serpent-avx-x86_64-asm_64.S 23 KB

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  1. /*
  2. * Serpent Cipher 8-way parallel algorithm (x86_64/AVX)
  3. *
  4. * Copyright (C) 2012 Johannes Goetzfried
  5. * <Johannes.Goetzfried@informatik.stud.uni-erlangen.de>
  6. *
  7. * Copyright © 2011-2013 Jussi Kivilinna <jussi.kivilinna@iki.fi>
  8. *
  9. * This program is free software; you can redistribute it and/or modify
  10. * it under the terms of the GNU General Public License as published by
  11. * the Free Software Foundation; either version 2 of the License, or
  12. * (at your option) any later version.
  13. *
  14. * This program is distributed in the hope that it will be useful,
  15. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  16. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  17. * GNU General Public License for more details.
  18. *
  19. * You should have received a copy of the GNU General Public License
  20. * along with this program; if not, write to the Free Software
  21. * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307
  22. * USA
  23. *
  24. */
  25. #include <linux/linkage.h>
  26. #include <asm/frame.h>
  27. #include "glue_helper-asm-avx.S"
  28. .file "serpent-avx-x86_64-asm_64.S"
  29. .section .rodata.cst16.bswap128_mask, "aM", @progbits, 16
  30. .align 16
  31. .Lbswap128_mask:
  32. .byte 15, 14, 13, 12, 11, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 0
  33. .section .rodata.cst16.xts_gf128mul_and_shl1_mask, "aM", @progbits, 16
  34. .align 16
  35. .Lxts_gf128mul_and_shl1_mask:
  36. .byte 0x87, 0, 0, 0, 0, 0, 0, 0, 1, 0, 0, 0, 0, 0, 0, 0
  37. .text
  38. #define CTX %rdi
  39. /**********************************************************************
  40. 8-way AVX serpent
  41. **********************************************************************/
  42. #define RA1 %xmm0
  43. #define RB1 %xmm1
  44. #define RC1 %xmm2
  45. #define RD1 %xmm3
  46. #define RE1 %xmm4
  47. #define tp %xmm5
  48. #define RA2 %xmm6
  49. #define RB2 %xmm7
  50. #define RC2 %xmm8
  51. #define RD2 %xmm9
  52. #define RE2 %xmm10
  53. #define RNOT %xmm11
  54. #define RK0 %xmm12
  55. #define RK1 %xmm13
  56. #define RK2 %xmm14
  57. #define RK3 %xmm15
  58. #define S0_1(x0, x1, x2, x3, x4) \
  59. vpor x0, x3, tp; \
  60. vpxor x3, x0, x0; \
  61. vpxor x2, x3, x4; \
  62. vpxor RNOT, x4, x4; \
  63. vpxor x1, tp, x3; \
  64. vpand x0, x1, x1; \
  65. vpxor x4, x1, x1; \
  66. vpxor x0, x2, x2;
  67. #define S0_2(x0, x1, x2, x3, x4) \
  68. vpxor x3, x0, x0; \
  69. vpor x0, x4, x4; \
  70. vpxor x2, x0, x0; \
  71. vpand x1, x2, x2; \
  72. vpxor x2, x3, x3; \
  73. vpxor RNOT, x1, x1; \
  74. vpxor x4, x2, x2; \
  75. vpxor x2, x1, x1;
  76. #define S1_1(x0, x1, x2, x3, x4) \
  77. vpxor x0, x1, tp; \
  78. vpxor x3, x0, x0; \
  79. vpxor RNOT, x3, x3; \
  80. vpand tp, x1, x4; \
  81. vpor tp, x0, x0; \
  82. vpxor x2, x3, x3; \
  83. vpxor x3, x0, x0; \
  84. vpxor x3, tp, x1;
  85. #define S1_2(x0, x1, x2, x3, x4) \
  86. vpxor x4, x3, x3; \
  87. vpor x4, x1, x1; \
  88. vpxor x2, x4, x4; \
  89. vpand x0, x2, x2; \
  90. vpxor x1, x2, x2; \
  91. vpor x0, x1, x1; \
  92. vpxor RNOT, x0, x0; \
  93. vpxor x2, x0, x0; \
  94. vpxor x1, x4, x4;
  95. #define S2_1(x0, x1, x2, x3, x4) \
  96. vpxor RNOT, x3, x3; \
  97. vpxor x0, x1, x1; \
  98. vpand x2, x0, tp; \
  99. vpxor x3, tp, tp; \
  100. vpor x0, x3, x3; \
  101. vpxor x1, x2, x2; \
  102. vpxor x1, x3, x3; \
  103. vpand tp, x1, x1;
  104. #define S2_2(x0, x1, x2, x3, x4) \
  105. vpxor x2, tp, tp; \
  106. vpand x3, x2, x2; \
  107. vpor x1, x3, x3; \
  108. vpxor RNOT, tp, tp; \
  109. vpxor tp, x3, x3; \
  110. vpxor tp, x0, x4; \
  111. vpxor x2, tp, x0; \
  112. vpor x2, x1, x1;
  113. #define S3_1(x0, x1, x2, x3, x4) \
  114. vpxor x3, x1, tp; \
  115. vpor x0, x3, x3; \
  116. vpand x0, x1, x4; \
  117. vpxor x2, x0, x0; \
  118. vpxor tp, x2, x2; \
  119. vpand x3, tp, x1; \
  120. vpxor x3, x2, x2; \
  121. vpor x4, x0, x0; \
  122. vpxor x3, x4, x4;
  123. #define S3_2(x0, x1, x2, x3, x4) \
  124. vpxor x0, x1, x1; \
  125. vpand x3, x0, x0; \
  126. vpand x4, x3, x3; \
  127. vpxor x2, x3, x3; \
  128. vpor x1, x4, x4; \
  129. vpand x1, x2, x2; \
  130. vpxor x3, x4, x4; \
  131. vpxor x3, x0, x0; \
  132. vpxor x2, x3, x3;
  133. #define S4_1(x0, x1, x2, x3, x4) \
  134. vpand x0, x3, tp; \
  135. vpxor x3, x0, x0; \
  136. vpxor x2, tp, tp; \
  137. vpor x3, x2, x2; \
  138. vpxor x1, x0, x0; \
  139. vpxor tp, x3, x4; \
  140. vpor x0, x2, x2; \
  141. vpxor x1, x2, x2;
  142. #define S4_2(x0, x1, x2, x3, x4) \
  143. vpand x0, x1, x1; \
  144. vpxor x4, x1, x1; \
  145. vpand x2, x4, x4; \
  146. vpxor tp, x2, x2; \
  147. vpxor x0, x4, x4; \
  148. vpor x1, tp, x3; \
  149. vpxor RNOT, x1, x1; \
  150. vpxor x0, x3, x3;
  151. #define S5_1(x0, x1, x2, x3, x4) \
  152. vpor x0, x1, tp; \
  153. vpxor tp, x2, x2; \
  154. vpxor RNOT, x3, x3; \
  155. vpxor x0, x1, x4; \
  156. vpxor x2, x0, x0; \
  157. vpand x4, tp, x1; \
  158. vpor x3, x4, x4; \
  159. vpxor x0, x4, x4;
  160. #define S5_2(x0, x1, x2, x3, x4) \
  161. vpand x3, x0, x0; \
  162. vpxor x3, x1, x1; \
  163. vpxor x2, x3, x3; \
  164. vpxor x1, x0, x0; \
  165. vpand x4, x2, x2; \
  166. vpxor x2, x1, x1; \
  167. vpand x0, x2, x2; \
  168. vpxor x2, x3, x3;
  169. #define S6_1(x0, x1, x2, x3, x4) \
  170. vpxor x0, x3, x3; \
  171. vpxor x2, x1, tp; \
  172. vpxor x0, x2, x2; \
  173. vpand x3, x0, x0; \
  174. vpor x3, tp, tp; \
  175. vpxor RNOT, x1, x4; \
  176. vpxor tp, x0, x0; \
  177. vpxor x2, tp, x1;
  178. #define S6_2(x0, x1, x2, x3, x4) \
  179. vpxor x4, x3, x3; \
  180. vpxor x0, x4, x4; \
  181. vpand x0, x2, x2; \
  182. vpxor x1, x4, x4; \
  183. vpxor x3, x2, x2; \
  184. vpand x1, x3, x3; \
  185. vpxor x0, x3, x3; \
  186. vpxor x2, x1, x1;
  187. #define S7_1(x0, x1, x2, x3, x4) \
  188. vpxor RNOT, x1, tp; \
  189. vpxor RNOT, x0, x0; \
  190. vpand x2, tp, x1; \
  191. vpxor x3, x1, x1; \
  192. vpor tp, x3, x3; \
  193. vpxor x2, tp, x4; \
  194. vpxor x3, x2, x2; \
  195. vpxor x0, x3, x3; \
  196. vpor x1, x0, x0;
  197. #define S7_2(x0, x1, x2, x3, x4) \
  198. vpand x0, x2, x2; \
  199. vpxor x4, x0, x0; \
  200. vpxor x3, x4, x4; \
  201. vpand x0, x3, x3; \
  202. vpxor x1, x4, x4; \
  203. vpxor x4, x2, x2; \
  204. vpxor x1, x3, x3; \
  205. vpor x0, x4, x4; \
  206. vpxor x1, x4, x4;
  207. #define SI0_1(x0, x1, x2, x3, x4) \
  208. vpxor x0, x1, x1; \
  209. vpor x1, x3, tp; \
  210. vpxor x1, x3, x4; \
  211. vpxor RNOT, x0, x0; \
  212. vpxor tp, x2, x2; \
  213. vpxor x0, tp, x3; \
  214. vpand x1, x0, x0; \
  215. vpxor x2, x0, x0;
  216. #define SI0_2(x0, x1, x2, x3, x4) \
  217. vpand x3, x2, x2; \
  218. vpxor x4, x3, x3; \
  219. vpxor x3, x2, x2; \
  220. vpxor x3, x1, x1; \
  221. vpand x0, x3, x3; \
  222. vpxor x0, x1, x1; \
  223. vpxor x2, x0, x0; \
  224. vpxor x3, x4, x4;
  225. #define SI1_1(x0, x1, x2, x3, x4) \
  226. vpxor x3, x1, x1; \
  227. vpxor x2, x0, tp; \
  228. vpxor RNOT, x2, x2; \
  229. vpor x1, x0, x4; \
  230. vpxor x3, x4, x4; \
  231. vpand x1, x3, x3; \
  232. vpxor x2, x1, x1; \
  233. vpand x4, x2, x2;
  234. #define SI1_2(x0, x1, x2, x3, x4) \
  235. vpxor x1, x4, x4; \
  236. vpor x3, x1, x1; \
  237. vpxor tp, x3, x3; \
  238. vpxor tp, x2, x2; \
  239. vpor x4, tp, x0; \
  240. vpxor x4, x2, x2; \
  241. vpxor x0, x1, x1; \
  242. vpxor x1, x4, x4;
  243. #define SI2_1(x0, x1, x2, x3, x4) \
  244. vpxor x1, x2, x2; \
  245. vpxor RNOT, x3, tp; \
  246. vpor x2, tp, tp; \
  247. vpxor x3, x2, x2; \
  248. vpxor x0, x3, x4; \
  249. vpxor x1, tp, x3; \
  250. vpor x2, x1, x1; \
  251. vpxor x0, x2, x2;
  252. #define SI2_2(x0, x1, x2, x3, x4) \
  253. vpxor x4, x1, x1; \
  254. vpor x3, x4, x4; \
  255. vpxor x3, x2, x2; \
  256. vpxor x2, x4, x4; \
  257. vpand x1, x2, x2; \
  258. vpxor x3, x2, x2; \
  259. vpxor x4, x3, x3; \
  260. vpxor x0, x4, x4;
  261. #define SI3_1(x0, x1, x2, x3, x4) \
  262. vpxor x1, x2, x2; \
  263. vpand x2, x1, tp; \
  264. vpxor x0, tp, tp; \
  265. vpor x1, x0, x0; \
  266. vpxor x3, x1, x4; \
  267. vpxor x3, x0, x0; \
  268. vpor tp, x3, x3; \
  269. vpxor x2, tp, x1;
  270. #define SI3_2(x0, x1, x2, x3, x4) \
  271. vpxor x3, x1, x1; \
  272. vpxor x2, x0, x0; \
  273. vpxor x3, x2, x2; \
  274. vpand x1, x3, x3; \
  275. vpxor x0, x1, x1; \
  276. vpand x2, x0, x0; \
  277. vpxor x3, x4, x4; \
  278. vpxor x0, x3, x3; \
  279. vpxor x1, x0, x0;
  280. #define SI4_1(x0, x1, x2, x3, x4) \
  281. vpxor x3, x2, x2; \
  282. vpand x1, x0, tp; \
  283. vpxor x2, tp, tp; \
  284. vpor x3, x2, x2; \
  285. vpxor RNOT, x0, x4; \
  286. vpxor tp, x1, x1; \
  287. vpxor x2, tp, x0; \
  288. vpand x4, x2, x2;
  289. #define SI4_2(x0, x1, x2, x3, x4) \
  290. vpxor x0, x2, x2; \
  291. vpor x4, x0, x0; \
  292. vpxor x3, x0, x0; \
  293. vpand x2, x3, x3; \
  294. vpxor x3, x4, x4; \
  295. vpxor x1, x3, x3; \
  296. vpand x0, x1, x1; \
  297. vpxor x1, x4, x4; \
  298. vpxor x3, x0, x0;
  299. #define SI5_1(x0, x1, x2, x3, x4) \
  300. vpor x2, x1, tp; \
  301. vpxor x1, x2, x2; \
  302. vpxor x3, tp, tp; \
  303. vpand x1, x3, x3; \
  304. vpxor x3, x2, x2; \
  305. vpor x0, x3, x3; \
  306. vpxor RNOT, x0, x0; \
  307. vpxor x2, x3, x3; \
  308. vpor x0, x2, x2;
  309. #define SI5_2(x0, x1, x2, x3, x4) \
  310. vpxor tp, x1, x4; \
  311. vpxor x4, x2, x2; \
  312. vpand x0, x4, x4; \
  313. vpxor tp, x0, x0; \
  314. vpxor x3, tp, x1; \
  315. vpand x2, x0, x0; \
  316. vpxor x3, x2, x2; \
  317. vpxor x2, x0, x0; \
  318. vpxor x4, x2, x2; \
  319. vpxor x3, x4, x4;
  320. #define SI6_1(x0, x1, x2, x3, x4) \
  321. vpxor x2, x0, x0; \
  322. vpand x3, x0, tp; \
  323. vpxor x3, x2, x2; \
  324. vpxor x2, tp, tp; \
  325. vpxor x1, x3, x3; \
  326. vpor x0, x2, x2; \
  327. vpxor x3, x2, x2; \
  328. vpand tp, x3, x3;
  329. #define SI6_2(x0, x1, x2, x3, x4) \
  330. vpxor RNOT, tp, tp; \
  331. vpxor x1, x3, x3; \
  332. vpand x2, x1, x1; \
  333. vpxor tp, x0, x4; \
  334. vpxor x4, x3, x3; \
  335. vpxor x2, x4, x4; \
  336. vpxor x1, tp, x0; \
  337. vpxor x0, x2, x2;
  338. #define SI7_1(x0, x1, x2, x3, x4) \
  339. vpand x0, x3, tp; \
  340. vpxor x2, x0, x0; \
  341. vpor x3, x2, x2; \
  342. vpxor x1, x3, x4; \
  343. vpxor RNOT, x0, x0; \
  344. vpor tp, x1, x1; \
  345. vpxor x0, x4, x4; \
  346. vpand x2, x0, x0; \
  347. vpxor x1, x0, x0;
  348. #define SI7_2(x0, x1, x2, x3, x4) \
  349. vpand x2, x1, x1; \
  350. vpxor x2, tp, x3; \
  351. vpxor x3, x4, x4; \
  352. vpand x3, x2, x2; \
  353. vpor x0, x3, x3; \
  354. vpxor x4, x1, x1; \
  355. vpxor x4, x3, x3; \
  356. vpand x0, x4, x4; \
  357. vpxor x2, x4, x4;
  358. #define get_key(i, j, t) \
  359. vbroadcastss (4*(i)+(j))*4(CTX), t;
  360. #define K2(x0, x1, x2, x3, x4, i) \
  361. get_key(i, 0, RK0); \
  362. get_key(i, 1, RK1); \
  363. get_key(i, 2, RK2); \
  364. get_key(i, 3, RK3); \
  365. vpxor RK0, x0 ## 1, x0 ## 1; \
  366. vpxor RK1, x1 ## 1, x1 ## 1; \
  367. vpxor RK2, x2 ## 1, x2 ## 1; \
  368. vpxor RK3, x3 ## 1, x3 ## 1; \
  369. vpxor RK0, x0 ## 2, x0 ## 2; \
  370. vpxor RK1, x1 ## 2, x1 ## 2; \
  371. vpxor RK2, x2 ## 2, x2 ## 2; \
  372. vpxor RK3, x3 ## 2, x3 ## 2;
  373. #define LK2(x0, x1, x2, x3, x4, i) \
  374. vpslld $13, x0 ## 1, x4 ## 1; \
  375. vpsrld $(32 - 13), x0 ## 1, x0 ## 1; \
  376. vpor x4 ## 1, x0 ## 1, x0 ## 1; \
  377. vpxor x0 ## 1, x1 ## 1, x1 ## 1; \
  378. vpslld $3, x2 ## 1, x4 ## 1; \
  379. vpsrld $(32 - 3), x2 ## 1, x2 ## 1; \
  380. vpor x4 ## 1, x2 ## 1, x2 ## 1; \
  381. vpxor x2 ## 1, x1 ## 1, x1 ## 1; \
  382. vpslld $13, x0 ## 2, x4 ## 2; \
  383. vpsrld $(32 - 13), x0 ## 2, x0 ## 2; \
  384. vpor x4 ## 2, x0 ## 2, x0 ## 2; \
  385. vpxor x0 ## 2, x1 ## 2, x1 ## 2; \
  386. vpslld $3, x2 ## 2, x4 ## 2; \
  387. vpsrld $(32 - 3), x2 ## 2, x2 ## 2; \
  388. vpor x4 ## 2, x2 ## 2, x2 ## 2; \
  389. vpxor x2 ## 2, x1 ## 2, x1 ## 2; \
  390. vpslld $1, x1 ## 1, x4 ## 1; \
  391. vpsrld $(32 - 1), x1 ## 1, x1 ## 1; \
  392. vpor x4 ## 1, x1 ## 1, x1 ## 1; \
  393. vpslld $3, x0 ## 1, x4 ## 1; \
  394. vpxor x2 ## 1, x3 ## 1, x3 ## 1; \
  395. vpxor x4 ## 1, x3 ## 1, x3 ## 1; \
  396. get_key(i, 1, RK1); \
  397. vpslld $1, x1 ## 2, x4 ## 2; \
  398. vpsrld $(32 - 1), x1 ## 2, x1 ## 2; \
  399. vpor x4 ## 2, x1 ## 2, x1 ## 2; \
  400. vpslld $3, x0 ## 2, x4 ## 2; \
  401. vpxor x2 ## 2, x3 ## 2, x3 ## 2; \
  402. vpxor x4 ## 2, x3 ## 2, x3 ## 2; \
  403. get_key(i, 3, RK3); \
  404. vpslld $7, x3 ## 1, x4 ## 1; \
  405. vpsrld $(32 - 7), x3 ## 1, x3 ## 1; \
  406. vpor x4 ## 1, x3 ## 1, x3 ## 1; \
  407. vpslld $7, x1 ## 1, x4 ## 1; \
  408. vpxor x1 ## 1, x0 ## 1, x0 ## 1; \
  409. vpxor x3 ## 1, x0 ## 1, x0 ## 1; \
  410. vpxor x3 ## 1, x2 ## 1, x2 ## 1; \
  411. vpxor x4 ## 1, x2 ## 1, x2 ## 1; \
  412. get_key(i, 0, RK0); \
  413. vpslld $7, x3 ## 2, x4 ## 2; \
  414. vpsrld $(32 - 7), x3 ## 2, x3 ## 2; \
  415. vpor x4 ## 2, x3 ## 2, x3 ## 2; \
  416. vpslld $7, x1 ## 2, x4 ## 2; \
  417. vpxor x1 ## 2, x0 ## 2, x0 ## 2; \
  418. vpxor x3 ## 2, x0 ## 2, x0 ## 2; \
  419. vpxor x3 ## 2, x2 ## 2, x2 ## 2; \
  420. vpxor x4 ## 2, x2 ## 2, x2 ## 2; \
  421. get_key(i, 2, RK2); \
  422. vpxor RK1, x1 ## 1, x1 ## 1; \
  423. vpxor RK3, x3 ## 1, x3 ## 1; \
  424. vpslld $5, x0 ## 1, x4 ## 1; \
  425. vpsrld $(32 - 5), x0 ## 1, x0 ## 1; \
  426. vpor x4 ## 1, x0 ## 1, x0 ## 1; \
  427. vpslld $22, x2 ## 1, x4 ## 1; \
  428. vpsrld $(32 - 22), x2 ## 1, x2 ## 1; \
  429. vpor x4 ## 1, x2 ## 1, x2 ## 1; \
  430. vpxor RK0, x0 ## 1, x0 ## 1; \
  431. vpxor RK2, x2 ## 1, x2 ## 1; \
  432. vpxor RK1, x1 ## 2, x1 ## 2; \
  433. vpxor RK3, x3 ## 2, x3 ## 2; \
  434. vpslld $5, x0 ## 2, x4 ## 2; \
  435. vpsrld $(32 - 5), x0 ## 2, x0 ## 2; \
  436. vpor x4 ## 2, x0 ## 2, x0 ## 2; \
  437. vpslld $22, x2 ## 2, x4 ## 2; \
  438. vpsrld $(32 - 22), x2 ## 2, x2 ## 2; \
  439. vpor x4 ## 2, x2 ## 2, x2 ## 2; \
  440. vpxor RK0, x0 ## 2, x0 ## 2; \
  441. vpxor RK2, x2 ## 2, x2 ## 2;
  442. #define KL2(x0, x1, x2, x3, x4, i) \
  443. vpxor RK0, x0 ## 1, x0 ## 1; \
  444. vpxor RK2, x2 ## 1, x2 ## 1; \
  445. vpsrld $5, x0 ## 1, x4 ## 1; \
  446. vpslld $(32 - 5), x0 ## 1, x0 ## 1; \
  447. vpor x4 ## 1, x0 ## 1, x0 ## 1; \
  448. vpxor RK3, x3 ## 1, x3 ## 1; \
  449. vpxor RK1, x1 ## 1, x1 ## 1; \
  450. vpsrld $22, x2 ## 1, x4 ## 1; \
  451. vpslld $(32 - 22), x2 ## 1, x2 ## 1; \
  452. vpor x4 ## 1, x2 ## 1, x2 ## 1; \
  453. vpxor x3 ## 1, x2 ## 1, x2 ## 1; \
  454. vpxor RK0, x0 ## 2, x0 ## 2; \
  455. vpxor RK2, x2 ## 2, x2 ## 2; \
  456. vpsrld $5, x0 ## 2, x4 ## 2; \
  457. vpslld $(32 - 5), x0 ## 2, x0 ## 2; \
  458. vpor x4 ## 2, x0 ## 2, x0 ## 2; \
  459. vpxor RK3, x3 ## 2, x3 ## 2; \
  460. vpxor RK1, x1 ## 2, x1 ## 2; \
  461. vpsrld $22, x2 ## 2, x4 ## 2; \
  462. vpslld $(32 - 22), x2 ## 2, x2 ## 2; \
  463. vpor x4 ## 2, x2 ## 2, x2 ## 2; \
  464. vpxor x3 ## 2, x2 ## 2, x2 ## 2; \
  465. vpxor x3 ## 1, x0 ## 1, x0 ## 1; \
  466. vpslld $7, x1 ## 1, x4 ## 1; \
  467. vpxor x1 ## 1, x0 ## 1, x0 ## 1; \
  468. vpxor x4 ## 1, x2 ## 1, x2 ## 1; \
  469. vpsrld $1, x1 ## 1, x4 ## 1; \
  470. vpslld $(32 - 1), x1 ## 1, x1 ## 1; \
  471. vpor x4 ## 1, x1 ## 1, x1 ## 1; \
  472. vpxor x3 ## 2, x0 ## 2, x0 ## 2; \
  473. vpslld $7, x1 ## 2, x4 ## 2; \
  474. vpxor x1 ## 2, x0 ## 2, x0 ## 2; \
  475. vpxor x4 ## 2, x2 ## 2, x2 ## 2; \
  476. vpsrld $1, x1 ## 2, x4 ## 2; \
  477. vpslld $(32 - 1), x1 ## 2, x1 ## 2; \
  478. vpor x4 ## 2, x1 ## 2, x1 ## 2; \
  479. vpsrld $7, x3 ## 1, x4 ## 1; \
  480. vpslld $(32 - 7), x3 ## 1, x3 ## 1; \
  481. vpor x4 ## 1, x3 ## 1, x3 ## 1; \
  482. vpxor x0 ## 1, x1 ## 1, x1 ## 1; \
  483. vpslld $3, x0 ## 1, x4 ## 1; \
  484. vpxor x4 ## 1, x3 ## 1, x3 ## 1; \
  485. vpsrld $7, x3 ## 2, x4 ## 2; \
  486. vpslld $(32 - 7), x3 ## 2, x3 ## 2; \
  487. vpor x4 ## 2, x3 ## 2, x3 ## 2; \
  488. vpxor x0 ## 2, x1 ## 2, x1 ## 2; \
  489. vpslld $3, x0 ## 2, x4 ## 2; \
  490. vpxor x4 ## 2, x3 ## 2, x3 ## 2; \
  491. vpsrld $13, x0 ## 1, x4 ## 1; \
  492. vpslld $(32 - 13), x0 ## 1, x0 ## 1; \
  493. vpor x4 ## 1, x0 ## 1, x0 ## 1; \
  494. vpxor x2 ## 1, x1 ## 1, x1 ## 1; \
  495. vpxor x2 ## 1, x3 ## 1, x3 ## 1; \
  496. vpsrld $3, x2 ## 1, x4 ## 1; \
  497. vpslld $(32 - 3), x2 ## 1, x2 ## 1; \
  498. vpor x4 ## 1, x2 ## 1, x2 ## 1; \
  499. vpsrld $13, x0 ## 2, x4 ## 2; \
  500. vpslld $(32 - 13), x0 ## 2, x0 ## 2; \
  501. vpor x4 ## 2, x0 ## 2, x0 ## 2; \
  502. vpxor x2 ## 2, x1 ## 2, x1 ## 2; \
  503. vpxor x2 ## 2, x3 ## 2, x3 ## 2; \
  504. vpsrld $3, x2 ## 2, x4 ## 2; \
  505. vpslld $(32 - 3), x2 ## 2, x2 ## 2; \
  506. vpor x4 ## 2, x2 ## 2, x2 ## 2;
  507. #define S(SBOX, x0, x1, x2, x3, x4) \
  508. SBOX ## _1(x0 ## 1, x1 ## 1, x2 ## 1, x3 ## 1, x4 ## 1); \
  509. SBOX ## _2(x0 ## 1, x1 ## 1, x2 ## 1, x3 ## 1, x4 ## 1); \
  510. SBOX ## _1(x0 ## 2, x1 ## 2, x2 ## 2, x3 ## 2, x4 ## 2); \
  511. SBOX ## _2(x0 ## 2, x1 ## 2, x2 ## 2, x3 ## 2, x4 ## 2);
  512. #define SP(SBOX, x0, x1, x2, x3, x4, i) \
  513. get_key(i, 0, RK0); \
  514. SBOX ## _1(x0 ## 1, x1 ## 1, x2 ## 1, x3 ## 1, x4 ## 1); \
  515. get_key(i, 2, RK2); \
  516. SBOX ## _2(x0 ## 1, x1 ## 1, x2 ## 1, x3 ## 1, x4 ## 1); \
  517. get_key(i, 3, RK3); \
  518. SBOX ## _1(x0 ## 2, x1 ## 2, x2 ## 2, x3 ## 2, x4 ## 2); \
  519. get_key(i, 1, RK1); \
  520. SBOX ## _2(x0 ## 2, x1 ## 2, x2 ## 2, x3 ## 2, x4 ## 2); \
  521. #define transpose_4x4(x0, x1, x2, x3, t0, t1, t2) \
  522. vpunpckldq x1, x0, t0; \
  523. vpunpckhdq x1, x0, t2; \
  524. vpunpckldq x3, x2, t1; \
  525. vpunpckhdq x3, x2, x3; \
  526. \
  527. vpunpcklqdq t1, t0, x0; \
  528. vpunpckhqdq t1, t0, x1; \
  529. vpunpcklqdq x3, t2, x2; \
  530. vpunpckhqdq x3, t2, x3;
  531. #define read_blocks(x0, x1, x2, x3, t0, t1, t2) \
  532. transpose_4x4(x0, x1, x2, x3, t0, t1, t2)
  533. #define write_blocks(x0, x1, x2, x3, t0, t1, t2) \
  534. transpose_4x4(x0, x1, x2, x3, t0, t1, t2)
  535. .align 8
  536. __serpent_enc_blk8_avx:
  537. /* input:
  538. * %rdi: ctx, CTX
  539. * RA1, RB1, RC1, RD1, RA2, RB2, RC2, RD2: blocks
  540. * output:
  541. * RA1, RB1, RC1, RD1, RA2, RB2, RC2, RD2: encrypted blocks
  542. */
  543. vpcmpeqd RNOT, RNOT, RNOT;
  544. read_blocks(RA1, RB1, RC1, RD1, RK0, RK1, RK2);
  545. read_blocks(RA2, RB2, RC2, RD2, RK0, RK1, RK2);
  546. K2(RA, RB, RC, RD, RE, 0);
  547. S(S0, RA, RB, RC, RD, RE); LK2(RC, RB, RD, RA, RE, 1);
  548. S(S1, RC, RB, RD, RA, RE); LK2(RE, RD, RA, RC, RB, 2);
  549. S(S2, RE, RD, RA, RC, RB); LK2(RB, RD, RE, RC, RA, 3);
  550. S(S3, RB, RD, RE, RC, RA); LK2(RC, RA, RD, RB, RE, 4);
  551. S(S4, RC, RA, RD, RB, RE); LK2(RA, RD, RB, RE, RC, 5);
  552. S(S5, RA, RD, RB, RE, RC); LK2(RC, RA, RD, RE, RB, 6);
  553. S(S6, RC, RA, RD, RE, RB); LK2(RD, RB, RA, RE, RC, 7);
  554. S(S7, RD, RB, RA, RE, RC); LK2(RC, RA, RE, RD, RB, 8);
  555. S(S0, RC, RA, RE, RD, RB); LK2(RE, RA, RD, RC, RB, 9);
  556. S(S1, RE, RA, RD, RC, RB); LK2(RB, RD, RC, RE, RA, 10);
  557. S(S2, RB, RD, RC, RE, RA); LK2(RA, RD, RB, RE, RC, 11);
  558. S(S3, RA, RD, RB, RE, RC); LK2(RE, RC, RD, RA, RB, 12);
  559. S(S4, RE, RC, RD, RA, RB); LK2(RC, RD, RA, RB, RE, 13);
  560. S(S5, RC, RD, RA, RB, RE); LK2(RE, RC, RD, RB, RA, 14);
  561. S(S6, RE, RC, RD, RB, RA); LK2(RD, RA, RC, RB, RE, 15);
  562. S(S7, RD, RA, RC, RB, RE); LK2(RE, RC, RB, RD, RA, 16);
  563. S(S0, RE, RC, RB, RD, RA); LK2(RB, RC, RD, RE, RA, 17);
  564. S(S1, RB, RC, RD, RE, RA); LK2(RA, RD, RE, RB, RC, 18);
  565. S(S2, RA, RD, RE, RB, RC); LK2(RC, RD, RA, RB, RE, 19);
  566. S(S3, RC, RD, RA, RB, RE); LK2(RB, RE, RD, RC, RA, 20);
  567. S(S4, RB, RE, RD, RC, RA); LK2(RE, RD, RC, RA, RB, 21);
  568. S(S5, RE, RD, RC, RA, RB); LK2(RB, RE, RD, RA, RC, 22);
  569. S(S6, RB, RE, RD, RA, RC); LK2(RD, RC, RE, RA, RB, 23);
  570. S(S7, RD, RC, RE, RA, RB); LK2(RB, RE, RA, RD, RC, 24);
  571. S(S0, RB, RE, RA, RD, RC); LK2(RA, RE, RD, RB, RC, 25);
  572. S(S1, RA, RE, RD, RB, RC); LK2(RC, RD, RB, RA, RE, 26);
  573. S(S2, RC, RD, RB, RA, RE); LK2(RE, RD, RC, RA, RB, 27);
  574. S(S3, RE, RD, RC, RA, RB); LK2(RA, RB, RD, RE, RC, 28);
  575. S(S4, RA, RB, RD, RE, RC); LK2(RB, RD, RE, RC, RA, 29);
  576. S(S5, RB, RD, RE, RC, RA); LK2(RA, RB, RD, RC, RE, 30);
  577. S(S6, RA, RB, RD, RC, RE); LK2(RD, RE, RB, RC, RA, 31);
  578. S(S7, RD, RE, RB, RC, RA); K2(RA, RB, RC, RD, RE, 32);
  579. write_blocks(RA1, RB1, RC1, RD1, RK0, RK1, RK2);
  580. write_blocks(RA2, RB2, RC2, RD2, RK0, RK1, RK2);
  581. ret;
  582. ENDPROC(__serpent_enc_blk8_avx)
  583. .align 8
  584. __serpent_dec_blk8_avx:
  585. /* input:
  586. * %rdi: ctx, CTX
  587. * RA1, RB1, RC1, RD1, RA2, RB2, RC2, RD2: encrypted blocks
  588. * output:
  589. * RC1, RD1, RB1, RE1, RC2, RD2, RB2, RE2: decrypted blocks
  590. */
  591. vpcmpeqd RNOT, RNOT, RNOT;
  592. read_blocks(RA1, RB1, RC1, RD1, RK0, RK1, RK2);
  593. read_blocks(RA2, RB2, RC2, RD2, RK0, RK1, RK2);
  594. K2(RA, RB, RC, RD, RE, 32);
  595. SP(SI7, RA, RB, RC, RD, RE, 31); KL2(RB, RD, RA, RE, RC, 31);
  596. SP(SI6, RB, RD, RA, RE, RC, 30); KL2(RA, RC, RE, RB, RD, 30);
  597. SP(SI5, RA, RC, RE, RB, RD, 29); KL2(RC, RD, RA, RE, RB, 29);
  598. SP(SI4, RC, RD, RA, RE, RB, 28); KL2(RC, RA, RB, RE, RD, 28);
  599. SP(SI3, RC, RA, RB, RE, RD, 27); KL2(RB, RC, RD, RE, RA, 27);
  600. SP(SI2, RB, RC, RD, RE, RA, 26); KL2(RC, RA, RE, RD, RB, 26);
  601. SP(SI1, RC, RA, RE, RD, RB, 25); KL2(RB, RA, RE, RD, RC, 25);
  602. SP(SI0, RB, RA, RE, RD, RC, 24); KL2(RE, RC, RA, RB, RD, 24);
  603. SP(SI7, RE, RC, RA, RB, RD, 23); KL2(RC, RB, RE, RD, RA, 23);
  604. SP(SI6, RC, RB, RE, RD, RA, 22); KL2(RE, RA, RD, RC, RB, 22);
  605. SP(SI5, RE, RA, RD, RC, RB, 21); KL2(RA, RB, RE, RD, RC, 21);
  606. SP(SI4, RA, RB, RE, RD, RC, 20); KL2(RA, RE, RC, RD, RB, 20);
  607. SP(SI3, RA, RE, RC, RD, RB, 19); KL2(RC, RA, RB, RD, RE, 19);
  608. SP(SI2, RC, RA, RB, RD, RE, 18); KL2(RA, RE, RD, RB, RC, 18);
  609. SP(SI1, RA, RE, RD, RB, RC, 17); KL2(RC, RE, RD, RB, RA, 17);
  610. SP(SI0, RC, RE, RD, RB, RA, 16); KL2(RD, RA, RE, RC, RB, 16);
  611. SP(SI7, RD, RA, RE, RC, RB, 15); KL2(RA, RC, RD, RB, RE, 15);
  612. SP(SI6, RA, RC, RD, RB, RE, 14); KL2(RD, RE, RB, RA, RC, 14);
  613. SP(SI5, RD, RE, RB, RA, RC, 13); KL2(RE, RC, RD, RB, RA, 13);
  614. SP(SI4, RE, RC, RD, RB, RA, 12); KL2(RE, RD, RA, RB, RC, 12);
  615. SP(SI3, RE, RD, RA, RB, RC, 11); KL2(RA, RE, RC, RB, RD, 11);
  616. SP(SI2, RA, RE, RC, RB, RD, 10); KL2(RE, RD, RB, RC, RA, 10);
  617. SP(SI1, RE, RD, RB, RC, RA, 9); KL2(RA, RD, RB, RC, RE, 9);
  618. SP(SI0, RA, RD, RB, RC, RE, 8); KL2(RB, RE, RD, RA, RC, 8);
  619. SP(SI7, RB, RE, RD, RA, RC, 7); KL2(RE, RA, RB, RC, RD, 7);
  620. SP(SI6, RE, RA, RB, RC, RD, 6); KL2(RB, RD, RC, RE, RA, 6);
  621. SP(SI5, RB, RD, RC, RE, RA, 5); KL2(RD, RA, RB, RC, RE, 5);
  622. SP(SI4, RD, RA, RB, RC, RE, 4); KL2(RD, RB, RE, RC, RA, 4);
  623. SP(SI3, RD, RB, RE, RC, RA, 3); KL2(RE, RD, RA, RC, RB, 3);
  624. SP(SI2, RE, RD, RA, RC, RB, 2); KL2(RD, RB, RC, RA, RE, 2);
  625. SP(SI1, RD, RB, RC, RA, RE, 1); KL2(RE, RB, RC, RA, RD, 1);
  626. S(SI0, RE, RB, RC, RA, RD); K2(RC, RD, RB, RE, RA, 0);
  627. write_blocks(RC1, RD1, RB1, RE1, RK0, RK1, RK2);
  628. write_blocks(RC2, RD2, RB2, RE2, RK0, RK1, RK2);
  629. ret;
  630. ENDPROC(__serpent_dec_blk8_avx)
  631. ENTRY(serpent_ecb_enc_8way_avx)
  632. /* input:
  633. * %rdi: ctx, CTX
  634. * %rsi: dst
  635. * %rdx: src
  636. */
  637. FRAME_BEGIN
  638. load_8way(%rdx, RA1, RB1, RC1, RD1, RA2, RB2, RC2, RD2);
  639. call __serpent_enc_blk8_avx;
  640. store_8way(%rsi, RA1, RB1, RC1, RD1, RA2, RB2, RC2, RD2);
  641. FRAME_END
  642. ret;
  643. ENDPROC(serpent_ecb_enc_8way_avx)
  644. ENTRY(serpent_ecb_dec_8way_avx)
  645. /* input:
  646. * %rdi: ctx, CTX
  647. * %rsi: dst
  648. * %rdx: src
  649. */
  650. FRAME_BEGIN
  651. load_8way(%rdx, RA1, RB1, RC1, RD1, RA2, RB2, RC2, RD2);
  652. call __serpent_dec_blk8_avx;
  653. store_8way(%rsi, RC1, RD1, RB1, RE1, RC2, RD2, RB2, RE2);
  654. FRAME_END
  655. ret;
  656. ENDPROC(serpent_ecb_dec_8way_avx)
  657. ENTRY(serpent_cbc_dec_8way_avx)
  658. /* input:
  659. * %rdi: ctx, CTX
  660. * %rsi: dst
  661. * %rdx: src
  662. */
  663. FRAME_BEGIN
  664. load_8way(%rdx, RA1, RB1, RC1, RD1, RA2, RB2, RC2, RD2);
  665. call __serpent_dec_blk8_avx;
  666. store_cbc_8way(%rdx, %rsi, RC1, RD1, RB1, RE1, RC2, RD2, RB2, RE2);
  667. FRAME_END
  668. ret;
  669. ENDPROC(serpent_cbc_dec_8way_avx)
  670. ENTRY(serpent_ctr_8way_avx)
  671. /* input:
  672. * %rdi: ctx, CTX
  673. * %rsi: dst
  674. * %rdx: src
  675. * %rcx: iv (little endian, 128bit)
  676. */
  677. FRAME_BEGIN
  678. load_ctr_8way(%rcx, .Lbswap128_mask, RA1, RB1, RC1, RD1, RA2, RB2, RC2,
  679. RD2, RK0, RK1, RK2);
  680. call __serpent_enc_blk8_avx;
  681. store_ctr_8way(%rdx, %rsi, RA1, RB1, RC1, RD1, RA2, RB2, RC2, RD2);
  682. FRAME_END
  683. ret;
  684. ENDPROC(serpent_ctr_8way_avx)
  685. ENTRY(serpent_xts_enc_8way_avx)
  686. /* input:
  687. * %rdi: ctx, CTX
  688. * %rsi: dst
  689. * %rdx: src
  690. * %rcx: iv (t ⊕ αⁿ ∈ GF(2¹²⁸))
  691. */
  692. FRAME_BEGIN
  693. /* regs <= src, dst <= IVs, regs <= regs xor IVs */
  694. load_xts_8way(%rcx, %rdx, %rsi, RA1, RB1, RC1, RD1, RA2, RB2, RC2, RD2,
  695. RK0, RK1, RK2, .Lxts_gf128mul_and_shl1_mask);
  696. call __serpent_enc_blk8_avx;
  697. /* dst <= regs xor IVs(in dst) */
  698. store_xts_8way(%rsi, RA1, RB1, RC1, RD1, RA2, RB2, RC2, RD2);
  699. FRAME_END
  700. ret;
  701. ENDPROC(serpent_xts_enc_8way_avx)
  702. ENTRY(serpent_xts_dec_8way_avx)
  703. /* input:
  704. * %rdi: ctx, CTX
  705. * %rsi: dst
  706. * %rdx: src
  707. * %rcx: iv (t ⊕ αⁿ ∈ GF(2¹²⁸))
  708. */
  709. FRAME_BEGIN
  710. /* regs <= src, dst <= IVs, regs <= regs xor IVs */
  711. load_xts_8way(%rcx, %rdx, %rsi, RA1, RB1, RC1, RD1, RA2, RB2, RC2, RD2,
  712. RK0, RK1, RK2, .Lxts_gf128mul_and_shl1_mask);
  713. call __serpent_dec_blk8_avx;
  714. /* dst <= regs xor IVs(in dst) */
  715. store_xts_8way(%rsi, RC1, RD1, RB1, RE1, RC2, RD2, RB2, RE2);
  716. FRAME_END
  717. ret;
  718. ENDPROC(serpent_xts_dec_8way_avx)