tortls.c 84 KB

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  1. /* Copyright (c) 2003, Roger Dingledine.
  2. * Copyright (c) 2004-2006, Roger Dingledine, Nick Mathewson.
  3. * Copyright (c) 2007-2015, The Tor Project, Inc. */
  4. /* See LICENSE for licensing information */
  5. /**
  6. * \file tortls.c
  7. * \brief Wrapper functions to present a consistent interface to
  8. * TLS, SSL, and X.509 functions from OpenSSL.
  9. **/
  10. /* (Unlike other tor functions, these
  11. * are prefixed with tor_ in order to avoid conflicting with OpenSSL
  12. * functions and variables.)
  13. */
  14. #include "orconfig.h"
  15. #define TORTLS_PRIVATE
  16. #include <assert.h>
  17. #ifdef _WIN32 /*wrkard for dtls1.h >= 0.9.8m of "#include <winsock.h>"*/
  18. #include <winsock2.h>
  19. #include <ws2tcpip.h>
  20. #endif
  21. #ifdef __GNUC__
  22. #define GCC_VERSION (__GNUC__ * 100 + __GNUC_MINOR__)
  23. #endif
  24. #if __GNUC__ && GCC_VERSION >= 402
  25. #if GCC_VERSION >= 406
  26. #pragma GCC diagnostic push
  27. #endif
  28. /* Some versions of OpenSSL declare SSL_get_selected_srtp_profile twice in
  29. * srtp.h. Suppress the GCC warning so we can build with -Wredundant-decl. */
  30. #pragma GCC diagnostic ignored "-Wredundant-decls"
  31. #endif
  32. #include <openssl/opensslv.h>
  33. #include "crypto.h"
  34. #if OPENSSL_VERSION_NUMBER < OPENSSL_V_SERIES(1,0,0)
  35. #error "We require OpenSSL >= 1.0.0"
  36. #endif
  37. #ifdef OPENSSL_NO_EC
  38. #error "We require OpenSSL with ECC support"
  39. #endif
  40. #include <openssl/ssl.h>
  41. #include <openssl/ssl3.h>
  42. #include <openssl/err.h>
  43. #include <openssl/tls1.h>
  44. #include <openssl/asn1.h>
  45. #include <openssl/bio.h>
  46. #include <openssl/bn.h>
  47. #include <openssl/rsa.h>
  48. #if __GNUC__ && GCC_VERSION >= 402
  49. #if GCC_VERSION >= 406
  50. #pragma GCC diagnostic pop
  51. #else
  52. #pragma GCC diagnostic warning "-Wredundant-decls"
  53. #endif
  54. #endif
  55. #ifdef USE_BUFFEREVENTS
  56. #include <event2/bufferevent_ssl.h>
  57. #include <event2/buffer.h>
  58. #include <event2/event.h>
  59. #include "compat_libevent.h"
  60. #endif
  61. #define TORTLS_PRIVATE
  62. #include "tortls.h"
  63. #include "util.h"
  64. #include "torlog.h"
  65. #include "container.h"
  66. #include <string.h>
  67. #define X509_get_notBefore_const(cert) \
  68. ((const ASN1_TIME*) X509_get_notBefore((X509 *)cert))
  69. #define X509_get_notAfter_const(cert) \
  70. ((const ASN1_TIME*) X509_get_notAfter((X509 *)cert))
  71. /* Enable the "v2" TLS handshake.
  72. */
  73. #define V2_HANDSHAKE_SERVER
  74. #define V2_HANDSHAKE_CLIENT
  75. /* Copied from or.h */
  76. #define LEGAL_NICKNAME_CHARACTERS \
  77. "abcdefghijklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZ0123456789"
  78. /** How long do identity certificates live? (sec) */
  79. #define IDENTITY_CERT_LIFETIME (365*24*60*60)
  80. #define ADDR(tls) (((tls) && (tls)->address) ? tls->address : "peer")
  81. #if OPENSSL_VERSION_NUMBER < OPENSSL_V(1,0,0,'f')
  82. /* This is a version of OpenSSL before 1.0.0f. It does not have
  83. * the CVE-2011-4576 fix, and as such it can't use RELEASE_BUFFERS and
  84. * SSL3 safely at the same time.
  85. */
  86. #define DISABLE_SSL3_HANDSHAKE
  87. #endif
  88. /* We redefine these so that we can run correctly even if the vendor gives us
  89. * a version of OpenSSL that does not match its header files. (Apple: I am
  90. * looking at you.)
  91. */
  92. #ifndef SSL_OP_ALLOW_UNSAFE_LEGACY_RENEGOTIATION
  93. #define SSL_OP_ALLOW_UNSAFE_LEGACY_RENEGOTIATION 0x00040000L
  94. #endif
  95. #ifndef SSL3_FLAGS_ALLOW_UNSAFE_LEGACY_RENEGOTIATION
  96. #define SSL3_FLAGS_ALLOW_UNSAFE_LEGACY_RENEGOTIATION 0x0010
  97. #endif
  98. /** Return values for tor_tls_classify_client_ciphers.
  99. *
  100. * @{
  101. */
  102. /** An error occurred when examining the client ciphers */
  103. #define CIPHERS_ERR -1
  104. /** The client cipher list indicates that a v1 handshake was in use. */
  105. #define CIPHERS_V1 1
  106. /** The client cipher list indicates that the client is using the v2 or the
  107. * v3 handshake, but that it is (probably!) lying about what ciphers it
  108. * supports */
  109. #define CIPHERS_V2 2
  110. /** The client cipher list indicates that the client is using the v2 or the
  111. * v3 handshake, and that it is telling the truth about what ciphers it
  112. * supports */
  113. #define CIPHERS_UNRESTRICTED 3
  114. /** @} */
  115. /** The ex_data index in which we store a pointer to an SSL object's
  116. * corresponding tor_tls_t object. */
  117. STATIC int tor_tls_object_ex_data_index = -1;
  118. /** Helper: Allocate tor_tls_object_ex_data_index. */
  119. STATIC void
  120. tor_tls_allocate_tor_tls_object_ex_data_index(void)
  121. {
  122. if (tor_tls_object_ex_data_index == -1) {
  123. tor_tls_object_ex_data_index =
  124. SSL_get_ex_new_index(0, NULL, NULL, NULL, NULL);
  125. tor_assert(tor_tls_object_ex_data_index != -1);
  126. }
  127. }
  128. /** Helper: given a SSL* pointer, return the tor_tls_t object using that
  129. * pointer. */
  130. STATIC INLINE tor_tls_t *
  131. tor_tls_get_by_ssl(const SSL *ssl)
  132. {
  133. tor_tls_t *result = SSL_get_ex_data(ssl, tor_tls_object_ex_data_index);
  134. if (result)
  135. tor_assert(result->magic == TOR_TLS_MAGIC);
  136. return result;
  137. }
  138. static void tor_tls_context_decref(tor_tls_context_t *ctx);
  139. static void tor_tls_context_incref(tor_tls_context_t *ctx);
  140. static int check_cert_lifetime_internal(int severity, const X509 *cert,
  141. int past_tolerance, int future_tolerance);
  142. /** Global TLS contexts. We keep them here because nobody else needs
  143. * to touch them.
  144. *
  145. * @{ */
  146. STATIC tor_tls_context_t *server_tls_context = NULL;
  147. STATIC tor_tls_context_t *client_tls_context = NULL;
  148. /**@}*/
  149. /** True iff tor_tls_init() has been called. */
  150. static int tls_library_is_initialized = 0;
  151. /* Module-internal error codes. */
  152. #define TOR_TLS_SYSCALL_ (MIN_TOR_TLS_ERROR_VAL_ - 2)
  153. #define TOR_TLS_ZERORETURN_ (MIN_TOR_TLS_ERROR_VAL_ - 1)
  154. /** Write a description of the current state of <b>tls</b> into the
  155. * <b>sz</b>-byte buffer at <b>buf</b>. */
  156. void
  157. tor_tls_get_state_description(tor_tls_t *tls, char *buf, size_t sz)
  158. {
  159. const char *ssl_state;
  160. const char *tortls_state;
  161. if (PREDICT_UNLIKELY(!tls || !tls->ssl)) {
  162. strlcpy(buf, "(No SSL object)", sz);
  163. return;
  164. }
  165. ssl_state = SSL_state_string_long(tls->ssl);
  166. switch (tls->state) {
  167. #define CASE(st) case TOR_TLS_ST_##st: tortls_state = " in "#st ; break
  168. CASE(HANDSHAKE);
  169. CASE(OPEN);
  170. CASE(GOTCLOSE);
  171. CASE(SENTCLOSE);
  172. CASE(CLOSED);
  173. CASE(RENEGOTIATE);
  174. #undef CASE
  175. case TOR_TLS_ST_BUFFEREVENT:
  176. tortls_state = "";
  177. break;
  178. default:
  179. tortls_state = " in unknown TLS state";
  180. break;
  181. }
  182. tor_snprintf(buf, sz, "%s%s", ssl_state, tortls_state);
  183. }
  184. /** Log a single error <b>err</b> as returned by ERR_get_error(), which was
  185. * received while performing an operation <b>doing</b> on <b>tls</b>. Log
  186. * the message at <b>severity</b>, in log domain <b>domain</b>. */
  187. void
  188. tor_tls_log_one_error(tor_tls_t *tls, unsigned long err,
  189. int severity, int domain, const char *doing)
  190. {
  191. const char *state = NULL, *addr;
  192. const char *msg, *lib, *func;
  193. state = (tls && tls->ssl)?SSL_state_string_long(tls->ssl):"---";
  194. addr = tls ? tls->address : NULL;
  195. /* Some errors are known-benign, meaning they are the fault of the other
  196. * side of the connection. The caller doesn't know this, so override the
  197. * priority for those cases. */
  198. switch (ERR_GET_REASON(err)) {
  199. case SSL_R_HTTP_REQUEST:
  200. case SSL_R_HTTPS_PROXY_REQUEST:
  201. case SSL_R_RECORD_LENGTH_MISMATCH:
  202. case SSL_R_RECORD_TOO_LARGE:
  203. case SSL_R_UNKNOWN_PROTOCOL:
  204. case SSL_R_UNSUPPORTED_PROTOCOL:
  205. severity = LOG_INFO;
  206. break;
  207. default:
  208. break;
  209. }
  210. msg = (const char*)ERR_reason_error_string(err);
  211. lib = (const char*)ERR_lib_error_string(err);
  212. func = (const char*)ERR_func_error_string(err);
  213. if (!msg) msg = "(null)";
  214. if (!lib) lib = "(null)";
  215. if (!func) func = "(null)";
  216. if (doing) {
  217. tor_log(severity, domain, "TLS error while %s%s%s: %s (in %s:%s:%s)",
  218. doing, addr?" with ":"", addr?addr:"",
  219. msg, lib, func, state);
  220. } else {
  221. tor_log(severity, domain, "TLS error%s%s: %s (in %s:%s:%s)",
  222. addr?" with ":"", addr?addr:"",
  223. msg, lib, func, state);
  224. }
  225. }
  226. /** Log all pending tls errors at level <b>severity</b> in log domain
  227. * <b>domain</b>. Use <b>doing</b> to describe our current activities.
  228. */
  229. STATIC void
  230. tls_log_errors(tor_tls_t *tls, int severity, int domain, const char *doing)
  231. {
  232. unsigned long err;
  233. while ((err = ERR_get_error()) != 0) {
  234. tor_tls_log_one_error(tls, err, severity, domain, doing);
  235. }
  236. }
  237. /** Convert an errno (or a WSAerrno on windows) into a TOR_TLS_* error
  238. * code. */
  239. STATIC int
  240. tor_errno_to_tls_error(int e)
  241. {
  242. switch (e) {
  243. case SOCK_ERRNO(ECONNRESET): // most common
  244. return TOR_TLS_ERROR_CONNRESET;
  245. case SOCK_ERRNO(ETIMEDOUT):
  246. return TOR_TLS_ERROR_TIMEOUT;
  247. case SOCK_ERRNO(EHOSTUNREACH):
  248. case SOCK_ERRNO(ENETUNREACH):
  249. return TOR_TLS_ERROR_NO_ROUTE;
  250. case SOCK_ERRNO(ECONNREFUSED):
  251. return TOR_TLS_ERROR_CONNREFUSED; // least common
  252. default:
  253. return TOR_TLS_ERROR_MISC;
  254. }
  255. }
  256. /** Given a TOR_TLS_* error code, return a string equivalent. */
  257. const char *
  258. tor_tls_err_to_string(int err)
  259. {
  260. if (err >= 0)
  261. return "[Not an error.]";
  262. switch (err) {
  263. case TOR_TLS_ERROR_MISC: return "misc error";
  264. case TOR_TLS_ERROR_IO: return "unexpected close";
  265. case TOR_TLS_ERROR_CONNREFUSED: return "connection refused";
  266. case TOR_TLS_ERROR_CONNRESET: return "connection reset";
  267. case TOR_TLS_ERROR_NO_ROUTE: return "host unreachable";
  268. case TOR_TLS_ERROR_TIMEOUT: return "connection timed out";
  269. case TOR_TLS_CLOSE: return "closed";
  270. case TOR_TLS_WANTREAD: return "want to read";
  271. case TOR_TLS_WANTWRITE: return "want to write";
  272. default: return "(unknown error code)";
  273. }
  274. }
  275. #define CATCH_SYSCALL 1
  276. #define CATCH_ZERO 2
  277. /** Given a TLS object and the result of an SSL_* call, use
  278. * SSL_get_error to determine whether an error has occurred, and if so
  279. * which one. Return one of TOR_TLS_{DONE|WANTREAD|WANTWRITE|ERROR}.
  280. * If extra&CATCH_SYSCALL is true, return TOR_TLS_SYSCALL_ instead of
  281. * reporting syscall errors. If extra&CATCH_ZERO is true, return
  282. * TOR_TLS_ZERORETURN_ instead of reporting zero-return errors.
  283. *
  284. * If an error has occurred, log it at level <b>severity</b> and describe the
  285. * current action as <b>doing</b>.
  286. */
  287. STATIC int
  288. tor_tls_get_error(tor_tls_t *tls, int r, int extra,
  289. const char *doing, int severity, int domain)
  290. {
  291. int err = SSL_get_error(tls->ssl, r);
  292. int tor_error = TOR_TLS_ERROR_MISC;
  293. switch (err) {
  294. case SSL_ERROR_NONE:
  295. return TOR_TLS_DONE;
  296. case SSL_ERROR_WANT_READ:
  297. return TOR_TLS_WANTREAD;
  298. case SSL_ERROR_WANT_WRITE:
  299. return TOR_TLS_WANTWRITE;
  300. case SSL_ERROR_SYSCALL:
  301. if (extra&CATCH_SYSCALL)
  302. return TOR_TLS_SYSCALL_;
  303. if (r == 0) {
  304. tor_log(severity, LD_NET, "TLS error: unexpected close while %s (%s)",
  305. doing, SSL_state_string_long(tls->ssl));
  306. tor_error = TOR_TLS_ERROR_IO;
  307. } else {
  308. int e = tor_socket_errno(tls->socket);
  309. tor_log(severity, LD_NET,
  310. "TLS error: <syscall error while %s> (errno=%d: %s; state=%s)",
  311. doing, e, tor_socket_strerror(e),
  312. SSL_state_string_long(tls->ssl));
  313. tor_error = tor_errno_to_tls_error(e);
  314. }
  315. tls_log_errors(tls, severity, domain, doing);
  316. return tor_error;
  317. case SSL_ERROR_ZERO_RETURN:
  318. if (extra&CATCH_ZERO)
  319. return TOR_TLS_ZERORETURN_;
  320. tor_log(severity, LD_NET, "TLS connection closed while %s in state %s",
  321. doing, SSL_state_string_long(tls->ssl));
  322. tls_log_errors(tls, severity, domain, doing);
  323. return TOR_TLS_CLOSE;
  324. default:
  325. tls_log_errors(tls, severity, domain, doing);
  326. return TOR_TLS_ERROR_MISC;
  327. }
  328. }
  329. /** Initialize OpenSSL, unless it has already been initialized.
  330. */
  331. static void
  332. tor_tls_init(void)
  333. {
  334. check_no_tls_errors();
  335. if (!tls_library_is_initialized) {
  336. SSL_library_init();
  337. SSL_load_error_strings();
  338. #if (SIZEOF_VOID_P >= 8 && \
  339. OPENSSL_VERSION_NUMBER >= OPENSSL_V_SERIES(1,0,1))
  340. long version = SSLeay();
  341. /* LCOV_EXCL_START : we can't test these lines on the same machine */
  342. if (version >= OPENSSL_V_SERIES(1,0,1)) {
  343. /* Warn if we could *almost* be running with much faster ECDH.
  344. If we're built for a 64-bit target, using OpenSSL 1.0.1, but we
  345. don't have one of the built-in __uint128-based speedups, we are
  346. just one build operation away from an accelerated handshake.
  347. (We could be looking at OPENSSL_NO_EC_NISTP_64_GCC_128 instead of
  348. doing this test, but that gives compile-time options, not runtime
  349. behavior.)
  350. */
  351. EC_KEY *key = EC_KEY_new_by_curve_name(NID_X9_62_prime256v1);
  352. const EC_GROUP *g = key ? EC_KEY_get0_group(key) : NULL;
  353. const EC_METHOD *m = g ? EC_GROUP_method_of(g) : NULL;
  354. const int warn = (m == EC_GFp_simple_method() ||
  355. m == EC_GFp_mont_method() ||
  356. m == EC_GFp_nist_method());
  357. EC_KEY_free(key);
  358. if (warn)
  359. log_notice(LD_GENERAL, "We were built to run on a 64-bit CPU, with "
  360. "OpenSSL 1.0.1 or later, but with a version of OpenSSL "
  361. "that apparently lacks accelerated support for the NIST "
  362. "P-224 and P-256 groups. Building openssl with such "
  363. "support (using the enable-ec_nistp_64_gcc_128 option "
  364. "when configuring it) would make ECDH much faster.");
  365. }
  366. /* LCOV_EXCL_STOP */
  367. #endif
  368. tor_tls_allocate_tor_tls_object_ex_data_index();
  369. tls_library_is_initialized = 1;
  370. }
  371. }
  372. /** Free all global TLS structures. */
  373. void
  374. tor_tls_free_all(void)
  375. {
  376. check_no_tls_errors();
  377. if (server_tls_context) {
  378. tor_tls_context_t *ctx = server_tls_context;
  379. server_tls_context = NULL;
  380. tor_tls_context_decref(ctx);
  381. }
  382. if (client_tls_context) {
  383. tor_tls_context_t *ctx = client_tls_context;
  384. client_tls_context = NULL;
  385. tor_tls_context_decref(ctx);
  386. }
  387. }
  388. /** We need to give OpenSSL a callback to verify certificates. This is
  389. * it: We always accept peer certs and complete the handshake. We
  390. * don't validate them until later.
  391. */
  392. STATIC int
  393. always_accept_verify_cb(int preverify_ok,
  394. X509_STORE_CTX *x509_ctx)
  395. {
  396. (void) preverify_ok;
  397. (void) x509_ctx;
  398. return 1;
  399. }
  400. /** Return a newly allocated X509 name with commonName <b>cname</b>. */
  401. static X509_NAME *
  402. tor_x509_name_new(const char *cname)
  403. {
  404. int nid;
  405. X509_NAME *name;
  406. /* LCOV_EXCL_BR_START : these branches will only fail on OOM errors */
  407. if (!(name = X509_NAME_new()))
  408. return NULL;
  409. if ((nid = OBJ_txt2nid("commonName")) == NID_undef) goto error;
  410. if (!(X509_NAME_add_entry_by_NID(name, nid, MBSTRING_ASC,
  411. (unsigned char*)cname, -1, -1, 0)))
  412. goto error;
  413. /* LCOV_EXCL_BR_STOP */
  414. return name;
  415. error:
  416. /* LCOV_EXCL_START : these lines will only execute on out of memory errors*/
  417. X509_NAME_free(name);
  418. return NULL;
  419. /* LCOV_EXCL_STOP */
  420. }
  421. /** Generate and sign an X509 certificate with the public key <b>rsa</b>,
  422. * signed by the private key <b>rsa_sign</b>. The commonName of the
  423. * certificate will be <b>cname</b>; the commonName of the issuer will be
  424. * <b>cname_sign</b>. The cert will be valid for <b>cert_lifetime</b>
  425. * seconds, starting from some time in the past.
  426. *
  427. * Return a certificate on success, NULL on failure.
  428. */
  429. MOCK_IMPL(STATIC X509 *,
  430. tor_tls_create_certificate,(crypto_pk_t *rsa,
  431. crypto_pk_t *rsa_sign,
  432. const char *cname,
  433. const char *cname_sign,
  434. unsigned int cert_lifetime))
  435. {
  436. /* OpenSSL generates self-signed certificates with random 64-bit serial
  437. * numbers, so let's do that too. */
  438. #define SERIAL_NUMBER_SIZE 8
  439. time_t start_time, end_time;
  440. BIGNUM *serial_number = NULL;
  441. unsigned char serial_tmp[SERIAL_NUMBER_SIZE];
  442. EVP_PKEY *sign_pkey = NULL, *pkey=NULL;
  443. X509 *x509 = NULL;
  444. X509_NAME *name = NULL, *name_issuer=NULL;
  445. tor_tls_init();
  446. /* Make sure we're part-way through the certificate lifetime, rather
  447. * than having it start right now. Don't choose quite uniformly, since
  448. * then we might pick a time where we're about to expire. Lastly, be
  449. * sure to start on a day boundary. */
  450. time_t now = time(NULL);
  451. start_time = crypto_rand_time_range(now - cert_lifetime, now) + 2*24*3600;
  452. start_time -= start_time % (24*3600);
  453. tor_assert(rsa);
  454. tor_assert(cname);
  455. tor_assert(rsa_sign);
  456. tor_assert(cname_sign);
  457. if (!(sign_pkey = crypto_pk_get_evp_pkey_(rsa_sign,1)))
  458. goto error;
  459. if (!(pkey = crypto_pk_get_evp_pkey_(rsa,0)))
  460. goto error;
  461. if (!(x509 = X509_new()))
  462. goto error;
  463. if (!(X509_set_version(x509, 2)))
  464. goto error;
  465. { /* our serial number is 8 random bytes. */
  466. if (crypto_rand((char *)serial_tmp, sizeof(serial_tmp)) < 0)
  467. goto error;
  468. if (!(serial_number = BN_bin2bn(serial_tmp, sizeof(serial_tmp), NULL)))
  469. goto error;
  470. if (!(BN_to_ASN1_INTEGER(serial_number, X509_get_serialNumber(x509))))
  471. goto error;
  472. }
  473. if (!(name = tor_x509_name_new(cname)))
  474. goto error;
  475. if (!(X509_set_subject_name(x509, name)))
  476. goto error;
  477. if (!(name_issuer = tor_x509_name_new(cname_sign)))
  478. goto error;
  479. if (!(X509_set_issuer_name(x509, name_issuer)))
  480. goto error;
  481. if (!X509_time_adj(X509_get_notBefore(x509),0,&start_time))
  482. goto error;
  483. end_time = start_time + cert_lifetime;
  484. if (!X509_time_adj(X509_get_notAfter(x509),0,&end_time))
  485. goto error;
  486. if (!X509_set_pubkey(x509, pkey))
  487. goto error;
  488. if (!X509_sign(x509, sign_pkey, EVP_sha1()))
  489. goto error;
  490. goto done;
  491. error:
  492. if (x509) {
  493. X509_free(x509);
  494. x509 = NULL;
  495. }
  496. done:
  497. tls_log_errors(NULL, LOG_WARN, LD_NET, "generating certificate");
  498. if (sign_pkey)
  499. EVP_PKEY_free(sign_pkey);
  500. if (pkey)
  501. EVP_PKEY_free(pkey);
  502. if (serial_number)
  503. BN_clear_free(serial_number);
  504. if (name)
  505. X509_NAME_free(name);
  506. if (name_issuer)
  507. X509_NAME_free(name_issuer);
  508. return x509;
  509. #undef SERIAL_NUMBER_SIZE
  510. }
  511. /** List of ciphers that servers should select from when the client might be
  512. * claiming extra unsupported ciphers in order to avoid fingerprinting. */
  513. #define SERVER_CIPHER_LIST \
  514. (TLS1_TXT_DHE_RSA_WITH_AES_256_SHA ":" \
  515. TLS1_TXT_DHE_RSA_WITH_AES_128_SHA ":" \
  516. SSL3_TXT_EDH_RSA_DES_192_CBC3_SHA)
  517. /** List of ciphers that servers should select from when we actually have
  518. * our choice of what cipher to use. */
  519. const char UNRESTRICTED_SERVER_CIPHER_LIST[] =
  520. /* This list is autogenerated with the gen_server_ciphers.py script;
  521. * don't hand-edit it. */
  522. #ifdef TLS1_TXT_ECDHE_RSA_WITH_AES_256_GCM_SHA384
  523. TLS1_TXT_ECDHE_RSA_WITH_AES_256_GCM_SHA384 ":"
  524. #endif
  525. #ifdef TLS1_TXT_ECDHE_RSA_WITH_AES_128_GCM_SHA256
  526. TLS1_TXT_ECDHE_RSA_WITH_AES_128_GCM_SHA256 ":"
  527. #endif
  528. #ifdef TLS1_TXT_ECDHE_RSA_WITH_AES_256_SHA384
  529. TLS1_TXT_ECDHE_RSA_WITH_AES_256_SHA384 ":"
  530. #endif
  531. #ifdef TLS1_TXT_ECDHE_RSA_WITH_AES_128_SHA256
  532. TLS1_TXT_ECDHE_RSA_WITH_AES_128_SHA256 ":"
  533. #endif
  534. #ifdef TLS1_TXT_ECDHE_RSA_WITH_AES_256_CBC_SHA
  535. TLS1_TXT_ECDHE_RSA_WITH_AES_256_CBC_SHA ":"
  536. #endif
  537. #ifdef TLS1_TXT_ECDHE_RSA_WITH_AES_128_CBC_SHA
  538. TLS1_TXT_ECDHE_RSA_WITH_AES_128_CBC_SHA ":"
  539. #endif
  540. #ifdef TLS1_TXT_DHE_RSA_WITH_AES_256_GCM_SHA384
  541. TLS1_TXT_DHE_RSA_WITH_AES_256_GCM_SHA384 ":"
  542. #endif
  543. #ifdef TLS1_TXT_DHE_RSA_WITH_AES_128_GCM_SHA256
  544. TLS1_TXT_DHE_RSA_WITH_AES_128_GCM_SHA256 ":"
  545. #endif
  546. #ifdef TLS1_TXT_DHE_RSA_WITH_AES_256_SHA256
  547. TLS1_TXT_DHE_RSA_WITH_AES_256_SHA256 ":"
  548. #endif
  549. #ifdef TLS1_TXT_DHE_RSA_WITH_AES_128_SHA256
  550. TLS1_TXT_DHE_RSA_WITH_AES_128_SHA256 ":"
  551. #endif
  552. /* Required */
  553. TLS1_TXT_DHE_RSA_WITH_AES_256_SHA ":"
  554. /* Required */
  555. TLS1_TXT_DHE_RSA_WITH_AES_128_SHA ":"
  556. #ifdef TLS1_TXT_ECDHE_RSA_WITH_DES_192_CBC3_SHA
  557. TLS1_TXT_ECDHE_RSA_WITH_DES_192_CBC3_SHA ":"
  558. #endif
  559. /* Required */
  560. SSL3_TXT_EDH_RSA_DES_192_CBC3_SHA;
  561. /* Note: to set up your own private testing network with link crypto
  562. * disabled, set your Tors' cipher list to
  563. * (SSL3_TXT_RSA_NULL_SHA). If you do this, you won't be able to communicate
  564. * with any of the "real" Tors, though. */
  565. #define CIPHER(id, name) name ":"
  566. #define XCIPHER(id, name)
  567. /** List of ciphers that clients should advertise, omitting items that
  568. * our OpenSSL doesn't know about. */
  569. static const char CLIENT_CIPHER_LIST[] =
  570. #include "ciphers.inc"
  571. /* Tell it not to use SSLv2 ciphers, so that it can select an SSLv3 version
  572. * of any cipher we say. */
  573. "!SSLv2"
  574. ;
  575. #undef CIPHER
  576. #undef XCIPHER
  577. /** Free all storage held in <b>cert</b> */
  578. void
  579. tor_x509_cert_free(tor_x509_cert_t *cert)
  580. {
  581. if (! cert)
  582. return;
  583. if (cert->cert)
  584. X509_free(cert->cert);
  585. tor_free(cert->encoded);
  586. memwipe(cert, 0x03, sizeof(*cert));
  587. /* LCOV_EXCL_BR_START since cert will never be NULL here */
  588. tor_free(cert);
  589. /* LCOV_EXCL_BR_STOP */
  590. }
  591. /**
  592. * Allocate a new tor_x509_cert_t to hold the certificate "x509_cert".
  593. *
  594. * Steals a reference to x509_cert.
  595. */
  596. MOCK_IMPL(STATIC tor_x509_cert_t *,
  597. tor_x509_cert_new,(X509 *x509_cert))
  598. {
  599. tor_x509_cert_t *cert;
  600. EVP_PKEY *pkey;
  601. RSA *rsa;
  602. int length;
  603. unsigned char *buf = NULL;
  604. if (!x509_cert)
  605. return NULL;
  606. length = i2d_X509(x509_cert, &buf);
  607. cert = tor_malloc_zero(sizeof(tor_x509_cert_t));
  608. if (length <= 0 || buf == NULL) {
  609. /* LCOV_EXCL_START for the same reason as the exclusion above */
  610. tor_free(cert);
  611. log_err(LD_CRYPTO, "Couldn't get length of encoded x509 certificate");
  612. X509_free(x509_cert);
  613. return NULL;
  614. /* LCOV_EXCL_STOP */
  615. }
  616. cert->encoded_len = (size_t) length;
  617. cert->encoded = tor_malloc(length);
  618. memcpy(cert->encoded, buf, length);
  619. OPENSSL_free(buf);
  620. cert->cert = x509_cert;
  621. crypto_digest_all(&cert->cert_digests,
  622. (char*)cert->encoded, cert->encoded_len);
  623. if ((pkey = X509_get_pubkey(x509_cert)) &&
  624. (rsa = EVP_PKEY_get1_RSA(pkey))) {
  625. crypto_pk_t *pk = crypto_new_pk_from_rsa_(rsa);
  626. crypto_pk_get_all_digests(pk, &cert->pkey_digests);
  627. cert->pkey_digests_set = 1;
  628. crypto_pk_free(pk);
  629. EVP_PKEY_free(pkey);
  630. }
  631. return cert;
  632. }
  633. /** Read a DER-encoded X509 cert, of length exactly <b>certificate_len</b>,
  634. * from a <b>certificate</b>. Return a newly allocated tor_x509_cert_t on
  635. * success and NULL on failure. */
  636. tor_x509_cert_t *
  637. tor_x509_cert_decode(const uint8_t *certificate, size_t certificate_len)
  638. {
  639. X509 *x509;
  640. const unsigned char *cp = (const unsigned char *)certificate;
  641. tor_x509_cert_t *newcert;
  642. tor_assert(certificate);
  643. check_no_tls_errors();
  644. if (certificate_len > INT_MAX)
  645. goto err;
  646. x509 = d2i_X509(NULL, &cp, (int)certificate_len);
  647. if (!x509)
  648. goto err; /* Couldn't decode */
  649. if (cp - certificate != (int)certificate_len) {
  650. X509_free(x509);
  651. goto err; /* Didn't use all the bytes */
  652. }
  653. newcert = tor_x509_cert_new(x509);
  654. if (!newcert) {
  655. goto err;
  656. }
  657. if (newcert->encoded_len != certificate_len ||
  658. fast_memneq(newcert->encoded, certificate, certificate_len)) {
  659. /* Cert wasn't in DER */
  660. tor_x509_cert_free(newcert);
  661. goto err;
  662. }
  663. return newcert;
  664. err:
  665. tls_log_errors(NULL, LOG_INFO, LD_CRYPTO, "decoding a certificate");
  666. return NULL;
  667. }
  668. /** Set *<b>encoded_out</b> and *<b>size_out</b> to <b>cert</b>'s encoded DER
  669. * representation and length, respectively. */
  670. void
  671. tor_x509_cert_get_der(const tor_x509_cert_t *cert,
  672. const uint8_t **encoded_out, size_t *size_out)
  673. {
  674. tor_assert(cert);
  675. tor_assert(encoded_out);
  676. tor_assert(size_out);
  677. *encoded_out = cert->encoded;
  678. *size_out = cert->encoded_len;
  679. }
  680. /** Return a set of digests for the public key in <b>cert</b>, or NULL if this
  681. * cert's public key is not one we know how to take the digest of. */
  682. const digests_t *
  683. tor_x509_cert_get_id_digests(const tor_x509_cert_t *cert)
  684. {
  685. if (cert->pkey_digests_set)
  686. return &cert->pkey_digests;
  687. else
  688. return NULL;
  689. }
  690. /** Return a set of digests for the public key in <b>cert</b>. */
  691. const digests_t *
  692. tor_x509_cert_get_cert_digests(const tor_x509_cert_t *cert)
  693. {
  694. return &cert->cert_digests;
  695. }
  696. /** Remove a reference to <b>ctx</b>, and free it if it has no more
  697. * references. */
  698. static void
  699. tor_tls_context_decref(tor_tls_context_t *ctx)
  700. {
  701. tor_assert(ctx);
  702. if (--ctx->refcnt == 0) {
  703. SSL_CTX_free(ctx->ctx);
  704. tor_x509_cert_free(ctx->my_link_cert);
  705. tor_x509_cert_free(ctx->my_id_cert);
  706. tor_x509_cert_free(ctx->my_auth_cert);
  707. crypto_pk_free(ctx->link_key);
  708. crypto_pk_free(ctx->auth_key);
  709. /* LCOV_EXCL_BR_START since ctx will never be NULL here */
  710. tor_free(ctx);
  711. /* LCOV_EXCL_BR_STOP */
  712. }
  713. }
  714. /** Set *<b>link_cert_out</b> and *<b>id_cert_out</b> to the link certificate
  715. * and ID certificate that we're currently using for our V3 in-protocol
  716. * handshake's certificate chain. If <b>server</b> is true, provide the certs
  717. * that we use in server mode; otherwise, provide the certs that we use in
  718. * client mode. */
  719. int
  720. tor_tls_get_my_certs(int server,
  721. const tor_x509_cert_t **link_cert_out,
  722. const tor_x509_cert_t **id_cert_out)
  723. {
  724. tor_tls_context_t *ctx = server ? server_tls_context : client_tls_context;
  725. if (! ctx)
  726. return -1;
  727. if (link_cert_out)
  728. *link_cert_out = server ? ctx->my_link_cert : ctx->my_auth_cert;
  729. if (id_cert_out)
  730. *id_cert_out = ctx->my_id_cert;
  731. return 0;
  732. }
  733. /**
  734. * Return the authentication key that we use to authenticate ourselves as a
  735. * client in the V3 in-protocol handshake.
  736. */
  737. crypto_pk_t *
  738. tor_tls_get_my_client_auth_key(void)
  739. {
  740. if (! client_tls_context)
  741. return NULL;
  742. return client_tls_context->auth_key;
  743. }
  744. /**
  745. * Return a newly allocated copy of the public key that a certificate
  746. * certifies. Return NULL if the cert's key is not RSA.
  747. */
  748. crypto_pk_t *
  749. tor_tls_cert_get_key(tor_x509_cert_t *cert)
  750. {
  751. crypto_pk_t *result = NULL;
  752. EVP_PKEY *pkey = X509_get_pubkey(cert->cert);
  753. RSA *rsa;
  754. if (!pkey)
  755. return NULL;
  756. rsa = EVP_PKEY_get1_RSA(pkey);
  757. if (!rsa) {
  758. EVP_PKEY_free(pkey);
  759. return NULL;
  760. }
  761. result = crypto_new_pk_from_rsa_(rsa);
  762. EVP_PKEY_free(pkey);
  763. return result;
  764. }
  765. /** Return true iff the other side of <b>tls</b> has authenticated to us, and
  766. * the key certified in <b>cert</b> is the same as the key they used to do it.
  767. */
  768. MOCK_IMPL(int,
  769. tor_tls_cert_matches_key,(const tor_tls_t *tls, const tor_x509_cert_t *cert))
  770. {
  771. X509 *peercert = SSL_get_peer_certificate(tls->ssl);
  772. EVP_PKEY *link_key = NULL, *cert_key = NULL;
  773. int result;
  774. if (!peercert)
  775. return 0;
  776. link_key = X509_get_pubkey(peercert);
  777. cert_key = X509_get_pubkey(cert->cert);
  778. result = link_key && cert_key && EVP_PKEY_cmp(cert_key, link_key) == 1;
  779. X509_free(peercert);
  780. if (link_key)
  781. EVP_PKEY_free(link_key);
  782. if (cert_key)
  783. EVP_PKEY_free(cert_key);
  784. return result;
  785. }
  786. /** Check whether <b>cert</b> is well-formed, currently live, and correctly
  787. * signed by the public key in <b>signing_cert</b>. If <b>check_rsa_1024</b>,
  788. * make sure that it has an RSA key with 1024 bits; otherwise, just check that
  789. * the key is long enough. Return 1 if the cert is good, and 0 if it's bad or
  790. * we couldn't check it. */
  791. int
  792. tor_tls_cert_is_valid(int severity,
  793. const tor_x509_cert_t *cert,
  794. const tor_x509_cert_t *signing_cert,
  795. int check_rsa_1024)
  796. {
  797. check_no_tls_errors();
  798. EVP_PKEY *cert_key;
  799. int r, key_ok = 0;
  800. if (!signing_cert)
  801. goto bad;
  802. EVP_PKEY *signing_key = X509_get_pubkey(signing_cert->cert);
  803. if (!signing_key)
  804. goto bad;
  805. r = X509_verify(cert->cert, signing_key);
  806. EVP_PKEY_free(signing_key);
  807. if (r <= 0)
  808. goto bad;
  809. /* okay, the signature checked out right. Now let's check the check the
  810. * lifetime. */
  811. if (check_cert_lifetime_internal(severity, cert->cert,
  812. 48*60*60, 30*24*60*60) < 0)
  813. goto bad;
  814. cert_key = X509_get_pubkey(cert->cert);
  815. if (check_rsa_1024 && cert_key) {
  816. RSA *rsa = EVP_PKEY_get1_RSA(cert_key);
  817. if (rsa && BN_num_bits(rsa->n) == 1024)
  818. key_ok = 1;
  819. if (rsa)
  820. RSA_free(rsa);
  821. } else if (cert_key) {
  822. int min_bits = 1024;
  823. #ifdef EVP_PKEY_EC
  824. if (EVP_PKEY_type(cert_key->type) == EVP_PKEY_EC)
  825. min_bits = 128;
  826. #endif
  827. if (EVP_PKEY_bits(cert_key) >= min_bits)
  828. key_ok = 1;
  829. }
  830. EVP_PKEY_free(cert_key);
  831. if (!key_ok)
  832. goto bad;
  833. /* XXXX compare DNs or anything? */
  834. return 1;
  835. bad:
  836. tls_log_errors(NULL, LOG_INFO, LD_CRYPTO, "checking a certificate");
  837. return 0;
  838. }
  839. /** Increase the reference count of <b>ctx</b>. */
  840. static void
  841. tor_tls_context_incref(tor_tls_context_t *ctx)
  842. {
  843. ++ctx->refcnt;
  844. }
  845. /** Create new global client and server TLS contexts.
  846. *
  847. * If <b>server_identity</b> is NULL, this will not generate a server
  848. * TLS context. If TOR_TLS_CTX_IS_PUBLIC_SERVER is set in <b>flags</b>, use
  849. * the same TLS context for incoming and outgoing connections, and
  850. * ignore <b>client_identity</b>. If one of TOR_TLS_CTX_USE_ECDHE_P{224,256}
  851. * is set in <b>flags</b>, use that ECDHE group if possible; otherwise use
  852. * the default ECDHE group. */
  853. int
  854. tor_tls_context_init(unsigned flags,
  855. crypto_pk_t *client_identity,
  856. crypto_pk_t *server_identity,
  857. unsigned int key_lifetime)
  858. {
  859. int rv1 = 0;
  860. int rv2 = 0;
  861. const int is_public_server = flags & TOR_TLS_CTX_IS_PUBLIC_SERVER;
  862. check_no_tls_errors();
  863. if (is_public_server) {
  864. tor_tls_context_t *new_ctx;
  865. tor_tls_context_t *old_ctx;
  866. tor_assert(server_identity != NULL);
  867. rv1 = tor_tls_context_init_one(&server_tls_context,
  868. server_identity,
  869. key_lifetime, flags, 0);
  870. if (rv1 >= 0) {
  871. new_ctx = server_tls_context;
  872. tor_tls_context_incref(new_ctx);
  873. old_ctx = client_tls_context;
  874. client_tls_context = new_ctx;
  875. if (old_ctx != NULL) {
  876. tor_tls_context_decref(old_ctx);
  877. }
  878. }
  879. } else {
  880. if (server_identity != NULL) {
  881. rv1 = tor_tls_context_init_one(&server_tls_context,
  882. server_identity,
  883. key_lifetime,
  884. flags,
  885. 0);
  886. } else {
  887. tor_tls_context_t *old_ctx = server_tls_context;
  888. server_tls_context = NULL;
  889. if (old_ctx != NULL) {
  890. tor_tls_context_decref(old_ctx);
  891. }
  892. }
  893. rv2 = tor_tls_context_init_one(&client_tls_context,
  894. client_identity,
  895. key_lifetime,
  896. flags,
  897. 1);
  898. }
  899. tls_log_errors(NULL, LOG_WARN, LD_CRYPTO, "constructing a TLS context");
  900. return MIN(rv1, rv2);
  901. }
  902. /** Create a new global TLS context.
  903. *
  904. * You can call this function multiple times. Each time you call it,
  905. * it generates new certificates; all new connections will use
  906. * the new SSL context.
  907. */
  908. STATIC int
  909. tor_tls_context_init_one(tor_tls_context_t **ppcontext,
  910. crypto_pk_t *identity,
  911. unsigned int key_lifetime,
  912. unsigned int flags,
  913. int is_client)
  914. {
  915. tor_tls_context_t *new_ctx = tor_tls_context_new(identity,
  916. key_lifetime,
  917. flags,
  918. is_client);
  919. tor_tls_context_t *old_ctx = *ppcontext;
  920. if (new_ctx != NULL) {
  921. *ppcontext = new_ctx;
  922. /* Free the old context if one existed. */
  923. if (old_ctx != NULL) {
  924. /* This is safe even if there are open connections: we reference-
  925. * count tor_tls_context_t objects. */
  926. tor_tls_context_decref(old_ctx);
  927. }
  928. }
  929. return ((new_ctx != NULL) ? 0 : -1);
  930. }
  931. /** The group we should use for ecdhe when none was selected. */
  932. #define NID_tor_default_ecdhe_group NID_X9_62_prime256v1
  933. /** Create a new TLS context for use with Tor TLS handshakes.
  934. * <b>identity</b> should be set to the identity key used to sign the
  935. * certificate.
  936. */
  937. STATIC tor_tls_context_t *
  938. tor_tls_context_new(crypto_pk_t *identity, unsigned int key_lifetime,
  939. unsigned flags, int is_client)
  940. {
  941. crypto_pk_t *rsa = NULL, *rsa_auth = NULL;
  942. EVP_PKEY *pkey = NULL;
  943. tor_tls_context_t *result = NULL;
  944. X509 *cert = NULL, *idcert = NULL, *authcert = NULL;
  945. char *nickname = NULL, *nn2 = NULL;
  946. tor_tls_init();
  947. nickname = crypto_random_hostname(8, 20, "www.", ".net");
  948. #ifdef DISABLE_V3_LINKPROTO_SERVERSIDE
  949. nn2 = crypto_random_hostname(8, 20, "www.", ".net");
  950. #else
  951. nn2 = crypto_random_hostname(8, 20, "www.", ".com");
  952. #endif
  953. /* Generate short-term RSA key for use with TLS. */
  954. if (!(rsa = crypto_pk_new()))
  955. goto error;
  956. if (crypto_pk_generate_key(rsa)<0)
  957. goto error;
  958. if (!is_client) {
  959. /* Generate short-term RSA key for use in the in-protocol ("v3")
  960. * authentication handshake. */
  961. if (!(rsa_auth = crypto_pk_new()))
  962. goto error;
  963. if (crypto_pk_generate_key(rsa_auth)<0)
  964. goto error;
  965. /* Create a link certificate signed by identity key. */
  966. cert = tor_tls_create_certificate(rsa, identity, nickname, nn2,
  967. key_lifetime);
  968. /* Create self-signed certificate for identity key. */
  969. idcert = tor_tls_create_certificate(identity, identity, nn2, nn2,
  970. IDENTITY_CERT_LIFETIME);
  971. /* Create an authentication certificate signed by identity key. */
  972. authcert = tor_tls_create_certificate(rsa_auth, identity, nickname, nn2,
  973. key_lifetime);
  974. if (!cert || !idcert || !authcert) {
  975. log_warn(LD_CRYPTO, "Error creating certificate");
  976. goto error;
  977. }
  978. }
  979. result = tor_malloc_zero(sizeof(tor_tls_context_t));
  980. result->refcnt = 1;
  981. if (!is_client) {
  982. result->my_link_cert = tor_x509_cert_new(X509_dup(cert));
  983. result->my_id_cert = tor_x509_cert_new(X509_dup(idcert));
  984. result->my_auth_cert = tor_x509_cert_new(X509_dup(authcert));
  985. if (!result->my_link_cert || !result->my_id_cert || !result->my_auth_cert)
  986. goto error;
  987. result->link_key = crypto_pk_dup_key(rsa);
  988. result->auth_key = crypto_pk_dup_key(rsa_auth);
  989. }
  990. #if 0
  991. /* Tell OpenSSL to only use TLS1. This may have subtly different results
  992. * from SSLv23_method() with SSLv2 and SSLv3 disabled, so we need to do some
  993. * investigation before we consider adjusting it. It should be compatible
  994. * with existing Tors. */
  995. if (!(result->ctx = SSL_CTX_new(TLSv1_method())))
  996. goto error;
  997. #endif
  998. /* Tell OpenSSL to use TLS 1.0 or later but not SSL2 or SSL3. */
  999. #ifdef HAVE_TLS_METHOD
  1000. if (!(result->ctx = SSL_CTX_new(TLS_method())))
  1001. goto error;
  1002. #else
  1003. if (!(result->ctx = SSL_CTX_new(SSLv23_method())))
  1004. goto error;
  1005. #endif
  1006. SSL_CTX_set_options(result->ctx, SSL_OP_NO_SSLv2);
  1007. SSL_CTX_set_options(result->ctx, SSL_OP_NO_SSLv3);
  1008. /* Prefer the server's ordering of ciphers: the client's ordering has
  1009. * historically been chosen for fingerprinting resistance. */
  1010. SSL_CTX_set_options(result->ctx, SSL_OP_CIPHER_SERVER_PREFERENCE);
  1011. /* Disable TLS1.1 and TLS1.2 if they exist. We need to do this to
  1012. * workaround a bug present in all OpenSSL 1.0.1 versions (as of 1
  1013. * June 2012), wherein renegotiating while using one of these TLS
  1014. * protocols will cause the client to send a TLS 1.0 ServerHello
  1015. * rather than a ServerHello written with the appropriate protocol
  1016. * version. Once some version of OpenSSL does TLS1.1 and TLS1.2
  1017. * renegotiation properly, we can turn them back on when built with
  1018. * that version. */
  1019. #if OPENSSL_VERSION_NUMBER < OPENSSL_V(1,0,1,'e')
  1020. #ifdef SSL_OP_NO_TLSv1_2
  1021. SSL_CTX_set_options(result->ctx, SSL_OP_NO_TLSv1_2);
  1022. #endif
  1023. #ifdef SSL_OP_NO_TLSv1_1
  1024. SSL_CTX_set_options(result->ctx, SSL_OP_NO_TLSv1_1);
  1025. #endif
  1026. #endif
  1027. /* Disable TLS tickets if they're supported. We never want to use them;
  1028. * using them can make our perfect forward secrecy a little worse, *and*
  1029. * create an opportunity to fingerprint us (since it's unusual to use them
  1030. * with TLS sessions turned off).
  1031. *
  1032. * In 0.2.4, clients advertise support for them though, to avoid a TLS
  1033. * distinguishability vector. This can give us worse PFS, though, if we
  1034. * get a server that doesn't set SSL_OP_NO_TICKET. With luck, there will
  1035. * be few such servers by the time 0.2.4 is more stable.
  1036. */
  1037. #ifdef SSL_OP_NO_TICKET
  1038. if (! is_client) {
  1039. SSL_CTX_set_options(result->ctx, SSL_OP_NO_TICKET);
  1040. }
  1041. #endif
  1042. SSL_CTX_set_options(result->ctx, SSL_OP_SINGLE_DH_USE);
  1043. SSL_CTX_set_options(result->ctx, SSL_OP_SINGLE_ECDH_USE);
  1044. #ifdef SSL_OP_NO_SESSION_RESUMPTION_ON_RENEGOTIATION
  1045. SSL_CTX_set_options(result->ctx,
  1046. SSL_OP_NO_SESSION_RESUMPTION_ON_RENEGOTIATION);
  1047. #endif
  1048. /* Yes, we know what we are doing here. No, we do not treat a renegotiation
  1049. * as authenticating any earlier-received data.
  1050. */
  1051. {
  1052. SSL_CTX_set_options(result->ctx,
  1053. SSL_OP_ALLOW_UNSAFE_LEGACY_RENEGOTIATION);
  1054. }
  1055. #ifdef SSL_OP_NO_COMPRESSION
  1056. SSL_CTX_set_options(result->ctx, SSL_OP_NO_COMPRESSION);
  1057. #endif
  1058. #if OPENSSL_VERSION_NUMBER < OPENSSL_V_SERIES(1,1,0)
  1059. #ifndef OPENSSL_NO_COMP
  1060. /* Don't actually allow compression; it uses ram and time, but the data
  1061. * we transmit is all encrypted anyway. */
  1062. if (result->ctx->comp_methods)
  1063. result->ctx->comp_methods = NULL;
  1064. #endif
  1065. #endif
  1066. #ifdef SSL_MODE_RELEASE_BUFFERS
  1067. SSL_CTX_set_mode(result->ctx, SSL_MODE_RELEASE_BUFFERS);
  1068. #endif
  1069. if (! is_client) {
  1070. if (cert && !SSL_CTX_use_certificate(result->ctx,cert))
  1071. goto error;
  1072. X509_free(cert); /* We just added a reference to cert. */
  1073. cert=NULL;
  1074. if (idcert) {
  1075. X509_STORE *s = SSL_CTX_get_cert_store(result->ctx);
  1076. tor_assert(s);
  1077. X509_STORE_add_cert(s, idcert);
  1078. X509_free(idcert); /* The context now owns the reference to idcert */
  1079. idcert = NULL;
  1080. }
  1081. }
  1082. SSL_CTX_set_session_cache_mode(result->ctx, SSL_SESS_CACHE_OFF);
  1083. if (!is_client) {
  1084. tor_assert(rsa);
  1085. if (!(pkey = crypto_pk_get_evp_pkey_(rsa,1)))
  1086. goto error;
  1087. if (!SSL_CTX_use_PrivateKey(result->ctx, pkey))
  1088. goto error;
  1089. EVP_PKEY_free(pkey);
  1090. pkey = NULL;
  1091. if (!SSL_CTX_check_private_key(result->ctx))
  1092. goto error;
  1093. }
  1094. {
  1095. crypto_dh_t *dh = crypto_dh_new(DH_TYPE_TLS);
  1096. tor_assert(dh);
  1097. SSL_CTX_set_tmp_dh(result->ctx, crypto_dh_get_dh_(dh));
  1098. crypto_dh_free(dh);
  1099. }
  1100. if (! is_client) {
  1101. int nid;
  1102. EC_KEY *ec_key;
  1103. if (flags & TOR_TLS_CTX_USE_ECDHE_P224)
  1104. nid = NID_secp224r1;
  1105. else if (flags & TOR_TLS_CTX_USE_ECDHE_P256)
  1106. nid = NID_X9_62_prime256v1;
  1107. else
  1108. nid = NID_tor_default_ecdhe_group;
  1109. /* Use P-256 for ECDHE. */
  1110. ec_key = EC_KEY_new_by_curve_name(nid);
  1111. if (ec_key != NULL) /*XXXX Handle errors? */
  1112. SSL_CTX_set_tmp_ecdh(result->ctx, ec_key);
  1113. EC_KEY_free(ec_key);
  1114. }
  1115. SSL_CTX_set_verify(result->ctx, SSL_VERIFY_PEER,
  1116. always_accept_verify_cb);
  1117. /* let us realloc bufs that we're writing from */
  1118. SSL_CTX_set_mode(result->ctx, SSL_MODE_ACCEPT_MOVING_WRITE_BUFFER);
  1119. if (rsa)
  1120. crypto_pk_free(rsa);
  1121. if (rsa_auth)
  1122. crypto_pk_free(rsa_auth);
  1123. X509_free(authcert);
  1124. tor_free(nickname);
  1125. tor_free(nn2);
  1126. return result;
  1127. error:
  1128. tls_log_errors(NULL, LOG_WARN, LD_NET, "creating TLS context");
  1129. tor_free(nickname);
  1130. tor_free(nn2);
  1131. if (pkey)
  1132. EVP_PKEY_free(pkey);
  1133. if (rsa)
  1134. crypto_pk_free(rsa);
  1135. if (rsa_auth)
  1136. crypto_pk_free(rsa_auth);
  1137. if (result)
  1138. tor_tls_context_decref(result);
  1139. if (cert)
  1140. X509_free(cert);
  1141. if (idcert)
  1142. X509_free(idcert);
  1143. if (authcert)
  1144. X509_free(authcert);
  1145. return NULL;
  1146. }
  1147. /** Invoked when a TLS state changes: log the change at severity 'debug' */
  1148. STATIC void
  1149. tor_tls_debug_state_callback(const SSL *ssl, int type, int val)
  1150. {
  1151. /* LCOV_EXCL_START since this depends on whether debug is captured or not */
  1152. log_debug(LD_HANDSHAKE, "SSL %p is now in state %s [type=%d,val=%d].",
  1153. ssl, SSL_state_string_long(ssl), type, val);
  1154. /* LCOV_EXCL_STOP */
  1155. }
  1156. /* Return the name of the negotiated ciphersuite in use on <b>tls</b> */
  1157. const char *
  1158. tor_tls_get_ciphersuite_name(tor_tls_t *tls)
  1159. {
  1160. return SSL_get_cipher(tls->ssl);
  1161. }
  1162. #ifdef V2_HANDSHAKE_SERVER
  1163. /* Here's the old V2 cipher list we sent from 0.2.1.1-alpha up to
  1164. * 0.2.3.17-beta. If a client is using this list, we can't believe the ciphers
  1165. * that it claims to support. We'll prune this list to remove the ciphers
  1166. * *we* don't recognize. */
  1167. STATIC uint16_t v2_cipher_list[] = {
  1168. 0xc00a, /* TLS1_TXT_ECDHE_ECDSA_WITH_AES_256_CBC_SHA */
  1169. 0xc014, /* TLS1_TXT_ECDHE_RSA_WITH_AES_256_CBC_SHA */
  1170. 0x0039, /* TLS1_TXT_DHE_RSA_WITH_AES_256_SHA */
  1171. 0x0038, /* TLS1_TXT_DHE_DSS_WITH_AES_256_SHA */
  1172. 0xc00f, /* TLS1_TXT_ECDH_RSA_WITH_AES_256_CBC_SHA */
  1173. 0xc005, /* TLS1_TXT_ECDH_ECDSA_WITH_AES_256_CBC_SHA */
  1174. 0x0035, /* TLS1_TXT_RSA_WITH_AES_256_SHA */
  1175. 0xc007, /* TLS1_TXT_ECDHE_ECDSA_WITH_RC4_128_SHA */
  1176. 0xc009, /* TLS1_TXT_ECDHE_ECDSA_WITH_AES_128_CBC_SHA */
  1177. 0xc011, /* TLS1_TXT_ECDHE_RSA_WITH_RC4_128_SHA */
  1178. 0xc013, /* TLS1_TXT_ECDHE_RSA_WITH_AES_128_CBC_SHA */
  1179. 0x0033, /* TLS1_TXT_DHE_RSA_WITH_AES_128_SHA */
  1180. 0x0032, /* TLS1_TXT_DHE_DSS_WITH_AES_128_SHA */
  1181. 0xc00c, /* TLS1_TXT_ECDH_RSA_WITH_RC4_128_SHA */
  1182. 0xc00e, /* TLS1_TXT_ECDH_RSA_WITH_AES_128_CBC_SHA */
  1183. 0xc002, /* TLS1_TXT_ECDH_ECDSA_WITH_RC4_128_SHA */
  1184. 0xc004, /* TLS1_TXT_ECDH_ECDSA_WITH_AES_128_CBC_SHA */
  1185. 0x0004, /* SSL3_TXT_RSA_RC4_128_MD5 */
  1186. 0x0005, /* SSL3_TXT_RSA_RC4_128_SHA */
  1187. 0x002f, /* TLS1_TXT_RSA_WITH_AES_128_SHA */
  1188. 0xc008, /* TLS1_TXT_ECDHE_ECDSA_WITH_DES_192_CBC3_SHA */
  1189. 0xc012, /* TLS1_TXT_ECDHE_RSA_WITH_DES_192_CBC3_SHA */
  1190. 0x0016, /* SSL3_TXT_EDH_RSA_DES_192_CBC3_SHA */
  1191. 0x0013, /* SSL3_TXT_EDH_DSS_DES_192_CBC3_SHA */
  1192. 0xc00d, /* TLS1_TXT_ECDH_RSA_WITH_DES_192_CBC3_SHA */
  1193. 0xc003, /* TLS1_TXT_ECDH_ECDSA_WITH_DES_192_CBC3_SHA */
  1194. 0xfeff, /* SSL3_TXT_RSA_FIPS_WITH_3DES_EDE_CBC_SHA */
  1195. 0x000a, /* SSL3_TXT_RSA_DES_192_CBC3_SHA */
  1196. 0
  1197. };
  1198. /** Have we removed the unrecognized ciphers from v2_cipher_list yet? */
  1199. static int v2_cipher_list_pruned = 0;
  1200. /** Return 0 if <b>m</b> does not support the cipher with ID <b>cipher</b>;
  1201. * return 1 if it does support it, or if we have no way to tell. */
  1202. STATIC int
  1203. find_cipher_by_id(const SSL *ssl, const SSL_METHOD *m, uint16_t cipher)
  1204. {
  1205. const SSL_CIPHER *c;
  1206. #ifdef HAVE_SSL_CIPHER_FIND
  1207. {
  1208. unsigned char cipherid[3];
  1209. tor_assert(ssl);
  1210. set_uint16(cipherid, htons(cipher));
  1211. cipherid[2] = 0; /* If ssl23_get_cipher_by_char finds no cipher starting
  1212. * with a two-byte 'cipherid', it may look for a v2
  1213. * cipher with the appropriate 3 bytes. */
  1214. c = SSL_CIPHER_find((SSL*)ssl, cipherid);
  1215. if (c)
  1216. tor_assert((SSL_CIPHER_get_id(c) & 0xffff) == cipher);
  1217. return c != NULL;
  1218. }
  1219. #elif defined(HAVE_STRUCT_SSL_METHOD_ST_GET_CIPHER_BY_CHAR)
  1220. if (m && m->get_cipher_by_char) {
  1221. unsigned char cipherid[3];
  1222. set_uint16(cipherid, htons(cipher));
  1223. cipherid[2] = 0; /* If ssl23_get_cipher_by_char finds no cipher starting
  1224. * with a two-byte 'cipherid', it may look for a v2
  1225. * cipher with the appropriate 3 bytes. */
  1226. c = m->get_cipher_by_char(cipherid);
  1227. if (c)
  1228. tor_assert((c->id & 0xffff) == cipher);
  1229. return c != NULL;
  1230. } else
  1231. #endif
  1232. #if OPENSSL_VERSION_NUMBER < OPENSSL_V_SERIES(1,1,0)
  1233. if (m && m->get_cipher && m->num_ciphers) {
  1234. /* It would seem that some of the "let's-clean-up-openssl" forks have
  1235. * removed the get_cipher_by_char function. Okay, so now you get a
  1236. * quadratic search.
  1237. */
  1238. int i;
  1239. for (i = 0; i < m->num_ciphers(); ++i) {
  1240. c = m->get_cipher(i);
  1241. if (c && (c->id & 0xffff) == cipher) {
  1242. return 1;
  1243. }
  1244. }
  1245. return 0;
  1246. }
  1247. #endif
  1248. (void) ssl;
  1249. (void) m;
  1250. (void) cipher;
  1251. return 1; /* No way to search */
  1252. }
  1253. /** Remove from v2_cipher_list every cipher that we don't support, so that
  1254. * comparing v2_cipher_list to a client's cipher list will give a sensible
  1255. * result. */
  1256. static void
  1257. prune_v2_cipher_list(const SSL *ssl)
  1258. {
  1259. uint16_t *inp, *outp;
  1260. #ifdef HAVE_TLS_METHOD
  1261. const SSL_METHOD *m = TLS_method();
  1262. #else
  1263. const SSL_METHOD *m = SSLv23_method();
  1264. #endif
  1265. inp = outp = v2_cipher_list;
  1266. while (*inp) {
  1267. if (find_cipher_by_id(ssl, m, *inp)) {
  1268. *outp++ = *inp++;
  1269. } else {
  1270. inp++;
  1271. }
  1272. }
  1273. *outp = 0;
  1274. v2_cipher_list_pruned = 1;
  1275. }
  1276. /** Examine the client cipher list in <b>ssl</b>, and determine what kind of
  1277. * client it is. Return one of CIPHERS_ERR, CIPHERS_V1, CIPHERS_V2,
  1278. * CIPHERS_UNRESTRICTED.
  1279. **/
  1280. STATIC int
  1281. tor_tls_classify_client_ciphers(const SSL *ssl,
  1282. STACK_OF(SSL_CIPHER) *peer_ciphers)
  1283. {
  1284. int i, res;
  1285. tor_tls_t *tor_tls;
  1286. if (PREDICT_UNLIKELY(!v2_cipher_list_pruned))
  1287. prune_v2_cipher_list(ssl);
  1288. tor_tls = tor_tls_get_by_ssl(ssl);
  1289. if (tor_tls && tor_tls->client_cipher_list_type)
  1290. return tor_tls->client_cipher_list_type;
  1291. /* If we reached this point, we just got a client hello. See if there is
  1292. * a cipher list. */
  1293. if (!peer_ciphers) {
  1294. log_info(LD_NET, "No ciphers on session");
  1295. res = CIPHERS_ERR;
  1296. goto done;
  1297. }
  1298. /* Now we need to see if there are any ciphers whose presence means we're
  1299. * dealing with an updated Tor. */
  1300. for (i = 0; i < sk_SSL_CIPHER_num(peer_ciphers); ++i) {
  1301. SSL_CIPHER *cipher = sk_SSL_CIPHER_value(peer_ciphers, i);
  1302. const char *ciphername = SSL_CIPHER_get_name(cipher);
  1303. if (strcmp(ciphername, TLS1_TXT_DHE_RSA_WITH_AES_128_SHA) &&
  1304. strcmp(ciphername, TLS1_TXT_DHE_RSA_WITH_AES_256_SHA) &&
  1305. strcmp(ciphername, SSL3_TXT_EDH_RSA_DES_192_CBC3_SHA) &&
  1306. strcmp(ciphername, "(NONE)")) {
  1307. log_debug(LD_NET, "Got a non-version-1 cipher called '%s'", ciphername);
  1308. // return 1;
  1309. goto v2_or_higher;
  1310. }
  1311. }
  1312. res = CIPHERS_V1;
  1313. goto done;
  1314. v2_or_higher:
  1315. {
  1316. const uint16_t *v2_cipher = v2_cipher_list;
  1317. for (i = 0; i < sk_SSL_CIPHER_num(peer_ciphers); ++i) {
  1318. SSL_CIPHER *cipher = sk_SSL_CIPHER_value(peer_ciphers, i);
  1319. uint16_t id = SSL_CIPHER_get_id(cipher) & 0xffff;
  1320. if (id == 0x00ff) /* extended renegotiation indicator. */
  1321. continue;
  1322. if (!id || id != *v2_cipher) {
  1323. res = CIPHERS_UNRESTRICTED;
  1324. goto dump_ciphers;
  1325. }
  1326. ++v2_cipher;
  1327. }
  1328. if (*v2_cipher != 0) {
  1329. res = CIPHERS_UNRESTRICTED;
  1330. goto dump_ciphers;
  1331. }
  1332. res = CIPHERS_V2;
  1333. }
  1334. dump_ciphers:
  1335. {
  1336. smartlist_t *elts = smartlist_new();
  1337. char *s;
  1338. for (i = 0; i < sk_SSL_CIPHER_num(peer_ciphers); ++i) {
  1339. SSL_CIPHER *cipher = sk_SSL_CIPHER_value(peer_ciphers, i);
  1340. const char *ciphername = SSL_CIPHER_get_name(cipher);
  1341. smartlist_add(elts, (char*)ciphername);
  1342. }
  1343. s = smartlist_join_strings(elts, ":", 0, NULL);
  1344. log_debug(LD_NET, "Got a %s V2/V3 cipher list from %s. It is: '%s'",
  1345. (res == CIPHERS_V2) ? "fictitious" : "real", ADDR(tor_tls), s);
  1346. tor_free(s);
  1347. smartlist_free(elts);
  1348. }
  1349. done:
  1350. if (tor_tls)
  1351. return tor_tls->client_cipher_list_type = res;
  1352. return res;
  1353. }
  1354. /** Return true iff the cipher list suggested by the client for <b>ssl</b> is
  1355. * a list that indicates that the client knows how to do the v2 TLS connection
  1356. * handshake. */
  1357. STATIC int
  1358. tor_tls_client_is_using_v2_ciphers(const SSL *ssl)
  1359. {
  1360. STACK_OF(SSL_CIPHER) *ciphers;
  1361. #ifdef HAVE_SSL_GET_CLIENT_CIPHERS
  1362. ciphers = SSL_get_client_ciphers(ssl);
  1363. #else
  1364. SSL_SESSION *session;
  1365. if (!(session = SSL_get_session((SSL *)ssl))) {
  1366. log_info(LD_NET, "No session on TLS?");
  1367. return CIPHERS_ERR;
  1368. }
  1369. ciphers = session->ciphers;
  1370. #endif
  1371. return tor_tls_classify_client_ciphers(ssl, ciphers) >= CIPHERS_V2;
  1372. }
  1373. /** Invoked when we're accepting a connection on <b>ssl</b>, and the connection
  1374. * changes state. We use this:
  1375. * <ul><li>To alter the state of the handshake partway through, so we
  1376. * do not send or request extra certificates in v2 handshakes.</li>
  1377. * <li>To detect renegotiation</li></ul>
  1378. */
  1379. STATIC void
  1380. tor_tls_server_info_callback(const SSL *ssl, int type, int val)
  1381. {
  1382. tor_tls_t *tls;
  1383. int ssl_state;
  1384. (void) val;
  1385. tor_tls_debug_state_callback(ssl, type, val);
  1386. if (type != SSL_CB_ACCEPT_LOOP)
  1387. return;
  1388. ssl_state = SSL_state(ssl);
  1389. if ((ssl_state != SSL3_ST_SW_SRVR_HELLO_A) &&
  1390. (ssl_state != SSL3_ST_SW_SRVR_HELLO_B))
  1391. return;
  1392. tls = tor_tls_get_by_ssl(ssl);
  1393. if (tls) {
  1394. /* Check whether we're watching for renegotiates. If so, this is one! */
  1395. if (tls->negotiated_callback)
  1396. tls->got_renegotiate = 1;
  1397. if (tls->server_handshake_count < 127) /*avoid any overflow possibility*/
  1398. ++tls->server_handshake_count;
  1399. } else {
  1400. log_warn(LD_BUG, "Couldn't look up the tls for an SSL*. How odd!");
  1401. return;
  1402. }
  1403. /* Now check the cipher list. */
  1404. if (tor_tls_client_is_using_v2_ciphers(ssl)) {
  1405. if (tls->wasV2Handshake)
  1406. return; /* We already turned this stuff off for the first handshake;
  1407. * This is a renegotiation. */
  1408. /* Yes, we're casting away the const from ssl. This is very naughty of us.
  1409. * Let's hope openssl doesn't notice! */
  1410. /* Set SSL_MODE_NO_AUTO_CHAIN to keep from sending back any extra certs. */
  1411. SSL_set_mode((SSL*) ssl, SSL_MODE_NO_AUTO_CHAIN);
  1412. /* Don't send a hello request. */
  1413. SSL_set_verify((SSL*) ssl, SSL_VERIFY_NONE, NULL);
  1414. if (tls) {
  1415. tls->wasV2Handshake = 1;
  1416. } else {
  1417. /* LCOV_EXCL_START this line is not reachable */
  1418. log_warn(LD_BUG, "Couldn't look up the tls for an SSL*. How odd!");
  1419. /* LCOV_EXCL_STOP */
  1420. }
  1421. }
  1422. }
  1423. #endif
  1424. /** Callback to get invoked on a server after we've read the list of ciphers
  1425. * the client supports, but before we pick our own ciphersuite.
  1426. *
  1427. * We can't abuse an info_cb for this, since by the time one of the
  1428. * client_hello info_cbs is called, we've already picked which ciphersuite to
  1429. * use.
  1430. *
  1431. * Technically, this function is an abuse of this callback, since the point of
  1432. * a session_secret_cb is to try to set up and/or verify a shared-secret for
  1433. * authentication on the fly. But as long as we return 0, we won't actually be
  1434. * setting up a shared secret, and all will be fine.
  1435. */
  1436. STATIC int
  1437. tor_tls_session_secret_cb(SSL *ssl, void *secret, int *secret_len,
  1438. STACK_OF(SSL_CIPHER) *peer_ciphers,
  1439. SSL_CIPHER **cipher, void *arg)
  1440. {
  1441. (void) secret;
  1442. (void) secret_len;
  1443. (void) peer_ciphers;
  1444. (void) cipher;
  1445. (void) arg;
  1446. if (tor_tls_classify_client_ciphers(ssl, peer_ciphers) ==
  1447. CIPHERS_UNRESTRICTED) {
  1448. SSL_set_cipher_list(ssl, UNRESTRICTED_SERVER_CIPHER_LIST);
  1449. }
  1450. SSL_set_session_secret_cb(ssl, NULL, NULL);
  1451. return 0;
  1452. }
  1453. static void
  1454. tor_tls_setup_session_secret_cb(tor_tls_t *tls)
  1455. {
  1456. SSL_set_session_secret_cb(tls->ssl, tor_tls_session_secret_cb, NULL);
  1457. }
  1458. /** Create a new TLS object from a file descriptor, and a flag to
  1459. * determine whether it is functioning as a server.
  1460. */
  1461. tor_tls_t *
  1462. tor_tls_new(int sock, int isServer)
  1463. {
  1464. BIO *bio = NULL;
  1465. tor_tls_t *result = tor_malloc_zero(sizeof(tor_tls_t));
  1466. tor_tls_context_t *context = isServer ? server_tls_context :
  1467. client_tls_context;
  1468. result->magic = TOR_TLS_MAGIC;
  1469. check_no_tls_errors();
  1470. tor_assert(context); /* make sure somebody made it first */
  1471. if (!(result->ssl = SSL_new(context->ctx))) {
  1472. tls_log_errors(NULL, LOG_WARN, LD_NET, "creating SSL object");
  1473. tor_free(result);
  1474. goto err;
  1475. }
  1476. #ifdef SSL_set_tlsext_host_name
  1477. /* Browsers use the TLS hostname extension, so we should too. */
  1478. if (!isServer) {
  1479. char *fake_hostname = crypto_random_hostname(4,25, "www.",".com");
  1480. SSL_set_tlsext_host_name(result->ssl, fake_hostname);
  1481. tor_free(fake_hostname);
  1482. }
  1483. #endif
  1484. if (!SSL_set_cipher_list(result->ssl,
  1485. isServer ? SERVER_CIPHER_LIST : CLIENT_CIPHER_LIST)) {
  1486. tls_log_errors(NULL, LOG_WARN, LD_NET, "setting ciphers");
  1487. #ifdef SSL_set_tlsext_host_name
  1488. SSL_set_tlsext_host_name(result->ssl, NULL);
  1489. #endif
  1490. SSL_free(result->ssl);
  1491. tor_free(result);
  1492. goto err;
  1493. }
  1494. result->socket = sock;
  1495. bio = BIO_new_socket(sock, BIO_NOCLOSE);
  1496. if (! bio) {
  1497. tls_log_errors(NULL, LOG_WARN, LD_NET, "opening BIO");
  1498. #ifdef SSL_set_tlsext_host_name
  1499. SSL_set_tlsext_host_name(result->ssl, NULL);
  1500. #endif
  1501. SSL_free(result->ssl);
  1502. tor_free(result);
  1503. goto err;
  1504. }
  1505. {
  1506. int set_worked =
  1507. SSL_set_ex_data(result->ssl, tor_tls_object_ex_data_index, result);
  1508. if (!set_worked) {
  1509. log_warn(LD_BUG,
  1510. "Couldn't set the tls for an SSL*; connection will fail");
  1511. }
  1512. }
  1513. SSL_set_bio(result->ssl, bio, bio);
  1514. tor_tls_context_incref(context);
  1515. result->context = context;
  1516. result->state = TOR_TLS_ST_HANDSHAKE;
  1517. result->isServer = isServer;
  1518. result->wantwrite_n = 0;
  1519. result->last_write_count = BIO_number_written(bio);
  1520. result->last_read_count = BIO_number_read(bio);
  1521. if (result->last_write_count || result->last_read_count) {
  1522. log_warn(LD_NET, "Newly created BIO has read count %lu, write count %lu",
  1523. result->last_read_count, result->last_write_count);
  1524. }
  1525. #ifdef V2_HANDSHAKE_SERVER
  1526. if (isServer) {
  1527. SSL_set_info_callback(result->ssl, tor_tls_server_info_callback);
  1528. } else
  1529. #endif
  1530. {
  1531. SSL_set_info_callback(result->ssl, tor_tls_debug_state_callback);
  1532. }
  1533. if (isServer)
  1534. tor_tls_setup_session_secret_cb(result);
  1535. goto done;
  1536. err:
  1537. result = NULL;
  1538. done:
  1539. /* Not expected to get called. */
  1540. tls_log_errors(NULL, LOG_WARN, LD_NET, "creating tor_tls_t object");
  1541. return result;
  1542. }
  1543. /** Make future log messages about <b>tls</b> display the address
  1544. * <b>address</b>.
  1545. */
  1546. void
  1547. tor_tls_set_logged_address(tor_tls_t *tls, const char *address)
  1548. {
  1549. tor_assert(tls);
  1550. tor_free(tls->address);
  1551. tls->address = tor_strdup(address);
  1552. }
  1553. /** Set <b>cb</b> to be called with argument <b>arg</b> whenever <b>tls</b>
  1554. * next gets a client-side renegotiate in the middle of a read. Do not
  1555. * invoke this function until <em>after</em> initial handshaking is done!
  1556. */
  1557. void
  1558. tor_tls_set_renegotiate_callback(tor_tls_t *tls,
  1559. void (*cb)(tor_tls_t *, void *arg),
  1560. void *arg)
  1561. {
  1562. tls->negotiated_callback = cb;
  1563. tls->callback_arg = arg;
  1564. tls->got_renegotiate = 0;
  1565. #ifdef V2_HANDSHAKE_SERVER
  1566. if (cb) {
  1567. SSL_set_info_callback(tls->ssl, tor_tls_server_info_callback);
  1568. } else {
  1569. SSL_set_info_callback(tls->ssl, tor_tls_debug_state_callback);
  1570. }
  1571. #endif
  1572. }
  1573. /** If this version of openssl requires it, turn on renegotiation on
  1574. * <b>tls</b>.
  1575. */
  1576. void
  1577. tor_tls_unblock_renegotiation(tor_tls_t *tls)
  1578. {
  1579. /* Yes, we know what we are doing here. No, we do not treat a renegotiation
  1580. * as authenticating any earlier-received data. */
  1581. SSL_set_options(tls->ssl,
  1582. SSL_OP_ALLOW_UNSAFE_LEGACY_RENEGOTIATION);
  1583. }
  1584. /** If this version of openssl supports it, turn off renegotiation on
  1585. * <b>tls</b>. (Our protocol never requires this for security, but it's nice
  1586. * to use belt-and-suspenders here.)
  1587. */
  1588. void
  1589. tor_tls_block_renegotiation(tor_tls_t *tls)
  1590. {
  1591. #ifdef SUPPORT_UNSAFE_RENEGOTIATION_FLAG
  1592. tls->ssl->s3->flags &= ~SSL3_FLAGS_ALLOW_UNSAFE_LEGACY_RENEGOTIATION;
  1593. #else
  1594. (void) tls;
  1595. #endif
  1596. }
  1597. /** Assert that the flags that allow legacy renegotiation are still set */
  1598. void
  1599. tor_tls_assert_renegotiation_unblocked(tor_tls_t *tls)
  1600. {
  1601. long options = SSL_get_options(tls->ssl);
  1602. tor_assert(0 != (options & SSL_OP_ALLOW_UNSAFE_LEGACY_RENEGOTIATION));
  1603. }
  1604. /** Return whether this tls initiated the connect (client) or
  1605. * received it (server). */
  1606. int
  1607. tor_tls_is_server(tor_tls_t *tls)
  1608. {
  1609. tor_assert(tls);
  1610. return tls->isServer;
  1611. }
  1612. /** Release resources associated with a TLS object. Does not close the
  1613. * underlying file descriptor.
  1614. */
  1615. void
  1616. tor_tls_free(tor_tls_t *tls)
  1617. {
  1618. if (!tls)
  1619. return;
  1620. tor_assert(tls->ssl);
  1621. {
  1622. size_t r,w;
  1623. tor_tls_get_n_raw_bytes(tls,&r,&w); /* ensure written_by_tls is updated */
  1624. }
  1625. #ifdef SSL_set_tlsext_host_name
  1626. SSL_set_tlsext_host_name(tls->ssl, NULL);
  1627. #endif
  1628. SSL_free(tls->ssl);
  1629. tls->ssl = NULL;
  1630. tls->negotiated_callback = NULL;
  1631. if (tls->context)
  1632. tor_tls_context_decref(tls->context);
  1633. tor_free(tls->address);
  1634. tls->magic = 0x99999999;
  1635. tor_free(tls);
  1636. }
  1637. /** Underlying function for TLS reading. Reads up to <b>len</b>
  1638. * characters from <b>tls</b> into <b>cp</b>. On success, returns the
  1639. * number of characters read. On failure, returns TOR_TLS_ERROR,
  1640. * TOR_TLS_CLOSE, TOR_TLS_WANTREAD, or TOR_TLS_WANTWRITE.
  1641. */
  1642. MOCK_IMPL(int,
  1643. tor_tls_read,(tor_tls_t *tls, char *cp, size_t len))
  1644. {
  1645. int r, err;
  1646. tor_assert(tls);
  1647. tor_assert(tls->ssl);
  1648. tor_assert(tls->state == TOR_TLS_ST_OPEN);
  1649. tor_assert(len<INT_MAX);
  1650. r = SSL_read(tls->ssl, cp, (int)len);
  1651. if (r > 0) {
  1652. #ifdef V2_HANDSHAKE_SERVER
  1653. if (tls->got_renegotiate) {
  1654. /* Renegotiation happened! */
  1655. log_info(LD_NET, "Got a TLS renegotiation from %s", ADDR(tls));
  1656. if (tls->negotiated_callback)
  1657. tls->negotiated_callback(tls, tls->callback_arg);
  1658. tls->got_renegotiate = 0;
  1659. }
  1660. #endif
  1661. return r;
  1662. }
  1663. err = tor_tls_get_error(tls, r, CATCH_ZERO, "reading", LOG_DEBUG, LD_NET);
  1664. if (err == TOR_TLS_ZERORETURN_ || err == TOR_TLS_CLOSE) {
  1665. log_debug(LD_NET,"read returned r=%d; TLS is closed",r);
  1666. tls->state = TOR_TLS_ST_CLOSED;
  1667. return TOR_TLS_CLOSE;
  1668. } else {
  1669. tor_assert(err != TOR_TLS_DONE);
  1670. log_debug(LD_NET,"read returned r=%d, err=%d",r,err);
  1671. return err;
  1672. }
  1673. }
  1674. /** Total number of bytes that we've used TLS to send. Used to track TLS
  1675. * overhead. */
  1676. STATIC uint64_t total_bytes_written_over_tls = 0;
  1677. /** Total number of bytes that TLS has put on the network for us. Used to
  1678. * track TLS overhead. */
  1679. STATIC uint64_t total_bytes_written_by_tls = 0;
  1680. /** Underlying function for TLS writing. Write up to <b>n</b>
  1681. * characters from <b>cp</b> onto <b>tls</b>. On success, returns the
  1682. * number of characters written. On failure, returns TOR_TLS_ERROR,
  1683. * TOR_TLS_WANTREAD, or TOR_TLS_WANTWRITE.
  1684. */
  1685. int
  1686. tor_tls_write(tor_tls_t *tls, const char *cp, size_t n)
  1687. {
  1688. int r, err;
  1689. tor_assert(tls);
  1690. tor_assert(tls->ssl);
  1691. tor_assert(tls->state == TOR_TLS_ST_OPEN);
  1692. tor_assert(n < INT_MAX);
  1693. if (n == 0)
  1694. return 0;
  1695. if (tls->wantwrite_n) {
  1696. /* if WANTWRITE last time, we must use the _same_ n as before */
  1697. tor_assert(n >= tls->wantwrite_n);
  1698. log_debug(LD_NET,"resuming pending-write, (%d to flush, reusing %d)",
  1699. (int)n, (int)tls->wantwrite_n);
  1700. n = tls->wantwrite_n;
  1701. tls->wantwrite_n = 0;
  1702. }
  1703. r = SSL_write(tls->ssl, cp, (int)n);
  1704. err = tor_tls_get_error(tls, r, 0, "writing", LOG_INFO, LD_NET);
  1705. if (err == TOR_TLS_DONE) {
  1706. total_bytes_written_over_tls += r;
  1707. return r;
  1708. }
  1709. if (err == TOR_TLS_WANTWRITE || err == TOR_TLS_WANTREAD) {
  1710. tls->wantwrite_n = n;
  1711. }
  1712. return err;
  1713. }
  1714. /** Perform initial handshake on <b>tls</b>. When finished, returns
  1715. * TOR_TLS_DONE. On failure, returns TOR_TLS_ERROR, TOR_TLS_WANTREAD,
  1716. * or TOR_TLS_WANTWRITE.
  1717. */
  1718. int
  1719. tor_tls_handshake(tor_tls_t *tls)
  1720. {
  1721. int r;
  1722. int oldstate;
  1723. tor_assert(tls);
  1724. tor_assert(tls->ssl);
  1725. tor_assert(tls->state == TOR_TLS_ST_HANDSHAKE);
  1726. check_no_tls_errors();
  1727. oldstate = SSL_state(tls->ssl);
  1728. if (tls->isServer) {
  1729. log_debug(LD_HANDSHAKE, "About to call SSL_accept on %p (%s)", tls,
  1730. SSL_state_string_long(tls->ssl));
  1731. r = SSL_accept(tls->ssl);
  1732. } else {
  1733. log_debug(LD_HANDSHAKE, "About to call SSL_connect on %p (%s)", tls,
  1734. SSL_state_string_long(tls->ssl));
  1735. r = SSL_connect(tls->ssl);
  1736. }
  1737. if (oldstate != SSL_state(tls->ssl))
  1738. log_debug(LD_HANDSHAKE, "After call, %p was in state %s",
  1739. tls, SSL_state_string_long(tls->ssl));
  1740. /* We need to call this here and not earlier, since OpenSSL has a penchant
  1741. * for clearing its flags when you say accept or connect. */
  1742. tor_tls_unblock_renegotiation(tls);
  1743. r = tor_tls_get_error(tls,r,0, "handshaking", LOG_INFO, LD_HANDSHAKE);
  1744. if (ERR_peek_error() != 0) {
  1745. tls_log_errors(tls, tls->isServer ? LOG_INFO : LOG_WARN, LD_HANDSHAKE,
  1746. "handshaking");
  1747. return TOR_TLS_ERROR_MISC;
  1748. }
  1749. if (r == TOR_TLS_DONE) {
  1750. tls->state = TOR_TLS_ST_OPEN;
  1751. return tor_tls_finish_handshake(tls);
  1752. }
  1753. return r;
  1754. }
  1755. /** Perform the final part of the intial TLS handshake on <b>tls</b>. This
  1756. * should be called for the first handshake only: it determines whether the v1
  1757. * or the v2 handshake was used, and adjusts things for the renegotiation
  1758. * handshake as appropriate.
  1759. *
  1760. * tor_tls_handshake() calls this on its own; you only need to call this if
  1761. * bufferevent is doing the handshake for you.
  1762. */
  1763. int
  1764. tor_tls_finish_handshake(tor_tls_t *tls)
  1765. {
  1766. int r = TOR_TLS_DONE;
  1767. check_no_tls_errors();
  1768. if (tls->isServer) {
  1769. SSL_set_info_callback(tls->ssl, NULL);
  1770. SSL_set_verify(tls->ssl, SSL_VERIFY_PEER, always_accept_verify_cb);
  1771. SSL_clear_mode(tls->ssl, SSL_MODE_NO_AUTO_CHAIN);
  1772. #ifdef V2_HANDSHAKE_SERVER
  1773. if (tor_tls_client_is_using_v2_ciphers(tls->ssl)) {
  1774. /* This check is redundant, but back when we did it in the callback,
  1775. * we might have not been able to look up the tor_tls_t if the code
  1776. * was buggy. Fixing that. */
  1777. if (!tls->wasV2Handshake) {
  1778. log_warn(LD_BUG, "For some reason, wasV2Handshake didn't"
  1779. " get set. Fixing that.");
  1780. }
  1781. tls->wasV2Handshake = 1;
  1782. log_debug(LD_HANDSHAKE, "Completed V2 TLS handshake with client; waiting"
  1783. " for renegotiation.");
  1784. } else {
  1785. tls->wasV2Handshake = 0;
  1786. }
  1787. #endif
  1788. } else {
  1789. #ifdef V2_HANDSHAKE_CLIENT
  1790. /* If we got no ID cert, we're a v2 handshake. */
  1791. X509 *cert = SSL_get_peer_certificate(tls->ssl);
  1792. STACK_OF(X509) *chain = SSL_get_peer_cert_chain(tls->ssl);
  1793. int n_certs = sk_X509_num(chain);
  1794. if (n_certs > 1 || (n_certs == 1 && cert != sk_X509_value(chain, 0))) {
  1795. log_debug(LD_HANDSHAKE, "Server sent back multiple certificates; it "
  1796. "looks like a v1 handshake on %p", tls);
  1797. tls->wasV2Handshake = 0;
  1798. } else {
  1799. log_debug(LD_HANDSHAKE,
  1800. "Server sent back a single certificate; looks like "
  1801. "a v2 handshake on %p.", tls);
  1802. tls->wasV2Handshake = 1;
  1803. }
  1804. if (cert)
  1805. X509_free(cert);
  1806. #endif
  1807. if (SSL_set_cipher_list(tls->ssl, SERVER_CIPHER_LIST) == 0) {
  1808. tls_log_errors(NULL, LOG_WARN, LD_HANDSHAKE, "re-setting ciphers");
  1809. r = TOR_TLS_ERROR_MISC;
  1810. }
  1811. }
  1812. tls_log_errors(NULL, LOG_WARN, LD_NET, "finishing the handshake");
  1813. return r;
  1814. }
  1815. #ifdef USE_BUFFEREVENTS
  1816. /** Put <b>tls</b>, which must be a client connection, into renegotiation
  1817. * mode. */
  1818. int
  1819. tor_tls_start_renegotiating(tor_tls_t *tls)
  1820. {
  1821. int r = SSL_renegotiate(tls->ssl);
  1822. if (r <= 0) {
  1823. return tor_tls_get_error(tls, r, 0, "renegotiating", LOG_WARN,
  1824. LD_HANDSHAKE);
  1825. }
  1826. return 0;
  1827. }
  1828. #endif
  1829. /** Client only: Renegotiate a TLS session. When finished, returns
  1830. * TOR_TLS_DONE. On failure, returns TOR_TLS_ERROR, TOR_TLS_WANTREAD, or
  1831. * TOR_TLS_WANTWRITE.
  1832. */
  1833. int
  1834. tor_tls_renegotiate(tor_tls_t *tls)
  1835. {
  1836. int r;
  1837. tor_assert(tls);
  1838. /* We could do server-initiated renegotiation too, but that would be tricky.
  1839. * Instead of "SSL_renegotiate, then SSL_do_handshake until done" */
  1840. tor_assert(!tls->isServer);
  1841. check_no_tls_errors();
  1842. if (tls->state != TOR_TLS_ST_RENEGOTIATE) {
  1843. int r = SSL_renegotiate(tls->ssl);
  1844. if (r <= 0) {
  1845. return tor_tls_get_error(tls, r, 0, "renegotiating", LOG_WARN,
  1846. LD_HANDSHAKE);
  1847. }
  1848. tls->state = TOR_TLS_ST_RENEGOTIATE;
  1849. }
  1850. r = SSL_do_handshake(tls->ssl);
  1851. if (r == 1) {
  1852. tls->state = TOR_TLS_ST_OPEN;
  1853. return TOR_TLS_DONE;
  1854. } else
  1855. return tor_tls_get_error(tls, r, 0, "renegotiating handshake", LOG_INFO,
  1856. LD_HANDSHAKE);
  1857. }
  1858. /** Shut down an open tls connection <b>tls</b>. When finished, returns
  1859. * TOR_TLS_DONE. On failure, returns TOR_TLS_ERROR, TOR_TLS_WANTREAD,
  1860. * or TOR_TLS_WANTWRITE.
  1861. */
  1862. int
  1863. tor_tls_shutdown(tor_tls_t *tls)
  1864. {
  1865. int r, err;
  1866. char buf[128];
  1867. tor_assert(tls);
  1868. tor_assert(tls->ssl);
  1869. check_no_tls_errors();
  1870. while (1) {
  1871. if (tls->state == TOR_TLS_ST_SENTCLOSE) {
  1872. /* If we've already called shutdown once to send a close message,
  1873. * we read until the other side has closed too.
  1874. */
  1875. do {
  1876. r = SSL_read(tls->ssl, buf, 128);
  1877. } while (r>0);
  1878. err = tor_tls_get_error(tls, r, CATCH_ZERO, "reading to shut down",
  1879. LOG_INFO, LD_NET);
  1880. if (err == TOR_TLS_ZERORETURN_) {
  1881. tls->state = TOR_TLS_ST_GOTCLOSE;
  1882. /* fall through... */
  1883. } else {
  1884. return err;
  1885. }
  1886. }
  1887. r = SSL_shutdown(tls->ssl);
  1888. if (r == 1) {
  1889. /* If shutdown returns 1, the connection is entirely closed. */
  1890. tls->state = TOR_TLS_ST_CLOSED;
  1891. return TOR_TLS_DONE;
  1892. }
  1893. err = tor_tls_get_error(tls, r, CATCH_SYSCALL|CATCH_ZERO, "shutting down",
  1894. LOG_INFO, LD_NET);
  1895. if (err == TOR_TLS_SYSCALL_) {
  1896. /* The underlying TCP connection closed while we were shutting down. */
  1897. tls->state = TOR_TLS_ST_CLOSED;
  1898. return TOR_TLS_DONE;
  1899. } else if (err == TOR_TLS_ZERORETURN_) {
  1900. /* The TLS connection says that it sent a shutdown record, but
  1901. * isn't done shutting down yet. Make sure that this hasn't
  1902. * happened before, then go back to the start of the function
  1903. * and try to read.
  1904. */
  1905. if (tls->state == TOR_TLS_ST_GOTCLOSE ||
  1906. tls->state == TOR_TLS_ST_SENTCLOSE) {
  1907. log_warn(LD_NET,
  1908. "TLS returned \"half-closed\" value while already half-closed");
  1909. return TOR_TLS_ERROR_MISC;
  1910. }
  1911. tls->state = TOR_TLS_ST_SENTCLOSE;
  1912. /* fall through ... */
  1913. } else {
  1914. return err;
  1915. }
  1916. } /* end loop */
  1917. }
  1918. /** Return true iff this TLS connection is authenticated.
  1919. */
  1920. int
  1921. tor_tls_peer_has_cert(tor_tls_t *tls)
  1922. {
  1923. X509 *cert;
  1924. cert = SSL_get_peer_certificate(tls->ssl);
  1925. tls_log_errors(tls, LOG_WARN, LD_HANDSHAKE, "getting peer certificate");
  1926. if (!cert)
  1927. return 0;
  1928. X509_free(cert);
  1929. return 1;
  1930. }
  1931. /** Return the peer certificate, or NULL if there isn't one. */
  1932. MOCK_IMPL(tor_x509_cert_t *,
  1933. tor_tls_get_peer_cert,(tor_tls_t *tls))
  1934. {
  1935. X509 *cert;
  1936. cert = SSL_get_peer_certificate(tls->ssl);
  1937. tls_log_errors(tls, LOG_WARN, LD_HANDSHAKE, "getting peer certificate");
  1938. if (!cert)
  1939. return NULL;
  1940. return tor_x509_cert_new(cert);
  1941. }
  1942. /** Warn that a certificate lifetime extends through a certain range. */
  1943. static void
  1944. log_cert_lifetime(int severity, const X509 *cert, const char *problem)
  1945. {
  1946. BIO *bio = NULL;
  1947. BUF_MEM *buf;
  1948. char *s1=NULL, *s2=NULL;
  1949. char mytime[33];
  1950. time_t now = time(NULL);
  1951. struct tm tm;
  1952. size_t n;
  1953. if (problem)
  1954. tor_log(severity, LD_GENERAL,
  1955. "Certificate %s. Either their clock is set wrong, or your clock "
  1956. "is wrong.",
  1957. problem);
  1958. if (!(bio = BIO_new(BIO_s_mem()))) {
  1959. log_warn(LD_GENERAL, "Couldn't allocate BIO!"); goto end;
  1960. }
  1961. if (!(ASN1_TIME_print(bio, X509_get_notBefore_const(cert)))) {
  1962. tls_log_errors(NULL, LOG_WARN, LD_NET, "printing certificate lifetime");
  1963. goto end;
  1964. }
  1965. BIO_get_mem_ptr(bio, &buf);
  1966. s1 = tor_strndup(buf->data, buf->length);
  1967. (void)BIO_reset(bio);
  1968. if (!(ASN1_TIME_print(bio, X509_get_notAfter_const(cert)))) {
  1969. tls_log_errors(NULL, LOG_WARN, LD_NET, "printing certificate lifetime");
  1970. goto end;
  1971. }
  1972. BIO_get_mem_ptr(bio, &buf);
  1973. s2 = tor_strndup(buf->data, buf->length);
  1974. n = strftime(mytime, 32, "%b %d %H:%M:%S %Y UTC", tor_gmtime_r(&now, &tm));
  1975. if (n > 0) {
  1976. tor_log(severity, LD_GENERAL,
  1977. "(certificate lifetime runs from %s through %s. Your time is %s.)",
  1978. s1,s2,mytime);
  1979. } else {
  1980. tor_log(severity, LD_GENERAL,
  1981. "(certificate lifetime runs from %s through %s. "
  1982. "Couldn't get your time.)",
  1983. s1, s2);
  1984. }
  1985. end:
  1986. /* Not expected to get invoked */
  1987. tls_log_errors(NULL, LOG_WARN, LD_NET, "getting certificate lifetime");
  1988. if (bio)
  1989. BIO_free(bio);
  1990. tor_free(s1);
  1991. tor_free(s2);
  1992. }
  1993. /** Helper function: try to extract a link certificate and an identity
  1994. * certificate from <b>tls</b>, and store them in *<b>cert_out</b> and
  1995. * *<b>id_cert_out</b> respectively. Log all messages at level
  1996. * <b>severity</b>.
  1997. *
  1998. * Note that a reference is added to cert_out, so it needs to be
  1999. * freed. id_cert_out doesn't. */
  2000. MOCK_IMPL(STATIC void,
  2001. try_to_extract_certs_from_tls,(int severity, tor_tls_t *tls,
  2002. X509 **cert_out, X509 **id_cert_out))
  2003. {
  2004. X509 *cert = NULL, *id_cert = NULL;
  2005. STACK_OF(X509) *chain = NULL;
  2006. int num_in_chain, i;
  2007. *cert_out = *id_cert_out = NULL;
  2008. if (!(cert = SSL_get_peer_certificate(tls->ssl)))
  2009. return;
  2010. *cert_out = cert;
  2011. if (!(chain = SSL_get_peer_cert_chain(tls->ssl)))
  2012. return;
  2013. num_in_chain = sk_X509_num(chain);
  2014. /* 1 means we're receiving (server-side), and it's just the id_cert.
  2015. * 2 means we're connecting (client-side), and it's both the link
  2016. * cert and the id_cert.
  2017. */
  2018. if (num_in_chain < 1) {
  2019. log_fn(severity,LD_PROTOCOL,
  2020. "Unexpected number of certificates in chain (%d)",
  2021. num_in_chain);
  2022. return;
  2023. }
  2024. for (i=0; i<num_in_chain; ++i) {
  2025. id_cert = sk_X509_value(chain, i);
  2026. if (X509_cmp(id_cert, cert) != 0)
  2027. break;
  2028. }
  2029. *id_cert_out = id_cert;
  2030. }
  2031. /** If the provided tls connection is authenticated and has a
  2032. * certificate chain that is currently valid and signed, then set
  2033. * *<b>identity_key</b> to the identity certificate's key and return
  2034. * 0. Else, return -1 and log complaints with log-level <b>severity</b>.
  2035. */
  2036. int
  2037. tor_tls_verify(int severity, tor_tls_t *tls, crypto_pk_t **identity_key)
  2038. {
  2039. X509 *cert = NULL, *id_cert = NULL;
  2040. EVP_PKEY *id_pkey = NULL;
  2041. RSA *rsa;
  2042. int r = -1;
  2043. check_no_tls_errors();
  2044. *identity_key = NULL;
  2045. try_to_extract_certs_from_tls(severity, tls, &cert, &id_cert);
  2046. if (!cert)
  2047. goto done;
  2048. if (!id_cert) {
  2049. log_fn(severity,LD_PROTOCOL,"No distinct identity certificate found");
  2050. goto done;
  2051. }
  2052. tls_log_errors(tls, severity, LD_HANDSHAKE, "before verifying certificate");
  2053. if (!(id_pkey = X509_get_pubkey(id_cert)) ||
  2054. X509_verify(cert, id_pkey) <= 0) {
  2055. log_fn(severity,LD_PROTOCOL,"X509_verify on cert and pkey returned <= 0");
  2056. tls_log_errors(tls, severity, LD_HANDSHAKE, "verifying certificate");
  2057. goto done;
  2058. }
  2059. rsa = EVP_PKEY_get1_RSA(id_pkey);
  2060. if (!rsa)
  2061. goto done;
  2062. *identity_key = crypto_new_pk_from_rsa_(rsa);
  2063. r = 0;
  2064. done:
  2065. if (cert)
  2066. X509_free(cert);
  2067. if (id_pkey)
  2068. EVP_PKEY_free(id_pkey);
  2069. /* This should never get invoked, but let's make sure in case OpenSSL
  2070. * acts unexpectedly. */
  2071. tls_log_errors(tls, LOG_WARN, LD_HANDSHAKE, "finishing tor_tls_verify");
  2072. return r;
  2073. }
  2074. /** Check whether the certificate set on the connection <b>tls</b> is expired
  2075. * give or take <b>past_tolerance</b> seconds, or not-yet-valid give or take
  2076. * <b>future_tolerance</b> seconds. Return 0 for valid, -1 for failure.
  2077. *
  2078. * NOTE: you should call tor_tls_verify before tor_tls_check_lifetime.
  2079. */
  2080. int
  2081. tor_tls_check_lifetime(int severity, tor_tls_t *tls,
  2082. int past_tolerance, int future_tolerance)
  2083. {
  2084. X509 *cert;
  2085. int r = -1;
  2086. if (!(cert = SSL_get_peer_certificate(tls->ssl)))
  2087. goto done;
  2088. if (check_cert_lifetime_internal(severity, cert,
  2089. past_tolerance, future_tolerance) < 0)
  2090. goto done;
  2091. r = 0;
  2092. done:
  2093. if (cert)
  2094. X509_free(cert);
  2095. /* Not expected to get invoked */
  2096. tls_log_errors(tls, LOG_WARN, LD_NET, "checking certificate lifetime");
  2097. return r;
  2098. }
  2099. /** Helper: check whether <b>cert</b> is expired give or take
  2100. * <b>past_tolerance</b> seconds, or not-yet-valid give or take
  2101. * <b>future_tolerance</b> seconds. If it is live, return 0. If it is not
  2102. * live, log a message and return -1. */
  2103. static int
  2104. check_cert_lifetime_internal(int severity, const X509 *cert,
  2105. int past_tolerance, int future_tolerance)
  2106. {
  2107. time_t now, t;
  2108. now = time(NULL);
  2109. t = now + future_tolerance;
  2110. if (X509_cmp_time(X509_get_notBefore_const(cert), &t) > 0) {
  2111. log_cert_lifetime(severity, cert, "not yet valid");
  2112. return -1;
  2113. }
  2114. t = now - past_tolerance;
  2115. if (X509_cmp_time(X509_get_notAfter_const(cert), &t) < 0) {
  2116. log_cert_lifetime(severity, cert, "already expired");
  2117. return -1;
  2118. }
  2119. return 0;
  2120. }
  2121. /** Return the number of bytes available for reading from <b>tls</b>.
  2122. */
  2123. int
  2124. tor_tls_get_pending_bytes(tor_tls_t *tls)
  2125. {
  2126. tor_assert(tls);
  2127. return SSL_pending(tls->ssl);
  2128. }
  2129. /** If <b>tls</b> requires that the next write be of a particular size,
  2130. * return that size. Otherwise, return 0. */
  2131. size_t
  2132. tor_tls_get_forced_write_size(tor_tls_t *tls)
  2133. {
  2134. return tls->wantwrite_n;
  2135. }
  2136. /** Sets n_read and n_written to the number of bytes read and written,
  2137. * respectively, on the raw socket used by <b>tls</b> since the last time this
  2138. * function was called on <b>tls</b>. */
  2139. void
  2140. tor_tls_get_n_raw_bytes(tor_tls_t *tls, size_t *n_read, size_t *n_written)
  2141. {
  2142. BIO *wbio, *tmpbio;
  2143. unsigned long r, w;
  2144. r = BIO_number_read(SSL_get_rbio(tls->ssl));
  2145. /* We want the number of bytes actually for real written. Unfortunately,
  2146. * sometimes OpenSSL replaces the wbio on tls->ssl with a buffering bio,
  2147. * which makes the answer turn out wrong. Let's cope with that. Note
  2148. * that this approach will fail if we ever replace tls->ssl's BIOs with
  2149. * buffering bios for reasons of our own. As an alternative, we could
  2150. * save the original BIO for tls->ssl in the tor_tls_t structure, but
  2151. * that would be tempting fate. */
  2152. wbio = SSL_get_wbio(tls->ssl);
  2153. if (wbio->method == BIO_f_buffer() && (tmpbio = BIO_next(wbio)) != NULL)
  2154. wbio = tmpbio;
  2155. w = BIO_number_written(wbio);
  2156. /* We are ok with letting these unsigned ints go "negative" here:
  2157. * If we wrapped around, this should still give us the right answer, unless
  2158. * we wrapped around by more than ULONG_MAX since the last time we called
  2159. * this function.
  2160. */
  2161. *n_read = (size_t)(r - tls->last_read_count);
  2162. *n_written = (size_t)(w - tls->last_write_count);
  2163. if (*n_read > INT_MAX || *n_written > INT_MAX) {
  2164. log_warn(LD_BUG, "Preposterously large value in tor_tls_get_n_raw_bytes. "
  2165. "r=%lu, last_read=%lu, w=%lu, last_written=%lu",
  2166. r, tls->last_read_count, w, tls->last_write_count);
  2167. }
  2168. total_bytes_written_by_tls += *n_written;
  2169. tls->last_read_count = r;
  2170. tls->last_write_count = w;
  2171. }
  2172. /** Return a ratio of the bytes that TLS has sent to the bytes that we've told
  2173. * it to send. Used to track whether our TLS records are getting too tiny. */
  2174. MOCK_IMPL(double,
  2175. tls_get_write_overhead_ratio,(void))
  2176. {
  2177. if (total_bytes_written_over_tls == 0)
  2178. return 1.0;
  2179. return U64_TO_DBL(total_bytes_written_by_tls) /
  2180. U64_TO_DBL(total_bytes_written_over_tls);
  2181. }
  2182. /** Implement check_no_tls_errors: If there are any pending OpenSSL
  2183. * errors, log an error message. */
  2184. void
  2185. check_no_tls_errors_(const char *fname, int line)
  2186. {
  2187. if (ERR_peek_error() == 0)
  2188. return;
  2189. log_warn(LD_CRYPTO, "Unhandled OpenSSL errors found at %s:%d: ",
  2190. tor_fix_source_file(fname), line);
  2191. tls_log_errors(NULL, LOG_WARN, LD_NET, NULL);
  2192. }
  2193. /** Return true iff the initial TLS connection at <b>tls</b> did not use a v2
  2194. * TLS handshake. Output is undefined if the handshake isn't finished. */
  2195. int
  2196. tor_tls_used_v1_handshake(tor_tls_t *tls)
  2197. {
  2198. #if defined(V2_HANDSHAKE_SERVER) && defined(V2_HANDSHAKE_CLIENT)
  2199. return ! tls->wasV2Handshake;
  2200. #else
  2201. if (tls->isServer) {
  2202. # ifdef V2_HANDSHAKE_SERVER
  2203. return ! tls->wasV2Handshake;
  2204. # endif
  2205. } else {
  2206. # ifdef V2_HANDSHAKE_CLIENT
  2207. return ! tls->wasV2Handshake;
  2208. # endif
  2209. }
  2210. return 1;
  2211. #endif
  2212. }
  2213. /** Return true iff <b>name</b> is a DN of a kind that could only
  2214. * occur in a v3-handshake-indicating certificate */
  2215. STATIC int
  2216. dn_indicates_v3_cert(X509_NAME *name)
  2217. {
  2218. #ifdef DISABLE_V3_LINKPROTO_CLIENTSIDE
  2219. (void)name;
  2220. return 0;
  2221. #else
  2222. X509_NAME_ENTRY *entry;
  2223. int n_entries;
  2224. ASN1_OBJECT *obj;
  2225. ASN1_STRING *str;
  2226. unsigned char *s;
  2227. int len, r;
  2228. n_entries = X509_NAME_entry_count(name);
  2229. if (n_entries != 1) {
  2230. return 1; /* More than one entry in the DN. */
  2231. }
  2232. entry = X509_NAME_get_entry(name, 0);
  2233. obj = X509_NAME_ENTRY_get_object(entry);
  2234. if (OBJ_obj2nid(obj) != OBJ_txt2nid("commonName")) {
  2235. return 1; /* The entry isn't a commonName. */
  2236. }
  2237. str = X509_NAME_ENTRY_get_data(entry);
  2238. len = ASN1_STRING_to_UTF8(&s, str);
  2239. if (len < 0) {
  2240. return 0;
  2241. }
  2242. if (len < 4) {
  2243. OPENSSL_free(s);
  2244. return 1;
  2245. }
  2246. r = fast_memneq(s + len - 4, ".net", 4);
  2247. OPENSSL_free(s);
  2248. return r;
  2249. #endif
  2250. }
  2251. /** Return true iff the peer certificate we're received on <b>tls</b>
  2252. * indicates that this connection should use the v3 (in-protocol)
  2253. * authentication handshake.
  2254. *
  2255. * Only the connection initiator should use this, and only once the initial
  2256. * handshake is done; the responder detects a v1 handshake by cipher types,
  2257. * and a v3/v2 handshake by Versions cell vs renegotiation.
  2258. */
  2259. int
  2260. tor_tls_received_v3_certificate(tor_tls_t *tls)
  2261. {
  2262. check_no_tls_errors();
  2263. X509 *cert = SSL_get_peer_certificate(tls->ssl);
  2264. EVP_PKEY *key = NULL;
  2265. X509_NAME *issuer_name, *subject_name;
  2266. int is_v3 = 0;
  2267. if (!cert) {
  2268. log_warn(LD_BUG, "Called on a connection with no peer certificate");
  2269. goto done;
  2270. }
  2271. subject_name = X509_get_subject_name(cert);
  2272. issuer_name = X509_get_issuer_name(cert);
  2273. if (X509_name_cmp(subject_name, issuer_name) == 0) {
  2274. is_v3 = 1; /* purportedly self signed */
  2275. goto done;
  2276. }
  2277. if (dn_indicates_v3_cert(subject_name) ||
  2278. dn_indicates_v3_cert(issuer_name)) {
  2279. is_v3 = 1; /* DN is fancy */
  2280. goto done;
  2281. }
  2282. key = X509_get_pubkey(cert);
  2283. if (EVP_PKEY_bits(key) != 1024 ||
  2284. EVP_PKEY_type(key->type) != EVP_PKEY_RSA) {
  2285. is_v3 = 1; /* Key is fancy */
  2286. goto done;
  2287. }
  2288. done:
  2289. tls_log_errors(tls, LOG_WARN, LD_NET, "checking for a v3 cert");
  2290. if (key)
  2291. EVP_PKEY_free(key);
  2292. if (cert)
  2293. X509_free(cert);
  2294. return is_v3;
  2295. }
  2296. /** Return the number of server handshakes that we've noticed doing on
  2297. * <b>tls</b>. */
  2298. int
  2299. tor_tls_get_num_server_handshakes(tor_tls_t *tls)
  2300. {
  2301. return tls->server_handshake_count;
  2302. }
  2303. /** Return true iff the server TLS connection <b>tls</b> got the renegotiation
  2304. * request it was waiting for. */
  2305. int
  2306. tor_tls_server_got_renegotiate(tor_tls_t *tls)
  2307. {
  2308. return tls->got_renegotiate;
  2309. }
  2310. #ifndef HAVE_SSL_GET_CLIENT_RANDOM
  2311. static size_t
  2312. SSL_get_client_random(SSL *s, uint8_t *out, size_t len)
  2313. {
  2314. if (len == 0)
  2315. return SSL3_RANDOM_SIZE;
  2316. tor_assert(len == SSL3_RANDOM_SIZE);
  2317. tor_assert(s->s3);
  2318. memcpy(out, s->s3->client_random, len);
  2319. return len;
  2320. }
  2321. #endif
  2322. #ifndef HAVE_SSL_GET_SERVER_RANDOM
  2323. static size_t
  2324. SSL_get_server_random(SSL *s, uint8_t *out, size_t len)
  2325. {
  2326. if (len == 0)
  2327. return SSL3_RANDOM_SIZE;
  2328. tor_assert(len == SSL3_RANDOM_SIZE);
  2329. tor_assert(s->s3);
  2330. memcpy(out, s->s3->server_random, len);
  2331. return len;
  2332. }
  2333. #endif
  2334. #ifndef HAVE_SSL_SESSION_GET_MASTER_KEY
  2335. STATIC size_t
  2336. SSL_SESSION_get_master_key(SSL_SESSION *s, uint8_t *out, size_t len)
  2337. {
  2338. tor_assert(s);
  2339. if (len == 0)
  2340. return s->master_key_length;
  2341. tor_assert(len == (size_t)s->master_key_length);
  2342. tor_assert(out);
  2343. memcpy(out, s->master_key, len);
  2344. return len;
  2345. }
  2346. #endif
  2347. /** Set the DIGEST256_LEN buffer at <b>secrets_out</b> to the value used in
  2348. * the v3 handshake to prove that the client knows the TLS secrets for the
  2349. * connection <b>tls</b>. Return 0 on success, -1 on failure.
  2350. */
  2351. MOCK_IMPL(int,
  2352. tor_tls_get_tlssecrets,(tor_tls_t *tls, uint8_t *secrets_out))
  2353. {
  2354. #define TLSSECRET_MAGIC "Tor V3 handshake TLS cross-certification"
  2355. uint8_t buf[128];
  2356. size_t len;
  2357. tor_assert(tls);
  2358. SSL *const ssl = tls->ssl;
  2359. SSL_SESSION *const session = SSL_get_session(ssl);
  2360. tor_assert(ssl);
  2361. tor_assert(session);
  2362. const size_t server_random_len = SSL_get_server_random(ssl, NULL, 0);
  2363. const size_t client_random_len = SSL_get_client_random(ssl, NULL, 0);
  2364. const size_t master_key_len = SSL_SESSION_get_master_key(session, NULL, 0);
  2365. tor_assert(server_random_len);
  2366. tor_assert(client_random_len);
  2367. tor_assert(master_key_len);
  2368. len = client_random_len + server_random_len + strlen(TLSSECRET_MAGIC) + 1;
  2369. tor_assert(len <= sizeof(buf));
  2370. {
  2371. size_t r = SSL_get_client_random(ssl, buf, client_random_len);
  2372. tor_assert(r == client_random_len);
  2373. }
  2374. {
  2375. size_t r = SSL_get_server_random(ssl,
  2376. buf+client_random_len,
  2377. server_random_len);
  2378. tor_assert(r == server_random_len);
  2379. }
  2380. uint8_t *master_key = tor_malloc_zero(master_key_len);
  2381. {
  2382. size_t r = SSL_SESSION_get_master_key(session, master_key, master_key_len);
  2383. tor_assert(r == master_key_len);
  2384. }
  2385. uint8_t *nextbuf = buf + client_random_len + server_random_len;
  2386. memcpy(nextbuf, TLSSECRET_MAGIC, strlen(TLSSECRET_MAGIC) + 1);
  2387. /*
  2388. The value is an HMAC, using the TLS master key as the HMAC key, of
  2389. client_random | server_random | TLSSECRET_MAGIC
  2390. */
  2391. crypto_hmac_sha256((char*)secrets_out,
  2392. (char*)master_key,
  2393. master_key_len,
  2394. (char*)buf, len);
  2395. memwipe(buf, 0, sizeof(buf));
  2396. memwipe(master_key, 0, master_key_len);
  2397. tor_free(master_key);
  2398. return 0;
  2399. }
  2400. /** Examine the amount of memory used and available for buffers in <b>tls</b>.
  2401. * Set *<b>rbuf_capacity</b> to the amount of storage allocated for the read
  2402. * buffer and *<b>rbuf_bytes</b> to the amount actually used.
  2403. * Set *<b>wbuf_capacity</b> to the amount of storage allocated for the write
  2404. * buffer and *<b>wbuf_bytes</b> to the amount actually used.
  2405. *
  2406. * Return 0 on success, -1 on failure.*/
  2407. int
  2408. tor_tls_get_buffer_sizes(tor_tls_t *tls,
  2409. size_t *rbuf_capacity, size_t *rbuf_bytes,
  2410. size_t *wbuf_capacity, size_t *wbuf_bytes)
  2411. {
  2412. #if OPENSSL_VERSION_NUMBER >= OPENSSL_V_SERIES(1,1,0)
  2413. (void)tls;
  2414. (void)rbuf_capacity;
  2415. (void)rbuf_bytes;
  2416. (void)wbuf_capacity;
  2417. (void)wbuf_bytes;
  2418. return -1;
  2419. #else
  2420. if (tls->ssl->s3->rbuf.buf)
  2421. *rbuf_capacity = tls->ssl->s3->rbuf.len;
  2422. else
  2423. *rbuf_capacity = 0;
  2424. if (tls->ssl->s3->wbuf.buf)
  2425. *wbuf_capacity = tls->ssl->s3->wbuf.len;
  2426. else
  2427. *wbuf_capacity = 0;
  2428. *rbuf_bytes = tls->ssl->s3->rbuf.left;
  2429. *wbuf_bytes = tls->ssl->s3->wbuf.left;
  2430. return 0;
  2431. #endif
  2432. }
  2433. #ifdef USE_BUFFEREVENTS
  2434. /** Construct and return an TLS-encrypting bufferevent to send data over
  2435. * <b>socket</b>, which must match the socket of the underlying bufferevent
  2436. * <b>bufev_in</b>. The TLS object <b>tls</b> is used for encryption.
  2437. *
  2438. * This function will either create a filtering bufferevent that wraps around
  2439. * <b>bufev_in</b>, or it will free bufev_in and return a new bufferevent that
  2440. * uses the <b>tls</b> to talk to the network directly. Do not use
  2441. * <b>bufev_in</b> after calling this function.
  2442. *
  2443. * The connection will start out doing a server handshake if <b>receiving</b>
  2444. * is strue, and a client handshake otherwise.
  2445. *
  2446. * Returns NULL on failure.
  2447. */
  2448. struct bufferevent *
  2449. tor_tls_init_bufferevent(tor_tls_t *tls, struct bufferevent *bufev_in,
  2450. evutil_socket_t socket, int receiving,
  2451. int filter)
  2452. {
  2453. struct bufferevent *out;
  2454. const enum bufferevent_ssl_state state = receiving ?
  2455. BUFFEREVENT_SSL_ACCEPTING : BUFFEREVENT_SSL_CONNECTING;
  2456. if (filter || tor_libevent_using_iocp_bufferevents()) {
  2457. /* Grab an extra reference to the SSL, since BEV_OPT_CLOSE_ON_FREE
  2458. means that the SSL will get freed too.
  2459. This increment makes our SSL usage not-threadsafe, BTW. We should
  2460. see if we're allowed to use CRYPTO_add from outside openssl. */
  2461. tls->ssl->references += 1;
  2462. out = bufferevent_openssl_filter_new(tor_libevent_get_base(),
  2463. bufev_in,
  2464. tls->ssl,
  2465. state,
  2466. BEV_OPT_DEFER_CALLBACKS|
  2467. BEV_OPT_CLOSE_ON_FREE);
  2468. /* Tell the underlying bufferevent when to accept more data from the SSL
  2469. filter (only when it's got less than 32K to write), and when to notify
  2470. the SSL filter that it could write more (when it drops under 24K). */
  2471. bufferevent_setwatermark(bufev_in, EV_WRITE, 24*1024, 32*1024);
  2472. } else {
  2473. if (bufev_in) {
  2474. evutil_socket_t s = bufferevent_getfd(bufev_in);
  2475. tor_assert(s == -1 || s == socket);
  2476. tor_assert(evbuffer_get_length(bufferevent_get_input(bufev_in)) == 0);
  2477. tor_assert(evbuffer_get_length(bufferevent_get_output(bufev_in)) == 0);
  2478. tor_assert(BIO_number_read(SSL_get_rbio(tls->ssl)) == 0);
  2479. tor_assert(BIO_number_written(SSL_get_rbio(tls->ssl)) == 0);
  2480. bufferevent_free(bufev_in);
  2481. }
  2482. /* Current versions (as of 2.0.x) of Libevent need to defer
  2483. * bufferevent_openssl callbacks, or else our callback functions will
  2484. * get called reentrantly, which is bad for us.
  2485. */
  2486. out = bufferevent_openssl_socket_new(tor_libevent_get_base(),
  2487. socket,
  2488. tls->ssl,
  2489. state,
  2490. BEV_OPT_DEFER_CALLBACKS);
  2491. }
  2492. tls->state = TOR_TLS_ST_BUFFEREVENT;
  2493. /* Unblock _after_ creating the bufferevent, since accept/connect tend to
  2494. * clear flags. */
  2495. tor_tls_unblock_renegotiation(tls);
  2496. return out;
  2497. }
  2498. #endif
  2499. /** Check whether the ECC group requested is supported by the current OpenSSL
  2500. * library instance. Return 1 if the group is supported, and 0 if not.
  2501. */
  2502. int
  2503. evaluate_ecgroup_for_tls(const char *ecgroup)
  2504. {
  2505. EC_KEY *ec_key;
  2506. int nid;
  2507. int ret;
  2508. if (!ecgroup)
  2509. nid = NID_tor_default_ecdhe_group;
  2510. else if (!strcasecmp(ecgroup, "P256"))
  2511. nid = NID_X9_62_prime256v1;
  2512. else if (!strcasecmp(ecgroup, "P224"))
  2513. nid = NID_secp224r1;
  2514. else
  2515. return 0;
  2516. ec_key = EC_KEY_new_by_curve_name(nid);
  2517. ret = (ec_key != NULL);
  2518. EC_KEY_free(ec_key);
  2519. return ret;
  2520. }