Changed rprintf() calls that included strerror() to use rsyserr().
[rsync/rsync.git] / socket.c
... / ...
CommitLineData
1/* -*- c-file-style: "linux" -*-
2
3 rsync -- fast file replication program
4
5 Copyright (C) 1992-2001 by Andrew Tridgell <tridge@samba.org>
6 Copyright (C) 2001, 2002 by Martin Pool <mbp@samba.org>
7
8 This program is free software; you can redistribute it and/or modify
9 it under the terms of the GNU General Public License as published by
10 the Free Software Foundation; either version 2 of the License, or
11 (at your option) any later version.
12
13 This program is distributed in the hope that it will be useful,
14 but WITHOUT ANY WARRANTY; without even the implied warranty of
15 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 GNU General Public License for more details.
17
18 You should have received a copy of the GNU General Public License
19 along with this program; if not, write to the Free Software
20 Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
21*/
22
23/**
24 * @file socket.c
25 *
26 * Socket functions used in rsync.
27 *
28 * This file is now converted to use the new-style getaddrinfo()
29 * interface, which supports IPv6 but is also supported on recent
30 * IPv4-only machines. On systems that don't have that interface, we
31 * emulate it using the KAME implementation.
32 **/
33
34#include "rsync.h"
35
36extern char *bind_address;
37extern int default_af_hint;
38
39/**
40 * Establish a proxy connection on an open socket to a web proxy by
41 * using the CONNECT method. If proxy_user and proxy_pass are not NULL,
42 * they are used to authenticate to the proxy using the "Basic"
43 * proxy-authorization protocol
44 **/
45static int establish_proxy_connection(int fd, char *host, int port,
46 char *proxy_user, char *proxy_pass)
47{
48 char *cp, buffer[1024];
49 char *authhdr, authbuf[1024];
50 int len;
51
52 if (proxy_user && proxy_pass) {
53 stringjoin(buffer, sizeof buffer,
54 proxy_user, ":", proxy_pass, NULL);
55 len = strlen(buffer);
56
57 if ((len*8 + 5) / 6 >= (int)sizeof authbuf) {
58 rprintf(FERROR,
59 "authentication information is too long\n");
60 return -1;
61 }
62
63 base64_encode(buffer, len, authbuf);
64 authhdr = "\r\nProxy-Authorization: Basic ";
65 } else {
66 *authbuf = '\0';
67 authhdr = "";
68 }
69
70 snprintf(buffer, sizeof buffer, "CONNECT %s:%d HTTP/1.0%s%s\r\n\r\n",
71 host, port, authhdr, authbuf);
72 len = strlen(buffer);
73 if (write(fd, buffer, len) != len) {
74 rprintf(FERROR, "failed to write to proxy: %s\n",
75 strerror(errno));
76 return -1;
77 }
78
79 for (cp = buffer; cp < &buffer[sizeof buffer - 1]; cp++) {
80 if (read(fd, cp, 1) != 1) {
81 rprintf(FERROR, "failed to read from proxy: %s\n",
82 strerror(errno));
83 return -1;
84 }
85 if (*cp == '\n')
86 break;
87 }
88
89 if (*cp != '\n')
90 cp++;
91 *cp-- = '\0';
92 if (*cp == '\r')
93 *cp = '\0';
94 if (strncmp(buffer, "HTTP/", 5) != 0) {
95 rprintf(FERROR, "bad response from proxy - %s\n",
96 buffer);
97 return -1;
98 }
99 for (cp = &buffer[5]; isdigit(*(uchar*)cp) || *cp == '.'; cp++) {}
100 while (*cp == ' ')
101 cp++;
102 if (*cp != '2') {
103 rprintf(FERROR, "bad response from proxy - %s\n",
104 buffer);
105 return -1;
106 }
107 /* throw away the rest of the HTTP header */
108 while (1) {
109 for (cp = buffer; cp < &buffer[sizeof buffer - 1]; cp++) {
110 if (read(fd, cp, 1) != 1) {
111 rprintf(FERROR, "failed to read from proxy: %s\n",
112 strerror(errno));
113 return -1;
114 }
115 if (*cp == '\n')
116 break;
117 }
118 if (cp > buffer && *cp == '\n')
119 cp--;
120 if (cp == buffer && (*cp == '\n' || *cp == '\r'))
121 break;
122 }
123 return 0;
124}
125
126
127/**
128 * Try to set the local address for a newly-created socket. Return -1
129 * if this fails.
130 **/
131int try_bind_local(int s, int ai_family, int ai_socktype,
132 const char *bind_address)
133{
134 int error;
135 struct addrinfo bhints, *bres_all, *r;
136
137 memset(&bhints, 0, sizeof bhints);
138 bhints.ai_family = ai_family;
139 bhints.ai_socktype = ai_socktype;
140 bhints.ai_flags = AI_PASSIVE;
141 if ((error = getaddrinfo(bind_address, NULL, &bhints, &bres_all))) {
142 rprintf(FERROR, RSYNC_NAME ": getaddrinfo %s: %s\n",
143 bind_address, gai_strerror(error));
144 return -1;
145 }
146
147 for (r = bres_all; r; r = r->ai_next) {
148 if (bind(s, r->ai_addr, r->ai_addrlen) == -1)
149 continue;
150 freeaddrinfo(bres_all);
151 return s;
152 }
153
154 /* no error message; there might be some problem that allows
155 * creation of the socket but not binding, perhaps if the
156 * machine has no ipv6 address of this name. */
157 freeaddrinfo(bres_all);
158 return -1;
159}
160
161
162/**
163 * Open a socket to a tcp remote host with the specified port .
164 *
165 * Based on code from Warren. Proxy support by Stephen Rothwell.
166 * getaddrinfo() rewrite contributed by KAME.net.
167 *
168 * Now that we support IPv6 we need to look up the remote machine's
169 * address first, using @p af_hint to set a preference for the type
170 * of address. Then depending on whether it has v4 or v6 addresses we
171 * try to open a connection.
172 *
173 * The loop allows for machines with some addresses which may not be
174 * reachable, perhaps because we can't e.g. route ipv6 to that network
175 * but we can get ip4 packets through.
176 *
177 * @param bind_address Local address to use. Normally NULL to bind
178 * the wildcard address.
179 *
180 * @param af_hint Address family, e.g. AF_INET or AF_INET6.
181 **/
182int open_socket_out(char *host, int port, const char *bind_address,
183 int af_hint)
184{
185 int type = SOCK_STREAM;
186 int error, s;
187 struct addrinfo hints, *res0, *res;
188 char portbuf[10];
189 char *h, *cp;
190 int proxied = 0;
191 char buffer[1024];
192 char *proxy_user = NULL, *proxy_pass = NULL;
193
194 /* if we have a RSYNC_PROXY env variable then redirect our
195 * connetcion via a web proxy at the given address. */
196 h = getenv("RSYNC_PROXY");
197 proxied = h != NULL && *h != '\0';
198
199 if (proxied) {
200 strlcpy(buffer, h, sizeof buffer);
201
202 /* Is the USER:PASS@ prefix present? */
203 if ((cp = strchr(buffer, '@')) != NULL) {
204 *cp++ = '\0';
205 /* The remainder is the HOST:PORT part. */
206 h = cp;
207
208 if ((cp = strchr(buffer, ':')) == NULL) {
209 rprintf(FERROR,
210 "invalid proxy specification: should be USER:PASS@HOST:PORT\n");
211 return -1;
212 }
213 *cp++ = '\0';
214
215 proxy_user = buffer;
216 proxy_pass = cp;
217 } else {
218 /* The whole buffer is the HOST:PORT part. */
219 h = buffer;
220 }
221
222 if ((cp = strchr(h, ':')) == NULL) {
223 rprintf(FERROR,
224 "invalid proxy specification: should be HOST:PORT\n");
225 return -1;
226 }
227 *cp++ = '\0';
228 strlcpy(portbuf, cp, sizeof portbuf);
229 if (verbose >= 2) {
230 rprintf(FINFO, "connection via http proxy %s port %s\n",
231 h, portbuf);
232 }
233 } else {
234 snprintf(portbuf, sizeof portbuf, "%d", port);
235 h = host;
236 }
237
238 memset(&hints, 0, sizeof hints);
239 hints.ai_family = af_hint;
240 hints.ai_socktype = type;
241 error = getaddrinfo(h, portbuf, &hints, &res0);
242 if (error) {
243 rprintf(FERROR, RSYNC_NAME ": getaddrinfo: %s %s: %s\n",
244 h, portbuf, gai_strerror(error));
245 return -1;
246 }
247
248 s = -1;
249 /* Try to connect to all addresses for this machine until we get
250 * through. It might e.g. be multi-homed, or have both IPv4 and IPv6
251 * addresses. We need to create a socket for each record, since the
252 * address record tells us what protocol to use to try to connect. */
253 for (res = res0; res; res = res->ai_next) {
254 s = socket(res->ai_family, res->ai_socktype, res->ai_protocol);
255 if (s < 0)
256 continue;
257
258 if (bind_address
259 && try_bind_local(s, res->ai_family, type,
260 bind_address) == -1) {
261 close(s);
262 s = -1;
263 continue;
264 }
265 if (connect(s, res->ai_addr, res->ai_addrlen) < 0) {
266 close(s);
267 s = -1;
268 continue;
269 }
270 if (proxied
271 && establish_proxy_connection(s, host, port,
272 proxy_user, proxy_pass) != 0) {
273 close(s);
274 s = -1;
275 continue;
276 }
277 break;
278 }
279 freeaddrinfo(res0);
280 if (s < 0) {
281 rprintf(FERROR, RSYNC_NAME ": failed to connect to %s: %s\n",
282 h, strerror(errno));
283 return -1;
284 }
285 return s;
286}
287
288
289/**
290 * Open an outgoing socket, but allow for it to be intercepted by
291 * $RSYNC_CONNECT_PROG, which will execute a program across a TCP
292 * socketpair rather than really opening a socket.
293 *
294 * We use this primarily in testing to detect TCP flow bugs, but not
295 * cause security problems by really opening remote connections.
296 *
297 * This is based on the Samba LIBSMB_PROG feature.
298 *
299 * @param bind_address Local address to use. Normally NULL to get the stack default.
300 **/
301int open_socket_out_wrapped(char *host, int port, const char *bind_address,
302 int af_hint)
303{
304 char *prog = getenv("RSYNC_CONNECT_PROG");
305
306 if (verbose >= 2) {
307 rprintf(FINFO, "%sopening tcp connection to %s port %d\n",
308 prog ? "Using RSYNC_CONNECT_PROG instead of " : "",
309 host, port);
310 }
311 if (prog)
312 return sock_exec(prog);
313 return open_socket_out(host, port, bind_address, af_hint);
314}
315
316
317
318/**
319 * Open one or more sockets for incoming data using the specified type,
320 * port, and address.
321 *
322 * The getaddrinfo() call may return several address results, e.g. for
323 * the machine's IPv4 and IPv6 name.
324 *
325 * We return an array of file-descriptors to the sockets, with a trailing
326 * -1 value to indicate the end of the list.
327 *
328 * @param bind_address Local address to bind, or NULL to allow it to
329 * default.
330 **/
331static int *open_socket_in(int type, int port, const char *bind_address,
332 int af_hint)
333{
334 int one = 1;
335 int s, *socks, maxs, i;
336 struct addrinfo hints, *all_ai, *resp;
337 char portbuf[10];
338 int error;
339
340 memset(&hints, 0, sizeof hints);
341 hints.ai_family = af_hint;
342 hints.ai_socktype = type;
343 hints.ai_flags = AI_PASSIVE;
344 snprintf(portbuf, sizeof portbuf, "%d", port);
345 error = getaddrinfo(bind_address, portbuf, &hints, &all_ai);
346 if (error) {
347 rprintf(FERROR, RSYNC_NAME ": getaddrinfo: bind address %s: %s\n",
348 bind_address, gai_strerror(error));
349 return NULL;
350 }
351
352 /* Count max number of sockets we might open. */
353 for (maxs = 0, resp = all_ai; resp; resp = resp->ai_next, maxs++) {}
354
355 if (!(socks = new_array(int, maxs + 1)))
356 out_of_memory("open_socket_in");
357
358 /* We may not be able to create the socket, if for example the
359 * machine knows about IPv6 in the C library, but not in the
360 * kernel. */
361 for (resp = all_ai, i = 0; resp; resp = resp->ai_next) {
362 s = socket(resp->ai_family, resp->ai_socktype,
363 resp->ai_protocol);
364
365 if (s == -1) {
366 /* See if there's another address that will work... */
367 continue;
368 }
369
370 setsockopt(s, SOL_SOCKET, SO_REUSEADDR,
371 (char *)&one, sizeof one);
372
373#ifdef IPV6_V6ONLY
374 if (resp->ai_family == AF_INET6) {
375 setsockopt(s, IPPROTO_IPV6, IPV6_V6ONLY,
376 (char *)&one, sizeof one);
377 }
378#endif
379
380 /* Now we've got a socket - we need to bind it. */
381 if (bind(s, resp->ai_addr, resp->ai_addrlen) < 0) {
382 /* Nope, try another */
383 close(s);
384 continue;
385 }
386
387 socks[i++] = s;
388 }
389 socks[i] = -1;
390
391 if (all_ai)
392 freeaddrinfo(all_ai);
393
394 if (!i) {
395 rprintf(FERROR,
396 "unable to bind any inbound sockets on port %d\n",
397 port);
398 free(socks);
399 return NULL;
400 }
401 return socks;
402}
403
404
405/*
406 * Determine if a file descriptor is in fact a socket
407 */
408int is_a_socket(int fd)
409{
410 int v;
411 socklen_t l = sizeof (int);
412
413 /* Parameters to getsockopt, setsockopt etc are very
414 * unstandardized across platforms, so don't be surprised if
415 * there are compiler warnings on e.g. SCO OpenSwerver or AIX.
416 * It seems they all eventually get the right idea.
417 *
418 * Debian says: ``The fifth argument of getsockopt and
419 * setsockopt is in reality an int [*] (and this is what BSD
420 * 4.* and libc4 and libc5 have). Some POSIX confusion
421 * resulted in the present socklen_t. The draft standard has
422 * not been adopted yet, but glibc2 already follows it and
423 * also has socklen_t [*]. See also accept(2).''
424 *
425 * We now return to your regularly scheduled programming. */
426 return getsockopt(fd, SOL_SOCKET, SO_TYPE, (char *)&v, &l) == 0;
427}
428
429
430static RETSIGTYPE sigchld_handler(UNUSED(int val))
431{
432#ifdef WNOHANG
433 while (waitpid(-1, NULL, WNOHANG) > 0) {}
434#endif
435 signal(SIGCHLD, sigchld_handler);
436}
437
438
439void start_accept_loop(int port, int (*fn)(int, int))
440{
441 fd_set deffds;
442 int *sp, maxfd, i;
443
444 /* open an incoming socket */
445 sp = open_socket_in(SOCK_STREAM, port, bind_address, default_af_hint);
446 if (sp == NULL)
447 exit_cleanup(RERR_SOCKETIO);
448
449 /* ready to listen */
450 FD_ZERO(&deffds);
451 for (i = 0, maxfd = -1; sp[i] >= 0; i++) {
452 if (listen(sp[i], 5) < 0) {
453 rprintf(FERROR, "listen() on socket failed: %s\n",
454 strerror(errno));
455#ifdef INET6
456 if (errno == EADDRINUSE && i > 0) {
457 rprintf(FINFO,
458 "Try using --ipv4 or --ipv6 to avoid this listen() error.");
459 }
460#endif
461 exit_cleanup(RERR_SOCKETIO);
462 }
463 FD_SET(sp[i], &deffds);
464 if (maxfd < sp[i])
465 maxfd = sp[i];
466 }
467
468
469 /* now accept incoming connections - forking a new process
470 * for each incoming connection */
471 while (1) {
472 fd_set fds;
473 pid_t pid;
474 int fd;
475 struct sockaddr_storage addr;
476 socklen_t addrlen = sizeof addr;
477
478 /* close log file before the potentially very long select so
479 * file can be trimmed by another process instead of growing
480 * forever */
481 log_close();
482
483#ifdef FD_COPY
484 FD_COPY(&deffds, &fds);
485#else
486 fds = deffds;
487#endif
488
489 if (select(maxfd + 1, &fds, NULL, NULL, NULL) != 1)
490 continue;
491
492 for (i = 0, fd = -1; sp[i] >= 0; i++) {
493 if (FD_ISSET(sp[i], &fds)) {
494 fd = accept(sp[i], (struct sockaddr *)&addr,
495 &addrlen);
496 break;
497 }
498 }
499
500 if (fd < 0)
501 continue;
502
503 signal(SIGCHLD, sigchld_handler);
504
505 if ((pid = fork()) == 0) {
506 int ret;
507 for (i = 0; sp[i] >= 0; i++)
508 close(sp[i]);
509 /* open log file in child before possibly giving
510 * up privileges */
511 log_open();
512 ret = fn(fd, fd);
513 close_all();
514 _exit(ret);
515 } else if (pid < 0) {
516 rprintf(FERROR,
517 RSYNC_NAME
518 ": could not create child server process: %s\n",
519 strerror(errno));
520 close(fd);
521 /* This might have happened because we're
522 * overloaded. Sleep briefly before trying to
523 * accept again. */
524 sleep(2);
525 } else {
526 /* Parent doesn't need this fd anymore. */
527 close(fd);
528 }
529 }
530 free(sp);
531}
532
533
534enum SOCK_OPT_TYPES {OPT_BOOL,OPT_INT,OPT_ON};
535
536struct
537{
538 char *name;
539 int level;
540 int option;
541 int value;
542 int opttype;
543} socket_options[] = {
544 {"SO_KEEPALIVE", SOL_SOCKET, SO_KEEPALIVE, 0, OPT_BOOL},
545 {"SO_REUSEADDR", SOL_SOCKET, SO_REUSEADDR, 0, OPT_BOOL},
546 {"SO_BROADCAST", SOL_SOCKET, SO_BROADCAST, 0, OPT_BOOL},
547#ifdef TCP_NODELAY
548 {"TCP_NODELAY", IPPROTO_TCP, TCP_NODELAY, 0, OPT_BOOL},
549#endif
550#ifdef IPTOS_LOWDELAY
551 {"IPTOS_LOWDELAY", IPPROTO_IP, IP_TOS, IPTOS_LOWDELAY, OPT_ON},
552#endif
553#ifdef IPTOS_THROUGHPUT
554 {"IPTOS_THROUGHPUT", IPPROTO_IP, IP_TOS, IPTOS_THROUGHPUT, OPT_ON},
555#endif
556#ifdef SO_SNDBUF
557 {"SO_SNDBUF", SOL_SOCKET, SO_SNDBUF, 0, OPT_INT},
558#endif
559#ifdef SO_RCVBUF
560 {"SO_RCVBUF", SOL_SOCKET, SO_RCVBUF, 0, OPT_INT},
561#endif
562#ifdef SO_SNDLOWAT
563 {"SO_SNDLOWAT", SOL_SOCKET, SO_SNDLOWAT, 0, OPT_INT},
564#endif
565#ifdef SO_RCVLOWAT
566 {"SO_RCVLOWAT", SOL_SOCKET, SO_RCVLOWAT, 0, OPT_INT},
567#endif
568#ifdef SO_SNDTIMEO
569 {"SO_SNDTIMEO", SOL_SOCKET, SO_SNDTIMEO, 0, OPT_INT},
570#endif
571#ifdef SO_RCVTIMEO
572 {"SO_RCVTIMEO", SOL_SOCKET, SO_RCVTIMEO, 0, OPT_INT},
573#endif
574 {NULL,0,0,0,0}};
575
576
577
578/**
579 * Set user socket options
580 **/
581void set_socket_options(int fd, char *options)
582{
583 char *tok;
584
585 if (!options || !*options)
586 return;
587
588 options = strdup(options);
589
590 if (!options)
591 out_of_memory("set_socket_options");
592
593 for (tok = strtok(options, " \t,"); tok; tok = strtok(NULL," \t,")) {
594 int ret=0,i;
595 int value = 1;
596 char *p;
597 int got_value = 0;
598
599 if ((p = strchr(tok,'='))) {
600 *p = 0;
601 value = atoi(p+1);
602 got_value = 1;
603 }
604
605 for (i = 0; socket_options[i].name; i++) {
606 if (strcmp(socket_options[i].name,tok)==0)
607 break;
608 }
609
610 if (!socket_options[i].name) {
611 rprintf(FERROR,"Unknown socket option %s\n",tok);
612 continue;
613 }
614
615 switch (socket_options[i].opttype) {
616 case OPT_BOOL:
617 case OPT_INT:
618 ret = setsockopt(fd,socket_options[i].level,
619 socket_options[i].option,
620 (char *)&value, sizeof (int));
621 break;
622
623 case OPT_ON:
624 if (got_value)
625 rprintf(FERROR,"syntax error - %s does not take a value\n",tok);
626
627 {
628 int on = socket_options[i].value;
629 ret = setsockopt(fd,socket_options[i].level,
630 socket_options[i].option,
631 (char *)&on, sizeof (int));
632 }
633 break;
634 }
635
636 if (ret != 0)
637 rprintf(FERROR, "failed to set socket option %s: %s\n", tok,
638 strerror(errno));
639 }
640
641 free(options);
642}
643
644/**
645 * Become a daemon, discarding the controlling terminal
646 **/
647void become_daemon(void)
648{
649 int i;
650
651 if (fork()) {
652 _exit(0);
653 }
654
655 /* detach from the terminal */
656#ifdef HAVE_SETSID
657 setsid();
658#else
659#ifdef TIOCNOTTY
660 i = open("/dev/tty", O_RDWR);
661 if (i >= 0) {
662 ioctl(i, (int)TIOCNOTTY, (char *)0);
663 close(i);
664 }
665#endif /* TIOCNOTTY */
666#endif
667 /* make sure that stdin, stdout an stderr don't stuff things
668 * up (library functions, for example) */
669 for (i = 0; i < 3; i++) {
670 close(i);
671 open("/dev/null", O_RDWR);
672 }
673}
674
675
676/**
677 * This is like socketpair but uses tcp. It is used by the Samba
678 * regression test code.
679 *
680 * The function guarantees that nobody else can attach to the socket,
681 * or if they do that this function fails and the socket gets closed
682 * returns 0 on success, -1 on failure the resulting file descriptors
683 * are symmetrical.
684 **/
685static int socketpair_tcp(int fd[2])
686{
687 int listener;
688 struct sockaddr_in sock;
689 struct sockaddr_in sock2;
690 socklen_t socklen = sizeof sock;
691 int connect_done = 0;
692
693 fd[0] = fd[1] = listener = -1;
694
695 memset(&sock, 0, sizeof sock);
696
697 if ((listener = socket(PF_INET, SOCK_STREAM, 0)) == -1)
698 goto failed;
699
700 memset(&sock2, 0, sizeof sock2);
701#if HAVE_SOCKADDR_IN_LEN
702 sock2.sin_len = sizeof sock2;
703#endif
704 sock2.sin_family = PF_INET;
705
706 bind(listener, (struct sockaddr *)&sock2, sizeof sock2);
707
708 if (listen(listener, 1) != 0)
709 goto failed;
710
711 if (getsockname(listener, (struct sockaddr *)&sock, &socklen) != 0)
712 goto failed;
713
714 if ((fd[1] = socket(PF_INET, SOCK_STREAM, 0)) == -1)
715 goto failed;
716
717 set_nonblocking(fd[1]);
718
719 sock.sin_addr.s_addr = htonl(INADDR_LOOPBACK);
720
721 if (connect(fd[1], (struct sockaddr *)&sock, sizeof sock) == -1) {
722 if (errno != EINPROGRESS)
723 goto failed;
724 } else
725 connect_done = 1;
726
727 if ((fd[0] = accept(listener, (struct sockaddr *)&sock, &socklen)) == -1)
728 goto failed;
729
730 close(listener);
731 if (connect_done == 0) {
732 if (connect(fd[1], (struct sockaddr *)&sock, sizeof sock) != 0
733 && errno != EISCONN)
734 goto failed;
735 }
736
737 set_blocking(fd[1]);
738
739 /* all OK! */
740 return 0;
741
742 failed:
743 if (fd[0] != -1)
744 close(fd[0]);
745 if (fd[1] != -1)
746 close(fd[1]);
747 if (listener != -1)
748 close(listener);
749 return -1;
750}
751
752
753
754/**
755 * Run a program on a local tcp socket, so that we can talk to it's
756 * stdin and stdout. This is used to fake a connection to a daemon
757 * for testing -- not for the normal case of running SSH.
758 *
759 * @return a socket which is attached to a subprocess running
760 * "prog". stdin and stdout are attached. stderr is left attached to
761 * the original stderr
762 **/
763int sock_exec(const char *prog)
764{
765 int fd[2];
766
767 if (socketpair_tcp(fd) != 0) {
768 rprintf(FERROR, RSYNC_NAME ": socketpair_tcp failed (%s)\n",
769 strerror(errno));
770 return -1;
771 }
772 if (verbose >= 2)
773 rprintf(FINFO, "Running socket program: \"%s\"\n", prog);
774 if (fork() == 0) {
775 close(fd[0]);
776 close(0);
777 close(1);
778 dup(fd[1]);
779 dup(fd[1]);
780 exit(system(prog));
781 }
782 close(fd[1]);
783 return fd[0];
784}