aes.c 43 KB

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  1. /* Copyright (c) 2001, Matej Pfajfar.
  2. * Copyright (c) 2001-2004, Roger Dingledine.
  3. * Copyright (c) 2004-2006, Roger Dingledine, Nick Mathewson.
  4. * Copyright (c) 2007, The Tor Project, Inc. */
  5. /* See LICENSE for licensing information */
  6. /* $Id$ */
  7. const char aes_c_id[] = "$Id$";
  8. /**
  9. * \file aes.c
  10. * \brief Implements the AES cipher (with 128-bit keys and blocks),
  11. * and a counter-mode stream cipher on top of AES. This code is
  12. * taken from the main Rijndael distribution. (We include this
  13. * because many people are running older versions of OpenSSL without
  14. * AES support.)
  15. **/
  16. #include "orconfig.h"
  17. #include <openssl/opensslv.h>
  18. #include <assert.h>
  19. #include <stdlib.h>
  20. #include <string.h>
  21. #include "compat.h"
  22. #include "aes.h"
  23. #include "util.h"
  24. #include "log.h"
  25. /* We have 3 strategies for getting AES: Via OpenSSL's AES_encrypt function,
  26. * via OpenSSL's EVP_EncryptUpdate function, or via the built-in AES
  27. * implementation below. */
  28. #undef USE_OPENSSL_AES
  29. #undef USE_OPENSSL_EVP
  30. #undef USE_BUILTIN_AES
  31. /* Figure out our CPU type. We use this to pick an AES implementation.
  32. * Macros are as listed at http://predef.sourceforge.net/prearch.html
  33. */
  34. #if (defined(i386) || defined(__i386__) || defined(__i386) || defined(_X86_) \
  35. || defined(_M_IX86) || defined(__THW_INTEL__) || defined(__I86__))
  36. # define CPU_IS_X86
  37. #elif (defined(__amd64__) || defined(__amd64) || \
  38. defined(__x86_64__) || defined(__x86_64) || \
  39. defined(_M_X64))
  40. # define CPU_IS_X86_64
  41. #elif (defined(__ia64__) || defined(__ia64) || defined(_IA64) || \
  42. defined(_M_IA64))
  43. # define CPU_IS_IA64
  44. #elif (defined(__sparc__) || defined(__sparc))
  45. # define CPU_IS_SPARC
  46. #elif (defined(__arm__) || defined (__TARGET_ARCH_ARM))
  47. # define CPU_IS_ARM
  48. #endif
  49. /* Here we pick which to use, if none is force-defined. See
  50. * http://archives.seul.org/or/dev/Feb-2007/msg00045.html
  51. * for a summary of the most recent benchmarking results that led to this
  52. * nutty decision tree.
  53. */
  54. #if (!defined(USE_BUILTIN_AES) && \
  55. !defined(USE_OPENSSL_AES) && \
  56. !defined(USE_OPENSSL_EVP))
  57. /* OpenSSL 0.9.7 was the first to support AES. It was slower than our
  58. * builtin implementation.
  59. * OpenSSL 0.9.8 added assembly implementations for i386 and ia64.
  60. * Either the i386 stuff isn't used for x86-64, or it isn't faster.
  61. * OpenSSL 0.9.9 (not yet out) has added assembly implementations for
  62. * x86_64 (aka amd64), sparc9, and arm
  63. *
  64. * Note: the "f" at the end of openssl version numbers below means
  65. * "release". */
  66. # if defined(CPU_IS_X86) || defined(CPU_IS_IA64)
  67. # if OPENSSL_VERSION_NUMBER >= 0x0090800fL
  68. # define USE_OPENSSL_AES
  69. # endif
  70. # endif
  71. # if defined(CPU_IS_X86_64) || defined(CPU_IS_ARM) || defined(CPU_IS_SPARC)
  72. # if OPENSSL_VERSION_NUMBER >= 0x0090900fL
  73. # define USE_OPENSSL_AES
  74. # endif
  75. # endif
  76. /* Otherwise, use the builtin implementation below. */
  77. # ifndef USE_OPENSSL_AES
  78. # define USE_BUILTIN_AES
  79. # endif
  80. #endif /* endif need to pick a method */
  81. /* Include OpenSSL headers as needed. */
  82. #ifdef USE_OPENSSL_AES
  83. # include <openssl/aes.h>
  84. #endif
  85. #ifdef USE_OPENSSL_EVP
  86. # include <openssl/evp.h>
  87. #endif
  88. /* Figure out which AES optimizations to use. */
  89. #ifdef USE_BUILTIN_AES
  90. # define USE_RIJNDAEL_COUNTER_OPTIMIZATION
  91. # if 0 && (defined(__powerpc__) || defined(__powerpc64__))
  92. /* XXXX do more experimentation before concluding this is actually
  93. * a good idea. */
  94. # define FULL_UNROLL
  95. # endif
  96. #endif
  97. /*======================================================================*/
  98. /* From rijndael-alg-fst.h */
  99. typedef uint64_t u64;
  100. typedef uint32_t u32;
  101. typedef uint8_t u8;
  102. #ifdef USE_BUILTIN_AES
  103. #define MAXNR 14
  104. static int rijndaelKeySetupEnc(u32 rk[/*4*(Nr + 1)*/],
  105. const u8 cipherKey[], int keyBits);
  106. #ifdef USE_RIJNDAEL_COUNTER_OPTIMIZATION
  107. static void rijndaelEncrypt(const u32 rk[/*4*(Nr + 1)*/], int Nr,
  108. u32 ctr3, u32 ctr2,
  109. u32 ctr1, u32 ctr0, u8 ct[16]);
  110. #else
  111. static void rijndaelEncrypt(const u32 rk[/*4*(Nr + 1)*/], int Nr,
  112. const u8 pt[16], u8 ct[16]);
  113. #endif
  114. #endif
  115. /*======================================================================*/
  116. /* Interface to AES code, and counter implementation */
  117. struct aes_cnt_cipher {
  118. /** This next element (howevever it's defined) is the AES key. */
  119. #if defined(USE_OPENSSL_EVP)
  120. EVP_CIPHER_CTX key;
  121. #elif defined(USE_OPENSSL_AES)
  122. AES_KEY key;
  123. #else
  124. u32 rk[4*(MAXNR+1)];
  125. int nr;
  126. #endif
  127. #if !defined(WORDS_BIGENDIAN) || defined(USE_RIJNDAEL_COUNTER_OPTIMIZATION)
  128. #define USING_COUNTER_VARS
  129. /** These four values, together, implement a 128-bit counter, with
  130. * counter0 as the low-order word and counter3 as the high-order word. */
  131. u32 counter3;
  132. u32 counter2;
  133. u32 counter1;
  134. u32 counter0;
  135. #endif
  136. #ifndef USE_RIJNDAEL_COUNTER_OPTIMIZATION
  137. #define USING_COUNTER_BUFS
  138. union {
  139. /** The counter, in big-endian order, as bytes. */
  140. u8 buf[16];
  141. /** The counter, in big-endian order, as big-endian words. Note that
  142. * on big-endian platforms, this is redundant with counter3...0,
  143. * so we just use these values instead. */
  144. u32 buf32[4];
  145. } ctr_buf;
  146. #endif
  147. /** The encrypted value of ctr_buf. */
  148. u8 buf[16];
  149. /** Our current stream position within buf. */
  150. u8 pos;
  151. };
  152. #if !defined(USING_COUNTER_VARS)
  153. #define COUNTER(c, n) ((c)->ctr_buf.buf32[3-(n)])
  154. #else
  155. #define COUNTER(c, n) ((c)->counter ## n)
  156. #endif
  157. /**
  158. * Helper function: set <b>cipher</b>'s internal buffer to the encrypted
  159. * value of the current counter.
  160. */
  161. static INLINE void
  162. _aes_fill_buf(aes_cnt_cipher_t *cipher)
  163. {
  164. /* We don't currently use OpenSSL's counter mode implementation because:
  165. * 1) some versions have known bugs
  166. * 2) its attitude towards IVs is not our own
  167. * 3) changing the counter position was not trivial, last time I looked.
  168. * None of these issues are insurmountable in principle.
  169. */
  170. #if defined(USE_BUILTIN_AES) && defined(USE_RIJNDAEL_COUNTER_OPTIMIZATION)
  171. rijndaelEncrypt(cipher->rk, cipher->nr,
  172. cipher->counter3, cipher->counter2,
  173. cipher->counter1, cipher->counter0, cipher->buf);
  174. #else
  175. #if defined(USE_OPENSSL_EVP)
  176. {
  177. int outl=16, inl=16;
  178. EVP_EncryptUpdate(&cipher->key, cipher->buf, &outl,
  179. cipher->ctr_buf.buf, inl);
  180. }
  181. #elif defined(USE_OPENSSL_AES)
  182. AES_encrypt(cipher->ctr_buf.buf, cipher->buf, &cipher->key);
  183. #else
  184. rijndaelEncrypt(cipher->rk, cipher->nr, cipher->ctr_buf.buf, cipher->buf);
  185. #endif
  186. #endif
  187. }
  188. /**
  189. * Return a newly allocated counter-mode AES128 cipher implementation.
  190. */
  191. aes_cnt_cipher_t*
  192. aes_new_cipher(void)
  193. {
  194. aes_cnt_cipher_t* result = tor_malloc_zero(sizeof(aes_cnt_cipher_t));
  195. return result;
  196. }
  197. /** Set the key of <b>cipher</b> to <b>key</b>, which is
  198. * <b>key_bits</b> bits long (must be 128, 192, or 256). Also resets
  199. * the counter to 0.
  200. */
  201. void
  202. aes_set_key(aes_cnt_cipher_t *cipher, const char *key, int key_bits)
  203. {
  204. #if defined(USE_OPENSSL_EVP)
  205. const EVP_CIPHER *c;
  206. switch (key_bits) {
  207. case 128: c = EVP_aes_128_ecb(); break;
  208. case 192: c = EVP_aes_192_ecb(); break;
  209. case 256: c = EVP_aes_256_ecb(); break;
  210. default: tor_assert(0);
  211. }
  212. EVP_EncryptInit(&cipher->key, c, (const unsigned char*)key, NULL);
  213. #elif defined(USE_OPENSSL_AES)
  214. AES_set_encrypt_key((const unsigned char *)key, key_bits, &(cipher->key));
  215. #else
  216. cipher->nr = rijndaelKeySetupEnc(cipher->rk, (const unsigned char*)key,
  217. key_bits);
  218. #endif
  219. #ifdef USING_COUNTER_VARS
  220. cipher->counter0 = 0;
  221. cipher->counter1 = 0;
  222. cipher->counter2 = 0;
  223. cipher->counter3 = 0;
  224. #endif
  225. #ifdef USING_COUNTER_BUFS
  226. memset(cipher->ctr_buf.buf, 0, sizeof(cipher->ctr_buf.buf));
  227. #endif
  228. cipher->pos = 0;
  229. _aes_fill_buf(cipher);
  230. }
  231. /** Release storage held by <b>cipher</b>
  232. */
  233. void
  234. aes_free_cipher(aes_cnt_cipher_t *cipher)
  235. {
  236. assert(cipher);
  237. #ifdef USE_OPENSSL_EVP
  238. EVP_CIPHER_CTX_cleanup(&cipher->key);
  239. #endif
  240. memset(cipher, 0, sizeof(cipher));
  241. tor_free(cipher);
  242. }
  243. #if defined(USING_COUNTER_VARS) && defined(USING_COUNTER_BUFS)
  244. #define UPDATE_CTR_BUF(c, n) STMT_BEGIN \
  245. (c)->ctr_buf.buf32[3-(n)] = htonl((c)->counter ## n); \
  246. STMT_END
  247. #else
  248. #define UPDATE_CTR_BUF(c, n)
  249. #endif
  250. /** Encrypt <b>len</b> bytes from <b>input</b>, storing the result in
  251. * <b>output</b>. Uses the key in <b>cipher</b>, and advances the counter
  252. * by <b>len</b> bytes as it encrypts.
  253. */
  254. void
  255. aes_crypt(aes_cnt_cipher_t *cipher, const char *input, size_t len,
  256. char *output)
  257. {
  258. /* XXXX This function is up to 5% of our runtime in some profiles;
  259. * we should look into unrolling some of the loops; taking advantage
  260. * of alignmement, using a bigger buffer, and so on. Not till after 0.1.2.x,
  261. * though. */
  262. int c = cipher->pos;
  263. if (!len) return;
  264. while (1) {
  265. do {
  266. if (len-- == 0) { cipher->pos = c; return; }
  267. *(output++) = *(input++) ^ cipher->buf[c];
  268. } while (++c != 16);
  269. cipher->pos = c = 0;
  270. if (PREDICT_UNLIKELY(! ++COUNTER(cipher, 0))) {
  271. if (PREDICT_UNLIKELY(! ++COUNTER(cipher, 1))) {
  272. if (PREDICT_UNLIKELY(! ++COUNTER(cipher, 2))) {
  273. ++COUNTER(cipher, 3);
  274. UPDATE_CTR_BUF(cipher, 3);
  275. }
  276. UPDATE_CTR_BUF(cipher, 2);
  277. }
  278. UPDATE_CTR_BUF(cipher, 1);
  279. }
  280. UPDATE_CTR_BUF(cipher, 0);
  281. _aes_fill_buf(cipher);
  282. }
  283. }
  284. /** Reset the 128-bit counter of <b>cipher</b> to the 16-bit big-endian value
  285. * in <b>iv</b>. */
  286. void
  287. aes_set_iv(aes_cnt_cipher_t *cipher, const char *iv)
  288. {
  289. #ifdef USING_COUNTER_VARS
  290. cipher->counter3 = ntohl(get_uint32(iv));
  291. cipher->counter2 = ntohl(get_uint32(iv+4));
  292. cipher->counter1 = ntohl(get_uint32(iv+8));
  293. cipher->counter0 = ntohl(get_uint32(iv+12));
  294. #endif
  295. cipher->pos = 0;
  296. #ifndef USE_RIJNDAEL_COUNTER_OPTIMIZATION
  297. memcpy(cipher->ctr_buf.buf, iv, 16);
  298. #endif
  299. _aes_fill_buf(cipher);
  300. }
  301. #ifdef USE_BUILTIN_AES
  302. /*======================================================================*/
  303. /* From rijndael-alg-fst.c */
  304. /**
  305. * rijndael-alg-fst.c
  306. *
  307. * @version 3.0 (December 2000)
  308. *
  309. * Optimised ANSI C code for the Rijndael cipher (now AES)
  310. *
  311. * @author Vincent Rijmen <vincent.rijmen@esat.kuleuven.ac.be>
  312. * @author Antoon Bosselaers <antoon.bosselaers@esat.kuleuven.ac.be>
  313. * @author Paulo Barreto <paulo.barreto@terra.com.br>
  314. *
  315. * This code is hereby placed in the public domain.
  316. *
  317. * THIS SOFTWARE IS PROVIDED BY THE AUTHORS ''AS IS'' AND ANY EXPRESS
  318. * OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
  319. * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
  320. * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHORS OR CONTRIBUTORS BE
  321. * LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
  322. * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
  323. * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR
  324. * BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY,
  325. * WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE
  326. * OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE,
  327. * EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
  328. */
  329. /*
  330. Te0[x] = S [x].[02, 01, 01, 03];
  331. Te1[x] = S [x].[03, 02, 01, 01];
  332. Te2[x] = S [x].[01, 03, 02, 01];
  333. Te3[x] = S [x].[01, 01, 03, 02];
  334. Te4[x] = S [x].[01, 01, 01, 01];
  335. Td0[x] = Si[x].[0e, 09, 0d, 0b];
  336. Td1[x] = Si[x].[0b, 0e, 09, 0d];
  337. Td2[x] = Si[x].[0d, 0b, 0e, 09];
  338. Td3[x] = Si[x].[09, 0d, 0b, 0e];
  339. Td4[x] = Si[x].[01, 01, 01, 01];
  340. */
  341. static const u32 Te0[256] = {
  342. 0xc66363a5U, 0xf87c7c84U, 0xee777799U, 0xf67b7b8dU,
  343. 0xfff2f20dU, 0xd66b6bbdU, 0xde6f6fb1U, 0x91c5c554U,
  344. 0x60303050U, 0x02010103U, 0xce6767a9U, 0x562b2b7dU,
  345. 0xe7fefe19U, 0xb5d7d762U, 0x4dababe6U, 0xec76769aU,
  346. 0x8fcaca45U, 0x1f82829dU, 0x89c9c940U, 0xfa7d7d87U,
  347. 0xeffafa15U, 0xb25959ebU, 0x8e4747c9U, 0xfbf0f00bU,
  348. 0x41adadecU, 0xb3d4d467U, 0x5fa2a2fdU, 0x45afafeaU,
  349. 0x239c9cbfU, 0x53a4a4f7U, 0xe4727296U, 0x9bc0c05bU,
  350. 0x75b7b7c2U, 0xe1fdfd1cU, 0x3d9393aeU, 0x4c26266aU,
  351. 0x6c36365aU, 0x7e3f3f41U, 0xf5f7f702U, 0x83cccc4fU,
  352. 0x6834345cU, 0x51a5a5f4U, 0xd1e5e534U, 0xf9f1f108U,
  353. 0xe2717193U, 0xabd8d873U, 0x62313153U, 0x2a15153fU,
  354. 0x0804040cU, 0x95c7c752U, 0x46232365U, 0x9dc3c35eU,
  355. 0x30181828U, 0x379696a1U, 0x0a05050fU, 0x2f9a9ab5U,
  356. 0x0e070709U, 0x24121236U, 0x1b80809bU, 0xdfe2e23dU,
  357. 0xcdebeb26U, 0x4e272769U, 0x7fb2b2cdU, 0xea75759fU,
  358. 0x1209091bU, 0x1d83839eU, 0x582c2c74U, 0x341a1a2eU,
  359. 0x361b1b2dU, 0xdc6e6eb2U, 0xb45a5aeeU, 0x5ba0a0fbU,
  360. 0xa45252f6U, 0x763b3b4dU, 0xb7d6d661U, 0x7db3b3ceU,
  361. 0x5229297bU, 0xdde3e33eU, 0x5e2f2f71U, 0x13848497U,
  362. 0xa65353f5U, 0xb9d1d168U, 0x00000000U, 0xc1eded2cU,
  363. 0x40202060U, 0xe3fcfc1fU, 0x79b1b1c8U, 0xb65b5bedU,
  364. 0xd46a6abeU, 0x8dcbcb46U, 0x67bebed9U, 0x7239394bU,
  365. 0x944a4adeU, 0x984c4cd4U, 0xb05858e8U, 0x85cfcf4aU,
  366. 0xbbd0d06bU, 0xc5efef2aU, 0x4faaaae5U, 0xedfbfb16U,
  367. 0x864343c5U, 0x9a4d4dd7U, 0x66333355U, 0x11858594U,
  368. 0x8a4545cfU, 0xe9f9f910U, 0x04020206U, 0xfe7f7f81U,
  369. 0xa05050f0U, 0x783c3c44U, 0x259f9fbaU, 0x4ba8a8e3U,
  370. 0xa25151f3U, 0x5da3a3feU, 0x804040c0U, 0x058f8f8aU,
  371. 0x3f9292adU, 0x219d9dbcU, 0x70383848U, 0xf1f5f504U,
  372. 0x63bcbcdfU, 0x77b6b6c1U, 0xafdada75U, 0x42212163U,
  373. 0x20101030U, 0xe5ffff1aU, 0xfdf3f30eU, 0xbfd2d26dU,
  374. 0x81cdcd4cU, 0x180c0c14U, 0x26131335U, 0xc3ecec2fU,
  375. 0xbe5f5fe1U, 0x359797a2U, 0x884444ccU, 0x2e171739U,
  376. 0x93c4c457U, 0x55a7a7f2U, 0xfc7e7e82U, 0x7a3d3d47U,
  377. 0xc86464acU, 0xba5d5de7U, 0x3219192bU, 0xe6737395U,
  378. 0xc06060a0U, 0x19818198U, 0x9e4f4fd1U, 0xa3dcdc7fU,
  379. 0x44222266U, 0x542a2a7eU, 0x3b9090abU, 0x0b888883U,
  380. 0x8c4646caU, 0xc7eeee29U, 0x6bb8b8d3U, 0x2814143cU,
  381. 0xa7dede79U, 0xbc5e5ee2U, 0x160b0b1dU, 0xaddbdb76U,
  382. 0xdbe0e03bU, 0x64323256U, 0x743a3a4eU, 0x140a0a1eU,
  383. 0x924949dbU, 0x0c06060aU, 0x4824246cU, 0xb85c5ce4U,
  384. 0x9fc2c25dU, 0xbdd3d36eU, 0x43acacefU, 0xc46262a6U,
  385. 0x399191a8U, 0x319595a4U, 0xd3e4e437U, 0xf279798bU,
  386. 0xd5e7e732U, 0x8bc8c843U, 0x6e373759U, 0xda6d6db7U,
  387. 0x018d8d8cU, 0xb1d5d564U, 0x9c4e4ed2U, 0x49a9a9e0U,
  388. 0xd86c6cb4U, 0xac5656faU, 0xf3f4f407U, 0xcfeaea25U,
  389. 0xca6565afU, 0xf47a7a8eU, 0x47aeaee9U, 0x10080818U,
  390. 0x6fbabad5U, 0xf0787888U, 0x4a25256fU, 0x5c2e2e72U,
  391. 0x381c1c24U, 0x57a6a6f1U, 0x73b4b4c7U, 0x97c6c651U,
  392. 0xcbe8e823U, 0xa1dddd7cU, 0xe874749cU, 0x3e1f1f21U,
  393. 0x964b4bddU, 0x61bdbddcU, 0x0d8b8b86U, 0x0f8a8a85U,
  394. 0xe0707090U, 0x7c3e3e42U, 0x71b5b5c4U, 0xcc6666aaU,
  395. 0x904848d8U, 0x06030305U, 0xf7f6f601U, 0x1c0e0e12U,
  396. 0xc26161a3U, 0x6a35355fU, 0xae5757f9U, 0x69b9b9d0U,
  397. 0x17868691U, 0x99c1c158U, 0x3a1d1d27U, 0x279e9eb9U,
  398. 0xd9e1e138U, 0xebf8f813U, 0x2b9898b3U, 0x22111133U,
  399. 0xd26969bbU, 0xa9d9d970U, 0x078e8e89U, 0x339494a7U,
  400. 0x2d9b9bb6U, 0x3c1e1e22U, 0x15878792U, 0xc9e9e920U,
  401. 0x87cece49U, 0xaa5555ffU, 0x50282878U, 0xa5dfdf7aU,
  402. 0x038c8c8fU, 0x59a1a1f8U, 0x09898980U, 0x1a0d0d17U,
  403. 0x65bfbfdaU, 0xd7e6e631U, 0x844242c6U, 0xd06868b8U,
  404. 0x824141c3U, 0x299999b0U, 0x5a2d2d77U, 0x1e0f0f11U,
  405. 0x7bb0b0cbU, 0xa85454fcU, 0x6dbbbbd6U, 0x2c16163aU,
  406. };
  407. static const u32 Te1[256] = {
  408. 0xa5c66363U, 0x84f87c7cU, 0x99ee7777U, 0x8df67b7bU,
  409. 0x0dfff2f2U, 0xbdd66b6bU, 0xb1de6f6fU, 0x5491c5c5U,
  410. 0x50603030U, 0x03020101U, 0xa9ce6767U, 0x7d562b2bU,
  411. 0x19e7fefeU, 0x62b5d7d7U, 0xe64dababU, 0x9aec7676U,
  412. 0x458fcacaU, 0x9d1f8282U, 0x4089c9c9U, 0x87fa7d7dU,
  413. 0x15effafaU, 0xebb25959U, 0xc98e4747U, 0x0bfbf0f0U,
  414. 0xec41adadU, 0x67b3d4d4U, 0xfd5fa2a2U, 0xea45afafU,
  415. 0xbf239c9cU, 0xf753a4a4U, 0x96e47272U, 0x5b9bc0c0U,
  416. 0xc275b7b7U, 0x1ce1fdfdU, 0xae3d9393U, 0x6a4c2626U,
  417. 0x5a6c3636U, 0x417e3f3fU, 0x02f5f7f7U, 0x4f83ccccU,
  418. 0x5c683434U, 0xf451a5a5U, 0x34d1e5e5U, 0x08f9f1f1U,
  419. 0x93e27171U, 0x73abd8d8U, 0x53623131U, 0x3f2a1515U,
  420. 0x0c080404U, 0x5295c7c7U, 0x65462323U, 0x5e9dc3c3U,
  421. 0x28301818U, 0xa1379696U, 0x0f0a0505U, 0xb52f9a9aU,
  422. 0x090e0707U, 0x36241212U, 0x9b1b8080U, 0x3ddfe2e2U,
  423. 0x26cdebebU, 0x694e2727U, 0xcd7fb2b2U, 0x9fea7575U,
  424. 0x1b120909U, 0x9e1d8383U, 0x74582c2cU, 0x2e341a1aU,
  425. 0x2d361b1bU, 0xb2dc6e6eU, 0xeeb45a5aU, 0xfb5ba0a0U,
  426. 0xf6a45252U, 0x4d763b3bU, 0x61b7d6d6U, 0xce7db3b3U,
  427. 0x7b522929U, 0x3edde3e3U, 0x715e2f2fU, 0x97138484U,
  428. 0xf5a65353U, 0x68b9d1d1U, 0x00000000U, 0x2cc1ededU,
  429. 0x60402020U, 0x1fe3fcfcU, 0xc879b1b1U, 0xedb65b5bU,
  430. 0xbed46a6aU, 0x468dcbcbU, 0xd967bebeU, 0x4b723939U,
  431. 0xde944a4aU, 0xd4984c4cU, 0xe8b05858U, 0x4a85cfcfU,
  432. 0x6bbbd0d0U, 0x2ac5efefU, 0xe54faaaaU, 0x16edfbfbU,
  433. 0xc5864343U, 0xd79a4d4dU, 0x55663333U, 0x94118585U,
  434. 0xcf8a4545U, 0x10e9f9f9U, 0x06040202U, 0x81fe7f7fU,
  435. 0xf0a05050U, 0x44783c3cU, 0xba259f9fU, 0xe34ba8a8U,
  436. 0xf3a25151U, 0xfe5da3a3U, 0xc0804040U, 0x8a058f8fU,
  437. 0xad3f9292U, 0xbc219d9dU, 0x48703838U, 0x04f1f5f5U,
  438. 0xdf63bcbcU, 0xc177b6b6U, 0x75afdadaU, 0x63422121U,
  439. 0x30201010U, 0x1ae5ffffU, 0x0efdf3f3U, 0x6dbfd2d2U,
  440. 0x4c81cdcdU, 0x14180c0cU, 0x35261313U, 0x2fc3ececU,
  441. 0xe1be5f5fU, 0xa2359797U, 0xcc884444U, 0x392e1717U,
  442. 0x5793c4c4U, 0xf255a7a7U, 0x82fc7e7eU, 0x477a3d3dU,
  443. 0xacc86464U, 0xe7ba5d5dU, 0x2b321919U, 0x95e67373U,
  444. 0xa0c06060U, 0x98198181U, 0xd19e4f4fU, 0x7fa3dcdcU,
  445. 0x66442222U, 0x7e542a2aU, 0xab3b9090U, 0x830b8888U,
  446. 0xca8c4646U, 0x29c7eeeeU, 0xd36bb8b8U, 0x3c281414U,
  447. 0x79a7dedeU, 0xe2bc5e5eU, 0x1d160b0bU, 0x76addbdbU,
  448. 0x3bdbe0e0U, 0x56643232U, 0x4e743a3aU, 0x1e140a0aU,
  449. 0xdb924949U, 0x0a0c0606U, 0x6c482424U, 0xe4b85c5cU,
  450. 0x5d9fc2c2U, 0x6ebdd3d3U, 0xef43acacU, 0xa6c46262U,
  451. 0xa8399191U, 0xa4319595U, 0x37d3e4e4U, 0x8bf27979U,
  452. 0x32d5e7e7U, 0x438bc8c8U, 0x596e3737U, 0xb7da6d6dU,
  453. 0x8c018d8dU, 0x64b1d5d5U, 0xd29c4e4eU, 0xe049a9a9U,
  454. 0xb4d86c6cU, 0xfaac5656U, 0x07f3f4f4U, 0x25cfeaeaU,
  455. 0xafca6565U, 0x8ef47a7aU, 0xe947aeaeU, 0x18100808U,
  456. 0xd56fbabaU, 0x88f07878U, 0x6f4a2525U, 0x725c2e2eU,
  457. 0x24381c1cU, 0xf157a6a6U, 0xc773b4b4U, 0x5197c6c6U,
  458. 0x23cbe8e8U, 0x7ca1ddddU, 0x9ce87474U, 0x213e1f1fU,
  459. 0xdd964b4bU, 0xdc61bdbdU, 0x860d8b8bU, 0x850f8a8aU,
  460. 0x90e07070U, 0x427c3e3eU, 0xc471b5b5U, 0xaacc6666U,
  461. 0xd8904848U, 0x05060303U, 0x01f7f6f6U, 0x121c0e0eU,
  462. 0xa3c26161U, 0x5f6a3535U, 0xf9ae5757U, 0xd069b9b9U,
  463. 0x91178686U, 0x5899c1c1U, 0x273a1d1dU, 0xb9279e9eU,
  464. 0x38d9e1e1U, 0x13ebf8f8U, 0xb32b9898U, 0x33221111U,
  465. 0xbbd26969U, 0x70a9d9d9U, 0x89078e8eU, 0xa7339494U,
  466. 0xb62d9b9bU, 0x223c1e1eU, 0x92158787U, 0x20c9e9e9U,
  467. 0x4987ceceU, 0xffaa5555U, 0x78502828U, 0x7aa5dfdfU,
  468. 0x8f038c8cU, 0xf859a1a1U, 0x80098989U, 0x171a0d0dU,
  469. 0xda65bfbfU, 0x31d7e6e6U, 0xc6844242U, 0xb8d06868U,
  470. 0xc3824141U, 0xb0299999U, 0x775a2d2dU, 0x111e0f0fU,
  471. 0xcb7bb0b0U, 0xfca85454U, 0xd66dbbbbU, 0x3a2c1616U,
  472. };
  473. static const u32 Te2[256] = {
  474. 0x63a5c663U, 0x7c84f87cU, 0x7799ee77U, 0x7b8df67bU,
  475. 0xf20dfff2U, 0x6bbdd66bU, 0x6fb1de6fU, 0xc55491c5U,
  476. 0x30506030U, 0x01030201U, 0x67a9ce67U, 0x2b7d562bU,
  477. 0xfe19e7feU, 0xd762b5d7U, 0xabe64dabU, 0x769aec76U,
  478. 0xca458fcaU, 0x829d1f82U, 0xc94089c9U, 0x7d87fa7dU,
  479. 0xfa15effaU, 0x59ebb259U, 0x47c98e47U, 0xf00bfbf0U,
  480. 0xadec41adU, 0xd467b3d4U, 0xa2fd5fa2U, 0xafea45afU,
  481. 0x9cbf239cU, 0xa4f753a4U, 0x7296e472U, 0xc05b9bc0U,
  482. 0xb7c275b7U, 0xfd1ce1fdU, 0x93ae3d93U, 0x266a4c26U,
  483. 0x365a6c36U, 0x3f417e3fU, 0xf702f5f7U, 0xcc4f83ccU,
  484. 0x345c6834U, 0xa5f451a5U, 0xe534d1e5U, 0xf108f9f1U,
  485. 0x7193e271U, 0xd873abd8U, 0x31536231U, 0x153f2a15U,
  486. 0x040c0804U, 0xc75295c7U, 0x23654623U, 0xc35e9dc3U,
  487. 0x18283018U, 0x96a13796U, 0x050f0a05U, 0x9ab52f9aU,
  488. 0x07090e07U, 0x12362412U, 0x809b1b80U, 0xe23ddfe2U,
  489. 0xeb26cdebU, 0x27694e27U, 0xb2cd7fb2U, 0x759fea75U,
  490. 0x091b1209U, 0x839e1d83U, 0x2c74582cU, 0x1a2e341aU,
  491. 0x1b2d361bU, 0x6eb2dc6eU, 0x5aeeb45aU, 0xa0fb5ba0U,
  492. 0x52f6a452U, 0x3b4d763bU, 0xd661b7d6U, 0xb3ce7db3U,
  493. 0x297b5229U, 0xe33edde3U, 0x2f715e2fU, 0x84971384U,
  494. 0x53f5a653U, 0xd168b9d1U, 0x00000000U, 0xed2cc1edU,
  495. 0x20604020U, 0xfc1fe3fcU, 0xb1c879b1U, 0x5bedb65bU,
  496. 0x6abed46aU, 0xcb468dcbU, 0xbed967beU, 0x394b7239U,
  497. 0x4ade944aU, 0x4cd4984cU, 0x58e8b058U, 0xcf4a85cfU,
  498. 0xd06bbbd0U, 0xef2ac5efU, 0xaae54faaU, 0xfb16edfbU,
  499. 0x43c58643U, 0x4dd79a4dU, 0x33556633U, 0x85941185U,
  500. 0x45cf8a45U, 0xf910e9f9U, 0x02060402U, 0x7f81fe7fU,
  501. 0x50f0a050U, 0x3c44783cU, 0x9fba259fU, 0xa8e34ba8U,
  502. 0x51f3a251U, 0xa3fe5da3U, 0x40c08040U, 0x8f8a058fU,
  503. 0x92ad3f92U, 0x9dbc219dU, 0x38487038U, 0xf504f1f5U,
  504. 0xbcdf63bcU, 0xb6c177b6U, 0xda75afdaU, 0x21634221U,
  505. 0x10302010U, 0xff1ae5ffU, 0xf30efdf3U, 0xd26dbfd2U,
  506. 0xcd4c81cdU, 0x0c14180cU, 0x13352613U, 0xec2fc3ecU,
  507. 0x5fe1be5fU, 0x97a23597U, 0x44cc8844U, 0x17392e17U,
  508. 0xc45793c4U, 0xa7f255a7U, 0x7e82fc7eU, 0x3d477a3dU,
  509. 0x64acc864U, 0x5de7ba5dU, 0x192b3219U, 0x7395e673U,
  510. 0x60a0c060U, 0x81981981U, 0x4fd19e4fU, 0xdc7fa3dcU,
  511. 0x22664422U, 0x2a7e542aU, 0x90ab3b90U, 0x88830b88U,
  512. 0x46ca8c46U, 0xee29c7eeU, 0xb8d36bb8U, 0x143c2814U,
  513. 0xde79a7deU, 0x5ee2bc5eU, 0x0b1d160bU, 0xdb76addbU,
  514. 0xe03bdbe0U, 0x32566432U, 0x3a4e743aU, 0x0a1e140aU,
  515. 0x49db9249U, 0x060a0c06U, 0x246c4824U, 0x5ce4b85cU,
  516. 0xc25d9fc2U, 0xd36ebdd3U, 0xacef43acU, 0x62a6c462U,
  517. 0x91a83991U, 0x95a43195U, 0xe437d3e4U, 0x798bf279U,
  518. 0xe732d5e7U, 0xc8438bc8U, 0x37596e37U, 0x6db7da6dU,
  519. 0x8d8c018dU, 0xd564b1d5U, 0x4ed29c4eU, 0xa9e049a9U,
  520. 0x6cb4d86cU, 0x56faac56U, 0xf407f3f4U, 0xea25cfeaU,
  521. 0x65afca65U, 0x7a8ef47aU, 0xaee947aeU, 0x08181008U,
  522. 0xbad56fbaU, 0x7888f078U, 0x256f4a25U, 0x2e725c2eU,
  523. 0x1c24381cU, 0xa6f157a6U, 0xb4c773b4U, 0xc65197c6U,
  524. 0xe823cbe8U, 0xdd7ca1ddU, 0x749ce874U, 0x1f213e1fU,
  525. 0x4bdd964bU, 0xbddc61bdU, 0x8b860d8bU, 0x8a850f8aU,
  526. 0x7090e070U, 0x3e427c3eU, 0xb5c471b5U, 0x66aacc66U,
  527. 0x48d89048U, 0x03050603U, 0xf601f7f6U, 0x0e121c0eU,
  528. 0x61a3c261U, 0x355f6a35U, 0x57f9ae57U, 0xb9d069b9U,
  529. 0x86911786U, 0xc15899c1U, 0x1d273a1dU, 0x9eb9279eU,
  530. 0xe138d9e1U, 0xf813ebf8U, 0x98b32b98U, 0x11332211U,
  531. 0x69bbd269U, 0xd970a9d9U, 0x8e89078eU, 0x94a73394U,
  532. 0x9bb62d9bU, 0x1e223c1eU, 0x87921587U, 0xe920c9e9U,
  533. 0xce4987ceU, 0x55ffaa55U, 0x28785028U, 0xdf7aa5dfU,
  534. 0x8c8f038cU, 0xa1f859a1U, 0x89800989U, 0x0d171a0dU,
  535. 0xbfda65bfU, 0xe631d7e6U, 0x42c68442U, 0x68b8d068U,
  536. 0x41c38241U, 0x99b02999U, 0x2d775a2dU, 0x0f111e0fU,
  537. 0xb0cb7bb0U, 0x54fca854U, 0xbbd66dbbU, 0x163a2c16U,
  538. };
  539. static const u32 Te3[256] = {
  540. 0x6363a5c6U, 0x7c7c84f8U, 0x777799eeU, 0x7b7b8df6U,
  541. 0xf2f20dffU, 0x6b6bbdd6U, 0x6f6fb1deU, 0xc5c55491U,
  542. 0x30305060U, 0x01010302U, 0x6767a9ceU, 0x2b2b7d56U,
  543. 0xfefe19e7U, 0xd7d762b5U, 0xababe64dU, 0x76769aecU,
  544. 0xcaca458fU, 0x82829d1fU, 0xc9c94089U, 0x7d7d87faU,
  545. 0xfafa15efU, 0x5959ebb2U, 0x4747c98eU, 0xf0f00bfbU,
  546. 0xadadec41U, 0xd4d467b3U, 0xa2a2fd5fU, 0xafafea45U,
  547. 0x9c9cbf23U, 0xa4a4f753U, 0x727296e4U, 0xc0c05b9bU,
  548. 0xb7b7c275U, 0xfdfd1ce1U, 0x9393ae3dU, 0x26266a4cU,
  549. 0x36365a6cU, 0x3f3f417eU, 0xf7f702f5U, 0xcccc4f83U,
  550. 0x34345c68U, 0xa5a5f451U, 0xe5e534d1U, 0xf1f108f9U,
  551. 0x717193e2U, 0xd8d873abU, 0x31315362U, 0x15153f2aU,
  552. 0x04040c08U, 0xc7c75295U, 0x23236546U, 0xc3c35e9dU,
  553. 0x18182830U, 0x9696a137U, 0x05050f0aU, 0x9a9ab52fU,
  554. 0x0707090eU, 0x12123624U, 0x80809b1bU, 0xe2e23ddfU,
  555. 0xebeb26cdU, 0x2727694eU, 0xb2b2cd7fU, 0x75759feaU,
  556. 0x09091b12U, 0x83839e1dU, 0x2c2c7458U, 0x1a1a2e34U,
  557. 0x1b1b2d36U, 0x6e6eb2dcU, 0x5a5aeeb4U, 0xa0a0fb5bU,
  558. 0x5252f6a4U, 0x3b3b4d76U, 0xd6d661b7U, 0xb3b3ce7dU,
  559. 0x29297b52U, 0xe3e33eddU, 0x2f2f715eU, 0x84849713U,
  560. 0x5353f5a6U, 0xd1d168b9U, 0x00000000U, 0xeded2cc1U,
  561. 0x20206040U, 0xfcfc1fe3U, 0xb1b1c879U, 0x5b5bedb6U,
  562. 0x6a6abed4U, 0xcbcb468dU, 0xbebed967U, 0x39394b72U,
  563. 0x4a4ade94U, 0x4c4cd498U, 0x5858e8b0U, 0xcfcf4a85U,
  564. 0xd0d06bbbU, 0xefef2ac5U, 0xaaaae54fU, 0xfbfb16edU,
  565. 0x4343c586U, 0x4d4dd79aU, 0x33335566U, 0x85859411U,
  566. 0x4545cf8aU, 0xf9f910e9U, 0x02020604U, 0x7f7f81feU,
  567. 0x5050f0a0U, 0x3c3c4478U, 0x9f9fba25U, 0xa8a8e34bU,
  568. 0x5151f3a2U, 0xa3a3fe5dU, 0x4040c080U, 0x8f8f8a05U,
  569. 0x9292ad3fU, 0x9d9dbc21U, 0x38384870U, 0xf5f504f1U,
  570. 0xbcbcdf63U, 0xb6b6c177U, 0xdada75afU, 0x21216342U,
  571. 0x10103020U, 0xffff1ae5U, 0xf3f30efdU, 0xd2d26dbfU,
  572. 0xcdcd4c81U, 0x0c0c1418U, 0x13133526U, 0xecec2fc3U,
  573. 0x5f5fe1beU, 0x9797a235U, 0x4444cc88U, 0x1717392eU,
  574. 0xc4c45793U, 0xa7a7f255U, 0x7e7e82fcU, 0x3d3d477aU,
  575. 0x6464acc8U, 0x5d5de7baU, 0x19192b32U, 0x737395e6U,
  576. 0x6060a0c0U, 0x81819819U, 0x4f4fd19eU, 0xdcdc7fa3U,
  577. 0x22226644U, 0x2a2a7e54U, 0x9090ab3bU, 0x8888830bU,
  578. 0x4646ca8cU, 0xeeee29c7U, 0xb8b8d36bU, 0x14143c28U,
  579. 0xdede79a7U, 0x5e5ee2bcU, 0x0b0b1d16U, 0xdbdb76adU,
  580. 0xe0e03bdbU, 0x32325664U, 0x3a3a4e74U, 0x0a0a1e14U,
  581. 0x4949db92U, 0x06060a0cU, 0x24246c48U, 0x5c5ce4b8U,
  582. 0xc2c25d9fU, 0xd3d36ebdU, 0xacacef43U, 0x6262a6c4U,
  583. 0x9191a839U, 0x9595a431U, 0xe4e437d3U, 0x79798bf2U,
  584. 0xe7e732d5U, 0xc8c8438bU, 0x3737596eU, 0x6d6db7daU,
  585. 0x8d8d8c01U, 0xd5d564b1U, 0x4e4ed29cU, 0xa9a9e049U,
  586. 0x6c6cb4d8U, 0x5656faacU, 0xf4f407f3U, 0xeaea25cfU,
  587. 0x6565afcaU, 0x7a7a8ef4U, 0xaeaee947U, 0x08081810U,
  588. 0xbabad56fU, 0x787888f0U, 0x25256f4aU, 0x2e2e725cU,
  589. 0x1c1c2438U, 0xa6a6f157U, 0xb4b4c773U, 0xc6c65197U,
  590. 0xe8e823cbU, 0xdddd7ca1U, 0x74749ce8U, 0x1f1f213eU,
  591. 0x4b4bdd96U, 0xbdbddc61U, 0x8b8b860dU, 0x8a8a850fU,
  592. 0x707090e0U, 0x3e3e427cU, 0xb5b5c471U, 0x6666aaccU,
  593. 0x4848d890U, 0x03030506U, 0xf6f601f7U, 0x0e0e121cU,
  594. 0x6161a3c2U, 0x35355f6aU, 0x5757f9aeU, 0xb9b9d069U,
  595. 0x86869117U, 0xc1c15899U, 0x1d1d273aU, 0x9e9eb927U,
  596. 0xe1e138d9U, 0xf8f813ebU, 0x9898b32bU, 0x11113322U,
  597. 0x6969bbd2U, 0xd9d970a9U, 0x8e8e8907U, 0x9494a733U,
  598. 0x9b9bb62dU, 0x1e1e223cU, 0x87879215U, 0xe9e920c9U,
  599. 0xcece4987U, 0x5555ffaaU, 0x28287850U, 0xdfdf7aa5U,
  600. 0x8c8c8f03U, 0xa1a1f859U, 0x89898009U, 0x0d0d171aU,
  601. 0xbfbfda65U, 0xe6e631d7U, 0x4242c684U, 0x6868b8d0U,
  602. 0x4141c382U, 0x9999b029U, 0x2d2d775aU, 0x0f0f111eU,
  603. 0xb0b0cb7bU, 0x5454fca8U, 0xbbbbd66dU, 0x16163a2cU,
  604. };
  605. static const u32 Te4[256] = {
  606. 0x63636363U, 0x7c7c7c7cU, 0x77777777U, 0x7b7b7b7bU,
  607. 0xf2f2f2f2U, 0x6b6b6b6bU, 0x6f6f6f6fU, 0xc5c5c5c5U,
  608. 0x30303030U, 0x01010101U, 0x67676767U, 0x2b2b2b2bU,
  609. 0xfefefefeU, 0xd7d7d7d7U, 0xababababU, 0x76767676U,
  610. 0xcacacacaU, 0x82828282U, 0xc9c9c9c9U, 0x7d7d7d7dU,
  611. 0xfafafafaU, 0x59595959U, 0x47474747U, 0xf0f0f0f0U,
  612. 0xadadadadU, 0xd4d4d4d4U, 0xa2a2a2a2U, 0xafafafafU,
  613. 0x9c9c9c9cU, 0xa4a4a4a4U, 0x72727272U, 0xc0c0c0c0U,
  614. 0xb7b7b7b7U, 0xfdfdfdfdU, 0x93939393U, 0x26262626U,
  615. 0x36363636U, 0x3f3f3f3fU, 0xf7f7f7f7U, 0xccccccccU,
  616. 0x34343434U, 0xa5a5a5a5U, 0xe5e5e5e5U, 0xf1f1f1f1U,
  617. 0x71717171U, 0xd8d8d8d8U, 0x31313131U, 0x15151515U,
  618. 0x04040404U, 0xc7c7c7c7U, 0x23232323U, 0xc3c3c3c3U,
  619. 0x18181818U, 0x96969696U, 0x05050505U, 0x9a9a9a9aU,
  620. 0x07070707U, 0x12121212U, 0x80808080U, 0xe2e2e2e2U,
  621. 0xebebebebU, 0x27272727U, 0xb2b2b2b2U, 0x75757575U,
  622. 0x09090909U, 0x83838383U, 0x2c2c2c2cU, 0x1a1a1a1aU,
  623. 0x1b1b1b1bU, 0x6e6e6e6eU, 0x5a5a5a5aU, 0xa0a0a0a0U,
  624. 0x52525252U, 0x3b3b3b3bU, 0xd6d6d6d6U, 0xb3b3b3b3U,
  625. 0x29292929U, 0xe3e3e3e3U, 0x2f2f2f2fU, 0x84848484U,
  626. 0x53535353U, 0xd1d1d1d1U, 0x00000000U, 0xededededU,
  627. 0x20202020U, 0xfcfcfcfcU, 0xb1b1b1b1U, 0x5b5b5b5bU,
  628. 0x6a6a6a6aU, 0xcbcbcbcbU, 0xbebebebeU, 0x39393939U,
  629. 0x4a4a4a4aU, 0x4c4c4c4cU, 0x58585858U, 0xcfcfcfcfU,
  630. 0xd0d0d0d0U, 0xefefefefU, 0xaaaaaaaaU, 0xfbfbfbfbU,
  631. 0x43434343U, 0x4d4d4d4dU, 0x33333333U, 0x85858585U,
  632. 0x45454545U, 0xf9f9f9f9U, 0x02020202U, 0x7f7f7f7fU,
  633. 0x50505050U, 0x3c3c3c3cU, 0x9f9f9f9fU, 0xa8a8a8a8U,
  634. 0x51515151U, 0xa3a3a3a3U, 0x40404040U, 0x8f8f8f8fU,
  635. 0x92929292U, 0x9d9d9d9dU, 0x38383838U, 0xf5f5f5f5U,
  636. 0xbcbcbcbcU, 0xb6b6b6b6U, 0xdadadadaU, 0x21212121U,
  637. 0x10101010U, 0xffffffffU, 0xf3f3f3f3U, 0xd2d2d2d2U,
  638. 0xcdcdcdcdU, 0x0c0c0c0cU, 0x13131313U, 0xececececU,
  639. 0x5f5f5f5fU, 0x97979797U, 0x44444444U, 0x17171717U,
  640. 0xc4c4c4c4U, 0xa7a7a7a7U, 0x7e7e7e7eU, 0x3d3d3d3dU,
  641. 0x64646464U, 0x5d5d5d5dU, 0x19191919U, 0x73737373U,
  642. 0x60606060U, 0x81818181U, 0x4f4f4f4fU, 0xdcdcdcdcU,
  643. 0x22222222U, 0x2a2a2a2aU, 0x90909090U, 0x88888888U,
  644. 0x46464646U, 0xeeeeeeeeU, 0xb8b8b8b8U, 0x14141414U,
  645. 0xdedededeU, 0x5e5e5e5eU, 0x0b0b0b0bU, 0xdbdbdbdbU,
  646. 0xe0e0e0e0U, 0x32323232U, 0x3a3a3a3aU, 0x0a0a0a0aU,
  647. 0x49494949U, 0x06060606U, 0x24242424U, 0x5c5c5c5cU,
  648. 0xc2c2c2c2U, 0xd3d3d3d3U, 0xacacacacU, 0x62626262U,
  649. 0x91919191U, 0x95959595U, 0xe4e4e4e4U, 0x79797979U,
  650. 0xe7e7e7e7U, 0xc8c8c8c8U, 0x37373737U, 0x6d6d6d6dU,
  651. 0x8d8d8d8dU, 0xd5d5d5d5U, 0x4e4e4e4eU, 0xa9a9a9a9U,
  652. 0x6c6c6c6cU, 0x56565656U, 0xf4f4f4f4U, 0xeaeaeaeaU,
  653. 0x65656565U, 0x7a7a7a7aU, 0xaeaeaeaeU, 0x08080808U,
  654. 0xbabababaU, 0x78787878U, 0x25252525U, 0x2e2e2e2eU,
  655. 0x1c1c1c1cU, 0xa6a6a6a6U, 0xb4b4b4b4U, 0xc6c6c6c6U,
  656. 0xe8e8e8e8U, 0xddddddddU, 0x74747474U, 0x1f1f1f1fU,
  657. 0x4b4b4b4bU, 0xbdbdbdbdU, 0x8b8b8b8bU, 0x8a8a8a8aU,
  658. 0x70707070U, 0x3e3e3e3eU, 0xb5b5b5b5U, 0x66666666U,
  659. 0x48484848U, 0x03030303U, 0xf6f6f6f6U, 0x0e0e0e0eU,
  660. 0x61616161U, 0x35353535U, 0x57575757U, 0xb9b9b9b9U,
  661. 0x86868686U, 0xc1c1c1c1U, 0x1d1d1d1dU, 0x9e9e9e9eU,
  662. 0xe1e1e1e1U, 0xf8f8f8f8U, 0x98989898U, 0x11111111U,
  663. 0x69696969U, 0xd9d9d9d9U, 0x8e8e8e8eU, 0x94949494U,
  664. 0x9b9b9b9bU, 0x1e1e1e1eU, 0x87878787U, 0xe9e9e9e9U,
  665. 0xcecececeU, 0x55555555U, 0x28282828U, 0xdfdfdfdfU,
  666. 0x8c8c8c8cU, 0xa1a1a1a1U, 0x89898989U, 0x0d0d0d0dU,
  667. 0xbfbfbfbfU, 0xe6e6e6e6U, 0x42424242U, 0x68686868U,
  668. 0x41414141U, 0x99999999U, 0x2d2d2d2dU, 0x0f0f0f0fU,
  669. 0xb0b0b0b0U, 0x54545454U, 0xbbbbbbbbU, 0x16161616U,
  670. };
  671. static const u32 rcon[] = {
  672. 0x01000000, 0x02000000, 0x04000000, 0x08000000,
  673. 0x10000000, 0x20000000, 0x40000000, 0x80000000,
  674. 0x1B000000, 0x36000000, /* for 128-bit blocks, Rijndael never uses more than 10 rcon values */
  675. };
  676. #define SWAP(x) (_lrotl(x, 8) & 0x00ff00ff | _lrotr(x, 8) & 0xff00ff00)
  677. #ifdef _MSC_VER
  678. #define GETU32(p) SWAP(*((u32 *)(p)))
  679. #define PUTU32(ct, st) { *((u32 *)(ct)) = SWAP((st)); }
  680. #else
  681. #define GETU32(pt) (((u32)(pt)[0] << 24) ^ ((u32)(pt)[1] << 16) ^ ((u32)(pt)[2] << 8) ^ ((u32)(pt)[3]))
  682. #define PUTU32(ct, st) { (ct)[0] = (u8)((st) >> 24); (ct)[1] = (u8)((st) >> 16); (ct)[2] = (u8)((st) >> 8); (ct)[3] = (u8)(st); }
  683. #endif
  684. /**
  685. * Expand the cipher key into the encryption key schedule.
  686. *
  687. * @return the number of rounds for the given cipher key size.
  688. */
  689. static int
  690. rijndaelKeySetupEnc(u32 rk[/*4*(Nr + 1)*/], const u8 cipherKey[], int keyBits)
  691. {
  692. int i = 0;
  693. u32 temp;
  694. rk[0] = GETU32(cipherKey );
  695. rk[1] = GETU32(cipherKey + 4);
  696. rk[2] = GETU32(cipherKey + 8);
  697. rk[3] = GETU32(cipherKey + 12);
  698. if (keyBits == 128) {
  699. for (;;) {
  700. temp = rk[3];
  701. rk[4] = rk[0] ^
  702. (Te4[(temp >> 16) & 0xff] & 0xff000000) ^
  703. (Te4[(temp >> 8) & 0xff] & 0x00ff0000) ^
  704. (Te4[(temp ) & 0xff] & 0x0000ff00) ^
  705. (Te4[(temp >> 24) ] & 0x000000ff) ^
  706. rcon[i];
  707. rk[5] = rk[1] ^ rk[4];
  708. rk[6] = rk[2] ^ rk[5];
  709. rk[7] = rk[3] ^ rk[6];
  710. if (++i == 10) {
  711. return 10;
  712. }
  713. rk += 4;
  714. }
  715. }
  716. rk[4] = GETU32(cipherKey + 16);
  717. rk[5] = GETU32(cipherKey + 20);
  718. if (keyBits == 192) {
  719. for (;;) {
  720. temp = rk[ 5];
  721. rk[ 6] = rk[ 0] ^
  722. (Te4[(temp >> 16) & 0xff] & 0xff000000) ^
  723. (Te4[(temp >> 8) & 0xff] & 0x00ff0000) ^
  724. (Te4[(temp ) & 0xff] & 0x0000ff00) ^
  725. (Te4[(temp >> 24) ] & 0x000000ff) ^
  726. rcon[i];
  727. rk[ 7] = rk[ 1] ^ rk[ 6];
  728. rk[ 8] = rk[ 2] ^ rk[ 7];
  729. rk[ 9] = rk[ 3] ^ rk[ 8];
  730. if (++i == 8) {
  731. return 12;
  732. }
  733. rk[10] = rk[ 4] ^ rk[ 9];
  734. rk[11] = rk[ 5] ^ rk[10];
  735. rk += 6;
  736. }
  737. }
  738. rk[6] = GETU32(cipherKey + 24);
  739. rk[7] = GETU32(cipherKey + 28);
  740. if (keyBits == 256) {
  741. for (;;) {
  742. temp = rk[ 7];
  743. rk[ 8] = rk[ 0] ^
  744. (Te4[(temp >> 16) & 0xff] & 0xff000000) ^
  745. (Te4[(temp >> 8) & 0xff] & 0x00ff0000) ^
  746. (Te4[(temp ) & 0xff] & 0x0000ff00) ^
  747. (Te4[(temp >> 24) ] & 0x000000ff) ^
  748. rcon[i];
  749. rk[ 9] = rk[ 1] ^ rk[ 8];
  750. rk[10] = rk[ 2] ^ rk[ 9];
  751. rk[11] = rk[ 3] ^ rk[10];
  752. if (++i == 7) {
  753. return 14;
  754. }
  755. temp = rk[11];
  756. rk[12] = rk[ 4] ^
  757. (Te4[(temp >> 24) ] & 0xff000000) ^
  758. (Te4[(temp >> 16) & 0xff] & 0x00ff0000) ^
  759. (Te4[(temp >> 8) & 0xff] & 0x0000ff00) ^
  760. (Te4[(temp ) & 0xff] & 0x000000ff);
  761. rk[13] = rk[ 5] ^ rk[12];
  762. rk[14] = rk[ 6] ^ rk[13];
  763. rk[15] = rk[ 7] ^ rk[14];
  764. rk += 8;
  765. }
  766. }
  767. return 0;
  768. }
  769. #ifdef USE_RIJNDAEL_COUNTER_OPTIMIZATION
  770. static void
  771. rijndaelEncrypt(const u32 rk[/*4*(Nr + 1)*/], int Nr, u32 ctr3, u32 ctr2, u32 ctr1, u32 ctr0, u8 ct[16])
  772. #else
  773. static void
  774. rijndaelEncrypt(const u32 rk[/*4*(Nr + 1)*/], int Nr, const u8 pt[16], u8 ct[16])
  775. #endif
  776. {
  777. u32 s0, s1, s2, s3, t0, t1, t2, t3;
  778. #ifndef FULL_UNROLL
  779. int r;
  780. #endif /* ?FULL_UNROLL */
  781. /*
  782. * map byte array block to cipher state
  783. * and add initial round key:
  784. */
  785. #ifdef USE_RIJNDAEL_COUNTER_OPTIMIZATION
  786. s0 = ctr3 ^ rk[0];
  787. s1 = ctr2 ^ rk[1];
  788. s2 = ctr1 ^ rk[2];
  789. s3 = ctr0 ^ rk[3];
  790. #else
  791. s0 = GETU32(pt ) ^ rk[0];
  792. s1 = GETU32(pt + 4) ^ rk[1];
  793. s2 = GETU32(pt + 8) ^ rk[2];
  794. s3 = GETU32(pt + 12) ^ rk[3];
  795. #endif
  796. #ifdef FULL_UNROLL
  797. /* round 1: */
  798. t0 = Te0[s0 >> 24] ^ Te1[(s1 >> 16) & 0xff] ^ Te2[(s2 >> 8) & 0xff] ^ Te3[s3 & 0xff] ^ rk[ 4];
  799. t1 = Te0[s1 >> 24] ^ Te1[(s2 >> 16) & 0xff] ^ Te2[(s3 >> 8) & 0xff] ^ Te3[s0 & 0xff] ^ rk[ 5];
  800. t2 = Te0[s2 >> 24] ^ Te1[(s3 >> 16) & 0xff] ^ Te2[(s0 >> 8) & 0xff] ^ Te3[s1 & 0xff] ^ rk[ 6];
  801. t3 = Te0[s3 >> 24] ^ Te1[(s0 >> 16) & 0xff] ^ Te2[(s1 >> 8) & 0xff] ^ Te3[s2 & 0xff] ^ rk[ 7];
  802. /* round 2: */
  803. s0 = Te0[t0 >> 24] ^ Te1[(t1 >> 16) & 0xff] ^ Te2[(t2 >> 8) & 0xff] ^ Te3[t3 & 0xff] ^ rk[ 8];
  804. s1 = Te0[t1 >> 24] ^ Te1[(t2 >> 16) & 0xff] ^ Te2[(t3 >> 8) & 0xff] ^ Te3[t0 & 0xff] ^ rk[ 9];
  805. s2 = Te0[t2 >> 24] ^ Te1[(t3 >> 16) & 0xff] ^ Te2[(t0 >> 8) & 0xff] ^ Te3[t1 & 0xff] ^ rk[10];
  806. s3 = Te0[t3 >> 24] ^ Te1[(t0 >> 16) & 0xff] ^ Te2[(t1 >> 8) & 0xff] ^ Te3[t2 & 0xff] ^ rk[11];
  807. /* round 3: */
  808. t0 = Te0[s0 >> 24] ^ Te1[(s1 >> 16) & 0xff] ^ Te2[(s2 >> 8) & 0xff] ^ Te3[s3 & 0xff] ^ rk[12];
  809. t1 = Te0[s1 >> 24] ^ Te1[(s2 >> 16) & 0xff] ^ Te2[(s3 >> 8) & 0xff] ^ Te3[s0 & 0xff] ^ rk[13];
  810. t2 = Te0[s2 >> 24] ^ Te1[(s3 >> 16) & 0xff] ^ Te2[(s0 >> 8) & 0xff] ^ Te3[s1 & 0xff] ^ rk[14];
  811. t3 = Te0[s3 >> 24] ^ Te1[(s0 >> 16) & 0xff] ^ Te2[(s1 >> 8) & 0xff] ^ Te3[s2 & 0xff] ^ rk[15];
  812. /* round 4: */
  813. s0 = Te0[t0 >> 24] ^ Te1[(t1 >> 16) & 0xff] ^ Te2[(t2 >> 8) & 0xff] ^ Te3[t3 & 0xff] ^ rk[16];
  814. s1 = Te0[t1 >> 24] ^ Te1[(t2 >> 16) & 0xff] ^ Te2[(t3 >> 8) & 0xff] ^ Te3[t0 & 0xff] ^ rk[17];
  815. s2 = Te0[t2 >> 24] ^ Te1[(t3 >> 16) & 0xff] ^ Te2[(t0 >> 8) & 0xff] ^ Te3[t1 & 0xff] ^ rk[18];
  816. s3 = Te0[t3 >> 24] ^ Te1[(t0 >> 16) & 0xff] ^ Te2[(t1 >> 8) & 0xff] ^ Te3[t2 & 0xff] ^ rk[19];
  817. /* round 5: */
  818. t0 = Te0[s0 >> 24] ^ Te1[(s1 >> 16) & 0xff] ^ Te2[(s2 >> 8) & 0xff] ^ Te3[s3 & 0xff] ^ rk[20];
  819. t1 = Te0[s1 >> 24] ^ Te1[(s2 >> 16) & 0xff] ^ Te2[(s3 >> 8) & 0xff] ^ Te3[s0 & 0xff] ^ rk[21];
  820. t2 = Te0[s2 >> 24] ^ Te1[(s3 >> 16) & 0xff] ^ Te2[(s0 >> 8) & 0xff] ^ Te3[s1 & 0xff] ^ rk[22];
  821. t3 = Te0[s3 >> 24] ^ Te1[(s0 >> 16) & 0xff] ^ Te2[(s1 >> 8) & 0xff] ^ Te3[s2 & 0xff] ^ rk[23];
  822. /* round 6: */
  823. s0 = Te0[t0 >> 24] ^ Te1[(t1 >> 16) & 0xff] ^ Te2[(t2 >> 8) & 0xff] ^ Te3[t3 & 0xff] ^ rk[24];
  824. s1 = Te0[t1 >> 24] ^ Te1[(t2 >> 16) & 0xff] ^ Te2[(t3 >> 8) & 0xff] ^ Te3[t0 & 0xff] ^ rk[25];
  825. s2 = Te0[t2 >> 24] ^ Te1[(t3 >> 16) & 0xff] ^ Te2[(t0 >> 8) & 0xff] ^ Te3[t1 & 0xff] ^ rk[26];
  826. s3 = Te0[t3 >> 24] ^ Te1[(t0 >> 16) & 0xff] ^ Te2[(t1 >> 8) & 0xff] ^ Te3[t2 & 0xff] ^ rk[27];
  827. /* round 7: */
  828. t0 = Te0[s0 >> 24] ^ Te1[(s1 >> 16) & 0xff] ^ Te2[(s2 >> 8) & 0xff] ^ Te3[s3 & 0xff] ^ rk[28];
  829. t1 = Te0[s1 >> 24] ^ Te1[(s2 >> 16) & 0xff] ^ Te2[(s3 >> 8) & 0xff] ^ Te3[s0 & 0xff] ^ rk[29];
  830. t2 = Te0[s2 >> 24] ^ Te1[(s3 >> 16) & 0xff] ^ Te2[(s0 >> 8) & 0xff] ^ Te3[s1 & 0xff] ^ rk[30];
  831. t3 = Te0[s3 >> 24] ^ Te1[(s0 >> 16) & 0xff] ^ Te2[(s1 >> 8) & 0xff] ^ Te3[s2 & 0xff] ^ rk[31];
  832. /* round 8: */
  833. s0 = Te0[t0 >> 24] ^ Te1[(t1 >> 16) & 0xff] ^ Te2[(t2 >> 8) & 0xff] ^ Te3[t3 & 0xff] ^ rk[32];
  834. s1 = Te0[t1 >> 24] ^ Te1[(t2 >> 16) & 0xff] ^ Te2[(t3 >> 8) & 0xff] ^ Te3[t0 & 0xff] ^ rk[33];
  835. s2 = Te0[t2 >> 24] ^ Te1[(t3 >> 16) & 0xff] ^ Te2[(t0 >> 8) & 0xff] ^ Te3[t1 & 0xff] ^ rk[34];
  836. s3 = Te0[t3 >> 24] ^ Te1[(t0 >> 16) & 0xff] ^ Te2[(t1 >> 8) & 0xff] ^ Te3[t2 & 0xff] ^ rk[35];
  837. /* round 9: */
  838. t0 = Te0[s0 >> 24] ^ Te1[(s1 >> 16) & 0xff] ^ Te2[(s2 >> 8) & 0xff] ^ Te3[s3 & 0xff] ^ rk[36];
  839. t1 = Te0[s1 >> 24] ^ Te1[(s2 >> 16) & 0xff] ^ Te2[(s3 >> 8) & 0xff] ^ Te3[s0 & 0xff] ^ rk[37];
  840. t2 = Te0[s2 >> 24] ^ Te1[(s3 >> 16) & 0xff] ^ Te2[(s0 >> 8) & 0xff] ^ Te3[s1 & 0xff] ^ rk[38];
  841. t3 = Te0[s3 >> 24] ^ Te1[(s0 >> 16) & 0xff] ^ Te2[(s1 >> 8) & 0xff] ^ Te3[s2 & 0xff] ^ rk[39];
  842. if (Nr > 10) {
  843. /* round 10: */
  844. s0 = Te0[t0 >> 24] ^ Te1[(t1 >> 16) & 0xff] ^ Te2[(t2 >> 8) & 0xff] ^ Te3[t3 & 0xff] ^ rk[40];
  845. s1 = Te0[t1 >> 24] ^ Te1[(t2 >> 16) & 0xff] ^ Te2[(t3 >> 8) & 0xff] ^ Te3[t0 & 0xff] ^ rk[41];
  846. s2 = Te0[t2 >> 24] ^ Te1[(t3 >> 16) & 0xff] ^ Te2[(t0 >> 8) & 0xff] ^ Te3[t1 & 0xff] ^ rk[42];
  847. s3 = Te0[t3 >> 24] ^ Te1[(t0 >> 16) & 0xff] ^ Te2[(t1 >> 8) & 0xff] ^ Te3[t2 & 0xff] ^ rk[43];
  848. /* round 11: */
  849. t0 = Te0[s0 >> 24] ^ Te1[(s1 >> 16) & 0xff] ^ Te2[(s2 >> 8) & 0xff] ^ Te3[s3 & 0xff] ^ rk[44];
  850. t1 = Te0[s1 >> 24] ^ Te1[(s2 >> 16) & 0xff] ^ Te2[(s3 >> 8) & 0xff] ^ Te3[s0 & 0xff] ^ rk[45];
  851. t2 = Te0[s2 >> 24] ^ Te1[(s3 >> 16) & 0xff] ^ Te2[(s0 >> 8) & 0xff] ^ Te3[s1 & 0xff] ^ rk[46];
  852. t3 = Te0[s3 >> 24] ^ Te1[(s0 >> 16) & 0xff] ^ Te2[(s1 >> 8) & 0xff] ^ Te3[s2 & 0xff] ^ rk[47];
  853. if (Nr > 12) {
  854. /* round 12: */
  855. s0 = Te0[t0 >> 24] ^ Te1[(t1 >> 16) & 0xff] ^ Te2[(t2 >> 8) & 0xff] ^ Te3[t3 & 0xff] ^ rk[48];
  856. s1 = Te0[t1 >> 24] ^ Te1[(t2 >> 16) & 0xff] ^ Te2[(t3 >> 8) & 0xff] ^ Te3[t0 & 0xff] ^ rk[49];
  857. s2 = Te0[t2 >> 24] ^ Te1[(t3 >> 16) & 0xff] ^ Te2[(t0 >> 8) & 0xff] ^ Te3[t1 & 0xff] ^ rk[50];
  858. s3 = Te0[t3 >> 24] ^ Te1[(t0 >> 16) & 0xff] ^ Te2[(t1 >> 8) & 0xff] ^ Te3[t2 & 0xff] ^ rk[51];
  859. /* round 13: */
  860. t0 = Te0[s0 >> 24] ^ Te1[(s1 >> 16) & 0xff] ^ Te2[(s2 >> 8) & 0xff] ^ Te3[s3 & 0xff] ^ rk[52];
  861. t1 = Te0[s1 >> 24] ^ Te1[(s2 >> 16) & 0xff] ^ Te2[(s3 >> 8) & 0xff] ^ Te3[s0 & 0xff] ^ rk[53];
  862. t2 = Te0[s2 >> 24] ^ Te1[(s3 >> 16) & 0xff] ^ Te2[(s0 >> 8) & 0xff] ^ Te3[s1 & 0xff] ^ rk[54];
  863. t3 = Te0[s3 >> 24] ^ Te1[(s0 >> 16) & 0xff] ^ Te2[(s1 >> 8) & 0xff] ^ Te3[s2 & 0xff] ^ rk[55];
  864. }
  865. }
  866. rk += Nr << 2;
  867. #else /* !FULL_UNROLL */
  868. /*
  869. * Nr - 1 full rounds:
  870. */
  871. r = Nr >> 1;
  872. for (;;) {
  873. t0 =
  874. Te0[(s0 >> 24) ] ^
  875. Te1[(s1 >> 16) & 0xff] ^
  876. Te2[(s2 >> 8) & 0xff] ^
  877. Te3[(s3 ) & 0xff] ^
  878. rk[4];
  879. t1 =
  880. Te0[(s1 >> 24) ] ^
  881. Te1[(s2 >> 16) & 0xff] ^
  882. Te2[(s3 >> 8) & 0xff] ^
  883. Te3[(s0 ) & 0xff] ^
  884. rk[5];
  885. t2 =
  886. Te0[(s2 >> 24) ] ^
  887. Te1[(s3 >> 16) & 0xff] ^
  888. Te2[(s0 >> 8) & 0xff] ^
  889. Te3[(s1 ) & 0xff] ^
  890. rk[6];
  891. t3 =
  892. Te0[(s3 >> 24) ] ^
  893. Te1[(s0 >> 16) & 0xff] ^
  894. Te2[(s1 >> 8) & 0xff] ^
  895. Te3[(s2 ) & 0xff] ^
  896. rk[7];
  897. rk += 8;
  898. if (--r == 0) {
  899. break;
  900. }
  901. s0 =
  902. Te0[(t0 >> 24) ] ^
  903. Te1[(t1 >> 16) & 0xff] ^
  904. Te2[(t2 >> 8) & 0xff] ^
  905. Te3[(t3 ) & 0xff] ^
  906. rk[0];
  907. s1 =
  908. Te0[(t1 >> 24) ] ^
  909. Te1[(t2 >> 16) & 0xff] ^
  910. Te2[(t3 >> 8) & 0xff] ^
  911. Te3[(t0 ) & 0xff] ^
  912. rk[1];
  913. s2 =
  914. Te0[(t2 >> 24) ] ^
  915. Te1[(t3 >> 16) & 0xff] ^
  916. Te2[(t0 >> 8) & 0xff] ^
  917. Te3[(t1 ) & 0xff] ^
  918. rk[2];
  919. s3 =
  920. Te0[(t3 >> 24) ] ^
  921. Te1[(t0 >> 16) & 0xff] ^
  922. Te2[(t1 >> 8) & 0xff] ^
  923. Te3[(t2 ) & 0xff] ^
  924. rk[3];
  925. }
  926. #endif /* ?FULL_UNROLL */
  927. /*
  928. * apply last round and
  929. * map cipher state to byte array block:
  930. */
  931. s0 =
  932. (Te4[(t0 >> 24) ] & 0xff000000) ^
  933. (Te4[(t1 >> 16) & 0xff] & 0x00ff0000) ^
  934. (Te4[(t2 >> 8) & 0xff] & 0x0000ff00) ^
  935. (Te4[(t3 ) & 0xff] & 0x000000ff) ^
  936. rk[0];
  937. PUTU32(ct , s0);
  938. s1 =
  939. (Te4[(t1 >> 24) ] & 0xff000000) ^
  940. (Te4[(t2 >> 16) & 0xff] & 0x00ff0000) ^
  941. (Te4[(t3 >> 8) & 0xff] & 0x0000ff00) ^
  942. (Te4[(t0 ) & 0xff] & 0x000000ff) ^
  943. rk[1];
  944. PUTU32(ct + 4, s1);
  945. s2 =
  946. (Te4[(t2 >> 24) ] & 0xff000000) ^
  947. (Te4[(t3 >> 16) & 0xff] & 0x00ff0000) ^
  948. (Te4[(t0 >> 8) & 0xff] & 0x0000ff00) ^
  949. (Te4[(t1 ) & 0xff] & 0x000000ff) ^
  950. rk[2];
  951. PUTU32(ct + 8, s2);
  952. s3 =
  953. (Te4[(t3 >> 24) ] & 0xff000000) ^
  954. (Te4[(t0 >> 16) & 0xff] & 0x00ff0000) ^
  955. (Te4[(t1 >> 8) & 0xff] & 0x0000ff00) ^
  956. (Te4[(t2 ) & 0xff] & 0x000000ff) ^
  957. rk[3];
  958. PUTU32(ct + 12, s3);
  959. }
  960. #endif
  961. #ifdef AES_BENCHMARK
  962. int
  963. main(int c, char **v)
  964. {
  965. int i;
  966. char blob[509]; /* the size of a cell payload. */
  967. char blob_out[509];
  968. aes_cnt_cipher_t *cipher = aes_new_cipher();
  969. aes_set_key(cipher, "aesbenchmarkkey!", 128);
  970. memset(blob, 'z', sizeof(blob));
  971. for (i=0;i<1000000; ++i) {
  972. aes_crypt(cipher, blob, sizeof(blob), blob_out);
  973. }
  974. return 0;
  975. }
  976. #endif