drv_imap.c 43 KB

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  1. /*
  2. * mbsync - mailbox synchronizer
  3. * Copyright (C) 2000-2002 Michael R. Elkins <me@mutt.org>
  4. * Copyright (C) 2002-2004 Oswald Buddenhagen <ossi@users.sf.net>
  5. * Copyright (C) 2004 Theodore Y. Ts'o <tytso@mit.edu>
  6. *
  7. * This program is free software; you can redistribute it and/or modify
  8. * it under the terms of the GNU General Public License as published by
  9. * the Free Software Foundation; either version 2 of the License, or
  10. * (at your option) any later version.
  11. *
  12. * This program is distributed in the hope that it will be useful,
  13. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  14. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  15. * GNU General Public License for more details.
  16. *
  17. * You should have received a copy of the GNU General Public License
  18. * along with this program; if not, write to the Free Software
  19. * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
  20. *
  21. * As a special exception, mbsync may be linked with the OpenSSL library,
  22. * despite that library's more restrictive license.
  23. */
  24. #include "isync.h"
  25. #include <assert.h>
  26. #include <unistd.h>
  27. #include <sys/mman.h>
  28. #include <sys/time.h>
  29. #include <stdlib.h>
  30. #include <stdio.h>
  31. #include <stddef.h>
  32. #include <limits.h>
  33. #include <errno.h>
  34. #include <string.h>
  35. #include <ctype.h>
  36. #include <sys/socket.h>
  37. #include <sys/ioctl.h>
  38. #ifdef HAVE_SYS_FILIO_H
  39. # include <sys/filio.h>
  40. #endif
  41. #include <netinet/in.h>
  42. #include <netinet/tcp.h>
  43. #include <arpa/inet.h>
  44. #include <netdb.h>
  45. #if HAVE_LIBSSL
  46. # include <openssl/ssl.h>
  47. # include <openssl/err.h>
  48. # include <openssl/hmac.h>
  49. #endif
  50. typedef struct imap_server_conf {
  51. struct imap_server_conf *next;
  52. char *name;
  53. char *tunnel;
  54. char *host;
  55. int port;
  56. char *user;
  57. char *pass;
  58. #if HAVE_LIBSSL
  59. char *cert_file;
  60. unsigned use_imaps:1;
  61. unsigned require_ssl:1;
  62. unsigned use_sslv2:1;
  63. unsigned use_sslv3:1;
  64. unsigned use_tlsv1:1;
  65. unsigned require_cram:1;
  66. #endif
  67. } imap_server_conf_t;
  68. typedef struct imap_store_conf {
  69. store_conf_t gen;
  70. imap_server_conf_t *server;
  71. unsigned use_namespace:1;
  72. } imap_store_conf_t;
  73. typedef struct imap_message {
  74. message_t gen;
  75. /* int seq; will be needed when expunges are tracked */
  76. } imap_message_t;
  77. #define NIL (void*)0x1
  78. #define LIST (void*)0x2
  79. typedef struct _list {
  80. struct _list *next, *child;
  81. char *val;
  82. int len;
  83. } list_t;
  84. typedef struct {
  85. int fd;
  86. #if HAVE_LIBSSL
  87. SSL *ssl;
  88. unsigned int use_ssl:1;
  89. #endif
  90. } Socket_t;
  91. typedef struct {
  92. Socket_t sock;
  93. int bytes;
  94. int offset;
  95. char buf[1024];
  96. } buffer_t;
  97. struct imap_cmd;
  98. #define max_in_progress 50 /* make this configurable? */
  99. typedef struct imap {
  100. int uidnext; /* from SELECT responses */
  101. list_t *ns_personal, *ns_other, *ns_shared; /* NAMESPACE info */
  102. string_list_t *boxes; /* LIST results */
  103. message_t **msgapp; /* FETCH results */
  104. unsigned caps, rcaps; /* CAPABILITY results */
  105. /* command queue */
  106. int nexttag, num_in_progress, literal_pending;
  107. struct imap_cmd *in_progress, **in_progress_append;
  108. #if HAVE_LIBSSL
  109. SSL_CTX *SSLContext;
  110. #endif
  111. buffer_t buf; /* this is BIG, so put it last */
  112. } imap_t;
  113. typedef struct imap_store {
  114. store_t gen;
  115. imap_t *imap;
  116. const char *prefix;
  117. unsigned /*currentnc:1,*/ trashnc:1;
  118. } imap_store_t;
  119. struct imap_cmd_cb {
  120. int (*cont)( imap_store_t *ctx, struct imap_cmd *cmd, const char *prompt );
  121. void (*done)( imap_store_t *ctx, struct imap_cmd *cmd, int response);
  122. void *ctx;
  123. char *data;
  124. int dlen;
  125. int uid;
  126. unsigned create:1, trycreate:1;
  127. };
  128. struct imap_cmd {
  129. struct imap_cmd *next;
  130. struct imap_cmd_cb cb;
  131. char *cmd;
  132. int tag;
  133. };
  134. #define CAP(cap) (imap->caps & (1 << (cap)))
  135. enum CAPABILITY {
  136. NOLOGIN = 0,
  137. UIDPLUS,
  138. LITERALPLUS,
  139. NAMESPACE,
  140. #if HAVE_LIBSSL
  141. CRAM,
  142. STARTTLS,
  143. #endif
  144. };
  145. static const char *cap_list[] = {
  146. "LOGINDISABLED",
  147. "UIDPLUS",
  148. "LITERAL+",
  149. "NAMESPACE",
  150. #if HAVE_LIBSSL
  151. "AUTH=CRAM-MD5",
  152. "STARTTLS",
  153. #endif
  154. };
  155. #define RESP_OK 0
  156. #define RESP_NO 1
  157. #define RESP_BAD 2
  158. static int get_cmd_result( imap_store_t *ctx, struct imap_cmd *tcmd );
  159. static const char *Flags[] = {
  160. "Draft",
  161. "Flagged",
  162. "Answered",
  163. "Seen",
  164. "Deleted",
  165. };
  166. #if HAVE_LIBSSL
  167. /* this gets called when a certificate is to be verified */
  168. static int
  169. verify_cert( SSL *ssl )
  170. {
  171. X509 *cert;
  172. int err;
  173. char buf[256];
  174. int ret = -1;
  175. BIO *bio;
  176. cert = SSL_get_peer_certificate( ssl );
  177. if (!cert) {
  178. fprintf( stderr, "Error, no server certificate\n" );
  179. return -1;
  180. }
  181. err = SSL_get_verify_result( ssl );
  182. if (err == X509_V_OK)
  183. return 0;
  184. fprintf( stderr, "Error, can't verify certificate: %s (%d)\n",
  185. X509_verify_cert_error_string(err), err );
  186. X509_NAME_oneline( X509_get_subject_name( cert ), buf, sizeof(buf) );
  187. info( "\nSubject: %s\n", buf );
  188. X509_NAME_oneline( X509_get_issuer_name( cert ), buf, sizeof(buf) );
  189. info( "Issuer: %s\n", buf );
  190. bio = BIO_new( BIO_s_mem() );
  191. ASN1_TIME_print( bio, X509_get_notBefore( cert ) );
  192. memset( buf, 0, sizeof(buf) );
  193. BIO_read( bio, buf, sizeof(buf) - 1 );
  194. info( "Valid from: %s\n", buf );
  195. ASN1_TIME_print( bio, X509_get_notAfter( cert ) );
  196. memset( buf, 0, sizeof(buf) );
  197. BIO_read( bio, buf, sizeof(buf) - 1 );
  198. BIO_free( bio );
  199. info( " to: %s\n", buf );
  200. fputs( "\n*** WARNING *** There is no way to verify this certificate. It is\n"
  201. " possible that a hostile attacker has replaced the\n"
  202. " server certificate. Continue at your own risk!\n"
  203. "\nAccept this certificate anyway? [no]: ", stderr );
  204. if (fgets( buf, sizeof(buf), stdin ) && (buf[0] == 'y' || buf[0] == 'Y')) {
  205. ret = 0;
  206. fprintf( stderr, "\n*** Fine, but don't say I didn't warn you!\n\n" );
  207. }
  208. return ret;
  209. }
  210. static int
  211. init_ssl_ctx( imap_store_t *ctx )
  212. {
  213. imap_t *imap = ctx->imap;
  214. imap_store_conf_t *conf = (imap_store_conf_t *)ctx->gen.conf;
  215. imap_server_conf_t *srvc = conf->server;
  216. SSL_METHOD *method;
  217. int options = 0;
  218. if (srvc->use_tlsv1 && !srvc->use_sslv2 && !srvc->use_sslv3)
  219. method = TLSv1_client_method();
  220. else
  221. method = SSLv23_client_method();
  222. imap->SSLContext = SSL_CTX_new( method );
  223. if (!srvc->cert_file) {
  224. fprintf( stderr, "Error, CertificateFile not defined\n" );
  225. return -1;
  226. } else if (access( srvc->cert_file, R_OK ))
  227. warn( "*** Warning: can't read CertificateFile, so can't verify server certificates\n" );
  228. else if (!SSL_CTX_load_verify_locations( imap->SSLContext, srvc->cert_file, NULL )) {
  229. fprintf( stderr, "Error, SSL_CTX_load_verify_locations: %s\n",
  230. ERR_error_string( ERR_get_error(), 0 ) );
  231. return -1;
  232. }
  233. if (!srvc->use_sslv2)
  234. options |= SSL_OP_NO_SSLv2;
  235. if (!srvc->use_sslv3)
  236. options |= SSL_OP_NO_SSLv3;
  237. if (!srvc->use_tlsv1)
  238. options |= SSL_OP_NO_TLSv1;
  239. SSL_CTX_set_options( imap->SSLContext, options );
  240. /* we check the result of the verification after SSL_connect() */
  241. SSL_CTX_set_verify( imap->SSLContext, SSL_VERIFY_NONE, 0 );
  242. return 0;
  243. }
  244. #endif /* HAVE_LIBSSL */
  245. static void
  246. socket_perror( const char *func, Socket_t *sock, int ret )
  247. {
  248. #if HAVE_LIBSSL
  249. int err;
  250. if (sock->use_ssl) {
  251. switch ((err = SSL_get_error( sock->ssl, ret ))) {
  252. case SSL_ERROR_SYSCALL:
  253. case SSL_ERROR_SSL:
  254. if ((err = ERR_get_error()) == 0) {
  255. if (ret == 0)
  256. fprintf( stderr, "SSL_%s:got EOF\n", func );
  257. else
  258. fprintf( stderr, "SSL_%s:%d:%s\n", func, errno, strerror(errno) );
  259. } else
  260. fprintf( stderr, "SSL_%s:%d:%s\n", func, err, ERR_error_string( err, 0 ) );
  261. return;
  262. default:
  263. fprintf( stderr, "SSL_%s:%d:unhandled SSL error\n", func, err );
  264. break;
  265. }
  266. return;
  267. }
  268. #else
  269. (void)sock;
  270. #endif
  271. if (ret < 0)
  272. perror( func );
  273. else
  274. fprintf( stderr, "%s: unexpected EOF\n", func );
  275. }
  276. static int
  277. socket_read( Socket_t *sock, char *buf, int len )
  278. {
  279. int n =
  280. #if HAVE_LIBSSL
  281. sock->use_ssl ? SSL_read( sock->ssl, buf, len ) :
  282. #endif
  283. read( sock->fd, buf, len );
  284. if (n <= 0) {
  285. socket_perror( "read", sock, n );
  286. close( sock->fd );
  287. sock->fd = -1;
  288. }
  289. return n;
  290. }
  291. static int
  292. socket_write( Socket_t *sock, char *buf, int len )
  293. {
  294. int n =
  295. #if HAVE_LIBSSL
  296. sock->use_ssl ? SSL_write( sock->ssl, buf, len ) :
  297. #endif
  298. write( sock->fd, buf, len );
  299. if (n != len) {
  300. socket_perror( "write", sock, n );
  301. close( sock->fd );
  302. sock->fd = -1;
  303. }
  304. return n;
  305. }
  306. static int
  307. socket_pending( Socket_t *sock )
  308. {
  309. int num = -1;
  310. if (ioctl( sock->fd, FIONREAD, &num ) < 0)
  311. return -1;
  312. if (num > 0)
  313. return num;
  314. #if HAVE_LIBSSL
  315. if (sock->use_ssl)
  316. return SSL_pending( sock->ssl );
  317. #endif
  318. return 0;
  319. }
  320. /* simple line buffering */
  321. static int
  322. buffer_gets( buffer_t * b, char **s )
  323. {
  324. int n;
  325. int start = b->offset;
  326. *s = b->buf + start;
  327. for (;;) {
  328. /* make sure we have enough data to read the \r\n sequence */
  329. if (b->offset + 1 >= b->bytes) {
  330. if (start) {
  331. /* shift down used bytes */
  332. *s = b->buf;
  333. assert( start <= b->bytes );
  334. n = b->bytes - start;
  335. if (n)
  336. memcpy( b->buf, b->buf + start, n );
  337. b->offset -= start;
  338. b->bytes = n;
  339. start = 0;
  340. }
  341. n = socket_read( &b->sock, b->buf + b->bytes,
  342. sizeof(b->buf) - b->bytes );
  343. if (n <= 0)
  344. return -1;
  345. b->bytes += n;
  346. }
  347. if (b->buf[b->offset] == '\r') {
  348. assert( b->offset + 1 < b->bytes );
  349. if (b->buf[b->offset + 1] == '\n') {
  350. b->buf[b->offset] = 0; /* terminate the string */
  351. b->offset += 2; /* next line */
  352. if (Verbose)
  353. puts( *s );
  354. return 0;
  355. }
  356. }
  357. b->offset++;
  358. }
  359. /* not reached */
  360. }
  361. static struct imap_cmd *
  362. v_issue_imap_cmd( imap_store_t *ctx, struct imap_cmd_cb *cb,
  363. const char *fmt, va_list ap )
  364. {
  365. imap_t *imap = ctx->imap;
  366. struct imap_cmd *cmd;
  367. int n, bufl;
  368. char buf[1024];
  369. cmd = nfmalloc( sizeof(struct imap_cmd) );
  370. nfvasprintf( &cmd->cmd, fmt, ap );
  371. cmd->tag = ++imap->nexttag;
  372. if (cb)
  373. cmd->cb = *cb;
  374. else
  375. memset( &cmd->cb, 0, sizeof(cmd->cb) );
  376. while (imap->literal_pending)
  377. get_cmd_result( ctx, 0 );
  378. bufl = nfsnprintf( buf, sizeof(buf), cmd->cb.data ? CAP(LITERALPLUS) ?
  379. "%d %s{%d+}\r\n" : "%d %s{%d}\r\n" : "%d %s\r\n",
  380. cmd->tag, cmd->cmd, cmd->cb.dlen );
  381. if (Verbose) {
  382. if (imap->num_in_progress)
  383. printf( "(%d in progress) ", imap->num_in_progress );
  384. if (memcmp( cmd->cmd, "LOGIN", 5 ))
  385. printf( ">>> %s", buf );
  386. else
  387. printf( ">>> %d LOGIN <user> <pass>\n", cmd->tag );
  388. }
  389. if (socket_write( &imap->buf.sock, buf, bufl ) != bufl) {
  390. free( cmd->cmd );
  391. free( cmd );
  392. if (cb && cb->data)
  393. free( cb->data );
  394. return NULL;
  395. }
  396. if (cmd->cb.data) {
  397. if (CAP(LITERALPLUS)) {
  398. n = socket_write( &imap->buf.sock, cmd->cb.data, cmd->cb.dlen );
  399. free( cmd->cb.data );
  400. if (n != cmd->cb.dlen ||
  401. (n = socket_write( &imap->buf.sock, "\r\n", 2 )) != 2)
  402. {
  403. free( cmd->cmd );
  404. free( cmd );
  405. return NULL;
  406. }
  407. cmd->cb.data = 0;
  408. } else
  409. imap->literal_pending = 1;
  410. } else if (cmd->cb.cont)
  411. imap->literal_pending = 1;
  412. cmd->next = 0;
  413. *imap->in_progress_append = cmd;
  414. imap->in_progress_append = &cmd->next;
  415. imap->num_in_progress++;
  416. return cmd;
  417. }
  418. static struct imap_cmd *
  419. issue_imap_cmd( imap_store_t *ctx, struct imap_cmd_cb *cb, const char *fmt, ... )
  420. {
  421. struct imap_cmd *ret;
  422. va_list ap;
  423. va_start( ap, fmt );
  424. ret = v_issue_imap_cmd( ctx, cb, fmt, ap );
  425. va_end( ap );
  426. return ret;
  427. }
  428. static struct imap_cmd *
  429. issue_imap_cmd_w( imap_store_t *ctx, struct imap_cmd_cb *cb, const char *fmt, ... )
  430. {
  431. imap_t *imap = ctx->imap;
  432. struct imap_cmd *ret;
  433. va_list ap;
  434. va_start( ap, fmt );
  435. ret = v_issue_imap_cmd( ctx, cb, fmt, ap );
  436. va_end( ap );
  437. while (imap->num_in_progress > max_in_progress ||
  438. socket_pending( &imap->buf.sock ))
  439. get_cmd_result( ctx, 0 );
  440. return ret;
  441. }
  442. static int
  443. imap_exec( imap_store_t *ctx, struct imap_cmd_cb *cb, const char *fmt, ... )
  444. {
  445. va_list ap;
  446. struct imap_cmd *cmdp;
  447. va_start( ap, fmt );
  448. cmdp = v_issue_imap_cmd( ctx, cb, fmt, ap );
  449. va_end( ap );
  450. if (!cmdp)
  451. return RESP_BAD;
  452. return get_cmd_result( ctx, cmdp );
  453. }
  454. static int
  455. imap_exec_b( imap_store_t *ctx, struct imap_cmd_cb *cb, const char *fmt, ... )
  456. {
  457. va_list ap;
  458. struct imap_cmd *cmdp;
  459. va_start( ap, fmt );
  460. cmdp = v_issue_imap_cmd( ctx, cb, fmt, ap );
  461. va_end( ap );
  462. if (!cmdp)
  463. return DRV_STORE_BAD;
  464. switch (get_cmd_result( ctx, cmdp )) {
  465. case RESP_BAD: return DRV_STORE_BAD;
  466. case RESP_NO: return DRV_BOX_BAD;
  467. default: return DRV_OK;
  468. }
  469. }
  470. static int
  471. imap_exec_m( imap_store_t *ctx, struct imap_cmd_cb *cb, const char *fmt, ... )
  472. {
  473. va_list ap;
  474. struct imap_cmd *cmdp;
  475. va_start( ap, fmt );
  476. cmdp = v_issue_imap_cmd( ctx, cb, fmt, ap );
  477. va_end( ap );
  478. if (!cmdp)
  479. return DRV_STORE_BAD;
  480. switch (get_cmd_result( ctx, cmdp )) {
  481. case RESP_BAD: return DRV_STORE_BAD;
  482. case RESP_NO: return DRV_MSG_BAD;
  483. default: return DRV_OK;
  484. }
  485. }
  486. /*
  487. static void
  488. drain_imap_replies( imap_t *imap )
  489. {
  490. while (imap->num_in_progress)
  491. get_cmd_result( imap, 0 );
  492. }
  493. */
  494. static int
  495. is_atom( list_t *list )
  496. {
  497. return list && list->val && list->val != NIL && list->val != LIST;
  498. }
  499. static int
  500. is_list( list_t *list )
  501. {
  502. return list && list->val == LIST;
  503. }
  504. static void
  505. free_list( list_t *list )
  506. {
  507. list_t *tmp;
  508. for (; list; list = tmp) {
  509. tmp = list->next;
  510. if (is_list( list ))
  511. free_list( list->child );
  512. else if (is_atom( list ))
  513. free( list->val );
  514. free( list );
  515. }
  516. }
  517. static int
  518. parse_imap_list_l( imap_t *imap, char **sp, list_t **curp, int level )
  519. {
  520. list_t *cur;
  521. char *s = *sp, *p;
  522. int n, bytes;
  523. for (;;) {
  524. while (isspace( (unsigned char)*s ))
  525. s++;
  526. if (level && *s == ')') {
  527. s++;
  528. break;
  529. }
  530. *curp = cur = nfmalloc( sizeof(*cur) );
  531. curp = &cur->next;
  532. cur->val = 0; /* for clean bail */
  533. if (*s == '(') {
  534. /* sublist */
  535. s++;
  536. cur->val = LIST;
  537. if (parse_imap_list_l( imap, &s, &cur->child, level + 1 ))
  538. goto bail;
  539. } else if (imap && *s == '{') {
  540. /* literal */
  541. bytes = cur->len = strtol( s + 1, &s, 10 );
  542. if (*s != '}')
  543. goto bail;
  544. s = cur->val = nfmalloc( cur->len );
  545. /* dump whats left over in the input buffer */
  546. n = imap->buf.bytes - imap->buf.offset;
  547. if (n > bytes)
  548. /* the entire message fit in the buffer */
  549. n = bytes;
  550. memcpy( s, imap->buf.buf + imap->buf.offset, n );
  551. s += n;
  552. bytes -= n;
  553. /* mark that we used part of the buffer */
  554. imap->buf.offset += n;
  555. /* now read the rest of the message */
  556. while (bytes > 0) {
  557. if ((n = socket_read (&imap->buf.sock, s, bytes)) <= 0)
  558. goto bail;
  559. s += n;
  560. bytes -= n;
  561. }
  562. if (buffer_gets( &imap->buf, &s ))
  563. goto bail;
  564. } else if (*s == '"') {
  565. /* quoted string */
  566. s++;
  567. p = s;
  568. for (; *s != '"'; s++)
  569. if (!*s)
  570. goto bail;
  571. cur->len = s - p;
  572. s++;
  573. cur->val = nfmalloc( cur->len + 1 );
  574. memcpy( cur->val, p, cur->len );
  575. cur->val[cur->len] = 0;
  576. } else {
  577. /* atom */
  578. p = s;
  579. for (; *s && !isspace( (unsigned char)*s ); s++)
  580. if (level && *s == ')')
  581. break;
  582. cur->len = s - p;
  583. if (cur->len == 3 && !memcmp ("NIL", p, 3))
  584. cur->val = NIL;
  585. else {
  586. cur->val = nfmalloc( cur->len + 1 );
  587. memcpy( cur->val, p, cur->len );
  588. cur->val[cur->len] = 0;
  589. }
  590. }
  591. if (!level)
  592. break;
  593. if (!*s)
  594. goto bail;
  595. }
  596. *sp = s;
  597. *curp = 0;
  598. return 0;
  599. bail:
  600. *curp = 0;
  601. return -1;
  602. }
  603. static list_t *
  604. parse_imap_list( imap_t *imap, char **sp )
  605. {
  606. list_t *head;
  607. if (!parse_imap_list_l( imap, sp, &head, 0 ))
  608. return head;
  609. free_list( head );
  610. return NULL;
  611. }
  612. static list_t *
  613. parse_list( char **sp )
  614. {
  615. return parse_imap_list( 0, sp );
  616. }
  617. static int
  618. parse_fetch( imap_t *imap, char *cmd ) /* move this down */
  619. {
  620. list_t *tmp, *list, *flags;
  621. char *body = 0;
  622. imap_message_t *cur;
  623. msg_data_t *msgdata;
  624. struct imap_cmd *cmdp;
  625. int uid = 0, mask = 0, status = 0, size = 0;
  626. unsigned i;
  627. list = parse_imap_list( imap, &cmd );
  628. if (!is_list( list )) {
  629. fprintf( stderr, "IMAP error: bogus FETCH response\n" );
  630. free_list( list );
  631. return -1;
  632. }
  633. for (tmp = list->child; tmp; tmp = tmp->next) {
  634. if (is_atom( tmp )) {
  635. if (!strcmp( "UID", tmp->val )) {
  636. tmp = tmp->next;
  637. if (is_atom( tmp ))
  638. uid = atoi( tmp->val );
  639. else
  640. fprintf( stderr, "IMAP error: unable to parse UID\n" );
  641. } else if (!strcmp( "FLAGS", tmp->val )) {
  642. tmp = tmp->next;
  643. if (is_list( tmp )) {
  644. for (flags = tmp->child; flags; flags = flags->next) {
  645. if (is_atom( flags )) {
  646. if (flags->val[0] == '\\') { /* ignore user-defined flags for now */
  647. if (!strcmp( "Recent", flags->val + 1)) {
  648. status |= M_RECENT;
  649. goto flagok;
  650. }
  651. for (i = 0; i < as(Flags); i++)
  652. if (!strcmp( Flags[i], flags->val + 1 )) {
  653. mask |= 1 << i;
  654. goto flagok;
  655. }
  656. fprintf( stderr, "IMAP warning: unknown system flag %s\n", flags->val );
  657. }
  658. flagok: ;
  659. } else
  660. fprintf( stderr, "IMAP error: unable to parse FLAGS list\n" );
  661. }
  662. status |= M_FLAGS;
  663. } else
  664. fprintf( stderr, "IMAP error: unable to parse FLAGS\n" );
  665. } else if (!strcmp( "RFC822.SIZE", tmp->val )) {
  666. tmp = tmp->next;
  667. if (is_atom( tmp ))
  668. size = atoi( tmp->val );
  669. else
  670. fprintf( stderr, "IMAP error: unable to parse SIZE\n" );
  671. } else if (!strcmp( "BODY[]", tmp->val )) {
  672. tmp = tmp->next;
  673. if (is_atom( tmp )) {
  674. body = tmp->val;
  675. tmp->val = 0; /* don't free together with list */
  676. size = tmp->len;
  677. } else
  678. fprintf( stderr, "IMAP error: unable to parse BODY[]\n" );
  679. }
  680. }
  681. }
  682. if (body) {
  683. for (cmdp = imap->in_progress; cmdp; cmdp = cmdp->next)
  684. if (cmdp->cb.uid == uid)
  685. goto gotuid;
  686. fprintf( stderr, "IMAP error: unexpected FETCH response (UID %d)\n", uid );
  687. free_list( list );
  688. return -1;
  689. gotuid:
  690. msgdata = (msg_data_t *)cmdp->cb.ctx;
  691. msgdata->data = body;
  692. msgdata->len = size;
  693. msgdata->crlf = 1;
  694. if (status & M_FLAGS)
  695. msgdata->flags = mask;
  696. } else if (uid) { /* ignore async flag updates for now */
  697. /* XXX this will need sorting for out-of-order (multiple queries) */
  698. cur = nfcalloc( sizeof(*cur) );
  699. *imap->msgapp = &cur->gen;
  700. imap->msgapp = &cur->gen.next;
  701. cur->gen.next = 0;
  702. cur->gen.uid = uid;
  703. cur->gen.flags = mask;
  704. cur->gen.status = status;
  705. cur->gen.size = size;
  706. }
  707. free_list( list );
  708. return 0;
  709. }
  710. static void
  711. parse_capability( imap_t *imap, char *cmd )
  712. {
  713. char *arg;
  714. unsigned i;
  715. imap->caps = 0x80000000;
  716. while ((arg = next_arg( &cmd )))
  717. for (i = 0; i < as(cap_list); i++)
  718. if (!strcmp( cap_list[i], arg ))
  719. imap->caps |= 1 << i;
  720. imap->rcaps = imap->caps;
  721. }
  722. static int
  723. parse_response_code( imap_store_t *ctx, struct imap_cmd_cb *cb, char *s )
  724. {
  725. imap_t *imap = ctx->imap;
  726. char *arg, *p;
  727. if (*s != '[')
  728. return RESP_OK; /* no response code */
  729. s++;
  730. if (!(p = strchr( s, ']' ))) {
  731. fprintf( stderr, "IMAP error: malformed response code\n" );
  732. return RESP_BAD;
  733. }
  734. *p++ = 0;
  735. arg = next_arg( &s );
  736. if (!strcmp( "UIDVALIDITY", arg )) {
  737. if (!(arg = next_arg( &s )) || !(ctx->gen.uidvalidity = atoi( arg ))) {
  738. fprintf( stderr, "IMAP error: malformed UIDVALIDITY status\n" );
  739. return RESP_BAD;
  740. }
  741. } else if (!strcmp( "UIDNEXT", arg )) {
  742. if (!(arg = next_arg( &s )) || !(imap->uidnext = atoi( arg ))) {
  743. fprintf( stderr, "IMAP error: malformed NEXTUID status\n" );
  744. return RESP_BAD;
  745. }
  746. } else if (!strcmp( "CAPABILITY", arg )) {
  747. parse_capability( imap, s );
  748. } else if (!strcmp( "ALERT", arg )) {
  749. /* RFC2060 says that these messages MUST be displayed
  750. * to the user
  751. */
  752. for (; isspace( (unsigned char)*p ); p++);
  753. fprintf( stderr, "*** IMAP ALERT *** %s\n", p );
  754. } else if (cb && cb->ctx && !strcmp( "APPENDUID", arg )) {
  755. if (!(arg = next_arg( &s )) || !(ctx->gen.uidvalidity = atoi( arg )) ||
  756. !(arg = next_arg( &s )) || !(*(int *)cb->ctx = atoi( arg )))
  757. {
  758. fprintf( stderr, "IMAP error: malformed APPENDUID status\n" );
  759. return RESP_BAD;
  760. }
  761. }
  762. return RESP_OK;
  763. }
  764. static void
  765. parse_search( imap_t *imap, char *cmd )
  766. {
  767. char *arg;
  768. struct imap_cmd *cmdp;
  769. int uid;
  770. arg = next_arg( &cmd );
  771. if (!arg || !(uid = atoi( arg ))) {
  772. fprintf( stderr, "IMAP error: malformed SEARCH response\n" );
  773. return;
  774. }
  775. /* Find the first command that expects a UID - this is guaranteed
  776. * to come in-order, as there are no other means to identify which
  777. * SEARCH response belongs to which request.
  778. */
  779. for (cmdp = imap->in_progress; cmdp; cmdp = cmdp->next)
  780. if (cmdp->cb.uid == -1) {
  781. *(int *)cmdp->cb.ctx = uid;
  782. return;
  783. }
  784. fprintf( stderr, "IMAP error: unexpected SEARCH response (UID %u)\n", uid );
  785. }
  786. static void
  787. parse_list_rsp( imap_store_t *ctx, char *cmd )
  788. {
  789. imap_t *imap = ctx->imap;
  790. char *arg;
  791. list_t *list, *lp;
  792. int l;
  793. list = parse_list( &cmd );
  794. if (list->val == LIST)
  795. for (lp = list->child; lp; lp = lp->next)
  796. if (is_atom( lp ) && !strcasecmp( lp->val, "\\NoSelect" )) {
  797. free_list( list );
  798. return;
  799. }
  800. free_list( list );
  801. (void) next_arg( &cmd ); /* skip delimiter */
  802. arg = next_arg( &cmd );
  803. l = strlen( ctx->gen.conf->path );
  804. if (memcmp( arg, ctx->gen.conf->path, l ))
  805. return;
  806. arg += l;
  807. if (!memcmp( arg + strlen( arg ) - 5, ".lock", 5 )) /* workaround broken servers */
  808. return;
  809. add_string_list( &imap->boxes, arg );
  810. }
  811. static int
  812. get_cmd_result( imap_store_t *ctx, struct imap_cmd *tcmd )
  813. {
  814. imap_t *imap = ctx->imap;
  815. struct imap_cmd *cmdp, **pcmdp, *ncmdp;
  816. char *cmd, *arg, *arg1, *p;
  817. int n, resp, resp2, tag;
  818. for (;;) {
  819. if (buffer_gets( &imap->buf, &cmd ))
  820. return RESP_BAD;
  821. arg = next_arg( &cmd );
  822. if (*arg == '*') {
  823. arg = next_arg( &cmd );
  824. if (!arg) {
  825. fprintf( stderr, "IMAP error: unable to parse untagged response\n" );
  826. return RESP_BAD;
  827. }
  828. if (!strcmp( "NAMESPACE", arg )) {
  829. imap->ns_personal = parse_list( &cmd );
  830. imap->ns_other = parse_list( &cmd );
  831. imap->ns_shared = parse_list( &cmd );
  832. } else if (!strcmp( "OK", arg ) || !strcmp( "BAD", arg ) ||
  833. !strcmp( "NO", arg ) || !strcmp( "BYE", arg )) {
  834. if ((resp = parse_response_code( ctx, 0, cmd )) != RESP_OK)
  835. return resp;
  836. } else if (!strcmp( "CAPABILITY", arg ))
  837. parse_capability( imap, cmd );
  838. else if (!strcmp( "LIST", arg ))
  839. parse_list_rsp( ctx, cmd );
  840. else if (!strcmp( "SEARCH", arg ))
  841. parse_search( imap, cmd );
  842. else if ((arg1 = next_arg( &cmd ))) {
  843. if (!strcmp( "EXISTS", arg1 ))
  844. ctx->gen.count = atoi( arg );
  845. else if (!strcmp( "RECENT", arg1 ))
  846. ctx->gen.recent = atoi( arg );
  847. else if(!strcmp ( "FETCH", arg1 )) {
  848. if (parse_fetch( imap, cmd ))
  849. return RESP_BAD;
  850. }
  851. } else {
  852. fprintf( stderr, "IMAP error: unable to parse untagged response\n" );
  853. return RESP_BAD;
  854. }
  855. } else if (!imap->in_progress) {
  856. fprintf( stderr, "IMAP error: unexpected reply: %s %s\n", arg, cmd ? cmd : "" );
  857. return RESP_BAD;
  858. } else if (*arg == '+') {
  859. /* This can happen only with the last command underway, as
  860. it enforces a round-trip. */
  861. cmdp = (struct imap_cmd *)((char *)imap->in_progress_append -
  862. offsetof(struct imap_cmd, next));
  863. if (cmdp->cb.data) {
  864. n = socket_write( &imap->buf.sock, cmdp->cb.data, cmdp->cb.dlen );
  865. free( cmdp->cb.data );
  866. cmdp->cb.data = 0;
  867. if (n != (int)cmdp->cb.dlen)
  868. return RESP_BAD;
  869. } else if (cmdp->cb.cont) {
  870. if (cmdp->cb.cont( ctx, cmdp, cmd ))
  871. return RESP_BAD;
  872. } else {
  873. fprintf( stderr, "IMAP error: unexpected command continuation request\n" );
  874. return RESP_BAD;
  875. }
  876. if (socket_write( &imap->buf.sock, "\r\n", 2 ) != 2)
  877. return RESP_BAD;
  878. if (!cmdp->cb.cont)
  879. imap->literal_pending = 0;
  880. if (!tcmd)
  881. return DRV_OK;
  882. } else {
  883. tag = atoi( arg );
  884. for (pcmdp = &imap->in_progress; (cmdp = *pcmdp); pcmdp = &cmdp->next)
  885. if (cmdp->tag == tag)
  886. goto gottag;
  887. fprintf( stderr, "IMAP error: unexpected tag %s\n", arg );
  888. return RESP_BAD;
  889. gottag:
  890. if (!(*pcmdp = cmdp->next))
  891. imap->in_progress_append = pcmdp;
  892. imap->num_in_progress--;
  893. if (cmdp->cb.cont || cmdp->cb.data)
  894. imap->literal_pending = 0;
  895. arg = next_arg( &cmd );
  896. if (!strcmp( "OK", arg ))
  897. resp = DRV_OK;
  898. else {
  899. if (!strcmp( "NO", arg )) {
  900. if (cmdp->cb.create && cmd && (cmdp->cb.trycreate || !memcmp( cmd, "[TRYCREATE]", 11 ))) { /* SELECT, APPEND or UID COPY */
  901. p = strchr( cmdp->cmd, '"' );
  902. if (!issue_imap_cmd( ctx, 0, "CREATE %.*s", strchr( p + 1, '"' ) - p + 1, p )) {
  903. resp = RESP_BAD;
  904. goto normal;
  905. }
  906. /* not waiting here violates the spec, but a server that does not
  907. grok this nonetheless violates it too. */
  908. cmdp->cb.create = 0;
  909. if (!(ncmdp = issue_imap_cmd( ctx, &cmdp->cb, "%s", cmdp->cmd ))) {
  910. resp = RESP_BAD;
  911. goto normal;
  912. }
  913. free( cmdp->cmd );
  914. free( cmdp );
  915. if (!tcmd)
  916. return 0; /* ignored */
  917. if (cmdp == tcmd)
  918. tcmd = ncmdp;
  919. continue;
  920. }
  921. resp = RESP_NO;
  922. } else /*if (!strcmp( "BAD", arg ))*/
  923. resp = RESP_BAD;
  924. fprintf( stderr, "IMAP command '%s' returned an error: %s %s\n",
  925. memcmp (cmdp->cmd, "LOGIN", 5) ?
  926. cmdp->cmd : "LOGIN <user> <pass>",
  927. arg, cmd ? cmd : "");
  928. }
  929. if ((resp2 = parse_response_code( ctx, &cmdp->cb, cmd )) > resp)
  930. resp = resp2;
  931. normal:
  932. if (cmdp->cb.done)
  933. cmdp->cb.done( ctx, cmdp, resp );
  934. if (cmdp->cb.data)
  935. free( cmdp->cb.data );
  936. free( cmdp->cmd );
  937. free( cmdp );
  938. if (!tcmd || tcmd == cmdp)
  939. return resp;
  940. }
  941. }
  942. /* not reached */
  943. }
  944. static void
  945. imap_close_server( imap_store_t *ictx )
  946. {
  947. imap_t *imap = ictx->imap;
  948. if (imap->buf.sock.fd != -1) {
  949. imap_exec( ictx, 0, "LOGOUT" );
  950. close( imap->buf.sock.fd );
  951. }
  952. #ifdef HAVE_LIBSSL
  953. if (imap->SSLContext)
  954. SSL_CTX_free( imap->SSLContext );
  955. #endif
  956. free_list( imap->ns_personal );
  957. free_list( imap->ns_other );
  958. free_list( imap->ns_shared );
  959. free( imap );
  960. }
  961. static void
  962. imap_close_store( store_t *ctx )
  963. {
  964. imap_close_server( (imap_store_t *)ctx );
  965. free_generic_messages( ctx->msgs );
  966. free( ctx );
  967. }
  968. #ifdef HAVE_LIBSSL
  969. static int
  970. start_tls( imap_store_t *ctx )
  971. {
  972. imap_t *imap = ctx->imap;
  973. int ret;
  974. static int ssl_inited;
  975. if (!ssl_inited) {
  976. SSL_library_init();
  977. SSL_load_error_strings();
  978. ssl_inited = 1;
  979. }
  980. if (init_ssl_ctx( ctx ))
  981. return 1;
  982. imap->buf.sock.ssl = SSL_new( imap->SSLContext );
  983. SSL_set_fd( imap->buf.sock.ssl, imap->buf.sock.fd );
  984. if ((ret = SSL_connect( imap->buf.sock.ssl )) <= 0) {
  985. socket_perror( "connect", &imap->buf.sock, ret );
  986. return 1;
  987. }
  988. /* verify the server certificate */
  989. if (verify_cert( imap->buf.sock.ssl ))
  990. return 1;
  991. imap->buf.sock.use_ssl = 1;
  992. info( "Connection is now encrypted\n" );
  993. return 0;
  994. }
  995. #define ENCODED_SIZE(n) (4*((n+2)/3))
  996. static char
  997. hexchar( unsigned int b )
  998. {
  999. if (b < 10)
  1000. return '0' + b;
  1001. return 'a' + (b - 10);
  1002. }
  1003. /* XXX merge into do_cram_auth? */
  1004. static char *
  1005. cram( const char *challenge, const char *user, const char *pass )
  1006. {
  1007. HMAC_CTX hmac;
  1008. char hash[16];
  1009. char hex[33];
  1010. int i;
  1011. unsigned int hashlen = sizeof(hash);
  1012. char buf[256];
  1013. int len = strlen( challenge );
  1014. char *response = nfcalloc( 1 + len );
  1015. char *final;
  1016. /* response will always be smaller than challenge because we are
  1017. * decoding.
  1018. */
  1019. len = EVP_DecodeBlock( (unsigned char *)response, (unsigned char *)challenge, strlen( challenge ) );
  1020. HMAC_Init( &hmac, (unsigned char *) pass, strlen( pass ), EVP_md5() );
  1021. HMAC_Update( &hmac, (unsigned char *)response, strlen( response ) );
  1022. HMAC_Final( &hmac, (unsigned char *)hash, &hashlen );
  1023. assert( hashlen == sizeof(hash) );
  1024. free( response );
  1025. hex[32] = 0;
  1026. for (i = 0; i < 16; i++) {
  1027. hex[2 * i] = hexchar( (hash[i] >> 4) & 0xf );
  1028. hex[2 * i + 1] = hexchar( hash[i] & 0xf );
  1029. }
  1030. nfsnprintf( buf, sizeof(buf), "%s %s", user, hex );
  1031. len = strlen( buf );
  1032. len = ENCODED_SIZE( len ) + 1;
  1033. final = nfmalloc( len );
  1034. final[len - 1] = 0;
  1035. assert( EVP_EncodeBlock( (unsigned char *)final, (unsigned char *)buf, strlen( buf ) ) == len - 1 );
  1036. return final;
  1037. }
  1038. static int
  1039. do_cram_auth (imap_store_t *ctx, struct imap_cmd *cmdp, const char *prompt)
  1040. {
  1041. imap_t *imap = ctx->imap;
  1042. imap_server_conf_t *srvc = ((imap_store_conf_t *)ctx->gen.conf)->server;
  1043. char *resp;
  1044. int n, l;
  1045. resp = cram( prompt, srvc->user, srvc->pass );
  1046. if (Verbose)
  1047. printf( ">+> %s\n", resp );
  1048. l = strlen( resp );
  1049. n = socket_write( &imap->buf.sock, resp, l );
  1050. free( resp );
  1051. if (n != l)
  1052. return -1;
  1053. cmdp->cb.cont = 0;
  1054. return 0;
  1055. }
  1056. #endif
  1057. static store_t *
  1058. imap_open_store( store_conf_t *conf, store_t *oldctx )
  1059. {
  1060. imap_store_conf_t *cfg = (imap_store_conf_t *)conf;
  1061. imap_server_conf_t *srvc = cfg->server;
  1062. imap_store_t *ctx = (imap_store_t *)oldctx;
  1063. imap_t *imap;
  1064. char *arg, *rsp;
  1065. struct hostent *he;
  1066. struct sockaddr_in addr;
  1067. int s, a[2], preauth;
  1068. #if HAVE_LIBSSL
  1069. int use_ssl;
  1070. #endif
  1071. if (ctx) {
  1072. if (((imap_store_conf_t *)(ctx->gen.conf))->server == cfg->server) {
  1073. ctx->gen.conf = conf;
  1074. imap = ctx->imap;
  1075. goto final;
  1076. }
  1077. imap_close_server( ctx );
  1078. } else
  1079. ctx = nfcalloc( sizeof(*ctx) );
  1080. ctx->gen.conf = conf;
  1081. ctx->imap = imap = nfcalloc( sizeof(*imap) );
  1082. imap->buf.sock.fd = -1;
  1083. imap->in_progress_append = &imap->in_progress;
  1084. /* open connection to IMAP server */
  1085. #if HAVE_LIBSSL
  1086. use_ssl = 0;
  1087. #endif
  1088. if (srvc->tunnel) {
  1089. info( "Starting tunnel '%s'... ", srvc->tunnel );
  1090. if (socketpair( PF_UNIX, SOCK_STREAM, 0, a )) {
  1091. perror( "socketpair" );
  1092. exit( 1 );
  1093. }
  1094. if (fork() == 0) {
  1095. if (dup2( a[0], 0 ) == -1 || dup2( a[0], 1 ) == -1)
  1096. _exit( 127 );
  1097. close( a[0] );
  1098. close( a[1] );
  1099. execl( "/bin/sh", "sh", "-c", srvc->tunnel, (char *)0 );
  1100. _exit( 127 );
  1101. }
  1102. close (a[0]);
  1103. imap->buf.sock.fd = a[1];
  1104. info( "ok\n" );
  1105. } else {
  1106. memset( &addr, 0, sizeof(addr) );
  1107. addr.sin_port = htons( srvc->port );
  1108. addr.sin_family = AF_INET;
  1109. info( "Resolving %s... ", srvc->host );
  1110. he = gethostbyname( srvc->host );
  1111. if (!he) {
  1112. perror( "gethostbyname" );
  1113. goto bail;
  1114. }
  1115. info( "ok\n" );
  1116. addr.sin_addr.s_addr = *((int *) he->h_addr_list[0]);
  1117. s = socket( PF_INET, SOCK_STREAM, 0 );
  1118. info( "Connecting to %s:%hu... ", inet_ntoa( addr.sin_addr ), ntohs( addr.sin_port ) );
  1119. if (connect( s, (struct sockaddr *)&addr, sizeof(addr) )) {
  1120. close( s );
  1121. perror( "connect" );
  1122. goto bail;
  1123. }
  1124. info( "ok\n" );
  1125. imap->buf.sock.fd = s;
  1126. #if HAVE_LIBSSL
  1127. if (srvc->use_imaps) {
  1128. if (start_tls( ctx ))
  1129. goto bail;
  1130. use_ssl = 1;
  1131. }
  1132. #endif
  1133. }
  1134. /* read the greeting string */
  1135. if (buffer_gets( &imap->buf, &rsp )) {
  1136. fprintf( stderr, "IMAP error: no greeting response\n" );
  1137. goto bail;
  1138. }
  1139. arg = next_arg( &rsp );
  1140. if (!arg || *arg != '*' || (arg = next_arg( &rsp )) == NULL) {
  1141. fprintf( stderr, "IMAP error: invalid greeting response\n" );
  1142. goto bail;
  1143. }
  1144. preauth = 0;
  1145. if (!strcmp( "PREAUTH", arg ))
  1146. preauth = 1;
  1147. else if (strcmp( "OK", arg ) != 0) {
  1148. fprintf( stderr, "IMAP error: unknown greeting response\n" );
  1149. goto bail;
  1150. }
  1151. parse_response_code( ctx, 0, rsp );
  1152. if (!imap->caps && imap_exec( ctx, 0, "CAPABILITY" ) != RESP_OK)
  1153. goto bail;
  1154. if (!preauth) {
  1155. #if HAVE_LIBSSL
  1156. if (!srvc->use_imaps && (srvc->use_sslv2 || srvc->use_sslv3 || srvc->use_tlsv1)) {
  1157. /* always try to select SSL support if available */
  1158. if (CAP(STARTTLS)) {
  1159. if (imap_exec( ctx, 0, "STARTTLS" ) != RESP_OK)
  1160. goto bail;
  1161. if (start_tls( ctx ))
  1162. goto bail;
  1163. use_ssl = 1;
  1164. if (imap_exec( ctx, 0, "CAPABILITY" ) != RESP_OK)
  1165. goto bail;
  1166. } else {
  1167. if (srvc->require_ssl) {
  1168. fprintf( stderr, "IMAP error: SSL support not available\n" );
  1169. goto bail;
  1170. } else
  1171. warn( "IMAP warning: SSL support not available\n" );
  1172. }
  1173. }
  1174. #endif
  1175. info ("Logging in...\n");
  1176. if (!srvc->user) {
  1177. fprintf( stderr, "Skipping server %s, no user\n", srvc->host );
  1178. goto bail;
  1179. }
  1180. if (!srvc->pass) {
  1181. char prompt[80];
  1182. sprintf( prompt, "Password (%s@%s): ", srvc->user, srvc->host );
  1183. arg = getpass( prompt );
  1184. if (!arg) {
  1185. perror( "getpass" );
  1186. exit( 1 );
  1187. }
  1188. if (!*arg) {
  1189. fprintf( stderr, "Skipping account %s@%s, no password\n", srvc->user, srvc->host );
  1190. goto bail;
  1191. }
  1192. /*
  1193. * getpass() returns a pointer to a static buffer. make a copy
  1194. * for long term storage.
  1195. */
  1196. srvc->pass = nfstrdup( arg );
  1197. }
  1198. #if HAVE_LIBSSL
  1199. if (CAP(CRAM)) {
  1200. struct imap_cmd_cb cb;
  1201. info( "Authenticating with CRAM-MD5\n" );
  1202. memset( &cb, 0, sizeof(cb) );
  1203. cb.cont = do_cram_auth;
  1204. if (imap_exec( ctx, &cb, "AUTHENTICATE CRAM-MD5" ) != RESP_OK)
  1205. goto bail;
  1206. } else if (srvc->require_cram) {
  1207. fprintf( stderr, "IMAP error: CRAM-MD5 authentication is not supported by server\n" );
  1208. goto bail;
  1209. } else
  1210. #endif
  1211. {
  1212. if (CAP(NOLOGIN)) {
  1213. fprintf( stderr, "Skipping account %s@%s, server forbids LOGIN\n", srvc->user, srvc->host );
  1214. goto bail;
  1215. }
  1216. #if HAVE_LIBSSL
  1217. if (!use_ssl)
  1218. #endif
  1219. warn( "*** IMAP Warning *** Password is being sent in the clear\n" );
  1220. if (imap_exec( ctx, 0, "LOGIN \"%s\" \"%s\"", srvc->user, srvc->pass ) != RESP_OK) {
  1221. fprintf( stderr, "IMAP error: LOGIN failed\n" );
  1222. goto bail;
  1223. }
  1224. }
  1225. } /* !preauth */
  1226. final:
  1227. ctx->prefix = "";
  1228. if (*conf->path)
  1229. ctx->prefix = conf->path;
  1230. else if (cfg->use_namespace && CAP(NAMESPACE)) {
  1231. /* get NAMESPACE info */
  1232. if (imap_exec( ctx, 0, "NAMESPACE" ) != RESP_OK)
  1233. goto bail;
  1234. /* XXX for now assume personal namespace */
  1235. if (is_list( imap->ns_personal ) &&
  1236. is_list( imap->ns_personal->child ) &&
  1237. is_atom( imap->ns_personal->child->child ))
  1238. ctx->prefix = imap->ns_personal->child->child->val;
  1239. }
  1240. ctx->trashnc = 1;
  1241. return (store_t *)ctx;
  1242. bail:
  1243. imap_close_store( &ctx->gen );
  1244. return 0;
  1245. }
  1246. static void
  1247. imap_prepare( store_t *gctx, int opts )
  1248. {
  1249. free_generic_messages( gctx->msgs );
  1250. gctx->msgs = 0;
  1251. gctx->opts = opts;
  1252. }
  1253. static int
  1254. imap_select( store_t *gctx, int minuid, int maxuid, int *excs, int nexcs )
  1255. {
  1256. imap_store_t *ctx = (imap_store_t *)gctx;
  1257. imap_t *imap = ctx->imap;
  1258. const char *prefix;
  1259. int ret, i, j, bl;
  1260. struct imap_cmd_cb cb;
  1261. char buf[1000];
  1262. if (!strcmp( gctx->name, "INBOX" )) {
  1263. // imap->currentnc = 0;
  1264. prefix = "";
  1265. } else {
  1266. // imap->currentnc = 1; /* could use LIST results for that */
  1267. prefix = ctx->prefix;
  1268. }
  1269. memset( &cb, 0, sizeof(cb) );
  1270. cb.create = (gctx->opts & OPEN_CREATE) != 0;
  1271. cb.trycreate = 1;
  1272. if ((ret = imap_exec_b( ctx, &cb, "SELECT \"%s%s\"", prefix, gctx->name )) != DRV_OK)
  1273. goto bail;
  1274. if (gctx->count) {
  1275. imap->msgapp = &gctx->msgs;
  1276. sort_ints( excs, nexcs );
  1277. for (i = 0; i < nexcs; ) {
  1278. for (bl = 0; i < nexcs && bl < 960; i++) {
  1279. if (bl)
  1280. buf[bl++] = ',';
  1281. bl += sprintf( buf + bl, "%d", excs[i] );
  1282. j = i;
  1283. for (; i + 1 < nexcs && excs[i + 1] == excs[i] + 1; i++);
  1284. if (i != j)
  1285. bl += sprintf( buf + bl, ":%d", excs[i] );
  1286. }
  1287. if ((ret = imap_exec_b( ctx, 0, "UID FETCH %s (UID%s%s)", buf,
  1288. (gctx->opts & OPEN_FLAGS) ? " FLAGS" : "",
  1289. (gctx->opts & OPEN_SIZE) ? " RFC822.SIZE" : "" )) != DRV_OK)
  1290. goto bail;
  1291. }
  1292. if (maxuid == INT_MAX)
  1293. maxuid = imap->uidnext ? imap->uidnext - 1 : 1000000000;
  1294. if (maxuid >= minuid &&
  1295. (ret = imap_exec_b( ctx, 0, "UID FETCH %d:%d (UID%s%s)", minuid, maxuid,
  1296. (gctx->opts & OPEN_FLAGS) ? " FLAGS" : "",
  1297. (gctx->opts & OPEN_SIZE) ? " RFC822.SIZE" : "" )) != DRV_OK)
  1298. goto bail;
  1299. }
  1300. ret = DRV_OK;
  1301. bail:
  1302. if (excs)
  1303. free( excs );
  1304. return ret;
  1305. }
  1306. static int
  1307. imap_fetch_msg( store_t *ctx, message_t *msg, msg_data_t *data )
  1308. {
  1309. struct imap_cmd_cb cb;
  1310. memset( &cb, 0, sizeof(cb) );
  1311. cb.uid = msg->uid;
  1312. cb.ctx = data;
  1313. return imap_exec_m( (imap_store_t *)ctx, &cb, "UID FETCH %d (%sBODY.PEEK[])",
  1314. msg->uid, (msg->status & M_FLAGS) ? "" : "FLAGS " );
  1315. }
  1316. static int
  1317. imap_make_flags( int flags, char *buf )
  1318. {
  1319. const char *s;
  1320. unsigned i, d;
  1321. for (i = d = 0; i < as(Flags); i++)
  1322. if (flags & (1 << i)) {
  1323. buf[d++] = ' ';
  1324. buf[d++] = '\\';
  1325. for (s = Flags[i]; *s; s++)
  1326. buf[d++] = *s;
  1327. }
  1328. buf[0] = '(';
  1329. buf[d++] = ')';
  1330. return d;
  1331. }
  1332. static int
  1333. imap_flags_helper( imap_store_t *ctx, int uid, char what, int flags)
  1334. {
  1335. char buf[256];
  1336. buf[imap_make_flags( flags, buf )] = 0;
  1337. return issue_imap_cmd_w( ctx, 0, "UID STORE %d %cFLAGS.SILENT %s", uid, what, buf ) ? DRV_OK : DRV_STORE_BAD;
  1338. }
  1339. static int
  1340. imap_set_flags( store_t *gctx, message_t *msg, int uid, int add, int del )
  1341. {
  1342. imap_store_t *ctx = (imap_store_t *)gctx;
  1343. int ret;
  1344. if (msg) {
  1345. uid = msg->uid;
  1346. add &= ~msg->flags;
  1347. del &= msg->flags;
  1348. msg->flags |= add;
  1349. msg->flags &= ~del;
  1350. }
  1351. if ((!add || (ret = imap_flags_helper( ctx, uid, '+', add )) == DRV_OK) &&
  1352. (!del || (ret = imap_flags_helper( ctx, uid, '-', del )) == DRV_OK))
  1353. return DRV_OK;
  1354. return ret;
  1355. }
  1356. static int
  1357. imap_close( store_t *ctx )
  1358. {
  1359. return imap_exec_b( (imap_store_t *)ctx, 0, "CLOSE" );
  1360. }
  1361. static int
  1362. imap_trash_msg( store_t *gctx, message_t *msg )
  1363. {
  1364. imap_store_t *ctx = (imap_store_t *)gctx;
  1365. struct imap_cmd_cb cb;
  1366. memset( &cb, 0, sizeof(cb) );
  1367. cb.create = 1;
  1368. return imap_exec_m( ctx, &cb, "UID COPY %d \"%s%s\"",
  1369. msg->uid, ctx->prefix, gctx->conf->trash );
  1370. }
  1371. #define TUIDL 8
  1372. static int
  1373. imap_store_msg( store_t *gctx, msg_data_t *data, int *uid )
  1374. {
  1375. imap_store_t *ctx = (imap_store_t *)gctx;
  1376. imap_t *imap = ctx->imap;
  1377. struct imap_cmd_cb cb;
  1378. char *fmap, *buf;
  1379. const char *prefix, *box;
  1380. int ret, i, j, d, len, extra, nocr;
  1381. int start, sbreak = 0, ebreak = 0;
  1382. char flagstr[128], tuid[TUIDL * 2 + 1];
  1383. memset( &cb, 0, sizeof(cb) );
  1384. fmap = data->data;
  1385. len = data->len;
  1386. nocr = !data->crlf;
  1387. extra = 0, i = 0;
  1388. if (!CAP(UIDPLUS) && uid) {
  1389. nloop:
  1390. start = i;
  1391. while (i < len)
  1392. if (fmap[i++] == '\n') {
  1393. extra += nocr;
  1394. if (i - 2 + nocr == start) {
  1395. sbreak = ebreak = i - 2 + nocr;
  1396. goto mktid;
  1397. }
  1398. if (!memcmp( fmap + start, "X-TUID: ", 8 )) {
  1399. extra -= (ebreak = i) - (sbreak = start) + nocr;
  1400. goto mktid;
  1401. }
  1402. goto nloop;
  1403. }
  1404. /* invalid message */
  1405. free( fmap );
  1406. return DRV_MSG_BAD;
  1407. mktid:
  1408. for (j = 0; j < TUIDL; j++)
  1409. sprintf( tuid + j * 2, "%02x", arc4_getbyte() );
  1410. extra += 8 + TUIDL * 2 + 2;
  1411. }
  1412. if (nocr)
  1413. for (; i < len; i++)
  1414. if (fmap[i] == '\n')
  1415. extra++;
  1416. cb.dlen = len + extra;
  1417. buf = cb.data = nfmalloc( cb.dlen );
  1418. i = 0;
  1419. if (!CAP(UIDPLUS) && uid) {
  1420. if (nocr) {
  1421. for (; i < sbreak; i++)
  1422. if (fmap[i] == '\n') {
  1423. *buf++ = '\r';
  1424. *buf++ = '\n';
  1425. } else
  1426. *buf++ = fmap[i];
  1427. } else {
  1428. memcpy( buf, fmap, sbreak );
  1429. buf += sbreak;
  1430. }
  1431. memcpy( buf, "X-TUID: ", 8 );
  1432. buf += 8;
  1433. memcpy( buf, tuid, TUIDL * 2 );
  1434. buf += TUIDL * 2;
  1435. *buf++ = '\r';
  1436. *buf++ = '\n';
  1437. i = ebreak;
  1438. }
  1439. if (nocr) {
  1440. for (; i < len; i++)
  1441. if (fmap[i] == '\n') {
  1442. *buf++ = '\r';
  1443. *buf++ = '\n';
  1444. } else
  1445. *buf++ = fmap[i];
  1446. } else
  1447. memcpy( buf, fmap + i, len - i );
  1448. free( fmap );
  1449. d = 0;
  1450. if (data->flags) {
  1451. d = imap_make_flags( data->flags, flagstr );
  1452. flagstr[d++] = ' ';
  1453. }
  1454. flagstr[d] = 0;
  1455. if (!uid) {
  1456. box = gctx->conf->trash;
  1457. prefix = ctx->prefix;
  1458. cb.create = 1;
  1459. if (ctx->trashnc)
  1460. imap->caps = imap->rcaps & ~(1 << LITERALPLUS);
  1461. } else {
  1462. box = gctx->name;
  1463. prefix = !strcmp( box, "INBOX" ) ? "" : ctx->prefix;
  1464. cb.create = (gctx->opts & OPEN_CREATE) != 0;
  1465. /*if (ctx->currentnc)
  1466. imap->caps = imap->rcaps & ~(1 << LITERALPLUS);*/
  1467. }
  1468. cb.ctx = uid;
  1469. ret = imap_exec_m( ctx, &cb, "APPEND \"%s%s\" %s", prefix, box, flagstr );
  1470. imap->caps = imap->rcaps;
  1471. if (ret != DRV_OK)
  1472. return ret;
  1473. if (!uid)
  1474. ctx->trashnc = 0;
  1475. else {
  1476. /*ctx->currentnc = 0;*/
  1477. gctx->count++;
  1478. }
  1479. if (CAP(UIDPLUS) || !uid)
  1480. return DRV_OK;
  1481. /* Didn't receive an APPENDUID */
  1482. cb.uid = -1; /* we're looking for a UID */
  1483. cb.data = 0; /* reset; ctx still set */
  1484. return imap_exec_m( ctx, &cb, "UID SEARCH HEADER X-TUID %s", tuid );
  1485. }
  1486. static int
  1487. imap_list( store_t *gctx, string_list_t **retb )
  1488. {
  1489. imap_store_t *ctx = (imap_store_t *)gctx;
  1490. imap_t *imap = ctx->imap;
  1491. int ret;
  1492. imap->boxes = 0;
  1493. if ((ret = imap_exec_b( ctx, 0, "LIST \"\" \"%s%%\"", ctx->prefix )) != DRV_OK)
  1494. return ret;
  1495. *retb = imap->boxes;
  1496. return DRV_OK;
  1497. }
  1498. static int
  1499. imap_check( store_t *gctx )
  1500. {
  1501. (void) gctx;
  1502. /* flush queue here */
  1503. return DRV_OK;
  1504. }
  1505. imap_server_conf_t *servers, **serverapp = &servers;
  1506. static int
  1507. imap_parse_store( conffile_t *cfg, store_conf_t **storep, int *err )
  1508. {
  1509. imap_store_conf_t *store;
  1510. imap_server_conf_t *server, *srv, sserver;
  1511. if (!strcasecmp( "IMAPAccount", cfg->cmd )) {
  1512. server = nfcalloc( sizeof(*server) );
  1513. server->name = nfstrdup( cfg->val );
  1514. *serverapp = server;
  1515. serverapp = &server->next;
  1516. store = 0;
  1517. } else if (!strcasecmp( "IMAPStore", cfg->cmd )) {
  1518. store = nfcalloc( sizeof(*store) );
  1519. store->gen.driver = &imap_driver;
  1520. store->gen.name = nfstrdup( cfg->val );
  1521. store->use_namespace = 1;
  1522. memset( &sserver, 0, sizeof(sserver) );
  1523. server = &sserver;
  1524. } else
  1525. return 0;
  1526. #if HAVE_LIBSSL
  1527. /* this will probably annoy people, but its the best default just in
  1528. * case people forget to turn it on
  1529. */
  1530. server->require_ssl = 1;
  1531. server->use_tlsv1 = 1;
  1532. #endif
  1533. while (getcline( cfg ) && cfg->cmd) {
  1534. if (!strcasecmp( "Account", cfg->cmd )) {
  1535. for (srv = servers; srv; srv = srv->next)
  1536. if (srv->name && !strcmp( srv->name, cfg->val ))
  1537. goto gotsrv;
  1538. fprintf( stderr, "%s:%d: unknown IMAP account '%s'\n",
  1539. cfg->file, cfg->line, cfg->val );
  1540. *err = 1;
  1541. continue;
  1542. gotsrv:
  1543. store->server = srv;
  1544. } else if (!strcasecmp( "Host", cfg->cmd )) {
  1545. #if HAVE_LIBSSL
  1546. if (!memcmp( "imaps:", cfg->val, 6 )) {
  1547. cfg->val += 6;
  1548. server->use_imaps = 1;
  1549. server->use_sslv2 = 1;
  1550. server->use_sslv3 = 1;
  1551. if (!server->port)
  1552. server->port = 993;
  1553. } else
  1554. #endif
  1555. {
  1556. if (!memcmp( "imap:", cfg->val, 5 ))
  1557. cfg->val += 5;
  1558. if (!server->port)
  1559. server->port = 143;
  1560. }
  1561. if (!memcmp( "//", cfg->val, 2 ))
  1562. cfg->val += 2;
  1563. server->host = nfstrdup( cfg->val );
  1564. }
  1565. else if (!strcasecmp( "User", cfg->cmd ))
  1566. server->user = nfstrdup( cfg->val );
  1567. else if (!strcasecmp( "Pass", cfg->cmd ))
  1568. server->pass = nfstrdup( cfg->val );
  1569. else if (!strcasecmp( "Port", cfg->cmd ))
  1570. server->port = parse_int( cfg );
  1571. #if HAVE_LIBSSL
  1572. else if (!strcasecmp( "CertificateFile", cfg->cmd ))
  1573. server->cert_file = expand_strdup( cfg->val );
  1574. else if (!strcasecmp( "RequireSSL", cfg->cmd ))
  1575. server->require_ssl = parse_bool( cfg );
  1576. else if (!strcasecmp( "UseSSLv2", cfg->cmd ))
  1577. server->use_sslv2 = parse_bool( cfg );
  1578. else if (!strcasecmp( "UseSSLv3", cfg->cmd ))
  1579. server->use_sslv3 = parse_bool( cfg );
  1580. else if (!strcasecmp( "UseTLSv1", cfg->cmd ))
  1581. server->use_tlsv1 = parse_bool( cfg );
  1582. else if (!strcasecmp( "RequireCRAM", cfg->cmd ))
  1583. server->require_cram = parse_bool( cfg );
  1584. #endif
  1585. else if (!strcasecmp( "Tunnel", cfg->cmd ))
  1586. server->tunnel = nfstrdup( cfg->val );
  1587. else if (store) {
  1588. if (!strcasecmp( "UseNamespace", cfg->cmd ))
  1589. store->use_namespace = parse_bool( cfg );
  1590. else if (!strcasecmp( "Path", cfg->cmd ))
  1591. store->gen.path = nfstrdup( cfg->val );
  1592. else
  1593. parse_generic_store( &store->gen, cfg, err );
  1594. } else {
  1595. fprintf( stderr, "%s:%d: unknown keyword '%s'\n",
  1596. cfg->file, cfg->line, cfg->cmd );
  1597. *err = 1;
  1598. }
  1599. }
  1600. if (!store || !store->server) {
  1601. if (!server->tunnel && !server->host) {
  1602. if (store)
  1603. fprintf( stderr, "IMAP store '%s' has incomplete connection details\n", store->gen.name );
  1604. else
  1605. fprintf( stderr, "IMAP account '%s' has incomplete connection details\n", server->name );
  1606. *err = 1;
  1607. /* leaking server/store */
  1608. *storep = 0;
  1609. return 1;
  1610. }
  1611. }
  1612. *storep = &store->gen;
  1613. if (store && !store->server) {
  1614. store->server = nfmalloc( sizeof(sserver) );
  1615. memcpy( store->server, &sserver, sizeof(sserver) );
  1616. }
  1617. return 1;
  1618. }
  1619. struct driver imap_driver = {
  1620. imap_parse_store,
  1621. imap_open_store,
  1622. imap_close_store,
  1623. imap_list,
  1624. imap_prepare,
  1625. imap_select,
  1626. imap_fetch_msg,
  1627. imap_store_msg,
  1628. imap_set_flags,
  1629. imap_trash_msg,
  1630. imap_check,
  1631. imap_close
  1632. };