKeyInfo);
//Decrypt the passed byte array and specify OAEP padding.
//OAEP padding is only available on Microsoft Windows XP or
//later.
decryptedData = RSA.Decrypt(DataToDecrypt, DoOAEPPadding);
}
return decryptedData;
}
//Catch and display a CryptographicException
//to the console.
catch (CryptographicException e)
{
Console.WriteLine(e.ToString());
return null;
}
}
}
}
标签: 加密
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