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[rsync/rsync.git] / socket.c
CommitLineData
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1/* -*- c-file-style: "linux" -*-
2
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3 rsync -- fast file replication program
4
eecd22ff 5 Copyright (C) 1992-2001 by Andrew Tridgell <tridge@samba.org>
362099a5 6 Copyright (C) 2001, 2002 by Martin Pool <mbp@samba.org>
bc2e93eb
AT
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
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23/**
24 * @file socket.c
25 *
26 * Socket functions used in rsync.
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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.
d5d4b282 32 **/
bc2e93eb 33
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34#include "rsync.h"
35
9a5a8673 36
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37/* Establish a proxy connection on an open socket to a web roxy by
38 * using the CONNECT method. */
4c3b4b25
AT
39static int establish_proxy_connection(int fd, char *host, int port)
40{
41 char buffer[1024];
42 char *cp;
43
8950ac03 44 snprintf(buffer, sizeof(buffer), "CONNECT %s:%d HTTP/1.0\r\n\r\n", host, port);
00d943d5 45 if (write(fd, buffer, strlen(buffer)) != (int) strlen(buffer)) {
660c6fbd 46 rprintf(FERROR, "failed to write to proxy: %s\n",
4c3b4b25
AT
47 strerror(errno));
48 return -1;
49 }
50
51 for (cp = buffer; cp < &buffer[sizeof(buffer) - 1]; cp++) {
52 if (read(fd, cp, 1) != 1) {
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MP
53 rprintf(FERROR, "failed to read from proxy: %s\n",
54 strerror(errno));
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AT
55 return -1;
56 }
57 if (*cp == '\n')
58 break;
59 }
60
61 if (*cp != '\n')
62 cp++;
63 *cp-- = '\0';
64 if (*cp == '\r')
65 *cp = '\0';
66 if (strncmp(buffer, "HTTP/", 5) != 0) {
67 rprintf(FERROR, "bad response from proxy - %s\n",
68 buffer);
69 return -1;
70 }
71 for (cp = &buffer[5]; isdigit(*cp) || (*cp == '.'); cp++)
72 ;
73 while (*cp == ' ')
74 cp++;
75 if (*cp != '2') {
76 rprintf(FERROR, "bad response from proxy - %s\n",
77 buffer);
78 return -1;
79 }
80 /* throw away the rest of the HTTP header */
81 while (1) {
82 for (cp = buffer; cp < &buffer[sizeof(buffer) - 1];
83 cp++) {
84 if (read(fd, cp, 1) != 1) {
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85 rprintf(FERROR, "failed to read from proxy: %s\n",
86 strerror(errno));
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AT
87 return -1;
88 }
89 if (*cp == '\n')
90 break;
91 }
92 if ((cp > buffer) && (*cp == '\n'))
93 cp--;
94 if ((cp == buffer) && ((*cp == '\n') || (*cp == '\r')))
95 break;
96 }
97 return 0;
98}
99
100
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MP
101/**
102 * Try to set the local address for a newly-created socket. Return -1
103 * if this fails.
104 **/
105int try_bind_local(int s,
106 int ai_family, int ai_socktype,
107 const char *bind_address)
108{
109 int error;
110 struct addrinfo bhints, *bres_all, *r;
111
112 memset(&bhints, 0, sizeof(bhints));
113 bhints.ai_family = ai_family;
114 bhints.ai_socktype = ai_socktype;
115 bhints.ai_flags = AI_PASSIVE;
98355b80 116 if ((error = getaddrinfo(bind_address, NULL, &bhints, &bres_all))) {
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117 rprintf(FERROR, RSYNC_NAME ": getaddrinfo %s: %s\n",
118 bind_address, gai_strerror(error));
119 return -1;
120 }
121
122 for (r = bres_all; r; r = r->ai_next) {
9ec75284 123 if (bind(s, r->ai_addr, r->ai_addrlen) == -1)
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124 continue;
125 return s;
126 }
127
128 /* no error message; there might be some problem that allows
129 * creation of the socket but not binding, perhaps if the
130 * machine has no ipv6 address of this name. */
131 return -1;
132}
133
eecd22ff 134
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135/**
136 * Open a socket to a tcp remote host with the specified port .
06963d0f 137 *
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138 * Based on code from Warren. Proxy support by Stephen Rothwell.
139 * getaddrinfo() rewrite contributed by KAME.net.
06963d0f 140 *
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141 * Now that we support IPv6 we need to look up the remote machine's
142 * address first, using @p af_hint to set a preference for the type
143 * of address. Then depending on whether it has v4 or v6 addresses we
144 * try to open a connection.
06963d0f 145 *
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MP
146 * The loop allows for machines with some addresses which may not be
147 * reachable, perhaps because we can't e.g. route ipv6 to that network
148 * but we can get ip4 packets through.
149 *
150 * @param bind_address Local address to use. Normally NULL to bind
151 * the wildcard address.
152 *
153 * @param af_hint Address family, e.g. AF_INET or AF_INET6.
06963d0f 154 **/
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155int open_socket_out(char *host, int port, const char *bind_address,
156 int af_hint)
bc2e93eb 157{
f0fca04e 158 int type = SOCK_STREAM;
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159 int error;
160 int s;
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161 struct addrinfo hints, *res0, *res;
162 char portbuf[10];
4c3b4b25 163 char *h;
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164 int proxied = 0;
165 char buffer[1024];
166 char *cp;
167
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168 /* if we have a RSYNC_PROXY env variable then redirect our
169 * connetcion via a web proxy at the given address. The format
170 * is hostname:port */
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AT
171 h = getenv("RSYNC_PROXY");
172 proxied = (h != NULL) && (*h != '\0');
173
174 if (proxied) {
175 strlcpy(buffer, h, sizeof(buffer));
176 cp = strchr(buffer, ':');
177 if (cp == NULL) {
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178 rprintf(FERROR,
179 "invalid proxy specification: should be HOST:PORT\n");
4c3b4b25
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180 return -1;
181 }
182 *cp++ = '\0';
06963d0f 183 strcpy(portbuf, cp);
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184 h = buffer;
185 } else {
06963d0f 186 snprintf(portbuf, sizeof(portbuf), "%d", port);
4c3b4b25 187 h = host;
4c3b4b25 188 }
f0fca04e 189
06963d0f 190 memset(&hints, 0, sizeof(hints));
d5d4b282 191 hints.ai_family = af_hint;
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192 hints.ai_socktype = type;
193 error = getaddrinfo(h, portbuf, &hints, &res0);
194 if (error) {
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195 rprintf(FERROR, RSYNC_NAME ": getaddrinfo: %s %s: %s\n",
196 h, portbuf, gai_strerror(error));
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197 return -1;
198 }
199
06963d0f 200 s = -1;
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201 /* Try to connect to all addresses for this machine until we get
202 * through. It might e.g. be multi-homed, or have both IPv4 and IPv6
203 * addresses. We need to create a socket for each record, since the
204 * address record tells us what protocol to use to try to connect. */
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MP
205 for (res = res0; res; res = res->ai_next) {
206 s = socket(res->ai_family, res->ai_socktype, res->ai_protocol);
207 if (s < 0)
208 continue;
f0fca04e 209
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MP
210 if (bind_address)
211 if (try_bind_local(s, res->ai_family, type,
212 bind_address) == -1) {
213 close(s);
214 s = -1;
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MP
215 continue;
216 }
e30f0657 217
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MP
218 if (connect(s, res->ai_addr, res->ai_addrlen) < 0) {
219 close(s);
220 s = -1;
221 continue;
222 }
223 if (proxied &&
224 establish_proxy_connection(s, host, port) != 0) {
225 close(s);
226 s = -1;
227 continue;
228 } else
229 break;
4c3b4b25 230 }
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231 freeaddrinfo(res0);
232 if (s < 0) {
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233 rprintf(FERROR, RSYNC_NAME ": failed to connect to %s: %s\n",
234 h, strerror(errno));
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235 return -1;
236 }
06963d0f 237 return s;
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AT
238}
239
240
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241/**
242 * Open an outgoing socket, but allow for it to be intercepted by
243 * $RSYNC_CONNECT_PROG, which will execute a program across a TCP
244 * socketpair rather than really opening a socket.
245 *
246 * We use this primarily in testing to detect TCP flow bugs, but not
247 * cause security problems by really opening remote connections.
248 *
249 * This is based on the Samba LIBSMB_PROG feature.
06963d0f
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250 *
251 * @param bind_address Local address to use. Normally NULL to get the stack default.
eecd22ff
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252 **/
253int open_socket_out_wrapped (char *host,
254 int port,
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255 const char *bind_address,
256 int af_hint)
eecd22ff
MP
257{
258 char *prog;
259
260 if ((prog = getenv ("RSYNC_CONNECT_PROG")) != NULL)
261 return sock_exec (prog);
262 else
d5d4b282
MP
263 return open_socket_out (host, port, bind_address,
264 af_hint);
eecd22ff
MP
265}
266
267
268
06963d0f
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269/**
270 * Open a socket of the specified type, port and address for incoming data
271 *
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272 * Try to be better about handling the results of getaddrinfo(): when
273 * opening an inbound socket, we might get several address results,
274 * e.g. for the machine's ipv4 and ipv6 name.
275 *
276 * If binding a wildcard, then any one of them should do. If an address
277 * was specified but it's insufficiently specific then that's not our
278 * fault.
279 *
280 * However, some of the advertized addresses may not work because e.g. we
281 * don't have IPv6 support in the kernel. In that case go on and try all
282 * addresses until one succeeds.
283 *
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284 * @param bind_address Local address to bind, or NULL to allow it to
285 * default.
286 **/
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287static int open_socket_in(int type, int port, const char *bind_address,
288 int af_hint)
f0fca04e 289{
f0fca04e 290 int one=1;
06963d0f 291 int s;
13e29995 292 struct addrinfo hints, *all_ai, *resp;
06963d0f
MP
293 char portbuf[10];
294 int error;
295
296 memset(&hints, 0, sizeof(hints));
d5d4b282 297 hints.ai_family = af_hint;
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MP
298 hints.ai_socktype = type;
299 hints.ai_flags = AI_PASSIVE;
300 snprintf(portbuf, sizeof(portbuf), "%d", port);
13e29995 301 error = getaddrinfo(bind_address, portbuf, &hints, &all_ai);
06963d0f 302 if (error) {
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MP
303 rprintf(FERROR, RSYNC_NAME ": getaddrinfo: bind address %s: %s\n",
304 bind_address, gai_strerror(error));
06963d0f
MP
305 return -1;
306 }
06963d0f 307
13e29995
MP
308 /* We may not be able to create the socket, if for example the
309 * machine knows about IPv6 in the C library, but not in the
310 * kernel. */
311 for (resp = all_ai; resp; resp = resp->ai_next) {
312 s = socket(resp->ai_family, resp->ai_socktype,
313 resp->ai_protocol);
314
315 if (s == -1)
316 /* See if there's another address that will work... */
317 continue;
318
319 setsockopt(s, SOL_SOCKET, SO_REUSEADDR,
320 (char *)&one, sizeof one);
321
322 /* now we've got a socket - we need to bind it */
323 if (bind(s, all_ai->ai_addr, all_ai->ai_addrlen) < 0) {
324 /* Nope, try another */
325 close(s);
326 continue;
b8771f96
MP
327 }
328
13e29995 329 return s;
f0fca04e
AT
330 }
331
13e29995
MP
332 rprintf(FERROR, RSYNC_NAME ": open inbound socket on port %d failed: "
333 "%s\n",
334 port,
335 strerror(errno));
b8771f96 336
13e29995 337 freeaddrinfo(all_ai);
b8771f96 338 return -1;
f0fca04e
AT
339}
340
341
7c1b4daa
MP
342/*
343 * Determine if a file descriptor is in fact a socket
344 */
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AT
345int is_a_socket(int fd)
346{
ac2a1a44
MP
347 int v;
348 socklen_t l;
3eb38818 349 l = sizeof(int);
7c1b4daa
MP
350
351 /* Parameters to getsockopt, setsockopt etc are very
352 * unstandardized across platforms, so don't be surprised if
ac2a1a44
MP
353 * there are compiler warnings on e.g. SCO OpenSwerver or AIX.
354 * It seems they all eventually get the right idea.
7c1b4daa
MP
355 *
356 * Debian says: ``The fifth argument of getsockopt and
357 * setsockopt is in reality an int [*] (and this is what BSD
358 * 4.* and libc4 and libc5 have). Some POSIX confusion
359 * resulted in the present socklen_t. The draft standard has
360 * not been adopted yet, but glibc2 already follows it and
361 * also has socklen_t [*]. See also accept(2).''
362 *
363 * We now return to your regularly scheduled programming. */
3eb38818 364 return(getsockopt(fd, SOL_SOCKET, SO_TYPE, (char *)&v, &l) == 0);
f0fca04e
AT
365}
366
367
8ef4ffd6 368void start_accept_loop(int port, int (*fn)(int ))
f0fca04e
AT
369{
370 int s;
06963d0f 371 extern char *bind_address;
13e29995 372 extern int default_af_hint;
f0fca04e 373
f0fca04e 374 /* open an incoming socket */
13e29995 375 s = open_socket_in(SOCK_STREAM, port, bind_address, default_af_hint);
f0fca04e 376 if (s == -1)
65417579 377 exit_cleanup(RERR_SOCKETIO);
f0fca04e
AT
378
379 /* ready to listen */
380 if (listen(s, 5) == -1) {
381 close(s);
65417579 382 exit_cleanup(RERR_SOCKETIO);
f0fca04e
AT
383 }
384
385
386 /* now accept incoming connections - forking a new process
387 for each incoming connection */
388 while (1) {
389 fd_set fds;
c4a5c57d 390 pid_t pid;
f0fca04e 391 int fd;
2d6dbe29 392 struct sockaddr_storage addr;
d54765c4 393 socklen_t addrlen = sizeof addr;
f0fca04e 394
15b84e14
DD
395 /* close log file before the potentially very long select so
396 file can be trimmed by another process instead of growing
397 forever */
398 log_close();
45a83540 399
f0fca04e
AT
400 FD_ZERO(&fds);
401 FD_SET(s, &fds);
402
403 if (select(s+1, &fds, NULL, NULL, NULL) != 1) {
404 continue;
405 }
406
407 if(!FD_ISSET(s, &fds)) continue;
408
2d6dbe29 409 fd = accept(s,(struct sockaddr *)&addr,&addrlen);
f0fca04e
AT
410
411 if (fd == -1) continue;
412
31f440e6
AT
413 signal(SIGCHLD, SIG_IGN);
414
415 /* we shouldn't have any children left hanging around
416 but I have had reports that on Digital Unix zombies
417 are produced, so this ensures that they are reaped */
418#ifdef WNOHANG
0503f060 419 while (waitpid(-1, NULL, WNOHANG) > 0);
31f440e6
AT
420#endif
421
c4a5c57d 422 if ((pid = fork()) == 0) {
f0fca04e 423 close(s);
15b84e14
DD
424 /* open log file in child before possibly giving
425 up privileges */
426 log_open();
f0fca04e 427 _exit(fn(fd));
c4a5c57d
MP
428 } else if (pid < 0) {
429 rprintf(FERROR,
430 RSYNC_NAME
431 ": could not create child server process: %s\n",
432 strerror(errno));
433 close(fd);
434 /* This might have happened because we're
435 * overloaded. Sleep briefly before trying to
436 * accept again. */
437 sleep(2);
f0fca04e
AT
438 }
439
440 close(fd);
441 }
f0fca04e
AT
442}
443
444
445enum SOCK_OPT_TYPES {OPT_BOOL,OPT_INT,OPT_ON};
446
447struct
448{
449 char *name;
450 int level;
451 int option;
452 int value;
453 int opttype;
454} socket_options[] = {
455 {"SO_KEEPALIVE", SOL_SOCKET, SO_KEEPALIVE, 0, OPT_BOOL},
456 {"SO_REUSEADDR", SOL_SOCKET, SO_REUSEADDR, 0, OPT_BOOL},
457 {"SO_BROADCAST", SOL_SOCKET, SO_BROADCAST, 0, OPT_BOOL},
458#ifdef TCP_NODELAY
459 {"TCP_NODELAY", IPPROTO_TCP, TCP_NODELAY, 0, OPT_BOOL},
460#endif
461#ifdef IPTOS_LOWDELAY
462 {"IPTOS_LOWDELAY", IPPROTO_IP, IP_TOS, IPTOS_LOWDELAY, OPT_ON},
463#endif
464#ifdef IPTOS_THROUGHPUT
465 {"IPTOS_THROUGHPUT", IPPROTO_IP, IP_TOS, IPTOS_THROUGHPUT, OPT_ON},
466#endif
467#ifdef SO_SNDBUF
468 {"SO_SNDBUF", SOL_SOCKET, SO_SNDBUF, 0, OPT_INT},
469#endif
470#ifdef SO_RCVBUF
471 {"SO_RCVBUF", SOL_SOCKET, SO_RCVBUF, 0, OPT_INT},
472#endif
473#ifdef SO_SNDLOWAT
474 {"SO_SNDLOWAT", SOL_SOCKET, SO_SNDLOWAT, 0, OPT_INT},
475#endif
476#ifdef SO_RCVLOWAT
477 {"SO_RCVLOWAT", SOL_SOCKET, SO_RCVLOWAT, 0, OPT_INT},
478#endif
479#ifdef SO_SNDTIMEO
480 {"SO_SNDTIMEO", SOL_SOCKET, SO_SNDTIMEO, 0, OPT_INT},
481#endif
482#ifdef SO_RCVTIMEO
483 {"SO_RCVTIMEO", SOL_SOCKET, SO_RCVTIMEO, 0, OPT_INT},
484#endif
485 {NULL,0,0,0,0}};
486
487
488
489/****************************************************************************
490set user socket options
491****************************************************************************/
492void set_socket_options(int fd, char *options)
493{
494 char *tok;
a6801c39
AT
495 if (!options || !*options) return;
496
f0fca04e
AT
497 options = strdup(options);
498
499 if (!options) out_of_memory("set_socket_options");
500
501 for (tok=strtok(options, " \t,"); tok; tok=strtok(NULL," \t,")) {
502 int ret=0,i;
503 int value = 1;
504 char *p;
505 int got_value = 0;
506
507 if ((p = strchr(tok,'='))) {
508 *p = 0;
509 value = atoi(p+1);
510 got_value = 1;
511 }
512
513 for (i=0;socket_options[i].name;i++)
514 if (strcmp(socket_options[i].name,tok)==0)
515 break;
516
517 if (!socket_options[i].name) {
518 rprintf(FERROR,"Unknown socket option %s\n",tok);
519 continue;
520 }
521
522 switch (socket_options[i].opttype) {
523 case OPT_BOOL:
524 case OPT_INT:
525 ret = setsockopt(fd,socket_options[i].level,
526 socket_options[i].option,(char *)&value,sizeof(int));
527 break;
528
529 case OPT_ON:
530 if (got_value)
531 rprintf(FERROR,"syntax error - %s does not take a value\n",tok);
532
533 {
534 int on = socket_options[i].value;
535 ret = setsockopt(fd,socket_options[i].level,
536 socket_options[i].option,(char *)&on,sizeof(int));
537 }
538 break;
539 }
540
541 if (ret != 0)
660c6fbd
MP
542 rprintf(FERROR, "failed to set socket option %s: %s\n", tok,
543 strerror(errno));
f0fca04e
AT
544 }
545
546 free(options);
547}
548
549/****************************************************************************
550become a daemon, discarding the controlling terminal
551****************************************************************************/
552void become_daemon(void)
553{
b11ed3b1
AT
554 int i;
555
c46ded46 556 if (fork()) {
f0fca04e 557 _exit(0);
c46ded46 558 }
f0fca04e
AT
559
560 /* detach from the terminal */
561#ifdef HAVE_SETSID
562 setsid();
563#else
564#ifdef TIOCNOTTY
c46ded46
AT
565 i = open("/dev/tty", O_RDWR);
566 if (i >= 0) {
567 ioctl(i, (int) TIOCNOTTY, (char *)0);
568 close(i);
f0fca04e
AT
569 }
570#endif /* TIOCNOTTY */
571#endif
b11ed3b1
AT
572 /* make sure that stdin, stdout an stderr don't stuff things
573 up (library functions, for example) */
574 for (i=0;i<3;i++) {
575 close(i);
576 open("/dev/null", O_RDWR);
577 }
bc2e93eb 578}
ff8b29b8 579
eecd22ff
MP
580
581/*******************************************************************
582this is like socketpair but uses tcp. It is used by the Samba
583regression test code
584The function guarantees that nobody else can attach to the socket,
585or if they do that this function fails and the socket gets closed
586returns 0 on success, -1 on failure
587the resulting file descriptors are symmetrical
588 ******************************************************************/
589static int socketpair_tcp(int fd[2])
590{
591 int listener;
592 struct sockaddr_in sock;
593 struct sockaddr_in sock2;
594 socklen_t socklen = sizeof(sock);
595 int connect_done = 0;
596
597 fd[0] = fd[1] = listener = -1;
598
599 memset(&sock, 0, sizeof(sock));
600
601 if ((listener = socket(PF_INET, SOCK_STREAM, 0)) == -1) goto failed;
602
603 memset(&sock2, 0, sizeof(sock2));
14579493 604#ifdef HAVE_SOCKADDR_LEN
eecd22ff
MP
605 sock2.sin_len = sizeof(sock2);
606#endif
607 sock2.sin_family = PF_INET;
608
609 bind(listener, (struct sockaddr *)&sock2, sizeof(sock2));
610
611 if (listen(listener, 1) != 0) goto failed;
612
613 if (getsockname(listener, (struct sockaddr *)&sock, &socklen) != 0) goto failed;
614
615 if ((fd[1] = socket(PF_INET, SOCK_STREAM, 0)) == -1) goto failed;
616
617 set_nonblocking(fd[1]);
618
619 sock.sin_addr.s_addr = htonl(INADDR_LOOPBACK);
620
621 if (connect(fd[1],(struct sockaddr *)&sock,sizeof(sock)) == -1) {
622 if (errno != EINPROGRESS) goto failed;
623 } else {
624 connect_done = 1;
625 }
626
627 if ((fd[0] = accept(listener, (struct sockaddr *)&sock, &socklen)) == -1) goto failed;
628
629 close(listener);
630 if (connect_done == 0) {
631 if (connect(fd[1],(struct sockaddr *)&sock,sizeof(sock)) != 0
632 && errno != EISCONN) goto failed;
633 }
634
635 set_blocking (fd[1]);
636
637 /* all OK! */
638 return 0;
639
640 failed:
641 if (fd[0] != -1) close(fd[0]);
642 if (fd[1] != -1) close(fd[1]);
643 if (listener != -1) close(listener);
644 return -1;
645}
646
647
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648
649/**
650 * Run a program on a local tcp socket, so that we can talk to it's
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MP
651 * stdin and stdout. This is used to fake a connection to a daemon
652 * for testing -- not for the normal case of running SSH.
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MP
653 *
654 * @return a socket which is attached to a subprocess running
655 * "prog". stdin and stdout are attached. stderr is left attached to
656 * the original stderr
657 **/
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MP
658int sock_exec(const char *prog)
659{
660 int fd[2];
5d264037 661
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MP
662 if (socketpair_tcp(fd) != 0) {
663 rprintf (FERROR, RSYNC_NAME
664 ": socketpair_tcp failed (%s)\n",
665 strerror(errno));
666 return -1;
667 }
668 if (fork() == 0) {
669 close(fd[0]);
670 close(0);
671 close(1);
672 dup(fd[1]);
673 dup(fd[1]);
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MP
674 if (verbose > 3) {
675 /* Can't use rprintf because we've forked. */
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MP
676 fprintf (stderr,
677 RSYNC_NAME ": execute socket program \"%s\"\n",
678 prog);
5d264037 679 }
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MP
680 exit (system (prog));
681 }
682 close (fd[1]);
683 return fd[0];
684}
685
686
687