This source file includes following definitions.
- check_refname_component
 
- check_refname_format
 
- get_ref_dir
 
- refname_is_safe
 
- create_ref_entry
 
- free_ref_entry
 
- add_entry_to_dir
 
- clear_ref_dir
 
- create_dir_entry
 
- ref_entry_cmp
 
- ref_entry_cmp_sslice
 
- search_ref_dir
 
- search_for_subdir
 
- find_containing_dir
 
- find_ref
 
- remove_entry
 
- add_ref
 
- is_dup_ref
 
- sort_ref_dir
 
- ref_resolves_to_object
 
- do_one_ref
 
- do_for_each_entry_in_dir
 
- do_for_each_entry_in_dirs
 
- prime_ref_dir
 
- nonmatching_ref_fn
 
- verify_refname_available
 
- acquire_packed_ref_cache
 
- release_packed_ref_cache
 
- clear_packed_ref_cache
 
- clear_loose_ref_cache
 
- create_ref_cache
 
- get_ref_cache
 
- parse_ref_line
 
- read_packed_refs
 
- get_packed_ref_cache
 
- get_packed_ref_dir
 
- get_packed_refs
 
- add_packed_ref
 
- read_loose_refs
 
- get_loose_refs
 
- resolve_gitlink_packed_ref
 
- resolve_gitlink_ref_recursive
 
- resolve_gitlink_ref
 
- get_packed_ref
 
- resolve_missing_loose_ref
 
- resolve_ref_unsafe_1
 
- resolve_ref_unsafe
 
- resolve_refdup
 
- read_ref_full
 
- read_ref
 
- ref_exists
 
- filter_refs
 
- peel_object
 
- peel_entry
 
- peel_ref
 
- warn_if_dangling_symref
 
- warn_dangling_symref
 
- warn_dangling_symrefs
 
- do_for_each_entry
 
- do_for_each_ref
 
- do_head_ref
 
- head_ref
 
- head_ref_submodule
 
- for_each_ref
 
- for_each_ref_submodule
 
- for_each_ref_in
 
- for_each_ref_in_submodule
 
- for_each_tag_ref
 
- for_each_tag_ref_submodule
 
- for_each_branch_ref
 
- for_each_branch_ref_submodule
 
- for_each_remote_ref
 
- for_each_remote_ref_submodule
 
- for_each_replace_ref
 
- head_ref_namespaced
 
- for_each_namespaced_ref
 
- for_each_glob_ref_in
 
- for_each_glob_ref
 
- for_each_rawref
 
- prettify_refname
 
- refname_match
 
- unlock_ref
 
- verify_lock
 
- remove_empty_directories
 
- substitute_branch_name
 
- dwim_ref
 
- dwim_log
 
- lock_ref_sha1_basic
 
- write_packed_entry
 
- write_packed_entry_fn
 
- lock_packed_refs
 
- commit_packed_refs
 
- rollback_packed_refs
 
- pack_if_possible_fn
 
- try_remove_empty_parents
 
- prune_ref
 
- prune_refs
 
- pack_refs
 
- repack_without_refs
 
- delete_ref_loose
 
- is_per_worktree_ref
 
- is_pseudoref_syntax
 
- write_pseudoref
 
- delete_pseudoref
 
- delete_ref
 
- delete_refs
 
- rename_tmp_log
 
- rename_ref_available
 
- rename_ref
 
- close_ref
 
- commit_ref
 
- copy_msg
 
- should_autocreate_reflog
 
- log_ref_setup
 
- safe_create_reflog
 
- log_ref_write_fd
 
- log_ref_write_1
 
- log_ref_write
 
- is_branch
 
- write_ref_to_lockfile
 
- commit_ref_update
 
- create_symref
 
- read_ref_at_ent
 
- read_ref_at_ent_oldest
 
- read_ref_at
 
- reflog_exists
 
- delete_reflog
 
- show_one_reflog_ent
 
- find_beginning_of_line
 
- for_each_reflog_ent_reverse
 
- for_each_reflog_ent
 
- do_for_each_reflog
 
- for_each_reflog
 
- ref_transaction_begin
 
- ref_transaction_free
 
- add_update
 
- ref_transaction_update
 
- ref_transaction_create
 
- ref_transaction_delete
 
- ref_transaction_verify
 
- update_ref
 
- ref_update_reject_duplicates
 
- ref_transaction_commit
 
- ref_present
 
- initial_ref_transaction_commit
 
- shorten_unambiguous_ref
 
- parse_hide_refs_config
 
- ref_is_hidden
 
- expire_reflog_ent
 
- reflog_expire
 
#include "cache.h"
#include "lockfile.h"
#include "refs.h"
#include "object.h"
#include "tag.h"
#include "dir.h"
#include "string-list.h"
struct ref_lock {
        char *ref_name;
        char *orig_ref_name;
        struct lock_file *lk;
        struct object_id old_oid;
};
static unsigned char refname_disposition[256] = {
        1, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4,
        4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4,
        4, 0, 0, 0, 0, 0, 0, 0, 0, 0, 5, 0, 0, 0, 2, 1,
        0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 4, 0, 0, 0, 0, 4,
        0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
        0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 4, 4, 0, 4, 0,
        0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
        0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 3, 0, 0, 4, 4
};
#define REF_DELETING    0x02
#define REF_ISPRUNING   0x04
#define REF_HAVE_NEW    0x08
#define REF_HAVE_OLD    0x10
#define REF_NEEDS_COMMIT 0x20
static int check_refname_component(const char *refname, int *flags)
{
        const char *cp;
        char last = '\0';
        for (cp = refname; ; cp++) {
                int ch = *cp & 255;
                unsigned char disp = refname_disposition[ch];
                switch (disp) {
                case 1:
                        goto out;
                case 2:
                        if (last == '.')
                                return -1; 
                        break;
                case 3:
                        if (last == '@')
                                return -1; 
                        break;
                case 4:
                        return -1;
                case 5:
                        if (!(*flags & REFNAME_REFSPEC_PATTERN))
                                return -1; 
                        
                        *flags &= ~ REFNAME_REFSPEC_PATTERN;
                        break;
                }
                last = ch;
        }
out:
        if (cp == refname)
                return 0; 
        if (refname[0] == '.')
                return -1; 
        if (cp - refname >= LOCK_SUFFIX_LEN &&
            !memcmp(cp - LOCK_SUFFIX_LEN, LOCK_SUFFIX, LOCK_SUFFIX_LEN))
                return -1; 
        return cp - refname;
}
int check_refname_format(const char *refname, int flags)
{
        int component_len, component_count = 0;
        if (!strcmp(refname, "@"))
                
                return -1;
        while (1) {
                
                component_len = check_refname_component(refname, &flags);
                if (component_len <= 0)
                        return -1;
                component_count++;
                if (refname[component_len] == '\0')
                        break;
                
                refname += component_len + 1;
        }
        if (refname[component_len - 1] == '.')
                return -1; 
        if (!(flags & REFNAME_ALLOW_ONELEVEL) && component_count < 2)
                return -1; 
        return 0;
}
struct ref_entry;
struct ref_value {
        
        struct object_id oid;
        
        struct object_id peeled;
};
struct ref_cache;
struct ref_dir {
        int nr, alloc;
        
        int sorted;
        
        struct ref_cache *ref_cache;
        struct ref_entry **entries;
};
#define REF_KNOWS_PEELED 0x10
#define REF_DIR 0x20
#define REF_INCOMPLETE 0x40
struct ref_entry {
        unsigned char flag; 
        union {
                struct ref_value value; 
                struct ref_dir subdir; 
        } u;
        
        char name[FLEX_ARRAY];
};
static void read_loose_refs(const char *dirname, struct ref_dir *dir);
static struct ref_dir *get_ref_dir(struct ref_entry *entry)
{
        struct ref_dir *dir;
        assert(entry->flag & REF_DIR);
        dir = &entry->u.subdir;
        if (entry->flag & REF_INCOMPLETE) {
                read_loose_refs(entry->name, dir);
                entry->flag &= ~REF_INCOMPLETE;
        }
        return dir;
}
static int refname_is_safe(const char *refname)
{
        if (starts_with(refname, "refs/")) {
                char *buf;
                int result;
                buf = xmalloc(strlen(refname) + 1);
                
                result = !normalize_path_copy(buf, refname + strlen("refs/"));
                free(buf);
                return result;
        }
        while (*refname) {
                if (!isupper(*refname) && *refname != '_')
                        return 0;
                refname++;
        }
        return 1;
}
static struct ref_entry *create_ref_entry(const char *refname,
                                          const unsigned char *sha1, int flag,
                                          int check_name)
{
        int len;
        struct ref_entry *ref;
        if (check_name &&
            check_refname_format(refname, REFNAME_ALLOW_ONELEVEL))
                die("Reference has invalid format: '%s'", refname);
        len = strlen(refname) + 1;
        ref = xmalloc(sizeof(struct ref_entry) + len);
        hashcpy(ref->u.value.oid.hash, sha1);
        oidclr(&ref->u.value.peeled);
        memcpy(ref->name, refname, len);
        ref->flag = flag;
        return ref;
}
static void clear_ref_dir(struct ref_dir *dir);
static void free_ref_entry(struct ref_entry *entry)
{
        if (entry->flag & REF_DIR) {
                
                clear_ref_dir(&entry->u.subdir);
        }
        free(entry);
}
static void add_entry_to_dir(struct ref_dir *dir, struct ref_entry *entry)
{
        ALLOC_GROW(dir->entries, dir->nr + 1, dir->alloc);
        dir->entries[dir->nr++] = entry;
        
        if (dir->nr == 1 ||
            (dir->nr == dir->sorted + 1 &&
             strcmp(dir->entries[dir->nr - 2]->name,
                    dir->entries[dir->nr - 1]->name) < 0))
                dir->sorted = dir->nr;
}
static void clear_ref_dir(struct ref_dir *dir)
{
        int i;
        for (i = 0; i < dir->nr; i++)
                free_ref_entry(dir->entries[i]);
        free(dir->entries);
        dir->sorted = dir->nr = dir->alloc = 0;
        dir->entries = NULL;
}
static struct ref_entry *create_dir_entry(struct ref_cache *ref_cache,
                                          const char *dirname, size_t len,
                                          int incomplete)
{
        struct ref_entry *direntry;
        direntry = xcalloc(1, sizeof(struct ref_entry) + len + 1);
        memcpy(direntry->name, dirname, len);
        direntry->name[len] = '\0';
        direntry->u.subdir.ref_cache = ref_cache;
        direntry->flag = REF_DIR | (incomplete ? REF_INCOMPLETE : 0);
        return direntry;
}
static int ref_entry_cmp(const void *a, const void *b)
{
        struct ref_entry *one = *(struct ref_entry **)a;
        struct ref_entry *two = *(struct ref_entry **)b;
        return strcmp(one->name, two->name);
}
static void sort_ref_dir(struct ref_dir *dir);
struct string_slice {
        size_t len;
        const char *str;
};
static int ref_entry_cmp_sslice(const void *key_, const void *ent_)
{
        const struct string_slice *key = key_;
        const struct ref_entry *ent = *(const struct ref_entry * const *)ent_;
        int cmp = strncmp(key->str, ent->name, key->len);
        if (cmp)
                return cmp;
        return '\0' - (unsigned char)ent->name[key->len];
}
static int search_ref_dir(struct ref_dir *dir, const char *refname, size_t len)
{
        struct ref_entry **r;
        struct string_slice key;
        if (refname == NULL || !dir->nr)
                return -1;
        sort_ref_dir(dir);
        key.len = len;
        key.str = refname;
        r = bsearch(&key, dir->entries, dir->nr, sizeof(*dir->entries),
                    ref_entry_cmp_sslice);
        if (r == NULL)
                return -1;
        return r - dir->entries;
}
static struct ref_dir *search_for_subdir(struct ref_dir *dir,
                                         const char *subdirname, size_t len,
                                         int mkdir)
{
        int entry_index = search_ref_dir(dir, subdirname, len);
        struct ref_entry *entry;
        if (entry_index == -1) {
                if (!mkdir)
                        return NULL;
                
                entry = create_dir_entry(dir->ref_cache, subdirname, len, 0);
                add_entry_to_dir(dir, entry);
        } else {
                entry = dir->entries[entry_index];
        }
        return get_ref_dir(entry);
}
static struct ref_dir *find_containing_dir(struct ref_dir *dir,
                                           const char *refname, int mkdir)
{
        const char *slash;
        for (slash = strchr(refname, '/'); slash; slash = strchr(slash + 1, '/')) {
                size_t dirnamelen = slash - refname + 1;
                struct ref_dir *subdir;
                subdir = search_for_subdir(dir, refname, dirnamelen, mkdir);
                if (!subdir) {
                        dir = NULL;
                        break;
                }
                dir = subdir;
        }
        return dir;
}
static struct ref_entry *find_ref(struct ref_dir *dir, const char *refname)
{
        int entry_index;
        struct ref_entry *entry;
        dir = find_containing_dir(dir, refname, 0);
        if (!dir)
                return NULL;
        entry_index = search_ref_dir(dir, refname, strlen(refname));
        if (entry_index == -1)
                return NULL;
        entry = dir->entries[entry_index];
        return (entry->flag & REF_DIR) ? NULL : entry;
}
static int remove_entry(struct ref_dir *dir, const char *refname)
{
        int refname_len = strlen(refname);
        int entry_index;
        struct ref_entry *entry;
        int is_dir = refname[refname_len - 1] == '/';
        if (is_dir) {
                
                char *dirname = xmemdupz(refname, refname_len - 1);
                dir = find_containing_dir(dir, dirname, 0);
                free(dirname);
        } else {
                dir = find_containing_dir(dir, refname, 0);
        }
        if (!dir)
                return -1;
        entry_index = search_ref_dir(dir, refname, refname_len);
        if (entry_index == -1)
                return -1;
        entry = dir->entries[entry_index];
        memmove(&dir->entries[entry_index],
                &dir->entries[entry_index + 1],
                (dir->nr - entry_index - 1) * sizeof(*dir->entries)
                );
        dir->nr--;
        if (dir->sorted > entry_index)
                dir->sorted--;
        free_ref_entry(entry);
        return dir->nr;
}
static int add_ref(struct ref_dir *dir, struct ref_entry *ref)
{
        dir = find_containing_dir(dir, ref->name, 1);
        if (!dir)
                return -1;
        add_entry_to_dir(dir, ref);
        return 0;
}
static int is_dup_ref(const struct ref_entry *ref1, const struct ref_entry *ref2)
{
        if (strcmp(ref1->name, ref2->name))
                return 0;
        
        if ((ref1->flag & REF_DIR) || (ref2->flag & REF_DIR))
                
                die("Reference directory conflict: %s", ref1->name);
        if (oidcmp(&ref1->u.value.oid, &ref2->u.value.oid))
                die("Duplicated ref, and SHA1s don't match: %s", ref1->name);
        warning("Duplicated ref: %s", ref1->name);
        return 1;
}
static void sort_ref_dir(struct ref_dir *dir)
{
        int i, j;
        struct ref_entry *last = NULL;
        
        if (dir->sorted == dir->nr)
                return;
        qsort(dir->entries, dir->nr, sizeof(*dir->entries), ref_entry_cmp);
        
        for (i = 0, j = 0; j < dir->nr; j++) {
                struct ref_entry *entry = dir->entries[j];
                if (last && is_dup_ref(last, entry))
                        free_ref_entry(entry);
                else
                        last = dir->entries[i++] = entry;
        }
        dir->sorted = dir->nr = i;
}
#define DO_FOR_EACH_INCLUDE_BROKEN 0x01
static int ref_resolves_to_object(struct ref_entry *entry)
{
        if (entry->flag & REF_ISBROKEN)
                return 0;
        if (!has_sha1_file(entry->u.value.oid.hash)) {
                error("%s does not point to a valid object!", entry->name);
                return 0;
        }
        return 1;
}
static struct ref_entry *current_ref;
typedef int each_ref_entry_fn(struct ref_entry *entry, void *cb_data);
struct ref_entry_cb {
        const char *base;
        int trim;
        int flags;
        each_ref_fn *fn;
        void *cb_data;
};
static int do_one_ref(struct ref_entry *entry, void *cb_data)
{
        struct ref_entry_cb *data = cb_data;
        struct ref_entry *old_current_ref;
        int retval;
        if (!starts_with(entry->name, data->base))
                return 0;
        if (!(data->flags & DO_FOR_EACH_INCLUDE_BROKEN) &&
              !ref_resolves_to_object(entry))
                return 0;
        
        old_current_ref = current_ref;
        current_ref = entry;
        retval = data->fn(entry->name + data->trim, &entry->u.value.oid,
                          entry->flag, data->cb_data);
        current_ref = old_current_ref;
        return retval;
}
static int do_for_each_entry_in_dir(struct ref_dir *dir, int offset,
                                    each_ref_entry_fn fn, void *cb_data)
{
        int i;
        assert(dir->sorted == dir->nr);
        for (i = offset; i < dir->nr; i++) {
                struct ref_entry *entry = dir->entries[i];
                int retval;
                if (entry->flag & REF_DIR) {
                        struct ref_dir *subdir = get_ref_dir(entry);
                        sort_ref_dir(subdir);
                        retval = do_for_each_entry_in_dir(subdir, 0, fn, cb_data);
                } else {
                        retval = fn(entry, cb_data);
                }
                if (retval)
                        return retval;
        }
        return 0;
}
static int do_for_each_entry_in_dirs(struct ref_dir *dir1,
                                     struct ref_dir *dir2,
                                     each_ref_entry_fn fn, void *cb_data)
{
        int retval;
        int i1 = 0, i2 = 0;
        assert(dir1->sorted == dir1->nr);
        assert(dir2->sorted == dir2->nr);
        while (1) {
                struct ref_entry *e1, *e2;
                int cmp;
                if (i1 == dir1->nr) {
                        return do_for_each_entry_in_dir(dir2, i2, fn, cb_data);
                }
                if (i2 == dir2->nr) {
                        return do_for_each_entry_in_dir(dir1, i1, fn, cb_data);
                }
                e1 = dir1->entries[i1];
                e2 = dir2->entries[i2];
                cmp = strcmp(e1->name, e2->name);
                if (cmp == 0) {
                        if ((e1->flag & REF_DIR) && (e2->flag & REF_DIR)) {
                                
                                struct ref_dir *subdir1 = get_ref_dir(e1);
                                struct ref_dir *subdir2 = get_ref_dir(e2);
                                sort_ref_dir(subdir1);
                                sort_ref_dir(subdir2);
                                retval = do_for_each_entry_in_dirs(
                                                subdir1, subdir2, fn, cb_data);
                                i1++;
                                i2++;
                        } else if (!(e1->flag & REF_DIR) && !(e2->flag & REF_DIR)) {
                                
                                retval = fn(e2, cb_data);
                                i1++;
                                i2++;
                        } else {
                                die("conflict between reference and directory: %s",
                                    e1->name);
                        }
                } else {
                        struct ref_entry *e;
                        if (cmp < 0) {
                                e = e1;
                                i1++;
                        } else {
                                e = e2;
                                i2++;
                        }
                        if (e->flag & REF_DIR) {
                                struct ref_dir *subdir = get_ref_dir(e);
                                sort_ref_dir(subdir);
                                retval = do_for_each_entry_in_dir(
                                                subdir, 0, fn, cb_data);
                        } else {
                                retval = fn(e, cb_data);
                        }
                }
                if (retval)
                        return retval;
        }
}
static void prime_ref_dir(struct ref_dir *dir)
{
        int i;
        for (i = 0; i < dir->nr; i++) {
                struct ref_entry *entry = dir->entries[i];
                if (entry->flag & REF_DIR)
                        prime_ref_dir(get_ref_dir(entry));
        }
}
struct nonmatching_ref_data {
        const struct string_list *skip;
        const char *conflicting_refname;
};
static int nonmatching_ref_fn(struct ref_entry *entry, void *vdata)
{
        struct nonmatching_ref_data *data = vdata;
        if (data->skip && string_list_has_string(data->skip, entry->name))
                return 0;
        data->conflicting_refname = entry->name;
        return 1;
}
static int verify_refname_available(const char *refname,
                                    const struct string_list *extras,
                                    const struct string_list *skip,
                                    struct ref_dir *dir,
                                    struct strbuf *err)
{
        const char *slash;
        int pos;
        struct strbuf dirname = STRBUF_INIT;
        int ret = -1;
        
        assert(err);
        strbuf_grow(&dirname, strlen(refname) + 1);
        for (slash = strchr(refname, '/'); slash; slash = strchr(slash + 1, '/')) {
                
                strbuf_add(&dirname, refname + dirname.len, slash - refname - dirname.len);
                
                if (dir) {
                        pos = search_ref_dir(dir, dirname.buf, dirname.len);
                        if (pos >= 0 &&
                            (!skip || !string_list_has_string(skip, dirname.buf))) {
                                
                                strbuf_addf(err, "'%s' exists; cannot create '%s'",
                                            dirname.buf, refname);
                                goto cleanup;
                        }
                }
                if (extras && string_list_has_string(extras, dirname.buf) &&
                    (!skip || !string_list_has_string(skip, dirname.buf))) {
                        strbuf_addf(err, "cannot process '%s' and '%s' at the same time",
                                    refname, dirname.buf);
                        goto cleanup;
                }
                
                strbuf_addch(&dirname, '/');
                if (dir) {
                        pos = search_ref_dir(dir, dirname.buf, dirname.len);
                        if (pos < 0) {
                                
                                dir = NULL;
                        } else {
                                dir = get_ref_dir(dir->entries[pos]);
                        }
                }
        }
        
        strbuf_addstr(&dirname, refname + dirname.len);
        strbuf_addch(&dirname, '/');
        if (dir) {
                pos = search_ref_dir(dir, dirname.buf, dirname.len);
                if (pos >= 0) {
                        
                        struct nonmatching_ref_data data;
                        data.skip = skip;
                        data.conflicting_refname = NULL;
                        dir = get_ref_dir(dir->entries[pos]);
                        sort_ref_dir(dir);
                        if (do_for_each_entry_in_dir(dir, 0, nonmatching_ref_fn, &data)) {
                                strbuf_addf(err, "'%s' exists; cannot create '%s'",
                                            data.conflicting_refname, refname);
                                goto cleanup;
                        }
                }
        }
        if (extras) {
                
                for (pos = string_list_find_insert_index(extras, dirname.buf, 0);
                     pos < extras->nr; pos++) {
                        const char *extra_refname = extras->items[pos].string;
                        if (!starts_with(extra_refname, dirname.buf))
                                break;
                        if (!skip || !string_list_has_string(skip, extra_refname)) {
                                strbuf_addf(err, "cannot process '%s' and '%s' at the same time",
                                            refname, extra_refname);
                                goto cleanup;
                        }
                }
        }
        
        ret = 0;
cleanup:
        strbuf_release(&dirname);
        return ret;
}
struct packed_ref_cache {
        struct ref_entry *root;
        
        unsigned int referrers;
        
        struct lock_file *lock;
        
        struct stat_validity validity;
};
static struct ref_cache {
        struct ref_cache *next;
        struct ref_entry *loose;
        struct packed_ref_cache *packed;
        
        char name[1];
} ref_cache, *submodule_ref_caches;
static struct lock_file packlock;
static void acquire_packed_ref_cache(struct packed_ref_cache *packed_refs)
{
        packed_refs->referrers++;
}
static int release_packed_ref_cache(struct packed_ref_cache *packed_refs)
{
        if (!--packed_refs->referrers) {
                free_ref_entry(packed_refs->root);
                stat_validity_clear(&packed_refs->validity);
                free(packed_refs);
                return 1;
        } else {
                return 0;
        }
}
static void clear_packed_ref_cache(struct ref_cache *refs)
{
        if (refs->packed) {
                struct packed_ref_cache *packed_refs = refs->packed;
                if (packed_refs->lock)
                        die("internal error: packed-ref cache cleared while locked");
                refs->packed = NULL;
                release_packed_ref_cache(packed_refs);
        }
}
static void clear_loose_ref_cache(struct ref_cache *refs)
{
        if (refs->loose) {
                free_ref_entry(refs->loose);
                refs->loose = NULL;
        }
}
static struct ref_cache *create_ref_cache(const char *submodule)
{
        int len;
        struct ref_cache *refs;
        if (!submodule)
                submodule = "";
        len = strlen(submodule) + 1;
        refs = xcalloc(1, sizeof(struct ref_cache) + len);
        memcpy(refs->name, submodule, len);
        return refs;
}
static struct ref_cache *get_ref_cache(const char *submodule)
{
        struct ref_cache *refs;
        if (!submodule || !*submodule)
                return &ref_cache;
        for (refs = submodule_ref_caches; refs; refs = refs->next)
                if (!strcmp(submodule, refs->name))
                        return refs;
        refs = create_ref_cache(submodule);
        refs->next = submodule_ref_caches;
        submodule_ref_caches = refs;
        return refs;
}
#define PEELED_LINE_LENGTH 42
static const char PACKED_REFS_HEADER[] =
        "# pack-refs with: peeled fully-peeled \n";
static const char *parse_ref_line(struct strbuf *line, unsigned char *sha1)
{
        const char *ref;
        
        if (line->len <= 42)
                return NULL;
        if (get_sha1_hex(line->buf, sha1) < 0)
                return NULL;
        if (!isspace(line->buf[40]))
                return NULL;
        ref = line->buf + 41;
        if (isspace(*ref))
                return NULL;
        if (line->buf[line->len - 1] != '\n')
                return NULL;
        line->buf[--line->len] = 0;
        return ref;
}
static void read_packed_refs(FILE *f, struct ref_dir *dir)
{
        struct ref_entry *last = NULL;
        struct strbuf line = STRBUF_INIT;
        enum { PEELED_NONE, PEELED_TAGS, PEELED_FULLY } peeled = PEELED_NONE;
        while (strbuf_getwholeline(&line, f, '\n') != EOF) {
                unsigned char sha1[20];
                const char *refname;
                const char *traits;
                if (skip_prefix(line.buf, "# pack-refs with:", &traits)) {
                        if (strstr(traits, " fully-peeled "))
                                peeled = PEELED_FULLY;
                        else if (strstr(traits, " peeled "))
                                peeled = PEELED_TAGS;
                        
                        continue;
                }
                refname = parse_ref_line(&line, sha1);
                if (refname) {
                        int flag = REF_ISPACKED;
                        if (check_refname_format(refname, REFNAME_ALLOW_ONELEVEL)) {
                                if (!refname_is_safe(refname))
                                        die("packed refname is dangerous: %s", refname);
                                hashclr(sha1);
                                flag |= REF_BAD_NAME | REF_ISBROKEN;
                        }
                        last = create_ref_entry(refname, sha1, flag, 0);
                        if (peeled == PEELED_FULLY ||
                            (peeled == PEELED_TAGS && starts_with(refname, "refs/tags/")))
                                last->flag |= REF_KNOWS_PEELED;
                        add_ref(dir, last);
                        continue;
                }
                if (last &&
                    line.buf[0] == '^' &&
                    line.len == PEELED_LINE_LENGTH &&
                    line.buf[PEELED_LINE_LENGTH - 1] == '\n' &&
                    !get_sha1_hex(line.buf + 1, sha1)) {
                        hashcpy(last->u.value.peeled.hash, sha1);
                        
                        last->flag |= REF_KNOWS_PEELED;
                }
        }
        strbuf_release(&line);
}
static struct packed_ref_cache *get_packed_ref_cache(struct ref_cache *refs)
{
        char *packed_refs_file;
        if (*refs->name)
                packed_refs_file = git_pathdup_submodule(refs->name, "packed-refs");
        else
                packed_refs_file = git_pathdup("packed-refs");
        if (refs->packed &&
            !stat_validity_check(&refs->packed->validity, packed_refs_file))
                clear_packed_ref_cache(refs);
        if (!refs->packed) {
                FILE *f;
                refs->packed = xcalloc(1, sizeof(*refs->packed));
                acquire_packed_ref_cache(refs->packed);
                refs->packed->root = create_dir_entry(refs, "", 0, 0);
                f = fopen(packed_refs_file, "r");
                if (f) {
                        stat_validity_update(&refs->packed->validity, fileno(f));
                        read_packed_refs(f, get_ref_dir(refs->packed->root));
                        fclose(f);
                }
        }
        free(packed_refs_file);
        return refs->packed;
}
static struct ref_dir *get_packed_ref_dir(struct packed_ref_cache *packed_ref_cache)
{
        return get_ref_dir(packed_ref_cache->root);
}
static struct ref_dir *get_packed_refs(struct ref_cache *refs)
{
        return get_packed_ref_dir(get_packed_ref_cache(refs));
}
static void add_packed_ref(const char *refname, const unsigned char *sha1)
{
        struct packed_ref_cache *packed_ref_cache =
                get_packed_ref_cache(&ref_cache);
        if (!packed_ref_cache->lock)
                die("internal error: packed refs not locked");
        add_ref(get_packed_ref_dir(packed_ref_cache),
                create_ref_entry(refname, sha1, REF_ISPACKED, 1));
}
static void read_loose_refs(const char *dirname, struct ref_dir *dir)
{
        struct ref_cache *refs = dir->ref_cache;
        DIR *d;
        struct dirent *de;
        int dirnamelen = strlen(dirname);
        struct strbuf refname;
        struct strbuf path = STRBUF_INIT;
        size_t path_baselen;
        if (*refs->name)
                strbuf_git_path_submodule(&path, refs->name, "%s", dirname);
        else
                strbuf_git_path(&path, "%s", dirname);
        path_baselen = path.len;
        d = opendir(path.buf);
        if (!d) {
                strbuf_release(&path);
                return;
        }
        strbuf_init(&refname, dirnamelen + 257);
        strbuf_add(&refname, dirname, dirnamelen);
        while ((de = readdir(d)) != NULL) {
                unsigned char sha1[20];
                struct stat st;
                int flag;
                if (de->d_name[0] == '.')
                        continue;
                if (ends_with(de->d_name, ".lock"))
                        continue;
                strbuf_addstr(&refname, de->d_name);
                strbuf_addstr(&path, de->d_name);
                if (stat(path.buf, &st) < 0) {
                        ; 
                } else if (S_ISDIR(st.st_mode)) {
                        strbuf_addch(&refname, '/');
                        add_entry_to_dir(dir,
                                         create_dir_entry(refs, refname.buf,
                                                          refname.len, 1));
                } else {
                        int read_ok;
                        if (*refs->name) {
                                hashclr(sha1);
                                flag = 0;
                                read_ok = !resolve_gitlink_ref(refs->name,
                                                               refname.buf, sha1);
                        } else {
                                read_ok = !read_ref_full(refname.buf,
                                                         RESOLVE_REF_READING,
                                                         sha1, &flag);
                        }
                        if (!read_ok) {
                                hashclr(sha1);
                                flag |= REF_ISBROKEN;
                        } else if (is_null_sha1(sha1)) {
                                
                                flag |= REF_ISBROKEN;
                        }
                        if (check_refname_format(refname.buf,
                                                 REFNAME_ALLOW_ONELEVEL)) {
                                if (!refname_is_safe(refname.buf))
                                        die("loose refname is dangerous: %s", refname.buf);
                                hashclr(sha1);
                                flag |= REF_BAD_NAME | REF_ISBROKEN;
                        }
                        add_entry_to_dir(dir,
                                         create_ref_entry(refname.buf, sha1, flag, 0));
                }
                strbuf_setlen(&refname, dirnamelen);
                strbuf_setlen(&path, path_baselen);
        }
        strbuf_release(&refname);
        strbuf_release(&path);
        closedir(d);
}
static struct ref_dir *get_loose_refs(struct ref_cache *refs)
{
        if (!refs->loose) {
                
                refs->loose = create_dir_entry(refs, "", 0, 0);
                
                add_entry_to_dir(get_ref_dir(refs->loose),
                                 create_dir_entry(refs, "refs/", 5, 1));
        }
        return get_ref_dir(refs->loose);
}
#define MAXDEPTH 5
#define MAXREFLEN (1024)
static int resolve_gitlink_packed_ref(struct ref_cache *refs,
                                      const char *refname, unsigned char *sha1)
{
        struct ref_entry *ref;
        struct ref_dir *dir = get_packed_refs(refs);
        ref = find_ref(dir, refname);
        if (ref == NULL)
                return -1;
        hashcpy(sha1, ref->u.value.oid.hash);
        return 0;
}
static int resolve_gitlink_ref_recursive(struct ref_cache *refs,
                                         const char *refname, unsigned char *sha1,
                                         int recursion)
{
        int fd, len;
        char buffer[128], *p;
        char *path;
        if (recursion > MAXDEPTH || strlen(refname) > MAXREFLEN)
                return -1;
        path = *refs->name
                ? git_pathdup_submodule(refs->name, "%s", refname)
                : git_pathdup("%s", refname);
        fd = open(path, O_RDONLY);
        free(path);
        if (fd < 0)
                return resolve_gitlink_packed_ref(refs, refname, sha1);
        len = read(fd, buffer, sizeof(buffer)-1);
        close(fd);
        if (len < 0)
                return -1;
        while (len && isspace(buffer[len-1]))
                len--;
        buffer[len] = 0;
        
        if (!get_sha1_hex(buffer, sha1))
                return 0;
        
        if (strncmp(buffer, "ref:", 4))
                return -1;
        p = buffer + 4;
        while (isspace(*p))
                p++;
        return resolve_gitlink_ref_recursive(refs, p, sha1, recursion+1);
}
int resolve_gitlink_ref(const char *path, const char *refname, unsigned char *sha1)
{
        int len = strlen(path), retval;
        char *submodule;
        struct ref_cache *refs;
        while (len && path[len-1] == '/')
                len--;
        if (!len)
                return -1;
        submodule = xstrndup(path, len);
        refs = get_ref_cache(submodule);
        free(submodule);
        retval = resolve_gitlink_ref_recursive(refs, refname, sha1, 0);
        return retval;
}
static struct ref_entry *get_packed_ref(const char *refname)
{
        return find_ref(get_packed_refs(&ref_cache), refname);
}
static int resolve_missing_loose_ref(const char *refname,
                                     int resolve_flags,
                                     unsigned char *sha1,
                                     int *flags)
{
        struct ref_entry *entry;
        
        entry = get_packed_ref(refname);
        if (entry) {
                hashcpy(sha1, entry->u.value.oid.hash);
                if (flags)
                        *flags |= REF_ISPACKED;
                return 0;
        }
        
        if (resolve_flags & RESOLVE_REF_READING) {
                errno = ENOENT;
                return -1;
        } else {
                hashclr(sha1);
                return 0;
        }
}
static const char *resolve_ref_unsafe_1(const char *refname,
                                        int resolve_flags,
                                        unsigned char *sha1,
                                        int *flags,
                                        struct strbuf *sb_path)
{
        int depth = MAXDEPTH;
        ssize_t len;
        char buffer[256];
        static char refname_buffer[256];
        int bad_name = 0;
        if (flags)
                *flags = 0;
        if (check_refname_format(refname, REFNAME_ALLOW_ONELEVEL)) {
                if (flags)
                        *flags |= REF_BAD_NAME;
                if (!(resolve_flags & RESOLVE_REF_ALLOW_BAD_NAME) ||
                    !refname_is_safe(refname)) {
                        errno = EINVAL;
                        return NULL;
                }
                
                bad_name = 1;
        }
        for (;;) {
                const char *path;
                struct stat st;
                char *buf;
                int fd;
                if (--depth < 0) {
                        errno = ELOOP;
                        return NULL;
                }
                strbuf_reset(sb_path);
                strbuf_git_path(sb_path, "%s", refname);
                path = sb_path->buf;
                
        stat_ref:
                if (lstat(path, &st) < 0) {
                        if (errno != ENOENT)
                                return NULL;
                        if (resolve_missing_loose_ref(refname, resolve_flags,
                                                      sha1, flags))
                                return NULL;
                        if (bad_name) {
                                hashclr(sha1);
                                if (flags)
                                        *flags |= REF_ISBROKEN;
                        }
                        return refname;
                }
                
                if (S_ISLNK(st.st_mode)) {
                        len = readlink(path, buffer, sizeof(buffer)-1);
                        if (len < 0) {
                                if (errno == ENOENT || errno == EINVAL)
                                        
                                        goto stat_ref;
                                else
                                        return NULL;
                        }
                        buffer[len] = 0;
                        if (starts_with(buffer, "refs/") &&
                                        !check_refname_format(buffer, 0)) {
                                strcpy(refname_buffer, buffer);
                                refname = refname_buffer;
                                if (flags)
                                        *flags |= REF_ISSYMREF;
                                if (resolve_flags & RESOLVE_REF_NO_RECURSE) {
                                        hashclr(sha1);
                                        return refname;
                                }
                                continue;
                        }
                }
                
                if (S_ISDIR(st.st_mode)) {
                        errno = EISDIR;
                        return NULL;
                }
                
                fd = open(path, O_RDONLY);
                if (fd < 0) {
                        if (errno == ENOENT)
                                
                                goto stat_ref;
                        else
                                return NULL;
                }
                len = read_in_full(fd, buffer, sizeof(buffer)-1);
                if (len < 0) {
                        int save_errno = errno;
                        close(fd);
                        errno = save_errno;
                        return NULL;
                }
                close(fd);
                while (len && isspace(buffer[len-1]))
                        len--;
                buffer[len] = '\0';
                
                if (!starts_with(buffer, "ref:")) {
                        
                        if (get_sha1_hex(buffer, sha1) ||
                            (buffer[40] != '\0' && !isspace(buffer[40]))) {
                                if (flags)
                                        *flags |= REF_ISBROKEN;
                                errno = EINVAL;
                                return NULL;
                        }
                        if (bad_name) {
                                hashclr(sha1);
                                if (flags)
                                        *flags |= REF_ISBROKEN;
                        }
                        return refname;
                }
                if (flags)
                        *flags |= REF_ISSYMREF;
                buf = buffer + 4;
                while (isspace(*buf))
                        buf++;
                refname = strcpy(refname_buffer, buf);
                if (resolve_flags & RESOLVE_REF_NO_RECURSE) {
                        hashclr(sha1);
                        return refname;
                }
                if (check_refname_format(buf, REFNAME_ALLOW_ONELEVEL)) {
                        if (flags)
                                *flags |= REF_ISBROKEN;
                        if (!(resolve_flags & RESOLVE_REF_ALLOW_BAD_NAME) ||
                            !refname_is_safe(buf)) {
                                errno = EINVAL;
                                return NULL;
                        }
                        bad_name = 1;
                }
        }
}
const char *resolve_ref_unsafe(const char *refname, int resolve_flags,
                               unsigned char *sha1, int *flags)
{
        struct strbuf sb_path = STRBUF_INIT;
        const char *ret = resolve_ref_unsafe_1(refname, resolve_flags,
                                               sha1, flags, &sb_path);
        strbuf_release(&sb_path);
        return ret;
}
char *resolve_refdup(const char *refname, int resolve_flags,
                     unsigned char *sha1, int *flags)
{
        return xstrdup_or_null(resolve_ref_unsafe(refname, resolve_flags,
                                                  sha1, flags));
}
struct ref_filter {
        const char *pattern;
        each_ref_fn *fn;
        void *cb_data;
};
int read_ref_full(const char *refname, int resolve_flags, unsigned char *sha1, int *flags)
{
        if (resolve_ref_unsafe(refname, resolve_flags, sha1, flags))
                return 0;
        return -1;
}
int read_ref(const char *refname, unsigned char *sha1)
{
        return read_ref_full(refname, RESOLVE_REF_READING, sha1, NULL);
}
int ref_exists(const char *refname)
{
        unsigned char sha1[20];
        return !!resolve_ref_unsafe(refname, RESOLVE_REF_READING, sha1, NULL);
}
static int filter_refs(const char *refname, const struct object_id *oid,
                           int flags, void *data)
{
        struct ref_filter *filter = (struct ref_filter *)data;
        if (wildmatch(filter->pattern, refname, 0, NULL))
                return 0;
        return filter->fn(refname, oid, flags, filter->cb_data);
}
enum peel_status {
        
        PEEL_PEELED = 0,
        
        PEEL_INVALID = -1,
        
        PEEL_NON_TAG = -2,
        
        PEEL_IS_SYMREF = -3,
        
        PEEL_BROKEN = -4
};
static enum peel_status peel_object(const unsigned char *name, unsigned char *sha1)
{
        struct object *o = lookup_unknown_object(name);
        if (o->type == OBJ_NONE) {
                int type = sha1_object_info(name, NULL);
                if (type < 0 || !object_as_type(o, type, 0))
                        return PEEL_INVALID;
        }
        if (o->type != OBJ_TAG)
                return PEEL_NON_TAG;
        o = deref_tag_noverify(o);
        if (!o)
                return PEEL_INVALID;
        hashcpy(sha1, o->sha1);
        return PEEL_PEELED;
}
static enum peel_status peel_entry(struct ref_entry *entry, int repeel)
{
        enum peel_status status;
        if (entry->flag & REF_KNOWS_PEELED) {
                if (repeel) {
                        entry->flag &= ~REF_KNOWS_PEELED;
                        oidclr(&entry->u.value.peeled);
                } else {
                        return is_null_oid(&entry->u.value.peeled) ?
                                PEEL_NON_TAG : PEEL_PEELED;
                }
        }
        if (entry->flag & REF_ISBROKEN)
                return PEEL_BROKEN;
        if (entry->flag & REF_ISSYMREF)
                return PEEL_IS_SYMREF;
        status = peel_object(entry->u.value.oid.hash, entry->u.value.peeled.hash);
        if (status == PEEL_PEELED || status == PEEL_NON_TAG)
                entry->flag |= REF_KNOWS_PEELED;
        return status;
}
int peel_ref(const char *refname, unsigned char *sha1)
{
        int flag;
        unsigned char base[20];
        if (current_ref && (current_ref->name == refname
                            || !strcmp(current_ref->name, refname))) {
                if (peel_entry(current_ref, 0))
                        return -1;
                hashcpy(sha1, current_ref->u.value.peeled.hash);
                return 0;
        }
        if (read_ref_full(refname, RESOLVE_REF_READING, base, &flag))
                return -1;
        
        if (flag & REF_ISPACKED) {
                struct ref_entry *r = get_packed_ref(refname);
                if (r) {
                        if (peel_entry(r, 0))
                                return -1;
                        hashcpy(sha1, r->u.value.peeled.hash);
                        return 0;
                }
        }
        return peel_object(base, sha1);
}
struct warn_if_dangling_data {
        FILE *fp;
        const char *refname;
        const struct string_list *refnames;
        const char *msg_fmt;
};
static int warn_if_dangling_symref(const char *refname, const struct object_id *oid,
                                   int flags, void *cb_data)
{
        struct warn_if_dangling_data *d = cb_data;
        const char *resolves_to;
        struct object_id junk;
        if (!(flags & REF_ISSYMREF))
                return 0;
        resolves_to = resolve_ref_unsafe(refname, 0, junk.hash, NULL);
        if (!resolves_to
            || (d->refname
                ? strcmp(resolves_to, d->refname)
                : !string_list_has_string(d->refnames, resolves_to))) {
                return 0;
        }
        fprintf(d->fp, d->msg_fmt, refname);
        fputc('\n', d->fp);
        return 0;
}
void warn_dangling_symref(FILE *fp, const char *msg_fmt, const char *refname)
{
        struct warn_if_dangling_data data;
        data.fp = fp;
        data.refname = refname;
        data.refnames = NULL;
        data.msg_fmt = msg_fmt;
        for_each_rawref(warn_if_dangling_symref, &data);
}
void warn_dangling_symrefs(FILE *fp, const char *msg_fmt, const struct string_list *refnames)
{
        struct warn_if_dangling_data data;
        data.fp = fp;
        data.refname = NULL;
        data.refnames = refnames;
        data.msg_fmt = msg_fmt;
        for_each_rawref(warn_if_dangling_symref, &data);
}
static int do_for_each_entry(struct ref_cache *refs, const char *base,
                             each_ref_entry_fn fn, void *cb_data)
{
        struct packed_ref_cache *packed_ref_cache;
        struct ref_dir *loose_dir;
        struct ref_dir *packed_dir;
        int retval = 0;
        
        loose_dir = get_loose_refs(refs);
        if (base && *base) {
                loose_dir = find_containing_dir(loose_dir, base, 0);
        }
        if (loose_dir)
                prime_ref_dir(loose_dir);
        packed_ref_cache = get_packed_ref_cache(refs);
        acquire_packed_ref_cache(packed_ref_cache);
        packed_dir = get_packed_ref_dir(packed_ref_cache);
        if (base && *base) {
                packed_dir = find_containing_dir(packed_dir, base, 0);
        }
        if (packed_dir && loose_dir) {
                sort_ref_dir(packed_dir);
                sort_ref_dir(loose_dir);
                retval = do_for_each_entry_in_dirs(
                                packed_dir, loose_dir, fn, cb_data);
        } else if (packed_dir) {
                sort_ref_dir(packed_dir);
                retval = do_for_each_entry_in_dir(
                                packed_dir, 0, fn, cb_data);
        } else if (loose_dir) {
                sort_ref_dir(loose_dir);
                retval = do_for_each_entry_in_dir(
                                loose_dir, 0, fn, cb_data);
        }
        release_packed_ref_cache(packed_ref_cache);
        return retval;
}
static int do_for_each_ref(struct ref_cache *refs, const char *base,
                           each_ref_fn fn, int trim, int flags, void *cb_data)
{
        struct ref_entry_cb data;
        data.base = base;
        data.trim = trim;
        data.flags = flags;
        data.fn = fn;
        data.cb_data = cb_data;
        if (ref_paranoia < 0)
                ref_paranoia = git_env_bool("GIT_REF_PARANOIA", 0);
        if (ref_paranoia)
                data.flags |= DO_FOR_EACH_INCLUDE_BROKEN;
        return do_for_each_entry(refs, base, do_one_ref, &data);
}
static int do_head_ref(const char *submodule, each_ref_fn fn, void *cb_data)
{
        struct object_id oid;
        int flag;
        if (submodule) {
                if (resolve_gitlink_ref(submodule, "HEAD", oid.hash) == 0)
                        return fn("HEAD", &oid, 0, cb_data);
                return 0;
        }
        if (!read_ref_full("HEAD", RESOLVE_REF_READING, oid.hash, &flag))
                return fn("HEAD", &oid, flag, cb_data);
        return 0;
}
int head_ref(each_ref_fn fn, void *cb_data)
{
        return do_head_ref(NULL, fn, cb_data);
}
int head_ref_submodule(const char *submodule, each_ref_fn fn, void *cb_data)
{
        return do_head_ref(submodule, fn, cb_data);
}
int for_each_ref(each_ref_fn fn, void *cb_data)
{
        return do_for_each_ref(&ref_cache, "", fn, 0, 0, cb_data);
}
int for_each_ref_submodule(const char *submodule, each_ref_fn fn, void *cb_data)
{
        return do_for_each_ref(get_ref_cache(submodule), "", fn, 0, 0, cb_data);
}
int for_each_ref_in(const char *prefix, each_ref_fn fn, void *cb_data)
{
        return do_for_each_ref(&ref_cache, prefix, fn, strlen(prefix), 0, cb_data);
}
int for_each_ref_in_submodule(const char *submodule, const char *prefix,
                each_ref_fn fn, void *cb_data)
{
        return do_for_each_ref(get_ref_cache(submodule), prefix, fn, strlen(prefix), 0, cb_data);
}
int for_each_tag_ref(each_ref_fn fn, void *cb_data)
{
        return for_each_ref_in("refs/tags/", fn, cb_data);
}
int for_each_tag_ref_submodule(const char *submodule, each_ref_fn fn, void *cb_data)
{
        return for_each_ref_in_submodule(submodule, "refs/tags/", fn, cb_data);
}
int for_each_branch_ref(each_ref_fn fn, void *cb_data)
{
        return for_each_ref_in("refs/heads/", fn, cb_data);
}
int for_each_branch_ref_submodule(const char *submodule, each_ref_fn fn, void *cb_data)
{
        return for_each_ref_in_submodule(submodule, "refs/heads/", fn, cb_data);
}
int for_each_remote_ref(each_ref_fn fn, void *cb_data)
{
        return for_each_ref_in("refs/remotes/", fn, cb_data);
}
int for_each_remote_ref_submodule(const char *submodule, each_ref_fn fn, void *cb_data)
{
        return for_each_ref_in_submodule(submodule, "refs/remotes/", fn, cb_data);
}
int for_each_replace_ref(each_ref_fn fn, void *cb_data)
{
        return do_for_each_ref(&ref_cache, git_replace_ref_base, fn,
                               strlen(git_replace_ref_base), 0, cb_data);
}
int head_ref_namespaced(each_ref_fn fn, void *cb_data)
{
        struct strbuf buf = STRBUF_INIT;
        int ret = 0;
        struct object_id oid;
        int flag;
        strbuf_addf(&buf, "%sHEAD", get_git_namespace());
        if (!read_ref_full(buf.buf, RESOLVE_REF_READING, oid.hash, &flag))
                ret = fn(buf.buf, &oid, flag, cb_data);
        strbuf_release(&buf);
        return ret;
}
int for_each_namespaced_ref(each_ref_fn fn, void *cb_data)
{
        struct strbuf buf = STRBUF_INIT;
        int ret;
        strbuf_addf(&buf, "%srefs/", get_git_namespace());
        ret = do_for_each_ref(&ref_cache, buf.buf, fn, 0, 0, cb_data);
        strbuf_release(&buf);
        return ret;
}
int for_each_glob_ref_in(each_ref_fn fn, const char *pattern,
        const char *prefix, void *cb_data)
{
        struct strbuf real_pattern = STRBUF_INIT;
        struct ref_filter filter;
        int ret;
        if (!prefix && !starts_with(pattern, "refs/"))
                strbuf_addstr(&real_pattern, "refs/");
        else if (prefix)
                strbuf_addstr(&real_pattern, prefix);
        strbuf_addstr(&real_pattern, pattern);
        if (!has_glob_specials(pattern)) {
                
                if (real_pattern.buf[real_pattern.len - 1] != '/')
                        strbuf_addch(&real_pattern, '/');
                
                strbuf_addch(&real_pattern, '*');
        }
        filter.pattern = real_pattern.buf;
        filter.fn = fn;
        filter.cb_data = cb_data;
        ret = for_each_ref(filter_refs, &filter);
        strbuf_release(&real_pattern);
        return ret;
}
int for_each_glob_ref(each_ref_fn fn, const char *pattern, void *cb_data)
{
        return for_each_glob_ref_in(fn, pattern, NULL, cb_data);
}
int for_each_rawref(each_ref_fn fn, void *cb_data)
{
        return do_for_each_ref(&ref_cache, "", fn, 0,
                               DO_FOR_EACH_INCLUDE_BROKEN, cb_data);
}
const char *prettify_refname(const char *name)
{
        return name + (
                starts_with(name, "refs/heads/") ? 11 :
                starts_with(name, "refs/tags/") ? 10 :
                starts_with(name, "refs/remotes/") ? 13 :
                0);
}
static const char *ref_rev_parse_rules[] = {
        "%.*s",
        "refs/%.*s",
        "refs/tags/%.*s",
        "refs/heads/%.*s",
        "refs/remotes/%.*s",
        "refs/remotes/%.*s/HEAD",
        NULL
};
int refname_match(const char *abbrev_name, const char *full_name)
{
        const char **p;
        const int abbrev_name_len = strlen(abbrev_name);
        for (p = ref_rev_parse_rules; *p; p++) {
                if (!strcmp(full_name, mkpath(*p, abbrev_name_len, abbrev_name))) {
                        return 1;
                }
        }
        return 0;
}
static void unlock_ref(struct ref_lock *lock)
{
        
        if (lock->lk)
                rollback_lock_file(lock->lk);
        free(lock->ref_name);
        free(lock->orig_ref_name);
        free(lock);
}
static int verify_lock(struct ref_lock *lock,
                       const unsigned char *old_sha1, int mustexist,
                       struct strbuf *err)
{
        assert(err);
        if (read_ref_full(lock->ref_name,
                          mustexist ? RESOLVE_REF_READING : 0,
                          lock->old_oid.hash, NULL)) {
                int save_errno = errno;
                strbuf_addf(err, "can't verify ref %s", lock->ref_name);
                errno = save_errno;
                return -1;
        }
        if (hashcmp(lock->old_oid.hash, old_sha1)) {
                strbuf_addf(err, "ref %s is at %s but expected %s",
                            lock->ref_name,
                            sha1_to_hex(lock->old_oid.hash),
                            sha1_to_hex(old_sha1));
                errno = EBUSY;
                return -1;
        }
        return 0;
}
static int remove_empty_directories(struct strbuf *path)
{
        
        return remove_dir_recursively(path, REMOVE_DIR_EMPTY_ONLY);
}
static char *substitute_branch_name(const char **string, int *len)
{
        struct strbuf buf = STRBUF_INIT;
        int ret = interpret_branch_name(*string, *len, &buf);
        if (ret == *len) {
                size_t size;
                *string = strbuf_detach(&buf, &size);
                *len = size;
                return (char *)*string;
        }
        return NULL;
}
int dwim_ref(const char *str, int len, unsigned char *sha1, char **ref)
{
        char *last_branch = substitute_branch_name(&str, &len);
        const char **p, *r;
        int refs_found = 0;
        *ref = NULL;
        for (p = ref_rev_parse_rules; *p; p++) {
                char fullref[PATH_MAX];
                unsigned char sha1_from_ref[20];
                unsigned char *this_result;
                int flag;
                this_result = refs_found ? sha1_from_ref : sha1;
                mksnpath(fullref, sizeof(fullref), *p, len, str);
                r = resolve_ref_unsafe(fullref, RESOLVE_REF_READING,
                                       this_result, &flag);
                if (r) {
                        if (!refs_found++)
                                *ref = xstrdup(r);
                        if (!warn_ambiguous_refs)
                                break;
                } else if ((flag & REF_ISSYMREF) && strcmp(fullref, "HEAD")) {
                        warning("ignoring dangling symref %s.", fullref);
                } else if ((flag & REF_ISBROKEN) && strchr(fullref, '/')) {
                        warning("ignoring broken ref %s.", fullref);
                }
        }
        free(last_branch);
        return refs_found;
}
int dwim_log(const char *str, int len, unsigned char *sha1, char **log)
{
        char *last_branch = substitute_branch_name(&str, &len);
        const char **p;
        int logs_found = 0;
        *log = NULL;
        for (p = ref_rev_parse_rules; *p; p++) {
                unsigned char hash[20];
                char path[PATH_MAX];
                const char *ref, *it;
                mksnpath(path, sizeof(path), *p, len, str);
                ref = resolve_ref_unsafe(path, RESOLVE_REF_READING,
                                         hash, NULL);
                if (!ref)
                        continue;
                if (reflog_exists(path))
                        it = path;
                else if (strcmp(ref, path) && reflog_exists(ref))
                        it = ref;
                else
                        continue;
                if (!logs_found++) {
                        *log = xstrdup(it);
                        hashcpy(sha1, hash);
                }
                if (!warn_ambiguous_refs)
                        break;
        }
        free(last_branch);
        return logs_found;
}
static struct ref_lock *lock_ref_sha1_basic(const char *refname,
                                            const unsigned char *old_sha1,
                                            const struct string_list *extras,
                                            const struct string_list *skip,
                                            unsigned int flags, int *type_p,
                                            struct strbuf *err)
{
        struct strbuf ref_file = STRBUF_INIT;
        struct strbuf orig_ref_file = STRBUF_INIT;
        const char *orig_refname = refname;
        struct ref_lock *lock;
        int last_errno = 0;
        int type, lflags;
        int mustexist = (old_sha1 && !is_null_sha1(old_sha1));
        int resolve_flags = 0;
        int attempts_remaining = 3;
        assert(err);
        lock = xcalloc(1, sizeof(struct ref_lock));
        if (mustexist)
                resolve_flags |= RESOLVE_REF_READING;
        if (flags & REF_DELETING) {
                resolve_flags |= RESOLVE_REF_ALLOW_BAD_NAME;
                if (flags & REF_NODEREF)
                        resolve_flags |= RESOLVE_REF_NO_RECURSE;
        }
        refname = resolve_ref_unsafe(refname, resolve_flags,
                                     lock->old_oid.hash, &type);
        if (!refname && errno == EISDIR) {
                
                strbuf_git_path(&orig_ref_file, "%s", orig_refname);
                if (remove_empty_directories(&orig_ref_file)) {
                        last_errno = errno;
                        if (!verify_refname_available(orig_refname, extras, skip,
                                                      get_loose_refs(&ref_cache), err))
                                strbuf_addf(err, "there are still refs under '%s'",
                                            orig_refname);
                        goto error_return;
                }
                refname = resolve_ref_unsafe(orig_refname, resolve_flags,
                                             lock->old_oid.hash, &type);
        }
        if (type_p)
            *type_p = type;
        if (!refname) {
                last_errno = errno;
                if (last_errno != ENOTDIR ||
                    !verify_refname_available(orig_refname, extras, skip,
                                              get_loose_refs(&ref_cache), err))
                        strbuf_addf(err, "unable to resolve reference %s: %s",
                                    orig_refname, strerror(last_errno));
                goto error_return;
        }
        
        if (is_null_oid(&lock->old_oid) &&
            verify_refname_available(refname, extras, skip,
                                     get_packed_refs(&ref_cache), err)) {
                last_errno = ENOTDIR;
                goto error_return;
        }
        lock->lk = xcalloc(1, sizeof(struct lock_file));
        lflags = 0;
        if (flags & REF_NODEREF) {
                refname = orig_refname;
                lflags |= LOCK_NO_DEREF;
        }
        lock->ref_name = xstrdup(refname);
        lock->orig_ref_name = xstrdup(orig_refname);
        strbuf_git_path(&ref_file, "%s", refname);
 retry:
        switch (safe_create_leading_directories_const(ref_file.buf)) {
        case SCLD_OK:
                break; 
        case SCLD_VANISHED:
                if (--attempts_remaining > 0)
                        goto retry;
                
        default:
                last_errno = errno;
                strbuf_addf(err, "unable to create directory for %s",
                            ref_file.buf);
                goto error_return;
        }
        if (hold_lock_file_for_update(lock->lk, ref_file.buf, lflags) < 0) {
                last_errno = errno;
                if (errno == ENOENT && --attempts_remaining > 0)
                        
                        goto retry;
                else {
                        unable_to_lock_message(ref_file.buf, errno, err);
                        goto error_return;
                }
        }
        if (old_sha1 && verify_lock(lock, old_sha1, mustexist, err)) {
                last_errno = errno;
                goto error_return;
        }
        goto out;
 error_return:
        unlock_ref(lock);
        lock = NULL;
 out:
        strbuf_release(&ref_file);
        strbuf_release(&orig_ref_file);
        errno = last_errno;
        return lock;
}
static void write_packed_entry(FILE *fh, char *refname, unsigned char *sha1,
                               unsigned char *peeled)
{
        fprintf_or_die(fh, "%s %s\n", sha1_to_hex(sha1), refname);
        if (peeled)
                fprintf_or_die(fh, "^%s\n", sha1_to_hex(peeled));
}
static int write_packed_entry_fn(struct ref_entry *entry, void *cb_data)
{
        enum peel_status peel_status = peel_entry(entry, 0);
        if (peel_status != PEEL_PEELED && peel_status != PEEL_NON_TAG)
                error("internal error: %s is not a valid packed reference!",
                      entry->name);
        write_packed_entry(cb_data, entry->name, entry->u.value.oid.hash,
                           peel_status == PEEL_PEELED ?
                           entry->u.value.peeled.hash : NULL);
        return 0;
}
static int lock_packed_refs(int flags)
{
        static int timeout_configured = 0;
        static int timeout_value = 1000;
        struct packed_ref_cache *packed_ref_cache;
        if (!timeout_configured) {
                git_config_get_int("core.packedrefstimeout", &timeout_value);
                timeout_configured = 1;
        }
        if (hold_lock_file_for_update_timeout(
                            &packlock, git_path("packed-refs"),
                            flags, timeout_value) < 0)
                return -1;
        
        packed_ref_cache = get_packed_ref_cache(&ref_cache);
        packed_ref_cache->lock = &packlock;
        
        acquire_packed_ref_cache(packed_ref_cache);
        return 0;
}
static int commit_packed_refs(void)
{
        struct packed_ref_cache *packed_ref_cache =
                get_packed_ref_cache(&ref_cache);
        int error = 0;
        int save_errno = 0;
        FILE *out;
        if (!packed_ref_cache->lock)
                die("internal error: packed-refs not locked");
        out = fdopen_lock_file(packed_ref_cache->lock, "w");
        if (!out)
                die_errno("unable to fdopen packed-refs descriptor");
        fprintf_or_die(out, "%s", PACKED_REFS_HEADER);
        do_for_each_entry_in_dir(get_packed_ref_dir(packed_ref_cache),
                                 0, write_packed_entry_fn, out);
        if (commit_lock_file(packed_ref_cache->lock)) {
                save_errno = errno;
                error = -1;
        }
        packed_ref_cache->lock = NULL;
        release_packed_ref_cache(packed_ref_cache);
        errno = save_errno;
        return error;
}
static void rollback_packed_refs(void)
{
        struct packed_ref_cache *packed_ref_cache =
                get_packed_ref_cache(&ref_cache);
        if (!packed_ref_cache->lock)
                die("internal error: packed-refs not locked");
        rollback_lock_file(packed_ref_cache->lock);
        packed_ref_cache->lock = NULL;
        release_packed_ref_cache(packed_ref_cache);
        clear_packed_ref_cache(&ref_cache);
}
struct ref_to_prune {
        struct ref_to_prune *next;
        unsigned char sha1[20];
        char name[FLEX_ARRAY];
};
struct pack_refs_cb_data {
        unsigned int flags;
        struct ref_dir *packed_refs;
        struct ref_to_prune *ref_to_prune;
};
static int pack_if_possible_fn(struct ref_entry *entry, void *cb_data)
{
        struct pack_refs_cb_data *cb = cb_data;
        enum peel_status peel_status;
        struct ref_entry *packed_entry;
        int is_tag_ref = starts_with(entry->name, "refs/tags/");
        
        if (!(cb->flags & PACK_REFS_ALL) && !is_tag_ref)
                return 0;
        
        if ((entry->flag & REF_ISSYMREF) || !ref_resolves_to_object(entry))
                return 0;
        
        peel_status = peel_entry(entry, 1);
        if (peel_status != PEEL_PEELED && peel_status != PEEL_NON_TAG)
                die("internal error peeling reference %s (%s)",
                    entry->name, oid_to_hex(&entry->u.value.oid));
        packed_entry = find_ref(cb->packed_refs, entry->name);
        if (packed_entry) {
                
                packed_entry->flag = REF_ISPACKED | REF_KNOWS_PEELED;
                oidcpy(&packed_entry->u.value.oid, &entry->u.value.oid);
        } else {
                packed_entry = create_ref_entry(entry->name, entry->u.value.oid.hash,
                                                REF_ISPACKED | REF_KNOWS_PEELED, 0);
                add_ref(cb->packed_refs, packed_entry);
        }
        oidcpy(&packed_entry->u.value.peeled, &entry->u.value.peeled);
        
        if ((cb->flags & PACK_REFS_PRUNE)) {
                int namelen = strlen(entry->name) + 1;
                struct ref_to_prune *n = xcalloc(1, sizeof(*n) + namelen);
                hashcpy(n->sha1, entry->u.value.oid.hash);
                strcpy(n->name, entry->name);
                n->next = cb->ref_to_prune;
                cb->ref_to_prune = n;
        }
        return 0;
}
static void try_remove_empty_parents(char *name)
{
        char *p, *q;
        int i;
        p = name;
        for (i = 0; i < 2; i++) { 
                while (*p && *p != '/')
                        p++;
                
                while (*p == '/')
                        p++;
        }
        for (q = p; *q; q++)
                ;
        while (1) {
                while (q > p && *q != '/')
                        q--;
                while (q > p && *(q-1) == '/')
                        q--;
                if (q == p)
                        break;
                *q = '\0';
                if (rmdir(git_path("%s", name)))
                        break;
        }
}
static void prune_ref(struct ref_to_prune *r)
{
        struct ref_transaction *transaction;
        struct strbuf err = STRBUF_INIT;
        if (check_refname_format(r->name, 0))
                return;
        transaction = ref_transaction_begin(&err);
        if (!transaction ||
            ref_transaction_delete(transaction, r->name, r->sha1,
                                   REF_ISPRUNING, NULL, &err) ||
            ref_transaction_commit(transaction, &err)) {
                ref_transaction_free(transaction);
                error("%s", err.buf);
                strbuf_release(&err);
                return;
        }
        ref_transaction_free(transaction);
        strbuf_release(&err);
        try_remove_empty_parents(r->name);
}
static void prune_refs(struct ref_to_prune *r)
{
        while (r) {
                prune_ref(r);
                r = r->next;
        }
}
int pack_refs(unsigned int flags)
{
        struct pack_refs_cb_data cbdata;
        memset(&cbdata, 0, sizeof(cbdata));
        cbdata.flags = flags;
        lock_packed_refs(LOCK_DIE_ON_ERROR);
        cbdata.packed_refs = get_packed_refs(&ref_cache);
        do_for_each_entry_in_dir(get_loose_refs(&ref_cache), 0,
                                 pack_if_possible_fn, &cbdata);
        if (commit_packed_refs())
                die_errno("unable to overwrite old ref-pack file");
        prune_refs(cbdata.ref_to_prune);
        return 0;
}
static int repack_without_refs(struct string_list *refnames, struct strbuf *err)
{
        struct ref_dir *packed;
        struct string_list_item *refname;
        int ret, needs_repacking = 0, removed = 0;
        assert(err);
        
        for_each_string_list_item(refname, refnames) {
                if (get_packed_ref(refname->string)) {
                        needs_repacking = 1;
                        break;
                }
        }
        
        if (!needs_repacking)
                return 0; 
        if (lock_packed_refs(0)) {
                unable_to_lock_message(git_path("packed-refs"), errno, err);
                return -1;
        }
        packed = get_packed_refs(&ref_cache);
        
        for_each_string_list_item(refname, refnames)
                if (remove_entry(packed, refname->string) != -1)
                        removed = 1;
        if (!removed) {
                
                rollback_packed_refs();
                return 0;
        }
        
        ret = commit_packed_refs();
        if (ret)
                strbuf_addf(err, "unable to overwrite old ref-pack file: %s",
                            strerror(errno));
        return ret;
}
static int delete_ref_loose(struct ref_lock *lock, int flag, struct strbuf *err)
{
        assert(err);
        if (!(flag & REF_ISPACKED) || flag & REF_ISSYMREF) {
                
                char *loose_filename = get_locked_file_path(lock->lk);
                int res = unlink_or_msg(loose_filename, err);
                free(loose_filename);
                if (res)
                        return 1;
        }
        return 0;
}
static int is_per_worktree_ref(const char *refname)
{
        return !strcmp(refname, "HEAD");
}
static int is_pseudoref_syntax(const char *refname)
{
        const char *c;
        for (c = refname; *c; c++) {
                if (!isupper(*c) && *c != '-' && *c != '_')
                        return 0;
        }
        return 1;
}
enum ref_type ref_type(const char *refname)
{
        if (is_per_worktree_ref(refname))
                return REF_TYPE_PER_WORKTREE;
        if (is_pseudoref_syntax(refname))
                return REF_TYPE_PSEUDOREF;
       return REF_TYPE_NORMAL;
}
static int write_pseudoref(const char *pseudoref, const unsigned char *sha1,
                           const unsigned char *old_sha1, struct strbuf *err)
{
        const char *filename;
        int fd;
        static struct lock_file lock;
        struct strbuf buf = STRBUF_INIT;
        int ret = -1;
        strbuf_addf(&buf, "%s\n", sha1_to_hex(sha1));
        filename = git_path("%s", pseudoref);
        fd = hold_lock_file_for_update(&lock, filename, LOCK_DIE_ON_ERROR);
        if (fd < 0) {
                strbuf_addf(err, "Could not open '%s' for writing: %s",
                            filename, strerror(errno));
                return -1;
        }
        if (old_sha1) {
                unsigned char actual_old_sha1[20];
                if (read_ref(pseudoref, actual_old_sha1))
                        die("could not read ref '%s'", pseudoref);
                if (hashcmp(actual_old_sha1, old_sha1)) {
                        strbuf_addf(err, "Unexpected sha1 when writing %s", pseudoref);
                        rollback_lock_file(&lock);
                        goto done;
                }
        }
        if (write_in_full(fd, buf.buf, buf.len) != buf.len) {
                strbuf_addf(err, "Could not write to '%s'", filename);
                rollback_lock_file(&lock);
                goto done;
        }
        commit_lock_file(&lock);
        ret = 0;
done:
        strbuf_release(&buf);
        return ret;
}
static int delete_pseudoref(const char *pseudoref, const unsigned char *old_sha1)
{
        static struct lock_file lock;
        const char *filename;
        filename = git_path("%s", pseudoref);
        if (old_sha1 && !is_null_sha1(old_sha1)) {
                int fd;
                unsigned char actual_old_sha1[20];
                fd = hold_lock_file_for_update(&lock, filename,
                                               LOCK_DIE_ON_ERROR);
                if (fd < 0)
                        die_errno(_("Could not open '%s' for writing"), filename);
                if (read_ref(pseudoref, actual_old_sha1))
                        die("could not read ref '%s'", pseudoref);
                if (hashcmp(actual_old_sha1, old_sha1)) {
                        warning("Unexpected sha1 when deleting %s", pseudoref);
                        rollback_lock_file(&lock);
                        return -1;
                }
                unlink(filename);
                rollback_lock_file(&lock);
        } else {
                unlink(filename);
        }
        return 0;
}
int delete_ref(const char *refname, const unsigned char *old_sha1,
               unsigned int flags)
{
        struct ref_transaction *transaction;
        struct strbuf err = STRBUF_INIT;
        if (ref_type(refname) == REF_TYPE_PSEUDOREF)
                return delete_pseudoref(refname, old_sha1);
        transaction = ref_transaction_begin(&err);
        if (!transaction ||
            ref_transaction_delete(transaction, refname, old_sha1,
                                   flags, NULL, &err) ||
            ref_transaction_commit(transaction, &err)) {
                error("%s", err.buf);
                ref_transaction_free(transaction);
                strbuf_release(&err);
                return 1;
        }
        ref_transaction_free(transaction);
        strbuf_release(&err);
        return 0;
}
int delete_refs(struct string_list *refnames)
{
        struct strbuf err = STRBUF_INIT;
        int i, result = 0;
        if (!refnames->nr)
                return 0;
        result = repack_without_refs(refnames, &err);
        if (result) {
                
                if (refnames->nr == 1)
                        error(_("could not delete reference %s: %s"),
                              refnames->items[0].string, err.buf);
                else
                        error(_("could not delete references: %s"), err.buf);
                goto out;
        }
        for (i = 0; i < refnames->nr; i++) {
                const char *refname = refnames->items[i].string;
                if (delete_ref(refname, NULL, 0))
                        result |= error(_("could not remove reference %s"), refname);
        }
out:
        strbuf_release(&err);
        return result;
}
#define TMP_RENAMED_LOG  "logs/refs/.tmp-renamed-log"
static int rename_tmp_log(const char *newrefname)
{
        int attempts_remaining = 4;
        struct strbuf path = STRBUF_INIT;
        int ret = -1;
 retry:
        strbuf_reset(&path);
        strbuf_git_path(&path, "logs/%s", newrefname);
        switch (safe_create_leading_directories_const(path.buf)) {
        case SCLD_OK:
                break; 
        case SCLD_VANISHED:
                if (--attempts_remaining > 0)
                        goto retry;
                
        default:
                error("unable to create directory for %s", newrefname);
                goto out;
        }
        if (rename(git_path(TMP_RENAMED_LOG), path.buf)) {
                if ((errno==EISDIR || errno==ENOTDIR) && --attempts_remaining > 0) {
                        
                        if (remove_empty_directories(&path)) {
                                error("Directory not empty: logs/%s", newrefname);
                                goto out;
                        }
                        goto retry;
                } else if (errno == ENOENT && --attempts_remaining > 0) {
                        
                        goto retry;
                } else {
                        error("unable to move logfile "TMP_RENAMED_LOG" to logs/%s: %s",
                                newrefname, strerror(errno));
                        goto out;
                }
        }
        ret = 0;
out:
        strbuf_release(&path);
        return ret;
}
static int rename_ref_available(const char *oldname, const char *newname)
{
        struct string_list skip = STRING_LIST_INIT_NODUP;
        struct strbuf err = STRBUF_INIT;
        int ret;
        string_list_insert(&skip, oldname);
        ret = !verify_refname_available(newname, NULL, &skip,
                                        get_packed_refs(&ref_cache), &err)
                && !verify_refname_available(newname, NULL, &skip,
                                             get_loose_refs(&ref_cache), &err);
        if (!ret)
                error("%s", err.buf);
        string_list_clear(&skip, 0);
        strbuf_release(&err);
        return ret;
}
static int write_ref_to_lockfile(struct ref_lock *lock,
                                 const unsigned char *sha1, struct strbuf *err);
static int commit_ref_update(struct ref_lock *lock,
                             const unsigned char *sha1, const char *logmsg,
                             int flags, struct strbuf *err);
int rename_ref(const char *oldrefname, const char *newrefname, const char *logmsg)
{
        unsigned char sha1[20], orig_sha1[20];
        int flag = 0, logmoved = 0;
        struct ref_lock *lock;
        struct stat loginfo;
        int log = !lstat(git_path("logs/%s", oldrefname), &loginfo);
        const char *symref = NULL;
        struct strbuf err = STRBUF_INIT;
        if (log && S_ISLNK(loginfo.st_mode))
                return error("reflog for %s is a symlink", oldrefname);
        symref = resolve_ref_unsafe(oldrefname, RESOLVE_REF_READING,
                                    orig_sha1, &flag);
        if (flag & REF_ISSYMREF)
                return error("refname %s is a symbolic ref, renaming it is not supported",
                        oldrefname);
        if (!symref)
                return error("refname %s not found", oldrefname);
        if (!rename_ref_available(oldrefname, newrefname))
                return 1;
        if (log && rename(git_path("logs/%s", oldrefname), git_path(TMP_RENAMED_LOG)))
                return error("unable to move logfile logs/%s to "TMP_RENAMED_LOG": %s",
                        oldrefname, strerror(errno));
        if (delete_ref(oldrefname, orig_sha1, REF_NODEREF)) {
                error("unable to delete old %s", oldrefname);
                goto rollback;
        }
        if (!read_ref_full(newrefname, RESOLVE_REF_READING, sha1, NULL) &&
            delete_ref(newrefname, sha1, REF_NODEREF)) {
                if (errno==EISDIR) {
                        struct strbuf path = STRBUF_INIT;
                        int result;
                        strbuf_git_path(&path, "%s", newrefname);
                        result = remove_empty_directories(&path);
                        strbuf_release(&path);
                        if (result) {
                                error("Directory not empty: %s", newrefname);
                                goto rollback;
                        }
                } else {
                        error("unable to delete existing %s", newrefname);
                        goto rollback;
                }
        }
        if (log && rename_tmp_log(newrefname))
                goto rollback;
        logmoved = log;
        lock = lock_ref_sha1_basic(newrefname, NULL, NULL, NULL, 0, NULL, &err);
        if (!lock) {
                error("unable to rename '%s' to '%s': %s", oldrefname, newrefname, err.buf);
                strbuf_release(&err);
                goto rollback;
        }
        hashcpy(lock->old_oid.hash, orig_sha1);
        if (write_ref_to_lockfile(lock, orig_sha1, &err) ||
            commit_ref_update(lock, orig_sha1, logmsg, 0, &err)) {
                error("unable to write current sha1 into %s: %s", newrefname, err.buf);
                strbuf_release(&err);
                goto rollback;
        }
        return 0;
 rollback:
        lock = lock_ref_sha1_basic(oldrefname, NULL, NULL, NULL, 0, NULL, &err);
        if (!lock) {
                error("unable to lock %s for rollback: %s", oldrefname, err.buf);
                strbuf_release(&err);
                goto rollbacklog;
        }
        flag = log_all_ref_updates;
        log_all_ref_updates = 0;
        if (write_ref_to_lockfile(lock, orig_sha1, &err) ||
            commit_ref_update(lock, orig_sha1, NULL, 0, &err)) {
                error("unable to write current sha1 into %s: %s", oldrefname, err.buf);
                strbuf_release(&err);
        }
        log_all_ref_updates = flag;
 rollbacklog:
        if (logmoved && rename(git_path("logs/%s", newrefname), git_path("logs/%s", oldrefname)))
                error("unable to restore logfile %s from %s: %s",
                        oldrefname, newrefname, strerror(errno));
        if (!logmoved && log &&
            rename(git_path(TMP_RENAMED_LOG), git_path("logs/%s", oldrefname)))
                error("unable to restore logfile %s from "TMP_RENAMED_LOG": %s",
                        oldrefname, strerror(errno));
        return 1;
}
static int close_ref(struct ref_lock *lock)
{
        if (close_lock_file(lock->lk))
                return -1;
        return 0;
}
static int commit_ref(struct ref_lock *lock)
{
        if (commit_lock_file(lock->lk))
                return -1;
        return 0;
}
static int copy_msg(char *buf, const char *msg)
{
        char *cp = buf;
        char c;
        int wasspace = 1;
        *cp++ = '\t';
        while ((c = *msg++)) {
                if (wasspace && isspace(c))
                        continue;
                wasspace = isspace(c);
                if (wasspace)
                        c = ' ';
                *cp++ = c;
        }
        while (buf < cp && isspace(cp[-1]))
                cp--;
        *cp++ = '\n';
        return cp - buf;
}
static int should_autocreate_reflog(const char *refname)
{
        if (!log_all_ref_updates)
                return 0;
        return starts_with(refname, "refs/heads/") ||
                starts_with(refname, "refs/remotes/") ||
                starts_with(refname, "refs/notes/") ||
                !strcmp(refname, "HEAD");
}
static int log_ref_setup(const char *refname, struct strbuf *logfile, struct strbuf *err, int force_create)
{
        int logfd, oflags = O_APPEND | O_WRONLY;
        strbuf_git_path(logfile, "logs/%s", refname);
        if (force_create || should_autocreate_reflog(refname)) {
                if (safe_create_leading_directories(logfile->buf) < 0) {
                        strbuf_addf(err, "unable to create directory for %s: "
                                    "%s", logfile->buf, strerror(errno));
                        return -1;
                }
                oflags |= O_CREAT;
        }
        logfd = open(logfile->buf, oflags, 0666);
        if (logfd < 0) {
                if (!(oflags & O_CREAT) && (errno == ENOENT || errno == EISDIR))
                        return 0;
                if (errno == EISDIR) {
                        if (remove_empty_directories(logfile)) {
                                strbuf_addf(err, "There are still logs under "
                                            "'%s'", logfile->buf);
                                return -1;
                        }
                        logfd = open(logfile->buf, oflags, 0666);
                }
                if (logfd < 0) {
                        strbuf_addf(err, "unable to append to %s: %s",
                                    logfile->buf, strerror(errno));
                        return -1;
                }
        }
        adjust_shared_perm(logfile->buf);
        close(logfd);
        return 0;
}
int safe_create_reflog(const char *refname, int force_create, struct strbuf *err)
{
        int ret;
        struct strbuf sb = STRBUF_INIT;
        ret = log_ref_setup(refname, &sb, err, force_create);
        strbuf_release(&sb);
        return ret;
}
static int log_ref_write_fd(int fd, const unsigned char *old_sha1,
                            const unsigned char *new_sha1,
                            const char *committer, const char *msg)
{
        int msglen, written;
        unsigned maxlen, len;
        char *logrec;
        msglen = msg ? strlen(msg) : 0;
        maxlen = strlen(committer) + msglen + 100;
        logrec = xmalloc(maxlen);
        len = sprintf(logrec, "%s %s %s\n",
                      sha1_to_hex(old_sha1),
                      sha1_to_hex(new_sha1),
                      committer);
        if (msglen)
                len += copy_msg(logrec + len - 1, msg) - 1;
        written = len <= maxlen ? write_in_full(fd, logrec, len) : -1;
        free(logrec);
        if (written != len)
                return -1;
        return 0;
}
static int log_ref_write_1(const char *refname, const unsigned char *old_sha1,
                           const unsigned char *new_sha1, const char *msg,
                           struct strbuf *logfile, int flags,
                           struct strbuf *err)
{
        int logfd, result, oflags = O_APPEND | O_WRONLY;
        if (log_all_ref_updates < 0)
                log_all_ref_updates = !is_bare_repository();
        result = log_ref_setup(refname, logfile, err, flags & REF_FORCE_CREATE_REFLOG);
        if (result)
                return result;
        logfd = open(logfile->buf, oflags);
        if (logfd < 0)
                return 0;
        result = log_ref_write_fd(logfd, old_sha1, new_sha1,
                                  git_committer_info(0), msg);
        if (result) {
                strbuf_addf(err, "unable to append to %s: %s", logfile->buf,
                            strerror(errno));
                close(logfd);
                return -1;
        }
        if (close(logfd)) {
                strbuf_addf(err, "unable to append to %s: %s", logfile->buf,
                            strerror(errno));
                return -1;
        }
        return 0;
}
static int log_ref_write(const char *refname, const unsigned char *old_sha1,
                         const unsigned char *new_sha1, const char *msg,
                         int flags, struct strbuf *err)
{
        struct strbuf sb = STRBUF_INIT;
        int ret = log_ref_write_1(refname, old_sha1, new_sha1, msg, &sb, flags,
                                  err);
        strbuf_release(&sb);
        return ret;
}
int is_branch(const char *refname)
{
        return !strcmp(refname, "HEAD") || starts_with(refname, "refs/heads/");
}
static int write_ref_to_lockfile(struct ref_lock *lock,
                                 const unsigned char *sha1, struct strbuf *err)
{
        static char term = '\n';
        struct object *o;
        int fd;
        o = parse_object(sha1);
        if (!o) {
                strbuf_addf(err,
                            "Trying to write ref %s with nonexistent object %s",
                            lock->ref_name, sha1_to_hex(sha1));
                unlock_ref(lock);
                return -1;
        }
        if (o->type != OBJ_COMMIT && is_branch(lock->ref_name)) {
                strbuf_addf(err,
                            "Trying to write non-commit object %s to branch %s",
                            sha1_to_hex(sha1), lock->ref_name);
                unlock_ref(lock);
                return -1;
        }
        fd = get_lock_file_fd(lock->lk);
        if (write_in_full(fd, sha1_to_hex(sha1), 40) != 40 ||
            write_in_full(fd, &term, 1) != 1 ||
            close_ref(lock) < 0) {
                strbuf_addf(err,
                            "Couldn't write %s", get_lock_file_path(lock->lk));
                unlock_ref(lock);
                return -1;
        }
        return 0;
}
static int commit_ref_update(struct ref_lock *lock,
                             const unsigned char *sha1, const char *logmsg,
                             int flags, struct strbuf *err)
{
        clear_loose_ref_cache(&ref_cache);
        if (log_ref_write(lock->ref_name, lock->old_oid.hash, sha1, logmsg, flags, err) < 0 ||
            (strcmp(lock->ref_name, lock->orig_ref_name) &&
             log_ref_write(lock->orig_ref_name, lock->old_oid.hash, sha1, logmsg, flags, err) < 0)) {
                char *old_msg = strbuf_detach(err, NULL);
                strbuf_addf(err, "Cannot update the ref '%s': %s",
                            lock->ref_name, old_msg);
                free(old_msg);
                unlock_ref(lock);
                return -1;
        }
        if (strcmp(lock->orig_ref_name, "HEAD") != 0) {
                
                unsigned char head_sha1[20];
                int head_flag;
                const char *head_ref;
                head_ref = resolve_ref_unsafe("HEAD", RESOLVE_REF_READING,
                                              head_sha1, &head_flag);
                if (head_ref && (head_flag & REF_ISSYMREF) &&
                    !strcmp(head_ref, lock->ref_name)) {
                        struct strbuf log_err = STRBUF_INIT;
                        if (log_ref_write("HEAD", lock->old_oid.hash, sha1,
                                          logmsg, 0, &log_err)) {
                                error("%s", log_err.buf);
                                strbuf_release(&log_err);
                        }
                }
        }
        if (commit_ref(lock)) {
                error("Couldn't set %s", lock->ref_name);
                unlock_ref(lock);
                return -1;
        }
        unlock_ref(lock);
        return 0;
}
int create_symref(const char *ref_target, const char *refs_heads_master,
                  const char *logmsg)
{
        char *lockpath = NULL;
        char ref[1000];
        int fd, len, written;
        char *git_HEAD = git_pathdup("%s", ref_target);
        unsigned char old_sha1[20], new_sha1[20];
        struct strbuf err = STRBUF_INIT;
        if (logmsg && read_ref(ref_target, old_sha1))
                hashclr(old_sha1);
        if (safe_create_leading_directories(git_HEAD) < 0)
                return error("unable to create directory for %s", git_HEAD);
#ifndef NO_SYMLINK_HEAD
        if (prefer_symlink_refs) {
                unlink(git_HEAD);
                if (!symlink(refs_heads_master, git_HEAD))
                        goto done;
                fprintf(stderr, "no symlink - falling back to symbolic ref\n");
        }
#endif
        len = snprintf(ref, sizeof(ref), "ref: %s\n", refs_heads_master);
        if (sizeof(ref) <= len) {
                error("refname too long: %s", refs_heads_master);
                goto error_free_return;
        }
        lockpath = mkpathdup("%s.lock", git_HEAD);
        fd = open(lockpath, O_CREAT | O_EXCL | O_WRONLY, 0666);
        if (fd < 0) {
                error("Unable to open %s for writing", lockpath);
                goto error_free_return;
        }
        written = write_in_full(fd, ref, len);
        if (close(fd) != 0 || written != len) {
                error("Unable to write to %s", lockpath);
                goto error_unlink_return;
        }
        if (rename(lockpath, git_HEAD) < 0) {
                error("Unable to create %s", git_HEAD);
                goto error_unlink_return;
        }
        if (adjust_shared_perm(git_HEAD)) {
                error("Unable to fix permissions on %s", lockpath);
        error_unlink_return:
                unlink_or_warn(lockpath);
        error_free_return:
                free(lockpath);
                free(git_HEAD);
                return -1;
        }
        free(lockpath);
#ifndef NO_SYMLINK_HEAD
        done:
#endif
        if (logmsg && !read_ref(refs_heads_master, new_sha1) &&
                log_ref_write(ref_target, old_sha1, new_sha1, logmsg, 0, &err)) {
                error("%s", err.buf);
                strbuf_release(&err);
        }
        free(git_HEAD);
        return 0;
}
struct read_ref_at_cb {
        const char *refname;
        unsigned long at_time;
        int cnt;
        int reccnt;
        unsigned char *sha1;
        int found_it;
        unsigned char osha1[20];
        unsigned char nsha1[20];
        int tz;
        unsigned long date;
        char **msg;
        unsigned long *cutoff_time;
        int *cutoff_tz;
        int *cutoff_cnt;
};
static int read_ref_at_ent(unsigned char *osha1, unsigned char *nsha1,
                const char *email, unsigned long timestamp, int tz,
                const char *message, void *cb_data)
{
        struct read_ref_at_cb *cb = cb_data;
        cb->reccnt++;
        cb->tz = tz;
        cb->date = timestamp;
        if (timestamp <= cb->at_time || cb->cnt == 0) {
                if (cb->msg)
                        *cb->msg = xstrdup(message);
                if (cb->cutoff_time)
                        *cb->cutoff_time = timestamp;
                if (cb->cutoff_tz)
                        *cb->cutoff_tz = tz;
                if (cb->cutoff_cnt)
                        *cb->cutoff_cnt = cb->reccnt - 1;
                
                if (!is_null_sha1(cb->osha1)) {
                        hashcpy(cb->sha1, nsha1);
                        if (hashcmp(cb->osha1, nsha1))
                                warning("Log for ref %s has gap after %s.",
                                        cb->refname, show_date(cb->date, cb->tz, DATE_MODE(RFC2822)));
                }
                else if (cb->date == cb->at_time)
                        hashcpy(cb->sha1, nsha1);
                else if (hashcmp(nsha1, cb->sha1))
                        warning("Log for ref %s unexpectedly ended on %s.",
                                cb->refname, show_date(cb->date, cb->tz,
                                                       DATE_MODE(RFC2822)));
                hashcpy(cb->osha1, osha1);
                hashcpy(cb->nsha1, nsha1);
                cb->found_it = 1;
                return 1;
        }
        hashcpy(cb->osha1, osha1);
        hashcpy(cb->nsha1, nsha1);
        if (cb->cnt > 0)
                cb->cnt--;
        return 0;
}
static int read_ref_at_ent_oldest(unsigned char *osha1, unsigned char *nsha1,
                                  const char *email, unsigned long timestamp,
                                  int tz, const char *message, void *cb_data)
{
        struct read_ref_at_cb *cb = cb_data;
        if (cb->msg)
                *cb->msg = xstrdup(message);
        if (cb->cutoff_time)
                *cb->cutoff_time = timestamp;
        if (cb->cutoff_tz)
                *cb->cutoff_tz = tz;
        if (cb->cutoff_cnt)
                *cb->cutoff_cnt = cb->reccnt;
        hashcpy(cb->sha1, osha1);
        if (is_null_sha1(cb->sha1))
                hashcpy(cb->sha1, nsha1);
        
        return 1;
}
int read_ref_at(const char *refname, unsigned int flags, unsigned long at_time, int cnt,
                unsigned char *sha1, char **msg,
                unsigned long *cutoff_time, int *cutoff_tz, int *cutoff_cnt)
{
        struct read_ref_at_cb cb;
        memset(&cb, 0, sizeof(cb));
        cb.refname = refname;
        cb.at_time = at_time;
        cb.cnt = cnt;
        cb.msg = msg;
        cb.cutoff_time = cutoff_time;
        cb.cutoff_tz = cutoff_tz;
        cb.cutoff_cnt = cutoff_cnt;
        cb.sha1 = sha1;
        for_each_reflog_ent_reverse(refname, read_ref_at_ent, &cb);
        if (!cb.reccnt) {
                if (flags & GET_SHA1_QUIETLY)
                        exit(128);
                else
                        die("Log for %s is empty.", refname);
        }
        if (cb.found_it)
                return 0;
        for_each_reflog_ent(refname, read_ref_at_ent_oldest, &cb);
        return 1;
}
int reflog_exists(const char *refname)
{
        struct stat st;
        return !lstat(git_path("logs/%s", refname), &st) &&
                S_ISREG(st.st_mode);
}
int delete_reflog(const char *refname)
{
        return remove_path(git_path("logs/%s", refname));
}
static int show_one_reflog_ent(struct strbuf *sb, each_reflog_ent_fn fn, void *cb_data)
{
        unsigned char osha1[20], nsha1[20];
        char *email_end, *message;
        unsigned long timestamp;
        int tz;
        
        if (sb->len < 83 || sb->buf[sb->len - 1] != '\n' ||
            get_sha1_hex(sb->buf, osha1) || sb->buf[40] != ' ' ||
            get_sha1_hex(sb->buf + 41, nsha1) || sb->buf[81] != ' ' ||
            !(email_end = strchr(sb->buf + 82, '>')) ||
            email_end[1] != ' ' ||
            !(timestamp = strtoul(email_end + 2, &message, 10)) ||
            !message || message[0] != ' ' ||
            (message[1] != '+' && message[1] != '-') ||
            !isdigit(message[2]) || !isdigit(message[3]) ||
            !isdigit(message[4]) || !isdigit(message[5]))
                return 0; 
        email_end[1] = '\0';
        tz = strtol(message + 1, NULL, 10);
        if (message[6] != '\t')
                message += 6;
        else
                message += 7;
        return fn(osha1, nsha1, sb->buf + 82, timestamp, tz, message, cb_data);
}
static char *find_beginning_of_line(char *bob, char *scan)
{
        while (bob < scan && *(--scan) != '\n')
                ; 
        
        return scan;
}
int for_each_reflog_ent_reverse(const char *refname, each_reflog_ent_fn fn, void *cb_data)
{
        struct strbuf sb = STRBUF_INIT;
        FILE *logfp;
        long pos;
        int ret = 0, at_tail = 1;
        logfp = fopen(git_path("logs/%s", refname), "r");
        if (!logfp)
                return -1;
        
        if (fseek(logfp, 0, SEEK_END) < 0)
                return error("cannot seek back reflog for %s: %s",
                             refname, strerror(errno));
        pos = ftell(logfp);
        while (!ret && 0 < pos) {
                int cnt;
                size_t nread;
                char buf[BUFSIZ];
                char *endp, *scanp;
                
                cnt = (sizeof(buf) < pos) ? sizeof(buf) : pos;
                if (fseek(logfp, pos - cnt, SEEK_SET))
                        return error("cannot seek back reflog for %s: %s",
                                     refname, strerror(errno));
                nread = fread(buf, cnt, 1, logfp);
                if (nread != 1)
                        return error("cannot read %d bytes from reflog for %s: %s",
                                     cnt, refname, strerror(errno));
                pos -= cnt;
                scanp = endp = buf + cnt;
                if (at_tail && scanp[-1] == '\n')
                        
                        scanp--;
                at_tail = 0;
                while (buf < scanp) {
                        
                        char *bp;
                        bp = find_beginning_of_line(buf, scanp);
                        if (*bp == '\n') {
                                
                                strbuf_splice(&sb, 0, 0, bp + 1, endp - (bp + 1));
                                scanp = bp;
                                endp = bp + 1;
                                ret = show_one_reflog_ent(&sb, fn, cb_data);
                                strbuf_reset(&sb);
                                if (ret)
                                        break;
                        } else if (!pos) {
                                
                                strbuf_splice(&sb, 0, 0, buf, endp - buf);
                                ret = show_one_reflog_ent(&sb, fn, cb_data);
                                strbuf_reset(&sb);
                                break;
                        }
                        if (bp == buf) {
                                
                                strbuf_splice(&sb, 0, 0, buf, endp - buf);
                                break;
                        }
                }
        }
        if (!ret && sb.len)
                die("BUG: reverse reflog parser had leftover data");
        fclose(logfp);
        strbuf_release(&sb);
        return ret;
}
int for_each_reflog_ent(const char *refname, each_reflog_ent_fn fn, void *cb_data)
{
        FILE *logfp;
        struct strbuf sb = STRBUF_INIT;
        int ret = 0;
        logfp = fopen(git_path("logs/%s", refname), "r");
        if (!logfp)
                return -1;
        while (!ret && !strbuf_getwholeline(&sb, logfp, '\n'))
                ret = show_one_reflog_ent(&sb, fn, cb_data);
        fclose(logfp);
        strbuf_release(&sb);
        return ret;
}
static int do_for_each_reflog(struct strbuf *name, each_ref_fn fn, void *cb_data)
{
        DIR *d = opendir(git_path("logs/%s", name->buf));
        int retval = 0;
        struct dirent *de;
        int oldlen = name->len;
        if (!d)
                return name->len ? errno : 0;
        while ((de = readdir(d)) != NULL) {
                struct stat st;
                if (de->d_name[0] == '.')
                        continue;
                if (ends_with(de->d_name, ".lock"))
                        continue;
                strbuf_addstr(name, de->d_name);
                if (stat(git_path("logs/%s", name->buf), &st) < 0) {
                        ; 
                } else {
                        if (S_ISDIR(st.st_mode)) {
                                strbuf_addch(name, '/');
                                retval = do_for_each_reflog(name, fn, cb_data);
                        } else {
                                struct object_id oid;
                                if (read_ref_full(name->buf, 0, oid.hash, NULL))
                                        retval = error("bad ref for %s", name->buf);
                                else
                                        retval = fn(name->buf, &oid, 0, cb_data);
                        }
                        if (retval)
                                break;
                }
                strbuf_setlen(name, oldlen);
        }
        closedir(d);
        return retval;
}
int for_each_reflog(each_ref_fn fn, void *cb_data)
{
        int retval;
        struct strbuf name;
        strbuf_init(&name, PATH_MAX);
        retval = do_for_each_reflog(&name, fn, cb_data);
        strbuf_release(&name);
        return retval;
}
struct ref_update {
        
        unsigned char new_sha1[20];
        
        unsigned char old_sha1[20];
        
        unsigned int flags;
        struct ref_lock *lock;
        int type;
        char *msg;
        const char refname[FLEX_ARRAY];
};
enum ref_transaction_state {
        REF_TRANSACTION_OPEN   = 0,
        REF_TRANSACTION_CLOSED = 1
};
struct ref_transaction {
        struct ref_update **updates;
        size_t alloc;
        size_t nr;
        enum ref_transaction_state state;
};
struct ref_transaction *ref_transaction_begin(struct strbuf *err)
{
        assert(err);
        return xcalloc(1, sizeof(struct ref_transaction));
}
void ref_transaction_free(struct ref_transaction *transaction)
{
        int i;
        if (!transaction)
                return;
        for (i = 0; i < transaction->nr; i++) {
                free(transaction->updates[i]->msg);
                free(transaction->updates[i]);
        }
        free(transaction->updates);
        free(transaction);
}
static struct ref_update *add_update(struct ref_transaction *transaction,
                                     const char *refname)
{
        size_t len = strlen(refname);
        struct ref_update *update = xcalloc(1, sizeof(*update) + len + 1);
        strcpy((char *)update->refname, refname);
        ALLOC_GROW(transaction->updates, transaction->nr + 1, transaction->alloc);
        transaction->updates[transaction->nr++] = update;
        return update;
}
int ref_transaction_update(struct ref_transaction *transaction,
                           const char *refname,
                           const unsigned char *new_sha1,
                           const unsigned char *old_sha1,
                           unsigned int flags, const char *msg,
                           struct strbuf *err)
{
        struct ref_update *update;
        assert(err);
        if (transaction->state != REF_TRANSACTION_OPEN)
                die("BUG: update called for transaction that is not open");
        if (new_sha1 && !is_null_sha1(new_sha1) &&
            check_refname_format(refname, REFNAME_ALLOW_ONELEVEL)) {
                strbuf_addf(err, "refusing to update ref with bad name %s",
                            refname);
                return -1;
        }
        update = add_update(transaction, refname);
        if (new_sha1) {
                hashcpy(update->new_sha1, new_sha1);
                flags |= REF_HAVE_NEW;
        }
        if (old_sha1) {
                hashcpy(update->old_sha1, old_sha1);
                flags |= REF_HAVE_OLD;
        }
        update->flags = flags;
        if (msg)
                update->msg = xstrdup(msg);
        return 0;
}
int ref_transaction_create(struct ref_transaction *transaction,
                           const char *refname,
                           const unsigned char *new_sha1,
                           unsigned int flags, const char *msg,
                           struct strbuf *err)
{
        if (!new_sha1 || is_null_sha1(new_sha1))
                die("BUG: create called without valid new_sha1");
        return ref_transaction_update(transaction, refname, new_sha1,
                                      null_sha1, flags, msg, err);
}
int ref_transaction_delete(struct ref_transaction *transaction,
                           const char *refname,
                           const unsigned char *old_sha1,
                           unsigned int flags, const char *msg,
                           struct strbuf *err)
{
        if (old_sha1 && is_null_sha1(old_sha1))
                die("BUG: delete called with old_sha1 set to zeros");
        return ref_transaction_update(transaction, refname,
                                      null_sha1, old_sha1,
                                      flags, msg, err);
}
int ref_transaction_verify(struct ref_transaction *transaction,
                           const char *refname,
                           const unsigned char *old_sha1,
                           unsigned int flags,
                           struct strbuf *err)
{
        if (!old_sha1)
                die("BUG: verify called with old_sha1 set to NULL");
        return ref_transaction_update(transaction, refname,
                                      NULL, old_sha1,
                                      flags, NULL, err);
}
int update_ref(const char *msg, const char *refname,
               const unsigned char *new_sha1, const unsigned char *old_sha1,
               unsigned int flags, enum action_on_err onerr)
{
        struct ref_transaction *t = NULL;
        struct strbuf err = STRBUF_INIT;
        int ret = 0;
        if (ref_type(refname) == REF_TYPE_PSEUDOREF) {
                ret = write_pseudoref(refname, new_sha1, old_sha1, &err);
        } else {
                t = ref_transaction_begin(&err);
                if (!t ||
                    ref_transaction_update(t, refname, new_sha1, old_sha1,
                                           flags, msg, &err) ||
                    ref_transaction_commit(t, &err)) {
                        ret = 1;
                        ref_transaction_free(t);
                }
        }
        if (ret) {
                const char *str = "update_ref failed for ref '%s': %s";
                switch (onerr) {
                case UPDATE_REFS_MSG_ON_ERR:
                        error(str, refname, err.buf);
                        break;
                case UPDATE_REFS_DIE_ON_ERR:
                        die(str, refname, err.buf);
                        break;
                case UPDATE_REFS_QUIET_ON_ERR:
                        break;
                }
                strbuf_release(&err);
                return 1;
        }
        strbuf_release(&err);
        if (t)
                ref_transaction_free(t);
        return 0;
}
static int ref_update_reject_duplicates(struct string_list *refnames,
                                        struct strbuf *err)
{
        int i, n = refnames->nr;
        assert(err);
        for (i = 1; i < n; i++)
                if (!strcmp(refnames->items[i - 1].string, refnames->items[i].string)) {
                        strbuf_addf(err,
                                    "Multiple updates for ref '%s' not allowed.",
                                    refnames->items[i].string);
                        return 1;
                }
        return 0;
}
int ref_transaction_commit(struct ref_transaction *transaction,
                           struct strbuf *err)
{
        int ret = 0, i;
        int n = transaction->nr;
        struct ref_update **updates = transaction->updates;
        struct string_list refs_to_delete = STRING_LIST_INIT_NODUP;
        struct string_list_item *ref_to_delete;
        struct string_list affected_refnames = STRING_LIST_INIT_NODUP;
        assert(err);
        if (transaction->state != REF_TRANSACTION_OPEN)
                die("BUG: commit called for transaction that is not open");
        if (!n) {
                transaction->state = REF_TRANSACTION_CLOSED;
                return 0;
        }
        
        for (i = 0; i < n; i++)
                string_list_append(&affected_refnames, updates[i]->refname);
        string_list_sort(&affected_refnames);
        if (ref_update_reject_duplicates(&affected_refnames, err)) {
                ret = TRANSACTION_GENERIC_ERROR;
                goto cleanup;
        }
        
        for (i = 0; i < n; i++) {
                struct ref_update *update = updates[i];
                if ((update->flags & REF_HAVE_NEW) &&
                    is_null_sha1(update->new_sha1))
                        update->flags |= REF_DELETING;
                update->lock = lock_ref_sha1_basic(
                                update->refname,
                                ((update->flags & REF_HAVE_OLD) ?
                                 update->old_sha1 : NULL),
                                &affected_refnames, NULL,
                                update->flags,
                                &update->type,
                                err);
                if (!update->lock) {
                        char *reason;
                        ret = (errno == ENOTDIR)
                                ? TRANSACTION_NAME_CONFLICT
                                : TRANSACTION_GENERIC_ERROR;
                        reason = strbuf_detach(err, NULL);
                        strbuf_addf(err, "cannot lock ref '%s': %s",
                                    update->refname, reason);
                        free(reason);
                        goto cleanup;
                }
                if ((update->flags & REF_HAVE_NEW) &&
                    !(update->flags & REF_DELETING)) {
                        int overwriting_symref = ((update->type & REF_ISSYMREF) &&
                                                  (update->flags & REF_NODEREF));
                        if (!overwriting_symref &&
                            !hashcmp(update->lock->old_oid.hash, update->new_sha1)) {
                                
                        } else if (write_ref_to_lockfile(update->lock,
                                                         update->new_sha1,
                                                         err)) {
                                char *write_err = strbuf_detach(err, NULL);
                                
                                update->lock = NULL;
                                strbuf_addf(err,
                                            "cannot update the ref '%s': %s",
                                            update->refname, write_err);
                                free(write_err);
                                ret = TRANSACTION_GENERIC_ERROR;
                                goto cleanup;
                        } else {
                                update->flags |= REF_NEEDS_COMMIT;
                        }
                }
                if (!(update->flags & REF_NEEDS_COMMIT)) {
                        
                        if (close_ref(update->lock)) {
                                strbuf_addf(err, "Couldn't close %s.lock",
                                            update->refname);
                                goto cleanup;
                        }
                }
        }
        
        for (i = 0; i < n; i++) {
                struct ref_update *update = updates[i];
                if (update->flags & REF_NEEDS_COMMIT) {
                        if (commit_ref_update(update->lock,
                                              update->new_sha1, update->msg,
                                              update->flags, err)) {
                                
                                update->lock = NULL;
                                ret = TRANSACTION_GENERIC_ERROR;
                                goto cleanup;
                        } else {
                                
                                update->lock = NULL;
                        }
                }
        }
        
        for (i = 0; i < n; i++) {
                struct ref_update *update = updates[i];
                if (update->flags & REF_DELETING) {
                        if (delete_ref_loose(update->lock, update->type, err)) {
                                ret = TRANSACTION_GENERIC_ERROR;
                                goto cleanup;
                        }
                        if (!(update->flags & REF_ISPRUNING))
                                string_list_append(&refs_to_delete,
                                                   update->lock->ref_name);
                }
        }
        if (repack_without_refs(&refs_to_delete, err)) {
                ret = TRANSACTION_GENERIC_ERROR;
                goto cleanup;
        }
        for_each_string_list_item(ref_to_delete, &refs_to_delete)
                unlink_or_warn(git_path("logs/%s", ref_to_delete->string));
        clear_loose_ref_cache(&ref_cache);
cleanup:
        transaction->state = REF_TRANSACTION_CLOSED;
        for (i = 0; i < n; i++)
                if (updates[i]->lock)
                        unlock_ref(updates[i]->lock);
        string_list_clear(&refs_to_delete, 0);
        string_list_clear(&affected_refnames, 0);
        return ret;
}
static int ref_present(const char *refname,
                       const struct object_id *oid, int flags, void *cb_data)
{
        struct string_list *affected_refnames = cb_data;
        return string_list_has_string(affected_refnames, refname);
}
int initial_ref_transaction_commit(struct ref_transaction *transaction,
                                   struct strbuf *err)
{
        struct ref_dir *loose_refs = get_loose_refs(&ref_cache);
        struct ref_dir *packed_refs = get_packed_refs(&ref_cache);
        int ret = 0, i;
        int n = transaction->nr;
        struct ref_update **updates = transaction->updates;
        struct string_list affected_refnames = STRING_LIST_INIT_NODUP;
        assert(err);
        if (transaction->state != REF_TRANSACTION_OPEN)
                die("BUG: commit called for transaction that is not open");
        
        for (i = 0; i < n; i++)
                string_list_append(&affected_refnames, updates[i]->refname);
        string_list_sort(&affected_refnames);
        if (ref_update_reject_duplicates(&affected_refnames, err)) {
                ret = TRANSACTION_GENERIC_ERROR;
                goto cleanup;
        }
        
        if (for_each_rawref(ref_present, &affected_refnames))
                die("BUG: initial ref transaction called with existing refs");
        for (i = 0; i < n; i++) {
                struct ref_update *update = updates[i];
                if ((update->flags & REF_HAVE_OLD) &&
                    !is_null_sha1(update->old_sha1))
                        die("BUG: initial ref transaction with old_sha1 set");
                if (verify_refname_available(update->refname,
                                             &affected_refnames, NULL,
                                             loose_refs, err) ||
                    verify_refname_available(update->refname,
                                             &affected_refnames, NULL,
                                             packed_refs, err)) {
                        ret = TRANSACTION_NAME_CONFLICT;
                        goto cleanup;
                }
        }
        if (lock_packed_refs(0)) {
                strbuf_addf(err, "unable to lock packed-refs file: %s",
                            strerror(errno));
                ret = TRANSACTION_GENERIC_ERROR;
                goto cleanup;
        }
        for (i = 0; i < n; i++) {
                struct ref_update *update = updates[i];
                if ((update->flags & REF_HAVE_NEW) &&
                    !is_null_sha1(update->new_sha1))
                        add_packed_ref(update->refname, update->new_sha1);
        }
        if (commit_packed_refs()) {
                strbuf_addf(err, "unable to commit packed-refs file: %s",
                            strerror(errno));
                ret = TRANSACTION_GENERIC_ERROR;
                goto cleanup;
        }
cleanup:
        transaction->state = REF_TRANSACTION_CLOSED;
        string_list_clear(&affected_refnames, 0);
        return ret;
}
char *shorten_unambiguous_ref(const char *refname, int strict)
{
        int i;
        static char **scanf_fmts;
        static int nr_rules;
        char *short_name;
        if (!nr_rules) {
                
                size_t total_len = 0;
                size_t offset = 0;
                
                for (nr_rules = 0; ref_rev_parse_rules[nr_rules]; nr_rules++)
                        
                        total_len += strlen(ref_rev_parse_rules[nr_rules]) - 2 + 1;
                scanf_fmts = xmalloc(nr_rules * sizeof(char *) + total_len);
                offset = 0;
                for (i = 0; i < nr_rules; i++) {
                        assert(offset < total_len);
                        scanf_fmts[i] = (char *)&scanf_fmts[nr_rules] + offset;
                        offset += snprintf(scanf_fmts[i], total_len - offset,
                                           ref_rev_parse_rules[i], 2, "%s") + 1;
                }
        }
        
        if (!nr_rules)
                return xstrdup(refname);
        
        short_name = xstrdup(refname);
        
        for (i = nr_rules - 1; i > 0 ; --i) {
                int j;
                int rules_to_fail = i;
                int short_name_len;
                if (1 != sscanf(refname, scanf_fmts[i], short_name))
                        continue;
                short_name_len = strlen(short_name);
                
                if (strict)
                        rules_to_fail = nr_rules;
                
                for (j = 0; j < rules_to_fail; j++) {
                        const char *rule = ref_rev_parse_rules[j];
                        char refname[PATH_MAX];
                        
                        if (i == j)
                                continue;
                        
                        mksnpath(refname, sizeof(refname),
                                 rule, short_name_len, short_name);
                        if (ref_exists(refname))
                                break;
                }
                
                if (j == rules_to_fail)
                        return short_name;
        }
        free(short_name);
        return xstrdup(refname);
}
static struct string_list *hide_refs;
int parse_hide_refs_config(const char *var, const char *value, const char *section)
{
        if (!strcmp("transfer.hiderefs", var) ||
            
            (starts_with(var, section) && var[strlen(section)] == '.' &&
             !strcmp(var + strlen(section), ".hiderefs"))) {
                char *ref;
                int len;
                if (!value)
                        return config_error_nonbool(var);
                ref = xstrdup(value);
                len = strlen(ref);
                while (len && ref[len - 1] == '/')
                        ref[--len] = '\0';
                if (!hide_refs) {
                        hide_refs = xcalloc(1, sizeof(*hide_refs));
                        hide_refs->strdup_strings = 1;
                }
                string_list_append(hide_refs, ref);
        }
        return 0;
}
int ref_is_hidden(const char *refname)
{
        int i;
        if (!hide_refs)
                return 0;
        for (i = hide_refs->nr - 1; i >= 0; i--) {
                const char *match = hide_refs->items[i].string;
                int neg = 0;
                int len;
                if (*match == '!') {
                        neg = 1;
                        match++;
                }
                if (!starts_with(refname, match))
                        continue;
                len = strlen(match);
                if (!refname[len] || refname[len] == '/')
                        return !neg;
        }
        return 0;
}
struct expire_reflog_cb {
        unsigned int flags;
        reflog_expiry_should_prune_fn *should_prune_fn;
        void *policy_cb;
        FILE *newlog;
        unsigned char last_kept_sha1[20];
};
static int expire_reflog_ent(unsigned char *osha1, unsigned char *nsha1,
                             const char *email, unsigned long timestamp, int tz,
                             const char *message, void *cb_data)
{
        struct expire_reflog_cb *cb = cb_data;
        struct expire_reflog_policy_cb *policy_cb = cb->policy_cb;
        if (cb->flags & EXPIRE_REFLOGS_REWRITE)
                osha1 = cb->last_kept_sha1;
        if ((*cb->should_prune_fn)(osha1, nsha1, email, timestamp, tz,
                                   message, policy_cb)) {
                if (!cb->newlog)
                        printf("would prune %s", message);
                else if (cb->flags & EXPIRE_REFLOGS_VERBOSE)
                        printf("prune %s", message);
        } else {
                if (cb->newlog) {
                        fprintf(cb->newlog, "%s %s %s %lu %+05d\t%s",
                                sha1_to_hex(osha1), sha1_to_hex(nsha1),
                                email, timestamp, tz, message);
                        hashcpy(cb->last_kept_sha1, nsha1);
                }
                if (cb->flags & EXPIRE_REFLOGS_VERBOSE)
                        printf("keep %s", message);
        }
        return 0;
}
int reflog_expire(const char *refname, const unsigned char *sha1,
                 unsigned int flags,
                 reflog_expiry_prepare_fn prepare_fn,
                 reflog_expiry_should_prune_fn should_prune_fn,
                 reflog_expiry_cleanup_fn cleanup_fn,
                 void *policy_cb_data)
{
        static struct lock_file reflog_lock;
        struct expire_reflog_cb cb;
        struct ref_lock *lock;
        char *log_file;
        int status = 0;
        int type;
        struct strbuf err = STRBUF_INIT;
        memset(&cb, 0, sizeof(cb));
        cb.flags = flags;
        cb.policy_cb = policy_cb_data;
        cb.should_prune_fn = should_prune_fn;
        
        lock = lock_ref_sha1_basic(refname, sha1, NULL, NULL, 0, &type, &err);
        if (!lock) {
                error("cannot lock ref '%s': %s", refname, err.buf);
                strbuf_release(&err);
                return -1;
        }
        if (!reflog_exists(refname)) {
                unlock_ref(lock);
                return 0;
        }
        log_file = git_pathdup("logs/%s", refname);
        if (!(flags & EXPIRE_REFLOGS_DRY_RUN)) {
                
                if (hold_lock_file_for_update(&reflog_lock, log_file, 0) < 0) {
                        struct strbuf err = STRBUF_INIT;
                        unable_to_lock_message(log_file, errno, &err);
                        error("%s", err.buf);
                        strbuf_release(&err);
                        goto failure;
                }
                cb.newlog = fdopen_lock_file(&reflog_lock, "w");
                if (!cb.newlog) {
                        error("cannot fdopen %s (%s)",
                              get_lock_file_path(&reflog_lock), strerror(errno));
                        goto failure;
                }
        }
        (*prepare_fn)(refname, sha1, cb.policy_cb);
        for_each_reflog_ent(refname, expire_reflog_ent, &cb);
        (*cleanup_fn)(cb.policy_cb);
        if (!(flags & EXPIRE_REFLOGS_DRY_RUN)) {
                
                int update = (flags & EXPIRE_REFLOGS_UPDATE_REF) &&
                        !(type & REF_ISSYMREF) &&
                        !is_null_sha1(cb.last_kept_sha1);
                if (close_lock_file(&reflog_lock)) {
                        status |= error("couldn't write %s: %s", log_file,
                                        strerror(errno));
                } else if (update &&
                           (write_in_full(get_lock_file_fd(lock->lk),
                                sha1_to_hex(cb.last_kept_sha1), 40) != 40 ||
                            write_str_in_full(get_lock_file_fd(lock->lk), "\n") != 1 ||
                            close_ref(lock) < 0)) {
                        status |= error("couldn't write %s",
                                        get_lock_file_path(lock->lk));
                        rollback_lock_file(&reflog_lock);
                } else if (commit_lock_file(&reflog_lock)) {
                        status |= error("unable to commit reflog '%s' (%s)",
                                        log_file, strerror(errno));
                } else if (update && commit_ref(lock)) {
                        status |= error("couldn't set %s", lock->ref_name);
                }
        }
        free(log_file);
        unlock_ref(lock);
        return status;
 failure:
        rollback_lock_file(&reflog_lock);
        free(log_file);
        unlock_ref(lock);
        return -1;
}