5 #include "cache-tree.h"
6 #include "object-store.h"
7 #include "replace-object.h"
8 #include "promisor-remote.h"
9 #include "sparse-index.h"
11 #ifndef DEBUG_CACHE_TREE
12 #define DEBUG_CACHE_TREE 0
15 struct cache_tree
*cache_tree(void)
17 struct cache_tree
*it
= xcalloc(1, sizeof(struct cache_tree
));
22 void cache_tree_free(struct cache_tree
**it_p
)
25 struct cache_tree
*it
= *it_p
;
29 for (i
= 0; i
< it
->subtree_nr
; i
++)
31 cache_tree_free(&it
->down
[i
]->cache_tree
);
39 static int subtree_name_cmp(const char *one
, int onelen
,
40 const char *two
, int twolen
)
46 return memcmp(one
, two
, onelen
);
49 int cache_tree_subtree_pos(struct cache_tree
*it
, const char *path
, int pathlen
)
51 struct cache_tree_sub
**down
= it
->down
;
56 int mi
= lo
+ (hi
- lo
) / 2;
57 struct cache_tree_sub
*mdl
= down
[mi
];
58 int cmp
= subtree_name_cmp(path
, pathlen
,
59 mdl
->name
, mdl
->namelen
);
70 static struct cache_tree_sub
*find_subtree(struct cache_tree
*it
,
75 struct cache_tree_sub
*down
;
76 int pos
= cache_tree_subtree_pos(it
, path
, pathlen
);
83 ALLOC_GROW(it
->down
, it
->subtree_nr
+ 1, it
->subtree_alloc
);
86 FLEX_ALLOC_MEM(down
, name
, path
, pathlen
);
87 down
->cache_tree
= NULL
;
88 down
->namelen
= pathlen
;
90 if (pos
< it
->subtree_nr
)
91 MOVE_ARRAY(it
->down
+ pos
+ 1, it
->down
+ pos
,
92 it
->subtree_nr
- pos
- 1);
97 struct cache_tree_sub
*cache_tree_sub(struct cache_tree
*it
, const char *path
)
99 int pathlen
= strlen(path
);
100 return find_subtree(it
, path
, pathlen
, 1);
103 static int do_invalidate_path(struct cache_tree
*it
, const char *path
)
106 * ==> invalidate self
107 * ==> find "a", have it invalidate "b/c"
109 * ==> invalidate self
110 * ==> if "a" exists as a subtree, remove it.
114 struct cache_tree_sub
*down
;
117 fprintf(stderr
, "cache-tree invalidate <%s>\n", path
);
122 slash
= strchrnul(path
, '/');
123 namelen
= slash
- path
;
124 it
->entry_count
= -1;
127 pos
= cache_tree_subtree_pos(it
, path
, namelen
);
129 cache_tree_free(&it
->down
[pos
]->cache_tree
);
134 * move 4 and 5 up one place (2 entries)
135 * 2 = 6 - 3 - 1 = subtree_nr - pos - 1
137 MOVE_ARRAY(it
->down
+ pos
, it
->down
+ pos
+ 1,
138 it
->subtree_nr
- pos
- 1);
143 down
= find_subtree(it
, path
, namelen
, 0);
145 do_invalidate_path(down
->cache_tree
, slash
+ 1);
149 void cache_tree_invalidate_path(struct index_state
*istate
, const char *path
)
151 if (do_invalidate_path(istate
->cache_tree
, path
))
152 istate
->cache_changed
|= CACHE_TREE_CHANGED
;
155 static int verify_cache(struct index_state
*istate
, int flags
)
158 int silent
= flags
& WRITE_TREE_SILENT
;
160 /* Verify that the tree is merged */
162 for (i
= 0; i
< istate
->cache_nr
; i
++) {
163 const struct cache_entry
*ce
= istate
->cache
[i
];
168 fprintf(stderr
, "...\n");
171 fprintf(stderr
, "%s: unmerged (%s)\n",
172 ce
->name
, oid_to_hex(&ce
->oid
));
178 /* Also verify that the cache does not have path and path/file
179 * at the same time. At this point we know the cache has only
183 for (i
= 0; i
+ 1 < istate
->cache_nr
; i
++) {
184 /* path/file always comes after path because of the way
185 * the cache is sorted. Also path can appear only once,
186 * which means conflicting one would immediately follow.
188 const struct cache_entry
*this_ce
= istate
->cache
[i
];
189 const struct cache_entry
*next_ce
= istate
->cache
[i
+ 1];
190 const char *this_name
= this_ce
->name
;
191 const char *next_name
= next_ce
->name
;
192 int this_len
= ce_namelen(this_ce
);
193 if (this_len
< ce_namelen(next_ce
) &&
194 next_name
[this_len
] == '/' &&
195 strncmp(this_name
, next_name
, this_len
) == 0) {
197 fprintf(stderr
, "...\n");
200 fprintf(stderr
, "You have both %s and %s\n",
201 this_name
, next_name
);
209 static void discard_unused_subtrees(struct cache_tree
*it
)
211 struct cache_tree_sub
**down
= it
->down
;
212 int nr
= it
->subtree_nr
;
214 for (dst
= src
= 0; src
< nr
; src
++) {
215 struct cache_tree_sub
*s
= down
[src
];
219 cache_tree_free(&s
->cache_tree
);
226 int cache_tree_fully_valid(struct cache_tree
*it
)
231 if (it
->entry_count
< 0 || !has_object_file(&it
->oid
))
233 for (i
= 0; i
< it
->subtree_nr
; i
++) {
234 if (!cache_tree_fully_valid(it
->down
[i
]->cache_tree
))
240 static int must_check_existence(const struct cache_entry
*ce
)
242 return !(has_promisor_remote() && ce_skip_worktree(ce
));
245 static int update_one(struct cache_tree
*it
,
246 struct cache_entry
**cache
,
253 struct strbuf buffer
;
254 int missing_ok
= flags
& WRITE_TREE_MISSING_OK
;
255 int dryrun
= flags
& WRITE_TREE_DRY_RUN
;
256 int repair
= flags
& WRITE_TREE_REPAIR
;
257 int to_invalidate
= 0;
260 assert(!(dryrun
&& repair
));
265 * If the first entry of this region is a sparse directory
266 * entry corresponding exactly to 'base', then this cache_tree
267 * struct is a "leaf" in the data structure, pointing to the
268 * tree OID specified in the entry.
271 const struct cache_entry
*ce
= cache
[0];
273 if (S_ISSPARSEDIR(ce
->ce_mode
) &&
274 ce
->ce_namelen
== baselen
&&
275 !strncmp(ce
->name
, base
, baselen
)) {
277 oidcpy(&it
->oid
, &ce
->oid
);
282 if (0 <= it
->entry_count
&& has_object_file(&it
->oid
))
283 return it
->entry_count
;
286 * We first scan for subtrees and update them; we start by
287 * marking existing subtrees -- the ones that are unmarked
288 * should not be in the result.
290 for (i
= 0; i
< it
->subtree_nr
; i
++)
291 it
->down
[i
]->used
= 0;
294 * Find the subtrees and update them.
297 while (i
< entries
) {
298 const struct cache_entry
*ce
= cache
[i
];
299 struct cache_tree_sub
*sub
;
300 const char *path
, *slash
;
301 int pathlen
, sublen
, subcnt
, subskip
;
304 pathlen
= ce_namelen(ce
);
305 if (pathlen
<= baselen
|| memcmp(base
, path
, baselen
))
306 break; /* at the end of this level */
308 slash
= strchr(path
+ baselen
, '/');
314 * a/bbb/c (base = a/, slash = /c)
316 * path+baselen = bbb/c, sublen = 3
318 sublen
= slash
- (path
+ baselen
);
319 sub
= find_subtree(it
, path
+ baselen
, sublen
, 1);
320 if (!sub
->cache_tree
)
321 sub
->cache_tree
= cache_tree();
322 subcnt
= update_one(sub
->cache_tree
,
323 cache
+ i
, entries
- i
,
325 baselen
+ sublen
+ 1,
331 die("index cache-tree records empty sub-tree");
333 sub
->count
= subcnt
; /* to be used in the next loop */
334 *skip_count
+= subskip
;
338 discard_unused_subtrees(it
);
341 * Then write out the tree object for this level.
343 strbuf_init(&buffer
, 8192);
346 while (i
< entries
) {
347 const struct cache_entry
*ce
= cache
[i
];
348 struct cache_tree_sub
*sub
= NULL
;
349 const char *path
, *slash
;
351 const struct object_id
*oid
;
353 int expected_missing
= 0;
354 int contains_ita
= 0;
358 pathlen
= ce_namelen(ce
);
359 if (pathlen
<= baselen
|| memcmp(base
, path
, baselen
))
360 break; /* at the end of this level */
362 slash
= strchr(path
+ baselen
, '/');
364 entlen
= slash
- (path
+ baselen
);
365 sub
= find_subtree(it
, path
+ baselen
, entlen
, 0);
367 die("cache-tree.c: '%.*s' in '%s' not found",
368 entlen
, path
+ baselen
, path
);
370 oid
= &sub
->cache_tree
->oid
;
372 contains_ita
= sub
->cache_tree
->entry_count
< 0;
375 expected_missing
= 1;
381 entlen
= pathlen
- baselen
;
385 ce_missing_ok
= mode
== S_IFGITLINK
|| missing_ok
||
386 !must_check_existence(ce
);
387 if (is_null_oid(oid
) ||
388 (!ce_missing_ok
&& !has_object_file(oid
))) {
389 strbuf_release(&buffer
);
390 if (expected_missing
)
392 return error("invalid object %06o %s for '%.*s'",
393 mode
, oid_to_hex(oid
), entlen
+baselen
, path
);
397 * CE_REMOVE entries are removed before the index is
398 * written to disk. Skip them to remain consistent
399 * with the future on-disk index.
401 if (ce
->ce_flags
& CE_REMOVE
) {
402 *skip_count
= *skip_count
+ 1;
407 * CE_INTENT_TO_ADD entries exist on on-disk index but
408 * they are not part of generated trees. Invalidate up
409 * to root to force cache-tree users to read elsewhere.
411 if (!sub
&& ce_intent_to_add(ce
)) {
417 * "sub" can be an empty tree if all subentries are i-t-a.
419 if (contains_ita
&& is_empty_tree_oid(oid
))
422 strbuf_grow(&buffer
, entlen
+ 100);
423 strbuf_addf(&buffer
, "%o %.*s%c", mode
, entlen
, path
+ baselen
, '\0');
424 strbuf_add(&buffer
, oid
->hash
, the_hash_algo
->rawsz
);
427 fprintf(stderr
, "cache-tree update-one %o %.*s\n",
428 mode
, entlen
, path
+ baselen
);
433 struct object_id oid
;
434 hash_object_file(the_hash_algo
, buffer
.buf
, buffer
.len
,
436 if (has_object_file_with_flags(&oid
, OBJECT_INFO_SKIP_FETCH_OBJECT
))
437 oidcpy(&it
->oid
, &oid
);
441 hash_object_file(the_hash_algo
, buffer
.buf
, buffer
.len
,
442 tree_type
, &it
->oid
);
443 } else if (write_object_file_flags(buffer
.buf
, buffer
.len
, tree_type
,
444 &it
->oid
, flags
& WRITE_TREE_SILENT
445 ? HASH_SILENT
: 0)) {
446 strbuf_release(&buffer
);
450 strbuf_release(&buffer
);
451 it
->entry_count
= to_invalidate
? -1 : i
- *skip_count
;
453 fprintf(stderr
, "cache-tree update-one (%d ent, %d subtree) %s\n",
454 it
->entry_count
, it
->subtree_nr
,
455 oid_to_hex(&it
->oid
));
460 int cache_tree_update(struct index_state
*istate
, int flags
)
464 i
= verify_cache(istate
, flags
);
469 if (!istate
->cache_tree
)
470 istate
->cache_tree
= cache_tree();
472 if (!(flags
& WRITE_TREE_MISSING_OK
) && has_promisor_remote())
473 prefetch_cache_entries(istate
, must_check_existence
);
475 trace_performance_enter();
476 trace2_region_enter("cache_tree", "update", the_repository
);
477 i
= update_one(istate
->cache_tree
, istate
->cache
, istate
->cache_nr
,
478 "", 0, &skip
, flags
);
479 trace2_region_leave("cache_tree", "update", the_repository
);
480 trace_performance_leave("cache_tree_update");
483 istate
->cache_changed
|= CACHE_TREE_CHANGED
;
487 static void write_one(struct strbuf
*buffer
, struct cache_tree
*it
,
488 const char *path
, int pathlen
)
492 /* One "cache-tree" entry consists of the following:
493 * path (NUL terminated)
494 * entry_count, subtree_nr ("%d %d\n")
495 * tree-sha1 (missing if invalid)
496 * subtree_nr "cache-tree" entries for subtrees.
498 strbuf_grow(buffer
, pathlen
+ 100);
499 strbuf_add(buffer
, path
, pathlen
);
500 strbuf_addf(buffer
, "%c%d %d\n", 0, it
->entry_count
, it
->subtree_nr
);
503 if (0 <= it
->entry_count
)
504 fprintf(stderr
, "cache-tree <%.*s> (%d ent, %d subtree) %s\n",
505 pathlen
, path
, it
->entry_count
, it
->subtree_nr
,
506 oid_to_hex(&it
->oid
));
508 fprintf(stderr
, "cache-tree <%.*s> (%d subtree) invalid\n",
509 pathlen
, path
, it
->subtree_nr
);
512 if (0 <= it
->entry_count
) {
513 strbuf_add(buffer
, it
->oid
.hash
, the_hash_algo
->rawsz
);
515 for (i
= 0; i
< it
->subtree_nr
; i
++) {
516 struct cache_tree_sub
*down
= it
->down
[i
];
518 struct cache_tree_sub
*prev
= it
->down
[i
-1];
519 if (subtree_name_cmp(down
->name
, down
->namelen
,
520 prev
->name
, prev
->namelen
) <= 0)
521 die("fatal - unsorted cache subtree");
523 write_one(buffer
, down
->cache_tree
, down
->name
, down
->namelen
);
527 void cache_tree_write(struct strbuf
*sb
, struct cache_tree
*root
)
529 trace2_region_enter("cache_tree", "write", the_repository
);
530 write_one(sb
, root
, "", 0);
531 trace2_region_leave("cache_tree", "write", the_repository
);
534 static struct cache_tree
*read_one(const char **buffer
, unsigned long *size_p
)
536 const char *buf
= *buffer
;
537 unsigned long size
= *size_p
;
540 struct cache_tree
*it
;
542 const unsigned rawsz
= the_hash_algo
->rawsz
;
545 /* skip name, but make sure name exists */
546 while (size
&& *buf
) {
556 it
->entry_count
= strtol(cp
, &ep
, 10);
560 subtree_nr
= strtol(cp
, &ep
, 10);
563 while (size
&& *buf
&& *buf
!= '\n') {
570 if (0 <= it
->entry_count
) {
573 oidread(&it
->oid
, (const unsigned char *)buf
);
579 if (0 <= it
->entry_count
)
580 fprintf(stderr
, "cache-tree <%s> (%d ent, %d subtree) %s\n",
581 *buffer
, it
->entry_count
, subtree_nr
,
582 oid_to_hex(&it
->oid
));
584 fprintf(stderr
, "cache-tree <%s> (%d subtrees) invalid\n",
585 *buffer
, subtree_nr
);
589 * Just a heuristic -- we do not add directories that often but
590 * we do not want to have to extend it immediately when we do,
593 it
->subtree_alloc
= subtree_nr
+ 2;
594 CALLOC_ARRAY(it
->down
, it
->subtree_alloc
);
595 for (i
= 0; i
< subtree_nr
; i
++) {
596 /* read each subtree */
597 struct cache_tree
*sub
;
598 struct cache_tree_sub
*subtree
;
599 const char *name
= buf
;
601 sub
= read_one(&buf
, &size
);
604 subtree
= cache_tree_sub(it
, name
);
605 subtree
->cache_tree
= sub
;
607 if (subtree_nr
!= it
->subtree_nr
)
608 die("cache-tree: internal error");
614 cache_tree_free(&it
);
618 struct cache_tree
*cache_tree_read(const char *buffer
, unsigned long size
)
620 struct cache_tree
*result
;
623 return NULL
; /* not the whole tree */
625 trace2_region_enter("cache_tree", "read", the_repository
);
626 result
= read_one(&buffer
, &size
);
627 trace2_region_leave("cache_tree", "read", the_repository
);
632 static struct cache_tree
*cache_tree_find(struct cache_tree
*it
, const char *path
)
638 struct cache_tree_sub
*sub
;
640 slash
= strchrnul(path
, '/');
642 * Between path and slash is the name of the subtree
645 sub
= find_subtree(it
, path
, slash
- path
, 0);
648 it
= sub
->cache_tree
;
657 static int write_index_as_tree_internal(struct object_id
*oid
,
658 struct index_state
*index_state
,
659 int cache_tree_valid
,
663 if (flags
& WRITE_TREE_IGNORE_CACHE_TREE
) {
664 cache_tree_free(&index_state
->cache_tree
);
665 cache_tree_valid
= 0;
668 if (!cache_tree_valid
&& cache_tree_update(index_state
, flags
) < 0)
669 return WRITE_TREE_UNMERGED_INDEX
;
672 struct cache_tree
*subtree
;
673 subtree
= cache_tree_find(index_state
->cache_tree
, prefix
);
675 return WRITE_TREE_PREFIX_ERROR
;
676 oidcpy(oid
, &subtree
->oid
);
679 oidcpy(oid
, &index_state
->cache_tree
->oid
);
684 struct tree
* write_in_core_index_as_tree(struct repository
*repo
) {
688 struct index_state
*index_state
= repo
->index
;
689 was_valid
= index_state
->cache_tree
&&
690 cache_tree_fully_valid(index_state
->cache_tree
);
692 ret
= write_index_as_tree_internal(&o
, index_state
, was_valid
, 0, NULL
);
693 if (ret
== WRITE_TREE_UNMERGED_INDEX
) {
695 fprintf(stderr
, "BUG: There are unmerged index entries:\n");
696 for (i
= 0; i
< index_state
->cache_nr
; i
++) {
697 const struct cache_entry
*ce
= index_state
->cache
[i
];
699 fprintf(stderr
, "BUG: %d %.*s\n", ce_stage(ce
),
700 (int)ce_namelen(ce
), ce
->name
);
702 BUG("unmerged index entries when writing inmemory index");
705 return lookup_tree(repo
, &index_state
->cache_tree
->oid
);
709 int write_index_as_tree(struct object_id
*oid
, struct index_state
*index_state
, const char *index_path
, int flags
, const char *prefix
)
711 int entries
, was_valid
;
712 struct lock_file lock_file
= LOCK_INIT
;
715 hold_lock_file_for_update(&lock_file
, index_path
, LOCK_DIE_ON_ERROR
);
717 entries
= read_index_from(index_state
, index_path
, get_git_dir());
719 ret
= WRITE_TREE_UNREADABLE_INDEX
;
723 was_valid
= !(flags
& WRITE_TREE_IGNORE_CACHE_TREE
) &&
724 index_state
->cache_tree
&&
725 cache_tree_fully_valid(index_state
->cache_tree
);
727 ret
= write_index_as_tree_internal(oid
, index_state
, was_valid
, flags
,
729 if (!ret
&& !was_valid
) {
730 write_locked_index(index_state
, &lock_file
, COMMIT_LOCK
);
731 /* Not being able to write is fine -- we are only interested
732 * in updating the cache-tree part, and if the next caller
733 * ends up using the old index with unupdated cache-tree part
734 * it misses the work we did here, but that is just a
735 * performance penalty and not a big deal.
740 rollback_lock_file(&lock_file
);
744 static void prime_cache_tree_rec(struct repository
*r
,
745 struct cache_tree
*it
,
748 struct tree_desc desc
;
749 struct name_entry entry
;
752 oidcpy(&it
->oid
, &tree
->object
.oid
);
753 init_tree_desc(&desc
, tree
->buffer
, tree
->size
);
755 while (tree_entry(&desc
, &entry
)) {
756 if (!S_ISDIR(entry
.mode
))
759 struct cache_tree_sub
*sub
;
760 struct tree
*subtree
= lookup_tree(r
, &entry
.oid
);
761 if (!subtree
->object
.parsed
)
763 sub
= cache_tree_sub(it
, entry
.path
);
764 sub
->cache_tree
= cache_tree();
765 prime_cache_tree_rec(r
, sub
->cache_tree
, subtree
);
766 cnt
+= sub
->cache_tree
->entry_count
;
769 it
->entry_count
= cnt
;
772 void prime_cache_tree(struct repository
*r
,
773 struct index_state
*istate
,
776 trace2_region_enter("cache-tree", "prime_cache_tree", the_repository
);
777 cache_tree_free(&istate
->cache_tree
);
778 istate
->cache_tree
= cache_tree();
780 prime_cache_tree_rec(r
, istate
->cache_tree
, tree
);
781 istate
->cache_changed
|= CACHE_TREE_CHANGED
;
782 trace2_region_leave("cache-tree", "prime_cache_tree", the_repository
);
786 * find the cache_tree that corresponds to the current level without
787 * exploding the full path into textual form. The root of the
788 * cache tree is given as "root", and our current level is "info".
789 * (1) When at root level, info->prev is NULL, so it is "root" itself.
790 * (2) Otherwise, find the cache_tree that corresponds to one level
791 * above us, and find ourselves in there.
793 static struct cache_tree
*find_cache_tree_from_traversal(struct cache_tree
*root
,
794 struct traverse_info
*info
)
796 struct cache_tree
*our_parent
;
800 our_parent
= find_cache_tree_from_traversal(root
, info
->prev
);
801 return cache_tree_find(our_parent
, info
->name
);
804 int cache_tree_matches_traversal(struct cache_tree
*root
,
805 struct name_entry
*ent
,
806 struct traverse_info
*info
)
808 struct cache_tree
*it
;
810 it
= find_cache_tree_from_traversal(root
, info
);
811 it
= cache_tree_find(it
, ent
->path
);
812 if (it
&& it
->entry_count
> 0 && oideq(&ent
->oid
, &it
->oid
))
813 return it
->entry_count
;
817 static void verify_one_sparse(struct repository
*r
,
818 struct index_state
*istate
,
819 struct cache_tree
*it
,
823 struct cache_entry
*ce
= istate
->cache
[pos
];
825 if (!S_ISSPARSEDIR(ce
->ce_mode
))
826 BUG("directory '%s' is present in index, but not sparse",
832 * 0 - Verification completed.
833 * 1 - Restart verification - a call to ensure_full_index() freed the cache
834 * tree that is being verified and verification needs to be restarted from
835 * the new toplevel cache tree.
837 static int verify_one(struct repository
*r
,
838 struct index_state
*istate
,
839 struct cache_tree
*it
,
842 int i
, pos
, len
= path
->len
;
843 struct strbuf tree_buf
= STRBUF_INIT
;
844 struct object_id new_oid
;
846 for (i
= 0; i
< it
->subtree_nr
; i
++) {
847 strbuf_addf(path
, "%s/", it
->down
[i
]->name
);
848 if (verify_one(r
, istate
, it
->down
[i
]->cache_tree
, path
))
850 strbuf_setlen(path
, len
);
853 if (it
->entry_count
< 0 ||
854 /* no verification on tests (t7003) that replace trees */
855 lookup_replace_object(r
, &it
->oid
) != &it
->oid
)
860 * If the index is sparse and the cache tree is not
861 * index_name_pos() may trigger ensure_full_index() which will
862 * free the tree that is being verified.
864 int is_sparse
= istate
->sparse_index
;
865 pos
= index_name_pos(istate
, path
->buf
, path
->len
);
866 if (is_sparse
&& !istate
->sparse_index
)
870 verify_one_sparse(r
, istate
, it
, path
, pos
);
880 while (i
< it
->entry_count
) {
881 struct cache_entry
*ce
= istate
->cache
[pos
+ i
];
883 struct cache_tree_sub
*sub
= NULL
;
884 const struct object_id
*oid
;
889 if (ce
->ce_flags
& (CE_STAGEMASK
| CE_INTENT_TO_ADD
| CE_REMOVE
))
890 BUG("%s with flags 0x%x should not be in cache-tree",
891 ce
->name
, ce
->ce_flags
);
892 name
= ce
->name
+ path
->len
;
893 slash
= strchr(name
, '/');
895 entlen
= slash
- name
;
896 sub
= find_subtree(it
, ce
->name
+ path
->len
, entlen
, 0);
897 if (!sub
|| sub
->cache_tree
->entry_count
< 0)
898 BUG("bad subtree '%.*s'", entlen
, name
);
899 oid
= &sub
->cache_tree
->oid
;
901 i
+= sub
->cache_tree
->entry_count
;
905 entlen
= ce_namelen(ce
) - path
->len
;
908 strbuf_addf(&tree_buf
, "%o %.*s%c", mode
, entlen
, name
, '\0');
909 strbuf_add(&tree_buf
, oid
->hash
, r
->hash_algo
->rawsz
);
911 hash_object_file(r
->hash_algo
, tree_buf
.buf
, tree_buf
.len
, tree_type
,
913 if (!oideq(&new_oid
, &it
->oid
))
914 BUG("cache-tree for path %.*s does not match. "
915 "Expected %s got %s", len
, path
->buf
,
916 oid_to_hex(&new_oid
), oid_to_hex(&it
->oid
));
917 strbuf_setlen(path
, len
);
918 strbuf_release(&tree_buf
);
922 void cache_tree_verify(struct repository
*r
, struct index_state
*istate
)
924 struct strbuf path
= STRBUF_INIT
;
926 if (!istate
->cache_tree
)
928 if (verify_one(r
, istate
, istate
->cache_tree
, &path
)) {
930 if (verify_one(r
, istate
, istate
->cache_tree
, &path
))
931 BUG("ensure_full_index() called twice while verifying cache tree");
933 strbuf_release(&path
);