Switching to GPL 3.
[rsync/rsync.git] / flist.c
... / ...
CommitLineData
1/*
2 * Generate and receive file lists.
3 *
4 * Copyright (C) 1996 Andrew Tridgell
5 * Copyright (C) 1996 Paul Mackerras
6 * Copyright (C) 2001, 2002 Martin Pool <mbp@samba.org>
7 * Copyright (C) 2002-2007 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 version 3 as
11 * published by the Free Software Foundation.
12 *
13 * This program is distributed in the hope that it will be useful,
14 * but WITHOUT ANY WARRANTY; without even the implied warranty of
15 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 * GNU General Public License for more details.
17 *
18 * You should have received a copy of the GNU General Public License along
19 * with this program; if not, visit the http://fsf.org website.
20 */
21
22#include "rsync.h"
23#include "rounding.h"
24#include "io.h"
25
26extern int verbose;
27extern int list_only;
28extern int am_root;
29extern int am_server;
30extern int am_daemon;
31extern int am_sender;
32extern int am_generator;
33extern int inc_recurse;
34extern int do_progress;
35extern int always_checksum;
36extern int module_id;
37extern int ignore_errors;
38extern int numeric_ids;
39extern int recurse;
40extern int use_qsort;
41extern int xfer_dirs;
42extern int filesfrom_fd;
43extern int one_file_system;
44extern int copy_dirlinks;
45extern int keep_dirlinks;
46extern int preserve_acls;
47extern int preserve_xattrs;
48extern int preserve_links;
49extern int preserve_hard_links;
50extern int preserve_devices;
51extern int preserve_specials;
52extern int uid_ndx;
53extern int gid_ndx;
54extern int relative_paths;
55extern int implied_dirs;
56extern int file_extra_cnt;
57extern int ignore_perishable;
58extern int non_perishable_cnt;
59extern int prune_empty_dirs;
60extern int copy_links;
61extern int copy_unsafe_links;
62extern int protocol_version;
63extern int sanitize_paths;
64extern struct stats stats;
65
66extern char curr_dir[MAXPATHLEN];
67
68extern struct chmod_mode_struct *chmod_modes;
69
70extern struct filter_list_struct filter_list;
71extern struct filter_list_struct server_filter_list;
72
73#ifdef ICONV_OPTION
74extern int ic_ndx;
75extern int need_unsorted_flist;
76extern iconv_t ic_send, ic_recv;
77#endif
78
79#define PTR_SIZE (sizeof (struct file_struct *))
80
81int io_error;
82int checksum_len;
83dev_t filesystem_dev; /* used to implement -x */
84
85struct file_list *cur_flist, *first_flist, *dir_flist;
86int send_dir_ndx = -1, send_dir_depth = 0;
87int flist_cnt = 0; /* how many (non-tmp) file list objects exist */
88int file_total = 0; /* total of all active items over all file-lists */
89int flist_eof = 0; /* all the file-lists are now known */
90
91/* The tmp_* vars are used as a cache area by make_file() to store data
92 * that the sender doesn't need to remember in its file list. The data
93 * will survive just long enough to be used by send_file_entry(). */
94static dev_t tmp_rdev;
95#ifdef SUPPORT_HARD_LINKS
96static int64 tmp_dev, tmp_ino;
97#endif
98static char tmp_sum[MAX_DIGEST_LEN];
99
100static char empty_sum[MAX_DIGEST_LEN];
101static int flist_count_offset; /* for --delete --progress */
102static int dir_count = 0;
103
104static void clean_flist(struct file_list *flist, int strip_root);
105static void output_flist(struct file_list *flist);
106
107void init_flist(void)
108{
109 if (verbose > 4) {
110 rprintf(FINFO, "FILE_STRUCT_LEN=%d, EXTRA_LEN=%d\n",
111 (int)FILE_STRUCT_LEN, (int)EXTRA_LEN);
112 }
113 checksum_len = protocol_version < 21 ? 2
114 : protocol_version < 30 ? MD4_DIGEST_LEN
115 : MD5_DIGEST_LEN;
116}
117
118static int show_filelist_p(void)
119{
120 return verbose && xfer_dirs && !am_server && !inc_recurse;
121}
122
123static void start_filelist_progress(char *kind)
124{
125 rprintf(FCLIENT, "%s ... ", kind);
126 if (verbose > 1 || do_progress)
127 rprintf(FCLIENT, "\n");
128 rflush(FINFO);
129}
130
131static void emit_filelist_progress(int count)
132{
133 rprintf(FCLIENT, " %d files...\r", count);
134}
135
136static void maybe_emit_filelist_progress(int count)
137{
138 if (do_progress && show_filelist_p() && (count % 100) == 0)
139 emit_filelist_progress(count);
140}
141
142static void finish_filelist_progress(const struct file_list *flist)
143{
144 if (do_progress) {
145 /* This overwrites the progress line */
146 rprintf(FINFO, "%d file%sto consider\n",
147 flist->count, flist->count == 1 ? " " : "s ");
148 } else
149 rprintf(FINFO, "done\n");
150}
151
152void show_flist_stats(void)
153{
154 /* Nothing yet */
155}
156
157static void list_file_entry(struct file_struct *f)
158{
159 char permbuf[PERMSTRING_SIZE];
160 double len;
161
162 if (!F_IS_ACTIVE(f)) {
163 /* this can happen if duplicate names were removed */
164 return;
165 }
166
167 permstring(permbuf, f->mode);
168 len = F_LENGTH(f);
169
170 /* TODO: indicate '+' if the entry has an ACL. */
171
172#ifdef SUPPORT_LINKS
173 if (preserve_links && S_ISLNK(f->mode)) {
174 rprintf(FINFO, "%s %11.0f %s %s -> %s\n",
175 permbuf, len, timestring(f->modtime),
176 f_name(f, NULL), F_SYMLINK(f));
177 } else
178#endif
179 {
180 rprintf(FINFO, "%s %11.0f %s %s\n",
181 permbuf, len, timestring(f->modtime),
182 f_name(f, NULL));
183 }
184}
185
186/* Stat either a symlink or its referent, depending on the settings of
187 * copy_links, copy_unsafe_links, etc. Returns -1 on error, 0 on success.
188 *
189 * If path is the name of a symlink, then the linkbuf buffer (which must hold
190 * MAXPATHLEN chars) will be set to the symlink's target string.
191 *
192 * The stat structure pointed to by stp will contain information about the
193 * link or the referent as appropriate, if they exist. */
194static int readlink_stat(const char *path, STRUCT_STAT *stp, char *linkbuf)
195{
196#ifdef SUPPORT_LINKS
197 if (link_stat(path, stp, copy_dirlinks) < 0)
198 return -1;
199 if (S_ISLNK(stp->st_mode)) {
200 int llen = readlink(path, linkbuf, MAXPATHLEN - 1);
201 if (llen < 0)
202 return -1;
203 linkbuf[llen] = '\0';
204 if (copy_unsafe_links && unsafe_symlink(linkbuf, path)) {
205 if (verbose > 1) {
206 rprintf(FINFO,"copying unsafe symlink \"%s\" -> \"%s\"\n",
207 path, linkbuf);
208 }
209 return x_stat(path, stp, NULL);
210 }
211 }
212 return 0;
213#else
214 return x_stat(path, stp, NULL);
215#endif
216}
217
218int link_stat(const char *path, STRUCT_STAT *stp, int follow_dirlinks)
219{
220#ifdef SUPPORT_LINKS
221 if (copy_links)
222 return x_stat(path, stp, NULL);
223 if (x_lstat(path, stp, NULL) < 0)
224 return -1;
225 if (follow_dirlinks && S_ISLNK(stp->st_mode)) {
226 STRUCT_STAT st;
227 if (x_stat(path, &st, NULL) == 0 && S_ISDIR(st.st_mode))
228 *stp = st;
229 }
230 return 0;
231#else
232 return x_stat(path, stp, NULL);
233#endif
234}
235
236/* This function is used to check if a file should be included/excluded
237 * from the list of files based on its name and type etc. The value of
238 * filter_level is set to either SERVER_FILTERS or ALL_FILTERS. */
239static int is_excluded(char *fname, int is_dir, int filter_level)
240{
241#if 0 /* This currently never happens, so avoid a useless compare. */
242 if (filter_level == NO_FILTERS)
243 return 0;
244#endif
245 if (fname) {
246 /* never exclude '.', even if somebody does --exclude '*' */
247 if (fname[0] == '.' && !fname[1])
248 return 0;
249 /* Handle the -R version of the '.' dir. */
250 if (fname[0] == '/') {
251 int len = strlen(fname);
252 if (fname[len-1] == '.' && fname[len-2] == '/')
253 return 0;
254 }
255 }
256 if (server_filter_list.head
257 && check_filter(&server_filter_list, fname, is_dir) < 0)
258 return 1;
259 if (filter_level != ALL_FILTERS)
260 return 0;
261 if (filter_list.head
262 && check_filter(&filter_list, fname, is_dir) < 0)
263 return 1;
264 return 0;
265}
266
267static void send_directory(int f, struct file_list *flist,
268 char *fbuf, int len, int flags);
269
270static const char *pathname, *orig_dir;
271static int pathname_len;
272
273
274/* Make sure flist can hold at least flist->count + extra entries. */
275static void flist_expand(struct file_list *flist, int extra)
276{
277 struct file_struct **new_ptr;
278
279 if (flist->count + extra <= flist->malloced)
280 return;
281
282 if (flist->malloced < FLIST_START)
283 flist->malloced = FLIST_START;
284 else if (flist->malloced >= FLIST_LINEAR)
285 flist->malloced += FLIST_LINEAR;
286 else
287 flist->malloced *= 2;
288
289 /* In case count jumped or we are starting the list
290 * with a known size just set it. */
291 if (flist->malloced < flist->count + extra)
292 flist->malloced = flist->count + extra;
293
294 new_ptr = realloc_array(flist->files, struct file_struct *,
295 flist->malloced);
296
297 if (verbose >= 2 && flist->malloced != FLIST_START) {
298 rprintf(FCLIENT, "[%s] expand file_list to %.0f bytes, did%s move\n",
299 who_am_i(),
300 (double)sizeof flist->files[0] * flist->malloced,
301 (new_ptr == flist->files) ? " not" : "");
302 }
303
304 flist->files = new_ptr;
305
306 if (!flist->files)
307 out_of_memory("flist_expand");
308}
309
310static void flist_done_allocating(struct file_list *flist)
311{
312 void *ptr = pool_boundary(flist->file_pool, 8*1024);
313 if (flist->pool_boundary == ptr)
314 flist->pool_boundary = NULL; /* list didn't use any pool memory */
315 else
316 flist->pool_boundary = ptr;
317}
318
319int push_pathname(const char *dir, int len)
320{
321 if (dir == pathname)
322 return 1;
323
324 if (!orig_dir)
325 orig_dir = strdup(curr_dir);
326
327 if (pathname && !pop_dir(orig_dir)) {
328 rsyserr(FERROR, errno, "pop_dir %s failed",
329 full_fname(orig_dir));
330 exit_cleanup(RERR_FILESELECT);
331 }
332
333 if (dir && !push_dir(dir, 0)) {
334 io_error |= IOERR_GENERAL;
335 rsyserr(FERROR, errno, "push_dir %s failed in %s",
336 full_fname(dir), curr_dir);
337 return 0;
338 }
339
340 pathname = dir;
341 pathname_len = len >= 0 ? len : dir ? (int)strlen(dir) : 0;
342
343 return 1;
344}
345
346static void send_file_entry(int f, struct file_struct *file, int ndx)
347{
348 static time_t modtime;
349 static mode_t mode;
350 static int64 dev;
351 static dev_t rdev;
352 static uint32 rdev_major;
353 static uid_t uid;
354 static gid_t gid;
355 static char *user_name, *group_name;
356 static char lastname[MAXPATHLEN];
357 char fname[MAXPATHLEN];
358 int first_hlink_ndx = -1;
359 int l1, l2;
360 int flags;
361
362#ifdef ICONV_OPTION
363 if (ic_send != (iconv_t)-1) {
364 ICONV_CONST char *ibuf;
365 char *obuf = fname;
366 size_t ocnt = MAXPATHLEN, icnt;
367
368 iconv(ic_send, NULL,0, NULL,0);
369 if ((ibuf = (ICONV_CONST char *)file->dirname) != NULL) {
370 icnt = strlen(ibuf);
371 ocnt--; /* pre-subtract the space for the '/' */
372 if (iconv(ic_send, &ibuf,&icnt, &obuf,&ocnt) == (size_t)-1)
373 goto convert_error;
374 *obuf++ = '/';
375 }
376
377 ibuf = (ICONV_CONST char *)file->basename;
378 icnt = strlen(ibuf);
379 if (iconv(ic_send, &ibuf,&icnt, &obuf,&ocnt) == (size_t)-1) {
380 convert_error:
381 io_error |= IOERR_GENERAL;
382 rprintf(FINFO,
383 "[%s] cannot convert filename: %s (%s)\n",
384 who_am_i(), f_name(file, fname), strerror(errno));
385 return;
386 }
387 *obuf = '\0';
388 } else
389#endif
390 f_name(file, fname);
391
392 flags = file->flags & FLAG_TOP_DIR; /* FLAG_TOP_DIR == XMIT_TOP_DIR */
393
394 if (file->mode == mode)
395 flags |= XMIT_SAME_MODE;
396 else
397 mode = file->mode;
398 if ((preserve_devices && IS_DEVICE(mode))
399 || (preserve_specials && IS_SPECIAL(mode))) {
400 if (protocol_version < 28) {
401 if (tmp_rdev == rdev)
402 flags |= XMIT_SAME_RDEV_pre28;
403 else
404 rdev = tmp_rdev;
405 } else {
406 rdev = tmp_rdev;
407 if ((uint32)major(rdev) == rdev_major)
408 flags |= XMIT_SAME_RDEV_MAJOR;
409 else
410 rdev_major = major(rdev);
411 if (protocol_version < 30 && (uint32)minor(rdev) <= 0xFFu)
412 flags |= XMIT_RDEV_MINOR_8_pre30;
413 }
414 } else if (protocol_version < 28)
415 rdev = MAKEDEV(0, 0);
416 if (uid_ndx) {
417 if ((uid_t)F_OWNER(file) == uid && *lastname)
418 flags |= XMIT_SAME_UID;
419 else {
420 uid = F_OWNER(file);
421 if (uid_ndx && !numeric_ids) {
422 user_name = add_uid(uid);
423 if (inc_recurse && user_name)
424 flags |= XMIT_USER_NAME_FOLLOWS;
425 }
426 }
427 }
428 if (gid_ndx) {
429 if ((gid_t)F_GROUP(file) == gid && *lastname)
430 flags |= XMIT_SAME_GID;
431 else {
432 gid = F_GROUP(file);
433 if (gid_ndx && !numeric_ids) {
434 group_name = add_gid(gid);
435 if (inc_recurse && group_name)
436 flags |= XMIT_GROUP_NAME_FOLLOWS;
437 }
438 }
439 }
440 if (file->modtime == modtime)
441 flags |= XMIT_SAME_TIME;
442 else
443 modtime = file->modtime;
444
445#ifdef SUPPORT_HARD_LINKS
446 if (tmp_dev != 0) {
447 if (protocol_version >= 30) {
448 struct idev_node *np = idev_node(tmp_dev, tmp_ino);
449 first_hlink_ndx = (int32)(long)np->data - 1;
450 if (first_hlink_ndx < 0) {
451 np->data = (void*)(long)(ndx + 1);
452 flags |= XMIT_HLINK_FIRST;
453 }
454 flags |= XMIT_HLINKED;
455 } else {
456 if (tmp_dev == dev) {
457 if (protocol_version >= 28)
458 flags |= XMIT_SAME_DEV_pre30;
459 } else
460 dev = tmp_dev;
461 flags |= XMIT_HLINKED;
462 }
463 }
464#endif
465
466 for (l1 = 0;
467 lastname[l1] && (fname[l1] == lastname[l1]) && (l1 < 255);
468 l1++) {}
469 l2 = strlen(fname+l1);
470
471 if (l1 > 0)
472 flags |= XMIT_SAME_NAME;
473 if (l2 > 255)
474 flags |= XMIT_LONG_NAME;
475
476 /* We must make sure we don't send a zero flag byte or the
477 * other end will terminate the flist transfer. Note that
478 * the use of XMIT_TOP_DIR on a non-dir has no meaning, so
479 * it's harmless way to add a bit to the first flag byte. */
480 if (protocol_version >= 28) {
481 if (!flags && !S_ISDIR(mode))
482 flags |= XMIT_TOP_DIR;
483 if ((flags & 0xFF00) || !flags) {
484 flags |= XMIT_EXTENDED_FLAGS;
485 write_shortint(f, flags);
486 } else
487 write_byte(f, flags);
488 } else {
489 if (!(flags & 0xFF))
490 flags |= S_ISDIR(mode) ? XMIT_LONG_NAME : XMIT_TOP_DIR;
491 write_byte(f, flags);
492 }
493 if (flags & XMIT_SAME_NAME)
494 write_byte(f, l1);
495 if (flags & XMIT_LONG_NAME)
496 write_varint30(f, l2);
497 else
498 write_byte(f, l2);
499 write_buf(f, fname + l1, l2);
500
501 if (first_hlink_ndx >= 0) {
502 write_varint30(f, first_hlink_ndx);
503 goto the_end;
504 }
505
506 write_varlong30(f, F_LENGTH(file), 3);
507 if (!(flags & XMIT_SAME_TIME)) {
508 if (protocol_version >= 30)
509 write_varlong(f, modtime, 4);
510 else
511 write_int(f, modtime);
512 }
513 if (!(flags & XMIT_SAME_MODE))
514 write_int(f, to_wire_mode(mode));
515 if (uid_ndx && !(flags & XMIT_SAME_UID)) {
516 if (protocol_version < 30)
517 write_int(f, uid);
518 else {
519 write_varint(f, uid);
520 if (flags & XMIT_USER_NAME_FOLLOWS) {
521 int len = strlen(user_name);
522 write_byte(f, len);
523 write_buf(f, user_name, len);
524 }
525 }
526 }
527 if (gid_ndx && !(flags & XMIT_SAME_GID)) {
528 if (protocol_version < 30)
529 write_int(f, gid);
530 else {
531 write_varint(f, gid);
532 if (flags & XMIT_GROUP_NAME_FOLLOWS) {
533 int len = strlen(group_name);
534 write_byte(f, len);
535 write_buf(f, group_name, len);
536 }
537 }
538 }
539 if ((preserve_devices && IS_DEVICE(mode))
540 || (preserve_specials && IS_SPECIAL(mode))) {
541 if (protocol_version < 28) {
542 if (!(flags & XMIT_SAME_RDEV_pre28))
543 write_int(f, (int)rdev);
544 } else {
545 if (!(flags & XMIT_SAME_RDEV_MAJOR))
546 write_varint30(f, major(rdev));
547 if (protocol_version >= 30)
548 write_varint(f, minor(rdev));
549 else if (flags & XMIT_RDEV_MINOR_8_pre30)
550 write_byte(f, minor(rdev));
551 else
552 write_int(f, minor(rdev));
553 }
554 }
555
556#ifdef SUPPORT_LINKS
557 if (preserve_links && S_ISLNK(mode)) {
558 const char *sl = F_SYMLINK(file);
559 int len = strlen(sl);
560 write_varint30(f, len);
561 write_buf(f, sl, len);
562 }
563#endif
564
565#ifdef SUPPORT_HARD_LINKS
566 if (tmp_dev != 0 && protocol_version < 30) {
567 if (protocol_version < 26) {
568 /* 32-bit dev_t and ino_t */
569 write_int(f, (int32)dev);
570 write_int(f, (int32)tmp_ino);
571 } else {
572 /* 64-bit dev_t and ino_t */
573 if (!(flags & XMIT_SAME_DEV_pre30))
574 write_longint(f, dev);
575 write_longint(f, tmp_ino);
576 }
577 }
578#endif
579
580 if (always_checksum && (S_ISREG(mode) || protocol_version < 28)) {
581 const char *sum;
582 if (S_ISREG(mode))
583 sum = tmp_sum;
584 else {
585 /* Prior to 28, we sent a useless set of nulls. */
586 sum = empty_sum;
587 }
588 write_buf(f, sum, checksum_len);
589 }
590
591 the_end:
592 strlcpy(lastname, fname, MAXPATHLEN);
593
594 if (S_ISREG(mode) || S_ISLNK(mode))
595 stats.total_size += F_LENGTH(file);
596}
597
598static struct file_struct *recv_file_entry(struct file_list *flist,
599 int xflags, int f)
600{
601 static int64 modtime;
602 static mode_t mode;
603 static int64 dev;
604 static dev_t rdev;
605 static uint32 rdev_major;
606 static uid_t uid;
607 static gid_t gid;
608 static uint16 gid_flags;
609 static char lastname[MAXPATHLEN], *lastdir;
610 static int lastdir_depth, lastdir_len = -1;
611 static unsigned int del_hier_name_len = 0;
612 static int in_del_hier = 0;
613 char thisname[MAXPATHLEN];
614 unsigned int l1 = 0, l2 = 0;
615 int alloc_len, basename_len, linkname_len;
616 int extra_len = file_extra_cnt * EXTRA_LEN;
617 int first_hlink_ndx = -1;
618 OFF_T file_length;
619 const char *basename;
620 struct file_struct *file;
621 alloc_pool_t *pool;
622 char *bp;
623
624 if (xflags & XMIT_SAME_NAME)
625 l1 = read_byte(f);
626
627 if (xflags & XMIT_LONG_NAME)
628 l2 = read_varint30(f);
629 else
630 l2 = read_byte(f);
631
632 if (l2 >= MAXPATHLEN - l1) {
633 rprintf(FERROR,
634 "overflow: xflags=0x%x l1=%d l2=%d lastname=%s [%s]\n",
635 xflags, l1, l2, lastname, who_am_i());
636 overflow_exit("recv_file_entry");
637 }
638
639 strlcpy(thisname, lastname, l1 + 1);
640 read_sbuf(f, &thisname[l1], l2);
641 thisname[l1 + l2] = 0;
642
643 /* Abuse basename_len for a moment... */
644 basename_len = strlcpy(lastname, thisname, MAXPATHLEN);
645
646#ifdef ICONV_OPTION
647 if (ic_recv != (iconv_t)-1) {
648 char *obuf = thisname;
649 ICONV_CONST char *ibuf = (ICONV_CONST char *)lastname;
650 size_t ocnt = MAXPATHLEN, icnt = basename_len;
651
652 if (icnt >= MAXPATHLEN) {
653 errno = E2BIG;
654 goto convert_error;
655 }
656
657 iconv(ic_recv, NULL,0, NULL,0);
658 if (iconv(ic_recv, &ibuf,&icnt, &obuf,&ocnt) == (size_t)-1) {
659 convert_error:
660 io_error |= IOERR_GENERAL;
661 rprintf(FINFO,
662 "[%s] cannot convert filename: %s (%s)\n",
663 who_am_i(), lastname, strerror(errno));
664 obuf = thisname;
665 }
666 *obuf = '\0';
667 }
668#endif
669
670 clean_fname(thisname, 0);
671
672 if (sanitize_paths)
673 sanitize_path(thisname, thisname, "", 0, NULL);
674
675 if ((basename = strrchr(thisname, '/')) != NULL) {
676 int len = basename++ - thisname;
677 if (len != lastdir_len || memcmp(thisname, lastdir, len) != 0) {
678 lastdir = new_array(char, len + 1);
679 memcpy(lastdir, thisname, len);
680 lastdir[len] = '\0';
681 lastdir_len = len;
682 lastdir_depth = count_dir_elements(lastdir);
683 }
684 } else
685 basename = thisname;
686 basename_len = strlen(basename) + 1; /* count the '\0' */
687
688#ifdef SUPPORT_HARD_LINKS
689 if (protocol_version >= 30
690 && BITS_SETnUNSET(xflags, XMIT_HLINKED, XMIT_HLINK_FIRST)) {
691 struct file_struct *first;
692 first_hlink_ndx = read_varint30(f);
693 if (first_hlink_ndx < 0 || first_hlink_ndx >= flist->count) {
694 rprintf(FERROR,
695 "hard-link reference out of range: %d (%d)\n",
696 first_hlink_ndx, flist->count);
697 exit_cleanup(RERR_PROTOCOL);
698 }
699 first = flist->files[first_hlink_ndx];
700 file_length = F_LENGTH(first);
701 modtime = first->modtime;
702 mode = first->mode;
703 if (uid_ndx)
704 uid = F_OWNER(first);
705 if (gid_ndx)
706 gid = F_GROUP(first);
707 if ((preserve_devices && IS_DEVICE(mode))
708 || (preserve_specials && IS_SPECIAL(mode))) {
709 uint32 *devp = F_RDEV_P(first);
710 rdev = MAKEDEV(DEV_MAJOR(devp), DEV_MINOR(devp));
711 extra_len += 2 * EXTRA_LEN;
712 }
713 if (preserve_links && S_ISLNK(mode))
714 linkname_len = strlen(F_SYMLINK(first)) + 1;
715 else
716 linkname_len = 0;
717 goto create_object;
718 }
719#endif
720
721 file_length = read_varlong30(f, 3);
722 if (!(xflags & XMIT_SAME_TIME)) {
723 if (protocol_version >= 30) {
724 modtime = read_varlong(f, 4);
725#if SIZEOF_TIME_T < SIZEOF_INT64
726 if ((modtime > INT_MAX || modtime < INT_MIN) && !am_generator) {
727 rprintf(FERROR,
728 "Time value of %s truncated on receiver.\n",
729 lastname);
730 }
731#endif
732 } else
733 modtime = read_int(f);
734 }
735 if (!(xflags & XMIT_SAME_MODE))
736 mode = from_wire_mode(read_int(f));
737
738 if (chmod_modes && !S_ISLNK(mode))
739 mode = tweak_mode(mode, chmod_modes);
740
741 if (uid_ndx && !(xflags & XMIT_SAME_UID)) {
742 if (protocol_version < 30)
743 uid = (uid_t)read_int(f);
744 else {
745 uid = (uid_t)read_varint(f);
746 if (xflags & XMIT_USER_NAME_FOLLOWS)
747 uid = recv_user_name(f, uid);
748 else if (inc_recurse && am_root && !numeric_ids)
749 uid = match_uid(uid);
750 }
751 }
752 if (gid_ndx && !(xflags & XMIT_SAME_GID)) {
753 if (protocol_version < 30)
754 gid = (gid_t)read_int(f);
755 else {
756 gid = (gid_t)read_varint(f);
757 gid_flags = 0;
758 if (xflags & XMIT_GROUP_NAME_FOLLOWS)
759 gid = recv_group_name(f, gid, &gid_flags);
760 else if (inc_recurse && (!am_root || !numeric_ids))
761 gid = match_gid(gid, &gid_flags);
762 }
763 }
764
765 if ((preserve_devices && IS_DEVICE(mode))
766 || (preserve_specials && IS_SPECIAL(mode))) {
767 if (protocol_version < 28) {
768 if (!(xflags & XMIT_SAME_RDEV_pre28))
769 rdev = (dev_t)read_int(f);
770 } else {
771 uint32 rdev_minor;
772 if (!(xflags & XMIT_SAME_RDEV_MAJOR))
773 rdev_major = read_varint30(f);
774 if (protocol_version >= 30)
775 rdev_minor = read_varint(f);
776 else if (xflags & XMIT_RDEV_MINOR_8_pre30)
777 rdev_minor = read_byte(f);
778 else
779 rdev_minor = read_int(f);
780 rdev = MAKEDEV(rdev_major, rdev_minor);
781 }
782 extra_len += 2 * EXTRA_LEN;
783 file_length = 0;
784 } else if (protocol_version < 28)
785 rdev = MAKEDEV(0, 0);
786
787#ifdef SUPPORT_LINKS
788 if (preserve_links && S_ISLNK(mode)) {
789 linkname_len = read_varint30(f) + 1; /* count the '\0' */
790 if (linkname_len <= 0 || linkname_len > MAXPATHLEN) {
791 rprintf(FERROR, "overflow: linkname_len=%d\n",
792 linkname_len - 1);
793 overflow_exit("recv_file_entry");
794 }
795 }
796 else
797#endif
798 linkname_len = 0;
799
800#ifdef SUPPORT_HARD_LINKS
801 create_object:
802 if (preserve_hard_links) {
803 if (protocol_version < 28 && S_ISREG(mode))
804 xflags |= XMIT_HLINKED;
805 if (xflags & XMIT_HLINKED)
806 extra_len += EXTRA_LEN;
807 }
808#endif
809
810#ifdef SUPPORT_ACLS
811 /* We need one or two index int32s when we're preserving ACLs. */
812 if (preserve_acls)
813 extra_len += (S_ISDIR(mode) ? 2 : 1) * EXTRA_LEN;
814#endif
815
816 if (always_checksum && S_ISREG(mode))
817 extra_len += SUM_EXTRA_CNT * EXTRA_LEN;
818
819 if (file_length > 0xFFFFFFFFu && S_ISREG(mode))
820 extra_len += EXTRA_LEN;
821
822#if EXTRA_ROUNDING > 0
823 if (extra_len & (EXTRA_ROUNDING * EXTRA_LEN))
824 extra_len = (extra_len | (EXTRA_ROUNDING * EXTRA_LEN)) + EXTRA_LEN;
825#endif
826
827 if (inc_recurse && S_ISDIR(mode)) {
828 if (one_file_system) {
829 /* Room to save the dir's device for -x */
830 extra_len += 2 * EXTRA_LEN;
831 }
832 pool = dir_flist->file_pool;
833 } else
834 pool = flist->file_pool;
835
836 alloc_len = FILE_STRUCT_LEN + extra_len + basename_len
837 + linkname_len;
838 bp = pool_alloc(pool, alloc_len, "recv_file_entry");
839
840 memset(bp, 0, extra_len + FILE_STRUCT_LEN);
841 bp += extra_len;
842 file = (struct file_struct *)bp;
843 bp += FILE_STRUCT_LEN;
844
845 memcpy(bp, basename, basename_len);
846 bp += basename_len + linkname_len; /* skip space for symlink too */
847
848#ifdef SUPPORT_HARD_LINKS
849 if (xflags & XMIT_HLINKED)
850 file->flags |= FLAG_HLINKED;
851#endif
852 file->modtime = (time_t)modtime;
853 file->len32 = (uint32)file_length;
854 if (file_length > 0xFFFFFFFFu && S_ISREG(mode)) {
855 file->flags |= FLAG_LENGTH64;
856 OPT_EXTRA(file, 0)->unum = (uint32)(file_length >> 32);
857 }
858 file->mode = mode;
859 if (uid_ndx)
860 F_OWNER(file) = uid;
861 if (gid_ndx) {
862 F_GROUP(file) = gid;
863 file->flags |= gid_flags;
864 }
865#ifdef ICONV_OPTION
866 if (ic_ndx)
867 F_NDX(file) = flist->count + flist->ndx_start;
868#endif
869
870 if (basename != thisname) {
871 file->dirname = lastdir;
872 F_DEPTH(file) = lastdir_depth + 1;
873 } else
874 F_DEPTH(file) = 1;
875
876 if (S_ISDIR(mode)) {
877 if (basename_len == 1+1 && *basename == '.') /* +1 for '\0' */
878 F_DEPTH(file)--;
879 if (xflags & XMIT_TOP_DIR) {
880 in_del_hier = recurse;
881 del_hier_name_len = F_DEPTH(file) == 0 ? 0 : l1 + l2;
882 if (relative_paths && del_hier_name_len > 2
883 && lastname[del_hier_name_len-1] == '.'
884 && lastname[del_hier_name_len-2] == '/')
885 del_hier_name_len -= 2;
886 file->flags |= FLAG_TOP_DIR | FLAG_XFER_DIR;
887 } else if (in_del_hier) {
888 if (!relative_paths || !del_hier_name_len
889 || (l1 >= del_hier_name_len
890 && lastname[del_hier_name_len] == '/'))
891 file->flags |= FLAG_XFER_DIR;
892 else
893 in_del_hier = 0;
894 }
895 }
896
897 if ((preserve_devices && IS_DEVICE(mode))
898 || (preserve_specials && IS_SPECIAL(mode))) {
899 uint32 *devp = F_RDEV_P(file);
900 DEV_MAJOR(devp) = major(rdev);
901 DEV_MINOR(devp) = minor(rdev);
902 }
903
904#ifdef SUPPORT_LINKS
905 if (linkname_len) {
906 bp = (char*)file->basename + basename_len;
907 if (first_hlink_ndx >= 0) {
908 struct file_struct *first = flist->files[first_hlink_ndx];
909 memcpy(bp, F_SYMLINK(first), linkname_len);
910 } else
911 read_sbuf(f, bp, linkname_len - 1);
912 if (sanitize_paths)
913 sanitize_path(bp, bp, "", lastdir_depth, NULL);
914 }
915#endif
916
917#ifdef SUPPORT_HARD_LINKS
918 if (preserve_hard_links && xflags & XMIT_HLINKED) {
919 if (protocol_version >= 30) {
920 F_HL_GNUM(file) = xflags & XMIT_HLINK_FIRST
921 ? flist->count : first_hlink_ndx;
922 } else {
923 static int32 cnt = 0;
924 struct idev_node *np;
925 int64 ino;
926 int32 ndx;
927 if (protocol_version < 26) {
928 dev = read_int(f);
929 ino = read_int(f);
930 } else {
931 if (!(xflags & XMIT_SAME_DEV_pre30))
932 dev = read_longint(f);
933 ino = read_longint(f);
934 }
935 np = idev_node(dev, ino);
936 ndx = (int32)(long)np->data - 1;
937 if (ndx < 0) {
938 ndx = cnt++;
939 np->data = (void*)(long)cnt;
940 }
941 F_HL_GNUM(file) = ndx;
942 }
943 }
944#endif
945
946 if (always_checksum && (S_ISREG(mode) || protocol_version < 28)) {
947 if (S_ISREG(mode))
948 bp = (char*)F_SUM(file);
949 else {
950 /* Prior to 28, we get a useless set of nulls. */
951 bp = tmp_sum;
952 }
953 if (first_hlink_ndx >= 0) {
954 struct file_struct *first = flist->files[first_hlink_ndx];
955 memcpy(bp, F_SUM(first), checksum_len);
956 } else
957 read_buf(f, bp, checksum_len);
958 }
959
960#ifdef SUPPORT_ACLS
961 if (preserve_acls && !S_ISLNK(mode))
962 receive_acl(file, f);
963#endif
964#ifdef SUPPORT_XATTRS
965 if (preserve_xattrs)
966 receive_xattr(file, f );
967#endif
968
969 if (S_ISREG(mode) || S_ISLNK(mode))
970 stats.total_size += file_length;
971
972 return file;
973}
974
975/**
976 * Create a file_struct for a named file by reading its stat()
977 * information and performing extensive checks against global
978 * options.
979 *
980 * @return the new file, or NULL if there was an error or this file
981 * should be excluded.
982 *
983 * @todo There is a small optimization opportunity here to avoid
984 * stat()ing the file in some circumstances, which has a certain cost.
985 * We are called immediately after doing readdir(), and so we may
986 * already know the d_type of the file. We could for example avoid
987 * statting directories if we're not recursing, but this is not a very
988 * important case. Some systems may not have d_type.
989 **/
990struct file_struct *make_file(const char *fname, struct file_list *flist,
991 STRUCT_STAT *stp, int flags, int filter_level)
992{
993 static char *lastdir;
994 static int lastdir_len = -1;
995 struct file_struct *file;
996 STRUCT_STAT st;
997 char thisname[MAXPATHLEN];
998 char linkname[MAXPATHLEN];
999 int alloc_len, basename_len, linkname_len;
1000 int extra_len = file_extra_cnt * EXTRA_LEN;
1001 const char *basename;
1002 alloc_pool_t *pool;
1003 char *bp;
1004
1005 if (strlcpy(thisname, fname, sizeof thisname)
1006 >= sizeof thisname - pathname_len) {
1007 rprintf(FINFO, "skipping overly long name: %s\n", fname);
1008 return NULL;
1009 }
1010 clean_fname(thisname, 0);
1011 if (sanitize_paths)
1012 sanitize_path(thisname, thisname, "", 0, NULL);
1013
1014 if (stp && S_ISDIR(stp->st_mode)) {
1015 st = *stp; /* Needed for "symlink/." with --relative. */
1016 *linkname = '\0'; /* make IBM code checker happy */
1017 } else if (readlink_stat(thisname, &st, linkname) != 0) {
1018 int save_errno = errno;
1019 /* See if file is excluded before reporting an error. */
1020 if (filter_level != NO_FILTERS
1021 && (is_excluded(thisname, 0, filter_level)
1022 || is_excluded(thisname, 1, filter_level))) {
1023 if (ignore_perishable && save_errno != ENOENT)
1024 non_perishable_cnt++;
1025 return NULL;
1026 }
1027 if (save_errno == ENOENT) {
1028#ifdef SUPPORT_LINKS
1029 /* Avoid "vanished" error if symlink points nowhere. */
1030 if (copy_links && x_lstat(thisname, &st, NULL) == 0
1031 && S_ISLNK(st.st_mode)) {
1032 io_error |= IOERR_GENERAL;
1033 rprintf(FERROR, "symlink has no referent: %s\n",
1034 full_fname(thisname));
1035 } else
1036#endif
1037 {
1038 enum logcode c = am_daemon && protocol_version < 28
1039 ? FERROR : FINFO;
1040 io_error |= IOERR_VANISHED;
1041 rprintf(c, "file has vanished: %s\n",
1042 full_fname(thisname));
1043 }
1044 } else {
1045 io_error |= IOERR_GENERAL;
1046 rsyserr(FERROR, save_errno, "readlink %s failed",
1047 full_fname(thisname));
1048 }
1049 return NULL;
1050 }
1051
1052 /* backup.c calls us with filter_level set to NO_FILTERS. */
1053 if (filter_level == NO_FILTERS)
1054 goto skip_filters;
1055
1056 if (S_ISDIR(st.st_mode) && !xfer_dirs) {
1057 rprintf(FINFO, "skipping directory %s\n", thisname);
1058 return NULL;
1059 }
1060
1061 /* -x only affects directories because we need to avoid recursing
1062 * into a mount-point directory, not to avoid copying a symlinked
1063 * file if -L (or similar) was specified. */
1064 if (one_file_system && st.st_dev != filesystem_dev
1065 && S_ISDIR(st.st_mode)) {
1066 if (one_file_system > 1) {
1067 if (verbose > 2) {
1068 rprintf(FINFO, "skipping mount-point dir %s\n",
1069 thisname);
1070 }
1071 return NULL;
1072 }
1073 flags |= FLAG_MOUNT_DIR;
1074 }
1075
1076 if (is_excluded(thisname, S_ISDIR(st.st_mode) != 0, filter_level)) {
1077 if (ignore_perishable)
1078 non_perishable_cnt++;
1079 return NULL;
1080 }
1081
1082 if (lp_ignore_nonreadable(module_id)) {
1083#ifdef SUPPORT_LINKS
1084 if (!S_ISLNK(st.st_mode))
1085#endif
1086 if (access(thisname, R_OK) != 0)
1087 return NULL;
1088 }
1089
1090 skip_filters:
1091
1092 /* Only divert a directory in the main transfer. */
1093 if (flist) {
1094 if (flist->prev && S_ISDIR(st.st_mode)
1095 && flags & FLAG_DIVERT_DIRS) {
1096 /* Room for parent/sibling/next-child info. */
1097 extra_len += 3 * EXTRA_LEN;
1098 dir_count++;
1099 pool = dir_flist->file_pool;
1100 } else
1101 pool = flist->file_pool;
1102 } else
1103 pool = NULL;
1104
1105 if (verbose > 2) {
1106 rprintf(FINFO, "[%s] make_file(%s,*,%d)\n",
1107 who_am_i(), thisname, filter_level);
1108 }
1109
1110 if ((basename = strrchr(thisname, '/')) != NULL) {
1111 int len = basename++ - thisname;
1112 if (len != lastdir_len || memcmp(thisname, lastdir, len) != 0) {
1113 lastdir = new_array(char, len + 1);
1114 memcpy(lastdir, thisname, len);
1115 lastdir[len] = '\0';
1116 lastdir_len = len;
1117 }
1118 } else
1119 basename = thisname;
1120 basename_len = strlen(basename) + 1; /* count the '\0' */
1121
1122#ifdef SUPPORT_LINKS
1123 linkname_len = S_ISLNK(st.st_mode) ? strlen(linkname) + 1 : 0;
1124#else
1125 linkname_len = 0;
1126#endif
1127
1128 if (st.st_size > 0xFFFFFFFFu && S_ISREG(st.st_mode))
1129 extra_len += EXTRA_LEN;
1130
1131#if EXTRA_ROUNDING > 0
1132 if (extra_len & (EXTRA_ROUNDING * EXTRA_LEN))
1133 extra_len = (extra_len | (EXTRA_ROUNDING * EXTRA_LEN)) + EXTRA_LEN;
1134#endif
1135
1136 alloc_len = FILE_STRUCT_LEN + extra_len + basename_len
1137 + linkname_len;
1138 if (pool)
1139 bp = pool_alloc(pool, alloc_len, "make_file");
1140 else {
1141 if (!(bp = new_array(char, alloc_len)))
1142 out_of_memory("make_file");
1143 }
1144
1145 memset(bp, 0, extra_len + FILE_STRUCT_LEN);
1146 bp += extra_len;
1147 file = (struct file_struct *)bp;
1148 bp += FILE_STRUCT_LEN;
1149
1150 memcpy(bp, basename, basename_len);
1151 bp += basename_len + linkname_len; /* skip space for symlink too */
1152
1153#ifdef SUPPORT_HARD_LINKS
1154 if (preserve_hard_links && flist && flist->prev) {
1155 if (protocol_version >= 28
1156 ? (!S_ISDIR(st.st_mode) && st.st_nlink > 1)
1157 : S_ISREG(st.st_mode)) {
1158 tmp_dev = st.st_dev;
1159 tmp_ino = st.st_ino;
1160 } else
1161 tmp_dev = 0;
1162 }
1163#endif
1164
1165#ifdef HAVE_STRUCT_STAT_ST_RDEV
1166 if (IS_DEVICE(st.st_mode) || IS_SPECIAL(st.st_mode)) {
1167 tmp_rdev = st.st_rdev;
1168 st.st_size = 0;
1169 }
1170#endif
1171
1172 file->flags = flags;
1173 file->modtime = st.st_mtime;
1174 file->len32 = (uint32)st.st_size;
1175 if (st.st_size > 0xFFFFFFFFu && S_ISREG(st.st_mode)) {
1176 file->flags |= FLAG_LENGTH64;
1177 OPT_EXTRA(file, 0)->unum = (uint32)(st.st_size >> 32);
1178 }
1179 file->mode = st.st_mode;
1180 if (uid_ndx)
1181 F_OWNER(file) = st.st_uid;
1182 if (gid_ndx)
1183 F_GROUP(file) = st.st_gid;
1184
1185 if (basename != thisname)
1186 file->dirname = lastdir;
1187
1188#ifdef SUPPORT_LINKS
1189 if (linkname_len) {
1190 bp = (char*)file->basename + basename_len;
1191 memcpy(bp, linkname, linkname_len);
1192 }
1193#endif
1194
1195 if (always_checksum && am_sender && S_ISREG(st.st_mode))
1196 file_checksum(thisname, tmp_sum, st.st_size);
1197
1198 F_PATHNAME(file) = pathname;
1199
1200 /* This code is only used by the receiver when it is building
1201 * a list of files for a delete pass. */
1202 if (keep_dirlinks && linkname_len && flist) {
1203 STRUCT_STAT st2;
1204 int save_mode = file->mode;
1205 file->mode = S_IFDIR; /* Find a directory with our name. */
1206 if (flist_find(dir_flist, file) >= 0
1207 && x_stat(thisname, &st2, NULL) == 0 && S_ISDIR(st2.st_mode)) {
1208 file->modtime = st2.st_mtime;
1209 file->len32 = 0;
1210 file->mode = st2.st_mode;
1211 if (uid_ndx)
1212 F_OWNER(file) = st2.st_uid;
1213 if (gid_ndx)
1214 F_GROUP(file) = st2.st_gid;
1215 } else
1216 file->mode = save_mode;
1217 }
1218
1219 if (basename_len == 0+1)
1220 return NULL;
1221
1222#ifdef ICONV_OPTION
1223 if (ic_ndx)
1224 F_NDX(file) = dir_count - 1;
1225#endif
1226
1227 return file;
1228}
1229
1230/* Only called for temporary file_struct entries created by make_file(). */
1231void unmake_file(struct file_struct *file)
1232{
1233 int extra_cnt = file_extra_cnt + LEN64_BUMP(file);
1234#if EXTRA_ROUNDING > 0
1235 if (extra_cnt & EXTRA_ROUNDING)
1236 extra_cnt = (extra_cnt | EXTRA_ROUNDING) + 1;
1237#endif
1238 free(REQ_EXTRA(file, extra_cnt));
1239}
1240
1241static struct file_struct *send_file_name(int f, struct file_list *flist,
1242 char *fname, STRUCT_STAT *stp,
1243 int flags, int filter_flags)
1244{
1245 struct file_struct *file;
1246#if defined SUPPORT_ACLS || defined SUPPORT_XATTRS
1247 statx sx;
1248#endif
1249
1250 file = make_file(fname, flist, stp, flags, filter_flags);
1251 if (!file)
1252 return NULL;
1253
1254 if (chmod_modes && !S_ISLNK(file->mode))
1255 file->mode = tweak_mode(file->mode, chmod_modes);
1256
1257#ifdef SUPPORT_ACLS
1258 if (preserve_acls && !S_ISLNK(file->mode) && f >= 0) {
1259 sx.st.st_mode = file->mode;
1260 sx.acc_acl = sx.def_acl = NULL;
1261 if (get_acl(fname, &sx) < 0)
1262 return NULL;
1263 }
1264#endif
1265#ifdef SUPPORT_XATTRS
1266 if (preserve_xattrs && f >= 0) {
1267 sx.xattr = NULL;
1268 if (get_xattr(fname, &sx) < 0)
1269 return NULL;
1270 }
1271#endif
1272
1273 maybe_emit_filelist_progress(flist->count + flist_count_offset);
1274
1275 flist_expand(flist, 1);
1276 flist->files[flist->count++] = file;
1277 if (f >= 0) {
1278 send_file_entry(f, file, flist->count - 1);
1279#ifdef SUPPORT_ACLS
1280 if (preserve_acls && !S_ISLNK(file->mode)) {
1281 send_acl(&sx, f);
1282 free_acl(&sx);
1283 }
1284#endif
1285#ifdef SUPPORT_XATTRS
1286 if (preserve_xattrs) {
1287 F_XATTR(file) = send_xattr(&sx, f);
1288 free_xattr(&sx);
1289 }
1290#endif
1291 }
1292 return file;
1293}
1294
1295static void send_if_directory(int f, struct file_list *flist,
1296 struct file_struct *file,
1297 char *fbuf, unsigned int ol,
1298 int flags)
1299{
1300 char is_dot_dir = fbuf[ol-1] == '.' && (ol == 1 || fbuf[ol-2] == '/');
1301
1302 if (S_ISDIR(file->mode)
1303 && !(file->flags & FLAG_MOUNT_DIR) && f_name(file, fbuf)) {
1304 void *save_filters;
1305 unsigned int len = strlen(fbuf);
1306 if (len > 1 && fbuf[len-1] == '/')
1307 fbuf[--len] = '\0';
1308 if (len >= MAXPATHLEN - 1) {
1309 io_error |= IOERR_GENERAL;
1310 rprintf(FERROR, "skipping long-named directory: %s\n",
1311 full_fname(fbuf));
1312 return;
1313 }
1314 save_filters = push_local_filters(fbuf, len);
1315 send_directory(f, flist, fbuf, len, flags);
1316 pop_local_filters(save_filters);
1317 fbuf[ol] = '\0';
1318 if (is_dot_dir)
1319 fbuf[ol-1] = '.';
1320 }
1321}
1322
1323static int file_compare(const void *file1, const void *file2)
1324{
1325 return f_name_cmp(*(struct file_struct **)file1,
1326 *(struct file_struct **)file2);
1327}
1328
1329/* The guts of a merge-sort algorithm. This was derived from the glibc
1330 * version, but I (Wayne) changed the merge code to do less copying and
1331 * to require only half the amount of temporary memory. */
1332static void fsort_tmp(struct file_struct **fp, size_t num,
1333 struct file_struct **tmp)
1334{
1335 struct file_struct **f1, **f2, **t;
1336 size_t n1, n2;
1337
1338 n1 = num / 2;
1339 n2 = num - n1;
1340 f1 = fp;
1341 f2 = fp + n1;
1342
1343 if (n1 > 1)
1344 fsort_tmp(f1, n1, tmp);
1345 if (n2 > 1)
1346 fsort_tmp(f2, n2, tmp);
1347
1348 while (f_name_cmp(*f1, *f2) <= 0) {
1349 if (!--n1)
1350 return;
1351 f1++;
1352 }
1353
1354 t = tmp;
1355 memcpy(t, f1, n1 * PTR_SIZE);
1356
1357 *f1++ = *f2++, n2--;
1358
1359 while (n1 > 0 && n2 > 0) {
1360 if (f_name_cmp(*t, *f2) <= 0)
1361 *f1++ = *t++, n1--;
1362 else
1363 *f1++ = *f2++, n2--;
1364 }
1365
1366 if (n1 > 0)
1367 memcpy(f1, t, n1 * PTR_SIZE);
1368}
1369
1370/* This file-struct sorting routine makes sure that any identical names in
1371 * the file list stay in the same order as they were in the original list.
1372 * This is particularly vital in inc_recurse mode where we expect a sort
1373 * on the flist to match the exact order of a sort on the dir_flist. */
1374static void fsort(struct file_struct **fp, size_t num)
1375{
1376 if (num <= 1)
1377 return;
1378
1379 if (use_qsort)
1380 qsort(fp, num, PTR_SIZE, file_compare);
1381 else {
1382 struct file_struct **tmp = new_array(struct file_struct *,
1383 (num+1) / 2);
1384 fsort_tmp(fp, num, tmp);
1385 free(tmp);
1386 }
1387}
1388
1389/* We take an entire set of sibling dirs from the sorted flist and link them
1390 * into the tree, setting the appropriate parent/child/sibling pointers. */
1391static void add_dirs_to_tree(int parent_ndx, struct file_list *from_flist,
1392 int dir_cnt)
1393{
1394 int i;
1395 int32 *dp = NULL;
1396 int32 *parent_dp = parent_ndx < 0 ? NULL
1397 : F_DIRNODE_P(dir_flist->sorted[parent_ndx]);
1398
1399 flist_expand(dir_flist, dir_cnt);
1400 dir_flist->sorted = dir_flist->files;
1401
1402 for (i = 0; dir_cnt; i++) {
1403 struct file_struct *file = from_flist->sorted[i];
1404
1405 if (!S_ISDIR(file->mode))
1406 continue;
1407
1408 dir_flist->files[dir_flist->count++] = file;
1409 dir_cnt--;
1410
1411 if (!(file->flags & FLAG_XFER_DIR)
1412 || file->flags & FLAG_MOUNT_DIR)
1413 continue;
1414
1415 if (dp)
1416 DIR_NEXT_SIBLING(dp) = dir_flist->count - 1;
1417 else if (parent_dp)
1418 DIR_FIRST_CHILD(parent_dp) = dir_flist->count - 1;
1419 else
1420 send_dir_ndx = dir_flist->count - 1;
1421
1422 dp = F_DIRNODE_P(file);
1423 DIR_PARENT(dp) = parent_ndx;
1424 DIR_FIRST_CHILD(dp) = -1;
1425 }
1426 if (dp)
1427 DIR_NEXT_SIBLING(dp) = -1;
1428}
1429
1430/* This function is normally called by the sender, but the receiving side also
1431 * calls it from get_dirlist() with f set to -1 so that we just construct the
1432 * file list in memory without sending it over the wire. Also, get_dirlist()
1433 * might call this with f set to -2, which also indicates that local filter
1434 * rules should be ignored. */
1435static void send_directory(int f, struct file_list *flist, char *fbuf, int len,
1436 int flags)
1437{
1438 struct dirent *di;
1439 unsigned remainder;
1440 char *p;
1441 DIR *d;
1442 int divert_dirs = (flags & FLAG_DIVERT_DIRS) != 0;
1443 int start = flist->count;
1444 int filter_flags = f == -2 ? SERVER_FILTERS : ALL_FILTERS;
1445
1446 assert(flist != NULL);
1447
1448 if (!(d = opendir(fbuf))) {
1449 io_error |= IOERR_GENERAL;
1450 rsyserr(FERROR, errno, "opendir %s failed", full_fname(fbuf));
1451 return;
1452 }
1453
1454 p = fbuf + len;
1455 if (len != 1 || *fbuf != '/')
1456 *p++ = '/';
1457 *p = '\0';
1458 remainder = MAXPATHLEN - (p - fbuf);
1459
1460 for (errno = 0, di = readdir(d); di; errno = 0, di = readdir(d)) {
1461 char *dname = d_name(di);
1462 if (dname[0] == '.' && (dname[1] == '\0'
1463 || (dname[1] == '.' && dname[2] == '\0')))
1464 continue;
1465 if (strlcpy(p, dname, remainder) >= remainder) {
1466 io_error |= IOERR_GENERAL;
1467 rprintf(FINFO,
1468 "cannot send long-named file %s\n",
1469 full_fname(fbuf));
1470 continue;
1471 }
1472
1473 send_file_name(f, flist, fbuf, NULL, flags, filter_flags);
1474 }
1475
1476 fbuf[len] = '\0';
1477
1478 if (errno) {
1479 io_error |= IOERR_GENERAL;
1480 rsyserr(FERROR, errno, "readdir(%s)", full_fname(fbuf));
1481 }
1482
1483 closedir(d);
1484
1485 if (f >= 0 && recurse && !divert_dirs) {
1486 int i, end = flist->count - 1;
1487 /* send_if_directory() bumps flist->count, so use "end". */
1488 for (i = start; i <= end; i++)
1489 send_if_directory(f, flist, flist->files[i], fbuf, len, flags);
1490 }
1491}
1492
1493static void send1extra(int f, struct file_struct *file, struct file_list *flist)
1494{
1495 char fbuf[MAXPATHLEN];
1496 int dlen;
1497
1498 f_name(file, fbuf);
1499 dlen = strlen(fbuf);
1500
1501 if (F_PATHNAME(file) != pathname) {
1502 if (!push_pathname(F_PATHNAME(file), -1))
1503 exit_cleanup(RERR_FILESELECT);
1504 }
1505
1506 change_local_filter_dir(fbuf, dlen, send_dir_depth);
1507
1508 send_directory(f, flist, fbuf, dlen, FLAG_DIVERT_DIRS | FLAG_XFER_DIR);
1509}
1510
1511void send_extra_file_list(int f, int at_least)
1512{
1513 struct file_list *flist;
1514 int64 start_write;
1515 int future_cnt, save_io_error = io_error;
1516
1517 if (flist_eof)
1518 return;
1519
1520 /* Keep sending data until we have the requested number of
1521 * files in the upcoming file-lists. */
1522 if (cur_flist->next) {
1523 flist = first_flist->prev; /* the newest flist */
1524 future_cnt = flist->count + flist->ndx_start
1525 - cur_flist->next->ndx_start;
1526 } else
1527 future_cnt = 0;
1528 while (future_cnt < at_least) {
1529 struct file_struct *file = dir_flist->sorted[send_dir_ndx];
1530 int dir_ndx, dstart = dir_count;
1531 int32 *dp;
1532
1533 flist = flist_new(0, "send_extra_file_list");
1534 start_write = stats.total_written;
1535
1536#ifdef ICONV_OPTION
1537 if (ic_ndx)
1538 dir_ndx = F_NDX(file);
1539 else
1540#endif
1541 dir_ndx = send_dir_ndx;
1542 write_ndx(f, NDX_FLIST_OFFSET - dir_ndx);
1543
1544 send1extra(f, file, flist);
1545 dp = F_DIRNODE_P(file);
1546
1547 /* If there are any duplicate directory names that follow, we
1548 * send all the dirs together in one file-list. The dir_flist
1549 * tree links all the child subdirs onto the last dup dir. */
1550 while ((dir_ndx = DIR_NEXT_SIBLING(dp)) >= 0
1551 && dir_flist->sorted[dir_ndx]->flags & FLAG_DUPLICATE) {
1552 send_dir_ndx = dir_ndx;
1553 file = dir_flist->sorted[dir_ndx];
1554 send1extra(f, file, flist);
1555 dp = F_DIRNODE_P(file);
1556 }
1557
1558 write_byte(f, 0);
1559
1560#ifdef ICONV_OPTION
1561 if (need_unsorted_flist) {
1562 if (!(flist->sorted = new_array(struct file_struct *, flist->count)))
1563 out_of_memory("send_extra_file_list");
1564 memcpy(flist->sorted, flist->files,
1565 flist->count * sizeof (struct file_struct*));
1566 } else
1567#endif
1568 flist->sorted = flist->files;
1569
1570 clean_flist(flist, 0);
1571
1572 add_dirs_to_tree(send_dir_ndx, flist, dir_count - dstart);
1573 flist_done_allocating(flist);
1574
1575 file_total += flist->count;
1576 future_cnt += flist->count;
1577 stats.flist_size += stats.total_written - start_write;
1578 stats.num_files += flist->count;
1579 if (verbose > 3)
1580 output_flist(flist);
1581
1582 if (DIR_FIRST_CHILD(dp) >= 0) {
1583 send_dir_ndx = DIR_FIRST_CHILD(dp);
1584 send_dir_depth++;
1585 } else {
1586 while (DIR_NEXT_SIBLING(dp) < 0) {
1587 if ((send_dir_ndx = DIR_PARENT(dp)) < 0) {
1588 write_ndx(f, NDX_FLIST_EOF);
1589 flist_eof = 1;
1590 change_local_filter_dir(NULL, 0, 0);
1591 goto finish;
1592 }
1593 send_dir_depth--;
1594 file = dir_flist->sorted[send_dir_ndx];
1595 dp = F_DIRNODE_P(file);
1596 }
1597 send_dir_ndx = DIR_NEXT_SIBLING(dp);
1598 }
1599 }
1600
1601 finish:
1602 if (io_error != save_io_error && !ignore_errors)
1603 send_msg_int(MSG_IO_ERROR, io_error);
1604}
1605
1606struct file_list *send_file_list(int f, int argc, char *argv[])
1607{
1608 static const char *lastdir;
1609 static int lastdir_len = -1;
1610 int len, dirlen;
1611 STRUCT_STAT st;
1612 char *p, *dir;
1613 char lastpath[MAXPATHLEN] = "";
1614 struct file_list *flist;
1615 struct timeval start_tv, end_tv;
1616 int64 start_write;
1617 int use_ff_fd = 0;
1618 int flags, disable_buffering;
1619
1620 rprintf(FLOG, "building file list\n");
1621 if (show_filelist_p())
1622 start_filelist_progress("building file list");
1623 else if (inc_recurse && verbose && !am_server)
1624 rprintf(FCLIENT, "sending incremental file list\n");
1625
1626 start_write = stats.total_written;
1627 gettimeofday(&start_tv, NULL);
1628
1629#ifdef SUPPORT_HARD_LINKS
1630 if (preserve_hard_links && protocol_version >= 30 && !cur_flist)
1631 init_hard_links();
1632#endif
1633
1634 flist = cur_flist = flist_new(0, "send_file_list");
1635 if (inc_recurse) {
1636 dir_flist = flist_new(FLIST_TEMP, "send_file_list");
1637 flags = FLAG_DIVERT_DIRS;
1638 } else {
1639 dir_flist = cur_flist;
1640 flags = 0;
1641 }
1642
1643 disable_buffering = io_start_buffering_out(f);
1644 if (filesfrom_fd >= 0) {
1645 if (argv[0] && !push_dir(argv[0], 0)) {
1646 rsyserr(FERROR, errno, "push_dir %s failed in %s",
1647 full_fname(argv[0]), curr_dir);
1648 exit_cleanup(RERR_FILESELECT);
1649 }
1650 use_ff_fd = 1;
1651 }
1652
1653 while (1) {
1654 char fbuf[MAXPATHLEN];
1655 char *fn;
1656 int is_dot_dir;
1657
1658 if (use_ff_fd) {
1659 if (read_filesfrom_line(filesfrom_fd, fbuf) == 0)
1660 break;
1661 sanitize_path(fbuf, fbuf, "", 0, NULL);
1662 } else {
1663 if (argc-- == 0)
1664 break;
1665 strlcpy(fbuf, *argv++, MAXPATHLEN);
1666 if (sanitize_paths)
1667 sanitize_path(fbuf, fbuf, "", 0, NULL);
1668 }
1669
1670 len = strlen(fbuf);
1671 if (relative_paths) {
1672 /* We clean up fbuf below. */
1673 is_dot_dir = 0;
1674 } else if (!len || fbuf[len - 1] == '/') {
1675 if (len == 2 && fbuf[0] == '.') {
1676 /* Turn "./" into just "." rather than "./." */
1677 fbuf[1] = '\0';
1678 } else {
1679 if (len + 1 >= MAXPATHLEN)
1680 overflow_exit("send_file_list");
1681 fbuf[len++] = '.';
1682 fbuf[len] = '\0';
1683 }
1684 is_dot_dir = 1;
1685 } else if (len > 1 && fbuf[len-1] == '.' && fbuf[len-2] == '.'
1686 && (len == 2 || fbuf[len-3] == '/')) {
1687 if (len + 2 >= MAXPATHLEN)
1688 overflow_exit("send_file_list");
1689 fbuf[len++] = '/';
1690 fbuf[len++] = '.';
1691 fbuf[len] = '\0';
1692 is_dot_dir = 1;
1693 } else {
1694 is_dot_dir = fbuf[len-1] == '.'
1695 && (len == 1 || fbuf[len-2] == '/');
1696 }
1697
1698 dir = NULL;
1699
1700 if (!relative_paths) {
1701 p = strrchr(fbuf, '/');
1702 if (p) {
1703 *p = '\0';
1704 if (p == fbuf)
1705 dir = "/";
1706 else
1707 dir = fbuf;
1708 len -= p - fbuf + 1;
1709 fn = p + 1;
1710 } else
1711 fn = fbuf;
1712 } else {
1713 if ((p = strstr(fbuf, "/./")) != NULL) {
1714 *p = '\0';
1715 if (p == fbuf)
1716 dir = "/";
1717 else
1718 dir = fbuf;
1719 len -= p - fbuf + 3;
1720 fn = p + 3;
1721 } else
1722 fn = fbuf;
1723 /* Get rid of trailing "/" and "/.". */
1724 while (len) {
1725 if (fn[len - 1] == '/') {
1726 is_dot_dir = 1;
1727 if (!--len && !dir) {
1728 len++;
1729 break;
1730 }
1731 }
1732 else if (len >= 2 && fn[len - 1] == '.'
1733 && fn[len - 2] == '/') {
1734 is_dot_dir = 1;
1735 if (!(len -= 2) && !dir) {
1736 len++;
1737 break;
1738 }
1739 } else
1740 break;
1741 }
1742 if (len == 1 && fn[0] == '/')
1743 fn[len++] = '.';
1744 fn[len] = '\0';
1745 /* Reject a ".." dir in the active part of the path. */
1746 for (p = fn; (p = strstr(p, "..")) != NULL; p += 2) {
1747 if ((p[2] == '/' || p[2] == '\0')
1748 && (p == fn || p[-1] == '/')) {
1749 rprintf(FERROR,
1750 "found \"..\" dir in relative path: %s\n",
1751 fbuf);
1752 exit_cleanup(RERR_SYNTAX);
1753 }
1754 }
1755 }
1756
1757 if (!*fn) {
1758 len = 1;
1759 fn = ".";
1760 }
1761
1762 dirlen = dir ? strlen(dir) : 0;
1763 if (dirlen != lastdir_len || memcmp(lastdir, dir, dirlen) != 0) {
1764 if (!push_pathname(dir ? strdup(dir) : NULL, dirlen))
1765 goto push_error;
1766 lastdir = pathname;
1767 lastdir_len = pathname_len;
1768 } else if (!push_pathname(lastdir, lastdir_len)) {
1769 push_error:
1770 io_error |= IOERR_GENERAL;
1771 rsyserr(FERROR, errno, "push_dir %s failed in %s",
1772 full_fname(dir), curr_dir);
1773 continue;
1774 }
1775
1776 if (fn != fbuf)
1777 memmove(fbuf, fn, len + 1);
1778
1779 if (link_stat(fbuf, &st, copy_dirlinks) != 0) {
1780 io_error |= IOERR_GENERAL;
1781 rsyserr(FERROR, errno, "link_stat %s failed",
1782 full_fname(fbuf));
1783 continue;
1784 }
1785
1786 if (S_ISDIR(st.st_mode) && !xfer_dirs) {
1787 rprintf(FINFO, "skipping directory %s\n", fbuf);
1788 continue;
1789 }
1790
1791 if (implied_dirs && (p=strrchr(fbuf,'/')) && p != fbuf) {
1792 /* Send the implied directories at the start of the
1793 * source spec, so we get their permissions right. */
1794 char *lp = lastpath, *slash = fbuf;
1795 *p = '\0';
1796 /* Skip any initial directories in our path that we
1797 * have in common with lastpath. */
1798 for (fn = fbuf; *fn && *lp == *fn; lp++, fn++) {
1799 if (*fn == '/')
1800 slash = fn;
1801 }
1802 *p = '/';
1803 if (fn != p || (*lp && *lp != '/')) {
1804 int save_copy_links = copy_links;
1805 int save_xfer_dirs = xfer_dirs;
1806 int dir_flags = inc_recurse ? FLAG_DIVERT_DIRS : 0;
1807 copy_links |= copy_unsafe_links;
1808 xfer_dirs = 1;
1809 while ((slash = strchr(slash+1, '/')) != 0) {
1810 *slash = '\0';
1811 send_file_name(f, flist, fbuf, NULL,
1812 dir_flags, ALL_FILTERS);
1813 *slash = '/';
1814 }
1815 copy_links = save_copy_links;
1816 xfer_dirs = save_xfer_dirs;
1817 *p = '\0';
1818 strlcpy(lastpath, fbuf, sizeof lastpath);
1819 *p = '/';
1820 }
1821 }
1822
1823 if (one_file_system)
1824 filesystem_dev = st.st_dev;
1825
1826 if (recurse || (xfer_dirs && is_dot_dir)) {
1827 struct file_struct *file;
1828 int top_flags = FLAG_TOP_DIR | FLAG_XFER_DIR | flags;
1829 file = send_file_name(f, flist, fbuf, &st,
1830 top_flags, ALL_FILTERS);
1831 if (file && !inc_recurse)
1832 send_if_directory(f, flist, file, fbuf, len, flags);
1833 } else
1834 send_file_name(f, flist, fbuf, &st, flags, ALL_FILTERS);
1835 }
1836
1837 gettimeofday(&end_tv, NULL);
1838 stats.flist_buildtime = (int64)(end_tv.tv_sec - start_tv.tv_sec) * 1000
1839 + (end_tv.tv_usec - start_tv.tv_usec) / 1000;
1840 if (stats.flist_buildtime == 0)
1841 stats.flist_buildtime = 1;
1842 start_tv = end_tv;
1843
1844 write_byte(f, 0); /* Indicate end of file list */
1845
1846#ifdef SUPPORT_HARD_LINKS
1847 if (preserve_hard_links && protocol_version >= 30 && !inc_recurse)
1848 idev_destroy();
1849#endif
1850
1851 if (show_filelist_p())
1852 finish_filelist_progress(flist);
1853
1854 gettimeofday(&end_tv, NULL);
1855 stats.flist_xfertime = (int64)(end_tv.tv_sec - start_tv.tv_sec) * 1000
1856 + (end_tv.tv_usec - start_tv.tv_usec) / 1000;
1857
1858 /* When converting names, both sides keep an unsorted file-list array
1859 * because the names will differ on the sending and receiving sides
1860 * (both sides will use the unsorted index number for each item). */
1861
1862 /* Sort the list without removing any duplicates. This allows the
1863 * receiving side to ask for whatever name it kept. For incremental
1864 * recursion mode, the sender marks duplicate dirs so that it can
1865 * send them together in a single file-list. */
1866#ifdef ICONV_OPTION
1867 if (need_unsorted_flist) {
1868 if (inc_recurse) {
1869 if (!(flist->sorted = new_array(struct file_struct *, flist->count)))
1870 out_of_memory("send_file_list");
1871 memcpy(flist->sorted, flist->files,
1872 flist->count * sizeof (struct file_struct*));
1873 clean_flist(flist, 0);
1874 } else
1875 flist->sorted = flist->files;
1876 } else
1877#endif
1878 {
1879 flist->sorted = flist->files;
1880 clean_flist(flist, 0);
1881 }
1882 file_total += flist->count;
1883
1884 if (!numeric_ids && !inc_recurse)
1885 send_id_list(f);
1886
1887 /* send the io_error flag */
1888 if (protocol_version < 30)
1889 write_int(f, ignore_errors ? 0 : io_error);
1890 else if (io_error && !ignore_errors)
1891 send_msg_int(MSG_IO_ERROR, io_error);
1892
1893 if (disable_buffering)
1894 io_end_buffering_out();
1895
1896 stats.flist_size = stats.total_written - start_write;
1897 stats.num_files = flist->count;
1898
1899 if (verbose > 3)
1900 output_flist(flist);
1901
1902 if (verbose > 2)
1903 rprintf(FINFO, "send_file_list done\n");
1904
1905 if (inc_recurse) {
1906 add_dirs_to_tree(-1, flist, dir_count);
1907 flist_done_allocating(flist);
1908 if (send_dir_ndx < 0) {
1909 write_ndx(f, NDX_FLIST_EOF);
1910 flist_eof = 1;
1911 }
1912 else if (file_total == 1) {
1913 /* If we're creating incremental file-lists and there
1914 * was just 1 item in the first file-list, send 1 more
1915 * file-list to check if this is a 1-file xfer. */
1916 send_extra_file_list(f, 1);
1917 }
1918 }
1919
1920 return flist;
1921}
1922
1923struct file_list *recv_file_list(int f)
1924{
1925 struct file_list *flist;
1926 int dstart, flags;
1927 int64 start_read;
1928
1929 if (!first_flist)
1930 rprintf(FLOG, "receiving file list\n");
1931 if (show_filelist_p())
1932 start_filelist_progress("receiving file list");
1933 else if (inc_recurse && verbose && !am_server && !first_flist)
1934 rprintf(FCLIENT, "receiving incremental file list\n");
1935
1936 start_read = stats.total_read;
1937
1938 flist = flist_new(0, "recv_file_list");
1939
1940#ifdef SUPPORT_HARD_LINKS
1941 if (preserve_hard_links && protocol_version < 30)
1942 init_hard_links();
1943#endif
1944
1945 if (inc_recurse) {
1946 if (flist->ndx_start == 0)
1947 dir_flist = flist_new(FLIST_TEMP, "recv_file_list");
1948 dstart = dir_flist->count;
1949 } else {
1950 dir_flist = flist;
1951 dstart = 0;
1952 }
1953
1954 while ((flags = read_byte(f)) != 0) {
1955 struct file_struct *file;
1956
1957 flist_expand(flist, 1);
1958
1959 if (protocol_version >= 28 && (flags & XMIT_EXTENDED_FLAGS))
1960 flags |= read_byte(f) << 8;
1961 file = recv_file_entry(flist, flags, f);
1962
1963 if (inc_recurse && S_ISDIR(file->mode)) {
1964 flist_expand(dir_flist, 1);
1965 dir_flist->files[dir_flist->count++] = file;
1966 }
1967
1968 flist->files[flist->count++] = file;
1969
1970 maybe_emit_filelist_progress(flist->count);
1971
1972 if (verbose > 2) {
1973 rprintf(FINFO, "recv_file_name(%s)\n",
1974 f_name(file, NULL));
1975 }
1976 }
1977 file_total += flist->count;
1978
1979 if (verbose > 2)
1980 rprintf(FINFO, "received %d names\n", flist->count);
1981
1982 if (show_filelist_p())
1983 finish_filelist_progress(flist);
1984
1985#ifdef ICONV_OPTION
1986 if (need_unsorted_flist) {
1987 /* Create an extra array of index pointers that we can sort for
1988 * the generator's use (for wading through the files in sorted
1989 * order and for calling flist_find()). We keep the "files"
1990 * list unsorted for our exchange of index numbers with the
1991 * other side (since their names may not sort the same). */
1992 if (!(flist->sorted = new_array(struct file_struct *, flist->count)))
1993 out_of_memory("recv_file_list");
1994 memcpy(flist->sorted, flist->files,
1995 flist->count * sizeof (struct file_struct*));
1996 if (inc_recurse && dir_flist->count > dstart) {
1997 dir_flist->sorted = realloc_array(dir_flist->sorted,
1998 struct file_struct *,
1999 dir_flist->count);
2000 memcpy(dir_flist->sorted + dstart, dir_flist->files + dstart,
2001 (dir_flist->count - dstart) * sizeof (struct file_struct*));
2002 fsort(dir_flist->sorted + dstart, dir_flist->count - dstart);
2003 }
2004 } else
2005#endif
2006 {
2007 flist->sorted = flist->files;
2008 if (inc_recurse && dir_flist->count > dstart) {
2009 dir_flist->sorted = dir_flist->files;
2010 fsort(dir_flist->sorted + dstart, dir_flist->count - dstart);
2011 }
2012 }
2013
2014 if (inc_recurse)
2015 flist_done_allocating(flist);
2016 else if (f >= 0)
2017 recv_id_list(f, flist);
2018
2019 clean_flist(flist, relative_paths);
2020
2021 if (protocol_version < 30) {
2022 /* Recv the io_error flag */
2023 if (ignore_errors)
2024 read_int(f);
2025 else
2026 io_error |= read_int(f);
2027 }
2028
2029 if (verbose > 3)
2030 output_flist(flist);
2031
2032 if (list_only) {
2033 int i;
2034 for (i = 0; i < flist->count; i++)
2035 list_file_entry(flist->files[i]);
2036 }
2037
2038 if (verbose > 2)
2039 rprintf(FINFO, "recv_file_list done\n");
2040
2041 stats.flist_size += stats.total_read - start_read;
2042 stats.num_files += flist->count;
2043
2044 return flist;
2045}
2046
2047/* This is only used once by the receiver if the very first file-list
2048 * has exactly one item in it. */
2049void recv_additional_file_list(int f)
2050{
2051 struct file_list *flist;
2052 int ndx = read_ndx(f);
2053 if (ndx == NDX_FLIST_EOF) {
2054 flist_eof = 1;
2055 change_local_filter_dir(NULL, 0, 0);
2056 } else {
2057 ndx = NDX_FLIST_OFFSET - ndx;
2058 if (ndx < 0 || ndx >= dir_flist->count) {
2059 ndx = NDX_FLIST_OFFSET - ndx;
2060 rprintf(FERROR,
2061 "[%s] Invalid dir index: %d (%d - %d)\n",
2062 who_am_i(), ndx, NDX_FLIST_OFFSET,
2063 NDX_FLIST_OFFSET - dir_flist->count + 1);
2064 exit_cleanup(RERR_PROTOCOL);
2065 }
2066 if (verbose > 3) {
2067 rprintf(FINFO, "[%s] receiving flist for dir %d\n",
2068 who_am_i(), ndx);
2069 }
2070 flist = recv_file_list(f);
2071 flist->parent_ndx = ndx;
2072 }
2073}
2074
2075/* Search for an identically-named item in the file list. Note that the
2076 * items must agree in their directory-ness, or no match is returned. */
2077int flist_find(struct file_list *flist, struct file_struct *f)
2078{
2079 int low = flist->low, high = flist->high;
2080 int diff, mid, mid_up;
2081
2082 while (low <= high) {
2083 mid = (low + high) / 2;
2084 if (F_IS_ACTIVE(flist->sorted[mid]))
2085 mid_up = mid;
2086 else {
2087 /* Scan for the next non-empty entry using the cached
2088 * distance values. If the value isn't fully up-to-
2089 * date, update it. */
2090 mid_up = mid + F_DEPTH(flist->sorted[mid]);
2091 if (!F_IS_ACTIVE(flist->sorted[mid_up])) {
2092 do {
2093 mid_up += F_DEPTH(flist->sorted[mid_up]);
2094 } while (!F_IS_ACTIVE(flist->sorted[mid_up]));
2095 F_DEPTH(flist->sorted[mid]) = mid_up - mid;
2096 }
2097 if (mid_up > high) {
2098 /* If there's nothing left above us, set high to
2099 * a non-empty entry below us and continue. */
2100 high = mid - (int)flist->sorted[mid]->len32;
2101 if (!F_IS_ACTIVE(flist->sorted[high])) {
2102 do {
2103 high -= (int)flist->sorted[high]->len32;
2104 } while (!F_IS_ACTIVE(flist->sorted[high]));
2105 flist->sorted[mid]->len32 = mid - high;
2106 }
2107 continue;
2108 }
2109 }
2110 diff = f_name_cmp(flist->sorted[mid_up], f);
2111 if (diff == 0) {
2112 if (protocol_version < 29
2113 && S_ISDIR(flist->sorted[mid_up]->mode)
2114 != S_ISDIR(f->mode))
2115 return -1;
2116 return mid_up;
2117 }
2118 if (diff < 0)
2119 low = mid_up + 1;
2120 else
2121 high = mid - 1;
2122 }
2123 return -1;
2124}
2125
2126/*
2127 * Free up any resources a file_struct has allocated
2128 * and clear the file.
2129 */
2130void clear_file(struct file_struct *file)
2131{
2132 /* The +1 zeros out the first char of the basename. */
2133 memset(file, 0, FILE_STRUCT_LEN + 1);
2134 /* In an empty entry, F_DEPTH() is an offset to the next non-empty
2135 * entry. Likewise for len32 in the opposite direction. We assume
2136 * that we're alone for now since flist_find() will adjust the counts
2137 * it runs into that aren't up-to-date. */
2138 file->len32 = F_DEPTH(file) = 1;
2139}
2140
2141/* Allocate a new file list. */
2142struct file_list *flist_new(int flags, char *msg)
2143{
2144 struct file_list *flist;
2145
2146 flist = new(struct file_list);
2147 if (!flist)
2148 out_of_memory(msg);
2149
2150 memset(flist, 0, sizeof flist[0]);
2151
2152 if (flags & FLIST_TEMP) {
2153 if (!(flist->file_pool = pool_create(SMALL_EXTENT, 0,
2154 out_of_memory, POOL_INTERN)))
2155 out_of_memory(msg);
2156 } else {
2157 /* This is a doubly linked list with prev looping back to
2158 * the end of the list, but the last next pointer is NULL. */
2159 if (!first_flist) {
2160 flist->file_pool = pool_create(NORMAL_EXTENT, 0,
2161 out_of_memory, POOL_INTERN);
2162 if (!flist->file_pool)
2163 out_of_memory(msg);
2164
2165 first_flist = cur_flist = flist->prev = flist;
2166 } else {
2167 flist->file_pool = first_flist->file_pool;
2168
2169 flist->ndx_start = first_flist->prev->ndx_start
2170 + first_flist->prev->count;
2171
2172 flist->prev = first_flist->prev;
2173 flist->prev->next = first_flist->prev = flist;
2174 }
2175 flist->pool_boundary = pool_boundary(flist->file_pool, 0);
2176 flist_cnt++;
2177 }
2178
2179 return flist;
2180}
2181
2182/* Free up all elements in a flist. */
2183void flist_free(struct file_list *flist)
2184{
2185 if (!flist->prev) {
2186 /* Was FLIST_TEMP dir-list. */
2187 } else if (flist == flist->prev) {
2188 first_flist = cur_flist = NULL;
2189 file_total = 0;
2190 flist_cnt = 0;
2191 } else {
2192 if (flist == cur_flist)
2193 cur_flist = flist->next;
2194 if (flist == first_flist)
2195 first_flist = first_flist->next;
2196 else {
2197 flist->prev->next = flist->next;
2198 if (!flist->next)
2199 flist->next = first_flist;
2200 }
2201 flist->next->prev = flist->prev;
2202 file_total -= flist->count;
2203 flist_cnt--;
2204 }
2205
2206 if (!flist->prev || !flist_cnt)
2207 pool_destroy(flist->file_pool);
2208 else
2209 pool_free_old(flist->file_pool, flist->pool_boundary);
2210
2211 if (flist->sorted && flist->sorted != flist->files)
2212 free(flist->sorted);
2213 free(flist->files);
2214 free(flist);
2215}
2216
2217/* This routine ensures we don't have any duplicate names in our file list.
2218 * duplicate names can cause corruption because of the pipelining. */
2219static void clean_flist(struct file_list *flist, int strip_root)
2220{
2221 char fbuf[MAXPATHLEN];
2222 int i, prev_i;
2223
2224 if (!flist)
2225 return;
2226 if (flist->count == 0) {
2227 flist->high = -1;
2228 return;
2229 }
2230
2231 fsort(flist->sorted, flist->count);
2232
2233 if (!am_sender || inc_recurse) {
2234 for (i = prev_i = 0; i < flist->count; i++) {
2235 if (F_IS_ACTIVE(flist->sorted[i])) {
2236 prev_i = i;
2237 break;
2238 }
2239 }
2240 flist->low = prev_i;
2241 } else {
2242 i = prev_i = flist->count - 1;
2243 flist->low = 0;
2244 }
2245
2246 while (++i < flist->count) {
2247 int j;
2248 struct file_struct *file = flist->sorted[i];
2249
2250 if (!F_IS_ACTIVE(file))
2251 continue;
2252 if (f_name_cmp(file, flist->sorted[prev_i]) == 0)
2253 j = prev_i;
2254 else if (protocol_version >= 29 && S_ISDIR(file->mode)) {
2255 int save_mode = file->mode;
2256 /* Make sure that this directory doesn't duplicate a
2257 * non-directory earlier in the list. */
2258 flist->high = prev_i;
2259 file->mode = S_IFREG;
2260 j = flist_find(flist, file);
2261 file->mode = save_mode;
2262 } else
2263 j = -1;
2264 if (j >= 0) {
2265 int keep, drop;
2266 /* If one is a dir and the other is not, we want to
2267 * keep the dir because it might have contents in the
2268 * list. */
2269 if (S_ISDIR(file->mode)) {
2270 struct file_struct *fp = flist->sorted[j];
2271 if (!S_ISDIR(fp->mode))
2272 keep = i, drop = j;
2273 else
2274 keep = j, drop = i;
2275 } else
2276 keep = j, drop = i;
2277
2278 if (am_sender)
2279 flist->sorted[drop]->flags |= FLAG_DUPLICATE;
2280 else {
2281 if (verbose > 1) {
2282 rprintf(FINFO,
2283 "removing duplicate name %s from file list (%d)\n",
2284 f_name(file, fbuf), drop + flist->ndx_start);
2285 }
2286 /* Make sure we don't lose track of a user-specified
2287 * top directory. */
2288 flist->sorted[keep]->flags |= flist->sorted[drop]->flags
2289 & (FLAG_TOP_DIR|FLAG_XFER_DIR);
2290
2291 clear_file(flist->sorted[drop]);
2292 }
2293
2294 if (keep == i) {
2295 if (flist->low == drop) {
2296 for (j = drop + 1;
2297 j < i && !F_IS_ACTIVE(flist->sorted[j]);
2298 j++) {}
2299 flist->low = j;
2300 }
2301 prev_i = i;
2302 }
2303 } else
2304 prev_i = i;
2305 }
2306 flist->high = prev_i;
2307
2308 if (strip_root) {
2309 /* We need to strip off the leading slashes for relative
2310 * paths, but this must be done _after_ the sorting phase. */
2311 for (i = flist->low; i <= flist->high; i++) {
2312 struct file_struct *file = flist->sorted[i];
2313
2314 if (!file->dirname)
2315 continue;
2316 while (*file->dirname == '/')
2317 file->dirname++;
2318 if (!*file->dirname)
2319 file->dirname = NULL;
2320 }
2321 }
2322
2323 if (prune_empty_dirs && !am_sender) {
2324 int j, prev_depth = 0;
2325
2326 prev_i = 0; /* It's OK that this isn't really true. */
2327
2328 for (i = flist->low; i <= flist->high; i++) {
2329 struct file_struct *fp, *file = flist->sorted[i];
2330
2331 /* This temporarily abuses the F_DEPTH() value for a
2332 * directory that is in a chain that might get pruned.
2333 * We restore the old value if it gets a reprieve. */
2334 if (S_ISDIR(file->mode) && F_DEPTH(file)) {
2335 /* Dump empty dirs when coming back down. */
2336 for (j = prev_depth; j >= F_DEPTH(file); j--) {
2337 fp = flist->sorted[prev_i];
2338 if (F_DEPTH(fp) >= 0)
2339 break;
2340 prev_i = -F_DEPTH(fp)-1;
2341 clear_file(fp);
2342 }
2343 prev_depth = F_DEPTH(file);
2344 if (is_excluded(f_name(file, fbuf), 1,
2345 ALL_FILTERS)) {
2346 /* Keep dirs through this dir. */
2347 for (j = prev_depth-1; ; j--) {
2348 fp = flist->sorted[prev_i];
2349 if (F_DEPTH(fp) >= 0)
2350 break;
2351 prev_i = -F_DEPTH(fp)-1;
2352 F_DEPTH(fp) = j;
2353 }
2354 } else
2355 F_DEPTH(file) = -prev_i-1;
2356 prev_i = i;
2357 } else {
2358 /* Keep dirs through this non-dir. */
2359 for (j = prev_depth; ; j--) {
2360 fp = flist->sorted[prev_i];
2361 if (F_DEPTH(fp) >= 0)
2362 break;
2363 prev_i = -F_DEPTH(fp)-1;
2364 F_DEPTH(fp) = j;
2365 }
2366 }
2367 }
2368 /* Dump all remaining empty dirs. */
2369 while (1) {
2370 struct file_struct *fp = flist->sorted[prev_i];
2371 if (F_DEPTH(fp) >= 0)
2372 break;
2373 prev_i = -F_DEPTH(fp)-1;
2374 clear_file(fp);
2375 }
2376
2377 for (i = flist->low; i <= flist->high; i++) {
2378 if (F_IS_ACTIVE(flist->sorted[i]))
2379 break;
2380 }
2381 flist->low = i;
2382 for (i = flist->high; i >= flist->low; i--) {
2383 if (F_IS_ACTIVE(flist->sorted[i]))
2384 break;
2385 }
2386 flist->high = i;
2387 }
2388}
2389
2390static void output_flist(struct file_list *flist)
2391{
2392 char uidbuf[16], gidbuf[16], depthbuf[16];
2393 struct file_struct *file;
2394 const char *root, *dir, *slash, *name, *trail;
2395 const char *who = who_am_i();
2396 int i;
2397
2398 rprintf(FINFO, "[%s] flist start=%d, count=%d, low=%d, high=%d\n",
2399 who, flist->ndx_start, flist->count, flist->low, flist->high);
2400 for (i = 0; i < flist->count; i++) {
2401 file = flist->sorted[i];
2402 if ((am_root || am_sender) && uid_ndx) {
2403 snprintf(uidbuf, sizeof uidbuf, " uid=%u",
2404 F_OWNER(file));
2405 } else
2406 *uidbuf = '\0';
2407 if (gid_ndx) {
2408 static char parens[] = "(\0)\0\0\0";
2409 char *pp = parens + (file->flags & FLAG_SKIP_GROUP ? 0 : 3);
2410 snprintf(gidbuf, sizeof gidbuf, " gid=%s%u%s",
2411 pp, F_GROUP(file), pp + 2);
2412 } else
2413 *gidbuf = '\0';
2414 if (!am_sender)
2415 snprintf(depthbuf, sizeof depthbuf, "%d", F_DEPTH(file));
2416 if (F_IS_ACTIVE(file)) {
2417 root = am_sender ? NS(F_PATHNAME(file)) : depthbuf;
2418 if ((dir = file->dirname) == NULL)
2419 dir = slash = "";
2420 else
2421 slash = "/";
2422 name = file->basename;
2423 trail = S_ISDIR(file->mode) ? "/" : "";
2424 } else
2425 root = dir = slash = name = trail = "";
2426 rprintf(FINFO,
2427 "[%s] i=%d %s %s%s%s%s mode=0%o len=%.0f%s%s flags=%x\n",
2428 who, i + flist->ndx_start,
2429 root, dir, slash, name, trail,
2430 (int)file->mode, (double)F_LENGTH(file),
2431 uidbuf, gidbuf, file->flags);
2432 }
2433}
2434
2435enum fnc_state { s_DIR, s_SLASH, s_BASE, s_TRAILING };
2436enum fnc_type { t_PATH, t_ITEM };
2437
2438/* Compare the names of two file_struct entities, similar to how strcmp()
2439 * would do if it were operating on the joined strings.
2440 *
2441 * Some differences beginning with protocol_version 29: (1) directory names
2442 * are compared with an assumed trailing slash so that they compare in a
2443 * way that would cause them to sort immediately prior to any content they
2444 * may have; (2) a directory of any name compares after a non-directory of
2445 * any name at the same depth; (3) a directory with name "." compares prior
2446 * to anything else. These changes mean that a directory and a non-dir
2447 * with the same name will not compare as equal (protocol_version >= 29).
2448 *
2449 * The dirname component can be an empty string, but the basename component
2450 * cannot (and never is in the current codebase). The basename component
2451 * may be NULL (for a removed item), in which case it is considered to be
2452 * after any existing item. */
2453int f_name_cmp(struct file_struct *f1, struct file_struct *f2)
2454{
2455 int dif;
2456 const uchar *c1, *c2;
2457 enum fnc_state state1, state2;
2458 enum fnc_type type1, type2;
2459 enum fnc_type t_path = protocol_version >= 29 ? t_PATH : t_ITEM;
2460
2461 if (!f1 || !F_IS_ACTIVE(f1)) {
2462 if (!f2 || !F_IS_ACTIVE(f2))
2463 return 0;
2464 return -1;
2465 }
2466 if (!f2 || !F_IS_ACTIVE(f2))
2467 return 1;
2468
2469 c1 = (uchar*)f1->dirname;
2470 c2 = (uchar*)f2->dirname;
2471 if (c1 == c2)
2472 c1 = c2 = NULL;
2473 if (!c1) {
2474 type1 = S_ISDIR(f1->mode) ? t_path : t_ITEM;
2475 c1 = (const uchar*)f1->basename;
2476 if (type1 == t_PATH && *c1 == '.' && !c1[1]) {
2477 type1 = t_ITEM;
2478 state1 = s_TRAILING;
2479 c1 = (uchar*)"";
2480 } else
2481 state1 = s_BASE;
2482 } else {
2483 type1 = t_path;
2484 state1 = s_DIR;
2485 }
2486 if (!c2) {
2487 type2 = S_ISDIR(f2->mode) ? t_path : t_ITEM;
2488 c2 = (const uchar*)f2->basename;
2489 if (type2 == t_PATH && *c2 == '.' && !c2[1]) {
2490 type2 = t_ITEM;
2491 state2 = s_TRAILING;
2492 c2 = (uchar*)"";
2493 } else
2494 state2 = s_BASE;
2495 } else {
2496 type2 = t_path;
2497 state2 = s_DIR;
2498 }
2499
2500 if (type1 != type2)
2501 return type1 == t_PATH ? 1 : -1;
2502
2503 do {
2504 if (!*c1) {
2505 switch (state1) {
2506 case s_DIR:
2507 state1 = s_SLASH;
2508 c1 = (uchar*)"/";
2509 break;
2510 case s_SLASH:
2511 type1 = S_ISDIR(f1->mode) ? t_path : t_ITEM;
2512 c1 = (const uchar*)f1->basename;
2513 if (type1 == t_PATH && *c1 == '.' && !c1[1]) {
2514 type1 = t_ITEM;
2515 state1 = s_TRAILING;
2516 c1 = (uchar*)"";
2517 } else
2518 state1 = s_BASE;
2519 break;
2520 case s_BASE:
2521 state1 = s_TRAILING;
2522 if (type1 == t_PATH) {
2523 c1 = (uchar*)"/";
2524 break;
2525 }
2526 /* FALL THROUGH */
2527 case s_TRAILING:
2528 type1 = t_ITEM;
2529 break;
2530 }
2531 if (*c2 && type1 != type2)
2532 return type1 == t_PATH ? 1 : -1;
2533 }
2534 if (!*c2) {
2535 switch (state2) {
2536 case s_DIR:
2537 state2 = s_SLASH;
2538 c2 = (uchar*)"/";
2539 break;
2540 case s_SLASH:
2541 type2 = S_ISDIR(f2->mode) ? t_path : t_ITEM;
2542 c2 = (const uchar*)f2->basename;
2543 if (type2 == t_PATH && *c2 == '.' && !c2[1]) {
2544 type2 = t_ITEM;
2545 state2 = s_TRAILING;
2546 c2 = (uchar*)"";
2547 } else
2548 state2 = s_BASE;
2549 break;
2550 case s_BASE:
2551 state2 = s_TRAILING;
2552 if (type2 == t_PATH) {
2553 c2 = (uchar*)"/";
2554 break;
2555 }
2556 /* FALL THROUGH */
2557 case s_TRAILING:
2558 if (!*c1)
2559 return 0;
2560 type2 = t_ITEM;
2561 break;
2562 }
2563 if (type1 != type2)
2564 return type1 == t_PATH ? 1 : -1;
2565 }
2566 } while ((dif = (int)*c1++ - (int)*c2++) == 0);
2567
2568 return dif;
2569}
2570
2571char *f_name_buf(void)
2572{
2573 static char names[5][MAXPATHLEN];
2574 static unsigned int n;
2575
2576 n = (n + 1) % (sizeof names / sizeof names[0]);
2577
2578 return names[n];
2579}
2580
2581/* Return a copy of the full filename of a flist entry, using the indicated
2582 * buffer or one of 5 static buffers if fbuf is NULL. No size-checking is
2583 * done because we checked the size when creating the file_struct entry.
2584 */
2585char *f_name(struct file_struct *f, char *fbuf)
2586{
2587 if (!f || !F_IS_ACTIVE(f))
2588 return NULL;
2589
2590 if (!fbuf)
2591 fbuf = f_name_buf();
2592
2593 if (f->dirname) {
2594 int len = strlen(f->dirname);
2595 memcpy(fbuf, f->dirname, len);
2596 fbuf[len] = '/';
2597 strlcpy(fbuf + len + 1, f->basename, MAXPATHLEN - (len + 1));
2598 } else
2599 strlcpy(fbuf, f->basename, MAXPATHLEN);
2600
2601 return fbuf;
2602}
2603
2604/* Do a non-recursive scan of the named directory, possibly ignoring all
2605 * exclude rules except for the daemon's. If "dlen" is >=0, it is the length
2606 * of the dirname string, and also indicates that "dirname" is a MAXPATHLEN
2607 * buffer (the functions we call will append names onto the end, but the old
2608 * dir value will be restored on exit). */
2609struct file_list *get_dirlist(char *dirname, int dlen, int ignore_filter_rules)
2610{
2611 struct file_list *dirlist;
2612 char dirbuf[MAXPATHLEN];
2613 int save_recurse = recurse;
2614 int save_xfer_dirs = xfer_dirs;
2615
2616 if (dlen < 0) {
2617 dlen = strlcpy(dirbuf, dirname, MAXPATHLEN);
2618 if (dlen >= MAXPATHLEN)
2619 return NULL;
2620 dirname = dirbuf;
2621 }
2622
2623 dirlist = flist_new(FLIST_TEMP, "get_dirlist");
2624
2625 recurse = 0;
2626 xfer_dirs = 1;
2627 send_directory(ignore_filter_rules ? -2 : -1, dirlist, dirname, dlen, 0);
2628 xfer_dirs = save_xfer_dirs;
2629 recurse = save_recurse;
2630 if (do_progress)
2631 flist_count_offset += dirlist->count;
2632
2633 dirlist->sorted = dirlist->files;
2634 clean_flist(dirlist, 0);
2635
2636 if (verbose > 3)
2637 output_flist(dirlist);
2638
2639 return dirlist;
2640}