Mention the latest bug-fix.
[rsync/rsync.git] / main.c
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1/*
2 * The startup routines, including main(), for rsync.
3 *
4 * Copyright (C) 1996-2001 Andrew Tridgell <tridge@samba.org>
5 * Copyright (C) 1996 Paul Mackerras
6 * Copyright (C) 2001, 2002 Martin Pool <mbp@samba.org>
7 * Copyright (C) 2003, 2004, 2005, 2006 Wayne Davison
8 *
9 * This program is free software; you can redistribute it and/or modify
10 * it under the terms of the GNU General Public License as published by
11 * the Free Software Foundation; either version 2 of the License, or
12 * (at your option) any later version.
13 *
14 * This program is distributed in the hope that it will be useful,
15 * but WITHOUT ANY WARRANTY; without even the implied warranty of
16 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
17 * GNU General Public License for more details.
18 *
19 * You should have received a copy of the GNU General Public License along
20 * with this program; if not, write to the Free Software Foundation, Inc.,
21 * 51 Franklin Street - Fifth Floor, Boston, MA 02110-1301, USA.
22 */
23
24#include "rsync.h"
25#if defined CONFIG_LOCALE && defined HAVE_LOCALE_H
26#include <locale.h>
27#endif
28
29extern int verbose;
30extern int dry_run;
31extern int list_only;
32extern int am_root;
33extern int am_server;
34extern int am_sender;
35extern int am_generator;
36extern int am_daemon;
37extern int blocking_io;
38extern int remove_sent_files;
39extern int daemon_over_rsh;
40extern int need_messages_from_generator;
41extern int kluge_around_eof;
42extern int do_stats;
43extern int log_got_error;
44extern int module_id;
45extern int copy_links;
46extern int copy_dirlinks;
47extern int keep_dirlinks;
48extern int preserve_hard_links;
49extern int protocol_version;
50extern int recurse;
51extern int relative_paths;
52extern int sanitize_paths;
53extern int curr_dir_depth;
54extern int module_id;
55extern int rsync_port;
56extern int whole_file;
57extern int read_batch;
58extern int write_batch;
59extern int batch_fd;
60extern int batch_gen_fd;
61extern int filesfrom_fd;
62extern pid_t cleanup_child_pid;
63extern struct stats stats;
64extern char *filesfrom_host;
65extern char *partial_dir;
66extern char *basis_dir[];
67extern char *rsync_path;
68extern char *shell_cmd;
69extern char *batch_name;
70extern struct filter_list_struct server_filter_list;
71
72int local_server = 0;
73mode_t orig_umask = 0;
74struct file_list *the_file_list;
75
76/* There's probably never more than at most 2 outstanding child processes,
77 * but set it higher, just in case. */
78#define MAXCHILDPROCS 7
79
80#ifdef HAVE_SIGACTION
81# ifdef HAVE_SIGPROCMASK
82# define SIGACTMASK(n,h) SIGACTION(n,h), sigaddset(&sigmask,(n))
83# else
84# define SIGACTMASK(n,h) SIGACTION(n,h)
85# endif
86static struct sigaction sigact;
87#endif
88
89struct pid_status {
90 pid_t pid;
91 int status;
92} pid_stat_table[MAXCHILDPROCS];
93
94static time_t starttime, endtime;
95static int64 total_read, total_written;
96
97static void show_malloc_stats(void);
98
99/* Works like waitpid(), but if we already harvested the child pid in our
100 * remember_children(), we succeed instead of returning an error. */
101pid_t wait_process(pid_t pid, int *status_ptr, int flags)
102{
103 pid_t waited_pid = waitpid(pid, status_ptr, flags);
104
105 if (waited_pid == -1 && errno == ECHILD) {
106 /* Status of requested child no longer available: check to
107 * see if it was processed by remember_children(). */
108 int cnt;
109 for (cnt = 0; cnt < MAXCHILDPROCS; cnt++) {
110 if (pid == pid_stat_table[cnt].pid) {
111 *status_ptr = pid_stat_table[cnt].status;
112 pid_stat_table[cnt].pid = 0;
113 return pid;
114 }
115 }
116 }
117
118 return waited_pid;
119}
120
121/* Wait for a process to exit, calling io_flush while waiting. */
122static void wait_process_with_flush(pid_t pid, int *exit_code_ptr)
123{
124 pid_t waited_pid;
125 int status;
126
127 while ((waited_pid = wait_process(pid, &status, WNOHANG)) == 0) {
128 msleep(20);
129 io_flush(FULL_FLUSH);
130 }
131
132 /* TODO: If the child exited on a signal, then log an
133 * appropriate error message. Perhaps we should also accept a
134 * message describing the purpose of the child. Also indicate
135 * this to the caller so that they know something went wrong. */
136 if (waited_pid < 0) {
137 rsyserr(FERROR, errno, "waitpid");
138 *exit_code_ptr = RERR_WAITCHILD;
139 } else if (!WIFEXITED(status)) {
140#ifdef WCOREDUMP
141 if (WCOREDUMP(status))
142 *exit_code_ptr = RERR_CRASHED;
143 else
144#endif
145 if (WIFSIGNALED(status))
146 *exit_code_ptr = RERR_TERMINATED;
147 else
148 *exit_code_ptr = RERR_WAITCHILD;
149 } else
150 *exit_code_ptr = WEXITSTATUS(status);
151}
152
153/* This function gets called from all 3 processes. We want the client side
154 * to actually output the text, but the sender is the only process that has
155 * all the stats we need. So, if we're a client sender, we do the report.
156 * If we're a server sender, we write the stats on the supplied fd. If
157 * we're the client receiver we read the stats from the supplied fd and do
158 * the report. All processes might also generate a set of debug stats, if
159 * the verbose level is high enough (this is the only thing that the
160 * generator process and the server receiver ever do here). */
161static void handle_stats(int f)
162{
163 endtime = time(NULL);
164
165 /* Cache two stats because the read/write code can change it. */
166 total_read = stats.total_read;
167 total_written = stats.total_written;
168
169 if (do_stats && verbose > 1) {
170 /* These come out from every process */
171 show_malloc_stats();
172 show_flist_stats();
173 }
174
175 if (am_generator)
176 return;
177
178 if (am_daemon) {
179 if (f == -1 || !am_sender)
180 return;
181 }
182
183 if (am_server) {
184 if (am_sender) {
185 write_longint(f, total_read);
186 write_longint(f, total_written);
187 write_longint(f, stats.total_size);
188 if (protocol_version >= 29) {
189 write_longint(f, stats.flist_buildtime);
190 write_longint(f, stats.flist_xfertime);
191 }
192 }
193 return;
194 }
195
196 /* this is the client */
197
198 if (f < 0 && !am_sender) /* e.g. when we got an empty file list. */
199 ;
200 else if (!am_sender) {
201 /* Read the first two in opposite order because the meaning of
202 * read/write swaps when switching from sender to receiver. */
203 total_written = read_longint(f);
204 total_read = read_longint(f);
205 stats.total_size = read_longint(f);
206 if (protocol_version >= 29) {
207 stats.flist_buildtime = read_longint(f);
208 stats.flist_xfertime = read_longint(f);
209 }
210 } else if (write_batch) {
211 /* The --read-batch process is going to be a client
212 * receiver, so we need to give it the stats. */
213 write_longint(batch_fd, total_read);
214 write_longint(batch_fd, total_written);
215 write_longint(batch_fd, stats.total_size);
216 if (protocol_version >= 29) {
217 write_longint(batch_fd, stats.flist_buildtime);
218 write_longint(batch_fd, stats.flist_xfertime);
219 }
220 }
221}
222
223static void output_summary(void)
224{
225 if (do_stats) {
226 rprintf(FCLIENT, "\n");
227 rprintf(FINFO,"Number of files: %d\n", stats.num_files);
228 rprintf(FINFO,"Number of files transferred: %d\n",
229 stats.num_transferred_files);
230 rprintf(FINFO,"Total file size: %s bytes\n",
231 human_num(stats.total_size));
232 rprintf(FINFO,"Total transferred file size: %s bytes\n",
233 human_num(stats.total_transferred_size));
234 rprintf(FINFO,"Literal data: %s bytes\n",
235 human_num(stats.literal_data));
236 rprintf(FINFO,"Matched data: %s bytes\n",
237 human_num(stats.matched_data));
238 rprintf(FINFO,"File list size: %d\n", stats.flist_size);
239 if (stats.flist_buildtime) {
240 rprintf(FINFO,
241 "File list generation time: %.3f seconds\n",
242 (double)stats.flist_buildtime / 1000);
243 rprintf(FINFO,
244 "File list transfer time: %.3f seconds\n",
245 (double)stats.flist_xfertime / 1000);
246 }
247 rprintf(FINFO,"Total bytes sent: %s\n",
248 human_num(total_written));
249 rprintf(FINFO,"Total bytes received: %s\n",
250 human_num(total_read));
251 }
252
253 if (verbose || do_stats) {
254 rprintf(FCLIENT, "\n");
255 rprintf(FINFO,
256 "sent %s bytes received %s bytes %s bytes/sec\n",
257 human_num(total_written), human_num(total_read),
258 human_dnum((total_written + total_read)/(0.5 + (endtime - starttime)), 2));
259 rprintf(FINFO, "total size is %s speedup is %.2f\n",
260 human_num(stats.total_size),
261 (double)stats.total_size / (total_written+total_read));
262 }
263
264 fflush(stdout);
265 fflush(stderr);
266}
267
268
269/**
270 * If our C library can get malloc statistics, then show them to FINFO
271 **/
272static void show_malloc_stats(void)
273{
274#ifdef HAVE_MALLINFO
275 struct mallinfo mi;
276
277 mi = mallinfo();
278
279 rprintf(FCLIENT, "\n");
280 rprintf(FINFO, RSYNC_NAME "[%d] (%s%s%s) heap statistics:\n",
281 getpid(), am_server ? "server " : "",
282 am_daemon ? "daemon " : "", who_am_i());
283 rprintf(FINFO, " arena: %10ld (bytes from sbrk)\n",
284 (long)mi.arena);
285 rprintf(FINFO, " ordblks: %10ld (chunks not in use)\n",
286 (long)mi.ordblks);
287 rprintf(FINFO, " smblks: %10ld\n",
288 (long)mi.smblks);
289 rprintf(FINFO, " hblks: %10ld (chunks from mmap)\n",
290 (long)mi.hblks);
291 rprintf(FINFO, " hblkhd: %10ld (bytes from mmap)\n",
292 (long)mi.hblkhd);
293 rprintf(FINFO, " allmem: %10ld (bytes from sbrk + mmap)\n",
294 (long)mi.arena + mi.hblkhd);
295 rprintf(FINFO, " usmblks: %10ld\n",
296 (long)mi.usmblks);
297 rprintf(FINFO, " fsmblks: %10ld\n",
298 (long)mi.fsmblks);
299 rprintf(FINFO, " uordblks: %10ld (bytes used)\n",
300 (long)mi.uordblks);
301 rprintf(FINFO, " fordblks: %10ld (bytes free)\n",
302 (long)mi.fordblks);
303 rprintf(FINFO, " keepcost: %10ld (bytes in releasable chunk)\n",
304 (long)mi.keepcost);
305#endif /* HAVE_MALLINFO */
306}
307
308
309/* Start the remote shell. cmd may be NULL to use the default. */
310static pid_t do_cmd(char *cmd, char *machine, char *user, char *path,
311 int *f_in, int *f_out)
312{
313 int i, argc = 0;
314 char *args[MAX_ARGS];
315 pid_t ret;
316 char *dir = NULL;
317 int dash_l_set = 0;
318
319 if (!read_batch && !local_server) {
320 char *t, *f, in_quote = '\0';
321 char *rsh_env = getenv(RSYNC_RSH_ENV);
322 if (!cmd)
323 cmd = rsh_env;
324 if (!cmd)
325 cmd = RSYNC_RSH;
326 cmd = strdup(cmd);
327 if (!cmd)
328 goto oom;
329
330 for (t = f = cmd; *f; f++) {
331 if (*f == ' ')
332 continue;
333 /* Comparison leaves rooms for server_options(). */
334 if (argc >= MAX_ARGS - MAX_SERVER_ARGS) {
335 rprintf(FERROR, "internal: args[] overflowed in do_cmd()\n");
336 exit_cleanup(RERR_SYNTAX);
337 }
338 args[argc++] = t;
339 while (*f != ' ' || in_quote) {
340 if (!*f) {
341 if (in_quote) {
342 rprintf(FERROR,
343 "Missing trailing-%c in remote-shell command.\n",
344 in_quote);
345 exit_cleanup(RERR_SYNTAX);
346 }
347 f--;
348 break;
349 }
350 if (*f == '\'' || *f == '"') {
351 if (!in_quote) {
352 in_quote = *f++;
353 continue;
354 }
355 if (*f == in_quote && *++f != in_quote) {
356 in_quote = '\0';
357 continue;
358 }
359 }
360 *t++ = *f++;
361 }
362 *t++ = '\0';
363 }
364
365 /* check to see if we've already been given '-l user' in
366 * the remote-shell command */
367 for (i = 0; i < argc-1; i++) {
368 if (!strcmp(args[i], "-l") && args[i+1][0] != '-')
369 dash_l_set = 1;
370 }
371
372#ifdef HAVE_REMSH
373 /* remsh (on HPUX) takes the arguments the other way around */
374 args[argc++] = machine;
375 if (user && !(daemon_over_rsh && dash_l_set)) {
376 args[argc++] = "-l";
377 args[argc++] = user;
378 }
379#else
380 if (user && !(daemon_over_rsh && dash_l_set)) {
381 args[argc++] = "-l";
382 args[argc++] = user;
383 }
384 args[argc++] = machine;
385#endif
386
387 args[argc++] = rsync_path;
388
389 if (blocking_io < 0) {
390 char *cp;
391 if ((cp = strrchr(cmd, '/')) != NULL)
392 cp++;
393 else
394 cp = cmd;
395 if (strcmp(cp, "rsh") == 0 || strcmp(cp, "remsh") == 0)
396 blocking_io = 1;
397 }
398
399 server_options(args,&argc);
400
401 if (argc >= MAX_ARGS - 2) {
402 rprintf(FERROR, "internal: args[] overflowed in do_cmd()\n");
403 exit_cleanup(RERR_SYNTAX);
404 }
405 }
406
407 args[argc++] = ".";
408
409 if (!daemon_over_rsh && path && *path)
410 args[argc++] = path;
411
412 args[argc] = NULL;
413
414 if (verbose > 3) {
415 for (i = 0; i < argc; i++)
416 rprintf(FCLIENT, "cmd[%d]=%s ", i, args[i]);
417 rprintf(FCLIENT, "\n");
418 }
419
420 if (read_batch) {
421 int from_gen_pipe[2];
422 if (fd_pair(from_gen_pipe) < 0) {
423 rsyserr(FERROR, errno, "pipe");
424 exit_cleanup(RERR_IPC);
425 }
426 batch_gen_fd = from_gen_pipe[0];
427 *f_out = from_gen_pipe[1];
428 *f_in = batch_fd;
429 ret = -1; /* no child pid */
430 } else if (local_server) {
431 /* If the user didn't request --[no-]whole-file, force
432 * it on, but only if we're not batch processing. */
433 if (whole_file < 0 && !write_batch)
434 whole_file = 1;
435 ret = local_child(argc, args, f_in, f_out, child_main);
436 } else
437 ret = piped_child(args,f_in,f_out);
438
439 if (dir)
440 free(dir);
441
442 return ret;
443
444 oom:
445 out_of_memory("do_cmd");
446 return 0; /* not reached */
447}
448
449/* The receiving side operates in one of two modes:
450 *
451 * 1. it receives any number of files into a destination directory,
452 * placing them according to their names in the file-list.
453 *
454 * 2. it receives a single file and saves it using the name in the
455 * destination path instead of its file-list name. This requires a
456 * "local name" for writing out the destination file.
457 *
458 * So, our task is to figure out what mode/local-name we need and return
459 * either a NULL for mode 1, or the local-name for mode 2. We also
460 * change directory if there are any path components in dest_path. */
461static char *get_local_name(struct file_list *flist, char *dest_path)
462{
463 STRUCT_STAT st;
464 char *cp;
465
466 if (verbose > 2) {
467 rprintf(FINFO, "get_local_name count=%d %s\n",
468 flist->count, NS(dest_path));
469 }
470
471 if (!dest_path || list_only)
472 return NULL;
473
474 /* If the destination path refers to an existing directory, enter
475 * it and use mode 1. If there is something other than a directory
476 * at the destination path, we must be transferring one file
477 * (anything at the destination will be overwritten). */
478 if (safe_stat(dest_path, &st) == 0) {
479 if (S_ISDIR(st.st_mode)) {
480 if (sanitize_paths)
481 die_on_unsafe_path(dest_path, 0);
482 if (!push_dir(dest_path)) {
483 rsyserr(FERROR, errno, "push_dir#1 %s failed",
484 full_fname(dest_path));
485 exit_cleanup(RERR_FILESELECT);
486 }
487 return NULL;
488 }
489 if (sanitize_paths && S_ISLNK(st.st_mode))
490 die_on_unsafe_path(dest_path, 0);
491 if (flist->count > 1) {
492 rprintf(FERROR,
493 "ERROR: destination must be a directory when"
494 " copying more than 1 file\n");
495 exit_cleanup(RERR_FILESELECT);
496 }
497 /* Caution: flist->count could be 0! */
498 if (flist->count == 1 && S_ISDIR(flist->files[0]->mode)) {
499 rprintf(FERROR,
500 "ERROR: cannot overwrite non-directory"
501 " with a directory\n");
502 exit_cleanup(RERR_FILESELECT);
503 }
504 } else if (errno != ENOENT) {
505 rsyserr(FERROR, errno, "cannot stat destination %s",
506 full_fname(dest_path));
507 exit_cleanup(RERR_FILESELECT);
508 }
509
510 cp = strrchr(dest_path, '/');
511
512 /* If the destination path ends in a slash or we are transferring
513 * multiple files, create a directory at the destination path,
514 * enter the new directory, and use mode 1. */
515 if (flist->count > 1 || (cp && !cp[1])) {
516 /* Lop off the final slash (if any). */
517 if (cp && !cp[1])
518 *cp = '\0';
519
520 if (mkdir_defmode(dest_path) != 0) {
521 rsyserr(FERROR, errno, "mkdir %s failed",
522 full_fname(dest_path));
523 exit_cleanup(RERR_FILEIO);
524 }
525
526 if (verbose)
527 rprintf(FINFO, "created directory %s\n", dest_path);
528
529 if (dry_run) {
530 /* Indicate that the destination directory doesn't
531 * really exist and return mode 1. */
532 dry_run++;
533 return NULL;
534 }
535
536 if (sanitize_paths)
537 die_on_unsafe_path(dest_path, 0);
538 if (!push_dir(dest_path)) {
539 rsyserr(FERROR, errno, "push_dir#2 %s failed",
540 full_fname(dest_path));
541 exit_cleanup(RERR_FILESELECT);
542 }
543
544 return NULL;
545 }
546
547 /* Otherwise, we are writing a single file, possibly on top of an
548 * existing non-directory. Change to the item's parent directory
549 * (if it has a path component), return the basename of the
550 * destination file as the local name, and use mode 2. */
551 if (!cp)
552 return dest_path;
553
554 if (cp == dest_path)
555 dest_path = "/";
556
557 *cp = '\0';
558 if (sanitize_paths)
559 die_on_unsafe_path(dest_path, 0);
560 if (!push_dir(dest_path)) {
561 rsyserr(FERROR, errno, "push_dir#3 %s failed",
562 full_fname(dest_path));
563 exit_cleanup(RERR_FILESELECT);
564 }
565 *cp = '/';
566
567 return cp + 1;
568}
569
570
571/* This is only called by the sender. */
572static void read_final_goodbye(int f_in, int f_out)
573{
574 int i;
575
576 if (protocol_version < 29)
577 i = read_int(f_in);
578 else {
579 while ((i = read_int(f_in)) == the_file_list->count
580 && read_shortint(f_in) == ITEM_IS_NEW) {
581 /* Forward the keep-alive (no-op) to the receiver. */
582 write_int(f_out, the_file_list->count);
583 write_shortint(f_out, ITEM_IS_NEW);
584 }
585 }
586
587 if (i != -1) {
588 rprintf(FERROR, "Invalid packet at end of run (%d) [%s]\n",
589 i, who_am_i());
590 exit_cleanup(RERR_PROTOCOL);
591 }
592}
593
594
595static void do_server_sender(int f_in, int f_out, int argc, char *argv[])
596{
597 struct file_list *flist;
598 char *dir = argv[0];
599
600 if (verbose > 2) {
601 rprintf(FINFO, "server_sender starting pid=%ld\n",
602 (long)getpid());
603 }
604
605 if (am_daemon && lp_write_only(module_id)) {
606 rprintf(FERROR, "ERROR: module is write only\n");
607 exit_cleanup(RERR_SYNTAX);
608 return;
609 }
610 if (am_daemon && lp_read_only(module_id) && remove_sent_files) {
611 rprintf(FERROR,
612 "ERROR: --remove-sent-files cannot be used with a read-only module\n");
613 exit_cleanup(RERR_SYNTAX);
614 return;
615 }
616
617 if (!relative_paths) {
618 if (sanitize_paths)
619 die_on_unsafe_path(dir, 0);
620 if (!push_dir(dir)) {
621 rsyserr(FERROR, errno, "push_dir#3 %s failed",
622 full_fname(dir));
623 exit_cleanup(RERR_FILESELECT);
624 }
625 }
626 argc--;
627 argv++;
628
629 if (argc == 0 && (recurse || list_only)) {
630 argc = 1;
631 argv--;
632 argv[0] = ".";
633 }
634
635 flist = send_file_list(f_out,argc,argv);
636 if (!flist || flist->count == 0) {
637 exit_cleanup(0);
638 }
639 the_file_list = flist;
640
641 io_start_buffering_in();
642 io_start_buffering_out();
643
644 send_files(flist,f_out,f_in);
645 io_flush(FULL_FLUSH);
646 handle_stats(f_out);
647 if (protocol_version >= 24)
648 read_final_goodbye(f_in, f_out);
649 io_flush(FULL_FLUSH);
650 exit_cleanup(0);
651}
652
653
654static int do_recv(int f_in,int f_out,struct file_list *flist,char *local_name)
655{
656 int pid;
657 int exit_code = 0;
658 int error_pipe[2];
659
660 /* The receiving side mustn't obey this, or an existing symlink that
661 * points to an identical file won't be replaced by the referent. */
662 copy_links = copy_dirlinks = 0;
663
664 if (preserve_hard_links)
665 init_hard_links();
666
667 if (fd_pair(error_pipe) < 0) {
668 rsyserr(FERROR, errno, "pipe failed in do_recv");
669 exit_cleanup(RERR_IPC);
670 }
671
672 io_flush(NORMAL_FLUSH);
673
674 if ((pid = do_fork()) == -1) {
675 rsyserr(FERROR, errno, "fork failed in do_recv");
676 exit_cleanup(RERR_IPC);
677 }
678
679 if (pid == 0) {
680 close(error_pipe[0]);
681 if (f_in != f_out)
682 close(f_out);
683
684 /* we can't let two processes write to the socket at one time */
685 close_multiplexing_out();
686
687 /* set place to send errors */
688 set_msg_fd_out(error_pipe[1]);
689
690 recv_files(f_in, flist, local_name);
691 io_flush(FULL_FLUSH);
692 handle_stats(f_in);
693
694 send_msg(MSG_DONE, "", 0);
695 io_flush(FULL_FLUSH);
696
697 /* Handle any keep-alive packets from the post-processing work
698 * that the generator does. */
699 if (protocol_version >= 29) {
700 kluge_around_eof = -1;
701
702 /* This should only get stopped via a USR2 signal. */
703 while (read_int(f_in) == flist->count
704 && read_shortint(f_in) == ITEM_IS_NEW) {}
705
706 rprintf(FERROR, "Invalid packet at end of run [%s]\n",
707 who_am_i());
708 exit_cleanup(RERR_PROTOCOL);
709 }
710
711 /* Finally, we go to sleep until our parent kills us with a
712 * USR2 signal. We sleep for a short time, as on some OSes
713 * a signal won't interrupt a sleep! */
714 while (1)
715 msleep(20);
716 }
717
718 am_generator = 1;
719 close_multiplexing_in();
720 if (write_batch && !am_server)
721 stop_write_batch();
722
723 close(error_pipe[1]);
724 if (f_in != f_out)
725 close(f_in);
726
727 io_start_buffering_out();
728
729 set_msg_fd_in(error_pipe[0]);
730
731 generate_files(f_out, flist, local_name);
732
733 handle_stats(-1);
734 io_flush(FULL_FLUSH);
735 if (protocol_version >= 24) {
736 /* send a final goodbye message */
737 write_int(f_out, -1);
738 }
739 io_flush(FULL_FLUSH);
740
741 set_msg_fd_in(-1);
742 kill(pid, SIGUSR2);
743 wait_process_with_flush(pid, &exit_code);
744 return exit_code;
745}
746
747
748static void do_server_recv(int f_in, int f_out, int argc,char *argv[])
749{
750 int exit_code;
751 struct file_list *flist;
752 char *local_name = NULL;
753 char *dir = NULL;
754 int save_verbose = verbose;
755
756 if (filesfrom_fd >= 0) {
757 /* We can't mix messages with files-from data on the socket,
758 * so temporarily turn off verbose messages. */
759 verbose = 0;
760 }
761
762 if (verbose > 2) {
763 rprintf(FINFO, "server_recv(%d) starting pid=%ld\n",
764 argc, (long)getpid());
765 }
766
767 if (am_daemon && lp_read_only(module_id)) {
768 rprintf(FERROR,"ERROR: module is read only\n");
769 exit_cleanup(RERR_SYNTAX);
770 return;
771 }
772
773 if (argc > 0) {
774 dir = argv[0];
775 argc--;
776 argv++;
777 if (!am_daemon && !push_dir(dir)) {
778 rsyserr(FERROR, errno, "push_dir#4 %s failed",
779 full_fname(dir));
780 exit_cleanup(RERR_FILESELECT);
781 }
782 }
783
784 io_start_buffering_in();
785 recv_filter_list(f_in);
786
787 if (filesfrom_fd >= 0) {
788 /* We need to send the files-from names to the sender at the
789 * same time that we receive the file-list from them, so we
790 * need the IO routines to automatically write out the names
791 * onto our f_out socket as we read the file-list. This
792 * avoids both deadlock and extra delays/buffers. */
793 io_set_filesfrom_fds(filesfrom_fd, f_out);
794 filesfrom_fd = -1;
795 }
796
797 flist = recv_file_list(f_in);
798 verbose = save_verbose;
799 if (!flist) {
800 rprintf(FERROR,"server_recv: recv_file_list error\n");
801 exit_cleanup(RERR_FILESELECT);
802 }
803 the_file_list = flist;
804
805 if (argc > 0)
806 local_name = get_local_name(flist,argv[0]);
807
808 /* Now that we know what our destination directory turned out to be,
809 * we can sanitize the --link-/copy-/compare-dest args correctly. */
810 if (sanitize_paths) {
811 char **dir;
812 for (dir = basis_dir; *dir; dir++) {
813 *dir = sanitize_path(NULL, *dir, NULL, curr_dir_depth, NULL);
814 die_on_unsafe_path(*dir, 0);
815 }
816 if (partial_dir) {
817 partial_dir = sanitize_path(NULL, partial_dir, NULL, curr_dir_depth, NULL);
818 /* A relative path gets this checked at every dir change. */
819 if (*partial_dir == '/')
820 die_on_unsafe_path(partial_dir, 0);
821 }
822 }
823 if (server_filter_list.head) {
824 char **dir;
825 struct filter_list_struct *elp = &server_filter_list;
826
827 for (dir = basis_dir; *dir; dir++) {
828 if (check_filter(elp, *dir, 1) < 0)
829 goto options_rejected;
830 }
831 if (partial_dir && *partial_dir == '/'
832 && check_filter(elp, partial_dir, 1) < 0) {
833 options_rejected:
834 rprintf(FERROR,
835 "Your options have been rejected by the server.\n");
836 exit_cleanup(RERR_SYNTAX);
837 }
838 }
839
840 exit_code = do_recv(f_in,f_out,flist,local_name);
841 exit_cleanup(exit_code);
842}
843
844
845int child_main(int argc, char *argv[])
846{
847 start_server(STDIN_FILENO, STDOUT_FILENO, argc, argv);
848 return 0;
849}
850
851
852void start_server(int f_in, int f_out, int argc, char *argv[])
853{
854 set_nonblocking(f_in);
855 set_nonblocking(f_out);
856
857 io_set_sock_fds(f_in, f_out);
858 setup_protocol(f_out, f_in);
859#if defined HAVE_ICONV_OPEN && defined HAVE_ICONV_H
860 setup_iconv();
861#endif
862
863 if (protocol_version >= 23)
864 io_start_multiplex_out();
865
866 if (am_sender) {
867 keep_dirlinks = 0; /* Must be disabled on the sender. */
868 if (need_messages_from_generator)
869 io_start_multiplex_in();
870
871 recv_filter_list(f_in);
872 do_server_sender(f_in, f_out, argc, argv);
873 } else {
874 do_server_recv(f_in, f_out, argc, argv);
875 }
876 exit_cleanup(0);
877}
878
879
880/*
881 * This is called once the connection has been negotiated. It is used
882 * for rsyncd, remote-shell, and local connections.
883 */
884int client_run(int f_in, int f_out, pid_t pid, int argc, char *argv[])
885{
886 struct file_list *flist = NULL;
887 int exit_code = 0, exit_code2 = 0;
888 char *local_name = NULL;
889
890 cleanup_child_pid = pid;
891 if (!read_batch) {
892 set_nonblocking(f_in);
893 set_nonblocking(f_out);
894 }
895
896 io_set_sock_fds(f_in, f_out);
897 setup_protocol(f_out,f_in);
898#if defined HAVE_ICONV_OPEN && defined HAVE_ICONV_H
899 setup_iconv();
900#endif
901
902 if (protocol_version >= 23 && !read_batch)
903 io_start_multiplex_in();
904
905 /* We set our stderr file handle to blocking because ssh might have
906 * set it to non-blocking. This can be particularly troublesome if
907 * stderr is a clone of stdout, because ssh would have set our stdout
908 * to non-blocking at the same time (which can easily cause us to lose
909 * output from our print statements). This kluge shouldn't cause ssh
910 * any problems for how we use it. Note also that we delayed setting
911 * this until after the above protocol setup so that we know for sure
912 * that ssh is done twiddling its file descriptors. */
913 set_blocking(STDERR_FILENO);
914
915 if (am_sender) {
916 keep_dirlinks = 0; /* Must be disabled on the sender. */
917 io_start_buffering_out();
918 if (!filesfrom_host)
919 set_msg_fd_in(f_in);
920 send_filter_list(f_out);
921 if (filesfrom_host)
922 filesfrom_fd = f_in;
923
924 if (write_batch && !am_server)
925 start_write_batch(f_out);
926 flist = send_file_list(f_out, argc, argv);
927 set_msg_fd_in(-1);
928 if (verbose > 3)
929 rprintf(FINFO,"file list sent\n");
930 the_file_list = flist;
931
932 io_flush(NORMAL_FLUSH);
933 send_files(flist,f_out,f_in);
934 io_flush(FULL_FLUSH);
935 handle_stats(-1);
936 if (protocol_version >= 24)
937 read_final_goodbye(f_in, f_out);
938 if (pid != -1) {
939 if (verbose > 3)
940 rprintf(FINFO,"client_run waiting on %d\n", (int) pid);
941 io_flush(FULL_FLUSH);
942 wait_process_with_flush(pid, &exit_code);
943 }
944 output_summary();
945 io_flush(FULL_FLUSH);
946 exit_cleanup(exit_code);
947 }
948
949 if (need_messages_from_generator && !read_batch)
950 io_start_multiplex_out();
951
952 if (argc == 0)
953 list_only |= 1;
954
955 send_filter_list(read_batch ? -1 : f_out);
956
957 if (filesfrom_fd >= 0) {
958 io_set_filesfrom_fds(filesfrom_fd, f_out);
959 filesfrom_fd = -1;
960 }
961
962 if (write_batch && !am_server)
963 start_write_batch(f_in);
964 flist = recv_file_list(f_in);
965 the_file_list = flist;
966
967 if (flist && flist->count > 0) {
968 local_name = get_local_name(flist, argv[0]);
969
970 exit_code2 = do_recv(f_in, f_out, flist, local_name);
971 } else {
972 handle_stats(-1);
973 output_summary();
974 }
975
976 if (pid != -1) {
977 if (verbose > 3)
978 rprintf(FINFO,"client_run2 waiting on %d\n", (int) pid);
979 io_flush(FULL_FLUSH);
980 wait_process_with_flush(pid, &exit_code);
981 }
982
983 return MAX(exit_code, exit_code2);
984}
985
986static int copy_argv (char *argv[])
987{
988 int i;
989
990 for (i = 0; argv[i]; i++) {
991 if (!(argv[i] = strdup(argv[i]))) {
992 rprintf (FERROR, "out of memory at %s(%d)\n",
993 __FILE__, __LINE__);
994 return RERR_MALLOC;
995 }
996 }
997
998 return 0;
999}
1000
1001
1002/**
1003 * Start a client for either type of remote connection. Work out
1004 * whether the arguments request a remote shell or rsyncd connection,
1005 * and call the appropriate connection function, then run_client.
1006 *
1007 * Calls either start_socket_client (for sockets) or do_cmd and
1008 * client_run (for ssh).
1009 **/
1010static int start_client(int argc, char *argv[])
1011{
1012 char *p;
1013 char *shell_machine = NULL;
1014 char *shell_path = NULL;
1015 char *shell_user = NULL;
1016 int ret;
1017 pid_t pid;
1018 int f_in,f_out;
1019 int rc;
1020
1021 /* Don't clobber argv[] so that ps(1) can still show the right
1022 * command line. */
1023 if ((rc = copy_argv(argv)))
1024 return rc;
1025
1026 if (!read_batch) { /* for read_batch, NO source is specified */
1027 shell_path = check_for_hostspec(argv[0], &shell_machine, &rsync_port);
1028 if (shell_path) { /* source is remote */
1029 char *dummy1;
1030 int dummy2;
1031 if (--argc
1032 && check_for_hostspec(argv[argc], &dummy1, &dummy2)) {
1033 rprintf(FERROR,
1034 "The source and destination cannot both be remote.\n");
1035 exit_cleanup(RERR_SYNTAX);
1036 }
1037 argv++;
1038 if (filesfrom_host && *filesfrom_host
1039 && strcmp(filesfrom_host, shell_machine) != 0) {
1040 rprintf(FERROR,
1041 "--files-from hostname is not the same as the transfer hostname\n");
1042 exit_cleanup(RERR_SYNTAX);
1043 }
1044 if (rsync_port) {
1045 if (!shell_cmd) {
1046 return start_socket_client(shell_machine,
1047 shell_path,
1048 argc, argv);
1049 }
1050 daemon_over_rsh = 1;
1051 }
1052
1053 am_sender = 0;
1054 } else { /* source is local, check dest arg */
1055 am_sender = 1;
1056
1057 if (argc > 1)
1058 p = argv[--argc];
1059 else {
1060 p = ".";
1061 list_only = 1;
1062 }
1063
1064 shell_path = check_for_hostspec(p, &shell_machine, &rsync_port);
1065 if (shell_path && filesfrom_host && *filesfrom_host
1066 && strcmp(filesfrom_host, shell_machine) != 0) {
1067 rprintf(FERROR,
1068 "--files-from hostname is not the same as the transfer hostname\n");
1069 exit_cleanup(RERR_SYNTAX);
1070 }
1071 if (!shell_path) { /* no hostspec found, so src & dest are local */
1072 local_server = 1;
1073 if (filesfrom_host) {
1074 rprintf(FERROR,
1075 "--files-from cannot be remote when the transfer is local\n");
1076 exit_cleanup(RERR_SYNTAX);
1077 }
1078 shell_machine = NULL;
1079 shell_path = p;
1080 } else if (rsync_port) {
1081 if (!shell_cmd) {
1082 return start_socket_client(shell_machine,
1083 shell_path,
1084 argc, argv);
1085 }
1086 daemon_over_rsh = 1;
1087 }
1088 }
1089 } else { /* read_batch */
1090 local_server = 1;
1091 shell_path = argv[argc-1];
1092 if (check_for_hostspec(shell_path, &shell_machine, &rsync_port)) {
1093 rprintf(FERROR, "remote destination is not allowed with --read-batch\n");
1094 exit_cleanup(RERR_SYNTAX);
1095 }
1096 }
1097
1098 if (shell_machine) {
1099 p = strrchr(shell_machine,'@');
1100 if (p) {
1101 *p = 0;
1102 shell_user = shell_machine;
1103 shell_machine = p+1;
1104 }
1105 }
1106
1107 if (verbose > 3) {
1108 rprintf(FINFO,"cmd=%s machine=%s user=%s path=%s\n",
1109 shell_cmd ? shell_cmd : "",
1110 shell_machine ? shell_machine : "",
1111 shell_user ? shell_user : "",
1112 shell_path ? shell_path : "");
1113 }
1114
1115 /* for remote source, only single dest arg can remain ... */
1116 if (!am_sender && argc > 1) {
1117 usage(FERROR);
1118 exit_cleanup(RERR_SYNTAX);
1119 }
1120
1121 /* ... or no dest at all */
1122 if (!am_sender && argc == 0)
1123 list_only |= 1;
1124
1125 pid = do_cmd(shell_cmd,shell_machine,shell_user,shell_path,
1126 &f_in,&f_out);
1127
1128 /* if we're running an rsync server on the remote host over a
1129 * remote shell command, we need to do the RSYNCD protocol first */
1130 if (daemon_over_rsh) {
1131 int tmpret;
1132 tmpret = start_inband_exchange(shell_user, shell_path,
1133 f_in, f_out, argc);
1134 if (tmpret < 0)
1135 return tmpret;
1136 }
1137
1138 ret = client_run(f_in, f_out, pid, argc, argv);
1139
1140 fflush(stdout);
1141 fflush(stderr);
1142
1143 return ret;
1144}
1145
1146
1147static RETSIGTYPE sigusr1_handler(UNUSED(int val))
1148{
1149 exit_cleanup(RERR_SIGNAL1);
1150}
1151
1152static RETSIGTYPE sigusr2_handler(UNUSED(int val))
1153{
1154 if (!am_server)
1155 output_summary();
1156 close_all();
1157 if (log_got_error)
1158 _exit(RERR_PARTIAL);
1159 _exit(0);
1160}
1161
1162RETSIGTYPE remember_children(UNUSED(int val))
1163{
1164#ifdef WNOHANG
1165 int cnt, status;
1166 pid_t pid;
1167 /* An empty waitpid() loop was put here by Tridge and we could never
1168 * get him to explain why he put it in, so rather than taking it
1169 * out we're instead saving the child exit statuses for later use.
1170 * The waitpid() loop presumably eliminates all possibility of leaving
1171 * zombie children, maybe that's why he did it. */
1172 while ((pid = waitpid(-1, &status, WNOHANG)) > 0) {
1173 /* save the child's exit status */
1174 for (cnt = 0; cnt < MAXCHILDPROCS; cnt++) {
1175 if (pid_stat_table[cnt].pid == 0) {
1176 pid_stat_table[cnt].pid = pid;
1177 pid_stat_table[cnt].status = status;
1178 break;
1179 }
1180 }
1181 }
1182#endif
1183#ifndef HAVE_SIGACTION
1184 signal(SIGCHLD, remember_children);
1185#endif
1186}
1187
1188
1189/**
1190 * This routine catches signals and tries to send them to gdb.
1191 *
1192 * Because it's called from inside a signal handler it ought not to
1193 * use too many library routines.
1194 *
1195 * @todo Perhaps use "screen -X" instead/as well, to help people
1196 * debugging without easy access to X. Perhaps use an environment
1197 * variable, or just call a script?
1198 *
1199 * @todo The /proc/ magic probably only works on Linux (and
1200 * Solaris?) Can we be more portable?
1201 **/
1202#ifdef MAINTAINER_MODE
1203const char *get_panic_action(void)
1204{
1205 const char *cmd_fmt = getenv("RSYNC_PANIC_ACTION");
1206
1207 if (cmd_fmt)
1208 return cmd_fmt;
1209 else
1210 return "xterm -display :0 -T Panic -n Panic "
1211 "-e gdb /proc/%d/exe %d";
1212}
1213
1214
1215/**
1216 * Handle a fatal signal by launching a debugger, controlled by $RSYNC_PANIC_ACTION.
1217 *
1218 * This signal handler is only installed if we were configured with
1219 * --enable-maintainer-mode. Perhaps it should always be on and we
1220 * should just look at the environment variable, but I'm a bit leery
1221 * of a signal sending us into a busy loop.
1222 **/
1223static RETSIGTYPE rsync_panic_handler(UNUSED(int whatsig))
1224{
1225 char cmd_buf[300];
1226 int ret;
1227
1228 sprintf(cmd_buf, get_panic_action(),
1229 getpid(), getpid());
1230
1231 /* Unless we failed to execute gdb, we allow the process to
1232 * continue. I'm not sure if that's right. */
1233 ret = system(cmd_buf);
1234 if (ret)
1235 _exit(ret);
1236}
1237#endif
1238
1239
1240int main(int argc,char *argv[])
1241{
1242 int ret;
1243 int orig_argc = argc;
1244 char **orig_argv = argv;
1245#ifdef HAVE_SIGACTION
1246# ifdef HAVE_SIGPROCMASK
1247 sigset_t sigmask;
1248
1249 sigemptyset(&sigmask);
1250# endif
1251 sigact.sa_flags = SA_NOCLDSTOP;
1252#endif
1253 SIGACTMASK(SIGUSR1, sigusr1_handler);
1254 SIGACTMASK(SIGUSR2, sigusr2_handler);
1255 SIGACTMASK(SIGCHLD, remember_children);
1256#ifdef MAINTAINER_MODE
1257 SIGACTMASK(SIGSEGV, rsync_panic_handler);
1258 SIGACTMASK(SIGFPE, rsync_panic_handler);
1259 SIGACTMASK(SIGABRT, rsync_panic_handler);
1260 SIGACTMASK(SIGBUS, rsync_panic_handler);
1261#endif
1262
1263 starttime = time(NULL);
1264 am_root = (MY_UID() == 0);
1265
1266 memset(&stats, 0, sizeof(stats));
1267
1268 if (argc < 2) {
1269 usage(FERROR);
1270 exit_cleanup(RERR_SYNTAX);
1271 }
1272
1273 /* we set a 0 umask so that correct file permissions can be
1274 * carried across */
1275 orig_umask = umask(0);
1276
1277#if defined CONFIG_LOCALE && defined HAVE_SETLOCALE
1278 setlocale(LC_CTYPE, "");
1279#endif
1280
1281 if (!parse_arguments(&argc, (const char ***) &argv, 1)) {
1282 /* FIXME: We ought to call the same error-handling
1283 * code here, rather than relying on getopt. */
1284 option_error();
1285 exit_cleanup(RERR_SYNTAX);
1286 }
1287
1288 SIGACTMASK(SIGINT, sig_int);
1289 SIGACTMASK(SIGHUP, sig_int);
1290 SIGACTMASK(SIGTERM, sig_int);
1291#if defined HAVE_SIGACTION && HAVE_SIGPROCMASK
1292 sigprocmask(SIG_UNBLOCK, &sigmask, NULL);
1293#endif
1294
1295 /* Ignore SIGPIPE; we consistently check error codes and will
1296 * see the EPIPE. */
1297 SIGACTION(SIGPIPE, SIG_IGN);
1298#ifdef SIGXFSZ
1299 SIGACTION(SIGXFSZ, SIG_IGN);
1300#endif
1301
1302 /* Initialize push_dir here because on some old systems getcwd
1303 * (implemented by forking "pwd" and reading its output) doesn't
1304 * work when there are other child processes. Also, on all systems
1305 * that implement getcwd that way "pwd" can't be found after chroot. */
1306 push_dir(NULL);
1307
1308 init_flist();
1309
1310 if ((write_batch || read_batch) && !am_server) {
1311 if (write_batch)
1312 write_batch_shell_file(orig_argc, orig_argv, argc);
1313
1314 if (read_batch && strcmp(batch_name, "-") == 0)
1315 batch_fd = STDIN_FILENO;
1316 else {
1317 batch_fd = do_open(batch_name,
1318 write_batch ? O_WRONLY | O_CREAT | O_TRUNC
1319 : O_RDONLY, S_IRUSR | S_IWUSR);
1320 }
1321 if (batch_fd < 0) {
1322 rsyserr(FERROR, errno, "Batch file %s open error",
1323 full_fname(batch_name));
1324 exit_cleanup(RERR_FILEIO);
1325 }
1326 if (read_batch)
1327 read_stream_flags(batch_fd);
1328 }
1329 if (write_batch < 0)
1330 dry_run = 1;
1331
1332 if (am_daemon && !am_server)
1333 return daemon_main();
1334
1335 if (argc < 1) {
1336 usage(FERROR);
1337 exit_cleanup(RERR_SYNTAX);
1338 }
1339
1340 if (am_server) {
1341 set_nonblocking(STDIN_FILENO);
1342 set_nonblocking(STDOUT_FILENO);
1343 if (am_daemon)
1344 return start_daemon(STDIN_FILENO, STDOUT_FILENO);
1345 start_server(STDIN_FILENO, STDOUT_FILENO, argc, argv);
1346 }
1347
1348 ret = start_client(argc, argv);
1349 if (ret == -1)
1350 exit_cleanup(RERR_STARTCLIENT);
1351 else
1352 exit_cleanup(ret);
1353
1354 return ret;
1355}