Change sanitize_path() to not use clean_fname() because it removes the
[rsync/rsync.git] / util.c
CommitLineData
c627d613
AT
1/*
2 Copyright (C) Andrew Tridgell 1996
3 Copyright (C) Paul Mackerras 1996
4
5 This program is free software; you can redistribute it and/or modify
6 it under the terms of the GNU General Public License as published by
7 the Free Software Foundation; either version 2 of the License, or
8 (at your option) any later version.
9
10 This program is distributed in the hope that it will be useful,
11 but WITHOUT ANY WARRANTY; without even the implied warranty of
12 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
13 GNU General Public License for more details.
14
15 You should have received a copy of the GNU General Public License
16 along with this program; if not, write to the Free Software
17 Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
18*/
19
20/*
21 Utilities used in rsync
22
23 tridge, June 1996
24 */
25#include "rsync.h"
26
a5343e76
AT
27/****************************************************************************
28Set a fd into nonblocking mode. Uses POSIX O_NONBLOCK if available,
29else
30if SYSV use O_NDELAY
31if BSD use FNDELAY
32****************************************************************************/
33int set_nonblocking(int fd)
94481d91 34{
a5343e76
AT
35 int val;
36#ifdef O_NONBLOCK
37#define FLAG_TO_SET O_NONBLOCK
38#else
39#ifdef SYSV
40#define FLAG_TO_SET O_NDELAY
41#else /* BSD */
42#define FLAG_TO_SET FNDELAY
43#endif
44#endif
45
46 if((val = fcntl(fd, F_GETFL, 0)) == -1)
47 return -1;
48 val |= FLAG_TO_SET;
49 return fcntl( fd, F_SETFL, val);
50#undef FLAG_TO_SET
94481d91
AT
51}
52
d9bea2dd 53
c627d613
AT
54/* this is taken from CVS */
55int piped_child(char **command,int *f_in,int *f_out)
56{
57 int pid;
58 int to_child_pipe[2];
59 int from_child_pipe[2];
60
61 if (pipe(to_child_pipe) < 0 ||
62 pipe(from_child_pipe) < 0) {
9486289c 63 rprintf(FERROR,"pipe: %s\n",strerror(errno));
65417579 64 exit_cleanup(RERR_IPC);
c627d613
AT
65 }
66
67
3ba62a83 68 pid = do_fork();
c627d613 69 if (pid < 0) {
9486289c 70 rprintf(FERROR,"fork: %s\n",strerror(errno));
65417579 71 exit_cleanup(RERR_IPC);
c627d613
AT
72 }
73
74 if (pid == 0)
75 {
6574b4f7 76 extern int orig_umask;
c627d613
AT
77 if (dup2(to_child_pipe[0], STDIN_FILENO) < 0 ||
78 close(to_child_pipe[1]) < 0 ||
79 close(from_child_pipe[0]) < 0 ||
80 dup2(from_child_pipe[1], STDOUT_FILENO) < 0) {
9486289c 81 rprintf(FERROR,"Failed to dup/close : %s\n",strerror(errno));
65417579 82 exit_cleanup(RERR_IPC);
c627d613 83 }
773f2bd4
AT
84 if (to_child_pipe[0] != STDIN_FILENO) close(to_child_pipe[0]);
85 if (from_child_pipe[1] != STDOUT_FILENO) close(from_child_pipe[1]);
6574b4f7 86 umask(orig_umask);
c627d613 87 execvp(command[0], command);
9486289c 88 rprintf(FERROR,"Failed to exec %s : %s\n",
c627d613 89 command[0],strerror(errno));
65417579 90 exit_cleanup(RERR_IPC);
c627d613
AT
91 }
92
93 if (close(from_child_pipe[1]) < 0 ||
94 close(to_child_pipe[0]) < 0) {
9486289c 95 rprintf(FERROR,"Failed to close : %s\n",strerror(errno));
65417579 96 exit_cleanup(RERR_IPC);
c627d613
AT
97 }
98
99 *f_in = from_child_pipe[0];
100 *f_out = to_child_pipe[1];
3eb38818
AT
101
102 set_nonblocking(*f_in);
103 set_nonblocking(*f_out);
c627d613
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104
105 return pid;
106}
107
366345fe
AT
108int local_child(int argc, char **argv,int *f_in,int *f_out)
109{
110 int pid;
111 int to_child_pipe[2];
112 int from_child_pipe[2];
113
114 if (pipe(to_child_pipe) < 0 ||
115 pipe(from_child_pipe) < 0) {
9486289c 116 rprintf(FERROR,"pipe: %s\n",strerror(errno));
65417579 117 exit_cleanup(RERR_IPC);
366345fe
AT
118 }
119
120
121 pid = do_fork();
122 if (pid < 0) {
9486289c 123 rprintf(FERROR,"fork: %s\n",strerror(errno));
65417579 124 exit_cleanup(RERR_IPC);
366345fe
AT
125 }
126
127 if (pid == 0) {
128 extern int am_sender;
129 extern int am_server;
130
131 am_sender = !am_sender;
132 am_server = 1;
133
134 if (dup2(to_child_pipe[0], STDIN_FILENO) < 0 ||
135 close(to_child_pipe[1]) < 0 ||
136 close(from_child_pipe[0]) < 0 ||
137 dup2(from_child_pipe[1], STDOUT_FILENO) < 0) {
9486289c 138 rprintf(FERROR,"Failed to dup/close : %s\n",strerror(errno));
65417579 139 exit_cleanup(RERR_IPC);
366345fe
AT
140 }
141 if (to_child_pipe[0] != STDIN_FILENO) close(to_child_pipe[0]);
142 if (from_child_pipe[1] != STDOUT_FILENO) close(from_child_pipe[1]);
9486289c 143 start_server(STDIN_FILENO, STDOUT_FILENO, argc, argv);
366345fe
AT
144 }
145
146 if (close(from_child_pipe[1]) < 0 ||
147 close(to_child_pipe[0]) < 0) {
9486289c 148 rprintf(FERROR,"Failed to close : %s\n",strerror(errno));
65417579 149 exit_cleanup(RERR_IPC);
366345fe
AT
150 }
151
152 *f_in = from_child_pipe[0];
153 *f_out = to_child_pipe[1];
154
155 return pid;
156}
157
158
c627d613
AT
159
160void out_of_memory(char *str)
161{
9486289c 162 rprintf(FERROR,"ERROR: out of memory in %s\n",str);
65417579 163 exit_cleanup(RERR_MALLOC);
575f2fca
AT
164}
165
166void overflow(char *str)
167{
9486289c 168 rprintf(FERROR,"ERROR: buffer overflow in %s\n",str);
65417579 169 exit_cleanup(RERR_MALLOC);
c627d613
AT
170}
171
172
c627d613
AT
173
174int set_modtime(char *fname,time_t modtime)
175{
31e12522
AT
176 extern int dry_run;
177 if (dry_run) return 0;
178 {
1e9f155a 179#ifdef HAVE_UTIMBUF
31e12522
AT
180 struct utimbuf tbuf;
181 tbuf.actime = time(NULL);
182 tbuf.modtime = modtime;
183 return utime(fname,&tbuf);
c627d613 184#elif defined(HAVE_UTIME)
31e12522
AT
185 time_t t[2];
186 t[0] = time(NULL);
187 t[1] = modtime;
188 return utime(fname,t);
c627d613 189#else
31e12522
AT
190 struct timeval t[2];
191 t[0].tv_sec = time(NULL);
192 t[0].tv_usec = 0;
193 t[1].tv_sec = modtime;
194 t[1].tv_usec = 0;
195 return utimes(fname,t);
c627d613 196#endif
31e12522 197 }
c627d613 198}
94481d91 199
720b47f2 200
6574b4f7
AT
201/****************************************************************************
202create any necessary directories in fname. Unfortunately we don't know
203what perms to give the directory when this is called so we need to rely
204on the umask
205****************************************************************************/
206int create_directory_path(char *fname)
207{
208 extern int orig_umask;
209 char *p;
210
211 while (*fname == '/') fname++;
212 while (strncmp(fname,"./",2)==0) fname += 2;
213
214 p = fname;
215 while ((p=strchr(p,'/'))) {
216 *p = 0;
1b2d733a 217 do_mkdir(fname,0777 & ~orig_umask);
6574b4f7
AT
218 *p = '/';
219 p++;
220 }
221 return 0;
222}
950ab32d
AT
223
224
225/* Write LEN bytes at PTR to descriptor DESC, retrying if interrupted.
226 Return LEN upon success, write's (negative) error code otherwise.
227
228 derived from GNU C's cccp.c.
229*/
a5343e76 230static int full_write(int desc, char *ptr, int len)
950ab32d
AT
231{
232 int total_written;
233
234 total_written = 0;
235 while (len > 0) {
236 int written = write (desc, ptr, len);
237 if (written < 0) {
238#ifdef EINTR
239 if (errno == EINTR)
240 continue;
241#endif
242 return written;
243 }
244 total_written += written;
245 ptr += written;
246 len -= written;
247 }
248 return total_written;
249}
250
251/* Read LEN bytes at PTR from descriptor DESC, retrying if interrupted.
252 Return the actual number of bytes read, zero for EOF, or negative
253 for an error.
254
255 derived from GNU C's cccp.c. */
6e4fb64e 256static int safe_read(int desc, char *ptr, int len)
950ab32d
AT
257{
258 int n_chars;
259
260 if (len <= 0)
261 return len;
262
263#ifdef EINTR
264 do {
265 n_chars = read(desc, ptr, len);
266 } while (n_chars < 0 && errno == EINTR);
267#else
268 n_chars = read(desc, ptr, len);
269#endif
270
271 return n_chars;
272}
273
274
275/* copy a file - this is used in conjunction with the --temp-dir option */
276int copy_file(char *source, char *dest, mode_t mode)
277{
278 int ifd;
279 int ofd;
280 char buf[1024 * 8];
281 int len; /* Number of bytes read into `buf'. */
282
283 ifd = open(source, O_RDONLY);
284 if (ifd == -1) {
9486289c 285 rprintf(FERROR,"open %s: %s\n",
950ab32d
AT
286 source,strerror(errno));
287 return -1;
288 }
289
31e12522 290 if (do_unlink(dest) && errno != ENOENT) {
9486289c 291 rprintf(FERROR,"unlink %s: %s\n",
950ab32d
AT
292 dest,strerror(errno));
293 return -1;
294 }
295
31e12522 296 ofd = do_open(dest, O_WRONLY | O_CREAT | O_TRUNC | O_EXCL, mode);
c46ded46 297 if (ofd == -1) {
9486289c 298 rprintf(FERROR,"open %s: %s\n",
950ab32d
AT
299 dest,strerror(errno));
300 close(ifd);
301 return -1;
302 }
303
304 while ((len = safe_read(ifd, buf, sizeof(buf))) > 0) {
305 if (full_write(ofd, buf, len) < 0) {
9486289c 306 rprintf(FERROR,"write %s: %s\n",
950ab32d
AT
307 dest,strerror(errno));
308 close(ifd);
309 close(ofd);
310 return -1;
311 }
312 }
313
314 close(ifd);
315 close(ofd);
316
317 if (len < 0) {
9486289c 318 rprintf(FERROR,"read %s: %s\n",
950ab32d
AT
319 source,strerror(errno));
320 return -1;
321 }
322
323 return 0;
324}
feaa89c4
AT
325
326/* sleep for a while via select */
327void u_sleep(int usec)
328{
329 struct timeval tv;
330
331 tv.tv_sec = 0;
332 tv.tv_usec = usec;
333 select(0, NULL, NULL, NULL, &tv);
334}
3ba62a83
AT
335
336
337static pid_t all_pids[10];
338static int num_pids;
339
340/* fork and record the pid of the child */
341pid_t do_fork(void)
342{
343 pid_t newpid = fork();
344
345 if (newpid) {
346 all_pids[num_pids++] = newpid;
347 }
348 return newpid;
349}
350
351/* kill all children */
352void kill_all(int sig)
353{
354 int i;
355 for (i=0;i<num_pids;i++) {
356 if (all_pids[i] != getpid())
357 kill(all_pids[i], sig);
358 }
359}
9486289c 360
7a6421fa
AT
361/* like strncpy but does not 0 fill the buffer and always null
362 terminates (thus it can use maxlen+1 space in d) */
363void strlcpy(char *d, char *s, int maxlen)
364{
365 int len = strlen(s);
366 if (len > maxlen) len = maxlen;
367 memcpy(d, s, len);
368 d[len] = 0;
369}
8ef4ffd6 370
e42c9458
AT
371/* like strncat but does not 0 fill the buffer and always null
372 terminates (thus it can use maxlen+1 space in d) */
373void strlcat(char *d, char *s, int maxlen)
374{
375 int len1 = strlen(d);
376 int len2 = strlen(s);
377 if (len1+len2 > maxlen) {
378 len2 = maxlen-len1;
379 }
380 if (len2 > 0) {
381 memcpy(d+len1, s, len2);
382 d[len1+len2] = 0;
383 }
384}
385
8ef4ffd6
AT
386/* turn a user name into a uid */
387int name_to_uid(char *name, uid_t *uid)
388{
389 struct passwd *pass;
390 if (!name || !*name) return 0;
391 pass = getpwnam(name);
392 if (pass) {
393 *uid = pass->pw_uid;
394 return 1;
395 }
396 return 0;
397}
398
399/* turn a group name into a gid */
400int name_to_gid(char *name, gid_t *gid)
401{
402 struct group *grp;
403 if (!name || !*name) return 0;
404 grp = getgrnam(name);
405 if (grp) {
406 *gid = grp->gr_gid;
407 return 1;
408 }
409 return 0;
410}
411
ff8b29b8 412
31593dd6
AT
413/* lock a byte range in a open file */
414int lock_range(int fd, int offset, int len)
0c515f17 415{
31593dd6 416 struct flock lock;
0c515f17 417
31593dd6
AT
418 lock.l_type = F_WRLCK;
419 lock.l_whence = SEEK_SET;
420 lock.l_start = offset;
421 lock.l_len = len;
422 lock.l_pid = 0;
423
424 return fcntl(fd,F_SETLK,&lock) == 0;
0c515f17 425}
874895d5
AT
426
427
087bf010 428static void glob_expand_one(char *s, char **argv, int *argc, int maxargs)
874895d5 429{
932be9aa 430#if !(defined(HAVE_GLOB) && defined(HAVE_GLOB_H))
e42c9458 431 if (!*s) s = ".";
087bf010 432 argv[*argc] = strdup(s);
874895d5
AT
433 (*argc)++;
434 return;
435#else
436 glob_t globbuf;
437 int i;
438
e42c9458
AT
439 if (!*s) s = ".";
440
087bf010
AT
441 argv[*argc] = strdup(s);
442
874895d5
AT
443 memset(&globbuf, 0, sizeof(globbuf));
444 glob(argv[*argc], 0, NULL, &globbuf);
445 if (globbuf.gl_pathc == 0) {
446 (*argc)++;
447 globfree(&globbuf);
448 return;
449 }
450 for (i=0; i<(maxargs - (*argc)) && i<globbuf.gl_pathc;i++) {
451 if (i == 0) free(argv[*argc]);
452 argv[(*argc) + i] = strdup(globbuf.gl_pathv[i]);
453 if (!argv[(*argc) + i]) out_of_memory("glob_expand");
454 }
455 globfree(&globbuf);
456 (*argc) += i;
457#endif
458}
5a96ee05 459
ba5e128d 460void glob_expand(char *base1, char **argv, int *argc, int maxargs)
087bf010
AT
461{
462 char *s = argv[*argc];
463 char *p, *q;
ba5e128d 464 char *base = base1;
087bf010
AT
465
466 if (!s || !*s) return;
467
e42c9458
AT
468 if (strncmp(s, base, strlen(base)) == 0) {
469 s += strlen(base);
470 }
471
087bf010
AT
472 s = strdup(s);
473 if (!s) out_of_memory("glob_expand");
474
ba5e128d
AT
475 base = (char *)malloc(strlen(base1)+3);
476 if (!base) out_of_memory("glob_expand");
477
478 sprintf(base," %s/", base1);
479
087bf010
AT
480 q = s;
481 while ((p = strstr(q,base)) && ((*argc) < maxargs)) {
ba5e128d
AT
482 /* split it at this point */
483 *p = 0;
484 glob_expand_one(q, argv, argc, maxargs);
485 q = p+strlen(base);
087bf010
AT
486 }
487
488 if (*q && (*argc < maxargs)) glob_expand_one(q, argv, argc, maxargs);
489
490 free(s);
ba5e128d 491 free(base);
087bf010 492}
5a96ee05
AT
493
494/*******************************************************************
495 convert a string to lower case
496********************************************************************/
497void strlower(char *s)
498{
499 while (*s) {
500 if (isupper(*s)) *s = tolower(*s);
501 s++;
502 }
503}
e42c9458
AT
504
505/* this is like vsnprintf but the 'n' limit does not include
506 the terminating null. So if you have a 1024 byte buffer then
507 pass 1023 for n */
508int vslprintf(char *str, int n, const char *format, va_list ap)
509{
e42c9458
AT
510 int ret = vsnprintf(str, n, format, ap);
511 if (ret > n || ret < 0) {
512 str[n] = 0;
513 return -1;
514 }
515 str[ret] = 0;
516 return ret;
e42c9458
AT
517}
518
519
520/* like snprintf but always null terminates */
521int slprintf(char *str, int n, char *format, ...)
522{
523 va_list ap;
524 int ret;
525
526 va_start(ap, format);
527 ret = vslprintf(str,n,format,ap);
528 va_end(ap);
529 return ret;
530}
8d9dc9f9 531
fe8c0a98
AT
532
533void *Realloc(void *p, int size)
534{
535 if (!p) return (void *)malloc(size);
536 return (void *)realloc(p, size);
537}
5243c216
AT
538
539
540void clean_fname(char *name)
541{
542 char *p;
543 int l;
544 int modified = 1;
545
546 if (!name) return;
547
548 while (modified) {
549 modified = 0;
550
551 if ((p=strstr(name,"/./"))) {
552 modified = 1;
553 while (*p) {
554 p[0] = p[2];
555 p++;
556 }
557 }
558
559 if ((p=strstr(name,"//"))) {
560 modified = 1;
561 while (*p) {
562 p[0] = p[1];
563 p++;
564 }
565 }
566
567 if (strncmp(p=name,"./",2) == 0) {
568 modified = 1;
569 do {
570 p[0] = p[2];
571 } while (*p++);
572 }
573
574 l = strlen(p=name);
575 if (l > 1 && p[l-1] == '/') {
576 modified = 1;
577 p[l-1] = 0;
578 }
579 }
580}
581
1b8e662a
DD
582/*
583 * Make path appear as if a chroot had occurred:
1b8e662a
DD
584 * 1. remove leading "/" (or replace with "." if at end)
585 * 2. remove leading ".." components
586 * 3. delete any other "<dir>/.." (recursively)
b5f9e67d
DD
587 * While we're at it, remove double slashes and "." components like
588 * clean_fname does(), but DON'T remove a trailing slash because that
589 * is sometimes significant on command line arguments.
1b8e662a
DD
590 * Return a malloc'ed copy.
591 * Contributed by Dave Dykstra <dwd@bell-labs.com>
592 */
593
594char *sanitize_path(char *p)
595{
596 char *copy, *copyp;
597
1b8e662a
DD
598 copy = (char *) malloc(strlen(p)+1);
599 copyp = copy;
b5f9e67d
DD
600 while (*p == '/') {
601 /* remove leading slashes */
602 p++;
603 }
1b8e662a 604 while (*p != '\0') {
b5f9e67d
DD
605 /* this loop iterates once per filename component in p.
606 * both p (and copyp if the original had a slash) should
607 * always be left pointing after a slash
608 */
609 if ((*p == '.') && ((*(p+1) == '/') || (*(p+1) == '\0'))) {
610 /* skip "." component */
611 while (*++p == '/') {
612 /* skip following slashes */
613 ;
614 }
615 } else if ((*p == '.') && (*(p+1) == '.') &&
1b8e662a 616 ((*(p+2) == '/') || (*(p+2) == '\0'))) {
b5f9e67d 617 /* skip ".." component followed by slash or end */
1b8e662a 618 p += 2;
b5f9e67d
DD
619 if (*p == '/')
620 p++;
1b8e662a 621 if (copyp != copy) {
b5f9e67d
DD
622 /* back up the copy one level */
623 --copyp; /* now pointing at slash */
624 while ((copyp > copy) && (*(copyp - 1) != '/')) {
625 /* skip back up to slash */
1b8e662a 626 copyp--;
b5f9e67d 627 }
1b8e662a
DD
628 }
629 } else {
1b8e662a 630 while (1) {
b5f9e67d 631 /* copy one component through next slash */
1b8e662a 632 *copyp++ = *p++;
b5f9e67d
DD
633 if ((*p == '\0') || (*(p-1) == '/')) {
634 while (*p == '/') {
635 /* skip multiple slashes */
636 p++;
637 }
1b8e662a 638 break;
b5f9e67d 639 }
1b8e662a
DD
640 }
641 }
642 }
b5f9e67d
DD
643 if (copyp == copy) {
644 /* ended up with nothing, so put in "." component */
645 *copyp++ = '.';
646 }
1b8e662a
DD
647 *copyp = '\0';
648 return(copy);
649}
650
5243c216
AT
651
652static char curr_dir[MAXPATHLEN];
653
654/* like chdir() but can be reversed with pop_dir() if save is set. It
655 is also much faster as it remembers where we have been */
656char *push_dir(char *dir, int save)
657{
658 char *ret = curr_dir;
659 static int initialised;
660
661 if (!initialised) {
662 initialised = 1;
663 getcwd(curr_dir, sizeof(curr_dir)-1);
664 }
665
666 if (chdir(dir)) return NULL;
667
668 if (save) {
669 ret = strdup(curr_dir);
670 }
671
672 if (*dir == '/') {
673 strlcpy(curr_dir, dir, sizeof(curr_dir)-1);
674 } else {
675 strlcat(curr_dir,"/", sizeof(curr_dir)-1);
676 strlcat(curr_dir,dir, sizeof(curr_dir)-1);
677 }
678
679 clean_fname(curr_dir);
680
681 return ret;
682}
683
684/* reverse a push_dir call */
685int pop_dir(char *dir)
686{
687 int ret;
688
689 ret = chdir(dir);
690 if (ret) {
691 free(dir);
692 return ret;
693 }
694
695 strlcpy(curr_dir, dir, sizeof(curr_dir)-1);
696
697 free(dir);
698
699 return 0;
700}
aa9b77a5
AT
701
702/* we need to supply our own strcmp function for file list comparisons
703 to ensure that signed/unsigned usage is consistent between machines. */
704int u_strcmp(const char *cs1, const char *cs2)
705{
706 const uchar *s1 = (uchar *)cs1;
707 const uchar *s2 = (uchar *)cs2;
708
709 while (*s1 && *s2 && (*s1 == *s2)) {
710 s1++; s2++;
711 }
712
713 return (int)*s1 - (int)*s2;
714}
eb86d661 715
43b06eea 716static OFF_T last_ofs;
eb86d661
AT
717
718void end_progress(void)
719{
720 extern int do_progress, am_server;
721
722 if (do_progress && !am_server) {
723 rprintf(FINFO,"\n");
724 }
43b06eea 725 last_ofs = 0;
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726}
727
728void show_progress(OFF_T ofs, OFF_T size)
729{
730 extern int do_progress, am_server;
731
732 if (do_progress && !am_server) {
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733 if (ofs > last_ofs + 1000) {
734 int pct = (int)((100.0*ofs)/size);
eb86d661 735 rprintf(FINFO,"%.0f (%d%%)\r", (double)ofs, pct);
43b06eea 736 last_ofs = ofs;
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737 }
738 }
739}
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740
741/* determine if a symlink points outside the current directory tree */
742int unsafe_symlink(char *dest, char *src)
743{
744 char *tok;
745 int depth = 0;
746
747 /* all absolute and null symlinks are unsafe */
748 if (!dest || !(*dest) || (*dest == '/')) return 1;
749
750 src = strdup(src);
751 if (!src) out_of_memory("unsafe_symlink");
752
753 /* find out what our safety margin is */
754 for (tok=strtok(src,"/"); tok; tok=strtok(NULL,"/")) {
755 if (strcmp(tok,"..") == 0) {
756 depth=0;
757 } else if (strcmp(tok,".") == 0) {
758 /* nothing */
759 } else {
760 depth++;
761 }
762 }
763 free(src);
764
765 /* drop by one to account for the filename portion */
766 depth--;
767
768 dest = strdup(dest);
769 if (!dest) out_of_memory("unsafe_symlink");
770
771 for (tok=strtok(dest,"/"); tok; tok=strtok(NULL,"/")) {
772 if (strcmp(tok,"..") == 0) {
773 depth--;
774 } else if (strcmp(tok,".") == 0) {
775 /* nothing */
776 } else {
777 depth++;
778 }
779 /* if at any point we go outside the current directory then
780 stop - it is unsafe */
781 if (depth < 0) break;
782 }
783
784 free(dest);
785 return (depth < 0);
786}
375a4556 787
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788
789/****************************************************************************
790 return the date and time as a string
791****************************************************************************/
792char *timestring(time_t t)
793{
794 static char TimeBuf[200];
795 struct tm *tm = localtime(&t);
796
797#ifdef HAVE_STRFTIME
798 strftime(TimeBuf,sizeof(TimeBuf)-1,"%Y/%m/%d %T",tm);
799#else
800 strlcpy(TimeBuf, asctime(tm), sizeof(TimeBuf)-1);
801#endif
802
803 if (TimeBuf[strlen(TimeBuf)-1] == '\n') {
804 TimeBuf[strlen(TimeBuf)-1] = 0;
805 }
806
807 return(TimeBuf);
808}
809