synacrypt.pas 49 KB

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  1. {==============================================================================|
  2. | Project : Ararat Synapse | 001.000.000 |
  3. |==============================================================================|
  4. | Content: Encryption support |
  5. |==============================================================================|
  6. | Copyright (c)2007, Lukas Gebauer |
  7. | All rights reserved. |
  8. | |
  9. | Redistribution and use in source and binary forms, with or without |
  10. | modification, are permitted provided that the following conditions are met: |
  11. | |
  12. | Redistributions of source code must retain the above copyright notice, this |
  13. | list of conditions and the following disclaimer. |
  14. | |
  15. | Redistributions in binary form must reproduce the above copyright notice, |
  16. | this list of conditions and the following disclaimer in the documentation |
  17. | and/or other materials provided with the distribution. |
  18. | |
  19. | Neither the name of Lukas Gebauer nor the names of its contributors may |
  20. | be used to endorse or promote products derived from this software without |
  21. | specific prior written permission. |
  22. | |
  23. | THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" |
  24. | AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE |
  25. | IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE |
  26. | ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE FOR |
  27. | ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL |
  28. | DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR |
  29. | SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER |
  30. | CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT |
  31. | LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY |
  32. | OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH |
  33. | DAMAGE. |
  34. |==============================================================================|
  35. | The Initial Developer of the Original Code is Lukas Gebauer (Czech Republic).|
  36. | Portions created by Lukas Gebauer are Copyright (c)2007. |
  37. | All Rights Reserved. |
  38. | Based on work of David Barton and Eric Young |
  39. |==============================================================================|
  40. | Contributor(s): |
  41. |==============================================================================|
  42. | History: see HISTORY.HTM from distribution package |
  43. | (Found at URL: http://www.ararat.cz/synapse/) |
  44. |==============================================================================}
  45. {:@abstract(Encryption support)
  46. Implemented are DES and 3DES encryption/decryption by ECB, CBC, CFB-8bit,
  47. CFB-block, OFB and CTR methods.
  48. }
  49. {$IFDEF FPC}
  50. {$MODE DELPHI}
  51. {$ENDIF}
  52. {$Q-}
  53. {$R-}
  54. {$H+}
  55. unit synacrypt;
  56. interface
  57. uses
  58. SysUtils, Classes, synautil;
  59. type
  60. {:@abstract(Implementation of common routines for 64-bit block ciphers)
  61. Do not use this class directly, use descendants only!}
  62. TSynaBlockCipher= class(TObject)
  63. protected
  64. procedure InitKey(Key: AnsiString); virtual;
  65. private
  66. IV, CV: AnsiString;
  67. procedure IncCounter;
  68. public
  69. {:Sets the IV to Value and performs a reset}
  70. procedure SetIV(const Value: AnsiString); virtual;
  71. {:Returns the current chaining information, not the actual IV}
  72. function GetIV: AnsiString; virtual;
  73. {:Reset any stored chaining information}
  74. procedure Reset; virtual;
  75. {:Encrypt a 64-bit block of data using the ECB method of encryption}
  76. function EncryptECB(const InData: AnsiString): AnsiString; virtual;
  77. {:Decrypt a 64-bit block of data using the ECB method of decryption}
  78. function DecryptECB(const InData: AnsiString): AnsiString; virtual;
  79. {:Encrypt data using the CBC method of encryption}
  80. function EncryptCBC(const Indata: AnsiString): AnsiString; virtual;
  81. {:Decrypt data using the CBC method of decryption}
  82. function DecryptCBC(const Indata: AnsiString): AnsiString; virtual;
  83. {:Encrypt data using the CFB (8 bit) method of encryption}
  84. function EncryptCFB8bit(const Indata: AnsiString): AnsiString; virtual;
  85. {:Decrypt data using the CFB (8 bit) method of decryption}
  86. function DecryptCFB8bit(const Indata: AnsiString): AnsiString; virtual;
  87. {:Encrypt data using the CFB (block) method of encryption}
  88. function EncryptCFBblock(const Indata: AnsiString): AnsiString; virtual;
  89. {:Decrypt data using the CFB (block) method of decryption}
  90. function DecryptCFBblock(const Indata: AnsiString): AnsiString; virtual;
  91. {:Encrypt data using the OFB method of encryption}
  92. function EncryptOFB(const Indata: AnsiString): AnsiString; virtual;
  93. {:Decrypt data using the OFB method of decryption}
  94. function DecryptOFB(const Indata: AnsiString): AnsiString; virtual;
  95. {:Encrypt data using the CTR method of encryption}
  96. function EncryptCTR(const Indata: AnsiString): AnsiString; virtual;
  97. {:Decrypt data using the CTR method of decryption}
  98. function DecryptCTR(const Indata: AnsiString): AnsiString; virtual;
  99. {:Create a encryptor/decryptor instance and initialize it by the Key.}
  100. constructor Create(Key: AnsiString);
  101. end;
  102. {:@abstract(Datatype for holding one DES key data)
  103. This data type is used internally.}
  104. TDesKeyData = array[0..31] of integer;
  105. {:@abstract(Implementation of common routines for DES encryption)
  106. Do not use this class directly, use descendants only!}
  107. TSynaCustomDes = class(TSynaBlockcipher)
  108. protected
  109. procedure DoInit(KeyB: AnsiString; var KeyData: TDesKeyData);
  110. function EncryptBlock(const InData: AnsiString; var KeyData: TDesKeyData): AnsiString;
  111. function DecryptBlock(const InData: AnsiString; var KeyData: TDesKeyData): AnsiString;
  112. end;
  113. {:@abstract(Implementation of DES encryption)}
  114. TSynaDes= class(TSynaCustomDes)
  115. protected
  116. KeyData: TDesKeyData;
  117. procedure InitKey(Key: AnsiString); override;
  118. public
  119. {:Encrypt a 64-bit block of data using the ECB method of encryption}
  120. function EncryptECB(const InData: AnsiString): AnsiString; override;
  121. {:Decrypt a 64-bit block of data using the ECB method of decryption}
  122. function DecryptECB(const InData: AnsiString): AnsiString; override;
  123. end;
  124. {:@abstract(Implementation of 3DES encryption)}
  125. TSyna3Des= class(TSynaCustomDes)
  126. protected
  127. KeyData: array[0..2] of TDesKeyData;
  128. procedure InitKey(Key: AnsiString); override;
  129. public
  130. {:Encrypt a 64-bit block of data using the ECB method of encryption}
  131. function EncryptECB(const InData: AnsiString): AnsiString; override;
  132. {:Decrypt a 64-bit block of data using the ECB method of decryption}
  133. function DecryptECB(const InData: AnsiString): AnsiString; override;
  134. end;
  135. {:Call internal test of all DES encryptions. Returns @true if all is OK.}
  136. function TestDes: boolean;
  137. {:Call internal test of all 3DES encryptions. Returns @true if all is OK.}
  138. function Test3Des: boolean;
  139. {==============================================================================}
  140. implementation
  141. const
  142. shifts2: array[0..15]of byte=
  143. (0,0,1,1,1,1,1,1,0,1,1,1,1,1,1,0);
  144. des_skb: array[0..7,0..63]of integer=(
  145. (
  146. (* for C bits (numbered as per FIPS 46) 1 2 3 4 5 6 *)
  147. integer($00000000),integer($00000010),integer($20000000),integer($20000010),
  148. integer($00010000),integer($00010010),integer($20010000),integer($20010010),
  149. integer($00000800),integer($00000810),integer($20000800),integer($20000810),
  150. integer($00010800),integer($00010810),integer($20010800),integer($20010810),
  151. integer($00000020),integer($00000030),integer($20000020),integer($20000030),
  152. integer($00010020),integer($00010030),integer($20010020),integer($20010030),
  153. integer($00000820),integer($00000830),integer($20000820),integer($20000830),
  154. integer($00010820),integer($00010830),integer($20010820),integer($20010830),
  155. integer($00080000),integer($00080010),integer($20080000),integer($20080010),
  156. integer($00090000),integer($00090010),integer($20090000),integer($20090010),
  157. integer($00080800),integer($00080810),integer($20080800),integer($20080810),
  158. integer($00090800),integer($00090810),integer($20090800),integer($20090810),
  159. integer($00080020),integer($00080030),integer($20080020),integer($20080030),
  160. integer($00090020),integer($00090030),integer($20090020),integer($20090030),
  161. integer($00080820),integer($00080830),integer($20080820),integer($20080830),
  162. integer($00090820),integer($00090830),integer($20090820),integer($20090830)
  163. ),(
  164. (* for C bits (numbered as per FIPS 46) 7 8 10 11 12 13 *)
  165. integer($00000000),integer($02000000),integer($00002000),integer($02002000),
  166. integer($00200000),integer($02200000),integer($00202000),integer($02202000),
  167. integer($00000004),integer($02000004),integer($00002004),integer($02002004),
  168. integer($00200004),integer($02200004),integer($00202004),integer($02202004),
  169. integer($00000400),integer($02000400),integer($00002400),integer($02002400),
  170. integer($00200400),integer($02200400),integer($00202400),integer($02202400),
  171. integer($00000404),integer($02000404),integer($00002404),integer($02002404),
  172. integer($00200404),integer($02200404),integer($00202404),integer($02202404),
  173. integer($10000000),integer($12000000),integer($10002000),integer($12002000),
  174. integer($10200000),integer($12200000),integer($10202000),integer($12202000),
  175. integer($10000004),integer($12000004),integer($10002004),integer($12002004),
  176. integer($10200004),integer($12200004),integer($10202004),integer($12202004),
  177. integer($10000400),integer($12000400),integer($10002400),integer($12002400),
  178. integer($10200400),integer($12200400),integer($10202400),integer($12202400),
  179. integer($10000404),integer($12000404),integer($10002404),integer($12002404),
  180. integer($10200404),integer($12200404),integer($10202404),integer($12202404)
  181. ),(
  182. (* for C bits (numbered as per FIPS 46) 14 15 16 17 19 20 *)
  183. integer($00000000),integer($00000001),integer($00040000),integer($00040001),
  184. integer($01000000),integer($01000001),integer($01040000),integer($01040001),
  185. integer($00000002),integer($00000003),integer($00040002),integer($00040003),
  186. integer($01000002),integer($01000003),integer($01040002),integer($01040003),
  187. integer($00000200),integer($00000201),integer($00040200),integer($00040201),
  188. integer($01000200),integer($01000201),integer($01040200),integer($01040201),
  189. integer($00000202),integer($00000203),integer($00040202),integer($00040203),
  190. integer($01000202),integer($01000203),integer($01040202),integer($01040203),
  191. integer($08000000),integer($08000001),integer($08040000),integer($08040001),
  192. integer($09000000),integer($09000001),integer($09040000),integer($09040001),
  193. integer($08000002),integer($08000003),integer($08040002),integer($08040003),
  194. integer($09000002),integer($09000003),integer($09040002),integer($09040003),
  195. integer($08000200),integer($08000201),integer($08040200),integer($08040201),
  196. integer($09000200),integer($09000201),integer($09040200),integer($09040201),
  197. integer($08000202),integer($08000203),integer($08040202),integer($08040203),
  198. integer($09000202),integer($09000203),integer($09040202),integer($09040203)
  199. ),(
  200. (* for C bits (numbered as per FIPS 46) 21 23 24 26 27 28 *)
  201. integer($00000000),integer($00100000),integer($00000100),integer($00100100),
  202. integer($00000008),integer($00100008),integer($00000108),integer($00100108),
  203. integer($00001000),integer($00101000),integer($00001100),integer($00101100),
  204. integer($00001008),integer($00101008),integer($00001108),integer($00101108),
  205. integer($04000000),integer($04100000),integer($04000100),integer($04100100),
  206. integer($04000008),integer($04100008),integer($04000108),integer($04100108),
  207. integer($04001000),integer($04101000),integer($04001100),integer($04101100),
  208. integer($04001008),integer($04101008),integer($04001108),integer($04101108),
  209. integer($00020000),integer($00120000),integer($00020100),integer($00120100),
  210. integer($00020008),integer($00120008),integer($00020108),integer($00120108),
  211. integer($00021000),integer($00121000),integer($00021100),integer($00121100),
  212. integer($00021008),integer($00121008),integer($00021108),integer($00121108),
  213. integer($04020000),integer($04120000),integer($04020100),integer($04120100),
  214. integer($04020008),integer($04120008),integer($04020108),integer($04120108),
  215. integer($04021000),integer($04121000),integer($04021100),integer($04121100),
  216. integer($04021008),integer($04121008),integer($04021108),integer($04121108)
  217. ),(
  218. (* for D bits (numbered as per FIPS 46) 1 2 3 4 5 6 *)
  219. integer($00000000),integer($10000000),integer($00010000),integer($10010000),
  220. integer($00000004),integer($10000004),integer($00010004),integer($10010004),
  221. integer($20000000),integer($30000000),integer($20010000),integer($30010000),
  222. integer($20000004),integer($30000004),integer($20010004),integer($30010004),
  223. integer($00100000),integer($10100000),integer($00110000),integer($10110000),
  224. integer($00100004),integer($10100004),integer($00110004),integer($10110004),
  225. integer($20100000),integer($30100000),integer($20110000),integer($30110000),
  226. integer($20100004),integer($30100004),integer($20110004),integer($30110004),
  227. integer($00001000),integer($10001000),integer($00011000),integer($10011000),
  228. integer($00001004),integer($10001004),integer($00011004),integer($10011004),
  229. integer($20001000),integer($30001000),integer($20011000),integer($30011000),
  230. integer($20001004),integer($30001004),integer($20011004),integer($30011004),
  231. integer($00101000),integer($10101000),integer($00111000),integer($10111000),
  232. integer($00101004),integer($10101004),integer($00111004),integer($10111004),
  233. integer($20101000),integer($30101000),integer($20111000),integer($30111000),
  234. integer($20101004),integer($30101004),integer($20111004),integer($30111004)
  235. ),(
  236. (* for D bits (numbered as per FIPS 46) 8 9 11 12 13 14 *)
  237. integer($00000000),integer($08000000),integer($00000008),integer($08000008),
  238. integer($00000400),integer($08000400),integer($00000408),integer($08000408),
  239. integer($00020000),integer($08020000),integer($00020008),integer($08020008),
  240. integer($00020400),integer($08020400),integer($00020408),integer($08020408),
  241. integer($00000001),integer($08000001),integer($00000009),integer($08000009),
  242. integer($00000401),integer($08000401),integer($00000409),integer($08000409),
  243. integer($00020001),integer($08020001),integer($00020009),integer($08020009),
  244. integer($00020401),integer($08020401),integer($00020409),integer($08020409),
  245. integer($02000000),integer($0A000000),integer($02000008),integer($0A000008),
  246. integer($02000400),integer($0A000400),integer($02000408),integer($0A000408),
  247. integer($02020000),integer($0A020000),integer($02020008),integer($0A020008),
  248. integer($02020400),integer($0A020400),integer($02020408),integer($0A020408),
  249. integer($02000001),integer($0A000001),integer($02000009),integer($0A000009),
  250. integer($02000401),integer($0A000401),integer($02000409),integer($0A000409),
  251. integer($02020001),integer($0A020001),integer($02020009),integer($0A020009),
  252. integer($02020401),integer($0A020401),integer($02020409),integer($0A020409)
  253. ),(
  254. (* for D bits (numbered as per FIPS 46) 16 17 18 19 20 21 *)
  255. integer($00000000),integer($00000100),integer($00080000),integer($00080100),
  256. integer($01000000),integer($01000100),integer($01080000),integer($01080100),
  257. integer($00000010),integer($00000110),integer($00080010),integer($00080110),
  258. integer($01000010),integer($01000110),integer($01080010),integer($01080110),
  259. integer($00200000),integer($00200100),integer($00280000),integer($00280100),
  260. integer($01200000),integer($01200100),integer($01280000),integer($01280100),
  261. integer($00200010),integer($00200110),integer($00280010),integer($00280110),
  262. integer($01200010),integer($01200110),integer($01280010),integer($01280110),
  263. integer($00000200),integer($00000300),integer($00080200),integer($00080300),
  264. integer($01000200),integer($01000300),integer($01080200),integer($01080300),
  265. integer($00000210),integer($00000310),integer($00080210),integer($00080310),
  266. integer($01000210),integer($01000310),integer($01080210),integer($01080310),
  267. integer($00200200),integer($00200300),integer($00280200),integer($00280300),
  268. integer($01200200),integer($01200300),integer($01280200),integer($01280300),
  269. integer($00200210),integer($00200310),integer($00280210),integer($00280310),
  270. integer($01200210),integer($01200310),integer($01280210),integer($01280310)
  271. ),(
  272. (* for D bits (numbered as per FIPS 46) 22 23 24 25 27 28 *)
  273. integer($00000000),integer($04000000),integer($00040000),integer($04040000),
  274. integer($00000002),integer($04000002),integer($00040002),integer($04040002),
  275. integer($00002000),integer($04002000),integer($00042000),integer($04042000),
  276. integer($00002002),integer($04002002),integer($00042002),integer($04042002),
  277. integer($00000020),integer($04000020),integer($00040020),integer($04040020),
  278. integer($00000022),integer($04000022),integer($00040022),integer($04040022),
  279. integer($00002020),integer($04002020),integer($00042020),integer($04042020),
  280. integer($00002022),integer($04002022),integer($00042022),integer($04042022),
  281. integer($00000800),integer($04000800),integer($00040800),integer($04040800),
  282. integer($00000802),integer($04000802),integer($00040802),integer($04040802),
  283. integer($00002800),integer($04002800),integer($00042800),integer($04042800),
  284. integer($00002802),integer($04002802),integer($00042802),integer($04042802),
  285. integer($00000820),integer($04000820),integer($00040820),integer($04040820),
  286. integer($00000822),integer($04000822),integer($00040822),integer($04040822),
  287. integer($00002820),integer($04002820),integer($00042820),integer($04042820),
  288. integer($00002822),integer($04002822),integer($00042822),integer($04042822)
  289. ));
  290. des_sptrans: array[0..7,0..63] of integer=(
  291. (
  292. (* nibble 0 *)
  293. integer($02080800), integer($00080000), integer($02000002), integer($02080802),
  294. integer($02000000), integer($00080802), integer($00080002), integer($02000002),
  295. integer($00080802), integer($02080800), integer($02080000), integer($00000802),
  296. integer($02000802), integer($02000000), integer($00000000), integer($00080002),
  297. integer($00080000), integer($00000002), integer($02000800), integer($00080800),
  298. integer($02080802), integer($02080000), integer($00000802), integer($02000800),
  299. integer($00000002), integer($00000800), integer($00080800), integer($02080002),
  300. integer($00000800), integer($02000802), integer($02080002), integer($00000000),
  301. integer($00000000), integer($02080802), integer($02000800), integer($00080002),
  302. integer($02080800), integer($00080000), integer($00000802), integer($02000800),
  303. integer($02080002), integer($00000800), integer($00080800), integer($02000002),
  304. integer($00080802), integer($00000002), integer($02000002), integer($02080000),
  305. integer($02080802), integer($00080800), integer($02080000), integer($02000802),
  306. integer($02000000), integer($00000802), integer($00080002), integer($00000000),
  307. integer($00080000), integer($02000000), integer($02000802), integer($02080800),
  308. integer($00000002), integer($02080002), integer($00000800), integer($00080802)
  309. ),(
  310. (* nibble 1 *)
  311. integer($40108010), integer($00000000), integer($00108000), integer($40100000),
  312. integer($40000010), integer($00008010), integer($40008000), integer($00108000),
  313. integer($00008000), integer($40100010), integer($00000010), integer($40008000),
  314. integer($00100010), integer($40108000), integer($40100000), integer($00000010),
  315. integer($00100000), integer($40008010), integer($40100010), integer($00008000),
  316. integer($00108010), integer($40000000), integer($00000000), integer($00100010),
  317. integer($40008010), integer($00108010), integer($40108000), integer($40000010),
  318. integer($40000000), integer($00100000), integer($00008010), integer($40108010),
  319. integer($00100010), integer($40108000), integer($40008000), integer($00108010),
  320. integer($40108010), integer($00100010), integer($40000010), integer($00000000),
  321. integer($40000000), integer($00008010), integer($00100000), integer($40100010),
  322. integer($00008000), integer($40000000), integer($00108010), integer($40008010),
  323. integer($40108000), integer($00008000), integer($00000000), integer($40000010),
  324. integer($00000010), integer($40108010), integer($00108000), integer($40100000),
  325. integer($40100010), integer($00100000), integer($00008010), integer($40008000),
  326. integer($40008010), integer($00000010), integer($40100000), integer($00108000)
  327. ),(
  328. (* nibble 2 *)
  329. integer($04000001), integer($04040100), integer($00000100), integer($04000101),
  330. integer($00040001), integer($04000000), integer($04000101), integer($00040100),
  331. integer($04000100), integer($00040000), integer($04040000), integer($00000001),
  332. integer($04040101), integer($00000101), integer($00000001), integer($04040001),
  333. integer($00000000), integer($00040001), integer($04040100), integer($00000100),
  334. integer($00000101), integer($04040101), integer($00040000), integer($04000001),
  335. integer($04040001), integer($04000100), integer($00040101), integer($04040000),
  336. integer($00040100), integer($00000000), integer($04000000), integer($00040101),
  337. integer($04040100), integer($00000100), integer($00000001), integer($00040000),
  338. integer($00000101), integer($00040001), integer($04040000), integer($04000101),
  339. integer($00000000), integer($04040100), integer($00040100), integer($04040001),
  340. integer($00040001), integer($04000000), integer($04040101), integer($00000001),
  341. integer($00040101), integer($04000001), integer($04000000), integer($04040101),
  342. integer($00040000), integer($04000100), integer($04000101), integer($00040100),
  343. integer($04000100), integer($00000000), integer($04040001), integer($00000101),
  344. integer($04000001), integer($00040101), integer($00000100), integer($04040000)
  345. ),(
  346. (* nibble 3 *)
  347. integer($00401008), integer($10001000), integer($00000008), integer($10401008),
  348. integer($00000000), integer($10400000), integer($10001008), integer($00400008),
  349. integer($10401000), integer($10000008), integer($10000000), integer($00001008),
  350. integer($10000008), integer($00401008), integer($00400000), integer($10000000),
  351. integer($10400008), integer($00401000), integer($00001000), integer($00000008),
  352. integer($00401000), integer($10001008), integer($10400000), integer($00001000),
  353. integer($00001008), integer($00000000), integer($00400008), integer($10401000),
  354. integer($10001000), integer($10400008), integer($10401008), integer($00400000),
  355. integer($10400008), integer($00001008), integer($00400000), integer($10000008),
  356. integer($00401000), integer($10001000), integer($00000008), integer($10400000),
  357. integer($10001008), integer($00000000), integer($00001000), integer($00400008),
  358. integer($00000000), integer($10400008), integer($10401000), integer($00001000),
  359. integer($10000000), integer($10401008), integer($00401008), integer($00400000),
  360. integer($10401008), integer($00000008), integer($10001000), integer($00401008),
  361. integer($00400008), integer($00401000), integer($10400000), integer($10001008),
  362. integer($00001008), integer($10000000), integer($10000008), integer($10401000)
  363. ),(
  364. (* nibble 4 *)
  365. integer($08000000), integer($00010000), integer($00000400), integer($08010420),
  366. integer($08010020), integer($08000400), integer($00010420), integer($08010000),
  367. integer($00010000), integer($00000020), integer($08000020), integer($00010400),
  368. integer($08000420), integer($08010020), integer($08010400), integer($00000000),
  369. integer($00010400), integer($08000000), integer($00010020), integer($00000420),
  370. integer($08000400), integer($00010420), integer($00000000), integer($08000020),
  371. integer($00000020), integer($08000420), integer($08010420), integer($00010020),
  372. integer($08010000), integer($00000400), integer($00000420), integer($08010400),
  373. integer($08010400), integer($08000420), integer($00010020), integer($08010000),
  374. integer($00010000), integer($00000020), integer($08000020), integer($08000400),
  375. integer($08000000), integer($00010400), integer($08010420), integer($00000000),
  376. integer($00010420), integer($08000000), integer($00000400), integer($00010020),
  377. integer($08000420), integer($00000400), integer($00000000), integer($08010420),
  378. integer($08010020), integer($08010400), integer($00000420), integer($00010000),
  379. integer($00010400), integer($08010020), integer($08000400), integer($00000420),
  380. integer($00000020), integer($00010420), integer($08010000), integer($08000020)
  381. ),(
  382. (* nibble 5 *)
  383. integer($80000040), integer($00200040), integer($00000000), integer($80202000),
  384. integer($00200040), integer($00002000), integer($80002040), integer($00200000),
  385. integer($00002040), integer($80202040), integer($00202000), integer($80000000),
  386. integer($80002000), integer($80000040), integer($80200000), integer($00202040),
  387. integer($00200000), integer($80002040), integer($80200040), integer($00000000),
  388. integer($00002000), integer($00000040), integer($80202000), integer($80200040),
  389. integer($80202040), integer($80200000), integer($80000000), integer($00002040),
  390. integer($00000040), integer($00202000), integer($00202040), integer($80002000),
  391. integer($00002040), integer($80000000), integer($80002000), integer($00202040),
  392. integer($80202000), integer($00200040), integer($00000000), integer($80002000),
  393. integer($80000000), integer($00002000), integer($80200040), integer($00200000),
  394. integer($00200040), integer($80202040), integer($00202000), integer($00000040),
  395. integer($80202040), integer($00202000), integer($00200000), integer($80002040),
  396. integer($80000040), integer($80200000), integer($00202040), integer($00000000),
  397. integer($00002000), integer($80000040), integer($80002040), integer($80202000),
  398. integer($80200000), integer($00002040), integer($00000040), integer($80200040)
  399. ),(
  400. (* nibble 6 *)
  401. integer($00004000), integer($00000200), integer($01000200), integer($01000004),
  402. integer($01004204), integer($00004004), integer($00004200), integer($00000000),
  403. integer($01000000), integer($01000204), integer($00000204), integer($01004000),
  404. integer($00000004), integer($01004200), integer($01004000), integer($00000204),
  405. integer($01000204), integer($00004000), integer($00004004), integer($01004204),
  406. integer($00000000), integer($01000200), integer($01000004), integer($00004200),
  407. integer($01004004), integer($00004204), integer($01004200), integer($00000004),
  408. integer($00004204), integer($01004004), integer($00000200), integer($01000000),
  409. integer($00004204), integer($01004000), integer($01004004), integer($00000204),
  410. integer($00004000), integer($00000200), integer($01000000), integer($01004004),
  411. integer($01000204), integer($00004204), integer($00004200), integer($00000000),
  412. integer($00000200), integer($01000004), integer($00000004), integer($01000200),
  413. integer($00000000), integer($01000204), integer($01000200), integer($00004200),
  414. integer($00000204), integer($00004000), integer($01004204), integer($01000000),
  415. integer($01004200), integer($00000004), integer($00004004), integer($01004204),
  416. integer($01000004), integer($01004200), integer($01004000), integer($00004004)
  417. ),(
  418. (* nibble 7 *)
  419. integer($20800080), integer($20820000), integer($00020080), integer($00000000),
  420. integer($20020000), integer($00800080), integer($20800000), integer($20820080),
  421. integer($00000080), integer($20000000), integer($00820000), integer($00020080),
  422. integer($00820080), integer($20020080), integer($20000080), integer($20800000),
  423. integer($00020000), integer($00820080), integer($00800080), integer($20020000),
  424. integer($20820080), integer($20000080), integer($00000000), integer($00820000),
  425. integer($20000000), integer($00800000), integer($20020080), integer($20800080),
  426. integer($00800000), integer($00020000), integer($20820000), integer($00000080),
  427. integer($00800000), integer($00020000), integer($20000080), integer($20820080),
  428. integer($00020080), integer($20000000), integer($00000000), integer($00820000),
  429. integer($20800080), integer($20020080), integer($20020000), integer($00800080),
  430. integer($20820000), integer($00000080), integer($00800080), integer($20020000),
  431. integer($20820080), integer($00800000), integer($20800000), integer($20000080),
  432. integer($00820000), integer($00020080), integer($20020080), integer($20800000),
  433. integer($00000080), integer($20820000), integer($00820080), integer($00000000),
  434. integer($20000000), integer($20800080), integer($00020000), integer($00820080)
  435. ));
  436. {==============================================================================}
  437. function XorString(Indata1, Indata2: AnsiString): AnsiString;
  438. var
  439. i: integer;
  440. begin
  441. Indata2 := PadString(Indata2, length(Indata1), #0);
  442. Result := '';
  443. for i := 1 to length(Indata1) do
  444. Result := Result + AnsiChar(ord(Indata1[i]) xor ord(Indata2[i]));
  445. end;
  446. procedure hperm_op(var a, t: integer; n, m: integer);
  447. begin
  448. t:= ((a shl (16 - n)) xor a) and m;
  449. a:= a xor t xor (t shr (16 - n));
  450. end;
  451. procedure perm_op(var a, b, t: integer; n, m: integer);
  452. begin
  453. t:= ((a shr n) xor b) and m;
  454. b:= b xor t;
  455. a:= a xor (t shl n);
  456. end;
  457. {==============================================================================}
  458. procedure TSynaBlockCipher.IncCounter;
  459. var
  460. i: integer;
  461. begin
  462. Inc(CV[8]);
  463. i:= 7;
  464. while (i> 0) and (CV[i + 1] = #0) do
  465. begin
  466. Inc(CV[i]);
  467. Dec(i);
  468. end;
  469. end;
  470. procedure TSynaBlockCipher.Reset;
  471. begin
  472. CV := IV;
  473. end;
  474. procedure TSynaBlockCipher.InitKey(Key: AnsiString);
  475. begin
  476. end;
  477. procedure TSynaBlockCipher.SetIV(const Value: AnsiString);
  478. begin
  479. IV := PadString(Value, 8, #0);
  480. Reset;
  481. end;
  482. function TSynaBlockCipher.GetIV: AnsiString;
  483. begin
  484. Result := CV;
  485. end;
  486. function TSynaBlockCipher.EncryptECB(const InData: AnsiString): AnsiString;
  487. begin
  488. Result := InData;
  489. end;
  490. function TSynaBlockCipher.DecryptECB(const InData: AnsiString): AnsiString;
  491. begin
  492. Result := InData;
  493. end;
  494. function TSynaBlockCipher.EncryptCBC(const Indata: AnsiString): AnsiString;
  495. var
  496. i: integer;
  497. s: ansistring;
  498. l: integer;
  499. begin
  500. Result := '';
  501. l := Length(InData);
  502. for i:= 1 to (l div 8) do
  503. begin
  504. s := copy(Indata, (i - 1) * 8 + 1, 8);
  505. s := XorString(s, CV);
  506. s := EncryptECB(s);
  507. CV := s;
  508. Result := Result + s;
  509. end;
  510. if (l mod 8)<> 0 then
  511. begin
  512. CV := EncryptECB(CV);
  513. s := copy(Indata, (l div 8) * 8 + 1, l mod 8);
  514. s := XorString(s, CV);
  515. Result := Result + s;
  516. end;
  517. end;
  518. function TSynaBlockCipher.DecryptCBC(const Indata: AnsiString): AnsiString;
  519. var
  520. i: integer;
  521. s, temp: ansistring;
  522. l: integer;
  523. begin
  524. Result := '';
  525. l := Length(InData);
  526. for i:= 1 to (l div 8) do
  527. begin
  528. s := copy(Indata, (i - 1) * 8 + 1, 8);
  529. temp := s;
  530. s := DecryptECB(s);
  531. s := XorString(s, CV);
  532. Result := Result + s;
  533. CV := Temp;
  534. end;
  535. if (l mod 8)<> 0 then
  536. begin
  537. CV := EncryptECB(CV);
  538. s := copy(Indata, (l div 8) * 8 + 1, l mod 8);
  539. s := XorString(s, CV);
  540. Result := Result + s;
  541. end;
  542. end;
  543. function TSynaBlockCipher.EncryptCFB8bit(const Indata: AnsiString): AnsiString;
  544. var
  545. i: integer;
  546. Temp: AnsiString;
  547. c: AnsiChar;
  548. begin
  549. Result := '';
  550. for i:= 1 to Length(Indata) do
  551. begin
  552. Temp := EncryptECB(CV);
  553. c := AnsiChar(ord(InData[i]) xor ord(temp[1]));
  554. Result := Result + c;
  555. Delete(CV, 1, 1);
  556. CV := CV + c;
  557. end;
  558. end;
  559. function TSynaBlockCipher.DecryptCFB8bit(const Indata: AnsiString): AnsiString;
  560. var
  561. i: integer;
  562. Temp: AnsiString;
  563. c: AnsiChar;
  564. begin
  565. Result := '';
  566. for i:= 1 to length(Indata) do
  567. begin
  568. c:= Indata[i];
  569. Temp := EncryptECB(CV);
  570. Result := Result + AnsiChar(ord(InData[i]) xor ord(temp[1]));
  571. Delete(CV, 1, 1);
  572. CV := CV + c;
  573. end;
  574. end;
  575. function TSynaBlockCipher.EncryptCFBblock(const Indata: AnsiString): AnsiString;
  576. var
  577. i: integer;
  578. s: AnsiString;
  579. l: integer;
  580. begin
  581. Result := '';
  582. l := Length(InData);
  583. for i:= 1 to (l div 8) do
  584. begin
  585. CV := EncryptECB(CV);
  586. s := copy(Indata, (i - 1) * 8 + 1, 8);
  587. s := XorString(s, CV);
  588. Result := Result + s;
  589. CV := s;
  590. end;
  591. if (l mod 8)<> 0 then
  592. begin
  593. CV := EncryptECB(CV);
  594. s := copy(Indata, (l div 8) * 8 + 1, l mod 8);
  595. s := XorString(s, CV);
  596. Result := Result + s;
  597. end;
  598. end;
  599. function TSynaBlockCipher.DecryptCFBblock(const Indata: AnsiString): AnsiString;
  600. var
  601. i: integer;
  602. S, Temp: AnsiString;
  603. l: integer;
  604. begin
  605. Result := '';
  606. l := Length(InData);
  607. for i:= 1 to (l div 8) do
  608. begin
  609. s := copy(Indata, (i - 1) * 8 + 1, 8);
  610. Temp := s;
  611. CV := EncryptECB(CV);
  612. s := XorString(s, CV);
  613. Result := result + s;
  614. CV := temp;
  615. end;
  616. if (l mod 8)<> 0 then
  617. begin
  618. CV := EncryptECB(CV);
  619. s := copy(Indata, (l div 8) * 8 + 1, l mod 8);
  620. s := XorString(s, CV);
  621. Result := Result + s;
  622. end;
  623. end;
  624. function TSynaBlockCipher.EncryptOFB(const Indata: AnsiString): AnsiString;
  625. var
  626. i: integer;
  627. s: AnsiString;
  628. l: integer;
  629. begin
  630. Result := '';
  631. l := Length(InData);
  632. for i:= 1 to (l div 8) do
  633. begin
  634. CV := EncryptECB(CV);
  635. s := copy(Indata, (i - 1) * 8 + 1, 8);
  636. s := XorString(s, CV);
  637. Result := Result + s;
  638. end;
  639. if (l mod 8)<> 0 then
  640. begin
  641. CV := EncryptECB(CV);
  642. s := copy(Indata, (l div 8) * 8 + 1, l mod 8);
  643. s := XorString(s, CV);
  644. Result := Result + s;
  645. end;
  646. end;
  647. function TSynaBlockCipher.DecryptOFB(const Indata: AnsiString): AnsiString;
  648. var
  649. i: integer;
  650. s: AnsiString;
  651. l: integer;
  652. begin
  653. Result := '';
  654. l := Length(InData);
  655. for i:= 1 to (l div 8) do
  656. begin
  657. Cv := EncryptECB(CV);
  658. s := copy(Indata, (i - 1) * 8 + 1, 8);
  659. s := XorString(s, CV);
  660. Result := Result + s;
  661. end;
  662. if (l mod 8)<> 0 then
  663. begin
  664. CV := EncryptECB(CV);
  665. s := copy(Indata, (l div 8) * 8 + 1, l mod 8);
  666. s := XorString(s, CV);
  667. Result := Result + s;
  668. end;
  669. end;
  670. function TSynaBlockCipher.EncryptCTR(const Indata: AnsiString): AnsiString;
  671. var
  672. temp: AnsiString;
  673. i: integer;
  674. s: AnsiString;
  675. l: integer;
  676. begin
  677. Result := '';
  678. l := Length(InData);
  679. for i:= 1 to (l div 8) do
  680. begin
  681. temp := EncryptECB(CV);
  682. IncCounter;
  683. s := copy(Indata, (i - 1) * 8 + 1, 8);
  684. s := XorString(s, temp);
  685. Result := Result + s;
  686. end;
  687. if (l mod 8)<> 0 then
  688. begin
  689. temp := EncryptECB(CV);
  690. IncCounter;
  691. s := copy(Indata, (l div 8) * 8 + 1, l mod 8);
  692. s := XorString(s, temp);
  693. Result := Result + s;
  694. end;
  695. end;
  696. function TSynaBlockCipher.DecryptCTR(const Indata: AnsiString): AnsiString;
  697. var
  698. temp: AnsiString;
  699. s: AnsiString;
  700. i: integer;
  701. l: integer;
  702. begin
  703. Result := '';
  704. l := Length(InData);
  705. for i:= 1 to (l div 8) do
  706. begin
  707. temp := EncryptECB(CV);
  708. IncCounter;
  709. s := copy(Indata, (i - 1) * 8 + 1, 8);
  710. s := XorString(s, temp);
  711. Result := Result + s;
  712. end;
  713. if (l mod 8)<> 0 then
  714. begin
  715. temp := EncryptECB(CV);
  716. IncCounter;
  717. s := copy(Indata, (l div 8) * 8 + 1, l mod 8);
  718. s := XorString(s, temp);
  719. Result := Result + s;
  720. end;
  721. end;
  722. constructor TSynaBlockCipher.Create(Key: AnsiString);
  723. begin
  724. inherited Create;
  725. InitKey(Key);
  726. IV := StringOfChar(#0, 8);
  727. IV := EncryptECB(IV);
  728. Reset;
  729. end;
  730. {==============================================================================}
  731. procedure TSynaCustomDes.DoInit(KeyB: AnsiString; var KeyData: TDesKeyData);
  732. var
  733. c, d, t, s, t2, i: integer;
  734. begin
  735. KeyB := PadString(KeyB, 8, #0);
  736. c:= ord(KeyB[1]) or (ord(KeyB[2]) shl 8) or (ord(KeyB[3]) shl 16) or (ord(KeyB[4]) shl 24);
  737. d:= ord(KeyB[5]) or (ord(KeyB[6]) shl 8) or (ord(KeyB[7]) shl 16) or (ord(KeyB[8]) shl 24);
  738. perm_op(d,c,t,4,integer($0f0f0f0f));
  739. hperm_op(c,t,integer(-2),integer($cccc0000));
  740. hperm_op(d,t,integer(-2),integer($cccc0000));
  741. perm_op(d,c,t,1,integer($55555555));
  742. perm_op(c,d,t,8,integer($00ff00ff));
  743. perm_op(d,c,t,1,integer($55555555));
  744. d:= ((d and $ff) shl 16) or (d and $ff00) or ((d and $ff0000) shr 16) or
  745. ((c and integer($f0000000)) shr 4);
  746. c:= c and $fffffff;
  747. for i:= 0 to 15 do
  748. begin
  749. if shifts2[i]<> 0 then
  750. begin
  751. c:= ((c shr 2) or (c shl 26));
  752. d:= ((d shr 2) or (d shl 26));
  753. end
  754. else
  755. begin
  756. c:= ((c shr 1) or (c shl 27));
  757. d:= ((d shr 1) or (d shl 27));
  758. end;
  759. c:= c and $fffffff;
  760. d:= d and $fffffff;
  761. s:= des_skb[0,c and $3f] or
  762. des_skb[1,((c shr 6) and $03) or ((c shr 7) and $3c)] or
  763. des_skb[2,((c shr 13) and $0f) or ((c shr 14) and $30)] or
  764. des_skb[3,((c shr 20) and $01) or ((c shr 21) and $06) or ((c shr 22) and $38)];
  765. t:= des_skb[4,d and $3f] or
  766. des_skb[5,((d shr 7) and $03) or ((d shr 8) and $3c)] or
  767. des_skb[6, (d shr 15) and $3f ] or
  768. des_skb[7,((d shr 21) and $0f) or ((d shr 22) and $30)];
  769. t2:= ((t shl 16) or (s and $ffff));
  770. KeyData[(i shl 1)]:= ((t2 shl 2) or (t2 shr 30));
  771. t2:= ((s shr 16) or (t and integer($ffff0000)));
  772. KeyData[(i shl 1)+1]:= ((t2 shl 6) or (t2 shr 26));
  773. end;
  774. end;
  775. function TSynaCustomDes.EncryptBlock(const InData: AnsiString; var KeyData: TDesKeyData): AnsiString;
  776. var
  777. l, r, t, u: integer;
  778. i: longint;
  779. begin
  780. r := Swapbytes(DecodeLongint(Indata, 1));
  781. l := swapbytes(DecodeLongint(Indata, 5));
  782. t:= ((l shr 4) xor r) and $0f0f0f0f;
  783. r:= r xor t;
  784. l:= l xor (t shl 4);
  785. t:= ((r shr 16) xor l) and $0000ffff;
  786. l:= l xor t;
  787. r:= r xor (t shl 16);
  788. t:= ((l shr 2) xor r) and $33333333;
  789. r:= r xor t;
  790. l:= l xor (t shl 2);
  791. t:= ((r shr 8) xor l) and $00ff00ff;
  792. l:= l xor t;
  793. r:= r xor (t shl 8);
  794. t:= ((l shr 1) xor r) and $55555555;
  795. r:= r xor t;
  796. l:= l xor (t shl 1);
  797. r:= (r shr 29) or (r shl 3);
  798. l:= (l shr 29) or (l shl 3);
  799. i:= 0;
  800. while i< 32 do
  801. begin
  802. u:= r xor KeyData[i ];
  803. t:= r xor KeyData[i+1];
  804. t:= (t shr 4) or (t shl 28);
  805. l:= l xor des_SPtrans[0,(u shr 2) and $3f] xor
  806. des_SPtrans[2,(u shr 10) and $3f] xor
  807. des_SPtrans[4,(u shr 18) and $3f] xor
  808. des_SPtrans[6,(u shr 26) and $3f] xor
  809. des_SPtrans[1,(t shr 2) and $3f] xor
  810. des_SPtrans[3,(t shr 10) and $3f] xor
  811. des_SPtrans[5,(t shr 18) and $3f] xor
  812. des_SPtrans[7,(t shr 26) and $3f];
  813. u:= l xor KeyData[i+2];
  814. t:= l xor KeyData[i+3];
  815. t:= (t shr 4) or (t shl 28);
  816. r:= r xor des_SPtrans[0,(u shr 2) and $3f] xor
  817. des_SPtrans[2,(u shr 10) and $3f] xor
  818. des_SPtrans[4,(u shr 18) and $3f] xor
  819. des_SPtrans[6,(u shr 26) and $3f] xor
  820. des_SPtrans[1,(t shr 2) and $3f] xor
  821. des_SPtrans[3,(t shr 10) and $3f] xor
  822. des_SPtrans[5,(t shr 18) and $3f] xor
  823. des_SPtrans[7,(t shr 26) and $3f];
  824. u:= r xor KeyData[i+4];
  825. t:= r xor KeyData[i+5];
  826. t:= (t shr 4) or (t shl 28);
  827. l:= l xor des_SPtrans[0,(u shr 2) and $3f] xor
  828. des_SPtrans[2,(u shr 10) and $3f] xor
  829. des_SPtrans[4,(u shr 18) and $3f] xor
  830. des_SPtrans[6,(u shr 26) and $3f] xor
  831. des_SPtrans[1,(t shr 2) and $3f] xor
  832. des_SPtrans[3,(t shr 10) and $3f] xor
  833. des_SPtrans[5,(t shr 18) and $3f] xor
  834. des_SPtrans[7,(t shr 26) and $3f];
  835. u:= l xor KeyData[i+6];
  836. t:= l xor KeyData[i+7];
  837. t:= (t shr 4) or (t shl 28);
  838. r:= r xor des_SPtrans[0,(u shr 2) and $3f] xor
  839. des_SPtrans[2,(u shr 10) and $3f] xor
  840. des_SPtrans[4,(u shr 18) and $3f] xor
  841. des_SPtrans[6,(u shr 26) and $3f] xor
  842. des_SPtrans[1,(t shr 2) and $3f] xor
  843. des_SPtrans[3,(t shr 10) and $3f] xor
  844. des_SPtrans[5,(t shr 18) and $3f] xor
  845. des_SPtrans[7,(t shr 26) and $3f];
  846. Inc(i,8);
  847. end;
  848. r:= (r shr 3) or (r shl 29);
  849. l:= (l shr 3) or (l shl 29);
  850. t:= ((r shr 1) xor l) and $55555555;
  851. l:= l xor t;
  852. r:= r xor (t shl 1);
  853. t:= ((l shr 8) xor r) and $00ff00ff;
  854. r:= r xor t;
  855. l:= l xor (t shl 8);
  856. t:= ((r shr 2) xor l) and $33333333;
  857. l:= l xor t;
  858. r:= r xor (t shl 2);
  859. t:= ((l shr 16) xor r) and $0000ffff;
  860. r:= r xor t;
  861. l:= l xor (t shl 16);
  862. t:= ((r shr 4) xor l) and $0f0f0f0f;
  863. l:= l xor t;
  864. r:= r xor (t shl 4);
  865. Result := CodeLongInt(Swapbytes(l)) + CodeLongInt(Swapbytes(r));
  866. end;
  867. function TSynaCustomDes.DecryptBlock(const InData: AnsiString; var KeyData: TDesKeyData): AnsiString;
  868. var
  869. l, r, t, u: integer;
  870. i: longint;
  871. begin
  872. r := Swapbytes(DecodeLongint(Indata, 1));
  873. l := Swapbytes(DecodeLongint(Indata, 5));
  874. t:= ((l shr 4) xor r) and $0f0f0f0f;
  875. r:= r xor t;
  876. l:= l xor (t shl 4);
  877. t:= ((r shr 16) xor l) and $0000ffff;
  878. l:= l xor t;
  879. r:= r xor (t shl 16);
  880. t:= ((l shr 2) xor r) and $33333333;
  881. r:= r xor t;
  882. l:= l xor (t shl 2);
  883. t:= ((r shr 8) xor l) and $00ff00ff;
  884. l:= l xor t;
  885. r:= r xor (t shl 8);
  886. t:= ((l shr 1) xor r) and $55555555;
  887. r:= r xor t;
  888. l:= l xor (t shl 1);
  889. r:= (r shr 29) or (r shl 3);
  890. l:= (l shr 29) or (l shl 3);
  891. i:= 30;
  892. while i> 0 do
  893. begin
  894. u:= r xor KeyData[i ];
  895. t:= r xor KeyData[i+1];
  896. t:= (t shr 4) or (t shl 28);
  897. l:= l xor des_SPtrans[0,(u shr 2) and $3f] xor
  898. des_SPtrans[2,(u shr 10) and $3f] xor
  899. des_SPtrans[4,(u shr 18) and $3f] xor
  900. des_SPtrans[6,(u shr 26) and $3f] xor
  901. des_SPtrans[1,(t shr 2) and $3f] xor
  902. des_SPtrans[3,(t shr 10) and $3f] xor
  903. des_SPtrans[5,(t shr 18) and $3f] xor
  904. des_SPtrans[7,(t shr 26) and $3f];
  905. u:= l xor KeyData[i-2];
  906. t:= l xor KeyData[i-1];
  907. t:= (t shr 4) or (t shl 28);
  908. r:= r xor des_SPtrans[0,(u shr 2) and $3f] xor
  909. des_SPtrans[2,(u shr 10) and $3f] xor
  910. des_SPtrans[4,(u shr 18) and $3f] xor
  911. des_SPtrans[6,(u shr 26) and $3f] xor
  912. des_SPtrans[1,(t shr 2) and $3f] xor
  913. des_SPtrans[3,(t shr 10) and $3f] xor
  914. des_SPtrans[5,(t shr 18) and $3f] xor
  915. des_SPtrans[7,(t shr 26) and $3f];
  916. u:= r xor KeyData[i-4];
  917. t:= r xor KeyData[i-3];
  918. t:= (t shr 4) or (t shl 28);
  919. l:= l xor des_SPtrans[0,(u shr 2) and $3f] xor
  920. des_SPtrans[2,(u shr 10) and $3f] xor
  921. des_SPtrans[4,(u shr 18) and $3f] xor
  922. des_SPtrans[6,(u shr 26) and $3f] xor
  923. des_SPtrans[1,(t shr 2) and $3f] xor
  924. des_SPtrans[3,(t shr 10) and $3f] xor
  925. des_SPtrans[5,(t shr 18) and $3f] xor
  926. des_SPtrans[7,(t shr 26) and $3f];
  927. u:= l xor KeyData[i-6];
  928. t:= l xor KeyData[i-5];
  929. t:= (t shr 4) or (t shl 28);
  930. r:= r xor des_SPtrans[0,(u shr 2) and $3f] xor
  931. des_SPtrans[2,(u shr 10) and $3f] xor
  932. des_SPtrans[4,(u shr 18) and $3f] xor
  933. des_SPtrans[6,(u shr 26) and $3f] xor
  934. des_SPtrans[1,(t shr 2) and $3f] xor
  935. des_SPtrans[3,(t shr 10) and $3f] xor
  936. des_SPtrans[5,(t shr 18) and $3f] xor
  937. des_SPtrans[7,(t shr 26) and $3f];
  938. Dec(i,8);
  939. end;
  940. r:= (r shr 3) or (r shl 29);
  941. l:= (l shr 3) or (l shl 29);
  942. t:= ((r shr 1) xor l) and $55555555;
  943. l:= l xor t;
  944. r:= r xor (t shl 1);
  945. t:= ((l shr 8) xor r) and $00ff00ff;
  946. r:= r xor t;
  947. l:= l xor (t shl 8);
  948. t:= ((r shr 2) xor l) and $33333333;
  949. l:= l xor t;
  950. r:= r xor (t shl 2);
  951. t:= ((l shr 16) xor r) and $0000ffff;
  952. r:= r xor t;
  953. l:= l xor (t shl 16);
  954. t:= ((r shr 4) xor l) and $0f0f0f0f;
  955. l:= l xor t;
  956. r:= r xor (t shl 4);
  957. Result := CodeLongInt(Swapbytes(l)) + CodeLongInt(Swapbytes(r));
  958. end;
  959. {==============================================================================}
  960. procedure TSynaDes.InitKey(Key: AnsiString);
  961. begin
  962. Key := PadString(Key, 8, #0);
  963. DoInit(Key,KeyData);
  964. end;
  965. function TSynaDes.EncryptECB(const InData: AnsiString): AnsiString;
  966. begin
  967. Result := EncryptBlock(InData,KeyData);
  968. end;
  969. function TSynaDes.DecryptECB(const InData: AnsiString): AnsiString;
  970. begin
  971. Result := DecryptBlock(Indata,KeyData);
  972. end;
  973. {==============================================================================}
  974. procedure TSyna3Des.InitKey(Key: AnsiString);
  975. var
  976. Size: integer;
  977. n: integer;
  978. begin
  979. Size := length(Key);
  980. key := PadString(key, 3 * 8, #0);
  981. DoInit(Copy(key, 1, 8),KeyData[0]);
  982. DoInit(Copy(key, 9, 8),KeyData[1]);
  983. if Size > 16 then
  984. DoInit(Copy(key, 17, 8),KeyData[2])
  985. else
  986. for n := 0 to high(KeyData[0]) do
  987. KeyData[2][n] := Keydata[0][n];
  988. end;
  989. function TSyna3Des.EncryptECB(const InData: AnsiString): AnsiString;
  990. begin
  991. Result := EncryptBlock(Indata,KeyData[0]);
  992. Result := DecryptBlock(Result,KeyData[1]);
  993. Result := EncryptBlock(Result,KeyData[2]);
  994. end;
  995. function TSyna3Des.DecryptECB(const InData: AnsiString): AnsiString;
  996. begin
  997. Result := DecryptBlock(InData,KeyData[2]);
  998. Result := EncryptBlock(Result,KeyData[1]);
  999. Result := DecryptBlock(Result,KeyData[0]);
  1000. end;
  1001. {==============================================================================}
  1002. function TestDes: boolean;
  1003. var
  1004. des: TSynaDes;
  1005. s, t: string;
  1006. const
  1007. key = '01234567';
  1008. data1= '01234567';
  1009. data2= '0123456789abcdefghij';
  1010. begin
  1011. //ECB
  1012. des := TSynaDes.Create(key);
  1013. try
  1014. s := des.EncryptECB(data1);
  1015. t := strtohex(s);
  1016. result := t = 'c50ad028c6da9800';
  1017. s := des.DecryptECB(s);
  1018. result := result and (data1 = s);
  1019. finally
  1020. des.free;
  1021. end;
  1022. //CBC
  1023. des := TSynaDes.Create(key);
  1024. try
  1025. s := des.EncryptCBC(data2);
  1026. t := strtohex(s);
  1027. result := result and (t = 'eec50f6353115ad6dee90a22ed1b6a88a0926e35');
  1028. des.Reset;
  1029. s := des.DecryptCBC(s);
  1030. result := result and (data2 = s);
  1031. finally
  1032. des.free;
  1033. end;
  1034. //CFB-8bit
  1035. des := TSynaDes.Create(key);
  1036. try
  1037. s := des.EncryptCFB8bit(data2);
  1038. t := strtohex(s);
  1039. result := result and (t = 'eb6aa12c2f0ff634b4dfb6da6cb2af8f9c5c1452');
  1040. des.Reset;
  1041. s := des.DecryptCFB8bit(s);
  1042. result := result and (data2 = s);
  1043. finally
  1044. des.free;
  1045. end;
  1046. //CFB-block
  1047. des := TSynaDes.Create(key);
  1048. try
  1049. s := des.EncryptCFBblock(data2);
  1050. t := strtohex(s);
  1051. result := result and (t = 'ebdbbaa7f9286cdec28605e07f9b7f3be1053257');
  1052. des.Reset;
  1053. s := des.DecryptCFBblock(s);
  1054. result := result and (data2 = s);
  1055. finally
  1056. des.free;
  1057. end;
  1058. //OFB
  1059. des := TSynaDes.Create(key);
  1060. try
  1061. s := des.EncryptOFB(data2);
  1062. t := strtohex(s);
  1063. result := result and (t = 'ebdbbaa7f9286cdee0b8b3798c4c34baac87dbdc');
  1064. des.Reset;
  1065. s := des.DecryptOFB(s);
  1066. result := result and (data2 = s);
  1067. finally
  1068. des.free;
  1069. end;
  1070. //CTR
  1071. des := TSynaDes.Create(key);
  1072. try
  1073. s := des.EncryptCTR(data2);
  1074. t := strtohex(s);
  1075. result := result and (t = 'ebdbbaa7f9286cde0dd20b45f3afd9aa1b91b87e');
  1076. des.Reset;
  1077. s := des.DecryptCTR(s);
  1078. result := result and (data2 = s);
  1079. finally
  1080. des.free;
  1081. end;
  1082. end;
  1083. function Test3Des: boolean;
  1084. var
  1085. des: TSyna3Des;
  1086. s, t: string;
  1087. const
  1088. key = '0123456789abcdefghijklmn';
  1089. data1= '01234567';
  1090. data2= '0123456789abcdefghij';
  1091. begin
  1092. //ECB
  1093. des := TSyna3Des.Create(key);
  1094. try
  1095. s := des.EncryptECB(data1);
  1096. t := strtohex(s);
  1097. result := t = 'e0dee91008dc460c';
  1098. s := des.DecryptECB(s);
  1099. result := result and (data1 = s);
  1100. finally
  1101. des.free;
  1102. end;
  1103. //CBC
  1104. des := TSyna3Des.Create(key);
  1105. try
  1106. s := des.EncryptCBC(data2);
  1107. t := strtohex(s);
  1108. result := result and (t = 'ee844a2a4f49c01b91a1599b8eba29128c1ad87a');
  1109. des.Reset;
  1110. s := des.DecryptCBC(s);
  1111. result := result and (data2 = s);
  1112. finally
  1113. des.free;
  1114. end;
  1115. //CFB-8bit
  1116. des := TSyna3Des.Create(key);
  1117. try
  1118. s := des.EncryptCFB8bit(data2);
  1119. t := strtohex(s);
  1120. result := result and (t = '935bbf5210c32cfa1faf61f91e8dc02dfa0ff1e8');
  1121. des.Reset;
  1122. s := des.DecryptCFB8bit(s);
  1123. result := result and (data2 = s);
  1124. finally
  1125. des.free;
  1126. end;
  1127. //CFB-block
  1128. des := TSyna3Des.Create(key);
  1129. try
  1130. s := des.EncryptCFBblock(data2);
  1131. t := strtohex(s);
  1132. result := result and (t = '93754e3d54828fbf4bd81f1739419e8d2cfe1671');
  1133. des.Reset;
  1134. s := des.DecryptCFBblock(s);
  1135. result := result and (data2 = s);
  1136. finally
  1137. des.free;
  1138. end;
  1139. //OFB
  1140. des := TSyna3Des.Create(key);
  1141. try
  1142. s := des.EncryptOFB(data2);
  1143. t := strtohex(s);
  1144. result := result and (t = '93754e3d54828fbf04ef0a5efc926ebdf2d95f20');
  1145. des.Reset;
  1146. s := des.DecryptOFB(s);
  1147. result := result and (data2 = s);
  1148. finally
  1149. des.free;
  1150. end;
  1151. //CTR
  1152. des := TSyna3Des.Create(key);
  1153. try
  1154. s := des.EncryptCTR(data2);
  1155. t := strtohex(s);
  1156. result := result and (t = '93754e3d54828fbf1c51a121d2c93f989e70b3ad');
  1157. des.Reset;
  1158. s := des.DecryptCTR(s);
  1159. result := result and (data2 = s);
  1160. finally
  1161. des.free;
  1162. end;
  1163. end;
  1164. {==============================================================================}
  1165. end.