tortls.c 77 KB

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  1. /* Copyright (c) 2003, Roger Dingledine.
  2. * Copyright (c) 2004-2006, Roger Dingledine, Nick Mathewson.
  3. * Copyright (c) 2007-2016, 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. #include "compat.h"
  22. /* Some versions of OpenSSL declare SSL_get_selected_srtp_profile twice in
  23. * srtp.h. Suppress the GCC warning so we can build with -Wredundant-decl. */
  24. DISABLE_GCC_WARNING(redundant-decls)
  25. #include <openssl/opensslv.h>
  26. #include "crypto.h"
  27. #ifdef OPENSSL_NO_EC
  28. #error "We require OpenSSL with ECC support"
  29. #endif
  30. #include <openssl/ssl.h>
  31. #include <openssl/ssl3.h>
  32. #include <openssl/err.h>
  33. #include <openssl/tls1.h>
  34. #include <openssl/asn1.h>
  35. #include <openssl/bio.h>
  36. #include <openssl/bn.h>
  37. #include <openssl/rsa.h>
  38. ENABLE_GCC_WARNING(redundant-decls)
  39. #define TORTLS_PRIVATE
  40. #include "tortls.h"
  41. #include "util.h"
  42. #include "torlog.h"
  43. #include "container.h"
  44. #include <string.h>
  45. #define X509_get_notBefore_const(cert) \
  46. ((const ASN1_TIME*) X509_get_notBefore((X509 *)cert))
  47. #define X509_get_notAfter_const(cert) \
  48. ((const ASN1_TIME*) X509_get_notAfter((X509 *)cert))
  49. /* Copied from or.h */
  50. #define LEGAL_NICKNAME_CHARACTERS \
  51. "abcdefghijklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZ0123456789"
  52. /** How long do identity certificates live? (sec) */
  53. #define IDENTITY_CERT_LIFETIME (365*24*60*60)
  54. #define ADDR(tls) (((tls) && (tls)->address) ? tls->address : "peer")
  55. #if OPENSSL_VERSION_NUMBER < OPENSSL_V(1,0,0,'f')
  56. /* This is a version of OpenSSL before 1.0.0f. It does not have
  57. * the CVE-2011-4576 fix, and as such it can't use RELEASE_BUFFERS and
  58. * SSL3 safely at the same time.
  59. */
  60. #define DISABLE_SSL3_HANDSHAKE
  61. #endif
  62. /* We redefine these so that we can run correctly even if the vendor gives us
  63. * a version of OpenSSL that does not match its header files. (Apple: I am
  64. * looking at you.)
  65. */
  66. #ifndef SSL_OP_ALLOW_UNSAFE_LEGACY_RENEGOTIATION
  67. #define SSL_OP_ALLOW_UNSAFE_LEGACY_RENEGOTIATION 0x00040000L
  68. #endif
  69. #ifndef SSL3_FLAGS_ALLOW_UNSAFE_LEGACY_RENEGOTIATION
  70. #define SSL3_FLAGS_ALLOW_UNSAFE_LEGACY_RENEGOTIATION 0x0010
  71. #endif
  72. /** Return values for tor_tls_classify_client_ciphers.
  73. *
  74. * @{
  75. */
  76. /** An error occurred when examining the client ciphers */
  77. #define CIPHERS_ERR -1
  78. /** The client cipher list indicates that a v1 handshake was in use. */
  79. #define CIPHERS_V1 1
  80. /** The client cipher list indicates that the client is using the v2 or the
  81. * v3 handshake, but that it is (probably!) lying about what ciphers it
  82. * supports */
  83. #define CIPHERS_V2 2
  84. /** The client cipher list indicates that the client is using the v2 or the
  85. * v3 handshake, and that it is telling the truth about what ciphers it
  86. * supports */
  87. #define CIPHERS_UNRESTRICTED 3
  88. /** @} */
  89. /** The ex_data index in which we store a pointer to an SSL object's
  90. * corresponding tor_tls_t object. */
  91. STATIC int tor_tls_object_ex_data_index = -1;
  92. /** Helper: Allocate tor_tls_object_ex_data_index. */
  93. STATIC void
  94. tor_tls_allocate_tor_tls_object_ex_data_index(void)
  95. {
  96. if (tor_tls_object_ex_data_index == -1) {
  97. tor_tls_object_ex_data_index =
  98. SSL_get_ex_new_index(0, NULL, NULL, NULL, NULL);
  99. tor_assert(tor_tls_object_ex_data_index != -1);
  100. }
  101. }
  102. /** Helper: given a SSL* pointer, return the tor_tls_t object using that
  103. * pointer. */
  104. STATIC tor_tls_t *
  105. tor_tls_get_by_ssl(const SSL *ssl)
  106. {
  107. tor_tls_t *result = SSL_get_ex_data(ssl, tor_tls_object_ex_data_index);
  108. if (result)
  109. tor_assert(result->magic == TOR_TLS_MAGIC);
  110. return result;
  111. }
  112. static void tor_tls_context_decref(tor_tls_context_t *ctx);
  113. static void tor_tls_context_incref(tor_tls_context_t *ctx);
  114. static int check_cert_lifetime_internal(int severity, const X509 *cert,
  115. time_t now,
  116. int past_tolerance, int future_tolerance);
  117. /** Global TLS contexts. We keep them here because nobody else needs
  118. * to touch them.
  119. *
  120. * @{ */
  121. STATIC tor_tls_context_t *server_tls_context = NULL;
  122. STATIC tor_tls_context_t *client_tls_context = NULL;
  123. /**@}*/
  124. /** True iff tor_tls_init() has been called. */
  125. static int tls_library_is_initialized = 0;
  126. /* Module-internal error codes. */
  127. #define TOR_TLS_SYSCALL_ (MIN_TOR_TLS_ERROR_VAL_ - 2)
  128. #define TOR_TLS_ZERORETURN_ (MIN_TOR_TLS_ERROR_VAL_ - 1)
  129. /** Write a description of the current state of <b>tls</b> into the
  130. * <b>sz</b>-byte buffer at <b>buf</b>. */
  131. void
  132. tor_tls_get_state_description(tor_tls_t *tls, char *buf, size_t sz)
  133. {
  134. const char *ssl_state;
  135. const char *tortls_state;
  136. if (PREDICT_UNLIKELY(!tls || !tls->ssl)) {
  137. strlcpy(buf, "(No SSL object)", sz);
  138. return;
  139. }
  140. ssl_state = SSL_state_string_long(tls->ssl);
  141. switch (tls->state) {
  142. #define CASE(st) case TOR_TLS_ST_##st: tortls_state = " in "#st ; break
  143. CASE(HANDSHAKE);
  144. CASE(OPEN);
  145. CASE(GOTCLOSE);
  146. CASE(SENTCLOSE);
  147. CASE(CLOSED);
  148. CASE(RENEGOTIATE);
  149. #undef CASE
  150. case TOR_TLS_ST_BUFFEREVENT:
  151. tortls_state = "";
  152. break;
  153. default:
  154. tortls_state = " in unknown TLS state";
  155. break;
  156. }
  157. tor_snprintf(buf, sz, "%s%s", ssl_state, tortls_state);
  158. }
  159. /** Log a single error <b>err</b> as returned by ERR_get_error(), which was
  160. * received while performing an operation <b>doing</b> on <b>tls</b>. Log
  161. * the message at <b>severity</b>, in log domain <b>domain</b>. */
  162. void
  163. tor_tls_log_one_error(tor_tls_t *tls, unsigned long err,
  164. int severity, int domain, const char *doing)
  165. {
  166. const char *state = NULL, *addr;
  167. const char *msg, *lib, *func;
  168. state = (tls && tls->ssl)?SSL_state_string_long(tls->ssl):"---";
  169. addr = tls ? tls->address : NULL;
  170. /* Some errors are known-benign, meaning they are the fault of the other
  171. * side of the connection. The caller doesn't know this, so override the
  172. * priority for those cases. */
  173. switch (ERR_GET_REASON(err)) {
  174. case SSL_R_HTTP_REQUEST:
  175. case SSL_R_HTTPS_PROXY_REQUEST:
  176. case SSL_R_RECORD_LENGTH_MISMATCH:
  177. #ifndef OPENSSL_1_1_API
  178. case SSL_R_RECORD_TOO_LARGE:
  179. #endif
  180. case SSL_R_UNKNOWN_PROTOCOL:
  181. case SSL_R_UNSUPPORTED_PROTOCOL:
  182. severity = LOG_INFO;
  183. break;
  184. default:
  185. break;
  186. }
  187. msg = (const char*)ERR_reason_error_string(err);
  188. lib = (const char*)ERR_lib_error_string(err);
  189. func = (const char*)ERR_func_error_string(err);
  190. if (!msg) msg = "(null)";
  191. if (!lib) lib = "(null)";
  192. if (!func) func = "(null)";
  193. if (doing) {
  194. tor_log(severity, domain, "TLS error while %s%s%s: %s (in %s:%s:%s)",
  195. doing, addr?" with ":"", addr?addr:"",
  196. msg, lib, func, state);
  197. } else {
  198. tor_log(severity, domain, "TLS error%s%s: %s (in %s:%s:%s)",
  199. addr?" with ":"", addr?addr:"",
  200. msg, lib, func, state);
  201. }
  202. }
  203. /** Log all pending tls errors at level <b>severity</b> in log domain
  204. * <b>domain</b>. Use <b>doing</b> to describe our current activities.
  205. */
  206. STATIC void
  207. tls_log_errors(tor_tls_t *tls, int severity, int domain, const char *doing)
  208. {
  209. unsigned long err;
  210. while ((err = ERR_get_error()) != 0) {
  211. tor_tls_log_one_error(tls, err, severity, domain, doing);
  212. }
  213. }
  214. /** Convert an errno (or a WSAerrno on windows) into a TOR_TLS_* error
  215. * code. */
  216. STATIC int
  217. tor_errno_to_tls_error(int e)
  218. {
  219. switch (e) {
  220. case SOCK_ERRNO(ECONNRESET): // most common
  221. return TOR_TLS_ERROR_CONNRESET;
  222. case SOCK_ERRNO(ETIMEDOUT):
  223. return TOR_TLS_ERROR_TIMEOUT;
  224. case SOCK_ERRNO(EHOSTUNREACH):
  225. case SOCK_ERRNO(ENETUNREACH):
  226. return TOR_TLS_ERROR_NO_ROUTE;
  227. case SOCK_ERRNO(ECONNREFUSED):
  228. return TOR_TLS_ERROR_CONNREFUSED; // least common
  229. default:
  230. return TOR_TLS_ERROR_MISC;
  231. }
  232. }
  233. /** Given a TOR_TLS_* error code, return a string equivalent. */
  234. const char *
  235. tor_tls_err_to_string(int err)
  236. {
  237. if (err >= 0)
  238. return "[Not an error.]";
  239. switch (err) {
  240. case TOR_TLS_ERROR_MISC: return "misc error";
  241. case TOR_TLS_ERROR_IO: return "unexpected close";
  242. case TOR_TLS_ERROR_CONNREFUSED: return "connection refused";
  243. case TOR_TLS_ERROR_CONNRESET: return "connection reset";
  244. case TOR_TLS_ERROR_NO_ROUTE: return "host unreachable";
  245. case TOR_TLS_ERROR_TIMEOUT: return "connection timed out";
  246. case TOR_TLS_CLOSE: return "closed";
  247. case TOR_TLS_WANTREAD: return "want to read";
  248. case TOR_TLS_WANTWRITE: return "want to write";
  249. default: return "(unknown error code)";
  250. }
  251. }
  252. #define CATCH_SYSCALL 1
  253. #define CATCH_ZERO 2
  254. /** Given a TLS object and the result of an SSL_* call, use
  255. * SSL_get_error to determine whether an error has occurred, and if so
  256. * which one. Return one of TOR_TLS_{DONE|WANTREAD|WANTWRITE|ERROR}.
  257. * If extra&CATCH_SYSCALL is true, return TOR_TLS_SYSCALL_ instead of
  258. * reporting syscall errors. If extra&CATCH_ZERO is true, return
  259. * TOR_TLS_ZERORETURN_ instead of reporting zero-return errors.
  260. *
  261. * If an error has occurred, log it at level <b>severity</b> and describe the
  262. * current action as <b>doing</b>.
  263. */
  264. STATIC int
  265. tor_tls_get_error(tor_tls_t *tls, int r, int extra,
  266. const char *doing, int severity, int domain)
  267. {
  268. int err = SSL_get_error(tls->ssl, r);
  269. int tor_error = TOR_TLS_ERROR_MISC;
  270. switch (err) {
  271. case SSL_ERROR_NONE:
  272. return TOR_TLS_DONE;
  273. case SSL_ERROR_WANT_READ:
  274. return TOR_TLS_WANTREAD;
  275. case SSL_ERROR_WANT_WRITE:
  276. return TOR_TLS_WANTWRITE;
  277. case SSL_ERROR_SYSCALL:
  278. if (extra&CATCH_SYSCALL)
  279. return TOR_TLS_SYSCALL_;
  280. if (r == 0) {
  281. tor_log(severity, LD_NET, "TLS error: unexpected close while %s (%s)",
  282. doing, SSL_state_string_long(tls->ssl));
  283. tor_error = TOR_TLS_ERROR_IO;
  284. } else {
  285. int e = tor_socket_errno(tls->socket);
  286. tor_log(severity, LD_NET,
  287. "TLS error: <syscall error while %s> (errno=%d: %s; state=%s)",
  288. doing, e, tor_socket_strerror(e),
  289. SSL_state_string_long(tls->ssl));
  290. tor_error = tor_errno_to_tls_error(e);
  291. }
  292. tls_log_errors(tls, severity, domain, doing);
  293. return tor_error;
  294. case SSL_ERROR_ZERO_RETURN:
  295. if (extra&CATCH_ZERO)
  296. return TOR_TLS_ZERORETURN_;
  297. tor_log(severity, LD_NET, "TLS connection closed while %s in state %s",
  298. doing, SSL_state_string_long(tls->ssl));
  299. tls_log_errors(tls, severity, domain, doing);
  300. return TOR_TLS_CLOSE;
  301. default:
  302. tls_log_errors(tls, severity, domain, doing);
  303. return TOR_TLS_ERROR_MISC;
  304. }
  305. }
  306. /** Initialize OpenSSL, unless it has already been initialized.
  307. */
  308. static void
  309. tor_tls_init(void)
  310. {
  311. check_no_tls_errors();
  312. if (!tls_library_is_initialized) {
  313. SSL_library_init();
  314. SSL_load_error_strings();
  315. #if (SIZEOF_VOID_P >= 8 && \
  316. OPENSSL_VERSION_NUMBER >= OPENSSL_V_SERIES(1,0,1))
  317. long version = OpenSSL_version_num();
  318. /* LCOV_EXCL_START : we can't test these lines on the same machine */
  319. if (version >= OPENSSL_V_SERIES(1,0,1)) {
  320. /* Warn if we could *almost* be running with much faster ECDH.
  321. If we're built for a 64-bit target, using OpenSSL 1.0.1, but we
  322. don't have one of the built-in __uint128-based speedups, we are
  323. just one build operation away from an accelerated handshake.
  324. (We could be looking at OPENSSL_NO_EC_NISTP_64_GCC_128 instead of
  325. doing this test, but that gives compile-time options, not runtime
  326. behavior.)
  327. */
  328. EC_KEY *key = EC_KEY_new_by_curve_name(NID_X9_62_prime256v1);
  329. const EC_GROUP *g = key ? EC_KEY_get0_group(key) : NULL;
  330. const EC_METHOD *m = g ? EC_GROUP_method_of(g) : NULL;
  331. const int warn = (m == EC_GFp_simple_method() ||
  332. m == EC_GFp_mont_method() ||
  333. m == EC_GFp_nist_method());
  334. EC_KEY_free(key);
  335. if (warn)
  336. log_notice(LD_GENERAL, "We were built to run on a 64-bit CPU, with "
  337. "OpenSSL 1.0.1 or later, but with a version of OpenSSL "
  338. "that apparently lacks accelerated support for the NIST "
  339. "P-224 and P-256 groups. Building openssl with such "
  340. "support (using the enable-ec_nistp_64_gcc_128 option "
  341. "when configuring it) would make ECDH much faster.");
  342. }
  343. /* LCOV_EXCL_STOP */
  344. #endif
  345. tor_tls_allocate_tor_tls_object_ex_data_index();
  346. tls_library_is_initialized = 1;
  347. }
  348. }
  349. /** Free all global TLS structures. */
  350. void
  351. tor_tls_free_all(void)
  352. {
  353. check_no_tls_errors();
  354. if (server_tls_context) {
  355. tor_tls_context_t *ctx = server_tls_context;
  356. server_tls_context = NULL;
  357. tor_tls_context_decref(ctx);
  358. }
  359. if (client_tls_context) {
  360. tor_tls_context_t *ctx = client_tls_context;
  361. client_tls_context = NULL;
  362. tor_tls_context_decref(ctx);
  363. }
  364. }
  365. /** We need to give OpenSSL a callback to verify certificates. This is
  366. * it: We always accept peer certs and complete the handshake. We
  367. * don't validate them until later.
  368. */
  369. STATIC int
  370. always_accept_verify_cb(int preverify_ok,
  371. X509_STORE_CTX *x509_ctx)
  372. {
  373. (void) preverify_ok;
  374. (void) x509_ctx;
  375. return 1;
  376. }
  377. /** Return a newly allocated X509 name with commonName <b>cname</b>. */
  378. static X509_NAME *
  379. tor_x509_name_new(const char *cname)
  380. {
  381. int nid;
  382. X509_NAME *name;
  383. /* LCOV_EXCL_BR_START : these branches will only fail on OOM errors */
  384. if (!(name = X509_NAME_new()))
  385. return NULL;
  386. if ((nid = OBJ_txt2nid("commonName")) == NID_undef) goto error;
  387. if (!(X509_NAME_add_entry_by_NID(name, nid, MBSTRING_ASC,
  388. (unsigned char*)cname, -1, -1, 0)))
  389. goto error;
  390. /* LCOV_EXCL_BR_STOP */
  391. return name;
  392. error:
  393. /* LCOV_EXCL_START : these lines will only execute on out of memory errors*/
  394. X509_NAME_free(name);
  395. return NULL;
  396. /* LCOV_EXCL_STOP */
  397. }
  398. /** Generate and sign an X509 certificate with the public key <b>rsa</b>,
  399. * signed by the private key <b>rsa_sign</b>. The commonName of the
  400. * certificate will be <b>cname</b>; the commonName of the issuer will be
  401. * <b>cname_sign</b>. The cert will be valid for <b>cert_lifetime</b>
  402. * seconds, starting from some time in the past.
  403. *
  404. * Return a certificate on success, NULL on failure.
  405. */
  406. MOCK_IMPL(STATIC X509 *,
  407. tor_tls_create_certificate,(crypto_pk_t *rsa,
  408. crypto_pk_t *rsa_sign,
  409. const char *cname,
  410. const char *cname_sign,
  411. unsigned int cert_lifetime))
  412. {
  413. /* OpenSSL generates self-signed certificates with random 64-bit serial
  414. * numbers, so let's do that too. */
  415. #define SERIAL_NUMBER_SIZE 8
  416. time_t start_time, end_time;
  417. BIGNUM *serial_number = NULL;
  418. unsigned char serial_tmp[SERIAL_NUMBER_SIZE];
  419. EVP_PKEY *sign_pkey = NULL, *pkey=NULL;
  420. X509 *x509 = NULL;
  421. X509_NAME *name = NULL, *name_issuer=NULL;
  422. tor_tls_init();
  423. /* Make sure we're part-way through the certificate lifetime, rather
  424. * than having it start right now. Don't choose quite uniformly, since
  425. * then we might pick a time where we're about to expire. Lastly, be
  426. * sure to start on a day boundary. */
  427. time_t now = time(NULL);
  428. start_time = crypto_rand_time_range(now - cert_lifetime, now) + 2*24*3600;
  429. start_time -= start_time % (24*3600);
  430. tor_assert(rsa);
  431. tor_assert(cname);
  432. tor_assert(rsa_sign);
  433. tor_assert(cname_sign);
  434. if (!(sign_pkey = crypto_pk_get_evp_pkey_(rsa_sign,1)))
  435. goto error;
  436. if (!(pkey = crypto_pk_get_evp_pkey_(rsa,0)))
  437. goto error;
  438. if (!(x509 = X509_new()))
  439. goto error;
  440. if (!(X509_set_version(x509, 2)))
  441. goto error;
  442. { /* our serial number is 8 random bytes. */
  443. crypto_rand((char *)serial_tmp, sizeof(serial_tmp));
  444. if (!(serial_number = BN_bin2bn(serial_tmp, sizeof(serial_tmp), NULL)))
  445. goto error;
  446. if (!(BN_to_ASN1_INTEGER(serial_number, X509_get_serialNumber(x509))))
  447. goto error;
  448. }
  449. if (!(name = tor_x509_name_new(cname)))
  450. goto error;
  451. if (!(X509_set_subject_name(x509, name)))
  452. goto error;
  453. if (!(name_issuer = tor_x509_name_new(cname_sign)))
  454. goto error;
  455. if (!(X509_set_issuer_name(x509, name_issuer)))
  456. goto error;
  457. if (!X509_time_adj(X509_get_notBefore(x509),0,&start_time))
  458. goto error;
  459. end_time = start_time + cert_lifetime;
  460. if (!X509_time_adj(X509_get_notAfter(x509),0,&end_time))
  461. goto error;
  462. if (!X509_set_pubkey(x509, pkey))
  463. goto error;
  464. if (!X509_sign(x509, sign_pkey, EVP_sha256()))
  465. goto error;
  466. goto done;
  467. error:
  468. if (x509) {
  469. X509_free(x509);
  470. x509 = NULL;
  471. }
  472. done:
  473. tls_log_errors(NULL, LOG_WARN, LD_NET, "generating certificate");
  474. if (sign_pkey)
  475. EVP_PKEY_free(sign_pkey);
  476. if (pkey)
  477. EVP_PKEY_free(pkey);
  478. if (serial_number)
  479. BN_clear_free(serial_number);
  480. if (name)
  481. X509_NAME_free(name);
  482. if (name_issuer)
  483. X509_NAME_free(name_issuer);
  484. return x509;
  485. #undef SERIAL_NUMBER_SIZE
  486. }
  487. /** List of ciphers that servers should select from when the client might be
  488. * claiming extra unsupported ciphers in order to avoid fingerprinting. */
  489. #define SERVER_CIPHER_LIST \
  490. (TLS1_TXT_DHE_RSA_WITH_AES_256_SHA ":" \
  491. TLS1_TXT_DHE_RSA_WITH_AES_128_SHA)
  492. /** List of ciphers that servers should select from when we actually have
  493. * our choice of what cipher to use. */
  494. static const char UNRESTRICTED_SERVER_CIPHER_LIST[] =
  495. /* This list is autogenerated with the gen_server_ciphers.py script;
  496. * don't hand-edit it. */
  497. #ifdef TLS1_TXT_ECDHE_RSA_WITH_AES_256_GCM_SHA384
  498. TLS1_TXT_ECDHE_RSA_WITH_AES_256_GCM_SHA384 ":"
  499. #endif
  500. #ifdef TLS1_TXT_ECDHE_RSA_WITH_AES_128_GCM_SHA256
  501. TLS1_TXT_ECDHE_RSA_WITH_AES_128_GCM_SHA256 ":"
  502. #endif
  503. #ifdef TLS1_TXT_ECDHE_RSA_WITH_AES_256_SHA384
  504. TLS1_TXT_ECDHE_RSA_WITH_AES_256_SHA384 ":"
  505. #endif
  506. #ifdef TLS1_TXT_ECDHE_RSA_WITH_AES_128_SHA256
  507. TLS1_TXT_ECDHE_RSA_WITH_AES_128_SHA256 ":"
  508. #endif
  509. #ifdef TLS1_TXT_ECDHE_RSA_WITH_AES_256_CBC_SHA
  510. TLS1_TXT_ECDHE_RSA_WITH_AES_256_CBC_SHA ":"
  511. #endif
  512. #ifdef TLS1_TXT_ECDHE_RSA_WITH_AES_128_CBC_SHA
  513. TLS1_TXT_ECDHE_RSA_WITH_AES_128_CBC_SHA ":"
  514. #endif
  515. #ifdef TLS1_TXT_DHE_RSA_WITH_AES_256_GCM_SHA384
  516. TLS1_TXT_DHE_RSA_WITH_AES_256_GCM_SHA384 ":"
  517. #endif
  518. #ifdef TLS1_TXT_DHE_RSA_WITH_AES_128_GCM_SHA256
  519. TLS1_TXT_DHE_RSA_WITH_AES_128_GCM_SHA256 ":"
  520. #endif
  521. #ifdef TLS1_TXT_DHE_RSA_WITH_AES_256_SHA256
  522. TLS1_TXT_DHE_RSA_WITH_AES_256_SHA256 ":"
  523. #endif
  524. #ifdef TLS1_TXT_DHE_RSA_WITH_AES_128_SHA256
  525. TLS1_TXT_DHE_RSA_WITH_AES_128_SHA256 ":"
  526. #endif
  527. /* Required */
  528. TLS1_TXT_DHE_RSA_WITH_AES_256_SHA ":"
  529. /* Required */
  530. TLS1_TXT_DHE_RSA_WITH_AES_128_SHA
  531. ;
  532. /* Note: to set up your own private testing network with link crypto
  533. * disabled, set your Tors' cipher list to
  534. * (SSL3_TXT_RSA_NULL_SHA). If you do this, you won't be able to communicate
  535. * with any of the "real" Tors, though. */
  536. #define CIPHER(id, name) name ":"
  537. #define XCIPHER(id, name)
  538. /** List of ciphers that clients should advertise, omitting items that
  539. * our OpenSSL doesn't know about. */
  540. static const char CLIENT_CIPHER_LIST[] =
  541. #include "ciphers.inc"
  542. /* Tell it not to use SSLv2 ciphers, so that it can select an SSLv3 version
  543. * of any cipher we say. */
  544. "!SSLv2"
  545. ;
  546. #undef CIPHER
  547. #undef XCIPHER
  548. /** Free all storage held in <b>cert</b> */
  549. void
  550. tor_x509_cert_free(tor_x509_cert_t *cert)
  551. {
  552. if (! cert)
  553. return;
  554. if (cert->cert)
  555. X509_free(cert->cert);
  556. tor_free(cert->encoded);
  557. memwipe(cert, 0x03, sizeof(*cert));
  558. /* LCOV_EXCL_BR_START since cert will never be NULL here */
  559. tor_free(cert);
  560. /* LCOV_EXCL_BR_STOP */
  561. }
  562. /**
  563. * Allocate a new tor_x509_cert_t to hold the certificate "x509_cert".
  564. *
  565. * Steals a reference to x509_cert.
  566. */
  567. MOCK_IMPL(STATIC tor_x509_cert_t *,
  568. tor_x509_cert_new,(X509 *x509_cert))
  569. {
  570. tor_x509_cert_t *cert;
  571. EVP_PKEY *pkey;
  572. RSA *rsa;
  573. int length;
  574. unsigned char *buf = NULL;
  575. if (!x509_cert)
  576. return NULL;
  577. length = i2d_X509(x509_cert, &buf);
  578. cert = tor_malloc_zero(sizeof(tor_x509_cert_t));
  579. if (length <= 0 || buf == NULL) {
  580. /* LCOV_EXCL_START for the same reason as the exclusion above */
  581. tor_free(cert);
  582. log_err(LD_CRYPTO, "Couldn't get length of encoded x509 certificate");
  583. X509_free(x509_cert);
  584. return NULL;
  585. /* LCOV_EXCL_STOP */
  586. }
  587. cert->encoded_len = (size_t) length;
  588. cert->encoded = tor_malloc(length);
  589. memcpy(cert->encoded, buf, length);
  590. OPENSSL_free(buf);
  591. cert->cert = x509_cert;
  592. crypto_common_digests(&cert->cert_digests,
  593. (char*)cert->encoded, cert->encoded_len);
  594. if ((pkey = X509_get_pubkey(x509_cert)) &&
  595. (rsa = EVP_PKEY_get1_RSA(pkey))) {
  596. crypto_pk_t *pk = crypto_new_pk_from_rsa_(rsa);
  597. crypto_pk_get_common_digests(pk, &cert->pkey_digests);
  598. cert->pkey_digests_set = 1;
  599. crypto_pk_free(pk);
  600. EVP_PKEY_free(pkey);
  601. }
  602. return cert;
  603. }
  604. /** Return a copy of <b>cert</b> */
  605. tor_x509_cert_t *
  606. tor_x509_cert_dup(const tor_x509_cert_t *cert)
  607. {
  608. return tor_x509_cert_new(X509_dup(cert->cert));
  609. }
  610. /** Read a DER-encoded X509 cert, of length exactly <b>certificate_len</b>,
  611. * from a <b>certificate</b>. Return a newly allocated tor_x509_cert_t on
  612. * success and NULL on failure. */
  613. tor_x509_cert_t *
  614. tor_x509_cert_decode(const uint8_t *certificate, size_t certificate_len)
  615. {
  616. X509 *x509;
  617. const unsigned char *cp = (const unsigned char *)certificate;
  618. tor_x509_cert_t *newcert;
  619. tor_assert(certificate);
  620. check_no_tls_errors();
  621. if (certificate_len > INT_MAX)
  622. goto err;
  623. x509 = d2i_X509(NULL, &cp, (int)certificate_len);
  624. if (!x509)
  625. goto err; /* Couldn't decode */
  626. if (cp - certificate != (int)certificate_len) {
  627. X509_free(x509);
  628. goto err; /* Didn't use all the bytes */
  629. }
  630. newcert = tor_x509_cert_new(x509);
  631. if (!newcert) {
  632. goto err;
  633. }
  634. if (newcert->encoded_len != certificate_len ||
  635. fast_memneq(newcert->encoded, certificate, certificate_len)) {
  636. /* Cert wasn't in DER */
  637. tor_x509_cert_free(newcert);
  638. goto err;
  639. }
  640. return newcert;
  641. err:
  642. tls_log_errors(NULL, LOG_INFO, LD_CRYPTO, "decoding a certificate");
  643. return NULL;
  644. }
  645. /** Set *<b>encoded_out</b> and *<b>size_out</b> to <b>cert</b>'s encoded DER
  646. * representation and length, respectively. */
  647. void
  648. tor_x509_cert_get_der(const tor_x509_cert_t *cert,
  649. const uint8_t **encoded_out, size_t *size_out)
  650. {
  651. tor_assert(cert);
  652. tor_assert(encoded_out);
  653. tor_assert(size_out);
  654. *encoded_out = cert->encoded;
  655. *size_out = cert->encoded_len;
  656. }
  657. /** Return a set of digests for the public key in <b>cert</b>, or NULL if this
  658. * cert's public key is not one we know how to take the digest of. */
  659. const common_digests_t *
  660. tor_x509_cert_get_id_digests(const tor_x509_cert_t *cert)
  661. {
  662. if (cert->pkey_digests_set)
  663. return &cert->pkey_digests;
  664. else
  665. return NULL;
  666. }
  667. /** Return a set of digests for the public key in <b>cert</b>. */
  668. const common_digests_t *
  669. tor_x509_cert_get_cert_digests(const tor_x509_cert_t *cert)
  670. {
  671. return &cert->cert_digests;
  672. }
  673. /** Remove a reference to <b>ctx</b>, and free it if it has no more
  674. * references. */
  675. static void
  676. tor_tls_context_decref(tor_tls_context_t *ctx)
  677. {
  678. tor_assert(ctx);
  679. if (--ctx->refcnt == 0) {
  680. SSL_CTX_free(ctx->ctx);
  681. tor_x509_cert_free(ctx->my_link_cert);
  682. tor_x509_cert_free(ctx->my_id_cert);
  683. tor_x509_cert_free(ctx->my_auth_cert);
  684. crypto_pk_free(ctx->link_key);
  685. crypto_pk_free(ctx->auth_key);
  686. /* LCOV_EXCL_BR_START since ctx will never be NULL here */
  687. tor_free(ctx);
  688. /* LCOV_EXCL_BR_STOP */
  689. }
  690. }
  691. /** Set *<b>link_cert_out</b> and *<b>id_cert_out</b> to the link certificate
  692. * and ID certificate that we're currently using for our V3 in-protocol
  693. * handshake's certificate chain. If <b>server</b> is true, provide the certs
  694. * that we use in server mode (auth, ID); otherwise, provide the certs that we
  695. * use in client mode. (link, ID) */
  696. int
  697. tor_tls_get_my_certs(int server,
  698. const tor_x509_cert_t **link_cert_out,
  699. const tor_x509_cert_t **id_cert_out)
  700. {
  701. tor_tls_context_t *ctx = server ? server_tls_context : client_tls_context;
  702. if (! ctx)
  703. return -1;
  704. if (link_cert_out)
  705. *link_cert_out = server ? ctx->my_link_cert : ctx->my_auth_cert;
  706. if (id_cert_out)
  707. *id_cert_out = ctx->my_id_cert;
  708. return 0;
  709. }
  710. /**
  711. * Return the authentication key that we use to authenticate ourselves as a
  712. * client in the V3 in-protocol handshake.
  713. */
  714. crypto_pk_t *
  715. tor_tls_get_my_client_auth_key(void)
  716. {
  717. if (! client_tls_context)
  718. return NULL;
  719. return client_tls_context->auth_key;
  720. }
  721. /**
  722. * Return a newly allocated copy of the public key that a certificate
  723. * certifies. Watch out! This returns NULL if the cert's key is not RSA.
  724. */
  725. crypto_pk_t *
  726. tor_tls_cert_get_key(tor_x509_cert_t *cert)
  727. {
  728. crypto_pk_t *result = NULL;
  729. EVP_PKEY *pkey = X509_get_pubkey(cert->cert);
  730. RSA *rsa;
  731. if (!pkey)
  732. return NULL;
  733. rsa = EVP_PKEY_get1_RSA(pkey);
  734. if (!rsa) {
  735. EVP_PKEY_free(pkey);
  736. return NULL;
  737. }
  738. result = crypto_new_pk_from_rsa_(rsa);
  739. EVP_PKEY_free(pkey);
  740. return result;
  741. }
  742. /** Return true iff the other side of <b>tls</b> has authenticated to us, and
  743. * the key certified in <b>cert</b> is the same as the key they used to do it.
  744. */
  745. MOCK_IMPL(int,
  746. tor_tls_cert_matches_key,(const tor_tls_t *tls, const tor_x509_cert_t *cert))
  747. {
  748. X509 *peercert = SSL_get_peer_certificate(tls->ssl);
  749. EVP_PKEY *link_key = NULL, *cert_key = NULL;
  750. int result;
  751. if (!peercert)
  752. return 0;
  753. link_key = X509_get_pubkey(peercert);
  754. cert_key = X509_get_pubkey(cert->cert);
  755. result = link_key && cert_key && EVP_PKEY_cmp(cert_key, link_key) == 1;
  756. X509_free(peercert);
  757. if (link_key)
  758. EVP_PKEY_free(link_key);
  759. if (cert_key)
  760. EVP_PKEY_free(cert_key);
  761. return result;
  762. }
  763. /** Check whether <b>cert</b> is well-formed, currently live, and correctly
  764. * signed by the public key in <b>signing_cert</b>. If <b>check_rsa_1024</b>,
  765. * make sure that it has an RSA key with 1024 bits; otherwise, just check that
  766. * the key is long enough. Return 1 if the cert is good, and 0 if it's bad or
  767. * we couldn't check it. */
  768. int
  769. tor_tls_cert_is_valid(int severity,
  770. const tor_x509_cert_t *cert,
  771. const tor_x509_cert_t *signing_cert,
  772. time_t now,
  773. int check_rsa_1024)
  774. {
  775. check_no_tls_errors();
  776. EVP_PKEY *cert_key;
  777. int r, key_ok = 0;
  778. if (!signing_cert || !cert)
  779. goto bad;
  780. EVP_PKEY *signing_key = X509_get_pubkey(signing_cert->cert);
  781. if (!signing_key)
  782. goto bad;
  783. r = X509_verify(cert->cert, signing_key);
  784. EVP_PKEY_free(signing_key);
  785. if (r <= 0)
  786. goto bad;
  787. /* okay, the signature checked out right. Now let's check the check the
  788. * lifetime. */
  789. if (check_cert_lifetime_internal(severity, cert->cert, now,
  790. 48*60*60, 30*24*60*60) < 0)
  791. goto bad;
  792. cert_key = X509_get_pubkey(cert->cert);
  793. if (check_rsa_1024 && cert_key) {
  794. RSA *rsa = EVP_PKEY_get1_RSA(cert_key);
  795. #ifdef OPENSSL_1_1_API
  796. if (rsa && RSA_bits(rsa) == 1024)
  797. #else
  798. if (rsa && BN_num_bits(rsa->n) == 1024)
  799. #endif
  800. key_ok = 1;
  801. if (rsa)
  802. RSA_free(rsa);
  803. } else if (cert_key) {
  804. int min_bits = 1024;
  805. #ifdef EVP_PKEY_EC
  806. if (EVP_PKEY_base_id(cert_key) == EVP_PKEY_EC)
  807. min_bits = 128;
  808. #endif
  809. if (EVP_PKEY_bits(cert_key) >= min_bits)
  810. key_ok = 1;
  811. }
  812. EVP_PKEY_free(cert_key);
  813. if (!key_ok)
  814. goto bad;
  815. /* XXXX compare DNs or anything? */
  816. return 1;
  817. bad:
  818. tls_log_errors(NULL, LOG_INFO, LD_CRYPTO, "checking a certificate");
  819. return 0;
  820. }
  821. /** Increase the reference count of <b>ctx</b>. */
  822. static void
  823. tor_tls_context_incref(tor_tls_context_t *ctx)
  824. {
  825. ++ctx->refcnt;
  826. }
  827. /** Create new global client and server TLS contexts.
  828. *
  829. * If <b>server_identity</b> is NULL, this will not generate a server
  830. * TLS context. If TOR_TLS_CTX_IS_PUBLIC_SERVER is set in <b>flags</b>, use
  831. * the same TLS context for incoming and outgoing connections, and
  832. * ignore <b>client_identity</b>. If one of TOR_TLS_CTX_USE_ECDHE_P{224,256}
  833. * is set in <b>flags</b>, use that ECDHE group if possible; otherwise use
  834. * the default ECDHE group. */
  835. int
  836. tor_tls_context_init(unsigned flags,
  837. crypto_pk_t *client_identity,
  838. crypto_pk_t *server_identity,
  839. unsigned int key_lifetime)
  840. {
  841. int rv1 = 0;
  842. int rv2 = 0;
  843. const int is_public_server = flags & TOR_TLS_CTX_IS_PUBLIC_SERVER;
  844. check_no_tls_errors();
  845. if (is_public_server) {
  846. tor_tls_context_t *new_ctx;
  847. tor_tls_context_t *old_ctx;
  848. tor_assert(server_identity != NULL);
  849. rv1 = tor_tls_context_init_one(&server_tls_context,
  850. server_identity,
  851. key_lifetime, flags, 0);
  852. if (rv1 >= 0) {
  853. new_ctx = server_tls_context;
  854. tor_tls_context_incref(new_ctx);
  855. old_ctx = client_tls_context;
  856. client_tls_context = new_ctx;
  857. if (old_ctx != NULL) {
  858. tor_tls_context_decref(old_ctx);
  859. }
  860. }
  861. } else {
  862. if (server_identity != NULL) {
  863. rv1 = tor_tls_context_init_one(&server_tls_context,
  864. server_identity,
  865. key_lifetime,
  866. flags,
  867. 0);
  868. } else {
  869. tor_tls_context_t *old_ctx = server_tls_context;
  870. server_tls_context = NULL;
  871. if (old_ctx != NULL) {
  872. tor_tls_context_decref(old_ctx);
  873. }
  874. }
  875. rv2 = tor_tls_context_init_one(&client_tls_context,
  876. client_identity,
  877. key_lifetime,
  878. flags,
  879. 1);
  880. }
  881. tls_log_errors(NULL, LOG_WARN, LD_CRYPTO, "constructing a TLS context");
  882. return MIN(rv1, rv2);
  883. }
  884. /** Create a new global TLS context.
  885. *
  886. * You can call this function multiple times. Each time you call it,
  887. * it generates new certificates; all new connections will use
  888. * the new SSL context.
  889. */
  890. STATIC int
  891. tor_tls_context_init_one(tor_tls_context_t **ppcontext,
  892. crypto_pk_t *identity,
  893. unsigned int key_lifetime,
  894. unsigned int flags,
  895. int is_client)
  896. {
  897. tor_tls_context_t *new_ctx = tor_tls_context_new(identity,
  898. key_lifetime,
  899. flags,
  900. is_client);
  901. tor_tls_context_t *old_ctx = *ppcontext;
  902. if (new_ctx != NULL) {
  903. *ppcontext = new_ctx;
  904. /* Free the old context if one existed. */
  905. if (old_ctx != NULL) {
  906. /* This is safe even if there are open connections: we reference-
  907. * count tor_tls_context_t objects. */
  908. tor_tls_context_decref(old_ctx);
  909. }
  910. }
  911. return ((new_ctx != NULL) ? 0 : -1);
  912. }
  913. /** The group we should use for ecdhe when none was selected. */
  914. #define NID_tor_default_ecdhe_group NID_X9_62_prime256v1
  915. #define RSA_LINK_KEY_BITS 2048
  916. /** Create a new TLS context for use with Tor TLS handshakes.
  917. * <b>identity</b> should be set to the identity key used to sign the
  918. * certificate.
  919. */
  920. STATIC tor_tls_context_t *
  921. tor_tls_context_new(crypto_pk_t *identity, unsigned int key_lifetime,
  922. unsigned flags, int is_client)
  923. {
  924. crypto_pk_t *rsa = NULL, *rsa_auth = NULL;
  925. EVP_PKEY *pkey = NULL;
  926. tor_tls_context_t *result = NULL;
  927. X509 *cert = NULL, *idcert = NULL, *authcert = NULL;
  928. char *nickname = NULL, *nn2 = NULL;
  929. tor_tls_init();
  930. nickname = crypto_random_hostname(8, 20, "www.", ".net");
  931. #ifdef DISABLE_V3_LINKPROTO_SERVERSIDE
  932. nn2 = crypto_random_hostname(8, 20, "www.", ".net");
  933. #else
  934. nn2 = crypto_random_hostname(8, 20, "www.", ".com");
  935. #endif
  936. /* Generate short-term RSA key for use with TLS. */
  937. if (!(rsa = crypto_pk_new()))
  938. goto error;
  939. if (crypto_pk_generate_key_with_bits(rsa, RSA_LINK_KEY_BITS)<0)
  940. goto error;
  941. if (!is_client) {
  942. /* Generate short-term RSA key for use in the in-protocol ("v3")
  943. * authentication handshake. */
  944. if (!(rsa_auth = crypto_pk_new()))
  945. goto error;
  946. if (crypto_pk_generate_key(rsa_auth)<0)
  947. goto error;
  948. /* Create a link certificate signed by identity key. */
  949. cert = tor_tls_create_certificate(rsa, identity, nickname, nn2,
  950. key_lifetime);
  951. /* Create self-signed certificate for identity key. */
  952. idcert = tor_tls_create_certificate(identity, identity, nn2, nn2,
  953. IDENTITY_CERT_LIFETIME);
  954. /* Create an authentication certificate signed by identity key. */
  955. authcert = tor_tls_create_certificate(rsa_auth, identity, nickname, nn2,
  956. key_lifetime);
  957. if (!cert || !idcert || !authcert) {
  958. log_warn(LD_CRYPTO, "Error creating certificate");
  959. goto error;
  960. }
  961. }
  962. result = tor_malloc_zero(sizeof(tor_tls_context_t));
  963. result->refcnt = 1;
  964. if (!is_client) {
  965. result->my_link_cert = tor_x509_cert_new(X509_dup(cert));
  966. result->my_id_cert = tor_x509_cert_new(X509_dup(idcert));
  967. result->my_auth_cert = tor_x509_cert_new(X509_dup(authcert));
  968. if (!result->my_link_cert || !result->my_id_cert || !result->my_auth_cert)
  969. goto error;
  970. result->link_key = crypto_pk_dup_key(rsa);
  971. result->auth_key = crypto_pk_dup_key(rsa_auth);
  972. }
  973. #if 0
  974. /* Tell OpenSSL to only use TLS1. This may have subtly different results
  975. * from SSLv23_method() with SSLv2 and SSLv3 disabled, so we need to do some
  976. * investigation before we consider adjusting it. It should be compatible
  977. * with existing Tors. */
  978. if (!(result->ctx = SSL_CTX_new(TLSv1_method())))
  979. goto error;
  980. #endif
  981. /* Tell OpenSSL to use TLS 1.0 or later but not SSL2 or SSL3. */
  982. #ifdef HAVE_TLS_METHOD
  983. if (!(result->ctx = SSL_CTX_new(TLS_method())))
  984. goto error;
  985. #else
  986. if (!(result->ctx = SSL_CTX_new(SSLv23_method())))
  987. goto error;
  988. #endif
  989. SSL_CTX_set_options(result->ctx, SSL_OP_NO_SSLv2);
  990. SSL_CTX_set_options(result->ctx, SSL_OP_NO_SSLv3);
  991. /* Prefer the server's ordering of ciphers: the client's ordering has
  992. * historically been chosen for fingerprinting resistance. */
  993. SSL_CTX_set_options(result->ctx, SSL_OP_CIPHER_SERVER_PREFERENCE);
  994. /* Disable TLS tickets if they're supported. We never want to use them;
  995. * using them can make our perfect forward secrecy a little worse, *and*
  996. * create an opportunity to fingerprint us (since it's unusual to use them
  997. * with TLS sessions turned off).
  998. *
  999. * In 0.2.4, clients advertise support for them though, to avoid a TLS
  1000. * distinguishability vector. This can give us worse PFS, though, if we
  1001. * get a server that doesn't set SSL_OP_NO_TICKET. With luck, there will
  1002. * be few such servers by the time 0.2.4 is more stable.
  1003. */
  1004. #ifdef SSL_OP_NO_TICKET
  1005. if (! is_client) {
  1006. SSL_CTX_set_options(result->ctx, SSL_OP_NO_TICKET);
  1007. }
  1008. #endif
  1009. SSL_CTX_set_options(result->ctx, SSL_OP_SINGLE_DH_USE);
  1010. SSL_CTX_set_options(result->ctx, SSL_OP_SINGLE_ECDH_USE);
  1011. #ifdef SSL_OP_NO_SESSION_RESUMPTION_ON_RENEGOTIATION
  1012. SSL_CTX_set_options(result->ctx,
  1013. SSL_OP_NO_SESSION_RESUMPTION_ON_RENEGOTIATION);
  1014. #endif
  1015. /* Yes, we know what we are doing here. No, we do not treat a renegotiation
  1016. * as authenticating any earlier-received data.
  1017. */
  1018. {
  1019. SSL_CTX_set_options(result->ctx,
  1020. SSL_OP_ALLOW_UNSAFE_LEGACY_RENEGOTIATION);
  1021. }
  1022. #ifdef SSL_OP_NO_COMPRESSION
  1023. SSL_CTX_set_options(result->ctx, SSL_OP_NO_COMPRESSION);
  1024. #endif
  1025. #if OPENSSL_VERSION_NUMBER < OPENSSL_V_SERIES(1,1,0)
  1026. #ifndef OPENSSL_NO_COMP
  1027. /* Don't actually allow compression; it uses ram and time, but the data
  1028. * we transmit is all encrypted anyway. */
  1029. if (result->ctx->comp_methods)
  1030. result->ctx->comp_methods = NULL;
  1031. #endif
  1032. #endif
  1033. #ifdef SSL_MODE_RELEASE_BUFFERS
  1034. SSL_CTX_set_mode(result->ctx, SSL_MODE_RELEASE_BUFFERS);
  1035. #endif
  1036. if (! is_client) {
  1037. if (cert && !SSL_CTX_use_certificate(result->ctx,cert))
  1038. goto error;
  1039. X509_free(cert); /* We just added a reference to cert. */
  1040. cert=NULL;
  1041. if (idcert) {
  1042. X509_STORE *s = SSL_CTX_get_cert_store(result->ctx);
  1043. tor_assert(s);
  1044. X509_STORE_add_cert(s, idcert);
  1045. X509_free(idcert); /* The context now owns the reference to idcert */
  1046. idcert = NULL;
  1047. }
  1048. }
  1049. SSL_CTX_set_session_cache_mode(result->ctx, SSL_SESS_CACHE_OFF);
  1050. if (!is_client) {
  1051. tor_assert(rsa);
  1052. if (!(pkey = crypto_pk_get_evp_pkey_(rsa,1)))
  1053. goto error;
  1054. if (!SSL_CTX_use_PrivateKey(result->ctx, pkey))
  1055. goto error;
  1056. EVP_PKEY_free(pkey);
  1057. pkey = NULL;
  1058. if (!SSL_CTX_check_private_key(result->ctx))
  1059. goto error;
  1060. }
  1061. {
  1062. crypto_dh_t *dh = crypto_dh_new(DH_TYPE_TLS);
  1063. tor_assert(dh);
  1064. SSL_CTX_set_tmp_dh(result->ctx, crypto_dh_get_dh_(dh));
  1065. crypto_dh_free(dh);
  1066. }
  1067. if (! is_client) {
  1068. int nid;
  1069. EC_KEY *ec_key;
  1070. if (flags & TOR_TLS_CTX_USE_ECDHE_P224)
  1071. nid = NID_secp224r1;
  1072. else if (flags & TOR_TLS_CTX_USE_ECDHE_P256)
  1073. nid = NID_X9_62_prime256v1;
  1074. else
  1075. nid = NID_tor_default_ecdhe_group;
  1076. /* Use P-256 for ECDHE. */
  1077. ec_key = EC_KEY_new_by_curve_name(nid);
  1078. if (ec_key != NULL) /*XXXX Handle errors? */
  1079. SSL_CTX_set_tmp_ecdh(result->ctx, ec_key);
  1080. EC_KEY_free(ec_key);
  1081. }
  1082. SSL_CTX_set_verify(result->ctx, SSL_VERIFY_PEER,
  1083. always_accept_verify_cb);
  1084. /* let us realloc bufs that we're writing from */
  1085. SSL_CTX_set_mode(result->ctx, SSL_MODE_ACCEPT_MOVING_WRITE_BUFFER);
  1086. if (rsa)
  1087. crypto_pk_free(rsa);
  1088. if (rsa_auth)
  1089. crypto_pk_free(rsa_auth);
  1090. X509_free(authcert);
  1091. tor_free(nickname);
  1092. tor_free(nn2);
  1093. return result;
  1094. error:
  1095. tls_log_errors(NULL, LOG_WARN, LD_NET, "creating TLS context");
  1096. tor_free(nickname);
  1097. tor_free(nn2);
  1098. if (pkey)
  1099. EVP_PKEY_free(pkey);
  1100. if (rsa)
  1101. crypto_pk_free(rsa);
  1102. if (rsa_auth)
  1103. crypto_pk_free(rsa_auth);
  1104. if (result)
  1105. tor_tls_context_decref(result);
  1106. if (cert)
  1107. X509_free(cert);
  1108. if (idcert)
  1109. X509_free(idcert);
  1110. if (authcert)
  1111. X509_free(authcert);
  1112. return NULL;
  1113. }
  1114. /** Invoked when a TLS state changes: log the change at severity 'debug' */
  1115. STATIC void
  1116. tor_tls_debug_state_callback(const SSL *ssl, int type, int val)
  1117. {
  1118. /* LCOV_EXCL_START since this depends on whether debug is captured or not */
  1119. log_debug(LD_HANDSHAKE, "SSL %p is now in state %s [type=%d,val=%d].",
  1120. ssl, SSL_state_string_long(ssl), type, val);
  1121. /* LCOV_EXCL_STOP */
  1122. }
  1123. /* Return the name of the negotiated ciphersuite in use on <b>tls</b> */
  1124. const char *
  1125. tor_tls_get_ciphersuite_name(tor_tls_t *tls)
  1126. {
  1127. return SSL_get_cipher(tls->ssl);
  1128. }
  1129. /* Here's the old V2 cipher list we sent from 0.2.1.1-alpha up to
  1130. * 0.2.3.17-beta. If a client is using this list, we can't believe the ciphers
  1131. * that it claims to support. We'll prune this list to remove the ciphers
  1132. * *we* don't recognize. */
  1133. STATIC uint16_t v2_cipher_list[] = {
  1134. 0xc00a, /* TLS1_TXT_ECDHE_ECDSA_WITH_AES_256_CBC_SHA */
  1135. 0xc014, /* TLS1_TXT_ECDHE_RSA_WITH_AES_256_CBC_SHA */
  1136. 0x0039, /* TLS1_TXT_DHE_RSA_WITH_AES_256_SHA */
  1137. 0x0038, /* TLS1_TXT_DHE_DSS_WITH_AES_256_SHA */
  1138. 0xc00f, /* TLS1_TXT_ECDH_RSA_WITH_AES_256_CBC_SHA */
  1139. 0xc005, /* TLS1_TXT_ECDH_ECDSA_WITH_AES_256_CBC_SHA */
  1140. 0x0035, /* TLS1_TXT_RSA_WITH_AES_256_SHA */
  1141. 0xc007, /* TLS1_TXT_ECDHE_ECDSA_WITH_RC4_128_SHA */
  1142. 0xc009, /* TLS1_TXT_ECDHE_ECDSA_WITH_AES_128_CBC_SHA */
  1143. 0xc011, /* TLS1_TXT_ECDHE_RSA_WITH_RC4_128_SHA */
  1144. 0xc013, /* TLS1_TXT_ECDHE_RSA_WITH_AES_128_CBC_SHA */
  1145. 0x0033, /* TLS1_TXT_DHE_RSA_WITH_AES_128_SHA */
  1146. 0x0032, /* TLS1_TXT_DHE_DSS_WITH_AES_128_SHA */
  1147. 0xc00c, /* TLS1_TXT_ECDH_RSA_WITH_RC4_128_SHA */
  1148. 0xc00e, /* TLS1_TXT_ECDH_RSA_WITH_AES_128_CBC_SHA */
  1149. 0xc002, /* TLS1_TXT_ECDH_ECDSA_WITH_RC4_128_SHA */
  1150. 0xc004, /* TLS1_TXT_ECDH_ECDSA_WITH_AES_128_CBC_SHA */
  1151. 0x0004, /* SSL3_TXT_RSA_RC4_128_MD5 */
  1152. 0x0005, /* SSL3_TXT_RSA_RC4_128_SHA */
  1153. 0x002f, /* TLS1_TXT_RSA_WITH_AES_128_SHA */
  1154. 0xc008, /* TLS1_TXT_ECDHE_ECDSA_WITH_DES_192_CBC3_SHA */
  1155. 0xc012, /* TLS1_TXT_ECDHE_RSA_WITH_DES_192_CBC3_SHA */
  1156. 0x0016, /* SSL3_TXT_EDH_RSA_DES_192_CBC3_SHA */
  1157. 0x0013, /* SSL3_TXT_EDH_DSS_DES_192_CBC3_SHA */
  1158. 0xc00d, /* TLS1_TXT_ECDH_RSA_WITH_DES_192_CBC3_SHA */
  1159. 0xc003, /* TLS1_TXT_ECDH_ECDSA_WITH_DES_192_CBC3_SHA */
  1160. 0xfeff, /* SSL3_TXT_RSA_FIPS_WITH_3DES_EDE_CBC_SHA */
  1161. 0x000a, /* SSL3_TXT_RSA_DES_192_CBC3_SHA */
  1162. 0
  1163. };
  1164. /** Have we removed the unrecognized ciphers from v2_cipher_list yet? */
  1165. static int v2_cipher_list_pruned = 0;
  1166. /** Return 0 if <b>m</b> does not support the cipher with ID <b>cipher</b>;
  1167. * return 1 if it does support it, or if we have no way to tell. */
  1168. STATIC int
  1169. find_cipher_by_id(const SSL *ssl, const SSL_METHOD *m, uint16_t cipher)
  1170. {
  1171. const SSL_CIPHER *c;
  1172. #ifdef HAVE_SSL_CIPHER_FIND
  1173. (void) m;
  1174. {
  1175. unsigned char cipherid[3];
  1176. tor_assert(ssl);
  1177. set_uint16(cipherid, htons(cipher));
  1178. cipherid[2] = 0; /* If ssl23_get_cipher_by_char finds no cipher starting
  1179. * with a two-byte 'cipherid', it may look for a v2
  1180. * cipher with the appropriate 3 bytes. */
  1181. c = SSL_CIPHER_find((SSL*)ssl, cipherid);
  1182. if (c)
  1183. tor_assert((SSL_CIPHER_get_id(c) & 0xffff) == cipher);
  1184. return c != NULL;
  1185. }
  1186. #else
  1187. # if defined(HAVE_STRUCT_SSL_METHOD_ST_GET_CIPHER_BY_CHAR)
  1188. if (m && m->get_cipher_by_char) {
  1189. unsigned char cipherid[3];
  1190. set_uint16(cipherid, htons(cipher));
  1191. cipherid[2] = 0; /* If ssl23_get_cipher_by_char finds no cipher starting
  1192. * with a two-byte 'cipherid', it may look for a v2
  1193. * cipher with the appropriate 3 bytes. */
  1194. c = m->get_cipher_by_char(cipherid);
  1195. if (c)
  1196. tor_assert((c->id & 0xffff) == cipher);
  1197. return c != NULL;
  1198. }
  1199. # endif
  1200. # ifndef OPENSSL_1_1_API
  1201. if (m && m->get_cipher && m->num_ciphers) {
  1202. /* It would seem that some of the "let's-clean-up-openssl" forks have
  1203. * removed the get_cipher_by_char function. Okay, so now you get a
  1204. * quadratic search.
  1205. */
  1206. int i;
  1207. for (i = 0; i < m->num_ciphers(); ++i) {
  1208. c = m->get_cipher(i);
  1209. if (c && (c->id & 0xffff) == cipher) {
  1210. return 1;
  1211. }
  1212. }
  1213. return 0;
  1214. }
  1215. # endif
  1216. (void) ssl;
  1217. (void) m;
  1218. (void) cipher;
  1219. return 1; /* No way to search */
  1220. #endif
  1221. }
  1222. /** Remove from v2_cipher_list every cipher that we don't support, so that
  1223. * comparing v2_cipher_list to a client's cipher list will give a sensible
  1224. * result. */
  1225. static void
  1226. prune_v2_cipher_list(const SSL *ssl)
  1227. {
  1228. uint16_t *inp, *outp;
  1229. #ifdef HAVE_TLS_METHOD
  1230. const SSL_METHOD *m = TLS_method();
  1231. #else
  1232. const SSL_METHOD *m = SSLv23_method();
  1233. #endif
  1234. inp = outp = v2_cipher_list;
  1235. while (*inp) {
  1236. if (find_cipher_by_id(ssl, m, *inp)) {
  1237. *outp++ = *inp++;
  1238. } else {
  1239. inp++;
  1240. }
  1241. }
  1242. *outp = 0;
  1243. v2_cipher_list_pruned = 1;
  1244. }
  1245. /** Examine the client cipher list in <b>ssl</b>, and determine what kind of
  1246. * client it is. Return one of CIPHERS_ERR, CIPHERS_V1, CIPHERS_V2,
  1247. * CIPHERS_UNRESTRICTED.
  1248. **/
  1249. STATIC int
  1250. tor_tls_classify_client_ciphers(const SSL *ssl,
  1251. STACK_OF(SSL_CIPHER) *peer_ciphers)
  1252. {
  1253. int i, res;
  1254. tor_tls_t *tor_tls;
  1255. if (PREDICT_UNLIKELY(!v2_cipher_list_pruned))
  1256. prune_v2_cipher_list(ssl);
  1257. tor_tls = tor_tls_get_by_ssl(ssl);
  1258. if (tor_tls && tor_tls->client_cipher_list_type)
  1259. return tor_tls->client_cipher_list_type;
  1260. /* If we reached this point, we just got a client hello. See if there is
  1261. * a cipher list. */
  1262. if (!peer_ciphers) {
  1263. log_info(LD_NET, "No ciphers on session");
  1264. res = CIPHERS_ERR;
  1265. goto done;
  1266. }
  1267. /* Now we need to see if there are any ciphers whose presence means we're
  1268. * dealing with an updated Tor. */
  1269. for (i = 0; i < sk_SSL_CIPHER_num(peer_ciphers); ++i) {
  1270. const SSL_CIPHER *cipher = sk_SSL_CIPHER_value(peer_ciphers, i);
  1271. const char *ciphername = SSL_CIPHER_get_name(cipher);
  1272. if (strcmp(ciphername, TLS1_TXT_DHE_RSA_WITH_AES_128_SHA) &&
  1273. strcmp(ciphername, TLS1_TXT_DHE_RSA_WITH_AES_256_SHA) &&
  1274. strcmp(ciphername, SSL3_TXT_EDH_RSA_DES_192_CBC3_SHA) &&
  1275. strcmp(ciphername, "(NONE)")) {
  1276. log_debug(LD_NET, "Got a non-version-1 cipher called '%s'", ciphername);
  1277. // return 1;
  1278. goto v2_or_higher;
  1279. }
  1280. }
  1281. res = CIPHERS_V1;
  1282. goto done;
  1283. v2_or_higher:
  1284. {
  1285. const uint16_t *v2_cipher = v2_cipher_list;
  1286. for (i = 0; i < sk_SSL_CIPHER_num(peer_ciphers); ++i) {
  1287. const SSL_CIPHER *cipher = sk_SSL_CIPHER_value(peer_ciphers, i);
  1288. uint16_t id = SSL_CIPHER_get_id(cipher) & 0xffff;
  1289. if (id == 0x00ff) /* extended renegotiation indicator. */
  1290. continue;
  1291. if (!id || id != *v2_cipher) {
  1292. res = CIPHERS_UNRESTRICTED;
  1293. goto dump_ciphers;
  1294. }
  1295. ++v2_cipher;
  1296. }
  1297. if (*v2_cipher != 0) {
  1298. res = CIPHERS_UNRESTRICTED;
  1299. goto dump_ciphers;
  1300. }
  1301. res = CIPHERS_V2;
  1302. }
  1303. dump_ciphers:
  1304. {
  1305. smartlist_t *elts = smartlist_new();
  1306. char *s;
  1307. for (i = 0; i < sk_SSL_CIPHER_num(peer_ciphers); ++i) {
  1308. const SSL_CIPHER *cipher = sk_SSL_CIPHER_value(peer_ciphers, i);
  1309. const char *ciphername = SSL_CIPHER_get_name(cipher);
  1310. smartlist_add(elts, (char*)ciphername);
  1311. }
  1312. s = smartlist_join_strings(elts, ":", 0, NULL);
  1313. log_debug(LD_NET, "Got a %s V2/V3 cipher list from %s. It is: '%s'",
  1314. (res == CIPHERS_V2) ? "fictitious" : "real", ADDR(tor_tls), s);
  1315. tor_free(s);
  1316. smartlist_free(elts);
  1317. }
  1318. done:
  1319. if (tor_tls)
  1320. return tor_tls->client_cipher_list_type = res;
  1321. return res;
  1322. }
  1323. /** Return true iff the cipher list suggested by the client for <b>ssl</b> is
  1324. * a list that indicates that the client knows how to do the v2 TLS connection
  1325. * handshake. */
  1326. STATIC int
  1327. tor_tls_client_is_using_v2_ciphers(const SSL *ssl)
  1328. {
  1329. STACK_OF(SSL_CIPHER) *ciphers;
  1330. #ifdef HAVE_SSL_GET_CLIENT_CIPHERS
  1331. ciphers = SSL_get_client_ciphers(ssl);
  1332. #else
  1333. SSL_SESSION *session;
  1334. if (!(session = SSL_get_session((SSL *)ssl))) {
  1335. log_info(LD_NET, "No session on TLS?");
  1336. return CIPHERS_ERR;
  1337. }
  1338. ciphers = session->ciphers;
  1339. #endif
  1340. return tor_tls_classify_client_ciphers(ssl, ciphers) >= CIPHERS_V2;
  1341. }
  1342. /** Invoked when we're accepting a connection on <b>ssl</b>, and the connection
  1343. * changes state. We use this:
  1344. * <ul><li>To alter the state of the handshake partway through, so we
  1345. * do not send or request extra certificates in v2 handshakes.</li>
  1346. * <li>To detect renegotiation</li></ul>
  1347. */
  1348. STATIC void
  1349. tor_tls_server_info_callback(const SSL *ssl, int type, int val)
  1350. {
  1351. tor_tls_t *tls;
  1352. (void) val;
  1353. IF_BUG_ONCE(ssl == NULL) {
  1354. return; // LCOV_EXCL_LINE
  1355. }
  1356. tor_tls_debug_state_callback(ssl, type, val);
  1357. if (type != SSL_CB_ACCEPT_LOOP)
  1358. return;
  1359. OSSL_HANDSHAKE_STATE ssl_state = SSL_get_state(ssl);
  1360. if (! STATE_IS_SW_SERVER_HELLO(ssl_state))
  1361. return;
  1362. tls = tor_tls_get_by_ssl(ssl);
  1363. if (tls) {
  1364. /* Check whether we're watching for renegotiates. If so, this is one! */
  1365. if (tls->negotiated_callback)
  1366. tls->got_renegotiate = 1;
  1367. if (tls->server_handshake_count < 127) /*avoid any overflow possibility*/
  1368. ++tls->server_handshake_count;
  1369. } else {
  1370. log_warn(LD_BUG, "Couldn't look up the tls for an SSL*. How odd!");
  1371. return;
  1372. }
  1373. /* Now check the cipher list. */
  1374. if (tor_tls_client_is_using_v2_ciphers(ssl)) {
  1375. if (tls->wasV2Handshake)
  1376. return; /* We already turned this stuff off for the first handshake;
  1377. * This is a renegotiation. */
  1378. /* Yes, we're casting away the const from ssl. This is very naughty of us.
  1379. * Let's hope openssl doesn't notice! */
  1380. /* Set SSL_MODE_NO_AUTO_CHAIN to keep from sending back any extra certs. */
  1381. SSL_set_mode((SSL*) ssl, SSL_MODE_NO_AUTO_CHAIN);
  1382. /* Don't send a hello request. */
  1383. SSL_set_verify((SSL*) ssl, SSL_VERIFY_NONE, NULL);
  1384. if (tls) {
  1385. tls->wasV2Handshake = 1;
  1386. } else {
  1387. /* LCOV_EXCL_START this line is not reachable */
  1388. log_warn(LD_BUG, "Couldn't look up the tls for an SSL*. How odd!");
  1389. /* LCOV_EXCL_STOP */
  1390. }
  1391. }
  1392. }
  1393. /** Callback to get invoked on a server after we've read the list of ciphers
  1394. * the client supports, but before we pick our own ciphersuite.
  1395. *
  1396. * We can't abuse an info_cb for this, since by the time one of the
  1397. * client_hello info_cbs is called, we've already picked which ciphersuite to
  1398. * use.
  1399. *
  1400. * Technically, this function is an abuse of this callback, since the point of
  1401. * a session_secret_cb is to try to set up and/or verify a shared-secret for
  1402. * authentication on the fly. But as long as we return 0, we won't actually be
  1403. * setting up a shared secret, and all will be fine.
  1404. */
  1405. STATIC int
  1406. tor_tls_session_secret_cb(SSL *ssl, void *secret, int *secret_len,
  1407. STACK_OF(SSL_CIPHER) *peer_ciphers,
  1408. CONST_IF_OPENSSL_1_1_API SSL_CIPHER **cipher,
  1409. void *arg)
  1410. {
  1411. (void) secret;
  1412. (void) secret_len;
  1413. (void) peer_ciphers;
  1414. (void) cipher;
  1415. (void) arg;
  1416. if (tor_tls_classify_client_ciphers(ssl, peer_ciphers) ==
  1417. CIPHERS_UNRESTRICTED) {
  1418. SSL_set_cipher_list(ssl, UNRESTRICTED_SERVER_CIPHER_LIST);
  1419. }
  1420. SSL_set_session_secret_cb(ssl, NULL, NULL);
  1421. return 0;
  1422. }
  1423. static void
  1424. tor_tls_setup_session_secret_cb(tor_tls_t *tls)
  1425. {
  1426. SSL_set_session_secret_cb(tls->ssl, tor_tls_session_secret_cb, NULL);
  1427. }
  1428. /** Create a new TLS object from a file descriptor, and a flag to
  1429. * determine whether it is functioning as a server.
  1430. */
  1431. tor_tls_t *
  1432. tor_tls_new(int sock, int isServer)
  1433. {
  1434. BIO *bio = NULL;
  1435. tor_tls_t *result = tor_malloc_zero(sizeof(tor_tls_t));
  1436. tor_tls_context_t *context = isServer ? server_tls_context :
  1437. client_tls_context;
  1438. result->magic = TOR_TLS_MAGIC;
  1439. check_no_tls_errors();
  1440. tor_assert(context); /* make sure somebody made it first */
  1441. if (!(result->ssl = SSL_new(context->ctx))) {
  1442. tls_log_errors(NULL, LOG_WARN, LD_NET, "creating SSL object");
  1443. tor_free(result);
  1444. goto err;
  1445. }
  1446. #ifdef SSL_set_tlsext_host_name
  1447. /* Browsers use the TLS hostname extension, so we should too. */
  1448. if (!isServer) {
  1449. char *fake_hostname = crypto_random_hostname(4,25, "www.",".com");
  1450. SSL_set_tlsext_host_name(result->ssl, fake_hostname);
  1451. tor_free(fake_hostname);
  1452. }
  1453. #endif
  1454. if (!SSL_set_cipher_list(result->ssl,
  1455. isServer ? SERVER_CIPHER_LIST : CLIENT_CIPHER_LIST)) {
  1456. tls_log_errors(NULL, LOG_WARN, LD_NET, "setting ciphers");
  1457. #ifdef SSL_set_tlsext_host_name
  1458. SSL_set_tlsext_host_name(result->ssl, NULL);
  1459. #endif
  1460. SSL_free(result->ssl);
  1461. tor_free(result);
  1462. goto err;
  1463. }
  1464. result->socket = sock;
  1465. bio = BIO_new_socket(sock, BIO_NOCLOSE);
  1466. if (! bio) {
  1467. tls_log_errors(NULL, LOG_WARN, LD_NET, "opening BIO");
  1468. #ifdef SSL_set_tlsext_host_name
  1469. SSL_set_tlsext_host_name(result->ssl, NULL);
  1470. #endif
  1471. SSL_free(result->ssl);
  1472. tor_free(result);
  1473. goto err;
  1474. }
  1475. {
  1476. int set_worked =
  1477. SSL_set_ex_data(result->ssl, tor_tls_object_ex_data_index, result);
  1478. if (!set_worked) {
  1479. log_warn(LD_BUG,
  1480. "Couldn't set the tls for an SSL*; connection will fail");
  1481. }
  1482. }
  1483. SSL_set_bio(result->ssl, bio, bio);
  1484. tor_tls_context_incref(context);
  1485. result->context = context;
  1486. result->state = TOR_TLS_ST_HANDSHAKE;
  1487. result->isServer = isServer;
  1488. result->wantwrite_n = 0;
  1489. result->last_write_count = BIO_number_written(bio);
  1490. result->last_read_count = BIO_number_read(bio);
  1491. if (result->last_write_count || result->last_read_count) {
  1492. log_warn(LD_NET, "Newly created BIO has read count %lu, write count %lu",
  1493. result->last_read_count, result->last_write_count);
  1494. }
  1495. if (isServer) {
  1496. SSL_set_info_callback(result->ssl, tor_tls_server_info_callback);
  1497. } else {
  1498. SSL_set_info_callback(result->ssl, tor_tls_debug_state_callback);
  1499. }
  1500. if (isServer)
  1501. tor_tls_setup_session_secret_cb(result);
  1502. goto done;
  1503. err:
  1504. result = NULL;
  1505. done:
  1506. /* Not expected to get called. */
  1507. tls_log_errors(NULL, LOG_WARN, LD_NET, "creating tor_tls_t object");
  1508. return result;
  1509. }
  1510. /** Make future log messages about <b>tls</b> display the address
  1511. * <b>address</b>.
  1512. */
  1513. void
  1514. tor_tls_set_logged_address(tor_tls_t *tls, const char *address)
  1515. {
  1516. tor_assert(tls);
  1517. tor_free(tls->address);
  1518. tls->address = tor_strdup(address);
  1519. }
  1520. /** Set <b>cb</b> to be called with argument <b>arg</b> whenever <b>tls</b>
  1521. * next gets a client-side renegotiate in the middle of a read. Do not
  1522. * invoke this function until <em>after</em> initial handshaking is done!
  1523. */
  1524. void
  1525. tor_tls_set_renegotiate_callback(tor_tls_t *tls,
  1526. void (*cb)(tor_tls_t *, void *arg),
  1527. void *arg)
  1528. {
  1529. tls->negotiated_callback = cb;
  1530. tls->callback_arg = arg;
  1531. tls->got_renegotiate = 0;
  1532. if (cb) {
  1533. SSL_set_info_callback(tls->ssl, tor_tls_server_info_callback);
  1534. } else {
  1535. SSL_set_info_callback(tls->ssl, tor_tls_debug_state_callback);
  1536. }
  1537. }
  1538. /** If this version of openssl requires it, turn on renegotiation on
  1539. * <b>tls</b>.
  1540. */
  1541. void
  1542. tor_tls_unblock_renegotiation(tor_tls_t *tls)
  1543. {
  1544. /* Yes, we know what we are doing here. No, we do not treat a renegotiation
  1545. * as authenticating any earlier-received data. */
  1546. SSL_set_options(tls->ssl,
  1547. SSL_OP_ALLOW_UNSAFE_LEGACY_RENEGOTIATION);
  1548. }
  1549. /** If this version of openssl supports it, turn off renegotiation on
  1550. * <b>tls</b>. (Our protocol never requires this for security, but it's nice
  1551. * to use belt-and-suspenders here.)
  1552. */
  1553. void
  1554. tor_tls_block_renegotiation(tor_tls_t *tls)
  1555. {
  1556. #ifdef SUPPORT_UNSAFE_RENEGOTIATION_FLAG
  1557. tls->ssl->s3->flags &= ~SSL3_FLAGS_ALLOW_UNSAFE_LEGACY_RENEGOTIATION;
  1558. #else
  1559. (void) tls;
  1560. #endif
  1561. }
  1562. /** Assert that the flags that allow legacy renegotiation are still set */
  1563. void
  1564. tor_tls_assert_renegotiation_unblocked(tor_tls_t *tls)
  1565. {
  1566. #if defined(SSL_OP_ALLOW_UNSAFE_LEGACY_RENEGOTIATION) && \
  1567. SSL_OP_ALLOW_UNSAFE_LEGACY_RENEGOTIATION != 0
  1568. long options = SSL_get_options(tls->ssl);
  1569. tor_assert(0 != (options & SSL_OP_ALLOW_UNSAFE_LEGACY_RENEGOTIATION));
  1570. #else
  1571. (void) tls;
  1572. #endif
  1573. }
  1574. /** Return whether this tls initiated the connect (client) or
  1575. * received it (server). */
  1576. int
  1577. tor_tls_is_server(tor_tls_t *tls)
  1578. {
  1579. tor_assert(tls);
  1580. return tls->isServer;
  1581. }
  1582. /** Release resources associated with a TLS object. Does not close the
  1583. * underlying file descriptor.
  1584. */
  1585. void
  1586. tor_tls_free(tor_tls_t *tls)
  1587. {
  1588. if (!tls)
  1589. return;
  1590. tor_assert(tls->ssl);
  1591. {
  1592. size_t r,w;
  1593. tor_tls_get_n_raw_bytes(tls,&r,&w); /* ensure written_by_tls is updated */
  1594. }
  1595. #ifdef SSL_set_tlsext_host_name
  1596. SSL_set_tlsext_host_name(tls->ssl, NULL);
  1597. #endif
  1598. SSL_free(tls->ssl);
  1599. tls->ssl = NULL;
  1600. tls->negotiated_callback = NULL;
  1601. if (tls->context)
  1602. tor_tls_context_decref(tls->context);
  1603. tor_free(tls->address);
  1604. tls->magic = 0x99999999;
  1605. tor_free(tls);
  1606. }
  1607. /** Underlying function for TLS reading. Reads up to <b>len</b>
  1608. * characters from <b>tls</b> into <b>cp</b>. On success, returns the
  1609. * number of characters read. On failure, returns TOR_TLS_ERROR,
  1610. * TOR_TLS_CLOSE, TOR_TLS_WANTREAD, or TOR_TLS_WANTWRITE.
  1611. */
  1612. MOCK_IMPL(int,
  1613. tor_tls_read,(tor_tls_t *tls, char *cp, size_t len))
  1614. {
  1615. int r, err;
  1616. tor_assert(tls);
  1617. tor_assert(tls->ssl);
  1618. tor_assert(tls->state == TOR_TLS_ST_OPEN);
  1619. tor_assert(len<INT_MAX);
  1620. r = SSL_read(tls->ssl, cp, (int)len);
  1621. if (r > 0) {
  1622. if (tls->got_renegotiate) {
  1623. /* Renegotiation happened! */
  1624. log_info(LD_NET, "Got a TLS renegotiation from %s", ADDR(tls));
  1625. if (tls->negotiated_callback)
  1626. tls->negotiated_callback(tls, tls->callback_arg);
  1627. tls->got_renegotiate = 0;
  1628. }
  1629. return r;
  1630. }
  1631. err = tor_tls_get_error(tls, r, CATCH_ZERO, "reading", LOG_DEBUG, LD_NET);
  1632. if (err == TOR_TLS_ZERORETURN_ || err == TOR_TLS_CLOSE) {
  1633. log_debug(LD_NET,"read returned r=%d; TLS is closed",r);
  1634. tls->state = TOR_TLS_ST_CLOSED;
  1635. return TOR_TLS_CLOSE;
  1636. } else {
  1637. tor_assert(err != TOR_TLS_DONE);
  1638. log_debug(LD_NET,"read returned r=%d, err=%d",r,err);
  1639. return err;
  1640. }
  1641. }
  1642. /** Total number of bytes that we've used TLS to send. Used to track TLS
  1643. * overhead. */
  1644. STATIC uint64_t total_bytes_written_over_tls = 0;
  1645. /** Total number of bytes that TLS has put on the network for us. Used to
  1646. * track TLS overhead. */
  1647. STATIC uint64_t total_bytes_written_by_tls = 0;
  1648. /** Underlying function for TLS writing. Write up to <b>n</b>
  1649. * characters from <b>cp</b> onto <b>tls</b>. On success, returns the
  1650. * number of characters written. On failure, returns TOR_TLS_ERROR,
  1651. * TOR_TLS_WANTREAD, or TOR_TLS_WANTWRITE.
  1652. */
  1653. int
  1654. tor_tls_write(tor_tls_t *tls, const char *cp, size_t n)
  1655. {
  1656. int r, err;
  1657. tor_assert(tls);
  1658. tor_assert(tls->ssl);
  1659. tor_assert(tls->state == TOR_TLS_ST_OPEN);
  1660. tor_assert(n < INT_MAX);
  1661. if (n == 0)
  1662. return 0;
  1663. if (tls->wantwrite_n) {
  1664. /* if WANTWRITE last time, we must use the _same_ n as before */
  1665. tor_assert(n >= tls->wantwrite_n);
  1666. log_debug(LD_NET,"resuming pending-write, (%d to flush, reusing %d)",
  1667. (int)n, (int)tls->wantwrite_n);
  1668. n = tls->wantwrite_n;
  1669. tls->wantwrite_n = 0;
  1670. }
  1671. r = SSL_write(tls->ssl, cp, (int)n);
  1672. err = tor_tls_get_error(tls, r, 0, "writing", LOG_INFO, LD_NET);
  1673. if (err == TOR_TLS_DONE) {
  1674. total_bytes_written_over_tls += r;
  1675. return r;
  1676. }
  1677. if (err == TOR_TLS_WANTWRITE || err == TOR_TLS_WANTREAD) {
  1678. tls->wantwrite_n = n;
  1679. }
  1680. return err;
  1681. }
  1682. /** Perform initial handshake on <b>tls</b>. When finished, returns
  1683. * TOR_TLS_DONE. On failure, returns TOR_TLS_ERROR, TOR_TLS_WANTREAD,
  1684. * or TOR_TLS_WANTWRITE.
  1685. */
  1686. int
  1687. tor_tls_handshake(tor_tls_t *tls)
  1688. {
  1689. int r;
  1690. tor_assert(tls);
  1691. tor_assert(tls->ssl);
  1692. tor_assert(tls->state == TOR_TLS_ST_HANDSHAKE);
  1693. check_no_tls_errors();
  1694. OSSL_HANDSHAKE_STATE oldstate = SSL_get_state(tls->ssl);
  1695. if (tls->isServer) {
  1696. log_debug(LD_HANDSHAKE, "About to call SSL_accept on %p (%s)", tls,
  1697. SSL_state_string_long(tls->ssl));
  1698. r = SSL_accept(tls->ssl);
  1699. } else {
  1700. log_debug(LD_HANDSHAKE, "About to call SSL_connect on %p (%s)", tls,
  1701. SSL_state_string_long(tls->ssl));
  1702. r = SSL_connect(tls->ssl);
  1703. }
  1704. OSSL_HANDSHAKE_STATE newstate = SSL_get_state(tls->ssl);
  1705. if (oldstate != newstate)
  1706. log_debug(LD_HANDSHAKE, "After call, %p was in state %s",
  1707. tls, SSL_state_string_long(tls->ssl));
  1708. /* We need to call this here and not earlier, since OpenSSL has a penchant
  1709. * for clearing its flags when you say accept or connect. */
  1710. tor_tls_unblock_renegotiation(tls);
  1711. r = tor_tls_get_error(tls,r,0, "handshaking", LOG_INFO, LD_HANDSHAKE);
  1712. if (ERR_peek_error() != 0) {
  1713. tls_log_errors(tls, tls->isServer ? LOG_INFO : LOG_WARN, LD_HANDSHAKE,
  1714. "handshaking");
  1715. return TOR_TLS_ERROR_MISC;
  1716. }
  1717. if (r == TOR_TLS_DONE) {
  1718. tls->state = TOR_TLS_ST_OPEN;
  1719. return tor_tls_finish_handshake(tls);
  1720. }
  1721. return r;
  1722. }
  1723. /** Perform the final part of the intial TLS handshake on <b>tls</b>. This
  1724. * should be called for the first handshake only: it determines whether the v1
  1725. * or the v2 handshake was used, and adjusts things for the renegotiation
  1726. * handshake as appropriate.
  1727. *
  1728. * tor_tls_handshake() calls this on its own; you only need to call this if
  1729. * bufferevent is doing the handshake for you.
  1730. */
  1731. int
  1732. tor_tls_finish_handshake(tor_tls_t *tls)
  1733. {
  1734. int r = TOR_TLS_DONE;
  1735. check_no_tls_errors();
  1736. if (tls->isServer) {
  1737. SSL_set_info_callback(tls->ssl, NULL);
  1738. SSL_set_verify(tls->ssl, SSL_VERIFY_PEER, always_accept_verify_cb);
  1739. SSL_clear_mode(tls->ssl, SSL_MODE_NO_AUTO_CHAIN);
  1740. if (tor_tls_client_is_using_v2_ciphers(tls->ssl)) {
  1741. /* This check is redundant, but back when we did it in the callback,
  1742. * we might have not been able to look up the tor_tls_t if the code
  1743. * was buggy. Fixing that. */
  1744. if (!tls->wasV2Handshake) {
  1745. log_warn(LD_BUG, "For some reason, wasV2Handshake didn't"
  1746. " get set. Fixing that.");
  1747. }
  1748. tls->wasV2Handshake = 1;
  1749. log_debug(LD_HANDSHAKE, "Completed V2 TLS handshake with client; waiting"
  1750. " for renegotiation.");
  1751. } else {
  1752. tls->wasV2Handshake = 0;
  1753. }
  1754. } else {
  1755. /* Client-side */
  1756. tls->wasV2Handshake = 1;
  1757. /* XXXX this can move, probably? -NM */
  1758. if (SSL_set_cipher_list(tls->ssl, SERVER_CIPHER_LIST) == 0) {
  1759. tls_log_errors(NULL, LOG_WARN, LD_HANDSHAKE, "re-setting ciphers");
  1760. r = TOR_TLS_ERROR_MISC;
  1761. }
  1762. }
  1763. tls_log_errors(NULL, LOG_WARN, LD_NET, "finishing the handshake");
  1764. return r;
  1765. }
  1766. /** Shut down an open tls connection <b>tls</b>. When finished, returns
  1767. * TOR_TLS_DONE. On failure, returns TOR_TLS_ERROR, TOR_TLS_WANTREAD,
  1768. * or TOR_TLS_WANTWRITE.
  1769. */
  1770. int
  1771. tor_tls_shutdown(tor_tls_t *tls)
  1772. {
  1773. int r, err;
  1774. char buf[128];
  1775. tor_assert(tls);
  1776. tor_assert(tls->ssl);
  1777. check_no_tls_errors();
  1778. while (1) {
  1779. if (tls->state == TOR_TLS_ST_SENTCLOSE) {
  1780. /* If we've already called shutdown once to send a close message,
  1781. * we read until the other side has closed too.
  1782. */
  1783. do {
  1784. r = SSL_read(tls->ssl, buf, 128);
  1785. } while (r>0);
  1786. err = tor_tls_get_error(tls, r, CATCH_ZERO, "reading to shut down",
  1787. LOG_INFO, LD_NET);
  1788. if (err == TOR_TLS_ZERORETURN_) {
  1789. tls->state = TOR_TLS_ST_GOTCLOSE;
  1790. /* fall through... */
  1791. } else {
  1792. return err;
  1793. }
  1794. }
  1795. r = SSL_shutdown(tls->ssl);
  1796. if (r == 1) {
  1797. /* If shutdown returns 1, the connection is entirely closed. */
  1798. tls->state = TOR_TLS_ST_CLOSED;
  1799. return TOR_TLS_DONE;
  1800. }
  1801. err = tor_tls_get_error(tls, r, CATCH_SYSCALL|CATCH_ZERO, "shutting down",
  1802. LOG_INFO, LD_NET);
  1803. if (err == TOR_TLS_SYSCALL_) {
  1804. /* The underlying TCP connection closed while we were shutting down. */
  1805. tls->state = TOR_TLS_ST_CLOSED;
  1806. return TOR_TLS_DONE;
  1807. } else if (err == TOR_TLS_ZERORETURN_) {
  1808. /* The TLS connection says that it sent a shutdown record, but
  1809. * isn't done shutting down yet. Make sure that this hasn't
  1810. * happened before, then go back to the start of the function
  1811. * and try to read.
  1812. */
  1813. if (tls->state == TOR_TLS_ST_GOTCLOSE ||
  1814. tls->state == TOR_TLS_ST_SENTCLOSE) {
  1815. log_warn(LD_NET,
  1816. "TLS returned \"half-closed\" value while already half-closed");
  1817. return TOR_TLS_ERROR_MISC;
  1818. }
  1819. tls->state = TOR_TLS_ST_SENTCLOSE;
  1820. /* fall through ... */
  1821. } else {
  1822. return err;
  1823. }
  1824. } /* end loop */
  1825. }
  1826. /** Return true iff this TLS connection is authenticated.
  1827. */
  1828. int
  1829. tor_tls_peer_has_cert(tor_tls_t *tls)
  1830. {
  1831. X509 *cert;
  1832. cert = SSL_get_peer_certificate(tls->ssl);
  1833. tls_log_errors(tls, LOG_WARN, LD_HANDSHAKE, "getting peer certificate");
  1834. if (!cert)
  1835. return 0;
  1836. X509_free(cert);
  1837. return 1;
  1838. }
  1839. /** Return the peer certificate, or NULL if there isn't one. */
  1840. MOCK_IMPL(tor_x509_cert_t *,
  1841. tor_tls_get_peer_cert,(tor_tls_t *tls))
  1842. {
  1843. X509 *cert;
  1844. cert = SSL_get_peer_certificate(tls->ssl);
  1845. tls_log_errors(tls, LOG_WARN, LD_HANDSHAKE, "getting peer certificate");
  1846. if (!cert)
  1847. return NULL;
  1848. return tor_x509_cert_new(cert);
  1849. }
  1850. /** Warn that a certificate lifetime extends through a certain range. */
  1851. static void
  1852. log_cert_lifetime(int severity, const X509 *cert, const char *problem,
  1853. time_t now)
  1854. {
  1855. BIO *bio = NULL;
  1856. BUF_MEM *buf;
  1857. char *s1=NULL, *s2=NULL;
  1858. char mytime[33];
  1859. struct tm tm;
  1860. size_t n;
  1861. if (problem)
  1862. tor_log(severity, LD_GENERAL,
  1863. "Certificate %s. Either their clock is set wrong, or your clock "
  1864. "is wrong.",
  1865. problem);
  1866. if (!(bio = BIO_new(BIO_s_mem()))) {
  1867. log_warn(LD_GENERAL, "Couldn't allocate BIO!"); goto end;
  1868. }
  1869. if (!(ASN1_TIME_print(bio, X509_get_notBefore_const(cert)))) {
  1870. tls_log_errors(NULL, LOG_WARN, LD_NET, "printing certificate lifetime");
  1871. goto end;
  1872. }
  1873. BIO_get_mem_ptr(bio, &buf);
  1874. s1 = tor_strndup(buf->data, buf->length);
  1875. (void)BIO_reset(bio);
  1876. if (!(ASN1_TIME_print(bio, X509_get_notAfter_const(cert)))) {
  1877. tls_log_errors(NULL, LOG_WARN, LD_NET, "printing certificate lifetime");
  1878. goto end;
  1879. }
  1880. BIO_get_mem_ptr(bio, &buf);
  1881. s2 = tor_strndup(buf->data, buf->length);
  1882. n = strftime(mytime, 32, "%b %d %H:%M:%S %Y UTC", tor_gmtime_r(&now, &tm));
  1883. if (n > 0) {
  1884. tor_log(severity, LD_GENERAL,
  1885. "(certificate lifetime runs from %s through %s. Your time is %s.)",
  1886. s1,s2,mytime);
  1887. } else {
  1888. tor_log(severity, LD_GENERAL,
  1889. "(certificate lifetime runs from %s through %s. "
  1890. "Couldn't get your time.)",
  1891. s1, s2);
  1892. }
  1893. end:
  1894. /* Not expected to get invoked */
  1895. tls_log_errors(NULL, LOG_WARN, LD_NET, "getting certificate lifetime");
  1896. if (bio)
  1897. BIO_free(bio);
  1898. tor_free(s1);
  1899. tor_free(s2);
  1900. }
  1901. /** Helper function: try to extract a link certificate and an identity
  1902. * certificate from <b>tls</b>, and store them in *<b>cert_out</b> and
  1903. * *<b>id_cert_out</b> respectively. Log all messages at level
  1904. * <b>severity</b>.
  1905. *
  1906. * Note that a reference is added to cert_out, so it needs to be
  1907. * freed. id_cert_out doesn't. */
  1908. MOCK_IMPL(STATIC void,
  1909. try_to_extract_certs_from_tls,(int severity, tor_tls_t *tls,
  1910. X509 **cert_out, X509 **id_cert_out))
  1911. {
  1912. X509 *cert = NULL, *id_cert = NULL;
  1913. STACK_OF(X509) *chain = NULL;
  1914. int num_in_chain, i;
  1915. *cert_out = *id_cert_out = NULL;
  1916. if (!(cert = SSL_get_peer_certificate(tls->ssl)))
  1917. return;
  1918. *cert_out = cert;
  1919. if (!(chain = SSL_get_peer_cert_chain(tls->ssl)))
  1920. return;
  1921. num_in_chain = sk_X509_num(chain);
  1922. /* 1 means we're receiving (server-side), and it's just the id_cert.
  1923. * 2 means we're connecting (client-side), and it's both the link
  1924. * cert and the id_cert.
  1925. */
  1926. if (num_in_chain < 1) {
  1927. log_fn(severity,LD_PROTOCOL,
  1928. "Unexpected number of certificates in chain (%d)",
  1929. num_in_chain);
  1930. return;
  1931. }
  1932. for (i=0; i<num_in_chain; ++i) {
  1933. id_cert = sk_X509_value(chain, i);
  1934. if (X509_cmp(id_cert, cert) != 0)
  1935. break;
  1936. }
  1937. *id_cert_out = id_cert;
  1938. }
  1939. /** If the provided tls connection is authenticated and has a
  1940. * certificate chain that is currently valid and signed, then set
  1941. * *<b>identity_key</b> to the identity certificate's key and return
  1942. * 0. Else, return -1 and log complaints with log-level <b>severity</b>.
  1943. */
  1944. int
  1945. tor_tls_verify(int severity, tor_tls_t *tls, crypto_pk_t **identity_key)
  1946. {
  1947. X509 *cert = NULL, *id_cert = NULL;
  1948. EVP_PKEY *id_pkey = NULL;
  1949. RSA *rsa;
  1950. int r = -1;
  1951. check_no_tls_errors();
  1952. *identity_key = NULL;
  1953. try_to_extract_certs_from_tls(severity, tls, &cert, &id_cert);
  1954. if (!cert)
  1955. goto done;
  1956. if (!id_cert) {
  1957. log_fn(severity,LD_PROTOCOL,"No distinct identity certificate found");
  1958. goto done;
  1959. }
  1960. tls_log_errors(tls, severity, LD_HANDSHAKE, "before verifying certificate");
  1961. if (!(id_pkey = X509_get_pubkey(id_cert)) ||
  1962. X509_verify(cert, id_pkey) <= 0) {
  1963. log_fn(severity,LD_PROTOCOL,"X509_verify on cert and pkey returned <= 0");
  1964. tls_log_errors(tls, severity, LD_HANDSHAKE, "verifying certificate");
  1965. goto done;
  1966. }
  1967. rsa = EVP_PKEY_get1_RSA(id_pkey);
  1968. if (!rsa)
  1969. goto done;
  1970. *identity_key = crypto_new_pk_from_rsa_(rsa);
  1971. r = 0;
  1972. done:
  1973. if (cert)
  1974. X509_free(cert);
  1975. if (id_pkey)
  1976. EVP_PKEY_free(id_pkey);
  1977. /* This should never get invoked, but let's make sure in case OpenSSL
  1978. * acts unexpectedly. */
  1979. tls_log_errors(tls, LOG_WARN, LD_HANDSHAKE, "finishing tor_tls_verify");
  1980. return r;
  1981. }
  1982. /** Check whether the certificate set on the connection <b>tls</b> is expired
  1983. * give or take <b>past_tolerance</b> seconds, or not-yet-valid give or take
  1984. * <b>future_tolerance</b> seconds. Return 0 for valid, -1 for failure.
  1985. *
  1986. * NOTE: you should call tor_tls_verify before tor_tls_check_lifetime.
  1987. */
  1988. int
  1989. tor_tls_check_lifetime(int severity, tor_tls_t *tls,
  1990. time_t now,
  1991. int past_tolerance, int future_tolerance)
  1992. {
  1993. X509 *cert;
  1994. int r = -1;
  1995. if (!(cert = SSL_get_peer_certificate(tls->ssl)))
  1996. goto done;
  1997. if (check_cert_lifetime_internal(severity, cert, now,
  1998. past_tolerance, future_tolerance) < 0)
  1999. goto done;
  2000. r = 0;
  2001. done:
  2002. if (cert)
  2003. X509_free(cert);
  2004. /* Not expected to get invoked */
  2005. tls_log_errors(tls, LOG_WARN, LD_NET, "checking certificate lifetime");
  2006. return r;
  2007. }
  2008. /** Helper: check whether <b>cert</b> is expired give or take
  2009. * <b>past_tolerance</b> seconds, or not-yet-valid give or take
  2010. * <b>future_tolerance</b> seconds. (Relative to the current time
  2011. * <b>now</b>.) If it is live, return 0. If it is not live, log a message
  2012. * and return -1. */
  2013. static int
  2014. check_cert_lifetime_internal(int severity, const X509 *cert,
  2015. time_t now,
  2016. int past_tolerance, int future_tolerance)
  2017. {
  2018. time_t t;
  2019. t = now + future_tolerance;
  2020. if (X509_cmp_time(X509_get_notBefore_const(cert), &t) > 0) {
  2021. log_cert_lifetime(severity, cert, "not yet valid", now);
  2022. return -1;
  2023. }
  2024. t = now - past_tolerance;
  2025. if (X509_cmp_time(X509_get_notAfter_const(cert), &t) < 0) {
  2026. log_cert_lifetime(severity, cert, "already expired", now);
  2027. return -1;
  2028. }
  2029. return 0;
  2030. }
  2031. /** Return the number of bytes available for reading from <b>tls</b>.
  2032. */
  2033. int
  2034. tor_tls_get_pending_bytes(tor_tls_t *tls)
  2035. {
  2036. tor_assert(tls);
  2037. return SSL_pending(tls->ssl);
  2038. }
  2039. /** If <b>tls</b> requires that the next write be of a particular size,
  2040. * return that size. Otherwise, return 0. */
  2041. size_t
  2042. tor_tls_get_forced_write_size(tor_tls_t *tls)
  2043. {
  2044. return tls->wantwrite_n;
  2045. }
  2046. /** Sets n_read and n_written to the number of bytes read and written,
  2047. * respectively, on the raw socket used by <b>tls</b> since the last time this
  2048. * function was called on <b>tls</b>. */
  2049. void
  2050. tor_tls_get_n_raw_bytes(tor_tls_t *tls, size_t *n_read, size_t *n_written)
  2051. {
  2052. BIO *wbio, *tmpbio;
  2053. unsigned long r, w;
  2054. r = BIO_number_read(SSL_get_rbio(tls->ssl));
  2055. /* We want the number of bytes actually for real written. Unfortunately,
  2056. * sometimes OpenSSL replaces the wbio on tls->ssl with a buffering bio,
  2057. * which makes the answer turn out wrong. Let's cope with that. Note
  2058. * that this approach will fail if we ever replace tls->ssl's BIOs with
  2059. * buffering bios for reasons of our own. As an alternative, we could
  2060. * save the original BIO for tls->ssl in the tor_tls_t structure, but
  2061. * that would be tempting fate. */
  2062. wbio = SSL_get_wbio(tls->ssl);
  2063. #if OPENSSL_VERSION_NUMBER >= OPENSSL_VER(1,1,0,0,5)
  2064. /* BIO structure is opaque as of OpenSSL 1.1.0-pre5-dev. Again, not
  2065. * supposed to use this form of the version macro, but the OpenSSL developers
  2066. * introduced major API changes in the pre-release stage.
  2067. */
  2068. if (BIO_method_type(wbio) == BIO_TYPE_BUFFER &&
  2069. (tmpbio = BIO_next(wbio)) != NULL)
  2070. wbio = tmpbio;
  2071. #else
  2072. if (wbio->method == BIO_f_buffer() && (tmpbio = BIO_next(wbio)) != NULL)
  2073. wbio = tmpbio;
  2074. #endif
  2075. w = BIO_number_written(wbio);
  2076. /* We are ok with letting these unsigned ints go "negative" here:
  2077. * If we wrapped around, this should still give us the right answer, unless
  2078. * we wrapped around by more than ULONG_MAX since the last time we called
  2079. * this function.
  2080. */
  2081. *n_read = (size_t)(r - tls->last_read_count);
  2082. *n_written = (size_t)(w - tls->last_write_count);
  2083. if (*n_read > INT_MAX || *n_written > INT_MAX) {
  2084. log_warn(LD_BUG, "Preposterously large value in tor_tls_get_n_raw_bytes. "
  2085. "r=%lu, last_read=%lu, w=%lu, last_written=%lu",
  2086. r, tls->last_read_count, w, tls->last_write_count);
  2087. }
  2088. total_bytes_written_by_tls += *n_written;
  2089. tls->last_read_count = r;
  2090. tls->last_write_count = w;
  2091. }
  2092. /** Return a ratio of the bytes that TLS has sent to the bytes that we've told
  2093. * it to send. Used to track whether our TLS records are getting too tiny. */
  2094. MOCK_IMPL(double,
  2095. tls_get_write_overhead_ratio,(void))
  2096. {
  2097. if (total_bytes_written_over_tls == 0)
  2098. return 1.0;
  2099. return U64_TO_DBL(total_bytes_written_by_tls) /
  2100. U64_TO_DBL(total_bytes_written_over_tls);
  2101. }
  2102. /** Implement check_no_tls_errors: If there are any pending OpenSSL
  2103. * errors, log an error message. */
  2104. void
  2105. check_no_tls_errors_(const char *fname, int line)
  2106. {
  2107. if (ERR_peek_error() == 0)
  2108. return;
  2109. log_warn(LD_CRYPTO, "Unhandled OpenSSL errors found at %s:%d: ",
  2110. tor_fix_source_file(fname), line);
  2111. tls_log_errors(NULL, LOG_WARN, LD_NET, NULL);
  2112. }
  2113. /** Return true iff the initial TLS connection at <b>tls</b> did not use a v2
  2114. * TLS handshake. Output is undefined if the handshake isn't finished. */
  2115. int
  2116. tor_tls_used_v1_handshake(tor_tls_t *tls)
  2117. {
  2118. return ! tls->wasV2Handshake;
  2119. }
  2120. /** Return the number of server handshakes that we've noticed doing on
  2121. * <b>tls</b>. */
  2122. int
  2123. tor_tls_get_num_server_handshakes(tor_tls_t *tls)
  2124. {
  2125. return tls->server_handshake_count;
  2126. }
  2127. /** Return true iff the server TLS connection <b>tls</b> got the renegotiation
  2128. * request it was waiting for. */
  2129. int
  2130. tor_tls_server_got_renegotiate(tor_tls_t *tls)
  2131. {
  2132. return tls->got_renegotiate;
  2133. }
  2134. #ifndef HAVE_SSL_GET_CLIENT_RANDOM
  2135. static size_t
  2136. SSL_get_client_random(SSL *s, uint8_t *out, size_t len)
  2137. {
  2138. if (len == 0)
  2139. return SSL3_RANDOM_SIZE;
  2140. tor_assert(len == SSL3_RANDOM_SIZE);
  2141. tor_assert(s->s3);
  2142. memcpy(out, s->s3->client_random, len);
  2143. return len;
  2144. }
  2145. #endif
  2146. #ifndef HAVE_SSL_GET_SERVER_RANDOM
  2147. static size_t
  2148. SSL_get_server_random(SSL *s, uint8_t *out, size_t len)
  2149. {
  2150. if (len == 0)
  2151. return SSL3_RANDOM_SIZE;
  2152. tor_assert(len == SSL3_RANDOM_SIZE);
  2153. tor_assert(s->s3);
  2154. memcpy(out, s->s3->server_random, len);
  2155. return len;
  2156. }
  2157. #endif
  2158. #ifndef HAVE_SSL_SESSION_GET_MASTER_KEY
  2159. STATIC size_t
  2160. SSL_SESSION_get_master_key(SSL_SESSION *s, uint8_t *out, size_t len)
  2161. {
  2162. tor_assert(s);
  2163. if (len == 0)
  2164. return s->master_key_length;
  2165. tor_assert(len == (size_t)s->master_key_length);
  2166. tor_assert(out);
  2167. memcpy(out, s->master_key, len);
  2168. return len;
  2169. }
  2170. #endif
  2171. /** Set the DIGEST256_LEN buffer at <b>secrets_out</b> to the value used in
  2172. * the v3 handshake to prove that the client knows the TLS secrets for the
  2173. * connection <b>tls</b>. Return 0 on success, -1 on failure.
  2174. */
  2175. MOCK_IMPL(int,
  2176. tor_tls_get_tlssecrets,(tor_tls_t *tls, uint8_t *secrets_out))
  2177. {
  2178. #define TLSSECRET_MAGIC "Tor V3 handshake TLS cross-certification"
  2179. uint8_t buf[128];
  2180. size_t len;
  2181. tor_assert(tls);
  2182. SSL *const ssl = tls->ssl;
  2183. SSL_SESSION *const session = SSL_get_session(ssl);
  2184. tor_assert(ssl);
  2185. tor_assert(session);
  2186. const size_t server_random_len = SSL_get_server_random(ssl, NULL, 0);
  2187. const size_t client_random_len = SSL_get_client_random(ssl, NULL, 0);
  2188. const size_t master_key_len = SSL_SESSION_get_master_key(session, NULL, 0);
  2189. tor_assert(server_random_len);
  2190. tor_assert(client_random_len);
  2191. tor_assert(master_key_len);
  2192. len = client_random_len + server_random_len + strlen(TLSSECRET_MAGIC) + 1;
  2193. tor_assert(len <= sizeof(buf));
  2194. {
  2195. size_t r = SSL_get_client_random(ssl, buf, client_random_len);
  2196. tor_assert(r == client_random_len);
  2197. }
  2198. {
  2199. size_t r = SSL_get_server_random(ssl,
  2200. buf+client_random_len,
  2201. server_random_len);
  2202. tor_assert(r == server_random_len);
  2203. }
  2204. uint8_t *master_key = tor_malloc_zero(master_key_len);
  2205. {
  2206. size_t r = SSL_SESSION_get_master_key(session, master_key, master_key_len);
  2207. tor_assert(r == master_key_len);
  2208. }
  2209. uint8_t *nextbuf = buf + client_random_len + server_random_len;
  2210. memcpy(nextbuf, TLSSECRET_MAGIC, strlen(TLSSECRET_MAGIC) + 1);
  2211. /*
  2212. The value is an HMAC, using the TLS master key as the HMAC key, of
  2213. client_random | server_random | TLSSECRET_MAGIC
  2214. */
  2215. crypto_hmac_sha256((char*)secrets_out,
  2216. (char*)master_key,
  2217. master_key_len,
  2218. (char*)buf, len);
  2219. memwipe(buf, 0, sizeof(buf));
  2220. memwipe(master_key, 0, master_key_len);
  2221. tor_free(master_key);
  2222. return 0;
  2223. }
  2224. /** Using the RFC5705 key material exporting construction, and the
  2225. * provided <b>context</b> (<b>context_len</b> bytes long) and
  2226. * <b>label</b> (a NUL-terminated string), compute a 32-byte secret in
  2227. * <b>secrets_out</b> that only the parties to this TLS session can
  2228. * compute. Return 0 on success and -1 on failure.
  2229. */
  2230. MOCK_IMPL(int,
  2231. tor_tls_export_key_material,(tor_tls_t *tls, uint8_t *secrets_out,
  2232. const uint8_t *context,
  2233. size_t context_len,
  2234. const char *label))
  2235. {
  2236. tor_assert(tls);
  2237. tor_assert(tls->ssl);
  2238. int r = SSL_export_keying_material(tls->ssl,
  2239. secrets_out, DIGEST256_LEN,
  2240. label, strlen(label),
  2241. context, context_len, 1);
  2242. return (r == 1) ? 0 : -1;
  2243. }
  2244. /** Examine the amount of memory used and available for buffers in <b>tls</b>.
  2245. * Set *<b>rbuf_capacity</b> to the amount of storage allocated for the read
  2246. * buffer and *<b>rbuf_bytes</b> to the amount actually used.
  2247. * Set *<b>wbuf_capacity</b> to the amount of storage allocated for the write
  2248. * buffer and *<b>wbuf_bytes</b> to the amount actually used.
  2249. *
  2250. * Return 0 on success, -1 on failure.*/
  2251. int
  2252. tor_tls_get_buffer_sizes(tor_tls_t *tls,
  2253. size_t *rbuf_capacity, size_t *rbuf_bytes,
  2254. size_t *wbuf_capacity, size_t *wbuf_bytes)
  2255. {
  2256. #if OPENSSL_VERSION_NUMBER >= OPENSSL_V_SERIES(1,1,0)
  2257. (void)tls;
  2258. (void)rbuf_capacity;
  2259. (void)rbuf_bytes;
  2260. (void)wbuf_capacity;
  2261. (void)wbuf_bytes;
  2262. return -1;
  2263. #else
  2264. if (tls->ssl->s3->rbuf.buf)
  2265. *rbuf_capacity = tls->ssl->s3->rbuf.len;
  2266. else
  2267. *rbuf_capacity = 0;
  2268. if (tls->ssl->s3->wbuf.buf)
  2269. *wbuf_capacity = tls->ssl->s3->wbuf.len;
  2270. else
  2271. *wbuf_capacity = 0;
  2272. *rbuf_bytes = tls->ssl->s3->rbuf.left;
  2273. *wbuf_bytes = tls->ssl->s3->wbuf.left;
  2274. return 0;
  2275. #endif
  2276. }
  2277. /** Check whether the ECC group requested is supported by the current OpenSSL
  2278. * library instance. Return 1 if the group is supported, and 0 if not.
  2279. */
  2280. int
  2281. evaluate_ecgroup_for_tls(const char *ecgroup)
  2282. {
  2283. EC_KEY *ec_key;
  2284. int nid;
  2285. int ret;
  2286. if (!ecgroup)
  2287. nid = NID_tor_default_ecdhe_group;
  2288. else if (!strcasecmp(ecgroup, "P256"))
  2289. nid = NID_X9_62_prime256v1;
  2290. else if (!strcasecmp(ecgroup, "P224"))
  2291. nid = NID_secp224r1;
  2292. else
  2293. return 0;
  2294. ec_key = EC_KEY_new_by_curve_name(nid);
  2295. ret = (ec_key != NULL);
  2296. EC_KEY_free(ec_key);
  2297. return ret;
  2298. }