tls_openssl.c 98 KB

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  1. /*
  2. * SSL/TLS interface functions for OpenSSL
  3. * Copyright (c) 2004-2015, Jouni Malinen <j@w1.fi>
  4. *
  5. * This software may be distributed under the terms of the BSD license.
  6. * See README for more details.
  7. */
  8. #include "includes.h"
  9. #ifndef CONFIG_SMARTCARD
  10. #ifndef OPENSSL_NO_ENGINE
  11. #ifndef ANDROID
  12. #define OPENSSL_NO_ENGINE
  13. #endif
  14. #endif
  15. #endif
  16. #include <openssl/ssl.h>
  17. #include <openssl/err.h>
  18. #include <openssl/pkcs12.h>
  19. #include <openssl/x509v3.h>
  20. #ifndef OPENSSL_NO_ENGINE
  21. #include <openssl/engine.h>
  22. #endif /* OPENSSL_NO_ENGINE */
  23. #ifndef OPENSSL_NO_DSA
  24. #include <openssl/dsa.h>
  25. #endif
  26. #ifndef OPENSSL_NO_DH
  27. #include <openssl/dh.h>
  28. #endif
  29. #include "common.h"
  30. #include "crypto.h"
  31. #include "sha1.h"
  32. #include "sha256.h"
  33. #include "tls.h"
  34. #if OPENSSL_VERSION_NUMBER < 0x10000000L
  35. /* ERR_remove_thread_state replaces ERR_remove_state and the latter is
  36. * deprecated. However, OpenSSL 0.9.8 doesn't include
  37. * ERR_remove_thread_state. */
  38. #define ERR_remove_thread_state(tid) ERR_remove_state(0)
  39. #endif
  40. #if defined(OPENSSL_IS_BORINGSSL)
  41. /* stack_index_t is the return type of OpenSSL's sk_XXX_num() functions. */
  42. typedef size_t stack_index_t;
  43. #else
  44. typedef int stack_index_t;
  45. #endif
  46. #ifdef SSL_set_tlsext_status_type
  47. #ifndef OPENSSL_NO_TLSEXT
  48. #define HAVE_OCSP
  49. #include <openssl/ocsp.h>
  50. #endif /* OPENSSL_NO_TLSEXT */
  51. #endif /* SSL_set_tlsext_status_type */
  52. #ifdef ANDROID
  53. #include <openssl/pem.h>
  54. #include <keystore/keystore_get.h>
  55. static BIO * BIO_from_keystore(const char *key)
  56. {
  57. BIO *bio = NULL;
  58. uint8_t *value = NULL;
  59. int length = keystore_get(key, strlen(key), &value);
  60. if (length != -1 && (bio = BIO_new(BIO_s_mem())) != NULL)
  61. BIO_write(bio, value, length);
  62. free(value);
  63. return bio;
  64. }
  65. #endif /* ANDROID */
  66. static int tls_openssl_ref_count = 0;
  67. struct tls_context {
  68. void (*event_cb)(void *ctx, enum tls_event ev,
  69. union tls_event_data *data);
  70. void *cb_ctx;
  71. int cert_in_cb;
  72. char *ocsp_stapling_response;
  73. };
  74. static struct tls_context *tls_global = NULL;
  75. struct tls_connection {
  76. struct tls_context *context;
  77. SSL_CTX *ssl_ctx;
  78. SSL *ssl;
  79. BIO *ssl_in, *ssl_out;
  80. #ifndef OPENSSL_NO_ENGINE
  81. ENGINE *engine; /* functional reference to the engine */
  82. EVP_PKEY *private_key; /* the private key if using engine */
  83. #endif /* OPENSSL_NO_ENGINE */
  84. char *subject_match, *altsubject_match, *suffix_match, *domain_match;
  85. int read_alerts, write_alerts, failed;
  86. tls_session_ticket_cb session_ticket_cb;
  87. void *session_ticket_cb_ctx;
  88. /* SessionTicket received from OpenSSL hello_extension_cb (server) */
  89. u8 *session_ticket;
  90. size_t session_ticket_len;
  91. unsigned int ca_cert_verify:1;
  92. unsigned int cert_probe:1;
  93. unsigned int server_cert_only:1;
  94. unsigned int invalid_hb_used:1;
  95. u8 srv_cert_hash[32];
  96. unsigned int flags;
  97. X509 *peer_cert;
  98. X509 *peer_issuer;
  99. X509 *peer_issuer_issuer;
  100. #if OPENSSL_VERSION_NUMBER >= 0x10100000L
  101. unsigned char client_random[SSL3_RANDOM_SIZE];
  102. unsigned char server_random[SSL3_RANDOM_SIZE];
  103. #endif
  104. };
  105. static struct tls_context * tls_context_new(const struct tls_config *conf)
  106. {
  107. struct tls_context *context = os_zalloc(sizeof(*context));
  108. if (context == NULL)
  109. return NULL;
  110. if (conf) {
  111. context->event_cb = conf->event_cb;
  112. context->cb_ctx = conf->cb_ctx;
  113. context->cert_in_cb = conf->cert_in_cb;
  114. }
  115. return context;
  116. }
  117. #ifdef CONFIG_NO_STDOUT_DEBUG
  118. static void _tls_show_errors(void)
  119. {
  120. unsigned long err;
  121. while ((err = ERR_get_error())) {
  122. /* Just ignore the errors, since stdout is disabled */
  123. }
  124. }
  125. #define tls_show_errors(l, f, t) _tls_show_errors()
  126. #else /* CONFIG_NO_STDOUT_DEBUG */
  127. static void tls_show_errors(int level, const char *func, const char *txt)
  128. {
  129. unsigned long err;
  130. wpa_printf(level, "OpenSSL: %s - %s %s",
  131. func, txt, ERR_error_string(ERR_get_error(), NULL));
  132. while ((err = ERR_get_error())) {
  133. wpa_printf(MSG_INFO, "OpenSSL: pending error: %s",
  134. ERR_error_string(err, NULL));
  135. }
  136. }
  137. #endif /* CONFIG_NO_STDOUT_DEBUG */
  138. #ifdef CONFIG_NATIVE_WINDOWS
  139. /* Windows CryptoAPI and access to certificate stores */
  140. #include <wincrypt.h>
  141. #ifdef __MINGW32_VERSION
  142. /*
  143. * MinGW does not yet include all the needed definitions for CryptoAPI, so
  144. * define here whatever extra is needed.
  145. */
  146. #define CERT_SYSTEM_STORE_CURRENT_USER (1 << 16)
  147. #define CERT_STORE_READONLY_FLAG 0x00008000
  148. #define CERT_STORE_OPEN_EXISTING_FLAG 0x00004000
  149. #endif /* __MINGW32_VERSION */
  150. struct cryptoapi_rsa_data {
  151. const CERT_CONTEXT *cert;
  152. HCRYPTPROV crypt_prov;
  153. DWORD key_spec;
  154. BOOL free_crypt_prov;
  155. };
  156. static void cryptoapi_error(const char *msg)
  157. {
  158. wpa_printf(MSG_INFO, "CryptoAPI: %s; err=%u",
  159. msg, (unsigned int) GetLastError());
  160. }
  161. static int cryptoapi_rsa_pub_enc(int flen, const unsigned char *from,
  162. unsigned char *to, RSA *rsa, int padding)
  163. {
  164. wpa_printf(MSG_DEBUG, "%s - not implemented", __func__);
  165. return 0;
  166. }
  167. static int cryptoapi_rsa_pub_dec(int flen, const unsigned char *from,
  168. unsigned char *to, RSA *rsa, int padding)
  169. {
  170. wpa_printf(MSG_DEBUG, "%s - not implemented", __func__);
  171. return 0;
  172. }
  173. static int cryptoapi_rsa_priv_enc(int flen, const unsigned char *from,
  174. unsigned char *to, RSA *rsa, int padding)
  175. {
  176. struct cryptoapi_rsa_data *priv =
  177. (struct cryptoapi_rsa_data *) rsa->meth->app_data;
  178. HCRYPTHASH hash;
  179. DWORD hash_size, len, i;
  180. unsigned char *buf = NULL;
  181. int ret = 0;
  182. if (priv == NULL) {
  183. RSAerr(RSA_F_RSA_EAY_PRIVATE_ENCRYPT,
  184. ERR_R_PASSED_NULL_PARAMETER);
  185. return 0;
  186. }
  187. if (padding != RSA_PKCS1_PADDING) {
  188. RSAerr(RSA_F_RSA_EAY_PRIVATE_ENCRYPT,
  189. RSA_R_UNKNOWN_PADDING_TYPE);
  190. return 0;
  191. }
  192. if (flen != 16 /* MD5 */ + 20 /* SHA-1 */) {
  193. wpa_printf(MSG_INFO, "%s - only MD5-SHA1 hash supported",
  194. __func__);
  195. RSAerr(RSA_F_RSA_EAY_PRIVATE_ENCRYPT,
  196. RSA_R_INVALID_MESSAGE_LENGTH);
  197. return 0;
  198. }
  199. if (!CryptCreateHash(priv->crypt_prov, CALG_SSL3_SHAMD5, 0, 0, &hash))
  200. {
  201. cryptoapi_error("CryptCreateHash failed");
  202. return 0;
  203. }
  204. len = sizeof(hash_size);
  205. if (!CryptGetHashParam(hash, HP_HASHSIZE, (BYTE *) &hash_size, &len,
  206. 0)) {
  207. cryptoapi_error("CryptGetHashParam failed");
  208. goto err;
  209. }
  210. if ((int) hash_size != flen) {
  211. wpa_printf(MSG_INFO, "CryptoAPI: Invalid hash size (%u != %d)",
  212. (unsigned) hash_size, flen);
  213. RSAerr(RSA_F_RSA_EAY_PRIVATE_ENCRYPT,
  214. RSA_R_INVALID_MESSAGE_LENGTH);
  215. goto err;
  216. }
  217. if (!CryptSetHashParam(hash, HP_HASHVAL, (BYTE * ) from, 0)) {
  218. cryptoapi_error("CryptSetHashParam failed");
  219. goto err;
  220. }
  221. len = RSA_size(rsa);
  222. buf = os_malloc(len);
  223. if (buf == NULL) {
  224. RSAerr(RSA_F_RSA_EAY_PRIVATE_ENCRYPT, ERR_R_MALLOC_FAILURE);
  225. goto err;
  226. }
  227. if (!CryptSignHash(hash, priv->key_spec, NULL, 0, buf, &len)) {
  228. cryptoapi_error("CryptSignHash failed");
  229. goto err;
  230. }
  231. for (i = 0; i < len; i++)
  232. to[i] = buf[len - i - 1];
  233. ret = len;
  234. err:
  235. os_free(buf);
  236. CryptDestroyHash(hash);
  237. return ret;
  238. }
  239. static int cryptoapi_rsa_priv_dec(int flen, const unsigned char *from,
  240. unsigned char *to, RSA *rsa, int padding)
  241. {
  242. wpa_printf(MSG_DEBUG, "%s - not implemented", __func__);
  243. return 0;
  244. }
  245. static void cryptoapi_free_data(struct cryptoapi_rsa_data *priv)
  246. {
  247. if (priv == NULL)
  248. return;
  249. if (priv->crypt_prov && priv->free_crypt_prov)
  250. CryptReleaseContext(priv->crypt_prov, 0);
  251. if (priv->cert)
  252. CertFreeCertificateContext(priv->cert);
  253. os_free(priv);
  254. }
  255. static int cryptoapi_finish(RSA *rsa)
  256. {
  257. cryptoapi_free_data((struct cryptoapi_rsa_data *) rsa->meth->app_data);
  258. os_free((void *) rsa->meth);
  259. rsa->meth = NULL;
  260. return 1;
  261. }
  262. static const CERT_CONTEXT * cryptoapi_find_cert(const char *name, DWORD store)
  263. {
  264. HCERTSTORE cs;
  265. const CERT_CONTEXT *ret = NULL;
  266. cs = CertOpenStore((LPCSTR) CERT_STORE_PROV_SYSTEM, 0, 0,
  267. store | CERT_STORE_OPEN_EXISTING_FLAG |
  268. CERT_STORE_READONLY_FLAG, L"MY");
  269. if (cs == NULL) {
  270. cryptoapi_error("Failed to open 'My system store'");
  271. return NULL;
  272. }
  273. if (strncmp(name, "cert://", 7) == 0) {
  274. unsigned short wbuf[255];
  275. MultiByteToWideChar(CP_ACP, 0, name + 7, -1, wbuf, 255);
  276. ret = CertFindCertificateInStore(cs, X509_ASN_ENCODING |
  277. PKCS_7_ASN_ENCODING,
  278. 0, CERT_FIND_SUBJECT_STR,
  279. wbuf, NULL);
  280. } else if (strncmp(name, "hash://", 7) == 0) {
  281. CRYPT_HASH_BLOB blob;
  282. int len;
  283. const char *hash = name + 7;
  284. unsigned char *buf;
  285. len = os_strlen(hash) / 2;
  286. buf = os_malloc(len);
  287. if (buf && hexstr2bin(hash, buf, len) == 0) {
  288. blob.cbData = len;
  289. blob.pbData = buf;
  290. ret = CertFindCertificateInStore(cs,
  291. X509_ASN_ENCODING |
  292. PKCS_7_ASN_ENCODING,
  293. 0, CERT_FIND_HASH,
  294. &blob, NULL);
  295. }
  296. os_free(buf);
  297. }
  298. CertCloseStore(cs, 0);
  299. return ret;
  300. }
  301. static int tls_cryptoapi_cert(SSL *ssl, const char *name)
  302. {
  303. X509 *cert = NULL;
  304. RSA *rsa = NULL, *pub_rsa;
  305. struct cryptoapi_rsa_data *priv;
  306. RSA_METHOD *rsa_meth;
  307. if (name == NULL ||
  308. (strncmp(name, "cert://", 7) != 0 &&
  309. strncmp(name, "hash://", 7) != 0))
  310. return -1;
  311. priv = os_zalloc(sizeof(*priv));
  312. rsa_meth = os_zalloc(sizeof(*rsa_meth));
  313. if (priv == NULL || rsa_meth == NULL) {
  314. wpa_printf(MSG_WARNING, "CryptoAPI: Failed to allocate memory "
  315. "for CryptoAPI RSA method");
  316. os_free(priv);
  317. os_free(rsa_meth);
  318. return -1;
  319. }
  320. priv->cert = cryptoapi_find_cert(name, CERT_SYSTEM_STORE_CURRENT_USER);
  321. if (priv->cert == NULL) {
  322. priv->cert = cryptoapi_find_cert(
  323. name, CERT_SYSTEM_STORE_LOCAL_MACHINE);
  324. }
  325. if (priv->cert == NULL) {
  326. wpa_printf(MSG_INFO, "CryptoAPI: Could not find certificate "
  327. "'%s'", name);
  328. goto err;
  329. }
  330. cert = d2i_X509(NULL,
  331. (const unsigned char **) &priv->cert->pbCertEncoded,
  332. priv->cert->cbCertEncoded);
  333. if (cert == NULL) {
  334. wpa_printf(MSG_INFO, "CryptoAPI: Could not process X509 DER "
  335. "encoding");
  336. goto err;
  337. }
  338. if (!CryptAcquireCertificatePrivateKey(priv->cert,
  339. CRYPT_ACQUIRE_COMPARE_KEY_FLAG,
  340. NULL, &priv->crypt_prov,
  341. &priv->key_spec,
  342. &priv->free_crypt_prov)) {
  343. cryptoapi_error("Failed to acquire a private key for the "
  344. "certificate");
  345. goto err;
  346. }
  347. rsa_meth->name = "Microsoft CryptoAPI RSA Method";
  348. rsa_meth->rsa_pub_enc = cryptoapi_rsa_pub_enc;
  349. rsa_meth->rsa_pub_dec = cryptoapi_rsa_pub_dec;
  350. rsa_meth->rsa_priv_enc = cryptoapi_rsa_priv_enc;
  351. rsa_meth->rsa_priv_dec = cryptoapi_rsa_priv_dec;
  352. rsa_meth->finish = cryptoapi_finish;
  353. rsa_meth->flags = RSA_METHOD_FLAG_NO_CHECK;
  354. rsa_meth->app_data = (char *) priv;
  355. rsa = RSA_new();
  356. if (rsa == NULL) {
  357. SSLerr(SSL_F_SSL_CTX_USE_CERTIFICATE_FILE,
  358. ERR_R_MALLOC_FAILURE);
  359. goto err;
  360. }
  361. if (!SSL_use_certificate(ssl, cert)) {
  362. RSA_free(rsa);
  363. rsa = NULL;
  364. goto err;
  365. }
  366. pub_rsa = cert->cert_info->key->pkey->pkey.rsa;
  367. X509_free(cert);
  368. cert = NULL;
  369. rsa->n = BN_dup(pub_rsa->n);
  370. rsa->e = BN_dup(pub_rsa->e);
  371. if (!RSA_set_method(rsa, rsa_meth))
  372. goto err;
  373. if (!SSL_use_RSAPrivateKey(ssl, rsa))
  374. goto err;
  375. RSA_free(rsa);
  376. return 0;
  377. err:
  378. if (cert)
  379. X509_free(cert);
  380. if (rsa)
  381. RSA_free(rsa);
  382. else {
  383. os_free(rsa_meth);
  384. cryptoapi_free_data(priv);
  385. }
  386. return -1;
  387. }
  388. static int tls_cryptoapi_ca_cert(SSL_CTX *ssl_ctx, SSL *ssl, const char *name)
  389. {
  390. HCERTSTORE cs;
  391. PCCERT_CONTEXT ctx = NULL;
  392. X509 *cert;
  393. char buf[128];
  394. const char *store;
  395. #ifdef UNICODE
  396. WCHAR *wstore;
  397. #endif /* UNICODE */
  398. if (name == NULL || strncmp(name, "cert_store://", 13) != 0)
  399. return -1;
  400. store = name + 13;
  401. #ifdef UNICODE
  402. wstore = os_malloc((os_strlen(store) + 1) * sizeof(WCHAR));
  403. if (wstore == NULL)
  404. return -1;
  405. wsprintf(wstore, L"%S", store);
  406. cs = CertOpenSystemStore(0, wstore);
  407. os_free(wstore);
  408. #else /* UNICODE */
  409. cs = CertOpenSystemStore(0, store);
  410. #endif /* UNICODE */
  411. if (cs == NULL) {
  412. wpa_printf(MSG_DEBUG, "%s: failed to open system cert store "
  413. "'%s': error=%d", __func__, store,
  414. (int) GetLastError());
  415. return -1;
  416. }
  417. while ((ctx = CertEnumCertificatesInStore(cs, ctx))) {
  418. cert = d2i_X509(NULL,
  419. (const unsigned char **) &ctx->pbCertEncoded,
  420. ctx->cbCertEncoded);
  421. if (cert == NULL) {
  422. wpa_printf(MSG_INFO, "CryptoAPI: Could not process "
  423. "X509 DER encoding for CA cert");
  424. continue;
  425. }
  426. X509_NAME_oneline(X509_get_subject_name(cert), buf,
  427. sizeof(buf));
  428. wpa_printf(MSG_DEBUG, "OpenSSL: Loaded CA certificate for "
  429. "system certificate store: subject='%s'", buf);
  430. if (!X509_STORE_add_cert(ssl_ctx->cert_store, cert)) {
  431. tls_show_errors(MSG_WARNING, __func__,
  432. "Failed to add ca_cert to OpenSSL "
  433. "certificate store");
  434. }
  435. X509_free(cert);
  436. }
  437. if (!CertCloseStore(cs, 0)) {
  438. wpa_printf(MSG_DEBUG, "%s: failed to close system cert store "
  439. "'%s': error=%d", __func__, name + 13,
  440. (int) GetLastError());
  441. }
  442. return 0;
  443. }
  444. #else /* CONFIG_NATIVE_WINDOWS */
  445. static int tls_cryptoapi_cert(SSL *ssl, const char *name)
  446. {
  447. return -1;
  448. }
  449. #endif /* CONFIG_NATIVE_WINDOWS */
  450. static void ssl_info_cb(const SSL *ssl, int where, int ret)
  451. {
  452. const char *str;
  453. int w;
  454. wpa_printf(MSG_DEBUG, "SSL: (where=0x%x ret=0x%x)", where, ret);
  455. w = where & ~SSL_ST_MASK;
  456. if (w & SSL_ST_CONNECT)
  457. str = "SSL_connect";
  458. else if (w & SSL_ST_ACCEPT)
  459. str = "SSL_accept";
  460. else
  461. str = "undefined";
  462. if (where & SSL_CB_LOOP) {
  463. wpa_printf(MSG_DEBUG, "SSL: %s:%s",
  464. str, SSL_state_string_long(ssl));
  465. } else if (where & SSL_CB_ALERT) {
  466. struct tls_connection *conn = SSL_get_app_data((SSL *) ssl);
  467. wpa_printf(MSG_INFO, "SSL: SSL3 alert: %s:%s:%s",
  468. where & SSL_CB_READ ?
  469. "read (remote end reported an error)" :
  470. "write (local SSL3 detected an error)",
  471. SSL_alert_type_string_long(ret),
  472. SSL_alert_desc_string_long(ret));
  473. if ((ret >> 8) == SSL3_AL_FATAL) {
  474. if (where & SSL_CB_READ)
  475. conn->read_alerts++;
  476. else
  477. conn->write_alerts++;
  478. }
  479. if (conn->context->event_cb != NULL) {
  480. union tls_event_data ev;
  481. struct tls_context *context = conn->context;
  482. os_memset(&ev, 0, sizeof(ev));
  483. ev.alert.is_local = !(where & SSL_CB_READ);
  484. ev.alert.type = SSL_alert_type_string_long(ret);
  485. ev.alert.description = SSL_alert_desc_string_long(ret);
  486. context->event_cb(context->cb_ctx, TLS_ALERT, &ev);
  487. }
  488. } else if (where & SSL_CB_EXIT && ret <= 0) {
  489. wpa_printf(MSG_DEBUG, "SSL: %s:%s in %s",
  490. str, ret == 0 ? "failed" : "error",
  491. SSL_state_string_long(ssl));
  492. }
  493. }
  494. #ifndef OPENSSL_NO_ENGINE
  495. /**
  496. * tls_engine_load_dynamic_generic - load any openssl engine
  497. * @pre: an array of commands and values that load an engine initialized
  498. * in the engine specific function
  499. * @post: an array of commands and values that initialize an already loaded
  500. * engine (or %NULL if not required)
  501. * @id: the engine id of the engine to load (only required if post is not %NULL
  502. *
  503. * This function is a generic function that loads any openssl engine.
  504. *
  505. * Returns: 0 on success, -1 on failure
  506. */
  507. static int tls_engine_load_dynamic_generic(const char *pre[],
  508. const char *post[], const char *id)
  509. {
  510. ENGINE *engine;
  511. const char *dynamic_id = "dynamic";
  512. engine = ENGINE_by_id(id);
  513. if (engine) {
  514. ENGINE_free(engine);
  515. wpa_printf(MSG_DEBUG, "ENGINE: engine '%s' is already "
  516. "available", id);
  517. return 0;
  518. }
  519. ERR_clear_error();
  520. engine = ENGINE_by_id(dynamic_id);
  521. if (engine == NULL) {
  522. wpa_printf(MSG_INFO, "ENGINE: Can't find engine %s [%s]",
  523. dynamic_id,
  524. ERR_error_string(ERR_get_error(), NULL));
  525. return -1;
  526. }
  527. /* Perform the pre commands. This will load the engine. */
  528. while (pre && pre[0]) {
  529. wpa_printf(MSG_DEBUG, "ENGINE: '%s' '%s'", pre[0], pre[1]);
  530. if (ENGINE_ctrl_cmd_string(engine, pre[0], pre[1], 0) == 0) {
  531. wpa_printf(MSG_INFO, "ENGINE: ctrl cmd_string failed: "
  532. "%s %s [%s]", pre[0], pre[1],
  533. ERR_error_string(ERR_get_error(), NULL));
  534. ENGINE_free(engine);
  535. return -1;
  536. }
  537. pre += 2;
  538. }
  539. /*
  540. * Free the reference to the "dynamic" engine. The loaded engine can
  541. * now be looked up using ENGINE_by_id().
  542. */
  543. ENGINE_free(engine);
  544. engine = ENGINE_by_id(id);
  545. if (engine == NULL) {
  546. wpa_printf(MSG_INFO, "ENGINE: Can't find engine %s [%s]",
  547. id, ERR_error_string(ERR_get_error(), NULL));
  548. return -1;
  549. }
  550. while (post && post[0]) {
  551. wpa_printf(MSG_DEBUG, "ENGINE: '%s' '%s'", post[0], post[1]);
  552. if (ENGINE_ctrl_cmd_string(engine, post[0], post[1], 0) == 0) {
  553. wpa_printf(MSG_DEBUG, "ENGINE: ctrl cmd_string failed:"
  554. " %s %s [%s]", post[0], post[1],
  555. ERR_error_string(ERR_get_error(), NULL));
  556. ENGINE_remove(engine);
  557. ENGINE_free(engine);
  558. return -1;
  559. }
  560. post += 2;
  561. }
  562. ENGINE_free(engine);
  563. return 0;
  564. }
  565. /**
  566. * tls_engine_load_dynamic_pkcs11 - load the pkcs11 engine provided by opensc
  567. * @pkcs11_so_path: pksc11_so_path from the configuration
  568. * @pcks11_module_path: pkcs11_module_path from the configuration
  569. */
  570. static int tls_engine_load_dynamic_pkcs11(const char *pkcs11_so_path,
  571. const char *pkcs11_module_path)
  572. {
  573. char *engine_id = "pkcs11";
  574. const char *pre_cmd[] = {
  575. "SO_PATH", NULL /* pkcs11_so_path */,
  576. "ID", NULL /* engine_id */,
  577. "LIST_ADD", "1",
  578. /* "NO_VCHECK", "1", */
  579. "LOAD", NULL,
  580. NULL, NULL
  581. };
  582. const char *post_cmd[] = {
  583. "MODULE_PATH", NULL /* pkcs11_module_path */,
  584. NULL, NULL
  585. };
  586. if (!pkcs11_so_path)
  587. return 0;
  588. pre_cmd[1] = pkcs11_so_path;
  589. pre_cmd[3] = engine_id;
  590. if (pkcs11_module_path)
  591. post_cmd[1] = pkcs11_module_path;
  592. else
  593. post_cmd[0] = NULL;
  594. wpa_printf(MSG_DEBUG, "ENGINE: Loading pkcs11 Engine from %s",
  595. pkcs11_so_path);
  596. return tls_engine_load_dynamic_generic(pre_cmd, post_cmd, engine_id);
  597. }
  598. /**
  599. * tls_engine_load_dynamic_opensc - load the opensc engine provided by opensc
  600. * @opensc_so_path: opensc_so_path from the configuration
  601. */
  602. static int tls_engine_load_dynamic_opensc(const char *opensc_so_path)
  603. {
  604. char *engine_id = "opensc";
  605. const char *pre_cmd[] = {
  606. "SO_PATH", NULL /* opensc_so_path */,
  607. "ID", NULL /* engine_id */,
  608. "LIST_ADD", "1",
  609. "LOAD", NULL,
  610. NULL, NULL
  611. };
  612. if (!opensc_so_path)
  613. return 0;
  614. pre_cmd[1] = opensc_so_path;
  615. pre_cmd[3] = engine_id;
  616. wpa_printf(MSG_DEBUG, "ENGINE: Loading OpenSC Engine from %s",
  617. opensc_so_path);
  618. return tls_engine_load_dynamic_generic(pre_cmd, NULL, engine_id);
  619. }
  620. #endif /* OPENSSL_NO_ENGINE */
  621. void * tls_init(const struct tls_config *conf)
  622. {
  623. SSL_CTX *ssl;
  624. struct tls_context *context;
  625. const char *ciphers;
  626. if (tls_openssl_ref_count == 0) {
  627. tls_global = context = tls_context_new(conf);
  628. if (context == NULL)
  629. return NULL;
  630. #ifdef CONFIG_FIPS
  631. #ifdef OPENSSL_FIPS
  632. if (conf && conf->fips_mode) {
  633. static int fips_enabled = 0;
  634. if (!fips_enabled && !FIPS_mode_set(1)) {
  635. wpa_printf(MSG_ERROR, "Failed to enable FIPS "
  636. "mode");
  637. ERR_load_crypto_strings();
  638. ERR_print_errors_fp(stderr);
  639. os_free(tls_global);
  640. tls_global = NULL;
  641. return NULL;
  642. } else {
  643. wpa_printf(MSG_INFO, "Running in FIPS mode");
  644. fips_enabled = 1;
  645. }
  646. }
  647. #else /* OPENSSL_FIPS */
  648. if (conf && conf->fips_mode) {
  649. wpa_printf(MSG_ERROR, "FIPS mode requested, but not "
  650. "supported");
  651. os_free(tls_global);
  652. tls_global = NULL;
  653. return NULL;
  654. }
  655. #endif /* OPENSSL_FIPS */
  656. #endif /* CONFIG_FIPS */
  657. SSL_load_error_strings();
  658. SSL_library_init();
  659. #ifndef OPENSSL_NO_SHA256
  660. EVP_add_digest(EVP_sha256());
  661. #endif /* OPENSSL_NO_SHA256 */
  662. /* TODO: if /dev/urandom is available, PRNG is seeded
  663. * automatically. If this is not the case, random data should
  664. * be added here. */
  665. #ifdef PKCS12_FUNCS
  666. #ifndef OPENSSL_NO_RC2
  667. /*
  668. * 40-bit RC2 is commonly used in PKCS#12 files, so enable it.
  669. * This is enabled by PKCS12_PBE_add() in OpenSSL 0.9.8
  670. * versions, but it looks like OpenSSL 1.0.0 does not do that
  671. * anymore.
  672. */
  673. EVP_add_cipher(EVP_rc2_40_cbc());
  674. #endif /* OPENSSL_NO_RC2 */
  675. PKCS12_PBE_add();
  676. #endif /* PKCS12_FUNCS */
  677. } else {
  678. context = tls_context_new(conf);
  679. if (context == NULL)
  680. return NULL;
  681. }
  682. tls_openssl_ref_count++;
  683. ssl = SSL_CTX_new(SSLv23_method());
  684. if (ssl == NULL) {
  685. tls_openssl_ref_count--;
  686. if (context != tls_global)
  687. os_free(context);
  688. if (tls_openssl_ref_count == 0) {
  689. os_free(tls_global);
  690. tls_global = NULL;
  691. }
  692. return NULL;
  693. }
  694. SSL_CTX_set_options(ssl, SSL_OP_NO_SSLv2);
  695. SSL_CTX_set_options(ssl, SSL_OP_NO_SSLv3);
  696. SSL_CTX_set_info_callback(ssl, ssl_info_cb);
  697. SSL_CTX_set_app_data(ssl, context);
  698. #ifndef OPENSSL_NO_ENGINE
  699. wpa_printf(MSG_DEBUG, "ENGINE: Loading dynamic engine");
  700. ERR_load_ENGINE_strings();
  701. ENGINE_load_dynamic();
  702. if (conf &&
  703. (conf->opensc_engine_path || conf->pkcs11_engine_path ||
  704. conf->pkcs11_module_path)) {
  705. if (tls_engine_load_dynamic_opensc(conf->opensc_engine_path) ||
  706. tls_engine_load_dynamic_pkcs11(conf->pkcs11_engine_path,
  707. conf->pkcs11_module_path)) {
  708. tls_deinit(ssl);
  709. return NULL;
  710. }
  711. }
  712. #endif /* OPENSSL_NO_ENGINE */
  713. if (conf && conf->openssl_ciphers)
  714. ciphers = conf->openssl_ciphers;
  715. else
  716. ciphers = "DEFAULT:!EXP:!LOW";
  717. if (SSL_CTX_set_cipher_list(ssl, ciphers) != 1) {
  718. wpa_printf(MSG_ERROR,
  719. "OpenSSL: Failed to set cipher string '%s'",
  720. ciphers);
  721. tls_deinit(ssl);
  722. return NULL;
  723. }
  724. return ssl;
  725. }
  726. void tls_deinit(void *ssl_ctx)
  727. {
  728. SSL_CTX *ssl = ssl_ctx;
  729. struct tls_context *context = SSL_CTX_get_app_data(ssl);
  730. if (context != tls_global)
  731. os_free(context);
  732. SSL_CTX_free(ssl);
  733. tls_openssl_ref_count--;
  734. if (tls_openssl_ref_count == 0) {
  735. #ifndef OPENSSL_NO_ENGINE
  736. ENGINE_cleanup();
  737. #endif /* OPENSSL_NO_ENGINE */
  738. CRYPTO_cleanup_all_ex_data();
  739. ERR_remove_thread_state(NULL);
  740. ERR_free_strings();
  741. EVP_cleanup();
  742. os_free(tls_global->ocsp_stapling_response);
  743. tls_global->ocsp_stapling_response = NULL;
  744. os_free(tls_global);
  745. tls_global = NULL;
  746. }
  747. }
  748. #ifndef OPENSSL_NO_ENGINE
  749. /* Cryptoki return values */
  750. #define CKR_PIN_INCORRECT 0x000000a0
  751. #define CKR_PIN_INVALID 0x000000a1
  752. #define CKR_PIN_LEN_RANGE 0x000000a2
  753. /* libp11 */
  754. #define ERR_LIB_PKCS11 ERR_LIB_USER
  755. static int tls_is_pin_error(unsigned int err)
  756. {
  757. return ERR_GET_LIB(err) == ERR_LIB_PKCS11 &&
  758. (ERR_GET_REASON(err) == CKR_PIN_INCORRECT ||
  759. ERR_GET_REASON(err) == CKR_PIN_INVALID ||
  760. ERR_GET_REASON(err) == CKR_PIN_LEN_RANGE);
  761. }
  762. #endif /* OPENSSL_NO_ENGINE */
  763. static int tls_engine_init(struct tls_connection *conn, const char *engine_id,
  764. const char *pin, const char *key_id,
  765. const char *cert_id, const char *ca_cert_id)
  766. {
  767. #ifndef OPENSSL_NO_ENGINE
  768. int ret = -1;
  769. if (engine_id == NULL) {
  770. wpa_printf(MSG_ERROR, "ENGINE: Engine ID not set");
  771. return -1;
  772. }
  773. ERR_clear_error();
  774. #ifdef ANDROID
  775. ENGINE_load_dynamic();
  776. #endif
  777. conn->engine = ENGINE_by_id(engine_id);
  778. if (!conn->engine) {
  779. wpa_printf(MSG_ERROR, "ENGINE: engine %s not available [%s]",
  780. engine_id, ERR_error_string(ERR_get_error(), NULL));
  781. goto err;
  782. }
  783. if (ENGINE_init(conn->engine) != 1) {
  784. wpa_printf(MSG_ERROR, "ENGINE: engine init failed "
  785. "(engine: %s) [%s]", engine_id,
  786. ERR_error_string(ERR_get_error(), NULL));
  787. goto err;
  788. }
  789. wpa_printf(MSG_DEBUG, "ENGINE: engine initialized");
  790. #ifndef ANDROID
  791. if (pin && ENGINE_ctrl_cmd_string(conn->engine, "PIN", pin, 0) == 0) {
  792. wpa_printf(MSG_ERROR, "ENGINE: cannot set pin [%s]",
  793. ERR_error_string(ERR_get_error(), NULL));
  794. goto err;
  795. }
  796. #endif
  797. if (key_id) {
  798. /*
  799. * Ensure that the ENGINE does not attempt to use the OpenSSL
  800. * UI system to obtain a PIN, if we didn't provide one.
  801. */
  802. struct {
  803. const void *password;
  804. const char *prompt_info;
  805. } key_cb = { "", NULL };
  806. /* load private key first in-case PIN is required for cert */
  807. conn->private_key = ENGINE_load_private_key(conn->engine,
  808. key_id, NULL,
  809. &key_cb);
  810. if (!conn->private_key) {
  811. unsigned long err = ERR_get_error();
  812. wpa_printf(MSG_ERROR,
  813. "ENGINE: cannot load private key with id '%s' [%s]",
  814. key_id,
  815. ERR_error_string(err, NULL));
  816. if (tls_is_pin_error(err))
  817. ret = TLS_SET_PARAMS_ENGINE_PRV_BAD_PIN;
  818. else
  819. ret = TLS_SET_PARAMS_ENGINE_PRV_INIT_FAILED;
  820. goto err;
  821. }
  822. }
  823. /* handle a certificate and/or CA certificate */
  824. if (cert_id || ca_cert_id) {
  825. const char *cmd_name = "LOAD_CERT_CTRL";
  826. /* test if the engine supports a LOAD_CERT_CTRL */
  827. if (!ENGINE_ctrl(conn->engine, ENGINE_CTRL_GET_CMD_FROM_NAME,
  828. 0, (void *)cmd_name, NULL)) {
  829. wpa_printf(MSG_ERROR, "ENGINE: engine does not support"
  830. " loading certificates");
  831. ret = TLS_SET_PARAMS_ENGINE_PRV_INIT_FAILED;
  832. goto err;
  833. }
  834. }
  835. return 0;
  836. err:
  837. if (conn->engine) {
  838. ENGINE_free(conn->engine);
  839. conn->engine = NULL;
  840. }
  841. if (conn->private_key) {
  842. EVP_PKEY_free(conn->private_key);
  843. conn->private_key = NULL;
  844. }
  845. return ret;
  846. #else /* OPENSSL_NO_ENGINE */
  847. return 0;
  848. #endif /* OPENSSL_NO_ENGINE */
  849. }
  850. static void tls_engine_deinit(struct tls_connection *conn)
  851. {
  852. #ifndef OPENSSL_NO_ENGINE
  853. wpa_printf(MSG_DEBUG, "ENGINE: engine deinit");
  854. if (conn->private_key) {
  855. EVP_PKEY_free(conn->private_key);
  856. conn->private_key = NULL;
  857. }
  858. if (conn->engine) {
  859. ENGINE_finish(conn->engine);
  860. conn->engine = NULL;
  861. }
  862. #endif /* OPENSSL_NO_ENGINE */
  863. }
  864. int tls_get_errors(void *ssl_ctx)
  865. {
  866. int count = 0;
  867. unsigned long err;
  868. while ((err = ERR_get_error())) {
  869. wpa_printf(MSG_INFO, "TLS - SSL error: %s",
  870. ERR_error_string(err, NULL));
  871. count++;
  872. }
  873. return count;
  874. }
  875. static void tls_msg_cb(int write_p, int version, int content_type,
  876. const void *buf, size_t len, SSL *ssl, void *arg)
  877. {
  878. struct tls_connection *conn = arg;
  879. const u8 *pos = buf;
  880. wpa_printf(MSG_DEBUG, "OpenSSL: %s ver=0x%x content_type=%d",
  881. write_p ? "TX" : "RX", version, content_type);
  882. wpa_hexdump_key(MSG_MSGDUMP, "OpenSSL: Message", buf, len);
  883. if (content_type == 24 && len >= 3 && pos[0] == 1) {
  884. size_t payload_len = WPA_GET_BE16(pos + 1);
  885. if (payload_len + 3 > len) {
  886. wpa_printf(MSG_ERROR, "OpenSSL: Heartbeat attack detected");
  887. conn->invalid_hb_used = 1;
  888. }
  889. }
  890. }
  891. struct tls_connection * tls_connection_init(void *ssl_ctx)
  892. {
  893. SSL_CTX *ssl = ssl_ctx;
  894. struct tls_connection *conn;
  895. long options;
  896. struct tls_context *context = SSL_CTX_get_app_data(ssl);
  897. conn = os_zalloc(sizeof(*conn));
  898. if (conn == NULL)
  899. return NULL;
  900. conn->ssl_ctx = ssl_ctx;
  901. conn->ssl = SSL_new(ssl);
  902. if (conn->ssl == NULL) {
  903. tls_show_errors(MSG_INFO, __func__,
  904. "Failed to initialize new SSL connection");
  905. os_free(conn);
  906. return NULL;
  907. }
  908. conn->context = context;
  909. SSL_set_app_data(conn->ssl, conn);
  910. SSL_set_msg_callback(conn->ssl, tls_msg_cb);
  911. SSL_set_msg_callback_arg(conn->ssl, conn);
  912. options = SSL_OP_NO_SSLv2 | SSL_OP_NO_SSLv3 |
  913. SSL_OP_SINGLE_DH_USE;
  914. #ifdef SSL_OP_NO_COMPRESSION
  915. options |= SSL_OP_NO_COMPRESSION;
  916. #endif /* SSL_OP_NO_COMPRESSION */
  917. SSL_set_options(conn->ssl, options);
  918. conn->ssl_in = BIO_new(BIO_s_mem());
  919. if (!conn->ssl_in) {
  920. tls_show_errors(MSG_INFO, __func__,
  921. "Failed to create a new BIO for ssl_in");
  922. SSL_free(conn->ssl);
  923. os_free(conn);
  924. return NULL;
  925. }
  926. conn->ssl_out = BIO_new(BIO_s_mem());
  927. if (!conn->ssl_out) {
  928. tls_show_errors(MSG_INFO, __func__,
  929. "Failed to create a new BIO for ssl_out");
  930. SSL_free(conn->ssl);
  931. BIO_free(conn->ssl_in);
  932. os_free(conn);
  933. return NULL;
  934. }
  935. SSL_set_bio(conn->ssl, conn->ssl_in, conn->ssl_out);
  936. return conn;
  937. }
  938. void tls_connection_deinit(void *ssl_ctx, struct tls_connection *conn)
  939. {
  940. if (conn == NULL)
  941. return;
  942. SSL_free(conn->ssl);
  943. tls_engine_deinit(conn);
  944. os_free(conn->subject_match);
  945. os_free(conn->altsubject_match);
  946. os_free(conn->suffix_match);
  947. os_free(conn->domain_match);
  948. os_free(conn->session_ticket);
  949. os_free(conn);
  950. }
  951. int tls_connection_established(void *ssl_ctx, struct tls_connection *conn)
  952. {
  953. return conn ? SSL_is_init_finished(conn->ssl) : 0;
  954. }
  955. int tls_connection_shutdown(void *ssl_ctx, struct tls_connection *conn)
  956. {
  957. if (conn == NULL)
  958. return -1;
  959. /* Shutdown previous TLS connection without notifying the peer
  960. * because the connection was already terminated in practice
  961. * and "close notify" shutdown alert would confuse AS. */
  962. SSL_set_quiet_shutdown(conn->ssl, 1);
  963. SSL_shutdown(conn->ssl);
  964. return 0;
  965. }
  966. static int tls_match_altsubject_component(X509 *cert, int type,
  967. const char *value, size_t len)
  968. {
  969. GENERAL_NAME *gen;
  970. void *ext;
  971. int found = 0;
  972. stack_index_t i;
  973. ext = X509_get_ext_d2i(cert, NID_subject_alt_name, NULL, NULL);
  974. for (i = 0; ext && i < sk_GENERAL_NAME_num(ext); i++) {
  975. gen = sk_GENERAL_NAME_value(ext, i);
  976. if (gen->type != type)
  977. continue;
  978. if (os_strlen((char *) gen->d.ia5->data) == len &&
  979. os_memcmp(value, gen->d.ia5->data, len) == 0)
  980. found++;
  981. }
  982. return found;
  983. }
  984. static int tls_match_altsubject(X509 *cert, const char *match)
  985. {
  986. int type;
  987. const char *pos, *end;
  988. size_t len;
  989. pos = match;
  990. do {
  991. if (os_strncmp(pos, "EMAIL:", 6) == 0) {
  992. type = GEN_EMAIL;
  993. pos += 6;
  994. } else if (os_strncmp(pos, "DNS:", 4) == 0) {
  995. type = GEN_DNS;
  996. pos += 4;
  997. } else if (os_strncmp(pos, "URI:", 4) == 0) {
  998. type = GEN_URI;
  999. pos += 4;
  1000. } else {
  1001. wpa_printf(MSG_INFO, "TLS: Invalid altSubjectName "
  1002. "match '%s'", pos);
  1003. return 0;
  1004. }
  1005. end = os_strchr(pos, ';');
  1006. while (end) {
  1007. if (os_strncmp(end + 1, "EMAIL:", 6) == 0 ||
  1008. os_strncmp(end + 1, "DNS:", 4) == 0 ||
  1009. os_strncmp(end + 1, "URI:", 4) == 0)
  1010. break;
  1011. end = os_strchr(end + 1, ';');
  1012. }
  1013. if (end)
  1014. len = end - pos;
  1015. else
  1016. len = os_strlen(pos);
  1017. if (tls_match_altsubject_component(cert, type, pos, len) > 0)
  1018. return 1;
  1019. pos = end + 1;
  1020. } while (end);
  1021. return 0;
  1022. }
  1023. #ifndef CONFIG_NATIVE_WINDOWS
  1024. static int domain_suffix_match(const u8 *val, size_t len, const char *match,
  1025. int full)
  1026. {
  1027. size_t i, match_len;
  1028. /* Check for embedded nuls that could mess up suffix matching */
  1029. for (i = 0; i < len; i++) {
  1030. if (val[i] == '\0') {
  1031. wpa_printf(MSG_DEBUG, "TLS: Embedded null in a string - reject");
  1032. return 0;
  1033. }
  1034. }
  1035. match_len = os_strlen(match);
  1036. if (match_len > len || (full && match_len != len))
  1037. return 0;
  1038. if (os_strncasecmp((const char *) val + len - match_len, match,
  1039. match_len) != 0)
  1040. return 0; /* no match */
  1041. if (match_len == len)
  1042. return 1; /* exact match */
  1043. if (val[len - match_len - 1] == '.')
  1044. return 1; /* full label match completes suffix match */
  1045. wpa_printf(MSG_DEBUG, "TLS: Reject due to incomplete label match");
  1046. return 0;
  1047. }
  1048. #endif /* CONFIG_NATIVE_WINDOWS */
  1049. static int tls_match_suffix(X509 *cert, const char *match, int full)
  1050. {
  1051. #ifdef CONFIG_NATIVE_WINDOWS
  1052. /* wincrypt.h has conflicting X509_NAME definition */
  1053. return -1;
  1054. #else /* CONFIG_NATIVE_WINDOWS */
  1055. GENERAL_NAME *gen;
  1056. void *ext;
  1057. int i;
  1058. stack_index_t j;
  1059. int dns_name = 0;
  1060. X509_NAME *name;
  1061. wpa_printf(MSG_DEBUG, "TLS: Match domain against %s%s",
  1062. full ? "": "suffix ", match);
  1063. ext = X509_get_ext_d2i(cert, NID_subject_alt_name, NULL, NULL);
  1064. for (j = 0; ext && j < sk_GENERAL_NAME_num(ext); j++) {
  1065. gen = sk_GENERAL_NAME_value(ext, j);
  1066. if (gen->type != GEN_DNS)
  1067. continue;
  1068. dns_name++;
  1069. wpa_hexdump_ascii(MSG_DEBUG, "TLS: Certificate dNSName",
  1070. gen->d.dNSName->data,
  1071. gen->d.dNSName->length);
  1072. if (domain_suffix_match(gen->d.dNSName->data,
  1073. gen->d.dNSName->length, match, full) ==
  1074. 1) {
  1075. wpa_printf(MSG_DEBUG, "TLS: %s in dNSName found",
  1076. full ? "Match" : "Suffix match");
  1077. return 1;
  1078. }
  1079. }
  1080. if (dns_name) {
  1081. wpa_printf(MSG_DEBUG, "TLS: None of the dNSName(s) matched");
  1082. return 0;
  1083. }
  1084. name = X509_get_subject_name(cert);
  1085. i = -1;
  1086. for (;;) {
  1087. X509_NAME_ENTRY *e;
  1088. ASN1_STRING *cn;
  1089. i = X509_NAME_get_index_by_NID(name, NID_commonName, i);
  1090. if (i == -1)
  1091. break;
  1092. e = X509_NAME_get_entry(name, i);
  1093. if (e == NULL)
  1094. continue;
  1095. cn = X509_NAME_ENTRY_get_data(e);
  1096. if (cn == NULL)
  1097. continue;
  1098. wpa_hexdump_ascii(MSG_DEBUG, "TLS: Certificate commonName",
  1099. cn->data, cn->length);
  1100. if (domain_suffix_match(cn->data, cn->length, match, full) == 1)
  1101. {
  1102. wpa_printf(MSG_DEBUG, "TLS: %s in commonName found",
  1103. full ? "Match" : "Suffix match");
  1104. return 1;
  1105. }
  1106. }
  1107. wpa_printf(MSG_DEBUG, "TLS: No CommonName %smatch found",
  1108. full ? "": "suffix ");
  1109. return 0;
  1110. #endif /* CONFIG_NATIVE_WINDOWS */
  1111. }
  1112. static enum tls_fail_reason openssl_tls_fail_reason(int err)
  1113. {
  1114. switch (err) {
  1115. case X509_V_ERR_CERT_REVOKED:
  1116. return TLS_FAIL_REVOKED;
  1117. case X509_V_ERR_CERT_NOT_YET_VALID:
  1118. case X509_V_ERR_CRL_NOT_YET_VALID:
  1119. return TLS_FAIL_NOT_YET_VALID;
  1120. case X509_V_ERR_CERT_HAS_EXPIRED:
  1121. case X509_V_ERR_CRL_HAS_EXPIRED:
  1122. return TLS_FAIL_EXPIRED;
  1123. case X509_V_ERR_UNABLE_TO_GET_ISSUER_CERT:
  1124. case X509_V_ERR_UNABLE_TO_GET_CRL:
  1125. case X509_V_ERR_UNABLE_TO_GET_CRL_ISSUER:
  1126. case X509_V_ERR_SELF_SIGNED_CERT_IN_CHAIN:
  1127. case X509_V_ERR_UNABLE_TO_GET_ISSUER_CERT_LOCALLY:
  1128. case X509_V_ERR_DEPTH_ZERO_SELF_SIGNED_CERT:
  1129. case X509_V_ERR_UNABLE_TO_VERIFY_LEAF_SIGNATURE:
  1130. case X509_V_ERR_CERT_CHAIN_TOO_LONG:
  1131. case X509_V_ERR_PATH_LENGTH_EXCEEDED:
  1132. case X509_V_ERR_INVALID_CA:
  1133. return TLS_FAIL_UNTRUSTED;
  1134. case X509_V_ERR_UNABLE_TO_DECRYPT_CERT_SIGNATURE:
  1135. case X509_V_ERR_UNABLE_TO_DECRYPT_CRL_SIGNATURE:
  1136. case X509_V_ERR_UNABLE_TO_DECODE_ISSUER_PUBLIC_KEY:
  1137. case X509_V_ERR_ERROR_IN_CERT_NOT_BEFORE_FIELD:
  1138. case X509_V_ERR_ERROR_IN_CERT_NOT_AFTER_FIELD:
  1139. case X509_V_ERR_ERROR_IN_CRL_LAST_UPDATE_FIELD:
  1140. case X509_V_ERR_ERROR_IN_CRL_NEXT_UPDATE_FIELD:
  1141. case X509_V_ERR_CERT_UNTRUSTED:
  1142. case X509_V_ERR_CERT_REJECTED:
  1143. return TLS_FAIL_BAD_CERTIFICATE;
  1144. default:
  1145. return TLS_FAIL_UNSPECIFIED;
  1146. }
  1147. }
  1148. static struct wpabuf * get_x509_cert(X509 *cert)
  1149. {
  1150. struct wpabuf *buf;
  1151. u8 *tmp;
  1152. int cert_len = i2d_X509(cert, NULL);
  1153. if (cert_len <= 0)
  1154. return NULL;
  1155. buf = wpabuf_alloc(cert_len);
  1156. if (buf == NULL)
  1157. return NULL;
  1158. tmp = wpabuf_put(buf, cert_len);
  1159. i2d_X509(cert, &tmp);
  1160. return buf;
  1161. }
  1162. static void openssl_tls_fail_event(struct tls_connection *conn,
  1163. X509 *err_cert, int err, int depth,
  1164. const char *subject, const char *err_str,
  1165. enum tls_fail_reason reason)
  1166. {
  1167. union tls_event_data ev;
  1168. struct wpabuf *cert = NULL;
  1169. struct tls_context *context = conn->context;
  1170. if (context->event_cb == NULL)
  1171. return;
  1172. cert = get_x509_cert(err_cert);
  1173. os_memset(&ev, 0, sizeof(ev));
  1174. ev.cert_fail.reason = reason != TLS_FAIL_UNSPECIFIED ?
  1175. reason : openssl_tls_fail_reason(err);
  1176. ev.cert_fail.depth = depth;
  1177. ev.cert_fail.subject = subject;
  1178. ev.cert_fail.reason_txt = err_str;
  1179. ev.cert_fail.cert = cert;
  1180. context->event_cb(context->cb_ctx, TLS_CERT_CHAIN_FAILURE, &ev);
  1181. wpabuf_free(cert);
  1182. }
  1183. static void openssl_tls_cert_event(struct tls_connection *conn,
  1184. X509 *err_cert, int depth,
  1185. const char *subject)
  1186. {
  1187. struct wpabuf *cert = NULL;
  1188. union tls_event_data ev;
  1189. struct tls_context *context = conn->context;
  1190. char *altsubject[TLS_MAX_ALT_SUBJECT];
  1191. int alt, num_altsubject = 0;
  1192. GENERAL_NAME *gen;
  1193. void *ext;
  1194. stack_index_t i;
  1195. #ifdef CONFIG_SHA256
  1196. u8 hash[32];
  1197. #endif /* CONFIG_SHA256 */
  1198. if (context->event_cb == NULL)
  1199. return;
  1200. os_memset(&ev, 0, sizeof(ev));
  1201. if (conn->cert_probe || context->cert_in_cb) {
  1202. cert = get_x509_cert(err_cert);
  1203. ev.peer_cert.cert = cert;
  1204. }
  1205. #ifdef CONFIG_SHA256
  1206. if (cert) {
  1207. const u8 *addr[1];
  1208. size_t len[1];
  1209. addr[0] = wpabuf_head(cert);
  1210. len[0] = wpabuf_len(cert);
  1211. if (sha256_vector(1, addr, len, hash) == 0) {
  1212. ev.peer_cert.hash = hash;
  1213. ev.peer_cert.hash_len = sizeof(hash);
  1214. }
  1215. }
  1216. #endif /* CONFIG_SHA256 */
  1217. ev.peer_cert.depth = depth;
  1218. ev.peer_cert.subject = subject;
  1219. ext = X509_get_ext_d2i(err_cert, NID_subject_alt_name, NULL, NULL);
  1220. for (i = 0; ext && i < sk_GENERAL_NAME_num(ext); i++) {
  1221. char *pos;
  1222. if (num_altsubject == TLS_MAX_ALT_SUBJECT)
  1223. break;
  1224. gen = sk_GENERAL_NAME_value(ext, i);
  1225. if (gen->type != GEN_EMAIL &&
  1226. gen->type != GEN_DNS &&
  1227. gen->type != GEN_URI)
  1228. continue;
  1229. pos = os_malloc(10 + gen->d.ia5->length + 1);
  1230. if (pos == NULL)
  1231. break;
  1232. altsubject[num_altsubject++] = pos;
  1233. switch (gen->type) {
  1234. case GEN_EMAIL:
  1235. os_memcpy(pos, "EMAIL:", 6);
  1236. pos += 6;
  1237. break;
  1238. case GEN_DNS:
  1239. os_memcpy(pos, "DNS:", 4);
  1240. pos += 4;
  1241. break;
  1242. case GEN_URI:
  1243. os_memcpy(pos, "URI:", 4);
  1244. pos += 4;
  1245. break;
  1246. }
  1247. os_memcpy(pos, gen->d.ia5->data, gen->d.ia5->length);
  1248. pos += gen->d.ia5->length;
  1249. *pos = '\0';
  1250. }
  1251. for (alt = 0; alt < num_altsubject; alt++)
  1252. ev.peer_cert.altsubject[alt] = altsubject[alt];
  1253. ev.peer_cert.num_altsubject = num_altsubject;
  1254. context->event_cb(context->cb_ctx, TLS_PEER_CERTIFICATE, &ev);
  1255. wpabuf_free(cert);
  1256. for (alt = 0; alt < num_altsubject; alt++)
  1257. os_free(altsubject[alt]);
  1258. }
  1259. static int tls_verify_cb(int preverify_ok, X509_STORE_CTX *x509_ctx)
  1260. {
  1261. char buf[256];
  1262. X509 *err_cert;
  1263. int err, depth;
  1264. SSL *ssl;
  1265. struct tls_connection *conn;
  1266. struct tls_context *context;
  1267. char *match, *altmatch, *suffix_match, *domain_match;
  1268. const char *err_str;
  1269. err_cert = X509_STORE_CTX_get_current_cert(x509_ctx);
  1270. if (!err_cert)
  1271. return 0;
  1272. err = X509_STORE_CTX_get_error(x509_ctx);
  1273. depth = X509_STORE_CTX_get_error_depth(x509_ctx);
  1274. ssl = X509_STORE_CTX_get_ex_data(x509_ctx,
  1275. SSL_get_ex_data_X509_STORE_CTX_idx());
  1276. X509_NAME_oneline(X509_get_subject_name(err_cert), buf, sizeof(buf));
  1277. conn = SSL_get_app_data(ssl);
  1278. if (conn == NULL)
  1279. return 0;
  1280. if (depth == 0)
  1281. conn->peer_cert = err_cert;
  1282. else if (depth == 1)
  1283. conn->peer_issuer = err_cert;
  1284. else if (depth == 2)
  1285. conn->peer_issuer_issuer = err_cert;
  1286. context = conn->context;
  1287. match = conn->subject_match;
  1288. altmatch = conn->altsubject_match;
  1289. suffix_match = conn->suffix_match;
  1290. domain_match = conn->domain_match;
  1291. if (!preverify_ok && !conn->ca_cert_verify)
  1292. preverify_ok = 1;
  1293. if (!preverify_ok && depth > 0 && conn->server_cert_only)
  1294. preverify_ok = 1;
  1295. if (!preverify_ok && (conn->flags & TLS_CONN_DISABLE_TIME_CHECKS) &&
  1296. (err == X509_V_ERR_CERT_HAS_EXPIRED ||
  1297. err == X509_V_ERR_CERT_NOT_YET_VALID)) {
  1298. wpa_printf(MSG_DEBUG, "OpenSSL: Ignore certificate validity "
  1299. "time mismatch");
  1300. preverify_ok = 1;
  1301. }
  1302. err_str = X509_verify_cert_error_string(err);
  1303. #ifdef CONFIG_SHA256
  1304. /*
  1305. * Do not require preverify_ok so we can explicity allow otherwise
  1306. * invalid pinned server certificates.
  1307. */
  1308. if (depth == 0 && conn->server_cert_only) {
  1309. struct wpabuf *cert;
  1310. cert = get_x509_cert(err_cert);
  1311. if (!cert) {
  1312. wpa_printf(MSG_DEBUG, "OpenSSL: Could not fetch "
  1313. "server certificate data");
  1314. preverify_ok = 0;
  1315. } else {
  1316. u8 hash[32];
  1317. const u8 *addr[1];
  1318. size_t len[1];
  1319. addr[0] = wpabuf_head(cert);
  1320. len[0] = wpabuf_len(cert);
  1321. if (sha256_vector(1, addr, len, hash) < 0 ||
  1322. os_memcmp(conn->srv_cert_hash, hash, 32) != 0) {
  1323. err_str = "Server certificate mismatch";
  1324. err = X509_V_ERR_SELF_SIGNED_CERT_IN_CHAIN;
  1325. preverify_ok = 0;
  1326. } else if (!preverify_ok) {
  1327. /*
  1328. * Certificate matches pinned certificate, allow
  1329. * regardless of other problems.
  1330. */
  1331. wpa_printf(MSG_DEBUG,
  1332. "OpenSSL: Ignore validation issues for a pinned server certificate");
  1333. preverify_ok = 1;
  1334. }
  1335. wpabuf_free(cert);
  1336. }
  1337. }
  1338. #endif /* CONFIG_SHA256 */
  1339. if (!preverify_ok) {
  1340. wpa_printf(MSG_WARNING, "TLS: Certificate verification failed,"
  1341. " error %d (%s) depth %d for '%s'", err, err_str,
  1342. depth, buf);
  1343. openssl_tls_fail_event(conn, err_cert, err, depth, buf,
  1344. err_str, TLS_FAIL_UNSPECIFIED);
  1345. return preverify_ok;
  1346. }
  1347. wpa_printf(MSG_DEBUG, "TLS: tls_verify_cb - preverify_ok=%d "
  1348. "err=%d (%s) ca_cert_verify=%d depth=%d buf='%s'",
  1349. preverify_ok, err, err_str,
  1350. conn->ca_cert_verify, depth, buf);
  1351. if (depth == 0 && match && os_strstr(buf, match) == NULL) {
  1352. wpa_printf(MSG_WARNING, "TLS: Subject '%s' did not "
  1353. "match with '%s'", buf, match);
  1354. preverify_ok = 0;
  1355. openssl_tls_fail_event(conn, err_cert, err, depth, buf,
  1356. "Subject mismatch",
  1357. TLS_FAIL_SUBJECT_MISMATCH);
  1358. } else if (depth == 0 && altmatch &&
  1359. !tls_match_altsubject(err_cert, altmatch)) {
  1360. wpa_printf(MSG_WARNING, "TLS: altSubjectName match "
  1361. "'%s' not found", altmatch);
  1362. preverify_ok = 0;
  1363. openssl_tls_fail_event(conn, err_cert, err, depth, buf,
  1364. "AltSubject mismatch",
  1365. TLS_FAIL_ALTSUBJECT_MISMATCH);
  1366. } else if (depth == 0 && suffix_match &&
  1367. !tls_match_suffix(err_cert, suffix_match, 0)) {
  1368. wpa_printf(MSG_WARNING, "TLS: Domain suffix match '%s' not found",
  1369. suffix_match);
  1370. preverify_ok = 0;
  1371. openssl_tls_fail_event(conn, err_cert, err, depth, buf,
  1372. "Domain suffix mismatch",
  1373. TLS_FAIL_DOMAIN_SUFFIX_MISMATCH);
  1374. } else if (depth == 0 && domain_match &&
  1375. !tls_match_suffix(err_cert, domain_match, 1)) {
  1376. wpa_printf(MSG_WARNING, "TLS: Domain match '%s' not found",
  1377. domain_match);
  1378. preverify_ok = 0;
  1379. openssl_tls_fail_event(conn, err_cert, err, depth, buf,
  1380. "Domain mismatch",
  1381. TLS_FAIL_DOMAIN_MISMATCH);
  1382. } else
  1383. openssl_tls_cert_event(conn, err_cert, depth, buf);
  1384. if (conn->cert_probe && preverify_ok && depth == 0) {
  1385. wpa_printf(MSG_DEBUG, "OpenSSL: Reject server certificate "
  1386. "on probe-only run");
  1387. preverify_ok = 0;
  1388. openssl_tls_fail_event(conn, err_cert, err, depth, buf,
  1389. "Server certificate chain probe",
  1390. TLS_FAIL_SERVER_CHAIN_PROBE);
  1391. }
  1392. if (preverify_ok && context->event_cb != NULL)
  1393. context->event_cb(context->cb_ctx,
  1394. TLS_CERT_CHAIN_SUCCESS, NULL);
  1395. return preverify_ok;
  1396. }
  1397. #ifndef OPENSSL_NO_STDIO
  1398. static int tls_load_ca_der(void *_ssl_ctx, const char *ca_cert)
  1399. {
  1400. SSL_CTX *ssl_ctx = _ssl_ctx;
  1401. X509_LOOKUP *lookup;
  1402. int ret = 0;
  1403. lookup = X509_STORE_add_lookup(SSL_CTX_get_cert_store(ssl_ctx),
  1404. X509_LOOKUP_file());
  1405. if (lookup == NULL) {
  1406. tls_show_errors(MSG_WARNING, __func__,
  1407. "Failed add lookup for X509 store");
  1408. return -1;
  1409. }
  1410. if (!X509_LOOKUP_load_file(lookup, ca_cert, X509_FILETYPE_ASN1)) {
  1411. unsigned long err = ERR_peek_error();
  1412. tls_show_errors(MSG_WARNING, __func__,
  1413. "Failed load CA in DER format");
  1414. if (ERR_GET_LIB(err) == ERR_LIB_X509 &&
  1415. ERR_GET_REASON(err) == X509_R_CERT_ALREADY_IN_HASH_TABLE) {
  1416. wpa_printf(MSG_DEBUG, "OpenSSL: %s - ignoring "
  1417. "cert already in hash table error",
  1418. __func__);
  1419. } else
  1420. ret = -1;
  1421. }
  1422. return ret;
  1423. }
  1424. #endif /* OPENSSL_NO_STDIO */
  1425. static int tls_connection_ca_cert(void *_ssl_ctx, struct tls_connection *conn,
  1426. const char *ca_cert, const u8 *ca_cert_blob,
  1427. size_t ca_cert_blob_len, const char *ca_path)
  1428. {
  1429. SSL_CTX *ssl_ctx = _ssl_ctx;
  1430. X509_STORE *store;
  1431. /*
  1432. * Remove previously configured trusted CA certificates before adding
  1433. * new ones.
  1434. */
  1435. store = X509_STORE_new();
  1436. if (store == NULL) {
  1437. wpa_printf(MSG_DEBUG, "OpenSSL: %s - failed to allocate new "
  1438. "certificate store", __func__);
  1439. return -1;
  1440. }
  1441. SSL_CTX_set_cert_store(ssl_ctx, store);
  1442. SSL_set_verify(conn->ssl, SSL_VERIFY_PEER, tls_verify_cb);
  1443. conn->ca_cert_verify = 1;
  1444. if (ca_cert && os_strncmp(ca_cert, "probe://", 8) == 0) {
  1445. wpa_printf(MSG_DEBUG, "OpenSSL: Probe for server certificate "
  1446. "chain");
  1447. conn->cert_probe = 1;
  1448. conn->ca_cert_verify = 0;
  1449. return 0;
  1450. }
  1451. if (ca_cert && os_strncmp(ca_cert, "hash://", 7) == 0) {
  1452. #ifdef CONFIG_SHA256
  1453. const char *pos = ca_cert + 7;
  1454. if (os_strncmp(pos, "server/sha256/", 14) != 0) {
  1455. wpa_printf(MSG_DEBUG, "OpenSSL: Unsupported ca_cert "
  1456. "hash value '%s'", ca_cert);
  1457. return -1;
  1458. }
  1459. pos += 14;
  1460. if (os_strlen(pos) != 32 * 2) {
  1461. wpa_printf(MSG_DEBUG, "OpenSSL: Unexpected SHA256 "
  1462. "hash length in ca_cert '%s'", ca_cert);
  1463. return -1;
  1464. }
  1465. if (hexstr2bin(pos, conn->srv_cert_hash, 32) < 0) {
  1466. wpa_printf(MSG_DEBUG, "OpenSSL: Invalid SHA256 hash "
  1467. "value in ca_cert '%s'", ca_cert);
  1468. return -1;
  1469. }
  1470. conn->server_cert_only = 1;
  1471. wpa_printf(MSG_DEBUG, "OpenSSL: Checking only server "
  1472. "certificate match");
  1473. return 0;
  1474. #else /* CONFIG_SHA256 */
  1475. wpa_printf(MSG_INFO, "No SHA256 included in the build - "
  1476. "cannot validate server certificate hash");
  1477. return -1;
  1478. #endif /* CONFIG_SHA256 */
  1479. }
  1480. if (ca_cert_blob) {
  1481. X509 *cert = d2i_X509(NULL,
  1482. (const unsigned char **) &ca_cert_blob,
  1483. ca_cert_blob_len);
  1484. if (cert == NULL) {
  1485. tls_show_errors(MSG_WARNING, __func__,
  1486. "Failed to parse ca_cert_blob");
  1487. return -1;
  1488. }
  1489. if (!X509_STORE_add_cert(SSL_CTX_get_cert_store(ssl_ctx),
  1490. cert)) {
  1491. unsigned long err = ERR_peek_error();
  1492. tls_show_errors(MSG_WARNING, __func__,
  1493. "Failed to add ca_cert_blob to "
  1494. "certificate store");
  1495. if (ERR_GET_LIB(err) == ERR_LIB_X509 &&
  1496. ERR_GET_REASON(err) ==
  1497. X509_R_CERT_ALREADY_IN_HASH_TABLE) {
  1498. wpa_printf(MSG_DEBUG, "OpenSSL: %s - ignoring "
  1499. "cert already in hash table error",
  1500. __func__);
  1501. } else {
  1502. X509_free(cert);
  1503. return -1;
  1504. }
  1505. }
  1506. X509_free(cert);
  1507. wpa_printf(MSG_DEBUG, "OpenSSL: %s - added ca_cert_blob "
  1508. "to certificate store", __func__);
  1509. return 0;
  1510. }
  1511. #ifdef ANDROID
  1512. if (ca_cert && os_strncmp("keystore://", ca_cert, 11) == 0) {
  1513. BIO *bio = BIO_from_keystore(&ca_cert[11]);
  1514. STACK_OF(X509_INFO) *stack = NULL;
  1515. stack_index_t i;
  1516. if (bio) {
  1517. stack = PEM_X509_INFO_read_bio(bio, NULL, NULL, NULL);
  1518. BIO_free(bio);
  1519. }
  1520. if (!stack)
  1521. return -1;
  1522. for (i = 0; i < sk_X509_INFO_num(stack); ++i) {
  1523. X509_INFO *info = sk_X509_INFO_value(stack, i);
  1524. if (info->x509) {
  1525. X509_STORE_add_cert(ssl_ctx->cert_store,
  1526. info->x509);
  1527. }
  1528. if (info->crl) {
  1529. X509_STORE_add_crl(ssl_ctx->cert_store,
  1530. info->crl);
  1531. }
  1532. }
  1533. sk_X509_INFO_pop_free(stack, X509_INFO_free);
  1534. SSL_set_verify(conn->ssl, SSL_VERIFY_PEER, tls_verify_cb);
  1535. return 0;
  1536. }
  1537. #endif /* ANDROID */
  1538. #ifdef CONFIG_NATIVE_WINDOWS
  1539. if (ca_cert && tls_cryptoapi_ca_cert(ssl_ctx, conn->ssl, ca_cert) ==
  1540. 0) {
  1541. wpa_printf(MSG_DEBUG, "OpenSSL: Added CA certificates from "
  1542. "system certificate store");
  1543. return 0;
  1544. }
  1545. #endif /* CONFIG_NATIVE_WINDOWS */
  1546. if (ca_cert || ca_path) {
  1547. #ifndef OPENSSL_NO_STDIO
  1548. if (SSL_CTX_load_verify_locations(ssl_ctx, ca_cert, ca_path) !=
  1549. 1) {
  1550. tls_show_errors(MSG_WARNING, __func__,
  1551. "Failed to load root certificates");
  1552. if (ca_cert &&
  1553. tls_load_ca_der(ssl_ctx, ca_cert) == 0) {
  1554. wpa_printf(MSG_DEBUG, "OpenSSL: %s - loaded "
  1555. "DER format CA certificate",
  1556. __func__);
  1557. } else
  1558. return -1;
  1559. } else {
  1560. wpa_printf(MSG_DEBUG, "TLS: Trusted root "
  1561. "certificate(s) loaded");
  1562. tls_get_errors(ssl_ctx);
  1563. }
  1564. #else /* OPENSSL_NO_STDIO */
  1565. wpa_printf(MSG_DEBUG, "OpenSSL: %s - OPENSSL_NO_STDIO",
  1566. __func__);
  1567. return -1;
  1568. #endif /* OPENSSL_NO_STDIO */
  1569. } else {
  1570. /* No ca_cert configured - do not try to verify server
  1571. * certificate */
  1572. conn->ca_cert_verify = 0;
  1573. }
  1574. return 0;
  1575. }
  1576. static int tls_global_ca_cert(SSL_CTX *ssl_ctx, const char *ca_cert)
  1577. {
  1578. if (ca_cert) {
  1579. if (SSL_CTX_load_verify_locations(ssl_ctx, ca_cert, NULL) != 1)
  1580. {
  1581. tls_show_errors(MSG_WARNING, __func__,
  1582. "Failed to load root certificates");
  1583. return -1;
  1584. }
  1585. wpa_printf(MSG_DEBUG, "TLS: Trusted root "
  1586. "certificate(s) loaded");
  1587. #ifndef OPENSSL_NO_STDIO
  1588. /* Add the same CAs to the client certificate requests */
  1589. SSL_CTX_set_client_CA_list(ssl_ctx,
  1590. SSL_load_client_CA_file(ca_cert));
  1591. #endif /* OPENSSL_NO_STDIO */
  1592. }
  1593. return 0;
  1594. }
  1595. int tls_global_set_verify(void *ssl_ctx, int check_crl)
  1596. {
  1597. int flags;
  1598. if (check_crl) {
  1599. X509_STORE *cs = SSL_CTX_get_cert_store(ssl_ctx);
  1600. if (cs == NULL) {
  1601. tls_show_errors(MSG_INFO, __func__, "Failed to get "
  1602. "certificate store when enabling "
  1603. "check_crl");
  1604. return -1;
  1605. }
  1606. flags = X509_V_FLAG_CRL_CHECK;
  1607. if (check_crl == 2)
  1608. flags |= X509_V_FLAG_CRL_CHECK_ALL;
  1609. X509_STORE_set_flags(cs, flags);
  1610. }
  1611. return 0;
  1612. }
  1613. static int tls_connection_set_subject_match(struct tls_connection *conn,
  1614. const char *subject_match,
  1615. const char *altsubject_match,
  1616. const char *suffix_match,
  1617. const char *domain_match)
  1618. {
  1619. os_free(conn->subject_match);
  1620. conn->subject_match = NULL;
  1621. if (subject_match) {
  1622. conn->subject_match = os_strdup(subject_match);
  1623. if (conn->subject_match == NULL)
  1624. return -1;
  1625. }
  1626. os_free(conn->altsubject_match);
  1627. conn->altsubject_match = NULL;
  1628. if (altsubject_match) {
  1629. conn->altsubject_match = os_strdup(altsubject_match);
  1630. if (conn->altsubject_match == NULL)
  1631. return -1;
  1632. }
  1633. os_free(conn->suffix_match);
  1634. conn->suffix_match = NULL;
  1635. if (suffix_match) {
  1636. conn->suffix_match = os_strdup(suffix_match);
  1637. if (conn->suffix_match == NULL)
  1638. return -1;
  1639. }
  1640. os_free(conn->domain_match);
  1641. conn->domain_match = NULL;
  1642. if (domain_match) {
  1643. conn->domain_match = os_strdup(domain_match);
  1644. if (conn->domain_match == NULL)
  1645. return -1;
  1646. }
  1647. return 0;
  1648. }
  1649. int tls_connection_set_verify(void *ssl_ctx, struct tls_connection *conn,
  1650. int verify_peer)
  1651. {
  1652. static int counter = 0;
  1653. if (conn == NULL)
  1654. return -1;
  1655. if (verify_peer) {
  1656. conn->ca_cert_verify = 1;
  1657. SSL_set_verify(conn->ssl, SSL_VERIFY_PEER |
  1658. SSL_VERIFY_FAIL_IF_NO_PEER_CERT |
  1659. SSL_VERIFY_CLIENT_ONCE, tls_verify_cb);
  1660. } else {
  1661. conn->ca_cert_verify = 0;
  1662. SSL_set_verify(conn->ssl, SSL_VERIFY_NONE, NULL);
  1663. }
  1664. SSL_set_accept_state(conn->ssl);
  1665. /*
  1666. * Set session id context in order to avoid fatal errors when client
  1667. * tries to resume a session. However, set the context to a unique
  1668. * value in order to effectively disable session resumption for now
  1669. * since not all areas of the server code are ready for it (e.g.,
  1670. * EAP-TTLS needs special handling for Phase 2 after abbreviated TLS
  1671. * handshake).
  1672. */
  1673. counter++;
  1674. SSL_set_session_id_context(conn->ssl,
  1675. (const unsigned char *) &counter,
  1676. sizeof(counter));
  1677. return 0;
  1678. }
  1679. static int tls_connection_client_cert(struct tls_connection *conn,
  1680. const char *client_cert,
  1681. const u8 *client_cert_blob,
  1682. size_t client_cert_blob_len)
  1683. {
  1684. if (client_cert == NULL && client_cert_blob == NULL)
  1685. return 0;
  1686. if (client_cert_blob &&
  1687. SSL_use_certificate_ASN1(conn->ssl, (u8 *) client_cert_blob,
  1688. client_cert_blob_len) == 1) {
  1689. wpa_printf(MSG_DEBUG, "OpenSSL: SSL_use_certificate_ASN1 --> "
  1690. "OK");
  1691. return 0;
  1692. } else if (client_cert_blob) {
  1693. tls_show_errors(MSG_DEBUG, __func__,
  1694. "SSL_use_certificate_ASN1 failed");
  1695. }
  1696. if (client_cert == NULL)
  1697. return -1;
  1698. #ifdef ANDROID
  1699. if (os_strncmp("keystore://", client_cert, 11) == 0) {
  1700. BIO *bio = BIO_from_keystore(&client_cert[11]);
  1701. X509 *x509 = NULL;
  1702. int ret = -1;
  1703. if (bio) {
  1704. x509 = PEM_read_bio_X509(bio, NULL, NULL, NULL);
  1705. BIO_free(bio);
  1706. }
  1707. if (x509) {
  1708. if (SSL_use_certificate(conn->ssl, x509) == 1)
  1709. ret = 0;
  1710. X509_free(x509);
  1711. }
  1712. return ret;
  1713. }
  1714. #endif /* ANDROID */
  1715. #ifndef OPENSSL_NO_STDIO
  1716. if (SSL_use_certificate_file(conn->ssl, client_cert,
  1717. SSL_FILETYPE_ASN1) == 1) {
  1718. wpa_printf(MSG_DEBUG, "OpenSSL: SSL_use_certificate_file (DER)"
  1719. " --> OK");
  1720. return 0;
  1721. }
  1722. if (SSL_use_certificate_file(conn->ssl, client_cert,
  1723. SSL_FILETYPE_PEM) == 1) {
  1724. ERR_clear_error();
  1725. wpa_printf(MSG_DEBUG, "OpenSSL: SSL_use_certificate_file (PEM)"
  1726. " --> OK");
  1727. return 0;
  1728. }
  1729. tls_show_errors(MSG_DEBUG, __func__,
  1730. "SSL_use_certificate_file failed");
  1731. #else /* OPENSSL_NO_STDIO */
  1732. wpa_printf(MSG_DEBUG, "OpenSSL: %s - OPENSSL_NO_STDIO", __func__);
  1733. #endif /* OPENSSL_NO_STDIO */
  1734. return -1;
  1735. }
  1736. static int tls_global_client_cert(SSL_CTX *ssl_ctx, const char *client_cert)
  1737. {
  1738. #ifndef OPENSSL_NO_STDIO
  1739. if (client_cert == NULL)
  1740. return 0;
  1741. if (SSL_CTX_use_certificate_file(ssl_ctx, client_cert,
  1742. SSL_FILETYPE_ASN1) != 1 &&
  1743. SSL_CTX_use_certificate_chain_file(ssl_ctx, client_cert) != 1 &&
  1744. SSL_CTX_use_certificate_file(ssl_ctx, client_cert,
  1745. SSL_FILETYPE_PEM) != 1) {
  1746. tls_show_errors(MSG_INFO, __func__,
  1747. "Failed to load client certificate");
  1748. return -1;
  1749. }
  1750. return 0;
  1751. #else /* OPENSSL_NO_STDIO */
  1752. if (client_cert == NULL)
  1753. return 0;
  1754. wpa_printf(MSG_DEBUG, "OpenSSL: %s - OPENSSL_NO_STDIO", __func__);
  1755. return -1;
  1756. #endif /* OPENSSL_NO_STDIO */
  1757. }
  1758. static int tls_passwd_cb(char *buf, int size, int rwflag, void *password)
  1759. {
  1760. if (password == NULL) {
  1761. return 0;
  1762. }
  1763. os_strlcpy(buf, (char *) password, size);
  1764. return os_strlen(buf);
  1765. }
  1766. #ifdef PKCS12_FUNCS
  1767. static int tls_parse_pkcs12(SSL_CTX *ssl_ctx, SSL *ssl, PKCS12 *p12,
  1768. const char *passwd)
  1769. {
  1770. EVP_PKEY *pkey;
  1771. X509 *cert;
  1772. STACK_OF(X509) *certs;
  1773. int res = 0;
  1774. char buf[256];
  1775. pkey = NULL;
  1776. cert = NULL;
  1777. certs = NULL;
  1778. if (!PKCS12_parse(p12, passwd, &pkey, &cert, &certs)) {
  1779. tls_show_errors(MSG_DEBUG, __func__,
  1780. "Failed to parse PKCS12 file");
  1781. PKCS12_free(p12);
  1782. return -1;
  1783. }
  1784. wpa_printf(MSG_DEBUG, "TLS: Successfully parsed PKCS12 data");
  1785. if (cert) {
  1786. X509_NAME_oneline(X509_get_subject_name(cert), buf,
  1787. sizeof(buf));
  1788. wpa_printf(MSG_DEBUG, "TLS: Got certificate from PKCS12: "
  1789. "subject='%s'", buf);
  1790. if (ssl) {
  1791. if (SSL_use_certificate(ssl, cert) != 1)
  1792. res = -1;
  1793. } else {
  1794. if (SSL_CTX_use_certificate(ssl_ctx, cert) != 1)
  1795. res = -1;
  1796. }
  1797. X509_free(cert);
  1798. }
  1799. if (pkey) {
  1800. wpa_printf(MSG_DEBUG, "TLS: Got private key from PKCS12");
  1801. if (ssl) {
  1802. if (SSL_use_PrivateKey(ssl, pkey) != 1)
  1803. res = -1;
  1804. } else {
  1805. if (SSL_CTX_use_PrivateKey(ssl_ctx, pkey) != 1)
  1806. res = -1;
  1807. }
  1808. EVP_PKEY_free(pkey);
  1809. }
  1810. if (certs) {
  1811. #if OPENSSL_VERSION_NUMBER >= 0x10002000L
  1812. SSL_clear_chain_certs(ssl);
  1813. while ((cert = sk_X509_pop(certs)) != NULL) {
  1814. X509_NAME_oneline(X509_get_subject_name(cert), buf,
  1815. sizeof(buf));
  1816. wpa_printf(MSG_DEBUG, "TLS: additional certificate"
  1817. " from PKCS12: subject='%s'", buf);
  1818. if (SSL_add1_chain_cert(ssl, cert) != 1) {
  1819. res = -1;
  1820. break;
  1821. }
  1822. }
  1823. sk_X509_free(certs);
  1824. #ifndef OPENSSL_IS_BORINGSSL
  1825. res = SSL_build_cert_chain(ssl,
  1826. SSL_BUILD_CHAIN_FLAG_CHECK |
  1827. SSL_BUILD_CHAIN_FLAG_IGNORE_ERROR);
  1828. if (!res) {
  1829. tls_show_errors(MSG_DEBUG, __func__,
  1830. "Failed to build certificate chain");
  1831. } else if (res == 2) {
  1832. wpa_printf(MSG_DEBUG,
  1833. "TLS: Ignore certificate chain verification error when building chain with PKCS#12 extra certificates");
  1834. }
  1835. #endif /* OPENSSL_IS_BORINGSSL */
  1836. /*
  1837. * Try to continue regardless of result since it is possible for
  1838. * the extra certificates not to be required.
  1839. */
  1840. res = 0;
  1841. #else /* OPENSSL_VERSION_NUMBER >= 0x10002000L */
  1842. #if OPENSSL_VERSION_NUMBER >= 0x10001000L
  1843. SSL_CTX_clear_extra_chain_certs(ssl_ctx);
  1844. #endif /* OPENSSL_VERSION_NUMBER >= 0x10001000L */
  1845. while ((cert = sk_X509_pop(certs)) != NULL) {
  1846. X509_NAME_oneline(X509_get_subject_name(cert), buf,
  1847. sizeof(buf));
  1848. wpa_printf(MSG_DEBUG, "TLS: additional certificate"
  1849. " from PKCS12: subject='%s'", buf);
  1850. /*
  1851. * There is no SSL equivalent for the chain cert - so
  1852. * always add it to the context...
  1853. */
  1854. if (SSL_CTX_add_extra_chain_cert(ssl_ctx, cert) != 1) {
  1855. res = -1;
  1856. break;
  1857. }
  1858. }
  1859. sk_X509_free(certs);
  1860. #endif /* OPENSSL_VERSION_NUMBER >= 0x10002000L */
  1861. }
  1862. PKCS12_free(p12);
  1863. if (res < 0)
  1864. tls_get_errors(ssl_ctx);
  1865. return res;
  1866. }
  1867. #endif /* PKCS12_FUNCS */
  1868. static int tls_read_pkcs12(SSL_CTX *ssl_ctx, SSL *ssl, const char *private_key,
  1869. const char *passwd)
  1870. {
  1871. #ifdef PKCS12_FUNCS
  1872. FILE *f;
  1873. PKCS12 *p12;
  1874. f = fopen(private_key, "rb");
  1875. if (f == NULL)
  1876. return -1;
  1877. p12 = d2i_PKCS12_fp(f, NULL);
  1878. fclose(f);
  1879. if (p12 == NULL) {
  1880. tls_show_errors(MSG_INFO, __func__,
  1881. "Failed to use PKCS#12 file");
  1882. return -1;
  1883. }
  1884. return tls_parse_pkcs12(ssl_ctx, ssl, p12, passwd);
  1885. #else /* PKCS12_FUNCS */
  1886. wpa_printf(MSG_INFO, "TLS: PKCS12 support disabled - cannot read "
  1887. "p12/pfx files");
  1888. return -1;
  1889. #endif /* PKCS12_FUNCS */
  1890. }
  1891. static int tls_read_pkcs12_blob(SSL_CTX *ssl_ctx, SSL *ssl,
  1892. const u8 *blob, size_t len, const char *passwd)
  1893. {
  1894. #ifdef PKCS12_FUNCS
  1895. PKCS12 *p12;
  1896. p12 = d2i_PKCS12(NULL, (const unsigned char **) &blob, len);
  1897. if (p12 == NULL) {
  1898. tls_show_errors(MSG_INFO, __func__,
  1899. "Failed to use PKCS#12 blob");
  1900. return -1;
  1901. }
  1902. return tls_parse_pkcs12(ssl_ctx, ssl, p12, passwd);
  1903. #else /* PKCS12_FUNCS */
  1904. wpa_printf(MSG_INFO, "TLS: PKCS12 support disabled - cannot parse "
  1905. "p12/pfx blobs");
  1906. return -1;
  1907. #endif /* PKCS12_FUNCS */
  1908. }
  1909. #ifndef OPENSSL_NO_ENGINE
  1910. static int tls_engine_get_cert(struct tls_connection *conn,
  1911. const char *cert_id,
  1912. X509 **cert)
  1913. {
  1914. /* this runs after the private key is loaded so no PIN is required */
  1915. struct {
  1916. const char *cert_id;
  1917. X509 *cert;
  1918. } params;
  1919. params.cert_id = cert_id;
  1920. params.cert = NULL;
  1921. if (!ENGINE_ctrl_cmd(conn->engine, "LOAD_CERT_CTRL",
  1922. 0, &params, NULL, 1)) {
  1923. unsigned long err = ERR_get_error();
  1924. wpa_printf(MSG_ERROR, "ENGINE: cannot load client cert with id"
  1925. " '%s' [%s]", cert_id,
  1926. ERR_error_string(err, NULL));
  1927. if (tls_is_pin_error(err))
  1928. return TLS_SET_PARAMS_ENGINE_PRV_BAD_PIN;
  1929. return TLS_SET_PARAMS_ENGINE_PRV_INIT_FAILED;
  1930. }
  1931. if (!params.cert) {
  1932. wpa_printf(MSG_ERROR, "ENGINE: did not properly cert with id"
  1933. " '%s'", cert_id);
  1934. return TLS_SET_PARAMS_ENGINE_PRV_INIT_FAILED;
  1935. }
  1936. *cert = params.cert;
  1937. return 0;
  1938. }
  1939. #endif /* OPENSSL_NO_ENGINE */
  1940. static int tls_connection_engine_client_cert(struct tls_connection *conn,
  1941. const char *cert_id)
  1942. {
  1943. #ifndef OPENSSL_NO_ENGINE
  1944. X509 *cert;
  1945. if (tls_engine_get_cert(conn, cert_id, &cert))
  1946. return -1;
  1947. if (!SSL_use_certificate(conn->ssl, cert)) {
  1948. tls_show_errors(MSG_ERROR, __func__,
  1949. "SSL_use_certificate failed");
  1950. X509_free(cert);
  1951. return -1;
  1952. }
  1953. X509_free(cert);
  1954. wpa_printf(MSG_DEBUG, "ENGINE: SSL_use_certificate --> "
  1955. "OK");
  1956. return 0;
  1957. #else /* OPENSSL_NO_ENGINE */
  1958. return -1;
  1959. #endif /* OPENSSL_NO_ENGINE */
  1960. }
  1961. static int tls_connection_engine_ca_cert(void *_ssl_ctx,
  1962. struct tls_connection *conn,
  1963. const char *ca_cert_id)
  1964. {
  1965. #ifndef OPENSSL_NO_ENGINE
  1966. X509 *cert;
  1967. SSL_CTX *ssl_ctx = _ssl_ctx;
  1968. X509_STORE *store;
  1969. if (tls_engine_get_cert(conn, ca_cert_id, &cert))
  1970. return -1;
  1971. /* start off the same as tls_connection_ca_cert */
  1972. store = X509_STORE_new();
  1973. if (store == NULL) {
  1974. wpa_printf(MSG_DEBUG, "OpenSSL: %s - failed to allocate new "
  1975. "certificate store", __func__);
  1976. X509_free(cert);
  1977. return -1;
  1978. }
  1979. SSL_CTX_set_cert_store(ssl_ctx, store);
  1980. if (!X509_STORE_add_cert(store, cert)) {
  1981. unsigned long err = ERR_peek_error();
  1982. tls_show_errors(MSG_WARNING, __func__,
  1983. "Failed to add CA certificate from engine "
  1984. "to certificate store");
  1985. if (ERR_GET_LIB(err) == ERR_LIB_X509 &&
  1986. ERR_GET_REASON(err) == X509_R_CERT_ALREADY_IN_HASH_TABLE) {
  1987. wpa_printf(MSG_DEBUG, "OpenSSL: %s - ignoring cert"
  1988. " already in hash table error",
  1989. __func__);
  1990. } else {
  1991. X509_free(cert);
  1992. return -1;
  1993. }
  1994. }
  1995. X509_free(cert);
  1996. wpa_printf(MSG_DEBUG, "OpenSSL: %s - added CA certificate from engine "
  1997. "to certificate store", __func__);
  1998. SSL_set_verify(conn->ssl, SSL_VERIFY_PEER, tls_verify_cb);
  1999. conn->ca_cert_verify = 1;
  2000. return 0;
  2001. #else /* OPENSSL_NO_ENGINE */
  2002. return -1;
  2003. #endif /* OPENSSL_NO_ENGINE */
  2004. }
  2005. static int tls_connection_engine_private_key(struct tls_connection *conn)
  2006. {
  2007. #ifndef OPENSSL_NO_ENGINE
  2008. if (SSL_use_PrivateKey(conn->ssl, conn->private_key) != 1) {
  2009. tls_show_errors(MSG_ERROR, __func__,
  2010. "ENGINE: cannot use private key for TLS");
  2011. return -1;
  2012. }
  2013. if (!SSL_check_private_key(conn->ssl)) {
  2014. tls_show_errors(MSG_INFO, __func__,
  2015. "Private key failed verification");
  2016. return -1;
  2017. }
  2018. return 0;
  2019. #else /* OPENSSL_NO_ENGINE */
  2020. wpa_printf(MSG_ERROR, "SSL: Configuration uses engine, but "
  2021. "engine support was not compiled in");
  2022. return -1;
  2023. #endif /* OPENSSL_NO_ENGINE */
  2024. }
  2025. static int tls_connection_private_key(void *_ssl_ctx,
  2026. struct tls_connection *conn,
  2027. const char *private_key,
  2028. const char *private_key_passwd,
  2029. const u8 *private_key_blob,
  2030. size_t private_key_blob_len)
  2031. {
  2032. SSL_CTX *ssl_ctx = _ssl_ctx;
  2033. char *passwd;
  2034. int ok;
  2035. if (private_key == NULL && private_key_blob == NULL)
  2036. return 0;
  2037. if (private_key_passwd) {
  2038. passwd = os_strdup(private_key_passwd);
  2039. if (passwd == NULL)
  2040. return -1;
  2041. } else
  2042. passwd = NULL;
  2043. SSL_CTX_set_default_passwd_cb(ssl_ctx, tls_passwd_cb);
  2044. SSL_CTX_set_default_passwd_cb_userdata(ssl_ctx, passwd);
  2045. ok = 0;
  2046. while (private_key_blob) {
  2047. if (SSL_use_PrivateKey_ASN1(EVP_PKEY_RSA, conn->ssl,
  2048. (u8 *) private_key_blob,
  2049. private_key_blob_len) == 1) {
  2050. wpa_printf(MSG_DEBUG, "OpenSSL: SSL_use_PrivateKey_"
  2051. "ASN1(EVP_PKEY_RSA) --> OK");
  2052. ok = 1;
  2053. break;
  2054. }
  2055. if (SSL_use_PrivateKey_ASN1(EVP_PKEY_DSA, conn->ssl,
  2056. (u8 *) private_key_blob,
  2057. private_key_blob_len) == 1) {
  2058. wpa_printf(MSG_DEBUG, "OpenSSL: SSL_use_PrivateKey_"
  2059. "ASN1(EVP_PKEY_DSA) --> OK");
  2060. ok = 1;
  2061. break;
  2062. }
  2063. if (SSL_use_RSAPrivateKey_ASN1(conn->ssl,
  2064. (u8 *) private_key_blob,
  2065. private_key_blob_len) == 1) {
  2066. wpa_printf(MSG_DEBUG, "OpenSSL: "
  2067. "SSL_use_RSAPrivateKey_ASN1 --> OK");
  2068. ok = 1;
  2069. break;
  2070. }
  2071. if (tls_read_pkcs12_blob(ssl_ctx, conn->ssl, private_key_blob,
  2072. private_key_blob_len, passwd) == 0) {
  2073. wpa_printf(MSG_DEBUG, "OpenSSL: PKCS#12 as blob --> "
  2074. "OK");
  2075. ok = 1;
  2076. break;
  2077. }
  2078. break;
  2079. }
  2080. while (!ok && private_key) {
  2081. #ifndef OPENSSL_NO_STDIO
  2082. if (SSL_use_PrivateKey_file(conn->ssl, private_key,
  2083. SSL_FILETYPE_ASN1) == 1) {
  2084. wpa_printf(MSG_DEBUG, "OpenSSL: "
  2085. "SSL_use_PrivateKey_File (DER) --> OK");
  2086. ok = 1;
  2087. break;
  2088. }
  2089. if (SSL_use_PrivateKey_file(conn->ssl, private_key,
  2090. SSL_FILETYPE_PEM) == 1) {
  2091. wpa_printf(MSG_DEBUG, "OpenSSL: "
  2092. "SSL_use_PrivateKey_File (PEM) --> OK");
  2093. ok = 1;
  2094. break;
  2095. }
  2096. #else /* OPENSSL_NO_STDIO */
  2097. wpa_printf(MSG_DEBUG, "OpenSSL: %s - OPENSSL_NO_STDIO",
  2098. __func__);
  2099. #endif /* OPENSSL_NO_STDIO */
  2100. if (tls_read_pkcs12(ssl_ctx, conn->ssl, private_key, passwd)
  2101. == 0) {
  2102. wpa_printf(MSG_DEBUG, "OpenSSL: Reading PKCS#12 file "
  2103. "--> OK");
  2104. ok = 1;
  2105. break;
  2106. }
  2107. if (tls_cryptoapi_cert(conn->ssl, private_key) == 0) {
  2108. wpa_printf(MSG_DEBUG, "OpenSSL: Using CryptoAPI to "
  2109. "access certificate store --> OK");
  2110. ok = 1;
  2111. break;
  2112. }
  2113. break;
  2114. }
  2115. if (!ok) {
  2116. tls_show_errors(MSG_INFO, __func__,
  2117. "Failed to load private key");
  2118. os_free(passwd);
  2119. return -1;
  2120. }
  2121. ERR_clear_error();
  2122. SSL_CTX_set_default_passwd_cb(ssl_ctx, NULL);
  2123. os_free(passwd);
  2124. if (!SSL_check_private_key(conn->ssl)) {
  2125. tls_show_errors(MSG_INFO, __func__, "Private key failed "
  2126. "verification");
  2127. return -1;
  2128. }
  2129. wpa_printf(MSG_DEBUG, "SSL: Private key loaded successfully");
  2130. return 0;
  2131. }
  2132. static int tls_global_private_key(SSL_CTX *ssl_ctx, const char *private_key,
  2133. const char *private_key_passwd)
  2134. {
  2135. char *passwd;
  2136. if (private_key == NULL)
  2137. return 0;
  2138. if (private_key_passwd) {
  2139. passwd = os_strdup(private_key_passwd);
  2140. if (passwd == NULL)
  2141. return -1;
  2142. } else
  2143. passwd = NULL;
  2144. SSL_CTX_set_default_passwd_cb(ssl_ctx, tls_passwd_cb);
  2145. SSL_CTX_set_default_passwd_cb_userdata(ssl_ctx, passwd);
  2146. if (
  2147. #ifndef OPENSSL_NO_STDIO
  2148. SSL_CTX_use_PrivateKey_file(ssl_ctx, private_key,
  2149. SSL_FILETYPE_ASN1) != 1 &&
  2150. SSL_CTX_use_PrivateKey_file(ssl_ctx, private_key,
  2151. SSL_FILETYPE_PEM) != 1 &&
  2152. #endif /* OPENSSL_NO_STDIO */
  2153. tls_read_pkcs12(ssl_ctx, NULL, private_key, passwd)) {
  2154. tls_show_errors(MSG_INFO, __func__,
  2155. "Failed to load private key");
  2156. os_free(passwd);
  2157. ERR_clear_error();
  2158. return -1;
  2159. }
  2160. os_free(passwd);
  2161. ERR_clear_error();
  2162. SSL_CTX_set_default_passwd_cb(ssl_ctx, NULL);
  2163. if (!SSL_CTX_check_private_key(ssl_ctx)) {
  2164. tls_show_errors(MSG_INFO, __func__,
  2165. "Private key failed verification");
  2166. return -1;
  2167. }
  2168. return 0;
  2169. }
  2170. static int tls_connection_dh(struct tls_connection *conn, const char *dh_file)
  2171. {
  2172. #ifdef OPENSSL_NO_DH
  2173. if (dh_file == NULL)
  2174. return 0;
  2175. wpa_printf(MSG_ERROR, "TLS: openssl does not include DH support, but "
  2176. "dh_file specified");
  2177. return -1;
  2178. #else /* OPENSSL_NO_DH */
  2179. DH *dh;
  2180. BIO *bio;
  2181. /* TODO: add support for dh_blob */
  2182. if (dh_file == NULL)
  2183. return 0;
  2184. if (conn == NULL)
  2185. return -1;
  2186. bio = BIO_new_file(dh_file, "r");
  2187. if (bio == NULL) {
  2188. wpa_printf(MSG_INFO, "TLS: Failed to open DH file '%s': %s",
  2189. dh_file, ERR_error_string(ERR_get_error(), NULL));
  2190. return -1;
  2191. }
  2192. dh = PEM_read_bio_DHparams(bio, NULL, NULL, NULL);
  2193. BIO_free(bio);
  2194. #ifndef OPENSSL_NO_DSA
  2195. while (dh == NULL) {
  2196. DSA *dsa;
  2197. wpa_printf(MSG_DEBUG, "TLS: Failed to parse DH file '%s': %s -"
  2198. " trying to parse as DSA params", dh_file,
  2199. ERR_error_string(ERR_get_error(), NULL));
  2200. bio = BIO_new_file(dh_file, "r");
  2201. if (bio == NULL)
  2202. break;
  2203. dsa = PEM_read_bio_DSAparams(bio, NULL, NULL, NULL);
  2204. BIO_free(bio);
  2205. if (!dsa) {
  2206. wpa_printf(MSG_DEBUG, "TLS: Failed to parse DSA file "
  2207. "'%s': %s", dh_file,
  2208. ERR_error_string(ERR_get_error(), NULL));
  2209. break;
  2210. }
  2211. wpa_printf(MSG_DEBUG, "TLS: DH file in DSA param format");
  2212. dh = DSA_dup_DH(dsa);
  2213. DSA_free(dsa);
  2214. if (dh == NULL) {
  2215. wpa_printf(MSG_INFO, "TLS: Failed to convert DSA "
  2216. "params into DH params");
  2217. break;
  2218. }
  2219. break;
  2220. }
  2221. #endif /* !OPENSSL_NO_DSA */
  2222. if (dh == NULL) {
  2223. wpa_printf(MSG_INFO, "TLS: Failed to read/parse DH/DSA file "
  2224. "'%s'", dh_file);
  2225. return -1;
  2226. }
  2227. if (SSL_set_tmp_dh(conn->ssl, dh) != 1) {
  2228. wpa_printf(MSG_INFO, "TLS: Failed to set DH params from '%s': "
  2229. "%s", dh_file,
  2230. ERR_error_string(ERR_get_error(), NULL));
  2231. DH_free(dh);
  2232. return -1;
  2233. }
  2234. DH_free(dh);
  2235. return 0;
  2236. #endif /* OPENSSL_NO_DH */
  2237. }
  2238. static int tls_global_dh(SSL_CTX *ssl_ctx, const char *dh_file)
  2239. {
  2240. #ifdef OPENSSL_NO_DH
  2241. if (dh_file == NULL)
  2242. return 0;
  2243. wpa_printf(MSG_ERROR, "TLS: openssl does not include DH support, but "
  2244. "dh_file specified");
  2245. return -1;
  2246. #else /* OPENSSL_NO_DH */
  2247. DH *dh;
  2248. BIO *bio;
  2249. /* TODO: add support for dh_blob */
  2250. if (dh_file == NULL)
  2251. return 0;
  2252. if (ssl_ctx == NULL)
  2253. return -1;
  2254. bio = BIO_new_file(dh_file, "r");
  2255. if (bio == NULL) {
  2256. wpa_printf(MSG_INFO, "TLS: Failed to open DH file '%s': %s",
  2257. dh_file, ERR_error_string(ERR_get_error(), NULL));
  2258. return -1;
  2259. }
  2260. dh = PEM_read_bio_DHparams(bio, NULL, NULL, NULL);
  2261. BIO_free(bio);
  2262. #ifndef OPENSSL_NO_DSA
  2263. while (dh == NULL) {
  2264. DSA *dsa;
  2265. wpa_printf(MSG_DEBUG, "TLS: Failed to parse DH file '%s': %s -"
  2266. " trying to parse as DSA params", dh_file,
  2267. ERR_error_string(ERR_get_error(), NULL));
  2268. bio = BIO_new_file(dh_file, "r");
  2269. if (bio == NULL)
  2270. break;
  2271. dsa = PEM_read_bio_DSAparams(bio, NULL, NULL, NULL);
  2272. BIO_free(bio);
  2273. if (!dsa) {
  2274. wpa_printf(MSG_DEBUG, "TLS: Failed to parse DSA file "
  2275. "'%s': %s", dh_file,
  2276. ERR_error_string(ERR_get_error(), NULL));
  2277. break;
  2278. }
  2279. wpa_printf(MSG_DEBUG, "TLS: DH file in DSA param format");
  2280. dh = DSA_dup_DH(dsa);
  2281. DSA_free(dsa);
  2282. if (dh == NULL) {
  2283. wpa_printf(MSG_INFO, "TLS: Failed to convert DSA "
  2284. "params into DH params");
  2285. break;
  2286. }
  2287. break;
  2288. }
  2289. #endif /* !OPENSSL_NO_DSA */
  2290. if (dh == NULL) {
  2291. wpa_printf(MSG_INFO, "TLS: Failed to read/parse DH/DSA file "
  2292. "'%s'", dh_file);
  2293. return -1;
  2294. }
  2295. if (SSL_CTX_set_tmp_dh(ssl_ctx, dh) != 1) {
  2296. wpa_printf(MSG_INFO, "TLS: Failed to set DH params from '%s': "
  2297. "%s", dh_file,
  2298. ERR_error_string(ERR_get_error(), NULL));
  2299. DH_free(dh);
  2300. return -1;
  2301. }
  2302. DH_free(dh);
  2303. return 0;
  2304. #endif /* OPENSSL_NO_DH */
  2305. }
  2306. int tls_connection_get_random(void *ssl_ctx, struct tls_connection *conn,
  2307. struct tls_random *keys)
  2308. {
  2309. SSL *ssl;
  2310. if (conn == NULL || keys == NULL)
  2311. return -1;
  2312. ssl = conn->ssl;
  2313. #if OPENSSL_VERSION_NUMBER < 0x10100000L
  2314. if (ssl == NULL || ssl->s3 == NULL || ssl->session == NULL)
  2315. return -1;
  2316. os_memset(keys, 0, sizeof(*keys));
  2317. keys->client_random = ssl->s3->client_random;
  2318. keys->client_random_len = SSL3_RANDOM_SIZE;
  2319. keys->server_random = ssl->s3->server_random;
  2320. keys->server_random_len = SSL3_RANDOM_SIZE;
  2321. #else
  2322. if (ssl == NULL)
  2323. return -1;
  2324. os_memset(keys, 0, sizeof(*keys));
  2325. keys->client_random = conn->client_random;
  2326. keys->client_random_len = SSL_get_client_random(
  2327. ssl, conn->client_random, sizeof(conn->client_random));
  2328. keys->server_random = conn->server_random;
  2329. keys->server_random_len = SSL_get_server_random(
  2330. ssl, conn->server_random, sizeof(conn->server_random));
  2331. #endif
  2332. return 0;
  2333. }
  2334. #ifndef CONFIG_FIPS
  2335. static int openssl_get_keyblock_size(SSL *ssl)
  2336. {
  2337. #if OPENSSL_VERSION_NUMBER < 0x10100000L
  2338. const EVP_CIPHER *c;
  2339. const EVP_MD *h;
  2340. int md_size;
  2341. if (ssl->enc_read_ctx == NULL || ssl->enc_read_ctx->cipher == NULL ||
  2342. ssl->read_hash == NULL)
  2343. return -1;
  2344. c = ssl->enc_read_ctx->cipher;
  2345. #if OPENSSL_VERSION_NUMBER >= 0x00909000L
  2346. h = EVP_MD_CTX_md(ssl->read_hash);
  2347. #else
  2348. h = ssl->read_hash;
  2349. #endif
  2350. if (h)
  2351. md_size = EVP_MD_size(h);
  2352. #if OPENSSL_VERSION_NUMBER >= 0x10000000L
  2353. else if (ssl->s3)
  2354. md_size = ssl->s3->tmp.new_mac_secret_size;
  2355. #endif
  2356. else
  2357. return -1;
  2358. wpa_printf(MSG_DEBUG, "OpenSSL: keyblock size: key_len=%d MD_size=%d "
  2359. "IV_len=%d", EVP_CIPHER_key_length(c), md_size,
  2360. EVP_CIPHER_iv_length(c));
  2361. return 2 * (EVP_CIPHER_key_length(c) +
  2362. md_size +
  2363. EVP_CIPHER_iv_length(c));
  2364. #else
  2365. const SSL_CIPHER *ssl_cipher;
  2366. int cipher, digest;
  2367. const EVP_CIPHER *c;
  2368. const EVP_MD *h;
  2369. ssl_cipher = SSL_get_current_cipher(ssl);
  2370. if (!ssl_cipher)
  2371. return -1;
  2372. cipher = SSL_CIPHER_get_cipher_nid(ssl_cipher);
  2373. digest = SSL_CIPHER_get_digest_nid(ssl_cipher);
  2374. wpa_printf(MSG_DEBUG, "OpenSSL: cipher nid %d digest nid %d",
  2375. cipher, digest);
  2376. if (cipher < 0 || digest < 0)
  2377. return -1;
  2378. c = EVP_get_cipherbynid(cipher);
  2379. h = EVP_get_digestbynid(digest);
  2380. if (!c || !h)
  2381. return -1;
  2382. wpa_printf(MSG_DEBUG,
  2383. "OpenSSL: keyblock size: key_len=%d MD_size=%d IV_len=%d",
  2384. EVP_CIPHER_key_length(c), EVP_MD_size(h),
  2385. EVP_CIPHER_iv_length(c));
  2386. return 2 * (EVP_CIPHER_key_length(c) + EVP_MD_size(h) +
  2387. EVP_CIPHER_iv_length(c));
  2388. #endif
  2389. }
  2390. #endif /* CONFIG_FIPS */
  2391. static int openssl_tls_prf(void *tls_ctx, struct tls_connection *conn,
  2392. const char *label, int server_random_first,
  2393. int skip_keyblock, u8 *out, size_t out_len)
  2394. {
  2395. #ifdef CONFIG_FIPS
  2396. wpa_printf(MSG_ERROR, "OpenSSL: TLS keys cannot be exported in FIPS "
  2397. "mode");
  2398. return -1;
  2399. #else /* CONFIG_FIPS */
  2400. #if OPENSSL_VERSION_NUMBER < 0x10100000L
  2401. SSL *ssl;
  2402. u8 *rnd;
  2403. int ret = -1;
  2404. int skip = 0;
  2405. u8 *tmp_out = NULL;
  2406. u8 *_out = out;
  2407. const char *ver;
  2408. /*
  2409. * TLS library did not support key generation, so get the needed TLS
  2410. * session parameters and use an internal implementation of TLS PRF to
  2411. * derive the key.
  2412. */
  2413. if (conn == NULL)
  2414. return -1;
  2415. ssl = conn->ssl;
  2416. if (ssl == NULL || ssl->s3 == NULL || ssl->session == NULL ||
  2417. ssl->session->master_key_length <= 0)
  2418. return -1;
  2419. ver = SSL_get_version(ssl);
  2420. if (skip_keyblock) {
  2421. skip = openssl_get_keyblock_size(ssl);
  2422. if (skip < 0)
  2423. return -1;
  2424. tmp_out = os_malloc(skip + out_len);
  2425. if (!tmp_out)
  2426. return -1;
  2427. _out = tmp_out;
  2428. }
  2429. rnd = os_malloc(2 * SSL3_RANDOM_SIZE);
  2430. if (!rnd) {
  2431. os_free(tmp_out);
  2432. return -1;
  2433. }
  2434. if (server_random_first) {
  2435. os_memcpy(rnd, ssl->s3->server_random, SSL3_RANDOM_SIZE);
  2436. os_memcpy(rnd + SSL3_RANDOM_SIZE, ssl->s3->client_random,
  2437. SSL3_RANDOM_SIZE);
  2438. } else {
  2439. os_memcpy(rnd, ssl->s3->client_random, SSL3_RANDOM_SIZE);
  2440. os_memcpy(rnd + SSL3_RANDOM_SIZE, ssl->s3->server_random,
  2441. SSL3_RANDOM_SIZE);
  2442. }
  2443. if (os_strcmp(ver, "TLSv1.2") == 0) {
  2444. tls_prf_sha256(ssl->session->master_key,
  2445. ssl->session->master_key_length,
  2446. label, rnd, 2 * SSL3_RANDOM_SIZE,
  2447. _out, skip + out_len);
  2448. ret = 0;
  2449. } else if (tls_prf_sha1_md5(ssl->session->master_key,
  2450. ssl->session->master_key_length,
  2451. label, rnd, 2 * SSL3_RANDOM_SIZE,
  2452. _out, skip + out_len) == 0) {
  2453. ret = 0;
  2454. }
  2455. os_free(rnd);
  2456. if (ret == 0 && skip_keyblock)
  2457. os_memcpy(out, _out + skip, out_len);
  2458. bin_clear_free(tmp_out, skip);
  2459. return ret;
  2460. #else
  2461. SSL *ssl;
  2462. SSL_SESSION *sess;
  2463. u8 *rnd;
  2464. int ret = -1;
  2465. int skip = 0;
  2466. u8 *tmp_out = NULL;
  2467. u8 *_out = out;
  2468. unsigned char client_random[SSL3_RANDOM_SIZE];
  2469. unsigned char server_random[SSL3_RANDOM_SIZE];
  2470. unsigned char master_key[64];
  2471. size_t master_key_len;
  2472. const char *ver;
  2473. /*
  2474. * TLS library did not support key generation, so get the needed TLS
  2475. * session parameters and use an internal implementation of TLS PRF to
  2476. * derive the key.
  2477. */
  2478. if (conn == NULL)
  2479. return -1;
  2480. ssl = conn->ssl;
  2481. if (ssl == NULL)
  2482. return -1;
  2483. ver = SSL_get_version(ssl);
  2484. sess = SSL_get_session(ssl);
  2485. if (!ver || !sess)
  2486. return -1;
  2487. if (skip_keyblock) {
  2488. skip = openssl_get_keyblock_size(ssl);
  2489. if (skip < 0)
  2490. return -1;
  2491. tmp_out = os_malloc(skip + out_len);
  2492. if (!tmp_out)
  2493. return -1;
  2494. _out = tmp_out;
  2495. }
  2496. rnd = os_malloc(2 * SSL3_RANDOM_SIZE);
  2497. if (!rnd) {
  2498. os_free(tmp_out);
  2499. return -1;
  2500. }
  2501. SSL_get_client_random(ssl, client_random, sizeof(client_random));
  2502. SSL_get_server_random(ssl, server_random, sizeof(server_random));
  2503. master_key_len = SSL_SESSION_get_master_key(sess, master_key,
  2504. sizeof(master_key));
  2505. if (server_random_first) {
  2506. os_memcpy(rnd, server_random, SSL3_RANDOM_SIZE);
  2507. os_memcpy(rnd + SSL3_RANDOM_SIZE, client_random,
  2508. SSL3_RANDOM_SIZE);
  2509. } else {
  2510. os_memcpy(rnd, client_random, SSL3_RANDOM_SIZE);
  2511. os_memcpy(rnd + SSL3_RANDOM_SIZE, server_random,
  2512. SSL3_RANDOM_SIZE);
  2513. }
  2514. if (os_strcmp(ver, "TLSv1.2") == 0) {
  2515. tls_prf_sha256(master_key, master_key_len,
  2516. label, rnd, 2 * SSL3_RANDOM_SIZE,
  2517. _out, skip + out_len);
  2518. ret = 0;
  2519. } else if (tls_prf_sha1_md5(master_key, master_key_len,
  2520. label, rnd, 2 * SSL3_RANDOM_SIZE,
  2521. _out, skip + out_len) == 0) {
  2522. ret = 0;
  2523. }
  2524. os_memset(master_key, 0, sizeof(master_key));
  2525. os_free(rnd);
  2526. if (ret == 0 && skip_keyblock)
  2527. os_memcpy(out, _out + skip, out_len);
  2528. bin_clear_free(tmp_out, skip);
  2529. return ret;
  2530. #endif
  2531. #endif /* CONFIG_FIPS */
  2532. }
  2533. int tls_connection_prf(void *tls_ctx, struct tls_connection *conn,
  2534. const char *label, int server_random_first,
  2535. int skip_keyblock, u8 *out, size_t out_len)
  2536. {
  2537. #if OPENSSL_VERSION_NUMBER >= 0x10001000L
  2538. SSL *ssl;
  2539. if (conn == NULL)
  2540. return -1;
  2541. if (server_random_first || skip_keyblock)
  2542. return openssl_tls_prf(tls_ctx, conn, label,
  2543. server_random_first, skip_keyblock,
  2544. out, out_len);
  2545. ssl = conn->ssl;
  2546. if (SSL_export_keying_material(ssl, out, out_len, label,
  2547. os_strlen(label), NULL, 0, 0) == 1) {
  2548. wpa_printf(MSG_DEBUG, "OpenSSL: Using internal PRF");
  2549. return 0;
  2550. }
  2551. #endif
  2552. return openssl_tls_prf(tls_ctx, conn, label, server_random_first,
  2553. skip_keyblock, out, out_len);
  2554. }
  2555. static struct wpabuf *
  2556. openssl_handshake(struct tls_connection *conn, const struct wpabuf *in_data,
  2557. int server)
  2558. {
  2559. int res;
  2560. struct wpabuf *out_data;
  2561. /*
  2562. * Give TLS handshake data from the server (if available) to OpenSSL
  2563. * for processing.
  2564. */
  2565. if (in_data && wpabuf_len(in_data) > 0 &&
  2566. BIO_write(conn->ssl_in, wpabuf_head(in_data), wpabuf_len(in_data))
  2567. < 0) {
  2568. tls_show_errors(MSG_INFO, __func__,
  2569. "Handshake failed - BIO_write");
  2570. return NULL;
  2571. }
  2572. /* Initiate TLS handshake or continue the existing handshake */
  2573. if (server)
  2574. res = SSL_accept(conn->ssl);
  2575. else
  2576. res = SSL_connect(conn->ssl);
  2577. if (res != 1) {
  2578. int err = SSL_get_error(conn->ssl, res);
  2579. if (err == SSL_ERROR_WANT_READ)
  2580. wpa_printf(MSG_DEBUG, "SSL: SSL_connect - want "
  2581. "more data");
  2582. else if (err == SSL_ERROR_WANT_WRITE)
  2583. wpa_printf(MSG_DEBUG, "SSL: SSL_connect - want to "
  2584. "write");
  2585. else {
  2586. tls_show_errors(MSG_INFO, __func__, "SSL_connect");
  2587. conn->failed++;
  2588. }
  2589. }
  2590. /* Get the TLS handshake data to be sent to the server */
  2591. res = BIO_ctrl_pending(conn->ssl_out);
  2592. wpa_printf(MSG_DEBUG, "SSL: %d bytes pending from ssl_out", res);
  2593. out_data = wpabuf_alloc(res);
  2594. if (out_data == NULL) {
  2595. wpa_printf(MSG_DEBUG, "SSL: Failed to allocate memory for "
  2596. "handshake output (%d bytes)", res);
  2597. if (BIO_reset(conn->ssl_out) < 0) {
  2598. tls_show_errors(MSG_INFO, __func__,
  2599. "BIO_reset failed");
  2600. }
  2601. return NULL;
  2602. }
  2603. res = res == 0 ? 0 : BIO_read(conn->ssl_out, wpabuf_mhead(out_data),
  2604. res);
  2605. if (res < 0) {
  2606. tls_show_errors(MSG_INFO, __func__,
  2607. "Handshake failed - BIO_read");
  2608. if (BIO_reset(conn->ssl_out) < 0) {
  2609. tls_show_errors(MSG_INFO, __func__,
  2610. "BIO_reset failed");
  2611. }
  2612. wpabuf_free(out_data);
  2613. return NULL;
  2614. }
  2615. wpabuf_put(out_data, res);
  2616. return out_data;
  2617. }
  2618. static struct wpabuf *
  2619. openssl_get_appl_data(struct tls_connection *conn, size_t max_len)
  2620. {
  2621. struct wpabuf *appl_data;
  2622. int res;
  2623. appl_data = wpabuf_alloc(max_len + 100);
  2624. if (appl_data == NULL)
  2625. return NULL;
  2626. res = SSL_read(conn->ssl, wpabuf_mhead(appl_data),
  2627. wpabuf_size(appl_data));
  2628. if (res < 0) {
  2629. int err = SSL_get_error(conn->ssl, res);
  2630. if (err == SSL_ERROR_WANT_READ ||
  2631. err == SSL_ERROR_WANT_WRITE) {
  2632. wpa_printf(MSG_DEBUG, "SSL: No Application Data "
  2633. "included");
  2634. } else {
  2635. tls_show_errors(MSG_INFO, __func__,
  2636. "Failed to read possible "
  2637. "Application Data");
  2638. }
  2639. wpabuf_free(appl_data);
  2640. return NULL;
  2641. }
  2642. wpabuf_put(appl_data, res);
  2643. wpa_hexdump_buf_key(MSG_MSGDUMP, "SSL: Application Data in Finished "
  2644. "message", appl_data);
  2645. return appl_data;
  2646. }
  2647. static struct wpabuf *
  2648. openssl_connection_handshake(struct tls_connection *conn,
  2649. const struct wpabuf *in_data,
  2650. struct wpabuf **appl_data, int server)
  2651. {
  2652. struct wpabuf *out_data;
  2653. if (appl_data)
  2654. *appl_data = NULL;
  2655. out_data = openssl_handshake(conn, in_data, server);
  2656. if (out_data == NULL)
  2657. return NULL;
  2658. if (conn->invalid_hb_used) {
  2659. wpa_printf(MSG_INFO, "TLS: Heartbeat attack detected - do not send response");
  2660. wpabuf_free(out_data);
  2661. return NULL;
  2662. }
  2663. if (SSL_is_init_finished(conn->ssl) && appl_data && in_data)
  2664. *appl_data = openssl_get_appl_data(conn, wpabuf_len(in_data));
  2665. if (conn->invalid_hb_used) {
  2666. wpa_printf(MSG_INFO, "TLS: Heartbeat attack detected - do not send response");
  2667. if (appl_data) {
  2668. wpabuf_free(*appl_data);
  2669. *appl_data = NULL;
  2670. }
  2671. wpabuf_free(out_data);
  2672. return NULL;
  2673. }
  2674. return out_data;
  2675. }
  2676. struct wpabuf *
  2677. tls_connection_handshake(void *ssl_ctx, struct tls_connection *conn,
  2678. const struct wpabuf *in_data,
  2679. struct wpabuf **appl_data)
  2680. {
  2681. return openssl_connection_handshake(conn, in_data, appl_data, 0);
  2682. }
  2683. struct wpabuf * tls_connection_server_handshake(void *tls_ctx,
  2684. struct tls_connection *conn,
  2685. const struct wpabuf *in_data,
  2686. struct wpabuf **appl_data)
  2687. {
  2688. return openssl_connection_handshake(conn, in_data, appl_data, 1);
  2689. }
  2690. struct wpabuf * tls_connection_encrypt(void *tls_ctx,
  2691. struct tls_connection *conn,
  2692. const struct wpabuf *in_data)
  2693. {
  2694. int res;
  2695. struct wpabuf *buf;
  2696. if (conn == NULL)
  2697. return NULL;
  2698. /* Give plaintext data for OpenSSL to encrypt into the TLS tunnel. */
  2699. if ((res = BIO_reset(conn->ssl_in)) < 0 ||
  2700. (res = BIO_reset(conn->ssl_out)) < 0) {
  2701. tls_show_errors(MSG_INFO, __func__, "BIO_reset failed");
  2702. return NULL;
  2703. }
  2704. res = SSL_write(conn->ssl, wpabuf_head(in_data), wpabuf_len(in_data));
  2705. if (res < 0) {
  2706. tls_show_errors(MSG_INFO, __func__,
  2707. "Encryption failed - SSL_write");
  2708. return NULL;
  2709. }
  2710. /* Read encrypted data to be sent to the server */
  2711. buf = wpabuf_alloc(wpabuf_len(in_data) + 300);
  2712. if (buf == NULL)
  2713. return NULL;
  2714. res = BIO_read(conn->ssl_out, wpabuf_mhead(buf), wpabuf_size(buf));
  2715. if (res < 0) {
  2716. tls_show_errors(MSG_INFO, __func__,
  2717. "Encryption failed - BIO_read");
  2718. wpabuf_free(buf);
  2719. return NULL;
  2720. }
  2721. wpabuf_put(buf, res);
  2722. return buf;
  2723. }
  2724. struct wpabuf * tls_connection_decrypt(void *tls_ctx,
  2725. struct tls_connection *conn,
  2726. const struct wpabuf *in_data)
  2727. {
  2728. int res;
  2729. struct wpabuf *buf;
  2730. /* Give encrypted data from TLS tunnel for OpenSSL to decrypt. */
  2731. res = BIO_write(conn->ssl_in, wpabuf_head(in_data),
  2732. wpabuf_len(in_data));
  2733. if (res < 0) {
  2734. tls_show_errors(MSG_INFO, __func__,
  2735. "Decryption failed - BIO_write");
  2736. return NULL;
  2737. }
  2738. if (BIO_reset(conn->ssl_out) < 0) {
  2739. tls_show_errors(MSG_INFO, __func__, "BIO_reset failed");
  2740. return NULL;
  2741. }
  2742. /* Read decrypted data for further processing */
  2743. /*
  2744. * Even though we try to disable TLS compression, it is possible that
  2745. * this cannot be done with all TLS libraries. Add extra buffer space
  2746. * to handle the possibility of the decrypted data being longer than
  2747. * input data.
  2748. */
  2749. buf = wpabuf_alloc((wpabuf_len(in_data) + 500) * 3);
  2750. if (buf == NULL)
  2751. return NULL;
  2752. res = SSL_read(conn->ssl, wpabuf_mhead(buf), wpabuf_size(buf));
  2753. if (res < 0) {
  2754. tls_show_errors(MSG_INFO, __func__,
  2755. "Decryption failed - SSL_read");
  2756. wpabuf_free(buf);
  2757. return NULL;
  2758. }
  2759. wpabuf_put(buf, res);
  2760. if (conn->invalid_hb_used) {
  2761. wpa_printf(MSG_INFO, "TLS: Heartbeat attack detected - do not send response");
  2762. wpabuf_free(buf);
  2763. return NULL;
  2764. }
  2765. return buf;
  2766. }
  2767. int tls_connection_resumed(void *ssl_ctx, struct tls_connection *conn)
  2768. {
  2769. #if OPENSSL_VERSION_NUMBER >= 0x10001000L
  2770. return conn ? SSL_cache_hit(conn->ssl) : 0;
  2771. #else
  2772. return conn ? conn->ssl->hit : 0;
  2773. #endif
  2774. }
  2775. int tls_connection_set_cipher_list(void *tls_ctx, struct tls_connection *conn,
  2776. u8 *ciphers)
  2777. {
  2778. char buf[100], *pos, *end;
  2779. u8 *c;
  2780. int ret;
  2781. if (conn == NULL || conn->ssl == NULL || ciphers == NULL)
  2782. return -1;
  2783. buf[0] = '\0';
  2784. pos = buf;
  2785. end = pos + sizeof(buf);
  2786. c = ciphers;
  2787. while (*c != TLS_CIPHER_NONE) {
  2788. const char *suite;
  2789. switch (*c) {
  2790. case TLS_CIPHER_RC4_SHA:
  2791. suite = "RC4-SHA";
  2792. break;
  2793. case TLS_CIPHER_AES128_SHA:
  2794. suite = "AES128-SHA";
  2795. break;
  2796. case TLS_CIPHER_RSA_DHE_AES128_SHA:
  2797. suite = "DHE-RSA-AES128-SHA";
  2798. break;
  2799. case TLS_CIPHER_ANON_DH_AES128_SHA:
  2800. suite = "ADH-AES128-SHA";
  2801. break;
  2802. default:
  2803. wpa_printf(MSG_DEBUG, "TLS: Unsupported "
  2804. "cipher selection: %d", *c);
  2805. return -1;
  2806. }
  2807. ret = os_snprintf(pos, end - pos, ":%s", suite);
  2808. if (os_snprintf_error(end - pos, ret))
  2809. break;
  2810. pos += ret;
  2811. c++;
  2812. }
  2813. wpa_printf(MSG_DEBUG, "OpenSSL: cipher suites: %s", buf + 1);
  2814. #if OPENSSL_VERSION_NUMBER >= 0x10100000L
  2815. #if defined(EAP_FAST) || defined(EAP_FAST_DYNAMIC) || defined(EAP_SERVER_FAST)
  2816. if (os_strstr(buf, ":ADH-")) {
  2817. /*
  2818. * Need to drop to security level 0 to allow anonymous
  2819. * cipher suites for EAP-FAST.
  2820. */
  2821. SSL_set_security_level(conn->ssl, 0);
  2822. } else if (SSL_get_security_level(conn->ssl) == 0) {
  2823. /* Force at least security level 1 */
  2824. SSL_set_security_level(conn->ssl, 1);
  2825. }
  2826. #endif /* EAP_FAST || EAP_FAST_DYNAMIC || EAP_SERVER_FAST */
  2827. #endif
  2828. if (SSL_set_cipher_list(conn->ssl, buf + 1) != 1) {
  2829. tls_show_errors(MSG_INFO, __func__,
  2830. "Cipher suite configuration failed");
  2831. return -1;
  2832. }
  2833. return 0;
  2834. }
  2835. int tls_get_version(void *ssl_ctx, struct tls_connection *conn,
  2836. char *buf, size_t buflen)
  2837. {
  2838. const char *name;
  2839. if (conn == NULL || conn->ssl == NULL)
  2840. return -1;
  2841. name = SSL_get_version(conn->ssl);
  2842. if (name == NULL)
  2843. return -1;
  2844. os_strlcpy(buf, name, buflen);
  2845. return 0;
  2846. }
  2847. int tls_get_cipher(void *ssl_ctx, struct tls_connection *conn,
  2848. char *buf, size_t buflen)
  2849. {
  2850. const char *name;
  2851. if (conn == NULL || conn->ssl == NULL)
  2852. return -1;
  2853. name = SSL_get_cipher(conn->ssl);
  2854. if (name == NULL)
  2855. return -1;
  2856. os_strlcpy(buf, name, buflen);
  2857. return 0;
  2858. }
  2859. int tls_connection_enable_workaround(void *ssl_ctx,
  2860. struct tls_connection *conn)
  2861. {
  2862. SSL_set_options(conn->ssl, SSL_OP_DONT_INSERT_EMPTY_FRAGMENTS);
  2863. return 0;
  2864. }
  2865. #if defined(EAP_FAST) || defined(EAP_FAST_DYNAMIC) || defined(EAP_SERVER_FAST)
  2866. /* ClientHello TLS extensions require a patch to openssl, so this function is
  2867. * commented out unless explicitly needed for EAP-FAST in order to be able to
  2868. * build this file with unmodified openssl. */
  2869. int tls_connection_client_hello_ext(void *ssl_ctx, struct tls_connection *conn,
  2870. int ext_type, const u8 *data,
  2871. size_t data_len)
  2872. {
  2873. if (conn == NULL || conn->ssl == NULL || ext_type != 35)
  2874. return -1;
  2875. if (SSL_set_session_ticket_ext(conn->ssl, (void *) data,
  2876. data_len) != 1)
  2877. return -1;
  2878. return 0;
  2879. }
  2880. #endif /* EAP_FAST || EAP_FAST_DYNAMIC || EAP_SERVER_FAST */
  2881. int tls_connection_get_failed(void *ssl_ctx, struct tls_connection *conn)
  2882. {
  2883. if (conn == NULL)
  2884. return -1;
  2885. return conn->failed;
  2886. }
  2887. int tls_connection_get_read_alerts(void *ssl_ctx, struct tls_connection *conn)
  2888. {
  2889. if (conn == NULL)
  2890. return -1;
  2891. return conn->read_alerts;
  2892. }
  2893. int tls_connection_get_write_alerts(void *ssl_ctx, struct tls_connection *conn)
  2894. {
  2895. if (conn == NULL)
  2896. return -1;
  2897. return conn->write_alerts;
  2898. }
  2899. #ifdef HAVE_OCSP
  2900. static void ocsp_debug_print_resp(OCSP_RESPONSE *rsp)
  2901. {
  2902. #ifndef CONFIG_NO_STDOUT_DEBUG
  2903. BIO *out;
  2904. size_t rlen;
  2905. char *txt;
  2906. int res;
  2907. if (wpa_debug_level > MSG_DEBUG)
  2908. return;
  2909. out = BIO_new(BIO_s_mem());
  2910. if (!out)
  2911. return;
  2912. OCSP_RESPONSE_print(out, rsp, 0);
  2913. rlen = BIO_ctrl_pending(out);
  2914. txt = os_malloc(rlen + 1);
  2915. if (!txt) {
  2916. BIO_free(out);
  2917. return;
  2918. }
  2919. res = BIO_read(out, txt, rlen);
  2920. if (res > 0) {
  2921. txt[res] = '\0';
  2922. wpa_printf(MSG_DEBUG, "OpenSSL: OCSP Response\n%s", txt);
  2923. }
  2924. os_free(txt);
  2925. BIO_free(out);
  2926. #endif /* CONFIG_NO_STDOUT_DEBUG */
  2927. }
  2928. static void debug_print_cert(X509 *cert, const char *title)
  2929. {
  2930. #ifndef CONFIG_NO_STDOUT_DEBUG
  2931. BIO *out;
  2932. size_t rlen;
  2933. char *txt;
  2934. int res;
  2935. if (wpa_debug_level > MSG_DEBUG)
  2936. return;
  2937. out = BIO_new(BIO_s_mem());
  2938. if (!out)
  2939. return;
  2940. X509_print(out, cert);
  2941. rlen = BIO_ctrl_pending(out);
  2942. txt = os_malloc(rlen + 1);
  2943. if (!txt) {
  2944. BIO_free(out);
  2945. return;
  2946. }
  2947. res = BIO_read(out, txt, rlen);
  2948. if (res > 0) {
  2949. txt[res] = '\0';
  2950. wpa_printf(MSG_DEBUG, "OpenSSL: %s\n%s", title, txt);
  2951. }
  2952. os_free(txt);
  2953. BIO_free(out);
  2954. #endif /* CONFIG_NO_STDOUT_DEBUG */
  2955. }
  2956. static int ocsp_resp_cb(SSL *s, void *arg)
  2957. {
  2958. struct tls_connection *conn = arg;
  2959. const unsigned char *p;
  2960. int len, status, reason;
  2961. OCSP_RESPONSE *rsp;
  2962. OCSP_BASICRESP *basic;
  2963. OCSP_CERTID *id;
  2964. ASN1_GENERALIZEDTIME *produced_at, *this_update, *next_update;
  2965. X509_STORE *store;
  2966. STACK_OF(X509) *certs = NULL;
  2967. len = SSL_get_tlsext_status_ocsp_resp(s, &p);
  2968. if (!p) {
  2969. wpa_printf(MSG_DEBUG, "OpenSSL: No OCSP response received");
  2970. return (conn->flags & TLS_CONN_REQUIRE_OCSP) ? 0 : 1;
  2971. }
  2972. wpa_hexdump(MSG_DEBUG, "OpenSSL: OCSP response", p, len);
  2973. rsp = d2i_OCSP_RESPONSE(NULL, &p, len);
  2974. if (!rsp) {
  2975. wpa_printf(MSG_INFO, "OpenSSL: Failed to parse OCSP response");
  2976. return 0;
  2977. }
  2978. ocsp_debug_print_resp(rsp);
  2979. status = OCSP_response_status(rsp);
  2980. if (status != OCSP_RESPONSE_STATUS_SUCCESSFUL) {
  2981. wpa_printf(MSG_INFO, "OpenSSL: OCSP responder error %d (%s)",
  2982. status, OCSP_response_status_str(status));
  2983. return 0;
  2984. }
  2985. basic = OCSP_response_get1_basic(rsp);
  2986. if (!basic) {
  2987. wpa_printf(MSG_INFO, "OpenSSL: Could not find BasicOCSPResponse");
  2988. return 0;
  2989. }
  2990. store = SSL_CTX_get_cert_store(conn->ssl_ctx);
  2991. if (conn->peer_issuer) {
  2992. debug_print_cert(conn->peer_issuer, "Add OCSP issuer");
  2993. if (X509_STORE_add_cert(store, conn->peer_issuer) != 1) {
  2994. tls_show_errors(MSG_INFO, __func__,
  2995. "OpenSSL: Could not add issuer to certificate store");
  2996. }
  2997. certs = sk_X509_new_null();
  2998. if (certs) {
  2999. X509 *cert;
  3000. cert = X509_dup(conn->peer_issuer);
  3001. if (cert && !sk_X509_push(certs, cert)) {
  3002. tls_show_errors(
  3003. MSG_INFO, __func__,
  3004. "OpenSSL: Could not add issuer to OCSP responder trust store");
  3005. X509_free(cert);
  3006. sk_X509_free(certs);
  3007. certs = NULL;
  3008. }
  3009. if (certs && conn->peer_issuer_issuer) {
  3010. cert = X509_dup(conn->peer_issuer_issuer);
  3011. if (cert && !sk_X509_push(certs, cert)) {
  3012. tls_show_errors(
  3013. MSG_INFO, __func__,
  3014. "OpenSSL: Could not add issuer's issuer to OCSP responder trust store");
  3015. X509_free(cert);
  3016. }
  3017. }
  3018. }
  3019. }
  3020. status = OCSP_basic_verify(basic, certs, store, OCSP_TRUSTOTHER);
  3021. sk_X509_pop_free(certs, X509_free);
  3022. if (status <= 0) {
  3023. tls_show_errors(MSG_INFO, __func__,
  3024. "OpenSSL: OCSP response failed verification");
  3025. OCSP_BASICRESP_free(basic);
  3026. OCSP_RESPONSE_free(rsp);
  3027. return 0;
  3028. }
  3029. wpa_printf(MSG_DEBUG, "OpenSSL: OCSP response verification succeeded");
  3030. if (!conn->peer_cert) {
  3031. wpa_printf(MSG_DEBUG, "OpenSSL: Peer certificate not available for OCSP status check");
  3032. OCSP_BASICRESP_free(basic);
  3033. OCSP_RESPONSE_free(rsp);
  3034. return 0;
  3035. }
  3036. if (!conn->peer_issuer) {
  3037. wpa_printf(MSG_DEBUG, "OpenSSL: Peer issuer certificate not available for OCSP status check");
  3038. OCSP_BASICRESP_free(basic);
  3039. OCSP_RESPONSE_free(rsp);
  3040. return 0;
  3041. }
  3042. id = OCSP_cert_to_id(NULL, conn->peer_cert, conn->peer_issuer);
  3043. if (!id) {
  3044. wpa_printf(MSG_DEBUG, "OpenSSL: Could not create OCSP certificate identifier");
  3045. OCSP_BASICRESP_free(basic);
  3046. OCSP_RESPONSE_free(rsp);
  3047. return 0;
  3048. }
  3049. if (!OCSP_resp_find_status(basic, id, &status, &reason, &produced_at,
  3050. &this_update, &next_update)) {
  3051. wpa_printf(MSG_INFO, "OpenSSL: Could not find current server certificate from OCSP response%s",
  3052. (conn->flags & TLS_CONN_REQUIRE_OCSP) ? "" :
  3053. " (OCSP not required)");
  3054. OCSP_BASICRESP_free(basic);
  3055. OCSP_RESPONSE_free(rsp);
  3056. return (conn->flags & TLS_CONN_REQUIRE_OCSP) ? 0 : 1;
  3057. }
  3058. if (!OCSP_check_validity(this_update, next_update, 5 * 60, -1)) {
  3059. tls_show_errors(MSG_INFO, __func__,
  3060. "OpenSSL: OCSP status times invalid");
  3061. OCSP_BASICRESP_free(basic);
  3062. OCSP_RESPONSE_free(rsp);
  3063. return 0;
  3064. }
  3065. OCSP_BASICRESP_free(basic);
  3066. OCSP_RESPONSE_free(rsp);
  3067. wpa_printf(MSG_DEBUG, "OpenSSL: OCSP status for server certificate: %s",
  3068. OCSP_cert_status_str(status));
  3069. if (status == V_OCSP_CERTSTATUS_GOOD)
  3070. return 1;
  3071. if (status == V_OCSP_CERTSTATUS_REVOKED)
  3072. return 0;
  3073. if (conn->flags & TLS_CONN_REQUIRE_OCSP) {
  3074. wpa_printf(MSG_DEBUG, "OpenSSL: OCSP status unknown, but OCSP required");
  3075. return 0;
  3076. }
  3077. wpa_printf(MSG_DEBUG, "OpenSSL: OCSP status unknown, but OCSP was not required, so allow connection to continue");
  3078. return 1;
  3079. }
  3080. static int ocsp_status_cb(SSL *s, void *arg)
  3081. {
  3082. char *tmp;
  3083. char *resp;
  3084. size_t len;
  3085. if (tls_global->ocsp_stapling_response == NULL) {
  3086. wpa_printf(MSG_DEBUG, "OpenSSL: OCSP status callback - no response configured");
  3087. return SSL_TLSEXT_ERR_OK;
  3088. }
  3089. resp = os_readfile(tls_global->ocsp_stapling_response, &len);
  3090. if (resp == NULL) {
  3091. wpa_printf(MSG_DEBUG, "OpenSSL: OCSP status callback - could not read response file");
  3092. /* TODO: Build OCSPResponse with responseStatus = internalError
  3093. */
  3094. return SSL_TLSEXT_ERR_OK;
  3095. }
  3096. wpa_printf(MSG_DEBUG, "OpenSSL: OCSP status callback - send cached response");
  3097. tmp = OPENSSL_malloc(len);
  3098. if (tmp == NULL) {
  3099. os_free(resp);
  3100. return SSL_TLSEXT_ERR_ALERT_FATAL;
  3101. }
  3102. os_memcpy(tmp, resp, len);
  3103. os_free(resp);
  3104. SSL_set_tlsext_status_ocsp_resp(s, tmp, len);
  3105. return SSL_TLSEXT_ERR_OK;
  3106. }
  3107. #endif /* HAVE_OCSP */
  3108. int tls_connection_set_params(void *tls_ctx, struct tls_connection *conn,
  3109. const struct tls_connection_params *params)
  3110. {
  3111. int ret;
  3112. unsigned long err;
  3113. int can_pkcs11 = 0;
  3114. const char *key_id = params->key_id;
  3115. const char *cert_id = params->cert_id;
  3116. const char *ca_cert_id = params->ca_cert_id;
  3117. const char *engine_id = params->engine ? params->engine_id : NULL;
  3118. if (conn == NULL)
  3119. return -1;
  3120. /*
  3121. * If the engine isn't explicitly configured, and any of the
  3122. * cert/key fields are actually PKCS#11 URIs, then automatically
  3123. * use the PKCS#11 ENGINE.
  3124. */
  3125. if (!engine_id || os_strcmp(engine_id, "pkcs11") == 0)
  3126. can_pkcs11 = 1;
  3127. if (!key_id && params->private_key && can_pkcs11 &&
  3128. os_strncmp(params->private_key, "pkcs11:", 7) == 0) {
  3129. can_pkcs11 = 2;
  3130. key_id = params->private_key;
  3131. }
  3132. if (!cert_id && params->client_cert && can_pkcs11 &&
  3133. os_strncmp(params->client_cert, "pkcs11:", 7) == 0) {
  3134. can_pkcs11 = 2;
  3135. cert_id = params->client_cert;
  3136. }
  3137. if (!ca_cert_id && params->ca_cert && can_pkcs11 &&
  3138. os_strncmp(params->ca_cert, "pkcs11:", 7) == 0) {
  3139. can_pkcs11 = 2;
  3140. ca_cert_id = params->ca_cert;
  3141. }
  3142. /* If we need to automatically enable the PKCS#11 ENGINE, do so. */
  3143. if (can_pkcs11 == 2 && !engine_id)
  3144. engine_id = "pkcs11";
  3145. #if OPENSSL_VERSION_NUMBER < 0x10100000L
  3146. if (params->flags & TLS_CONN_EAP_FAST) {
  3147. wpa_printf(MSG_DEBUG,
  3148. "OpenSSL: Use TLSv1_method() for EAP-FAST");
  3149. if (SSL_set_ssl_method(conn->ssl, TLSv1_method()) != 1) {
  3150. tls_show_errors(MSG_INFO, __func__,
  3151. "Failed to set TLSv1_method() for EAP-FAST");
  3152. return -1;
  3153. }
  3154. }
  3155. #endif
  3156. while ((err = ERR_get_error())) {
  3157. wpa_printf(MSG_INFO, "%s: Clearing pending SSL error: %s",
  3158. __func__, ERR_error_string(err, NULL));
  3159. }
  3160. if (engine_id) {
  3161. wpa_printf(MSG_DEBUG, "SSL: Initializing TLS engine");
  3162. ret = tls_engine_init(conn, engine_id, params->pin,
  3163. key_id, cert_id, ca_cert_id);
  3164. if (ret)
  3165. return ret;
  3166. }
  3167. if (tls_connection_set_subject_match(conn,
  3168. params->subject_match,
  3169. params->altsubject_match,
  3170. params->suffix_match,
  3171. params->domain_match))
  3172. return -1;
  3173. if (engine_id && ca_cert_id) {
  3174. if (tls_connection_engine_ca_cert(tls_ctx, conn,
  3175. ca_cert_id))
  3176. return TLS_SET_PARAMS_ENGINE_PRV_VERIFY_FAILED;
  3177. } else if (tls_connection_ca_cert(tls_ctx, conn, params->ca_cert,
  3178. params->ca_cert_blob,
  3179. params->ca_cert_blob_len,
  3180. params->ca_path))
  3181. return -1;
  3182. if (engine_id && cert_id) {
  3183. if (tls_connection_engine_client_cert(conn, cert_id))
  3184. return TLS_SET_PARAMS_ENGINE_PRV_VERIFY_FAILED;
  3185. } else if (tls_connection_client_cert(conn, params->client_cert,
  3186. params->client_cert_blob,
  3187. params->client_cert_blob_len))
  3188. return -1;
  3189. if (engine_id && key_id) {
  3190. wpa_printf(MSG_DEBUG, "TLS: Using private key from engine");
  3191. if (tls_connection_engine_private_key(conn))
  3192. return TLS_SET_PARAMS_ENGINE_PRV_VERIFY_FAILED;
  3193. } else if (tls_connection_private_key(tls_ctx, conn,
  3194. params->private_key,
  3195. params->private_key_passwd,
  3196. params->private_key_blob,
  3197. params->private_key_blob_len)) {
  3198. wpa_printf(MSG_INFO, "TLS: Failed to load private key '%s'",
  3199. params->private_key);
  3200. return -1;
  3201. }
  3202. if (tls_connection_dh(conn, params->dh_file)) {
  3203. wpa_printf(MSG_INFO, "TLS: Failed to load DH file '%s'",
  3204. params->dh_file);
  3205. return -1;
  3206. }
  3207. if (params->openssl_ciphers &&
  3208. SSL_set_cipher_list(conn->ssl, params->openssl_ciphers) != 1) {
  3209. wpa_printf(MSG_INFO,
  3210. "OpenSSL: Failed to set cipher string '%s'",
  3211. params->openssl_ciphers);
  3212. return -1;
  3213. }
  3214. #ifdef SSL_OP_NO_TICKET
  3215. if (params->flags & TLS_CONN_DISABLE_SESSION_TICKET)
  3216. SSL_set_options(conn->ssl, SSL_OP_NO_TICKET);
  3217. #ifdef SSL_clear_options
  3218. else
  3219. SSL_clear_options(conn->ssl, SSL_OP_NO_TICKET);
  3220. #endif /* SSL_clear_options */
  3221. #endif /* SSL_OP_NO_TICKET */
  3222. #ifdef SSL_OP_NO_TLSv1
  3223. if (params->flags & TLS_CONN_DISABLE_TLSv1_0)
  3224. SSL_set_options(conn->ssl, SSL_OP_NO_TLSv1);
  3225. else
  3226. SSL_clear_options(conn->ssl, SSL_OP_NO_TLSv1);
  3227. #endif /* SSL_OP_NO_TLSv1 */
  3228. #ifdef SSL_OP_NO_TLSv1_1
  3229. if (params->flags & TLS_CONN_DISABLE_TLSv1_1)
  3230. SSL_set_options(conn->ssl, SSL_OP_NO_TLSv1_1);
  3231. else
  3232. SSL_clear_options(conn->ssl, SSL_OP_NO_TLSv1_1);
  3233. #endif /* SSL_OP_NO_TLSv1_1 */
  3234. #ifdef SSL_OP_NO_TLSv1_2
  3235. if (params->flags & TLS_CONN_DISABLE_TLSv1_2)
  3236. SSL_set_options(conn->ssl, SSL_OP_NO_TLSv1_2);
  3237. else
  3238. SSL_clear_options(conn->ssl, SSL_OP_NO_TLSv1_2);
  3239. #endif /* SSL_OP_NO_TLSv1_2 */
  3240. #ifdef HAVE_OCSP
  3241. if (params->flags & TLS_CONN_REQUEST_OCSP) {
  3242. SSL_CTX *ssl_ctx = tls_ctx;
  3243. SSL_set_tlsext_status_type(conn->ssl, TLSEXT_STATUSTYPE_ocsp);
  3244. SSL_CTX_set_tlsext_status_cb(ssl_ctx, ocsp_resp_cb);
  3245. SSL_CTX_set_tlsext_status_arg(ssl_ctx, conn);
  3246. }
  3247. #endif /* HAVE_OCSP */
  3248. conn->flags = params->flags;
  3249. tls_get_errors(tls_ctx);
  3250. return 0;
  3251. }
  3252. int tls_global_set_params(void *tls_ctx,
  3253. const struct tls_connection_params *params)
  3254. {
  3255. SSL_CTX *ssl_ctx = tls_ctx;
  3256. unsigned long err;
  3257. while ((err = ERR_get_error())) {
  3258. wpa_printf(MSG_INFO, "%s: Clearing pending SSL error: %s",
  3259. __func__, ERR_error_string(err, NULL));
  3260. }
  3261. if (tls_global_ca_cert(ssl_ctx, params->ca_cert) ||
  3262. tls_global_client_cert(ssl_ctx, params->client_cert) ||
  3263. tls_global_private_key(ssl_ctx, params->private_key,
  3264. params->private_key_passwd) ||
  3265. tls_global_dh(ssl_ctx, params->dh_file)) {
  3266. wpa_printf(MSG_INFO, "TLS: Failed to set global parameters");
  3267. return -1;
  3268. }
  3269. if (params->openssl_ciphers &&
  3270. SSL_CTX_set_cipher_list(ssl_ctx, params->openssl_ciphers) != 1) {
  3271. wpa_printf(MSG_INFO,
  3272. "OpenSSL: Failed to set cipher string '%s'",
  3273. params->openssl_ciphers);
  3274. return -1;
  3275. }
  3276. #ifdef SSL_OP_NO_TICKET
  3277. if (params->flags & TLS_CONN_DISABLE_SESSION_TICKET)
  3278. SSL_CTX_set_options(ssl_ctx, SSL_OP_NO_TICKET);
  3279. #ifdef SSL_CTX_clear_options
  3280. else
  3281. SSL_CTX_clear_options(ssl_ctx, SSL_OP_NO_TICKET);
  3282. #endif /* SSL_clear_options */
  3283. #endif /* SSL_OP_NO_TICKET */
  3284. #ifdef HAVE_OCSP
  3285. SSL_CTX_set_tlsext_status_cb(ssl_ctx, ocsp_status_cb);
  3286. SSL_CTX_set_tlsext_status_arg(ssl_ctx, ssl_ctx);
  3287. os_free(tls_global->ocsp_stapling_response);
  3288. if (params->ocsp_stapling_response)
  3289. tls_global->ocsp_stapling_response =
  3290. os_strdup(params->ocsp_stapling_response);
  3291. else
  3292. tls_global->ocsp_stapling_response = NULL;
  3293. #endif /* HAVE_OCSP */
  3294. return 0;
  3295. }
  3296. #if defined(EAP_FAST) || defined(EAP_FAST_DYNAMIC) || defined(EAP_SERVER_FAST)
  3297. /* Pre-shared secred requires a patch to openssl, so this function is
  3298. * commented out unless explicitly needed for EAP-FAST in order to be able to
  3299. * build this file with unmodified openssl. */
  3300. #ifdef OPENSSL_IS_BORINGSSL
  3301. static int tls_sess_sec_cb(SSL *s, void *secret, int *secret_len,
  3302. STACK_OF(SSL_CIPHER) *peer_ciphers,
  3303. const SSL_CIPHER **cipher, void *arg)
  3304. #else /* OPENSSL_IS_BORINGSSL */
  3305. static int tls_sess_sec_cb(SSL *s, void *secret, int *secret_len,
  3306. STACK_OF(SSL_CIPHER) *peer_ciphers,
  3307. SSL_CIPHER **cipher, void *arg)
  3308. #endif /* OPENSSL_IS_BORINGSSL */
  3309. {
  3310. struct tls_connection *conn = arg;
  3311. int ret;
  3312. #if OPENSSL_VERSION_NUMBER < 0x10100000L
  3313. if (conn == NULL || conn->session_ticket_cb == NULL)
  3314. return 0;
  3315. ret = conn->session_ticket_cb(conn->session_ticket_cb_ctx,
  3316. conn->session_ticket,
  3317. conn->session_ticket_len,
  3318. s->s3->client_random,
  3319. s->s3->server_random, secret);
  3320. #else
  3321. unsigned char client_random[SSL3_RANDOM_SIZE];
  3322. unsigned char server_random[SSL3_RANDOM_SIZE];
  3323. if (conn == NULL || conn->session_ticket_cb == NULL)
  3324. return 0;
  3325. SSL_get_client_random(s, client_random, sizeof(client_random));
  3326. SSL_get_server_random(s, server_random, sizeof(server_random));
  3327. ret = conn->session_ticket_cb(conn->session_ticket_cb_ctx,
  3328. conn->session_ticket,
  3329. conn->session_ticket_len,
  3330. client_random,
  3331. server_random, secret);
  3332. #endif
  3333. os_free(conn->session_ticket);
  3334. conn->session_ticket = NULL;
  3335. if (ret <= 0)
  3336. return 0;
  3337. *secret_len = SSL_MAX_MASTER_KEY_LENGTH;
  3338. return 1;
  3339. }
  3340. static int tls_session_ticket_ext_cb(SSL *s, const unsigned char *data,
  3341. int len, void *arg)
  3342. {
  3343. struct tls_connection *conn = arg;
  3344. if (conn == NULL || conn->session_ticket_cb == NULL)
  3345. return 0;
  3346. wpa_printf(MSG_DEBUG, "OpenSSL: %s: length=%d", __func__, len);
  3347. os_free(conn->session_ticket);
  3348. conn->session_ticket = NULL;
  3349. wpa_hexdump(MSG_DEBUG, "OpenSSL: ClientHello SessionTicket "
  3350. "extension", data, len);
  3351. conn->session_ticket = os_malloc(len);
  3352. if (conn->session_ticket == NULL)
  3353. return 0;
  3354. os_memcpy(conn->session_ticket, data, len);
  3355. conn->session_ticket_len = len;
  3356. return 1;
  3357. }
  3358. #endif /* EAP_FAST || EAP_FAST_DYNAMIC || EAP_SERVER_FAST */
  3359. int tls_connection_set_session_ticket_cb(void *tls_ctx,
  3360. struct tls_connection *conn,
  3361. tls_session_ticket_cb cb,
  3362. void *ctx)
  3363. {
  3364. #if defined(EAP_FAST) || defined(EAP_FAST_DYNAMIC) || defined(EAP_SERVER_FAST)
  3365. conn->session_ticket_cb = cb;
  3366. conn->session_ticket_cb_ctx = ctx;
  3367. if (cb) {
  3368. if (SSL_set_session_secret_cb(conn->ssl, tls_sess_sec_cb,
  3369. conn) != 1)
  3370. return -1;
  3371. SSL_set_session_ticket_ext_cb(conn->ssl,
  3372. tls_session_ticket_ext_cb, conn);
  3373. } else {
  3374. if (SSL_set_session_secret_cb(conn->ssl, NULL, NULL) != 1)
  3375. return -1;
  3376. SSL_set_session_ticket_ext_cb(conn->ssl, NULL, NULL);
  3377. }
  3378. return 0;
  3379. #else /* EAP_FAST || EAP_FAST_DYNAMIC || EAP_SERVER_FAST */
  3380. return -1;
  3381. #endif /* EAP_FAST || EAP_FAST_DYNAMIC || EAP_SERVER_FAST */
  3382. }
  3383. int tls_get_library_version(char *buf, size_t buf_len)
  3384. {
  3385. return os_snprintf(buf, buf_len, "OpenSSL build=%s run=%s",
  3386. OPENSSL_VERSION_TEXT,
  3387. SSLeay_version(SSLEAY_VERSION));
  3388. }