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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