ce->ce_flags = create_ce_flags(baselen + len, stage);
memcpy(ce->name, base, baselen);
memcpy(ce->name + baselen, pathname, len+1);
- memcpy(ce->sha1, sha1, 20);
+ hashcpy(ce->sha1, sha1);
return add_cache_entry(ce, ADD_CACHE_OK_TO_ADD|ADD_CACHE_SKIP_DFCHECK);
}
{
struct object *obj = lookup_object(sha1);
if (!obj) {
- struct tree *ret = xcalloc(1, sizeof(struct tree));
+ struct tree *ret = alloc_tree_node();
created_object(sha1, &ret->object);
- ret->object.type = tree_type;
+ ret->object.type = OBJ_TREE;
return ret;
}
if (!obj->type)
- obj->type = tree_type;
- if (obj->type != tree_type) {
- error("Object %s is a %s, not a tree",
- sha1_to_hex(sha1), obj->type);
+ obj->type = OBJ_TREE;
+ if (obj->type != OBJ_TREE) {
+ error("Object %s is a %s, not a tree",
+ sha1_to_hex(sha1), typename(obj->type));
return NULL;
}
return (struct tree *) obj;
}
-static int track_tree_refs(struct tree *item)
+static void track_tree_refs(struct tree *item)
{
int n_refs = 0, i;
struct object_refs *refs;
refs->ref[i++] = obj;
}
set_object_refs(&item->object, refs);
- return 0;
}
int parse_tree_buffer(struct tree *item, void *buffer, unsigned long size)
do {
if (!obj)
return NULL;
- if (obj->type == tree_type)
+ if (obj->type == OBJ_TREE)
return (struct tree *) obj;
- else if (obj->type == commit_type)
+ else if (obj->type == OBJ_COMMIT)
obj = &(((struct commit *) obj)->tree->object);
- else if (obj->type == tag_type)
+ else if (obj->type == OBJ_TAG)
obj = ((struct tag *) obj)->tagged;
else
return NULL;