Simplified sanitize_path() logic a little.
[rsync/rsync.git] / util.c
CommitLineData
1960e228 1/* -*- c-file-style: "linux" -*-
5cb37436
WD
2 *
3 * Copyright (C) 1996-2000 by Andrew Tridgell
0ecfbf27
MP
4 * Copyright (C) Paul Mackerras 1996
5 * Copyright (C) 2001, 2002 by Martin Pool <mbp@samba.org>
5cb37436 6 *
0ecfbf27
MP
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.
5cb37436 11 *
0ecfbf27
MP
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.
5cb37436 16 *
0ecfbf27
MP
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., 675 Mass Ave, Cambridge, MA 02139, USA.
20 */
c627d613 21
ac13ad10 22/**
0ecfbf27 23 * @file
ac13ad10 24 *
5cb37436 25 * Utilities used in rsync
ac13ad10 26 **/
c627d613 27
c627d613
AT
28#include "rsync.h"
29
c7c11a0d 30extern int verbose;
bc6ebcd2
WD
31extern int dry_run;
32extern int module_id;
33extern int modify_window;
a7260c40 34extern char *partial_dir;
bf6dcd17 35extern struct exclude_list_struct server_exclude_list;
c7c11a0d 36
0ecfbf27
MP
37int sanitize_paths = 0;
38
39
f0359dd0 40
ac13ad10 41/**
0ecfbf27
MP
42 * Set a fd into nonblocking mode
43 **/
f0359dd0
AT
44void set_nonblocking(int fd)
45{
46 int val;
47
0ecfbf27 48 if ((val = fcntl(fd, F_GETFL, 0)) == -1)
f0359dd0
AT
49 return;
50 if (!(val & NONBLOCK_FLAG)) {
51 val |= NONBLOCK_FLAG;
52 fcntl(fd, F_SETFL, val);
53 }
54}
55
ac13ad10 56/**
0ecfbf27
MP
57 * Set a fd into blocking mode
58 **/
36349ea0
AT
59void set_blocking(int fd)
60{
61 int val;
62
0ecfbf27 63 if ((val = fcntl(fd, F_GETFL, 0)) == -1)
36349ea0
AT
64 return;
65 if (val & NONBLOCK_FLAG) {
66 val &= ~NONBLOCK_FLAG;
67 fcntl(fd, F_SETFL, val);
68 }
69}
70
f0359dd0 71
ac13ad10 72/**
0ecfbf27
MP
73 * Create a file descriptor pair - like pipe() but use socketpair if
74 * possible (because of blocking issues on pipes).
5cb37436 75 *
0ecfbf27 76 * Always set non-blocking.
f0359dd0 77 */
08f15335
AT
78int fd_pair(int fd[2])
79{
f0359dd0
AT
80 int ret;
81
08f15335 82#if HAVE_SOCKETPAIR
f0359dd0 83 ret = socketpair(AF_UNIX, SOCK_STREAM, 0, fd);
08f15335 84#else
f0359dd0 85 ret = pipe(fd);
08f15335 86#endif
f0359dd0
AT
87
88 if (ret == 0) {
89 set_nonblocking(fd[0]);
90 set_nonblocking(fd[1]);
91 }
0ecfbf27 92
f0359dd0 93 return ret;
08f15335
AT
94}
95
96
0ecfbf27 97void print_child_argv(char **cmd)
5ad0e46f 98{
1bbd10fe 99 rprintf(FINFO, "opening connection using ");
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MP
100 for (; *cmd; cmd++) {
101 /* Look for characters that ought to be quoted. This
102 * is not a great quoting algorithm, but it's
103 * sufficient for a log message. */
104 if (strspn(*cmd, "abcdefghijklmnopqrstuvwxyz"
105 "ABCDEFGHIJKLMNOPQRSTUVWXYZ"
106 "0123456789"
107 ",.-_=+@/") != strlen(*cmd)) {
108 rprintf(FINFO, "\"%s\" ", *cmd);
109 } else {
110 rprintf(FINFO, "%s ", *cmd);
111 }
112 }
113 rprintf(FINFO, "\n");
114}
115
116
c627d613
AT
117void out_of_memory(char *str)
118{
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119 rprintf(FERROR, "ERROR: out of memory in %s\n", str);
120 exit_cleanup(RERR_MALLOC);
575f2fca
AT
121}
122
123void overflow(char *str)
124{
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125 rprintf(FERROR, "ERROR: buffer overflow in %s\n", str);
126 exit_cleanup(RERR_MALLOC);
c627d613
AT
127}
128
129
c627d613 130
404e813c 131int set_modtime(char *fname, time_t modtime)
c627d613 132{
404e813c
MP
133 if (dry_run)
134 return 0;
135
136 if (verbose > 2) {
137 rprintf(FINFO, "set modtime of %s to (%ld) %s",
b5bd5542 138 fname, (long)modtime,
404e813c
MP
139 asctime(localtime(&modtime)));
140 }
5cb37436 141
31e12522 142 {
1e9f155a 143#ifdef HAVE_UTIMBUF
5cb37436 144 struct utimbuf tbuf;
31e12522
AT
145 tbuf.actime = time(NULL);
146 tbuf.modtime = modtime;
147 return utime(fname,&tbuf);
c627d613 148#elif defined(HAVE_UTIME)
31e12522
AT
149 time_t t[2];
150 t[0] = time(NULL);
151 t[1] = modtime;
152 return utime(fname,t);
c627d613 153#else
31e12522
AT
154 struct timeval t[2];
155 t[0].tv_sec = time(NULL);
156 t[0].tv_usec = 0;
157 t[1].tv_sec = modtime;
158 t[1].tv_usec = 0;
159 return utimes(fname,t);
c627d613 160#endif
31e12522 161 }
c627d613 162}
94481d91 163
720b47f2 164
ac13ad10
MP
165/**
166 Create any necessary directories in fname. Unfortunately we don't know
167 what perms to give the directory when this is called so we need to rely
168 on the umask
169**/
0ecfbf27 170int create_directory_path(char *fname, int base_umask)
6574b4f7 171{
6574b4f7
AT
172 char *p;
173
c284f34a
WD
174 while (*fname == '/')
175 fname++;
176 while (strncmp(fname, "./", 2) == 0)
177 fname += 2;
6574b4f7
AT
178
179 p = fname;
c284f34a 180 while ((p = strchr(p,'/')) != NULL) {
6574b4f7 181 *p = 0;
5cb37436 182 do_mkdir(fname, 0777 & ~base_umask);
6574b4f7
AT
183 *p = '/';
184 p++;
185 }
186 return 0;
187}
950ab32d
AT
188
189
ac13ad10
MP
190/**
191 * Write @p len bytes at @p ptr to descriptor @p desc, retrying if
192 * interrupted.
193 *
194 * @retval len upon success
195 *
196 * @retval <0 write's (negative) error code
197 *
198 * Derived from GNU C's cccp.c.
199 */
9dd891bb 200static int full_write(int desc, char *ptr, size_t len)
950ab32d
AT
201{
202 int total_written;
5cb37436 203
950ab32d
AT
204 total_written = 0;
205 while (len > 0) {
5c1b7bfd 206 int written = write(desc, ptr, len);
950ab32d 207 if (written < 0) {
950ab32d
AT
208 if (errno == EINTR)
209 continue;
950ab32d
AT
210 return written;
211 }
212 total_written += written;
213 ptr += written;
214 len -= written;
215 }
216 return total_written;
217}
218
950ab32d 219
ac13ad10
MP
220/**
221 * Read @p len bytes at @p ptr from descriptor @p desc, retrying if
222 * interrupted.
223 *
224 * @retval >0 the actual number of bytes read
225 *
226 * @retval 0 for EOF
227 *
228 * @retval <0 for an error.
229 *
230 * Derived from GNU C's cccp.c. */
9dd891bb 231static int safe_read(int desc, char *ptr, size_t len)
950ab32d
AT
232{
233 int n_chars;
5cb37436 234
9dd891bb 235 if (len == 0)
950ab32d 236 return len;
5cb37436 237
950ab32d
AT
238 do {
239 n_chars = read(desc, ptr, len);
240 } while (n_chars < 0 && errno == EINTR);
5cb37436 241
950ab32d
AT
242 return n_chars;
243}
244
245
ac13ad10
MP
246/** Copy a file.
247 *
248 * This is used in conjunction with the --temp-dir option */
950ab32d
AT
249int copy_file(char *source, char *dest, mode_t mode)
250{
251 int ifd;
252 int ofd;
253 char buf[1024 * 8];
254 int len; /* Number of bytes read into `buf'. */
255
8c9fd200 256 ifd = do_open(source, O_RDONLY, 0);
950ab32d 257 if (ifd == -1) {
d62bcc17 258 rsyserr(FERROR, errno, "open %s", full_fname(source));
950ab32d
AT
259 return -1;
260 }
261
c7c11a0d 262 if (robust_unlink(dest) && errno != ENOENT) {
d62bcc17 263 rsyserr(FERROR, errno, "unlink %s", full_fname(dest));
950ab32d
AT
264 return -1;
265 }
266
31e12522 267 ofd = do_open(dest, O_WRONLY | O_CREAT | O_TRUNC | O_EXCL, mode);
c46ded46 268 if (ofd == -1) {
d62bcc17 269 rsyserr(FERROR, errno, "open %s", full_fname(dest));
950ab32d
AT
270 close(ifd);
271 return -1;
272 }
273
5cb37436 274 while ((len = safe_read(ifd, buf, sizeof buf)) > 0) {
950ab32d 275 if (full_write(ofd, buf, len) < 0) {
d62bcc17 276 rsyserr(FERROR, errno, "write %s", full_fname(dest));
950ab32d
AT
277 close(ifd);
278 close(ofd);
279 return -1;
280 }
281 }
282
8b602edd 283 if (len < 0) {
d62bcc17 284 rsyserr(FERROR, errno, "read %s", full_fname(source));
8b602edd
WD
285 close(ifd);
286 close(ofd);
287 return -1;
288 }
289
9f27cd8c 290 if (close(ifd) < 0) {
d62bcc17
WD
291 rsyserr(FINFO, errno, "close failed on %s",
292 full_fname(source));
9f27cd8c
WD
293 }
294
295 if (close(ofd) < 0) {
d62bcc17
WD
296 rsyserr(FERROR, errno, "close failed on %s",
297 full_fname(dest));
9f27cd8c
WD
298 return -1;
299 }
950ab32d 300
950ab32d
AT
301 return 0;
302}
feaa89c4 303
c7c11a0d
DD
304/* MAX_RENAMES should be 10**MAX_RENAMES_DIGITS */
305#define MAX_RENAMES_DIGITS 3
306#define MAX_RENAMES 1000
307
ac13ad10 308/**
b4235b31
MP
309 * Robust unlink: some OS'es (HPUX) refuse to unlink busy files, so
310 * rename to <path>/.rsyncNNN instead.
311 *
312 * Note that successive rsync runs will shuffle the filenames around a
313 * bit as long as the file is still busy; this is because this function
314 * does not know if the unlink call is due to a new file coming in, or
315 * --delete trying to remove old .rsyncNNN files, hence it renames it
316 * each time.
317 **/
c7c11a0d
DD
318int robust_unlink(char *fname)
319{
320#ifndef ETXTBSY
321 return do_unlink(fname);
322#else
323 static int counter = 1;
324 int rc, pos, start;
325 char path[MAXPATHLEN];
326
327 rc = do_unlink(fname);
c284f34a 328 if (rc == 0 || errno != ETXTBSY)
c7c11a0d
DD
329 return rc;
330
c284f34a
WD
331 if ((pos = strlcpy(path, fname, MAXPATHLEN)) >= MAXPATHLEN)
332 pos = MAXPATHLEN - 1;
c7c11a0d 333
c284f34a
WD
334 while (pos > 0 && path[pos-1] != '/')
335 pos--;
5cb37436 336 pos += strlcpy(path+pos, ".rsync", MAXPATHLEN-pos);
c7c11a0d
DD
337
338 if (pos > (MAXPATHLEN-MAX_RENAMES_DIGITS-1)) {
339 errno = ETXTBSY;
340 return -1;
341 }
342
343 /* start where the last one left off to reduce chance of clashes */
344 start = counter;
345 do {
346 sprintf(&path[pos], "%03d", counter);
347 if (++counter >= MAX_RENAMES)
348 counter = 1;
c284f34a 349 } while ((rc = access(path, 0)) == 0 && counter != start);
c7c11a0d 350
4791825d 351 if (verbose > 0) {
c7c11a0d 352 rprintf(FINFO,"renaming %s to %s because of text busy\n",
4791825d
WD
353 fname, path);
354 }
c7c11a0d
DD
355
356 /* maybe we should return rename()'s exit status? Nah. */
357 if (do_rename(fname, path) != 0) {
358 errno = ETXTBSY;
359 return -1;
360 }
361 return 0;
362#endif
363}
364
630f548f
WD
365/* Returns 0 on successful rename, 1 if we successfully copied the file
366 * across filesystems, -2 if copy_file() failed, and -1 on other errors. */
62c9e6b3 367int robust_rename(char *from, char *to, int mode)
c7c11a0d 368{
62c9e6b3
WD
369 int tries = 4;
370
371 while (tries--) {
372 if (do_rename(from, to) == 0)
373 return 0;
374
375 switch (errno) {
376#ifdef ETXTBSY
377 case ETXTBSY:
378 if (robust_unlink(to) != 0)
379 return -1;
380 break;
c7c11a0d 381#endif
62c9e6b3
WD
382 case EXDEV:
383 if (copy_file(from, to, mode) != 0)
384 return -2;
385 do_unlink(from);
630f548f 386 return 1;
62c9e6b3
WD
387 default:
388 return -1;
389 }
390 }
391 return -1;
feaa89c4 392}
3ba62a83
AT
393
394
395static pid_t all_pids[10];
396static int num_pids;
397
4cf64834 398/** Fork and record the pid of the child. **/
3ba62a83
AT
399pid_t do_fork(void)
400{
401 pid_t newpid = fork();
5cb37436 402
4cf64834 403 if (newpid != 0 && newpid != -1) {
3ba62a83
AT
404 all_pids[num_pids++] = newpid;
405 }
406 return newpid;
407}
408
4cf64834
MP
409/**
410 * Kill all children.
411 *
412 * @todo It would be kind of nice to make sure that they are actually
413 * all our children before we kill them, because their pids may have
414 * been recycled by some other process. Perhaps when we wait for a
415 * child, we should remove it from this array. Alternatively we could
416 * perhaps use process groups, but I think that would not work on
417 * ancient Unix versions that don't support them.
418 **/
3ba62a83
AT
419void kill_all(int sig)
420{
421 int i;
4cf64834
MP
422
423 for (i = 0; i < num_pids; i++) {
424 /* Let's just be a little careful where we
425 * point that gun, hey? See kill(2) for the
426 * magic caused by negative values. */
427 pid_t p = all_pids[i];
428
429 if (p == getpid())
430 continue;
431 if (p <= 0)
432 continue;
433
434 kill(p, sig);
3ba62a83
AT
435 }
436}
9486289c 437
4cf64834 438
ac13ad10 439/** Turn a user name into a uid */
8ef4ffd6
AT
440int name_to_uid(char *name, uid_t *uid)
441{
442 struct passwd *pass;
b5bd5542
WD
443 if (!name || !*name)
444 return 0;
8ef4ffd6
AT
445 pass = getpwnam(name);
446 if (pass) {
447 *uid = pass->pw_uid;
448 return 1;
449 }
450 return 0;
451}
452
ac13ad10 453/** Turn a group name into a gid */
8ef4ffd6
AT
454int name_to_gid(char *name, gid_t *gid)
455{
456 struct group *grp;
b5bd5542
WD
457 if (!name || !*name)
458 return 0;
8ef4ffd6
AT
459 grp = getgrnam(name);
460 if (grp) {
461 *gid = grp->gr_gid;
462 return 1;
463 }
464 return 0;
465}
466
ff8b29b8 467
ac13ad10 468/** Lock a byte range in a open file */
31593dd6 469int lock_range(int fd, int offset, int len)
0c515f17 470{
31593dd6 471 struct flock lock;
0c515f17 472
31593dd6
AT
473 lock.l_type = F_WRLCK;
474 lock.l_whence = SEEK_SET;
475 lock.l_start = offset;
476 lock.l_len = len;
477 lock.l_pid = 0;
5cb37436 478
31593dd6 479 return fcntl(fd,F_SETLK,&lock) == 0;
0c515f17 480}
874895d5 481
4791825d
WD
482static int exclude_server_path(char *arg)
483{
484 char *s;
4791825d 485
bf6dcd17 486 if (server_exclude_list.head) {
4791825d
WD
487 for (s = arg; (s = strchr(s, '/')) != NULL; ) {
488 *s = '\0';
9fdb334e 489 if (check_exclude(&server_exclude_list, arg, 1) < 0) {
4791825d
WD
490 /* We must leave arg truncated! */
491 return 1;
492 }
493 *s++ = '/';
494 }
495 }
496 return 0;
497}
874895d5 498
b7061c82
WD
499static void glob_expand_one(char *s, char ***argv_ptr, int *argc_ptr,
500 int *maxargs_ptr)
874895d5 501{
b7061c82 502 char **argv = *argv_ptr;
b5bd5542 503 int argc = *argc_ptr;
b7061c82 504 int maxargs = *maxargs_ptr;
932be9aa 505#if !(defined(HAVE_GLOB) && defined(HAVE_GLOB_H))
b7061c82
WD
506 if (argc == maxargs) {
507 maxargs += MAX_ARGS;
508 if (!(argv = realloc_array(argv, char *, maxargs)))
509 out_of_memory("glob_expand_one");
510 *argv_ptr = argv;
511 *maxargs_ptr = maxargs;
512 }
4135d091
WD
513 if (!*s)
514 s = ".";
b5bd5542 515 s = argv[argc++] = strdup(s);
4791825d 516 exclude_server_path(s);
874895d5
AT
517#else
518 glob_t globbuf;
519 int i;
520
b5bd5542
WD
521 if (maxargs <= argc)
522 return;
4135d091
WD
523 if (!*s)
524 s = ".";
e42c9458 525
4135d091 526 if (sanitize_paths)
1d6b8f9a 527 s = sanitize_path(NULL, s, "", 0);
84a63795
WD
528 else
529 s = strdup(s);
087bf010 530
5cb37436 531 memset(&globbuf, 0, sizeof globbuf);
4791825d
WD
532 if (!exclude_server_path(s))
533 glob(s, 0, NULL, &globbuf);
b7061c82
WD
534 if (MAX((int)globbuf.gl_pathc, 1) > maxargs - argc) {
535 maxargs += globbuf.gl_pathc + MAX_ARGS;
536 if (!(argv = realloc_array(argv, char *, maxargs)))
537 out_of_memory("glob_expand_one");
538 *argv_ptr = argv;
539 *maxargs_ptr = maxargs;
540 }
b5bd5542
WD
541 if (globbuf.gl_pathc == 0)
542 argv[argc++] = s;
543 else {
544 int j = globbuf.gl_pathc;
b5bd5542
WD
545 free(s);
546 for (i = 0; i < j; i++) {
547 if (!(argv[argc++] = strdup(globbuf.gl_pathv[i])))
548 out_of_memory("glob_expand_one");
549 }
874895d5
AT
550 }
551 globfree(&globbuf);
874895d5 552#endif
b5bd5542 553 *argc_ptr = argc;
874895d5 554}
5a96ee05 555
4791825d 556/* This routine is only used in daemon mode. */
b7061c82 557void glob_expand(char *base1, char ***argv_ptr, int *argc_ptr, int *maxargs_ptr)
087bf010 558{
b7061c82 559 char *s = (*argv_ptr)[*argc_ptr];
087bf010 560 char *p, *q;
ba5e128d 561 char *base = base1;
4791825d 562 int base_len = strlen(base);
087bf010 563
b5bd5542
WD
564 if (!s || !*s)
565 return;
087bf010 566
4791825d
WD
567 if (strncmp(s, base, base_len) == 0)
568 s += base_len;
e42c9458 569
b5bd5542
WD
570 if (!(s = strdup(s)))
571 out_of_memory("glob_expand");
087bf010 572
b5bd5542
WD
573 if (asprintf(&base," %s/", base1) <= 0)
574 out_of_memory("glob_expand");
4791825d 575 base_len++;
ba5e128d 576
b5bd5542
WD
577 for (q = s; *q; q = p + base_len) {
578 if ((p = strstr(q, base)) != NULL)
579 *p = '\0'; /* split it at this point */
b7061c82 580 glob_expand_one(q, argv_ptr, argc_ptr, maxargs_ptr);
b5bd5542
WD
581 if (!p)
582 break;
087bf010
AT
583 }
584
087bf010 585 free(s);
ba5e128d 586 free(base);
087bf010 587}
5a96ee05 588
ac13ad10
MP
589/**
590 * Convert a string to lower case
591 **/
5a96ee05
AT
592void strlower(char *s)
593{
594 while (*s) {
b5bd5542
WD
595 if (isupper(*(unsigned char *)s))
596 *s = tolower(*(unsigned char *)s);
5a96ee05
AT
597 s++;
598 }
599}
e42c9458 600
368ad70e
WD
601/* Join strings p1 & p2 into "dest" with a guaranteed '/' between them. (If
602 * p1 ends with a '/', no extra '/' is inserted.) Returns the length of both
a8f7e4b8
WD
603 * strings + 1 (if '/' was inserted), regardless of whether the null-terminated
604 * string fits into destsize. */
368ad70e
WD
605size_t pathjoin(char *dest, size_t destsize, const char *p1, const char *p2)
606{
607 size_t len = strlcpy(dest, p1, destsize);
608 if (len < destsize - 1) {
609 if (!len || dest[len-1] != '/')
610 dest[len++] = '/';
611 if (len < destsize - 1)
612 len += strlcpy(dest + len, p2, destsize - len);
613 else {
614 dest[len] = '\0';
615 len += strlen(p2);
616 }
617 }
618 else
619 len += strlen(p2) + 1; /* Assume we'd insert a '/'. */
620 return len;
621}
622
623/* Join any number of strings together, putting them in "dest". The return
a8f7e4b8
WD
624 * value is the length of all the strings, regardless of whether the null-
625 * terminated whole fits in destsize. Your list of string pointers must end
626 * with a NULL to indicate the end of the list. */
368ad70e
WD
627size_t stringjoin(char *dest, size_t destsize, ...)
628{
5cb37436 629 va_list ap;
368ad70e
WD
630 size_t len, ret = 0;
631 const char *src;
632
633 va_start(ap, destsize);
634 while (1) {
635 if (!(src = va_arg(ap, const char *)))
636 break;
637 len = strlen(src);
638 ret += len;
639 if (destsize > 1) {
640 if (len >= destsize)
641 len = destsize - 1;
642 memcpy(dest, src, len);
643 destsize -= len;
644 dest += len;
645 }
646 }
647 *dest = '\0';
648 va_end(ap);
649
650 return ret;
651}
652
1d6b8f9a
WD
653int count_dir_elements(const char *p)
654{
655 int cnt = 0, new_component = 1;
656 while (*p) {
657 if (*p++ == '/')
658 new_component = 1;
659 else if (new_component) {
660 new_component = 0;
661 cnt++;
662 }
663 }
664 return cnt;
665}
666
0219d4df
WD
667/* Turns multiple adjacent slashes into a single slash; gets rid of "./"
668 * elements; collapses ".." elements except for those at the start of the
669 * string; removes a trailing slash. If the resulting name would be empty,
670 * change it into a ".". */
3104620c 671unsigned int clean_fname(char *name)
5243c216 672{
e012b94f 673 char *limit = name - 1, *t = name, *f = name;
ebdd24d6 674 int anchored;
5243c216 675
b5bd5542 676 if (!name)
3104620c 677 return 0;
5243c216 678
ebdd24d6
WD
679 if ((anchored = *f == '/') != 0)
680 *t++ = *f++;
681 while (*f) {
682 /* discard extra slashes */
683 if (*f == '/') {
684 f++;
685 continue;
5243c216 686 }
ebdd24d6
WD
687 if (*f == '.') {
688 /* discard "." dirs (but NOT a trailing '.'!) */
689 if (f[1] == '/') {
e012b94f 690 f += 2;
ebdd24d6
WD
691 continue;
692 }
693 /* collapse ".." dirs */
694 if (f[1] == '.' && (f[2] == '/' || !f[2])) {
695 char *s = t - 1;
696 if (s == name && anchored) {
697 f += 2;
698 continue;
699 }
700 while (s > limit && *--s != '/') {}
e012b94f 701 if (s != t - 1 && (s < name || *s == '/')) {
ebdd24d6
WD
702 t = s + 1;
703 f += 2;
704 continue;
705 }
706 *t++ = *f++;
707 *t++ = *f++;
708 limit = t;
5243c216
AT
709 }
710 }
ebdd24d6 711 while (*f && (*t++ = *f++) != '/') {}
5243c216 712 }
ebdd24d6
WD
713
714 if (t > name+anchored && t[-1] == '/')
715 t--;
716 if (t == name)
717 *t++ = '.';
718 *t = '\0';
3104620c
WD
719
720 return t - name;
5243c216
AT
721}
722
84a63795
WD
723/* Make path appear as if a chroot had occurred. This handles a leading
724 * "/" (either removing it or expanding it) and any leading or embedded
725 * ".." components that attempt to escape past the module's top dir.
b4235b31 726 *
1d6b8f9a
WD
727 * If dest is NULL, a buffer is allocated to hold the result. It is legal
728 * to call with the dest and the path (p) pointing to the same buffer, but
729 * rootdir will be ignored to avoid expansion of the string.
b4235b31 730 *
1d6b8f9a
WD
731 * The rootdir string contains a value to use in place of a leading slash.
732 * Specify NULL to get the default of lp_path(module_id).
ac13ad10 733 *
1d6b8f9a
WD
734 * If depth is > 0, it is a count of how many '..'s to allow at the start
735 * of the path.
ac13ad10 736 *
1d6b8f9a
WD
737 * We call clean_fname() to clean up the path, but we preserve a trailing
738 * slash because that is sometimes significant on command-line arguments.
1b8e662a 739 */
1d6b8f9a 740char *sanitize_path(char *dest, const char *p, const char *rootdir, int depth)
1b8e662a 741{
44e2e578 742 char *start, *sanp;
84a63795
WD
743 int rlen = 0;
744
745 if (dest != p) {
746 int plen = strlen(p);
1d6b8f9a
WD
747 if (*p == '/') {
748 if (!rootdir)
749 rootdir = lp_path(module_id);
750 rlen = strlen(rootdir);
751 depth = 0;
84a63795
WD
752 p++;
753 }
754 if (dest) {
755 if (rlen + plen + 1 >= MAXPATHLEN)
756 return NULL;
757 } else if (!(dest = new_array(char, rlen + plen + 1)))
758 out_of_memory("sanitize_path");
759 if (rlen) {
1d6b8f9a 760 memcpy(dest, rootdir, rlen);
84a63795
WD
761 if (rlen > 1)
762 dest[rlen++] = '/';
763 }
764 }
cb13abfe 765
84a63795 766 start = sanp = dest + rlen;
1b8e662a 767 while (*p != '\0') {
2d41264e
WD
768 /* discard leading or extra slashes */
769 if (*p == '/') {
770 p++;
771 continue;
772 }
b5f9e67d 773 /* this loop iterates once per filename component in p.
44e2e578 774 * both p (and sanp if the original had a slash) should
b5f9e67d
DD
775 * always be left pointing after a slash
776 */
c284f34a 777 if (*p == '.' && (p[1] == '/' || p[1] == '\0')) {
b5f9e67d 778 /* skip "." component */
2d41264e 779 p++;
cb13abfe
DD
780 continue;
781 }
c284f34a 782 if (*p == '.' && p[1] == '.' && (p[2] == '/' || p[2] == '\0')) {
cb13abfe 783 /* ".." component followed by slash or end */
c284f34a 784 if (depth > 0 && sanp == start) {
cb13abfe
DD
785 /* allow depth levels of .. at the beginning */
786 --depth;
2d41264e
WD
787 *sanp++ = *p++;
788 *sanp++ = *p++;
789 /* move virtual beginning to leave .. alone */
790 start = sanp;
cb13abfe 791 continue;
1b8e662a 792 }
2d41264e
WD
793 p += 2;
794 if (sanp != start) {
795 /* back up sanp one level */
796 --sanp; /* now pointing at slash */
797 while (sanp > start && sanp[-1] != '/') {
798 /* skip back up to slash */
799 sanp--;
b5f9e67d 800 }
1b8e662a 801 }
2d41264e 802 continue;
1b8e662a 803 }
2d41264e
WD
804 /* copy one component through next slash */
805 while (*p && (*sanp++ = *p++) != '/') {}
1b8e662a 806 }
84a63795 807 if (sanp == dest) {
b5f9e67d 808 /* ended up with nothing, so put in "." component */
44e2e578 809 *sanp++ = '.';
b5f9e67d 810 }
44e2e578 811 *sanp = '\0';
1b8e662a 812
84a63795 813 return dest;
14b61c63 814}
5243c216 815
4791825d 816char curr_dir[MAXPATHLEN];
4af8fe4e 817unsigned int curr_dir_len;
5243c216 818
4e5db0ad 819/**
a16d8f2b
WD
820 * Like chdir(), but it keeps track of the current directory (in the
821 * global "curr_dir"), and ensures that the path size doesn't overflow.
822 * Also cleans the path using the clean_fname() function.
4e5db0ad 823 **/
4af8fe4e 824int push_dir(char *dir)
5243c216 825{
5243c216 826 static int initialised;
4af8fe4e 827 unsigned int len;
5243c216
AT
828
829 if (!initialised) {
830 initialised = 1;
5cb37436 831 getcwd(curr_dir, sizeof curr_dir - 1);
4af8fe4e 832 curr_dir_len = strlen(curr_dir);
5243c216
AT
833 }
834
4af8fe4e
WD
835 if (!dir) /* this call was probably just to initialize */
836 return 0;
c226b7c2 837
4af8fe4e
WD
838 len = strlen(dir);
839 if (len == 1 && *dir == '.')
840 return 1;
5243c216 841
4af8fe4e
WD
842 if ((*dir == '/' ? len : curr_dir_len + 1 + len) >= sizeof curr_dir)
843 return 0;
844
845 if (chdir(dir))
846 return 0;
5243c216
AT
847
848 if (*dir == '/') {
4af8fe4e
WD
849 memcpy(curr_dir, dir, len + 1);
850 curr_dir_len = len;
851 } else {
852 curr_dir[curr_dir_len++] = '/';
853 memcpy(curr_dir + curr_dir_len, dir, len + 1);
854 curr_dir_len += len;
5243c216
AT
855 }
856
3104620c 857 curr_dir_len = clean_fname(curr_dir);
5243c216 858
4af8fe4e 859 return 1;
5243c216
AT
860}
861
a16d8f2b
WD
862/**
863 * Reverse a push_dir() call. You must pass in an absolute path
864 * that was copied from a prior value of "curr_dir".
865 **/
5243c216
AT
866int pop_dir(char *dir)
867{
4af8fe4e
WD
868 if (chdir(dir))
869 return 0;
5243c216 870
4af8fe4e
WD
871 curr_dir_len = strlcpy(curr_dir, dir, sizeof curr_dir);
872 if (curr_dir_len >= sizeof curr_dir)
873 curr_dir_len = sizeof curr_dir - 1;
5243c216 874
4af8fe4e 875 return 1;
5243c216 876}
aa9b77a5 877
820b6c9a
WD
878/**
879 * Return the filename, turning any newlines into '?'s. This ensures that
b4afd23c
WD
880 * outputting it on a line of its own cannot generate an empty line. This
881 * function can handle only 2 names at a time!
820b6c9a
WD
882 **/
883const char *safe_fname(const char *fname)
884{
b4afd23c
WD
885 static char fbuf1[MAXPATHLEN], fbuf2[MAXPATHLEN];
886 static char *fbuf = fbuf2;
820b6c9a
WD
887 char *nl = strchr(fname, '\n');
888
889 if (!nl)
890 return fname;
891
b4afd23c
WD
892 fbuf = fbuf == fbuf1 ? fbuf2 : fbuf1;
893 strlcpy(fbuf, fname, MAXPATHLEN);
820b6c9a
WD
894 nl = fbuf + (nl - (char *)fname);
895 do {
896 *nl = '?';
897 } while ((nl = strchr(nl+1, '\n')) != NULL);
898
899 return fbuf;
900}
901
eb61be19
WD
902/**
903 * Return a quoted string with the full pathname of the indicated filename.
904 * The string " (in MODNAME)" may also be appended. The returned pointer
905 * remains valid until the next time full_fname() is called.
906 **/
9a5ade18 907char *full_fname(const char *fn)
eb61be19 908{
eb61be19
WD
909 static char *result = NULL;
910 char *m1, *m2, *m3;
911 char *p1, *p2;
912
913 if (result)
914 free(result);
915
af1a3f9b 916 fn = safe_fname(fn);
eb61be19
WD
917 if (*fn == '/')
918 p1 = p2 = "";
919 else {
920 p1 = curr_dir;
921 p2 = "/";
922 }
923 if (module_id >= 0) {
924 m1 = " (in ";
925 m2 = lp_name(module_id);
926 m3 = ")";
927 if (*p1) {
928 if (!lp_use_chroot(module_id)) {
929 char *p = lp_path(module_id);
930 if (*p != '/' || p[1])
931 p1 += strlen(p);
932 }
933 if (!*p1)
934 p2++;
935 else
936 p1++;
937 }
938 else
939 fn++;
940 } else
941 m1 = m2 = m3 = "";
942
943 asprintf(&result, "\"%s%s%s\"%s%s%s", p1, p2, fn, m1, m2, m3);
944
945 return result;
946}
947
a7260c40
WD
948static char partial_fname[MAXPATHLEN];
949
950char *partial_dir_fname(const char *fname)
951{
952 char *t = partial_fname;
953 int sz = sizeof partial_fname;
954 const char *fn;
955
956 if ((fn = strrchr(fname, '/')) != NULL) {
957 fn++;
958 if (*partial_dir != '/') {
959 int len = fn - fname;
960 strncpy(t, fname, len); /* safe */
961 t += len;
962 sz -= len;
963 }
964 } else
965 fn = fname;
966 if ((int)pathjoin(t, sz, partial_dir, fn) >= sz)
967 return NULL;
c4054610
WD
968 if (server_exclude_list.head
969 && check_exclude(&server_exclude_list, partial_fname, 0) < 0)
970 return NULL;
a7260c40
WD
971
972 return partial_fname;
973}
974
975/* If no --partial-dir option was specified, we don't need to do anything
976 * (the partial-dir is essentially '.'), so just return success. */
977int handle_partial_dir(const char *fname, int create)
978{
979 char *fn, *dir;
980
981 if (fname != partial_fname)
982 return 1;
983 if (!create && *partial_dir == '/')
984 return 1;
985 if (!(fn = strrchr(partial_fname, '/')))
986 return 1;
987
988 *fn = '\0';
989 dir = partial_fname;
990 if (create) {
991 STRUCT_STAT st;
992#if SUPPORT_LINKS
993 int statret = do_lstat(dir, &st);
994#else
995 int statret = do_stat(dir, &st);
996#endif
997 if (statret == 0 && !S_ISDIR(st.st_mode)) {
998 if (do_unlink(dir) < 0)
999 return 0;
1000 statret = -1;
1001 }
1002 if (statret < 0 && do_mkdir(dir, 0700) < 0)
1003 return 0;
1004 } else
1005 do_rmdir(dir);
1006 *fn = '/';
1007
1008 return 1;
1009}
1010
ac13ad10 1011/** We need to supply our own strcmp function for file list comparisons
aa9b77a5
AT
1012 to ensure that signed/unsigned usage is consistent between machines. */
1013int u_strcmp(const char *cs1, const char *cs2)
1014{
5a788ade
AT
1015 const uchar *s1 = (const uchar *)cs1;
1016 const uchar *s2 = (const uchar *)cs2;
aa9b77a5
AT
1017
1018 while (*s1 && *s2 && (*s1 == *s2)) {
1019 s1++; s2++;
1020 }
5cb37436 1021
aa9b77a5
AT
1022 return (int)*s1 - (int)*s2;
1023}
eb86d661 1024
4b957c22 1025
ac13ad10
MP
1026
1027/**
1028 * Determine if a symlink points outside the current directory tree.
036e70b0
MP
1029 * This is considered "unsafe" because e.g. when mirroring somebody
1030 * else's machine it might allow them to establish a symlink to
1031 * /etc/passwd, and then read it through a web server.
1032 *
4e5db0ad
MP
1033 * Null symlinks and absolute symlinks are always unsafe.
1034 *
1035 * Basically here we are concerned with symlinks whose target contains
1036 * "..", because this might cause us to walk back up out of the
1037 * transferred directory. We are not allowed to go back up and
1038 * reenter.
1039 *
036e70b0
MP
1040 * @param dest Target of the symlink in question.
1041 *
25d34a5c 1042 * @param src Top source directory currently applicable. Basically this
036e70b0 1043 * is the first parameter to rsync in a simple invocation, but it's
25d34a5c 1044 * modified by flist.c in slightly complex ways.
036e70b0
MP
1045 *
1046 * @retval True if unsafe
1047 * @retval False is unsafe
4e5db0ad
MP
1048 *
1049 * @sa t_unsafe.c
ac13ad10 1050 **/
7afa3a4a 1051int unsafe_symlink(const char *dest, const char *src)
4b957c22 1052{
7afa3a4a 1053 const char *name, *slash;
4b957c22
AT
1054 int depth = 0;
1055
1056 /* all absolute and null symlinks are unsafe */
b5bd5542
WD
1057 if (!dest || !*dest || *dest == '/')
1058 return 1;
4b957c22
AT
1059
1060 /* find out what our safety margin is */
7afa3a4a
WD
1061 for (name = src; (slash = strchr(name, '/')) != 0; name = slash+1) {
1062 if (strncmp(name, "../", 3) == 0) {
c284f34a 1063 depth = 0;
7afa3a4a 1064 } else if (strncmp(name, "./", 2) == 0) {
4b957c22
AT
1065 /* nothing */
1066 } else {
1067 depth++;
1068 }
1069 }
7afa3a4a
WD
1070 if (strcmp(name, "..") == 0)
1071 depth = 0;
4b957c22 1072
7afa3a4a
WD
1073 for (name = dest; (slash = strchr(name, '/')) != 0; name = slash+1) {
1074 if (strncmp(name, "../", 3) == 0) {
1075 /* if at any point we go outside the current directory
1076 then stop - it is unsafe */
1077 if (--depth < 0)
1078 return 1;
1079 } else if (strncmp(name, "./", 2) == 0) {
4b957c22
AT
1080 /* nothing */
1081 } else {
1082 depth++;
1083 }
4b957c22 1084 }
7afa3a4a
WD
1085 if (strcmp(name, "..") == 0)
1086 depth--;
4b957c22 1087
4b957c22
AT
1088 return (depth < 0);
1089}
375a4556 1090
f7632fc6 1091
ac13ad10 1092/**
b4235b31
MP
1093 * Return the date and time as a string
1094 **/
f7632fc6
AT
1095char *timestring(time_t t)
1096{
1097 static char TimeBuf[200];
1098 struct tm *tm = localtime(&t);
1099
1100#ifdef HAVE_STRFTIME
5cb37436 1101 strftime(TimeBuf, sizeof TimeBuf - 1, "%Y/%m/%d %H:%M:%S", tm);
f7632fc6 1102#else
5cb37436 1103 strlcpy(TimeBuf, asctime(tm), sizeof TimeBuf);
f7632fc6
AT
1104#endif
1105
1106 if (TimeBuf[strlen(TimeBuf)-1] == '\n') {
1107 TimeBuf[strlen(TimeBuf)-1] = 0;
1108 }
1109
1110 return(TimeBuf);
1111}
1112
9ec16c83 1113
e1bd49d6
MP
1114/**
1115 * Sleep for a specified number of milliseconds.
1116 *
1117 * Always returns TRUE. (In the future it might return FALSE if
1118 * interrupted.)
1119 **/
1120int msleep(int t)
9ec16c83 1121{
c284f34a
WD
1122 int tdiff = 0;
1123 struct timeval tval, t1, t2;
9ec16c83
AT
1124
1125 gettimeofday(&t1, NULL);
5cb37436 1126
9ec16c83
AT
1127 while (tdiff < t) {
1128 tval.tv_sec = (t-tdiff)/1000;
1129 tval.tv_usec = 1000*((t-tdiff)%1000);
5cb37436 1130
9ec16c83
AT
1131 errno = 0;
1132 select(0,NULL,NULL, NULL, &tval);
1133
1134 gettimeofday(&t2, NULL);
5cb37436 1135 tdiff = (t2.tv_sec - t1.tv_sec)*1000 +
9ec16c83
AT
1136 (t2.tv_usec - t1.tv_usec)/1000;
1137 }
e1bd49d6
MP
1138
1139 return True;
9ec16c83
AT
1140}
1141
1142
ac13ad10
MP
1143/**
1144 * Determine if two file modification times are equivalent (either
1145 * exact or in the modification timestamp window established by
1146 * --modify-window).
1147 *
1148 * @retval 0 if the times should be treated as the same
1149 *
1150 * @retval +1 if the first is later
1151 *
1152 * @retval -1 if the 2nd is later
1153 **/
5b56cc19
AT
1154int cmp_modtime(time_t file1, time_t file2)
1155{
5b56cc19 1156 if (file2 > file1) {
bc6ebcd2
WD
1157 if (file2 - file1 <= modify_window)
1158 return 0;
5b56cc19
AT
1159 return -1;
1160 }
bc6ebcd2
WD
1161 if (file1 - file2 <= modify_window)
1162 return 0;
5b56cc19
AT
1163 return 1;
1164}
1165
1166
1167#ifdef __INSURE__XX
0f8f98c8
AT
1168#include <dlfcn.h>
1169
ac13ad10
MP
1170/**
1171 This routine is a trick to immediately catch errors when debugging
1172 with insure. A xterm with a gdb is popped up when insure catches
1173 a error. It is Linux specific.
1174**/
0f8f98c8
AT
1175int _Insure_trap_error(int a1, int a2, int a3, int a4, int a5, int a6)
1176{
1177 static int (*fn)();
1178 int ret;
8950ac03 1179 char *cmd;
0f8f98c8 1180
5cb37436 1181 asprintf(&cmd, "/usr/X11R6/bin/xterm -display :0 -T Panic -n Panic -e /bin/sh -c 'cat /tmp/ierrs.*.%d ; gdb /proc/%d/exe %d'",
0f8f98c8
AT
1182 getpid(), getpid(), getpid());
1183
1184 if (!fn) {
1185 static void *h;
1186 h = dlopen("/usr/local/parasoft/insure++lite/lib.linux2/libinsure.so", RTLD_LAZY);
1187 fn = dlsym(h, "_Insure_trap_error");
1188 }
1189
1190 ret = fn(a1, a2, a3, a4, a5, a6);
1191
1192 system(cmd);
1193
8950ac03
AT
1194 free(cmd);
1195
0f8f98c8
AT
1196 return ret;
1197}
1198#endif
58cadc86
WD
1199
1200
1201#define MALLOC_MAX 0x40000000
1202
1203void *_new_array(unsigned int size, unsigned long num)
1204{
1205 if (num >= MALLOC_MAX/size)
1206 return NULL;
1207 return malloc(size * num);
1208}
1209
1210void *_realloc_array(void *ptr, unsigned int size, unsigned long num)
1211{
1212 if (num >= MALLOC_MAX/size)
1213 return NULL;
1214 /* No realloc should need this, but just in case... */
1215 if (!ptr)
1216 return malloc(size * num);
1217 return realloc(ptr, size * num);
1218}