RSA.cs 5.6 KB

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  1. using System;
  2. using System.Collections.Generic;
  3. using System.Linq;
  4. using System.Security.Cryptography;
  5. using System.Text;
  6. using System.Threading.Tasks;
  7. using XF.Domain.Exceptions;
  8. namespace Hotline.Application.Tools
  9. {
  10. /// <summary>
  11. /// 加密、解密
  12. /// </summary>
  13. public class RSA
  14. {
  15. /// <summary>
  16. /// RSA加密
  17. /// </summary>
  18. /// <param name="Data">原文</param>
  19. /// <param name="PublicKeyString">公钥</param>
  20. /// <param name="KeyType">密钥类型XML/PEM</param>
  21. /// <returns></returns>
  22. public static string RSAEncrypt(string Data, string PublicKeyString, string KeyType)
  23. {
  24. byte[] data = Encoding.GetEncoding("UTF-8").GetBytes(Data);
  25. RSACryptoServiceProvider rsa = new RSACryptoServiceProvider();
  26. switch (KeyType)
  27. {
  28. case "XML":
  29. rsa.FromXmlString(PublicKeyString);
  30. break;
  31. case "PEM":
  32. rsa = RSA_PEM.FromPEM(PublicKeyString);
  33. break;
  34. default:
  35. throw UserFriendlyException.SameMessage("不支持的密钥类型");
  36. }
  37. //加密块最大长度限制,如果加密数据的长度超过 秘钥长度/8-11,会引发长度不正确的异常,所以进行数据的分块加密
  38. int MaxBlockSize = rsa.KeySize / 8 - 11;
  39. //正常长度
  40. if (data.Length <= MaxBlockSize)
  41. {
  42. byte[] hashvalueEcy = rsa.Encrypt(data, false); //加密
  43. return System.Convert.ToBase64String(hashvalueEcy);
  44. }
  45. //长度超过正常值
  46. else
  47. {
  48. using (MemoryStream PlaiStream = new MemoryStream(data))
  49. using (MemoryStream CrypStream = new MemoryStream())
  50. {
  51. Byte[] Buffer = new Byte[MaxBlockSize];
  52. int BlockSize = PlaiStream.Read(Buffer, 0, MaxBlockSize);
  53. while (BlockSize > 0)
  54. {
  55. Byte[] ToEncrypt = new Byte[BlockSize];
  56. Array.Copy(Buffer, 0, ToEncrypt, 0, BlockSize);
  57. Byte[] Cryptograph = rsa.Encrypt(ToEncrypt, false);
  58. CrypStream.Write(Cryptograph, 0, Cryptograph.Length);
  59. BlockSize = PlaiStream.Read(Buffer, 0, MaxBlockSize);
  60. }
  61. return System.Convert.ToBase64String(CrypStream.ToArray(), Base64FormattingOptions.None);
  62. }
  63. }
  64. }
  65. /// <summary>
  66. /// RSA解密
  67. /// </summary>
  68. /// <param name="Data">密文</param>
  69. /// <param name="PrivateKeyString">私钥</param>
  70. /// <param name="KeyType">密钥类型XML/PEM</param>
  71. /// <returns></returns>
  72. public static string RSADecrypt(string Data, string PrivateKeyString, string KeyType)
  73. {
  74. // 把+号,替换回来
  75. Data = Data.Replace("%2B", "+");
  76. // 补全密文
  77. Data = CorrectionCiphertext(Data);
  78. RSACryptoServiceProvider rsa = new RSACryptoServiceProvider();
  79. switch (KeyType)
  80. {
  81. case "XML":
  82. rsa.FromXmlString(PrivateKeyString);
  83. break;
  84. case "PEM":
  85. rsa = RSA_PEM.FromPEM(PrivateKeyString);
  86. break;
  87. default:
  88. throw UserFriendlyException.SameMessage("不支持的密钥类型");
  89. }
  90. int MaxBlockSize = rsa.KeySize / 8; //解密块最大长度限制
  91. //正常解密
  92. if (Data.Length <= MaxBlockSize)
  93. {
  94. byte[] hashvalueDcy = rsa.Decrypt(System.Convert.FromBase64String(Data), false);//解密
  95. return Encoding.GetEncoding("UTF-8").GetString(hashvalueDcy);
  96. }
  97. //分段解密
  98. else
  99. {
  100. using (MemoryStream CrypStream = new MemoryStream(System.Convert.FromBase64String(Data)))
  101. using (MemoryStream PlaiStream = new MemoryStream())
  102. {
  103. Byte[] Buffer = new Byte[MaxBlockSize];
  104. int BlockSize = CrypStream.Read(Buffer, 0, MaxBlockSize);
  105. while (BlockSize > 0)
  106. {
  107. Byte[] ToDecrypt = new Byte[BlockSize];
  108. Array.Copy(Buffer, 0, ToDecrypt, 0, BlockSize);
  109. Byte[] Plaintext = rsa.Decrypt(ToDecrypt, false);
  110. PlaiStream.Write(Plaintext, 0, Plaintext.Length);
  111. BlockSize = CrypStream.Read(Buffer, 0, MaxBlockSize);
  112. }
  113. string output = Encoding.GetEncoding("UTF-8").GetString(PlaiStream.ToArray());
  114. return output;
  115. }
  116. }
  117. }
  118. /// <summary>
  119. /// 补全密文
  120. /// </summary>
  121. /// <param name="strCiphertext">密文</param>
  122. /// <param name="keySize">秘钥长度</param>
  123. /// <returns>补全后的密文</returns>
  124. private static string CorrectionCiphertext(string strCiphertext, int keySize = 1024)
  125. {
  126. int ciphertextLength = keySize / 8;
  127. byte[] data = Convert.FromBase64String(strCiphertext);
  128. var newData = new List<byte>(data);
  129. while (newData.Count < ciphertextLength)
  130. {
  131. newData.Insert(0, 0x00);
  132. }
  133. return Convert.ToBase64String(newData.ToArray());
  134. }
  135. }
  136. }