tls2.c 40 KB

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  1. /* tls.c - Handle tls/ssl. */
  2. /* $OpenLDAP$ */
  3. /* This work is part of OpenLDAP Software <http://www.openldap.org/>.
  4. *
  5. * Copyright 1998-2024 The OpenLDAP Foundation.
  6. * All rights reserved.
  7. *
  8. * Redistribution and use in source and binary forms, with or without
  9. * modification, are permitted only as authorized by the OpenLDAP
  10. * Public License.
  11. *
  12. * A copy of this license is available in the file LICENSE in the
  13. * top-level directory of the distribution or, alternatively, at
  14. * <http://www.OpenLDAP.org/license.html>.
  15. */
  16. /* ACKNOWLEDGEMENTS: restructured by Howard Chu.
  17. */
  18. #include "portable.h"
  19. #include "ldap_config.h"
  20. #include <stdio.h>
  21. #include <ac/stdlib.h>
  22. #include <ac/errno.h>
  23. #include <ac/socket.h>
  24. #include <ac/string.h>
  25. #include <ac/ctype.h>
  26. #include <ac/time.h>
  27. #include <ac/unistd.h>
  28. #include <ac/param.h>
  29. #include <ac/dirent.h>
  30. #include "ldap-int.h"
  31. #ifdef HAVE_TLS
  32. #include "ldap-tls.h"
  33. static tls_impl *tls_imp = &ldap_int_tls_impl;
  34. #define HAS_TLS( sb ) ber_sockbuf_ctrl( sb, LBER_SB_OPT_HAS_IO, \
  35. (void *)tls_imp->ti_sbio )
  36. #endif /* HAVE_TLS */
  37. /* RFC2459 minimum required set of supported attribute types
  38. * in a certificate DN
  39. */
  40. typedef struct oid_name {
  41. struct berval oid;
  42. struct berval name;
  43. } oid_name;
  44. static oid_name oids[] = {
  45. { BER_BVC("2.5.4.3"), BER_BVC("cn") },
  46. { BER_BVC("2.5.4.4"), BER_BVC("sn") },
  47. { BER_BVC("2.5.4.6"), BER_BVC("c") },
  48. { BER_BVC("2.5.4.7"), BER_BVC("l") },
  49. { BER_BVC("2.5.4.8"), BER_BVC("st") },
  50. { BER_BVC("2.5.4.10"), BER_BVC("o") },
  51. { BER_BVC("2.5.4.11"), BER_BVC("ou") },
  52. { BER_BVC("2.5.4.12"), BER_BVC("title") },
  53. { BER_BVC("2.5.4.41"), BER_BVC("name") },
  54. { BER_BVC("2.5.4.42"), BER_BVC("givenName") },
  55. { BER_BVC("2.5.4.43"), BER_BVC("initials") },
  56. { BER_BVC("2.5.4.44"), BER_BVC("generationQualifier") },
  57. { BER_BVC("2.5.4.46"), BER_BVC("dnQualifier") },
  58. { BER_BVC("1.2.840.113549.1.9.1"), BER_BVC("email") },
  59. { BER_BVC("0.9.2342.19200300.100.1.25"), BER_BVC("dc") },
  60. { BER_BVNULL, BER_BVNULL }
  61. };
  62. #ifdef HAVE_TLS
  63. LDAP_F(int) ldap_pvt_tls_check_hostname LDAP_P(( LDAP *ld, void *s, const char *name_in ));
  64. LDAP_F(int) ldap_pvt_tls_get_peercert LDAP_P(( void *s, struct berval *der ));
  65. void
  66. ldap_pvt_tls_ctx_free ( void *c )
  67. {
  68. if ( !c ) return;
  69. tls_imp->ti_ctx_free( c );
  70. }
  71. static void
  72. tls_ctx_ref( tls_ctx *ctx )
  73. {
  74. if ( !ctx ) return;
  75. tls_imp->ti_ctx_ref( ctx );
  76. }
  77. #ifdef LDAP_R_COMPILE
  78. /*
  79. * an extra mutex for the default ctx.
  80. */
  81. static ldap_pvt_thread_mutex_t tls_def_ctx_mutex;
  82. #endif
  83. void
  84. ldap_int_tls_destroy( struct ldapoptions *lo )
  85. {
  86. if ( lo->ldo_tls_ctx ) {
  87. ldap_pvt_tls_ctx_free( lo->ldo_tls_ctx );
  88. lo->ldo_tls_ctx = NULL;
  89. }
  90. if ( lo->ldo_tls_certfile ) {
  91. LDAP_FREE( lo->ldo_tls_certfile );
  92. lo->ldo_tls_certfile = NULL;
  93. }
  94. if ( lo->ldo_tls_keyfile ) {
  95. LDAP_FREE( lo->ldo_tls_keyfile );
  96. lo->ldo_tls_keyfile = NULL;
  97. }
  98. if ( lo->ldo_tls_dhfile ) {
  99. LDAP_FREE( lo->ldo_tls_dhfile );
  100. lo->ldo_tls_dhfile = NULL;
  101. }
  102. if ( lo->ldo_tls_ecname ) {
  103. LDAP_FREE( lo->ldo_tls_ecname );
  104. lo->ldo_tls_ecname = NULL;
  105. }
  106. if ( lo->ldo_tls_cacertfile ) {
  107. LDAP_FREE( lo->ldo_tls_cacertfile );
  108. lo->ldo_tls_cacertfile = NULL;
  109. }
  110. if ( lo->ldo_tls_cacertdir ) {
  111. LDAP_FREE( lo->ldo_tls_cacertdir );
  112. lo->ldo_tls_cacertdir = NULL;
  113. }
  114. if ( lo->ldo_tls_ciphersuite ) {
  115. LDAP_FREE( lo->ldo_tls_ciphersuite );
  116. lo->ldo_tls_ciphersuite = NULL;
  117. }
  118. if ( lo->ldo_tls_crlfile ) {
  119. LDAP_FREE( lo->ldo_tls_crlfile );
  120. lo->ldo_tls_crlfile = NULL;
  121. }
  122. /* tls_pin_hashalg and tls_pin share the same buffer */
  123. if ( lo->ldo_tls_pin_hashalg ) {
  124. LDAP_FREE( lo->ldo_tls_pin_hashalg );
  125. lo->ldo_tls_pin_hashalg = NULL;
  126. } else {
  127. LDAP_FREE( lo->ldo_tls_pin.bv_val );
  128. }
  129. BER_BVZERO( &lo->ldo_tls_pin );
  130. }
  131. /*
  132. * Tear down the TLS subsystem. Should only be called once.
  133. */
  134. void
  135. ldap_pvt_tls_destroy( void )
  136. {
  137. struct ldapoptions *lo = LDAP_INT_GLOBAL_OPT();
  138. ldap_int_tls_destroy( lo );
  139. tls_imp->ti_tls_destroy();
  140. }
  141. /*
  142. * Initialize a particular TLS implementation.
  143. * Called once per implementation.
  144. */
  145. static int
  146. tls_init(tls_impl *impl, int do_threads )
  147. {
  148. static int tls_initialized = 0;
  149. if ( !tls_initialized++ ) {
  150. #ifdef LDAP_R_COMPILE
  151. ldap_pvt_thread_mutex_init( &tls_def_ctx_mutex );
  152. #endif
  153. }
  154. if ( impl->ti_inited++ ) return 0;
  155. if ( do_threads ) {
  156. #ifdef LDAP_R_COMPILE
  157. impl->ti_thr_init();
  158. #endif
  159. }
  160. return impl->ti_tls_init();
  161. }
  162. /*
  163. * Initialize TLS subsystem. Called once per implementation.
  164. */
  165. int
  166. ldap_pvt_tls_init( int do_threads )
  167. {
  168. return tls_init( tls_imp, do_threads );
  169. }
  170. /*
  171. * initialize a new TLS context
  172. */
  173. static int
  174. ldap_int_tls_init_ctx( struct ldapoptions *lo, int is_server, char *errmsg )
  175. {
  176. int rc = 0;
  177. tls_impl *ti = tls_imp;
  178. struct ldaptls lts = lo->ldo_tls_info;
  179. if ( lo->ldo_tls_ctx )
  180. return 0;
  181. tls_init( ti, 0 );
  182. if ( is_server && !lts.lt_certfile && !lts.lt_keyfile &&
  183. !lts.lt_cacertfile && !lts.lt_cacertdir &&
  184. !lts.lt_cacert.bv_val && !lts.lt_cert.bv_val &&
  185. !lts.lt_key.bv_val ) {
  186. /* minimum configuration not provided */
  187. return LDAP_NOT_SUPPORTED;
  188. }
  189. #ifdef HAVE_EBCDIC
  190. /* This ASCII/EBCDIC handling is a real pain! */
  191. if ( lts.lt_ciphersuite ) {
  192. lts.lt_ciphersuite = LDAP_STRDUP( lts.lt_ciphersuite );
  193. __atoe( lts.lt_ciphersuite );
  194. }
  195. if ( lts.lt_cacertfile ) {
  196. lts.lt_cacertfile = LDAP_STRDUP( lts.lt_cacertfile );
  197. __atoe( lts.lt_cacertfile );
  198. }
  199. if ( lts.lt_certfile ) {
  200. lts.lt_certfile = LDAP_STRDUP( lts.lt_certfile );
  201. __atoe( lts.lt_certfile );
  202. }
  203. if ( lts.lt_keyfile ) {
  204. lts.lt_keyfile = LDAP_STRDUP( lts.lt_keyfile );
  205. __atoe( lts.lt_keyfile );
  206. }
  207. if ( lts.lt_crlfile ) {
  208. lts.lt_crlfile = LDAP_STRDUP( lts.lt_crlfile );
  209. __atoe( lts.lt_crlfile );
  210. }
  211. if ( lts.lt_cacertdir ) {
  212. lts.lt_cacertdir = LDAP_STRDUP( lts.lt_cacertdir );
  213. __atoe( lts.lt_cacertdir );
  214. }
  215. if ( lts.lt_dhfile ) {
  216. lts.lt_dhfile = LDAP_STRDUP( lts.lt_dhfile );
  217. __atoe( lts.lt_dhfile );
  218. }
  219. if ( lts.lt_ecname ) {
  220. lts.lt_ecname = LDAP_STRDUP( lts.lt_ecname );
  221. __atoe( lts.lt_ecname );
  222. }
  223. #endif
  224. lo->ldo_tls_ctx = ti->ti_ctx_new( lo );
  225. if ( lo->ldo_tls_ctx == NULL ) {
  226. Debug0( LDAP_DEBUG_ANY,
  227. "TLS: could not allocate default ctx.\n" );
  228. rc = -1;
  229. goto error_exit;
  230. }
  231. rc = ti->ti_ctx_init( lo, &lts, is_server, errmsg );
  232. error_exit:
  233. if ( rc < 0 && lo->ldo_tls_ctx != NULL ) {
  234. ldap_pvt_tls_ctx_free( lo->ldo_tls_ctx );
  235. lo->ldo_tls_ctx = NULL;
  236. }
  237. #ifdef HAVE_EBCDIC
  238. LDAP_FREE( lts.lt_ciphersuite );
  239. LDAP_FREE( lts.lt_cacertfile );
  240. LDAP_FREE( lts.lt_certfile );
  241. LDAP_FREE( lts.lt_keyfile );
  242. LDAP_FREE( lts.lt_crlfile );
  243. LDAP_FREE( lts.lt_cacertdir );
  244. LDAP_FREE( lts.lt_dhfile );
  245. LDAP_FREE( lts.lt_ecname );
  246. #endif
  247. return rc;
  248. }
  249. /*
  250. * initialize the default context
  251. */
  252. int
  253. ldap_pvt_tls_init_def_ctx( int is_server )
  254. {
  255. struct ldapoptions *lo = LDAP_INT_GLOBAL_OPT();
  256. char errmsg[ERRBUFSIZE];
  257. int rc;
  258. errmsg[0] = 0;
  259. LDAP_MUTEX_LOCK( &tls_def_ctx_mutex );
  260. rc = ldap_int_tls_init_ctx( lo, is_server, errmsg );
  261. LDAP_MUTEX_UNLOCK( &tls_def_ctx_mutex );
  262. if ( rc ) {
  263. Debug1( LDAP_DEBUG_ANY,"TLS: init_def_ctx: %s.\n", errmsg );
  264. }
  265. return rc;
  266. }
  267. static tls_session *
  268. alloc_handle( void *ctx_arg, int is_server )
  269. {
  270. tls_ctx *ctx;
  271. tls_session *ssl;
  272. if ( ctx_arg ) {
  273. ctx = ctx_arg;
  274. } else {
  275. struct ldapoptions *lo = LDAP_INT_GLOBAL_OPT();
  276. if ( ldap_pvt_tls_init_def_ctx( is_server ) < 0 ) return NULL;
  277. ctx = lo->ldo_tls_ctx;
  278. }
  279. ssl = tls_imp->ti_session_new( ctx, is_server );
  280. if ( ssl == NULL ) {
  281. Debug0( LDAP_DEBUG_ANY,"TLS: can't create ssl handle.\n" );
  282. return NULL;
  283. }
  284. return ssl;
  285. }
  286. static int
  287. update_flags( Sockbuf *sb, tls_session * ssl, int rc )
  288. {
  289. sb->sb_trans_needs_read = 0;
  290. sb->sb_trans_needs_write = 0;
  291. return tls_imp->ti_session_upflags( sb, ssl, rc );
  292. }
  293. /*
  294. * Call this to do a TLS connect on a sockbuf. ctx_arg can be
  295. * a SSL_CTX * or NULL, in which case the default ctx is used.
  296. *
  297. * Return value:
  298. *
  299. * 0 - Success. Connection is ready for communication.
  300. * <0 - Error. Can't create a TLS stream.
  301. * >0 - Partial success.
  302. * Do a select (using information from lber_pvt_sb_needs_{read,write}
  303. * and call again.
  304. */
  305. static int
  306. ldap_int_tls_connect( LDAP *ld, LDAPConn *conn, const char *host )
  307. {
  308. Sockbuf *sb = conn->lconn_sb;
  309. int err;
  310. tls_session *ssl = NULL;
  311. const char *sni = host;
  312. if ( HAS_TLS( sb )) {
  313. ber_sockbuf_ctrl( sb, LBER_SB_OPT_GET_SSL, (void *)&ssl );
  314. } else {
  315. struct ldapoptions *lo;
  316. tls_ctx *ctx;
  317. ctx = ld->ld_options.ldo_tls_ctx;
  318. ssl = alloc_handle( ctx, 0 );
  319. if ( ssl == NULL ) return -1;
  320. #ifdef LDAP_DEBUG
  321. ber_sockbuf_add_io( sb, &ber_sockbuf_io_debug,
  322. LBER_SBIOD_LEVEL_TRANSPORT, (void *)"tls_" );
  323. #endif
  324. ber_sockbuf_add_io( sb, tls_imp->ti_sbio,
  325. LBER_SBIOD_LEVEL_TRANSPORT, (void *)ssl );
  326. lo = LDAP_INT_GLOBAL_OPT();
  327. if( ctx == NULL ) {
  328. ctx = lo->ldo_tls_ctx;
  329. ld->ld_options.ldo_tls_ctx = ctx;
  330. tls_ctx_ref( ctx );
  331. }
  332. if ( ld->ld_options.ldo_tls_connect_cb )
  333. ld->ld_options.ldo_tls_connect_cb( ld, ssl, ctx,
  334. ld->ld_options.ldo_tls_connect_arg );
  335. if ( lo && lo->ldo_tls_connect_cb && lo->ldo_tls_connect_cb !=
  336. ld->ld_options.ldo_tls_connect_cb )
  337. lo->ldo_tls_connect_cb( ld, ssl, ctx, lo->ldo_tls_connect_arg );
  338. }
  339. /* pass hostname for SNI, but only if it's an actual name
  340. * and not a numeric address
  341. */
  342. {
  343. int numeric = 1;
  344. unsigned char *c;
  345. for ( c = (unsigned char *)sni; *c; c++ ) {
  346. if ( *c == ':' ) /* IPv6 address */
  347. break;
  348. if ( *c == '.' )
  349. continue;
  350. if ( !isdigit( *c )) {
  351. numeric = 0;
  352. break;
  353. }
  354. }
  355. if ( numeric )
  356. sni = NULL;
  357. }
  358. err = tls_imp->ti_session_connect( ld, ssl, sni );
  359. #ifdef HAVE_WINSOCK
  360. errno = WSAGetLastError();
  361. #endif
  362. if ( err == 0 ) {
  363. err = ldap_pvt_tls_check_hostname( ld, ssl, host );
  364. }
  365. if ( err < 0 )
  366. {
  367. char buf[256], *msg;
  368. if ( update_flags( sb, ssl, err )) {
  369. return 1;
  370. }
  371. msg = tls_imp->ti_session_errmsg( ssl, err, buf, sizeof(buf) );
  372. if ( msg ) {
  373. if ( ld->ld_error ) {
  374. LDAP_FREE( ld->ld_error );
  375. }
  376. ld->ld_error = LDAP_STRDUP( msg );
  377. #ifdef HAVE_EBCDIC
  378. if ( ld->ld_error ) __etoa(ld->ld_error);
  379. #endif
  380. }
  381. Debug1( LDAP_DEBUG_ANY,"TLS: can't connect: %s.\n",
  382. ld->ld_error ? ld->ld_error : "" );
  383. ber_sockbuf_remove_io( sb, tls_imp->ti_sbio,
  384. LBER_SBIOD_LEVEL_TRANSPORT );
  385. #ifdef LDAP_DEBUG
  386. ber_sockbuf_remove_io( sb, &ber_sockbuf_io_debug,
  387. LBER_SBIOD_LEVEL_TRANSPORT );
  388. #endif
  389. return -1;
  390. }
  391. return 0;
  392. }
  393. int
  394. ldap_pvt_tls_connect( LDAP *ld, Sockbuf *sb, const char *host )
  395. {
  396. LDAPConn conn = { .lconn_sb = sb };
  397. return ldap_int_tls_connect( ld, &conn, host );
  398. }
  399. /*
  400. * Call this to do a TLS accept on a sockbuf.
  401. * Everything else is the same as with tls_connect.
  402. */
  403. int
  404. ldap_pvt_tls_accept( Sockbuf *sb, void *ctx_arg )
  405. {
  406. int err;
  407. tls_session *ssl = NULL;
  408. if ( HAS_TLS( sb )) {
  409. ber_sockbuf_ctrl( sb, LBER_SB_OPT_GET_SSL, (void *)&ssl );
  410. } else {
  411. ssl = alloc_handle( ctx_arg, 1 );
  412. if ( ssl == NULL ) return -1;
  413. #ifdef LDAP_DEBUG
  414. ber_sockbuf_add_io( sb, &ber_sockbuf_io_debug,
  415. LBER_SBIOD_LEVEL_TRANSPORT, (void *)"tls_" );
  416. #endif
  417. ber_sockbuf_add_io( sb, tls_imp->ti_sbio,
  418. LBER_SBIOD_LEVEL_TRANSPORT, (void *)ssl );
  419. }
  420. err = tls_imp->ti_session_accept( ssl );
  421. #ifdef HAVE_WINSOCK
  422. errno = WSAGetLastError();
  423. #endif
  424. if ( err < 0 )
  425. {
  426. if ( update_flags( sb, ssl, err )) return 1;
  427. if ( DebugTest( LDAP_DEBUG_ANY ) ) {
  428. char buf[256], *msg;
  429. msg = tls_imp->ti_session_errmsg( ssl, err, buf, sizeof(buf) );
  430. Debug1( LDAP_DEBUG_ANY,"TLS: can't accept: %s.\n",
  431. msg ? msg : "(unknown)" );
  432. }
  433. ber_sockbuf_remove_io( sb, tls_imp->ti_sbio,
  434. LBER_SBIOD_LEVEL_TRANSPORT );
  435. #ifdef LDAP_DEBUG
  436. ber_sockbuf_remove_io( sb, &ber_sockbuf_io_debug,
  437. LBER_SBIOD_LEVEL_TRANSPORT );
  438. #endif
  439. return -1;
  440. }
  441. return 0;
  442. }
  443. int
  444. ldap_pvt_tls_inplace ( Sockbuf *sb )
  445. {
  446. return HAS_TLS( sb ) ? 1 : 0;
  447. }
  448. int
  449. ldap_tls_inplace( LDAP *ld )
  450. {
  451. Sockbuf *sb = NULL;
  452. if ( ld->ld_defconn && ld->ld_defconn->lconn_sb ) {
  453. sb = ld->ld_defconn->lconn_sb;
  454. } else if ( ld->ld_sb ) {
  455. sb = ld->ld_sb;
  456. } else {
  457. return 0;
  458. }
  459. return ldap_pvt_tls_inplace( sb );
  460. }
  461. int
  462. ldap_pvt_tls_get_peer_dn( void *s, struct berval *dn,
  463. LDAPDN_rewrite_dummy *func, unsigned flags )
  464. {
  465. tls_session *session = s;
  466. struct berval bvdn;
  467. int rc;
  468. rc = tls_imp->ti_session_peer_dn( session, &bvdn );
  469. if ( rc ) return rc;
  470. rc = ldap_X509dn2bv( &bvdn, dn,
  471. (LDAPDN_rewrite_func *)func, flags);
  472. return rc;
  473. }
  474. int
  475. ldap_pvt_tls_check_hostname( LDAP *ld, void *s, const char *name_in )
  476. {
  477. tls_session *session = s;
  478. if (ld->ld_options.ldo_tls_require_cert != LDAP_OPT_X_TLS_NEVER &&
  479. ld->ld_options.ldo_tls_require_cert != LDAP_OPT_X_TLS_ALLOW) {
  480. ld->ld_errno = tls_imp->ti_session_chkhost( ld, session, name_in );
  481. if (ld->ld_errno != LDAP_SUCCESS) {
  482. return ld->ld_errno;
  483. }
  484. }
  485. /*
  486. * If instructed to do pinning, do it now
  487. */
  488. if ( !BER_BVISNULL( &ld->ld_options.ldo_tls_pin ) ) {
  489. ld->ld_errno = tls_imp->ti_session_pinning( ld, s,
  490. ld->ld_options.ldo_tls_pin_hashalg,
  491. &ld->ld_options.ldo_tls_pin );
  492. if (ld->ld_errno != LDAP_SUCCESS) {
  493. return ld->ld_errno;
  494. }
  495. }
  496. return LDAP_SUCCESS;
  497. }
  498. int
  499. ldap_pvt_tls_config( LDAP *ld, int option, const char *arg )
  500. {
  501. int i;
  502. switch( option ) {
  503. case LDAP_OPT_X_TLS_CACERTFILE:
  504. case LDAP_OPT_X_TLS_CACERTDIR:
  505. case LDAP_OPT_X_TLS_CERTFILE:
  506. case LDAP_OPT_X_TLS_KEYFILE:
  507. case LDAP_OPT_X_TLS_RANDOM_FILE:
  508. case LDAP_OPT_X_TLS_CIPHER_SUITE:
  509. case LDAP_OPT_X_TLS_DHFILE:
  510. case LDAP_OPT_X_TLS_PEERKEY_HASH:
  511. case LDAP_OPT_X_TLS_ECNAME:
  512. case LDAP_OPT_X_TLS_CRLFILE: /* GnuTLS only */
  513. return ldap_pvt_tls_set_option( ld, option, (void *) arg );
  514. case LDAP_OPT_X_TLS_REQUIRE_CERT:
  515. case LDAP_OPT_X_TLS_REQUIRE_SAN:
  516. case LDAP_OPT_X_TLS:
  517. i = -1;
  518. if ( strcasecmp( arg, "never" ) == 0 ) {
  519. i = LDAP_OPT_X_TLS_NEVER ;
  520. } else if ( strcasecmp( arg, "demand" ) == 0 ) {
  521. i = LDAP_OPT_X_TLS_DEMAND ;
  522. } else if ( strcasecmp( arg, "allow" ) == 0 ) {
  523. i = LDAP_OPT_X_TLS_ALLOW ;
  524. } else if ( strcasecmp( arg, "try" ) == 0 ) {
  525. i = LDAP_OPT_X_TLS_TRY ;
  526. } else if ( ( strcasecmp( arg, "hard" ) == 0 ) ||
  527. ( strcasecmp( arg, "on" ) == 0 ) ||
  528. ( strcasecmp( arg, "yes" ) == 0) ||
  529. ( strcasecmp( arg, "true" ) == 0 ) )
  530. {
  531. i = LDAP_OPT_X_TLS_HARD ;
  532. }
  533. if (i >= 0) {
  534. return ldap_pvt_tls_set_option( ld, option, &i );
  535. }
  536. return -1;
  537. case LDAP_OPT_X_TLS_PROTOCOL_MAX:
  538. case LDAP_OPT_X_TLS_PROTOCOL_MIN: {
  539. char *next;
  540. long l;
  541. l = strtol( arg, &next, 10 );
  542. if ( l < 0 || l > 0xff || next == arg ||
  543. ( *next != '\0' && *next != '.' ) )
  544. return -1;
  545. i = l << 8;
  546. if (*next == '.') {
  547. arg = next + 1;
  548. l = strtol( arg, &next, 10 );
  549. if ( l < 0 || l > 0xff || next == arg || *next != '\0' )
  550. return -1;
  551. i += l;
  552. }
  553. return ldap_pvt_tls_set_option( ld, option, &i );
  554. }
  555. #ifdef HAVE_OPENSSL
  556. case LDAP_OPT_X_TLS_CRLCHECK: /* OpenSSL only */
  557. i = -1;
  558. if ( strcasecmp( arg, "none" ) == 0 ) {
  559. i = LDAP_OPT_X_TLS_CRL_NONE ;
  560. } else if ( strcasecmp( arg, "peer" ) == 0 ) {
  561. i = LDAP_OPT_X_TLS_CRL_PEER ;
  562. } else if ( strcasecmp( arg, "all" ) == 0 ) {
  563. i = LDAP_OPT_X_TLS_CRL_ALL ;
  564. }
  565. if (i >= 0) {
  566. return ldap_pvt_tls_set_option( ld, option, &i );
  567. }
  568. return -1;
  569. #endif
  570. }
  571. return -1;
  572. }
  573. int
  574. ldap_pvt_tls_get_option( LDAP *ld, int option, void *arg )
  575. {
  576. struct ldapoptions *lo;
  577. if( option == LDAP_OPT_X_TLS_PACKAGE ) {
  578. *(char **)arg = LDAP_STRDUP( tls_imp->ti_name );
  579. return 0;
  580. }
  581. if( ld != NULL ) {
  582. assert( LDAP_VALID( ld ) );
  583. if( !LDAP_VALID( ld ) ) {
  584. return LDAP_OPT_ERROR;
  585. }
  586. lo = &ld->ld_options;
  587. } else {
  588. /* Get pointer to global option structure */
  589. lo = LDAP_INT_GLOBAL_OPT();
  590. if ( lo == NULL ) {
  591. return LDAP_NO_MEMORY;
  592. }
  593. }
  594. switch( option ) {
  595. case LDAP_OPT_X_TLS:
  596. *(int *)arg = lo->ldo_tls_mode;
  597. break;
  598. case LDAP_OPT_X_TLS_CTX:
  599. *(void **)arg = lo->ldo_tls_ctx;
  600. if ( lo->ldo_tls_ctx ) {
  601. tls_ctx_ref( lo->ldo_tls_ctx );
  602. }
  603. break;
  604. case LDAP_OPT_X_TLS_CACERTFILE:
  605. *(char **)arg = lo->ldo_tls_cacertfile ?
  606. LDAP_STRDUP( lo->ldo_tls_cacertfile ) : NULL;
  607. break;
  608. case LDAP_OPT_X_TLS_CACERTDIR:
  609. *(char **)arg = lo->ldo_tls_cacertdir ?
  610. LDAP_STRDUP( lo->ldo_tls_cacertdir ) : NULL;
  611. break;
  612. case LDAP_OPT_X_TLS_CERTFILE:
  613. *(char **)arg = lo->ldo_tls_certfile ?
  614. LDAP_STRDUP( lo->ldo_tls_certfile ) : NULL;
  615. break;
  616. case LDAP_OPT_X_TLS_KEYFILE:
  617. *(char **)arg = lo->ldo_tls_keyfile ?
  618. LDAP_STRDUP( lo->ldo_tls_keyfile ) : NULL;
  619. break;
  620. case LDAP_OPT_X_TLS_DHFILE:
  621. *(char **)arg = lo->ldo_tls_dhfile ?
  622. LDAP_STRDUP( lo->ldo_tls_dhfile ) : NULL;
  623. break;
  624. case LDAP_OPT_X_TLS_ECNAME:
  625. *(char **)arg = lo->ldo_tls_ecname ?
  626. LDAP_STRDUP( lo->ldo_tls_ecname ) : NULL;
  627. break;
  628. case LDAP_OPT_X_TLS_CRLFILE: /* GnuTLS only */
  629. *(char **)arg = lo->ldo_tls_crlfile ?
  630. LDAP_STRDUP( lo->ldo_tls_crlfile ) : NULL;
  631. break;
  632. case LDAP_OPT_X_TLS_REQUIRE_CERT:
  633. *(int *)arg = lo->ldo_tls_require_cert;
  634. break;
  635. case LDAP_OPT_X_TLS_REQUIRE_SAN:
  636. *(int *)arg = lo->ldo_tls_require_san;
  637. break;
  638. #ifdef HAVE_OPENSSL
  639. case LDAP_OPT_X_TLS_CRLCHECK: /* OpenSSL only */
  640. *(int *)arg = lo->ldo_tls_crlcheck;
  641. break;
  642. #endif
  643. case LDAP_OPT_X_TLS_CIPHER_SUITE:
  644. *(char **)arg = lo->ldo_tls_ciphersuite ?
  645. LDAP_STRDUP( lo->ldo_tls_ciphersuite ) : NULL;
  646. break;
  647. case LDAP_OPT_X_TLS_PROTOCOL_MIN:
  648. *(int *)arg = lo->ldo_tls_protocol_min;
  649. break;
  650. case LDAP_OPT_X_TLS_PROTOCOL_MAX:
  651. *(int *)arg = lo->ldo_tls_protocol_max;
  652. break;
  653. case LDAP_OPT_X_TLS_RANDOM_FILE:
  654. *(char **)arg = lo->ldo_tls_randfile ?
  655. LDAP_STRDUP( lo->ldo_tls_randfile ) : NULL;
  656. break;
  657. case LDAP_OPT_X_TLS_SSL_CTX: {
  658. void *retval = 0;
  659. if ( ld != NULL ) {
  660. LDAPConn *conn = ld->ld_defconn;
  661. if ( conn != NULL ) {
  662. Sockbuf *sb = conn->lconn_sb;
  663. retval = ldap_pvt_tls_sb_ctx( sb );
  664. }
  665. }
  666. *(void **)arg = retval;
  667. break;
  668. }
  669. case LDAP_OPT_X_TLS_CONNECT_CB:
  670. *(LDAP_TLS_CONNECT_CB **)arg = lo->ldo_tls_connect_cb;
  671. break;
  672. case LDAP_OPT_X_TLS_CONNECT_ARG:
  673. *(void **)arg = lo->ldo_tls_connect_arg;
  674. break;
  675. case LDAP_OPT_X_TLS_VERSION: {
  676. void *sess = NULL;
  677. const char *retval = NULL;
  678. if ( ld != NULL ) {
  679. LDAPConn *conn = ld->ld_defconn;
  680. if ( conn != NULL ) {
  681. Sockbuf *sb = conn->lconn_sb;
  682. sess = ldap_pvt_tls_sb_ctx( sb );
  683. if ( sess != NULL )
  684. retval = ldap_pvt_tls_get_version( sess );
  685. }
  686. }
  687. *(char **)arg = retval ? LDAP_STRDUP( retval ) : NULL;
  688. break;
  689. }
  690. case LDAP_OPT_X_TLS_CIPHER: {
  691. void *sess = NULL;
  692. const char *retval = NULL;
  693. if ( ld != NULL ) {
  694. LDAPConn *conn = ld->ld_defconn;
  695. if ( conn != NULL ) {
  696. Sockbuf *sb = conn->lconn_sb;
  697. sess = ldap_pvt_tls_sb_ctx( sb );
  698. if ( sess != NULL )
  699. retval = ldap_pvt_tls_get_cipher( sess );
  700. }
  701. }
  702. *(char **)arg = retval ? LDAP_STRDUP( retval ) : NULL;
  703. break;
  704. }
  705. case LDAP_OPT_X_TLS_PEERCERT: {
  706. void *sess = NULL;
  707. struct berval *bv = arg;
  708. bv->bv_len = 0;
  709. bv->bv_val = NULL;
  710. if ( ld != NULL ) {
  711. LDAPConn *conn = ld->ld_defconn;
  712. if ( conn != NULL ) {
  713. Sockbuf *sb = conn->lconn_sb;
  714. sess = ldap_pvt_tls_sb_ctx( sb );
  715. if ( sess != NULL )
  716. return ldap_pvt_tls_get_peercert( sess, bv );
  717. }
  718. }
  719. break;
  720. }
  721. case LDAP_OPT_X_TLS_CACERT: {
  722. struct berval *bv = arg;
  723. if ( lo->ldo_tls_cacert.bv_val ) {
  724. ber_dupbv( bv, &lo->ldo_tls_cacert );
  725. } else {
  726. BER_BVZERO( bv );
  727. }
  728. break;
  729. }
  730. case LDAP_OPT_X_TLS_CERT: {
  731. struct berval *bv = arg;
  732. if ( lo->ldo_tls_cert.bv_val ) {
  733. ber_dupbv( bv, &lo->ldo_tls_cert );
  734. } else {
  735. BER_BVZERO( bv );
  736. }
  737. break;
  738. }
  739. case LDAP_OPT_X_TLS_KEY: {
  740. struct berval *bv = arg;
  741. if ( lo->ldo_tls_key.bv_val ) {
  742. ber_dupbv( bv, &lo->ldo_tls_key );
  743. } else {
  744. BER_BVZERO( bv );
  745. }
  746. break;
  747. }
  748. default:
  749. return -1;
  750. }
  751. return 0;
  752. }
  753. int
  754. ldap_pvt_tls_set_option( LDAP *ld, int option, void *arg )
  755. {
  756. struct ldapoptions *lo;
  757. if( ld != NULL ) {
  758. assert( LDAP_VALID( ld ) );
  759. if( !LDAP_VALID( ld ) ) {
  760. return LDAP_OPT_ERROR;
  761. }
  762. lo = &ld->ld_options;
  763. } else {
  764. /* Get pointer to global option structure */
  765. lo = LDAP_INT_GLOBAL_OPT();
  766. if ( lo == NULL ) {
  767. return LDAP_NO_MEMORY;
  768. }
  769. }
  770. switch( option ) {
  771. case LDAP_OPT_X_TLS:
  772. if ( !arg ) return -1;
  773. switch( *(int *) arg ) {
  774. case LDAP_OPT_X_TLS_NEVER:
  775. case LDAP_OPT_X_TLS_DEMAND:
  776. case LDAP_OPT_X_TLS_ALLOW:
  777. case LDAP_OPT_X_TLS_TRY:
  778. case LDAP_OPT_X_TLS_HARD:
  779. if (lo != NULL) {
  780. lo->ldo_tls_mode = *(int *)arg;
  781. }
  782. return 0;
  783. }
  784. return -1;
  785. case LDAP_OPT_X_TLS_CTX:
  786. if ( lo->ldo_tls_ctx )
  787. ldap_pvt_tls_ctx_free( lo->ldo_tls_ctx );
  788. lo->ldo_tls_ctx = arg;
  789. tls_ctx_ref( lo->ldo_tls_ctx );
  790. return 0;
  791. case LDAP_OPT_X_TLS_CONNECT_CB:
  792. lo->ldo_tls_connect_cb = (LDAP_TLS_CONNECT_CB *)arg;
  793. return 0;
  794. case LDAP_OPT_X_TLS_CONNECT_ARG:
  795. lo->ldo_tls_connect_arg = arg;
  796. return 0;
  797. case LDAP_OPT_X_TLS_CACERTFILE:
  798. if ( lo->ldo_tls_cacertfile ) LDAP_FREE( lo->ldo_tls_cacertfile );
  799. lo->ldo_tls_cacertfile = (arg && *(char *)arg) ? LDAP_STRDUP( (char *) arg ) : NULL;
  800. return 0;
  801. case LDAP_OPT_X_TLS_CACERTDIR:
  802. if ( lo->ldo_tls_cacertdir ) LDAP_FREE( lo->ldo_tls_cacertdir );
  803. lo->ldo_tls_cacertdir = (arg && *(char *)arg) ? LDAP_STRDUP( (char *) arg ) : NULL;
  804. return 0;
  805. case LDAP_OPT_X_TLS_CERTFILE:
  806. if ( lo->ldo_tls_certfile ) LDAP_FREE( lo->ldo_tls_certfile );
  807. lo->ldo_tls_certfile = (arg && *(char *)arg) ? LDAP_STRDUP( (char *) arg ) : NULL;
  808. return 0;
  809. case LDAP_OPT_X_TLS_KEYFILE:
  810. if ( lo->ldo_tls_keyfile ) LDAP_FREE( lo->ldo_tls_keyfile );
  811. lo->ldo_tls_keyfile = (arg && *(char *)arg) ? LDAP_STRDUP( (char *) arg ) : NULL;
  812. return 0;
  813. case LDAP_OPT_X_TLS_DHFILE:
  814. if ( lo->ldo_tls_dhfile ) LDAP_FREE( lo->ldo_tls_dhfile );
  815. lo->ldo_tls_dhfile = (arg && *(char *)arg) ? LDAP_STRDUP( (char *) arg ) : NULL;
  816. return 0;
  817. case LDAP_OPT_X_TLS_ECNAME:
  818. if ( lo->ldo_tls_ecname ) LDAP_FREE( lo->ldo_tls_ecname );
  819. lo->ldo_tls_ecname = (arg && *(char *)arg) ? LDAP_STRDUP( (char *) arg ) : NULL;
  820. return 0;
  821. case LDAP_OPT_X_TLS_CRLFILE: /* GnuTLS only */
  822. if ( lo->ldo_tls_crlfile ) LDAP_FREE( lo->ldo_tls_crlfile );
  823. lo->ldo_tls_crlfile = (arg && *(char *)arg) ? LDAP_STRDUP( (char *) arg ) : NULL;
  824. return 0;
  825. case LDAP_OPT_X_TLS_REQUIRE_CERT:
  826. if ( !arg ) return -1;
  827. switch( *(int *) arg ) {
  828. case LDAP_OPT_X_TLS_NEVER:
  829. case LDAP_OPT_X_TLS_DEMAND:
  830. case LDAP_OPT_X_TLS_ALLOW:
  831. case LDAP_OPT_X_TLS_TRY:
  832. case LDAP_OPT_X_TLS_HARD:
  833. lo->ldo_tls_require_cert = * (int *) arg;
  834. return 0;
  835. }
  836. return -1;
  837. case LDAP_OPT_X_TLS_REQUIRE_SAN:
  838. if ( !arg ) return -1;
  839. switch( *(int *) arg ) {
  840. case LDAP_OPT_X_TLS_NEVER:
  841. case LDAP_OPT_X_TLS_DEMAND:
  842. case LDAP_OPT_X_TLS_ALLOW:
  843. case LDAP_OPT_X_TLS_TRY:
  844. case LDAP_OPT_X_TLS_HARD:
  845. lo->ldo_tls_require_san = * (int *) arg;
  846. return 0;
  847. }
  848. return -1;
  849. #ifdef HAVE_OPENSSL
  850. case LDAP_OPT_X_TLS_CRLCHECK: /* OpenSSL only */
  851. if ( !arg ) return -1;
  852. switch( *(int *) arg ) {
  853. case LDAP_OPT_X_TLS_CRL_NONE:
  854. case LDAP_OPT_X_TLS_CRL_PEER:
  855. case LDAP_OPT_X_TLS_CRL_ALL:
  856. lo->ldo_tls_crlcheck = * (int *) arg;
  857. return 0;
  858. }
  859. return -1;
  860. #endif
  861. case LDAP_OPT_X_TLS_CIPHER_SUITE:
  862. if ( lo->ldo_tls_ciphersuite ) LDAP_FREE( lo->ldo_tls_ciphersuite );
  863. lo->ldo_tls_ciphersuite = (arg && *(char *)arg) ? LDAP_STRDUP( (char *) arg ) : NULL;
  864. return 0;
  865. case LDAP_OPT_X_TLS_PROTOCOL_MIN:
  866. if ( !arg ) return -1;
  867. lo->ldo_tls_protocol_min = *(int *)arg;
  868. return 0;
  869. case LDAP_OPT_X_TLS_PROTOCOL_MAX:
  870. if ( !arg ) return -1;
  871. lo->ldo_tls_protocol_max = *(int *)arg;
  872. return 0;
  873. case LDAP_OPT_X_TLS_RANDOM_FILE:
  874. if ( ld != NULL )
  875. return -1;
  876. if ( lo->ldo_tls_randfile ) LDAP_FREE (lo->ldo_tls_randfile );
  877. lo->ldo_tls_randfile = (arg && *(char *)arg) ? LDAP_STRDUP( (char *) arg ) : NULL;
  878. break;
  879. case LDAP_OPT_X_TLS_NEWCTX: {
  880. int rc;
  881. char errmsg[ERRBUFSIZE];
  882. if ( !arg ) return -1;
  883. if ( lo->ldo_tls_ctx )
  884. ldap_pvt_tls_ctx_free( lo->ldo_tls_ctx );
  885. lo->ldo_tls_ctx = NULL;
  886. errmsg[0] = 0;
  887. rc = ldap_int_tls_init_ctx( lo, *(int *)arg, errmsg );
  888. if ( rc && errmsg[0] && ld ) {
  889. if ( ld->ld_error )
  890. LDAP_FREE( ld->ld_error );
  891. ld->ld_error = LDAP_STRDUP( errmsg );
  892. }
  893. return rc;
  894. }
  895. case LDAP_OPT_X_TLS_CACERT:
  896. if ( lo->ldo_tls_cacert.bv_val )
  897. LDAP_FREE( lo->ldo_tls_cacert.bv_val );
  898. if ( arg ) {
  899. lo->ldo_tls_cacert.bv_len = ((struct berval *)arg)->bv_len;
  900. lo->ldo_tls_cacert.bv_val = LDAP_MALLOC( lo->ldo_tls_cacert.bv_len );
  901. if ( !lo->ldo_tls_cacert.bv_val )
  902. return -1;
  903. AC_MEMCPY( lo->ldo_tls_cacert.bv_val, ((struct berval *)arg)->bv_val, lo->ldo_tls_cacert.bv_len );
  904. } else {
  905. BER_BVZERO( &lo->ldo_tls_cacert );
  906. }
  907. break;
  908. case LDAP_OPT_X_TLS_CERT:
  909. if ( lo->ldo_tls_cert.bv_val )
  910. LDAP_FREE( lo->ldo_tls_cert.bv_val );
  911. if ( arg ) {
  912. lo->ldo_tls_cert.bv_len = ((struct berval *)arg)->bv_len;
  913. lo->ldo_tls_cert.bv_val = LDAP_MALLOC( lo->ldo_tls_cert.bv_len );
  914. if ( !lo->ldo_tls_cert.bv_val )
  915. return -1;
  916. AC_MEMCPY( lo->ldo_tls_cert.bv_val, ((struct berval *)arg)->bv_val, lo->ldo_tls_cert.bv_len );
  917. } else {
  918. BER_BVZERO( &lo->ldo_tls_cert );
  919. }
  920. break;
  921. case LDAP_OPT_X_TLS_KEY:
  922. if ( lo->ldo_tls_key.bv_val )
  923. LDAP_FREE( lo->ldo_tls_key.bv_val );
  924. if ( arg ) {
  925. lo->ldo_tls_key.bv_len = ((struct berval *)arg)->bv_len;
  926. lo->ldo_tls_key.bv_val = LDAP_MALLOC( lo->ldo_tls_key.bv_len );
  927. if ( !lo->ldo_tls_key.bv_val )
  928. return -1;
  929. AC_MEMCPY( lo->ldo_tls_key.bv_val, ((struct berval *)arg)->bv_val, lo->ldo_tls_key.bv_len );
  930. } else {
  931. BER_BVZERO( &lo->ldo_tls_key );
  932. }
  933. break;
  934. case LDAP_OPT_X_TLS_PEERKEY_HASH: {
  935. /* arg = "[hashalg:]pubkey_hash" */
  936. struct berval bv;
  937. char *p, *pin = arg;
  938. int rc = LDAP_SUCCESS;
  939. if ( !tls_imp->ti_session_pinning ) return -1;
  940. if ( !pin || !*pin ) {
  941. if ( lo->ldo_tls_pin_hashalg ) {
  942. LDAP_FREE( lo->ldo_tls_pin_hashalg );
  943. } else if ( lo->ldo_tls_pin.bv_val ) {
  944. LDAP_FREE( lo->ldo_tls_pin.bv_val );
  945. }
  946. lo->ldo_tls_pin_hashalg = NULL;
  947. BER_BVZERO( &lo->ldo_tls_pin );
  948. return rc;
  949. }
  950. pin = LDAP_STRDUP( pin );
  951. p = strchr( pin, ':' );
  952. /* pubkey (its hash) goes in bv, alg in p */
  953. if ( p ) {
  954. *p = '\0';
  955. bv.bv_val = p+1;
  956. p = pin;
  957. } else {
  958. bv.bv_val = pin;
  959. }
  960. bv.bv_len = strlen(bv.bv_val);
  961. if ( ldap_int_decode_b64_inplace( &bv ) ) {
  962. LDAP_FREE( pin );
  963. return -1;
  964. }
  965. if ( ld != NULL ) {
  966. LDAPConn *conn = ld->ld_defconn;
  967. if ( conn != NULL ) {
  968. Sockbuf *sb = conn->lconn_sb;
  969. void *sess = ldap_pvt_tls_sb_ctx( sb );
  970. if ( sess != NULL ) {
  971. rc = tls_imp->ti_session_pinning( ld, sess, p, &bv );
  972. }
  973. }
  974. }
  975. if ( rc == LDAP_SUCCESS ) {
  976. if ( lo->ldo_tls_pin_hashalg ) {
  977. LDAP_FREE( lo->ldo_tls_pin_hashalg );
  978. } else if ( lo->ldo_tls_pin.bv_val ) {
  979. LDAP_FREE( lo->ldo_tls_pin.bv_val );
  980. }
  981. lo->ldo_tls_pin_hashalg = p;
  982. lo->ldo_tls_pin = bv;
  983. } else {
  984. LDAP_FREE( pin );
  985. }
  986. return rc;
  987. }
  988. default:
  989. return -1;
  990. }
  991. return 0;
  992. }
  993. int
  994. ldap_int_tls_start ( LDAP *ld, LDAPConn *conn, LDAPURLDesc *srv )
  995. {
  996. Sockbuf *sb;
  997. char *host;
  998. void *ssl;
  999. int ret, async;
  1000. struct timeval start_time_tv, tv, tv0;
  1001. ber_socket_t sd = AC_SOCKET_ERROR;
  1002. if ( !conn )
  1003. return LDAP_PARAM_ERROR;
  1004. sb = conn->lconn_sb;
  1005. if( srv ) {
  1006. host = srv->lud_host;
  1007. } else {
  1008. host = conn->lconn_server->lud_host;
  1009. }
  1010. /* avoid NULL host */
  1011. if( host == NULL ) {
  1012. host = "localhost";
  1013. }
  1014. (void) tls_init( tls_imp, 0 );
  1015. /*
  1016. * Use non-blocking io during SSL Handshake when a timeout is configured
  1017. */
  1018. async = LDAP_BOOL_GET( &ld->ld_options, LDAP_BOOL_CONNECT_ASYNC );
  1019. if ( ld->ld_options.ldo_tm_net.tv_sec >= 0 ) {
  1020. if ( !async ) {
  1021. /* if async, this has already been set */
  1022. ber_sockbuf_ctrl( sb, LBER_SB_OPT_SET_NONBLOCK, (void*)1 );
  1023. }
  1024. ber_sockbuf_ctrl( sb, LBER_SB_OPT_GET_FD, &sd );
  1025. tv = ld->ld_options.ldo_tm_net;
  1026. tv0 = tv;
  1027. #ifdef HAVE_GETTIMEOFDAY
  1028. gettimeofday( &start_time_tv, NULL );
  1029. #else /* ! HAVE_GETTIMEOFDAY */
  1030. time( &start_time_tv.tv_sec );
  1031. start_time_tv.tv_usec = 0;
  1032. #endif /* ! HAVE_GETTIMEOFDAY */
  1033. }
  1034. ld->ld_errno = LDAP_SUCCESS;
  1035. ret = ldap_int_tls_connect( ld, conn, host );
  1036. /* this mainly only happens for non-blocking io
  1037. * but can also happen when the handshake is too
  1038. * big for a single network message.
  1039. */
  1040. while ( ret > 0 ) {
  1041. if ( async ) {
  1042. struct timeval curr_time_tv, delta_tv;
  1043. int wr=0;
  1044. if ( sb->sb_trans_needs_read ) {
  1045. wr=0;
  1046. } else if ( sb->sb_trans_needs_write ) {
  1047. wr=1;
  1048. }
  1049. Debug1( LDAP_DEBUG_TRACE, "ldap_int_tls_start: ldap_int_tls_connect needs %s\n",
  1050. wr ? "write": "read" );
  1051. /* This is mostly copied from result.c:wait4msg(), should
  1052. * probably be moved into a separate function */
  1053. #ifdef HAVE_GETTIMEOFDAY
  1054. gettimeofday( &curr_time_tv, NULL );
  1055. #else /* ! HAVE_GETTIMEOFDAY */
  1056. time( &curr_time_tv.tv_sec );
  1057. curr_time_tv.tv_usec = 0;
  1058. #endif /* ! HAVE_GETTIMEOFDAY */
  1059. /* delta = curr - start */
  1060. delta_tv.tv_sec = curr_time_tv.tv_sec - start_time_tv.tv_sec;
  1061. delta_tv.tv_usec = curr_time_tv.tv_usec - start_time_tv.tv_usec;
  1062. if ( delta_tv.tv_usec < 0 ) {
  1063. delta_tv.tv_sec--;
  1064. delta_tv.tv_usec += 1000000;
  1065. }
  1066. /* tv0 < delta ? */
  1067. if ( ( tv0.tv_sec < delta_tv.tv_sec ) ||
  1068. ( ( tv0.tv_sec == delta_tv.tv_sec ) &&
  1069. ( tv0.tv_usec < delta_tv.tv_usec ) ) )
  1070. {
  1071. ret = -1;
  1072. ld->ld_errno = LDAP_TIMEOUT;
  1073. break;
  1074. }
  1075. /* timeout -= delta_time */
  1076. tv0.tv_sec -= delta_tv.tv_sec;
  1077. tv0.tv_usec -= delta_tv.tv_usec;
  1078. if ( tv0.tv_usec < 0 ) {
  1079. tv0.tv_sec--;
  1080. tv0.tv_usec += 1000000;
  1081. }
  1082. start_time_tv.tv_sec = curr_time_tv.tv_sec;
  1083. start_time_tv.tv_usec = curr_time_tv.tv_usec;
  1084. tv = tv0;
  1085. Debug3( LDAP_DEBUG_TRACE, "ldap_int_tls_start: ld %p %ld s %ld us to go\n",
  1086. (void *)ld, (long) tv.tv_sec, (long) tv.tv_usec );
  1087. ret = ldap_int_poll( ld, sd, &tv, wr);
  1088. if ( ret < 0 ) {
  1089. ld->ld_errno = LDAP_TIMEOUT;
  1090. break;
  1091. }
  1092. }
  1093. ret = ldap_int_tls_connect( ld, conn, host );
  1094. }
  1095. if ( ret < 0 ) {
  1096. if ( ld->ld_errno == LDAP_SUCCESS )
  1097. ld->ld_errno = LDAP_CONNECT_ERROR;
  1098. return (ld->ld_errno);
  1099. }
  1100. return LDAP_SUCCESS;
  1101. }
  1102. void *
  1103. ldap_pvt_tls_sb_ctx( Sockbuf *sb )
  1104. {
  1105. void *p = NULL;
  1106. ber_sockbuf_ctrl( sb, LBER_SB_OPT_GET_SSL, (void *)&p );
  1107. return p;
  1108. }
  1109. int
  1110. ldap_pvt_tls_get_strength( void *s )
  1111. {
  1112. tls_session *session = s;
  1113. return tls_imp->ti_session_strength( session );
  1114. }
  1115. int
  1116. ldap_pvt_tls_get_my_dn( void *s, struct berval *dn, LDAPDN_rewrite_dummy *func, unsigned flags )
  1117. {
  1118. tls_session *session = s;
  1119. struct berval der_dn;
  1120. int rc;
  1121. rc = tls_imp->ti_session_my_dn( session, &der_dn );
  1122. if ( rc == LDAP_SUCCESS )
  1123. rc = ldap_X509dn2bv(&der_dn, dn, (LDAPDN_rewrite_func *)func, flags );
  1124. return rc;
  1125. }
  1126. int
  1127. ldap_pvt_tls_get_unique( void *s, struct berval *buf, int is_server )
  1128. {
  1129. tls_session *session = s;
  1130. return tls_imp->ti_session_unique( session, buf, is_server );
  1131. }
  1132. int
  1133. ldap_pvt_tls_get_endpoint( void *s, struct berval *buf, int is_server )
  1134. {
  1135. tls_session *session = s;
  1136. return tls_imp->ti_session_endpoint( session, buf, is_server );
  1137. }
  1138. const char *
  1139. ldap_pvt_tls_get_version( void *s )
  1140. {
  1141. tls_session *session = s;
  1142. return tls_imp->ti_session_version( session );
  1143. }
  1144. const char *
  1145. ldap_pvt_tls_get_cipher( void *s )
  1146. {
  1147. tls_session *session = s;
  1148. return tls_imp->ti_session_cipher( session );
  1149. }
  1150. int
  1151. ldap_pvt_tls_get_peercert( void *s, struct berval *der )
  1152. {
  1153. tls_session *session = s;
  1154. return tls_imp->ti_session_peercert( session, der );
  1155. }
  1156. #endif /* HAVE_TLS */
  1157. int
  1158. ldap_start_tls( LDAP *ld,
  1159. LDAPControl **serverctrls,
  1160. LDAPControl **clientctrls,
  1161. int *msgidp )
  1162. {
  1163. return ldap_extended_operation( ld, LDAP_EXOP_START_TLS,
  1164. NULL, serverctrls, clientctrls, msgidp );
  1165. }
  1166. int
  1167. ldap_install_tls( LDAP *ld )
  1168. {
  1169. #ifndef HAVE_TLS
  1170. return LDAP_NOT_SUPPORTED;
  1171. #else
  1172. if ( ldap_tls_inplace( ld ) ) {
  1173. return LDAP_LOCAL_ERROR;
  1174. }
  1175. return ldap_int_tls_start( ld, ld->ld_defconn, NULL );
  1176. #endif
  1177. }
  1178. int
  1179. ldap_start_tls_s ( LDAP *ld,
  1180. LDAPControl **serverctrls,
  1181. LDAPControl **clientctrls )
  1182. {
  1183. #ifndef HAVE_TLS
  1184. return LDAP_NOT_SUPPORTED;
  1185. #else
  1186. int rc;
  1187. char *rspoid = NULL;
  1188. struct berval *rspdata = NULL;
  1189. /* XXYYZ: this initiates operation only on default connection! */
  1190. if ( ldap_tls_inplace( ld ) ) {
  1191. return LDAP_LOCAL_ERROR;
  1192. }
  1193. rc = ldap_extended_operation_s( ld, LDAP_EXOP_START_TLS,
  1194. NULL, serverctrls, clientctrls, &rspoid, &rspdata );
  1195. if ( rspoid != NULL ) {
  1196. LDAP_FREE(rspoid);
  1197. }
  1198. if ( rspdata != NULL ) {
  1199. ber_bvfree( rspdata );
  1200. }
  1201. if ( rc == LDAP_SUCCESS ) {
  1202. rc = ldap_int_tls_start( ld, ld->ld_defconn, NULL );
  1203. }
  1204. return rc;
  1205. #endif
  1206. }
  1207. /* These tags probably all belong in lber.h, but they're
  1208. * not normally encountered when processing LDAP, so maybe
  1209. * they belong somewhere else instead.
  1210. */
  1211. #define LBER_TAG_OID ((ber_tag_t) 0x06UL)
  1212. /* Tags for string types used in a DirectoryString.
  1213. *
  1214. * Note that IA5string is not one of the defined choices for
  1215. * DirectoryString in X.520, but it gets used for email AVAs.
  1216. */
  1217. #define LBER_TAG_UTF8 ((ber_tag_t) 0x0cUL)
  1218. #define LBER_TAG_PRINTABLE ((ber_tag_t) 0x13UL)
  1219. #define LBER_TAG_TELETEX ((ber_tag_t) 0x14UL)
  1220. #define LBER_TAG_IA5 ((ber_tag_t) 0x16UL)
  1221. #define LBER_TAG_UNIVERSAL ((ber_tag_t) 0x1cUL)
  1222. #define LBER_TAG_BMP ((ber_tag_t) 0x1eUL)
  1223. static oid_name *
  1224. find_oid( struct berval *oid )
  1225. {
  1226. int i;
  1227. for ( i=0; !BER_BVISNULL( &oids[i].oid ); i++ ) {
  1228. if ( oids[i].oid.bv_len != oid->bv_len ) continue;
  1229. if ( !strcmp( oids[i].oid.bv_val, oid->bv_val ))
  1230. return &oids[i];
  1231. }
  1232. return NULL;
  1233. }
  1234. /* Converts BER Bitstring value to LDAP BitString value (RFC4517)
  1235. *
  1236. * berValue : IN
  1237. * rfc4517Value: OUT
  1238. *
  1239. * berValue and ldapValue should not be NULL
  1240. */
  1241. #define BITS_PER_BYTE 8
  1242. #define SQUOTE_LENGTH 1
  1243. #define B_CHAR_LENGTH 1
  1244. #define STR_OVERHEAD (2*SQUOTE_LENGTH + B_CHAR_LENGTH)
  1245. static int
  1246. der_to_ldap_BitString (struct berval *berValue,
  1247. struct berval *ldapValue)
  1248. {
  1249. ber_len_t bitPadding=0;
  1250. ber_len_t bits, maxBits;
  1251. char *tmpStr;
  1252. unsigned char byte;
  1253. ber_len_t bitLength;
  1254. ber_len_t valLen;
  1255. unsigned char* valPtr;
  1256. ldapValue->bv_len=0;
  1257. ldapValue->bv_val=NULL;
  1258. /* Gets padding and points to binary data */
  1259. valLen=berValue->bv_len;
  1260. valPtr=(unsigned char*)berValue->bv_val;
  1261. if (valLen) {
  1262. bitPadding=(ber_len_t)(valPtr[0]);
  1263. valLen--;
  1264. valPtr++;
  1265. }
  1266. /* If Block is non DER encoding fixes to DER encoding */
  1267. if (bitPadding >= BITS_PER_BYTE) {
  1268. if (valLen*BITS_PER_BYTE > bitPadding ) {
  1269. valLen-=(bitPadding/BITS_PER_BYTE);
  1270. bitPadding%=BITS_PER_BYTE;
  1271. } else {
  1272. valLen=0;
  1273. bitPadding=0;
  1274. }
  1275. }
  1276. /* Just in case bad encoding */
  1277. if (valLen*BITS_PER_BYTE < bitPadding ) {
  1278. bitPadding=0;
  1279. valLen=0;
  1280. }
  1281. /* Gets buffer to hold RFC4517 Bit String format */
  1282. bitLength=valLen*BITS_PER_BYTE-bitPadding;
  1283. tmpStr=LDAP_MALLOC(bitLength + STR_OVERHEAD + 1);
  1284. if (!tmpStr)
  1285. return LDAP_NO_MEMORY;
  1286. ldapValue->bv_val=tmpStr;
  1287. ldapValue->bv_len=bitLength + STR_OVERHEAD;
  1288. /* Formatting in '*binary-digit'B format */
  1289. maxBits=BITS_PER_BYTE;
  1290. *tmpStr++ ='\'';
  1291. while(valLen) {
  1292. byte=*valPtr;
  1293. if (valLen==1)
  1294. maxBits-=bitPadding;
  1295. for (bits=0; bits<maxBits; bits++) {
  1296. if (0x80 & byte)
  1297. *tmpStr='1';
  1298. else
  1299. *tmpStr='0';
  1300. tmpStr++;
  1301. byte<<=1;
  1302. }
  1303. valPtr++;
  1304. valLen--;
  1305. }
  1306. *tmpStr++ ='\'';
  1307. *tmpStr++ ='B';
  1308. *tmpStr=0;
  1309. return LDAP_SUCCESS;
  1310. }
  1311. /* Convert a structured DN from an X.509 certificate into an LDAPV3 DN.
  1312. * x509_name must be raw DER. If func is non-NULL, the
  1313. * constructed DN will use numeric OIDs to identify attributeTypes,
  1314. * and the func() will be invoked to rewrite the DN with the given
  1315. * flags.
  1316. *
  1317. * Otherwise the DN will use shortNames from a hardcoded table.
  1318. */
  1319. int
  1320. ldap_X509dn2bv( void *x509_name, struct berval *bv, LDAPDN_rewrite_func *func,
  1321. unsigned flags )
  1322. {
  1323. LDAPDN newDN;
  1324. LDAPRDN newRDN;
  1325. LDAPAVA *newAVA, *baseAVA;
  1326. BerElementBuffer berbuf;
  1327. BerElement *ber = (BerElement *)&berbuf;
  1328. char oids[8192], *oidptr = oids, *oidbuf = NULL;
  1329. void *ptrs[2048];
  1330. char *dn_end, *rdn_end;
  1331. int i, navas, nrdns, rc = LDAP_SUCCESS;
  1332. size_t dnsize, oidrem = sizeof(oids), oidsize = 0;
  1333. int csize;
  1334. ber_tag_t tag;
  1335. ber_len_t len;
  1336. oid_name *oidname;
  1337. struct berval Oid, Val, oid2, *in = x509_name;
  1338. assert( bv != NULL );
  1339. bv->bv_len = 0;
  1340. bv->bv_val = NULL;
  1341. navas = 0;
  1342. nrdns = 0;
  1343. /* A DN is a SEQUENCE of RDNs. An RDN is a SET of AVAs.
  1344. * An AVA is a SEQUENCE of attr and value.
  1345. * Count the number of AVAs and RDNs
  1346. */
  1347. ber_init2( ber, in, LBER_USE_DER );
  1348. tag = ber_peek_tag( ber, &len );
  1349. if ( tag != LBER_SEQUENCE )
  1350. return LDAP_DECODING_ERROR;
  1351. for ( tag = ber_first_element( ber, &len, &dn_end );
  1352. tag == LBER_SET;
  1353. tag = ber_next_element( ber, &len, dn_end )) {
  1354. nrdns++;
  1355. for ( tag = ber_first_element( ber, &len, &rdn_end );
  1356. tag == LBER_SEQUENCE;
  1357. tag = ber_next_element( ber, &len, rdn_end )) {
  1358. if ( rdn_end > dn_end )
  1359. return LDAP_DECODING_ERROR;
  1360. tag = ber_skip_tag( ber, &len );
  1361. ber_skip_data( ber, len );
  1362. navas++;
  1363. }
  1364. }
  1365. /* Rewind and prepare to extract */
  1366. ber_rewind( ber );
  1367. tag = ber_first_element( ber, &len, &dn_end );
  1368. if ( tag != LBER_SET )
  1369. return LDAP_DECODING_ERROR;
  1370. /* Allocate the DN/RDN/AVA stuff as a single block */
  1371. dnsize = sizeof(LDAPRDN) * (nrdns+1);
  1372. dnsize += sizeof(LDAPAVA *) * (navas+nrdns);
  1373. dnsize += sizeof(LDAPAVA) * navas;
  1374. if (dnsize > sizeof(ptrs)) {
  1375. newDN = (LDAPDN)LDAP_MALLOC( dnsize );
  1376. if ( newDN == NULL )
  1377. return LDAP_NO_MEMORY;
  1378. } else {
  1379. newDN = (LDAPDN)(char *)ptrs;
  1380. }
  1381. newDN[nrdns] = NULL;
  1382. newRDN = (LDAPRDN)(newDN + nrdns+1);
  1383. newAVA = (LDAPAVA *)(newRDN + navas + nrdns);
  1384. baseAVA = newAVA;
  1385. for ( i = nrdns - 1; i >= 0; i-- ) {
  1386. newDN[i] = newRDN;
  1387. for ( tag = ber_first_element( ber, &len, &rdn_end );
  1388. tag == LBER_SEQUENCE;
  1389. tag = ber_next_element( ber, &len, rdn_end )) {
  1390. *newRDN++ = newAVA;
  1391. tag = ber_skip_tag( ber, &len );
  1392. tag = ber_get_stringbv( ber, &Oid, LBER_BV_NOTERM );
  1393. if ( tag != LBER_TAG_OID ) {
  1394. rc = LDAP_DECODING_ERROR;
  1395. goto nomem;
  1396. }
  1397. oid2.bv_val = oidptr;
  1398. oid2.bv_len = oidrem;
  1399. if ( ber_decode_oid( &Oid, &oid2 ) < 0 ) {
  1400. rc = LDAP_DECODING_ERROR;
  1401. goto nomem;
  1402. }
  1403. oidname = find_oid( &oid2 );
  1404. if ( !oidname ) {
  1405. newAVA->la_attr = oid2;
  1406. oidptr += oid2.bv_len + 1;
  1407. oidrem -= oid2.bv_len + 1;
  1408. /* Running out of OID buffer space? */
  1409. if (oidrem < 128) {
  1410. if ( oidsize == 0 ) {
  1411. oidsize = sizeof(oids) * 2;
  1412. oidrem = oidsize;
  1413. oidbuf = LDAP_MALLOC( oidsize );
  1414. if ( oidbuf == NULL ) goto nomem;
  1415. oidptr = oidbuf;
  1416. } else {
  1417. char *old = oidbuf;
  1418. oidbuf = LDAP_REALLOC( oidbuf, oidsize*2 );
  1419. if ( oidbuf == NULL ) goto nomem;
  1420. /* Buffer moved! Fix AVA pointers */
  1421. if ( old != oidbuf ) {
  1422. LDAPAVA *a;
  1423. long dif = oidbuf - old;
  1424. for (a=baseAVA; a<=newAVA; a++){
  1425. if (a->la_attr.bv_val >= old &&
  1426. a->la_attr.bv_val <= (old + oidsize))
  1427. a->la_attr.bv_val += dif;
  1428. }
  1429. }
  1430. oidptr = oidbuf + oidsize - oidrem;
  1431. oidrem += oidsize;
  1432. oidsize *= 2;
  1433. }
  1434. }
  1435. } else {
  1436. if ( func ) {
  1437. newAVA->la_attr = oidname->oid;
  1438. } else {
  1439. newAVA->la_attr = oidname->name;
  1440. }
  1441. }
  1442. newAVA->la_private = NULL;
  1443. newAVA->la_flags = LDAP_AVA_STRING;
  1444. tag = ber_get_stringbv( ber, &Val, LBER_BV_NOTERM );
  1445. switch(tag) {
  1446. case LBER_TAG_UNIVERSAL:
  1447. /* This uses 32-bit ISO 10646-1 */
  1448. csize = 4; goto to_utf8;
  1449. case LBER_TAG_BMP:
  1450. /* This uses 16-bit ISO 10646-1 */
  1451. csize = 2; goto to_utf8;
  1452. case LBER_TAG_TELETEX:
  1453. /* This uses 8-bit, assume ISO 8859-1 */
  1454. csize = 1;
  1455. to_utf8: rc = ldap_ucs_to_utf8s( &Val, csize, &newAVA->la_value );
  1456. newAVA->la_flags |= LDAP_AVA_NONPRINTABLE;
  1457. allocd:
  1458. newAVA->la_flags |= LDAP_AVA_FREE_VALUE;
  1459. if (rc != LDAP_SUCCESS) goto nomem;
  1460. break;
  1461. case LBER_TAG_UTF8:
  1462. newAVA->la_flags |= LDAP_AVA_NONPRINTABLE;
  1463. /* This is already in UTF-8 encoding */
  1464. case LBER_TAG_IA5:
  1465. case LBER_TAG_PRINTABLE:
  1466. /* These are always 7-bit strings */
  1467. newAVA->la_value = Val;
  1468. break;
  1469. case LBER_BITSTRING:
  1470. /* X.690 bitString value converted to RFC4517 Bit String */
  1471. rc = der_to_ldap_BitString( &Val, &newAVA->la_value );
  1472. goto allocd;
  1473. case LBER_DEFAULT:
  1474. /* decode error */
  1475. rc = LDAP_DECODING_ERROR;
  1476. goto nomem;
  1477. default:
  1478. /* Not a string type at all */
  1479. newAVA->la_flags = 0;
  1480. newAVA->la_value = Val;
  1481. break;
  1482. }
  1483. newAVA++;
  1484. }
  1485. *newRDN++ = NULL;
  1486. tag = ber_next_element( ber, &len, dn_end );
  1487. }
  1488. if ( func ) {
  1489. rc = func( newDN, flags, NULL );
  1490. if ( rc != LDAP_SUCCESS )
  1491. goto nomem;
  1492. }
  1493. rc = ldap_dn2bv_x( newDN, bv, LDAP_DN_FORMAT_LDAPV3, NULL );
  1494. nomem:
  1495. for (;baseAVA < newAVA; baseAVA++) {
  1496. if (baseAVA->la_flags & LDAP_AVA_FREE_ATTR)
  1497. LDAP_FREE( baseAVA->la_attr.bv_val );
  1498. if (baseAVA->la_flags & LDAP_AVA_FREE_VALUE)
  1499. LDAP_FREE( baseAVA->la_value.bv_val );
  1500. }
  1501. if ( oidsize != 0 )
  1502. LDAP_FREE( oidbuf );
  1503. if ( newDN != (LDAPDN)(char *) ptrs )
  1504. LDAP_FREE( newDN );
  1505. return rc;
  1506. }