Encrypt.cs 46 KB

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  1. using System;
  2. using System.IO;
  3. using System.Linq;
  4. using System.Security.Cryptography;
  5. using System.Text;
  6. using System.Text.RegularExpressions;
  7. namespace Masuit.Tools.Security
  8. {
  9. /// <summary>
  10. /// 常用的加密解密算法
  11. /// </summary>
  12. public static class Encrypt
  13. {
  14. #region DES对称加密解密
  15. /// <summary>
  16. /// 加密密钥,默认取“masuit”的MD5值
  17. /// </summary>
  18. public static string DefaultEncryptKey = "masuit".MDString2();
  19. /// <summary>
  20. /// 使用默认加密
  21. /// </summary>
  22. /// <param name="strText">被加密的字符串</param>
  23. /// <returns>加密后的数据</returns>
  24. public static string DesEncrypt(this string strText)
  25. {
  26. try
  27. {
  28. return DesEncrypt(strText, DefaultEncryptKey);
  29. }
  30. catch
  31. {
  32. return "";
  33. }
  34. }
  35. /// <summary>
  36. /// 使用默认解密
  37. /// </summary>
  38. /// <param name="strText">需要解密的 字符串</param>
  39. /// <returns>解密后的数据</returns>
  40. public static string DesDecrypt(this string strText)
  41. {
  42. try
  43. {
  44. return DesDecrypt(strText, DefaultEncryptKey);
  45. }
  46. catch
  47. {
  48. return "";
  49. }
  50. }
  51. /// <summary>
  52. /// 加密字符串
  53. /// 加密密钥必须为8位
  54. /// </summary>
  55. /// <param name="strText">被加密的字符串</param>
  56. /// <param name="strEncrKey">8位长度密钥</param>
  57. /// <returns>加密后的数据</returns>
  58. public static string DesEncrypt(this string strText, string strEncrKey)
  59. {
  60. if (strEncrKey.Length < 8)
  61. {
  62. throw new Exception("密钥长度无效,密钥必须是8位!");
  63. }
  64. StringBuilder ret = new StringBuilder();
  65. using var des = new DESCryptoServiceProvider();
  66. byte[] inputByteArray = Encoding.Default.GetBytes(strText);
  67. des.Key = Encoding.ASCII.GetBytes(strEncrKey.Substring(0, 8));
  68. des.IV = Encoding.ASCII.GetBytes(strEncrKey.Substring(0, 8));
  69. MemoryStream ms = new MemoryStream();
  70. using var cs = new CryptoStream(ms, des.CreateEncryptor(), CryptoStreamMode.Write);
  71. cs.Write(inputByteArray, 0, inputByteArray.Length);
  72. cs.FlushFinalBlock();
  73. foreach (byte b in ms.ToArray())
  74. {
  75. ret.AppendFormat($"{b:X2}");
  76. }
  77. return ret.ToString();
  78. }
  79. /// <summary>
  80. /// 加密字符串
  81. /// 加密密钥必须为8位
  82. /// </summary>
  83. /// <param name="strText">被加密的字符串</param>
  84. /// <param name="desKey"></param>
  85. /// <param name="desIV"></param>
  86. /// <returns>加密后的数据</returns>
  87. public static string DesEncrypt(this string strText, byte[] desKey, byte[] desIV)
  88. {
  89. StringBuilder ret = new StringBuilder();
  90. using var des = new DESCryptoServiceProvider();
  91. byte[] inputByteArray = Encoding.Default.GetBytes(strText);
  92. des.Key = desKey;
  93. des.IV = desIV;
  94. MemoryStream ms = new MemoryStream();
  95. using var cs = new CryptoStream(ms, des.CreateEncryptor(), CryptoStreamMode.Write);
  96. cs.Write(inputByteArray, 0, inputByteArray.Length);
  97. cs.FlushFinalBlock();
  98. foreach (byte b in ms.ToArray())
  99. {
  100. ret.AppendFormat($"{b:X2}");
  101. }
  102. return ret.ToString();
  103. }
  104. /// <summary>
  105. /// DES加密文件
  106. /// </summary>
  107. /// <param name="fin">文件输入流</param>
  108. /// <param name="outFilePath">文件输出路径</param>
  109. /// <param name="strEncrKey">加密密钥</param>
  110. public static void DesEncrypt(this FileStream fin, string outFilePath, string strEncrKey)
  111. {
  112. byte[] iv =
  113. {
  114. 0x12,
  115. 0x34,
  116. 0x56,
  117. 0x78,
  118. 0x90,
  119. 0xAB,
  120. 0xCD,
  121. 0xEF
  122. };
  123. var byKey = Encoding.UTF8.GetBytes(strEncrKey.Substring(0, 8));
  124. using var fout = new FileStream(outFilePath, FileMode.OpenOrCreate, FileAccess.Write);
  125. fout.SetLength(0);
  126. byte[] bin = new byte[100];
  127. long rdlen = 0;
  128. long totlen = fin.Length;
  129. DES des = new DESCryptoServiceProvider();
  130. var encStream = new CryptoStream(fout, des.CreateEncryptor(byKey, iv), CryptoStreamMode.Write);
  131. while (rdlen < totlen)
  132. {
  133. var len = fin.Read(bin, 0, 100);
  134. encStream.Write(bin, 0, len);
  135. rdlen += len;
  136. }
  137. }
  138. /// <summary>
  139. /// DES加密文件
  140. /// </summary>
  141. /// <param name="fin">文件输入流</param>
  142. /// <param name="outFilePath">文件输出路径</param>
  143. /// <param name="desKey"></param>
  144. /// <param name="desIV"></param>
  145. public static void DesEncrypt(this FileStream fin, string outFilePath, byte[] desKey, byte[] desIV)
  146. {
  147. using var fout = new FileStream(outFilePath, FileMode.OpenOrCreate, FileAccess.Write);
  148. fout.SetLength(0);
  149. byte[] bin = new byte[100];
  150. long rdlen = 0;
  151. long totlen = fin.Length;
  152. DES des = new DESCryptoServiceProvider();
  153. var encStream = new CryptoStream(fout, des.CreateEncryptor(desKey, desIV), CryptoStreamMode.Write);
  154. while (rdlen < totlen)
  155. {
  156. var len = fin.Read(bin, 0, 100);
  157. encStream.Write(bin, 0, len);
  158. rdlen += len;
  159. }
  160. }
  161. /// <summary>
  162. /// DES解密文件
  163. /// </summary>
  164. /// <param name="fin">输入文件流</param>
  165. /// <param name="outFilePath">文件输出路径</param>
  166. /// <param name="sDecrKey">解密密钥</param>
  167. public static void DesDecrypt(this FileStream fin, string outFilePath, string sDecrKey)
  168. {
  169. byte[] iv =
  170. {
  171. 0x12,
  172. 0x34,
  173. 0x56,
  174. 0x78,
  175. 0x90,
  176. 0xAB,
  177. 0xCD,
  178. 0xEF
  179. };
  180. var byKey = Encoding.UTF8.GetBytes(sDecrKey.Substring(0, 8));
  181. using var fout = new FileStream(outFilePath, FileMode.OpenOrCreate, FileAccess.Write);
  182. fout.SetLength(0);
  183. byte[] bin = new byte[100];
  184. long rdlen = 0;
  185. long totlen = fin.Length;
  186. using DES des = new DESCryptoServiceProvider();
  187. var encStream = new CryptoStream(fout, des.CreateDecryptor(byKey, iv), CryptoStreamMode.Write);
  188. while (rdlen < totlen)
  189. {
  190. var len = fin.Read(bin, 0, 100);
  191. encStream.Write(bin, 0, len);
  192. rdlen += len;
  193. }
  194. }
  195. /// <summary>
  196. /// DES解密文件
  197. /// </summary>
  198. /// <param name="fin">输入文件流</param>
  199. /// <param name="outFilePath">文件输出路径</param>
  200. /// <param name="desKey"></param>
  201. /// <param name="desIV"></param>
  202. public static void DesDecrypt(this FileStream fin, string outFilePath, byte[] desKey, byte[] desIV)
  203. {
  204. using var fout = new FileStream(outFilePath, FileMode.OpenOrCreate, FileAccess.Write);
  205. fout.SetLength(0);
  206. byte[] bin = new byte[100];
  207. long rdlen = 0;
  208. long totlen = fin.Length;
  209. using DES des = new DESCryptoServiceProvider();
  210. var encStream = new CryptoStream(fout, des.CreateDecryptor(desKey, desIV), CryptoStreamMode.Write);
  211. while (rdlen < totlen)
  212. {
  213. var len = fin.Read(bin, 0, 100);
  214. encStream.Write(bin, 0, len);
  215. rdlen += len;
  216. }
  217. }
  218. /// <summary>
  219. /// DES解密算法
  220. /// 密钥为8位
  221. /// </summary>
  222. /// <param name="pToDecrypt">需要解密的字符串</param>
  223. /// <param name="sKey">密钥</param>
  224. /// <returns>解密后的数据</returns>
  225. public static string DesDecrypt(this string pToDecrypt, string sKey)
  226. {
  227. if (sKey.Length < 8)
  228. {
  229. throw new Exception("密钥长度无效,密钥必须是8位!");
  230. }
  231. var ms = new MemoryStream();
  232. using var des = new DESCryptoServiceProvider();
  233. var inputByteArray = new byte[pToDecrypt.Length / 2];
  234. for (int x = 0; x < pToDecrypt.Length / 2; x++)
  235. {
  236. int i = Convert.ToInt32(pToDecrypt.Substring(x * 2, 2), 16);
  237. inputByteArray[x] = (byte)i;
  238. }
  239. des.Key = Encoding.ASCII.GetBytes(sKey.Substring(0, 8));
  240. des.IV = Encoding.ASCII.GetBytes(sKey.Substring(0, 8));
  241. using var cs = new CryptoStream(ms, des.CreateDecryptor(), CryptoStreamMode.Write);
  242. cs.Write(inputByteArray, 0, inputByteArray.Length);
  243. cs.FlushFinalBlock();
  244. return Encoding.Default.GetString(ms.ToArray());
  245. }
  246. /// <summary>
  247. /// DES解密算法
  248. /// 密钥为8位
  249. /// </summary>
  250. /// <param name="pToDecrypt">需要解密的字符串</param>
  251. /// <param name="desKey"></param>
  252. /// <param name="desIV"></param>
  253. /// <returns>解密后的数据</returns>
  254. public static string DesDecrypt(this string pToDecrypt, byte[] desKey, byte[] desIV)
  255. {
  256. var ms = new MemoryStream();
  257. using var des = new DESCryptoServiceProvider();
  258. var inputByteArray = new byte[pToDecrypt.Length / 2];
  259. for (int x = 0; x < pToDecrypt.Length / 2; x++)
  260. {
  261. int i = Convert.ToInt32(pToDecrypt.Substring(x * 2, 2), 16);
  262. inputByteArray[x] = (byte)i;
  263. }
  264. des.Key = desKey;
  265. des.IV = desIV;
  266. using var cs = new CryptoStream(ms, des.CreateDecryptor(), CryptoStreamMode.Write);
  267. cs.Write(inputByteArray, 0, inputByteArray.Length);
  268. cs.FlushFinalBlock();
  269. return Encoding.Default.GetString(ms.ToArray());
  270. }
  271. #endregion
  272. #region 对称加密算法AES RijndaelManaged加密解密
  273. private static readonly string Default_AES_Key = "@#kim123";
  274. private static byte[] Keys =
  275. {
  276. 0x41,
  277. 0x72,
  278. 0x65,
  279. 0x79,
  280. 0x6F,
  281. 0x75,
  282. 0x6D,
  283. 0x79,
  284. 0x53,
  285. 0x6E,
  286. 0x6F,
  287. 0x77,
  288. 0x6D,
  289. 0x61,
  290. 0x6E,
  291. 0x3F
  292. };
  293. /// <summary>
  294. /// 生成符合AES加密规则的密钥
  295. /// </summary>
  296. /// <param name="length"></param>
  297. /// <returns></returns>
  298. public static string GenerateAesKey(int length)
  299. {
  300. var crypto = new AesCryptoServiceProvider
  301. {
  302. KeySize = length,
  303. BlockSize = 128
  304. };
  305. crypto.GenerateKey();
  306. return Convert.ToBase64String(crypto.Key);
  307. }
  308. /// <summary>
  309. /// 对称加密算法AES RijndaelManaged加密(RijndaelManaged(AES)算法是块式加密算法)
  310. /// </summary>
  311. /// <param name="encryptString">待加密字符串</param>
  312. /// <returns>加密结果字符串</returns>
  313. public static string AESEncrypt(this string encryptString)
  314. {
  315. return AESEncrypt(encryptString, Default_AES_Key);
  316. }
  317. /// <summary>
  318. /// 对称加密算法AES RijndaelManaged加密(RijndaelManaged(AES)算法是块式加密算法)
  319. /// </summary>
  320. /// <param name="encryptString">待加密字符串</param>
  321. /// <param name="encryptKey">加密密钥,须半角字符</param>
  322. /// <returns>加密结果字符串</returns>
  323. public static string AESEncrypt(this string encryptString, string encryptKey)
  324. {
  325. encryptKey = GetSubString(encryptKey, 32, "");
  326. encryptKey = encryptKey.PadRight(32, ' ');
  327. using var rijndaelProvider = new RijndaelManaged
  328. {
  329. Key = Encoding.UTF8.GetBytes(encryptKey.Substring(0, 32)),
  330. IV = Keys
  331. };
  332. using ICryptoTransform rijndaelEncrypt = rijndaelProvider.CreateEncryptor();
  333. byte[] inputData = Encoding.UTF8.GetBytes(encryptString);
  334. byte[] encryptedData = rijndaelEncrypt.TransformFinalBlock(inputData, 0, inputData.Length);
  335. return Convert.ToBase64String(encryptedData);
  336. }
  337. /// <summary>
  338. /// 对称加密算法AES RijndaelManaged解密字符串
  339. /// </summary>
  340. /// <param name="decryptString">待解密的字符串</param>
  341. /// <returns>解密成功返回解密后的字符串,失败返源串</returns>
  342. public static string AESDecrypt(this string decryptString)
  343. {
  344. return AESDecrypt(decryptString, Default_AES_Key);
  345. }
  346. /// <summary>
  347. /// 对称加密算法AES RijndaelManaged解密字符串
  348. /// </summary>
  349. /// <param name="decryptString">待解密的字符串</param>
  350. /// <param name="decryptKey">解密密钥,和加密密钥相同</param>
  351. /// <returns>解密成功返回解密后的字符串,失败返回空</returns>
  352. public static string AESDecrypt(this string decryptString, string decryptKey)
  353. {
  354. try
  355. {
  356. decryptKey = GetSubString(decryptKey, 32, "");
  357. decryptKey = decryptKey.PadRight(32, ' ');
  358. using var rijndaelProvider = new RijndaelManaged()
  359. {
  360. Key = Encoding.UTF8.GetBytes(decryptKey),
  361. IV = Keys
  362. };
  363. using ICryptoTransform rijndaelDecrypt = rijndaelProvider.CreateDecryptor();
  364. byte[] inputData = Convert.FromBase64String(decryptString);
  365. byte[] decryptedData = rijndaelDecrypt.TransformFinalBlock(inputData, 0, inputData.Length);
  366. return Encoding.UTF8.GetString(decryptedData);
  367. }
  368. catch
  369. {
  370. return string.Empty;
  371. }
  372. }
  373. /// <summary>
  374. /// 按字节长度(按字节,一个汉字为2个字节)取得某字符串的一部分
  375. /// </summary>
  376. /// <param name="sourceString">源字符串</param>
  377. /// <param name="length">所取字符串字节长度</param>
  378. /// <param name="tailString">附加字符串(当字符串不够长时,尾部所添加的字符串,一般为"...")</param>
  379. /// <returns>某字符串的一部分</returns>
  380. private static string GetSubString(this string sourceString, int length, string tailString)
  381. {
  382. return GetSubString(sourceString, 0, length, tailString);
  383. }
  384. /// <summary>
  385. /// 按字节长度(按字节,一个汉字为2个字节)取得某字符串的一部分
  386. /// </summary>
  387. /// <param name="sourceString">源字符串</param>
  388. /// <param name="startIndex">索引位置,以0开始</param>
  389. /// <param name="length">所取字符串字节长度</param>
  390. /// <param name="tailString">附加字符串(当字符串不够长时,尾部所添加的字符串,一般为"...")</param>
  391. /// <returns>某字符串的一部分</returns>
  392. private static string GetSubString(this string sourceString, int startIndex, int length, string tailString)
  393. {
  394. //当是日文或韩文时(注:中文的范围:\u4e00 - \u9fa5, 日文在\u0800 - \u4e00, 韩文为\xAC00-\xD7A3)
  395. if (Regex.IsMatch(sourceString, "[\u0800-\u4e00]+") || Regex.IsMatch(sourceString, "[\xAC00-\xD7A3]+"))
  396. {
  397. //当截取的起始位置超出字段串长度时
  398. if (startIndex >= sourceString.Length)
  399. {
  400. return string.Empty;
  401. }
  402. return sourceString.Substring(startIndex, length + startIndex > sourceString.Length ? (sourceString.Length - startIndex) : length);
  403. }
  404. //中文字符,如"中国人民abcd123"
  405. if (length <= 0)
  406. {
  407. return string.Empty;
  408. }
  409. byte[] bytesSource = Encoding.Default.GetBytes(sourceString);
  410. //当字符串长度大于起始位置
  411. if (bytesSource.Length > startIndex)
  412. {
  413. int endIndex = bytesSource.Length;
  414. //当要截取的长度在字符串的有效长度范围内
  415. if (bytesSource.Length > (startIndex + length))
  416. {
  417. endIndex = length + startIndex;
  418. }
  419. else
  420. {
  421. //当不在有效范围内时,只取到字符串的结尾
  422. length = bytesSource.Length - startIndex;
  423. tailString = "";
  424. }
  425. var anResultFlag = new int[length];
  426. int nFlag = 0;
  427. //字节大于127为双字节字符
  428. for (int i = startIndex; i < endIndex; i++)
  429. {
  430. if (bytesSource[i] > 127)
  431. {
  432. nFlag++;
  433. if (nFlag == 3)
  434. {
  435. nFlag = 1;
  436. }
  437. }
  438. else
  439. {
  440. nFlag = 0;
  441. }
  442. anResultFlag[i] = nFlag;
  443. }
  444. //最后一个字节为双字节字符的一半
  445. if ((bytesSource[endIndex - 1] > 127) && (anResultFlag[length - 1] == 1))
  446. {
  447. length++;
  448. }
  449. byte[] bsResult = new byte[length];
  450. Array.Copy(bytesSource, startIndex, bsResult, 0, length);
  451. var myResult = Encoding.Default.GetString(bsResult);
  452. myResult += tailString;
  453. return myResult;
  454. }
  455. return string.Empty;
  456. }
  457. /// <summary>
  458. /// 加密文件流
  459. /// </summary>
  460. /// <param name="fs">需要加密的文件流</param>
  461. /// <param name="decryptKey">加密密钥</param>
  462. /// <returns>加密流</returns>
  463. public static CryptoStream AESEncryptStrream(this FileStream fs, string decryptKey)
  464. {
  465. decryptKey = GetSubString(decryptKey, 32, "");
  466. decryptKey = decryptKey.PadRight(32, ' ');
  467. using var rijndaelProvider = new RijndaelManaged()
  468. {
  469. Key = Encoding.UTF8.GetBytes(decryptKey),
  470. IV = Keys
  471. };
  472. using var encrypto = rijndaelProvider.CreateEncryptor();
  473. return new CryptoStream(fs, encrypto, CryptoStreamMode.Write);
  474. }
  475. /// <summary>
  476. /// 解密文件流
  477. /// </summary>
  478. /// <param name="fs">需要解密的文件流</param>
  479. /// <param name="decryptKey">解密密钥</param>
  480. /// <returns>加密流</returns>
  481. public static CryptoStream AESDecryptStream(this FileStream fs, string decryptKey)
  482. {
  483. decryptKey = GetSubString(decryptKey, 32, "");
  484. decryptKey = decryptKey.PadRight(32, ' ');
  485. using var rijndaelProvider = new RijndaelManaged()
  486. {
  487. Key = Encoding.UTF8.GetBytes(decryptKey),
  488. IV = Keys
  489. };
  490. using var decrypto = rijndaelProvider.CreateDecryptor();
  491. return new CryptoStream(fs, decrypto, CryptoStreamMode.Read);
  492. }
  493. /// <summary>
  494. /// 对指定文件AES加密
  495. /// </summary>
  496. /// <param name="input">源文件流</param>
  497. /// <param name="outputPath">输出文件路径</param>
  498. public static void AESEncryptFile(this FileStream input, string outputPath)
  499. {
  500. using var fren = new FileStream(outputPath, FileMode.Create);
  501. using var enfr = AESEncryptStrream(fren, Default_AES_Key);
  502. byte[] bytearrayinput = new byte[input.Length];
  503. input.Read(bytearrayinput, 0, bytearrayinput.Length);
  504. enfr.Write(bytearrayinput, 0, bytearrayinput.Length);
  505. }
  506. /// <summary>
  507. /// 对指定的文件AES解密
  508. /// </summary>
  509. /// <param name="input">源文件流</param>
  510. /// <param name="outputPath">输出文件路径</param>
  511. public static void AESDecryptFile(this FileStream input, string outputPath)
  512. {
  513. using FileStream frde = new FileStream(outputPath, FileMode.Create);
  514. using CryptoStream defr = AESDecryptStream(input, Default_AES_Key);
  515. byte[] bytearrayoutput = new byte[1024];
  516. while (true)
  517. {
  518. var count = defr.Read(bytearrayoutput, 0, bytearrayoutput.Length);
  519. frde.Write(bytearrayoutput, 0, count);
  520. if (count < bytearrayoutput.Length)
  521. {
  522. break;
  523. }
  524. }
  525. }
  526. #endregion
  527. #region Base64加密解密
  528. /// <summary>
  529. /// Base64加密
  530. /// </summary>
  531. /// <param name="str">需要加密的字符串</param>
  532. /// <returns>加密后的数据</returns>
  533. public static string Base64Encrypt(this string str)
  534. {
  535. byte[] encbuff = Encoding.UTF8.GetBytes(str);
  536. return Convert.ToBase64String(encbuff);
  537. }
  538. /// <summary>
  539. /// Base64解密
  540. /// </summary>
  541. /// <param name="str">需要解密的字符串</param>
  542. /// <returns>解密后的数据</returns>
  543. public static string Base64Decrypt(this string str)
  544. {
  545. byte[] decbuff = Convert.FromBase64String(str);
  546. return Encoding.UTF8.GetString(decbuff);
  547. }
  548. #endregion
  549. /// <summary>
  550. /// SHA256函数
  551. /// </summary>
  552. /// <param name="str">原始字符串</param>
  553. /// <returns>SHA256结果(返回长度为44字节的字符串)</returns>
  554. public static string SHA256(this string str)
  555. {
  556. byte[] sha256Data = Encoding.UTF8.GetBytes(str);
  557. using var sha256 = new SHA256Managed();
  558. byte[] result = sha256.ComputeHash(sha256Data);
  559. return Convert.ToBase64String(result); //返回长度为44字节的字符串
  560. }
  561. #region MD5加密算法
  562. #region 对字符串进行MD5加密
  563. /// <summary>
  564. /// 对字符串进行MD5加密
  565. /// </summary>
  566. /// <param name="message">需要加密的字符串</param>
  567. /// <returns>加密后的结果</returns>
  568. public static string MDString(this string message)
  569. {
  570. MD5 md5 = MD5.Create();
  571. byte[] buffer = Encoding.Default.GetBytes(message);
  572. byte[] bytes = md5.ComputeHash(buffer);
  573. return bytes.Aggregate("", (current, b) => current + b.ToString("x2"));
  574. }
  575. /// <summary>
  576. /// 对字符串进行MD5二次加密
  577. /// </summary>
  578. /// <param name="message">需要加密的字符串</param>
  579. /// <returns>加密后的结果</returns>
  580. public static string MDString2(this string message) => MDString(MDString(message));
  581. /// <summary>
  582. /// MD5 三次加密算法
  583. /// </summary>
  584. /// <param name="s">需要加密的字符串</param>
  585. /// <returns>MD5字符串</returns>
  586. public static string MDString3(this string s)
  587. {
  588. using MD5 md5 = MD5.Create();
  589. byte[] bytes = Encoding.ASCII.GetBytes(s);
  590. byte[] bytes1 = md5.ComputeHash(bytes);
  591. byte[] bytes2 = md5.ComputeHash(bytes1);
  592. byte[] bytes3 = md5.ComputeHash(bytes2);
  593. return bytes3.Aggregate("", (current, b) => current + b.ToString("x2"));
  594. }
  595. /// <summary>
  596. /// 对字符串进行MD5加盐加密
  597. /// </summary>
  598. /// <param name="message">需要加密的字符串</param>
  599. /// <param name="salt">盐</param>
  600. /// <returns>加密后的结果</returns>
  601. public static string MDString(this string message, string salt) => MDString(message + salt);
  602. /// <summary>
  603. /// 对字符串进行MD5二次加盐加密
  604. /// </summary>
  605. /// <param name="message">需要加密的字符串</param>
  606. /// <param name="salt">盐</param>
  607. /// <returns>加密后的结果</returns>
  608. public static string MDString2(this string message, string salt) => MDString(MDString(message + salt), salt);
  609. /// <summary>
  610. /// MD5 三次加密算法
  611. /// </summary>
  612. /// <param name="s">需要加密的字符串</param>
  613. /// <param name="salt">盐</param>
  614. /// <returns>MD5字符串</returns>
  615. public static string MDString3(this string s, string salt)
  616. {
  617. using MD5 md5 = MD5.Create();
  618. byte[] bytes = Encoding.ASCII.GetBytes(s + salt);
  619. byte[] bytes1 = md5.ComputeHash(bytes);
  620. byte[] bytes2 = md5.ComputeHash(bytes1);
  621. byte[] bytes3 = md5.ComputeHash(bytes2);
  622. return bytes3.Aggregate("", (current, b) => current + b.ToString("x2"));
  623. }
  624. #endregion
  625. #region 获取文件的MD5值
  626. /// <summary>
  627. /// 获取文件的MD5值
  628. /// </summary>
  629. /// <param name="fileName">需要求MD5值的文件的文件名及路径</param>
  630. /// <returns>MD5字符串</returns>
  631. public static string MDFile(this string fileName)
  632. {
  633. using var fs = new BufferedStream(File.Open(fileName, FileMode.Open, FileAccess.Read), 1048576);
  634. using MD5 md5 = MD5.Create();
  635. byte[] bytes = md5.ComputeHash(fs);
  636. return bytes.Aggregate("", (current, b) => current + b.ToString("x2"));
  637. }
  638. /// <summary>
  639. /// 计算文件的sha256
  640. /// </summary>
  641. /// <param name="stream"></param>
  642. /// <returns></returns>
  643. public static string SHA256(this Stream stream)
  644. {
  645. using var fs = new BufferedStream(stream, 1048576);
  646. SHA256Managed sha = new SHA256Managed();
  647. byte[] checksum = sha.ComputeHash(fs);
  648. return BitConverter.ToString(checksum).Replace("-", string.Empty);
  649. }
  650. /// <summary>
  651. /// 获取数据流的MD5值
  652. /// </summary>
  653. /// <param name="stream"></param>
  654. /// <returns>MD5字符串</returns>
  655. public static string MDString(this Stream stream)
  656. {
  657. using var fs = new BufferedStream(stream, 1048576);
  658. using MD5 md5 = MD5.Create();
  659. byte[] bytes = md5.ComputeHash(fs);
  660. var mdstr = bytes.Aggregate("", (current, b) => current + b.ToString("x2"));
  661. stream.Position = 0;
  662. return mdstr;
  663. }
  664. #endregion
  665. #endregion MD5加密算法
  666. }
  667. /// <summary>
  668. /// RC2加密解密算法
  669. /// </summary>
  670. public static class RC2
  671. {
  672. private static ASCIIEncoding _asciiEncoding;
  673. private static byte[] _iv;
  674. private static byte[] _key;
  675. private static RC2CryptoServiceProvider _rc2Csp;
  676. private static UnicodeEncoding _textConverter;
  677. static RC2()
  678. {
  679. InitializeComponent();
  680. }
  681. private static void InitializeComponent()
  682. {
  683. _key = new byte[]
  684. {
  685. 106,
  686. 51,
  687. 25,
  688. 141,
  689. 157,
  690. 142,
  691. 23,
  692. 111,
  693. 234,
  694. 159,
  695. 187,
  696. 154,
  697. 215,
  698. 34,
  699. 37,
  700. 204
  701. };
  702. _iv = new byte[]
  703. {
  704. 135,
  705. 186,
  706. 133,
  707. 136,
  708. 184,
  709. 149,
  710. 153,
  711. 144
  712. };
  713. _asciiEncoding = new ASCIIEncoding();
  714. _textConverter = new UnicodeEncoding();
  715. _rc2Csp = new RC2CryptoServiceProvider();
  716. }
  717. #region 将文本数据加密后写入一个文件
  718. /// <summary>
  719. /// 将文本数据加密后写入一个文件,其中,这个文件是用InitBinFile建立的,这个文件将被分成十块,
  720. /// 用来分别保存10组不同的数据,第一个byte位保留,第2位到第21位分别用来存放每块数据的长度,但
  721. /// 一个byte的取值为0-127,所以,用两个byte来存放一个长度。
  722. /// </summary>
  723. /// <param name="toEncryptText">要加密的文本数据</param>
  724. /// <param name="filePath">要写入的文件</param>
  725. /// <param name="dataIndex">写入第几块,取值为1--10</param>
  726. /// <returns>是否操作成功</returns>
  727. public static bool EncryptToFile(this string toEncryptText, string filePath, int dataIndex)
  728. {
  729. var r = false;
  730. if ((dataIndex > 10) && (dataIndex < 1))
  731. {
  732. return r;
  733. }
  734. //打开要写入的文件,主要是为了保持原文件的内容不丢失
  735. var tmpFileStream = new FileStream(filePath, FileMode.Open, FileAccess.Read, FileShare.None, 1024, true);
  736. var index = new byte[10261];
  737. //将读取的内容写到byte数组
  738. tmpFileStream.Read(index, 0, 10261);
  739. tmpFileStream.Close();
  740. //定义基本的加密转换运算
  741. using var Encryptor = _rc2Csp.CreateEncryptor(_key, _iv);
  742. var msEncrypt = new MemoryStream();
  743. //在此加密转换流中,加密将从csEncrypt,加密后,结果在msEncrypt流中。
  744. using var csEncrypt = new CryptoStream(msEncrypt, Encryptor, CryptoStreamMode.Write);
  745. //将要加密的文本转换成UTF-16 编码,保存在tmp数组。
  746. var tmp = _textConverter.GetBytes(toEncryptText);
  747. //将tmp输入csEncrypt,将通过Encryptor来加密。
  748. csEncrypt.Write(tmp, 0, tmp.Length);
  749. //输出到msEnctypt
  750. csEncrypt.FlushFinalBlock();
  751. //将流转成byte[]
  752. var encrypted = msEncrypt.ToArray();
  753. if (encrypted.Length > 1024)
  754. return false;
  755. //得到加密后数据的大小,将结果存在指定的位置。
  756. index[dataIndex * 2 - 1] = Convert.ToByte(Convert.ToString(encrypted.Length / 128));
  757. index[dataIndex * 2] = Convert.ToByte(Convert.ToString(encrypted.Length % 128));
  758. //将加密后的结果写入index(覆盖)
  759. for (var i = 0; i < encrypted.Length; i++)
  760. index[1024 * (dataIndex - 1) + 21 + i] = encrypted[i];
  761. //建立文件流
  762. tmpFileStream = new FileStream(filePath, FileMode.Truncate, FileAccess.Write, FileShare.None, 1024, true);
  763. //写文件
  764. tmpFileStream.Write(index, 0, 10261);
  765. tmpFileStream.Flush();
  766. r = true;
  767. tmpFileStream.Close();
  768. return r;
  769. }
  770. #endregion
  771. #region 从一个文件中解密出一段文本,其中,这个文件是由InitBinFile建立的,并且由 EncryptToFile加密的
  772. /// <summary>
  773. /// 从一个文件中解密出一段文本,其中,这个文件是由InitBinFile建立的,并且由 EncryptToFile加密的
  774. /// </summary>
  775. /// <param name="filePath">要解密的文件</param>
  776. /// <param name="dataIndex">要从哪一个块中解密</param>
  777. /// <returns>解密后的文本</returns>
  778. public static string DecryptFromFile(this string filePath, int dataIndex)
  779. {
  780. if (dataIndex > 10 && dataIndex < 1)
  781. {
  782. return "";
  783. }
  784. using var tmpFileStream = new FileStream(filePath, FileMode.Open, FileAccess.Read, FileShare.None, 1024, true);
  785. using var decryptor = _rc2Csp.CreateDecryptor(_key, _iv);
  786. var msDecrypt = new MemoryStream();
  787. using var csDecrypt = new CryptoStream(msDecrypt, decryptor, CryptoStreamMode.Write);
  788. var index = new byte[10261];
  789. tmpFileStream.Read(index, 0, 10261);
  790. var count = index[dataIndex * 2 - 1] * 128 + index[dataIndex * 2];
  791. var tmp = new byte[count];
  792. Array.Copy(index, 1024 * (dataIndex - 1) + 21, tmp, 0, count);
  793. csDecrypt.Write(tmp, 0, count);
  794. csDecrypt.FlushFinalBlock();
  795. var decrypted = msDecrypt.ToArray();
  796. return _textConverter.GetString(decrypted, 0, decrypted.Length);
  797. }
  798. #endregion
  799. #region 将一段文本加密后保存到一个文件
  800. /// <summary>
  801. /// 将一段文本加密后保存到一个文件
  802. /// </summary>
  803. /// <param name="toEncryptText">要加密的文本数据</param>
  804. /// <param name="filePath">要保存的文件</param>
  805. /// <returns>是否加密成功</returns>
  806. public static void EncryptToFile(this string toEncryptText, string filePath)
  807. {
  808. using var tmpFileStream = new FileStream(filePath, FileMode.OpenOrCreate, FileAccess.Write, FileShare.None, 1024, true);
  809. using var encryptor = _rc2Csp.CreateEncryptor(_key, _iv);
  810. var msEncrypt = new MemoryStream();
  811. using var csEncrypt = new CryptoStream(msEncrypt, encryptor, CryptoStreamMode.Write);
  812. var tmp = _textConverter.GetBytes(toEncryptText);
  813. csEncrypt.Write(tmp, 0, tmp.Length);
  814. csEncrypt.FlushFinalBlock();
  815. var encrypted = msEncrypt.ToArray();
  816. tmpFileStream.Write(encrypted, 0, encrypted.Length);
  817. }
  818. #endregion
  819. #region 将一个被加密的文件解密
  820. /// <summary>
  821. /// 将一个被加密的文件解密
  822. /// </summary>
  823. /// <param name="filePath">要解密的文件</param>
  824. /// <returns>解密后的文本</returns>
  825. public static string DecryptFromFile(this string filePath)
  826. {
  827. using var tmpFileStream = new FileStream(filePath, FileMode.Open, FileAccess.Read, FileShare.None, 1024, true);
  828. using var decryptor = _rc2Csp.CreateDecryptor(_key, _iv);
  829. var msDecrypt = new MemoryStream();
  830. using var csDecrypt = new CryptoStream(msDecrypt, decryptor, CryptoStreamMode.Write);
  831. var tmp = new byte[tmpFileStream.Length];
  832. tmpFileStream.Read(tmp, 0, tmp.Length);
  833. csDecrypt.Write(tmp, 0, tmp.Length);
  834. csDecrypt.FlushFinalBlock();
  835. var decrypted = msDecrypt.ToArray();
  836. return _textConverter.GetString(decrypted, 0, decrypted.Length);
  837. }
  838. #endregion
  839. #region 将文本数据加密后写入一个文件
  840. /// <summary>
  841. /// 将文本数据加密后写入一个文件,其中,这个文件是用InitBinFile建立的,这个文件将被分成十块,
  842. /// 用来分别保存10组不同的数据,第一个byte位保留,第2位到第21位分别用来存放每块数据的长度,但
  843. /// 一个byte的取值为0-127,所以,用两个byte来存放一个长度。
  844. /// </summary>
  845. /// <param name="toEncryptText">要加密的文本数据</param>
  846. /// <param name="filePath">要写入的文件</param>
  847. /// <param name="dataIndex">写入第几块,取值为1--10</param>
  848. /// <param name="IV">初始化向量</param>
  849. /// <param name="Key">加密密匙</param>
  850. /// <returns>是否操作成功</returns>
  851. public static void EncryptToFile(this string toEncryptText, string filePath, int dataIndex, byte[] IV, byte[] Key)
  852. {
  853. if ((dataIndex > 10) && (dataIndex < 1))
  854. {
  855. return;
  856. }
  857. //打开要写入的文件,主要是为了保持原文件的内容不丢失
  858. using var fs = new FileStream(filePath, FileMode.Open, FileAccess.Read, FileShare.None, 1024, true);
  859. var index = new byte[10261];
  860. //将读取的内容写到byte数组
  861. fs.Read(index, 0, 10261);
  862. //定义基本的加密转换运算
  863. using var encryptor = _rc2Csp.CreateEncryptor(Key, IV);
  864. var msEncrypt = new MemoryStream();
  865. //在此加密转换流中,加密将从csEncrypt,加密后,结果在msEncrypt流中。
  866. using var csEncrypt = new CryptoStream(msEncrypt, encryptor, CryptoStreamMode.Write);
  867. var tmp = _textConverter.GetBytes(toEncryptText);
  868. //将tmp输入csEncrypt,将通过Encryptor来加密。
  869. csEncrypt.Write(tmp, 0, tmp.Length);
  870. //输出到msEnctypt
  871. csEncrypt.FlushFinalBlock();
  872. //将流转成byte[]
  873. var encrypted = msEncrypt.ToArray();
  874. if (encrypted.Length > 1024)
  875. {
  876. return;
  877. }
  878. //得到加密后数据的大小,将结果存在指定的位置。
  879. index[dataIndex * 2 - 1] = Convert.ToByte(Convert.ToString(encrypted.Length / 128));
  880. index[dataIndex * 2] = Convert.ToByte(Convert.ToString(encrypted.Length % 128));
  881. //将加密后的结果写入index(覆盖)
  882. for (int i = 0; i < encrypted.Length; i++)
  883. {
  884. index[1024 * (dataIndex - 1) + 21 + i] = encrypted[i];
  885. }
  886. //建立文件流
  887. using var newStream = new FileStream(filePath, FileMode.Truncate, FileAccess.Write, FileShare.None, 1024, true);
  888. newStream.Write(index, 0, 10261);
  889. newStream.Flush();
  890. }
  891. #endregion
  892. #region 从一个文件中解密出一段文本
  893. /// <summary>
  894. /// 从一个文件中解密出一段文本,其中,这个文件是由InitBinFile建立的,并且由 EncryptToFile加密的
  895. /// </summary>
  896. /// <param name="filePath">要解密的文件</param>
  897. /// <param name="dataIndex">要从哪一个块中解密</param>
  898. /// <param name="iv">初始化向量</param>
  899. /// <param name="key">解密密匙</param>
  900. /// <returns>解密后的文本</returns>
  901. public static string DecryptFromFile(this string filePath, int dataIndex, byte[] iv, byte[] key)
  902. {
  903. if ((dataIndex > 10) && (dataIndex < 1))
  904. {
  905. return "";
  906. }
  907. using var tmpFileStream = new FileStream(filePath, FileMode.Open, FileAccess.Read, FileShare.None, 1024, true);
  908. using var decryptor = _rc2Csp.CreateDecryptor(key, iv);
  909. var msDecrypt = new MemoryStream();
  910. using var csDecrypt = new CryptoStream(msDecrypt, decryptor, CryptoStreamMode.Write);
  911. var index = new byte[10261];
  912. tmpFileStream.Read(index, 0, 10261);
  913. var count = index[dataIndex * 2 - 1] * 128 + index[dataIndex * 2];
  914. var tmp = new byte[count];
  915. Array.Copy(index, 1024 * (dataIndex - 1) + 21, tmp, 0, count);
  916. csDecrypt.Write(tmp, 0, count);
  917. csDecrypt.FlushFinalBlock();
  918. var decrypted = msDecrypt.ToArray();
  919. return _textConverter.GetString(decrypted, 0, decrypted.Length);
  920. }
  921. #endregion
  922. #region 将一段文本加密后保存到一个文件
  923. /// <summary>
  924. /// 将一段文本加密后保存到一个文件
  925. /// </summary>
  926. /// <param name="toEncryptText">要加密的文本数据</param>
  927. /// <param name="filePath">要保存的文件</param>
  928. /// <param name="iv">初始化向量</param>
  929. /// <param name="key">加密密匙</param>
  930. /// <returns>是否加密成功</returns>
  931. public static void EncryptToFile(this string toEncryptText, string filePath, byte[] iv, byte[] key)
  932. {
  933. using var tmpFileStream = new FileStream(filePath, FileMode.OpenOrCreate, FileAccess.Write, FileShare.None, 1024, true);
  934. using var encryptor = _rc2Csp.CreateEncryptor(key, iv);
  935. var msEncrypt = new MemoryStream();
  936. using var csEncrypt = new CryptoStream(msEncrypt, encryptor, CryptoStreamMode.Write);
  937. var tmp = _textConverter.GetBytes(toEncryptText);
  938. csEncrypt.Write(tmp, 0, tmp.Length);
  939. csEncrypt.FlushFinalBlock();
  940. var encrypted = msEncrypt.ToArray();
  941. tmpFileStream.Write(encrypted, 0, encrypted.Length);
  942. tmpFileStream.Flush();
  943. }
  944. #endregion
  945. #region 将一个被加密的文件解密
  946. /// <summary>
  947. /// 将一个被加密的文件解密
  948. /// </summary>
  949. /// <param name="filePath">要解密的文件</param>
  950. /// <param name="iv">初始化向量</param>
  951. /// <param name="key">解密密匙</param>
  952. /// <returns>解密后的文本</returns>
  953. public static string DecryptFromFile(this string filePath, byte[] iv, byte[] key)
  954. {
  955. using var tmpFileStream = new FileStream(filePath, FileMode.Open, FileAccess.Read, FileShare.None, 1024, true);
  956. using var decryptor = _rc2Csp.CreateDecryptor(key, iv);
  957. var msDecrypt = new MemoryStream();
  958. using var csDecrypt = new CryptoStream(msDecrypt, decryptor, CryptoStreamMode.Write);
  959. var tmp = new byte[tmpFileStream.Length];
  960. tmpFileStream.Read(tmp, 0, tmp.Length);
  961. csDecrypt.Write(tmp, 0, tmp.Length);
  962. csDecrypt.FlushFinalBlock();
  963. var decrypted = msDecrypt.ToArray();
  964. return _textConverter.GetString(decrypted, 0, decrypted.Length);
  965. }
  966. #endregion
  967. #region 设置加密或解密的初始化向量
  968. /// <summary>
  969. /// 设置加密或解密的初始化向量
  970. /// </summary>
  971. /// <param name="s">长度等于8的ASCII字符集的字符串</param>
  972. public static void SetIV(this string s)
  973. {
  974. if (s.Length != 8)
  975. {
  976. _iv = null;
  977. return;
  978. }
  979. try
  980. {
  981. _iv = _asciiEncoding.GetBytes(s);
  982. }
  983. catch (Exception)
  984. {
  985. _iv = null;
  986. }
  987. }
  988. #endregion
  989. #region 设置加密或解密的密匙
  990. /// <summary>
  991. /// 设置加密或解密的密匙
  992. /// </summary>
  993. /// <param name="s">长度等于16的ASCII字符集的字符串</param>
  994. public static void SetKey(this string s)
  995. {
  996. if (s.Length != 16)
  997. {
  998. _key = null;
  999. return;
  1000. }
  1001. try
  1002. {
  1003. _key = _asciiEncoding.GetBytes(s);
  1004. }
  1005. catch (Exception)
  1006. {
  1007. _key = null;
  1008. }
  1009. }
  1010. #endregion
  1011. }
  1012. /// <summary>
  1013. /// 对称加密解密算法类
  1014. /// </summary>
  1015. public static class Rijndael
  1016. {
  1017. private static string _key;
  1018. private static SymmetricAlgorithm _mobjCryptoService;
  1019. /// <summary>
  1020. /// 对称加密类的构造函数
  1021. /// </summary>
  1022. public static void SymmetricMethod()
  1023. {
  1024. _mobjCryptoService = new RijndaelManaged();
  1025. _key = "Guz(%&hj7x89H$yuBI0456FtmaT5&fvHUFCy76*h%(HilJ$lhj!y6&(*jkP87jH7";
  1026. }
  1027. /// <summary>
  1028. /// 获得密钥
  1029. /// </summary>
  1030. /// <returns>密钥</returns>
  1031. private static byte[] GetLegalKey()
  1032. {
  1033. var sTemp = _key;
  1034. _mobjCryptoService.GenerateKey();
  1035. var bytTemp = _mobjCryptoService.Key;
  1036. var keyLength = bytTemp.Length;
  1037. if (sTemp.Length > keyLength)
  1038. {
  1039. sTemp = sTemp.Substring(0, keyLength);
  1040. }
  1041. else if (sTemp.Length < keyLength)
  1042. {
  1043. sTemp = sTemp.PadRight(keyLength, ' ');
  1044. }
  1045. return Encoding.ASCII.GetBytes(sTemp);
  1046. }
  1047. /// <summary>
  1048. /// 获得初始向量IV
  1049. /// </summary>
  1050. /// <returns>初试向量IV</returns>
  1051. private static byte[] GetLegalIV()
  1052. {
  1053. var sTemp = "E4ghj*Ghg7!rNIfb&95GUY86GfghUber57HBh(u%g6HJ($jhWk7&!hg4ui%$hjk";
  1054. _mobjCryptoService.GenerateIV();
  1055. var bytTemp = _mobjCryptoService.IV;
  1056. var ivLength = bytTemp.Length;
  1057. if (sTemp.Length > ivLength)
  1058. {
  1059. sTemp = sTemp.Substring(0, ivLength);
  1060. }
  1061. else if (sTemp.Length < ivLength)
  1062. {
  1063. sTemp = sTemp.PadRight(ivLength, ' ');
  1064. }
  1065. return Encoding.ASCII.GetBytes(sTemp);
  1066. }
  1067. /// <summary>
  1068. /// 加密方法
  1069. /// </summary>
  1070. /// <param name="source">待加密的串</param>
  1071. /// <returns>经过加密的串</returns>
  1072. public static string Encrypto(this string source)
  1073. {
  1074. var bytIn = Encoding.UTF8.GetBytes(source);
  1075. var ms = new MemoryStream();
  1076. _mobjCryptoService.Key = GetLegalKey();
  1077. _mobjCryptoService.IV = GetLegalIV();
  1078. using var encrypto = _mobjCryptoService.CreateEncryptor();
  1079. using var cs = new CryptoStream(ms, encrypto, CryptoStreamMode.Write);
  1080. cs.Write(bytIn, 0, bytIn.Length);
  1081. cs.FlushFinalBlock();
  1082. var bytOut = ms.ToArray();
  1083. return Convert.ToBase64String(bytOut);
  1084. }
  1085. /// <summary>
  1086. /// 解密方法
  1087. /// </summary>
  1088. /// <param name="source">待解密的串</param>
  1089. /// <returns>经过解密的串</returns>
  1090. public static string Decrypto(this string source)
  1091. {
  1092. var bytIn = Convert.FromBase64String(source);
  1093. var ms = new MemoryStream(bytIn, 0, bytIn.Length);
  1094. _mobjCryptoService.Key = GetLegalKey();
  1095. _mobjCryptoService.IV = GetLegalIV();
  1096. using var encrypto = _mobjCryptoService.CreateDecryptor();
  1097. using var cs = new CryptoStream(ms, encrypto, CryptoStreamMode.Read);
  1098. using var sr = new StreamReader(cs);
  1099. return sr.ReadToEnd();
  1100. }
  1101. }
  1102. }