str_list_prev: remove unused function
[oweals/opkg-lede.git] / libopkg / pkg_hash.c
1 /* opkg_hash.c - the opkg package management system
2
3    Steven M. Ayer
4
5    Copyright (C) 2002 Compaq Computer Corporation
6
7    This program is free software; you can redistribute it and/or
8    modify it under the terms of the GNU General Public License as
9    published by the Free Software Foundation; either version 2, or (at
10    your option) any later version.
11
12    This program is distributed in the hope that it will be useful, but
13    WITHOUT ANY WARRANTY; without even the implied warranty of
14    MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
15    General Public License for more details.
16 */
17
18 #include <stdio.h>
19
20 #include "hash_table.h"
21 #include "pkg.h"
22 #include "opkg_message.h"
23 #include "pkg_vec.h"
24 #include "pkg_hash.h"
25 #include "parse_util.h"
26 #include "pkg_parse.h"
27 #include "opkg_utils.h"
28 #include "sprintf_alloc.h"
29 #include "file_util.h"
30 #include "libbb/libbb.h"
31 #include "libbb/gzip.h"
32
33 void pkg_hash_init(void)
34 {
35         hash_table_init("pkg-hash", &conf->pkg_hash,
36                         OPKG_CONF_DEFAULT_HASH_LEN);
37 }
38
39 static void free_pkgs(const char *key, void *entry, void *data)
40 {
41         int i;
42         abstract_pkg_t *ab_pkg;
43
44         /* Each entry in the hash table is an abstract package, which contains
45          * a list of packages that provide the abstract package.
46          */
47
48         ab_pkg = (abstract_pkg_t *) entry;
49
50         if (ab_pkg->pkgs) {
51                 for (i = 0; i < ab_pkg->pkgs->len; i++) {
52                         pkg_deinit(ab_pkg->pkgs->pkgs[i]);
53                         free(ab_pkg->pkgs->pkgs[i]);
54                 }
55         }
56
57         abstract_pkg_vec_free(ab_pkg->provided_by);
58         abstract_pkg_vec_free(ab_pkg->replaced_by);
59         pkg_vec_free(ab_pkg->pkgs);
60         free(ab_pkg->depended_upon_by);
61         free(ab_pkg->name);
62         free(ab_pkg);
63 }
64
65 void pkg_hash_deinit(void)
66 {
67         hash_table_foreach(&conf->pkg_hash, free_pkgs, NULL);
68         hash_table_deinit(&conf->pkg_hash);
69 }
70
71 int dist_hash_add_from_file(const char *lists_dir, pkg_src_t * dist)
72 {
73         nv_pair_list_elt_t *l;
74         char *list_file, *subname;
75
76         list_for_each_entry(l, &conf->arch_list.head, node) {
77                 nv_pair_t *nv = (nv_pair_t *) l->data;
78                 sprintf_alloc(&subname, "%s-%s", dist->name, nv->name);
79                 sprintf_alloc(&list_file, "%s/%s", lists_dir, subname);
80
81                 if (file_exists(list_file)) {
82                         if (pkg_hash_add_from_file(list_file, dist, NULL, 0, 0)) {
83                                 free(list_file);
84                                 return -1;
85                         }
86                         pkg_src_list_append(&conf->pkg_src_list, subname,
87                                             dist->value, "__dummy__", 0);
88                 }
89
90                 free(list_file);
91         }
92
93         return 0;
94 }
95
96 int
97 pkg_hash_add_from_file(const char *file_name,
98                        pkg_src_t * src, pkg_dest_t * dest, int is_status_file, int state_flags)
99 {
100         pkg_t *pkg;
101         FILE *fp;
102         char *buf;
103         const size_t len = 4096;
104         int ret = 0;
105         struct gzip_handle zh;
106
107         if (src && src->gzip) {
108                 fp = gzip_fdopen(&zh, file_name);
109         } else {
110                 fp = fopen(file_name, "r");
111         }
112
113         if (fp == NULL) {
114                 opkg_perror(ERROR, "Failed to open %s", file_name);
115                 return -1;
116         }
117
118         buf = xmalloc(len);
119
120         do {
121                 pkg = pkg_new();
122                 pkg->src = src;
123                 pkg->dest = dest;
124                 pkg->state_flag |= state_flags;
125
126                 ret = parse_from_stream_nomalloc(pkg_parse_line, pkg, fp, 0,
127                                                  &buf, len);
128
129                 if (pkg->name == NULL) {
130                         /* probably just a blank line */
131                         ret = 1;
132                 }
133
134                 if (ret) {
135                         pkg_deinit(pkg);
136                         free(pkg);
137                         if (ret == -1)
138                                 break;
139                         if (ret == 1)
140                                 /* Probably a blank line, continue parsing. */
141                                 ret = 0;
142                         continue;
143                 }
144
145                 if (!(pkg->state_flag & SF_NEED_DETAIL)) {
146                         //opkg_msg(DEBUG, "Package %s is unrelated, ignoring.\n", pkg->name);
147                         pkg_deinit(pkg);
148                         free(pkg);
149                         continue;
150                 }
151
152                 if (!pkg_get_architecture(pkg) || !pkg_get_arch_priority(pkg)) {
153                         char *version_str = pkg_version_str_alloc(pkg);
154                         opkg_msg(NOTICE, "Package %s version %s has no "
155                                  "valid architecture, ignoring.\n",
156                                  pkg->name, version_str);
157                         free(version_str);
158                         continue;
159                 }
160
161                 hash_insert_pkg(pkg, is_status_file);
162
163         } while (!feof(fp));
164
165         free(buf);
166         fclose(fp);
167
168         if (src && src->gzip)
169                 gzip_close(&zh);
170
171         return ret;
172 }
173
174 /*
175  * Load in feed files from the cached "src" and/or "src/gz" locations.
176  */
177 int pkg_hash_load_feeds(int state_flags)
178 {
179         pkg_src_list_elt_t *iter;
180         pkg_src_t *src;
181         char *list_file, *lists_dir;
182
183         opkg_msg(INFO, "\n");
184
185         lists_dir = conf->restrict_to_default_dest ?
186             conf->default_dest->lists_dir : conf->lists_dir;
187
188         for (iter = void_list_first(&conf->pkg_src_list); iter;
189              iter = void_list_next(&conf->pkg_src_list, iter)) {
190
191                 src = (pkg_src_t *) iter->data;
192
193                 sprintf_alloc(&list_file, "%s/%s", lists_dir, src->name);
194
195                 if (file_exists(list_file)) {
196                         if (pkg_hash_add_from_file(list_file, src, NULL, 0, state_flags)) {
197                                 free(list_file);
198                                 return -1;
199                         }
200                 }
201                 free(list_file);
202         }
203
204         return 0;
205 }
206
207 /*
208  * Load in status files from the configured "dest"s.
209  */
210 int pkg_hash_load_status_files(void)
211 {
212         pkg_dest_list_elt_t *iter;
213         pkg_dest_t *dest;
214
215         opkg_msg(INFO, "\n");
216
217         for (iter = void_list_first(&conf->pkg_dest_list); iter;
218              iter = void_list_next(&conf->pkg_dest_list, iter)) {
219
220                 dest = (pkg_dest_t *) iter->data;
221
222                 if (file_exists(dest->status_file_name)) {
223                         if (pkg_hash_add_from_file
224                             (dest->status_file_name, NULL, dest, 1, SF_NEED_DETAIL))
225                                 return -1;
226                 }
227         }
228
229         return 0;
230 }
231
232 static void
233 pkg_hash_load_package_details_helper(const char *pkg_name, void *entry, void *data)
234 {
235         int *count = data;
236         abstract_pkg_t *ab_pkg = (abstract_pkg_t *) entry;
237
238         if (ab_pkg->state_flag & SF_NEED_DETAIL) {
239                 if (ab_pkg->state_flag & SF_MARKED) {
240                         opkg_msg(DEBUG, "skipping already seen flagged abpkg %s\n",
241                                  ab_pkg->name);
242                         return;
243                 }
244
245                 opkg_msg(DEBUG, "found yet incomplete flagged abpkg %s\n",
246                          ab_pkg->name);
247
248                 (*count)++;
249                 ab_pkg->state_flag |= SF_MARKED;
250         }
251 }
252
253 int pkg_hash_load_package_details(void)
254 {
255         int n_need_detail;
256
257         while (1) {
258                 pkg_hash_load_feeds(0);
259
260                 n_need_detail = 0;
261                 hash_table_foreach(&conf->pkg_hash, pkg_hash_load_package_details_helper, &n_need_detail);
262
263                 if (n_need_detail > 0)
264                         opkg_msg(DEBUG, "Found %d packages requiring details, reloading feeds\n", n_need_detail);
265                 else
266                         break;
267         }
268
269         return 0;
270 }
271
272 pkg_t *pkg_hash_fetch_best_installation_candidate(abstract_pkg_t * apkg,
273                                                   int (*constraint_fcn) (pkg_t *
274                                                                          pkg,
275                                                                          void
276                                                                          *cdata),
277                                                   void *cdata, int quiet)
278 {
279         int i, j;
280         int nprovides = 0;
281         int nmatching = 0;
282         int wrong_arch_found = 0;
283         int arch_priority;
284         pkg_vec_t *matching_pkgs;
285         abstract_pkg_vec_t *matching_apkgs;
286         abstract_pkg_vec_t *provided_apkg_vec;
287         abstract_pkg_t **provided_apkgs;
288         abstract_pkg_vec_t *providers;
289         pkg_t *latest_installed_parent = NULL;
290         pkg_t *latest_matching = NULL;
291         pkg_t *priorized_matching = NULL;
292         pkg_t *held_pkg = NULL;
293         pkg_t *good_pkg_by_name = NULL;
294
295         if (apkg == NULL || apkg->provided_by == NULL
296             || (apkg->provided_by->len == 0))
297                 return NULL;
298
299         matching_pkgs = pkg_vec_alloc();
300         matching_apkgs = abstract_pkg_vec_alloc();
301         providers = abstract_pkg_vec_alloc();
302
303         opkg_msg(DEBUG, "Best installation candidate for %s:\n", apkg->name);
304
305         provided_apkg_vec = apkg->provided_by;
306         nprovides = provided_apkg_vec->len;
307         provided_apkgs = provided_apkg_vec->pkgs;
308         if (nprovides > 1)
309                 opkg_msg(DEBUG, "apkg=%s nprovides=%d.\n", apkg->name,
310                          nprovides);
311
312         /* accumulate all the providers */
313         for (i = 0; i < nprovides; i++) {
314                 abstract_pkg_t *provider_apkg = provided_apkgs[i];
315                 opkg_msg(DEBUG, "Adding %s to providers.\n",
316                          provider_apkg->name);
317                 abstract_pkg_vec_insert(providers, provider_apkg);
318         }
319         nprovides = providers->len;
320
321         for (i = 0; i < nprovides; i++) {
322                 abstract_pkg_t *provider_apkg =
323                     abstract_pkg_vec_get(providers, i);
324                 abstract_pkg_t *replacement_apkg = NULL;
325                 pkg_vec_t *vec;
326
327                 if (provider_apkg->replaced_by
328                     && provider_apkg->replaced_by->len) {
329                         replacement_apkg = provider_apkg->replaced_by->pkgs[0];
330                         if (provider_apkg->replaced_by->len > 1) {
331                                 opkg_msg(NOTICE, "Multiple replacers for %s, "
332                                          "using first one (%s).\n",
333                                          provider_apkg->name,
334                                          replacement_apkg->name);
335                         }
336                 }
337
338                 if (replacement_apkg)
339                         opkg_msg(DEBUG,
340                                  "replacement_apkg=%s for provider_apkg=%s.\n",
341                                  replacement_apkg->name, provider_apkg->name);
342
343                 if (replacement_apkg && (replacement_apkg != provider_apkg)) {
344                         if (abstract_pkg_vec_contains
345                             (providers, replacement_apkg))
346                                 continue;
347                         else
348                                 provider_apkg = replacement_apkg;
349                 }
350
351                 if (!(vec = provider_apkg->pkgs)) {
352                         opkg_msg(DEBUG, "No pkgs for provider_apkg %s.\n",
353                                  provider_apkg->name);
354                         continue;
355                 }
356
357                 /* now check for supported architecture */
358                 {
359                         int max_count = 0;
360
361                         /* count packages matching max arch priority and keep track of last one */
362                         for (j = 0; j < vec->len; j++) {
363                                 pkg_t *maybe = vec->pkgs[j];
364                                 arch_priority = pkg_get_arch_priority(maybe);
365
366                                 opkg_msg(DEBUG,
367                                          "%s arch=%s arch_priority=%d version=%s.\n",
368                                          maybe->name, pkg_get_architecture(maybe),
369                                          arch_priority, pkg_get_string(maybe, PKG_VERSION));
370                                 /* We make sure not to add the same package twice. Need to search for the reason why
371                                    they show up twice sometimes. */
372                                 if ((arch_priority > 0)
373                                     &&
374                                     (!pkg_vec_contains(matching_pkgs, maybe))) {
375                                         max_count++;
376                                         abstract_pkg_vec_insert(matching_apkgs,
377                                                                 maybe->parent);
378                                         pkg_vec_insert(matching_pkgs, maybe);
379                                 }
380                         }
381
382                         if (vec->len > 0 && matching_pkgs->len < 1)
383                                 wrong_arch_found = 1;
384                 }
385         }
386
387         if (matching_pkgs->len < 1) {
388                 if (wrong_arch_found)
389                         opkg_msg(ERROR, "Packages for %s found, but"
390                                  " incompatible with the architectures configured\n",
391                                  apkg->name);
392                 pkg_vec_free(matching_pkgs);
393                 abstract_pkg_vec_free(matching_apkgs);
394                 abstract_pkg_vec_free(providers);
395                 return NULL;
396         }
397
398         if (matching_pkgs->len > 1)
399                 pkg_vec_sort(matching_pkgs,
400                              pkg_name_version_and_architecture_compare);
401         if (matching_apkgs->len > 1)
402                 abstract_pkg_vec_sort(matching_apkgs, abstract_pkg_name_compare);
403
404         for (i = 0; i < matching_pkgs->len; i++) {
405                 pkg_t *matching = matching_pkgs->pkgs[i];
406                 if (constraint_fcn(matching, cdata)) {
407                         opkg_msg(DEBUG, "Candidate: %s %s.\n",
408                                  matching->name, pkg_get_string(matching, PKG_VERSION));
409                         good_pkg_by_name = matching;
410                         /* It has been provided by hand, so it is what user want */
411                         if (matching->provided_by_hand == 1)
412                                 break;
413                 }
414         }
415
416         for (i = 0; i < matching_pkgs->len; i++) {
417                 pkg_t *matching = matching_pkgs->pkgs[i];
418                 latest_matching = matching;
419                 if (matching->parent->state_status == SS_INSTALLED
420                     || matching->parent->state_status == SS_UNPACKED)
421                         latest_installed_parent = matching;
422                 if (matching->state_flag & (SF_HOLD | SF_PREFER)) {
423                         if (held_pkg)
424                                 opkg_msg(NOTICE,
425                                          "Multiple packages (%s and %s) providing"
426                                          " same name marked HOLD or PREFER. "
427                                          "Using latest.\n", held_pkg->name,
428                                          matching->name);
429                         held_pkg = matching;
430                 }
431         }
432
433         if (!good_pkg_by_name && !held_pkg && !latest_installed_parent
434             && matching_apkgs->len > 1 && !quiet) {
435                 int prio = 0;
436                 for (i = 0; i < matching_pkgs->len; i++) {
437                         pkg_t *matching = matching_pkgs->pkgs[i];
438                         arch_priority = pkg_get_arch_priority(matching);
439                         if (arch_priority > prio) {
440                                 priorized_matching = matching;
441                                 prio = arch_priority;
442                                 opkg_msg(DEBUG, "Match %s with priority %i.\n",
443                                          matching->name, prio);
444                         }
445                 }
446
447         }
448
449         if (conf->verbosity >= INFO && matching_apkgs->len > 1) {
450                 opkg_msg(INFO, "%d matching pkgs for apkg=%s:\n",
451                          matching_pkgs->len, apkg->name);
452                 for (i = 0; i < matching_pkgs->len; i++) {
453                         pkg_t *matching = matching_pkgs->pkgs[i];
454                         opkg_msg(INFO, "%s %s %s\n",
455                                  matching->name, pkg_get_string(matching, PKG_VERSION),
456                                  pkg_get_architecture(matching));
457                 }
458         }
459
460         nmatching = matching_apkgs->len;
461
462         pkg_vec_free(matching_pkgs);
463         abstract_pkg_vec_free(matching_apkgs);
464         abstract_pkg_vec_free(providers);
465
466         if (good_pkg_by_name) { /* We found a good candidate, we will install it */
467                 return good_pkg_by_name;
468         }
469         if (held_pkg) {
470                 opkg_msg(INFO, "Using held package %s.\n", held_pkg->name);
471                 return held_pkg;
472         }
473         if (latest_installed_parent) {
474                 opkg_msg(INFO,
475                          "Using latest version of installed package %s.\n",
476                          latest_installed_parent->name);
477                 return latest_installed_parent;
478         }
479         if (priorized_matching) {
480                 opkg_msg(INFO, "Using priorized matching %s %s %s.\n",
481                          priorized_matching->name, pkg_get_string(priorized_matching, PKG_VERSION),
482                          pkg_get_architecture(priorized_matching));
483                 return priorized_matching;
484         }
485         if (nmatching > 1) {
486                 opkg_msg(INFO, "No matching pkg out of %d matching_apkgs.\n",
487                          nmatching);
488                 return NULL;
489         }
490         if (latest_matching) {
491                 opkg_msg(INFO, "Using latest matching %s %s %s.\n",
492                          latest_matching->name, pkg_get_string(latest_matching, PKG_VERSION),
493                          pkg_get_architecture(latest_matching));
494                 return latest_matching;
495         }
496         return NULL;
497 }
498
499 static int pkg_name_constraint_fcn(pkg_t * pkg, void *cdata)
500 {
501         const char *name = (const char *)cdata;
502
503         if (strcmp(pkg->name, name) == 0)
504                 return 1;
505         else
506                 return 0;
507 }
508
509 static pkg_vec_t *pkg_vec_fetch_by_name(const char *pkg_name)
510 {
511         abstract_pkg_t *ab_pkg;
512
513         if (!(ab_pkg = abstract_pkg_fetch_by_name(pkg_name)))
514                 return NULL;
515
516         if (ab_pkg->pkgs)
517                 return ab_pkg->pkgs;
518
519         if (ab_pkg->provided_by) {
520                 abstract_pkg_t *abpkg =
521                     abstract_pkg_vec_get(ab_pkg->provided_by, 0);
522                 if (abpkg != NULL)
523                         return abpkg->pkgs;
524                 else
525                         return ab_pkg->pkgs;
526         }
527
528         return NULL;
529 }
530
531 pkg_t *pkg_hash_fetch_best_installation_candidate_by_name(const char *name)
532 {
533         abstract_pkg_t *apkg = NULL;
534
535         if (!(apkg = abstract_pkg_fetch_by_name(name)))
536                 return NULL;
537
538         return pkg_hash_fetch_best_installation_candidate(apkg,
539                                                           pkg_name_constraint_fcn,
540                                                           apkg->name, 0);
541 }
542
543 pkg_t *pkg_hash_fetch_by_name_version(const char *pkg_name, const char *version)
544 {
545         pkg_vec_t *vec;
546         int i;
547         char *version_str = NULL;
548
549         if (!(vec = pkg_vec_fetch_by_name(pkg_name)))
550                 return NULL;
551
552         for (i = 0; i < vec->len; i++) {
553                 version_str = pkg_version_str_alloc(vec->pkgs[i]);
554                 if (!strcmp(version_str, version)) {
555                         free(version_str);
556                         break;
557                 }
558                 free(version_str);
559         }
560
561         if (i == vec->len)
562                 return NULL;
563
564         return vec->pkgs[i];
565 }
566
567 pkg_t *pkg_hash_fetch_installed_by_name_dest(const char *pkg_name,
568                                              pkg_dest_t * dest)
569 {
570         pkg_vec_t *vec;
571         int i;
572
573         if (!(vec = pkg_vec_fetch_by_name(pkg_name))) {
574                 return NULL;
575         }
576
577         for (i = 0; i < vec->len; i++)
578                 if ((vec->pkgs[i]->state_status == SS_INSTALLED
579                      || vec->pkgs[i]->state_status == SS_UNPACKED)
580                     && vec->pkgs[i]->dest == dest) {
581                         return vec->pkgs[i];
582                 }
583
584         return NULL;
585 }
586
587 pkg_t *pkg_hash_fetch_installed_by_name(const char *pkg_name)
588 {
589         pkg_vec_t *vec;
590         int i;
591
592         if (!(vec = pkg_vec_fetch_by_name(pkg_name))) {
593                 return NULL;
594         }
595
596         for (i = 0; i < vec->len; i++) {
597                 if (vec->pkgs[i]->state_status == SS_INSTALLED
598                     || vec->pkgs[i]->state_status == SS_UNPACKED) {
599                         return vec->pkgs[i];
600                 }
601         }
602
603         return NULL;
604 }
605
606 static void
607 pkg_hash_fetch_available_helper(const char *pkg_name, void *entry, void *data)
608 {
609         int j;
610         abstract_pkg_t *ab_pkg = (abstract_pkg_t *) entry;
611         pkg_vec_t *all = (pkg_vec_t *) data;
612         pkg_vec_t *pkg_vec = ab_pkg->pkgs;
613
614         if (!pkg_vec)
615                 return;
616
617         for (j = 0; j < pkg_vec->len; j++) {
618                 pkg_t *pkg = pkg_vec->pkgs[j];
619                 pkg_vec_insert(all, pkg);
620         }
621 }
622
623 void pkg_hash_fetch_available(pkg_vec_t * all)
624 {
625         hash_table_foreach(&conf->pkg_hash, pkg_hash_fetch_available_helper,
626                            all);
627 }
628
629 static void
630 pkg_hash_fetch_all_installed_helper(const char *pkg_name, void *entry,
631                                     void *data)
632 {
633         abstract_pkg_t *ab_pkg = (abstract_pkg_t *) entry;
634         pkg_vec_t *all = (pkg_vec_t *) data;
635         pkg_vec_t *pkg_vec = ab_pkg->pkgs;
636         int j;
637
638         if (!pkg_vec)
639                 return;
640
641         for (j = 0; j < pkg_vec->len; j++) {
642                 pkg_t *pkg = pkg_vec->pkgs[j];
643                 if (pkg->state_status == SS_INSTALLED
644                     || pkg->state_status == SS_UNPACKED)
645                         pkg_vec_insert(all, pkg);
646         }
647 }
648
649 void pkg_hash_fetch_all_installed(pkg_vec_t * all)
650 {
651         hash_table_foreach(&conf->pkg_hash, pkg_hash_fetch_all_installed_helper,
652                            all);
653 }
654
655 /*
656  * This assumes that the abstract pkg doesn't exist.
657  */
658 static abstract_pkg_t *add_new_abstract_pkg_by_name(const char *pkg_name)
659 {
660         abstract_pkg_t *ab_pkg;
661
662         ab_pkg = abstract_pkg_new();
663
664         ab_pkg->name = xstrdup(pkg_name);
665         hash_table_insert(&conf->pkg_hash, pkg_name, ab_pkg);
666
667         return ab_pkg;
668 }
669
670 abstract_pkg_t *ensure_abstract_pkg_by_name(const char *pkg_name)
671 {
672         abstract_pkg_t *ab_pkg;
673
674         if (!(ab_pkg = abstract_pkg_fetch_by_name(pkg_name)))
675                 ab_pkg = add_new_abstract_pkg_by_name(pkg_name);
676
677         return ab_pkg;
678 }
679
680 void hash_insert_pkg(pkg_t * pkg, int set_status)
681 {
682         abstract_pkg_t *ab_pkg;
683
684         ab_pkg = ensure_abstract_pkg_by_name(pkg->name);
685         if (!ab_pkg->pkgs)
686                 ab_pkg->pkgs = pkg_vec_alloc();
687
688         if (pkg->state_status == SS_INSTALLED) {
689                 ab_pkg->state_status = SS_INSTALLED;
690         } else if (pkg->state_status == SS_UNPACKED) {
691                 ab_pkg->state_status = SS_UNPACKED;
692         }
693
694         buildDepends(pkg);
695
696         buildProvides(ab_pkg, pkg);
697
698         init_providelist(pkg, NULL);
699
700         /* Need to build the conflicts graph before replaces for correct
701          * calculation of replaced_by relation.
702          */
703         buildConflicts(pkg);
704
705         buildReplaces(ab_pkg, pkg);
706
707         buildDependedUponBy(pkg, ab_pkg);
708
709         pkg_vec_insert_merge(ab_pkg->pkgs, pkg, set_status);
710         pkg->parent = ab_pkg;
711 }
712
713 static const char *strip_offline_root(const char *file_name)
714 {
715         unsigned int len;
716
717         if (conf->offline_root) {
718                 len = strlen(conf->offline_root);
719                 if (strncmp(file_name, conf->offline_root, len) == 0)
720                         file_name += len;
721         }
722
723         return file_name;
724 }
725
726 void file_hash_remove(const char *file_name)
727 {
728         file_name = strip_offline_root(file_name);
729         hash_table_remove(&conf->file_hash, file_name);
730 }
731
732 pkg_t *file_hash_get_file_owner(const char *file_name)
733 {
734         file_name = strip_offline_root(file_name);
735         return hash_table_get(&conf->file_hash, file_name);
736 }
737
738 void file_hash_set_file_owner(const char *file_name, pkg_t * owning_pkg)
739 {
740         pkg_t *old_owning_pkg;
741         int file_name_len = strlen(file_name);
742
743         if (file_name[file_name_len - 1] == '/')
744                 return;
745
746         file_name = strip_offline_root(file_name);
747
748         old_owning_pkg = hash_table_get(&conf->file_hash, file_name);
749         hash_table_insert(&conf->file_hash, file_name, owning_pkg);
750
751         if (old_owning_pkg) {
752                 pkg_get_installed_files(old_owning_pkg);
753                 str_list_remove_elt(old_owning_pkg->installed_files, file_name);
754                 pkg_free_installed_files(old_owning_pkg);
755
756                 /* mark this package to have its filelist written */
757                 old_owning_pkg->state_flag |= SF_FILELIST_CHANGED;
758                 owning_pkg->state_flag |= SF_FILELIST_CHANGED;
759         }
760 }