openssl.c 112 KB

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  1. /***************************************************************************
  2. * _ _ ____ _
  3. * Project ___| | | | _ \| |
  4. * / __| | | | |_) | |
  5. * | (__| |_| | _ <| |___
  6. * \___|\___/|_| \_\_____|
  7. *
  8. * Copyright (C) 1998 - 2018, Daniel Stenberg, <daniel@haxx.se>, 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.haxx.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. /*
  23. * Source file for all OpenSSL-specific code for the TLS/SSL layer. No code
  24. * but vtls.c should ever call or use these functions.
  25. */
  26. /*
  27. * The original SSLeay-using code for curl was written by Linas Vepstas and
  28. * Sampo Kellomaki 1998.
  29. */
  30. #include "curl_setup.h"
  31. #ifdef USE_OPENSSL
  32. #include <limits.h>
  33. #include "urldata.h"
  34. #include "sendf.h"
  35. #include "formdata.h" /* for the boundary function */
  36. #include "url.h" /* for the ssl config check function */
  37. #include "inet_pton.h"
  38. #include "openssl.h"
  39. #include "connect.h"
  40. #include "slist.h"
  41. #include "select.h"
  42. #include "vtls.h"
  43. #include "strcase.h"
  44. #include "hostcheck.h"
  45. #include "curl_printf.h"
  46. #include <openssl/ssl.h>
  47. #include <openssl/rand.h>
  48. #include <openssl/x509v3.h>
  49. #ifndef OPENSSL_NO_DSA
  50. #include <openssl/dsa.h>
  51. #endif
  52. #include <openssl/dh.h>
  53. #include <openssl/err.h>
  54. #include <openssl/md5.h>
  55. #include <openssl/conf.h>
  56. #include <openssl/bn.h>
  57. #include <openssl/rsa.h>
  58. #include <openssl/bio.h>
  59. #include <openssl/buffer.h>
  60. #include <openssl/pkcs12.h>
  61. #if (OPENSSL_VERSION_NUMBER >= 0x0090808fL) && !defined(OPENSSL_NO_OCSP)
  62. #include <openssl/ocsp.h>
  63. #endif
  64. #if (OPENSSL_VERSION_NUMBER >= 0x10000000L) && /* 1.0.0 or later */ \
  65. !defined(OPENSSL_NO_ENGINE)
  66. #define USE_OPENSSL_ENGINE
  67. #include <openssl/engine.h>
  68. #endif
  69. #include "warnless.h"
  70. #include "non-ascii.h" /* for Curl_convert_from_utf8 prototype */
  71. /* The last #include files should be: */
  72. #include "curl_memory.h"
  73. #include "memdebug.h"
  74. #ifndef OPENSSL_VERSION_NUMBER
  75. #error "OPENSSL_VERSION_NUMBER not defined"
  76. #endif
  77. #ifdef USE_OPENSSL_ENGINE
  78. #include <openssl/ui.h>
  79. #endif
  80. #if OPENSSL_VERSION_NUMBER >= 0x00909000L
  81. #define SSL_METHOD_QUAL const
  82. #else
  83. #define SSL_METHOD_QUAL
  84. #endif
  85. #if (OPENSSL_VERSION_NUMBER >= 0x10000000L)
  86. #define HAVE_ERR_REMOVE_THREAD_STATE 1
  87. #endif
  88. #if !defined(HAVE_SSLV2_CLIENT_METHOD) || \
  89. OPENSSL_VERSION_NUMBER >= 0x10100000L /* 1.1.0+ has no SSLv2 */
  90. #undef OPENSSL_NO_SSL2 /* undef first to avoid compiler warnings */
  91. #define OPENSSL_NO_SSL2
  92. #endif
  93. #if (OPENSSL_VERSION_NUMBER >= 0x10100000L) && /* OpenSSL 1.1.0+ */ \
  94. !(defined(LIBRESSL_VERSION_NUMBER) && \
  95. LIBRESSL_VERSION_NUMBER < 0x20700000L)
  96. #define SSLEAY_VERSION_NUMBER OPENSSL_VERSION_NUMBER
  97. #define HAVE_X509_GET0_EXTENSIONS 1 /* added in 1.1.0 -pre1 */
  98. #define HAVE_OPAQUE_EVP_PKEY 1 /* since 1.1.0 -pre3 */
  99. #define HAVE_OPAQUE_RSA_DSA_DH 1 /* since 1.1.0 -pre5 */
  100. #define CONST_EXTS const
  101. #define HAVE_ERR_REMOVE_THREAD_STATE_DEPRECATED 1
  102. /* funny typecast define due to difference in API */
  103. #ifdef LIBRESSL_VERSION_NUMBER
  104. #define ARG2_X509_signature_print (X509_ALGOR *)
  105. #else
  106. #define ARG2_X509_signature_print
  107. #endif
  108. #else
  109. /* For OpenSSL before 1.1.0 */
  110. #define ASN1_STRING_get0_data(x) ASN1_STRING_data(x)
  111. #define X509_get0_notBefore(x) X509_get_notBefore(x)
  112. #define X509_get0_notAfter(x) X509_get_notAfter(x)
  113. #define CONST_EXTS /* nope */
  114. #ifdef LIBRESSL_VERSION_NUMBER
  115. static unsigned long OpenSSL_version_num(void)
  116. {
  117. return LIBRESSL_VERSION_NUMBER;
  118. }
  119. #else
  120. #define OpenSSL_version_num() SSLeay()
  121. #endif
  122. #endif
  123. #if (OPENSSL_VERSION_NUMBER >= 0x1000200fL) && /* 1.0.2 or later */ \
  124. !(defined(LIBRESSL_VERSION_NUMBER) && \
  125. LIBRESSL_VERSION_NUMBER < 0x20700000L)
  126. #define HAVE_X509_GET0_SIGNATURE 1
  127. #endif
  128. #if OPENSSL_VERSION_NUMBER >= 0x10002003L && \
  129. OPENSSL_VERSION_NUMBER <= 0x10002FFFL && \
  130. !defined(OPENSSL_NO_COMP)
  131. #define HAVE_SSL_COMP_FREE_COMPRESSION_METHODS 1
  132. #endif
  133. #if (OPENSSL_VERSION_NUMBER < 0x0090808fL)
  134. /* not present in older OpenSSL */
  135. #define OPENSSL_load_builtin_modules(x)
  136. #endif
  137. /*
  138. * Whether SSL_CTX_set_keylog_callback is available.
  139. * OpenSSL: supported since 1.1.1 https://github.com/openssl/openssl/pull/2287
  140. * BoringSSL: supported since d28f59c27bac (committed 2015-11-19)
  141. * LibreSSL: unsupported in at least 2.7.2 (explicitly check for it since it
  142. * lies and pretends to be OpenSSL 2.0.0).
  143. */
  144. #if (OPENSSL_VERSION_NUMBER >= 0x10101000L && \
  145. !defined(LIBRESSL_VERSION_NUMBER)) || \
  146. defined(OPENSSL_IS_BORINGSSL)
  147. #define HAVE_KEYLOG_CALLBACK
  148. #endif
  149. /* Whether SSL_CTX_set_ciphersuites is available.
  150. * OpenSSL: supported since 1.1.1 (commit a53b5be6a05)
  151. * BoringSSL: no
  152. * LibreSSL: no
  153. */
  154. #if ((OPENSSL_VERSION_NUMBER >= 0x10101000L) && \
  155. !defined(LIBRESSL_VERSION_NUMBER) && \
  156. !defined(OPENSSL_IS_BORINGSSL))
  157. #define HAVE_SSL_CTX_SET_CIPHERSUITES
  158. #endif
  159. #if defined(LIBRESSL_VERSION_NUMBER)
  160. #define OSSL_PACKAGE "LibreSSL"
  161. #elif defined(OPENSSL_IS_BORINGSSL)
  162. #define OSSL_PACKAGE "BoringSSL"
  163. #else
  164. #define OSSL_PACKAGE "OpenSSL"
  165. #endif
  166. #if (OPENSSL_VERSION_NUMBER >= 0x10100000L)
  167. /* up2date versions of OpenSSL maintain the default reasonably secure without
  168. * breaking compatibility, so it is better not to override the default by curl
  169. */
  170. #define DEFAULT_CIPHER_SELECTION NULL
  171. #else
  172. /* ... but it is not the case with old versions of OpenSSL */
  173. #define DEFAULT_CIPHER_SELECTION \
  174. "ALL:!EXPORT:!EXPORT40:!EXPORT56:!aNULL:!LOW:!RC4:@STRENGTH"
  175. #endif
  176. #define ENABLE_SSLKEYLOGFILE
  177. #ifdef ENABLE_SSLKEYLOGFILE
  178. typedef struct ssl_tap_state {
  179. int master_key_length;
  180. unsigned char master_key[SSL_MAX_MASTER_KEY_LENGTH];
  181. unsigned char client_random[SSL3_RANDOM_SIZE];
  182. } ssl_tap_state_t;
  183. #endif /* ENABLE_SSLKEYLOGFILE */
  184. struct ssl_backend_data {
  185. /* these ones requires specific SSL-types */
  186. SSL_CTX* ctx;
  187. SSL* handle;
  188. X509* server_cert;
  189. #ifdef ENABLE_SSLKEYLOGFILE
  190. /* tap_state holds the last seen master key if we're logging them */
  191. ssl_tap_state_t tap_state;
  192. #endif
  193. };
  194. #define BACKEND connssl->backend
  195. /*
  196. * Number of bytes to read from the random number seed file. This must be
  197. * a finite value (because some entropy "files" like /dev/urandom have
  198. * an infinite length), but must be large enough to provide enough
  199. * entropy to properly seed OpenSSL's PRNG.
  200. */
  201. #define RAND_LOAD_LENGTH 1024
  202. #ifdef ENABLE_SSLKEYLOGFILE
  203. /* The fp for the open SSLKEYLOGFILE, or NULL if not open */
  204. static FILE *keylog_file_fp;
  205. #ifdef HAVE_KEYLOG_CALLBACK
  206. static void ossl_keylog_callback(const SSL *ssl, const char *line)
  207. {
  208. (void)ssl;
  209. /* Using fputs here instead of fprintf since libcurl's fprintf replacement
  210. may not be thread-safe. */
  211. if(keylog_file_fp && line && *line) {
  212. char stackbuf[256];
  213. char *buf;
  214. size_t linelen = strlen(line);
  215. if(linelen <= sizeof(stackbuf) - 2)
  216. buf = stackbuf;
  217. else {
  218. buf = malloc(linelen + 2);
  219. if(!buf)
  220. return;
  221. }
  222. strncpy(buf, line, linelen);
  223. buf[linelen] = '\n';
  224. buf[linelen + 1] = '\0';
  225. fputs(buf, keylog_file_fp);
  226. if(buf != stackbuf)
  227. free(buf);
  228. }
  229. }
  230. #else
  231. #define KEYLOG_PREFIX "CLIENT_RANDOM "
  232. #define KEYLOG_PREFIX_LEN (sizeof(KEYLOG_PREFIX) - 1)
  233. /*
  234. * tap_ssl_key is called by libcurl to make the CLIENT_RANDOMs if the OpenSSL
  235. * being used doesn't have native support for doing that.
  236. */
  237. static void tap_ssl_key(const SSL *ssl, ssl_tap_state_t *state)
  238. {
  239. const char *hex = "0123456789ABCDEF";
  240. int pos, i;
  241. char line[KEYLOG_PREFIX_LEN + 2 * SSL3_RANDOM_SIZE + 1 +
  242. 2 * SSL_MAX_MASTER_KEY_LENGTH + 1 + 1];
  243. const SSL_SESSION *session = SSL_get_session(ssl);
  244. unsigned char client_random[SSL3_RANDOM_SIZE];
  245. unsigned char master_key[SSL_MAX_MASTER_KEY_LENGTH];
  246. int master_key_length = 0;
  247. if(!session || !keylog_file_fp)
  248. return;
  249. #if OPENSSL_VERSION_NUMBER >= 0x10100000L && \
  250. !(defined(LIBRESSL_VERSION_NUMBER) && \
  251. LIBRESSL_VERSION_NUMBER < 0x20700000L)
  252. /* ssl->s3 is not checked in openssl 1.1.0-pre6, but let's assume that
  253. * we have a valid SSL context if we have a non-NULL session. */
  254. SSL_get_client_random(ssl, client_random, SSL3_RANDOM_SIZE);
  255. master_key_length = (int)
  256. SSL_SESSION_get_master_key(session, master_key, SSL_MAX_MASTER_KEY_LENGTH);
  257. #else
  258. if(ssl->s3 && session->master_key_length > 0) {
  259. master_key_length = session->master_key_length;
  260. memcpy(master_key, session->master_key, session->master_key_length);
  261. memcpy(client_random, ssl->s3->client_random, SSL3_RANDOM_SIZE);
  262. }
  263. #endif
  264. if(master_key_length <= 0)
  265. return;
  266. /* Skip writing keys if there is no key or it did not change. */
  267. if(state->master_key_length == master_key_length &&
  268. !memcmp(state->master_key, master_key, master_key_length) &&
  269. !memcmp(state->client_random, client_random, SSL3_RANDOM_SIZE)) {
  270. return;
  271. }
  272. state->master_key_length = master_key_length;
  273. memcpy(state->master_key, master_key, master_key_length);
  274. memcpy(state->client_random, client_random, SSL3_RANDOM_SIZE);
  275. memcpy(line, KEYLOG_PREFIX, KEYLOG_PREFIX_LEN);
  276. pos = KEYLOG_PREFIX_LEN;
  277. /* Client Random for SSLv3/TLS */
  278. for(i = 0; i < SSL3_RANDOM_SIZE; i++) {
  279. line[pos++] = hex[client_random[i] >> 4];
  280. line[pos++] = hex[client_random[i] & 0xF];
  281. }
  282. line[pos++] = ' ';
  283. /* Master Secret (size is at most SSL_MAX_MASTER_KEY_LENGTH) */
  284. for(i = 0; i < master_key_length; i++) {
  285. line[pos++] = hex[master_key[i] >> 4];
  286. line[pos++] = hex[master_key[i] & 0xF];
  287. }
  288. line[pos++] = '\n';
  289. line[pos] = '\0';
  290. /* Using fputs here instead of fprintf since libcurl's fprintf replacement
  291. may not be thread-safe. */
  292. fputs(line, keylog_file_fp);
  293. }
  294. #endif /* !HAVE_KEYLOG_CALLBACK */
  295. #endif /* ENABLE_SSLKEYLOGFILE */
  296. static const char *SSL_ERROR_to_str(int err)
  297. {
  298. switch(err) {
  299. case SSL_ERROR_NONE:
  300. return "SSL_ERROR_NONE";
  301. case SSL_ERROR_SSL:
  302. return "SSL_ERROR_SSL";
  303. case SSL_ERROR_WANT_READ:
  304. return "SSL_ERROR_WANT_READ";
  305. case SSL_ERROR_WANT_WRITE:
  306. return "SSL_ERROR_WANT_WRITE";
  307. case SSL_ERROR_WANT_X509_LOOKUP:
  308. return "SSL_ERROR_WANT_X509_LOOKUP";
  309. case SSL_ERROR_SYSCALL:
  310. return "SSL_ERROR_SYSCALL";
  311. case SSL_ERROR_ZERO_RETURN:
  312. return "SSL_ERROR_ZERO_RETURN";
  313. case SSL_ERROR_WANT_CONNECT:
  314. return "SSL_ERROR_WANT_CONNECT";
  315. case SSL_ERROR_WANT_ACCEPT:
  316. return "SSL_ERROR_WANT_ACCEPT";
  317. #if defined(SSL_ERROR_WANT_ASYNC)
  318. case SSL_ERROR_WANT_ASYNC:
  319. return "SSL_ERROR_WANT_ASYNC";
  320. #endif
  321. #if defined(SSL_ERROR_WANT_ASYNC_JOB)
  322. case SSL_ERROR_WANT_ASYNC_JOB:
  323. return "SSL_ERROR_WANT_ASYNC_JOB";
  324. #endif
  325. #if defined(SSL_ERROR_WANT_EARLY)
  326. case SSL_ERROR_WANT_EARLY:
  327. return "SSL_ERROR_WANT_EARLY";
  328. #endif
  329. default:
  330. return "SSL_ERROR unknown";
  331. }
  332. }
  333. /* Return error string for last OpenSSL error
  334. */
  335. static char *ossl_strerror(unsigned long error, char *buf, size_t size)
  336. {
  337. ERR_error_string_n(error, buf, size);
  338. return buf;
  339. }
  340. static int passwd_callback(char *buf, int num, int encrypting,
  341. void *global_passwd)
  342. {
  343. DEBUGASSERT(0 == encrypting);
  344. if(!encrypting) {
  345. int klen = curlx_uztosi(strlen((char *)global_passwd));
  346. if(num > klen) {
  347. memcpy(buf, global_passwd, klen + 1);
  348. return klen;
  349. }
  350. }
  351. return 0;
  352. }
  353. /*
  354. * rand_enough() returns TRUE if we have seeded the random engine properly.
  355. */
  356. static bool rand_enough(void)
  357. {
  358. return (0 != RAND_status()) ? TRUE : FALSE;
  359. }
  360. static CURLcode Curl_ossl_seed(struct Curl_easy *data)
  361. {
  362. /* we have the "SSL is seeded" boolean static to prevent multiple
  363. time-consuming seedings in vain */
  364. static bool ssl_seeded = FALSE;
  365. char fname[256];
  366. if(ssl_seeded)
  367. return CURLE_OK;
  368. if(rand_enough()) {
  369. /* OpenSSL 1.1.0+ will return here */
  370. ssl_seeded = TRUE;
  371. return CURLE_OK;
  372. }
  373. #ifndef RANDOM_FILE
  374. /* if RANDOM_FILE isn't defined, we only perform this if an option tells
  375. us to! */
  376. if(data->set.str[STRING_SSL_RANDOM_FILE])
  377. #define RANDOM_FILE "" /* doesn't matter won't be used */
  378. #endif
  379. {
  380. /* let the option override the define */
  381. RAND_load_file((data->set.str[STRING_SSL_RANDOM_FILE]?
  382. data->set.str[STRING_SSL_RANDOM_FILE]:
  383. RANDOM_FILE),
  384. RAND_LOAD_LENGTH);
  385. if(rand_enough())
  386. return CURLE_OK;
  387. }
  388. #if defined(HAVE_RAND_EGD)
  389. /* only available in OpenSSL 0.9.5 and later */
  390. /* EGD_SOCKET is set at configure time or not at all */
  391. #ifndef EGD_SOCKET
  392. /* If we don't have the define set, we only do this if the egd-option
  393. is set */
  394. if(data->set.str[STRING_SSL_EGDSOCKET])
  395. #define EGD_SOCKET "" /* doesn't matter won't be used */
  396. #endif
  397. {
  398. /* If there's an option and a define, the option overrides the
  399. define */
  400. int ret = RAND_egd(data->set.str[STRING_SSL_EGDSOCKET]?
  401. data->set.str[STRING_SSL_EGDSOCKET]:EGD_SOCKET);
  402. if(-1 != ret) {
  403. if(rand_enough())
  404. return CURLE_OK;
  405. }
  406. }
  407. #endif
  408. /* fallback to a custom seeding of the PRNG using a hash based on a current
  409. time */
  410. do {
  411. unsigned char randb[64];
  412. size_t len = sizeof(randb);
  413. size_t i, i_max;
  414. for(i = 0, i_max = len / sizeof(struct curltime); i < i_max; ++i) {
  415. struct curltime tv = Curl_now();
  416. Curl_wait_ms(1);
  417. tv.tv_sec *= i + 1;
  418. tv.tv_usec *= (unsigned int)i + 2;
  419. tv.tv_sec ^= ((Curl_now().tv_sec + Curl_now().tv_usec) *
  420. (i + 3)) << 8;
  421. tv.tv_usec ^= (unsigned int) ((Curl_now().tv_sec +
  422. Curl_now().tv_usec) *
  423. (i + 4)) << 16;
  424. memcpy(&randb[i * sizeof(struct curltime)], &tv,
  425. sizeof(struct curltime));
  426. }
  427. RAND_add(randb, (int)len, (double)len/2);
  428. } while(!rand_enough());
  429. /* generates a default path for the random seed file */
  430. fname[0] = 0; /* blank it first */
  431. RAND_file_name(fname, sizeof(fname));
  432. if(fname[0]) {
  433. /* we got a file name to try */
  434. RAND_load_file(fname, RAND_LOAD_LENGTH);
  435. if(rand_enough())
  436. return CURLE_OK;
  437. }
  438. infof(data, "libcurl is now using a weak random seed!\n");
  439. return (rand_enough() ? CURLE_OK :
  440. CURLE_SSL_CONNECT_ERROR /* confusing error code */);
  441. }
  442. #ifndef SSL_FILETYPE_ENGINE
  443. #define SSL_FILETYPE_ENGINE 42
  444. #endif
  445. #ifndef SSL_FILETYPE_PKCS12
  446. #define SSL_FILETYPE_PKCS12 43
  447. #endif
  448. static int do_file_type(const char *type)
  449. {
  450. if(!type || !type[0])
  451. return SSL_FILETYPE_PEM;
  452. if(strcasecompare(type, "PEM"))
  453. return SSL_FILETYPE_PEM;
  454. if(strcasecompare(type, "DER"))
  455. return SSL_FILETYPE_ASN1;
  456. if(strcasecompare(type, "ENG"))
  457. return SSL_FILETYPE_ENGINE;
  458. if(strcasecompare(type, "P12"))
  459. return SSL_FILETYPE_PKCS12;
  460. return -1;
  461. }
  462. #ifdef USE_OPENSSL_ENGINE
  463. /*
  464. * Supply default password to the engine user interface conversation.
  465. * The password is passed by OpenSSL engine from ENGINE_load_private_key()
  466. * last argument to the ui and can be obtained by UI_get0_user_data(ui) here.
  467. */
  468. static int ssl_ui_reader(UI *ui, UI_STRING *uis)
  469. {
  470. const char *password;
  471. switch(UI_get_string_type(uis)) {
  472. case UIT_PROMPT:
  473. case UIT_VERIFY:
  474. password = (const char *)UI_get0_user_data(ui);
  475. if(password && (UI_get_input_flags(uis) & UI_INPUT_FLAG_DEFAULT_PWD)) {
  476. UI_set_result(ui, uis, password);
  477. return 1;
  478. }
  479. default:
  480. break;
  481. }
  482. return (UI_method_get_reader(UI_OpenSSL()))(ui, uis);
  483. }
  484. /*
  485. * Suppress interactive request for a default password if available.
  486. */
  487. static int ssl_ui_writer(UI *ui, UI_STRING *uis)
  488. {
  489. switch(UI_get_string_type(uis)) {
  490. case UIT_PROMPT:
  491. case UIT_VERIFY:
  492. if(UI_get0_user_data(ui) &&
  493. (UI_get_input_flags(uis) & UI_INPUT_FLAG_DEFAULT_PWD)) {
  494. return 1;
  495. }
  496. default:
  497. break;
  498. }
  499. return (UI_method_get_writer(UI_OpenSSL()))(ui, uis);
  500. }
  501. /*
  502. * Check if a given string is a PKCS#11 URI
  503. */
  504. static bool is_pkcs11_uri(const char *string)
  505. {
  506. return (string && strncasecompare(string, "pkcs11:", 7));
  507. }
  508. #endif
  509. static CURLcode Curl_ossl_set_engine(struct Curl_easy *data,
  510. const char *engine);
  511. static
  512. int cert_stuff(struct connectdata *conn,
  513. SSL_CTX* ctx,
  514. char *cert_file,
  515. const char *cert_type,
  516. char *key_file,
  517. const char *key_type,
  518. char *key_passwd)
  519. {
  520. struct Curl_easy *data = conn->data;
  521. char error_buffer[256];
  522. bool check_privkey = TRUE;
  523. int file_type = do_file_type(cert_type);
  524. if(cert_file || (file_type == SSL_FILETYPE_ENGINE)) {
  525. SSL *ssl;
  526. X509 *x509;
  527. int cert_done = 0;
  528. if(key_passwd) {
  529. /* set the password in the callback userdata */
  530. SSL_CTX_set_default_passwd_cb_userdata(ctx, key_passwd);
  531. /* Set passwd callback: */
  532. SSL_CTX_set_default_passwd_cb(ctx, passwd_callback);
  533. }
  534. switch(file_type) {
  535. case SSL_FILETYPE_PEM:
  536. /* SSL_CTX_use_certificate_chain_file() only works on PEM files */
  537. if(SSL_CTX_use_certificate_chain_file(ctx,
  538. cert_file) != 1) {
  539. failf(data,
  540. "could not load PEM client certificate, " OSSL_PACKAGE
  541. " error %s, "
  542. "(no key found, wrong pass phrase, or wrong file format?)",
  543. ossl_strerror(ERR_get_error(), error_buffer,
  544. sizeof(error_buffer)) );
  545. return 0;
  546. }
  547. break;
  548. case SSL_FILETYPE_ASN1:
  549. /* SSL_CTX_use_certificate_file() works with either PEM or ASN1, but
  550. we use the case above for PEM so this can only be performed with
  551. ASN1 files. */
  552. if(SSL_CTX_use_certificate_file(ctx,
  553. cert_file,
  554. file_type) != 1) {
  555. failf(data,
  556. "could not load ASN1 client certificate, " OSSL_PACKAGE
  557. " error %s, "
  558. "(no key found, wrong pass phrase, or wrong file format?)",
  559. ossl_strerror(ERR_get_error(), error_buffer,
  560. sizeof(error_buffer)) );
  561. return 0;
  562. }
  563. break;
  564. case SSL_FILETYPE_ENGINE:
  565. #if defined(USE_OPENSSL_ENGINE) && defined(ENGINE_CTRL_GET_CMD_FROM_NAME)
  566. {
  567. /* Implicitly use pkcs11 engine if none was provided and the
  568. * cert_file is a PKCS#11 URI */
  569. if(!data->state.engine) {
  570. if(is_pkcs11_uri(cert_file)) {
  571. if(Curl_ossl_set_engine(data, "pkcs11") != CURLE_OK) {
  572. return 0;
  573. }
  574. }
  575. }
  576. if(data->state.engine) {
  577. const char *cmd_name = "LOAD_CERT_CTRL";
  578. struct {
  579. const char *cert_id;
  580. X509 *cert;
  581. } params;
  582. params.cert_id = cert_file;
  583. params.cert = NULL;
  584. /* Does the engine supports LOAD_CERT_CTRL ? */
  585. if(!ENGINE_ctrl(data->state.engine, ENGINE_CTRL_GET_CMD_FROM_NAME,
  586. 0, (void *)cmd_name, NULL)) {
  587. failf(data, "ssl engine does not support loading certificates");
  588. return 0;
  589. }
  590. /* Load the certificate from the engine */
  591. if(!ENGINE_ctrl_cmd(data->state.engine, cmd_name,
  592. 0, &params, NULL, 1)) {
  593. failf(data, "ssl engine cannot load client cert with id"
  594. " '%s' [%s]", cert_file,
  595. ossl_strerror(ERR_get_error(), error_buffer,
  596. sizeof(error_buffer)));
  597. return 0;
  598. }
  599. if(!params.cert) {
  600. failf(data, "ssl engine didn't initialized the certificate "
  601. "properly.");
  602. return 0;
  603. }
  604. if(SSL_CTX_use_certificate(ctx, params.cert) != 1) {
  605. failf(data, "unable to set client certificate");
  606. X509_free(params.cert);
  607. return 0;
  608. }
  609. X509_free(params.cert); /* we don't need the handle any more... */
  610. }
  611. else {
  612. failf(data, "crypto engine not set, can't load certificate");
  613. return 0;
  614. }
  615. }
  616. break;
  617. #else
  618. failf(data, "file type ENG for certificate not implemented");
  619. return 0;
  620. #endif
  621. case SSL_FILETYPE_PKCS12:
  622. {
  623. BIO *fp = NULL;
  624. PKCS12 *p12 = NULL;
  625. EVP_PKEY *pri;
  626. STACK_OF(X509) *ca = NULL;
  627. fp = BIO_new(BIO_s_file());
  628. if(fp == NULL) {
  629. failf(data,
  630. "BIO_new return NULL, " OSSL_PACKAGE
  631. " error %s",
  632. ossl_strerror(ERR_get_error(), error_buffer,
  633. sizeof(error_buffer)) );
  634. return 0;
  635. }
  636. if(BIO_read_filename(fp, cert_file) <= 0) {
  637. failf(data, "could not open PKCS12 file '%s'", cert_file);
  638. BIO_free(fp);
  639. return 0;
  640. }
  641. p12 = d2i_PKCS12_bio(fp, NULL);
  642. BIO_free(fp);
  643. if(!p12) {
  644. failf(data, "error reading PKCS12 file '%s'", cert_file);
  645. return 0;
  646. }
  647. PKCS12_PBE_add();
  648. if(!PKCS12_parse(p12, key_passwd, &pri, &x509,
  649. &ca)) {
  650. failf(data,
  651. "could not parse PKCS12 file, check password, " OSSL_PACKAGE
  652. " error %s",
  653. ossl_strerror(ERR_get_error(), error_buffer,
  654. sizeof(error_buffer)) );
  655. PKCS12_free(p12);
  656. return 0;
  657. }
  658. PKCS12_free(p12);
  659. if(SSL_CTX_use_certificate(ctx, x509) != 1) {
  660. failf(data,
  661. "could not load PKCS12 client certificate, " OSSL_PACKAGE
  662. " error %s",
  663. ossl_strerror(ERR_get_error(), error_buffer,
  664. sizeof(error_buffer)) );
  665. goto fail;
  666. }
  667. if(SSL_CTX_use_PrivateKey(ctx, pri) != 1) {
  668. failf(data, "unable to use private key from PKCS12 file '%s'",
  669. cert_file);
  670. goto fail;
  671. }
  672. if(!SSL_CTX_check_private_key (ctx)) {
  673. failf(data, "private key from PKCS12 file '%s' "
  674. "does not match certificate in same file", cert_file);
  675. goto fail;
  676. }
  677. /* Set Certificate Verification chain */
  678. if(ca) {
  679. while(sk_X509_num(ca)) {
  680. /*
  681. * Note that sk_X509_pop() is used below to make sure the cert is
  682. * removed from the stack properly before getting passed to
  683. * SSL_CTX_add_extra_chain_cert(), which takes ownership. Previously
  684. * we used sk_X509_value() instead, but then we'd clean it in the
  685. * subsequent sk_X509_pop_free() call.
  686. */
  687. X509 *x = sk_X509_pop(ca);
  688. if(!SSL_CTX_add_client_CA(ctx, x)) {
  689. X509_free(x);
  690. failf(data, "cannot add certificate to client CA list");
  691. goto fail;
  692. }
  693. if(!SSL_CTX_add_extra_chain_cert(ctx, x)) {
  694. X509_free(x);
  695. failf(data, "cannot add certificate to certificate chain");
  696. goto fail;
  697. }
  698. }
  699. }
  700. cert_done = 1;
  701. fail:
  702. EVP_PKEY_free(pri);
  703. X509_free(x509);
  704. sk_X509_pop_free(ca, X509_free);
  705. if(!cert_done)
  706. return 0; /* failure! */
  707. break;
  708. }
  709. default:
  710. failf(data, "not supported file type '%s' for certificate", cert_type);
  711. return 0;
  712. }
  713. file_type = do_file_type(key_type);
  714. switch(file_type) {
  715. case SSL_FILETYPE_PEM:
  716. if(cert_done)
  717. break;
  718. if(!key_file)
  719. /* cert & key can only be in PEM case in the same file */
  720. key_file = cert_file;
  721. /* FALLTHROUGH */
  722. case SSL_FILETYPE_ASN1:
  723. if(SSL_CTX_use_PrivateKey_file(ctx, key_file, file_type) != 1) {
  724. failf(data, "unable to set private key file: '%s' type %s",
  725. key_file, key_type?key_type:"PEM");
  726. return 0;
  727. }
  728. break;
  729. case SSL_FILETYPE_ENGINE:
  730. #ifdef USE_OPENSSL_ENGINE
  731. { /* XXXX still needs some work */
  732. EVP_PKEY *priv_key = NULL;
  733. /* Implicitly use pkcs11 engine if none was provided and the
  734. * key_file is a PKCS#11 URI */
  735. if(!data->state.engine) {
  736. if(is_pkcs11_uri(key_file)) {
  737. if(Curl_ossl_set_engine(data, "pkcs11") != CURLE_OK) {
  738. return 0;
  739. }
  740. }
  741. }
  742. if(data->state.engine) {
  743. UI_METHOD *ui_method =
  744. UI_create_method((char *)"curl user interface");
  745. if(!ui_method) {
  746. failf(data, "unable do create " OSSL_PACKAGE
  747. " user-interface method");
  748. return 0;
  749. }
  750. UI_method_set_opener(ui_method, UI_method_get_opener(UI_OpenSSL()));
  751. UI_method_set_closer(ui_method, UI_method_get_closer(UI_OpenSSL()));
  752. UI_method_set_reader(ui_method, ssl_ui_reader);
  753. UI_method_set_writer(ui_method, ssl_ui_writer);
  754. /* the typecast below was added to please mingw32 */
  755. priv_key = (EVP_PKEY *)
  756. ENGINE_load_private_key(data->state.engine, key_file,
  757. ui_method,
  758. key_passwd);
  759. UI_destroy_method(ui_method);
  760. if(!priv_key) {
  761. failf(data, "failed to load private key from crypto engine");
  762. return 0;
  763. }
  764. if(SSL_CTX_use_PrivateKey(ctx, priv_key) != 1) {
  765. failf(data, "unable to set private key");
  766. EVP_PKEY_free(priv_key);
  767. return 0;
  768. }
  769. EVP_PKEY_free(priv_key); /* we don't need the handle any more... */
  770. }
  771. else {
  772. failf(data, "crypto engine not set, can't load private key");
  773. return 0;
  774. }
  775. }
  776. break;
  777. #else
  778. failf(data, "file type ENG for private key not supported");
  779. return 0;
  780. #endif
  781. case SSL_FILETYPE_PKCS12:
  782. if(!cert_done) {
  783. failf(data, "file type P12 for private key not supported");
  784. return 0;
  785. }
  786. break;
  787. default:
  788. failf(data, "not supported file type for private key");
  789. return 0;
  790. }
  791. ssl = SSL_new(ctx);
  792. if(!ssl) {
  793. failf(data, "unable to create an SSL structure");
  794. return 0;
  795. }
  796. x509 = SSL_get_certificate(ssl);
  797. /* This version was provided by Evan Jordan and is supposed to not
  798. leak memory as the previous version: */
  799. if(x509) {
  800. EVP_PKEY *pktmp = X509_get_pubkey(x509);
  801. EVP_PKEY_copy_parameters(pktmp, SSL_get_privatekey(ssl));
  802. EVP_PKEY_free(pktmp);
  803. }
  804. #if !defined(OPENSSL_NO_RSA) && !defined(OPENSSL_IS_BORINGSSL)
  805. {
  806. /* If RSA is used, don't check the private key if its flags indicate
  807. * it doesn't support it. */
  808. EVP_PKEY *priv_key = SSL_get_privatekey(ssl);
  809. int pktype;
  810. #ifdef HAVE_OPAQUE_EVP_PKEY
  811. pktype = EVP_PKEY_id(priv_key);
  812. #else
  813. pktype = priv_key->type;
  814. #endif
  815. if(pktype == EVP_PKEY_RSA) {
  816. RSA *rsa = EVP_PKEY_get1_RSA(priv_key);
  817. if(RSA_flags(rsa) & RSA_METHOD_FLAG_NO_CHECK)
  818. check_privkey = FALSE;
  819. RSA_free(rsa); /* Decrement reference count */
  820. }
  821. }
  822. #endif
  823. SSL_free(ssl);
  824. /* If we are using DSA, we can copy the parameters from
  825. * the private key */
  826. if(check_privkey == TRUE) {
  827. /* Now we know that a key and cert have been set against
  828. * the SSL context */
  829. if(!SSL_CTX_check_private_key(ctx)) {
  830. failf(data, "Private key does not match the certificate public key");
  831. return 0;
  832. }
  833. }
  834. }
  835. return 1;
  836. }
  837. /* returns non-zero on failure */
  838. static int x509_name_oneline(X509_NAME *a, char *buf, size_t size)
  839. {
  840. #if 0
  841. return X509_NAME_oneline(a, buf, size);
  842. #else
  843. BIO *bio_out = BIO_new(BIO_s_mem());
  844. BUF_MEM *biomem;
  845. int rc;
  846. if(!bio_out)
  847. return 1; /* alloc failed! */
  848. rc = X509_NAME_print_ex(bio_out, a, 0, XN_FLAG_SEP_SPLUS_SPC);
  849. BIO_get_mem_ptr(bio_out, &biomem);
  850. if((size_t)biomem->length < size)
  851. size = biomem->length;
  852. else
  853. size--; /* don't overwrite the buffer end */
  854. memcpy(buf, biomem->data, size);
  855. buf[size] = 0;
  856. BIO_free(bio_out);
  857. return !rc;
  858. #endif
  859. }
  860. /**
  861. * Global SSL init
  862. *
  863. * @retval 0 error initializing SSL
  864. * @retval 1 SSL initialized successfully
  865. */
  866. static int Curl_ossl_init(void)
  867. {
  868. #ifdef ENABLE_SSLKEYLOGFILE
  869. char *keylog_file_name;
  870. #endif
  871. OPENSSL_load_builtin_modules();
  872. #ifdef HAVE_ENGINE_LOAD_BUILTIN_ENGINES
  873. ENGINE_load_builtin_engines();
  874. #endif
  875. /* OPENSSL_config(NULL); is "strongly recommended" to use but unfortunately
  876. that function makes an exit() call on wrongly formatted config files
  877. which makes it hard to use in some situations. OPENSSL_config() itself
  878. calls CONF_modules_load_file() and we use that instead and we ignore
  879. its return code! */
  880. /* CONF_MFLAGS_DEFAULT_SECTION introduced some time between 0.9.8b and
  881. 0.9.8e */
  882. #ifndef CONF_MFLAGS_DEFAULT_SECTION
  883. #define CONF_MFLAGS_DEFAULT_SECTION 0x0
  884. #endif
  885. CONF_modules_load_file(NULL, NULL,
  886. CONF_MFLAGS_DEFAULT_SECTION|
  887. CONF_MFLAGS_IGNORE_MISSING_FILE);
  888. #if (OPENSSL_VERSION_NUMBER >= 0x10100000L) && \
  889. !defined(LIBRESSL_VERSION_NUMBER)
  890. /* OpenSSL 1.1.0+ takes care of initialization itself */
  891. #else
  892. /* Lets get nice error messages */
  893. SSL_load_error_strings();
  894. /* Init the global ciphers and digests */
  895. if(!SSLeay_add_ssl_algorithms())
  896. return 0;
  897. OpenSSL_add_all_algorithms();
  898. #endif
  899. #ifdef ENABLE_SSLKEYLOGFILE
  900. if(!keylog_file_fp) {
  901. keylog_file_name = curl_getenv("SSLKEYLOGFILE");
  902. if(keylog_file_name) {
  903. keylog_file_fp = fopen(keylog_file_name, FOPEN_APPENDTEXT);
  904. if(keylog_file_fp) {
  905. #ifdef WIN32
  906. if(setvbuf(keylog_file_fp, NULL, _IONBF, 0))
  907. #else
  908. if(setvbuf(keylog_file_fp, NULL, _IOLBF, 4096))
  909. #endif
  910. {
  911. fclose(keylog_file_fp);
  912. keylog_file_fp = NULL;
  913. }
  914. }
  915. Curl_safefree(keylog_file_name);
  916. }
  917. }
  918. #endif
  919. return 1;
  920. }
  921. /* Global cleanup */
  922. static void Curl_ossl_cleanup(void)
  923. {
  924. #if (OPENSSL_VERSION_NUMBER >= 0x10100000L) && \
  925. !defined(LIBRESSL_VERSION_NUMBER)
  926. /* OpenSSL 1.1 deprecates all these cleanup functions and
  927. turns them into no-ops in OpenSSL 1.0 compatibility mode */
  928. #else
  929. /* Free ciphers and digests lists */
  930. EVP_cleanup();
  931. #ifdef HAVE_ENGINE_CLEANUP
  932. /* Free engine list */
  933. ENGINE_cleanup();
  934. #endif
  935. /* Free OpenSSL error strings */
  936. ERR_free_strings();
  937. /* Free thread local error state, destroying hash upon zero refcount */
  938. #ifdef HAVE_ERR_REMOVE_THREAD_STATE
  939. ERR_remove_thread_state(NULL);
  940. #else
  941. ERR_remove_state(0);
  942. #endif
  943. /* Free all memory allocated by all configuration modules */
  944. CONF_modules_free();
  945. #ifdef HAVE_SSL_COMP_FREE_COMPRESSION_METHODS
  946. SSL_COMP_free_compression_methods();
  947. #endif
  948. #endif
  949. #ifdef ENABLE_SSLKEYLOGFILE
  950. if(keylog_file_fp) {
  951. fclose(keylog_file_fp);
  952. keylog_file_fp = NULL;
  953. }
  954. #endif
  955. }
  956. /*
  957. * This function is used to determine connection status.
  958. *
  959. * Return codes:
  960. * 1 means the connection is still in place
  961. * 0 means the connection has been closed
  962. * -1 means the connection status is unknown
  963. */
  964. static int Curl_ossl_check_cxn(struct connectdata *conn)
  965. {
  966. /* SSL_peek takes data out of the raw recv buffer without peeking so we use
  967. recv MSG_PEEK instead. Bug #795 */
  968. #ifdef MSG_PEEK
  969. char buf;
  970. ssize_t nread;
  971. nread = recv((RECV_TYPE_ARG1)conn->sock[FIRSTSOCKET], (RECV_TYPE_ARG2)&buf,
  972. (RECV_TYPE_ARG3)1, (RECV_TYPE_ARG4)MSG_PEEK);
  973. if(nread == 0)
  974. return 0; /* connection has been closed */
  975. if(nread == 1)
  976. return 1; /* connection still in place */
  977. else if(nread == -1) {
  978. int err = SOCKERRNO;
  979. if(err == EINPROGRESS ||
  980. #if defined(EAGAIN) && (EAGAIN != EWOULDBLOCK)
  981. err == EAGAIN ||
  982. #endif
  983. err == EWOULDBLOCK)
  984. return 1; /* connection still in place */
  985. if(err == ECONNRESET ||
  986. #ifdef ECONNABORTED
  987. err == ECONNABORTED ||
  988. #endif
  989. #ifdef ENETDOWN
  990. err == ENETDOWN ||
  991. #endif
  992. #ifdef ENETRESET
  993. err == ENETRESET ||
  994. #endif
  995. #ifdef ESHUTDOWN
  996. err == ESHUTDOWN ||
  997. #endif
  998. #ifdef ETIMEDOUT
  999. err == ETIMEDOUT ||
  1000. #endif
  1001. err == ENOTCONN)
  1002. return 0; /* connection has been closed */
  1003. }
  1004. #endif
  1005. return -1; /* connection status unknown */
  1006. }
  1007. /* Selects an OpenSSL crypto engine
  1008. */
  1009. static CURLcode Curl_ossl_set_engine(struct Curl_easy *data,
  1010. const char *engine)
  1011. {
  1012. #ifdef USE_OPENSSL_ENGINE
  1013. ENGINE *e;
  1014. #if OPENSSL_VERSION_NUMBER >= 0x00909000L
  1015. e = ENGINE_by_id(engine);
  1016. #else
  1017. /* avoid memory leak */
  1018. for(e = ENGINE_get_first(); e; e = ENGINE_get_next(e)) {
  1019. const char *e_id = ENGINE_get_id(e);
  1020. if(!strcmp(engine, e_id))
  1021. break;
  1022. }
  1023. #endif
  1024. if(!e) {
  1025. failf(data, "SSL Engine '%s' not found", engine);
  1026. return CURLE_SSL_ENGINE_NOTFOUND;
  1027. }
  1028. if(data->state.engine) {
  1029. ENGINE_finish(data->state.engine);
  1030. ENGINE_free(data->state.engine);
  1031. data->state.engine = NULL;
  1032. }
  1033. if(!ENGINE_init(e)) {
  1034. char buf[256];
  1035. ENGINE_free(e);
  1036. failf(data, "Failed to initialise SSL Engine '%s':\n%s",
  1037. engine, ossl_strerror(ERR_get_error(), buf, sizeof(buf)));
  1038. return CURLE_SSL_ENGINE_INITFAILED;
  1039. }
  1040. data->state.engine = e;
  1041. return CURLE_OK;
  1042. #else
  1043. (void)engine;
  1044. failf(data, "SSL Engine not supported");
  1045. return CURLE_SSL_ENGINE_NOTFOUND;
  1046. #endif
  1047. }
  1048. /* Sets engine as default for all SSL operations
  1049. */
  1050. static CURLcode Curl_ossl_set_engine_default(struct Curl_easy *data)
  1051. {
  1052. #ifdef USE_OPENSSL_ENGINE
  1053. if(data->state.engine) {
  1054. if(ENGINE_set_default(data->state.engine, ENGINE_METHOD_ALL) > 0) {
  1055. infof(data, "set default crypto engine '%s'\n",
  1056. ENGINE_get_id(data->state.engine));
  1057. }
  1058. else {
  1059. failf(data, "set default crypto engine '%s' failed",
  1060. ENGINE_get_id(data->state.engine));
  1061. return CURLE_SSL_ENGINE_SETFAILED;
  1062. }
  1063. }
  1064. #else
  1065. (void) data;
  1066. #endif
  1067. return CURLE_OK;
  1068. }
  1069. /* Return list of OpenSSL crypto engine names.
  1070. */
  1071. static struct curl_slist *Curl_ossl_engines_list(struct Curl_easy *data)
  1072. {
  1073. struct curl_slist *list = NULL;
  1074. #ifdef USE_OPENSSL_ENGINE
  1075. struct curl_slist *beg;
  1076. ENGINE *e;
  1077. for(e = ENGINE_get_first(); e; e = ENGINE_get_next(e)) {
  1078. beg = curl_slist_append(list, ENGINE_get_id(e));
  1079. if(!beg) {
  1080. curl_slist_free_all(list);
  1081. return NULL;
  1082. }
  1083. list = beg;
  1084. }
  1085. #endif
  1086. (void) data;
  1087. return list;
  1088. }
  1089. static void ossl_close(struct ssl_connect_data *connssl)
  1090. {
  1091. if(BACKEND->handle) {
  1092. (void)SSL_shutdown(BACKEND->handle);
  1093. SSL_set_connect_state(BACKEND->handle);
  1094. SSL_free(BACKEND->handle);
  1095. BACKEND->handle = NULL;
  1096. }
  1097. if(BACKEND->ctx) {
  1098. SSL_CTX_free(BACKEND->ctx);
  1099. BACKEND->ctx = NULL;
  1100. }
  1101. }
  1102. /*
  1103. * This function is called when an SSL connection is closed.
  1104. */
  1105. static void Curl_ossl_close(struct connectdata *conn, int sockindex)
  1106. {
  1107. ossl_close(&conn->ssl[sockindex]);
  1108. ossl_close(&conn->proxy_ssl[sockindex]);
  1109. }
  1110. /*
  1111. * This function is called to shut down the SSL layer but keep the
  1112. * socket open (CCC - Clear Command Channel)
  1113. */
  1114. static int Curl_ossl_shutdown(struct connectdata *conn, int sockindex)
  1115. {
  1116. int retval = 0;
  1117. struct ssl_connect_data *connssl = &conn->ssl[sockindex];
  1118. struct Curl_easy *data = conn->data;
  1119. char buf[256]; /* We will use this for the OpenSSL error buffer, so it has
  1120. to be at least 256 bytes long. */
  1121. unsigned long sslerror;
  1122. ssize_t nread;
  1123. int buffsize;
  1124. int err;
  1125. int done = 0;
  1126. /* This has only been tested on the proftpd server, and the mod_tls code
  1127. sends a close notify alert without waiting for a close notify alert in
  1128. response. Thus we wait for a close notify alert from the server, but
  1129. we do not send one. Let's hope other servers do the same... */
  1130. if(data->set.ftp_ccc == CURLFTPSSL_CCC_ACTIVE)
  1131. (void)SSL_shutdown(BACKEND->handle);
  1132. if(BACKEND->handle) {
  1133. buffsize = (int)sizeof(buf);
  1134. while(!done) {
  1135. int what = SOCKET_READABLE(conn->sock[sockindex],
  1136. SSL_SHUTDOWN_TIMEOUT);
  1137. if(what > 0) {
  1138. ERR_clear_error();
  1139. /* Something to read, let's do it and hope that it is the close
  1140. notify alert from the server */
  1141. nread = (ssize_t)SSL_read(BACKEND->handle, buf, buffsize);
  1142. err = SSL_get_error(BACKEND->handle, (int)nread);
  1143. switch(err) {
  1144. case SSL_ERROR_NONE: /* this is not an error */
  1145. case SSL_ERROR_ZERO_RETURN: /* no more data */
  1146. /* This is the expected response. There was no data but only
  1147. the close notify alert */
  1148. done = 1;
  1149. break;
  1150. case SSL_ERROR_WANT_READ:
  1151. /* there's data pending, re-invoke SSL_read() */
  1152. infof(data, "SSL_ERROR_WANT_READ\n");
  1153. break;
  1154. case SSL_ERROR_WANT_WRITE:
  1155. /* SSL wants a write. Really odd. Let's bail out. */
  1156. infof(data, "SSL_ERROR_WANT_WRITE\n");
  1157. done = 1;
  1158. break;
  1159. default:
  1160. /* openssl/ssl.h says "look at error stack/return value/errno" */
  1161. sslerror = ERR_get_error();
  1162. failf(conn->data, OSSL_PACKAGE " SSL_read on shutdown: %s, errno %d",
  1163. (sslerror ?
  1164. ossl_strerror(sslerror, buf, sizeof(buf)) :
  1165. SSL_ERROR_to_str(err)),
  1166. SOCKERRNO);
  1167. done = 1;
  1168. break;
  1169. }
  1170. }
  1171. else if(0 == what) {
  1172. /* timeout */
  1173. failf(data, "SSL shutdown timeout");
  1174. done = 1;
  1175. }
  1176. else {
  1177. /* anything that gets here is fatally bad */
  1178. failf(data, "select/poll on SSL socket, errno: %d", SOCKERRNO);
  1179. retval = -1;
  1180. done = 1;
  1181. }
  1182. } /* while()-loop for the select() */
  1183. if(data->set.verbose) {
  1184. #ifdef HAVE_SSL_GET_SHUTDOWN
  1185. switch(SSL_get_shutdown(BACKEND->handle)) {
  1186. case SSL_SENT_SHUTDOWN:
  1187. infof(data, "SSL_get_shutdown() returned SSL_SENT_SHUTDOWN\n");
  1188. break;
  1189. case SSL_RECEIVED_SHUTDOWN:
  1190. infof(data, "SSL_get_shutdown() returned SSL_RECEIVED_SHUTDOWN\n");
  1191. break;
  1192. case SSL_SENT_SHUTDOWN|SSL_RECEIVED_SHUTDOWN:
  1193. infof(data, "SSL_get_shutdown() returned SSL_SENT_SHUTDOWN|"
  1194. "SSL_RECEIVED__SHUTDOWN\n");
  1195. break;
  1196. }
  1197. #endif
  1198. }
  1199. SSL_free(BACKEND->handle);
  1200. BACKEND->handle = NULL;
  1201. }
  1202. return retval;
  1203. }
  1204. static void Curl_ossl_session_free(void *ptr)
  1205. {
  1206. /* free the ID */
  1207. SSL_SESSION_free(ptr);
  1208. }
  1209. /*
  1210. * This function is called when the 'data' struct is going away. Close
  1211. * down everything and free all resources!
  1212. */
  1213. static void Curl_ossl_close_all(struct Curl_easy *data)
  1214. {
  1215. #ifdef USE_OPENSSL_ENGINE
  1216. if(data->state.engine) {
  1217. ENGINE_finish(data->state.engine);
  1218. ENGINE_free(data->state.engine);
  1219. data->state.engine = NULL;
  1220. }
  1221. #else
  1222. (void)data;
  1223. #endif
  1224. #if !defined(HAVE_ERR_REMOVE_THREAD_STATE_DEPRECATED) && \
  1225. defined(HAVE_ERR_REMOVE_THREAD_STATE)
  1226. /* OpenSSL 1.0.1 and 1.0.2 build an error queue that is stored per-thread
  1227. so we need to clean it here in case the thread will be killed. All OpenSSL
  1228. code should extract the error in association with the error so clearing
  1229. this queue here should be harmless at worst. */
  1230. ERR_remove_thread_state(NULL);
  1231. #endif
  1232. }
  1233. /* ====================================================== */
  1234. /*
  1235. * Match subjectAltName against the host name. This requires a conversion
  1236. * in CURL_DOES_CONVERSIONS builds.
  1237. */
  1238. static bool subj_alt_hostcheck(struct Curl_easy *data,
  1239. const char *match_pattern, const char *hostname,
  1240. const char *dispname)
  1241. #ifdef CURL_DOES_CONVERSIONS
  1242. {
  1243. bool res = FALSE;
  1244. /* Curl_cert_hostcheck uses host encoding, but we get ASCII from
  1245. OpenSSl.
  1246. */
  1247. char *match_pattern2 = strdup(match_pattern);
  1248. if(match_pattern2) {
  1249. if(Curl_convert_from_network(data, match_pattern2,
  1250. strlen(match_pattern2)) == CURLE_OK) {
  1251. if(Curl_cert_hostcheck(match_pattern2, hostname)) {
  1252. res = TRUE;
  1253. infof(data,
  1254. " subjectAltName: host \"%s\" matched cert's \"%s\"\n",
  1255. dispname, match_pattern2);
  1256. }
  1257. }
  1258. free(match_pattern2);
  1259. }
  1260. else {
  1261. failf(data,
  1262. "SSL: out of memory when allocating temporary for subjectAltName");
  1263. }
  1264. return res;
  1265. }
  1266. #else
  1267. {
  1268. if(Curl_cert_hostcheck(match_pattern, hostname)) {
  1269. infof(data, " subjectAltName: host \"%s\" matched cert's \"%s\"\n",
  1270. dispname, match_pattern);
  1271. return TRUE;
  1272. }
  1273. return FALSE;
  1274. }
  1275. #endif
  1276. /* Quote from RFC2818 section 3.1 "Server Identity"
  1277. If a subjectAltName extension of type dNSName is present, that MUST
  1278. be used as the identity. Otherwise, the (most specific) Common Name
  1279. field in the Subject field of the certificate MUST be used. Although
  1280. the use of the Common Name is existing practice, it is deprecated and
  1281. Certification Authorities are encouraged to use the dNSName instead.
  1282. Matching is performed using the matching rules specified by
  1283. [RFC2459]. If more than one identity of a given type is present in
  1284. the certificate (e.g., more than one dNSName name, a match in any one
  1285. of the set is considered acceptable.) Names may contain the wildcard
  1286. character * which is considered to match any single domain name
  1287. component or component fragment. E.g., *.a.com matches foo.a.com but
  1288. not bar.foo.a.com. f*.com matches foo.com but not bar.com.
  1289. In some cases, the URI is specified as an IP address rather than a
  1290. hostname. In this case, the iPAddress subjectAltName must be present
  1291. in the certificate and must exactly match the IP in the URI.
  1292. */
  1293. static CURLcode verifyhost(struct connectdata *conn, X509 *server_cert)
  1294. {
  1295. bool matched = FALSE;
  1296. int target = GEN_DNS; /* target type, GEN_DNS or GEN_IPADD */
  1297. size_t addrlen = 0;
  1298. struct Curl_easy *data = conn->data;
  1299. STACK_OF(GENERAL_NAME) *altnames;
  1300. #ifdef ENABLE_IPV6
  1301. struct in6_addr addr;
  1302. #else
  1303. struct in_addr addr;
  1304. #endif
  1305. CURLcode result = CURLE_OK;
  1306. bool dNSName = FALSE; /* if a dNSName field exists in the cert */
  1307. bool iPAddress = FALSE; /* if a iPAddress field exists in the cert */
  1308. const char * const hostname = SSL_IS_PROXY() ? conn->http_proxy.host.name :
  1309. conn->host.name;
  1310. const char * const dispname = SSL_IS_PROXY() ?
  1311. conn->http_proxy.host.dispname : conn->host.dispname;
  1312. #ifdef ENABLE_IPV6
  1313. if(conn->bits.ipv6_ip &&
  1314. Curl_inet_pton(AF_INET6, hostname, &addr)) {
  1315. target = GEN_IPADD;
  1316. addrlen = sizeof(struct in6_addr);
  1317. }
  1318. else
  1319. #endif
  1320. if(Curl_inet_pton(AF_INET, hostname, &addr)) {
  1321. target = GEN_IPADD;
  1322. addrlen = sizeof(struct in_addr);
  1323. }
  1324. /* get a "list" of alternative names */
  1325. altnames = X509_get_ext_d2i(server_cert, NID_subject_alt_name, NULL, NULL);
  1326. if(altnames) {
  1327. int numalts;
  1328. int i;
  1329. bool dnsmatched = FALSE;
  1330. bool ipmatched = FALSE;
  1331. /* get amount of alternatives, RFC2459 claims there MUST be at least
  1332. one, but we don't depend on it... */
  1333. numalts = sk_GENERAL_NAME_num(altnames);
  1334. /* loop through all alternatives - until a dnsmatch */
  1335. for(i = 0; (i < numalts) && !dnsmatched; i++) {
  1336. /* get a handle to alternative name number i */
  1337. const GENERAL_NAME *check = sk_GENERAL_NAME_value(altnames, i);
  1338. if(check->type == GEN_DNS)
  1339. dNSName = TRUE;
  1340. else if(check->type == GEN_IPADD)
  1341. iPAddress = TRUE;
  1342. /* only check alternatives of the same type the target is */
  1343. if(check->type == target) {
  1344. /* get data and length */
  1345. const char *altptr = (char *)ASN1_STRING_get0_data(check->d.ia5);
  1346. size_t altlen = (size_t) ASN1_STRING_length(check->d.ia5);
  1347. switch(target) {
  1348. case GEN_DNS: /* name/pattern comparison */
  1349. /* The OpenSSL man page explicitly says: "In general it cannot be
  1350. assumed that the data returned by ASN1_STRING_data() is null
  1351. terminated or does not contain embedded nulls." But also that
  1352. "The actual format of the data will depend on the actual string
  1353. type itself: for example for and IA5String the data will be ASCII"
  1354. Gisle researched the OpenSSL sources:
  1355. "I checked the 0.9.6 and 0.9.8 sources before my patch and
  1356. it always 0-terminates an IA5String."
  1357. */
  1358. if((altlen == strlen(altptr)) &&
  1359. /* if this isn't true, there was an embedded zero in the name
  1360. string and we cannot match it. */
  1361. subj_alt_hostcheck(data, altptr, hostname, dispname)) {
  1362. dnsmatched = TRUE;
  1363. }
  1364. break;
  1365. case GEN_IPADD: /* IP address comparison */
  1366. /* compare alternative IP address if the data chunk is the same size
  1367. our server IP address is */
  1368. if((altlen == addrlen) && !memcmp(altptr, &addr, altlen)) {
  1369. ipmatched = TRUE;
  1370. infof(data,
  1371. " subjectAltName: host \"%s\" matched cert's IP address!\n",
  1372. dispname);
  1373. }
  1374. break;
  1375. }
  1376. }
  1377. }
  1378. GENERAL_NAMES_free(altnames);
  1379. if(dnsmatched || ipmatched)
  1380. matched = TRUE;
  1381. }
  1382. if(matched)
  1383. /* an alternative name matched */
  1384. ;
  1385. else if(dNSName || iPAddress) {
  1386. infof(data, " subjectAltName does not match %s\n", dispname);
  1387. failf(data, "SSL: no alternative certificate subject name matches "
  1388. "target host name '%s'", dispname);
  1389. result = CURLE_PEER_FAILED_VERIFICATION;
  1390. }
  1391. else {
  1392. /* we have to look to the last occurrence of a commonName in the
  1393. distinguished one to get the most significant one. */
  1394. int j, i = -1;
  1395. /* The following is done because of a bug in 0.9.6b */
  1396. unsigned char *nulstr = (unsigned char *)"";
  1397. unsigned char *peer_CN = nulstr;
  1398. X509_NAME *name = X509_get_subject_name(server_cert);
  1399. if(name)
  1400. while((j = X509_NAME_get_index_by_NID(name, NID_commonName, i)) >= 0)
  1401. i = j;
  1402. /* we have the name entry and we will now convert this to a string
  1403. that we can use for comparison. Doing this we support BMPstring,
  1404. UTF8 etc. */
  1405. if(i >= 0) {
  1406. ASN1_STRING *tmp =
  1407. X509_NAME_ENTRY_get_data(X509_NAME_get_entry(name, i));
  1408. /* In OpenSSL 0.9.7d and earlier, ASN1_STRING_to_UTF8 fails if the input
  1409. is already UTF-8 encoded. We check for this case and copy the raw
  1410. string manually to avoid the problem. This code can be made
  1411. conditional in the future when OpenSSL has been fixed. Work-around
  1412. brought by Alexis S. L. Carvalho. */
  1413. if(tmp) {
  1414. if(ASN1_STRING_type(tmp) == V_ASN1_UTF8STRING) {
  1415. j = ASN1_STRING_length(tmp);
  1416. if(j >= 0) {
  1417. peer_CN = OPENSSL_malloc(j + 1);
  1418. if(peer_CN) {
  1419. memcpy(peer_CN, ASN1_STRING_get0_data(tmp), j);
  1420. peer_CN[j] = '\0';
  1421. }
  1422. }
  1423. }
  1424. else /* not a UTF8 name */
  1425. j = ASN1_STRING_to_UTF8(&peer_CN, tmp);
  1426. if(peer_CN && (curlx_uztosi(strlen((char *)peer_CN)) != j)) {
  1427. /* there was a terminating zero before the end of string, this
  1428. cannot match and we return failure! */
  1429. failf(data, "SSL: illegal cert name field");
  1430. result = CURLE_PEER_FAILED_VERIFICATION;
  1431. }
  1432. }
  1433. }
  1434. if(peer_CN == nulstr)
  1435. peer_CN = NULL;
  1436. else {
  1437. /* convert peer_CN from UTF8 */
  1438. CURLcode rc = Curl_convert_from_utf8(data, (char *)peer_CN,
  1439. strlen((char *)peer_CN));
  1440. /* Curl_convert_from_utf8 calls failf if unsuccessful */
  1441. if(rc) {
  1442. OPENSSL_free(peer_CN);
  1443. return rc;
  1444. }
  1445. }
  1446. if(result)
  1447. /* error already detected, pass through */
  1448. ;
  1449. else if(!peer_CN) {
  1450. failf(data,
  1451. "SSL: unable to obtain common name from peer certificate");
  1452. result = CURLE_PEER_FAILED_VERIFICATION;
  1453. }
  1454. else if(!Curl_cert_hostcheck((const char *)peer_CN, hostname)) {
  1455. failf(data, "SSL: certificate subject name '%s' does not match "
  1456. "target host name '%s'", peer_CN, dispname);
  1457. result = CURLE_PEER_FAILED_VERIFICATION;
  1458. }
  1459. else {
  1460. infof(data, " common name: %s (matched)\n", peer_CN);
  1461. }
  1462. if(peer_CN)
  1463. OPENSSL_free(peer_CN);
  1464. }
  1465. return result;
  1466. }
  1467. #if (OPENSSL_VERSION_NUMBER >= 0x0090808fL) && !defined(OPENSSL_NO_TLSEXT) && \
  1468. !defined(OPENSSL_NO_OCSP)
  1469. static CURLcode verifystatus(struct connectdata *conn,
  1470. struct ssl_connect_data *connssl)
  1471. {
  1472. int i, ocsp_status;
  1473. const unsigned char *p;
  1474. CURLcode result = CURLE_OK;
  1475. struct Curl_easy *data = conn->data;
  1476. OCSP_RESPONSE *rsp = NULL;
  1477. OCSP_BASICRESP *br = NULL;
  1478. X509_STORE *st = NULL;
  1479. STACK_OF(X509) *ch = NULL;
  1480. long len = SSL_get_tlsext_status_ocsp_resp(BACKEND->handle, &p);
  1481. if(!p) {
  1482. failf(data, "No OCSP response received");
  1483. result = CURLE_SSL_INVALIDCERTSTATUS;
  1484. goto end;
  1485. }
  1486. rsp = d2i_OCSP_RESPONSE(NULL, &p, len);
  1487. if(!rsp) {
  1488. failf(data, "Invalid OCSP response");
  1489. result = CURLE_SSL_INVALIDCERTSTATUS;
  1490. goto end;
  1491. }
  1492. ocsp_status = OCSP_response_status(rsp);
  1493. if(ocsp_status != OCSP_RESPONSE_STATUS_SUCCESSFUL) {
  1494. failf(data, "Invalid OCSP response status: %s (%d)",
  1495. OCSP_response_status_str(ocsp_status), ocsp_status);
  1496. result = CURLE_SSL_INVALIDCERTSTATUS;
  1497. goto end;
  1498. }
  1499. br = OCSP_response_get1_basic(rsp);
  1500. if(!br) {
  1501. failf(data, "Invalid OCSP response");
  1502. result = CURLE_SSL_INVALIDCERTSTATUS;
  1503. goto end;
  1504. }
  1505. ch = SSL_get_peer_cert_chain(BACKEND->handle);
  1506. st = SSL_CTX_get_cert_store(BACKEND->ctx);
  1507. #if ((OPENSSL_VERSION_NUMBER <= 0x1000201fL) /* Fixed after 1.0.2a */ || \
  1508. (defined(LIBRESSL_VERSION_NUMBER) && \
  1509. LIBRESSL_VERSION_NUMBER <= 0x2040200fL))
  1510. /* The authorized responder cert in the OCSP response MUST be signed by the
  1511. peer cert's issuer (see RFC6960 section 4.2.2.2). If that's a root cert,
  1512. no problem, but if it's an intermediate cert OpenSSL has a bug where it
  1513. expects this issuer to be present in the chain embedded in the OCSP
  1514. response. So we add it if necessary. */
  1515. /* First make sure the peer cert chain includes both a peer and an issuer,
  1516. and the OCSP response contains a responder cert. */
  1517. if(sk_X509_num(ch) >= 2 && sk_X509_num(br->certs) >= 1) {
  1518. X509 *responder = sk_X509_value(br->certs, sk_X509_num(br->certs) - 1);
  1519. /* Find issuer of responder cert and add it to the OCSP response chain */
  1520. for(i = 0; i < sk_X509_num(ch); i++) {
  1521. X509 *issuer = sk_X509_value(ch, i);
  1522. if(X509_check_issued(issuer, responder) == X509_V_OK) {
  1523. if(!OCSP_basic_add1_cert(br, issuer)) {
  1524. failf(data, "Could not add issuer cert to OCSP response");
  1525. result = CURLE_SSL_INVALIDCERTSTATUS;
  1526. goto end;
  1527. }
  1528. }
  1529. }
  1530. }
  1531. #endif
  1532. if(OCSP_basic_verify(br, ch, st, 0) <= 0) {
  1533. failf(data, "OCSP response verification failed");
  1534. result = CURLE_SSL_INVALIDCERTSTATUS;
  1535. goto end;
  1536. }
  1537. for(i = 0; i < OCSP_resp_count(br); i++) {
  1538. int cert_status, crl_reason;
  1539. OCSP_SINGLERESP *single = NULL;
  1540. ASN1_GENERALIZEDTIME *rev, *thisupd, *nextupd;
  1541. single = OCSP_resp_get0(br, i);
  1542. if(!single)
  1543. continue;
  1544. cert_status = OCSP_single_get0_status(single, &crl_reason, &rev,
  1545. &thisupd, &nextupd);
  1546. if(!OCSP_check_validity(thisupd, nextupd, 300L, -1L)) {
  1547. failf(data, "OCSP response has expired");
  1548. result = CURLE_SSL_INVALIDCERTSTATUS;
  1549. goto end;
  1550. }
  1551. infof(data, "SSL certificate status: %s (%d)\n",
  1552. OCSP_cert_status_str(cert_status), cert_status);
  1553. switch(cert_status) {
  1554. case V_OCSP_CERTSTATUS_GOOD:
  1555. break;
  1556. case V_OCSP_CERTSTATUS_REVOKED:
  1557. result = CURLE_SSL_INVALIDCERTSTATUS;
  1558. failf(data, "SSL certificate revocation reason: %s (%d)",
  1559. OCSP_crl_reason_str(crl_reason), crl_reason);
  1560. goto end;
  1561. case V_OCSP_CERTSTATUS_UNKNOWN:
  1562. result = CURLE_SSL_INVALIDCERTSTATUS;
  1563. goto end;
  1564. }
  1565. }
  1566. end:
  1567. if(br) OCSP_BASICRESP_free(br);
  1568. OCSP_RESPONSE_free(rsp);
  1569. return result;
  1570. }
  1571. #endif
  1572. #endif /* USE_OPENSSL */
  1573. /* The SSL_CTRL_SET_MSG_CALLBACK doesn't exist in ancient OpenSSL versions
  1574. and thus this cannot be done there. */
  1575. #ifdef SSL_CTRL_SET_MSG_CALLBACK
  1576. static const char *ssl_msg_type(int ssl_ver, int msg)
  1577. {
  1578. #ifdef SSL2_VERSION_MAJOR
  1579. if(ssl_ver == SSL2_VERSION_MAJOR) {
  1580. switch(msg) {
  1581. case SSL2_MT_ERROR:
  1582. return "Error";
  1583. case SSL2_MT_CLIENT_HELLO:
  1584. return "Client hello";
  1585. case SSL2_MT_CLIENT_MASTER_KEY:
  1586. return "Client key";
  1587. case SSL2_MT_CLIENT_FINISHED:
  1588. return "Client finished";
  1589. case SSL2_MT_SERVER_HELLO:
  1590. return "Server hello";
  1591. case SSL2_MT_SERVER_VERIFY:
  1592. return "Server verify";
  1593. case SSL2_MT_SERVER_FINISHED:
  1594. return "Server finished";
  1595. case SSL2_MT_REQUEST_CERTIFICATE:
  1596. return "Request CERT";
  1597. case SSL2_MT_CLIENT_CERTIFICATE:
  1598. return "Client CERT";
  1599. }
  1600. }
  1601. else
  1602. #endif
  1603. if(ssl_ver == SSL3_VERSION_MAJOR) {
  1604. switch(msg) {
  1605. case SSL3_MT_HELLO_REQUEST:
  1606. return "Hello request";
  1607. case SSL3_MT_CLIENT_HELLO:
  1608. return "Client hello";
  1609. case SSL3_MT_SERVER_HELLO:
  1610. return "Server hello";
  1611. #ifdef SSL3_MT_NEWSESSION_TICKET
  1612. case SSL3_MT_NEWSESSION_TICKET:
  1613. return "Newsession Ticket";
  1614. #endif
  1615. case SSL3_MT_CERTIFICATE:
  1616. return "Certificate";
  1617. case SSL3_MT_SERVER_KEY_EXCHANGE:
  1618. return "Server key exchange";
  1619. case SSL3_MT_CLIENT_KEY_EXCHANGE:
  1620. return "Client key exchange";
  1621. case SSL3_MT_CERTIFICATE_REQUEST:
  1622. return "Request CERT";
  1623. case SSL3_MT_SERVER_DONE:
  1624. return "Server finished";
  1625. case SSL3_MT_CERTIFICATE_VERIFY:
  1626. return "CERT verify";
  1627. case SSL3_MT_FINISHED:
  1628. return "Finished";
  1629. #ifdef SSL3_MT_CERTIFICATE_STATUS
  1630. case SSL3_MT_CERTIFICATE_STATUS:
  1631. return "Certificate Status";
  1632. #endif
  1633. #ifdef SSL3_MT_ENCRYPTED_EXTENSIONS
  1634. case SSL3_MT_ENCRYPTED_EXTENSIONS:
  1635. return "Encrypted Extensions";
  1636. #endif
  1637. #ifdef SSL3_MT_END_OF_EARLY_DATA
  1638. case SSL3_MT_END_OF_EARLY_DATA:
  1639. return "End of early data";
  1640. #endif
  1641. #ifdef SSL3_MT_KEY_UPDATE
  1642. case SSL3_MT_KEY_UPDATE:
  1643. return "Key update";
  1644. #endif
  1645. #ifdef SSL3_MT_NEXT_PROTO
  1646. case SSL3_MT_NEXT_PROTO:
  1647. return "Next protocol";
  1648. #endif
  1649. #ifdef SSL3_MT_MESSAGE_HASH
  1650. case SSL3_MT_MESSAGE_HASH:
  1651. return "Message hash";
  1652. #endif
  1653. }
  1654. }
  1655. return "Unknown";
  1656. }
  1657. static const char *tls_rt_type(int type, const void *buf, size_t buflen)
  1658. {
  1659. (void)buf;
  1660. (void)buflen;
  1661. #ifdef SSL3_RT_INNER_CONTENT_TYPE
  1662. if(type == SSL3_RT_INNER_CONTENT_TYPE && buf && buflen >= 1)
  1663. type = *(unsigned char *)buf;
  1664. #endif
  1665. switch(type) {
  1666. #ifdef SSL3_RT_HEADER
  1667. case SSL3_RT_HEADER:
  1668. return "TLS header";
  1669. #endif
  1670. case SSL3_RT_CHANGE_CIPHER_SPEC:
  1671. return "TLS change cipher";
  1672. case SSL3_RT_ALERT:
  1673. return "TLS alert";
  1674. case SSL3_RT_HANDSHAKE:
  1675. return "TLS handshake";
  1676. case SSL3_RT_APPLICATION_DATA:
  1677. return "TLS app data";
  1678. default:
  1679. return "TLS Unknown";
  1680. }
  1681. }
  1682. /*
  1683. * Our callback from the SSL/TLS layers.
  1684. */
  1685. static void ssl_tls_trace(int direction, int ssl_ver, int content_type,
  1686. const void *buf, size_t len, SSL *ssl,
  1687. void *userp)
  1688. {
  1689. struct Curl_easy *data;
  1690. char unknown[32];
  1691. const char *verstr = NULL;
  1692. struct connectdata *conn = userp;
  1693. if(!conn || !conn->data || !conn->data->set.fdebug ||
  1694. (direction != 0 && direction != 1))
  1695. return;
  1696. data = conn->data;
  1697. switch(ssl_ver) {
  1698. #ifdef SSL2_VERSION /* removed in recent versions */
  1699. case SSL2_VERSION:
  1700. verstr = "SSLv2";
  1701. break;
  1702. #endif
  1703. #ifdef SSL3_VERSION
  1704. case SSL3_VERSION:
  1705. verstr = "SSLv3";
  1706. break;
  1707. #endif
  1708. case TLS1_VERSION:
  1709. verstr = "TLSv1.0";
  1710. break;
  1711. #ifdef TLS1_1_VERSION
  1712. case TLS1_1_VERSION:
  1713. verstr = "TLSv1.1";
  1714. break;
  1715. #endif
  1716. #ifdef TLS1_2_VERSION
  1717. case TLS1_2_VERSION:
  1718. verstr = "TLSv1.2";
  1719. break;
  1720. #endif
  1721. #ifdef TLS1_3_VERSION
  1722. case TLS1_3_VERSION:
  1723. verstr = "TLSv1.3";
  1724. break;
  1725. #endif
  1726. case 0:
  1727. break;
  1728. default:
  1729. snprintf(unknown, sizeof(unknown), "(%x)", ssl_ver);
  1730. verstr = unknown;
  1731. break;
  1732. }
  1733. if(ssl_ver) {
  1734. const char *msg_name, *tls_rt_name;
  1735. char ssl_buf[1024];
  1736. int msg_type, txt_len;
  1737. /* the info given when the version is zero is not that useful for us */
  1738. ssl_ver >>= 8; /* check the upper 8 bits only below */
  1739. /* SSLv2 doesn't seem to have TLS record-type headers, so OpenSSL
  1740. * always pass-up content-type as 0. But the interesting message-type
  1741. * is at 'buf[0]'.
  1742. */
  1743. if(ssl_ver == SSL3_VERSION_MAJOR && content_type)
  1744. tls_rt_name = tls_rt_type(content_type, buf, len);
  1745. else
  1746. tls_rt_name = "";
  1747. #ifdef SSL3_RT_INNER_CONTENT_TYPE
  1748. if(content_type == SSL3_RT_INNER_CONTENT_TYPE) {
  1749. msg_type = 0;
  1750. msg_name = "[no content]";
  1751. }
  1752. else
  1753. #endif
  1754. if(content_type == SSL3_RT_CHANGE_CIPHER_SPEC) {
  1755. msg_type = *(char *)buf;
  1756. msg_name = "Change cipher spec";
  1757. }
  1758. else if(content_type == SSL3_RT_ALERT) {
  1759. msg_type = (((char *)buf)[0] << 8) + ((char *)buf)[1];
  1760. msg_name = SSL_alert_desc_string_long(msg_type);
  1761. }
  1762. else {
  1763. msg_type = *(char *)buf;
  1764. msg_name = ssl_msg_type(ssl_ver, msg_type);
  1765. }
  1766. txt_len = snprintf(ssl_buf, sizeof(ssl_buf), "%s (%s), %s, %s (%d):\n",
  1767. verstr, direction?"OUT":"IN",
  1768. tls_rt_name, msg_name, msg_type);
  1769. if(0 <= txt_len && (unsigned)txt_len < sizeof(ssl_buf)) {
  1770. Curl_debug(data, CURLINFO_TEXT, ssl_buf, (size_t)txt_len);
  1771. }
  1772. }
  1773. Curl_debug(data, (direction == 1) ? CURLINFO_SSL_DATA_OUT :
  1774. CURLINFO_SSL_DATA_IN, (char *)buf, len);
  1775. (void) ssl;
  1776. }
  1777. #endif
  1778. #ifdef USE_OPENSSL
  1779. /* ====================================================== */
  1780. #ifdef SSL_CTRL_SET_TLSEXT_HOSTNAME
  1781. # define use_sni(x) sni = (x)
  1782. #else
  1783. # define use_sni(x) Curl_nop_stmt
  1784. #endif
  1785. /* Check for OpenSSL 1.0.2 which has ALPN support. */
  1786. #undef HAS_ALPN
  1787. #if OPENSSL_VERSION_NUMBER >= 0x10002000L \
  1788. && !defined(OPENSSL_NO_TLSEXT)
  1789. # define HAS_ALPN 1
  1790. #endif
  1791. /* Check for OpenSSL 1.0.1 which has NPN support. */
  1792. #undef HAS_NPN
  1793. #if OPENSSL_VERSION_NUMBER >= 0x10001000L \
  1794. && !defined(OPENSSL_NO_TLSEXT) \
  1795. && !defined(OPENSSL_NO_NEXTPROTONEG)
  1796. # define HAS_NPN 1
  1797. #endif
  1798. #ifdef HAS_NPN
  1799. /*
  1800. * in is a list of length prefixed strings. this function has to select
  1801. * the protocol we want to use from the list and write its string into out.
  1802. */
  1803. static int
  1804. select_next_protocol(unsigned char **out, unsigned char *outlen,
  1805. const unsigned char *in, unsigned int inlen,
  1806. const char *key, unsigned int keylen)
  1807. {
  1808. unsigned int i;
  1809. for(i = 0; i + keylen <= inlen; i += in[i] + 1) {
  1810. if(memcmp(&in[i + 1], key, keylen) == 0) {
  1811. *out = (unsigned char *) &in[i + 1];
  1812. *outlen = in[i];
  1813. return 0;
  1814. }
  1815. }
  1816. return -1;
  1817. }
  1818. static int
  1819. select_next_proto_cb(SSL *ssl,
  1820. unsigned char **out, unsigned char *outlen,
  1821. const unsigned char *in, unsigned int inlen,
  1822. void *arg)
  1823. {
  1824. struct connectdata *conn = (struct connectdata*) arg;
  1825. (void)ssl;
  1826. #ifdef USE_NGHTTP2
  1827. if(conn->data->set.httpversion >= CURL_HTTP_VERSION_2 &&
  1828. !select_next_protocol(out, outlen, in, inlen, NGHTTP2_PROTO_VERSION_ID,
  1829. NGHTTP2_PROTO_VERSION_ID_LEN)) {
  1830. infof(conn->data, "NPN, negotiated HTTP2 (%s)\n",
  1831. NGHTTP2_PROTO_VERSION_ID);
  1832. conn->negnpn = CURL_HTTP_VERSION_2;
  1833. return SSL_TLSEXT_ERR_OK;
  1834. }
  1835. #endif
  1836. if(!select_next_protocol(out, outlen, in, inlen, ALPN_HTTP_1_1,
  1837. ALPN_HTTP_1_1_LENGTH)) {
  1838. infof(conn->data, "NPN, negotiated HTTP1.1\n");
  1839. conn->negnpn = CURL_HTTP_VERSION_1_1;
  1840. return SSL_TLSEXT_ERR_OK;
  1841. }
  1842. infof(conn->data, "NPN, no overlap, use HTTP1.1\n");
  1843. *out = (unsigned char *)ALPN_HTTP_1_1;
  1844. *outlen = ALPN_HTTP_1_1_LENGTH;
  1845. conn->negnpn = CURL_HTTP_VERSION_1_1;
  1846. return SSL_TLSEXT_ERR_OK;
  1847. }
  1848. #endif /* HAS_NPN */
  1849. static const char *
  1850. get_ssl_version_txt(SSL *ssl)
  1851. {
  1852. if(!ssl)
  1853. return "";
  1854. switch(SSL_version(ssl)) {
  1855. #ifdef TLS1_3_VERSION
  1856. case TLS1_3_VERSION:
  1857. return "TLSv1.3";
  1858. #endif
  1859. #if OPENSSL_VERSION_NUMBER >= 0x1000100FL
  1860. case TLS1_2_VERSION:
  1861. return "TLSv1.2";
  1862. case TLS1_1_VERSION:
  1863. return "TLSv1.1";
  1864. #endif
  1865. case TLS1_VERSION:
  1866. return "TLSv1.0";
  1867. case SSL3_VERSION:
  1868. return "SSLv3";
  1869. case SSL2_VERSION:
  1870. return "SSLv2";
  1871. }
  1872. return "unknown";
  1873. }
  1874. static CURLcode
  1875. set_ssl_version_min_max(long *ctx_options, struct connectdata *conn,
  1876. int sockindex)
  1877. {
  1878. #if (OPENSSL_VERSION_NUMBER < 0x1000100FL) || !defined(TLS1_3_VERSION)
  1879. /* convoluted #if condition just to avoid compiler warnings on unused
  1880. variable */
  1881. struct Curl_easy *data = conn->data;
  1882. #endif
  1883. long ssl_version = SSL_CONN_CONFIG(version);
  1884. long ssl_version_max = SSL_CONN_CONFIG(version_max);
  1885. switch(ssl_version) {
  1886. case CURL_SSLVERSION_TLSv1_3:
  1887. #ifdef TLS1_3_VERSION
  1888. {
  1889. struct ssl_connect_data *connssl = &conn->ssl[sockindex];
  1890. SSL_CTX_set_max_proto_version(BACKEND->ctx, TLS1_3_VERSION);
  1891. *ctx_options |= SSL_OP_NO_TLSv1_2;
  1892. }
  1893. #else
  1894. (void)sockindex;
  1895. failf(data, OSSL_PACKAGE " was built without TLS 1.3 support");
  1896. return CURLE_NOT_BUILT_IN;
  1897. #endif
  1898. /* FALLTHROUGH */
  1899. case CURL_SSLVERSION_TLSv1_2:
  1900. #if OPENSSL_VERSION_NUMBER >= 0x1000100FL
  1901. *ctx_options |= SSL_OP_NO_TLSv1_1;
  1902. #else
  1903. failf(data, OSSL_PACKAGE " was built without TLS 1.2 support");
  1904. return CURLE_NOT_BUILT_IN;
  1905. #endif
  1906. /* FALLTHROUGH */
  1907. case CURL_SSLVERSION_TLSv1_1:
  1908. #if OPENSSL_VERSION_NUMBER >= 0x1000100FL
  1909. *ctx_options |= SSL_OP_NO_TLSv1;
  1910. #else
  1911. failf(data, OSSL_PACKAGE " was built without TLS 1.1 support");
  1912. return CURLE_NOT_BUILT_IN;
  1913. #endif
  1914. /* FALLTHROUGH */
  1915. case CURL_SSLVERSION_TLSv1_0:
  1916. case CURL_SSLVERSION_TLSv1:
  1917. break;
  1918. }
  1919. switch(ssl_version_max) {
  1920. case CURL_SSLVERSION_MAX_TLSv1_0:
  1921. #if OPENSSL_VERSION_NUMBER >= 0x1000100FL
  1922. *ctx_options |= SSL_OP_NO_TLSv1_1;
  1923. #endif
  1924. /* FALLTHROUGH */
  1925. case CURL_SSLVERSION_MAX_TLSv1_1:
  1926. #if OPENSSL_VERSION_NUMBER >= 0x1000100FL
  1927. *ctx_options |= SSL_OP_NO_TLSv1_2;
  1928. #endif
  1929. /* FALLTHROUGH */
  1930. case CURL_SSLVERSION_MAX_TLSv1_2:
  1931. #ifdef TLS1_3_VERSION
  1932. *ctx_options |= SSL_OP_NO_TLSv1_3;
  1933. #endif
  1934. break;
  1935. case CURL_SSLVERSION_MAX_TLSv1_3:
  1936. case CURL_SSLVERSION_MAX_DEFAULT:
  1937. #ifdef TLS1_3_VERSION
  1938. break;
  1939. #else
  1940. failf(data, OSSL_PACKAGE " was built without TLS 1.3 support");
  1941. return CURLE_NOT_BUILT_IN;
  1942. #endif
  1943. }
  1944. return CURLE_OK;
  1945. }
  1946. static CURLcode ossl_connect_step1(struct connectdata *conn, int sockindex)
  1947. {
  1948. CURLcode result = CURLE_OK;
  1949. char *ciphers;
  1950. struct Curl_easy *data = conn->data;
  1951. SSL_METHOD_QUAL SSL_METHOD *req_method = NULL;
  1952. X509_LOOKUP *lookup = NULL;
  1953. curl_socket_t sockfd = conn->sock[sockindex];
  1954. struct ssl_connect_data *connssl = &conn->ssl[sockindex];
  1955. long ctx_options = 0;
  1956. #ifdef SSL_CTRL_SET_TLSEXT_HOSTNAME
  1957. bool sni;
  1958. const char * const hostname = SSL_IS_PROXY() ? conn->http_proxy.host.name :
  1959. conn->host.name;
  1960. #ifdef ENABLE_IPV6
  1961. struct in6_addr addr;
  1962. #else
  1963. struct in_addr addr;
  1964. #endif
  1965. #endif
  1966. long * const certverifyresult = SSL_IS_PROXY() ?
  1967. &data->set.proxy_ssl.certverifyresult : &data->set.ssl.certverifyresult;
  1968. const long int ssl_version = SSL_CONN_CONFIG(version);
  1969. #ifdef USE_TLS_SRP
  1970. const enum CURL_TLSAUTH ssl_authtype = SSL_SET_OPTION(authtype);
  1971. #endif
  1972. char * const ssl_cert = SSL_SET_OPTION(cert);
  1973. const char * const ssl_cert_type = SSL_SET_OPTION(cert_type);
  1974. const char * const ssl_cafile = SSL_CONN_CONFIG(CAfile);
  1975. const char * const ssl_capath = SSL_CONN_CONFIG(CApath);
  1976. const bool verifypeer = SSL_CONN_CONFIG(verifypeer);
  1977. const char * const ssl_crlfile = SSL_SET_OPTION(CRLfile);
  1978. char error_buffer[256];
  1979. DEBUGASSERT(ssl_connect_1 == connssl->connecting_state);
  1980. /* Make funny stuff to get random input */
  1981. result = Curl_ossl_seed(data);
  1982. if(result)
  1983. return result;
  1984. *certverifyresult = !X509_V_OK;
  1985. /* check to see if we've been told to use an explicit SSL/TLS version */
  1986. switch(ssl_version) {
  1987. case CURL_SSLVERSION_DEFAULT:
  1988. case CURL_SSLVERSION_TLSv1:
  1989. case CURL_SSLVERSION_TLSv1_0:
  1990. case CURL_SSLVERSION_TLSv1_1:
  1991. case CURL_SSLVERSION_TLSv1_2:
  1992. case CURL_SSLVERSION_TLSv1_3:
  1993. /* it will be handled later with the context options */
  1994. #if (OPENSSL_VERSION_NUMBER >= 0x10100000L)
  1995. req_method = TLS_client_method();
  1996. #else
  1997. req_method = SSLv23_client_method();
  1998. #endif
  1999. use_sni(TRUE);
  2000. break;
  2001. case CURL_SSLVERSION_SSLv2:
  2002. #ifdef OPENSSL_NO_SSL2
  2003. failf(data, OSSL_PACKAGE " was built without SSLv2 support");
  2004. return CURLE_NOT_BUILT_IN;
  2005. #else
  2006. #ifdef USE_TLS_SRP
  2007. if(ssl_authtype == CURL_TLSAUTH_SRP)
  2008. return CURLE_SSL_CONNECT_ERROR;
  2009. #endif
  2010. req_method = SSLv2_client_method();
  2011. use_sni(FALSE);
  2012. break;
  2013. #endif
  2014. case CURL_SSLVERSION_SSLv3:
  2015. #ifdef OPENSSL_NO_SSL3_METHOD
  2016. failf(data, OSSL_PACKAGE " was built without SSLv3 support");
  2017. return CURLE_NOT_BUILT_IN;
  2018. #else
  2019. #ifdef USE_TLS_SRP
  2020. if(ssl_authtype == CURL_TLSAUTH_SRP)
  2021. return CURLE_SSL_CONNECT_ERROR;
  2022. #endif
  2023. req_method = SSLv3_client_method();
  2024. use_sni(FALSE);
  2025. break;
  2026. #endif
  2027. default:
  2028. failf(data, "Unrecognized parameter passed via CURLOPT_SSLVERSION");
  2029. return CURLE_SSL_CONNECT_ERROR;
  2030. }
  2031. if(BACKEND->ctx)
  2032. SSL_CTX_free(BACKEND->ctx);
  2033. BACKEND->ctx = SSL_CTX_new(req_method);
  2034. if(!BACKEND->ctx) {
  2035. failf(data, "SSL: couldn't create a context: %s",
  2036. ossl_strerror(ERR_peek_error(), error_buffer, sizeof(error_buffer)));
  2037. return CURLE_OUT_OF_MEMORY;
  2038. }
  2039. #ifdef SSL_MODE_RELEASE_BUFFERS
  2040. SSL_CTX_set_mode(BACKEND->ctx, SSL_MODE_RELEASE_BUFFERS);
  2041. #endif
  2042. #ifdef SSL_CTRL_SET_MSG_CALLBACK
  2043. if(data->set.fdebug && data->set.verbose) {
  2044. /* the SSL trace callback is only used for verbose logging */
  2045. SSL_CTX_set_msg_callback(BACKEND->ctx, ssl_tls_trace);
  2046. SSL_CTX_set_msg_callback_arg(BACKEND->ctx, conn);
  2047. }
  2048. #endif
  2049. /* OpenSSL contains code to work-around lots of bugs and flaws in various
  2050. SSL-implementations. SSL_CTX_set_options() is used to enabled those
  2051. work-arounds. The man page for this option states that SSL_OP_ALL enables
  2052. all the work-arounds and that "It is usually safe to use SSL_OP_ALL to
  2053. enable the bug workaround options if compatibility with somewhat broken
  2054. implementations is desired."
  2055. The "-no_ticket" option was introduced in Openssl0.9.8j. It's a flag to
  2056. disable "rfc4507bis session ticket support". rfc4507bis was later turned
  2057. into the proper RFC5077 it seems: https://tools.ietf.org/html/rfc5077
  2058. The enabled extension concerns the session management. I wonder how often
  2059. libcurl stops a connection and then resumes a TLS session. also, sending
  2060. the session data is some overhead. .I suggest that you just use your
  2061. proposed patch (which explicitly disables TICKET).
  2062. If someone writes an application with libcurl and openssl who wants to
  2063. enable the feature, one can do this in the SSL callback.
  2064. SSL_OP_NETSCAPE_REUSE_CIPHER_CHANGE_BUG option enabling allowed proper
  2065. interoperability with web server Netscape Enterprise Server 2.0.1 which
  2066. was released back in 1996.
  2067. Due to CVE-2010-4180, option SSL_OP_NETSCAPE_REUSE_CIPHER_CHANGE_BUG has
  2068. become ineffective as of OpenSSL 0.9.8q and 1.0.0c. In order to mitigate
  2069. CVE-2010-4180 when using previous OpenSSL versions we no longer enable
  2070. this option regardless of OpenSSL version and SSL_OP_ALL definition.
  2071. OpenSSL added a work-around for a SSL 3.0/TLS 1.0 CBC vulnerability
  2072. (https://www.openssl.org/~bodo/tls-cbc.txt). In 0.9.6e they added a bit to
  2073. SSL_OP_ALL that _disables_ that work-around despite the fact that
  2074. SSL_OP_ALL is documented to do "rather harmless" workarounds. In order to
  2075. keep the secure work-around, the SSL_OP_DONT_INSERT_EMPTY_FRAGMENTS bit
  2076. must not be set.
  2077. */
  2078. ctx_options = SSL_OP_ALL;
  2079. #ifdef SSL_OP_NO_TICKET
  2080. ctx_options |= SSL_OP_NO_TICKET;
  2081. #endif
  2082. #ifdef SSL_OP_NO_COMPRESSION
  2083. ctx_options |= SSL_OP_NO_COMPRESSION;
  2084. #endif
  2085. #ifdef SSL_OP_NETSCAPE_REUSE_CIPHER_CHANGE_BUG
  2086. /* mitigate CVE-2010-4180 */
  2087. ctx_options &= ~SSL_OP_NETSCAPE_REUSE_CIPHER_CHANGE_BUG;
  2088. #endif
  2089. #ifdef SSL_OP_DONT_INSERT_EMPTY_FRAGMENTS
  2090. /* unless the user explicitly ask to allow the protocol vulnerability we
  2091. use the work-around */
  2092. if(!SSL_SET_OPTION(enable_beast))
  2093. ctx_options &= ~SSL_OP_DONT_INSERT_EMPTY_FRAGMENTS;
  2094. #endif
  2095. switch(ssl_version) {
  2096. case CURL_SSLVERSION_SSLv3:
  2097. ctx_options |= SSL_OP_NO_SSLv2;
  2098. ctx_options |= SSL_OP_NO_TLSv1;
  2099. #if OPENSSL_VERSION_NUMBER >= 0x1000100FL
  2100. ctx_options |= SSL_OP_NO_TLSv1_1;
  2101. ctx_options |= SSL_OP_NO_TLSv1_2;
  2102. #ifdef TLS1_3_VERSION
  2103. ctx_options |= SSL_OP_NO_TLSv1_3;
  2104. #endif
  2105. #endif
  2106. break;
  2107. case CURL_SSLVERSION_DEFAULT:
  2108. case CURL_SSLVERSION_TLSv1:
  2109. case CURL_SSLVERSION_TLSv1_0:
  2110. case CURL_SSLVERSION_TLSv1_1:
  2111. case CURL_SSLVERSION_TLSv1_2:
  2112. case CURL_SSLVERSION_TLSv1_3:
  2113. /* asking for any TLS version as the minimum, means no SSL versions
  2114. allowed */
  2115. ctx_options |= SSL_OP_NO_SSLv2;
  2116. ctx_options |= SSL_OP_NO_SSLv3;
  2117. result = set_ssl_version_min_max(&ctx_options, conn, sockindex);
  2118. if(result != CURLE_OK)
  2119. return result;
  2120. break;
  2121. case CURL_SSLVERSION_SSLv2:
  2122. ctx_options |= SSL_OP_NO_SSLv3;
  2123. ctx_options |= SSL_OP_NO_TLSv1;
  2124. #if OPENSSL_VERSION_NUMBER >= 0x1000100FL
  2125. ctx_options |= SSL_OP_NO_TLSv1_1;
  2126. ctx_options |= SSL_OP_NO_TLSv1_2;
  2127. #ifdef TLS1_3_VERSION
  2128. ctx_options |= SSL_OP_NO_TLSv1_3;
  2129. #endif
  2130. #endif
  2131. break;
  2132. default:
  2133. failf(data, "Unrecognized parameter passed via CURLOPT_SSLVERSION");
  2134. return CURLE_SSL_CONNECT_ERROR;
  2135. }
  2136. SSL_CTX_set_options(BACKEND->ctx, ctx_options);
  2137. #ifdef HAS_NPN
  2138. if(conn->bits.tls_enable_npn)
  2139. SSL_CTX_set_next_proto_select_cb(BACKEND->ctx, select_next_proto_cb, conn);
  2140. #endif
  2141. #ifdef HAS_ALPN
  2142. if(conn->bits.tls_enable_alpn) {
  2143. int cur = 0;
  2144. unsigned char protocols[128];
  2145. #ifdef USE_NGHTTP2
  2146. if(data->set.httpversion >= CURL_HTTP_VERSION_2 &&
  2147. (!SSL_IS_PROXY() || !conn->bits.tunnel_proxy)) {
  2148. protocols[cur++] = NGHTTP2_PROTO_VERSION_ID_LEN;
  2149. memcpy(&protocols[cur], NGHTTP2_PROTO_VERSION_ID,
  2150. NGHTTP2_PROTO_VERSION_ID_LEN);
  2151. cur += NGHTTP2_PROTO_VERSION_ID_LEN;
  2152. infof(data, "ALPN, offering %s\n", NGHTTP2_PROTO_VERSION_ID);
  2153. }
  2154. #endif
  2155. protocols[cur++] = ALPN_HTTP_1_1_LENGTH;
  2156. memcpy(&protocols[cur], ALPN_HTTP_1_1, ALPN_HTTP_1_1_LENGTH);
  2157. cur += ALPN_HTTP_1_1_LENGTH;
  2158. infof(data, "ALPN, offering %s\n", ALPN_HTTP_1_1);
  2159. /* expects length prefixed preference ordered list of protocols in wire
  2160. * format
  2161. */
  2162. SSL_CTX_set_alpn_protos(BACKEND->ctx, protocols, cur);
  2163. }
  2164. #endif
  2165. if(ssl_cert || ssl_cert_type) {
  2166. if(!cert_stuff(conn, BACKEND->ctx, ssl_cert, ssl_cert_type,
  2167. SSL_SET_OPTION(key), SSL_SET_OPTION(key_type),
  2168. SSL_SET_OPTION(key_passwd))) {
  2169. /* failf() is already done in cert_stuff() */
  2170. return CURLE_SSL_CERTPROBLEM;
  2171. }
  2172. }
  2173. ciphers = SSL_CONN_CONFIG(cipher_list);
  2174. if(!ciphers)
  2175. ciphers = (char *)DEFAULT_CIPHER_SELECTION;
  2176. if(ciphers) {
  2177. if(!SSL_CTX_set_cipher_list(BACKEND->ctx, ciphers)) {
  2178. failf(data, "failed setting cipher list: %s", ciphers);
  2179. return CURLE_SSL_CIPHER;
  2180. }
  2181. infof(data, "Cipher selection: %s\n", ciphers);
  2182. }
  2183. #ifdef HAVE_SSL_CTX_SET_CIPHERSUITES
  2184. {
  2185. char *ciphers13 = SSL_CONN_CONFIG(cipher_list13);
  2186. if(ciphers13) {
  2187. if(!SSL_CTX_set_ciphersuites(BACKEND->ctx, ciphers13)) {
  2188. failf(data, "failed setting TLS 1.3 cipher suite: %s", ciphers);
  2189. return CURLE_SSL_CIPHER;
  2190. }
  2191. infof(data, "TLS 1.3 cipher selection: %s\n", ciphers13);
  2192. }
  2193. }
  2194. #endif
  2195. #ifdef USE_TLS_SRP
  2196. if(ssl_authtype == CURL_TLSAUTH_SRP) {
  2197. char * const ssl_username = SSL_SET_OPTION(username);
  2198. infof(data, "Using TLS-SRP username: %s\n", ssl_username);
  2199. if(!SSL_CTX_set_srp_username(BACKEND->ctx, ssl_username)) {
  2200. failf(data, "Unable to set SRP user name");
  2201. return CURLE_BAD_FUNCTION_ARGUMENT;
  2202. }
  2203. if(!SSL_CTX_set_srp_password(BACKEND->ctx, SSL_SET_OPTION(password))) {
  2204. failf(data, "failed setting SRP password");
  2205. return CURLE_BAD_FUNCTION_ARGUMENT;
  2206. }
  2207. if(!SSL_CONN_CONFIG(cipher_list)) {
  2208. infof(data, "Setting cipher list SRP\n");
  2209. if(!SSL_CTX_set_cipher_list(BACKEND->ctx, "SRP")) {
  2210. failf(data, "failed setting SRP cipher list");
  2211. return CURLE_SSL_CIPHER;
  2212. }
  2213. }
  2214. }
  2215. #endif
  2216. if(ssl_cafile || ssl_capath) {
  2217. /* tell SSL where to find CA certificates that are used to verify
  2218. the servers certificate. */
  2219. if(!SSL_CTX_load_verify_locations(BACKEND->ctx, ssl_cafile, ssl_capath)) {
  2220. if(verifypeer) {
  2221. /* Fail if we insist on successfully verifying the server. */
  2222. failf(data, "error setting certificate verify locations:\n"
  2223. " CAfile: %s\n CApath: %s",
  2224. ssl_cafile ? ssl_cafile : "none",
  2225. ssl_capath ? ssl_capath : "none");
  2226. return CURLE_SSL_CACERT_BADFILE;
  2227. }
  2228. /* Just continue with a warning if no strict certificate verification
  2229. is required. */
  2230. infof(data, "error setting certificate verify locations,"
  2231. " continuing anyway:\n");
  2232. }
  2233. else {
  2234. /* Everything is fine. */
  2235. infof(data, "successfully set certificate verify locations:\n");
  2236. }
  2237. infof(data,
  2238. " CAfile: %s\n"
  2239. " CApath: %s\n",
  2240. ssl_cafile ? ssl_cafile : "none",
  2241. ssl_capath ? ssl_capath : "none");
  2242. }
  2243. #ifdef CURL_CA_FALLBACK
  2244. else if(verifypeer) {
  2245. /* verfying the peer without any CA certificates won't
  2246. work so use openssl's built in default as fallback */
  2247. SSL_CTX_set_default_verify_paths(BACKEND->ctx);
  2248. }
  2249. #endif
  2250. if(ssl_crlfile) {
  2251. /* tell SSL where to find CRL file that is used to check certificate
  2252. * revocation */
  2253. lookup = X509_STORE_add_lookup(SSL_CTX_get_cert_store(BACKEND->ctx),
  2254. X509_LOOKUP_file());
  2255. if(!lookup ||
  2256. (!X509_load_crl_file(lookup, ssl_crlfile, X509_FILETYPE_PEM)) ) {
  2257. failf(data, "error loading CRL file: %s", ssl_crlfile);
  2258. return CURLE_SSL_CRL_BADFILE;
  2259. }
  2260. /* Everything is fine. */
  2261. infof(data, "successfully load CRL file:\n");
  2262. X509_STORE_set_flags(SSL_CTX_get_cert_store(BACKEND->ctx),
  2263. X509_V_FLAG_CRL_CHECK|X509_V_FLAG_CRL_CHECK_ALL);
  2264. infof(data, " CRLfile: %s\n", ssl_crlfile);
  2265. }
  2266. /* Try building a chain using issuers in the trusted store first to avoid
  2267. problems with server-sent legacy intermediates.
  2268. Newer versions of OpenSSL do alternate chain checking by default which
  2269. gives us the same fix without as much of a performance hit (slight), so we
  2270. prefer that if available.
  2271. https://rt.openssl.org/Ticket/Display.html?id=3621&user=guest&pass=guest
  2272. */
  2273. #if defined(X509_V_FLAG_TRUSTED_FIRST) && !defined(X509_V_FLAG_NO_ALT_CHAINS)
  2274. if(verifypeer) {
  2275. X509_STORE_set_flags(SSL_CTX_get_cert_store(BACKEND->ctx),
  2276. X509_V_FLAG_TRUSTED_FIRST);
  2277. }
  2278. #endif
  2279. /* SSL always tries to verify the peer, this only says whether it should
  2280. * fail to connect if the verification fails, or if it should continue
  2281. * anyway. In the latter case the result of the verification is checked with
  2282. * SSL_get_verify_result() below. */
  2283. SSL_CTX_set_verify(BACKEND->ctx,
  2284. verifypeer ? SSL_VERIFY_PEER : SSL_VERIFY_NONE, NULL);
  2285. /* Enable logging of secrets to the file specified in env SSLKEYLOGFILE. */
  2286. #if defined(ENABLE_SSLKEYLOGFILE) && defined(HAVE_KEYLOG_CALLBACK)
  2287. if(keylog_file_fp) {
  2288. SSL_CTX_set_keylog_callback(BACKEND->ctx, ossl_keylog_callback);
  2289. }
  2290. #endif
  2291. /* give application a chance to interfere with SSL set up. */
  2292. if(data->set.ssl.fsslctx) {
  2293. result = (*data->set.ssl.fsslctx)(data, BACKEND->ctx,
  2294. data->set.ssl.fsslctxp);
  2295. if(result) {
  2296. failf(data, "error signaled by ssl ctx callback");
  2297. return result;
  2298. }
  2299. }
  2300. /* Lets make an SSL structure */
  2301. if(BACKEND->handle)
  2302. SSL_free(BACKEND->handle);
  2303. BACKEND->handle = SSL_new(BACKEND->ctx);
  2304. if(!BACKEND->handle) {
  2305. failf(data, "SSL: couldn't create a context (handle)!");
  2306. return CURLE_OUT_OF_MEMORY;
  2307. }
  2308. #if (OPENSSL_VERSION_NUMBER >= 0x0090808fL) && !defined(OPENSSL_NO_TLSEXT) && \
  2309. !defined(OPENSSL_NO_OCSP)
  2310. if(SSL_CONN_CONFIG(verifystatus))
  2311. SSL_set_tlsext_status_type(BACKEND->handle, TLSEXT_STATUSTYPE_ocsp);
  2312. #endif
  2313. SSL_set_connect_state(BACKEND->handle);
  2314. BACKEND->server_cert = 0x0;
  2315. #ifdef SSL_CTRL_SET_TLSEXT_HOSTNAME
  2316. if((0 == Curl_inet_pton(AF_INET, hostname, &addr)) &&
  2317. #ifdef ENABLE_IPV6
  2318. (0 == Curl_inet_pton(AF_INET6, hostname, &addr)) &&
  2319. #endif
  2320. sni &&
  2321. !SSL_set_tlsext_host_name(BACKEND->handle, hostname))
  2322. infof(data, "WARNING: failed to configure server name indication (SNI) "
  2323. "TLS extension\n");
  2324. #endif
  2325. /* Check if there's a cached ID we can/should use here! */
  2326. if(SSL_SET_OPTION(primary.sessionid)) {
  2327. void *ssl_sessionid = NULL;
  2328. Curl_ssl_sessionid_lock(conn);
  2329. if(!Curl_ssl_getsessionid(conn, &ssl_sessionid, NULL, sockindex)) {
  2330. /* we got a session id, use it! */
  2331. if(!SSL_set_session(BACKEND->handle, ssl_sessionid)) {
  2332. Curl_ssl_sessionid_unlock(conn);
  2333. failf(data, "SSL: SSL_set_session failed: %s",
  2334. ossl_strerror(ERR_get_error(), error_buffer,
  2335. sizeof(error_buffer)));
  2336. return CURLE_SSL_CONNECT_ERROR;
  2337. }
  2338. /* Informational message */
  2339. infof(data, "SSL re-using session ID\n");
  2340. }
  2341. Curl_ssl_sessionid_unlock(conn);
  2342. }
  2343. if(conn->proxy_ssl[sockindex].use) {
  2344. BIO *const bio = BIO_new(BIO_f_ssl());
  2345. SSL *handle = conn->proxy_ssl[sockindex].backend->handle;
  2346. DEBUGASSERT(ssl_connection_complete == conn->proxy_ssl[sockindex].state);
  2347. DEBUGASSERT(handle != NULL);
  2348. DEBUGASSERT(bio != NULL);
  2349. BIO_set_ssl(bio, handle, FALSE);
  2350. SSL_set_bio(BACKEND->handle, bio, bio);
  2351. }
  2352. else if(!SSL_set_fd(BACKEND->handle, (int)sockfd)) {
  2353. /* pass the raw socket into the SSL layers */
  2354. failf(data, "SSL: SSL_set_fd failed: %s",
  2355. ossl_strerror(ERR_get_error(), error_buffer, sizeof(error_buffer)));
  2356. return CURLE_SSL_CONNECT_ERROR;
  2357. }
  2358. connssl->connecting_state = ssl_connect_2;
  2359. return CURLE_OK;
  2360. }
  2361. static CURLcode ossl_connect_step2(struct connectdata *conn, int sockindex)
  2362. {
  2363. struct Curl_easy *data = conn->data;
  2364. int err;
  2365. struct ssl_connect_data *connssl = &conn->ssl[sockindex];
  2366. long * const certverifyresult = SSL_IS_PROXY() ?
  2367. &data->set.proxy_ssl.certverifyresult : &data->set.ssl.certverifyresult;
  2368. DEBUGASSERT(ssl_connect_2 == connssl->connecting_state
  2369. || ssl_connect_2_reading == connssl->connecting_state
  2370. || ssl_connect_2_writing == connssl->connecting_state);
  2371. ERR_clear_error();
  2372. err = SSL_connect(BACKEND->handle);
  2373. /* If keylogging is enabled but the keylog callback is not supported then log
  2374. secrets here, immediately after SSL_connect by using tap_ssl_key. */
  2375. #if defined(ENABLE_SSLKEYLOGFILE) && !defined(HAVE_KEYLOG_CALLBACK)
  2376. tap_ssl_key(BACKEND->handle, &BACKEND->tap_state);
  2377. #endif
  2378. /* 1 is fine
  2379. 0 is "not successful but was shut down controlled"
  2380. <0 is "handshake was not successful, because a fatal error occurred" */
  2381. if(1 != err) {
  2382. int detail = SSL_get_error(BACKEND->handle, err);
  2383. if(SSL_ERROR_WANT_READ == detail) {
  2384. connssl->connecting_state = ssl_connect_2_reading;
  2385. return CURLE_OK;
  2386. }
  2387. if(SSL_ERROR_WANT_WRITE == detail) {
  2388. connssl->connecting_state = ssl_connect_2_writing;
  2389. return CURLE_OK;
  2390. }
  2391. else {
  2392. /* untreated error */
  2393. unsigned long errdetail;
  2394. char error_buffer[256]="";
  2395. CURLcode result;
  2396. long lerr;
  2397. int lib;
  2398. int reason;
  2399. /* the connection failed, we're not waiting for anything else. */
  2400. connssl->connecting_state = ssl_connect_2;
  2401. /* Get the earliest error code from the thread's error queue and removes
  2402. the entry. */
  2403. errdetail = ERR_get_error();
  2404. /* Extract which lib and reason */
  2405. lib = ERR_GET_LIB(errdetail);
  2406. reason = ERR_GET_REASON(errdetail);
  2407. if((lib == ERR_LIB_SSL) &&
  2408. (reason == SSL_R_CERTIFICATE_VERIFY_FAILED)) {
  2409. result = CURLE_SSL_CACERT;
  2410. lerr = SSL_get_verify_result(BACKEND->handle);
  2411. if(lerr != X509_V_OK) {
  2412. *certverifyresult = lerr;
  2413. snprintf(error_buffer, sizeof(error_buffer),
  2414. "SSL certificate problem: %s",
  2415. X509_verify_cert_error_string(lerr));
  2416. }
  2417. else
  2418. /* strcpy() is fine here as long as the string fits within
  2419. error_buffer */
  2420. strcpy(error_buffer, "SSL certificate verification failed");
  2421. }
  2422. else {
  2423. result = CURLE_SSL_CONNECT_ERROR;
  2424. ossl_strerror(errdetail, error_buffer, sizeof(error_buffer));
  2425. }
  2426. /* detail is already set to the SSL error above */
  2427. /* If we e.g. use SSLv2 request-method and the server doesn't like us
  2428. * (RST connection etc.), OpenSSL gives no explanation whatsoever and
  2429. * the SO_ERROR is also lost.
  2430. */
  2431. if(CURLE_SSL_CONNECT_ERROR == result && errdetail == 0) {
  2432. const char * const hostname = SSL_IS_PROXY() ?
  2433. conn->http_proxy.host.name : conn->host.name;
  2434. const long int port = SSL_IS_PROXY() ? conn->port : conn->remote_port;
  2435. failf(data, OSSL_PACKAGE " SSL_connect: %s in connection to %s:%ld ",
  2436. SSL_ERROR_to_str(detail), hostname, port);
  2437. return result;
  2438. }
  2439. /* Could be a CERT problem */
  2440. failf(data, "%s", error_buffer);
  2441. return result;
  2442. }
  2443. }
  2444. else {
  2445. /* we have been connected fine, we're not waiting for anything else. */
  2446. connssl->connecting_state = ssl_connect_3;
  2447. /* Informational message */
  2448. infof(data, "SSL connection using %s / %s\n",
  2449. get_ssl_version_txt(BACKEND->handle),
  2450. SSL_get_cipher(BACKEND->handle));
  2451. #ifdef HAS_ALPN
  2452. /* Sets data and len to negotiated protocol, len is 0 if no protocol was
  2453. * negotiated
  2454. */
  2455. if(conn->bits.tls_enable_alpn) {
  2456. const unsigned char *neg_protocol;
  2457. unsigned int len;
  2458. SSL_get0_alpn_selected(BACKEND->handle, &neg_protocol, &len);
  2459. if(len != 0) {
  2460. infof(data, "ALPN, server accepted to use %.*s\n", len, neg_protocol);
  2461. #ifdef USE_NGHTTP2
  2462. if(len == NGHTTP2_PROTO_VERSION_ID_LEN &&
  2463. !memcmp(NGHTTP2_PROTO_VERSION_ID, neg_protocol, len)) {
  2464. conn->negnpn = CURL_HTTP_VERSION_2;
  2465. }
  2466. else
  2467. #endif
  2468. if(len == ALPN_HTTP_1_1_LENGTH &&
  2469. !memcmp(ALPN_HTTP_1_1, neg_protocol, ALPN_HTTP_1_1_LENGTH)) {
  2470. conn->negnpn = CURL_HTTP_VERSION_1_1;
  2471. }
  2472. }
  2473. else
  2474. infof(data, "ALPN, server did not agree to a protocol\n");
  2475. }
  2476. #endif
  2477. return CURLE_OK;
  2478. }
  2479. }
  2480. static int asn1_object_dump(ASN1_OBJECT *a, char *buf, size_t len)
  2481. {
  2482. int i, ilen;
  2483. ilen = (int)len;
  2484. if(ilen < 0)
  2485. return 1; /* buffer too big */
  2486. i = i2t_ASN1_OBJECT(buf, ilen, a);
  2487. if(i >= ilen)
  2488. return 1; /* buffer too small */
  2489. return 0;
  2490. }
  2491. #define push_certinfo(_label, _num) \
  2492. do { \
  2493. long info_len = BIO_get_mem_data(mem, &ptr); \
  2494. Curl_ssl_push_certinfo_len(data, _num, _label, ptr, info_len); \
  2495. if(1 != BIO_reset(mem)) \
  2496. break; \
  2497. } WHILE_FALSE
  2498. static void pubkey_show(struct Curl_easy *data,
  2499. BIO *mem,
  2500. int num,
  2501. const char *type,
  2502. const char *name,
  2503. #ifdef HAVE_OPAQUE_RSA_DSA_DH
  2504. const
  2505. #endif
  2506. BIGNUM *bn)
  2507. {
  2508. char *ptr;
  2509. char namebuf[32];
  2510. snprintf(namebuf, sizeof(namebuf), "%s(%s)", type, name);
  2511. if(bn)
  2512. BN_print(mem, bn);
  2513. push_certinfo(namebuf, num);
  2514. }
  2515. #ifdef HAVE_OPAQUE_RSA_DSA_DH
  2516. #define print_pubkey_BN(_type, _name, _num) \
  2517. pubkey_show(data, mem, _num, #_type, #_name, _name)
  2518. #else
  2519. #define print_pubkey_BN(_type, _name, _num) \
  2520. do { \
  2521. if(_type->_name) { \
  2522. pubkey_show(data, mem, _num, #_type, #_name, _type->_name); \
  2523. } \
  2524. } WHILE_FALSE
  2525. #endif
  2526. static int X509V3_ext(struct Curl_easy *data,
  2527. int certnum,
  2528. CONST_EXTS STACK_OF(X509_EXTENSION) *exts)
  2529. {
  2530. int i;
  2531. size_t j;
  2532. if((int)sk_X509_EXTENSION_num(exts) <= 0)
  2533. /* no extensions, bail out */
  2534. return 1;
  2535. for(i = 0; i < (int)sk_X509_EXTENSION_num(exts); i++) {
  2536. ASN1_OBJECT *obj;
  2537. X509_EXTENSION *ext = sk_X509_EXTENSION_value(exts, i);
  2538. BUF_MEM *biomem;
  2539. char buf[512];
  2540. char *ptr = buf;
  2541. char namebuf[128];
  2542. BIO *bio_out = BIO_new(BIO_s_mem());
  2543. if(!bio_out)
  2544. return 1;
  2545. obj = X509_EXTENSION_get_object(ext);
  2546. asn1_object_dump(obj, namebuf, sizeof(namebuf));
  2547. if(!X509V3_EXT_print(bio_out, ext, 0, 0))
  2548. ASN1_STRING_print(bio_out, (ASN1_STRING *)X509_EXTENSION_get_data(ext));
  2549. BIO_get_mem_ptr(bio_out, &biomem);
  2550. for(j = 0; j < (size_t)biomem->length; j++) {
  2551. const char *sep = "";
  2552. if(biomem->data[j] == '\n') {
  2553. sep = ", ";
  2554. j++; /* skip the newline */
  2555. };
  2556. while((j<(size_t)biomem->length) && (biomem->data[j] == ' '))
  2557. j++;
  2558. if(j<(size_t)biomem->length)
  2559. ptr += snprintf(ptr, sizeof(buf)-(ptr-buf), "%s%c", sep,
  2560. biomem->data[j]);
  2561. }
  2562. Curl_ssl_push_certinfo(data, certnum, namebuf, buf);
  2563. BIO_free(bio_out);
  2564. }
  2565. return 0; /* all is fine */
  2566. }
  2567. static CURLcode get_cert_chain(struct connectdata *conn,
  2568. struct ssl_connect_data *connssl)
  2569. {
  2570. CURLcode result;
  2571. STACK_OF(X509) *sk;
  2572. int i;
  2573. struct Curl_easy *data = conn->data;
  2574. int numcerts;
  2575. BIO *mem;
  2576. sk = SSL_get_peer_cert_chain(BACKEND->handle);
  2577. if(!sk) {
  2578. return CURLE_OUT_OF_MEMORY;
  2579. }
  2580. numcerts = sk_X509_num(sk);
  2581. result = Curl_ssl_init_certinfo(data, numcerts);
  2582. if(result) {
  2583. return result;
  2584. }
  2585. mem = BIO_new(BIO_s_mem());
  2586. for(i = 0; i < numcerts; i++) {
  2587. ASN1_INTEGER *num;
  2588. X509 *x = sk_X509_value(sk, i);
  2589. EVP_PKEY *pubkey = NULL;
  2590. int j;
  2591. char *ptr;
  2592. const ASN1_BIT_STRING *psig = NULL;
  2593. X509_NAME_print_ex(mem, X509_get_subject_name(x), 0, XN_FLAG_ONELINE);
  2594. push_certinfo("Subject", i);
  2595. X509_NAME_print_ex(mem, X509_get_issuer_name(x), 0, XN_FLAG_ONELINE);
  2596. push_certinfo("Issuer", i);
  2597. BIO_printf(mem, "%lx", X509_get_version(x));
  2598. push_certinfo("Version", i);
  2599. num = X509_get_serialNumber(x);
  2600. if(num->type == V_ASN1_NEG_INTEGER)
  2601. BIO_puts(mem, "-");
  2602. for(j = 0; j < num->length; j++)
  2603. BIO_printf(mem, "%02x", num->data[j]);
  2604. push_certinfo("Serial Number", i);
  2605. #if defined(HAVE_X509_GET0_SIGNATURE) && defined(HAVE_X509_GET0_EXTENSIONS)
  2606. {
  2607. const X509_ALGOR *palg = NULL;
  2608. ASN1_STRING *a = ASN1_STRING_new();
  2609. if(a) {
  2610. X509_get0_signature(&psig, &palg, x);
  2611. X509_signature_print(mem, ARG2_X509_signature_print palg, a);
  2612. ASN1_STRING_free(a);
  2613. if(palg) {
  2614. i2a_ASN1_OBJECT(mem, palg->algorithm);
  2615. push_certinfo("Public Key Algorithm", i);
  2616. }
  2617. }
  2618. X509V3_ext(data, i, X509_get0_extensions(x));
  2619. }
  2620. #else
  2621. {
  2622. /* before OpenSSL 1.0.2 */
  2623. X509_CINF *cinf = x->cert_info;
  2624. i2a_ASN1_OBJECT(mem, cinf->signature->algorithm);
  2625. push_certinfo("Signature Algorithm", i);
  2626. i2a_ASN1_OBJECT(mem, cinf->key->algor->algorithm);
  2627. push_certinfo("Public Key Algorithm", i);
  2628. X509V3_ext(data, i, cinf->extensions);
  2629. psig = x->signature;
  2630. }
  2631. #endif
  2632. ASN1_TIME_print(mem, X509_get0_notBefore(x));
  2633. push_certinfo("Start date", i);
  2634. ASN1_TIME_print(mem, X509_get0_notAfter(x));
  2635. push_certinfo("Expire date", i);
  2636. pubkey = X509_get_pubkey(x);
  2637. if(!pubkey)
  2638. infof(data, " Unable to load public key\n");
  2639. else {
  2640. int pktype;
  2641. #ifdef HAVE_OPAQUE_EVP_PKEY
  2642. pktype = EVP_PKEY_id(pubkey);
  2643. #else
  2644. pktype = pubkey->type;
  2645. #endif
  2646. switch(pktype) {
  2647. case EVP_PKEY_RSA:
  2648. {
  2649. RSA *rsa;
  2650. #ifdef HAVE_OPAQUE_EVP_PKEY
  2651. rsa = EVP_PKEY_get0_RSA(pubkey);
  2652. #else
  2653. rsa = pubkey->pkey.rsa;
  2654. #endif
  2655. #ifdef HAVE_OPAQUE_RSA_DSA_DH
  2656. {
  2657. const BIGNUM *n;
  2658. const BIGNUM *e;
  2659. RSA_get0_key(rsa, &n, &e, NULL);
  2660. BN_print(mem, n);
  2661. push_certinfo("RSA Public Key", i);
  2662. print_pubkey_BN(rsa, n, i);
  2663. print_pubkey_BN(rsa, e, i);
  2664. }
  2665. #else
  2666. BIO_printf(mem, "%d", BN_num_bits(rsa->n));
  2667. push_certinfo("RSA Public Key", i);
  2668. print_pubkey_BN(rsa, n, i);
  2669. print_pubkey_BN(rsa, e, i);
  2670. #endif
  2671. break;
  2672. }
  2673. case EVP_PKEY_DSA:
  2674. {
  2675. #ifndef OPENSSL_NO_DSA
  2676. DSA *dsa;
  2677. #ifdef HAVE_OPAQUE_EVP_PKEY
  2678. dsa = EVP_PKEY_get0_DSA(pubkey);
  2679. #else
  2680. dsa = pubkey->pkey.dsa;
  2681. #endif
  2682. #ifdef HAVE_OPAQUE_RSA_DSA_DH
  2683. {
  2684. const BIGNUM *p;
  2685. const BIGNUM *q;
  2686. const BIGNUM *g;
  2687. const BIGNUM *pub_key;
  2688. DSA_get0_pqg(dsa, &p, &q, &g);
  2689. DSA_get0_key(dsa, &pub_key, NULL);
  2690. print_pubkey_BN(dsa, p, i);
  2691. print_pubkey_BN(dsa, q, i);
  2692. print_pubkey_BN(dsa, g, i);
  2693. print_pubkey_BN(dsa, pub_key, i);
  2694. }
  2695. #else
  2696. print_pubkey_BN(dsa, p, i);
  2697. print_pubkey_BN(dsa, q, i);
  2698. print_pubkey_BN(dsa, g, i);
  2699. print_pubkey_BN(dsa, pub_key, i);
  2700. #endif
  2701. #endif /* !OPENSSL_NO_DSA */
  2702. break;
  2703. }
  2704. case EVP_PKEY_DH:
  2705. {
  2706. DH *dh;
  2707. #ifdef HAVE_OPAQUE_EVP_PKEY
  2708. dh = EVP_PKEY_get0_DH(pubkey);
  2709. #else
  2710. dh = pubkey->pkey.dh;
  2711. #endif
  2712. #ifdef HAVE_OPAQUE_RSA_DSA_DH
  2713. {
  2714. const BIGNUM *p;
  2715. const BIGNUM *q;
  2716. const BIGNUM *g;
  2717. const BIGNUM *pub_key;
  2718. DH_get0_pqg(dh, &p, &q, &g);
  2719. DH_get0_key(dh, &pub_key, NULL);
  2720. print_pubkey_BN(dh, p, i);
  2721. print_pubkey_BN(dh, q, i);
  2722. print_pubkey_BN(dh, g, i);
  2723. print_pubkey_BN(dh, pub_key, i);
  2724. }
  2725. #else
  2726. print_pubkey_BN(dh, p, i);
  2727. print_pubkey_BN(dh, g, i);
  2728. print_pubkey_BN(dh, pub_key, i);
  2729. #endif
  2730. break;
  2731. }
  2732. #if 0
  2733. case EVP_PKEY_EC: /* symbol not present in OpenSSL 0.9.6 */
  2734. /* left TODO */
  2735. break;
  2736. #endif
  2737. }
  2738. EVP_PKEY_free(pubkey);
  2739. }
  2740. if(psig) {
  2741. for(j = 0; j < psig->length; j++)
  2742. BIO_printf(mem, "%02x:", psig->data[j]);
  2743. push_certinfo("Signature", i);
  2744. }
  2745. PEM_write_bio_X509(mem, x);
  2746. push_certinfo("Cert", i);
  2747. }
  2748. BIO_free(mem);
  2749. return CURLE_OK;
  2750. }
  2751. /*
  2752. * Heavily modified from:
  2753. * https://www.owasp.org/index.php/Certificate_and_Public_Key_Pinning#OpenSSL
  2754. */
  2755. static CURLcode pkp_pin_peer_pubkey(struct Curl_easy *data, X509* cert,
  2756. const char *pinnedpubkey)
  2757. {
  2758. /* Scratch */
  2759. int len1 = 0, len2 = 0;
  2760. unsigned char *buff1 = NULL, *temp = NULL;
  2761. /* Result is returned to caller */
  2762. CURLcode result = CURLE_SSL_PINNEDPUBKEYNOTMATCH;
  2763. /* if a path wasn't specified, don't pin */
  2764. if(!pinnedpubkey)
  2765. return CURLE_OK;
  2766. if(!cert)
  2767. return result;
  2768. do {
  2769. /* Begin Gyrations to get the subjectPublicKeyInfo */
  2770. /* Thanks to Viktor Dukhovni on the OpenSSL mailing list */
  2771. /* https://groups.google.com/group/mailing.openssl.users/browse_thread
  2772. /thread/d61858dae102c6c7 */
  2773. len1 = i2d_X509_PUBKEY(X509_get_X509_PUBKEY(cert), NULL);
  2774. if(len1 < 1)
  2775. break; /* failed */
  2776. /* https://www.openssl.org/docs/crypto/buffer.html */
  2777. buff1 = temp = malloc(len1);
  2778. if(!buff1)
  2779. break; /* failed */
  2780. /* https://www.openssl.org/docs/crypto/d2i_X509.html */
  2781. len2 = i2d_X509_PUBKEY(X509_get_X509_PUBKEY(cert), &temp);
  2782. /*
  2783. * These checks are verifying we got back the same values as when we
  2784. * sized the buffer. It's pretty weak since they should always be the
  2785. * same. But it gives us something to test.
  2786. */
  2787. if((len1 != len2) || !temp || ((temp - buff1) != len1))
  2788. break; /* failed */
  2789. /* End Gyrations */
  2790. /* The one good exit point */
  2791. result = Curl_pin_peer_pubkey(data, pinnedpubkey, buff1, len1);
  2792. } while(0);
  2793. /* https://www.openssl.org/docs/crypto/buffer.html */
  2794. if(buff1)
  2795. free(buff1);
  2796. return result;
  2797. }
  2798. /*
  2799. * Get the server cert, verify it and show it etc, only call failf() if the
  2800. * 'strict' argument is TRUE as otherwise all this is for informational
  2801. * purposes only!
  2802. *
  2803. * We check certificates to authenticate the server; otherwise we risk
  2804. * man-in-the-middle attack.
  2805. */
  2806. static CURLcode servercert(struct connectdata *conn,
  2807. struct ssl_connect_data *connssl,
  2808. bool strict)
  2809. {
  2810. CURLcode result = CURLE_OK;
  2811. int rc;
  2812. long lerr, len;
  2813. struct Curl_easy *data = conn->data;
  2814. X509 *issuer;
  2815. BIO *fp = NULL;
  2816. char error_buffer[256]="";
  2817. char buffer[2048];
  2818. const char *ptr;
  2819. long * const certverifyresult = SSL_IS_PROXY() ?
  2820. &data->set.proxy_ssl.certverifyresult : &data->set.ssl.certverifyresult;
  2821. BIO *mem = BIO_new(BIO_s_mem());
  2822. if(data->set.ssl.certinfo)
  2823. /* we've been asked to gather certificate info! */
  2824. (void)get_cert_chain(conn, connssl);
  2825. fp = BIO_new(BIO_s_file());
  2826. if(fp == NULL) {
  2827. failf(data,
  2828. "BIO_new return NULL, " OSSL_PACKAGE
  2829. " error %s",
  2830. ossl_strerror(ERR_get_error(), error_buffer,
  2831. sizeof(error_buffer)) );
  2832. BIO_free(mem);
  2833. return 0;
  2834. }
  2835. BACKEND->server_cert = SSL_get_peer_certificate(BACKEND->handle);
  2836. if(!BACKEND->server_cert) {
  2837. BIO_free(fp);
  2838. BIO_free(mem);
  2839. if(!strict)
  2840. return CURLE_OK;
  2841. failf(data, "SSL: couldn't get peer certificate!");
  2842. return CURLE_PEER_FAILED_VERIFICATION;
  2843. }
  2844. infof(data, "%s certificate:\n", SSL_IS_PROXY() ? "Proxy" : "Server");
  2845. rc = x509_name_oneline(X509_get_subject_name(BACKEND->server_cert),
  2846. buffer, sizeof(buffer));
  2847. infof(data, " subject: %s\n", rc?"[NONE]":buffer);
  2848. ASN1_TIME_print(mem, X509_get0_notBefore(BACKEND->server_cert));
  2849. len = BIO_get_mem_data(mem, (char **) &ptr);
  2850. infof(data, " start date: %.*s\n", len, ptr);
  2851. (void)BIO_reset(mem);
  2852. ASN1_TIME_print(mem, X509_get0_notAfter(BACKEND->server_cert));
  2853. len = BIO_get_mem_data(mem, (char **) &ptr);
  2854. infof(data, " expire date: %.*s\n", len, ptr);
  2855. (void)BIO_reset(mem);
  2856. BIO_free(mem);
  2857. if(SSL_CONN_CONFIG(verifyhost)) {
  2858. result = verifyhost(conn, BACKEND->server_cert);
  2859. if(result) {
  2860. BIO_free(fp);
  2861. X509_free(BACKEND->server_cert);
  2862. BACKEND->server_cert = NULL;
  2863. return result;
  2864. }
  2865. }
  2866. rc = x509_name_oneline(X509_get_issuer_name(BACKEND->server_cert),
  2867. buffer, sizeof(buffer));
  2868. if(rc) {
  2869. if(strict)
  2870. failf(data, "SSL: couldn't get X509-issuer name!");
  2871. result = CURLE_SSL_CONNECT_ERROR;
  2872. }
  2873. else {
  2874. infof(data, " issuer: %s\n", buffer);
  2875. /* We could do all sorts of certificate verification stuff here before
  2876. deallocating the certificate. */
  2877. /* e.g. match issuer name with provided issuer certificate */
  2878. if(SSL_SET_OPTION(issuercert)) {
  2879. if(BIO_read_filename(fp, SSL_SET_OPTION(issuercert)) <= 0) {
  2880. if(strict)
  2881. failf(data, "SSL: Unable to open issuer cert (%s)",
  2882. SSL_SET_OPTION(issuercert));
  2883. BIO_free(fp);
  2884. X509_free(BACKEND->server_cert);
  2885. BACKEND->server_cert = NULL;
  2886. return CURLE_SSL_ISSUER_ERROR;
  2887. }
  2888. issuer = PEM_read_bio_X509(fp, NULL, ZERO_NULL, NULL);
  2889. if(!issuer) {
  2890. if(strict)
  2891. failf(data, "SSL: Unable to read issuer cert (%s)",
  2892. SSL_SET_OPTION(issuercert));
  2893. BIO_free(fp);
  2894. X509_free(issuer);
  2895. X509_free(BACKEND->server_cert);
  2896. BACKEND->server_cert = NULL;
  2897. return CURLE_SSL_ISSUER_ERROR;
  2898. }
  2899. if(X509_check_issued(issuer, BACKEND->server_cert) != X509_V_OK) {
  2900. if(strict)
  2901. failf(data, "SSL: Certificate issuer check failed (%s)",
  2902. SSL_SET_OPTION(issuercert));
  2903. BIO_free(fp);
  2904. X509_free(issuer);
  2905. X509_free(BACKEND->server_cert);
  2906. BACKEND->server_cert = NULL;
  2907. return CURLE_SSL_ISSUER_ERROR;
  2908. }
  2909. infof(data, " SSL certificate issuer check ok (%s)\n",
  2910. SSL_SET_OPTION(issuercert));
  2911. X509_free(issuer);
  2912. }
  2913. lerr = *certverifyresult = SSL_get_verify_result(BACKEND->handle);
  2914. if(*certverifyresult != X509_V_OK) {
  2915. if(SSL_CONN_CONFIG(verifypeer)) {
  2916. /* We probably never reach this, because SSL_connect() will fail
  2917. and we return earlier if verifypeer is set? */
  2918. if(strict)
  2919. failf(data, "SSL certificate verify result: %s (%ld)",
  2920. X509_verify_cert_error_string(lerr), lerr);
  2921. result = CURLE_PEER_FAILED_VERIFICATION;
  2922. }
  2923. else
  2924. infof(data, " SSL certificate verify result: %s (%ld),"
  2925. " continuing anyway.\n",
  2926. X509_verify_cert_error_string(lerr), lerr);
  2927. }
  2928. else
  2929. infof(data, " SSL certificate verify ok.\n");
  2930. }
  2931. #if (OPENSSL_VERSION_NUMBER >= 0x0090808fL) && !defined(OPENSSL_NO_TLSEXT) && \
  2932. !defined(OPENSSL_NO_OCSP)
  2933. if(SSL_CONN_CONFIG(verifystatus)) {
  2934. result = verifystatus(conn, connssl);
  2935. if(result) {
  2936. BIO_free(fp);
  2937. X509_free(BACKEND->server_cert);
  2938. BACKEND->server_cert = NULL;
  2939. return result;
  2940. }
  2941. }
  2942. #endif
  2943. if(!strict)
  2944. /* when not strict, we don't bother about the verify cert problems */
  2945. result = CURLE_OK;
  2946. ptr = SSL_IS_PROXY() ? data->set.str[STRING_SSL_PINNEDPUBLICKEY_PROXY] :
  2947. data->set.str[STRING_SSL_PINNEDPUBLICKEY_ORIG];
  2948. if(!result && ptr) {
  2949. result = pkp_pin_peer_pubkey(data, BACKEND->server_cert, ptr);
  2950. if(result)
  2951. failf(data, "SSL: public key does not match pinned public key!");
  2952. }
  2953. BIO_free(fp);
  2954. X509_free(BACKEND->server_cert);
  2955. BACKEND->server_cert = NULL;
  2956. connssl->connecting_state = ssl_connect_done;
  2957. return result;
  2958. }
  2959. static CURLcode ossl_connect_step3(struct connectdata *conn, int sockindex)
  2960. {
  2961. CURLcode result = CURLE_OK;
  2962. struct Curl_easy *data = conn->data;
  2963. struct ssl_connect_data *connssl = &conn->ssl[sockindex];
  2964. DEBUGASSERT(ssl_connect_3 == connssl->connecting_state);
  2965. if(SSL_SET_OPTION(primary.sessionid)) {
  2966. bool incache;
  2967. SSL_SESSION *our_ssl_sessionid;
  2968. void *old_ssl_sessionid = NULL;
  2969. our_ssl_sessionid = SSL_get1_session(BACKEND->handle);
  2970. /* SSL_get1_session() will increment the reference count and the session
  2971. will stay in memory until explicitly freed with SSL_SESSION_free(3),
  2972. regardless of its state. */
  2973. Curl_ssl_sessionid_lock(conn);
  2974. incache = !(Curl_ssl_getsessionid(conn, &old_ssl_sessionid, NULL,
  2975. sockindex));
  2976. if(incache) {
  2977. if(old_ssl_sessionid != our_ssl_sessionid) {
  2978. infof(data, "old SSL session ID is stale, removing\n");
  2979. Curl_ssl_delsessionid(conn, old_ssl_sessionid);
  2980. incache = FALSE;
  2981. }
  2982. }
  2983. if(!incache) {
  2984. result = Curl_ssl_addsessionid(conn, our_ssl_sessionid,
  2985. 0 /* unknown size */, sockindex);
  2986. if(result) {
  2987. Curl_ssl_sessionid_unlock(conn);
  2988. failf(data, "failed to store ssl session");
  2989. return result;
  2990. }
  2991. }
  2992. else {
  2993. /* Session was incache, so refcount already incremented earlier.
  2994. * Avoid further increments with each SSL_get1_session() call.
  2995. * This does not free the session as refcount remains > 0
  2996. */
  2997. SSL_SESSION_free(our_ssl_sessionid);
  2998. }
  2999. Curl_ssl_sessionid_unlock(conn);
  3000. }
  3001. /*
  3002. * We check certificates to authenticate the server; otherwise we risk
  3003. * man-in-the-middle attack; NEVERTHELESS, if we're told explicitly not to
  3004. * verify the peer ignore faults and failures from the server cert
  3005. * operations.
  3006. */
  3007. result = servercert(conn, connssl, (SSL_CONN_CONFIG(verifypeer) ||
  3008. SSL_CONN_CONFIG(verifyhost)));
  3009. if(!result)
  3010. connssl->connecting_state = ssl_connect_done;
  3011. return result;
  3012. }
  3013. static Curl_recv ossl_recv;
  3014. static Curl_send ossl_send;
  3015. static CURLcode ossl_connect_common(struct connectdata *conn,
  3016. int sockindex,
  3017. bool nonblocking,
  3018. bool *done)
  3019. {
  3020. CURLcode result;
  3021. struct Curl_easy *data = conn->data;
  3022. struct ssl_connect_data *connssl = &conn->ssl[sockindex];
  3023. curl_socket_t sockfd = conn->sock[sockindex];
  3024. time_t timeout_ms;
  3025. int what;
  3026. /* check if the connection has already been established */
  3027. if(ssl_connection_complete == connssl->state) {
  3028. *done = TRUE;
  3029. return CURLE_OK;
  3030. }
  3031. if(ssl_connect_1 == connssl->connecting_state) {
  3032. /* Find out how much more time we're allowed */
  3033. timeout_ms = Curl_timeleft(data, NULL, TRUE);
  3034. if(timeout_ms < 0) {
  3035. /* no need to continue if time already is up */
  3036. failf(data, "SSL connection timeout");
  3037. return CURLE_OPERATION_TIMEDOUT;
  3038. }
  3039. result = ossl_connect_step1(conn, sockindex);
  3040. if(result)
  3041. return result;
  3042. }
  3043. while(ssl_connect_2 == connssl->connecting_state ||
  3044. ssl_connect_2_reading == connssl->connecting_state ||
  3045. ssl_connect_2_writing == connssl->connecting_state) {
  3046. /* check allowed time left */
  3047. timeout_ms = Curl_timeleft(data, NULL, TRUE);
  3048. if(timeout_ms < 0) {
  3049. /* no need to continue if time already is up */
  3050. failf(data, "SSL connection timeout");
  3051. return CURLE_OPERATION_TIMEDOUT;
  3052. }
  3053. /* if ssl is expecting something, check if it's available. */
  3054. if(connssl->connecting_state == ssl_connect_2_reading ||
  3055. connssl->connecting_state == ssl_connect_2_writing) {
  3056. curl_socket_t writefd = ssl_connect_2_writing ==
  3057. connssl->connecting_state?sockfd:CURL_SOCKET_BAD;
  3058. curl_socket_t readfd = ssl_connect_2_reading ==
  3059. connssl->connecting_state?sockfd:CURL_SOCKET_BAD;
  3060. what = Curl_socket_check(readfd, CURL_SOCKET_BAD, writefd,
  3061. nonblocking?0:timeout_ms);
  3062. if(what < 0) {
  3063. /* fatal error */
  3064. failf(data, "select/poll on SSL socket, errno: %d", SOCKERRNO);
  3065. return CURLE_SSL_CONNECT_ERROR;
  3066. }
  3067. if(0 == what) {
  3068. if(nonblocking) {
  3069. *done = FALSE;
  3070. return CURLE_OK;
  3071. }
  3072. /* timeout */
  3073. failf(data, "SSL connection timeout");
  3074. return CURLE_OPERATION_TIMEDOUT;
  3075. }
  3076. /* socket is readable or writable */
  3077. }
  3078. /* Run transaction, and return to the caller if it failed or if this
  3079. * connection is done nonblocking and this loop would execute again. This
  3080. * permits the owner of a multi handle to abort a connection attempt
  3081. * before step2 has completed while ensuring that a client using select()
  3082. * or epoll() will always have a valid fdset to wait on.
  3083. */
  3084. result = ossl_connect_step2(conn, sockindex);
  3085. if(result || (nonblocking &&
  3086. (ssl_connect_2 == connssl->connecting_state ||
  3087. ssl_connect_2_reading == connssl->connecting_state ||
  3088. ssl_connect_2_writing == connssl->connecting_state)))
  3089. return result;
  3090. } /* repeat step2 until all transactions are done. */
  3091. if(ssl_connect_3 == connssl->connecting_state) {
  3092. result = ossl_connect_step3(conn, sockindex);
  3093. if(result)
  3094. return result;
  3095. }
  3096. if(ssl_connect_done == connssl->connecting_state) {
  3097. connssl->state = ssl_connection_complete;
  3098. conn->recv[sockindex] = ossl_recv;
  3099. conn->send[sockindex] = ossl_send;
  3100. *done = TRUE;
  3101. }
  3102. else
  3103. *done = FALSE;
  3104. /* Reset our connect state machine */
  3105. connssl->connecting_state = ssl_connect_1;
  3106. return CURLE_OK;
  3107. }
  3108. static CURLcode Curl_ossl_connect_nonblocking(struct connectdata *conn,
  3109. int sockindex,
  3110. bool *done)
  3111. {
  3112. return ossl_connect_common(conn, sockindex, TRUE, done);
  3113. }
  3114. static CURLcode Curl_ossl_connect(struct connectdata *conn, int sockindex)
  3115. {
  3116. CURLcode result;
  3117. bool done = FALSE;
  3118. result = ossl_connect_common(conn, sockindex, FALSE, &done);
  3119. if(result)
  3120. return result;
  3121. DEBUGASSERT(done);
  3122. return CURLE_OK;
  3123. }
  3124. static bool Curl_ossl_data_pending(const struct connectdata *conn,
  3125. int connindex)
  3126. {
  3127. const struct ssl_connect_data *connssl = &conn->ssl[connindex];
  3128. const struct ssl_connect_data *proxyssl = &conn->proxy_ssl[connindex];
  3129. if(connssl->backend->handle && SSL_pending(connssl->backend->handle))
  3130. return TRUE;
  3131. if(proxyssl->backend->handle && SSL_pending(proxyssl->backend->handle))
  3132. return TRUE;
  3133. return FALSE;
  3134. }
  3135. static size_t Curl_ossl_version(char *buffer, size_t size);
  3136. static ssize_t ossl_send(struct connectdata *conn,
  3137. int sockindex,
  3138. const void *mem,
  3139. size_t len,
  3140. CURLcode *curlcode)
  3141. {
  3142. /* SSL_write() is said to return 'int' while write() and send() returns
  3143. 'size_t' */
  3144. int err;
  3145. char error_buffer[256];
  3146. unsigned long sslerror;
  3147. int memlen;
  3148. int rc;
  3149. struct ssl_connect_data *connssl = &conn->ssl[sockindex];
  3150. ERR_clear_error();
  3151. memlen = (len > (size_t)INT_MAX) ? INT_MAX : (int)len;
  3152. rc = SSL_write(BACKEND->handle, mem, memlen);
  3153. if(rc <= 0) {
  3154. err = SSL_get_error(BACKEND->handle, rc);
  3155. switch(err) {
  3156. case SSL_ERROR_WANT_READ:
  3157. case SSL_ERROR_WANT_WRITE:
  3158. /* The operation did not complete; the same TLS/SSL I/O function
  3159. should be called again later. This is basically an EWOULDBLOCK
  3160. equivalent. */
  3161. *curlcode = CURLE_AGAIN;
  3162. return -1;
  3163. case SSL_ERROR_SYSCALL:
  3164. failf(conn->data, "SSL_write() returned SYSCALL, errno = %d",
  3165. SOCKERRNO);
  3166. *curlcode = CURLE_SEND_ERROR;
  3167. return -1;
  3168. case SSL_ERROR_SSL:
  3169. /* A failure in the SSL library occurred, usually a protocol error.
  3170. The OpenSSL error queue contains more information on the error. */
  3171. sslerror = ERR_get_error();
  3172. if(ERR_GET_LIB(sslerror) == ERR_LIB_SSL &&
  3173. ERR_GET_REASON(sslerror) == SSL_R_BIO_NOT_SET &&
  3174. conn->ssl[sockindex].state == ssl_connection_complete &&
  3175. conn->proxy_ssl[sockindex].state == ssl_connection_complete) {
  3176. char ver[120];
  3177. Curl_ossl_version(ver, 120);
  3178. failf(conn->data, "Error: %s does not support double SSL tunneling.",
  3179. ver);
  3180. }
  3181. else
  3182. failf(conn->data, "SSL_write() error: %s",
  3183. ossl_strerror(sslerror, error_buffer, sizeof(error_buffer)));
  3184. *curlcode = CURLE_SEND_ERROR;
  3185. return -1;
  3186. }
  3187. /* a true error */
  3188. failf(conn->data, OSSL_PACKAGE " SSL_write: %s, errno %d",
  3189. SSL_ERROR_to_str(err), SOCKERRNO);
  3190. *curlcode = CURLE_SEND_ERROR;
  3191. return -1;
  3192. }
  3193. *curlcode = CURLE_OK;
  3194. return (ssize_t)rc; /* number of bytes */
  3195. }
  3196. static ssize_t ossl_recv(struct connectdata *conn, /* connection data */
  3197. int num, /* socketindex */
  3198. char *buf, /* store read data here */
  3199. size_t buffersize, /* max amount to read */
  3200. CURLcode *curlcode)
  3201. {
  3202. char error_buffer[256];
  3203. unsigned long sslerror;
  3204. ssize_t nread;
  3205. int buffsize;
  3206. struct ssl_connect_data *connssl = &conn->ssl[num];
  3207. ERR_clear_error();
  3208. buffsize = (buffersize > (size_t)INT_MAX) ? INT_MAX : (int)buffersize;
  3209. nread = (ssize_t)SSL_read(BACKEND->handle, buf, buffsize);
  3210. if(nread <= 0) {
  3211. /* failed SSL_read */
  3212. int err = SSL_get_error(BACKEND->handle, (int)nread);
  3213. switch(err) {
  3214. case SSL_ERROR_NONE: /* this is not an error */
  3215. case SSL_ERROR_ZERO_RETURN: /* no more data */
  3216. break;
  3217. case SSL_ERROR_WANT_READ:
  3218. case SSL_ERROR_WANT_WRITE:
  3219. /* there's data pending, re-invoke SSL_read() */
  3220. *curlcode = CURLE_AGAIN;
  3221. return -1;
  3222. default:
  3223. /* openssl/ssl.h for SSL_ERROR_SYSCALL says "look at error stack/return
  3224. value/errno" */
  3225. /* https://www.openssl.org/docs/crypto/ERR_get_error.html */
  3226. sslerror = ERR_get_error();
  3227. if((nread < 0) || sslerror) {
  3228. /* If the return code was negative or there actually is an error in the
  3229. queue */
  3230. failf(conn->data, OSSL_PACKAGE " SSL_read: %s, errno %d",
  3231. (sslerror ?
  3232. ossl_strerror(sslerror, error_buffer, sizeof(error_buffer)) :
  3233. SSL_ERROR_to_str(err)),
  3234. SOCKERRNO);
  3235. *curlcode = CURLE_RECV_ERROR;
  3236. return -1;
  3237. }
  3238. }
  3239. }
  3240. return nread;
  3241. }
  3242. static size_t Curl_ossl_version(char *buffer, size_t size)
  3243. {
  3244. #ifdef OPENSSL_IS_BORINGSSL
  3245. return snprintf(buffer, size, OSSL_PACKAGE);
  3246. #else /* OPENSSL_IS_BORINGSSL */
  3247. char sub[3];
  3248. unsigned long ssleay_value;
  3249. sub[2]='\0';
  3250. sub[1]='\0';
  3251. ssleay_value = OpenSSL_version_num();
  3252. if(ssleay_value < 0x906000) {
  3253. ssleay_value = SSLEAY_VERSION_NUMBER;
  3254. sub[0]='\0';
  3255. }
  3256. else {
  3257. if(ssleay_value&0xff0) {
  3258. int minor_ver = (ssleay_value >> 4) & 0xff;
  3259. if(minor_ver > 26) {
  3260. /* handle extended version introduced for 0.9.8za */
  3261. sub[1] = (char) ((minor_ver - 1) % 26 + 'a' + 1);
  3262. sub[0] = 'z';
  3263. }
  3264. else {
  3265. sub[0] = (char) (minor_ver + 'a' - 1);
  3266. }
  3267. }
  3268. else
  3269. sub[0]='\0';
  3270. }
  3271. return snprintf(buffer, size, "%s/%lx.%lx.%lx%s",
  3272. OSSL_PACKAGE,
  3273. (ssleay_value>>28)&0xf,
  3274. (ssleay_value>>20)&0xff,
  3275. (ssleay_value>>12)&0xff,
  3276. sub);
  3277. #endif /* OPENSSL_IS_BORINGSSL */
  3278. }
  3279. /* can be called with data == NULL */
  3280. static CURLcode Curl_ossl_random(struct Curl_easy *data,
  3281. unsigned char *entropy, size_t length)
  3282. {
  3283. int rc;
  3284. if(data) {
  3285. if(Curl_ossl_seed(data)) /* Initiate the seed if not already done */
  3286. return CURLE_FAILED_INIT; /* couldn't seed for some reason */
  3287. }
  3288. else {
  3289. if(!rand_enough())
  3290. return CURLE_FAILED_INIT;
  3291. }
  3292. /* RAND_bytes() returns 1 on success, 0 otherwise. */
  3293. rc = RAND_bytes(entropy, curlx_uztosi(length));
  3294. return (rc == 1 ? CURLE_OK : CURLE_FAILED_INIT);
  3295. }
  3296. static CURLcode Curl_ossl_md5sum(unsigned char *tmp, /* input */
  3297. size_t tmplen,
  3298. unsigned char *md5sum /* output */,
  3299. size_t unused)
  3300. {
  3301. EVP_MD_CTX *mdctx;
  3302. unsigned int len = 0;
  3303. (void) unused;
  3304. mdctx = EVP_MD_CTX_create();
  3305. EVP_DigestInit_ex(mdctx, EVP_md5(), NULL);
  3306. EVP_DigestUpdate(mdctx, tmp, tmplen);
  3307. EVP_DigestFinal_ex(mdctx, md5sum, &len);
  3308. EVP_MD_CTX_destroy(mdctx);
  3309. return CURLE_OK;
  3310. }
  3311. #if (OPENSSL_VERSION_NUMBER >= 0x0090800fL) && !defined(OPENSSL_NO_SHA256)
  3312. static CURLcode Curl_ossl_sha256sum(const unsigned char *tmp, /* input */
  3313. size_t tmplen,
  3314. unsigned char *sha256sum /* output */,
  3315. size_t unused)
  3316. {
  3317. EVP_MD_CTX *mdctx;
  3318. unsigned int len = 0;
  3319. (void) unused;
  3320. mdctx = EVP_MD_CTX_create();
  3321. EVP_DigestInit_ex(mdctx, EVP_sha256(), NULL);
  3322. EVP_DigestUpdate(mdctx, tmp, tmplen);
  3323. EVP_DigestFinal_ex(mdctx, sha256sum, &len);
  3324. EVP_MD_CTX_destroy(mdctx);
  3325. return CURLE_OK;
  3326. }
  3327. #endif
  3328. static bool Curl_ossl_cert_status_request(void)
  3329. {
  3330. #if (OPENSSL_VERSION_NUMBER >= 0x0090808fL) && !defined(OPENSSL_NO_TLSEXT) && \
  3331. !defined(OPENSSL_NO_OCSP)
  3332. return TRUE;
  3333. #else
  3334. return FALSE;
  3335. #endif
  3336. }
  3337. static void *Curl_ossl_get_internals(struct ssl_connect_data *connssl,
  3338. CURLINFO info)
  3339. {
  3340. /* Legacy: CURLINFO_TLS_SESSION must return an SSL_CTX pointer. */
  3341. return info == CURLINFO_TLS_SESSION ?
  3342. (void *)BACKEND->ctx : (void *)BACKEND->handle;
  3343. }
  3344. const struct Curl_ssl Curl_ssl_openssl = {
  3345. { CURLSSLBACKEND_OPENSSL, "openssl" }, /* info */
  3346. SSLSUPP_CA_PATH |
  3347. SSLSUPP_CERTINFO |
  3348. SSLSUPP_PINNEDPUBKEY |
  3349. SSLSUPP_SSL_CTX |
  3350. #ifdef HAVE_SSL_CTX_SET_CIPHERSUITES
  3351. SSLSUPP_TLS13_CIPHERSUITES |
  3352. #endif
  3353. SSLSUPP_HTTPS_PROXY,
  3354. sizeof(struct ssl_backend_data),
  3355. Curl_ossl_init, /* init */
  3356. Curl_ossl_cleanup, /* cleanup */
  3357. Curl_ossl_version, /* version */
  3358. Curl_ossl_check_cxn, /* check_cxn */
  3359. Curl_ossl_shutdown, /* shutdown */
  3360. Curl_ossl_data_pending, /* data_pending */
  3361. Curl_ossl_random, /* random */
  3362. Curl_ossl_cert_status_request, /* cert_status_request */
  3363. Curl_ossl_connect, /* connect */
  3364. Curl_ossl_connect_nonblocking, /* connect_nonblocking */
  3365. Curl_ossl_get_internals, /* get_internals */
  3366. Curl_ossl_close, /* close_one */
  3367. Curl_ossl_close_all, /* close_all */
  3368. Curl_ossl_session_free, /* session_free */
  3369. Curl_ossl_set_engine, /* set_engine */
  3370. Curl_ossl_set_engine_default, /* set_engine_default */
  3371. Curl_ossl_engines_list, /* engines_list */
  3372. Curl_none_false_start, /* false_start */
  3373. Curl_ossl_md5sum, /* md5sum */
  3374. #if (OPENSSL_VERSION_NUMBER >= 0x0090800fL) && !defined(OPENSSL_NO_SHA256)
  3375. Curl_ossl_sha256sum /* sha256sum */
  3376. #else
  3377. NULL /* sha256sum */
  3378. #endif
  3379. };
  3380. #endif /* USE_OPENSSL */