vtls.c 39 KB

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  1. /***************************************************************************
  2. * _ _ ____ _
  3. * Project ___| | | | _ \| |
  4. * / __| | | | |_) | |
  5. * | (__| |_| | _ <| |___
  6. * \___|\___/|_| \_\_____|
  7. *
  8. * Copyright (C) 1998 - 2021, Daniel Stenberg, <[email protected]>, et al.
  9. *
  10. * This software is licensed as described in the file COPYING, which
  11. * you should have received as part of this distribution. The terms
  12. * are also available at https://curl.se/docs/copyright.html.
  13. *
  14. * You may opt to use, copy, modify, merge, publish, distribute and/or sell
  15. * copies of the Software, and permit persons to whom the Software is
  16. * furnished to do so, under the terms of the COPYING file.
  17. *
  18. * This software is distributed on an "AS IS" basis, WITHOUT WARRANTY OF ANY
  19. * KIND, either express or implied.
  20. *
  21. ***************************************************************************/
  22. /* This file is for implementing all "generic" SSL functions that all libcurl
  23. internals should use. It is then responsible for calling the proper
  24. "backend" function.
  25. SSL-functions in libcurl should call functions in this source file, and not
  26. to any specific SSL-layer.
  27. Curl_ssl_ - prefix for generic ones
  28. Note that this source code uses the functions of the configured SSL
  29. backend via the global Curl_ssl instance.
  30. "SSL/TLS Strong Encryption: An Introduction"
  31. https://httpd.apache.org/docs/2.0/ssl/ssl_intro.html
  32. */
  33. #include "curl_setup.h"
  34. #ifdef HAVE_SYS_TYPES_H
  35. #include <sys/types.h>
  36. #endif
  37. #ifdef HAVE_SYS_STAT_H
  38. #include <sys/stat.h>
  39. #endif
  40. #ifdef HAVE_FCNTL_H
  41. #include <fcntl.h>
  42. #endif
  43. #include "urldata.h"
  44. #include "vtls.h" /* generic SSL protos etc */
  45. #include "slist.h"
  46. #include "sendf.h"
  47. #include "strcase.h"
  48. #include "url.h"
  49. #include "progress.h"
  50. #include "share.h"
  51. #include "multiif.h"
  52. #include "timeval.h"
  53. #include "curl_md5.h"
  54. #include "warnless.h"
  55. #include "curl_base64.h"
  56. #include "curl_printf.h"
  57. #include "strdup.h"
  58. /* The last #include files should be: */
  59. #include "curl_memory.h"
  60. #include "memdebug.h"
  61. /* convenience macro to check if this handle is using a shared SSL session */
  62. #define SSLSESSION_SHARED(data) (data->share && \
  63. (data->share->specifier & \
  64. (1<<CURL_LOCK_DATA_SSL_SESSION)))
  65. #define CLONE_STRING(var) \
  66. do { \
  67. if(source->var) { \
  68. dest->var = strdup(source->var); \
  69. if(!dest->var) \
  70. return FALSE; \
  71. } \
  72. else \
  73. dest->var = NULL; \
  74. } while(0)
  75. #define CLONE_BLOB(var) \
  76. do { \
  77. if(blobdup(&dest->var, source->var)) \
  78. return FALSE; \
  79. } while(0)
  80. static CURLcode blobdup(struct curl_blob **dest,
  81. struct curl_blob *src)
  82. {
  83. DEBUGASSERT(dest);
  84. DEBUGASSERT(!*dest);
  85. if(src) {
  86. /* only if there's data to dupe! */
  87. struct curl_blob *d;
  88. d = malloc(sizeof(struct curl_blob) + src->len);
  89. if(!d)
  90. return CURLE_OUT_OF_MEMORY;
  91. d->len = src->len;
  92. /* Always duplicate because the connection may survive longer than the
  93. handle that passed in the blob. */
  94. d->flags = CURL_BLOB_COPY;
  95. d->data = (void *)((char *)d + sizeof(struct curl_blob));
  96. memcpy(d->data, src->data, src->len);
  97. *dest = d;
  98. }
  99. return CURLE_OK;
  100. }
  101. /* returns TRUE if the blobs are identical */
  102. static bool blobcmp(struct curl_blob *first, struct curl_blob *second)
  103. {
  104. if(!first && !second) /* both are NULL */
  105. return TRUE;
  106. if(!first || !second) /* one is NULL */
  107. return FALSE;
  108. if(first->len != second->len) /* different sizes */
  109. return FALSE;
  110. return !memcmp(first->data, second->data, first->len); /* same data */
  111. }
  112. static bool safecmp(char *a, char *b)
  113. {
  114. if(a && b)
  115. return !strcmp(a, b);
  116. else if(!a && !b)
  117. return TRUE; /* match */
  118. return FALSE; /* no match */
  119. }
  120. bool
  121. Curl_ssl_config_matches(struct ssl_primary_config *data,
  122. struct ssl_primary_config *needle)
  123. {
  124. if((data->version == needle->version) &&
  125. (data->version_max == needle->version_max) &&
  126. (data->verifypeer == needle->verifypeer) &&
  127. (data->verifyhost == needle->verifyhost) &&
  128. (data->verifystatus == needle->verifystatus) &&
  129. blobcmp(data->cert_blob, needle->cert_blob) &&
  130. blobcmp(data->ca_info_blob, needle->ca_info_blob) &&
  131. blobcmp(data->issuercert_blob, needle->issuercert_blob) &&
  132. safecmp(data->CApath, needle->CApath) &&
  133. safecmp(data->CAfile, needle->CAfile) &&
  134. safecmp(data->issuercert, needle->issuercert) &&
  135. safecmp(data->clientcert, needle->clientcert) &&
  136. safecmp(data->random_file, needle->random_file) &&
  137. safecmp(data->egdsocket, needle->egdsocket) &&
  138. Curl_safe_strcasecompare(data->cipher_list, needle->cipher_list) &&
  139. Curl_safe_strcasecompare(data->cipher_list13, needle->cipher_list13) &&
  140. Curl_safe_strcasecompare(data->curves, needle->curves) &&
  141. Curl_safe_strcasecompare(data->pinned_key, needle->pinned_key))
  142. return TRUE;
  143. return FALSE;
  144. }
  145. bool
  146. Curl_clone_primary_ssl_config(struct ssl_primary_config *source,
  147. struct ssl_primary_config *dest)
  148. {
  149. dest->version = source->version;
  150. dest->version_max = source->version_max;
  151. dest->verifypeer = source->verifypeer;
  152. dest->verifyhost = source->verifyhost;
  153. dest->verifystatus = source->verifystatus;
  154. dest->sessionid = source->sessionid;
  155. CLONE_BLOB(cert_blob);
  156. CLONE_BLOB(ca_info_blob);
  157. CLONE_BLOB(issuercert_blob);
  158. CLONE_STRING(CApath);
  159. CLONE_STRING(CAfile);
  160. CLONE_STRING(issuercert);
  161. CLONE_STRING(clientcert);
  162. CLONE_STRING(random_file);
  163. CLONE_STRING(egdsocket);
  164. CLONE_STRING(cipher_list);
  165. CLONE_STRING(cipher_list13);
  166. CLONE_STRING(pinned_key);
  167. CLONE_STRING(curves);
  168. return TRUE;
  169. }
  170. void Curl_free_primary_ssl_config(struct ssl_primary_config *sslc)
  171. {
  172. Curl_safefree(sslc->CApath);
  173. Curl_safefree(sslc->CAfile);
  174. Curl_safefree(sslc->issuercert);
  175. Curl_safefree(sslc->clientcert);
  176. Curl_safefree(sslc->random_file);
  177. Curl_safefree(sslc->egdsocket);
  178. Curl_safefree(sslc->cipher_list);
  179. Curl_safefree(sslc->cipher_list13);
  180. Curl_safefree(sslc->pinned_key);
  181. Curl_safefree(sslc->cert_blob);
  182. Curl_safefree(sslc->ca_info_blob);
  183. Curl_safefree(sslc->issuercert_blob);
  184. Curl_safefree(sslc->curves);
  185. }
  186. #ifdef USE_SSL
  187. static int multissl_setup(const struct Curl_ssl *backend);
  188. #endif
  189. int Curl_ssl_backend(void)
  190. {
  191. #ifdef USE_SSL
  192. multissl_setup(NULL);
  193. return Curl_ssl->info.id;
  194. #else
  195. return (int)CURLSSLBACKEND_NONE;
  196. #endif
  197. }
  198. #ifdef USE_SSL
  199. /* "global" init done? */
  200. static bool init_ssl = FALSE;
  201. /**
  202. * Global SSL init
  203. *
  204. * @retval 0 error initializing SSL
  205. * @retval 1 SSL initialized successfully
  206. */
  207. int Curl_ssl_init(void)
  208. {
  209. /* make sure this is only done once */
  210. if(init_ssl)
  211. return 1;
  212. init_ssl = TRUE; /* never again */
  213. return Curl_ssl->init();
  214. }
  215. #if defined(CURL_WITH_MULTI_SSL)
  216. static const struct Curl_ssl Curl_ssl_multi;
  217. #endif
  218. /* Global cleanup */
  219. void Curl_ssl_cleanup(void)
  220. {
  221. if(init_ssl) {
  222. /* only cleanup if we did a previous init */
  223. Curl_ssl->cleanup();
  224. #if defined(CURL_WITH_MULTI_SSL)
  225. Curl_ssl = &Curl_ssl_multi;
  226. #endif
  227. init_ssl = FALSE;
  228. }
  229. }
  230. static bool ssl_prefs_check(struct Curl_easy *data)
  231. {
  232. /* check for CURLOPT_SSLVERSION invalid parameter value */
  233. const long sslver = data->set.ssl.primary.version;
  234. if((sslver < 0) || (sslver >= CURL_SSLVERSION_LAST)) {
  235. failf(data, "Unrecognized parameter value passed via CURLOPT_SSLVERSION");
  236. return FALSE;
  237. }
  238. switch(data->set.ssl.primary.version_max) {
  239. case CURL_SSLVERSION_MAX_NONE:
  240. case CURL_SSLVERSION_MAX_DEFAULT:
  241. break;
  242. default:
  243. if((data->set.ssl.primary.version_max >> 16) < sslver) {
  244. failf(data, "CURL_SSLVERSION_MAX incompatible with CURL_SSLVERSION");
  245. return FALSE;
  246. }
  247. }
  248. return TRUE;
  249. }
  250. #ifndef CURL_DISABLE_PROXY
  251. static CURLcode
  252. ssl_connect_init_proxy(struct connectdata *conn, int sockindex)
  253. {
  254. DEBUGASSERT(conn->bits.proxy_ssl_connected[sockindex]);
  255. if(ssl_connection_complete == conn->ssl[sockindex].state &&
  256. !conn->proxy_ssl[sockindex].use) {
  257. struct ssl_backend_data *pbdata;
  258. if(!(Curl_ssl->supports & SSLSUPP_HTTPS_PROXY))
  259. return CURLE_NOT_BUILT_IN;
  260. /* The pointers to the ssl backend data, which is opaque here, are swapped
  261. rather than move the contents. */
  262. pbdata = conn->proxy_ssl[sockindex].backend;
  263. conn->proxy_ssl[sockindex] = conn->ssl[sockindex];
  264. memset(&conn->ssl[sockindex], 0, sizeof(conn->ssl[sockindex]));
  265. memset(pbdata, 0, Curl_ssl->sizeof_ssl_backend_data);
  266. conn->ssl[sockindex].backend = pbdata;
  267. }
  268. return CURLE_OK;
  269. }
  270. #endif
  271. CURLcode
  272. Curl_ssl_connect(struct Curl_easy *data, struct connectdata *conn,
  273. int sockindex)
  274. {
  275. CURLcode result;
  276. #ifndef CURL_DISABLE_PROXY
  277. if(conn->bits.proxy_ssl_connected[sockindex]) {
  278. result = ssl_connect_init_proxy(conn, sockindex);
  279. if(result)
  280. return result;
  281. }
  282. #endif
  283. if(!ssl_prefs_check(data))
  284. return CURLE_SSL_CONNECT_ERROR;
  285. /* mark this is being ssl-enabled from here on. */
  286. conn->ssl[sockindex].use = TRUE;
  287. conn->ssl[sockindex].state = ssl_connection_negotiating;
  288. result = Curl_ssl->connect_blocking(data, conn, sockindex);
  289. if(!result)
  290. Curl_pgrsTime(data, TIMER_APPCONNECT); /* SSL is connected */
  291. else
  292. conn->ssl[sockindex].use = FALSE;
  293. return result;
  294. }
  295. CURLcode
  296. Curl_ssl_connect_nonblocking(struct Curl_easy *data, struct connectdata *conn,
  297. bool isproxy, int sockindex, bool *done)
  298. {
  299. CURLcode result;
  300. #ifndef CURL_DISABLE_PROXY
  301. if(conn->bits.proxy_ssl_connected[sockindex]) {
  302. result = ssl_connect_init_proxy(conn, sockindex);
  303. if(result)
  304. return result;
  305. }
  306. #endif
  307. if(!ssl_prefs_check(data))
  308. return CURLE_SSL_CONNECT_ERROR;
  309. /* mark this is being ssl requested from here on. */
  310. conn->ssl[sockindex].use = TRUE;
  311. result = Curl_ssl->connect_nonblocking(data, conn, sockindex, done);
  312. if(result)
  313. conn->ssl[sockindex].use = FALSE;
  314. else if(*done && !isproxy)
  315. Curl_pgrsTime(data, TIMER_APPCONNECT); /* SSL is connected */
  316. return result;
  317. }
  318. /*
  319. * Lock shared SSL session data
  320. */
  321. void Curl_ssl_sessionid_lock(struct Curl_easy *data)
  322. {
  323. if(SSLSESSION_SHARED(data))
  324. Curl_share_lock(data, CURL_LOCK_DATA_SSL_SESSION, CURL_LOCK_ACCESS_SINGLE);
  325. }
  326. /*
  327. * Unlock shared SSL session data
  328. */
  329. void Curl_ssl_sessionid_unlock(struct Curl_easy *data)
  330. {
  331. if(SSLSESSION_SHARED(data))
  332. Curl_share_unlock(data, CURL_LOCK_DATA_SSL_SESSION);
  333. }
  334. /*
  335. * Check if there's a session ID for the given connection in the cache, and if
  336. * there's one suitable, it is provided. Returns TRUE when no entry matched.
  337. */
  338. bool Curl_ssl_getsessionid(struct Curl_easy *data,
  339. struct connectdata *conn,
  340. const bool isProxy,
  341. void **ssl_sessionid,
  342. size_t *idsize, /* set 0 if unknown */
  343. int sockindex)
  344. {
  345. struct Curl_ssl_session *check;
  346. size_t i;
  347. long *general_age;
  348. bool no_match = TRUE;
  349. #ifndef CURL_DISABLE_PROXY
  350. struct ssl_primary_config * const ssl_config = isProxy ?
  351. &conn->proxy_ssl_config :
  352. &conn->ssl_config;
  353. const char * const name = isProxy ?
  354. conn->http_proxy.host.name : conn->host.name;
  355. int port = isProxy ? (int)conn->port : conn->remote_port;
  356. #else
  357. /* no proxy support */
  358. struct ssl_primary_config * const ssl_config = &conn->ssl_config;
  359. const char * const name = conn->host.name;
  360. int port = conn->remote_port;
  361. #endif
  362. (void)sockindex;
  363. *ssl_sessionid = NULL;
  364. #ifdef CURL_DISABLE_PROXY
  365. if(isProxy)
  366. return TRUE;
  367. #endif
  368. DEBUGASSERT(SSL_SET_OPTION(primary.sessionid));
  369. if(!SSL_SET_OPTION(primary.sessionid) || !data->state.session)
  370. /* session ID re-use is disabled or the session cache has not been
  371. setup */
  372. return TRUE;
  373. /* Lock if shared */
  374. if(SSLSESSION_SHARED(data))
  375. general_age = &data->share->sessionage;
  376. else
  377. general_age = &data->state.sessionage;
  378. for(i = 0; i < data->set.general_ssl.max_ssl_sessions; i++) {
  379. check = &data->state.session[i];
  380. if(!check->sessionid)
  381. /* not session ID means blank entry */
  382. continue;
  383. if(strcasecompare(name, check->name) &&
  384. ((!conn->bits.conn_to_host && !check->conn_to_host) ||
  385. (conn->bits.conn_to_host && check->conn_to_host &&
  386. strcasecompare(conn->conn_to_host.name, check->conn_to_host))) &&
  387. ((!conn->bits.conn_to_port && check->conn_to_port == -1) ||
  388. (conn->bits.conn_to_port && check->conn_to_port != -1 &&
  389. conn->conn_to_port == check->conn_to_port)) &&
  390. (port == check->remote_port) &&
  391. strcasecompare(conn->handler->scheme, check->scheme) &&
  392. Curl_ssl_config_matches(ssl_config, &check->ssl_config)) {
  393. /* yes, we have a session ID! */
  394. (*general_age)++; /* increase general age */
  395. check->age = *general_age; /* set this as used in this age */
  396. *ssl_sessionid = check->sessionid;
  397. if(idsize)
  398. *idsize = check->idsize;
  399. no_match = FALSE;
  400. break;
  401. }
  402. }
  403. DEBUGF(infof(data, "%s Session ID in cache for %s %s://%s:%d",
  404. no_match? "Didn't find": "Found",
  405. isProxy ? "proxy" : "host",
  406. conn->handler->scheme, name, port));
  407. return no_match;
  408. }
  409. /*
  410. * Kill a single session ID entry in the cache.
  411. */
  412. void Curl_ssl_kill_session(struct Curl_ssl_session *session)
  413. {
  414. if(session->sessionid) {
  415. /* defensive check */
  416. /* free the ID the SSL-layer specific way */
  417. Curl_ssl->session_free(session->sessionid);
  418. session->sessionid = NULL;
  419. session->age = 0; /* fresh */
  420. Curl_free_primary_ssl_config(&session->ssl_config);
  421. Curl_safefree(session->name);
  422. Curl_safefree(session->conn_to_host);
  423. }
  424. }
  425. /*
  426. * Delete the given session ID from the cache.
  427. */
  428. void Curl_ssl_delsessionid(struct Curl_easy *data, void *ssl_sessionid)
  429. {
  430. size_t i;
  431. for(i = 0; i < data->set.general_ssl.max_ssl_sessions; i++) {
  432. struct Curl_ssl_session *check = &data->state.session[i];
  433. if(check->sessionid == ssl_sessionid) {
  434. Curl_ssl_kill_session(check);
  435. break;
  436. }
  437. }
  438. }
  439. /*
  440. * Store session id in the session cache. The ID passed on to this function
  441. * must already have been extracted and allocated the proper way for the SSL
  442. * layer. Curl_XXXX_session_free() will be called to free/kill the session ID
  443. * later on.
  444. */
  445. CURLcode Curl_ssl_addsessionid(struct Curl_easy *data,
  446. struct connectdata *conn,
  447. const bool isProxy,
  448. void *ssl_sessionid,
  449. size_t idsize,
  450. int sockindex)
  451. {
  452. size_t i;
  453. struct Curl_ssl_session *store;
  454. long oldest_age;
  455. char *clone_host;
  456. char *clone_conn_to_host;
  457. int conn_to_port;
  458. long *general_age;
  459. #ifndef CURL_DISABLE_PROXY
  460. struct ssl_primary_config * const ssl_config = isProxy ?
  461. &conn->proxy_ssl_config :
  462. &conn->ssl_config;
  463. const char *hostname = isProxy ? conn->http_proxy.host.name :
  464. conn->host.name;
  465. #else
  466. struct ssl_primary_config * const ssl_config = &conn->ssl_config;
  467. const char *hostname = conn->host.name;
  468. #endif
  469. (void)sockindex;
  470. if(!data->state.session)
  471. return CURLE_OK;
  472. store = &data->state.session[0];
  473. oldest_age = data->state.session[0].age; /* zero if unused */
  474. DEBUGASSERT(SSL_SET_OPTION(primary.sessionid));
  475. clone_host = strdup(hostname);
  476. if(!clone_host)
  477. return CURLE_OUT_OF_MEMORY; /* bail out */
  478. if(conn->bits.conn_to_host) {
  479. clone_conn_to_host = strdup(conn->conn_to_host.name);
  480. if(!clone_conn_to_host) {
  481. free(clone_host);
  482. return CURLE_OUT_OF_MEMORY; /* bail out */
  483. }
  484. }
  485. else
  486. clone_conn_to_host = NULL;
  487. if(conn->bits.conn_to_port)
  488. conn_to_port = conn->conn_to_port;
  489. else
  490. conn_to_port = -1;
  491. /* Now we should add the session ID and the host name to the cache, (remove
  492. the oldest if necessary) */
  493. /* If using shared SSL session, lock! */
  494. if(SSLSESSION_SHARED(data)) {
  495. general_age = &data->share->sessionage;
  496. }
  497. else {
  498. general_age = &data->state.sessionage;
  499. }
  500. /* find an empty slot for us, or find the oldest */
  501. for(i = 1; (i < data->set.general_ssl.max_ssl_sessions) &&
  502. data->state.session[i].sessionid; i++) {
  503. if(data->state.session[i].age < oldest_age) {
  504. oldest_age = data->state.session[i].age;
  505. store = &data->state.session[i];
  506. }
  507. }
  508. if(i == data->set.general_ssl.max_ssl_sessions)
  509. /* cache is full, we must "kill" the oldest entry! */
  510. Curl_ssl_kill_session(store);
  511. else
  512. store = &data->state.session[i]; /* use this slot */
  513. /* now init the session struct wisely */
  514. store->sessionid = ssl_sessionid;
  515. store->idsize = idsize;
  516. store->age = *general_age; /* set current age */
  517. /* free it if there's one already present */
  518. free(store->name);
  519. free(store->conn_to_host);
  520. store->name = clone_host; /* clone host name */
  521. store->conn_to_host = clone_conn_to_host; /* clone connect to host name */
  522. store->conn_to_port = conn_to_port; /* connect to port number */
  523. /* port number */
  524. store->remote_port = isProxy ? (int)conn->port : conn->remote_port;
  525. store->scheme = conn->handler->scheme;
  526. if(!Curl_clone_primary_ssl_config(ssl_config, &store->ssl_config)) {
  527. Curl_free_primary_ssl_config(&store->ssl_config);
  528. store->sessionid = NULL; /* let caller free sessionid */
  529. free(clone_host);
  530. free(clone_conn_to_host);
  531. return CURLE_OUT_OF_MEMORY;
  532. }
  533. DEBUGF(infof(data, "Added Session ID to cache for %s://%s:%d [%s]",
  534. store->scheme, store->name, store->remote_port,
  535. isProxy ? "PROXY" : "server"));
  536. return CURLE_OK;
  537. }
  538. void Curl_ssl_associate_conn(struct Curl_easy *data,
  539. struct connectdata *conn)
  540. {
  541. if(Curl_ssl->associate_connection) {
  542. Curl_ssl->associate_connection(data, conn, FIRSTSOCKET);
  543. if(conn->sock[SECONDARYSOCKET] && conn->bits.sock_accepted)
  544. Curl_ssl->associate_connection(data, conn, SECONDARYSOCKET);
  545. }
  546. }
  547. void Curl_ssl_detach_conn(struct Curl_easy *data,
  548. struct connectdata *conn)
  549. {
  550. if(Curl_ssl->disassociate_connection) {
  551. Curl_ssl->disassociate_connection(data, FIRSTSOCKET);
  552. if(conn->sock[SECONDARYSOCKET] && conn->bits.sock_accepted)
  553. Curl_ssl->disassociate_connection(data, SECONDARYSOCKET);
  554. }
  555. }
  556. void Curl_ssl_close_all(struct Curl_easy *data)
  557. {
  558. /* kill the session ID cache if not shared */
  559. if(data->state.session && !SSLSESSION_SHARED(data)) {
  560. size_t i;
  561. for(i = 0; i < data->set.general_ssl.max_ssl_sessions; i++)
  562. /* the single-killer function handles empty table slots */
  563. Curl_ssl_kill_session(&data->state.session[i]);
  564. /* free the cache data */
  565. Curl_safefree(data->state.session);
  566. }
  567. Curl_ssl->close_all(data);
  568. }
  569. int Curl_ssl_getsock(struct connectdata *conn, curl_socket_t *socks)
  570. {
  571. struct ssl_connect_data *connssl = &conn->ssl[FIRSTSOCKET];
  572. if(connssl->connecting_state == ssl_connect_2_writing) {
  573. /* write mode */
  574. socks[0] = conn->sock[FIRSTSOCKET];
  575. return GETSOCK_WRITESOCK(0);
  576. }
  577. if(connssl->connecting_state == ssl_connect_2_reading) {
  578. /* read mode */
  579. socks[0] = conn->sock[FIRSTSOCKET];
  580. return GETSOCK_READSOCK(0);
  581. }
  582. return GETSOCK_BLANK;
  583. }
  584. void Curl_ssl_close(struct Curl_easy *data, struct connectdata *conn,
  585. int sockindex)
  586. {
  587. DEBUGASSERT((sockindex <= 1) && (sockindex >= -1));
  588. Curl_ssl->close_one(data, conn, sockindex);
  589. conn->ssl[sockindex].state = ssl_connection_none;
  590. }
  591. CURLcode Curl_ssl_shutdown(struct Curl_easy *data, struct connectdata *conn,
  592. int sockindex)
  593. {
  594. if(Curl_ssl->shut_down(data, conn, sockindex))
  595. return CURLE_SSL_SHUTDOWN_FAILED;
  596. conn->ssl[sockindex].use = FALSE; /* get back to ordinary socket usage */
  597. conn->ssl[sockindex].state = ssl_connection_none;
  598. conn->recv[sockindex] = Curl_recv_plain;
  599. conn->send[sockindex] = Curl_send_plain;
  600. return CURLE_OK;
  601. }
  602. /* Selects an SSL crypto engine
  603. */
  604. CURLcode Curl_ssl_set_engine(struct Curl_easy *data, const char *engine)
  605. {
  606. return Curl_ssl->set_engine(data, engine);
  607. }
  608. /* Selects the default SSL crypto engine
  609. */
  610. CURLcode Curl_ssl_set_engine_default(struct Curl_easy *data)
  611. {
  612. return Curl_ssl->set_engine_default(data);
  613. }
  614. /* Return list of OpenSSL crypto engine names. */
  615. struct curl_slist *Curl_ssl_engines_list(struct Curl_easy *data)
  616. {
  617. return Curl_ssl->engines_list(data);
  618. }
  619. /*
  620. * This sets up a session ID cache to the specified size. Make sure this code
  621. * is agnostic to what underlying SSL technology we use.
  622. */
  623. CURLcode Curl_ssl_initsessions(struct Curl_easy *data, size_t amount)
  624. {
  625. struct Curl_ssl_session *session;
  626. if(data->state.session)
  627. /* this is just a precaution to prevent multiple inits */
  628. return CURLE_OK;
  629. session = calloc(amount, sizeof(struct Curl_ssl_session));
  630. if(!session)
  631. return CURLE_OUT_OF_MEMORY;
  632. /* store the info in the SSL section */
  633. data->set.general_ssl.max_ssl_sessions = amount;
  634. data->state.session = session;
  635. data->state.sessionage = 1; /* this is brand new */
  636. return CURLE_OK;
  637. }
  638. static size_t multissl_version(char *buffer, size_t size);
  639. void Curl_ssl_version(char *buffer, size_t size)
  640. {
  641. #ifdef CURL_WITH_MULTI_SSL
  642. (void)multissl_version(buffer, size);
  643. #else
  644. (void)Curl_ssl->version(buffer, size);
  645. #endif
  646. }
  647. /*
  648. * This function tries to determine connection status.
  649. *
  650. * Return codes:
  651. * 1 means the connection is still in place
  652. * 0 means the connection has been closed
  653. * -1 means the connection status is unknown
  654. */
  655. int Curl_ssl_check_cxn(struct connectdata *conn)
  656. {
  657. return Curl_ssl->check_cxn(conn);
  658. }
  659. bool Curl_ssl_data_pending(const struct connectdata *conn,
  660. int connindex)
  661. {
  662. return Curl_ssl->data_pending(conn, connindex);
  663. }
  664. void Curl_ssl_free_certinfo(struct Curl_easy *data)
  665. {
  666. struct curl_certinfo *ci = &data->info.certs;
  667. if(ci->num_of_certs) {
  668. /* free all individual lists used */
  669. int i;
  670. for(i = 0; i<ci->num_of_certs; i++) {
  671. curl_slist_free_all(ci->certinfo[i]);
  672. ci->certinfo[i] = NULL;
  673. }
  674. free(ci->certinfo); /* free the actual array too */
  675. ci->certinfo = NULL;
  676. ci->num_of_certs = 0;
  677. }
  678. }
  679. CURLcode Curl_ssl_init_certinfo(struct Curl_easy *data, int num)
  680. {
  681. struct curl_certinfo *ci = &data->info.certs;
  682. struct curl_slist **table;
  683. /* Free any previous certificate information structures */
  684. Curl_ssl_free_certinfo(data);
  685. /* Allocate the required certificate information structures */
  686. table = calloc((size_t) num, sizeof(struct curl_slist *));
  687. if(!table)
  688. return CURLE_OUT_OF_MEMORY;
  689. ci->num_of_certs = num;
  690. ci->certinfo = table;
  691. return CURLE_OK;
  692. }
  693. /*
  694. * 'value' is NOT a null-terminated string
  695. */
  696. CURLcode Curl_ssl_push_certinfo_len(struct Curl_easy *data,
  697. int certnum,
  698. const char *label,
  699. const char *value,
  700. size_t valuelen)
  701. {
  702. struct curl_certinfo *ci = &data->info.certs;
  703. char *output;
  704. struct curl_slist *nl;
  705. CURLcode result = CURLE_OK;
  706. size_t labellen = strlen(label);
  707. size_t outlen = labellen + 1 + valuelen + 1; /* label:value\0 */
  708. output = malloc(outlen);
  709. if(!output)
  710. return CURLE_OUT_OF_MEMORY;
  711. /* sprintf the label and colon */
  712. msnprintf(output, outlen, "%s:", label);
  713. /* memcpy the value (it might not be null-terminated) */
  714. memcpy(&output[labellen + 1], value, valuelen);
  715. /* null-terminate the output */
  716. output[labellen + 1 + valuelen] = 0;
  717. nl = Curl_slist_append_nodup(ci->certinfo[certnum], output);
  718. if(!nl) {
  719. free(output);
  720. curl_slist_free_all(ci->certinfo[certnum]);
  721. result = CURLE_OUT_OF_MEMORY;
  722. }
  723. ci->certinfo[certnum] = nl;
  724. return result;
  725. }
  726. /*
  727. * This is a convenience function for push_certinfo_len that takes a zero
  728. * terminated value.
  729. */
  730. CURLcode Curl_ssl_push_certinfo(struct Curl_easy *data,
  731. int certnum,
  732. const char *label,
  733. const char *value)
  734. {
  735. size_t valuelen = strlen(value);
  736. return Curl_ssl_push_certinfo_len(data, certnum, label, value, valuelen);
  737. }
  738. CURLcode Curl_ssl_random(struct Curl_easy *data,
  739. unsigned char *entropy,
  740. size_t length)
  741. {
  742. return Curl_ssl->random(data, entropy, length);
  743. }
  744. /*
  745. * Public key pem to der conversion
  746. */
  747. static CURLcode pubkey_pem_to_der(const char *pem,
  748. unsigned char **der, size_t *der_len)
  749. {
  750. char *stripped_pem, *begin_pos, *end_pos;
  751. size_t pem_count, stripped_pem_count = 0, pem_len;
  752. CURLcode result;
  753. /* if no pem, exit. */
  754. if(!pem)
  755. return CURLE_BAD_CONTENT_ENCODING;
  756. begin_pos = strstr(pem, "-----BEGIN PUBLIC KEY-----");
  757. if(!begin_pos)
  758. return CURLE_BAD_CONTENT_ENCODING;
  759. pem_count = begin_pos - pem;
  760. /* Invalid if not at beginning AND not directly following \n */
  761. if(0 != pem_count && '\n' != pem[pem_count - 1])
  762. return CURLE_BAD_CONTENT_ENCODING;
  763. /* 26 is length of "-----BEGIN PUBLIC KEY-----" */
  764. pem_count += 26;
  765. /* Invalid if not directly following \n */
  766. end_pos = strstr(pem + pem_count, "\n-----END PUBLIC KEY-----");
  767. if(!end_pos)
  768. return CURLE_BAD_CONTENT_ENCODING;
  769. pem_len = end_pos - pem;
  770. stripped_pem = malloc(pem_len - pem_count + 1);
  771. if(!stripped_pem)
  772. return CURLE_OUT_OF_MEMORY;
  773. /*
  774. * Here we loop through the pem array one character at a time between the
  775. * correct indices, and place each character that is not '\n' or '\r'
  776. * into the stripped_pem array, which should represent the raw base64 string
  777. */
  778. while(pem_count < pem_len) {
  779. if('\n' != pem[pem_count] && '\r' != pem[pem_count])
  780. stripped_pem[stripped_pem_count++] = pem[pem_count];
  781. ++pem_count;
  782. }
  783. /* Place the null terminator in the correct place */
  784. stripped_pem[stripped_pem_count] = '\0';
  785. result = Curl_base64_decode(stripped_pem, der, der_len);
  786. Curl_safefree(stripped_pem);
  787. return result;
  788. }
  789. /*
  790. * Generic pinned public key check.
  791. */
  792. CURLcode Curl_pin_peer_pubkey(struct Curl_easy *data,
  793. const char *pinnedpubkey,
  794. const unsigned char *pubkey, size_t pubkeylen)
  795. {
  796. FILE *fp;
  797. unsigned char *buf = NULL, *pem_ptr = NULL;
  798. CURLcode result = CURLE_SSL_PINNEDPUBKEYNOTMATCH;
  799. /* if a path wasn't specified, don't pin */
  800. if(!pinnedpubkey)
  801. return CURLE_OK;
  802. if(!pubkey || !pubkeylen)
  803. return result;
  804. /* only do this if pinnedpubkey starts with "sha256//", length 8 */
  805. if(strncmp(pinnedpubkey, "sha256//", 8) == 0) {
  806. CURLcode encode;
  807. size_t encodedlen, pinkeylen;
  808. char *encoded, *pinkeycopy, *begin_pos, *end_pos;
  809. unsigned char *sha256sumdigest;
  810. if(!Curl_ssl->sha256sum) {
  811. /* without sha256 support, this cannot match */
  812. return result;
  813. }
  814. /* compute sha256sum of public key */
  815. sha256sumdigest = malloc(CURL_SHA256_DIGEST_LENGTH);
  816. if(!sha256sumdigest)
  817. return CURLE_OUT_OF_MEMORY;
  818. encode = Curl_ssl->sha256sum(pubkey, pubkeylen,
  819. sha256sumdigest, CURL_SHA256_DIGEST_LENGTH);
  820. if(encode != CURLE_OK)
  821. return encode;
  822. encode = Curl_base64_encode(data, (char *)sha256sumdigest,
  823. CURL_SHA256_DIGEST_LENGTH, &encoded,
  824. &encodedlen);
  825. Curl_safefree(sha256sumdigest);
  826. if(encode)
  827. return encode;
  828. infof(data, " public key hash: sha256//%s", encoded);
  829. /* it starts with sha256//, copy so we can modify it */
  830. pinkeylen = strlen(pinnedpubkey) + 1;
  831. pinkeycopy = malloc(pinkeylen);
  832. if(!pinkeycopy) {
  833. Curl_safefree(encoded);
  834. return CURLE_OUT_OF_MEMORY;
  835. }
  836. memcpy(pinkeycopy, pinnedpubkey, pinkeylen);
  837. /* point begin_pos to the copy, and start extracting keys */
  838. begin_pos = pinkeycopy;
  839. do {
  840. end_pos = strstr(begin_pos, ";sha256//");
  841. /*
  842. * if there is an end_pos, null terminate,
  843. * otherwise it'll go to the end of the original string
  844. */
  845. if(end_pos)
  846. end_pos[0] = '\0';
  847. /* compare base64 sha256 digests, 8 is the length of "sha256//" */
  848. if(encodedlen == strlen(begin_pos + 8) &&
  849. !memcmp(encoded, begin_pos + 8, encodedlen)) {
  850. result = CURLE_OK;
  851. break;
  852. }
  853. /*
  854. * change back the null-terminator we changed earlier,
  855. * and look for next begin
  856. */
  857. if(end_pos) {
  858. end_pos[0] = ';';
  859. begin_pos = strstr(end_pos, "sha256//");
  860. }
  861. } while(end_pos && begin_pos);
  862. Curl_safefree(encoded);
  863. Curl_safefree(pinkeycopy);
  864. return result;
  865. }
  866. fp = fopen(pinnedpubkey, "rb");
  867. if(!fp)
  868. return result;
  869. do {
  870. long filesize;
  871. size_t size, pem_len;
  872. CURLcode pem_read;
  873. /* Determine the file's size */
  874. if(fseek(fp, 0, SEEK_END))
  875. break;
  876. filesize = ftell(fp);
  877. if(fseek(fp, 0, SEEK_SET))
  878. break;
  879. if(filesize < 0 || filesize > MAX_PINNED_PUBKEY_SIZE)
  880. break;
  881. /*
  882. * if the size of our certificate is bigger than the file
  883. * size then it can't match
  884. */
  885. size = curlx_sotouz((curl_off_t) filesize);
  886. if(pubkeylen > size)
  887. break;
  888. /*
  889. * Allocate buffer for the pinned key
  890. * With 1 additional byte for null terminator in case of PEM key
  891. */
  892. buf = malloc(size + 1);
  893. if(!buf)
  894. break;
  895. /* Returns number of elements read, which should be 1 */
  896. if((int) fread(buf, size, 1, fp) != 1)
  897. break;
  898. /* If the sizes are the same, it can't be base64 encoded, must be der */
  899. if(pubkeylen == size) {
  900. if(!memcmp(pubkey, buf, pubkeylen))
  901. result = CURLE_OK;
  902. break;
  903. }
  904. /*
  905. * Otherwise we will assume it's PEM and try to decode it
  906. * after placing null terminator
  907. */
  908. buf[size] = '\0';
  909. pem_read = pubkey_pem_to_der((const char *)buf, &pem_ptr, &pem_len);
  910. /* if it wasn't read successfully, exit */
  911. if(pem_read)
  912. break;
  913. /*
  914. * if the size of our certificate doesn't match the size of
  915. * the decoded file, they can't be the same, otherwise compare
  916. */
  917. if(pubkeylen == pem_len && !memcmp(pubkey, pem_ptr, pubkeylen))
  918. result = CURLE_OK;
  919. } while(0);
  920. Curl_safefree(buf);
  921. Curl_safefree(pem_ptr);
  922. fclose(fp);
  923. return result;
  924. }
  925. /*
  926. * Check whether the SSL backend supports the status_request extension.
  927. */
  928. bool Curl_ssl_cert_status_request(void)
  929. {
  930. return Curl_ssl->cert_status_request();
  931. }
  932. /*
  933. * Check whether the SSL backend supports false start.
  934. */
  935. bool Curl_ssl_false_start(void)
  936. {
  937. return Curl_ssl->false_start();
  938. }
  939. /*
  940. * Check whether the SSL backend supports setting TLS 1.3 cipher suites
  941. */
  942. bool Curl_ssl_tls13_ciphersuites(void)
  943. {
  944. return Curl_ssl->supports & SSLSUPP_TLS13_CIPHERSUITES;
  945. }
  946. /*
  947. * Default implementations for unsupported functions.
  948. */
  949. int Curl_none_init(void)
  950. {
  951. return 1;
  952. }
  953. void Curl_none_cleanup(void)
  954. { }
  955. int Curl_none_shutdown(struct Curl_easy *data UNUSED_PARAM,
  956. struct connectdata *conn UNUSED_PARAM,
  957. int sockindex UNUSED_PARAM)
  958. {
  959. (void)data;
  960. (void)conn;
  961. (void)sockindex;
  962. return 0;
  963. }
  964. int Curl_none_check_cxn(struct connectdata *conn UNUSED_PARAM)
  965. {
  966. (void)conn;
  967. return -1;
  968. }
  969. CURLcode Curl_none_random(struct Curl_easy *data UNUSED_PARAM,
  970. unsigned char *entropy UNUSED_PARAM,
  971. size_t length UNUSED_PARAM)
  972. {
  973. (void)data;
  974. (void)entropy;
  975. (void)length;
  976. return CURLE_NOT_BUILT_IN;
  977. }
  978. void Curl_none_close_all(struct Curl_easy *data UNUSED_PARAM)
  979. {
  980. (void)data;
  981. }
  982. void Curl_none_session_free(void *ptr UNUSED_PARAM)
  983. {
  984. (void)ptr;
  985. }
  986. bool Curl_none_data_pending(const struct connectdata *conn UNUSED_PARAM,
  987. int connindex UNUSED_PARAM)
  988. {
  989. (void)conn;
  990. (void)connindex;
  991. return 0;
  992. }
  993. bool Curl_none_cert_status_request(void)
  994. {
  995. return FALSE;
  996. }
  997. CURLcode Curl_none_set_engine(struct Curl_easy *data UNUSED_PARAM,
  998. const char *engine UNUSED_PARAM)
  999. {
  1000. (void)data;
  1001. (void)engine;
  1002. return CURLE_NOT_BUILT_IN;
  1003. }
  1004. CURLcode Curl_none_set_engine_default(struct Curl_easy *data UNUSED_PARAM)
  1005. {
  1006. (void)data;
  1007. return CURLE_NOT_BUILT_IN;
  1008. }
  1009. struct curl_slist *Curl_none_engines_list(struct Curl_easy *data UNUSED_PARAM)
  1010. {
  1011. (void)data;
  1012. return (struct curl_slist *)NULL;
  1013. }
  1014. bool Curl_none_false_start(void)
  1015. {
  1016. return FALSE;
  1017. }
  1018. static int multissl_init(void)
  1019. {
  1020. if(multissl_setup(NULL))
  1021. return 1;
  1022. return Curl_ssl->init();
  1023. }
  1024. static CURLcode multissl_connect(struct Curl_easy *data,
  1025. struct connectdata *conn, int sockindex)
  1026. {
  1027. if(multissl_setup(NULL))
  1028. return CURLE_FAILED_INIT;
  1029. return Curl_ssl->connect_blocking(data, conn, sockindex);
  1030. }
  1031. static CURLcode multissl_connect_nonblocking(struct Curl_easy *data,
  1032. struct connectdata *conn,
  1033. int sockindex, bool *done)
  1034. {
  1035. if(multissl_setup(NULL))
  1036. return CURLE_FAILED_INIT;
  1037. return Curl_ssl->connect_nonblocking(data, conn, sockindex, done);
  1038. }
  1039. static int multissl_getsock(struct connectdata *conn, curl_socket_t *socks)
  1040. {
  1041. if(multissl_setup(NULL))
  1042. return 0;
  1043. return Curl_ssl->getsock(conn, socks);
  1044. }
  1045. static void *multissl_get_internals(struct ssl_connect_data *connssl,
  1046. CURLINFO info)
  1047. {
  1048. if(multissl_setup(NULL))
  1049. return NULL;
  1050. return Curl_ssl->get_internals(connssl, info);
  1051. }
  1052. static void multissl_close(struct Curl_easy *data, struct connectdata *conn,
  1053. int sockindex)
  1054. {
  1055. if(multissl_setup(NULL))
  1056. return;
  1057. Curl_ssl->close_one(data, conn, sockindex);
  1058. }
  1059. static const struct Curl_ssl Curl_ssl_multi = {
  1060. { CURLSSLBACKEND_NONE, "multi" }, /* info */
  1061. 0, /* supports nothing */
  1062. (size_t)-1, /* something insanely large to be on the safe side */
  1063. multissl_init, /* init */
  1064. Curl_none_cleanup, /* cleanup */
  1065. multissl_version, /* version */
  1066. Curl_none_check_cxn, /* check_cxn */
  1067. Curl_none_shutdown, /* shutdown */
  1068. Curl_none_data_pending, /* data_pending */
  1069. Curl_none_random, /* random */
  1070. Curl_none_cert_status_request, /* cert_status_request */
  1071. multissl_connect, /* connect */
  1072. multissl_connect_nonblocking, /* connect_nonblocking */
  1073. multissl_getsock, /* getsock */
  1074. multissl_get_internals, /* get_internals */
  1075. multissl_close, /* close_one */
  1076. Curl_none_close_all, /* close_all */
  1077. Curl_none_session_free, /* session_free */
  1078. Curl_none_set_engine, /* set_engine */
  1079. Curl_none_set_engine_default, /* set_engine_default */
  1080. Curl_none_engines_list, /* engines_list */
  1081. Curl_none_false_start, /* false_start */
  1082. NULL, /* sha256sum */
  1083. NULL, /* associate_connection */
  1084. NULL /* disassociate_connection */
  1085. };
  1086. const struct Curl_ssl *Curl_ssl =
  1087. #if defined(CURL_WITH_MULTI_SSL)
  1088. &Curl_ssl_multi;
  1089. #elif defined(USE_WOLFSSL)
  1090. &Curl_ssl_wolfssl;
  1091. #elif defined(USE_SECTRANSP)
  1092. &Curl_ssl_sectransp;
  1093. #elif defined(USE_GNUTLS)
  1094. &Curl_ssl_gnutls;
  1095. #elif defined(USE_GSKIT)
  1096. &Curl_ssl_gskit;
  1097. #elif defined(USE_MBEDTLS)
  1098. &Curl_ssl_mbedtls;
  1099. #elif defined(USE_NSS)
  1100. &Curl_ssl_nss;
  1101. #elif defined(USE_RUSTLS)
  1102. &Curl_ssl_rustls;
  1103. #elif defined(USE_OPENSSL)
  1104. &Curl_ssl_openssl;
  1105. #elif defined(USE_SCHANNEL)
  1106. &Curl_ssl_schannel;
  1107. #elif defined(USE_MESALINK)
  1108. &Curl_ssl_mesalink;
  1109. #elif defined(USE_BEARSSL)
  1110. &Curl_ssl_bearssl;
  1111. #else
  1112. #error "Missing struct Curl_ssl for selected SSL backend"
  1113. #endif
  1114. static const struct Curl_ssl *available_backends[] = {
  1115. #if defined(USE_WOLFSSL)
  1116. &Curl_ssl_wolfssl,
  1117. #endif
  1118. #if defined(USE_SECTRANSP)
  1119. &Curl_ssl_sectransp,
  1120. #endif
  1121. #if defined(USE_GNUTLS)
  1122. &Curl_ssl_gnutls,
  1123. #endif
  1124. #if defined(USE_GSKIT)
  1125. &Curl_ssl_gskit,
  1126. #endif
  1127. #if defined(USE_MBEDTLS)
  1128. &Curl_ssl_mbedtls,
  1129. #endif
  1130. #if defined(USE_NSS)
  1131. &Curl_ssl_nss,
  1132. #endif
  1133. #if defined(USE_OPENSSL)
  1134. &Curl_ssl_openssl,
  1135. #endif
  1136. #if defined(USE_SCHANNEL)
  1137. &Curl_ssl_schannel,
  1138. #endif
  1139. #if defined(USE_MESALINK)
  1140. &Curl_ssl_mesalink,
  1141. #endif
  1142. #if defined(USE_BEARSSL)
  1143. &Curl_ssl_bearssl,
  1144. #endif
  1145. #if defined(USE_RUSTLS)
  1146. &Curl_ssl_rustls,
  1147. #endif
  1148. NULL
  1149. };
  1150. static size_t multissl_version(char *buffer, size_t size)
  1151. {
  1152. static const struct Curl_ssl *selected;
  1153. static char backends[200];
  1154. static size_t backends_len;
  1155. const struct Curl_ssl *current;
  1156. current = Curl_ssl == &Curl_ssl_multi ? available_backends[0] : Curl_ssl;
  1157. if(current != selected) {
  1158. char *p = backends;
  1159. char *end = backends + sizeof(backends);
  1160. int i;
  1161. selected = current;
  1162. backends[0] = '\0';
  1163. for(i = 0; available_backends[i]; ++i) {
  1164. char vb[200];
  1165. bool paren = (selected != available_backends[i]);
  1166. if(available_backends[i]->version(vb, sizeof(vb))) {
  1167. p += msnprintf(p, end - p, "%s%s%s%s", (p != backends ? " " : ""),
  1168. (paren ? "(" : ""), vb, (paren ? ")" : ""));
  1169. }
  1170. }
  1171. backends_len = p - backends;
  1172. }
  1173. if(!size)
  1174. return 0;
  1175. if(size <= backends_len) {
  1176. strncpy(buffer, backends, size - 1);
  1177. buffer[size - 1] = '\0';
  1178. return size - 1;
  1179. }
  1180. strcpy(buffer, backends);
  1181. return backends_len;
  1182. }
  1183. static int multissl_setup(const struct Curl_ssl *backend)
  1184. {
  1185. const char *env;
  1186. char *env_tmp;
  1187. if(Curl_ssl != &Curl_ssl_multi)
  1188. return 1;
  1189. if(backend) {
  1190. Curl_ssl = backend;
  1191. return 0;
  1192. }
  1193. if(!available_backends[0])
  1194. return 1;
  1195. env = env_tmp = curl_getenv("CURL_SSL_BACKEND");
  1196. #ifdef CURL_DEFAULT_SSL_BACKEND
  1197. if(!env)
  1198. env = CURL_DEFAULT_SSL_BACKEND;
  1199. #endif
  1200. if(env) {
  1201. int i;
  1202. for(i = 0; available_backends[i]; i++) {
  1203. if(strcasecompare(env, available_backends[i]->info.name)) {
  1204. Curl_ssl = available_backends[i];
  1205. free(env_tmp);
  1206. return 0;
  1207. }
  1208. }
  1209. }
  1210. /* Fall back to first available backend */
  1211. Curl_ssl = available_backends[0];
  1212. free(env_tmp);
  1213. return 0;
  1214. }
  1215. CURLsslset curl_global_sslset(curl_sslbackend id, const char *name,
  1216. const curl_ssl_backend ***avail)
  1217. {
  1218. int i;
  1219. if(avail)
  1220. *avail = (const curl_ssl_backend **)&available_backends;
  1221. if(Curl_ssl != &Curl_ssl_multi)
  1222. return id == Curl_ssl->info.id ||
  1223. (name && strcasecompare(name, Curl_ssl->info.name)) ?
  1224. CURLSSLSET_OK :
  1225. #if defined(CURL_WITH_MULTI_SSL)
  1226. CURLSSLSET_TOO_LATE;
  1227. #else
  1228. CURLSSLSET_UNKNOWN_BACKEND;
  1229. #endif
  1230. for(i = 0; available_backends[i]; i++) {
  1231. if(available_backends[i]->info.id == id ||
  1232. (name && strcasecompare(available_backends[i]->info.name, name))) {
  1233. multissl_setup(available_backends[i]);
  1234. return CURLSSLSET_OK;
  1235. }
  1236. }
  1237. return CURLSSLSET_UNKNOWN_BACKEND;
  1238. }
  1239. #else /* USE_SSL */
  1240. CURLsslset curl_global_sslset(curl_sslbackend id, const char *name,
  1241. const curl_ssl_backend ***avail)
  1242. {
  1243. (void)id;
  1244. (void)name;
  1245. (void)avail;
  1246. return CURLSSLSET_NO_BACKENDS;
  1247. }
  1248. #endif /* !USE_SSL */