des.c 31 KB

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  1. /* Copyright (C) 1995-1998 Eric Young (eay@cryptsoft.com)
  2. * All rights reserved.
  3. *
  4. * This package is an SSL implementation written
  5. * by Eric Young (eay@cryptsoft.com).
  6. * The implementation was written so as to conform with Netscapes SSL.
  7. *
  8. * This library is free for commercial and non-commercial use as long as
  9. * the following conditions are aheared to. The following conditions
  10. * apply to all code found in this distribution, be it the RC4, RSA,
  11. * lhash, DES, etc., code; not just the SSL code. The SSL documentation
  12. * included with this distribution is covered by the same copyright terms
  13. * except that the holder is Tim Hudson (tjh@cryptsoft.com).
  14. *
  15. * Copyright remains Eric Young's, and as such any Copyright notices in
  16. * the code are not to be removed.
  17. * If this package is used in a product, Eric Young should be given attribution
  18. * as the author of the parts of the library used.
  19. * This can be in the form of a textual message at program startup or
  20. * in documentation (online or textual) provided with the package.
  21. *
  22. * Redistribution and use in source and binary forms, with or without
  23. * modification, are permitted provided that the following conditions
  24. * are met:
  25. * 1. Redistributions of source code must retain the copyright
  26. * notice, this list of conditions and the following disclaimer.
  27. * 2. Redistributions in binary form must reproduce the above copyright
  28. * notice, this list of conditions and the following disclaimer in the
  29. * documentation and/or other materials provided with the distribution.
  30. * 3. All advertising materials mentioning features or use of this software
  31. * must display the following acknowledgement:
  32. * "This product includes cryptographic software written by
  33. * Eric Young (eay@cryptsoft.com)"
  34. * The word 'cryptographic' can be left out if the rouines from the library
  35. * being used are not cryptographic related :-).
  36. * 4. If you include any Windows specific code (or a derivative thereof) from
  37. * the apps directory (application code) you must include an acknowledgement:
  38. * "This product includes software written by Tim Hudson (tjh@cryptsoft.com)"
  39. *
  40. * THIS SOFTWARE IS PROVIDED BY ERIC YOUNG ``AS IS'' AND
  41. * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
  42. * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
  43. * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
  44. * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
  45. * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
  46. * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
  47. * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
  48. * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
  49. * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
  50. * SUCH DAMAGE.
  51. *
  52. * The licence and distribution terms for any publically available version or
  53. * derivative of this code cannot be changed. i.e. this code cannot simply be
  54. * copied and put under another distribution licence
  55. * [including the GNU Public Licence.] */
  56. #include <openssl/des.h>
  57. #include <stdlib.h>
  58. #include "internal.h"
  59. static const uint32_t des_skb[8][64] = {
  60. { // for C bits (numbered as per FIPS 46) 1 2 3 4 5 6
  61. 0x00000000L, 0x00000010L, 0x20000000L, 0x20000010L, 0x00010000L,
  62. 0x00010010L, 0x20010000L, 0x20010010L, 0x00000800L, 0x00000810L,
  63. 0x20000800L, 0x20000810L, 0x00010800L, 0x00010810L, 0x20010800L,
  64. 0x20010810L, 0x00000020L, 0x00000030L, 0x20000020L, 0x20000030L,
  65. 0x00010020L, 0x00010030L, 0x20010020L, 0x20010030L, 0x00000820L,
  66. 0x00000830L, 0x20000820L, 0x20000830L, 0x00010820L, 0x00010830L,
  67. 0x20010820L, 0x20010830L, 0x00080000L, 0x00080010L, 0x20080000L,
  68. 0x20080010L, 0x00090000L, 0x00090010L, 0x20090000L, 0x20090010L,
  69. 0x00080800L, 0x00080810L, 0x20080800L, 0x20080810L, 0x00090800L,
  70. 0x00090810L, 0x20090800L, 0x20090810L, 0x00080020L, 0x00080030L,
  71. 0x20080020L, 0x20080030L, 0x00090020L, 0x00090030L, 0x20090020L,
  72. 0x20090030L, 0x00080820L, 0x00080830L, 0x20080820L, 0x20080830L,
  73. 0x00090820L, 0x00090830L, 0x20090820L, 0x20090830L, },
  74. { // for C bits (numbered as per FIPS 46) 7 8 10 11 12 13
  75. 0x00000000L, 0x02000000L, 0x00002000L, 0x02002000L, 0x00200000L,
  76. 0x02200000L, 0x00202000L, 0x02202000L, 0x00000004L, 0x02000004L,
  77. 0x00002004L, 0x02002004L, 0x00200004L, 0x02200004L, 0x00202004L,
  78. 0x02202004L, 0x00000400L, 0x02000400L, 0x00002400L, 0x02002400L,
  79. 0x00200400L, 0x02200400L, 0x00202400L, 0x02202400L, 0x00000404L,
  80. 0x02000404L, 0x00002404L, 0x02002404L, 0x00200404L, 0x02200404L,
  81. 0x00202404L, 0x02202404L, 0x10000000L, 0x12000000L, 0x10002000L,
  82. 0x12002000L, 0x10200000L, 0x12200000L, 0x10202000L, 0x12202000L,
  83. 0x10000004L, 0x12000004L, 0x10002004L, 0x12002004L, 0x10200004L,
  84. 0x12200004L, 0x10202004L, 0x12202004L, 0x10000400L, 0x12000400L,
  85. 0x10002400L, 0x12002400L, 0x10200400L, 0x12200400L, 0x10202400L,
  86. 0x12202400L, 0x10000404L, 0x12000404L, 0x10002404L, 0x12002404L,
  87. 0x10200404L, 0x12200404L, 0x10202404L, 0x12202404L, },
  88. { // for C bits (numbered as per FIPS 46) 14 15 16 17 19 20
  89. 0x00000000L, 0x00000001L, 0x00040000L, 0x00040001L, 0x01000000L,
  90. 0x01000001L, 0x01040000L, 0x01040001L, 0x00000002L, 0x00000003L,
  91. 0x00040002L, 0x00040003L, 0x01000002L, 0x01000003L, 0x01040002L,
  92. 0x01040003L, 0x00000200L, 0x00000201L, 0x00040200L, 0x00040201L,
  93. 0x01000200L, 0x01000201L, 0x01040200L, 0x01040201L, 0x00000202L,
  94. 0x00000203L, 0x00040202L, 0x00040203L, 0x01000202L, 0x01000203L,
  95. 0x01040202L, 0x01040203L, 0x08000000L, 0x08000001L, 0x08040000L,
  96. 0x08040001L, 0x09000000L, 0x09000001L, 0x09040000L, 0x09040001L,
  97. 0x08000002L, 0x08000003L, 0x08040002L, 0x08040003L, 0x09000002L,
  98. 0x09000003L, 0x09040002L, 0x09040003L, 0x08000200L, 0x08000201L,
  99. 0x08040200L, 0x08040201L, 0x09000200L, 0x09000201L, 0x09040200L,
  100. 0x09040201L, 0x08000202L, 0x08000203L, 0x08040202L, 0x08040203L,
  101. 0x09000202L, 0x09000203L, 0x09040202L, 0x09040203L, },
  102. { // for C bits (numbered as per FIPS 46) 21 23 24 26 27 28
  103. 0x00000000L, 0x00100000L, 0x00000100L, 0x00100100L, 0x00000008L,
  104. 0x00100008L, 0x00000108L, 0x00100108L, 0x00001000L, 0x00101000L,
  105. 0x00001100L, 0x00101100L, 0x00001008L, 0x00101008L, 0x00001108L,
  106. 0x00101108L, 0x04000000L, 0x04100000L, 0x04000100L, 0x04100100L,
  107. 0x04000008L, 0x04100008L, 0x04000108L, 0x04100108L, 0x04001000L,
  108. 0x04101000L, 0x04001100L, 0x04101100L, 0x04001008L, 0x04101008L,
  109. 0x04001108L, 0x04101108L, 0x00020000L, 0x00120000L, 0x00020100L,
  110. 0x00120100L, 0x00020008L, 0x00120008L, 0x00020108L, 0x00120108L,
  111. 0x00021000L, 0x00121000L, 0x00021100L, 0x00121100L, 0x00021008L,
  112. 0x00121008L, 0x00021108L, 0x00121108L, 0x04020000L, 0x04120000L,
  113. 0x04020100L, 0x04120100L, 0x04020008L, 0x04120008L, 0x04020108L,
  114. 0x04120108L, 0x04021000L, 0x04121000L, 0x04021100L, 0x04121100L,
  115. 0x04021008L, 0x04121008L, 0x04021108L, 0x04121108L, },
  116. { // for D bits (numbered as per FIPS 46) 1 2 3 4 5 6
  117. 0x00000000L, 0x10000000L, 0x00010000L, 0x10010000L, 0x00000004L,
  118. 0x10000004L, 0x00010004L, 0x10010004L, 0x20000000L, 0x30000000L,
  119. 0x20010000L, 0x30010000L, 0x20000004L, 0x30000004L, 0x20010004L,
  120. 0x30010004L, 0x00100000L, 0x10100000L, 0x00110000L, 0x10110000L,
  121. 0x00100004L, 0x10100004L, 0x00110004L, 0x10110004L, 0x20100000L,
  122. 0x30100000L, 0x20110000L, 0x30110000L, 0x20100004L, 0x30100004L,
  123. 0x20110004L, 0x30110004L, 0x00001000L, 0x10001000L, 0x00011000L,
  124. 0x10011000L, 0x00001004L, 0x10001004L, 0x00011004L, 0x10011004L,
  125. 0x20001000L, 0x30001000L, 0x20011000L, 0x30011000L, 0x20001004L,
  126. 0x30001004L, 0x20011004L, 0x30011004L, 0x00101000L, 0x10101000L,
  127. 0x00111000L, 0x10111000L, 0x00101004L, 0x10101004L, 0x00111004L,
  128. 0x10111004L, 0x20101000L, 0x30101000L, 0x20111000L, 0x30111000L,
  129. 0x20101004L, 0x30101004L, 0x20111004L, 0x30111004L, },
  130. { // for D bits (numbered as per FIPS 46) 8 9 11 12 13 14
  131. 0x00000000L, 0x08000000L, 0x00000008L, 0x08000008L, 0x00000400L,
  132. 0x08000400L, 0x00000408L, 0x08000408L, 0x00020000L, 0x08020000L,
  133. 0x00020008L, 0x08020008L, 0x00020400L, 0x08020400L, 0x00020408L,
  134. 0x08020408L, 0x00000001L, 0x08000001L, 0x00000009L, 0x08000009L,
  135. 0x00000401L, 0x08000401L, 0x00000409L, 0x08000409L, 0x00020001L,
  136. 0x08020001L, 0x00020009L, 0x08020009L, 0x00020401L, 0x08020401L,
  137. 0x00020409L, 0x08020409L, 0x02000000L, 0x0A000000L, 0x02000008L,
  138. 0x0A000008L, 0x02000400L, 0x0A000400L, 0x02000408L, 0x0A000408L,
  139. 0x02020000L, 0x0A020000L, 0x02020008L, 0x0A020008L, 0x02020400L,
  140. 0x0A020400L, 0x02020408L, 0x0A020408L, 0x02000001L, 0x0A000001L,
  141. 0x02000009L, 0x0A000009L, 0x02000401L, 0x0A000401L, 0x02000409L,
  142. 0x0A000409L, 0x02020001L, 0x0A020001L, 0x02020009L, 0x0A020009L,
  143. 0x02020401L, 0x0A020401L, 0x02020409L, 0x0A020409L, },
  144. { // for D bits (numbered as per FIPS 46) 16 17 18 19 20 21
  145. 0x00000000L, 0x00000100L, 0x00080000L, 0x00080100L, 0x01000000L,
  146. 0x01000100L, 0x01080000L, 0x01080100L, 0x00000010L, 0x00000110L,
  147. 0x00080010L, 0x00080110L, 0x01000010L, 0x01000110L, 0x01080010L,
  148. 0x01080110L, 0x00200000L, 0x00200100L, 0x00280000L, 0x00280100L,
  149. 0x01200000L, 0x01200100L, 0x01280000L, 0x01280100L, 0x00200010L,
  150. 0x00200110L, 0x00280010L, 0x00280110L, 0x01200010L, 0x01200110L,
  151. 0x01280010L, 0x01280110L, 0x00000200L, 0x00000300L, 0x00080200L,
  152. 0x00080300L, 0x01000200L, 0x01000300L, 0x01080200L, 0x01080300L,
  153. 0x00000210L, 0x00000310L, 0x00080210L, 0x00080310L, 0x01000210L,
  154. 0x01000310L, 0x01080210L, 0x01080310L, 0x00200200L, 0x00200300L,
  155. 0x00280200L, 0x00280300L, 0x01200200L, 0x01200300L, 0x01280200L,
  156. 0x01280300L, 0x00200210L, 0x00200310L, 0x00280210L, 0x00280310L,
  157. 0x01200210L, 0x01200310L, 0x01280210L, 0x01280310L, },
  158. { // for D bits (numbered as per FIPS 46) 22 23 24 25 27 28
  159. 0x00000000L, 0x04000000L, 0x00040000L, 0x04040000L, 0x00000002L,
  160. 0x04000002L, 0x00040002L, 0x04040002L, 0x00002000L, 0x04002000L,
  161. 0x00042000L, 0x04042000L, 0x00002002L, 0x04002002L, 0x00042002L,
  162. 0x04042002L, 0x00000020L, 0x04000020L, 0x00040020L, 0x04040020L,
  163. 0x00000022L, 0x04000022L, 0x00040022L, 0x04040022L, 0x00002020L,
  164. 0x04002020L, 0x00042020L, 0x04042020L, 0x00002022L, 0x04002022L,
  165. 0x00042022L, 0x04042022L, 0x00000800L, 0x04000800L, 0x00040800L,
  166. 0x04040800L, 0x00000802L, 0x04000802L, 0x00040802L, 0x04040802L,
  167. 0x00002800L, 0x04002800L, 0x00042800L, 0x04042800L, 0x00002802L,
  168. 0x04002802L, 0x00042802L, 0x04042802L, 0x00000820L, 0x04000820L,
  169. 0x00040820L, 0x04040820L, 0x00000822L, 0x04000822L, 0x00040822L,
  170. 0x04040822L, 0x00002820L, 0x04002820L, 0x00042820L, 0x04042820L,
  171. 0x00002822L, 0x04002822L, 0x00042822L, 0x04042822L, }};
  172. static const uint32_t DES_SPtrans[8][64] = {
  173. { // nibble 0
  174. 0x02080800L, 0x00080000L, 0x02000002L, 0x02080802L, 0x02000000L,
  175. 0x00080802L, 0x00080002L, 0x02000002L, 0x00080802L, 0x02080800L,
  176. 0x02080000L, 0x00000802L, 0x02000802L, 0x02000000L, 0x00000000L,
  177. 0x00080002L, 0x00080000L, 0x00000002L, 0x02000800L, 0x00080800L,
  178. 0x02080802L, 0x02080000L, 0x00000802L, 0x02000800L, 0x00000002L,
  179. 0x00000800L, 0x00080800L, 0x02080002L, 0x00000800L, 0x02000802L,
  180. 0x02080002L, 0x00000000L, 0x00000000L, 0x02080802L, 0x02000800L,
  181. 0x00080002L, 0x02080800L, 0x00080000L, 0x00000802L, 0x02000800L,
  182. 0x02080002L, 0x00000800L, 0x00080800L, 0x02000002L, 0x00080802L,
  183. 0x00000002L, 0x02000002L, 0x02080000L, 0x02080802L, 0x00080800L,
  184. 0x02080000L, 0x02000802L, 0x02000000L, 0x00000802L, 0x00080002L,
  185. 0x00000000L, 0x00080000L, 0x02000000L, 0x02000802L, 0x02080800L,
  186. 0x00000002L, 0x02080002L, 0x00000800L, 0x00080802L, },
  187. { // nibble 1
  188. 0x40108010L, 0x00000000L, 0x00108000L, 0x40100000L, 0x40000010L,
  189. 0x00008010L, 0x40008000L, 0x00108000L, 0x00008000L, 0x40100010L,
  190. 0x00000010L, 0x40008000L, 0x00100010L, 0x40108000L, 0x40100000L,
  191. 0x00000010L, 0x00100000L, 0x40008010L, 0x40100010L, 0x00008000L,
  192. 0x00108010L, 0x40000000L, 0x00000000L, 0x00100010L, 0x40008010L,
  193. 0x00108010L, 0x40108000L, 0x40000010L, 0x40000000L, 0x00100000L,
  194. 0x00008010L, 0x40108010L, 0x00100010L, 0x40108000L, 0x40008000L,
  195. 0x00108010L, 0x40108010L, 0x00100010L, 0x40000010L, 0x00000000L,
  196. 0x40000000L, 0x00008010L, 0x00100000L, 0x40100010L, 0x00008000L,
  197. 0x40000000L, 0x00108010L, 0x40008010L, 0x40108000L, 0x00008000L,
  198. 0x00000000L, 0x40000010L, 0x00000010L, 0x40108010L, 0x00108000L,
  199. 0x40100000L, 0x40100010L, 0x00100000L, 0x00008010L, 0x40008000L,
  200. 0x40008010L, 0x00000010L, 0x40100000L, 0x00108000L, },
  201. { // nibble 2
  202. 0x04000001L, 0x04040100L, 0x00000100L, 0x04000101L, 0x00040001L,
  203. 0x04000000L, 0x04000101L, 0x00040100L, 0x04000100L, 0x00040000L,
  204. 0x04040000L, 0x00000001L, 0x04040101L, 0x00000101L, 0x00000001L,
  205. 0x04040001L, 0x00000000L, 0x00040001L, 0x04040100L, 0x00000100L,
  206. 0x00000101L, 0x04040101L, 0x00040000L, 0x04000001L, 0x04040001L,
  207. 0x04000100L, 0x00040101L, 0x04040000L, 0x00040100L, 0x00000000L,
  208. 0x04000000L, 0x00040101L, 0x04040100L, 0x00000100L, 0x00000001L,
  209. 0x00040000L, 0x00000101L, 0x00040001L, 0x04040000L, 0x04000101L,
  210. 0x00000000L, 0x04040100L, 0x00040100L, 0x04040001L, 0x00040001L,
  211. 0x04000000L, 0x04040101L, 0x00000001L, 0x00040101L, 0x04000001L,
  212. 0x04000000L, 0x04040101L, 0x00040000L, 0x04000100L, 0x04000101L,
  213. 0x00040100L, 0x04000100L, 0x00000000L, 0x04040001L, 0x00000101L,
  214. 0x04000001L, 0x00040101L, 0x00000100L, 0x04040000L, },
  215. { // nibble 3
  216. 0x00401008L, 0x10001000L, 0x00000008L, 0x10401008L, 0x00000000L,
  217. 0x10400000L, 0x10001008L, 0x00400008L, 0x10401000L, 0x10000008L,
  218. 0x10000000L, 0x00001008L, 0x10000008L, 0x00401008L, 0x00400000L,
  219. 0x10000000L, 0x10400008L, 0x00401000L, 0x00001000L, 0x00000008L,
  220. 0x00401000L, 0x10001008L, 0x10400000L, 0x00001000L, 0x00001008L,
  221. 0x00000000L, 0x00400008L, 0x10401000L, 0x10001000L, 0x10400008L,
  222. 0x10401008L, 0x00400000L, 0x10400008L, 0x00001008L, 0x00400000L,
  223. 0x10000008L, 0x00401000L, 0x10001000L, 0x00000008L, 0x10400000L,
  224. 0x10001008L, 0x00000000L, 0x00001000L, 0x00400008L, 0x00000000L,
  225. 0x10400008L, 0x10401000L, 0x00001000L, 0x10000000L, 0x10401008L,
  226. 0x00401008L, 0x00400000L, 0x10401008L, 0x00000008L, 0x10001000L,
  227. 0x00401008L, 0x00400008L, 0x00401000L, 0x10400000L, 0x10001008L,
  228. 0x00001008L, 0x10000000L, 0x10000008L, 0x10401000L, },
  229. { // nibble 4
  230. 0x08000000L, 0x00010000L, 0x00000400L, 0x08010420L, 0x08010020L,
  231. 0x08000400L, 0x00010420L, 0x08010000L, 0x00010000L, 0x00000020L,
  232. 0x08000020L, 0x00010400L, 0x08000420L, 0x08010020L, 0x08010400L,
  233. 0x00000000L, 0x00010400L, 0x08000000L, 0x00010020L, 0x00000420L,
  234. 0x08000400L, 0x00010420L, 0x00000000L, 0x08000020L, 0x00000020L,
  235. 0x08000420L, 0x08010420L, 0x00010020L, 0x08010000L, 0x00000400L,
  236. 0x00000420L, 0x08010400L, 0x08010400L, 0x08000420L, 0x00010020L,
  237. 0x08010000L, 0x00010000L, 0x00000020L, 0x08000020L, 0x08000400L,
  238. 0x08000000L, 0x00010400L, 0x08010420L, 0x00000000L, 0x00010420L,
  239. 0x08000000L, 0x00000400L, 0x00010020L, 0x08000420L, 0x00000400L,
  240. 0x00000000L, 0x08010420L, 0x08010020L, 0x08010400L, 0x00000420L,
  241. 0x00010000L, 0x00010400L, 0x08010020L, 0x08000400L, 0x00000420L,
  242. 0x00000020L, 0x00010420L, 0x08010000L, 0x08000020L, },
  243. { // nibble 5
  244. 0x80000040L, 0x00200040L, 0x00000000L, 0x80202000L, 0x00200040L,
  245. 0x00002000L, 0x80002040L, 0x00200000L, 0x00002040L, 0x80202040L,
  246. 0x00202000L, 0x80000000L, 0x80002000L, 0x80000040L, 0x80200000L,
  247. 0x00202040L, 0x00200000L, 0x80002040L, 0x80200040L, 0x00000000L,
  248. 0x00002000L, 0x00000040L, 0x80202000L, 0x80200040L, 0x80202040L,
  249. 0x80200000L, 0x80000000L, 0x00002040L, 0x00000040L, 0x00202000L,
  250. 0x00202040L, 0x80002000L, 0x00002040L, 0x80000000L, 0x80002000L,
  251. 0x00202040L, 0x80202000L, 0x00200040L, 0x00000000L, 0x80002000L,
  252. 0x80000000L, 0x00002000L, 0x80200040L, 0x00200000L, 0x00200040L,
  253. 0x80202040L, 0x00202000L, 0x00000040L, 0x80202040L, 0x00202000L,
  254. 0x00200000L, 0x80002040L, 0x80000040L, 0x80200000L, 0x00202040L,
  255. 0x00000000L, 0x00002000L, 0x80000040L, 0x80002040L, 0x80202000L,
  256. 0x80200000L, 0x00002040L, 0x00000040L, 0x80200040L, },
  257. { // nibble 6
  258. 0x00004000L, 0x00000200L, 0x01000200L, 0x01000004L, 0x01004204L,
  259. 0x00004004L, 0x00004200L, 0x00000000L, 0x01000000L, 0x01000204L,
  260. 0x00000204L, 0x01004000L, 0x00000004L, 0x01004200L, 0x01004000L,
  261. 0x00000204L, 0x01000204L, 0x00004000L, 0x00004004L, 0x01004204L,
  262. 0x00000000L, 0x01000200L, 0x01000004L, 0x00004200L, 0x01004004L,
  263. 0x00004204L, 0x01004200L, 0x00000004L, 0x00004204L, 0x01004004L,
  264. 0x00000200L, 0x01000000L, 0x00004204L, 0x01004000L, 0x01004004L,
  265. 0x00000204L, 0x00004000L, 0x00000200L, 0x01000000L, 0x01004004L,
  266. 0x01000204L, 0x00004204L, 0x00004200L, 0x00000000L, 0x00000200L,
  267. 0x01000004L, 0x00000004L, 0x01000200L, 0x00000000L, 0x01000204L,
  268. 0x01000200L, 0x00004200L, 0x00000204L, 0x00004000L, 0x01004204L,
  269. 0x01000000L, 0x01004200L, 0x00000004L, 0x00004004L, 0x01004204L,
  270. 0x01000004L, 0x01004200L, 0x01004000L, 0x00004004L, },
  271. { // nibble 7
  272. 0x20800080L, 0x20820000L, 0x00020080L, 0x00000000L, 0x20020000L,
  273. 0x00800080L, 0x20800000L, 0x20820080L, 0x00000080L, 0x20000000L,
  274. 0x00820000L, 0x00020080L, 0x00820080L, 0x20020080L, 0x20000080L,
  275. 0x20800000L, 0x00020000L, 0x00820080L, 0x00800080L, 0x20020000L,
  276. 0x20820080L, 0x20000080L, 0x00000000L, 0x00820000L, 0x20000000L,
  277. 0x00800000L, 0x20020080L, 0x20800080L, 0x00800000L, 0x00020000L,
  278. 0x20820000L, 0x00000080L, 0x00800000L, 0x00020000L, 0x20000080L,
  279. 0x20820080L, 0x00020080L, 0x20000000L, 0x00000000L, 0x00820000L,
  280. 0x20800080L, 0x20020080L, 0x20020000L, 0x00800080L, 0x20820000L,
  281. 0x00000080L, 0x00800080L, 0x20020000L, 0x20820080L, 0x00800000L,
  282. 0x20800000L, 0x20000080L, 0x00820000L, 0x00020080L, 0x20020080L,
  283. 0x20800000L, 0x00000080L, 0x20820000L, 0x00820080L, 0x00000000L,
  284. 0x20000000L, 0x20800080L, 0x00020000L, 0x00820080L, }};
  285. #define HPERM_OP(a, t, n, m) \
  286. ((t) = ((((a) << (16 - (n))) ^ (a)) & (m)), \
  287. (a) = (a) ^ (t) ^ ((t) >> (16 - (n))))
  288. void DES_set_key(const DES_cblock *key, DES_key_schedule *schedule) {
  289. static const int shifts2[16] = {0, 0, 1, 1, 1, 1, 1, 1,
  290. 0, 1, 1, 1, 1, 1, 1, 0};
  291. uint32_t c, d, t, s, t2;
  292. const uint8_t *in;
  293. int i;
  294. in = key->bytes;
  295. c2l(in, c);
  296. c2l(in, d);
  297. // do PC1 in 47 simple operations :-)
  298. // Thanks to John Fletcher (john_fletcher@lccmail.ocf.llnl.gov)
  299. // for the inspiration. :-)
  300. PERM_OP(d, c, t, 4, 0x0f0f0f0fL);
  301. HPERM_OP(c, t, -2, 0xcccc0000L);
  302. HPERM_OP(d, t, -2, 0xcccc0000L);
  303. PERM_OP(d, c, t, 1, 0x55555555L);
  304. PERM_OP(c, d, t, 8, 0x00ff00ffL);
  305. PERM_OP(d, c, t, 1, 0x55555555L);
  306. d = (((d & 0x000000ffL) << 16L) | (d & 0x0000ff00L) |
  307. ((d & 0x00ff0000L) >> 16L) | ((c & 0xf0000000L) >> 4L));
  308. c &= 0x0fffffffL;
  309. for (i = 0; i < ITERATIONS; i++) {
  310. if (shifts2[i]) {
  311. c = ((c >> 2L) | (c << 26L));
  312. d = ((d >> 2L) | (d << 26L));
  313. } else {
  314. c = ((c >> 1L) | (c << 27L));
  315. d = ((d >> 1L) | (d << 27L));
  316. }
  317. c &= 0x0fffffffL;
  318. d &= 0x0fffffffL;
  319. // could be a few less shifts but I am to lazy at this
  320. // point in time to investigate
  321. s = des_skb[0][(c) & 0x3f] |
  322. des_skb[1][((c >> 6L) & 0x03) | ((c >> 7L) & 0x3c)] |
  323. des_skb[2][((c >> 13L) & 0x0f) | ((c >> 14L) & 0x30)] |
  324. des_skb[3][((c >> 20L) & 0x01) | ((c >> 21L) & 0x06) |
  325. ((c >> 22L) & 0x38)];
  326. t = des_skb[4][(d) & 0x3f] |
  327. des_skb[5][((d >> 7L) & 0x03) | ((d >> 8L) & 0x3c)] |
  328. des_skb[6][(d >> 15L) & 0x3f] |
  329. des_skb[7][((d >> 21L) & 0x0f) | ((d >> 22L) & 0x30)];
  330. // table contained 0213 4657
  331. t2 = ((t << 16L) | (s & 0x0000ffffL)) & 0xffffffffL;
  332. schedule->subkeys[i][0] = ROTATE(t2, 30) & 0xffffffffL;
  333. t2 = ((s >> 16L) | (t & 0xffff0000L));
  334. schedule->subkeys[i][1] = ROTATE(t2, 26) & 0xffffffffL;
  335. }
  336. }
  337. static const uint8_t kOddParity[256] = {
  338. 1, 1, 2, 2, 4, 4, 7, 7, 8, 8, 11, 11, 13, 13, 14,
  339. 14, 16, 16, 19, 19, 21, 21, 22, 22, 25, 25, 26, 26, 28, 28,
  340. 31, 31, 32, 32, 35, 35, 37, 37, 38, 38, 41, 41, 42, 42, 44,
  341. 44, 47, 47, 49, 49, 50, 50, 52, 52, 55, 55, 56, 56, 59, 59,
  342. 61, 61, 62, 62, 64, 64, 67, 67, 69, 69, 70, 70, 73, 73, 74,
  343. 74, 76, 76, 79, 79, 81, 81, 82, 82, 84, 84, 87, 87, 88, 88,
  344. 91, 91, 93, 93, 94, 94, 97, 97, 98, 98, 100, 100, 103, 103, 104,
  345. 104, 107, 107, 109, 109, 110, 110, 112, 112, 115, 115, 117, 117, 118, 118,
  346. 121, 121, 122, 122, 124, 124, 127, 127, 128, 128, 131, 131, 133, 133, 134,
  347. 134, 137, 137, 138, 138, 140, 140, 143, 143, 145, 145, 146, 146, 148, 148,
  348. 151, 151, 152, 152, 155, 155, 157, 157, 158, 158, 161, 161, 162, 162, 164,
  349. 164, 167, 167, 168, 168, 171, 171, 173, 173, 174, 174, 176, 176, 179, 179,
  350. 181, 181, 182, 182, 185, 185, 186, 186, 188, 188, 191, 191, 193, 193, 194,
  351. 194, 196, 196, 199, 199, 200, 200, 203, 203, 205, 205, 206, 206, 208, 208,
  352. 211, 211, 213, 213, 214, 214, 217, 217, 218, 218, 220, 220, 223, 223, 224,
  353. 224, 227, 227, 229, 229, 230, 230, 233, 233, 234, 234, 236, 236, 239, 239,
  354. 241, 241, 242, 242, 244, 244, 247, 247, 248, 248, 251, 251, 253, 253, 254,
  355. 254
  356. };
  357. void DES_set_odd_parity(DES_cblock *key) {
  358. unsigned i;
  359. for (i = 0; i < DES_KEY_SZ; i++) {
  360. key->bytes[i] = kOddParity[key->bytes[i]];
  361. }
  362. }
  363. static void DES_encrypt1(uint32_t *data, const DES_key_schedule *ks, int enc) {
  364. uint32_t l, r, t, u;
  365. r = data[0];
  366. l = data[1];
  367. IP(r, l);
  368. // Things have been modified so that the initial rotate is done outside
  369. // the loop. This required the DES_SPtrans values in sp.h to be
  370. // rotated 1 bit to the right. One perl script later and things have a
  371. // 5% speed up on a sparc2. Thanks to Richard Outerbridge
  372. // <71755.204@CompuServe.COM> for pointing this out.
  373. // clear the top bits on machines with 8byte longs
  374. // shift left by 2
  375. r = ROTATE(r, 29) & 0xffffffffL;
  376. l = ROTATE(l, 29) & 0xffffffffL;
  377. // I don't know if it is worth the effort of loop unrolling the
  378. // inner loop
  379. if (enc) {
  380. D_ENCRYPT(ks, l, r, 0);
  381. D_ENCRYPT(ks, r, l, 1);
  382. D_ENCRYPT(ks, l, r, 2);
  383. D_ENCRYPT(ks, r, l, 3);
  384. D_ENCRYPT(ks, l, r, 4);
  385. D_ENCRYPT(ks, r, l, 5);
  386. D_ENCRYPT(ks, l, r, 6);
  387. D_ENCRYPT(ks, r, l, 7);
  388. D_ENCRYPT(ks, l, r, 8);
  389. D_ENCRYPT(ks, r, l, 9);
  390. D_ENCRYPT(ks, l, r, 10);
  391. D_ENCRYPT(ks, r, l, 11);
  392. D_ENCRYPT(ks, l, r, 12);
  393. D_ENCRYPT(ks, r, l, 13);
  394. D_ENCRYPT(ks, l, r, 14);
  395. D_ENCRYPT(ks, r, l, 15);
  396. } else {
  397. D_ENCRYPT(ks, l, r, 15);
  398. D_ENCRYPT(ks, r, l, 14);
  399. D_ENCRYPT(ks, l, r, 13);
  400. D_ENCRYPT(ks, r, l, 12);
  401. D_ENCRYPT(ks, l, r, 11);
  402. D_ENCRYPT(ks, r, l, 10);
  403. D_ENCRYPT(ks, l, r, 9);
  404. D_ENCRYPT(ks, r, l, 8);
  405. D_ENCRYPT(ks, l, r, 7);
  406. D_ENCRYPT(ks, r, l, 6);
  407. D_ENCRYPT(ks, l, r, 5);
  408. D_ENCRYPT(ks, r, l, 4);
  409. D_ENCRYPT(ks, l, r, 3);
  410. D_ENCRYPT(ks, r, l, 2);
  411. D_ENCRYPT(ks, l, r, 1);
  412. D_ENCRYPT(ks, r, l, 0);
  413. }
  414. // rotate and clear the top bits on machines with 8byte longs
  415. l = ROTATE(l, 3) & 0xffffffffL;
  416. r = ROTATE(r, 3) & 0xffffffffL;
  417. FP(r, l);
  418. data[0] = l;
  419. data[1] = r;
  420. }
  421. static void DES_encrypt2(uint32_t *data, const DES_key_schedule *ks, int enc) {
  422. uint32_t l, r, t, u;
  423. r = data[0];
  424. l = data[1];
  425. // Things have been modified so that the initial rotate is done outside the
  426. // loop. This required the DES_SPtrans values in sp.h to be rotated 1 bit to
  427. // the right. One perl script later and things have a 5% speed up on a
  428. // sparc2. Thanks to Richard Outerbridge <71755.204@CompuServe.COM> for
  429. // pointing this out.
  430. // clear the top bits on machines with 8byte longs
  431. r = ROTATE(r, 29) & 0xffffffffL;
  432. l = ROTATE(l, 29) & 0xffffffffL;
  433. // I don't know if it is worth the effort of loop unrolling the
  434. // inner loop
  435. if (enc) {
  436. D_ENCRYPT(ks, l, r, 0);
  437. D_ENCRYPT(ks, r, l, 1);
  438. D_ENCRYPT(ks, l, r, 2);
  439. D_ENCRYPT(ks, r, l, 3);
  440. D_ENCRYPT(ks, l, r, 4);
  441. D_ENCRYPT(ks, r, l, 5);
  442. D_ENCRYPT(ks, l, r, 6);
  443. D_ENCRYPT(ks, r, l, 7);
  444. D_ENCRYPT(ks, l, r, 8);
  445. D_ENCRYPT(ks, r, l, 9);
  446. D_ENCRYPT(ks, l, r, 10);
  447. D_ENCRYPT(ks, r, l, 11);
  448. D_ENCRYPT(ks, l, r, 12);
  449. D_ENCRYPT(ks, r, l, 13);
  450. D_ENCRYPT(ks, l, r, 14);
  451. D_ENCRYPT(ks, r, l, 15);
  452. } else {
  453. D_ENCRYPT(ks, l, r, 15);
  454. D_ENCRYPT(ks, r, l, 14);
  455. D_ENCRYPT(ks, l, r, 13);
  456. D_ENCRYPT(ks, r, l, 12);
  457. D_ENCRYPT(ks, l, r, 11);
  458. D_ENCRYPT(ks, r, l, 10);
  459. D_ENCRYPT(ks, l, r, 9);
  460. D_ENCRYPT(ks, r, l, 8);
  461. D_ENCRYPT(ks, l, r, 7);
  462. D_ENCRYPT(ks, r, l, 6);
  463. D_ENCRYPT(ks, l, r, 5);
  464. D_ENCRYPT(ks, r, l, 4);
  465. D_ENCRYPT(ks, l, r, 3);
  466. D_ENCRYPT(ks, r, l, 2);
  467. D_ENCRYPT(ks, l, r, 1);
  468. D_ENCRYPT(ks, r, l, 0);
  469. }
  470. // rotate and clear the top bits on machines with 8byte longs
  471. data[0] = ROTATE(l, 3) & 0xffffffffL;
  472. data[1] = ROTATE(r, 3) & 0xffffffffL;
  473. }
  474. void DES_encrypt3(uint32_t *data, const DES_key_schedule *ks1,
  475. const DES_key_schedule *ks2, const DES_key_schedule *ks3) {
  476. uint32_t l, r;
  477. l = data[0];
  478. r = data[1];
  479. IP(l, r);
  480. data[0] = l;
  481. data[1] = r;
  482. DES_encrypt2((uint32_t *)data, ks1, DES_ENCRYPT);
  483. DES_encrypt2((uint32_t *)data, ks2, DES_DECRYPT);
  484. DES_encrypt2((uint32_t *)data, ks3, DES_ENCRYPT);
  485. l = data[0];
  486. r = data[1];
  487. FP(r, l);
  488. data[0] = l;
  489. data[1] = r;
  490. }
  491. void DES_decrypt3(uint32_t *data, const DES_key_schedule *ks1,
  492. const DES_key_schedule *ks2, const DES_key_schedule *ks3) {
  493. uint32_t l, r;
  494. l = data[0];
  495. r = data[1];
  496. IP(l, r);
  497. data[0] = l;
  498. data[1] = r;
  499. DES_encrypt2((uint32_t *)data, ks3, DES_DECRYPT);
  500. DES_encrypt2((uint32_t *)data, ks2, DES_ENCRYPT);
  501. DES_encrypt2((uint32_t *)data, ks1, DES_DECRYPT);
  502. l = data[0];
  503. r = data[1];
  504. FP(r, l);
  505. data[0] = l;
  506. data[1] = r;
  507. }
  508. void DES_ecb_encrypt(const DES_cblock *in_block, DES_cblock *out_block,
  509. const DES_key_schedule *schedule, int is_encrypt) {
  510. uint32_t l;
  511. uint32_t ll[2];
  512. const uint8_t *in = in_block->bytes;
  513. uint8_t *out = out_block->bytes;
  514. c2l(in, l);
  515. ll[0] = l;
  516. c2l(in, l);
  517. ll[1] = l;
  518. DES_encrypt1(ll, schedule, is_encrypt);
  519. l = ll[0];
  520. l2c(l, out);
  521. l = ll[1];
  522. l2c(l, out);
  523. ll[0] = ll[1] = 0;
  524. }
  525. void DES_ncbc_encrypt(const uint8_t *in, uint8_t *out, size_t len,
  526. const DES_key_schedule *schedule, DES_cblock *ivec,
  527. int enc) {
  528. uint32_t tin0, tin1;
  529. uint32_t tout0, tout1, xor0, xor1;
  530. uint32_t tin[2];
  531. unsigned char *iv;
  532. iv = ivec->bytes;
  533. if (enc) {
  534. c2l(iv, tout0);
  535. c2l(iv, tout1);
  536. for (; len >= 8; len -= 8) {
  537. c2l(in, tin0);
  538. c2l(in, tin1);
  539. tin0 ^= tout0;
  540. tin[0] = tin0;
  541. tin1 ^= tout1;
  542. tin[1] = tin1;
  543. DES_encrypt1((uint32_t *)tin, schedule, DES_ENCRYPT);
  544. tout0 = tin[0];
  545. l2c(tout0, out);
  546. tout1 = tin[1];
  547. l2c(tout1, out);
  548. }
  549. if (len != 0) {
  550. c2ln(in, tin0, tin1, len);
  551. tin0 ^= tout0;
  552. tin[0] = tin0;
  553. tin1 ^= tout1;
  554. tin[1] = tin1;
  555. DES_encrypt1((uint32_t *)tin, schedule, DES_ENCRYPT);
  556. tout0 = tin[0];
  557. l2c(tout0, out);
  558. tout1 = tin[1];
  559. l2c(tout1, out);
  560. }
  561. iv = ivec->bytes;
  562. l2c(tout0, iv);
  563. l2c(tout1, iv);
  564. } else {
  565. c2l(iv, xor0);
  566. c2l(iv, xor1);
  567. for (; len >= 8; len -= 8) {
  568. c2l(in, tin0);
  569. tin[0] = tin0;
  570. c2l(in, tin1);
  571. tin[1] = tin1;
  572. DES_encrypt1((uint32_t *)tin, schedule, DES_DECRYPT);
  573. tout0 = tin[0] ^ xor0;
  574. tout1 = tin[1] ^ xor1;
  575. l2c(tout0, out);
  576. l2c(tout1, out);
  577. xor0 = tin0;
  578. xor1 = tin1;
  579. }
  580. if (len != 0) {
  581. c2l(in, tin0);
  582. tin[0] = tin0;
  583. c2l(in, tin1);
  584. tin[1] = tin1;
  585. DES_encrypt1((uint32_t *)tin, schedule, DES_DECRYPT);
  586. tout0 = tin[0] ^ xor0;
  587. tout1 = tin[1] ^ xor1;
  588. l2cn(tout0, tout1, out, len);
  589. xor0 = tin0;
  590. xor1 = tin1;
  591. }
  592. iv = ivec->bytes;
  593. l2c(xor0, iv);
  594. l2c(xor1, iv);
  595. }
  596. tin[0] = tin[1] = 0;
  597. }
  598. void DES_ecb3_encrypt(const DES_cblock *input, DES_cblock *output,
  599. const DES_key_schedule *ks1, const DES_key_schedule *ks2,
  600. const DES_key_schedule *ks3, int enc) {
  601. uint32_t l0, l1;
  602. uint32_t ll[2];
  603. const uint8_t *in = input->bytes;
  604. uint8_t *out = output->bytes;
  605. c2l(in, l0);
  606. c2l(in, l1);
  607. ll[0] = l0;
  608. ll[1] = l1;
  609. if (enc) {
  610. DES_encrypt3(ll, ks1, ks2, ks3);
  611. } else {
  612. DES_decrypt3(ll, ks1, ks2, ks3);
  613. }
  614. l0 = ll[0];
  615. l1 = ll[1];
  616. l2c(l0, out);
  617. l2c(l1, out);
  618. }
  619. void DES_ede3_cbc_encrypt(const uint8_t *in, uint8_t *out, size_t len,
  620. const DES_key_schedule *ks1,
  621. const DES_key_schedule *ks2,
  622. const DES_key_schedule *ks3, DES_cblock *ivec,
  623. int enc) {
  624. uint32_t tin0, tin1;
  625. uint32_t tout0, tout1, xor0, xor1;
  626. uint32_t tin[2];
  627. uint8_t *iv;
  628. iv = ivec->bytes;
  629. if (enc) {
  630. c2l(iv, tout0);
  631. c2l(iv, tout1);
  632. for (; len >= 8; len -= 8) {
  633. c2l(in, tin0);
  634. c2l(in, tin1);
  635. tin0 ^= tout0;
  636. tin1 ^= tout1;
  637. tin[0] = tin0;
  638. tin[1] = tin1;
  639. DES_encrypt3((uint32_t *)tin, ks1, ks2, ks3);
  640. tout0 = tin[0];
  641. tout1 = tin[1];
  642. l2c(tout0, out);
  643. l2c(tout1, out);
  644. }
  645. if (len != 0) {
  646. c2ln(in, tin0, tin1, len);
  647. tin0 ^= tout0;
  648. tin1 ^= tout1;
  649. tin[0] = tin0;
  650. tin[1] = tin1;
  651. DES_encrypt3((uint32_t *)tin, ks1, ks2, ks3);
  652. tout0 = tin[0];
  653. tout1 = tin[1];
  654. l2c(tout0, out);
  655. l2c(tout1, out);
  656. }
  657. iv = ivec->bytes;
  658. l2c(tout0, iv);
  659. l2c(tout1, iv);
  660. } else {
  661. uint32_t t0, t1;
  662. c2l(iv, xor0);
  663. c2l(iv, xor1);
  664. for (; len >= 8; len -= 8) {
  665. c2l(in, tin0);
  666. c2l(in, tin1);
  667. t0 = tin0;
  668. t1 = tin1;
  669. tin[0] = tin0;
  670. tin[1] = tin1;
  671. DES_decrypt3((uint32_t *)tin, ks1, ks2, ks3);
  672. tout0 = tin[0];
  673. tout1 = tin[1];
  674. tout0 ^= xor0;
  675. tout1 ^= xor1;
  676. l2c(tout0, out);
  677. l2c(tout1, out);
  678. xor0 = t0;
  679. xor1 = t1;
  680. }
  681. if (len != 0) {
  682. c2l(in, tin0);
  683. c2l(in, tin1);
  684. t0 = tin0;
  685. t1 = tin1;
  686. tin[0] = tin0;
  687. tin[1] = tin1;
  688. DES_decrypt3((uint32_t *)tin, ks1, ks2, ks3);
  689. tout0 = tin[0];
  690. tout1 = tin[1];
  691. tout0 ^= xor0;
  692. tout1 ^= xor1;
  693. l2cn(tout0, tout1, out, len);
  694. xor0 = t0;
  695. xor1 = t1;
  696. }
  697. iv = ivec->bytes;
  698. l2c(xor0, iv);
  699. l2c(xor1, iv);
  700. }
  701. tin[0] = tin[1] = 0;
  702. }
  703. void DES_ede2_cbc_encrypt(const uint8_t *in, uint8_t *out, size_t len,
  704. const DES_key_schedule *ks1,
  705. const DES_key_schedule *ks2,
  706. DES_cblock *ivec,
  707. int enc) {
  708. DES_ede3_cbc_encrypt(in, out, len, ks1, ks2, ks1, ivec, enc);
  709. }
  710. // Deprecated functions.
  711. void DES_set_key_unchecked(const DES_cblock *key, DES_key_schedule *schedule) {
  712. DES_set_key(key, schedule);
  713. }
  714. #undef HPERM_OP
  715. #undef c2l
  716. #undef l2c
  717. #undef c2ln
  718. #undef l2cn
  719. #undef PERM_OP
  720. #undef IP
  721. #undef FP
  722. #undef LOAD_DATA
  723. #undef D_ENCRYPT
  724. #undef ITERATIONS
  725. #undef HALF_ITERATIONS
  726. #undef ROTATE