tcrypt.c 49 KB

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  1. /*
  2. * Quick & dirty crypto testing module.
  3. *
  4. * This will only exist until we have a better testing mechanism
  5. * (e.g. a char device).
  6. *
  7. * Copyright (c) 2002 James Morris <jmorris@intercode.com.au>
  8. * Copyright (c) 2002 Jean-Francois Dive <jef@linuxbe.org>
  9. * Copyright (c) 2007 Nokia Siemens Networks
  10. *
  11. * This program is free software; you can redistribute it and/or modify it
  12. * under the terms of the GNU General Public License as published by the Free
  13. * Software Foundation; either version 2 of the License, or (at your option)
  14. * any later version.
  15. *
  16. */
  17. #include <crypto/hash.h>
  18. #include <linux/err.h>
  19. #include <linux/init.h>
  20. #include <linux/module.h>
  21. #include <linux/mm.h>
  22. #include <linux/slab.h>
  23. #include <linux/scatterlist.h>
  24. #include <linux/string.h>
  25. #include <linux/crypto.h>
  26. #include <linux/moduleparam.h>
  27. #include <linux/jiffies.h>
  28. #include <linux/timex.h>
  29. #include <linux/interrupt.h>
  30. #include "tcrypt.h"
  31. /*
  32. * Need slab memory for testing (size in number of pages).
  33. */
  34. #define TVMEMSIZE 4
  35. #define XBUFSIZE 8
  36. /*
  37. * Indexes into the xbuf to simulate cross-page access.
  38. */
  39. #define IDX1 32
  40. #define IDX2 32400
  41. #define IDX3 1
  42. #define IDX4 8193
  43. #define IDX5 22222
  44. #define IDX6 17101
  45. #define IDX7 27333
  46. #define IDX8 3000
  47. /*
  48. * Used by test_cipher()
  49. */
  50. #define ENCRYPT 1
  51. #define DECRYPT 0
  52. struct tcrypt_result {
  53. struct completion completion;
  54. int err;
  55. };
  56. static unsigned int IDX[8] = { IDX1, IDX2, IDX3, IDX4, IDX5, IDX6, IDX7, IDX8 };
  57. /*
  58. * Used by test_cipher_speed()
  59. */
  60. static unsigned int sec;
  61. static int mode;
  62. static char *xbuf[XBUFSIZE];
  63. static char *axbuf[XBUFSIZE];
  64. static char *tvmem[TVMEMSIZE];
  65. static char *check[] = {
  66. "des", "md5", "des3_ede", "rot13", "sha1", "sha224", "sha256",
  67. "blowfish", "twofish", "serpent", "sha384", "sha512", "md4", "aes",
  68. "cast6", "arc4", "michael_mic", "deflate", "crc32c", "tea", "xtea",
  69. "khazad", "wp512", "wp384", "wp256", "tnepres", "xeta", "fcrypt",
  70. "camellia", "seed", "salsa20", "rmd128", "rmd160", "rmd256", "rmd320",
  71. "lzo", "cts", NULL
  72. };
  73. static void hexdump(unsigned char *buf, unsigned int len)
  74. {
  75. print_hex_dump(KERN_CONT, "", DUMP_PREFIX_OFFSET,
  76. 16, 1,
  77. buf, len, false);
  78. }
  79. static void tcrypt_complete(struct crypto_async_request *req, int err)
  80. {
  81. struct tcrypt_result *res = req->data;
  82. if (err == -EINPROGRESS)
  83. return;
  84. res->err = err;
  85. complete(&res->completion);
  86. }
  87. static void test_hash(char *algo, struct hash_testvec *template,
  88. unsigned int tcount)
  89. {
  90. unsigned int i, j, k, temp;
  91. struct scatterlist sg[8];
  92. char result[64];
  93. struct crypto_ahash *tfm;
  94. struct ahash_request *req;
  95. struct tcrypt_result tresult;
  96. int ret;
  97. void *hash_buff;
  98. printk("\ntesting %s\n", algo);
  99. init_completion(&tresult.completion);
  100. tfm = crypto_alloc_ahash(algo, 0, 0);
  101. if (IS_ERR(tfm)) {
  102. printk("failed to load transform for %s: %ld\n", algo,
  103. PTR_ERR(tfm));
  104. return;
  105. }
  106. req = ahash_request_alloc(tfm, GFP_KERNEL);
  107. if (!req) {
  108. printk(KERN_ERR "failed to allocate request for %s\n", algo);
  109. goto out_noreq;
  110. }
  111. ahash_request_set_callback(req, CRYPTO_TFM_REQ_MAY_BACKLOG,
  112. tcrypt_complete, &tresult);
  113. for (i = 0; i < tcount; i++) {
  114. printk("test %u:\n", i + 1);
  115. memset(result, 0, 64);
  116. hash_buff = xbuf[0];
  117. memcpy(hash_buff, template[i].plaintext, template[i].psize);
  118. sg_init_one(&sg[0], hash_buff, template[i].psize);
  119. if (template[i].ksize) {
  120. crypto_ahash_clear_flags(tfm, ~0);
  121. ret = crypto_ahash_setkey(tfm, template[i].key,
  122. template[i].ksize);
  123. if (ret) {
  124. printk("setkey() failed ret=%d\n", ret);
  125. goto out;
  126. }
  127. }
  128. ahash_request_set_crypt(req, sg, result, template[i].psize);
  129. ret = crypto_ahash_digest(req);
  130. switch (ret) {
  131. case 0:
  132. break;
  133. case -EINPROGRESS:
  134. case -EBUSY:
  135. ret = wait_for_completion_interruptible(
  136. &tresult.completion);
  137. if (!ret && !(ret = tresult.err)) {
  138. INIT_COMPLETION(tresult.completion);
  139. break;
  140. }
  141. /* fall through */
  142. default:
  143. printk("digest () failed ret=%d\n", ret);
  144. goto out;
  145. }
  146. hexdump(result, crypto_ahash_digestsize(tfm));
  147. printk("%s\n",
  148. memcmp(result, template[i].digest,
  149. crypto_ahash_digestsize(tfm)) ?
  150. "fail" : "pass");
  151. }
  152. printk("testing %s across pages\n", algo);
  153. j = 0;
  154. for (i = 0; i < tcount; i++) {
  155. if (template[i].np) {
  156. j++;
  157. printk("test %u:\n", j);
  158. memset(result, 0, 64);
  159. temp = 0;
  160. sg_init_table(sg, template[i].np);
  161. for (k = 0; k < template[i].np; k++) {
  162. sg_set_buf(&sg[k],
  163. memcpy(xbuf[IDX[k] >> PAGE_SHIFT] +
  164. offset_in_page(IDX[k]),
  165. template[i].plaintext + temp,
  166. template[i].tap[k]),
  167. template[i].tap[k]);
  168. temp += template[i].tap[k];
  169. }
  170. if (template[i].ksize) {
  171. crypto_ahash_clear_flags(tfm, ~0);
  172. ret = crypto_ahash_setkey(tfm, template[i].key,
  173. template[i].ksize);
  174. if (ret) {
  175. printk("setkey() failed ret=%d\n", ret);
  176. goto out;
  177. }
  178. }
  179. ahash_request_set_crypt(req, sg, result,
  180. template[i].psize);
  181. ret = crypto_ahash_digest(req);
  182. switch (ret) {
  183. case 0:
  184. break;
  185. case -EINPROGRESS:
  186. case -EBUSY:
  187. ret = wait_for_completion_interruptible(
  188. &tresult.completion);
  189. if (!ret && !(ret = tresult.err)) {
  190. INIT_COMPLETION(tresult.completion);
  191. break;
  192. }
  193. /* fall through */
  194. default:
  195. printk("digest () failed ret=%d\n", ret);
  196. goto out;
  197. }
  198. hexdump(result, crypto_ahash_digestsize(tfm));
  199. printk("%s\n",
  200. memcmp(result, template[i].digest,
  201. crypto_ahash_digestsize(tfm)) ?
  202. "fail" : "pass");
  203. }
  204. }
  205. out:
  206. ahash_request_free(req);
  207. out_noreq:
  208. crypto_free_ahash(tfm);
  209. }
  210. static void test_aead(char *algo, int enc, struct aead_testvec *template,
  211. unsigned int tcount)
  212. {
  213. unsigned int ret, i, j, k, n, temp;
  214. char *q;
  215. struct crypto_aead *tfm;
  216. char *key;
  217. struct aead_request *req;
  218. struct scatterlist sg[8];
  219. struct scatterlist asg[8];
  220. const char *e;
  221. struct tcrypt_result result;
  222. unsigned int authsize;
  223. void *input;
  224. void *assoc;
  225. char iv[MAX_IVLEN];
  226. if (enc == ENCRYPT)
  227. e = "encryption";
  228. else
  229. e = "decryption";
  230. printk(KERN_INFO "\ntesting %s %s\n", algo, e);
  231. init_completion(&result.completion);
  232. tfm = crypto_alloc_aead(algo, 0, 0);
  233. if (IS_ERR(tfm)) {
  234. printk(KERN_INFO "failed to load transform for %s: %ld\n",
  235. algo, PTR_ERR(tfm));
  236. return;
  237. }
  238. req = aead_request_alloc(tfm, GFP_KERNEL);
  239. if (!req) {
  240. printk(KERN_INFO "failed to allocate request for %s\n", algo);
  241. goto out;
  242. }
  243. aead_request_set_callback(req, CRYPTO_TFM_REQ_MAY_BACKLOG,
  244. tcrypt_complete, &result);
  245. for (i = 0, j = 0; i < tcount; i++) {
  246. if (!template[i].np) {
  247. printk(KERN_INFO "test %u (%d bit key):\n",
  248. ++j, template[i].klen * 8);
  249. /* some tepmplates have no input data but they will
  250. * touch input
  251. */
  252. input = xbuf[0];
  253. assoc = axbuf[0];
  254. memcpy(input, template[i].input, template[i].ilen);
  255. memcpy(assoc, template[i].assoc, template[i].alen);
  256. if (template[i].iv)
  257. memcpy(iv, template[i].iv, MAX_IVLEN);
  258. else
  259. memset(iv, 0, MAX_IVLEN);
  260. crypto_aead_clear_flags(tfm, ~0);
  261. if (template[i].wk)
  262. crypto_aead_set_flags(
  263. tfm, CRYPTO_TFM_REQ_WEAK_KEY);
  264. key = template[i].key;
  265. ret = crypto_aead_setkey(tfm, key,
  266. template[i].klen);
  267. if (ret) {
  268. printk(KERN_INFO "setkey() failed flags=%x\n",
  269. crypto_aead_get_flags(tfm));
  270. if (!template[i].fail)
  271. continue;
  272. }
  273. authsize = abs(template[i].rlen - template[i].ilen);
  274. ret = crypto_aead_setauthsize(tfm, authsize);
  275. if (ret) {
  276. printk(KERN_INFO
  277. "failed to set authsize = %u\n",
  278. authsize);
  279. continue;
  280. }
  281. sg_init_one(&sg[0], input,
  282. template[i].ilen + (enc ? authsize : 0));
  283. sg_init_one(&asg[0], assoc, template[i].alen);
  284. aead_request_set_crypt(req, sg, sg,
  285. template[i].ilen, iv);
  286. aead_request_set_assoc(req, asg, template[i].alen);
  287. ret = enc ?
  288. crypto_aead_encrypt(req) :
  289. crypto_aead_decrypt(req);
  290. switch (ret) {
  291. case 0:
  292. break;
  293. case -EINPROGRESS:
  294. case -EBUSY:
  295. ret = wait_for_completion_interruptible(
  296. &result.completion);
  297. if (!ret && !(ret = result.err)) {
  298. INIT_COMPLETION(result.completion);
  299. break;
  300. }
  301. /* fall through */
  302. default:
  303. printk(KERN_INFO "%s () failed err=%d\n",
  304. e, -ret);
  305. continue;
  306. }
  307. q = input;
  308. hexdump(q, template[i].rlen);
  309. printk(KERN_INFO "enc/dec: %s\n",
  310. memcmp(q, template[i].result,
  311. template[i].rlen) ? "fail" : "pass");
  312. }
  313. }
  314. printk(KERN_INFO "\ntesting %s %s across pages (chunking)\n", algo, e);
  315. for (i = 0, j = 0; i < tcount; i++) {
  316. if (template[i].np) {
  317. printk(KERN_INFO "test %u (%d bit key):\n",
  318. ++j, template[i].klen * 8);
  319. if (template[i].iv)
  320. memcpy(iv, template[i].iv, MAX_IVLEN);
  321. else
  322. memset(iv, 0, MAX_IVLEN);
  323. crypto_aead_clear_flags(tfm, ~0);
  324. if (template[i].wk)
  325. crypto_aead_set_flags(
  326. tfm, CRYPTO_TFM_REQ_WEAK_KEY);
  327. key = template[i].key;
  328. ret = crypto_aead_setkey(tfm, key, template[i].klen);
  329. if (ret) {
  330. printk(KERN_INFO "setkey() failed flags=%x\n",
  331. crypto_aead_get_flags(tfm));
  332. if (!template[i].fail)
  333. goto out;
  334. }
  335. authsize = abs(template[i].rlen - template[i].ilen);
  336. sg_init_table(sg, template[i].np);
  337. for (k = 0, temp = 0; k < template[i].np; k++) {
  338. if (WARN_ON(offset_in_page(IDX[k]) +
  339. template[i].tap[k] > PAGE_SIZE))
  340. goto out;
  341. q = xbuf[IDX[k] >> PAGE_SHIFT] +
  342. offset_in_page(IDX[k]);
  343. memcpy(q, template[i].input + temp,
  344. template[i].tap[k]);
  345. n = template[i].tap[k];
  346. if (k == template[i].np - 1 && enc)
  347. n += authsize;
  348. if (offset_in_page(q) + n < PAGE_SIZE)
  349. q[n] = 0;
  350. sg_set_buf(&sg[k], q, template[i].tap[k]);
  351. temp += template[i].tap[k];
  352. }
  353. ret = crypto_aead_setauthsize(tfm, authsize);
  354. if (ret) {
  355. printk(KERN_INFO
  356. "failed to set authsize = %u\n",
  357. authsize);
  358. goto out;
  359. }
  360. if (enc) {
  361. if (WARN_ON(sg[k - 1].offset +
  362. sg[k - 1].length + authsize >
  363. PAGE_SIZE))
  364. goto out;
  365. sg[k - 1].length += authsize;
  366. }
  367. sg_init_table(asg, template[i].anp);
  368. for (k = 0, temp = 0; k < template[i].anp; k++) {
  369. sg_set_buf(&asg[k],
  370. memcpy(axbuf[IDX[k] >> PAGE_SHIFT] +
  371. offset_in_page(IDX[k]),
  372. template[i].assoc + temp,
  373. template[i].atap[k]),
  374. template[i].atap[k]);
  375. temp += template[i].atap[k];
  376. }
  377. aead_request_set_crypt(req, sg, sg,
  378. template[i].ilen,
  379. iv);
  380. aead_request_set_assoc(req, asg, template[i].alen);
  381. ret = enc ?
  382. crypto_aead_encrypt(req) :
  383. crypto_aead_decrypt(req);
  384. switch (ret) {
  385. case 0:
  386. break;
  387. case -EINPROGRESS:
  388. case -EBUSY:
  389. ret = wait_for_completion_interruptible(
  390. &result.completion);
  391. if (!ret && !(ret = result.err)) {
  392. INIT_COMPLETION(result.completion);
  393. break;
  394. }
  395. /* fall through */
  396. default:
  397. printk(KERN_INFO "%s () failed err=%d\n",
  398. e, -ret);
  399. goto out;
  400. }
  401. for (k = 0, temp = 0; k < template[i].np; k++) {
  402. printk(KERN_INFO "page %u\n", k);
  403. q = xbuf[IDX[k] >> PAGE_SHIFT] +
  404. offset_in_page(IDX[k]);
  405. n = template[i].tap[k];
  406. if (k == template[i].np - 1)
  407. n += enc ? authsize : -authsize;
  408. hexdump(q, n);
  409. printk(KERN_INFO "%s\n",
  410. memcmp(q, template[i].result + temp, n) ?
  411. "fail" : "pass");
  412. q += n;
  413. if (k == template[i].np - 1 && !enc) {
  414. if (memcmp(q, template[i].input +
  415. temp + n, authsize))
  416. n = authsize;
  417. else
  418. n = 0;
  419. } else {
  420. for (n = 0; offset_in_page(q + n) &&
  421. q[n]; n++)
  422. ;
  423. }
  424. if (n) {
  425. printk("Result buffer corruption %u "
  426. "bytes:\n", n);
  427. hexdump(q, n);
  428. }
  429. temp += template[i].tap[k];
  430. }
  431. }
  432. }
  433. out:
  434. crypto_free_aead(tfm);
  435. aead_request_free(req);
  436. }
  437. static void test_cipher(char *algo, int enc,
  438. struct cipher_testvec *template, unsigned int tcount)
  439. {
  440. unsigned int ret, i, j, k, n, temp;
  441. char *q;
  442. struct crypto_ablkcipher *tfm;
  443. struct ablkcipher_request *req;
  444. struct scatterlist sg[8];
  445. const char *e;
  446. struct tcrypt_result result;
  447. void *data;
  448. char iv[MAX_IVLEN];
  449. if (enc == ENCRYPT)
  450. e = "encryption";
  451. else
  452. e = "decryption";
  453. printk("\ntesting %s %s\n", algo, e);
  454. init_completion(&result.completion);
  455. tfm = crypto_alloc_ablkcipher(algo, 0, 0);
  456. if (IS_ERR(tfm)) {
  457. printk("failed to load transform for %s: %ld\n", algo,
  458. PTR_ERR(tfm));
  459. return;
  460. }
  461. req = ablkcipher_request_alloc(tfm, GFP_KERNEL);
  462. if (!req) {
  463. printk("failed to allocate request for %s\n", algo);
  464. goto out;
  465. }
  466. ablkcipher_request_set_callback(req, CRYPTO_TFM_REQ_MAY_BACKLOG,
  467. tcrypt_complete, &result);
  468. j = 0;
  469. for (i = 0; i < tcount; i++) {
  470. if (template[i].iv)
  471. memcpy(iv, template[i].iv, MAX_IVLEN);
  472. else
  473. memset(iv, 0, MAX_IVLEN);
  474. if (!(template[i].np)) {
  475. j++;
  476. printk("test %u (%d bit key):\n",
  477. j, template[i].klen * 8);
  478. data = xbuf[0];
  479. memcpy(data, template[i].input, template[i].ilen);
  480. crypto_ablkcipher_clear_flags(tfm, ~0);
  481. if (template[i].wk)
  482. crypto_ablkcipher_set_flags(
  483. tfm, CRYPTO_TFM_REQ_WEAK_KEY);
  484. ret = crypto_ablkcipher_setkey(tfm, template[i].key,
  485. template[i].klen);
  486. if (ret) {
  487. printk("setkey() failed flags=%x\n",
  488. crypto_ablkcipher_get_flags(tfm));
  489. if (!template[i].fail)
  490. goto out;
  491. }
  492. sg_init_one(&sg[0], data, template[i].ilen);
  493. ablkcipher_request_set_crypt(req, sg, sg,
  494. template[i].ilen, iv);
  495. ret = enc ?
  496. crypto_ablkcipher_encrypt(req) :
  497. crypto_ablkcipher_decrypt(req);
  498. switch (ret) {
  499. case 0:
  500. break;
  501. case -EINPROGRESS:
  502. case -EBUSY:
  503. ret = wait_for_completion_interruptible(
  504. &result.completion);
  505. if (!ret && !((ret = result.err))) {
  506. INIT_COMPLETION(result.completion);
  507. break;
  508. }
  509. /* fall through */
  510. default:
  511. printk("%s () failed err=%d\n", e, -ret);
  512. goto out;
  513. }
  514. q = data;
  515. hexdump(q, template[i].rlen);
  516. printk("%s\n",
  517. memcmp(q, template[i].result,
  518. template[i].rlen) ? "fail" : "pass");
  519. }
  520. }
  521. printk("\ntesting %s %s across pages (chunking)\n", algo, e);
  522. j = 0;
  523. for (i = 0; i < tcount; i++) {
  524. if (template[i].iv)
  525. memcpy(iv, template[i].iv, MAX_IVLEN);
  526. else
  527. memset(iv, 0, MAX_IVLEN);
  528. if (template[i].np) {
  529. j++;
  530. printk("test %u (%d bit key):\n",
  531. j, template[i].klen * 8);
  532. crypto_ablkcipher_clear_flags(tfm, ~0);
  533. if (template[i].wk)
  534. crypto_ablkcipher_set_flags(
  535. tfm, CRYPTO_TFM_REQ_WEAK_KEY);
  536. ret = crypto_ablkcipher_setkey(tfm, template[i].key,
  537. template[i].klen);
  538. if (ret) {
  539. printk("setkey() failed flags=%x\n",
  540. crypto_ablkcipher_get_flags(tfm));
  541. if (!template[i].fail)
  542. goto out;
  543. }
  544. temp = 0;
  545. sg_init_table(sg, template[i].np);
  546. for (k = 0; k < template[i].np; k++) {
  547. if (WARN_ON(offset_in_page(IDX[k]) +
  548. template[i].tap[k] > PAGE_SIZE))
  549. goto out;
  550. q = xbuf[IDX[k] >> PAGE_SHIFT] +
  551. offset_in_page(IDX[k]);
  552. memcpy(q, template[i].input + temp,
  553. template[i].tap[k]);
  554. if (offset_in_page(q) + template[i].tap[k] <
  555. PAGE_SIZE)
  556. q[template[i].tap[k]] = 0;
  557. sg_set_buf(&sg[k], q, template[i].tap[k]);
  558. temp += template[i].tap[k];
  559. }
  560. ablkcipher_request_set_crypt(req, sg, sg,
  561. template[i].ilen, iv);
  562. ret = enc ?
  563. crypto_ablkcipher_encrypt(req) :
  564. crypto_ablkcipher_decrypt(req);
  565. switch (ret) {
  566. case 0:
  567. break;
  568. case -EINPROGRESS:
  569. case -EBUSY:
  570. ret = wait_for_completion_interruptible(
  571. &result.completion);
  572. if (!ret && !((ret = result.err))) {
  573. INIT_COMPLETION(result.completion);
  574. break;
  575. }
  576. /* fall through */
  577. default:
  578. printk("%s () failed err=%d\n", e, -ret);
  579. goto out;
  580. }
  581. temp = 0;
  582. for (k = 0; k < template[i].np; k++) {
  583. printk("page %u\n", k);
  584. q = xbuf[IDX[k] >> PAGE_SHIFT] +
  585. offset_in_page(IDX[k]);
  586. hexdump(q, template[i].tap[k]);
  587. printk("%s\n",
  588. memcmp(q, template[i].result + temp,
  589. template[i].tap[k]) ? "fail" :
  590. "pass");
  591. q += template[i].tap[k];
  592. for (n = 0; offset_in_page(q + n) && q[n]; n++)
  593. ;
  594. if (n) {
  595. printk("Result buffer corruption %u "
  596. "bytes:\n", n);
  597. hexdump(q, n);
  598. }
  599. temp += template[i].tap[k];
  600. }
  601. }
  602. }
  603. out:
  604. crypto_free_ablkcipher(tfm);
  605. ablkcipher_request_free(req);
  606. }
  607. static int test_cipher_jiffies(struct blkcipher_desc *desc, int enc,
  608. struct scatterlist *sg, int blen, int sec)
  609. {
  610. unsigned long start, end;
  611. int bcount;
  612. int ret;
  613. for (start = jiffies, end = start + sec * HZ, bcount = 0;
  614. time_before(jiffies, end); bcount++) {
  615. if (enc)
  616. ret = crypto_blkcipher_encrypt(desc, sg, sg, blen);
  617. else
  618. ret = crypto_blkcipher_decrypt(desc, sg, sg, blen);
  619. if (ret)
  620. return ret;
  621. }
  622. printk("%d operations in %d seconds (%ld bytes)\n",
  623. bcount, sec, (long)bcount * blen);
  624. return 0;
  625. }
  626. static int test_cipher_cycles(struct blkcipher_desc *desc, int enc,
  627. struct scatterlist *sg, int blen)
  628. {
  629. unsigned long cycles = 0;
  630. int ret = 0;
  631. int i;
  632. local_bh_disable();
  633. local_irq_disable();
  634. /* Warm-up run. */
  635. for (i = 0; i < 4; i++) {
  636. if (enc)
  637. ret = crypto_blkcipher_encrypt(desc, sg, sg, blen);
  638. else
  639. ret = crypto_blkcipher_decrypt(desc, sg, sg, blen);
  640. if (ret)
  641. goto out;
  642. }
  643. /* The real thing. */
  644. for (i = 0; i < 8; i++) {
  645. cycles_t start, end;
  646. start = get_cycles();
  647. if (enc)
  648. ret = crypto_blkcipher_encrypt(desc, sg, sg, blen);
  649. else
  650. ret = crypto_blkcipher_decrypt(desc, sg, sg, blen);
  651. end = get_cycles();
  652. if (ret)
  653. goto out;
  654. cycles += end - start;
  655. }
  656. out:
  657. local_irq_enable();
  658. local_bh_enable();
  659. if (ret == 0)
  660. printk("1 operation in %lu cycles (%d bytes)\n",
  661. (cycles + 4) / 8, blen);
  662. return ret;
  663. }
  664. static u32 block_sizes[] = { 16, 64, 256, 1024, 8192, 0 };
  665. static void test_cipher_speed(char *algo, int enc, unsigned int sec,
  666. struct cipher_testvec *template,
  667. unsigned int tcount, u8 *keysize)
  668. {
  669. unsigned int ret, i, j, iv_len;
  670. unsigned char *key, iv[128];
  671. struct crypto_blkcipher *tfm;
  672. struct blkcipher_desc desc;
  673. const char *e;
  674. u32 *b_size;
  675. if (enc == ENCRYPT)
  676. e = "encryption";
  677. else
  678. e = "decryption";
  679. printk("\ntesting speed of %s %s\n", algo, e);
  680. tfm = crypto_alloc_blkcipher(algo, 0, CRYPTO_ALG_ASYNC);
  681. if (IS_ERR(tfm)) {
  682. printk("failed to load transform for %s: %ld\n", algo,
  683. PTR_ERR(tfm));
  684. return;
  685. }
  686. desc.tfm = tfm;
  687. desc.flags = 0;
  688. i = 0;
  689. do {
  690. b_size = block_sizes;
  691. do {
  692. struct scatterlist sg[TVMEMSIZE];
  693. if ((*keysize + *b_size) > TVMEMSIZE * PAGE_SIZE) {
  694. printk("template (%u) too big for "
  695. "tvmem (%lu)\n", *keysize + *b_size,
  696. TVMEMSIZE * PAGE_SIZE);
  697. goto out;
  698. }
  699. printk("test %u (%d bit key, %d byte blocks): ", i,
  700. *keysize * 8, *b_size);
  701. memset(tvmem[0], 0xff, PAGE_SIZE);
  702. /* set key, plain text and IV */
  703. key = (unsigned char *)tvmem[0];
  704. for (j = 0; j < tcount; j++) {
  705. if (template[j].klen == *keysize) {
  706. key = template[j].key;
  707. break;
  708. }
  709. }
  710. ret = crypto_blkcipher_setkey(tfm, key, *keysize);
  711. if (ret) {
  712. printk("setkey() failed flags=%x\n",
  713. crypto_blkcipher_get_flags(tfm));
  714. goto out;
  715. }
  716. sg_init_table(sg, TVMEMSIZE);
  717. sg_set_buf(sg, tvmem[0] + *keysize,
  718. PAGE_SIZE - *keysize);
  719. for (j = 1; j < TVMEMSIZE; j++) {
  720. sg_set_buf(sg + j, tvmem[j], PAGE_SIZE);
  721. memset (tvmem[j], 0xff, PAGE_SIZE);
  722. }
  723. iv_len = crypto_blkcipher_ivsize(tfm);
  724. if (iv_len) {
  725. memset(&iv, 0xff, iv_len);
  726. crypto_blkcipher_set_iv(tfm, iv, iv_len);
  727. }
  728. if (sec)
  729. ret = test_cipher_jiffies(&desc, enc, sg,
  730. *b_size, sec);
  731. else
  732. ret = test_cipher_cycles(&desc, enc, sg,
  733. *b_size);
  734. if (ret) {
  735. printk("%s() failed flags=%x\n", e, desc.flags);
  736. break;
  737. }
  738. b_size++;
  739. i++;
  740. } while (*b_size);
  741. keysize++;
  742. } while (*keysize);
  743. out:
  744. crypto_free_blkcipher(tfm);
  745. }
  746. static int test_hash_jiffies_digest(struct hash_desc *desc,
  747. struct scatterlist *sg, int blen,
  748. char *out, int sec)
  749. {
  750. unsigned long start, end;
  751. int bcount;
  752. int ret;
  753. for (start = jiffies, end = start + sec * HZ, bcount = 0;
  754. time_before(jiffies, end); bcount++) {
  755. ret = crypto_hash_digest(desc, sg, blen, out);
  756. if (ret)
  757. return ret;
  758. }
  759. printk("%6u opers/sec, %9lu bytes/sec\n",
  760. bcount / sec, ((long)bcount * blen) / sec);
  761. return 0;
  762. }
  763. static int test_hash_jiffies(struct hash_desc *desc, struct scatterlist *sg,
  764. int blen, int plen, char *out, int sec)
  765. {
  766. unsigned long start, end;
  767. int bcount, pcount;
  768. int ret;
  769. if (plen == blen)
  770. return test_hash_jiffies_digest(desc, sg, blen, out, sec);
  771. for (start = jiffies, end = start + sec * HZ, bcount = 0;
  772. time_before(jiffies, end); bcount++) {
  773. ret = crypto_hash_init(desc);
  774. if (ret)
  775. return ret;
  776. for (pcount = 0; pcount < blen; pcount += plen) {
  777. ret = crypto_hash_update(desc, sg, plen);
  778. if (ret)
  779. return ret;
  780. }
  781. /* we assume there is enough space in 'out' for the result */
  782. ret = crypto_hash_final(desc, out);
  783. if (ret)
  784. return ret;
  785. }
  786. printk("%6u opers/sec, %9lu bytes/sec\n",
  787. bcount / sec, ((long)bcount * blen) / sec);
  788. return 0;
  789. }
  790. static int test_hash_cycles_digest(struct hash_desc *desc,
  791. struct scatterlist *sg, int blen, char *out)
  792. {
  793. unsigned long cycles = 0;
  794. int i;
  795. int ret;
  796. local_bh_disable();
  797. local_irq_disable();
  798. /* Warm-up run. */
  799. for (i = 0; i < 4; i++) {
  800. ret = crypto_hash_digest(desc, sg, blen, out);
  801. if (ret)
  802. goto out;
  803. }
  804. /* The real thing. */
  805. for (i = 0; i < 8; i++) {
  806. cycles_t start, end;
  807. start = get_cycles();
  808. ret = crypto_hash_digest(desc, sg, blen, out);
  809. if (ret)
  810. goto out;
  811. end = get_cycles();
  812. cycles += end - start;
  813. }
  814. out:
  815. local_irq_enable();
  816. local_bh_enable();
  817. if (ret)
  818. return ret;
  819. printk("%6lu cycles/operation, %4lu cycles/byte\n",
  820. cycles / 8, cycles / (8 * blen));
  821. return 0;
  822. }
  823. static int test_hash_cycles(struct hash_desc *desc, struct scatterlist *sg,
  824. int blen, int plen, char *out)
  825. {
  826. unsigned long cycles = 0;
  827. int i, pcount;
  828. int ret;
  829. if (plen == blen)
  830. return test_hash_cycles_digest(desc, sg, blen, out);
  831. local_bh_disable();
  832. local_irq_disable();
  833. /* Warm-up run. */
  834. for (i = 0; i < 4; i++) {
  835. ret = crypto_hash_init(desc);
  836. if (ret)
  837. goto out;
  838. for (pcount = 0; pcount < blen; pcount += plen) {
  839. ret = crypto_hash_update(desc, sg, plen);
  840. if (ret)
  841. goto out;
  842. }
  843. ret = crypto_hash_final(desc, out);
  844. if (ret)
  845. goto out;
  846. }
  847. /* The real thing. */
  848. for (i = 0; i < 8; i++) {
  849. cycles_t start, end;
  850. start = get_cycles();
  851. ret = crypto_hash_init(desc);
  852. if (ret)
  853. goto out;
  854. for (pcount = 0; pcount < blen; pcount += plen) {
  855. ret = crypto_hash_update(desc, sg, plen);
  856. if (ret)
  857. goto out;
  858. }
  859. ret = crypto_hash_final(desc, out);
  860. if (ret)
  861. goto out;
  862. end = get_cycles();
  863. cycles += end - start;
  864. }
  865. out:
  866. local_irq_enable();
  867. local_bh_enable();
  868. if (ret)
  869. return ret;
  870. printk("%6lu cycles/operation, %4lu cycles/byte\n",
  871. cycles / 8, cycles / (8 * blen));
  872. return 0;
  873. }
  874. static void test_hash_speed(char *algo, unsigned int sec,
  875. struct hash_speed *speed)
  876. {
  877. struct scatterlist sg[TVMEMSIZE];
  878. struct crypto_hash *tfm;
  879. struct hash_desc desc;
  880. char output[1024];
  881. int i;
  882. int ret;
  883. printk("\ntesting speed of %s\n", algo);
  884. tfm = crypto_alloc_hash(algo, 0, CRYPTO_ALG_ASYNC);
  885. if (IS_ERR(tfm)) {
  886. printk("failed to load transform for %s: %ld\n", algo,
  887. PTR_ERR(tfm));
  888. return;
  889. }
  890. desc.tfm = tfm;
  891. desc.flags = 0;
  892. if (crypto_hash_digestsize(tfm) > sizeof(output)) {
  893. printk("digestsize(%u) > outputbuffer(%zu)\n",
  894. crypto_hash_digestsize(tfm), sizeof(output));
  895. goto out;
  896. }
  897. sg_init_table(sg, TVMEMSIZE);
  898. for (i = 0; i < TVMEMSIZE; i++) {
  899. sg_set_buf(sg + i, tvmem[i], PAGE_SIZE);
  900. memset(tvmem[i], 0xff, PAGE_SIZE);
  901. }
  902. for (i = 0; speed[i].blen != 0; i++) {
  903. if (speed[i].blen > TVMEMSIZE * PAGE_SIZE) {
  904. printk("template (%u) too big for tvmem (%lu)\n",
  905. speed[i].blen, TVMEMSIZE * PAGE_SIZE);
  906. goto out;
  907. }
  908. printk("test%3u (%5u byte blocks,%5u bytes per update,%4u updates): ",
  909. i, speed[i].blen, speed[i].plen, speed[i].blen / speed[i].plen);
  910. if (sec)
  911. ret = test_hash_jiffies(&desc, sg, speed[i].blen,
  912. speed[i].plen, output, sec);
  913. else
  914. ret = test_hash_cycles(&desc, sg, speed[i].blen,
  915. speed[i].plen, output);
  916. if (ret) {
  917. printk("hashing failed ret=%d\n", ret);
  918. break;
  919. }
  920. }
  921. out:
  922. crypto_free_hash(tfm);
  923. }
  924. static void test_comp(char *algo, struct comp_testvec *ctemplate,
  925. struct comp_testvec *dtemplate, int ctcount, int dtcount)
  926. {
  927. unsigned int i;
  928. char result[COMP_BUF_SIZE];
  929. struct crypto_comp *tfm;
  930. printk("\ntesting %s compression\n", algo);
  931. tfm = crypto_alloc_comp(algo, 0, CRYPTO_ALG_ASYNC);
  932. if (IS_ERR(tfm)) {
  933. printk("failed to load transform for %s\n", algo);
  934. return;
  935. }
  936. for (i = 0; i < ctcount; i++) {
  937. int ilen, ret, dlen = COMP_BUF_SIZE;
  938. printk("test %u:\n", i + 1);
  939. memset(result, 0, sizeof (result));
  940. ilen = ctemplate[i].inlen;
  941. ret = crypto_comp_compress(tfm, ctemplate[i].input,
  942. ilen, result, &dlen);
  943. if (ret) {
  944. printk("fail: ret=%d\n", ret);
  945. continue;
  946. }
  947. hexdump(result, dlen);
  948. printk("%s (ratio %d:%d)\n",
  949. memcmp(result, ctemplate[i].output, dlen) ? "fail" : "pass",
  950. ilen, dlen);
  951. }
  952. printk("\ntesting %s decompression\n", algo);
  953. for (i = 0; i < dtcount; i++) {
  954. int ilen, ret, dlen = COMP_BUF_SIZE;
  955. printk("test %u:\n", i + 1);
  956. memset(result, 0, sizeof (result));
  957. ilen = dtemplate[i].inlen;
  958. ret = crypto_comp_decompress(tfm, dtemplate[i].input,
  959. ilen, result, &dlen);
  960. if (ret) {
  961. printk("fail: ret=%d\n", ret);
  962. continue;
  963. }
  964. hexdump(result, dlen);
  965. printk("%s (ratio %d:%d)\n",
  966. memcmp(result, dtemplate[i].output, dlen) ? "fail" : "pass",
  967. ilen, dlen);
  968. }
  969. crypto_free_comp(tfm);
  970. }
  971. static void test_available(void)
  972. {
  973. char **name = check;
  974. while (*name) {
  975. printk("alg %s ", *name);
  976. printk(crypto_has_alg(*name, 0, 0) ?
  977. "found\n" : "not found\n");
  978. name++;
  979. }
  980. }
  981. static void do_test(void)
  982. {
  983. switch (mode) {
  984. case 0:
  985. test_hash("md5", md5_tv_template, MD5_TEST_VECTORS);
  986. test_hash("sha1", sha1_tv_template, SHA1_TEST_VECTORS);
  987. //DES
  988. test_cipher("ecb(des)", ENCRYPT, des_enc_tv_template,
  989. DES_ENC_TEST_VECTORS);
  990. test_cipher("ecb(des)", DECRYPT, des_dec_tv_template,
  991. DES_DEC_TEST_VECTORS);
  992. test_cipher("cbc(des)", ENCRYPT, des_cbc_enc_tv_template,
  993. DES_CBC_ENC_TEST_VECTORS);
  994. test_cipher("cbc(des)", DECRYPT, des_cbc_dec_tv_template,
  995. DES_CBC_DEC_TEST_VECTORS);
  996. //DES3_EDE
  997. test_cipher("ecb(des3_ede)", ENCRYPT, des3_ede_enc_tv_template,
  998. DES3_EDE_ENC_TEST_VECTORS);
  999. test_cipher("ecb(des3_ede)", DECRYPT, des3_ede_dec_tv_template,
  1000. DES3_EDE_DEC_TEST_VECTORS);
  1001. test_cipher("cbc(des3_ede)", ENCRYPT,
  1002. des3_ede_cbc_enc_tv_template,
  1003. DES3_EDE_CBC_ENC_TEST_VECTORS);
  1004. test_cipher("cbc(des3_ede)", DECRYPT,
  1005. des3_ede_cbc_dec_tv_template,
  1006. DES3_EDE_CBC_DEC_TEST_VECTORS);
  1007. test_hash("md4", md4_tv_template, MD4_TEST_VECTORS);
  1008. test_hash("sha224", sha224_tv_template, SHA224_TEST_VECTORS);
  1009. test_hash("sha256", sha256_tv_template, SHA256_TEST_VECTORS);
  1010. //BLOWFISH
  1011. test_cipher("ecb(blowfish)", ENCRYPT, bf_enc_tv_template,
  1012. BF_ENC_TEST_VECTORS);
  1013. test_cipher("ecb(blowfish)", DECRYPT, bf_dec_tv_template,
  1014. BF_DEC_TEST_VECTORS);
  1015. test_cipher("cbc(blowfish)", ENCRYPT, bf_cbc_enc_tv_template,
  1016. BF_CBC_ENC_TEST_VECTORS);
  1017. test_cipher("cbc(blowfish)", DECRYPT, bf_cbc_dec_tv_template,
  1018. BF_CBC_DEC_TEST_VECTORS);
  1019. //TWOFISH
  1020. test_cipher("ecb(twofish)", ENCRYPT, tf_enc_tv_template,
  1021. TF_ENC_TEST_VECTORS);
  1022. test_cipher("ecb(twofish)", DECRYPT, tf_dec_tv_template,
  1023. TF_DEC_TEST_VECTORS);
  1024. test_cipher("cbc(twofish)", ENCRYPT, tf_cbc_enc_tv_template,
  1025. TF_CBC_ENC_TEST_VECTORS);
  1026. test_cipher("cbc(twofish)", DECRYPT, tf_cbc_dec_tv_template,
  1027. TF_CBC_DEC_TEST_VECTORS);
  1028. //SERPENT
  1029. test_cipher("ecb(serpent)", ENCRYPT, serpent_enc_tv_template,
  1030. SERPENT_ENC_TEST_VECTORS);
  1031. test_cipher("ecb(serpent)", DECRYPT, serpent_dec_tv_template,
  1032. SERPENT_DEC_TEST_VECTORS);
  1033. //TNEPRES
  1034. test_cipher("ecb(tnepres)", ENCRYPT, tnepres_enc_tv_template,
  1035. TNEPRES_ENC_TEST_VECTORS);
  1036. test_cipher("ecb(tnepres)", DECRYPT, tnepres_dec_tv_template,
  1037. TNEPRES_DEC_TEST_VECTORS);
  1038. //AES
  1039. test_cipher("ecb(aes)", ENCRYPT, aes_enc_tv_template,
  1040. AES_ENC_TEST_VECTORS);
  1041. test_cipher("ecb(aes)", DECRYPT, aes_dec_tv_template,
  1042. AES_DEC_TEST_VECTORS);
  1043. test_cipher("cbc(aes)", ENCRYPT, aes_cbc_enc_tv_template,
  1044. AES_CBC_ENC_TEST_VECTORS);
  1045. test_cipher("cbc(aes)", DECRYPT, aes_cbc_dec_tv_template,
  1046. AES_CBC_DEC_TEST_VECTORS);
  1047. test_cipher("lrw(aes)", ENCRYPT, aes_lrw_enc_tv_template,
  1048. AES_LRW_ENC_TEST_VECTORS);
  1049. test_cipher("lrw(aes)", DECRYPT, aes_lrw_dec_tv_template,
  1050. AES_LRW_DEC_TEST_VECTORS);
  1051. test_cipher("xts(aes)", ENCRYPT, aes_xts_enc_tv_template,
  1052. AES_XTS_ENC_TEST_VECTORS);
  1053. test_cipher("xts(aes)", DECRYPT, aes_xts_dec_tv_template,
  1054. AES_XTS_DEC_TEST_VECTORS);
  1055. test_cipher("rfc3686(ctr(aes))", ENCRYPT, aes_ctr_enc_tv_template,
  1056. AES_CTR_ENC_TEST_VECTORS);
  1057. test_cipher("rfc3686(ctr(aes))", DECRYPT, aes_ctr_dec_tv_template,
  1058. AES_CTR_DEC_TEST_VECTORS);
  1059. test_aead("gcm(aes)", ENCRYPT, aes_gcm_enc_tv_template,
  1060. AES_GCM_ENC_TEST_VECTORS);
  1061. test_aead("gcm(aes)", DECRYPT, aes_gcm_dec_tv_template,
  1062. AES_GCM_DEC_TEST_VECTORS);
  1063. test_aead("ccm(aes)", ENCRYPT, aes_ccm_enc_tv_template,
  1064. AES_CCM_ENC_TEST_VECTORS);
  1065. test_aead("ccm(aes)", DECRYPT, aes_ccm_dec_tv_template,
  1066. AES_CCM_DEC_TEST_VECTORS);
  1067. //CAST5
  1068. test_cipher("ecb(cast5)", ENCRYPT, cast5_enc_tv_template,
  1069. CAST5_ENC_TEST_VECTORS);
  1070. test_cipher("ecb(cast5)", DECRYPT, cast5_dec_tv_template,
  1071. CAST5_DEC_TEST_VECTORS);
  1072. //CAST6
  1073. test_cipher("ecb(cast6)", ENCRYPT, cast6_enc_tv_template,
  1074. CAST6_ENC_TEST_VECTORS);
  1075. test_cipher("ecb(cast6)", DECRYPT, cast6_dec_tv_template,
  1076. CAST6_DEC_TEST_VECTORS);
  1077. //ARC4
  1078. test_cipher("ecb(arc4)", ENCRYPT, arc4_enc_tv_template,
  1079. ARC4_ENC_TEST_VECTORS);
  1080. test_cipher("ecb(arc4)", DECRYPT, arc4_dec_tv_template,
  1081. ARC4_DEC_TEST_VECTORS);
  1082. //TEA
  1083. test_cipher("ecb(tea)", ENCRYPT, tea_enc_tv_template,
  1084. TEA_ENC_TEST_VECTORS);
  1085. test_cipher("ecb(tea)", DECRYPT, tea_dec_tv_template,
  1086. TEA_DEC_TEST_VECTORS);
  1087. //XTEA
  1088. test_cipher("ecb(xtea)", ENCRYPT, xtea_enc_tv_template,
  1089. XTEA_ENC_TEST_VECTORS);
  1090. test_cipher("ecb(xtea)", DECRYPT, xtea_dec_tv_template,
  1091. XTEA_DEC_TEST_VECTORS);
  1092. //KHAZAD
  1093. test_cipher("ecb(khazad)", ENCRYPT, khazad_enc_tv_template,
  1094. KHAZAD_ENC_TEST_VECTORS);
  1095. test_cipher("ecb(khazad)", DECRYPT, khazad_dec_tv_template,
  1096. KHAZAD_DEC_TEST_VECTORS);
  1097. //ANUBIS
  1098. test_cipher("ecb(anubis)", ENCRYPT, anubis_enc_tv_template,
  1099. ANUBIS_ENC_TEST_VECTORS);
  1100. test_cipher("ecb(anubis)", DECRYPT, anubis_dec_tv_template,
  1101. ANUBIS_DEC_TEST_VECTORS);
  1102. test_cipher("cbc(anubis)", ENCRYPT, anubis_cbc_enc_tv_template,
  1103. ANUBIS_CBC_ENC_TEST_VECTORS);
  1104. test_cipher("cbc(anubis)", DECRYPT, anubis_cbc_dec_tv_template,
  1105. ANUBIS_CBC_ENC_TEST_VECTORS);
  1106. //XETA
  1107. test_cipher("ecb(xeta)", ENCRYPT, xeta_enc_tv_template,
  1108. XETA_ENC_TEST_VECTORS);
  1109. test_cipher("ecb(xeta)", DECRYPT, xeta_dec_tv_template,
  1110. XETA_DEC_TEST_VECTORS);
  1111. //FCrypt
  1112. test_cipher("pcbc(fcrypt)", ENCRYPT, fcrypt_pcbc_enc_tv_template,
  1113. FCRYPT_ENC_TEST_VECTORS);
  1114. test_cipher("pcbc(fcrypt)", DECRYPT, fcrypt_pcbc_dec_tv_template,
  1115. FCRYPT_DEC_TEST_VECTORS);
  1116. //CAMELLIA
  1117. test_cipher("ecb(camellia)", ENCRYPT,
  1118. camellia_enc_tv_template,
  1119. CAMELLIA_ENC_TEST_VECTORS);
  1120. test_cipher("ecb(camellia)", DECRYPT,
  1121. camellia_dec_tv_template,
  1122. CAMELLIA_DEC_TEST_VECTORS);
  1123. test_cipher("cbc(camellia)", ENCRYPT,
  1124. camellia_cbc_enc_tv_template,
  1125. CAMELLIA_CBC_ENC_TEST_VECTORS);
  1126. test_cipher("cbc(camellia)", DECRYPT,
  1127. camellia_cbc_dec_tv_template,
  1128. CAMELLIA_CBC_DEC_TEST_VECTORS);
  1129. //SEED
  1130. test_cipher("ecb(seed)", ENCRYPT, seed_enc_tv_template,
  1131. SEED_ENC_TEST_VECTORS);
  1132. test_cipher("ecb(seed)", DECRYPT, seed_dec_tv_template,
  1133. SEED_DEC_TEST_VECTORS);
  1134. //CTS
  1135. test_cipher("cts(cbc(aes))", ENCRYPT, cts_mode_enc_tv_template,
  1136. CTS_MODE_ENC_TEST_VECTORS);
  1137. test_cipher("cts(cbc(aes))", DECRYPT, cts_mode_dec_tv_template,
  1138. CTS_MODE_DEC_TEST_VECTORS);
  1139. test_hash("sha384", sha384_tv_template, SHA384_TEST_VECTORS);
  1140. test_hash("sha512", sha512_tv_template, SHA512_TEST_VECTORS);
  1141. test_hash("wp512", wp512_tv_template, WP512_TEST_VECTORS);
  1142. test_hash("wp384", wp384_tv_template, WP384_TEST_VECTORS);
  1143. test_hash("wp256", wp256_tv_template, WP256_TEST_VECTORS);
  1144. test_hash("tgr192", tgr192_tv_template, TGR192_TEST_VECTORS);
  1145. test_hash("tgr160", tgr160_tv_template, TGR160_TEST_VECTORS);
  1146. test_hash("tgr128", tgr128_tv_template, TGR128_TEST_VECTORS);
  1147. test_comp("deflate", deflate_comp_tv_template,
  1148. deflate_decomp_tv_template, DEFLATE_COMP_TEST_VECTORS,
  1149. DEFLATE_DECOMP_TEST_VECTORS);
  1150. test_comp("lzo", lzo_comp_tv_template, lzo_decomp_tv_template,
  1151. LZO_COMP_TEST_VECTORS, LZO_DECOMP_TEST_VECTORS);
  1152. test_hash("crc32c", crc32c_tv_template, CRC32C_TEST_VECTORS);
  1153. test_hash("hmac(md5)", hmac_md5_tv_template,
  1154. HMAC_MD5_TEST_VECTORS);
  1155. test_hash("hmac(sha1)", hmac_sha1_tv_template,
  1156. HMAC_SHA1_TEST_VECTORS);
  1157. test_hash("hmac(sha224)", hmac_sha224_tv_template,
  1158. HMAC_SHA224_TEST_VECTORS);
  1159. test_hash("hmac(sha256)", hmac_sha256_tv_template,
  1160. HMAC_SHA256_TEST_VECTORS);
  1161. test_hash("hmac(sha384)", hmac_sha384_tv_template,
  1162. HMAC_SHA384_TEST_VECTORS);
  1163. test_hash("hmac(sha512)", hmac_sha512_tv_template,
  1164. HMAC_SHA512_TEST_VECTORS);
  1165. test_hash("xcbc(aes)", aes_xcbc128_tv_template,
  1166. XCBC_AES_TEST_VECTORS);
  1167. test_hash("michael_mic", michael_mic_tv_template, MICHAEL_MIC_TEST_VECTORS);
  1168. break;
  1169. case 1:
  1170. test_hash("md5", md5_tv_template, MD5_TEST_VECTORS);
  1171. break;
  1172. case 2:
  1173. test_hash("sha1", sha1_tv_template, SHA1_TEST_VECTORS);
  1174. break;
  1175. case 3:
  1176. test_cipher("ecb(des)", ENCRYPT, des_enc_tv_template,
  1177. DES_ENC_TEST_VECTORS);
  1178. test_cipher("ecb(des)", DECRYPT, des_dec_tv_template,
  1179. DES_DEC_TEST_VECTORS);
  1180. test_cipher("cbc(des)", ENCRYPT, des_cbc_enc_tv_template,
  1181. DES_CBC_ENC_TEST_VECTORS);
  1182. test_cipher("cbc(des)", DECRYPT, des_cbc_dec_tv_template,
  1183. DES_CBC_DEC_TEST_VECTORS);
  1184. break;
  1185. case 4:
  1186. test_cipher("ecb(des3_ede)", ENCRYPT, des3_ede_enc_tv_template,
  1187. DES3_EDE_ENC_TEST_VECTORS);
  1188. test_cipher("ecb(des3_ede)", DECRYPT, des3_ede_dec_tv_template,
  1189. DES3_EDE_DEC_TEST_VECTORS);
  1190. test_cipher("cbc(des3_ede)", ENCRYPT,
  1191. des3_ede_cbc_enc_tv_template,
  1192. DES3_EDE_CBC_ENC_TEST_VECTORS);
  1193. test_cipher("cbc(des3_ede)", DECRYPT,
  1194. des3_ede_cbc_dec_tv_template,
  1195. DES3_EDE_CBC_DEC_TEST_VECTORS);
  1196. break;
  1197. case 5:
  1198. test_hash("md4", md4_tv_template, MD4_TEST_VECTORS);
  1199. break;
  1200. case 6:
  1201. test_hash("sha256", sha256_tv_template, SHA256_TEST_VECTORS);
  1202. break;
  1203. case 7:
  1204. test_cipher("ecb(blowfish)", ENCRYPT, bf_enc_tv_template,
  1205. BF_ENC_TEST_VECTORS);
  1206. test_cipher("ecb(blowfish)", DECRYPT, bf_dec_tv_template,
  1207. BF_DEC_TEST_VECTORS);
  1208. test_cipher("cbc(blowfish)", ENCRYPT, bf_cbc_enc_tv_template,
  1209. BF_CBC_ENC_TEST_VECTORS);
  1210. test_cipher("cbc(blowfish)", DECRYPT, bf_cbc_dec_tv_template,
  1211. BF_CBC_DEC_TEST_VECTORS);
  1212. break;
  1213. case 8:
  1214. test_cipher("ecb(twofish)", ENCRYPT, tf_enc_tv_template,
  1215. TF_ENC_TEST_VECTORS);
  1216. test_cipher("ecb(twofish)", DECRYPT, tf_dec_tv_template,
  1217. TF_DEC_TEST_VECTORS);
  1218. test_cipher("cbc(twofish)", ENCRYPT, tf_cbc_enc_tv_template,
  1219. TF_CBC_ENC_TEST_VECTORS);
  1220. test_cipher("cbc(twofish)", DECRYPT, tf_cbc_dec_tv_template,
  1221. TF_CBC_DEC_TEST_VECTORS);
  1222. break;
  1223. case 9:
  1224. test_cipher("ecb(serpent)", ENCRYPT, serpent_enc_tv_template,
  1225. SERPENT_ENC_TEST_VECTORS);
  1226. test_cipher("ecb(serpent)", DECRYPT, serpent_dec_tv_template,
  1227. SERPENT_DEC_TEST_VECTORS);
  1228. break;
  1229. case 10:
  1230. test_cipher("ecb(aes)", ENCRYPT, aes_enc_tv_template,
  1231. AES_ENC_TEST_VECTORS);
  1232. test_cipher("ecb(aes)", DECRYPT, aes_dec_tv_template,
  1233. AES_DEC_TEST_VECTORS);
  1234. test_cipher("cbc(aes)", ENCRYPT, aes_cbc_enc_tv_template,
  1235. AES_CBC_ENC_TEST_VECTORS);
  1236. test_cipher("cbc(aes)", DECRYPT, aes_cbc_dec_tv_template,
  1237. AES_CBC_DEC_TEST_VECTORS);
  1238. test_cipher("lrw(aes)", ENCRYPT, aes_lrw_enc_tv_template,
  1239. AES_LRW_ENC_TEST_VECTORS);
  1240. test_cipher("lrw(aes)", DECRYPT, aes_lrw_dec_tv_template,
  1241. AES_LRW_DEC_TEST_VECTORS);
  1242. test_cipher("xts(aes)", ENCRYPT, aes_xts_enc_tv_template,
  1243. AES_XTS_ENC_TEST_VECTORS);
  1244. test_cipher("xts(aes)", DECRYPT, aes_xts_dec_tv_template,
  1245. AES_XTS_DEC_TEST_VECTORS);
  1246. test_cipher("rfc3686(ctr(aes))", ENCRYPT, aes_ctr_enc_tv_template,
  1247. AES_CTR_ENC_TEST_VECTORS);
  1248. test_cipher("rfc3686(ctr(aes))", DECRYPT, aes_ctr_dec_tv_template,
  1249. AES_CTR_DEC_TEST_VECTORS);
  1250. break;
  1251. case 11:
  1252. test_hash("sha384", sha384_tv_template, SHA384_TEST_VECTORS);
  1253. break;
  1254. case 12:
  1255. test_hash("sha512", sha512_tv_template, SHA512_TEST_VECTORS);
  1256. break;
  1257. case 13:
  1258. test_comp("deflate", deflate_comp_tv_template,
  1259. deflate_decomp_tv_template, DEFLATE_COMP_TEST_VECTORS,
  1260. DEFLATE_DECOMP_TEST_VECTORS);
  1261. break;
  1262. case 14:
  1263. test_cipher("ecb(cast5)", ENCRYPT, cast5_enc_tv_template,
  1264. CAST5_ENC_TEST_VECTORS);
  1265. test_cipher("ecb(cast5)", DECRYPT, cast5_dec_tv_template,
  1266. CAST5_DEC_TEST_VECTORS);
  1267. break;
  1268. case 15:
  1269. test_cipher("ecb(cast6)", ENCRYPT, cast6_enc_tv_template,
  1270. CAST6_ENC_TEST_VECTORS);
  1271. test_cipher("ecb(cast6)", DECRYPT, cast6_dec_tv_template,
  1272. CAST6_DEC_TEST_VECTORS);
  1273. break;
  1274. case 16:
  1275. test_cipher("ecb(arc4)", ENCRYPT, arc4_enc_tv_template,
  1276. ARC4_ENC_TEST_VECTORS);
  1277. test_cipher("ecb(arc4)", DECRYPT, arc4_dec_tv_template,
  1278. ARC4_DEC_TEST_VECTORS);
  1279. break;
  1280. case 17:
  1281. test_hash("michael_mic", michael_mic_tv_template, MICHAEL_MIC_TEST_VECTORS);
  1282. break;
  1283. case 18:
  1284. test_hash("crc32c", crc32c_tv_template, CRC32C_TEST_VECTORS);
  1285. break;
  1286. case 19:
  1287. test_cipher("ecb(tea)", ENCRYPT, tea_enc_tv_template,
  1288. TEA_ENC_TEST_VECTORS);
  1289. test_cipher("ecb(tea)", DECRYPT, tea_dec_tv_template,
  1290. TEA_DEC_TEST_VECTORS);
  1291. break;
  1292. case 20:
  1293. test_cipher("ecb(xtea)", ENCRYPT, xtea_enc_tv_template,
  1294. XTEA_ENC_TEST_VECTORS);
  1295. test_cipher("ecb(xtea)", DECRYPT, xtea_dec_tv_template,
  1296. XTEA_DEC_TEST_VECTORS);
  1297. break;
  1298. case 21:
  1299. test_cipher("ecb(khazad)", ENCRYPT, khazad_enc_tv_template,
  1300. KHAZAD_ENC_TEST_VECTORS);
  1301. test_cipher("ecb(khazad)", DECRYPT, khazad_dec_tv_template,
  1302. KHAZAD_DEC_TEST_VECTORS);
  1303. break;
  1304. case 22:
  1305. test_hash("wp512", wp512_tv_template, WP512_TEST_VECTORS);
  1306. break;
  1307. case 23:
  1308. test_hash("wp384", wp384_tv_template, WP384_TEST_VECTORS);
  1309. break;
  1310. case 24:
  1311. test_hash("wp256", wp256_tv_template, WP256_TEST_VECTORS);
  1312. break;
  1313. case 25:
  1314. test_cipher("ecb(tnepres)", ENCRYPT, tnepres_enc_tv_template,
  1315. TNEPRES_ENC_TEST_VECTORS);
  1316. test_cipher("ecb(tnepres)", DECRYPT, tnepres_dec_tv_template,
  1317. TNEPRES_DEC_TEST_VECTORS);
  1318. break;
  1319. case 26:
  1320. test_cipher("ecb(anubis)", ENCRYPT, anubis_enc_tv_template,
  1321. ANUBIS_ENC_TEST_VECTORS);
  1322. test_cipher("ecb(anubis)", DECRYPT, anubis_dec_tv_template,
  1323. ANUBIS_DEC_TEST_VECTORS);
  1324. test_cipher("cbc(anubis)", ENCRYPT, anubis_cbc_enc_tv_template,
  1325. ANUBIS_CBC_ENC_TEST_VECTORS);
  1326. test_cipher("cbc(anubis)", DECRYPT, anubis_cbc_dec_tv_template,
  1327. ANUBIS_CBC_ENC_TEST_VECTORS);
  1328. break;
  1329. case 27:
  1330. test_hash("tgr192", tgr192_tv_template, TGR192_TEST_VECTORS);
  1331. break;
  1332. case 28:
  1333. test_hash("tgr160", tgr160_tv_template, TGR160_TEST_VECTORS);
  1334. break;
  1335. case 29:
  1336. test_hash("tgr128", tgr128_tv_template, TGR128_TEST_VECTORS);
  1337. break;
  1338. case 30:
  1339. test_cipher("ecb(xeta)", ENCRYPT, xeta_enc_tv_template,
  1340. XETA_ENC_TEST_VECTORS);
  1341. test_cipher("ecb(xeta)", DECRYPT, xeta_dec_tv_template,
  1342. XETA_DEC_TEST_VECTORS);
  1343. break;
  1344. case 31:
  1345. test_cipher("pcbc(fcrypt)", ENCRYPT, fcrypt_pcbc_enc_tv_template,
  1346. FCRYPT_ENC_TEST_VECTORS);
  1347. test_cipher("pcbc(fcrypt)", DECRYPT, fcrypt_pcbc_dec_tv_template,
  1348. FCRYPT_DEC_TEST_VECTORS);
  1349. break;
  1350. case 32:
  1351. test_cipher("ecb(camellia)", ENCRYPT,
  1352. camellia_enc_tv_template,
  1353. CAMELLIA_ENC_TEST_VECTORS);
  1354. test_cipher("ecb(camellia)", DECRYPT,
  1355. camellia_dec_tv_template,
  1356. CAMELLIA_DEC_TEST_VECTORS);
  1357. test_cipher("cbc(camellia)", ENCRYPT,
  1358. camellia_cbc_enc_tv_template,
  1359. CAMELLIA_CBC_ENC_TEST_VECTORS);
  1360. test_cipher("cbc(camellia)", DECRYPT,
  1361. camellia_cbc_dec_tv_template,
  1362. CAMELLIA_CBC_DEC_TEST_VECTORS);
  1363. break;
  1364. case 33:
  1365. test_hash("sha224", sha224_tv_template, SHA224_TEST_VECTORS);
  1366. break;
  1367. case 34:
  1368. test_cipher("salsa20", ENCRYPT,
  1369. salsa20_stream_enc_tv_template,
  1370. SALSA20_STREAM_ENC_TEST_VECTORS);
  1371. break;
  1372. case 35:
  1373. test_aead("gcm(aes)", ENCRYPT, aes_gcm_enc_tv_template,
  1374. AES_GCM_ENC_TEST_VECTORS);
  1375. test_aead("gcm(aes)", DECRYPT, aes_gcm_dec_tv_template,
  1376. AES_GCM_DEC_TEST_VECTORS);
  1377. break;
  1378. case 36:
  1379. test_comp("lzo", lzo_comp_tv_template, lzo_decomp_tv_template,
  1380. LZO_COMP_TEST_VECTORS, LZO_DECOMP_TEST_VECTORS);
  1381. break;
  1382. case 37:
  1383. test_aead("ccm(aes)", ENCRYPT, aes_ccm_enc_tv_template,
  1384. AES_CCM_ENC_TEST_VECTORS);
  1385. test_aead("ccm(aes)", DECRYPT, aes_ccm_dec_tv_template,
  1386. AES_CCM_DEC_TEST_VECTORS);
  1387. break;
  1388. case 38:
  1389. test_cipher("cts(cbc(aes))", ENCRYPT, cts_mode_enc_tv_template,
  1390. CTS_MODE_ENC_TEST_VECTORS);
  1391. test_cipher("cts(cbc(aes))", DECRYPT, cts_mode_dec_tv_template,
  1392. CTS_MODE_DEC_TEST_VECTORS);
  1393. break;
  1394. case 39:
  1395. test_hash("rmd128", rmd128_tv_template, RMD128_TEST_VECTORS);
  1396. break;
  1397. case 40:
  1398. test_hash("rmd160", rmd160_tv_template, RMD160_TEST_VECTORS);
  1399. break;
  1400. case 41:
  1401. test_hash("rmd256", rmd256_tv_template, RMD256_TEST_VECTORS);
  1402. break;
  1403. case 42:
  1404. test_hash("rmd320", rmd320_tv_template, RMD320_TEST_VECTORS);
  1405. break;
  1406. case 100:
  1407. test_hash("hmac(md5)", hmac_md5_tv_template,
  1408. HMAC_MD5_TEST_VECTORS);
  1409. break;
  1410. case 101:
  1411. test_hash("hmac(sha1)", hmac_sha1_tv_template,
  1412. HMAC_SHA1_TEST_VECTORS);
  1413. break;
  1414. case 102:
  1415. test_hash("hmac(sha256)", hmac_sha256_tv_template,
  1416. HMAC_SHA256_TEST_VECTORS);
  1417. break;
  1418. case 103:
  1419. test_hash("hmac(sha384)", hmac_sha384_tv_template,
  1420. HMAC_SHA384_TEST_VECTORS);
  1421. break;
  1422. case 104:
  1423. test_hash("hmac(sha512)", hmac_sha512_tv_template,
  1424. HMAC_SHA512_TEST_VECTORS);
  1425. break;
  1426. case 105:
  1427. test_hash("hmac(sha224)", hmac_sha224_tv_template,
  1428. HMAC_SHA224_TEST_VECTORS);
  1429. break;
  1430. case 106:
  1431. test_hash("xcbc(aes)", aes_xcbc128_tv_template,
  1432. XCBC_AES_TEST_VECTORS);
  1433. break;
  1434. case 107:
  1435. test_hash("hmac(rmd128)", hmac_rmd128_tv_template,
  1436. HMAC_RMD128_TEST_VECTORS);
  1437. break;
  1438. case 108:
  1439. test_hash("hmac(rmd160)", hmac_rmd160_tv_template,
  1440. HMAC_RMD160_TEST_VECTORS);
  1441. break;
  1442. case 200:
  1443. test_cipher_speed("ecb(aes)", ENCRYPT, sec, NULL, 0,
  1444. speed_template_16_24_32);
  1445. test_cipher_speed("ecb(aes)", DECRYPT, sec, NULL, 0,
  1446. speed_template_16_24_32);
  1447. test_cipher_speed("cbc(aes)", ENCRYPT, sec, NULL, 0,
  1448. speed_template_16_24_32);
  1449. test_cipher_speed("cbc(aes)", DECRYPT, sec, NULL, 0,
  1450. speed_template_16_24_32);
  1451. test_cipher_speed("lrw(aes)", ENCRYPT, sec, NULL, 0,
  1452. speed_template_32_40_48);
  1453. test_cipher_speed("lrw(aes)", DECRYPT, sec, NULL, 0,
  1454. speed_template_32_40_48);
  1455. test_cipher_speed("xts(aes)", ENCRYPT, sec, NULL, 0,
  1456. speed_template_32_48_64);
  1457. test_cipher_speed("xts(aes)", DECRYPT, sec, NULL, 0,
  1458. speed_template_32_48_64);
  1459. break;
  1460. case 201:
  1461. test_cipher_speed("ecb(des3_ede)", ENCRYPT, sec,
  1462. des3_ede_enc_tv_template, DES3_EDE_ENC_TEST_VECTORS,
  1463. speed_template_24);
  1464. test_cipher_speed("ecb(des3_ede)", DECRYPT, sec,
  1465. des3_ede_enc_tv_template, DES3_EDE_ENC_TEST_VECTORS,
  1466. speed_template_24);
  1467. test_cipher_speed("cbc(des3_ede)", ENCRYPT, sec,
  1468. des3_ede_enc_tv_template, DES3_EDE_ENC_TEST_VECTORS,
  1469. speed_template_24);
  1470. test_cipher_speed("cbc(des3_ede)", DECRYPT, sec,
  1471. des3_ede_enc_tv_template, DES3_EDE_ENC_TEST_VECTORS,
  1472. speed_template_24);
  1473. break;
  1474. case 202:
  1475. test_cipher_speed("ecb(twofish)", ENCRYPT, sec, NULL, 0,
  1476. speed_template_16_24_32);
  1477. test_cipher_speed("ecb(twofish)", DECRYPT, sec, NULL, 0,
  1478. speed_template_16_24_32);
  1479. test_cipher_speed("cbc(twofish)", ENCRYPT, sec, NULL, 0,
  1480. speed_template_16_24_32);
  1481. test_cipher_speed("cbc(twofish)", DECRYPT, sec, NULL, 0,
  1482. speed_template_16_24_32);
  1483. break;
  1484. case 203:
  1485. test_cipher_speed("ecb(blowfish)", ENCRYPT, sec, NULL, 0,
  1486. speed_template_8_32);
  1487. test_cipher_speed("ecb(blowfish)", DECRYPT, sec, NULL, 0,
  1488. speed_template_8_32);
  1489. test_cipher_speed("cbc(blowfish)", ENCRYPT, sec, NULL, 0,
  1490. speed_template_8_32);
  1491. test_cipher_speed("cbc(blowfish)", DECRYPT, sec, NULL, 0,
  1492. speed_template_8_32);
  1493. break;
  1494. case 204:
  1495. test_cipher_speed("ecb(des)", ENCRYPT, sec, NULL, 0,
  1496. speed_template_8);
  1497. test_cipher_speed("ecb(des)", DECRYPT, sec, NULL, 0,
  1498. speed_template_8);
  1499. test_cipher_speed("cbc(des)", ENCRYPT, sec, NULL, 0,
  1500. speed_template_8);
  1501. test_cipher_speed("cbc(des)", DECRYPT, sec, NULL, 0,
  1502. speed_template_8);
  1503. break;
  1504. case 205:
  1505. test_cipher_speed("ecb(camellia)", ENCRYPT, sec, NULL, 0,
  1506. speed_template_16_24_32);
  1507. test_cipher_speed("ecb(camellia)", DECRYPT, sec, NULL, 0,
  1508. speed_template_16_24_32);
  1509. test_cipher_speed("cbc(camellia)", ENCRYPT, sec, NULL, 0,
  1510. speed_template_16_24_32);
  1511. test_cipher_speed("cbc(camellia)", DECRYPT, sec, NULL, 0,
  1512. speed_template_16_24_32);
  1513. break;
  1514. case 206:
  1515. test_cipher_speed("salsa20", ENCRYPT, sec, NULL, 0,
  1516. speed_template_16_32);
  1517. break;
  1518. case 300:
  1519. /* fall through */
  1520. case 301:
  1521. test_hash_speed("md4", sec, generic_hash_speed_template);
  1522. if (mode > 300 && mode < 400) break;
  1523. case 302:
  1524. test_hash_speed("md5", sec, generic_hash_speed_template);
  1525. if (mode > 300 && mode < 400) break;
  1526. case 303:
  1527. test_hash_speed("sha1", sec, generic_hash_speed_template);
  1528. if (mode > 300 && mode < 400) break;
  1529. case 304:
  1530. test_hash_speed("sha256", sec, generic_hash_speed_template);
  1531. if (mode > 300 && mode < 400) break;
  1532. case 305:
  1533. test_hash_speed("sha384", sec, generic_hash_speed_template);
  1534. if (mode > 300 && mode < 400) break;
  1535. case 306:
  1536. test_hash_speed("sha512", sec, generic_hash_speed_template);
  1537. if (mode > 300 && mode < 400) break;
  1538. case 307:
  1539. test_hash_speed("wp256", sec, generic_hash_speed_template);
  1540. if (mode > 300 && mode < 400) break;
  1541. case 308:
  1542. test_hash_speed("wp384", sec, generic_hash_speed_template);
  1543. if (mode > 300 && mode < 400) break;
  1544. case 309:
  1545. test_hash_speed("wp512", sec, generic_hash_speed_template);
  1546. if (mode > 300 && mode < 400) break;
  1547. case 310:
  1548. test_hash_speed("tgr128", sec, generic_hash_speed_template);
  1549. if (mode > 300 && mode < 400) break;
  1550. case 311:
  1551. test_hash_speed("tgr160", sec, generic_hash_speed_template);
  1552. if (mode > 300 && mode < 400) break;
  1553. case 312:
  1554. test_hash_speed("tgr192", sec, generic_hash_speed_template);
  1555. if (mode > 300 && mode < 400) break;
  1556. case 313:
  1557. test_hash_speed("sha224", sec, generic_hash_speed_template);
  1558. if (mode > 300 && mode < 400) break;
  1559. case 314:
  1560. test_hash_speed("rmd128", sec, generic_hash_speed_template);
  1561. if (mode > 300 && mode < 400) break;
  1562. case 315:
  1563. test_hash_speed("rmd160", sec, generic_hash_speed_template);
  1564. if (mode > 300 && mode < 400) break;
  1565. case 316:
  1566. test_hash_speed("rmd256", sec, generic_hash_speed_template);
  1567. if (mode > 300 && mode < 400) break;
  1568. case 317:
  1569. test_hash_speed("rmd320", sec, generic_hash_speed_template);
  1570. if (mode > 300 && mode < 400) break;
  1571. case 399:
  1572. break;
  1573. case 1000:
  1574. test_available();
  1575. break;
  1576. default:
  1577. /* useful for debugging */
  1578. printk("not testing anything\n");
  1579. break;
  1580. }
  1581. }
  1582. static int __init tcrypt_mod_init(void)
  1583. {
  1584. int err = -ENOMEM;
  1585. int i;
  1586. for (i = 0; i < TVMEMSIZE; i++) {
  1587. tvmem[i] = (void *)__get_free_page(GFP_KERNEL);
  1588. if (!tvmem[i])
  1589. goto err_free_tv;
  1590. }
  1591. for (i = 0; i < XBUFSIZE; i++) {
  1592. xbuf[i] = (void *)__get_free_page(GFP_KERNEL);
  1593. if (!xbuf[i])
  1594. goto err_free_xbuf;
  1595. }
  1596. for (i = 0; i < XBUFSIZE; i++) {
  1597. axbuf[i] = (void *)__get_free_page(GFP_KERNEL);
  1598. if (!axbuf[i])
  1599. goto err_free_axbuf;
  1600. }
  1601. do_test();
  1602. /* We intentionaly return -EAGAIN to prevent keeping
  1603. * the module. It does all its work from init()
  1604. * and doesn't offer any runtime functionality
  1605. * => we don't need it in the memory, do we?
  1606. * -- mludvig
  1607. */
  1608. err = -EAGAIN;
  1609. err_free_axbuf:
  1610. for (i = 0; i < XBUFSIZE && axbuf[i]; i++)
  1611. free_page((unsigned long)axbuf[i]);
  1612. err_free_xbuf:
  1613. for (i = 0; i < XBUFSIZE && xbuf[i]; i++)
  1614. free_page((unsigned long)xbuf[i]);
  1615. err_free_tv:
  1616. for (i = 0; i < TVMEMSIZE && tvmem[i]; i++)
  1617. free_page((unsigned long)tvmem[i]);
  1618. return err;
  1619. }
  1620. /*
  1621. * If an init function is provided, an exit function must also be provided
  1622. * to allow module unload.
  1623. */
  1624. static void __exit tcrypt_mod_fini(void) { }
  1625. module_init(tcrypt_mod_init);
  1626. module_exit(tcrypt_mod_fini);
  1627. module_param(mode, int, 0);
  1628. module_param(sec, uint, 0);
  1629. MODULE_PARM_DESC(sec, "Length in seconds of speed tests "
  1630. "(defaults to zero which uses CPU cycles instead)");
  1631. MODULE_LICENSE("GPL");
  1632. MODULE_DESCRIPTION("Quick & dirty crypto testing module");
  1633. MODULE_AUTHOR("James Morris <jmorris@intercode.com.au>");