camellia.c 35 KB

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  1. /*
  2. * Copyright (C) 2006
  3. * NTT (Nippon Telegraph and Telephone Corporation).
  4. *
  5. * This program is free software; you can redistribute it and/or
  6. * modify it under the terms of the GNU General Public License
  7. * as published by the Free Software Foundation; either version 2
  8. * of the License, or (at your option) any later version.
  9. *
  10. * This program is distributed in the hope that it will be useful,
  11. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  12. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  13. * GNU General Public License for more details.
  14. *
  15. * You should have received a copy of the GNU General Public License
  16. * along with this program; if not, write to the Free Software
  17. * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
  18. */
  19. /*
  20. * Algorithm Specification
  21. * http://info.isl.ntt.co.jp/crypt/eng/camellia/specifications.html
  22. */
  23. /*
  24. *
  25. * NOTE --- NOTE --- NOTE --- NOTE
  26. * This implementation assumes that all memory addresses passed
  27. * as parameters are four-byte aligned.
  28. *
  29. */
  30. #include <linux/crypto.h>
  31. #include <linux/errno.h>
  32. #include <linux/init.h>
  33. #include <linux/kernel.h>
  34. #include <linux/module.h>
  35. static const u32 camellia_sp1110[256] = {
  36. 0x70707000,0x82828200,0x2c2c2c00,0xececec00,
  37. 0xb3b3b300,0x27272700,0xc0c0c000,0xe5e5e500,
  38. 0xe4e4e400,0x85858500,0x57575700,0x35353500,
  39. 0xeaeaea00,0x0c0c0c00,0xaeaeae00,0x41414100,
  40. 0x23232300,0xefefef00,0x6b6b6b00,0x93939300,
  41. 0x45454500,0x19191900,0xa5a5a500,0x21212100,
  42. 0xededed00,0x0e0e0e00,0x4f4f4f00,0x4e4e4e00,
  43. 0x1d1d1d00,0x65656500,0x92929200,0xbdbdbd00,
  44. 0x86868600,0xb8b8b800,0xafafaf00,0x8f8f8f00,
  45. 0x7c7c7c00,0xebebeb00,0x1f1f1f00,0xcecece00,
  46. 0x3e3e3e00,0x30303000,0xdcdcdc00,0x5f5f5f00,
  47. 0x5e5e5e00,0xc5c5c500,0x0b0b0b00,0x1a1a1a00,
  48. 0xa6a6a600,0xe1e1e100,0x39393900,0xcacaca00,
  49. 0xd5d5d500,0x47474700,0x5d5d5d00,0x3d3d3d00,
  50. 0xd9d9d900,0x01010100,0x5a5a5a00,0xd6d6d600,
  51. 0x51515100,0x56565600,0x6c6c6c00,0x4d4d4d00,
  52. 0x8b8b8b00,0x0d0d0d00,0x9a9a9a00,0x66666600,
  53. 0xfbfbfb00,0xcccccc00,0xb0b0b000,0x2d2d2d00,
  54. 0x74747400,0x12121200,0x2b2b2b00,0x20202000,
  55. 0xf0f0f000,0xb1b1b100,0x84848400,0x99999900,
  56. 0xdfdfdf00,0x4c4c4c00,0xcbcbcb00,0xc2c2c200,
  57. 0x34343400,0x7e7e7e00,0x76767600,0x05050500,
  58. 0x6d6d6d00,0xb7b7b700,0xa9a9a900,0x31313100,
  59. 0xd1d1d100,0x17171700,0x04040400,0xd7d7d700,
  60. 0x14141400,0x58585800,0x3a3a3a00,0x61616100,
  61. 0xdedede00,0x1b1b1b00,0x11111100,0x1c1c1c00,
  62. 0x32323200,0x0f0f0f00,0x9c9c9c00,0x16161600,
  63. 0x53535300,0x18181800,0xf2f2f200,0x22222200,
  64. 0xfefefe00,0x44444400,0xcfcfcf00,0xb2b2b200,
  65. 0xc3c3c300,0xb5b5b500,0x7a7a7a00,0x91919100,
  66. 0x24242400,0x08080800,0xe8e8e800,0xa8a8a800,
  67. 0x60606000,0xfcfcfc00,0x69696900,0x50505000,
  68. 0xaaaaaa00,0xd0d0d000,0xa0a0a000,0x7d7d7d00,
  69. 0xa1a1a100,0x89898900,0x62626200,0x97979700,
  70. 0x54545400,0x5b5b5b00,0x1e1e1e00,0x95959500,
  71. 0xe0e0e000,0xffffff00,0x64646400,0xd2d2d200,
  72. 0x10101000,0xc4c4c400,0x00000000,0x48484800,
  73. 0xa3a3a300,0xf7f7f700,0x75757500,0xdbdbdb00,
  74. 0x8a8a8a00,0x03030300,0xe6e6e600,0xdadada00,
  75. 0x09090900,0x3f3f3f00,0xdddddd00,0x94949400,
  76. 0x87878700,0x5c5c5c00,0x83838300,0x02020200,
  77. 0xcdcdcd00,0x4a4a4a00,0x90909000,0x33333300,
  78. 0x73737300,0x67676700,0xf6f6f600,0xf3f3f300,
  79. 0x9d9d9d00,0x7f7f7f00,0xbfbfbf00,0xe2e2e200,
  80. 0x52525200,0x9b9b9b00,0xd8d8d800,0x26262600,
  81. 0xc8c8c800,0x37373700,0xc6c6c600,0x3b3b3b00,
  82. 0x81818100,0x96969600,0x6f6f6f00,0x4b4b4b00,
  83. 0x13131300,0xbebebe00,0x63636300,0x2e2e2e00,
  84. 0xe9e9e900,0x79797900,0xa7a7a700,0x8c8c8c00,
  85. 0x9f9f9f00,0x6e6e6e00,0xbcbcbc00,0x8e8e8e00,
  86. 0x29292900,0xf5f5f500,0xf9f9f900,0xb6b6b600,
  87. 0x2f2f2f00,0xfdfdfd00,0xb4b4b400,0x59595900,
  88. 0x78787800,0x98989800,0x06060600,0x6a6a6a00,
  89. 0xe7e7e700,0x46464600,0x71717100,0xbababa00,
  90. 0xd4d4d400,0x25252500,0xababab00,0x42424200,
  91. 0x88888800,0xa2a2a200,0x8d8d8d00,0xfafafa00,
  92. 0x72727200,0x07070700,0xb9b9b900,0x55555500,
  93. 0xf8f8f800,0xeeeeee00,0xacacac00,0x0a0a0a00,
  94. 0x36363600,0x49494900,0x2a2a2a00,0x68686800,
  95. 0x3c3c3c00,0x38383800,0xf1f1f100,0xa4a4a400,
  96. 0x40404000,0x28282800,0xd3d3d300,0x7b7b7b00,
  97. 0xbbbbbb00,0xc9c9c900,0x43434300,0xc1c1c100,
  98. 0x15151500,0xe3e3e300,0xadadad00,0xf4f4f400,
  99. 0x77777700,0xc7c7c700,0x80808000,0x9e9e9e00,
  100. };
  101. static const u32 camellia_sp0222[256] = {
  102. 0x00e0e0e0,0x00050505,0x00585858,0x00d9d9d9,
  103. 0x00676767,0x004e4e4e,0x00818181,0x00cbcbcb,
  104. 0x00c9c9c9,0x000b0b0b,0x00aeaeae,0x006a6a6a,
  105. 0x00d5d5d5,0x00181818,0x005d5d5d,0x00828282,
  106. 0x00464646,0x00dfdfdf,0x00d6d6d6,0x00272727,
  107. 0x008a8a8a,0x00323232,0x004b4b4b,0x00424242,
  108. 0x00dbdbdb,0x001c1c1c,0x009e9e9e,0x009c9c9c,
  109. 0x003a3a3a,0x00cacaca,0x00252525,0x007b7b7b,
  110. 0x000d0d0d,0x00717171,0x005f5f5f,0x001f1f1f,
  111. 0x00f8f8f8,0x00d7d7d7,0x003e3e3e,0x009d9d9d,
  112. 0x007c7c7c,0x00606060,0x00b9b9b9,0x00bebebe,
  113. 0x00bcbcbc,0x008b8b8b,0x00161616,0x00343434,
  114. 0x004d4d4d,0x00c3c3c3,0x00727272,0x00959595,
  115. 0x00ababab,0x008e8e8e,0x00bababa,0x007a7a7a,
  116. 0x00b3b3b3,0x00020202,0x00b4b4b4,0x00adadad,
  117. 0x00a2a2a2,0x00acacac,0x00d8d8d8,0x009a9a9a,
  118. 0x00171717,0x001a1a1a,0x00353535,0x00cccccc,
  119. 0x00f7f7f7,0x00999999,0x00616161,0x005a5a5a,
  120. 0x00e8e8e8,0x00242424,0x00565656,0x00404040,
  121. 0x00e1e1e1,0x00636363,0x00090909,0x00333333,
  122. 0x00bfbfbf,0x00989898,0x00979797,0x00858585,
  123. 0x00686868,0x00fcfcfc,0x00ececec,0x000a0a0a,
  124. 0x00dadada,0x006f6f6f,0x00535353,0x00626262,
  125. 0x00a3a3a3,0x002e2e2e,0x00080808,0x00afafaf,
  126. 0x00282828,0x00b0b0b0,0x00747474,0x00c2c2c2,
  127. 0x00bdbdbd,0x00363636,0x00222222,0x00383838,
  128. 0x00646464,0x001e1e1e,0x00393939,0x002c2c2c,
  129. 0x00a6a6a6,0x00303030,0x00e5e5e5,0x00444444,
  130. 0x00fdfdfd,0x00888888,0x009f9f9f,0x00656565,
  131. 0x00878787,0x006b6b6b,0x00f4f4f4,0x00232323,
  132. 0x00484848,0x00101010,0x00d1d1d1,0x00515151,
  133. 0x00c0c0c0,0x00f9f9f9,0x00d2d2d2,0x00a0a0a0,
  134. 0x00555555,0x00a1a1a1,0x00414141,0x00fafafa,
  135. 0x00434343,0x00131313,0x00c4c4c4,0x002f2f2f,
  136. 0x00a8a8a8,0x00b6b6b6,0x003c3c3c,0x002b2b2b,
  137. 0x00c1c1c1,0x00ffffff,0x00c8c8c8,0x00a5a5a5,
  138. 0x00202020,0x00898989,0x00000000,0x00909090,
  139. 0x00474747,0x00efefef,0x00eaeaea,0x00b7b7b7,
  140. 0x00151515,0x00060606,0x00cdcdcd,0x00b5b5b5,
  141. 0x00121212,0x007e7e7e,0x00bbbbbb,0x00292929,
  142. 0x000f0f0f,0x00b8b8b8,0x00070707,0x00040404,
  143. 0x009b9b9b,0x00949494,0x00212121,0x00666666,
  144. 0x00e6e6e6,0x00cecece,0x00ededed,0x00e7e7e7,
  145. 0x003b3b3b,0x00fefefe,0x007f7f7f,0x00c5c5c5,
  146. 0x00a4a4a4,0x00373737,0x00b1b1b1,0x004c4c4c,
  147. 0x00919191,0x006e6e6e,0x008d8d8d,0x00767676,
  148. 0x00030303,0x002d2d2d,0x00dedede,0x00969696,
  149. 0x00262626,0x007d7d7d,0x00c6c6c6,0x005c5c5c,
  150. 0x00d3d3d3,0x00f2f2f2,0x004f4f4f,0x00191919,
  151. 0x003f3f3f,0x00dcdcdc,0x00797979,0x001d1d1d,
  152. 0x00525252,0x00ebebeb,0x00f3f3f3,0x006d6d6d,
  153. 0x005e5e5e,0x00fbfbfb,0x00696969,0x00b2b2b2,
  154. 0x00f0f0f0,0x00313131,0x000c0c0c,0x00d4d4d4,
  155. 0x00cfcfcf,0x008c8c8c,0x00e2e2e2,0x00757575,
  156. 0x00a9a9a9,0x004a4a4a,0x00575757,0x00848484,
  157. 0x00111111,0x00454545,0x001b1b1b,0x00f5f5f5,
  158. 0x00e4e4e4,0x000e0e0e,0x00737373,0x00aaaaaa,
  159. 0x00f1f1f1,0x00dddddd,0x00595959,0x00141414,
  160. 0x006c6c6c,0x00929292,0x00545454,0x00d0d0d0,
  161. 0x00787878,0x00707070,0x00e3e3e3,0x00494949,
  162. 0x00808080,0x00505050,0x00a7a7a7,0x00f6f6f6,
  163. 0x00777777,0x00939393,0x00868686,0x00838383,
  164. 0x002a2a2a,0x00c7c7c7,0x005b5b5b,0x00e9e9e9,
  165. 0x00eeeeee,0x008f8f8f,0x00010101,0x003d3d3d,
  166. };
  167. static const u32 camellia_sp3033[256] = {
  168. 0x38003838,0x41004141,0x16001616,0x76007676,
  169. 0xd900d9d9,0x93009393,0x60006060,0xf200f2f2,
  170. 0x72007272,0xc200c2c2,0xab00abab,0x9a009a9a,
  171. 0x75007575,0x06000606,0x57005757,0xa000a0a0,
  172. 0x91009191,0xf700f7f7,0xb500b5b5,0xc900c9c9,
  173. 0xa200a2a2,0x8c008c8c,0xd200d2d2,0x90009090,
  174. 0xf600f6f6,0x07000707,0xa700a7a7,0x27002727,
  175. 0x8e008e8e,0xb200b2b2,0x49004949,0xde00dede,
  176. 0x43004343,0x5c005c5c,0xd700d7d7,0xc700c7c7,
  177. 0x3e003e3e,0xf500f5f5,0x8f008f8f,0x67006767,
  178. 0x1f001f1f,0x18001818,0x6e006e6e,0xaf00afaf,
  179. 0x2f002f2f,0xe200e2e2,0x85008585,0x0d000d0d,
  180. 0x53005353,0xf000f0f0,0x9c009c9c,0x65006565,
  181. 0xea00eaea,0xa300a3a3,0xae00aeae,0x9e009e9e,
  182. 0xec00ecec,0x80008080,0x2d002d2d,0x6b006b6b,
  183. 0xa800a8a8,0x2b002b2b,0x36003636,0xa600a6a6,
  184. 0xc500c5c5,0x86008686,0x4d004d4d,0x33003333,
  185. 0xfd00fdfd,0x66006666,0x58005858,0x96009696,
  186. 0x3a003a3a,0x09000909,0x95009595,0x10001010,
  187. 0x78007878,0xd800d8d8,0x42004242,0xcc00cccc,
  188. 0xef00efef,0x26002626,0xe500e5e5,0x61006161,
  189. 0x1a001a1a,0x3f003f3f,0x3b003b3b,0x82008282,
  190. 0xb600b6b6,0xdb00dbdb,0xd400d4d4,0x98009898,
  191. 0xe800e8e8,0x8b008b8b,0x02000202,0xeb00ebeb,
  192. 0x0a000a0a,0x2c002c2c,0x1d001d1d,0xb000b0b0,
  193. 0x6f006f6f,0x8d008d8d,0x88008888,0x0e000e0e,
  194. 0x19001919,0x87008787,0x4e004e4e,0x0b000b0b,
  195. 0xa900a9a9,0x0c000c0c,0x79007979,0x11001111,
  196. 0x7f007f7f,0x22002222,0xe700e7e7,0x59005959,
  197. 0xe100e1e1,0xda00dada,0x3d003d3d,0xc800c8c8,
  198. 0x12001212,0x04000404,0x74007474,0x54005454,
  199. 0x30003030,0x7e007e7e,0xb400b4b4,0x28002828,
  200. 0x55005555,0x68006868,0x50005050,0xbe00bebe,
  201. 0xd000d0d0,0xc400c4c4,0x31003131,0xcb00cbcb,
  202. 0x2a002a2a,0xad00adad,0x0f000f0f,0xca00caca,
  203. 0x70007070,0xff00ffff,0x32003232,0x69006969,
  204. 0x08000808,0x62006262,0x00000000,0x24002424,
  205. 0xd100d1d1,0xfb00fbfb,0xba00baba,0xed00eded,
  206. 0x45004545,0x81008181,0x73007373,0x6d006d6d,
  207. 0x84008484,0x9f009f9f,0xee00eeee,0x4a004a4a,
  208. 0xc300c3c3,0x2e002e2e,0xc100c1c1,0x01000101,
  209. 0xe600e6e6,0x25002525,0x48004848,0x99009999,
  210. 0xb900b9b9,0xb300b3b3,0x7b007b7b,0xf900f9f9,
  211. 0xce00cece,0xbf00bfbf,0xdf00dfdf,0x71007171,
  212. 0x29002929,0xcd00cdcd,0x6c006c6c,0x13001313,
  213. 0x64006464,0x9b009b9b,0x63006363,0x9d009d9d,
  214. 0xc000c0c0,0x4b004b4b,0xb700b7b7,0xa500a5a5,
  215. 0x89008989,0x5f005f5f,0xb100b1b1,0x17001717,
  216. 0xf400f4f4,0xbc00bcbc,0xd300d3d3,0x46004646,
  217. 0xcf00cfcf,0x37003737,0x5e005e5e,0x47004747,
  218. 0x94009494,0xfa00fafa,0xfc00fcfc,0x5b005b5b,
  219. 0x97009797,0xfe00fefe,0x5a005a5a,0xac00acac,
  220. 0x3c003c3c,0x4c004c4c,0x03000303,0x35003535,
  221. 0xf300f3f3,0x23002323,0xb800b8b8,0x5d005d5d,
  222. 0x6a006a6a,0x92009292,0xd500d5d5,0x21002121,
  223. 0x44004444,0x51005151,0xc600c6c6,0x7d007d7d,
  224. 0x39003939,0x83008383,0xdc00dcdc,0xaa00aaaa,
  225. 0x7c007c7c,0x77007777,0x56005656,0x05000505,
  226. 0x1b001b1b,0xa400a4a4,0x15001515,0x34003434,
  227. 0x1e001e1e,0x1c001c1c,0xf800f8f8,0x52005252,
  228. 0x20002020,0x14001414,0xe900e9e9,0xbd00bdbd,
  229. 0xdd00dddd,0xe400e4e4,0xa100a1a1,0xe000e0e0,
  230. 0x8a008a8a,0xf100f1f1,0xd600d6d6,0x7a007a7a,
  231. 0xbb00bbbb,0xe300e3e3,0x40004040,0x4f004f4f,
  232. };
  233. static const u32 camellia_sp4404[256] = {
  234. 0x70700070,0x2c2c002c,0xb3b300b3,0xc0c000c0,
  235. 0xe4e400e4,0x57570057,0xeaea00ea,0xaeae00ae,
  236. 0x23230023,0x6b6b006b,0x45450045,0xa5a500a5,
  237. 0xeded00ed,0x4f4f004f,0x1d1d001d,0x92920092,
  238. 0x86860086,0xafaf00af,0x7c7c007c,0x1f1f001f,
  239. 0x3e3e003e,0xdcdc00dc,0x5e5e005e,0x0b0b000b,
  240. 0xa6a600a6,0x39390039,0xd5d500d5,0x5d5d005d,
  241. 0xd9d900d9,0x5a5a005a,0x51510051,0x6c6c006c,
  242. 0x8b8b008b,0x9a9a009a,0xfbfb00fb,0xb0b000b0,
  243. 0x74740074,0x2b2b002b,0xf0f000f0,0x84840084,
  244. 0xdfdf00df,0xcbcb00cb,0x34340034,0x76760076,
  245. 0x6d6d006d,0xa9a900a9,0xd1d100d1,0x04040004,
  246. 0x14140014,0x3a3a003a,0xdede00de,0x11110011,
  247. 0x32320032,0x9c9c009c,0x53530053,0xf2f200f2,
  248. 0xfefe00fe,0xcfcf00cf,0xc3c300c3,0x7a7a007a,
  249. 0x24240024,0xe8e800e8,0x60600060,0x69690069,
  250. 0xaaaa00aa,0xa0a000a0,0xa1a100a1,0x62620062,
  251. 0x54540054,0x1e1e001e,0xe0e000e0,0x64640064,
  252. 0x10100010,0x00000000,0xa3a300a3,0x75750075,
  253. 0x8a8a008a,0xe6e600e6,0x09090009,0xdddd00dd,
  254. 0x87870087,0x83830083,0xcdcd00cd,0x90900090,
  255. 0x73730073,0xf6f600f6,0x9d9d009d,0xbfbf00bf,
  256. 0x52520052,0xd8d800d8,0xc8c800c8,0xc6c600c6,
  257. 0x81810081,0x6f6f006f,0x13130013,0x63630063,
  258. 0xe9e900e9,0xa7a700a7,0x9f9f009f,0xbcbc00bc,
  259. 0x29290029,0xf9f900f9,0x2f2f002f,0xb4b400b4,
  260. 0x78780078,0x06060006,0xe7e700e7,0x71710071,
  261. 0xd4d400d4,0xabab00ab,0x88880088,0x8d8d008d,
  262. 0x72720072,0xb9b900b9,0xf8f800f8,0xacac00ac,
  263. 0x36360036,0x2a2a002a,0x3c3c003c,0xf1f100f1,
  264. 0x40400040,0xd3d300d3,0xbbbb00bb,0x43430043,
  265. 0x15150015,0xadad00ad,0x77770077,0x80800080,
  266. 0x82820082,0xecec00ec,0x27270027,0xe5e500e5,
  267. 0x85850085,0x35350035,0x0c0c000c,0x41410041,
  268. 0xefef00ef,0x93930093,0x19190019,0x21210021,
  269. 0x0e0e000e,0x4e4e004e,0x65650065,0xbdbd00bd,
  270. 0xb8b800b8,0x8f8f008f,0xebeb00eb,0xcece00ce,
  271. 0x30300030,0x5f5f005f,0xc5c500c5,0x1a1a001a,
  272. 0xe1e100e1,0xcaca00ca,0x47470047,0x3d3d003d,
  273. 0x01010001,0xd6d600d6,0x56560056,0x4d4d004d,
  274. 0x0d0d000d,0x66660066,0xcccc00cc,0x2d2d002d,
  275. 0x12120012,0x20200020,0xb1b100b1,0x99990099,
  276. 0x4c4c004c,0xc2c200c2,0x7e7e007e,0x05050005,
  277. 0xb7b700b7,0x31310031,0x17170017,0xd7d700d7,
  278. 0x58580058,0x61610061,0x1b1b001b,0x1c1c001c,
  279. 0x0f0f000f,0x16160016,0x18180018,0x22220022,
  280. 0x44440044,0xb2b200b2,0xb5b500b5,0x91910091,
  281. 0x08080008,0xa8a800a8,0xfcfc00fc,0x50500050,
  282. 0xd0d000d0,0x7d7d007d,0x89890089,0x97970097,
  283. 0x5b5b005b,0x95950095,0xffff00ff,0xd2d200d2,
  284. 0xc4c400c4,0x48480048,0xf7f700f7,0xdbdb00db,
  285. 0x03030003,0xdada00da,0x3f3f003f,0x94940094,
  286. 0x5c5c005c,0x02020002,0x4a4a004a,0x33330033,
  287. 0x67670067,0xf3f300f3,0x7f7f007f,0xe2e200e2,
  288. 0x9b9b009b,0x26260026,0x37370037,0x3b3b003b,
  289. 0x96960096,0x4b4b004b,0xbebe00be,0x2e2e002e,
  290. 0x79790079,0x8c8c008c,0x6e6e006e,0x8e8e008e,
  291. 0xf5f500f5,0xb6b600b6,0xfdfd00fd,0x59590059,
  292. 0x98980098,0x6a6a006a,0x46460046,0xbaba00ba,
  293. 0x25250025,0x42420042,0xa2a200a2,0xfafa00fa,
  294. 0x07070007,0x55550055,0xeeee00ee,0x0a0a000a,
  295. 0x49490049,0x68680068,0x38380038,0xa4a400a4,
  296. 0x28280028,0x7b7b007b,0xc9c900c9,0xc1c100c1,
  297. 0xe3e300e3,0xf4f400f4,0xc7c700c7,0x9e9e009e,
  298. };
  299. #define CAMELLIA_MIN_KEY_SIZE 16
  300. #define CAMELLIA_MAX_KEY_SIZE 32
  301. #define CAMELLIA_BLOCK_SIZE 16
  302. #define CAMELLIA_TABLE_BYTE_LEN 272
  303. /*
  304. * NB: L and R below stand for 'left' and 'right' as in written numbers.
  305. * That is, in (xxxL,xxxR) pair xxxL holds most significant digits,
  306. * _not_ least significant ones!
  307. */
  308. /* key constants */
  309. #define CAMELLIA_SIGMA1L (0xA09E667FL)
  310. #define CAMELLIA_SIGMA1R (0x3BCC908BL)
  311. #define CAMELLIA_SIGMA2L (0xB67AE858L)
  312. #define CAMELLIA_SIGMA2R (0x4CAA73B2L)
  313. #define CAMELLIA_SIGMA3L (0xC6EF372FL)
  314. #define CAMELLIA_SIGMA3R (0xE94F82BEL)
  315. #define CAMELLIA_SIGMA4L (0x54FF53A5L)
  316. #define CAMELLIA_SIGMA4R (0xF1D36F1CL)
  317. #define CAMELLIA_SIGMA5L (0x10E527FAL)
  318. #define CAMELLIA_SIGMA5R (0xDE682D1DL)
  319. #define CAMELLIA_SIGMA6L (0xB05688C2L)
  320. #define CAMELLIA_SIGMA6R (0xB3E6C1FDL)
  321. /*
  322. * macros
  323. */
  324. #define GETU32(v, pt) \
  325. do { \
  326. /* latest breed of gcc is clever enough to use move */ \
  327. memcpy(&(v), (pt), 4); \
  328. (v) = be32_to_cpu(v); \
  329. } while(0)
  330. /* rotation right shift 1byte */
  331. #define ROR8(x) (((x) >> 8) + ((x) << 24))
  332. /* rotation left shift 1bit */
  333. #define ROL1(x) (((x) << 1) + ((x) >> 31))
  334. /* rotation left shift 1byte */
  335. #define ROL8(x) (((x) << 8) + ((x) >> 24))
  336. #define ROLDQ(ll, lr, rl, rr, w0, w1, bits) \
  337. do { \
  338. w0 = ll; \
  339. ll = (ll << bits) + (lr >> (32 - bits)); \
  340. lr = (lr << bits) + (rl >> (32 - bits)); \
  341. rl = (rl << bits) + (rr >> (32 - bits)); \
  342. rr = (rr << bits) + (w0 >> (32 - bits)); \
  343. } while(0)
  344. #define ROLDQo32(ll, lr, rl, rr, w0, w1, bits) \
  345. do { \
  346. w0 = ll; \
  347. w1 = lr; \
  348. ll = (lr << (bits - 32)) + (rl >> (64 - bits)); \
  349. lr = (rl << (bits - 32)) + (rr >> (64 - bits)); \
  350. rl = (rr << (bits - 32)) + (w0 >> (64 - bits)); \
  351. rr = (w0 << (bits - 32)) + (w1 >> (64 - bits)); \
  352. } while(0)
  353. #define CAMELLIA_F(xl, xr, kl, kr, yl, yr, il, ir, t0, t1) \
  354. do { \
  355. il = xl ^ kl; \
  356. ir = xr ^ kr; \
  357. t0 = il >> 16; \
  358. t1 = ir >> 16; \
  359. yl = camellia_sp1110[(u8)(ir )] \
  360. ^ camellia_sp0222[ (t1 >> 8)] \
  361. ^ camellia_sp3033[(u8)(t1 )] \
  362. ^ camellia_sp4404[(u8)(ir >> 8)]; \
  363. yr = camellia_sp1110[ (t0 >> 8)] \
  364. ^ camellia_sp0222[(u8)(t0 )] \
  365. ^ camellia_sp3033[(u8)(il >> 8)] \
  366. ^ camellia_sp4404[(u8)(il )]; \
  367. yl ^= yr; \
  368. yr = ROR8(yr); \
  369. yr ^= yl; \
  370. } while(0)
  371. #define SUBKEY_L(INDEX) (subkey[(INDEX)*2])
  372. #define SUBKEY_R(INDEX) (subkey[(INDEX)*2 + 1])
  373. static void camellia_setup_tail(u32 *subkey, u32 *subL, u32 *subR, int max)
  374. {
  375. u32 dw, tl, tr;
  376. u32 kw4l, kw4r;
  377. int i;
  378. /* absorb kw2 to other subkeys */
  379. /* round 2 */
  380. subL[3] ^= subL[1]; subR[3] ^= subR[1];
  381. /* round 4 */
  382. subL[5] ^= subL[1]; subR[5] ^= subR[1];
  383. /* round 6 */
  384. subL[7] ^= subL[1]; subR[7] ^= subR[1];
  385. subL[1] ^= subR[1] & ~subR[9];
  386. dw = subL[1] & subL[9],
  387. subR[1] ^= ROL1(dw); /* modified for FLinv(kl2) */
  388. /* round 8 */
  389. subL[11] ^= subL[1]; subR[11] ^= subR[1];
  390. /* round 10 */
  391. subL[13] ^= subL[1]; subR[13] ^= subR[1];
  392. /* round 12 */
  393. subL[15] ^= subL[1]; subR[15] ^= subR[1];
  394. subL[1] ^= subR[1] & ~subR[17];
  395. dw = subL[1] & subL[17],
  396. subR[1] ^= ROL1(dw); /* modified for FLinv(kl4) */
  397. /* round 14 */
  398. subL[19] ^= subL[1]; subR[19] ^= subR[1];
  399. /* round 16 */
  400. subL[21] ^= subL[1]; subR[21] ^= subR[1];
  401. /* round 18 */
  402. subL[23] ^= subL[1]; subR[23] ^= subR[1];
  403. if (max == 24) {
  404. /* kw3 */
  405. subL[24] ^= subL[1]; subR[24] ^= subR[1];
  406. /* absorb kw4 to other subkeys */
  407. kw4l = subL[25]; kw4r = subR[25];
  408. } else {
  409. subL[1] ^= subR[1] & ~subR[25];
  410. dw = subL[1] & subL[25],
  411. subR[1] ^= ROL1(dw); /* modified for FLinv(kl6) */
  412. /* round 20 */
  413. subL[27] ^= subL[1]; subR[27] ^= subR[1];
  414. /* round 22 */
  415. subL[29] ^= subL[1]; subR[29] ^= subR[1];
  416. /* round 24 */
  417. subL[31] ^= subL[1]; subR[31] ^= subR[1];
  418. /* kw3 */
  419. subL[32] ^= subL[1]; subR[32] ^= subR[1];
  420. /* absorb kw4 to other subkeys */
  421. kw4l = subL[33]; kw4r = subR[33];
  422. /* round 23 */
  423. subL[30] ^= kw4l; subR[30] ^= kw4r;
  424. /* round 21 */
  425. subL[28] ^= kw4l; subR[28] ^= kw4r;
  426. /* round 19 */
  427. subL[26] ^= kw4l; subR[26] ^= kw4r;
  428. kw4l ^= kw4r & ~subR[24];
  429. dw = kw4l & subL[24],
  430. kw4r ^= ROL1(dw); /* modified for FL(kl5) */
  431. }
  432. /* round 17 */
  433. subL[22] ^= kw4l; subR[22] ^= kw4r;
  434. /* round 15 */
  435. subL[20] ^= kw4l; subR[20] ^= kw4r;
  436. /* round 13 */
  437. subL[18] ^= kw4l; subR[18] ^= kw4r;
  438. kw4l ^= kw4r & ~subR[16];
  439. dw = kw4l & subL[16],
  440. kw4r ^= ROL1(dw); /* modified for FL(kl3) */
  441. /* round 11 */
  442. subL[14] ^= kw4l; subR[14] ^= kw4r;
  443. /* round 9 */
  444. subL[12] ^= kw4l; subR[12] ^= kw4r;
  445. /* round 7 */
  446. subL[10] ^= kw4l; subR[10] ^= kw4r;
  447. kw4l ^= kw4r & ~subR[8];
  448. dw = kw4l & subL[8],
  449. kw4r ^= ROL1(dw); /* modified for FL(kl1) */
  450. /* round 5 */
  451. subL[6] ^= kw4l; subR[6] ^= kw4r;
  452. /* round 3 */
  453. subL[4] ^= kw4l; subR[4] ^= kw4r;
  454. /* round 1 */
  455. subL[2] ^= kw4l; subR[2] ^= kw4r;
  456. /* kw1 */
  457. subL[0] ^= kw4l; subR[0] ^= kw4r;
  458. /* key XOR is end of F-function */
  459. SUBKEY_L(0) = subL[0] ^ subL[2];/* kw1 */
  460. SUBKEY_R(0) = subR[0] ^ subR[2];
  461. SUBKEY_L(2) = subL[3]; /* round 1 */
  462. SUBKEY_R(2) = subR[3];
  463. SUBKEY_L(3) = subL[2] ^ subL[4]; /* round 2 */
  464. SUBKEY_R(3) = subR[2] ^ subR[4];
  465. SUBKEY_L(4) = subL[3] ^ subL[5]; /* round 3 */
  466. SUBKEY_R(4) = subR[3] ^ subR[5];
  467. SUBKEY_L(5) = subL[4] ^ subL[6]; /* round 4 */
  468. SUBKEY_R(5) = subR[4] ^ subR[6];
  469. SUBKEY_L(6) = subL[5] ^ subL[7]; /* round 5 */
  470. SUBKEY_R(6) = subR[5] ^ subR[7];
  471. tl = subL[10] ^ (subR[10] & ~subR[8]);
  472. dw = tl & subL[8], /* FL(kl1) */
  473. tr = subR[10] ^ ROL1(dw);
  474. SUBKEY_L(7) = subL[6] ^ tl; /* round 6 */
  475. SUBKEY_R(7) = subR[6] ^ tr;
  476. SUBKEY_L(8) = subL[8]; /* FL(kl1) */
  477. SUBKEY_R(8) = subR[8];
  478. SUBKEY_L(9) = subL[9]; /* FLinv(kl2) */
  479. SUBKEY_R(9) = subR[9];
  480. tl = subL[7] ^ (subR[7] & ~subR[9]);
  481. dw = tl & subL[9], /* FLinv(kl2) */
  482. tr = subR[7] ^ ROL1(dw);
  483. SUBKEY_L(10) = tl ^ subL[11]; /* round 7 */
  484. SUBKEY_R(10) = tr ^ subR[11];
  485. SUBKEY_L(11) = subL[10] ^ subL[12]; /* round 8 */
  486. SUBKEY_R(11) = subR[10] ^ subR[12];
  487. SUBKEY_L(12) = subL[11] ^ subL[13]; /* round 9 */
  488. SUBKEY_R(12) = subR[11] ^ subR[13];
  489. SUBKEY_L(13) = subL[12] ^ subL[14]; /* round 10 */
  490. SUBKEY_R(13) = subR[12] ^ subR[14];
  491. SUBKEY_L(14) = subL[13] ^ subL[15]; /* round 11 */
  492. SUBKEY_R(14) = subR[13] ^ subR[15];
  493. tl = subL[18] ^ (subR[18] & ~subR[16]);
  494. dw = tl & subL[16], /* FL(kl3) */
  495. tr = subR[18] ^ ROL1(dw);
  496. SUBKEY_L(15) = subL[14] ^ tl; /* round 12 */
  497. SUBKEY_R(15) = subR[14] ^ tr;
  498. SUBKEY_L(16) = subL[16]; /* FL(kl3) */
  499. SUBKEY_R(16) = subR[16];
  500. SUBKEY_L(17) = subL[17]; /* FLinv(kl4) */
  501. SUBKEY_R(17) = subR[17];
  502. tl = subL[15] ^ (subR[15] & ~subR[17]);
  503. dw = tl & subL[17], /* FLinv(kl4) */
  504. tr = subR[15] ^ ROL1(dw);
  505. SUBKEY_L(18) = tl ^ subL[19]; /* round 13 */
  506. SUBKEY_R(18) = tr ^ subR[19];
  507. SUBKEY_L(19) = subL[18] ^ subL[20]; /* round 14 */
  508. SUBKEY_R(19) = subR[18] ^ subR[20];
  509. SUBKEY_L(20) = subL[19] ^ subL[21]; /* round 15 */
  510. SUBKEY_R(20) = subR[19] ^ subR[21];
  511. SUBKEY_L(21) = subL[20] ^ subL[22]; /* round 16 */
  512. SUBKEY_R(21) = subR[20] ^ subR[22];
  513. SUBKEY_L(22) = subL[21] ^ subL[23]; /* round 17 */
  514. SUBKEY_R(22) = subR[21] ^ subR[23];
  515. if (max == 24) {
  516. SUBKEY_L(23) = subL[22]; /* round 18 */
  517. SUBKEY_R(23) = subR[22];
  518. SUBKEY_L(24) = subL[24] ^ subL[23]; /* kw3 */
  519. SUBKEY_R(24) = subR[24] ^ subR[23];
  520. } else {
  521. tl = subL[26] ^ (subR[26] & ~subR[24]);
  522. dw = tl & subL[24], /* FL(kl5) */
  523. tr = subR[26] ^ ROL1(dw);
  524. SUBKEY_L(23) = subL[22] ^ tl; /* round 18 */
  525. SUBKEY_R(23) = subR[22] ^ tr;
  526. SUBKEY_L(24) = subL[24]; /* FL(kl5) */
  527. SUBKEY_R(24) = subR[24];
  528. SUBKEY_L(25) = subL[25]; /* FLinv(kl6) */
  529. SUBKEY_R(25) = subR[25];
  530. tl = subL[23] ^ (subR[23] & ~subR[25]);
  531. dw = tl & subL[25], /* FLinv(kl6) */
  532. tr = subR[23] ^ ROL1(dw);
  533. SUBKEY_L(26) = tl ^ subL[27]; /* round 19 */
  534. SUBKEY_R(26) = tr ^ subR[27];
  535. SUBKEY_L(27) = subL[26] ^ subL[28]; /* round 20 */
  536. SUBKEY_R(27) = subR[26] ^ subR[28];
  537. SUBKEY_L(28) = subL[27] ^ subL[29]; /* round 21 */
  538. SUBKEY_R(28) = subR[27] ^ subR[29];
  539. SUBKEY_L(29) = subL[28] ^ subL[30]; /* round 22 */
  540. SUBKEY_R(29) = subR[28] ^ subR[30];
  541. SUBKEY_L(30) = subL[29] ^ subL[31]; /* round 23 */
  542. SUBKEY_R(30) = subR[29] ^ subR[31];
  543. SUBKEY_L(31) = subL[30]; /* round 24 */
  544. SUBKEY_R(31) = subR[30];
  545. SUBKEY_L(32) = subL[32] ^ subL[31]; /* kw3 */
  546. SUBKEY_R(32) = subR[32] ^ subR[31];
  547. }
  548. /* apply the inverse of the last half of P-function */
  549. i = 2;
  550. do {
  551. dw = SUBKEY_L(i + 0) ^ SUBKEY_R(i + 0); dw = ROL8(dw);/* round 1 */
  552. SUBKEY_R(i + 0) = SUBKEY_L(i + 0) ^ dw; SUBKEY_L(i + 0) = dw;
  553. dw = SUBKEY_L(i + 1) ^ SUBKEY_R(i + 1); dw = ROL8(dw);/* round 2 */
  554. SUBKEY_R(i + 1) = SUBKEY_L(i + 1) ^ dw; SUBKEY_L(i + 1) = dw;
  555. dw = SUBKEY_L(i + 2) ^ SUBKEY_R(i + 2); dw = ROL8(dw);/* round 3 */
  556. SUBKEY_R(i + 2) = SUBKEY_L(i + 2) ^ dw; SUBKEY_L(i + 2) = dw;
  557. dw = SUBKEY_L(i + 3) ^ SUBKEY_R(i + 3); dw = ROL8(dw);/* round 4 */
  558. SUBKEY_R(i + 3) = SUBKEY_L(i + 3) ^ dw; SUBKEY_L(i + 3) = dw;
  559. dw = SUBKEY_L(i + 4) ^ SUBKEY_R(i + 4); dw = ROL8(dw);/* round 5 */
  560. SUBKEY_R(i + 4) = SUBKEY_L(i + 4) ^ dw; SUBKEY_L(i + 4) = dw;
  561. dw = SUBKEY_L(i + 5) ^ SUBKEY_R(i + 5); dw = ROL8(dw);/* round 6 */
  562. SUBKEY_R(i + 5) = SUBKEY_L(i + 5) ^ dw; SUBKEY_L(i + 5) = dw;
  563. i += 8;
  564. } while (i < max);
  565. }
  566. static void camellia_setup128(const unsigned char *key, u32 *subkey)
  567. {
  568. u32 kll, klr, krl, krr;
  569. u32 il, ir, t0, t1, w0, w1;
  570. u32 subL[26];
  571. u32 subR[26];
  572. /**
  573. * k == kll || klr || krl || krr (|| is concatenation)
  574. */
  575. GETU32(kll, key );
  576. GETU32(klr, key + 4);
  577. GETU32(krl, key + 8);
  578. GETU32(krr, key + 12);
  579. /* generate KL dependent subkeys */
  580. /* kw1 */
  581. subL[0] = kll; subR[0] = klr;
  582. /* kw2 */
  583. subL[1] = krl; subR[1] = krr;
  584. /* rotation left shift 15bit */
  585. ROLDQ(kll, klr, krl, krr, w0, w1, 15);
  586. /* k3 */
  587. subL[4] = kll; subR[4] = klr;
  588. /* k4 */
  589. subL[5] = krl; subR[5] = krr;
  590. /* rotation left shift 15+30bit */
  591. ROLDQ(kll, klr, krl, krr, w0, w1, 30);
  592. /* k7 */
  593. subL[10] = kll; subR[10] = klr;
  594. /* k8 */
  595. subL[11] = krl; subR[11] = krr;
  596. /* rotation left shift 15+30+15bit */
  597. ROLDQ(kll, klr, krl, krr, w0, w1, 15);
  598. /* k10 */
  599. subL[13] = krl; subR[13] = krr;
  600. /* rotation left shift 15+30+15+17 bit */
  601. ROLDQ(kll, klr, krl, krr, w0, w1, 17);
  602. /* kl3 */
  603. subL[16] = kll; subR[16] = klr;
  604. /* kl4 */
  605. subL[17] = krl; subR[17] = krr;
  606. /* rotation left shift 15+30+15+17+17 bit */
  607. ROLDQ(kll, klr, krl, krr, w0, w1, 17);
  608. /* k13 */
  609. subL[18] = kll; subR[18] = klr;
  610. /* k14 */
  611. subL[19] = krl; subR[19] = krr;
  612. /* rotation left shift 15+30+15+17+17+17 bit */
  613. ROLDQ(kll, klr, krl, krr, w0, w1, 17);
  614. /* k17 */
  615. subL[22] = kll; subR[22] = klr;
  616. /* k18 */
  617. subL[23] = krl; subR[23] = krr;
  618. /* generate KA */
  619. kll = subL[0]; klr = subR[0];
  620. krl = subL[1]; krr = subR[1];
  621. CAMELLIA_F(kll, klr,
  622. CAMELLIA_SIGMA1L, CAMELLIA_SIGMA1R,
  623. w0, w1, il, ir, t0, t1);
  624. krl ^= w0; krr ^= w1;
  625. CAMELLIA_F(krl, krr,
  626. CAMELLIA_SIGMA2L, CAMELLIA_SIGMA2R,
  627. kll, klr, il, ir, t0, t1);
  628. /* current status == (kll, klr, w0, w1) */
  629. CAMELLIA_F(kll, klr,
  630. CAMELLIA_SIGMA3L, CAMELLIA_SIGMA3R,
  631. krl, krr, il, ir, t0, t1);
  632. krl ^= w0; krr ^= w1;
  633. CAMELLIA_F(krl, krr,
  634. CAMELLIA_SIGMA4L, CAMELLIA_SIGMA4R,
  635. w0, w1, il, ir, t0, t1);
  636. kll ^= w0; klr ^= w1;
  637. /* generate KA dependent subkeys */
  638. /* k1, k2 */
  639. subL[2] = kll; subR[2] = klr;
  640. subL[3] = krl; subR[3] = krr;
  641. ROLDQ(kll, klr, krl, krr, w0, w1, 15);
  642. /* k5,k6 */
  643. subL[6] = kll; subR[6] = klr;
  644. subL[7] = krl; subR[7] = krr;
  645. ROLDQ(kll, klr, krl, krr, w0, w1, 15);
  646. /* kl1, kl2 */
  647. subL[8] = kll; subR[8] = klr;
  648. subL[9] = krl; subR[9] = krr;
  649. ROLDQ(kll, klr, krl, krr, w0, w1, 15);
  650. /* k9 */
  651. subL[12] = kll; subR[12] = klr;
  652. ROLDQ(kll, klr, krl, krr, w0, w1, 15);
  653. /* k11, k12 */
  654. subL[14] = kll; subR[14] = klr;
  655. subL[15] = krl; subR[15] = krr;
  656. ROLDQo32(kll, klr, krl, krr, w0, w1, 34);
  657. /* k15, k16 */
  658. subL[20] = kll; subR[20] = klr;
  659. subL[21] = krl; subR[21] = krr;
  660. ROLDQ(kll, klr, krl, krr, w0, w1, 17);
  661. /* kw3, kw4 */
  662. subL[24] = kll; subR[24] = klr;
  663. subL[25] = krl; subR[25] = krr;
  664. camellia_setup_tail(subkey, subL, subR, 24);
  665. }
  666. static void camellia_setup256(const unsigned char *key, u32 *subkey)
  667. {
  668. u32 kll, klr, krl, krr; /* left half of key */
  669. u32 krll, krlr, krrl, krrr; /* right half of key */
  670. u32 il, ir, t0, t1, w0, w1; /* temporary variables */
  671. u32 subL[34];
  672. u32 subR[34];
  673. /**
  674. * key = (kll || klr || krl || krr || krll || krlr || krrl || krrr)
  675. * (|| is concatenation)
  676. */
  677. GETU32(kll, key );
  678. GETU32(klr, key + 4);
  679. GETU32(krl, key + 8);
  680. GETU32(krr, key + 12);
  681. GETU32(krll, key + 16);
  682. GETU32(krlr, key + 20);
  683. GETU32(krrl, key + 24);
  684. GETU32(krrr, key + 28);
  685. /* generate KL dependent subkeys */
  686. /* kw1 */
  687. subL[0] = kll; subR[0] = klr;
  688. /* kw2 */
  689. subL[1] = krl; subR[1] = krr;
  690. ROLDQo32(kll, klr, krl, krr, w0, w1, 45);
  691. /* k9 */
  692. subL[12] = kll; subR[12] = klr;
  693. /* k10 */
  694. subL[13] = krl; subR[13] = krr;
  695. ROLDQ(kll, klr, krl, krr, w0, w1, 15);
  696. /* kl3 */
  697. subL[16] = kll; subR[16] = klr;
  698. /* kl4 */
  699. subL[17] = krl; subR[17] = krr;
  700. ROLDQ(kll, klr, krl, krr, w0, w1, 17);
  701. /* k17 */
  702. subL[22] = kll; subR[22] = klr;
  703. /* k18 */
  704. subL[23] = krl; subR[23] = krr;
  705. ROLDQo32(kll, klr, krl, krr, w0, w1, 34);
  706. /* k23 */
  707. subL[30] = kll; subR[30] = klr;
  708. /* k24 */
  709. subL[31] = krl; subR[31] = krr;
  710. /* generate KR dependent subkeys */
  711. ROLDQ(krll, krlr, krrl, krrr, w0, w1, 15);
  712. /* k3 */
  713. subL[4] = krll; subR[4] = krlr;
  714. /* k4 */
  715. subL[5] = krrl; subR[5] = krrr;
  716. ROLDQ(krll, krlr, krrl, krrr, w0, w1, 15);
  717. /* kl1 */
  718. subL[8] = krll; subR[8] = krlr;
  719. /* kl2 */
  720. subL[9] = krrl; subR[9] = krrr;
  721. ROLDQ(krll, krlr, krrl, krrr, w0, w1, 30);
  722. /* k13 */
  723. subL[18] = krll; subR[18] = krlr;
  724. /* k14 */
  725. subL[19] = krrl; subR[19] = krrr;
  726. ROLDQo32(krll, krlr, krrl, krrr, w0, w1, 34);
  727. /* k19 */
  728. subL[26] = krll; subR[26] = krlr;
  729. /* k20 */
  730. subL[27] = krrl; subR[27] = krrr;
  731. ROLDQo32(krll, krlr, krrl, krrr, w0, w1, 34);
  732. /* generate KA */
  733. kll = subL[0] ^ krll; klr = subR[0] ^ krlr;
  734. krl = subL[1] ^ krrl; krr = subR[1] ^ krrr;
  735. CAMELLIA_F(kll, klr,
  736. CAMELLIA_SIGMA1L, CAMELLIA_SIGMA1R,
  737. w0, w1, il, ir, t0, t1);
  738. krl ^= w0; krr ^= w1;
  739. CAMELLIA_F(krl, krr,
  740. CAMELLIA_SIGMA2L, CAMELLIA_SIGMA2R,
  741. kll, klr, il, ir, t0, t1);
  742. kll ^= krll; klr ^= krlr;
  743. CAMELLIA_F(kll, klr,
  744. CAMELLIA_SIGMA3L, CAMELLIA_SIGMA3R,
  745. krl, krr, il, ir, t0, t1);
  746. krl ^= w0 ^ krrl; krr ^= w1 ^ krrr;
  747. CAMELLIA_F(krl, krr,
  748. CAMELLIA_SIGMA4L, CAMELLIA_SIGMA4R,
  749. w0, w1, il, ir, t0, t1);
  750. kll ^= w0; klr ^= w1;
  751. /* generate KB */
  752. krll ^= kll; krlr ^= klr;
  753. krrl ^= krl; krrr ^= krr;
  754. CAMELLIA_F(krll, krlr,
  755. CAMELLIA_SIGMA5L, CAMELLIA_SIGMA5R,
  756. w0, w1, il, ir, t0, t1);
  757. krrl ^= w0; krrr ^= w1;
  758. CAMELLIA_F(krrl, krrr,
  759. CAMELLIA_SIGMA6L, CAMELLIA_SIGMA6R,
  760. w0, w1, il, ir, t0, t1);
  761. krll ^= w0; krlr ^= w1;
  762. /* generate KA dependent subkeys */
  763. ROLDQ(kll, klr, krl, krr, w0, w1, 15);
  764. /* k5 */
  765. subL[6] = kll; subR[6] = klr;
  766. /* k6 */
  767. subL[7] = krl; subR[7] = krr;
  768. ROLDQ(kll, klr, krl, krr, w0, w1, 30);
  769. /* k11 */
  770. subL[14] = kll; subR[14] = klr;
  771. /* k12 */
  772. subL[15] = krl; subR[15] = krr;
  773. /* rotation left shift 32bit */
  774. /* kl5 */
  775. subL[24] = klr; subR[24] = krl;
  776. /* kl6 */
  777. subL[25] = krr; subR[25] = kll;
  778. /* rotation left shift 49 from k11,k12 -> k21,k22 */
  779. ROLDQo32(kll, klr, krl, krr, w0, w1, 49);
  780. /* k21 */
  781. subL[28] = kll; subR[28] = klr;
  782. /* k22 */
  783. subL[29] = krl; subR[29] = krr;
  784. /* generate KB dependent subkeys */
  785. /* k1 */
  786. subL[2] = krll; subR[2] = krlr;
  787. /* k2 */
  788. subL[3] = krrl; subR[3] = krrr;
  789. ROLDQ(krll, krlr, krrl, krrr, w0, w1, 30);
  790. /* k7 */
  791. subL[10] = krll; subR[10] = krlr;
  792. /* k8 */
  793. subL[11] = krrl; subR[11] = krrr;
  794. ROLDQ(krll, krlr, krrl, krrr, w0, w1, 30);
  795. /* k15 */
  796. subL[20] = krll; subR[20] = krlr;
  797. /* k16 */
  798. subL[21] = krrl; subR[21] = krrr;
  799. ROLDQo32(krll, krlr, krrl, krrr, w0, w1, 51);
  800. /* kw3 */
  801. subL[32] = krll; subR[32] = krlr;
  802. /* kw4 */
  803. subL[33] = krrl; subR[33] = krrr;
  804. camellia_setup_tail(subkey, subL, subR, 32);
  805. }
  806. static void camellia_setup192(const unsigned char *key, u32 *subkey)
  807. {
  808. unsigned char kk[32];
  809. u32 krll, krlr, krrl,krrr;
  810. memcpy(kk, key, 24);
  811. memcpy((unsigned char *)&krll, key+16, 4);
  812. memcpy((unsigned char *)&krlr, key+20, 4);
  813. krrl = ~krll;
  814. krrr = ~krlr;
  815. memcpy(kk+24, (unsigned char *)&krrl, 4);
  816. memcpy(kk+28, (unsigned char *)&krrr, 4);
  817. camellia_setup256(kk, subkey);
  818. }
  819. /*
  820. * Encrypt/decrypt
  821. */
  822. #define CAMELLIA_FLS(ll, lr, rl, rr, kll, klr, krl, krr, t0, t1, t2, t3) \
  823. do { \
  824. t0 = kll; \
  825. t2 = krr; \
  826. t0 &= ll; \
  827. t2 |= rr; \
  828. rl ^= t2; \
  829. lr ^= ROL1(t0); \
  830. t3 = krl; \
  831. t1 = klr; \
  832. t3 &= rl; \
  833. t1 |= lr; \
  834. ll ^= t1; \
  835. rr ^= ROL1(t3); \
  836. } while(0)
  837. #define CAMELLIA_ROUNDSM(xl, xr, kl, kr, yl, yr, il, ir) \
  838. do { \
  839. ir = camellia_sp1110[(u8)xr]; \
  840. il = camellia_sp1110[ (xl >> 24)]; \
  841. ir ^= camellia_sp0222[ (xr >> 24)]; \
  842. il ^= camellia_sp0222[(u8)(xl >> 16)]; \
  843. ir ^= camellia_sp3033[(u8)(xr >> 16)]; \
  844. il ^= camellia_sp3033[(u8)(xl >> 8)]; \
  845. ir ^= camellia_sp4404[(u8)(xr >> 8)]; \
  846. il ^= camellia_sp4404[(u8)xl]; \
  847. il ^= kl; \
  848. ir ^= il ^ kr; \
  849. yl ^= ir; \
  850. yr ^= ROR8(il) ^ ir; \
  851. } while(0)
  852. /* max = 24: 128bit encrypt, max = 32: 256bit encrypt */
  853. static void camellia_do_encrypt(const u32 *subkey, u32 *io, unsigned max)
  854. {
  855. u32 il,ir,t0,t1; /* temporary variables */
  856. /* pre whitening but absorb kw2 */
  857. io[0] ^= SUBKEY_L(0);
  858. io[1] ^= SUBKEY_R(0);
  859. /* main iteration */
  860. #define ROUNDS(i) do { \
  861. CAMELLIA_ROUNDSM(io[0],io[1], \
  862. SUBKEY_L(i + 2),SUBKEY_R(i + 2), \
  863. io[2],io[3],il,ir); \
  864. CAMELLIA_ROUNDSM(io[2],io[3], \
  865. SUBKEY_L(i + 3),SUBKEY_R(i + 3), \
  866. io[0],io[1],il,ir); \
  867. CAMELLIA_ROUNDSM(io[0],io[1], \
  868. SUBKEY_L(i + 4),SUBKEY_R(i + 4), \
  869. io[2],io[3],il,ir); \
  870. CAMELLIA_ROUNDSM(io[2],io[3], \
  871. SUBKEY_L(i + 5),SUBKEY_R(i + 5), \
  872. io[0],io[1],il,ir); \
  873. CAMELLIA_ROUNDSM(io[0],io[1], \
  874. SUBKEY_L(i + 6),SUBKEY_R(i + 6), \
  875. io[2],io[3],il,ir); \
  876. CAMELLIA_ROUNDSM(io[2],io[3], \
  877. SUBKEY_L(i + 7),SUBKEY_R(i + 7), \
  878. io[0],io[1],il,ir); \
  879. } while (0)
  880. #define FLS(i) do { \
  881. CAMELLIA_FLS(io[0],io[1],io[2],io[3], \
  882. SUBKEY_L(i + 0),SUBKEY_R(i + 0), \
  883. SUBKEY_L(i + 1),SUBKEY_R(i + 1), \
  884. t0,t1,il,ir); \
  885. } while (0)
  886. ROUNDS(0);
  887. FLS(8);
  888. ROUNDS(8);
  889. FLS(16);
  890. ROUNDS(16);
  891. if (max == 32) {
  892. FLS(24);
  893. ROUNDS(24);
  894. }
  895. #undef ROUNDS
  896. #undef FLS
  897. /* post whitening but kw4 */
  898. io[2] ^= SUBKEY_L(max);
  899. io[3] ^= SUBKEY_R(max);
  900. /* NB: io[0],[1] should be swapped with [2],[3] by caller! */
  901. }
  902. static void camellia_do_decrypt(const u32 *subkey, u32 *io, unsigned i)
  903. {
  904. u32 il,ir,t0,t1; /* temporary variables */
  905. /* pre whitening but absorb kw2 */
  906. io[0] ^= SUBKEY_L(i);
  907. io[1] ^= SUBKEY_R(i);
  908. /* main iteration */
  909. #define ROUNDS(i) do { \
  910. CAMELLIA_ROUNDSM(io[0],io[1], \
  911. SUBKEY_L(i + 7),SUBKEY_R(i + 7), \
  912. io[2],io[3],il,ir); \
  913. CAMELLIA_ROUNDSM(io[2],io[3], \
  914. SUBKEY_L(i + 6),SUBKEY_R(i + 6), \
  915. io[0],io[1],il,ir); \
  916. CAMELLIA_ROUNDSM(io[0],io[1], \
  917. SUBKEY_L(i + 5),SUBKEY_R(i + 5), \
  918. io[2],io[3],il,ir); \
  919. CAMELLIA_ROUNDSM(io[2],io[3], \
  920. SUBKEY_L(i + 4),SUBKEY_R(i + 4), \
  921. io[0],io[1],il,ir); \
  922. CAMELLIA_ROUNDSM(io[0],io[1], \
  923. SUBKEY_L(i + 3),SUBKEY_R(i + 3), \
  924. io[2],io[3],il,ir); \
  925. CAMELLIA_ROUNDSM(io[2],io[3], \
  926. SUBKEY_L(i + 2),SUBKEY_R(i + 2), \
  927. io[0],io[1],il,ir); \
  928. } while (0)
  929. #define FLS(i) do { \
  930. CAMELLIA_FLS(io[0],io[1],io[2],io[3], \
  931. SUBKEY_L(i + 1),SUBKEY_R(i + 1), \
  932. SUBKEY_L(i + 0),SUBKEY_R(i + 0), \
  933. t0,t1,il,ir); \
  934. } while (0)
  935. if (i == 32) {
  936. ROUNDS(24);
  937. FLS(24);
  938. }
  939. ROUNDS(16);
  940. FLS(16);
  941. ROUNDS(8);
  942. FLS(8);
  943. ROUNDS(0);
  944. #undef ROUNDS
  945. #undef FLS
  946. /* post whitening but kw4 */
  947. io[2] ^= SUBKEY_L(0);
  948. io[3] ^= SUBKEY_R(0);
  949. /* NB: 0,1 should be swapped with 2,3 by caller! */
  950. }
  951. struct camellia_ctx {
  952. int key_length;
  953. u32 key_table[CAMELLIA_TABLE_BYTE_LEN / sizeof(u32)];
  954. };
  955. static int
  956. camellia_set_key(struct crypto_tfm *tfm, const u8 *in_key,
  957. unsigned int key_len)
  958. {
  959. struct camellia_ctx *cctx = crypto_tfm_ctx(tfm);
  960. const unsigned char *key = (const unsigned char *)in_key;
  961. u32 *flags = &tfm->crt_flags;
  962. if (key_len != 16 && key_len != 24 && key_len != 32) {
  963. *flags |= CRYPTO_TFM_RES_BAD_KEY_LEN;
  964. return -EINVAL;
  965. }
  966. cctx->key_length = key_len;
  967. switch (key_len) {
  968. case 16:
  969. camellia_setup128(key, cctx->key_table);
  970. break;
  971. case 24:
  972. camellia_setup192(key, cctx->key_table);
  973. break;
  974. case 32:
  975. camellia_setup256(key, cctx->key_table);
  976. break;
  977. }
  978. return 0;
  979. }
  980. static void camellia_encrypt(struct crypto_tfm *tfm, u8 *out, const u8 *in)
  981. {
  982. const struct camellia_ctx *cctx = crypto_tfm_ctx(tfm);
  983. const __be32 *src = (const __be32 *)in;
  984. __be32 *dst = (__be32 *)out;
  985. u32 tmp[4];
  986. tmp[0] = be32_to_cpu(src[0]);
  987. tmp[1] = be32_to_cpu(src[1]);
  988. tmp[2] = be32_to_cpu(src[2]);
  989. tmp[3] = be32_to_cpu(src[3]);
  990. camellia_do_encrypt(cctx->key_table, tmp,
  991. cctx->key_length == 16 ? 24 : 32 /* for key lengths of 24 and 32 */
  992. );
  993. /* do_encrypt returns 0,1 swapped with 2,3 */
  994. dst[0] = cpu_to_be32(tmp[2]);
  995. dst[1] = cpu_to_be32(tmp[3]);
  996. dst[2] = cpu_to_be32(tmp[0]);
  997. dst[3] = cpu_to_be32(tmp[1]);
  998. }
  999. static void camellia_decrypt(struct crypto_tfm *tfm, u8 *out, const u8 *in)
  1000. {
  1001. const struct camellia_ctx *cctx = crypto_tfm_ctx(tfm);
  1002. const __be32 *src = (const __be32 *)in;
  1003. __be32 *dst = (__be32 *)out;
  1004. u32 tmp[4];
  1005. tmp[0] = be32_to_cpu(src[0]);
  1006. tmp[1] = be32_to_cpu(src[1]);
  1007. tmp[2] = be32_to_cpu(src[2]);
  1008. tmp[3] = be32_to_cpu(src[3]);
  1009. camellia_do_decrypt(cctx->key_table, tmp,
  1010. cctx->key_length == 16 ? 24 : 32 /* for key lengths of 24 and 32 */
  1011. );
  1012. /* do_decrypt returns 0,1 swapped with 2,3 */
  1013. dst[0] = cpu_to_be32(tmp[2]);
  1014. dst[1] = cpu_to_be32(tmp[3]);
  1015. dst[2] = cpu_to_be32(tmp[0]);
  1016. dst[3] = cpu_to_be32(tmp[1]);
  1017. }
  1018. static struct crypto_alg camellia_alg = {
  1019. .cra_name = "camellia",
  1020. .cra_driver_name = "camellia-generic",
  1021. .cra_priority = 100,
  1022. .cra_flags = CRYPTO_ALG_TYPE_CIPHER,
  1023. .cra_blocksize = CAMELLIA_BLOCK_SIZE,
  1024. .cra_ctxsize = sizeof(struct camellia_ctx),
  1025. .cra_alignmask = 3,
  1026. .cra_module = THIS_MODULE,
  1027. .cra_list = LIST_HEAD_INIT(camellia_alg.cra_list),
  1028. .cra_u = {
  1029. .cipher = {
  1030. .cia_min_keysize = CAMELLIA_MIN_KEY_SIZE,
  1031. .cia_max_keysize = CAMELLIA_MAX_KEY_SIZE,
  1032. .cia_setkey = camellia_set_key,
  1033. .cia_encrypt = camellia_encrypt,
  1034. .cia_decrypt = camellia_decrypt
  1035. }
  1036. }
  1037. };
  1038. static int __init camellia_init(void)
  1039. {
  1040. return crypto_register_alg(&camellia_alg);
  1041. }
  1042. static void __exit camellia_fini(void)
  1043. {
  1044. crypto_unregister_alg(&camellia_alg);
  1045. }
  1046. module_init(camellia_init);
  1047. module_exit(camellia_fini);
  1048. MODULE_DESCRIPTION("Camellia Cipher Algorithm");
  1049. MODULE_LICENSE("GPL");