pack: move release_pack_memory()
[git] / sha1_file.c
1 /*
2  * GIT - The information manager from hell
3  *
4  * Copyright (C) Linus Torvalds, 2005
5  *
6  * This handles basic git sha1 object files - packing, unpacking,
7  * creation etc.
8  */
9 #include "cache.h"
10 #include "config.h"
11 #include "string-list.h"
12 #include "lockfile.h"
13 #include "delta.h"
14 #include "pack.h"
15 #include "blob.h"
16 #include "commit.h"
17 #include "run-command.h"
18 #include "tag.h"
19 #include "tree.h"
20 #include "tree-walk.h"
21 #include "refs.h"
22 #include "pack-revindex.h"
23 #include "sha1-lookup.h"
24 #include "bulk-checkin.h"
25 #include "streaming.h"
26 #include "dir.h"
27 #include "mru.h"
28 #include "list.h"
29 #include "mergesort.h"
30 #include "quote.h"
31 #include "packfile.h"
32
33 const unsigned char null_sha1[20];
34 const struct object_id null_oid;
35 const struct object_id empty_tree_oid = {
36         EMPTY_TREE_SHA1_BIN_LITERAL
37 };
38 const struct object_id empty_blob_oid = {
39         EMPTY_BLOB_SHA1_BIN_LITERAL
40 };
41
42 /*
43  * This is meant to hold a *small* number of objects that you would
44  * want read_sha1_file() to be able to return, but yet you do not want
45  * to write them into the object store (e.g. a browse-only
46  * application).
47  */
48 static struct cached_object {
49         unsigned char sha1[20];
50         enum object_type type;
51         void *buf;
52         unsigned long size;
53 } *cached_objects;
54 static int cached_object_nr, cached_object_alloc;
55
56 static struct cached_object empty_tree = {
57         EMPTY_TREE_SHA1_BIN_LITERAL,
58         OBJ_TREE,
59         "",
60         0
61 };
62
63 static struct cached_object *find_cached_object(const unsigned char *sha1)
64 {
65         int i;
66         struct cached_object *co = cached_objects;
67
68         for (i = 0; i < cached_object_nr; i++, co++) {
69                 if (!hashcmp(co->sha1, sha1))
70                         return co;
71         }
72         if (!hashcmp(sha1, empty_tree.sha1))
73                 return &empty_tree;
74         return NULL;
75 }
76
77 int mkdir_in_gitdir(const char *path)
78 {
79         if (mkdir(path, 0777)) {
80                 int saved_errno = errno;
81                 struct stat st;
82                 struct strbuf sb = STRBUF_INIT;
83
84                 if (errno != EEXIST)
85                         return -1;
86                 /*
87                  * Are we looking at a path in a symlinked worktree
88                  * whose original repository does not yet have it?
89                  * e.g. .git/rr-cache pointing at its original
90                  * repository in which the user hasn't performed any
91                  * conflict resolution yet?
92                  */
93                 if (lstat(path, &st) || !S_ISLNK(st.st_mode) ||
94                     strbuf_readlink(&sb, path, st.st_size) ||
95                     !is_absolute_path(sb.buf) ||
96                     mkdir(sb.buf, 0777)) {
97                         strbuf_release(&sb);
98                         errno = saved_errno;
99                         return -1;
100                 }
101                 strbuf_release(&sb);
102         }
103         return adjust_shared_perm(path);
104 }
105
106 enum scld_error safe_create_leading_directories(char *path)
107 {
108         char *next_component = path + offset_1st_component(path);
109         enum scld_error ret = SCLD_OK;
110
111         while (ret == SCLD_OK && next_component) {
112                 struct stat st;
113                 char *slash = next_component, slash_character;
114
115                 while (*slash && !is_dir_sep(*slash))
116                         slash++;
117
118                 if (!*slash)
119                         break;
120
121                 next_component = slash + 1;
122                 while (is_dir_sep(*next_component))
123                         next_component++;
124                 if (!*next_component)
125                         break;
126
127                 slash_character = *slash;
128                 *slash = '\0';
129                 if (!stat(path, &st)) {
130                         /* path exists */
131                         if (!S_ISDIR(st.st_mode)) {
132                                 errno = ENOTDIR;
133                                 ret = SCLD_EXISTS;
134                         }
135                 } else if (mkdir(path, 0777)) {
136                         if (errno == EEXIST &&
137                             !stat(path, &st) && S_ISDIR(st.st_mode))
138                                 ; /* somebody created it since we checked */
139                         else if (errno == ENOENT)
140                                 /*
141                                  * Either mkdir() failed because
142                                  * somebody just pruned the containing
143                                  * directory, or stat() failed because
144                                  * the file that was in our way was
145                                  * just removed.  Either way, inform
146                                  * the caller that it might be worth
147                                  * trying again:
148                                  */
149                                 ret = SCLD_VANISHED;
150                         else
151                                 ret = SCLD_FAILED;
152                 } else if (adjust_shared_perm(path)) {
153                         ret = SCLD_PERMS;
154                 }
155                 *slash = slash_character;
156         }
157         return ret;
158 }
159
160 enum scld_error safe_create_leading_directories_const(const char *path)
161 {
162         int save_errno;
163         /* path points to cache entries, so xstrdup before messing with it */
164         char *buf = xstrdup(path);
165         enum scld_error result = safe_create_leading_directories(buf);
166
167         save_errno = errno;
168         free(buf);
169         errno = save_errno;
170         return result;
171 }
172
173 int raceproof_create_file(const char *path, create_file_fn fn, void *cb)
174 {
175         /*
176          * The number of times we will try to remove empty directories
177          * in the way of path. This is only 1 because if another
178          * process is racily creating directories that conflict with
179          * us, we don't want to fight against them.
180          */
181         int remove_directories_remaining = 1;
182
183         /*
184          * The number of times that we will try to create the
185          * directories containing path. We are willing to attempt this
186          * more than once, because another process could be trying to
187          * clean up empty directories at the same time as we are
188          * trying to create them.
189          */
190         int create_directories_remaining = 3;
191
192         /* A scratch copy of path, filled lazily if we need it: */
193         struct strbuf path_copy = STRBUF_INIT;
194
195         int ret, save_errno;
196
197         /* Sanity check: */
198         assert(*path);
199
200 retry_fn:
201         ret = fn(path, cb);
202         save_errno = errno;
203         if (!ret)
204                 goto out;
205
206         if (errno == EISDIR && remove_directories_remaining-- > 0) {
207                 /*
208                  * A directory is in the way. Maybe it is empty; try
209                  * to remove it:
210                  */
211                 if (!path_copy.len)
212                         strbuf_addstr(&path_copy, path);
213
214                 if (!remove_dir_recursively(&path_copy, REMOVE_DIR_EMPTY_ONLY))
215                         goto retry_fn;
216         } else if (errno == ENOENT && create_directories_remaining-- > 0) {
217                 /*
218                  * Maybe the containing directory didn't exist, or
219                  * maybe it was just deleted by a process that is
220                  * racing with us to clean up empty directories. Try
221                  * to create it:
222                  */
223                 enum scld_error scld_result;
224
225                 if (!path_copy.len)
226                         strbuf_addstr(&path_copy, path);
227
228                 do {
229                         scld_result = safe_create_leading_directories(path_copy.buf);
230                         if (scld_result == SCLD_OK)
231                                 goto retry_fn;
232                 } while (scld_result == SCLD_VANISHED && create_directories_remaining-- > 0);
233         }
234
235 out:
236         strbuf_release(&path_copy);
237         errno = save_errno;
238         return ret;
239 }
240
241 static void fill_sha1_path(struct strbuf *buf, const unsigned char *sha1)
242 {
243         int i;
244         for (i = 0; i < 20; i++) {
245                 static char hex[] = "0123456789abcdef";
246                 unsigned int val = sha1[i];
247                 strbuf_addch(buf, hex[val >> 4]);
248                 strbuf_addch(buf, hex[val & 0xf]);
249                 if (!i)
250                         strbuf_addch(buf, '/');
251         }
252 }
253
254 const char *sha1_file_name(const unsigned char *sha1)
255 {
256         static struct strbuf buf = STRBUF_INIT;
257
258         strbuf_reset(&buf);
259         strbuf_addf(&buf, "%s/", get_object_directory());
260
261         fill_sha1_path(&buf, sha1);
262         return buf.buf;
263 }
264
265 struct strbuf *alt_scratch_buf(struct alternate_object_database *alt)
266 {
267         strbuf_setlen(&alt->scratch, alt->base_len);
268         return &alt->scratch;
269 }
270
271 static const char *alt_sha1_path(struct alternate_object_database *alt,
272                                  const unsigned char *sha1)
273 {
274         struct strbuf *buf = alt_scratch_buf(alt);
275         fill_sha1_path(buf, sha1);
276         return buf->buf;
277 }
278
279 struct alternate_object_database *alt_odb_list;
280 static struct alternate_object_database **alt_odb_tail;
281
282 /*
283  * Return non-zero iff the path is usable as an alternate object database.
284  */
285 static int alt_odb_usable(struct strbuf *path, const char *normalized_objdir)
286 {
287         struct alternate_object_database *alt;
288
289         /* Detect cases where alternate disappeared */
290         if (!is_directory(path->buf)) {
291                 error("object directory %s does not exist; "
292                       "check .git/objects/info/alternates.",
293                       path->buf);
294                 return 0;
295         }
296
297         /*
298          * Prevent the common mistake of listing the same
299          * thing twice, or object directory itself.
300          */
301         for (alt = alt_odb_list; alt; alt = alt->next) {
302                 if (!fspathcmp(path->buf, alt->path))
303                         return 0;
304         }
305         if (!fspathcmp(path->buf, normalized_objdir))
306                 return 0;
307
308         return 1;
309 }
310
311 /*
312  * Prepare alternate object database registry.
313  *
314  * The variable alt_odb_list points at the list of struct
315  * alternate_object_database.  The elements on this list come from
316  * non-empty elements from colon separated ALTERNATE_DB_ENVIRONMENT
317  * environment variable, and $GIT_OBJECT_DIRECTORY/info/alternates,
318  * whose contents is similar to that environment variable but can be
319  * LF separated.  Its base points at a statically allocated buffer that
320  * contains "/the/directory/corresponding/to/.git/objects/...", while
321  * its name points just after the slash at the end of ".git/objects/"
322  * in the example above, and has enough space to hold 40-byte hex
323  * SHA1, an extra slash for the first level indirection, and the
324  * terminating NUL.
325  */
326 static void read_info_alternates(const char * relative_base, int depth);
327 static int link_alt_odb_entry(const char *entry, const char *relative_base,
328         int depth, const char *normalized_objdir)
329 {
330         struct alternate_object_database *ent;
331         struct strbuf pathbuf = STRBUF_INIT;
332
333         if (!is_absolute_path(entry) && relative_base) {
334                 strbuf_realpath(&pathbuf, relative_base, 1);
335                 strbuf_addch(&pathbuf, '/');
336         }
337         strbuf_addstr(&pathbuf, entry);
338
339         if (strbuf_normalize_path(&pathbuf) < 0 && relative_base) {
340                 error("unable to normalize alternate object path: %s",
341                       pathbuf.buf);
342                 strbuf_release(&pathbuf);
343                 return -1;
344         }
345
346         /*
347          * The trailing slash after the directory name is given by
348          * this function at the end. Remove duplicates.
349          */
350         while (pathbuf.len && pathbuf.buf[pathbuf.len - 1] == '/')
351                 strbuf_setlen(&pathbuf, pathbuf.len - 1);
352
353         if (!alt_odb_usable(&pathbuf, normalized_objdir)) {
354                 strbuf_release(&pathbuf);
355                 return -1;
356         }
357
358         ent = alloc_alt_odb(pathbuf.buf);
359
360         /* add the alternate entry */
361         *alt_odb_tail = ent;
362         alt_odb_tail = &(ent->next);
363         ent->next = NULL;
364
365         /* recursively add alternates */
366         read_info_alternates(pathbuf.buf, depth + 1);
367
368         strbuf_release(&pathbuf);
369         return 0;
370 }
371
372 static const char *parse_alt_odb_entry(const char *string,
373                                        int sep,
374                                        struct strbuf *out)
375 {
376         const char *end;
377
378         strbuf_reset(out);
379
380         if (*string == '#') {
381                 /* comment; consume up to next separator */
382                 end = strchrnul(string, sep);
383         } else if (*string == '"' && !unquote_c_style(out, string, &end)) {
384                 /*
385                  * quoted path; unquote_c_style has copied the
386                  * data for us and set "end". Broken quoting (e.g.,
387                  * an entry that doesn't end with a quote) falls
388                  * back to the unquoted case below.
389                  */
390         } else {
391                 /* normal, unquoted path */
392                 end = strchrnul(string, sep);
393                 strbuf_add(out, string, end - string);
394         }
395
396         if (*end)
397                 end++;
398         return end;
399 }
400
401 static void link_alt_odb_entries(const char *alt, int len, int sep,
402                                  const char *relative_base, int depth)
403 {
404         struct strbuf objdirbuf = STRBUF_INIT;
405         struct strbuf entry = STRBUF_INIT;
406
407         if (depth > 5) {
408                 error("%s: ignoring alternate object stores, nesting too deep.",
409                                 relative_base);
410                 return;
411         }
412
413         strbuf_add_absolute_path(&objdirbuf, get_object_directory());
414         if (strbuf_normalize_path(&objdirbuf) < 0)
415                 die("unable to normalize object directory: %s",
416                     objdirbuf.buf);
417
418         while (*alt) {
419                 alt = parse_alt_odb_entry(alt, sep, &entry);
420                 if (!entry.len)
421                         continue;
422                 link_alt_odb_entry(entry.buf, relative_base, depth, objdirbuf.buf);
423         }
424         strbuf_release(&entry);
425         strbuf_release(&objdirbuf);
426 }
427
428 static void read_info_alternates(const char * relative_base, int depth)
429 {
430         char *map;
431         size_t mapsz;
432         struct stat st;
433         char *path;
434         int fd;
435
436         path = xstrfmt("%s/info/alternates", relative_base);
437         fd = git_open(path);
438         free(path);
439         if (fd < 0)
440                 return;
441         if (fstat(fd, &st) || (st.st_size == 0)) {
442                 close(fd);
443                 return;
444         }
445         mapsz = xsize_t(st.st_size);
446         map = xmmap(NULL, mapsz, PROT_READ, MAP_PRIVATE, fd, 0);
447         close(fd);
448
449         link_alt_odb_entries(map, mapsz, '\n', relative_base, depth);
450
451         munmap(map, mapsz);
452 }
453
454 struct alternate_object_database *alloc_alt_odb(const char *dir)
455 {
456         struct alternate_object_database *ent;
457
458         FLEX_ALLOC_STR(ent, path, dir);
459         strbuf_init(&ent->scratch, 0);
460         strbuf_addf(&ent->scratch, "%s/", dir);
461         ent->base_len = ent->scratch.len;
462
463         return ent;
464 }
465
466 void add_to_alternates_file(const char *reference)
467 {
468         struct lock_file *lock = xcalloc(1, sizeof(struct lock_file));
469         char *alts = git_pathdup("objects/info/alternates");
470         FILE *in, *out;
471
472         hold_lock_file_for_update(lock, alts, LOCK_DIE_ON_ERROR);
473         out = fdopen_lock_file(lock, "w");
474         if (!out)
475                 die_errno("unable to fdopen alternates lockfile");
476
477         in = fopen(alts, "r");
478         if (in) {
479                 struct strbuf line = STRBUF_INIT;
480                 int found = 0;
481
482                 while (strbuf_getline(&line, in) != EOF) {
483                         if (!strcmp(reference, line.buf)) {
484                                 found = 1;
485                                 break;
486                         }
487                         fprintf_or_die(out, "%s\n", line.buf);
488                 }
489
490                 strbuf_release(&line);
491                 fclose(in);
492
493                 if (found) {
494                         rollback_lock_file(lock);
495                         lock = NULL;
496                 }
497         }
498         else if (errno != ENOENT)
499                 die_errno("unable to read alternates file");
500
501         if (lock) {
502                 fprintf_or_die(out, "%s\n", reference);
503                 if (commit_lock_file(lock))
504                         die_errno("unable to move new alternates file into place");
505                 if (alt_odb_tail)
506                         link_alt_odb_entries(reference, strlen(reference), '\n', NULL, 0);
507         }
508         free(alts);
509 }
510
511 void add_to_alternates_memory(const char *reference)
512 {
513         /*
514          * Make sure alternates are initialized, or else our entry may be
515          * overwritten when they are.
516          */
517         prepare_alt_odb();
518
519         link_alt_odb_entries(reference, strlen(reference), '\n', NULL, 0);
520 }
521
522 /*
523  * Compute the exact path an alternate is at and returns it. In case of
524  * error NULL is returned and the human readable error is added to `err`
525  * `path` may be relative and should point to $GITDIR.
526  * `err` must not be null.
527  */
528 char *compute_alternate_path(const char *path, struct strbuf *err)
529 {
530         char *ref_git = NULL;
531         const char *repo, *ref_git_s;
532         int seen_error = 0;
533
534         ref_git_s = real_path_if_valid(path);
535         if (!ref_git_s) {
536                 seen_error = 1;
537                 strbuf_addf(err, _("path '%s' does not exist"), path);
538                 goto out;
539         } else
540                 /*
541                  * Beware: read_gitfile(), real_path() and mkpath()
542                  * return static buffer
543                  */
544                 ref_git = xstrdup(ref_git_s);
545
546         repo = read_gitfile(ref_git);
547         if (!repo)
548                 repo = read_gitfile(mkpath("%s/.git", ref_git));
549         if (repo) {
550                 free(ref_git);
551                 ref_git = xstrdup(repo);
552         }
553
554         if (!repo && is_directory(mkpath("%s/.git/objects", ref_git))) {
555                 char *ref_git_git = mkpathdup("%s/.git", ref_git);
556                 free(ref_git);
557                 ref_git = ref_git_git;
558         } else if (!is_directory(mkpath("%s/objects", ref_git))) {
559                 struct strbuf sb = STRBUF_INIT;
560                 seen_error = 1;
561                 if (get_common_dir(&sb, ref_git)) {
562                         strbuf_addf(err,
563                                     _("reference repository '%s' as a linked "
564                                       "checkout is not supported yet."),
565                                     path);
566                         goto out;
567                 }
568
569                 strbuf_addf(err, _("reference repository '%s' is not a "
570                                         "local repository."), path);
571                 goto out;
572         }
573
574         if (!access(mkpath("%s/shallow", ref_git), F_OK)) {
575                 strbuf_addf(err, _("reference repository '%s' is shallow"),
576                             path);
577                 seen_error = 1;
578                 goto out;
579         }
580
581         if (!access(mkpath("%s/info/grafts", ref_git), F_OK)) {
582                 strbuf_addf(err,
583                             _("reference repository '%s' is grafted"),
584                             path);
585                 seen_error = 1;
586                 goto out;
587         }
588
589 out:
590         if (seen_error) {
591                 FREE_AND_NULL(ref_git);
592         }
593
594         return ref_git;
595 }
596
597 int foreach_alt_odb(alt_odb_fn fn, void *cb)
598 {
599         struct alternate_object_database *ent;
600         int r = 0;
601
602         prepare_alt_odb();
603         for (ent = alt_odb_list; ent; ent = ent->next) {
604                 r = fn(ent, cb);
605                 if (r)
606                         break;
607         }
608         return r;
609 }
610
611 void prepare_alt_odb(void)
612 {
613         const char *alt;
614
615         if (alt_odb_tail)
616                 return;
617
618         alt = getenv(ALTERNATE_DB_ENVIRONMENT);
619         if (!alt) alt = "";
620
621         alt_odb_tail = &alt_odb_list;
622         link_alt_odb_entries(alt, strlen(alt), PATH_SEP, NULL, 0);
623
624         read_info_alternates(get_object_directory(), 0);
625 }
626
627 /* Returns 1 if we have successfully freshened the file, 0 otherwise. */
628 static int freshen_file(const char *fn)
629 {
630         struct utimbuf t;
631         t.actime = t.modtime = time(NULL);
632         return !utime(fn, &t);
633 }
634
635 /*
636  * All of the check_and_freshen functions return 1 if the file exists and was
637  * freshened (if freshening was requested), 0 otherwise. If they return
638  * 0, you should not assume that it is safe to skip a write of the object (it
639  * either does not exist on disk, or has a stale mtime and may be subject to
640  * pruning).
641  */
642 int check_and_freshen_file(const char *fn, int freshen)
643 {
644         if (access(fn, F_OK))
645                 return 0;
646         if (freshen && !freshen_file(fn))
647                 return 0;
648         return 1;
649 }
650
651 static int check_and_freshen_local(const unsigned char *sha1, int freshen)
652 {
653         return check_and_freshen_file(sha1_file_name(sha1), freshen);
654 }
655
656 static int check_and_freshen_nonlocal(const unsigned char *sha1, int freshen)
657 {
658         struct alternate_object_database *alt;
659         prepare_alt_odb();
660         for (alt = alt_odb_list; alt; alt = alt->next) {
661                 const char *path = alt_sha1_path(alt, sha1);
662                 if (check_and_freshen_file(path, freshen))
663                         return 1;
664         }
665         return 0;
666 }
667
668 static int check_and_freshen(const unsigned char *sha1, int freshen)
669 {
670         return check_and_freshen_local(sha1, freshen) ||
671                check_and_freshen_nonlocal(sha1, freshen);
672 }
673
674 int has_loose_object_nonlocal(const unsigned char *sha1)
675 {
676         return check_and_freshen_nonlocal(sha1, 0);
677 }
678
679 static int has_loose_object(const unsigned char *sha1)
680 {
681         return check_and_freshen(sha1, 0);
682 }
683
684 static void mmap_limit_check(size_t length)
685 {
686         static size_t limit = 0;
687         if (!limit) {
688                 limit = git_env_ulong("GIT_MMAP_LIMIT", 0);
689                 if (!limit)
690                         limit = SIZE_MAX;
691         }
692         if (length > limit)
693                 die("attempting to mmap %"PRIuMAX" over limit %"PRIuMAX,
694                     (uintmax_t)length, (uintmax_t)limit);
695 }
696
697 void *xmmap_gently(void *start, size_t length,
698                   int prot, int flags, int fd, off_t offset)
699 {
700         void *ret;
701
702         mmap_limit_check(length);
703         ret = mmap(start, length, prot, flags, fd, offset);
704         if (ret == MAP_FAILED) {
705                 if (!length)
706                         return NULL;
707                 release_pack_memory(length);
708                 ret = mmap(start, length, prot, flags, fd, offset);
709         }
710         return ret;
711 }
712
713 void *xmmap(void *start, size_t length,
714         int prot, int flags, int fd, off_t offset)
715 {
716         void *ret = xmmap_gently(start, length, prot, flags, fd, offset);
717         if (ret == MAP_FAILED)
718                 die_errno("mmap failed");
719         return ret;
720 }
721
722 void close_pack_windows(struct packed_git *p)
723 {
724         while (p->windows) {
725                 struct pack_window *w = p->windows;
726
727                 if (w->inuse_cnt)
728                         die("pack '%s' still has open windows to it",
729                             p->pack_name);
730                 munmap(w->base, w->len);
731                 pack_mapped -= w->len;
732                 pack_open_windows--;
733                 p->windows = w->next;
734                 free(w);
735         }
736 }
737
738 static int close_pack_fd(struct packed_git *p)
739 {
740         if (p->pack_fd < 0)
741                 return 0;
742
743         close(p->pack_fd);
744         pack_open_fds--;
745         p->pack_fd = -1;
746
747         return 1;
748 }
749
750 static void close_pack(struct packed_git *p)
751 {
752         close_pack_windows(p);
753         close_pack_fd(p);
754         close_pack_index(p);
755 }
756
757 void close_all_packs(void)
758 {
759         struct packed_git *p;
760
761         for (p = packed_git; p; p = p->next)
762                 if (p->do_not_close)
763                         die("BUG: want to close pack marked 'do-not-close'");
764                 else
765                         close_pack(p);
766 }
767
768
769 /*
770  * The LRU pack is the one with the oldest MRU window, preferring packs
771  * with no used windows, or the oldest mtime if it has no windows allocated.
772  */
773 static void find_lru_pack(struct packed_git *p, struct packed_git **lru_p, struct pack_window **mru_w, int *accept_windows_inuse)
774 {
775         struct pack_window *w, *this_mru_w;
776         int has_windows_inuse = 0;
777
778         /*
779          * Reject this pack if it has windows and the previously selected
780          * one does not.  If this pack does not have windows, reject
781          * it if the pack file is newer than the previously selected one.
782          */
783         if (*lru_p && !*mru_w && (p->windows || p->mtime > (*lru_p)->mtime))
784                 return;
785
786         for (w = this_mru_w = p->windows; w; w = w->next) {
787                 /*
788                  * Reject this pack if any of its windows are in use,
789                  * but the previously selected pack did not have any
790                  * inuse windows.  Otherwise, record that this pack
791                  * has windows in use.
792                  */
793                 if (w->inuse_cnt) {
794                         if (*accept_windows_inuse)
795                                 has_windows_inuse = 1;
796                         else
797                                 return;
798                 }
799
800                 if (w->last_used > this_mru_w->last_used)
801                         this_mru_w = w;
802
803                 /*
804                  * Reject this pack if it has windows that have been
805                  * used more recently than the previously selected pack.
806                  * If the previously selected pack had windows inuse and
807                  * we have not encountered a window in this pack that is
808                  * inuse, skip this check since we prefer a pack with no
809                  * inuse windows to one that has inuse windows.
810                  */
811                 if (*mru_w && *accept_windows_inuse == has_windows_inuse &&
812                     this_mru_w->last_used > (*mru_w)->last_used)
813                         return;
814         }
815
816         /*
817          * Select this pack.
818          */
819         *mru_w = this_mru_w;
820         *lru_p = p;
821         *accept_windows_inuse = has_windows_inuse;
822 }
823
824 static int close_one_pack(void)
825 {
826         struct packed_git *p, *lru_p = NULL;
827         struct pack_window *mru_w = NULL;
828         int accept_windows_inuse = 1;
829
830         for (p = packed_git; p; p = p->next) {
831                 if (p->pack_fd == -1)
832                         continue;
833                 find_lru_pack(p, &lru_p, &mru_w, &accept_windows_inuse);
834         }
835
836         if (lru_p)
837                 return close_pack_fd(lru_p);
838
839         return 0;
840 }
841
842 void unuse_pack(struct pack_window **w_cursor)
843 {
844         struct pack_window *w = *w_cursor;
845         if (w) {
846                 w->inuse_cnt--;
847                 *w_cursor = NULL;
848         }
849 }
850
851 void close_pack_index(struct packed_git *p)
852 {
853         if (p->index_data) {
854                 munmap((void *)p->index_data, p->index_size);
855                 p->index_data = NULL;
856         }
857 }
858
859 static unsigned int get_max_fd_limit(void)
860 {
861 #ifdef RLIMIT_NOFILE
862         {
863                 struct rlimit lim;
864
865                 if (!getrlimit(RLIMIT_NOFILE, &lim))
866                         return lim.rlim_cur;
867         }
868 #endif
869
870 #ifdef _SC_OPEN_MAX
871         {
872                 long open_max = sysconf(_SC_OPEN_MAX);
873                 if (0 < open_max)
874                         return open_max;
875                 /*
876                  * Otherwise, we got -1 for one of the two
877                  * reasons:
878                  *
879                  * (1) sysconf() did not understand _SC_OPEN_MAX
880                  *     and signaled an error with -1; or
881                  * (2) sysconf() said there is no limit.
882                  *
883                  * We _could_ clear errno before calling sysconf() to
884                  * tell these two cases apart and return a huge number
885                  * in the latter case to let the caller cap it to a
886                  * value that is not so selfish, but letting the
887                  * fallback OPEN_MAX codepath take care of these cases
888                  * is a lot simpler.
889                  */
890         }
891 #endif
892
893 #ifdef OPEN_MAX
894         return OPEN_MAX;
895 #else
896         return 1; /* see the caller ;-) */
897 #endif
898 }
899
900 /*
901  * Do not call this directly as this leaks p->pack_fd on error return;
902  * call open_packed_git() instead.
903  */
904 static int open_packed_git_1(struct packed_git *p)
905 {
906         struct stat st;
907         struct pack_header hdr;
908         unsigned char sha1[20];
909         unsigned char *idx_sha1;
910         long fd_flag;
911
912         if (!p->index_data && open_pack_index(p))
913                 return error("packfile %s index unavailable", p->pack_name);
914
915         if (!pack_max_fds) {
916                 unsigned int max_fds = get_max_fd_limit();
917
918                 /* Save 3 for stdin/stdout/stderr, 22 for work */
919                 if (25 < max_fds)
920                         pack_max_fds = max_fds - 25;
921                 else
922                         pack_max_fds = 1;
923         }
924
925         while (pack_max_fds <= pack_open_fds && close_one_pack())
926                 ; /* nothing */
927
928         p->pack_fd = git_open(p->pack_name);
929         if (p->pack_fd < 0 || fstat(p->pack_fd, &st))
930                 return -1;
931         pack_open_fds++;
932
933         /* If we created the struct before we had the pack we lack size. */
934         if (!p->pack_size) {
935                 if (!S_ISREG(st.st_mode))
936                         return error("packfile %s not a regular file", p->pack_name);
937                 p->pack_size = st.st_size;
938         } else if (p->pack_size != st.st_size)
939                 return error("packfile %s size changed", p->pack_name);
940
941         /* We leave these file descriptors open with sliding mmap;
942          * there is no point keeping them open across exec(), though.
943          */
944         fd_flag = fcntl(p->pack_fd, F_GETFD, 0);
945         if (fd_flag < 0)
946                 return error("cannot determine file descriptor flags");
947         fd_flag |= FD_CLOEXEC;
948         if (fcntl(p->pack_fd, F_SETFD, fd_flag) == -1)
949                 return error("cannot set FD_CLOEXEC");
950
951         /* Verify we recognize this pack file format. */
952         if (read_in_full(p->pack_fd, &hdr, sizeof(hdr)) != sizeof(hdr))
953                 return error("file %s is far too short to be a packfile", p->pack_name);
954         if (hdr.hdr_signature != htonl(PACK_SIGNATURE))
955                 return error("file %s is not a GIT packfile", p->pack_name);
956         if (!pack_version_ok(hdr.hdr_version))
957                 return error("packfile %s is version %"PRIu32" and not"
958                         " supported (try upgrading GIT to a newer version)",
959                         p->pack_name, ntohl(hdr.hdr_version));
960
961         /* Verify the pack matches its index. */
962         if (p->num_objects != ntohl(hdr.hdr_entries))
963                 return error("packfile %s claims to have %"PRIu32" objects"
964                              " while index indicates %"PRIu32" objects",
965                              p->pack_name, ntohl(hdr.hdr_entries),
966                              p->num_objects);
967         if (lseek(p->pack_fd, p->pack_size - sizeof(sha1), SEEK_SET) == -1)
968                 return error("end of packfile %s is unavailable", p->pack_name);
969         if (read_in_full(p->pack_fd, sha1, sizeof(sha1)) != sizeof(sha1))
970                 return error("packfile %s signature is unavailable", p->pack_name);
971         idx_sha1 = ((unsigned char *)p->index_data) + p->index_size - 40;
972         if (hashcmp(sha1, idx_sha1))
973                 return error("packfile %s does not match index", p->pack_name);
974         return 0;
975 }
976
977 static int open_packed_git(struct packed_git *p)
978 {
979         if (!open_packed_git_1(p))
980                 return 0;
981         close_pack_fd(p);
982         return -1;
983 }
984
985 static int in_window(struct pack_window *win, off_t offset)
986 {
987         /* We must promise at least 20 bytes (one hash) after the
988          * offset is available from this window, otherwise the offset
989          * is not actually in this window and a different window (which
990          * has that one hash excess) must be used.  This is to support
991          * the object header and delta base parsing routines below.
992          */
993         off_t win_off = win->offset;
994         return win_off <= offset
995                 && (offset + 20) <= (win_off + win->len);
996 }
997
998 unsigned char *use_pack(struct packed_git *p,
999                 struct pack_window **w_cursor,
1000                 off_t offset,
1001                 unsigned long *left)
1002 {
1003         struct pack_window *win = *w_cursor;
1004
1005         /* Since packfiles end in a hash of their content and it's
1006          * pointless to ask for an offset into the middle of that
1007          * hash, and the in_window function above wouldn't match
1008          * don't allow an offset too close to the end of the file.
1009          */
1010         if (!p->pack_size && p->pack_fd == -1 && open_packed_git(p))
1011                 die("packfile %s cannot be accessed", p->pack_name);
1012         if (offset > (p->pack_size - 20))
1013                 die("offset beyond end of packfile (truncated pack?)");
1014         if (offset < 0)
1015                 die(_("offset before end of packfile (broken .idx?)"));
1016
1017         if (!win || !in_window(win, offset)) {
1018                 if (win)
1019                         win->inuse_cnt--;
1020                 for (win = p->windows; win; win = win->next) {
1021                         if (in_window(win, offset))
1022                                 break;
1023                 }
1024                 if (!win) {
1025                         size_t window_align = packed_git_window_size / 2;
1026                         off_t len;
1027
1028                         if (p->pack_fd == -1 && open_packed_git(p))
1029                                 die("packfile %s cannot be accessed", p->pack_name);
1030
1031                         win = xcalloc(1, sizeof(*win));
1032                         win->offset = (offset / window_align) * window_align;
1033                         len = p->pack_size - win->offset;
1034                         if (len > packed_git_window_size)
1035                                 len = packed_git_window_size;
1036                         win->len = (size_t)len;
1037                         pack_mapped += win->len;
1038                         while (packed_git_limit < pack_mapped
1039                                 && unuse_one_window(p))
1040                                 ; /* nothing */
1041                         win->base = xmmap(NULL, win->len,
1042                                 PROT_READ, MAP_PRIVATE,
1043                                 p->pack_fd, win->offset);
1044                         if (win->base == MAP_FAILED)
1045                                 die_errno("packfile %s cannot be mapped",
1046                                           p->pack_name);
1047                         if (!win->offset && win->len == p->pack_size
1048                                 && !p->do_not_close)
1049                                 close_pack_fd(p);
1050                         pack_mmap_calls++;
1051                         pack_open_windows++;
1052                         if (pack_mapped > peak_pack_mapped)
1053                                 peak_pack_mapped = pack_mapped;
1054                         if (pack_open_windows > peak_pack_open_windows)
1055                                 peak_pack_open_windows = pack_open_windows;
1056                         win->next = p->windows;
1057                         p->windows = win;
1058                 }
1059         }
1060         if (win != *w_cursor) {
1061                 win->last_used = pack_used_ctr++;
1062                 win->inuse_cnt++;
1063                 *w_cursor = win;
1064         }
1065         offset -= win->offset;
1066         if (left)
1067                 *left = win->len - xsize_t(offset);
1068         return win->base + offset;
1069 }
1070
1071 static struct packed_git *alloc_packed_git(int extra)
1072 {
1073         struct packed_git *p = xmalloc(st_add(sizeof(*p), extra));
1074         memset(p, 0, sizeof(*p));
1075         p->pack_fd = -1;
1076         return p;
1077 }
1078
1079 static void try_to_free_pack_memory(size_t size)
1080 {
1081         release_pack_memory(size);
1082 }
1083
1084 struct packed_git *add_packed_git(const char *path, size_t path_len, int local)
1085 {
1086         static int have_set_try_to_free_routine;
1087         struct stat st;
1088         size_t alloc;
1089         struct packed_git *p;
1090
1091         if (!have_set_try_to_free_routine) {
1092                 have_set_try_to_free_routine = 1;
1093                 set_try_to_free_routine(try_to_free_pack_memory);
1094         }
1095
1096         /*
1097          * Make sure a corresponding .pack file exists and that
1098          * the index looks sane.
1099          */
1100         if (!strip_suffix_mem(path, &path_len, ".idx"))
1101                 return NULL;
1102
1103         /*
1104          * ".pack" is long enough to hold any suffix we're adding (and
1105          * the use xsnprintf double-checks that)
1106          */
1107         alloc = st_add3(path_len, strlen(".pack"), 1);
1108         p = alloc_packed_git(alloc);
1109         memcpy(p->pack_name, path, path_len);
1110
1111         xsnprintf(p->pack_name + path_len, alloc - path_len, ".keep");
1112         if (!access(p->pack_name, F_OK))
1113                 p->pack_keep = 1;
1114
1115         xsnprintf(p->pack_name + path_len, alloc - path_len, ".pack");
1116         if (stat(p->pack_name, &st) || !S_ISREG(st.st_mode)) {
1117                 free(p);
1118                 return NULL;
1119         }
1120
1121         /* ok, it looks sane as far as we can check without
1122          * actually mapping the pack file.
1123          */
1124         p->pack_size = st.st_size;
1125         p->pack_local = local;
1126         p->mtime = st.st_mtime;
1127         if (path_len < 40 || get_sha1_hex(path + path_len - 40, p->sha1))
1128                 hashclr(p->sha1);
1129         return p;
1130 }
1131
1132 void install_packed_git(struct packed_git *pack)
1133 {
1134         if (pack->pack_fd != -1)
1135                 pack_open_fds++;
1136
1137         pack->next = packed_git;
1138         packed_git = pack;
1139 }
1140
1141 void (*report_garbage)(unsigned seen_bits, const char *path);
1142
1143 static void report_helper(const struct string_list *list,
1144                           int seen_bits, int first, int last)
1145 {
1146         if (seen_bits == (PACKDIR_FILE_PACK|PACKDIR_FILE_IDX))
1147                 return;
1148
1149         for (; first < last; first++)
1150                 report_garbage(seen_bits, list->items[first].string);
1151 }
1152
1153 static void report_pack_garbage(struct string_list *list)
1154 {
1155         int i, baselen = -1, first = 0, seen_bits = 0;
1156
1157         if (!report_garbage)
1158                 return;
1159
1160         string_list_sort(list);
1161
1162         for (i = 0; i < list->nr; i++) {
1163                 const char *path = list->items[i].string;
1164                 if (baselen != -1 &&
1165                     strncmp(path, list->items[first].string, baselen)) {
1166                         report_helper(list, seen_bits, first, i);
1167                         baselen = -1;
1168                         seen_bits = 0;
1169                 }
1170                 if (baselen == -1) {
1171                         const char *dot = strrchr(path, '.');
1172                         if (!dot) {
1173                                 report_garbage(PACKDIR_FILE_GARBAGE, path);
1174                                 continue;
1175                         }
1176                         baselen = dot - path + 1;
1177                         first = i;
1178                 }
1179                 if (!strcmp(path + baselen, "pack"))
1180                         seen_bits |= 1;
1181                 else if (!strcmp(path + baselen, "idx"))
1182                         seen_bits |= 2;
1183         }
1184         report_helper(list, seen_bits, first, list->nr);
1185 }
1186
1187 static void prepare_packed_git_one(char *objdir, int local)
1188 {
1189         struct strbuf path = STRBUF_INIT;
1190         size_t dirnamelen;
1191         DIR *dir;
1192         struct dirent *de;
1193         struct string_list garbage = STRING_LIST_INIT_DUP;
1194
1195         strbuf_addstr(&path, objdir);
1196         strbuf_addstr(&path, "/pack");
1197         dir = opendir(path.buf);
1198         if (!dir) {
1199                 if (errno != ENOENT)
1200                         error_errno("unable to open object pack directory: %s",
1201                                     path.buf);
1202                 strbuf_release(&path);
1203                 return;
1204         }
1205         strbuf_addch(&path, '/');
1206         dirnamelen = path.len;
1207         while ((de = readdir(dir)) != NULL) {
1208                 struct packed_git *p;
1209                 size_t base_len;
1210
1211                 if (is_dot_or_dotdot(de->d_name))
1212                         continue;
1213
1214                 strbuf_setlen(&path, dirnamelen);
1215                 strbuf_addstr(&path, de->d_name);
1216
1217                 base_len = path.len;
1218                 if (strip_suffix_mem(path.buf, &base_len, ".idx")) {
1219                         /* Don't reopen a pack we already have. */
1220                         for (p = packed_git; p; p = p->next) {
1221                                 size_t len;
1222                                 if (strip_suffix(p->pack_name, ".pack", &len) &&
1223                                     len == base_len &&
1224                                     !memcmp(p->pack_name, path.buf, len))
1225                                         break;
1226                         }
1227                         if (p == NULL &&
1228                             /*
1229                              * See if it really is a valid .idx file with
1230                              * corresponding .pack file that we can map.
1231                              */
1232                             (p = add_packed_git(path.buf, path.len, local)) != NULL)
1233                                 install_packed_git(p);
1234                 }
1235
1236                 if (!report_garbage)
1237                         continue;
1238
1239                 if (ends_with(de->d_name, ".idx") ||
1240                     ends_with(de->d_name, ".pack") ||
1241                     ends_with(de->d_name, ".bitmap") ||
1242                     ends_with(de->d_name, ".keep"))
1243                         string_list_append(&garbage, path.buf);
1244                 else
1245                         report_garbage(PACKDIR_FILE_GARBAGE, path.buf);
1246         }
1247         closedir(dir);
1248         report_pack_garbage(&garbage);
1249         string_list_clear(&garbage, 0);
1250         strbuf_release(&path);
1251 }
1252
1253 static int approximate_object_count_valid;
1254
1255 /*
1256  * Give a fast, rough count of the number of objects in the repository. This
1257  * ignores loose objects completely. If you have a lot of them, then either
1258  * you should repack because your performance will be awful, or they are
1259  * all unreachable objects about to be pruned, in which case they're not really
1260  * interesting as a measure of repo size in the first place.
1261  */
1262 unsigned long approximate_object_count(void)
1263 {
1264         static unsigned long count;
1265         if (!approximate_object_count_valid) {
1266                 struct packed_git *p;
1267
1268                 prepare_packed_git();
1269                 count = 0;
1270                 for (p = packed_git; p; p = p->next) {
1271                         if (open_pack_index(p))
1272                                 continue;
1273                         count += p->num_objects;
1274                 }
1275         }
1276         return count;
1277 }
1278
1279 static void *get_next_packed_git(const void *p)
1280 {
1281         return ((const struct packed_git *)p)->next;
1282 }
1283
1284 static void set_next_packed_git(void *p, void *next)
1285 {
1286         ((struct packed_git *)p)->next = next;
1287 }
1288
1289 static int sort_pack(const void *a_, const void *b_)
1290 {
1291         const struct packed_git *a = a_;
1292         const struct packed_git *b = b_;
1293         int st;
1294
1295         /*
1296          * Local packs tend to contain objects specific to our
1297          * variant of the project than remote ones.  In addition,
1298          * remote ones could be on a network mounted filesystem.
1299          * Favor local ones for these reasons.
1300          */
1301         st = a->pack_local - b->pack_local;
1302         if (st)
1303                 return -st;
1304
1305         /*
1306          * Younger packs tend to contain more recent objects,
1307          * and more recent objects tend to get accessed more
1308          * often.
1309          */
1310         if (a->mtime < b->mtime)
1311                 return 1;
1312         else if (a->mtime == b->mtime)
1313                 return 0;
1314         return -1;
1315 }
1316
1317 static void rearrange_packed_git(void)
1318 {
1319         packed_git = llist_mergesort(packed_git, get_next_packed_git,
1320                                      set_next_packed_git, sort_pack);
1321 }
1322
1323 static void prepare_packed_git_mru(void)
1324 {
1325         struct packed_git *p;
1326
1327         mru_clear(packed_git_mru);
1328         for (p = packed_git; p; p = p->next)
1329                 mru_append(packed_git_mru, p);
1330 }
1331
1332 static int prepare_packed_git_run_once = 0;
1333 void prepare_packed_git(void)
1334 {
1335         struct alternate_object_database *alt;
1336
1337         if (prepare_packed_git_run_once)
1338                 return;
1339         prepare_packed_git_one(get_object_directory(), 1);
1340         prepare_alt_odb();
1341         for (alt = alt_odb_list; alt; alt = alt->next)
1342                 prepare_packed_git_one(alt->path, 0);
1343         rearrange_packed_git();
1344         prepare_packed_git_mru();
1345         prepare_packed_git_run_once = 1;
1346 }
1347
1348 void reprepare_packed_git(void)
1349 {
1350         approximate_object_count_valid = 0;
1351         prepare_packed_git_run_once = 0;
1352         prepare_packed_git();
1353 }
1354
1355 static void mark_bad_packed_object(struct packed_git *p,
1356                                    const unsigned char *sha1)
1357 {
1358         unsigned i;
1359         for (i = 0; i < p->num_bad_objects; i++)
1360                 if (!hashcmp(sha1, p->bad_object_sha1 + GIT_SHA1_RAWSZ * i))
1361                         return;
1362         p->bad_object_sha1 = xrealloc(p->bad_object_sha1,
1363                                       st_mult(GIT_MAX_RAWSZ,
1364                                               st_add(p->num_bad_objects, 1)));
1365         hashcpy(p->bad_object_sha1 + GIT_SHA1_RAWSZ * p->num_bad_objects, sha1);
1366         p->num_bad_objects++;
1367 }
1368
1369 static const struct packed_git *has_packed_and_bad(const unsigned char *sha1)
1370 {
1371         struct packed_git *p;
1372         unsigned i;
1373
1374         for (p = packed_git; p; p = p->next)
1375                 for (i = 0; i < p->num_bad_objects; i++)
1376                         if (!hashcmp(sha1, p->bad_object_sha1 + 20 * i))
1377                                 return p;
1378         return NULL;
1379 }
1380
1381 /*
1382  * With an in-core object data in "map", rehash it to make sure the
1383  * object name actually matches "sha1" to detect object corruption.
1384  * With "map" == NULL, try reading the object named with "sha1" using
1385  * the streaming interface and rehash it to do the same.
1386  */
1387 int check_sha1_signature(const unsigned char *sha1, void *map,
1388                          unsigned long size, const char *type)
1389 {
1390         unsigned char real_sha1[20];
1391         enum object_type obj_type;
1392         struct git_istream *st;
1393         git_SHA_CTX c;
1394         char hdr[32];
1395         int hdrlen;
1396
1397         if (map) {
1398                 hash_sha1_file(map, size, type, real_sha1);
1399                 return hashcmp(sha1, real_sha1) ? -1 : 0;
1400         }
1401
1402         st = open_istream(sha1, &obj_type, &size, NULL);
1403         if (!st)
1404                 return -1;
1405
1406         /* Generate the header */
1407         hdrlen = xsnprintf(hdr, sizeof(hdr), "%s %lu", typename(obj_type), size) + 1;
1408
1409         /* Sha1.. */
1410         git_SHA1_Init(&c);
1411         git_SHA1_Update(&c, hdr, hdrlen);
1412         for (;;) {
1413                 char buf[1024 * 16];
1414                 ssize_t readlen = read_istream(st, buf, sizeof(buf));
1415
1416                 if (readlen < 0) {
1417                         close_istream(st);
1418                         return -1;
1419                 }
1420                 if (!readlen)
1421                         break;
1422                 git_SHA1_Update(&c, buf, readlen);
1423         }
1424         git_SHA1_Final(real_sha1, &c);
1425         close_istream(st);
1426         return hashcmp(sha1, real_sha1) ? -1 : 0;
1427 }
1428
1429 int git_open_cloexec(const char *name, int flags)
1430 {
1431         int fd;
1432         static int o_cloexec = O_CLOEXEC;
1433
1434         fd = open(name, flags | o_cloexec);
1435         if ((o_cloexec & O_CLOEXEC) && fd < 0 && errno == EINVAL) {
1436                 /* Try again w/o O_CLOEXEC: the kernel might not support it */
1437                 o_cloexec &= ~O_CLOEXEC;
1438                 fd = open(name, flags | o_cloexec);
1439         }
1440
1441 #if defined(F_GETFD) && defined(F_SETFD) && defined(FD_CLOEXEC)
1442         {
1443                 static int fd_cloexec = FD_CLOEXEC;
1444
1445                 if (!o_cloexec && 0 <= fd && fd_cloexec) {
1446                         /* Opened w/o O_CLOEXEC?  try with fcntl(2) to add it */
1447                         int flags = fcntl(fd, F_GETFD);
1448                         if (fcntl(fd, F_SETFD, flags | fd_cloexec))
1449                                 fd_cloexec = 0;
1450                 }
1451         }
1452 #endif
1453         return fd;
1454 }
1455
1456 /*
1457  * Find "sha1" as a loose object in the local repository or in an alternate.
1458  * Returns 0 on success, negative on failure.
1459  *
1460  * The "path" out-parameter will give the path of the object we found (if any).
1461  * Note that it may point to static storage and is only valid until another
1462  * call to sha1_file_name(), etc.
1463  */
1464 static int stat_sha1_file(const unsigned char *sha1, struct stat *st,
1465                           const char **path)
1466 {
1467         struct alternate_object_database *alt;
1468
1469         *path = sha1_file_name(sha1);
1470         if (!lstat(*path, st))
1471                 return 0;
1472
1473         prepare_alt_odb();
1474         errno = ENOENT;
1475         for (alt = alt_odb_list; alt; alt = alt->next) {
1476                 *path = alt_sha1_path(alt, sha1);
1477                 if (!lstat(*path, st))
1478                         return 0;
1479         }
1480
1481         return -1;
1482 }
1483
1484 /*
1485  * Like stat_sha1_file(), but actually open the object and return the
1486  * descriptor. See the caveats on the "path" parameter above.
1487  */
1488 static int open_sha1_file(const unsigned char *sha1, const char **path)
1489 {
1490         int fd;
1491         struct alternate_object_database *alt;
1492         int most_interesting_errno;
1493
1494         *path = sha1_file_name(sha1);
1495         fd = git_open(*path);
1496         if (fd >= 0)
1497                 return fd;
1498         most_interesting_errno = errno;
1499
1500         prepare_alt_odb();
1501         for (alt = alt_odb_list; alt; alt = alt->next) {
1502                 *path = alt_sha1_path(alt, sha1);
1503                 fd = git_open(*path);
1504                 if (fd >= 0)
1505                         return fd;
1506                 if (most_interesting_errno == ENOENT)
1507                         most_interesting_errno = errno;
1508         }
1509         errno = most_interesting_errno;
1510         return -1;
1511 }
1512
1513 /*
1514  * Map the loose object at "path" if it is not NULL, or the path found by
1515  * searching for a loose object named "sha1".
1516  */
1517 static void *map_sha1_file_1(const char *path,
1518                              const unsigned char *sha1,
1519                              unsigned long *size)
1520 {
1521         void *map;
1522         int fd;
1523
1524         if (path)
1525                 fd = git_open(path);
1526         else
1527                 fd = open_sha1_file(sha1, &path);
1528         map = NULL;
1529         if (fd >= 0) {
1530                 struct stat st;
1531
1532                 if (!fstat(fd, &st)) {
1533                         *size = xsize_t(st.st_size);
1534                         if (!*size) {
1535                                 /* mmap() is forbidden on empty files */
1536                                 error("object file %s is empty", path);
1537                                 return NULL;
1538                         }
1539                         map = xmmap(NULL, *size, PROT_READ, MAP_PRIVATE, fd, 0);
1540                 }
1541                 close(fd);
1542         }
1543         return map;
1544 }
1545
1546 void *map_sha1_file(const unsigned char *sha1, unsigned long *size)
1547 {
1548         return map_sha1_file_1(NULL, sha1, size);
1549 }
1550
1551 unsigned long unpack_object_header_buffer(const unsigned char *buf,
1552                 unsigned long len, enum object_type *type, unsigned long *sizep)
1553 {
1554         unsigned shift;
1555         unsigned long size, c;
1556         unsigned long used = 0;
1557
1558         c = buf[used++];
1559         *type = (c >> 4) & 7;
1560         size = c & 15;
1561         shift = 4;
1562         while (c & 0x80) {
1563                 if (len <= used || bitsizeof(long) <= shift) {
1564                         error("bad object header");
1565                         size = used = 0;
1566                         break;
1567                 }
1568                 c = buf[used++];
1569                 size += (c & 0x7f) << shift;
1570                 shift += 7;
1571         }
1572         *sizep = size;
1573         return used;
1574 }
1575
1576 static int unpack_sha1_short_header(git_zstream *stream,
1577                                     unsigned char *map, unsigned long mapsize,
1578                                     void *buffer, unsigned long bufsiz)
1579 {
1580         /* Get the data stream */
1581         memset(stream, 0, sizeof(*stream));
1582         stream->next_in = map;
1583         stream->avail_in = mapsize;
1584         stream->next_out = buffer;
1585         stream->avail_out = bufsiz;
1586
1587         git_inflate_init(stream);
1588         return git_inflate(stream, 0);
1589 }
1590
1591 int unpack_sha1_header(git_zstream *stream,
1592                        unsigned char *map, unsigned long mapsize,
1593                        void *buffer, unsigned long bufsiz)
1594 {
1595         int status = unpack_sha1_short_header(stream, map, mapsize,
1596                                               buffer, bufsiz);
1597
1598         if (status < Z_OK)
1599                 return status;
1600
1601         /* Make sure we have the terminating NUL */
1602         if (!memchr(buffer, '\0', stream->next_out - (unsigned char *)buffer))
1603                 return -1;
1604         return 0;
1605 }
1606
1607 static int unpack_sha1_header_to_strbuf(git_zstream *stream, unsigned char *map,
1608                                         unsigned long mapsize, void *buffer,
1609                                         unsigned long bufsiz, struct strbuf *header)
1610 {
1611         int status;
1612
1613         status = unpack_sha1_short_header(stream, map, mapsize, buffer, bufsiz);
1614         if (status < Z_OK)
1615                 return -1;
1616
1617         /*
1618          * Check if entire header is unpacked in the first iteration.
1619          */
1620         if (memchr(buffer, '\0', stream->next_out - (unsigned char *)buffer))
1621                 return 0;
1622
1623         /*
1624          * buffer[0..bufsiz] was not large enough.  Copy the partial
1625          * result out to header, and then append the result of further
1626          * reading the stream.
1627          */
1628         strbuf_add(header, buffer, stream->next_out - (unsigned char *)buffer);
1629         stream->next_out = buffer;
1630         stream->avail_out = bufsiz;
1631
1632         do {
1633                 status = git_inflate(stream, 0);
1634                 strbuf_add(header, buffer, stream->next_out - (unsigned char *)buffer);
1635                 if (memchr(buffer, '\0', stream->next_out - (unsigned char *)buffer))
1636                         return 0;
1637                 stream->next_out = buffer;
1638                 stream->avail_out = bufsiz;
1639         } while (status != Z_STREAM_END);
1640         return -1;
1641 }
1642
1643 static void *unpack_sha1_rest(git_zstream *stream, void *buffer, unsigned long size, const unsigned char *sha1)
1644 {
1645         int bytes = strlen(buffer) + 1;
1646         unsigned char *buf = xmallocz(size);
1647         unsigned long n;
1648         int status = Z_OK;
1649
1650         n = stream->total_out - bytes;
1651         if (n > size)
1652                 n = size;
1653         memcpy(buf, (char *) buffer + bytes, n);
1654         bytes = n;
1655         if (bytes <= size) {
1656                 /*
1657                  * The above condition must be (bytes <= size), not
1658                  * (bytes < size).  In other words, even though we
1659                  * expect no more output and set avail_out to zero,
1660                  * the input zlib stream may have bytes that express
1661                  * "this concludes the stream", and we *do* want to
1662                  * eat that input.
1663                  *
1664                  * Otherwise we would not be able to test that we
1665                  * consumed all the input to reach the expected size;
1666                  * we also want to check that zlib tells us that all
1667                  * went well with status == Z_STREAM_END at the end.
1668                  */
1669                 stream->next_out = buf + bytes;
1670                 stream->avail_out = size - bytes;
1671                 while (status == Z_OK)
1672                         status = git_inflate(stream, Z_FINISH);
1673         }
1674         if (status == Z_STREAM_END && !stream->avail_in) {
1675                 git_inflate_end(stream);
1676                 return buf;
1677         }
1678
1679         if (status < 0)
1680                 error("corrupt loose object '%s'", sha1_to_hex(sha1));
1681         else if (stream->avail_in)
1682                 error("garbage at end of loose object '%s'",
1683                       sha1_to_hex(sha1));
1684         free(buf);
1685         return NULL;
1686 }
1687
1688 /*
1689  * We used to just use "sscanf()", but that's actually way
1690  * too permissive for what we want to check. So do an anal
1691  * object header parse by hand.
1692  */
1693 static int parse_sha1_header_extended(const char *hdr, struct object_info *oi,
1694                                unsigned int flags)
1695 {
1696         const char *type_buf = hdr;
1697         unsigned long size;
1698         int type, type_len = 0;
1699
1700         /*
1701          * The type can be of any size but is followed by
1702          * a space.
1703          */
1704         for (;;) {
1705                 char c = *hdr++;
1706                 if (!c)
1707                         return -1;
1708                 if (c == ' ')
1709                         break;
1710                 type_len++;
1711         }
1712
1713         type = type_from_string_gently(type_buf, type_len, 1);
1714         if (oi->typename)
1715                 strbuf_add(oi->typename, type_buf, type_len);
1716         /*
1717          * Set type to 0 if its an unknown object and
1718          * we're obtaining the type using '--allow-unknown-type'
1719          * option.
1720          */
1721         if ((flags & OBJECT_INFO_ALLOW_UNKNOWN_TYPE) && (type < 0))
1722                 type = 0;
1723         else if (type < 0)
1724                 die("invalid object type");
1725         if (oi->typep)
1726                 *oi->typep = type;
1727
1728         /*
1729          * The length must follow immediately, and be in canonical
1730          * decimal format (ie "010" is not valid).
1731          */
1732         size = *hdr++ - '0';
1733         if (size > 9)
1734                 return -1;
1735         if (size) {
1736                 for (;;) {
1737                         unsigned long c = *hdr - '0';
1738                         if (c > 9)
1739                                 break;
1740                         hdr++;
1741                         size = size * 10 + c;
1742                 }
1743         }
1744
1745         if (oi->sizep)
1746                 *oi->sizep = size;
1747
1748         /*
1749          * The length must be followed by a zero byte
1750          */
1751         return *hdr ? -1 : type;
1752 }
1753
1754 int parse_sha1_header(const char *hdr, unsigned long *sizep)
1755 {
1756         struct object_info oi = OBJECT_INFO_INIT;
1757
1758         oi.sizep = sizep;
1759         return parse_sha1_header_extended(hdr, &oi, 0);
1760 }
1761
1762 unsigned long get_size_from_delta(struct packed_git *p,
1763                                   struct pack_window **w_curs,
1764                                   off_t curpos)
1765 {
1766         const unsigned char *data;
1767         unsigned char delta_head[20], *in;
1768         git_zstream stream;
1769         int st;
1770
1771         memset(&stream, 0, sizeof(stream));
1772         stream.next_out = delta_head;
1773         stream.avail_out = sizeof(delta_head);
1774
1775         git_inflate_init(&stream);
1776         do {
1777                 in = use_pack(p, w_curs, curpos, &stream.avail_in);
1778                 stream.next_in = in;
1779                 st = git_inflate(&stream, Z_FINISH);
1780                 curpos += stream.next_in - in;
1781         } while ((st == Z_OK || st == Z_BUF_ERROR) &&
1782                  stream.total_out < sizeof(delta_head));
1783         git_inflate_end(&stream);
1784         if ((st != Z_STREAM_END) && stream.total_out != sizeof(delta_head)) {
1785                 error("delta data unpack-initial failed");
1786                 return 0;
1787         }
1788
1789         /* Examine the initial part of the delta to figure out
1790          * the result size.
1791          */
1792         data = delta_head;
1793
1794         /* ignore base size */
1795         get_delta_hdr_size(&data, delta_head+sizeof(delta_head));
1796
1797         /* Read the result size */
1798         return get_delta_hdr_size(&data, delta_head+sizeof(delta_head));
1799 }
1800
1801 static off_t get_delta_base(struct packed_git *p,
1802                                     struct pack_window **w_curs,
1803                                     off_t *curpos,
1804                                     enum object_type type,
1805                                     off_t delta_obj_offset)
1806 {
1807         unsigned char *base_info = use_pack(p, w_curs, *curpos, NULL);
1808         off_t base_offset;
1809
1810         /* use_pack() assured us we have [base_info, base_info + 20)
1811          * as a range that we can look at without walking off the
1812          * end of the mapped window.  Its actually the hash size
1813          * that is assured.  An OFS_DELTA longer than the hash size
1814          * is stupid, as then a REF_DELTA would be smaller to store.
1815          */
1816         if (type == OBJ_OFS_DELTA) {
1817                 unsigned used = 0;
1818                 unsigned char c = base_info[used++];
1819                 base_offset = c & 127;
1820                 while (c & 128) {
1821                         base_offset += 1;
1822                         if (!base_offset || MSB(base_offset, 7))
1823                                 return 0;  /* overflow */
1824                         c = base_info[used++];
1825                         base_offset = (base_offset << 7) + (c & 127);
1826                 }
1827                 base_offset = delta_obj_offset - base_offset;
1828                 if (base_offset <= 0 || base_offset >= delta_obj_offset)
1829                         return 0;  /* out of bound */
1830                 *curpos += used;
1831         } else if (type == OBJ_REF_DELTA) {
1832                 /* The base entry _must_ be in the same pack */
1833                 base_offset = find_pack_entry_one(base_info, p);
1834                 *curpos += 20;
1835         } else
1836                 die("I am totally screwed");
1837         return base_offset;
1838 }
1839
1840 /*
1841  * Like get_delta_base above, but we return the sha1 instead of the pack
1842  * offset. This means it is cheaper for REF deltas (we do not have to do
1843  * the final object lookup), but more expensive for OFS deltas (we
1844  * have to load the revidx to convert the offset back into a sha1).
1845  */
1846 static const unsigned char *get_delta_base_sha1(struct packed_git *p,
1847                                                 struct pack_window **w_curs,
1848                                                 off_t curpos,
1849                                                 enum object_type type,
1850                                                 off_t delta_obj_offset)
1851 {
1852         if (type == OBJ_REF_DELTA) {
1853                 unsigned char *base = use_pack(p, w_curs, curpos, NULL);
1854                 return base;
1855         } else if (type == OBJ_OFS_DELTA) {
1856                 struct revindex_entry *revidx;
1857                 off_t base_offset = get_delta_base(p, w_curs, &curpos,
1858                                                    type, delta_obj_offset);
1859
1860                 if (!base_offset)
1861                         return NULL;
1862
1863                 revidx = find_pack_revindex(p, base_offset);
1864                 if (!revidx)
1865                         return NULL;
1866
1867                 return nth_packed_object_sha1(p, revidx->nr);
1868         } else
1869                 return NULL;
1870 }
1871
1872 int unpack_object_header(struct packed_git *p,
1873                          struct pack_window **w_curs,
1874                          off_t *curpos,
1875                          unsigned long *sizep)
1876 {
1877         unsigned char *base;
1878         unsigned long left;
1879         unsigned long used;
1880         enum object_type type;
1881
1882         /* use_pack() assures us we have [base, base + 20) available
1883          * as a range that we can look at.  (Its actually the hash
1884          * size that is assured.)  With our object header encoding
1885          * the maximum deflated object size is 2^137, which is just
1886          * insane, so we know won't exceed what we have been given.
1887          */
1888         base = use_pack(p, w_curs, *curpos, &left);
1889         used = unpack_object_header_buffer(base, left, &type, sizep);
1890         if (!used) {
1891                 type = OBJ_BAD;
1892         } else
1893                 *curpos += used;
1894
1895         return type;
1896 }
1897
1898 static int retry_bad_packed_offset(struct packed_git *p, off_t obj_offset)
1899 {
1900         int type;
1901         struct revindex_entry *revidx;
1902         const unsigned char *sha1;
1903         revidx = find_pack_revindex(p, obj_offset);
1904         if (!revidx)
1905                 return OBJ_BAD;
1906         sha1 = nth_packed_object_sha1(p, revidx->nr);
1907         mark_bad_packed_object(p, sha1);
1908         type = sha1_object_info(sha1, NULL);
1909         if (type <= OBJ_NONE)
1910                 return OBJ_BAD;
1911         return type;
1912 }
1913
1914 #define POI_STACK_PREALLOC 64
1915
1916 static enum object_type packed_to_object_type(struct packed_git *p,
1917                                               off_t obj_offset,
1918                                               enum object_type type,
1919                                               struct pack_window **w_curs,
1920                                               off_t curpos)
1921 {
1922         off_t small_poi_stack[POI_STACK_PREALLOC];
1923         off_t *poi_stack = small_poi_stack;
1924         int poi_stack_nr = 0, poi_stack_alloc = POI_STACK_PREALLOC;
1925
1926         while (type == OBJ_OFS_DELTA || type == OBJ_REF_DELTA) {
1927                 off_t base_offset;
1928                 unsigned long size;
1929                 /* Push the object we're going to leave behind */
1930                 if (poi_stack_nr >= poi_stack_alloc && poi_stack == small_poi_stack) {
1931                         poi_stack_alloc = alloc_nr(poi_stack_nr);
1932                         ALLOC_ARRAY(poi_stack, poi_stack_alloc);
1933                         memcpy(poi_stack, small_poi_stack, sizeof(off_t)*poi_stack_nr);
1934                 } else {
1935                         ALLOC_GROW(poi_stack, poi_stack_nr+1, poi_stack_alloc);
1936                 }
1937                 poi_stack[poi_stack_nr++] = obj_offset;
1938                 /* If parsing the base offset fails, just unwind */
1939                 base_offset = get_delta_base(p, w_curs, &curpos, type, obj_offset);
1940                 if (!base_offset)
1941                         goto unwind;
1942                 curpos = obj_offset = base_offset;
1943                 type = unpack_object_header(p, w_curs, &curpos, &size);
1944                 if (type <= OBJ_NONE) {
1945                         /* If getting the base itself fails, we first
1946                          * retry the base, otherwise unwind */
1947                         type = retry_bad_packed_offset(p, base_offset);
1948                         if (type > OBJ_NONE)
1949                                 goto out;
1950                         goto unwind;
1951                 }
1952         }
1953
1954         switch (type) {
1955         case OBJ_BAD:
1956         case OBJ_COMMIT:
1957         case OBJ_TREE:
1958         case OBJ_BLOB:
1959         case OBJ_TAG:
1960                 break;
1961         default:
1962                 error("unknown object type %i at offset %"PRIuMAX" in %s",
1963                       type, (uintmax_t)obj_offset, p->pack_name);
1964                 type = OBJ_BAD;
1965         }
1966
1967 out:
1968         if (poi_stack != small_poi_stack)
1969                 free(poi_stack);
1970         return type;
1971
1972 unwind:
1973         while (poi_stack_nr) {
1974                 obj_offset = poi_stack[--poi_stack_nr];
1975                 type = retry_bad_packed_offset(p, obj_offset);
1976                 if (type > OBJ_NONE)
1977                         goto out;
1978         }
1979         type = OBJ_BAD;
1980         goto out;
1981 }
1982
1983 static struct hashmap delta_base_cache;
1984 static size_t delta_base_cached;
1985
1986 static LIST_HEAD(delta_base_cache_lru);
1987
1988 struct delta_base_cache_key {
1989         struct packed_git *p;
1990         off_t base_offset;
1991 };
1992
1993 struct delta_base_cache_entry {
1994         struct hashmap hash;
1995         struct delta_base_cache_key key;
1996         struct list_head lru;
1997         void *data;
1998         unsigned long size;
1999         enum object_type type;
2000 };
2001
2002 static unsigned int pack_entry_hash(struct packed_git *p, off_t base_offset)
2003 {
2004         unsigned int hash;
2005
2006         hash = (unsigned int)(intptr_t)p + (unsigned int)base_offset;
2007         hash += (hash >> 8) + (hash >> 16);
2008         return hash;
2009 }
2010
2011 static struct delta_base_cache_entry *
2012 get_delta_base_cache_entry(struct packed_git *p, off_t base_offset)
2013 {
2014         struct hashmap_entry entry;
2015         struct delta_base_cache_key key;
2016
2017         if (!delta_base_cache.cmpfn)
2018                 return NULL;
2019
2020         hashmap_entry_init(&entry, pack_entry_hash(p, base_offset));
2021         key.p = p;
2022         key.base_offset = base_offset;
2023         return hashmap_get(&delta_base_cache, &entry, &key);
2024 }
2025
2026 static int delta_base_cache_key_eq(const struct delta_base_cache_key *a,
2027                                    const struct delta_base_cache_key *b)
2028 {
2029         return a->p == b->p && a->base_offset == b->base_offset;
2030 }
2031
2032 static int delta_base_cache_hash_cmp(const void *unused_cmp_data,
2033                                      const void *va, const void *vb,
2034                                      const void *vkey)
2035 {
2036         const struct delta_base_cache_entry *a = va, *b = vb;
2037         const struct delta_base_cache_key *key = vkey;
2038         if (key)
2039                 return !delta_base_cache_key_eq(&a->key, key);
2040         else
2041                 return !delta_base_cache_key_eq(&a->key, &b->key);
2042 }
2043
2044 static int in_delta_base_cache(struct packed_git *p, off_t base_offset)
2045 {
2046         return !!get_delta_base_cache_entry(p, base_offset);
2047 }
2048
2049 /*
2050  * Remove the entry from the cache, but do _not_ free the associated
2051  * entry data. The caller takes ownership of the "data" buffer, and
2052  * should copy out any fields it wants before detaching.
2053  */
2054 static void detach_delta_base_cache_entry(struct delta_base_cache_entry *ent)
2055 {
2056         hashmap_remove(&delta_base_cache, ent, &ent->key);
2057         list_del(&ent->lru);
2058         delta_base_cached -= ent->size;
2059         free(ent);
2060 }
2061
2062 static void *cache_or_unpack_entry(struct packed_git *p, off_t base_offset,
2063         unsigned long *base_size, enum object_type *type)
2064 {
2065         struct delta_base_cache_entry *ent;
2066
2067         ent = get_delta_base_cache_entry(p, base_offset);
2068         if (!ent)
2069                 return unpack_entry(p, base_offset, type, base_size);
2070
2071         if (type)
2072                 *type = ent->type;
2073         if (base_size)
2074                 *base_size = ent->size;
2075         return xmemdupz(ent->data, ent->size);
2076 }
2077
2078 static inline void release_delta_base_cache(struct delta_base_cache_entry *ent)
2079 {
2080         free(ent->data);
2081         detach_delta_base_cache_entry(ent);
2082 }
2083
2084 void clear_delta_base_cache(void)
2085 {
2086         struct list_head *lru, *tmp;
2087         list_for_each_safe(lru, tmp, &delta_base_cache_lru) {
2088                 struct delta_base_cache_entry *entry =
2089                         list_entry(lru, struct delta_base_cache_entry, lru);
2090                 release_delta_base_cache(entry);
2091         }
2092 }
2093
2094 static void add_delta_base_cache(struct packed_git *p, off_t base_offset,
2095         void *base, unsigned long base_size, enum object_type type)
2096 {
2097         struct delta_base_cache_entry *ent = xmalloc(sizeof(*ent));
2098         struct list_head *lru, *tmp;
2099
2100         delta_base_cached += base_size;
2101
2102         list_for_each_safe(lru, tmp, &delta_base_cache_lru) {
2103                 struct delta_base_cache_entry *f =
2104                         list_entry(lru, struct delta_base_cache_entry, lru);
2105                 if (delta_base_cached <= delta_base_cache_limit)
2106                         break;
2107                 release_delta_base_cache(f);
2108         }
2109
2110         ent->key.p = p;
2111         ent->key.base_offset = base_offset;
2112         ent->type = type;
2113         ent->data = base;
2114         ent->size = base_size;
2115         list_add_tail(&ent->lru, &delta_base_cache_lru);
2116
2117         if (!delta_base_cache.cmpfn)
2118                 hashmap_init(&delta_base_cache, delta_base_cache_hash_cmp, NULL, 0);
2119         hashmap_entry_init(ent, pack_entry_hash(p, base_offset));
2120         hashmap_add(&delta_base_cache, ent);
2121 }
2122
2123 int packed_object_info(struct packed_git *p, off_t obj_offset,
2124                        struct object_info *oi)
2125 {
2126         struct pack_window *w_curs = NULL;
2127         unsigned long size;
2128         off_t curpos = obj_offset;
2129         enum object_type type;
2130
2131         /*
2132          * We always get the representation type, but only convert it to
2133          * a "real" type later if the caller is interested.
2134          */
2135         if (oi->contentp) {
2136                 *oi->contentp = cache_or_unpack_entry(p, obj_offset, oi->sizep,
2137                                                       &type);
2138                 if (!*oi->contentp)
2139                         type = OBJ_BAD;
2140         } else {
2141                 type = unpack_object_header(p, &w_curs, &curpos, &size);
2142         }
2143
2144         if (!oi->contentp && oi->sizep) {
2145                 if (type == OBJ_OFS_DELTA || type == OBJ_REF_DELTA) {
2146                         off_t tmp_pos = curpos;
2147                         off_t base_offset = get_delta_base(p, &w_curs, &tmp_pos,
2148                                                            type, obj_offset);
2149                         if (!base_offset) {
2150                                 type = OBJ_BAD;
2151                                 goto out;
2152                         }
2153                         *oi->sizep = get_size_from_delta(p, &w_curs, tmp_pos);
2154                         if (*oi->sizep == 0) {
2155                                 type = OBJ_BAD;
2156                                 goto out;
2157                         }
2158                 } else {
2159                         *oi->sizep = size;
2160                 }
2161         }
2162
2163         if (oi->disk_sizep) {
2164                 struct revindex_entry *revidx = find_pack_revindex(p, obj_offset);
2165                 *oi->disk_sizep = revidx[1].offset - obj_offset;
2166         }
2167
2168         if (oi->typep || oi->typename) {
2169                 enum object_type ptot;
2170                 ptot = packed_to_object_type(p, obj_offset, type, &w_curs,
2171                                              curpos);
2172                 if (oi->typep)
2173                         *oi->typep = ptot;
2174                 if (oi->typename) {
2175                         const char *tn = typename(ptot);
2176                         if (tn)
2177                                 strbuf_addstr(oi->typename, tn);
2178                 }
2179                 if (ptot < 0) {
2180                         type = OBJ_BAD;
2181                         goto out;
2182                 }
2183         }
2184
2185         if (oi->delta_base_sha1) {
2186                 if (type == OBJ_OFS_DELTA || type == OBJ_REF_DELTA) {
2187                         const unsigned char *base;
2188
2189                         base = get_delta_base_sha1(p, &w_curs, curpos,
2190                                                    type, obj_offset);
2191                         if (!base) {
2192                                 type = OBJ_BAD;
2193                                 goto out;
2194                         }
2195
2196                         hashcpy(oi->delta_base_sha1, base);
2197                 } else
2198                         hashclr(oi->delta_base_sha1);
2199         }
2200
2201         oi->whence = in_delta_base_cache(p, obj_offset) ? OI_DBCACHED :
2202                                                           OI_PACKED;
2203
2204 out:
2205         unuse_pack(&w_curs);
2206         return type;
2207 }
2208
2209 static void *unpack_compressed_entry(struct packed_git *p,
2210                                     struct pack_window **w_curs,
2211                                     off_t curpos,
2212                                     unsigned long size)
2213 {
2214         int st;
2215         git_zstream stream;
2216         unsigned char *buffer, *in;
2217
2218         buffer = xmallocz_gently(size);
2219         if (!buffer)
2220                 return NULL;
2221         memset(&stream, 0, sizeof(stream));
2222         stream.next_out = buffer;
2223         stream.avail_out = size + 1;
2224
2225         git_inflate_init(&stream);
2226         do {
2227                 in = use_pack(p, w_curs, curpos, &stream.avail_in);
2228                 stream.next_in = in;
2229                 st = git_inflate(&stream, Z_FINISH);
2230                 if (!stream.avail_out)
2231                         break; /* the payload is larger than it should be */
2232                 curpos += stream.next_in - in;
2233         } while (st == Z_OK || st == Z_BUF_ERROR);
2234         git_inflate_end(&stream);
2235         if ((st != Z_STREAM_END) || stream.total_out != size) {
2236                 free(buffer);
2237                 return NULL;
2238         }
2239
2240         return buffer;
2241 }
2242
2243 static void *read_object(const unsigned char *sha1, enum object_type *type,
2244                          unsigned long *size);
2245
2246 static void write_pack_access_log(struct packed_git *p, off_t obj_offset)
2247 {
2248         static struct trace_key pack_access = TRACE_KEY_INIT(PACK_ACCESS);
2249         trace_printf_key(&pack_access, "%s %"PRIuMAX"\n",
2250                          p->pack_name, (uintmax_t)obj_offset);
2251 }
2252
2253 int do_check_packed_object_crc;
2254
2255 #define UNPACK_ENTRY_STACK_PREALLOC 64
2256 struct unpack_entry_stack_ent {
2257         off_t obj_offset;
2258         off_t curpos;
2259         unsigned long size;
2260 };
2261
2262 void *unpack_entry(struct packed_git *p, off_t obj_offset,
2263                    enum object_type *final_type, unsigned long *final_size)
2264 {
2265         struct pack_window *w_curs = NULL;
2266         off_t curpos = obj_offset;
2267         void *data = NULL;
2268         unsigned long size;
2269         enum object_type type;
2270         struct unpack_entry_stack_ent small_delta_stack[UNPACK_ENTRY_STACK_PREALLOC];
2271         struct unpack_entry_stack_ent *delta_stack = small_delta_stack;
2272         int delta_stack_nr = 0, delta_stack_alloc = UNPACK_ENTRY_STACK_PREALLOC;
2273         int base_from_cache = 0;
2274
2275         write_pack_access_log(p, obj_offset);
2276
2277         /* PHASE 1: drill down to the innermost base object */
2278         for (;;) {
2279                 off_t base_offset;
2280                 int i;
2281                 struct delta_base_cache_entry *ent;
2282
2283                 ent = get_delta_base_cache_entry(p, curpos);
2284                 if (ent) {
2285                         type = ent->type;
2286                         data = ent->data;
2287                         size = ent->size;
2288                         detach_delta_base_cache_entry(ent);
2289                         base_from_cache = 1;
2290                         break;
2291                 }
2292
2293                 if (do_check_packed_object_crc && p->index_version > 1) {
2294                         struct revindex_entry *revidx = find_pack_revindex(p, obj_offset);
2295                         off_t len = revidx[1].offset - obj_offset;
2296                         if (check_pack_crc(p, &w_curs, obj_offset, len, revidx->nr)) {
2297                                 const unsigned char *sha1 =
2298                                         nth_packed_object_sha1(p, revidx->nr);
2299                                 error("bad packed object CRC for %s",
2300                                       sha1_to_hex(sha1));
2301                                 mark_bad_packed_object(p, sha1);
2302                                 data = NULL;
2303                                 goto out;
2304                         }
2305                 }
2306
2307                 type = unpack_object_header(p, &w_curs, &curpos, &size);
2308                 if (type != OBJ_OFS_DELTA && type != OBJ_REF_DELTA)
2309                         break;
2310
2311                 base_offset = get_delta_base(p, &w_curs, &curpos, type, obj_offset);
2312                 if (!base_offset) {
2313                         error("failed to validate delta base reference "
2314                               "at offset %"PRIuMAX" from %s",
2315                               (uintmax_t)curpos, p->pack_name);
2316                         /* bail to phase 2, in hopes of recovery */
2317                         data = NULL;
2318                         break;
2319                 }
2320
2321                 /* push object, proceed to base */
2322                 if (delta_stack_nr >= delta_stack_alloc
2323                     && delta_stack == small_delta_stack) {
2324                         delta_stack_alloc = alloc_nr(delta_stack_nr);
2325                         ALLOC_ARRAY(delta_stack, delta_stack_alloc);
2326                         memcpy(delta_stack, small_delta_stack,
2327                                sizeof(*delta_stack)*delta_stack_nr);
2328                 } else {
2329                         ALLOC_GROW(delta_stack, delta_stack_nr+1, delta_stack_alloc);
2330                 }
2331                 i = delta_stack_nr++;
2332                 delta_stack[i].obj_offset = obj_offset;
2333                 delta_stack[i].curpos = curpos;
2334                 delta_stack[i].size = size;
2335
2336                 curpos = obj_offset = base_offset;
2337         }
2338
2339         /* PHASE 2: handle the base */
2340         switch (type) {
2341         case OBJ_OFS_DELTA:
2342         case OBJ_REF_DELTA:
2343                 if (data)
2344                         die("BUG: unpack_entry: left loop at a valid delta");
2345                 break;
2346         case OBJ_COMMIT:
2347         case OBJ_TREE:
2348         case OBJ_BLOB:
2349         case OBJ_TAG:
2350                 if (!base_from_cache)
2351                         data = unpack_compressed_entry(p, &w_curs, curpos, size);
2352                 break;
2353         default:
2354                 data = NULL;
2355                 error("unknown object type %i at offset %"PRIuMAX" in %s",
2356                       type, (uintmax_t)obj_offset, p->pack_name);
2357         }
2358
2359         /* PHASE 3: apply deltas in order */
2360
2361         /* invariants:
2362          *   'data' holds the base data, or NULL if there was corruption
2363          */
2364         while (delta_stack_nr) {
2365                 void *delta_data;
2366                 void *base = data;
2367                 void *external_base = NULL;
2368                 unsigned long delta_size, base_size = size;
2369                 int i;
2370
2371                 data = NULL;
2372
2373                 if (base)
2374                         add_delta_base_cache(p, obj_offset, base, base_size, type);
2375
2376                 if (!base) {
2377                         /*
2378                          * We're probably in deep shit, but let's try to fetch
2379                          * the required base anyway from another pack or loose.
2380                          * This is costly but should happen only in the presence
2381                          * of a corrupted pack, and is better than failing outright.
2382                          */
2383                         struct revindex_entry *revidx;
2384                         const unsigned char *base_sha1;
2385                         revidx = find_pack_revindex(p, obj_offset);
2386                         if (revidx) {
2387                                 base_sha1 = nth_packed_object_sha1(p, revidx->nr);
2388                                 error("failed to read delta base object %s"
2389                                       " at offset %"PRIuMAX" from %s",
2390                                       sha1_to_hex(base_sha1), (uintmax_t)obj_offset,
2391                                       p->pack_name);
2392                                 mark_bad_packed_object(p, base_sha1);
2393                                 base = read_object(base_sha1, &type, &base_size);
2394                                 external_base = base;
2395                         }
2396                 }
2397
2398                 i = --delta_stack_nr;
2399                 obj_offset = delta_stack[i].obj_offset;
2400                 curpos = delta_stack[i].curpos;
2401                 delta_size = delta_stack[i].size;
2402
2403                 if (!base)
2404                         continue;
2405
2406                 delta_data = unpack_compressed_entry(p, &w_curs, curpos, delta_size);
2407
2408                 if (!delta_data) {
2409                         error("failed to unpack compressed delta "
2410                               "at offset %"PRIuMAX" from %s",
2411                               (uintmax_t)curpos, p->pack_name);
2412                         data = NULL;
2413                         free(external_base);
2414                         continue;
2415                 }
2416
2417                 data = patch_delta(base, base_size,
2418                                    delta_data, delta_size,
2419                                    &size);
2420
2421                 /*
2422                  * We could not apply the delta; warn the user, but keep going.
2423                  * Our failure will be noticed either in the next iteration of
2424                  * the loop, or if this is the final delta, in the caller when
2425                  * we return NULL. Those code paths will take care of making
2426                  * a more explicit warning and retrying with another copy of
2427                  * the object.
2428                  */
2429                 if (!data)
2430                         error("failed to apply delta");
2431
2432                 free(delta_data);
2433                 free(external_base);
2434         }
2435
2436         if (final_type)
2437                 *final_type = type;
2438         if (final_size)
2439                 *final_size = size;
2440
2441 out:
2442         unuse_pack(&w_curs);
2443
2444         if (delta_stack != small_delta_stack)
2445                 free(delta_stack);
2446
2447         return data;
2448 }
2449
2450 const unsigned char *nth_packed_object_sha1(struct packed_git *p,
2451                                             uint32_t n)
2452 {
2453         const unsigned char *index = p->index_data;
2454         if (!index) {
2455                 if (open_pack_index(p))
2456                         return NULL;
2457                 index = p->index_data;
2458         }
2459         if (n >= p->num_objects)
2460                 return NULL;
2461         index += 4 * 256;
2462         if (p->index_version == 1) {
2463                 return index + 24 * n + 4;
2464         } else {
2465                 index += 8;
2466                 return index + 20 * n;
2467         }
2468 }
2469
2470 const struct object_id *nth_packed_object_oid(struct object_id *oid,
2471                                               struct packed_git *p,
2472                                               uint32_t n)
2473 {
2474         const unsigned char *hash = nth_packed_object_sha1(p, n);
2475         if (!hash)
2476                 return NULL;
2477         hashcpy(oid->hash, hash);
2478         return oid;
2479 }
2480
2481 void check_pack_index_ptr(const struct packed_git *p, const void *vptr)
2482 {
2483         const unsigned char *ptr = vptr;
2484         const unsigned char *start = p->index_data;
2485         const unsigned char *end = start + p->index_size;
2486         if (ptr < start)
2487                 die(_("offset before start of pack index for %s (corrupt index?)"),
2488                     p->pack_name);
2489         /* No need to check for underflow; .idx files must be at least 8 bytes */
2490         if (ptr >= end - 8)
2491                 die(_("offset beyond end of pack index for %s (truncated index?)"),
2492                     p->pack_name);
2493 }
2494
2495 off_t nth_packed_object_offset(const struct packed_git *p, uint32_t n)
2496 {
2497         const unsigned char *index = p->index_data;
2498         index += 4 * 256;
2499         if (p->index_version == 1) {
2500                 return ntohl(*((uint32_t *)(index + 24 * n)));
2501         } else {
2502                 uint32_t off;
2503                 index += 8 + p->num_objects * (20 + 4);
2504                 off = ntohl(*((uint32_t *)(index + 4 * n)));
2505                 if (!(off & 0x80000000))
2506                         return off;
2507                 index += p->num_objects * 4 + (off & 0x7fffffff) * 8;
2508                 check_pack_index_ptr(p, index);
2509                 return (((uint64_t)ntohl(*((uint32_t *)(index + 0)))) << 32) |
2510                                    ntohl(*((uint32_t *)(index + 4)));
2511         }
2512 }
2513
2514 off_t find_pack_entry_one(const unsigned char *sha1,
2515                                   struct packed_git *p)
2516 {
2517         const uint32_t *level1_ofs = p->index_data;
2518         const unsigned char *index = p->index_data;
2519         unsigned hi, lo, stride;
2520         static int debug_lookup = -1;
2521
2522         if (debug_lookup < 0)
2523                 debug_lookup = !!getenv("GIT_DEBUG_LOOKUP");
2524
2525         if (!index) {
2526                 if (open_pack_index(p))
2527                         return 0;
2528                 level1_ofs = p->index_data;
2529                 index = p->index_data;
2530         }
2531         if (p->index_version > 1) {
2532                 level1_ofs += 2;
2533                 index += 8;
2534         }
2535         index += 4 * 256;
2536         hi = ntohl(level1_ofs[*sha1]);
2537         lo = ((*sha1 == 0x0) ? 0 : ntohl(level1_ofs[*sha1 - 1]));
2538         if (p->index_version > 1) {
2539                 stride = 20;
2540         } else {
2541                 stride = 24;
2542                 index += 4;
2543         }
2544
2545         if (debug_lookup)
2546                 printf("%02x%02x%02x... lo %u hi %u nr %"PRIu32"\n",
2547                        sha1[0], sha1[1], sha1[2], lo, hi, p->num_objects);
2548
2549         while (lo < hi) {
2550                 unsigned mi = (lo + hi) / 2;
2551                 int cmp = hashcmp(index + mi * stride, sha1);
2552
2553                 if (debug_lookup)
2554                         printf("lo %u hi %u rg %u mi %u\n",
2555                                lo, hi, hi - lo, mi);
2556                 if (!cmp)
2557                         return nth_packed_object_offset(p, mi);
2558                 if (cmp > 0)
2559                         hi = mi;
2560                 else
2561                         lo = mi+1;
2562         }
2563         return 0;
2564 }
2565
2566 int is_pack_valid(struct packed_git *p)
2567 {
2568         /* An already open pack is known to be valid. */
2569         if (p->pack_fd != -1)
2570                 return 1;
2571
2572         /* If the pack has one window completely covering the
2573          * file size, the pack is known to be valid even if
2574          * the descriptor is not currently open.
2575          */
2576         if (p->windows) {
2577                 struct pack_window *w = p->windows;
2578
2579                 if (!w->offset && w->len == p->pack_size)
2580                         return 1;
2581         }
2582
2583         /* Force the pack to open to prove its valid. */
2584         return !open_packed_git(p);
2585 }
2586
2587 static int fill_pack_entry(const unsigned char *sha1,
2588                            struct pack_entry *e,
2589                            struct packed_git *p)
2590 {
2591         off_t offset;
2592
2593         if (p->num_bad_objects) {
2594                 unsigned i;
2595                 for (i = 0; i < p->num_bad_objects; i++)
2596                         if (!hashcmp(sha1, p->bad_object_sha1 + 20 * i))
2597                                 return 0;
2598         }
2599
2600         offset = find_pack_entry_one(sha1, p);
2601         if (!offset)
2602                 return 0;
2603
2604         /*
2605          * We are about to tell the caller where they can locate the
2606          * requested object.  We better make sure the packfile is
2607          * still here and can be accessed before supplying that
2608          * answer, as it may have been deleted since the index was
2609          * loaded!
2610          */
2611         if (!is_pack_valid(p))
2612                 return 0;
2613         e->offset = offset;
2614         e->p = p;
2615         hashcpy(e->sha1, sha1);
2616         return 1;
2617 }
2618
2619 /*
2620  * Iff a pack file contains the object named by sha1, return true and
2621  * store its location to e.
2622  */
2623 static int find_pack_entry(const unsigned char *sha1, struct pack_entry *e)
2624 {
2625         struct mru_entry *p;
2626
2627         prepare_packed_git();
2628         if (!packed_git)
2629                 return 0;
2630
2631         for (p = packed_git_mru->head; p; p = p->next) {
2632                 if (fill_pack_entry(sha1, e, p->item)) {
2633                         mru_mark(packed_git_mru, p);
2634                         return 1;
2635                 }
2636         }
2637         return 0;
2638 }
2639
2640 struct packed_git *find_sha1_pack(const unsigned char *sha1,
2641                                   struct packed_git *packs)
2642 {
2643         struct packed_git *p;
2644
2645         for (p = packs; p; p = p->next) {
2646                 if (find_pack_entry_one(sha1, p))
2647                         return p;
2648         }
2649         return NULL;
2650
2651 }
2652
2653 static int sha1_loose_object_info(const unsigned char *sha1,
2654                                   struct object_info *oi,
2655                                   int flags)
2656 {
2657         int status = 0;
2658         unsigned long mapsize;
2659         void *map;
2660         git_zstream stream;
2661         char hdr[32];
2662         struct strbuf hdrbuf = STRBUF_INIT;
2663         unsigned long size_scratch;
2664
2665         if (oi->delta_base_sha1)
2666                 hashclr(oi->delta_base_sha1);
2667
2668         /*
2669          * If we don't care about type or size, then we don't
2670          * need to look inside the object at all. Note that we
2671          * do not optimize out the stat call, even if the
2672          * caller doesn't care about the disk-size, since our
2673          * return value implicitly indicates whether the
2674          * object even exists.
2675          */
2676         if (!oi->typep && !oi->typename && !oi->sizep && !oi->contentp) {
2677                 const char *path;
2678                 struct stat st;
2679                 if (stat_sha1_file(sha1, &st, &path) < 0)
2680                         return -1;
2681                 if (oi->disk_sizep)
2682                         *oi->disk_sizep = st.st_size;
2683                 return 0;
2684         }
2685
2686         map = map_sha1_file(sha1, &mapsize);
2687         if (!map)
2688                 return -1;
2689
2690         if (!oi->sizep)
2691                 oi->sizep = &size_scratch;
2692
2693         if (oi->disk_sizep)
2694                 *oi->disk_sizep = mapsize;
2695         if ((flags & OBJECT_INFO_ALLOW_UNKNOWN_TYPE)) {
2696                 if (unpack_sha1_header_to_strbuf(&stream, map, mapsize, hdr, sizeof(hdr), &hdrbuf) < 0)
2697                         status = error("unable to unpack %s header with --allow-unknown-type",
2698                                        sha1_to_hex(sha1));
2699         } else if (unpack_sha1_header(&stream, map, mapsize, hdr, sizeof(hdr)) < 0)
2700                 status = error("unable to unpack %s header",
2701                                sha1_to_hex(sha1));
2702         if (status < 0)
2703                 ; /* Do nothing */
2704         else if (hdrbuf.len) {
2705                 if ((status = parse_sha1_header_extended(hdrbuf.buf, oi, flags)) < 0)
2706                         status = error("unable to parse %s header with --allow-unknown-type",
2707                                        sha1_to_hex(sha1));
2708         } else if ((status = parse_sha1_header_extended(hdr, oi, flags)) < 0)
2709                 status = error("unable to parse %s header", sha1_to_hex(sha1));
2710
2711         if (status >= 0 && oi->contentp)
2712                 *oi->contentp = unpack_sha1_rest(&stream, hdr,
2713                                                  *oi->sizep, sha1);
2714         else
2715                 git_inflate_end(&stream);
2716
2717         munmap(map, mapsize);
2718         if (status && oi->typep)
2719                 *oi->typep = status;
2720         if (oi->sizep == &size_scratch)
2721                 oi->sizep = NULL;
2722         strbuf_release(&hdrbuf);
2723         oi->whence = OI_LOOSE;
2724         return (status < 0) ? status : 0;
2725 }
2726
2727 int sha1_object_info_extended(const unsigned char *sha1, struct object_info *oi, unsigned flags)
2728 {
2729         static struct object_info blank_oi = OBJECT_INFO_INIT;
2730         struct pack_entry e;
2731         int rtype;
2732         const unsigned char *real = (flags & OBJECT_INFO_LOOKUP_REPLACE) ?
2733                                     lookup_replace_object(sha1) :
2734                                     sha1;
2735
2736         if (!oi)
2737                 oi = &blank_oi;
2738
2739         if (!(flags & OBJECT_INFO_SKIP_CACHED)) {
2740                 struct cached_object *co = find_cached_object(real);
2741                 if (co) {
2742                         if (oi->typep)
2743                                 *(oi->typep) = co->type;
2744                         if (oi->sizep)
2745                                 *(oi->sizep) = co->size;
2746                         if (oi->disk_sizep)
2747                                 *(oi->disk_sizep) = 0;
2748                         if (oi->delta_base_sha1)
2749                                 hashclr(oi->delta_base_sha1);
2750                         if (oi->typename)
2751                                 strbuf_addstr(oi->typename, typename(co->type));
2752                         if (oi->contentp)
2753                                 *oi->contentp = xmemdupz(co->buf, co->size);
2754                         oi->whence = OI_CACHED;
2755                         return 0;
2756                 }
2757         }
2758
2759         if (!find_pack_entry(real, &e)) {
2760                 /* Most likely it's a loose object. */
2761                 if (!sha1_loose_object_info(real, oi, flags))
2762                         return 0;
2763
2764                 /* Not a loose object; someone else may have just packed it. */
2765                 if (flags & OBJECT_INFO_QUICK) {
2766                         return -1;
2767                 } else {
2768                         reprepare_packed_git();
2769                         if (!find_pack_entry(real, &e))
2770                                 return -1;
2771                 }
2772         }
2773
2774         if (oi == &blank_oi)
2775                 /*
2776                  * We know that the caller doesn't actually need the
2777                  * information below, so return early.
2778                  */
2779                 return 0;
2780
2781         rtype = packed_object_info(e.p, e.offset, oi);
2782         if (rtype < 0) {
2783                 mark_bad_packed_object(e.p, real);
2784                 return sha1_object_info_extended(real, oi, 0);
2785         } else if (oi->whence == OI_PACKED) {
2786                 oi->u.packed.offset = e.offset;
2787                 oi->u.packed.pack = e.p;
2788                 oi->u.packed.is_delta = (rtype == OBJ_REF_DELTA ||
2789                                          rtype == OBJ_OFS_DELTA);
2790         }
2791
2792         return 0;
2793 }
2794
2795 /* returns enum object_type or negative */
2796 int sha1_object_info(const unsigned char *sha1, unsigned long *sizep)
2797 {
2798         enum object_type type;
2799         struct object_info oi = OBJECT_INFO_INIT;
2800
2801         oi.typep = &type;
2802         oi.sizep = sizep;
2803         if (sha1_object_info_extended(sha1, &oi,
2804                                       OBJECT_INFO_LOOKUP_REPLACE) < 0)
2805                 return -1;
2806         return type;
2807 }
2808
2809 int pretend_sha1_file(void *buf, unsigned long len, enum object_type type,
2810                       unsigned char *sha1)
2811 {
2812         struct cached_object *co;
2813
2814         hash_sha1_file(buf, len, typename(type), sha1);
2815         if (has_sha1_file(sha1) || find_cached_object(sha1))
2816                 return 0;
2817         ALLOC_GROW(cached_objects, cached_object_nr + 1, cached_object_alloc);
2818         co = &cached_objects[cached_object_nr++];
2819         co->size = len;
2820         co->type = type;
2821         co->buf = xmalloc(len);
2822         memcpy(co->buf, buf, len);
2823         hashcpy(co->sha1, sha1);
2824         return 0;
2825 }
2826
2827 static void *read_object(const unsigned char *sha1, enum object_type *type,
2828                          unsigned long *size)
2829 {
2830         struct object_info oi = OBJECT_INFO_INIT;
2831         void *content;
2832         oi.typep = type;
2833         oi.sizep = size;
2834         oi.contentp = &content;
2835
2836         if (sha1_object_info_extended(sha1, &oi, 0) < 0)
2837                 return NULL;
2838         return content;
2839 }
2840
2841 /*
2842  * This function dies on corrupt objects; the callers who want to
2843  * deal with them should arrange to call read_object() and give error
2844  * messages themselves.
2845  */
2846 void *read_sha1_file_extended(const unsigned char *sha1,
2847                               enum object_type *type,
2848                               unsigned long *size,
2849                               int lookup_replace)
2850 {
2851         void *data;
2852         const struct packed_git *p;
2853         const char *path;
2854         struct stat st;
2855         const unsigned char *repl = lookup_replace ? lookup_replace_object(sha1)
2856                                                    : sha1;
2857
2858         errno = 0;
2859         data = read_object(repl, type, size);
2860         if (data)
2861                 return data;
2862
2863         if (errno && errno != ENOENT)
2864                 die_errno("failed to read object %s", sha1_to_hex(sha1));
2865
2866         /* die if we replaced an object with one that does not exist */
2867         if (repl != sha1)
2868                 die("replacement %s not found for %s",
2869                     sha1_to_hex(repl), sha1_to_hex(sha1));
2870
2871         if (!stat_sha1_file(repl, &st, &path))
2872                 die("loose object %s (stored in %s) is corrupt",
2873                     sha1_to_hex(repl), path);
2874
2875         if ((p = has_packed_and_bad(repl)) != NULL)
2876                 die("packed object %s (stored in %s) is corrupt",
2877                     sha1_to_hex(repl), p->pack_name);
2878
2879         return NULL;
2880 }
2881
2882 void *read_object_with_reference(const unsigned char *sha1,
2883                                  const char *required_type_name,
2884                                  unsigned long *size,
2885                                  unsigned char *actual_sha1_return)
2886 {
2887         enum object_type type, required_type;
2888         void *buffer;
2889         unsigned long isize;
2890         unsigned char actual_sha1[20];
2891
2892         required_type = type_from_string(required_type_name);
2893         hashcpy(actual_sha1, sha1);
2894         while (1) {
2895                 int ref_length = -1;
2896                 const char *ref_type = NULL;
2897
2898                 buffer = read_sha1_file(actual_sha1, &type, &isize);
2899                 if (!buffer)
2900                         return NULL;
2901                 if (type == required_type) {
2902                         *size = isize;
2903                         if (actual_sha1_return)
2904                                 hashcpy(actual_sha1_return, actual_sha1);
2905                         return buffer;
2906                 }
2907                 /* Handle references */
2908                 else if (type == OBJ_COMMIT)
2909                         ref_type = "tree ";
2910                 else if (type == OBJ_TAG)
2911                         ref_type = "object ";
2912                 else {
2913                         free(buffer);
2914                         return NULL;
2915                 }
2916                 ref_length = strlen(ref_type);
2917
2918                 if (ref_length + 40 > isize ||
2919                     memcmp(buffer, ref_type, ref_length) ||
2920                     get_sha1_hex((char *) buffer + ref_length, actual_sha1)) {
2921                         free(buffer);
2922                         return NULL;
2923                 }
2924                 free(buffer);
2925                 /* Now we have the ID of the referred-to object in
2926                  * actual_sha1.  Check again. */
2927         }
2928 }
2929
2930 static void write_sha1_file_prepare(const void *buf, unsigned long len,
2931                                     const char *type, unsigned char *sha1,
2932                                     char *hdr, int *hdrlen)
2933 {
2934         git_SHA_CTX c;
2935
2936         /* Generate the header */
2937         *hdrlen = xsnprintf(hdr, *hdrlen, "%s %lu", type, len)+1;
2938
2939         /* Sha1.. */
2940         git_SHA1_Init(&c);
2941         git_SHA1_Update(&c, hdr, *hdrlen);
2942         git_SHA1_Update(&c, buf, len);
2943         git_SHA1_Final(sha1, &c);
2944 }
2945
2946 /*
2947  * Move the just written object into its final resting place.
2948  */
2949 int finalize_object_file(const char *tmpfile, const char *filename)
2950 {
2951         int ret = 0;
2952
2953         if (object_creation_mode == OBJECT_CREATION_USES_RENAMES)
2954                 goto try_rename;
2955         else if (link(tmpfile, filename))
2956                 ret = errno;
2957
2958         /*
2959          * Coda hack - coda doesn't like cross-directory links,
2960          * so we fall back to a rename, which will mean that it
2961          * won't be able to check collisions, but that's not a
2962          * big deal.
2963          *
2964          * The same holds for FAT formatted media.
2965          *
2966          * When this succeeds, we just return.  We have nothing
2967          * left to unlink.
2968          */
2969         if (ret && ret != EEXIST) {
2970         try_rename:
2971                 if (!rename(tmpfile, filename))
2972                         goto out;
2973                 ret = errno;
2974         }
2975         unlink_or_warn(tmpfile);
2976         if (ret) {
2977                 if (ret != EEXIST) {
2978                         return error_errno("unable to write sha1 filename %s", filename);
2979                 }
2980                 /* FIXME!!! Collision check here ? */
2981         }
2982
2983 out:
2984         if (adjust_shared_perm(filename))
2985                 return error("unable to set permission to '%s'", filename);
2986         return 0;
2987 }
2988
2989 static int write_buffer(int fd, const void *buf, size_t len)
2990 {
2991         if (write_in_full(fd, buf, len) < 0)
2992                 return error_errno("file write error");
2993         return 0;
2994 }
2995
2996 int hash_sha1_file(const void *buf, unsigned long len, const char *type,
2997                    unsigned char *sha1)
2998 {
2999         char hdr[32];
3000         int hdrlen = sizeof(hdr);
3001         write_sha1_file_prepare(buf, len, type, sha1, hdr, &hdrlen);
3002         return 0;
3003 }
3004
3005 /* Finalize a file on disk, and close it. */
3006 static void close_sha1_file(int fd)
3007 {
3008         if (fsync_object_files)
3009                 fsync_or_die(fd, "sha1 file");
3010         if (close(fd) != 0)
3011                 die_errno("error when closing sha1 file");
3012 }
3013
3014 /* Size of directory component, including the ending '/' */
3015 static inline int directory_size(const char *filename)
3016 {
3017         const char *s = strrchr(filename, '/');
3018         if (!s)
3019                 return 0;
3020         return s - filename + 1;
3021 }
3022
3023 /*
3024  * This creates a temporary file in the same directory as the final
3025  * 'filename'
3026  *
3027  * We want to avoid cross-directory filename renames, because those
3028  * can have problems on various filesystems (FAT, NFS, Coda).
3029  */
3030 static int create_tmpfile(struct strbuf *tmp, const char *filename)
3031 {
3032         int fd, dirlen = directory_size(filename);
3033
3034         strbuf_reset(tmp);
3035         strbuf_add(tmp, filename, dirlen);
3036         strbuf_addstr(tmp, "tmp_obj_XXXXXX");
3037         fd = git_mkstemp_mode(tmp->buf, 0444);
3038         if (fd < 0 && dirlen && errno == ENOENT) {
3039                 /*
3040                  * Make sure the directory exists; note that the contents
3041                  * of the buffer are undefined after mkstemp returns an
3042                  * error, so we have to rewrite the whole buffer from
3043                  * scratch.
3044                  */
3045                 strbuf_reset(tmp);
3046                 strbuf_add(tmp, filename, dirlen - 1);
3047                 if (mkdir(tmp->buf, 0777) && errno != EEXIST)
3048                         return -1;
3049                 if (adjust_shared_perm(tmp->buf))
3050                         return -1;
3051
3052                 /* Try again */
3053                 strbuf_addstr(tmp, "/tmp_obj_XXXXXX");
3054                 fd = git_mkstemp_mode(tmp->buf, 0444);
3055         }
3056         return fd;
3057 }
3058
3059 static int write_loose_object(const unsigned char *sha1, char *hdr, int hdrlen,
3060                               const void *buf, unsigned long len, time_t mtime)
3061 {
3062         int fd, ret;
3063         unsigned char compressed[4096];
3064         git_zstream stream;
3065         git_SHA_CTX c;
3066         unsigned char parano_sha1[20];
3067         static struct strbuf tmp_file = STRBUF_INIT;
3068         const char *filename = sha1_file_name(sha1);
3069
3070         fd = create_tmpfile(&tmp_file, filename);
3071         if (fd < 0) {
3072                 if (errno == EACCES)
3073                         return error("insufficient permission for adding an object to repository database %s", get_object_directory());
3074                 else
3075                         return error_errno("unable to create temporary file");
3076         }
3077
3078         /* Set it up */
3079         git_deflate_init(&stream, zlib_compression_level);
3080         stream.next_out = compressed;
3081         stream.avail_out = sizeof(compressed);
3082         git_SHA1_Init(&c);
3083
3084         /* First header.. */
3085         stream.next_in = (unsigned char *)hdr;
3086         stream.avail_in = hdrlen;
3087         while (git_deflate(&stream, 0) == Z_OK)
3088                 ; /* nothing */
3089         git_SHA1_Update(&c, hdr, hdrlen);
3090
3091         /* Then the data itself.. */
3092         stream.next_in = (void *)buf;
3093         stream.avail_in = len;
3094         do {
3095                 unsigned char *in0 = stream.next_in;
3096                 ret = git_deflate(&stream, Z_FINISH);
3097                 git_SHA1_Update(&c, in0, stream.next_in - in0);
3098                 if (write_buffer(fd, compressed, stream.next_out - compressed) < 0)
3099                         die("unable to write sha1 file");
3100                 stream.next_out = compressed;
3101                 stream.avail_out = sizeof(compressed);
3102         } while (ret == Z_OK);
3103
3104         if (ret != Z_STREAM_END)
3105                 die("unable to deflate new object %s (%d)", sha1_to_hex(sha1), ret);
3106         ret = git_deflate_end_gently(&stream);
3107         if (ret != Z_OK)
3108                 die("deflateEnd on object %s failed (%d)", sha1_to_hex(sha1), ret);
3109         git_SHA1_Final(parano_sha1, &c);
3110         if (hashcmp(sha1, parano_sha1) != 0)
3111                 die("confused by unstable object source data for %s", sha1_to_hex(sha1));
3112
3113         close_sha1_file(fd);
3114
3115         if (mtime) {
3116                 struct utimbuf utb;
3117                 utb.actime = mtime;
3118                 utb.modtime = mtime;
3119                 if (utime(tmp_file.buf, &utb) < 0)
3120                         warning_errno("failed utime() on %s", tmp_file.buf);
3121         }
3122
3123         return finalize_object_file(tmp_file.buf, filename);
3124 }
3125
3126 static int freshen_loose_object(const unsigned char *sha1)
3127 {
3128         return check_and_freshen(sha1, 1);
3129 }
3130
3131 static int freshen_packed_object(const unsigned char *sha1)
3132 {
3133         struct pack_entry e;
3134         if (!find_pack_entry(sha1, &e))
3135                 return 0;
3136         if (e.p->freshened)
3137                 return 1;
3138         if (!freshen_file(e.p->pack_name))
3139                 return 0;
3140         e.p->freshened = 1;
3141         return 1;
3142 }
3143
3144 int write_sha1_file(const void *buf, unsigned long len, const char *type, unsigned char *sha1)
3145 {
3146         char hdr[32];
3147         int hdrlen = sizeof(hdr);
3148
3149         /* Normally if we have it in the pack then we do not bother writing
3150          * it out into .git/objects/??/?{38} file.
3151          */
3152         write_sha1_file_prepare(buf, len, type, sha1, hdr, &hdrlen);
3153         if (freshen_packed_object(sha1) || freshen_loose_object(sha1))
3154                 return 0;
3155         return write_loose_object(sha1, hdr, hdrlen, buf, len, 0);
3156 }
3157
3158 int hash_sha1_file_literally(const void *buf, unsigned long len, const char *type,
3159                              unsigned char *sha1, unsigned flags)
3160 {
3161         char *header;
3162         int hdrlen, status = 0;
3163
3164         /* type string, SP, %lu of the length plus NUL must fit this */
3165         hdrlen = strlen(type) + 32;
3166         header = xmalloc(hdrlen);
3167         write_sha1_file_prepare(buf, len, type, sha1, header, &hdrlen);
3168
3169         if (!(flags & HASH_WRITE_OBJECT))
3170                 goto cleanup;
3171         if (freshen_packed_object(sha1) || freshen_loose_object(sha1))
3172                 goto cleanup;
3173         status = write_loose_object(sha1, header, hdrlen, buf, len, 0);
3174
3175 cleanup:
3176         free(header);
3177         return status;
3178 }
3179
3180 int force_object_loose(const unsigned char *sha1, time_t mtime)
3181 {
3182         void *buf;
3183         unsigned long len;
3184         enum object_type type;
3185         char hdr[32];
3186         int hdrlen;
3187         int ret;
3188
3189         if (has_loose_object(sha1))
3190                 return 0;
3191         buf = read_object(sha1, &type, &len);
3192         if (!buf)
3193                 return error("cannot read sha1_file for %s", sha1_to_hex(sha1));
3194         hdrlen = xsnprintf(hdr, sizeof(hdr), "%s %lu", typename(type), len) + 1;
3195         ret = write_loose_object(sha1, hdr, hdrlen, buf, len, mtime);
3196         free(buf);
3197
3198         return ret;
3199 }
3200
3201 int has_pack_index(const unsigned char *sha1)
3202 {
3203         struct stat st;
3204         if (stat(sha1_pack_index_name(sha1), &st))
3205                 return 0;
3206         return 1;
3207 }
3208
3209 int has_sha1_pack(const unsigned char *sha1)
3210 {
3211         struct pack_entry e;
3212         return find_pack_entry(sha1, &e);
3213 }
3214
3215 int has_sha1_file_with_flags(const unsigned char *sha1, int flags)
3216 {
3217         if (!startup_info->have_repository)
3218                 return 0;
3219         return sha1_object_info_extended(sha1, NULL,
3220                                          flags | OBJECT_INFO_SKIP_CACHED) >= 0;
3221 }
3222
3223 int has_object_file(const struct object_id *oid)
3224 {
3225         return has_sha1_file(oid->hash);
3226 }
3227
3228 int has_object_file_with_flags(const struct object_id *oid, int flags)
3229 {
3230         return has_sha1_file_with_flags(oid->hash, flags);
3231 }
3232
3233 static void check_tree(const void *buf, size_t size)
3234 {
3235         struct tree_desc desc;
3236         struct name_entry entry;
3237
3238         init_tree_desc(&desc, buf, size);
3239         while (tree_entry(&desc, &entry))
3240                 /* do nothing
3241                  * tree_entry() will die() on malformed entries */
3242                 ;
3243 }
3244
3245 static void check_commit(const void *buf, size_t size)
3246 {
3247         struct commit c;
3248         memset(&c, 0, sizeof(c));
3249         if (parse_commit_buffer(&c, buf, size))
3250                 die("corrupt commit");
3251 }
3252
3253 static void check_tag(const void *buf, size_t size)
3254 {
3255         struct tag t;
3256         memset(&t, 0, sizeof(t));
3257         if (parse_tag_buffer(&t, buf, size))
3258                 die("corrupt tag");
3259 }
3260
3261 static int index_mem(unsigned char *sha1, void *buf, size_t size,
3262                      enum object_type type,
3263                      const char *path, unsigned flags)
3264 {
3265         int ret, re_allocated = 0;
3266         int write_object = flags & HASH_WRITE_OBJECT;
3267
3268         if (!type)
3269                 type = OBJ_BLOB;
3270
3271         /*
3272          * Convert blobs to git internal format
3273          */
3274         if ((type == OBJ_BLOB) && path) {
3275                 struct strbuf nbuf = STRBUF_INIT;
3276                 if (convert_to_git(&the_index, path, buf, size, &nbuf,
3277                                    write_object ? safe_crlf : SAFE_CRLF_FALSE)) {
3278                         buf = strbuf_detach(&nbuf, &size);
3279                         re_allocated = 1;
3280                 }
3281         }
3282         if (flags & HASH_FORMAT_CHECK) {
3283                 if (type == OBJ_TREE)
3284                         check_tree(buf, size);
3285                 if (type == OBJ_COMMIT)
3286                         check_commit(buf, size);
3287                 if (type == OBJ_TAG)
3288                         check_tag(buf, size);
3289         }
3290
3291         if (write_object)
3292                 ret = write_sha1_file(buf, size, typename(type), sha1);
3293         else
3294                 ret = hash_sha1_file(buf, size, typename(type), sha1);
3295         if (re_allocated)
3296                 free(buf);
3297         return ret;
3298 }
3299
3300 static int index_stream_convert_blob(unsigned char *sha1, int fd,
3301                                      const char *path, unsigned flags)
3302 {
3303         int ret;
3304         const int write_object = flags & HASH_WRITE_OBJECT;
3305         struct strbuf sbuf = STRBUF_INIT;
3306
3307         assert(path);
3308         assert(would_convert_to_git_filter_fd(path));
3309
3310         convert_to_git_filter_fd(&the_index, path, fd, &sbuf,
3311                                  write_object ? safe_crlf : SAFE_CRLF_FALSE);
3312
3313         if (write_object)
3314                 ret = write_sha1_file(sbuf.buf, sbuf.len, typename(OBJ_BLOB),
3315                                       sha1);
3316         else
3317                 ret = hash_sha1_file(sbuf.buf, sbuf.len, typename(OBJ_BLOB),
3318                                      sha1);
3319         strbuf_release(&sbuf);
3320         return ret;
3321 }
3322
3323 static int index_pipe(unsigned char *sha1, int fd, enum object_type type,
3324                       const char *path, unsigned flags)
3325 {
3326         struct strbuf sbuf = STRBUF_INIT;
3327         int ret;
3328
3329         if (strbuf_read(&sbuf, fd, 4096) >= 0)
3330                 ret = index_mem(sha1, sbuf.buf, sbuf.len, type, path, flags);
3331         else
3332                 ret = -1;
3333         strbuf_release(&sbuf);
3334         return ret;
3335 }
3336
3337 #define SMALL_FILE_SIZE (32*1024)
3338
3339 static int index_core(unsigned char *sha1, int fd, size_t size,
3340                       enum object_type type, const char *path,
3341                       unsigned flags)
3342 {
3343         int ret;
3344
3345         if (!size) {
3346                 ret = index_mem(sha1, "", size, type, path, flags);
3347         } else if (size <= SMALL_FILE_SIZE) {
3348                 char *buf = xmalloc(size);
3349                 if (size == read_in_full(fd, buf, size))
3350                         ret = index_mem(sha1, buf, size, type, path, flags);
3351                 else
3352                         ret = error_errno("short read");
3353                 free(buf);
3354         } else {
3355                 void *buf = xmmap(NULL, size, PROT_READ, MAP_PRIVATE, fd, 0);
3356                 ret = index_mem(sha1, buf, size, type, path, flags);
3357                 munmap(buf, size);
3358         }
3359         return ret;
3360 }
3361
3362 /*
3363  * This creates one packfile per large blob unless bulk-checkin
3364  * machinery is "plugged".
3365  *
3366  * This also bypasses the usual "convert-to-git" dance, and that is on
3367  * purpose. We could write a streaming version of the converting
3368  * functions and insert that before feeding the data to fast-import
3369  * (or equivalent in-core API described above). However, that is
3370  * somewhat complicated, as we do not know the size of the filter
3371  * result, which we need to know beforehand when writing a git object.
3372  * Since the primary motivation for trying to stream from the working
3373  * tree file and to avoid mmaping it in core is to deal with large
3374  * binary blobs, they generally do not want to get any conversion, and
3375  * callers should avoid this code path when filters are requested.
3376  */
3377 static int index_stream(unsigned char *sha1, int fd, size_t size,
3378                         enum object_type type, const char *path,
3379                         unsigned flags)
3380 {
3381         return index_bulk_checkin(sha1, fd, size, type, path, flags);
3382 }
3383
3384 int index_fd(unsigned char *sha1, int fd, struct stat *st,
3385              enum object_type type, const char *path, unsigned flags)
3386 {
3387         int ret;
3388
3389         /*
3390          * Call xsize_t() only when needed to avoid potentially unnecessary
3391          * die() for large files.
3392          */
3393         if (type == OBJ_BLOB && path && would_convert_to_git_filter_fd(path))
3394                 ret = index_stream_convert_blob(sha1, fd, path, flags);
3395         else if (!S_ISREG(st->st_mode))
3396                 ret = index_pipe(sha1, fd, type, path, flags);
3397         else if (st->st_size <= big_file_threshold || type != OBJ_BLOB ||
3398                  (path && would_convert_to_git(&the_index, path)))
3399                 ret = index_core(sha1, fd, xsize_t(st->st_size), type, path,
3400                                  flags);
3401         else
3402                 ret = index_stream(sha1, fd, xsize_t(st->st_size), type, path,
3403                                    flags);
3404         close(fd);
3405         return ret;
3406 }
3407
3408 int index_path(unsigned char *sha1, const char *path, struct stat *st, unsigned flags)
3409 {
3410         int fd;
3411         struct strbuf sb = STRBUF_INIT;
3412
3413         switch (st->st_mode & S_IFMT) {
3414         case S_IFREG:
3415                 fd = open(path, O_RDONLY);
3416                 if (fd < 0)
3417                         return error_errno("open(\"%s\")", path);
3418                 if (index_fd(sha1, fd, st, OBJ_BLOB, path, flags) < 0)
3419                         return error("%s: failed to insert into database",
3420                                      path);
3421                 break;
3422         case S_IFLNK:
3423                 if (strbuf_readlink(&sb, path, st->st_size))
3424                         return error_errno("readlink(\"%s\")", path);
3425                 if (!(flags & HASH_WRITE_OBJECT))
3426                         hash_sha1_file(sb.buf, sb.len, blob_type, sha1);
3427                 else if (write_sha1_file(sb.buf, sb.len, blob_type, sha1))
3428                         return error("%s: failed to insert into database",
3429                                      path);
3430                 strbuf_release(&sb);
3431                 break;
3432         case S_IFDIR:
3433                 return resolve_gitlink_ref(path, "HEAD", sha1);
3434         default:
3435                 return error("%s: unsupported file type", path);
3436         }
3437         return 0;
3438 }
3439
3440 int read_pack_header(int fd, struct pack_header *header)
3441 {
3442         if (read_in_full(fd, header, sizeof(*header)) < sizeof(*header))
3443                 /* "eof before pack header was fully read" */
3444                 return PH_ERROR_EOF;
3445
3446         if (header->hdr_signature != htonl(PACK_SIGNATURE))
3447                 /* "protocol error (pack signature mismatch detected)" */
3448                 return PH_ERROR_PACK_SIGNATURE;
3449         if (!pack_version_ok(header->hdr_version))
3450                 /* "protocol error (pack version unsupported)" */
3451                 return PH_ERROR_PROTOCOL;
3452         return 0;
3453 }
3454
3455 void assert_sha1_type(const unsigned char *sha1, enum object_type expect)
3456 {
3457         enum object_type type = sha1_object_info(sha1, NULL);
3458         if (type < 0)
3459                 die("%s is not a valid object", sha1_to_hex(sha1));
3460         if (type != expect)
3461                 die("%s is not a valid '%s' object", sha1_to_hex(sha1),
3462                     typename(expect));
3463 }
3464
3465 int for_each_file_in_obj_subdir(unsigned int subdir_nr,
3466                                 struct strbuf *path,
3467                                 each_loose_object_fn obj_cb,
3468                                 each_loose_cruft_fn cruft_cb,
3469                                 each_loose_subdir_fn subdir_cb,
3470                                 void *data)
3471 {
3472         size_t origlen, baselen;
3473         DIR *dir;
3474         struct dirent *de;
3475         int r = 0;
3476
3477         if (subdir_nr > 0xff)
3478                 BUG("invalid loose object subdirectory: %x", subdir_nr);
3479
3480         origlen = path->len;
3481         strbuf_complete(path, '/');
3482         strbuf_addf(path, "%02x", subdir_nr);
3483         baselen = path->len;
3484
3485         dir = opendir(path->buf);
3486         if (!dir) {
3487                 if (errno != ENOENT)
3488                         r = error_errno("unable to open %s", path->buf);
3489                 strbuf_setlen(path, origlen);
3490                 return r;
3491         }
3492
3493         while ((de = readdir(dir))) {
3494                 if (is_dot_or_dotdot(de->d_name))
3495                         continue;
3496
3497                 strbuf_setlen(path, baselen);
3498                 strbuf_addf(path, "/%s", de->d_name);
3499
3500                 if (strlen(de->d_name) == GIT_SHA1_HEXSZ - 2)  {
3501                         char hex[GIT_MAX_HEXSZ+1];
3502                         struct object_id oid;
3503
3504                         xsnprintf(hex, sizeof(hex), "%02x%s",
3505                                   subdir_nr, de->d_name);
3506                         if (!get_oid_hex(hex, &oid)) {
3507                                 if (obj_cb) {
3508                                         r = obj_cb(&oid, path->buf, data);
3509                                         if (r)
3510                                                 break;
3511                                 }
3512                                 continue;
3513                         }
3514                 }
3515
3516                 if (cruft_cb) {
3517                         r = cruft_cb(de->d_name, path->buf, data);
3518                         if (r)
3519                                 break;
3520                 }
3521         }
3522         closedir(dir);
3523
3524         strbuf_setlen(path, baselen);
3525         if (!r && subdir_cb)
3526                 r = subdir_cb(subdir_nr, path->buf, data);
3527
3528         strbuf_setlen(path, origlen);
3529
3530         return r;
3531 }
3532
3533 int for_each_loose_file_in_objdir_buf(struct strbuf *path,
3534                             each_loose_object_fn obj_cb,
3535                             each_loose_cruft_fn cruft_cb,
3536                             each_loose_subdir_fn subdir_cb,
3537                             void *data)
3538 {
3539         int r = 0;
3540         int i;
3541
3542         for (i = 0; i < 256; i++) {
3543                 r = for_each_file_in_obj_subdir(i, path, obj_cb, cruft_cb,
3544                                                 subdir_cb, data);
3545                 if (r)
3546                         break;
3547         }
3548
3549         return r;
3550 }
3551
3552 int for_each_loose_file_in_objdir(const char *path,
3553                                   each_loose_object_fn obj_cb,
3554                                   each_loose_cruft_fn cruft_cb,
3555                                   each_loose_subdir_fn subdir_cb,
3556                                   void *data)
3557 {
3558         struct strbuf buf = STRBUF_INIT;
3559         int r;
3560
3561         strbuf_addstr(&buf, path);
3562         r = for_each_loose_file_in_objdir_buf(&buf, obj_cb, cruft_cb,
3563                                               subdir_cb, data);
3564         strbuf_release(&buf);
3565
3566         return r;
3567 }
3568
3569 struct loose_alt_odb_data {
3570         each_loose_object_fn *cb;
3571         void *data;
3572 };
3573
3574 static int loose_from_alt_odb(struct alternate_object_database *alt,
3575                               void *vdata)
3576 {
3577         struct loose_alt_odb_data *data = vdata;
3578         struct strbuf buf = STRBUF_INIT;
3579         int r;
3580
3581         strbuf_addstr(&buf, alt->path);
3582         r = for_each_loose_file_in_objdir_buf(&buf,
3583                                               data->cb, NULL, NULL,
3584                                               data->data);
3585         strbuf_release(&buf);
3586         return r;
3587 }
3588
3589 int for_each_loose_object(each_loose_object_fn cb, void *data, unsigned flags)
3590 {
3591         struct loose_alt_odb_data alt;
3592         int r;
3593
3594         r = for_each_loose_file_in_objdir(get_object_directory(),
3595                                           cb, NULL, NULL, data);
3596         if (r)
3597                 return r;
3598
3599         if (flags & FOR_EACH_OBJECT_LOCAL_ONLY)
3600                 return 0;
3601
3602         alt.cb = cb;
3603         alt.data = data;
3604         return foreach_alt_odb(loose_from_alt_odb, &alt);
3605 }
3606
3607 static int for_each_object_in_pack(struct packed_git *p, each_packed_object_fn cb, void *data)
3608 {
3609         uint32_t i;
3610         int r = 0;
3611
3612         for (i = 0; i < p->num_objects; i++) {
3613                 struct object_id oid;
3614
3615                 if (!nth_packed_object_oid(&oid, p, i))
3616                         return error("unable to get sha1 of object %u in %s",
3617                                      i, p->pack_name);
3618
3619                 r = cb(&oid, p, i, data);
3620                 if (r)
3621                         break;
3622         }
3623         return r;
3624 }
3625
3626 int for_each_packed_object(each_packed_object_fn cb, void *data, unsigned flags)
3627 {
3628         struct packed_git *p;
3629         int r = 0;
3630         int pack_errors = 0;
3631
3632         prepare_packed_git();
3633         for (p = packed_git; p; p = p->next) {
3634                 if ((flags & FOR_EACH_OBJECT_LOCAL_ONLY) && !p->pack_local)
3635                         continue;
3636                 if (open_pack_index(p)) {
3637                         pack_errors = 1;
3638                         continue;
3639                 }
3640                 r = for_each_object_in_pack(p, cb, data);
3641                 if (r)
3642                         break;
3643         }
3644         return r ? r : pack_errors;
3645 }
3646
3647 static int check_stream_sha1(git_zstream *stream,
3648                              const char *hdr,
3649                              unsigned long size,
3650                              const char *path,
3651                              const unsigned char *expected_sha1)
3652 {
3653         git_SHA_CTX c;
3654         unsigned char real_sha1[GIT_MAX_RAWSZ];
3655         unsigned char buf[4096];
3656         unsigned long total_read;
3657         int status = Z_OK;
3658
3659         git_SHA1_Init(&c);
3660         git_SHA1_Update(&c, hdr, stream->total_out);
3661
3662         /*
3663          * We already read some bytes into hdr, but the ones up to the NUL
3664          * do not count against the object's content size.
3665          */
3666         total_read = stream->total_out - strlen(hdr) - 1;
3667
3668         /*
3669          * This size comparison must be "<=" to read the final zlib packets;
3670          * see the comment in unpack_sha1_rest for details.
3671          */
3672         while (total_read <= size &&
3673                (status == Z_OK || status == Z_BUF_ERROR)) {
3674                 stream->next_out = buf;
3675                 stream->avail_out = sizeof(buf);
3676                 if (size - total_read < stream->avail_out)
3677                         stream->avail_out = size - total_read;
3678                 status = git_inflate(stream, Z_FINISH);
3679                 git_SHA1_Update(&c, buf, stream->next_out - buf);
3680                 total_read += stream->next_out - buf;
3681         }
3682         git_inflate_end(stream);
3683
3684         if (status != Z_STREAM_END) {
3685                 error("corrupt loose object '%s'", sha1_to_hex(expected_sha1));
3686                 return -1;
3687         }
3688         if (stream->avail_in) {
3689                 error("garbage at end of loose object '%s'",
3690                       sha1_to_hex(expected_sha1));
3691                 return -1;
3692         }
3693
3694         git_SHA1_Final(real_sha1, &c);
3695         if (hashcmp(expected_sha1, real_sha1)) {
3696                 error("sha1 mismatch for %s (expected %s)", path,
3697                       sha1_to_hex(expected_sha1));
3698                 return -1;
3699         }
3700
3701         return 0;
3702 }
3703
3704 int read_loose_object(const char *path,
3705                       const unsigned char *expected_sha1,
3706                       enum object_type *type,
3707                       unsigned long *size,
3708                       void **contents)
3709 {
3710         int ret = -1;
3711         void *map = NULL;
3712         unsigned long mapsize;
3713         git_zstream stream;
3714         char hdr[32];
3715
3716         *contents = NULL;
3717
3718         map = map_sha1_file_1(path, NULL, &mapsize);
3719         if (!map) {
3720                 error_errno("unable to mmap %s", path);
3721                 goto out;
3722         }
3723
3724         if (unpack_sha1_header(&stream, map, mapsize, hdr, sizeof(hdr)) < 0) {
3725                 error("unable to unpack header of %s", path);
3726                 goto out;
3727         }
3728
3729         *type = parse_sha1_header(hdr, size);
3730         if (*type < 0) {
3731                 error("unable to parse header of %s", path);
3732                 git_inflate_end(&stream);
3733                 goto out;
3734         }
3735
3736         if (*type == OBJ_BLOB) {
3737                 if (check_stream_sha1(&stream, hdr, *size, path, expected_sha1) < 0)
3738                         goto out;
3739         } else {
3740                 *contents = unpack_sha1_rest(&stream, hdr, *size, expected_sha1);
3741                 if (!*contents) {
3742                         error("unable to unpack contents of %s", path);
3743                         git_inflate_end(&stream);
3744                         goto out;
3745                 }
3746                 if (check_sha1_signature(expected_sha1, *contents,
3747                                          *size, typename(*type))) {
3748                         error("sha1 mismatch for %s (expected %s)", path,
3749                               sha1_to_hex(expected_sha1));
3750                         free(*contents);
3751                         goto out;
3752                 }
3753         }
3754
3755         ret = 0; /* everything checks out */
3756
3757 out:
3758         if (map)
3759                 munmap(map, mapsize);
3760         return ret;
3761 }