module_hooks.c 22 KB

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  1. /* module_hooks.c -- module load/unload hooks for libwolfssl.ko
  2. *
  3. * Copyright (C) 2006-2021 wolfSSL Inc.
  4. *
  5. * This file is part of wolfSSL.
  6. *
  7. * wolfSSL is free software; you can redistribute it and/or modify
  8. * it under the terms of the GNU General Public License as published by
  9. * the Free Software Foundation; either version 2 of the License, or
  10. * (at your option) any later version.
  11. *
  12. * wolfSSL is distributed in the hope that it will be useful,
  13. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  14. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  15. * GNU General Public License for more details.
  16. *
  17. * You should have received a copy of the GNU General Public License
  18. * along with this program; if not, write to the Free Software
  19. * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1335, USA
  20. */
  21. #ifndef WOLFSSL_LICENSE
  22. #define WOLFSSL_LICENSE "GPL v2"
  23. #endif
  24. #define FIPS_NO_WRAPPERS
  25. #define WOLFSSL_NEED_LINUX_CURRENT
  26. #ifdef HAVE_CONFIG_H
  27. #include <config.h>
  28. #endif
  29. #include <wolfssl/wolfcrypt/settings.h>
  30. #include <wolfssl/wolfcrypt/error-crypt.h>
  31. #include <wolfssl/ssl.h>
  32. #ifdef HAVE_FIPS
  33. #include <wolfssl/wolfcrypt/fips_test.h>
  34. #endif
  35. #ifndef NO_CRYPT_TEST
  36. #include <wolfcrypt/test/test.h>
  37. #include <linux/delay.h>
  38. #endif
  39. static int libwolfssl_cleanup(void) {
  40. int ret;
  41. #ifdef WOLFCRYPT_ONLY
  42. ret = wolfCrypt_Cleanup();
  43. if (ret != 0)
  44. pr_err("wolfCrypt_Cleanup() failed: %s\n", wc_GetErrorString(ret));
  45. else
  46. pr_info("wolfCrypt " LIBWOLFSSL_VERSION_STRING " cleanup complete.\n");
  47. #else
  48. ret = wolfSSL_Cleanup();
  49. if (ret != WOLFSSL_SUCCESS)
  50. pr_err("wolfSSL_Cleanup() failed: %s\n", wc_GetErrorString(ret));
  51. else
  52. pr_info("wolfSSL " LIBWOLFSSL_VERSION_STRING " cleanup complete.\n");
  53. #endif
  54. return ret;
  55. }
  56. #ifdef HAVE_LINUXKM_PIE_SUPPORT
  57. extern int wolfCrypt_PIE_first_function(void);
  58. extern int wolfCrypt_PIE_last_function(void);
  59. extern const unsigned int wolfCrypt_PIE_rodata_start[];
  60. extern const unsigned int wolfCrypt_PIE_rodata_end[];
  61. /* cheap portable ad-hoc hash function to confirm bitwise stability of the PIE
  62. * binary image.
  63. */
  64. static unsigned int hash_span(char *start, char *end) {
  65. unsigned int sum = 1;
  66. while (start < end) {
  67. unsigned int rotate_by;
  68. sum ^= *start++;
  69. rotate_by = (sum ^ (sum >> 5)) & 31;
  70. sum = (sum << rotate_by) | (sum >> (32 - rotate_by));
  71. }
  72. return sum;
  73. }
  74. #ifdef USE_WOLFSSL_LINUXKM_PIE_REDIRECT_TABLE
  75. extern struct wolfssl_linuxkm_pie_redirect_table wolfssl_linuxkm_pie_redirect_table;
  76. static int set_up_wolfssl_linuxkm_pie_redirect_table(void);
  77. #endif /* USE_WOLFSSL_LINUXKM_PIE_REDIRECT_TABLE */
  78. #endif /* HAVE_LINUXKM_PIE_SUPPORT */
  79. #ifdef HAVE_FIPS
  80. static void lkmFipsCb(int ok, int err, const char* hash)
  81. {
  82. if ((! ok) || (err != 0))
  83. pr_err("libwolfssl FIPS error: %s\n", wc_GetErrorString(err));
  84. if (err == IN_CORE_FIPS_E) {
  85. pr_err("In-core integrity hash check failure.\n"
  86. "Update verifyCore[] in fips_test.c with new hash \"%s\" and rebuild.\n",
  87. hash ? hash : "<null>");
  88. }
  89. }
  90. #endif
  91. #ifdef WOLFCRYPT_FIPS_CORE_DYNAMIC_HASH_VALUE
  92. #ifndef CONFIG_MODULE_SIG
  93. #error WOLFCRYPT_FIPS_CORE_DYNAMIC_HASH_VALUE requires a CONFIG_MODULE_SIG kernel.
  94. #endif
  95. static int updateFipsHash(void);
  96. #endif
  97. #if LINUX_VERSION_CODE >= KERNEL_VERSION(5, 0, 0)
  98. static int __init wolfssl_init(void)
  99. #else
  100. static int wolfssl_init(void)
  101. #endif
  102. {
  103. int ret;
  104. #ifdef WOLFCRYPT_FIPS_CORE_DYNAMIC_HASH_VALUE
  105. if (THIS_MODULE->sig_ok == false) {
  106. pr_err("wolfSSL module load aborted -- bad or missing module signature with FIPS dynamic hash.\n");
  107. return -ECANCELED;
  108. }
  109. ret = updateFipsHash();
  110. if (ret < 0) {
  111. pr_err("wolfSSL module load aborted -- updateFipsHash: %s\n",wc_GetErrorString(ret));
  112. return -ECANCELED;
  113. }
  114. #endif
  115. #ifdef USE_WOLFSSL_LINUXKM_PIE_REDIRECT_TABLE
  116. ret = set_up_wolfssl_linuxkm_pie_redirect_table();
  117. if (ret < 0)
  118. return ret;
  119. #endif
  120. #ifdef HAVE_LINUXKM_PIE_SUPPORT
  121. #if LINUX_VERSION_CODE >= KERNEL_VERSION(4, 5, 0)
  122. #define THIS_MODULE_BASE (THIS_MODULE->core_layout.base)
  123. #define THIS_MODULE_TEXT_SIZE (THIS_MODULE->core_layout.text_size)
  124. #define THIS_MODULE_RO_SIZE (THIS_MODULE->core_layout.ro_size)
  125. #else
  126. #define THIS_MODULE_BASE (THIS_MODULE->module_core)
  127. #define THIS_MODULE_TEXT_SIZE (THIS_MODULE->core_text_size)
  128. #define THIS_MODULE_RO_SIZE (THIS_MODULE->core_ro_size)
  129. #endif
  130. {
  131. char *pie_text_start = (char *)wolfCrypt_PIE_first_function;
  132. char *pie_text_end = (char *)wolfCrypt_PIE_last_function;
  133. char *pie_rodata_start = (char *)wolfCrypt_PIE_rodata_start;
  134. char *pie_rodata_end = (char *)wolfCrypt_PIE_rodata_end;
  135. unsigned int text_hash, rodata_hash;
  136. if ((pie_text_start < pie_text_end) &&
  137. (pie_text_start >= (char *)THIS_MODULE_BASE) &&
  138. (pie_text_end - (char *)THIS_MODULE_BASE <= THIS_MODULE_TEXT_SIZE))
  139. {
  140. text_hash = hash_span(pie_text_start, pie_text_end);
  141. } else {
  142. pr_info("out-of-bounds PIE fenceposts! pie_text_start=%px pie_text_end=%px (span=%lu)"
  143. " core_layout.base=%px text_end=%px\n",
  144. pie_text_start,
  145. pie_text_end,
  146. pie_text_end-pie_text_start,
  147. THIS_MODULE_BASE,
  148. (char *)THIS_MODULE_BASE + THIS_MODULE_TEXT_SIZE);
  149. text_hash = 0;
  150. }
  151. if ((pie_rodata_start < pie_rodata_end) &&
  152. (pie_rodata_start >= (char *)THIS_MODULE_BASE + THIS_MODULE_TEXT_SIZE) &&
  153. (pie_rodata_end - (char *)THIS_MODULE_BASE <= THIS_MODULE_RO_SIZE))
  154. {
  155. rodata_hash = hash_span(pie_rodata_start, pie_rodata_end);
  156. } else {
  157. pr_info("out-of-bounds PIE fenceposts! pie_rodata_start=%px pie_rodata_end=%px (span=%lu)"
  158. " core_layout.base+core_layout.text_size=%px rodata_end=%px\n",
  159. pie_rodata_start,
  160. pie_rodata_end,
  161. pie_rodata_end-pie_rodata_start,
  162. (char *)THIS_MODULE_BASE + THIS_MODULE_TEXT_SIZE,
  163. (char *)THIS_MODULE_BASE + THIS_MODULE_RO_SIZE);
  164. rodata_hash = 0;
  165. }
  166. /* note, "%pK" conceals the actual layout information. "%px" exposes
  167. * the true module start address, which is potentially useful to an
  168. * attacker.
  169. */
  170. pr_info("wolfCrypt container hashes (spans): %x (%lu) %x (%lu), module base %pK\n",
  171. text_hash, pie_text_end-pie_text_start,
  172. rodata_hash, pie_rodata_end-pie_rodata_start,
  173. THIS_MODULE_BASE);
  174. }
  175. #endif /* HAVE_LINUXKM_PIE_SUPPORT */
  176. #ifdef HAVE_FIPS
  177. ret = wolfCrypt_SetCb_fips(lkmFipsCb);
  178. if (ret != 0) {
  179. pr_err("wolfCrypt_SetCb_fips() failed: %s\n", wc_GetErrorString(ret));
  180. return -ECANCELED;
  181. }
  182. fipsEntry();
  183. ret = wolfCrypt_GetStatus_fips();
  184. if (ret != 0) {
  185. pr_err("wolfCrypt_GetStatus_fips() failed: %s\n", wc_GetErrorString(ret));
  186. if (ret == IN_CORE_FIPS_E) {
  187. const char *newhash = wolfCrypt_GetCoreHash_fips();
  188. pr_err("Update verifyCore[] in fips_test.c with new hash \"%s\" and rebuild.\n",
  189. newhash ? newhash : "<null>");
  190. }
  191. return -ECANCELED;
  192. }
  193. pr_info("wolfCrypt FIPS ["
  194. #if defined(HAVE_FIPS_VERSION) && (HAVE_FIPS_VERSION == 3)
  195. "ready"
  196. #elif defined(HAVE_FIPS_VERSION) && (HAVE_FIPS_VERSION == 2) \
  197. && defined(WOLFCRYPT_FIPS_RAND)
  198. "140-2 rand"
  199. #elif defined(HAVE_FIPS_VERSION) && (HAVE_FIPS_VERSION == 2)
  200. "140-2"
  201. #else
  202. "140"
  203. #endif
  204. "] POST succeeded.\n");
  205. #endif /* HAVE_FIPS */
  206. #ifdef WOLFCRYPT_ONLY
  207. ret = wolfCrypt_Init();
  208. if (ret != 0) {
  209. pr_err("wolfCrypt_Init() failed: %s\n", wc_GetErrorString(ret));
  210. return -ECANCELED;
  211. }
  212. #else
  213. ret = wolfSSL_Init();
  214. if (ret != WOLFSSL_SUCCESS) {
  215. pr_err("wolfSSL_Init() failed: %s\n", wc_GetErrorString(ret));
  216. return -ECANCELED;
  217. }
  218. #endif
  219. #ifndef NO_CRYPT_TEST
  220. #ifdef WC_RNG_SEED_CB
  221. ret = wc_SetSeed_Cb(wc_GenerateSeed);
  222. if (ret == 0)
  223. #endif
  224. {
  225. ret = wolfcrypt_test(NULL);
  226. }
  227. if (ret < 0) {
  228. pr_err("wolfcrypt self-test failed with return code %d.\n", ret);
  229. (void)libwolfssl_cleanup();
  230. msleep(10);
  231. return -ECANCELED;
  232. }
  233. pr_info("wolfCrypt self-test passed.\n");
  234. #endif
  235. #ifdef WOLFCRYPT_ONLY
  236. pr_info("wolfCrypt " LIBWOLFSSL_VERSION_STRING " loaded%s"
  237. ".\nSee https://www.wolfssl.com/ for more information.\n"
  238. "wolfCrypt Copyright (C) 2006-present wolfSSL Inc. Licensed under " WOLFSSL_LICENSE ".\n",
  239. #ifdef CONFIG_MODULE_SIG
  240. THIS_MODULE->sig_ok ? " with valid module signature" : " without valid module signature"
  241. #else
  242. ""
  243. #endif
  244. );
  245. #else
  246. pr_info("wolfSSL " LIBWOLFSSL_VERSION_STRING " loaded%s"
  247. ".\nSee https://www.wolfssl.com/ for more information.\n"
  248. "wolfSSL Copyright (C) 2006-present wolfSSL Inc. Licensed under " WOLFSSL_LICENSE ".\n",
  249. #ifdef CONFIG_MODULE_SIG
  250. THIS_MODULE->sig_ok ? " with valid module signature" : " without valid module signature"
  251. #else
  252. ""
  253. #endif
  254. );
  255. #endif
  256. return 0;
  257. }
  258. module_init(wolfssl_init);
  259. #if LINUX_VERSION_CODE >= KERNEL_VERSION(5, 0, 0)
  260. static void __exit wolfssl_exit(void)
  261. #else
  262. static void wolfssl_exit(void)
  263. #endif
  264. {
  265. (void)libwolfssl_cleanup();
  266. return;
  267. }
  268. module_exit(wolfssl_exit);
  269. MODULE_LICENSE(WOLFSSL_LICENSE);
  270. MODULE_AUTHOR("https://www.wolfssl.com/");
  271. MODULE_DESCRIPTION("libwolfssl cryptographic and protocol facilities");
  272. MODULE_VERSION(LIBWOLFSSL_VERSION_STRING);
  273. #ifdef USE_WOLFSSL_LINUXKM_PIE_REDIRECT_TABLE
  274. /* get_current() is an inline or macro, depending on the target -- sidestep the whole issue with a wrapper func. */
  275. static struct task_struct *my_get_current_thread(void) {
  276. return get_current();
  277. }
  278. /* ditto for preempt_count(). */
  279. static int my_preempt_count(void) {
  280. return preempt_count();
  281. }
  282. #if defined(WOLFSSL_LINUXKM_SIMD_X86) && (LINUX_VERSION_CODE < KERNEL_VERSION(5, 14, 0))
  283. static int my_copy_fpregs_to_fpstate(struct fpu *fpu) {
  284. return copy_fpregs_to_fpstate(fpu);
  285. }
  286. static void my_copy_kernel_to_fpregs(union fpregs_state *fpstate) {
  287. copy_kernel_to_fpregs(fpstate);
  288. }
  289. #endif
  290. static int set_up_wolfssl_linuxkm_pie_redirect_table(void) {
  291. memset(
  292. &wolfssl_linuxkm_pie_redirect_table,
  293. 0,
  294. sizeof wolfssl_linuxkm_pie_redirect_table);
  295. #ifndef __ARCH_MEMCMP_NO_REDIRECT
  296. wolfssl_linuxkm_pie_redirect_table.memcmp = memcmp;
  297. #endif
  298. #ifndef __ARCH_MEMCPY_NO_REDIRECT
  299. wolfssl_linuxkm_pie_redirect_table.memcpy = memcpy;
  300. #endif
  301. #ifndef __ARCH_MEMSET_NO_REDIRECT
  302. wolfssl_linuxkm_pie_redirect_table.memset = memset;
  303. #endif
  304. #ifndef __ARCH_MEMMOVE_NO_REDIRECT
  305. wolfssl_linuxkm_pie_redirect_table.memmove = memmove;
  306. #endif
  307. #ifndef __ARCH_STRNCMP_NO_REDIRECT
  308. wolfssl_linuxkm_pie_redirect_table.strncmp = strncmp;
  309. #endif
  310. #ifndef __ARCH_STRLEN_NO_REDIRECT
  311. wolfssl_linuxkm_pie_redirect_table.strlen = strlen;
  312. #endif
  313. #ifndef __ARCH_STRSTR_NO_REDIRECT
  314. wolfssl_linuxkm_pie_redirect_table.strstr = strstr;
  315. #endif
  316. #ifndef __ARCH_STRNCPY_NO_REDIRECT
  317. wolfssl_linuxkm_pie_redirect_table.strncpy = strncpy;
  318. #endif
  319. #ifndef __ARCH_STRNCAT_NO_REDIRECT
  320. wolfssl_linuxkm_pie_redirect_table.strncat = strncat;
  321. #endif
  322. #ifndef __ARCH_STRNCASECMP_NO_REDIRECT
  323. wolfssl_linuxkm_pie_redirect_table.strncasecmp = strncasecmp;
  324. #endif
  325. wolfssl_linuxkm_pie_redirect_table.kstrtoll = kstrtoll;
  326. #if LINUX_VERSION_CODE >= KERNEL_VERSION(5, 15, 0)
  327. wolfssl_linuxkm_pie_redirect_table._printk = _printk;
  328. #else
  329. wolfssl_linuxkm_pie_redirect_table.printk = printk;
  330. #endif
  331. wolfssl_linuxkm_pie_redirect_table.snprintf = snprintf;
  332. wolfssl_linuxkm_pie_redirect_table._ctype = _ctype;
  333. wolfssl_linuxkm_pie_redirect_table.kmalloc = kmalloc;
  334. wolfssl_linuxkm_pie_redirect_table.kfree = kfree;
  335. wolfssl_linuxkm_pie_redirect_table.ksize = ksize;
  336. wolfssl_linuxkm_pie_redirect_table.krealloc = krealloc;
  337. #ifdef HAVE_KVMALLOC
  338. wolfssl_linuxkm_pie_redirect_table.kvmalloc_node = kvmalloc_node;
  339. wolfssl_linuxkm_pie_redirect_table.kvfree = kvfree;
  340. #endif
  341. wolfssl_linuxkm_pie_redirect_table.is_vmalloc_addr = is_vmalloc_addr;
  342. wolfssl_linuxkm_pie_redirect_table.kmem_cache_alloc_trace =
  343. kmem_cache_alloc_trace;
  344. wolfssl_linuxkm_pie_redirect_table.kmalloc_order_trace =
  345. kmalloc_order_trace;
  346. wolfssl_linuxkm_pie_redirect_table.get_random_bytes = get_random_bytes;
  347. #if LINUX_VERSION_CODE < KERNEL_VERSION(4, 0, 0)
  348. wolfssl_linuxkm_pie_redirect_table.getnstimeofday =
  349. getnstimeofday;
  350. #elif LINUX_VERSION_CODE < KERNEL_VERSION(5, 0, 0)
  351. wolfssl_linuxkm_pie_redirect_table.current_kernel_time64 =
  352. current_kernel_time64;
  353. #else
  354. wolfssl_linuxkm_pie_redirect_table.ktime_get_coarse_real_ts64 =
  355. ktime_get_coarse_real_ts64;
  356. #endif
  357. wolfssl_linuxkm_pie_redirect_table.get_current = my_get_current_thread;
  358. wolfssl_linuxkm_pie_redirect_table.preempt_count = my_preempt_count;
  359. #ifdef WOLFSSL_LINUXKM_SIMD_X86
  360. wolfssl_linuxkm_pie_redirect_table.irq_fpu_usable = irq_fpu_usable;
  361. #ifdef kernel_fpu_begin
  362. wolfssl_linuxkm_pie_redirect_table.kernel_fpu_begin_mask =
  363. kernel_fpu_begin_mask;
  364. #else
  365. wolfssl_linuxkm_pie_redirect_table.kernel_fpu_begin =
  366. kernel_fpu_begin;
  367. #endif
  368. wolfssl_linuxkm_pie_redirect_table.kernel_fpu_end = kernel_fpu_end;
  369. #if LINUX_VERSION_CODE < KERNEL_VERSION(5, 14, 0)
  370. wolfssl_linuxkm_pie_redirect_table.copy_fpregs_to_fpstate = my_copy_fpregs_to_fpstate;
  371. wolfssl_linuxkm_pie_redirect_table.copy_kernel_to_fpregs = my_copy_kernel_to_fpregs;
  372. #else
  373. wolfssl_linuxkm_pie_redirect_table.save_fpregs_to_fpstate = save_fpregs_to_fpstate;
  374. wolfssl_linuxkm_pie_redirect_table.__restore_fpregs_from_fpstate = __restore_fpregs_from_fpstate;
  375. wolfssl_linuxkm_pie_redirect_table.xfeatures_mask_all = &xfeatures_mask_all;
  376. #endif
  377. wolfssl_linuxkm_pie_redirect_table.cpu_number = &cpu_number;
  378. wolfssl_linuxkm_pie_redirect_table.nr_cpu_ids = &nr_cpu_ids;
  379. #endif
  380. wolfssl_linuxkm_pie_redirect_table.__mutex_init = __mutex_init;
  381. #if LINUX_VERSION_CODE < KERNEL_VERSION(4, 0, 0)
  382. wolfssl_linuxkm_pie_redirect_table.mutex_lock_nested = mutex_lock_nested;
  383. #else
  384. wolfssl_linuxkm_pie_redirect_table.mutex_lock = mutex_lock;
  385. #endif
  386. wolfssl_linuxkm_pie_redirect_table.mutex_unlock = mutex_unlock;
  387. #if LINUX_VERSION_CODE < KERNEL_VERSION(4, 0, 0)
  388. wolfssl_linuxkm_pie_redirect_table.mutex_destroy = mutex_destroy;
  389. #endif
  390. #ifdef HAVE_FIPS
  391. wolfssl_linuxkm_pie_redirect_table.wolfCrypt_FIPS_first =
  392. wolfCrypt_FIPS_first;
  393. wolfssl_linuxkm_pie_redirect_table.wolfCrypt_FIPS_last =
  394. wolfCrypt_FIPS_last;
  395. #endif
  396. #if !defined(WOLFCRYPT_ONLY) && !defined(NO_CERTS)
  397. wolfssl_linuxkm_pie_redirect_table.GetCA = GetCA;
  398. #ifndef NO_SKID
  399. wolfssl_linuxkm_pie_redirect_table.GetCAByName = GetCAByName;
  400. #endif
  401. #endif
  402. /* runtime assert that the table has no null slots after initialization. */
  403. {
  404. unsigned long *i;
  405. for (i = (unsigned long *)&wolfssl_linuxkm_pie_redirect_table;
  406. i < (unsigned long *)&wolfssl_linuxkm_pie_redirect_table._last_slot;
  407. ++i)
  408. if (*i == 0) {
  409. pr_err("wolfCrypt container redirect table initialization was incomplete.\n");
  410. return -EFAULT;
  411. }
  412. }
  413. return 0;
  414. }
  415. #endif /* USE_WOLFSSL_LINUXKM_PIE_REDIRECT_TABLE */
  416. #ifdef WOLFCRYPT_FIPS_CORE_DYNAMIC_HASH_VALUE
  417. #include <wolfssl/wolfcrypt/coding.h>
  418. PRAGMA_GCC_DIAG_PUSH;
  419. PRAGMA_GCC("GCC diagnostic ignored \"-Wnested-externs\"");
  420. PRAGMA_GCC("GCC diagnostic ignored \"-Wpointer-arith\"");
  421. #include <crypto/hash.h>
  422. PRAGMA_GCC_DIAG_POP;
  423. extern char verifyCore[WC_SHA256_DIGEST_SIZE*2 + 1];
  424. extern const char coreKey[WC_SHA256_DIGEST_SIZE*2 + 1];
  425. extern const unsigned int wolfCrypt_FIPS_ro_start[];
  426. extern const unsigned int wolfCrypt_FIPS_ro_end[];
  427. #define FIPS_IN_CORE_KEY_SZ 32
  428. #define FIPS_IN_CORE_VERIFY_SZ FIPS_IN_CORE_KEY_SZ
  429. typedef int (*fips_address_function)(void);
  430. #define MAX_FIPS_DATA_SZ 100000
  431. #define MAX_FIPS_CODE_SZ 1000000
  432. extern int GenBase16_Hash(const byte* in, int length, char* out, int outSz);
  433. static int updateFipsHash(void)
  434. {
  435. struct crypto_shash *tfm = NULL;
  436. struct shash_desc *desc = NULL;
  437. word32 verifySz = FIPS_IN_CORE_VERIFY_SZ;
  438. word32 binCoreSz = FIPS_IN_CORE_KEY_SZ;
  439. int ret;
  440. byte *hash = NULL;
  441. char *base16_hash = NULL;
  442. byte *binCoreKey = NULL;
  443. byte *binVerify = NULL;
  444. fips_address_function first = wolfCrypt_FIPS_first;
  445. fips_address_function last = wolfCrypt_FIPS_last;
  446. char* start = (char*)wolfCrypt_FIPS_ro_start;
  447. char* end = (char*)wolfCrypt_FIPS_ro_end;
  448. unsigned long code_sz = (unsigned long)last - (unsigned long)first;
  449. unsigned long data_sz = (unsigned long)end - (unsigned long)start;
  450. if (data_sz == 0 || data_sz > MAX_FIPS_DATA_SZ)
  451. return BAD_FUNC_ARG; /* bad fips data size */
  452. if (code_sz == 0 || code_sz > MAX_FIPS_CODE_SZ)
  453. return BAD_FUNC_ARG; /* bad fips code size */
  454. hash = XMALLOC(WC_SHA256_DIGEST_SIZE, 0, DYNAMIC_TYPE_TMP_BUFFER);
  455. if (hash == NULL) {
  456. ret = MEMORY_E;
  457. goto out;
  458. }
  459. base16_hash = XMALLOC(WC_SHA256_DIGEST_SIZE*2 + 1, 0, DYNAMIC_TYPE_TMP_BUFFER);
  460. if (base16_hash == NULL) {
  461. ret = MEMORY_E;
  462. goto out;
  463. }
  464. binCoreKey = XMALLOC(binCoreSz, 0, DYNAMIC_TYPE_TMP_BUFFER);
  465. if (binCoreKey == NULL) {
  466. ret = MEMORY_E;
  467. goto out;
  468. }
  469. binVerify = XMALLOC(verifySz, 0, DYNAMIC_TYPE_TMP_BUFFER);
  470. if (binVerify == NULL) {
  471. ret = MEMORY_E;
  472. goto out;
  473. }
  474. {
  475. word32 base16_out_len = binCoreSz;
  476. ret = Base16_Decode((const byte *)coreKey, sizeof coreKey - 1, binCoreKey, &base16_out_len);
  477. if (ret != 0) {
  478. pr_err("Base16_Decode for coreKey: %s\n", wc_GetErrorString(ret));
  479. goto out;
  480. }
  481. if (base16_out_len != binCoreSz) {
  482. pr_err("unexpected output length %u for coreKey from Base16_Decode.\n",base16_out_len);
  483. ret = BAD_STATE_E;
  484. goto out;
  485. }
  486. }
  487. tfm = crypto_alloc_shash("hmac(sha256)", 0, 0);
  488. if (IS_ERR(tfm)) {
  489. if (PTR_ERR(tfm) == -ENOMEM) {
  490. pr_err("crypto_alloc_shash failed: out of memory\n");
  491. ret = MEMORY_E;
  492. } else if (PTR_ERR(tfm) == -ENOENT) {
  493. pr_err("crypto_alloc_shash failed: kernel is missing hmac(sha256) implementation\n");
  494. pr_err("check for CONFIG_CRYPTO_SHA256 and CONFIG_CRYPTO_HMAC.\n");
  495. ret = NOT_COMPILED_IN;
  496. } else {
  497. pr_err("crypto_alloc_shash failed with ret %ld\n",PTR_ERR(tfm));
  498. ret = HASH_TYPE_E;
  499. }
  500. tfm = NULL;
  501. goto out;
  502. }
  503. {
  504. size_t desc_size = crypto_shash_descsize(tfm) + sizeof *desc;
  505. desc = XMALLOC(desc_size, NULL, DYNAMIC_TYPE_TMP_BUFFER);
  506. if (desc == NULL) {
  507. pr_err("failed allocating desc.");
  508. ret = MEMORY_E;
  509. goto out;
  510. }
  511. XMEMSET(desc, 0, desc_size);
  512. }
  513. ret = crypto_shash_setkey(tfm, binCoreKey, binCoreSz);
  514. if (ret) {
  515. pr_err("crypto_ahash_setkey failed: err %d\n", ret);
  516. ret = BAD_STATE_E;
  517. goto out;
  518. }
  519. desc->tfm = tfm;
  520. ret = crypto_shash_init(desc);
  521. if (ret) {
  522. pr_err("crypto_shash_init failed: err %d\n", ret);
  523. ret = BAD_STATE_E;
  524. goto out;
  525. }
  526. ret = crypto_shash_update(desc, (byte *)(wc_ptr_t)first, (word32)code_sz);
  527. if (ret) {
  528. pr_err("crypto_shash_update failed: err %d\n", ret);
  529. ret = BAD_STATE_E;
  530. goto out;
  531. }
  532. /* don't hash verifyCore or changing verifyCore will change hash */
  533. if (verifyCore >= start && verifyCore < end) {
  534. data_sz = (unsigned long)verifyCore - (unsigned long)start;
  535. ret = crypto_shash_update(desc, (byte*)start, (word32)data_sz);
  536. if (ret) {
  537. pr_err("crypto_shash_update failed: err %d\n", ret);
  538. ret = BAD_STATE_E;
  539. goto out;
  540. }
  541. start = (char*)verifyCore + sizeof(verifyCore);
  542. data_sz = (unsigned long)end - (unsigned long)start;
  543. }
  544. ret = crypto_shash_update(desc, (byte*)start, (word32)data_sz);
  545. if (ret) {
  546. pr_err("crypto_shash_update failed: err %d\n", ret);
  547. ret = BAD_STATE_E;
  548. goto out;
  549. }
  550. ret = crypto_shash_final(desc, hash);
  551. if (ret) {
  552. pr_err("crypto_shash_final failed: err %d\n", ret);
  553. ret = BAD_STATE_E;
  554. goto out;
  555. }
  556. ret = GenBase16_Hash(hash, WC_SHA256_DIGEST_SIZE, base16_hash, WC_SHA256_DIGEST_SIZE*2 + 1);
  557. if (ret != 0) {
  558. pr_err("GenBase16_Hash failed: %s\n", wc_GetErrorString(ret));
  559. goto out;
  560. }
  561. {
  562. word32 base16_out_len = verifySz;
  563. ret = Base16_Decode((const byte *)verifyCore, sizeof verifyCore - 1, binVerify, &base16_out_len);
  564. if (ret != 0) {
  565. pr_err("Base16_Decode for verifyCore: %s\n", wc_GetErrorString(ret));
  566. goto out;
  567. }
  568. if (base16_out_len != binCoreSz) {
  569. pr_err("unexpected output length %u for verifyCore from Base16_Decode.\n",base16_out_len);
  570. ret = BAD_STATE_E;
  571. goto out;
  572. }
  573. }
  574. if (XMEMCMP(hash, binVerify, WC_SHA256_DIGEST_SIZE) == 0)
  575. pr_info("updateFipsHash: verifyCore already matches.\n");
  576. else {
  577. XMEMCPY(verifyCore, base16_hash, WC_SHA256_DIGEST_SIZE*2 + 1);
  578. pr_info("updateFipsHash: verifyCore updated.\n");
  579. }
  580. ret = 0;
  581. out:
  582. if (tfm != NULL)
  583. crypto_free_shash(tfm);
  584. if (desc != NULL)
  585. XFREE(desc, NULL, DYNAMIC_TYPE_TMP_BUFFER);
  586. if (hash != NULL)
  587. XFREE(hash, NULL, DYNAMIC_TYPE_TMP_BUFFER);
  588. if (base16_hash != NULL)
  589. XFREE(base16_hash, NULL, DYNAMIC_TYPE_TMP_BUFFER);
  590. if (binCoreKey != NULL)
  591. XFREE(binCoreKey, NULL, DYNAMIC_TYPE_TMP_BUFFER);
  592. if (binVerify != NULL)
  593. XFREE(binVerify, NULL, DYNAMIC_TYPE_TMP_BUFFER);
  594. return ret;
  595. }
  596. #endif /* WOLFCRYPT_FIPS_CORE_DYNAMIC_HASH_VALUE */