refs: pass NULL to resolve_refdup() if hash is not needed
[git/debian.git] / refs.c
blob97e33fdc7b3bc6ebb17937585d2348911db5723c
1 /*
2 * The backend-independent part of the reference module.
3 */
5 #include "cache.h"
6 #include "config.h"
7 #include "hashmap.h"
8 #include "lockfile.h"
9 #include "iterator.h"
10 #include "refs.h"
11 #include "refs/refs-internal.h"
12 #include "object.h"
13 #include "tag.h"
14 #include "submodule.h"
15 #include "worktree.h"
18 * List of all available backends
20 static struct ref_storage_be *refs_backends = &refs_be_files;
22 static struct ref_storage_be *find_ref_storage_backend(const char *name)
24 struct ref_storage_be *be;
25 for (be = refs_backends; be; be = be->next)
26 if (!strcmp(be->name, name))
27 return be;
28 return NULL;
31 int ref_storage_backend_exists(const char *name)
33 return find_ref_storage_backend(name) != NULL;
37 * How to handle various characters in refnames:
38 * 0: An acceptable character for refs
39 * 1: End-of-component
40 * 2: ., look for a preceding . to reject .. in refs
41 * 3: {, look for a preceding @ to reject @{ in refs
42 * 4: A bad character: ASCII control characters, and
43 * ":", "?", "[", "\", "^", "~", SP, or TAB
44 * 5: *, reject unless REFNAME_REFSPEC_PATTERN is set
46 static unsigned char refname_disposition[256] = {
47 1, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4,
48 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4,
49 4, 0, 0, 0, 0, 0, 0, 0, 0, 0, 5, 0, 0, 0, 2, 1,
50 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 4, 0, 0, 0, 0, 4,
51 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
52 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 4, 4, 0, 4, 0,
53 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
54 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 3, 0, 0, 4, 4
58 * Try to read one refname component from the front of refname.
59 * Return the length of the component found, or -1 if the component is
60 * not legal. It is legal if it is something reasonable to have under
61 * ".git/refs/"; We do not like it if:
63 * - any path component of it begins with ".", or
64 * - it has double dots "..", or
65 * - it has ASCII control characters, or
66 * - it has ":", "?", "[", "\", "^", "~", SP, or TAB anywhere, or
67 * - it has "*" anywhere unless REFNAME_REFSPEC_PATTERN is set, or
68 * - it ends with a "/", or
69 * - it ends with ".lock", or
70 * - it contains a "@{" portion
72 static int check_refname_component(const char *refname, int *flags)
74 const char *cp;
75 char last = '\0';
77 for (cp = refname; ; cp++) {
78 int ch = *cp & 255;
79 unsigned char disp = refname_disposition[ch];
80 switch (disp) {
81 case 1:
82 goto out;
83 case 2:
84 if (last == '.')
85 return -1; /* Refname contains "..". */
86 break;
87 case 3:
88 if (last == '@')
89 return -1; /* Refname contains "@{". */
90 break;
91 case 4:
92 return -1;
93 case 5:
94 if (!(*flags & REFNAME_REFSPEC_PATTERN))
95 return -1; /* refspec can't be a pattern */
98 * Unset the pattern flag so that we only accept
99 * a single asterisk for one side of refspec.
101 *flags &= ~ REFNAME_REFSPEC_PATTERN;
102 break;
104 last = ch;
106 out:
107 if (cp == refname)
108 return 0; /* Component has zero length. */
109 if (refname[0] == '.')
110 return -1; /* Component starts with '.'. */
111 if (cp - refname >= LOCK_SUFFIX_LEN &&
112 !memcmp(cp - LOCK_SUFFIX_LEN, LOCK_SUFFIX, LOCK_SUFFIX_LEN))
113 return -1; /* Refname ends with ".lock". */
114 return cp - refname;
117 int check_refname_format(const char *refname, int flags)
119 int component_len, component_count = 0;
121 if (!strcmp(refname, "@"))
122 /* Refname is a single character '@'. */
123 return -1;
125 while (1) {
126 /* We are at the start of a path component. */
127 component_len = check_refname_component(refname, &flags);
128 if (component_len <= 0)
129 return -1;
131 component_count++;
132 if (refname[component_len] == '\0')
133 break;
134 /* Skip to next component. */
135 refname += component_len + 1;
138 if (refname[component_len - 1] == '.')
139 return -1; /* Refname ends with '.'. */
140 if (!(flags & REFNAME_ALLOW_ONELEVEL) && component_count < 2)
141 return -1; /* Refname has only one component. */
142 return 0;
145 int refname_is_safe(const char *refname)
147 const char *rest;
149 if (skip_prefix(refname, "refs/", &rest)) {
150 char *buf;
151 int result;
152 size_t restlen = strlen(rest);
154 /* rest must not be empty, or start or end with "/" */
155 if (!restlen || *rest == '/' || rest[restlen - 1] == '/')
156 return 0;
159 * Does the refname try to escape refs/?
160 * For example: refs/foo/../bar is safe but refs/foo/../../bar
161 * is not.
163 buf = xmallocz(restlen);
164 result = !normalize_path_copy(buf, rest) && !strcmp(buf, rest);
165 free(buf);
166 return result;
169 do {
170 if (!isupper(*refname) && *refname != '_')
171 return 0;
172 refname++;
173 } while (*refname);
174 return 1;
178 * Return true if refname, which has the specified oid and flags, can
179 * be resolved to an object in the database. If the referred-to object
180 * does not exist, emit a warning and return false.
182 int ref_resolves_to_object(const char *refname,
183 const struct object_id *oid,
184 unsigned int flags)
186 if (flags & REF_ISBROKEN)
187 return 0;
188 if (!has_sha1_file(oid->hash)) {
189 error("%s does not point to a valid object!", refname);
190 return 0;
192 return 1;
195 char *refs_resolve_refdup(struct ref_store *refs,
196 const char *refname, int resolve_flags,
197 unsigned char *sha1, int *flags)
199 const char *result;
201 result = refs_resolve_ref_unsafe(refs, refname, resolve_flags,
202 sha1, flags);
203 return xstrdup_or_null(result);
206 char *resolve_refdup(const char *refname, int resolve_flags,
207 unsigned char *sha1, int *flags)
209 return refs_resolve_refdup(get_main_ref_store(),
210 refname, resolve_flags,
211 sha1, flags);
214 /* The argument to filter_refs */
215 struct ref_filter {
216 const char *pattern;
217 each_ref_fn *fn;
218 void *cb_data;
221 int refs_read_ref_full(struct ref_store *refs, const char *refname,
222 int resolve_flags, unsigned char *sha1, int *flags)
224 if (refs_resolve_ref_unsafe(refs, refname, resolve_flags, sha1, flags))
225 return 0;
226 return -1;
229 int read_ref_full(const char *refname, int resolve_flags, unsigned char *sha1, int *flags)
231 return refs_read_ref_full(get_main_ref_store(), refname,
232 resolve_flags, sha1, flags);
235 int read_ref(const char *refname, unsigned char *sha1)
237 return read_ref_full(refname, RESOLVE_REF_READING, sha1, NULL);
240 int ref_exists(const char *refname)
242 return !!resolve_ref_unsafe(refname, RESOLVE_REF_READING, NULL, NULL);
245 static int filter_refs(const char *refname, const struct object_id *oid,
246 int flags, void *data)
248 struct ref_filter *filter = (struct ref_filter *)data;
250 if (wildmatch(filter->pattern, refname, 0))
251 return 0;
252 return filter->fn(refname, oid, flags, filter->cb_data);
255 enum peel_status peel_object(const unsigned char *name, unsigned char *sha1)
257 struct object *o = lookup_unknown_object(name);
259 if (o->type == OBJ_NONE) {
260 int type = sha1_object_info(name, NULL);
261 if (type < 0 || !object_as_type(o, type, 0))
262 return PEEL_INVALID;
265 if (o->type != OBJ_TAG)
266 return PEEL_NON_TAG;
268 o = deref_tag_noverify(o);
269 if (!o)
270 return PEEL_INVALID;
272 hashcpy(sha1, o->oid.hash);
273 return PEEL_PEELED;
276 struct warn_if_dangling_data {
277 FILE *fp;
278 const char *refname;
279 const struct string_list *refnames;
280 const char *msg_fmt;
283 static int warn_if_dangling_symref(const char *refname, const struct object_id *oid,
284 int flags, void *cb_data)
286 struct warn_if_dangling_data *d = cb_data;
287 const char *resolves_to;
289 if (!(flags & REF_ISSYMREF))
290 return 0;
292 resolves_to = resolve_ref_unsafe(refname, 0, NULL, NULL);
293 if (!resolves_to
294 || (d->refname
295 ? strcmp(resolves_to, d->refname)
296 : !string_list_has_string(d->refnames, resolves_to))) {
297 return 0;
300 fprintf(d->fp, d->msg_fmt, refname);
301 fputc('\n', d->fp);
302 return 0;
305 void warn_dangling_symref(FILE *fp, const char *msg_fmt, const char *refname)
307 struct warn_if_dangling_data data;
309 data.fp = fp;
310 data.refname = refname;
311 data.refnames = NULL;
312 data.msg_fmt = msg_fmt;
313 for_each_rawref(warn_if_dangling_symref, &data);
316 void warn_dangling_symrefs(FILE *fp, const char *msg_fmt, const struct string_list *refnames)
318 struct warn_if_dangling_data data;
320 data.fp = fp;
321 data.refname = NULL;
322 data.refnames = refnames;
323 data.msg_fmt = msg_fmt;
324 for_each_rawref(warn_if_dangling_symref, &data);
327 int refs_for_each_tag_ref(struct ref_store *refs, each_ref_fn fn, void *cb_data)
329 return refs_for_each_ref_in(refs, "refs/tags/", fn, cb_data);
332 int for_each_tag_ref(each_ref_fn fn, void *cb_data)
334 return refs_for_each_tag_ref(get_main_ref_store(), fn, cb_data);
337 int refs_for_each_branch_ref(struct ref_store *refs, each_ref_fn fn, void *cb_data)
339 return refs_for_each_ref_in(refs, "refs/heads/", fn, cb_data);
342 int for_each_branch_ref(each_ref_fn fn, void *cb_data)
344 return refs_for_each_branch_ref(get_main_ref_store(), fn, cb_data);
347 int refs_for_each_remote_ref(struct ref_store *refs, each_ref_fn fn, void *cb_data)
349 return refs_for_each_ref_in(refs, "refs/remotes/", fn, cb_data);
352 int for_each_remote_ref(each_ref_fn fn, void *cb_data)
354 return refs_for_each_remote_ref(get_main_ref_store(), fn, cb_data);
357 int head_ref_namespaced(each_ref_fn fn, void *cb_data)
359 struct strbuf buf = STRBUF_INIT;
360 int ret = 0;
361 struct object_id oid;
362 int flag;
364 strbuf_addf(&buf, "%sHEAD", get_git_namespace());
365 if (!read_ref_full(buf.buf, RESOLVE_REF_READING, oid.hash, &flag))
366 ret = fn(buf.buf, &oid, flag, cb_data);
367 strbuf_release(&buf);
369 return ret;
372 int for_each_glob_ref_in(each_ref_fn fn, const char *pattern,
373 const char *prefix, void *cb_data)
375 struct strbuf real_pattern = STRBUF_INIT;
376 struct ref_filter filter;
377 int ret;
379 if (!prefix && !starts_with(pattern, "refs/"))
380 strbuf_addstr(&real_pattern, "refs/");
381 else if (prefix)
382 strbuf_addstr(&real_pattern, prefix);
383 strbuf_addstr(&real_pattern, pattern);
385 if (!has_glob_specials(pattern)) {
386 /* Append implied '/' '*' if not present. */
387 strbuf_complete(&real_pattern, '/');
388 /* No need to check for '*', there is none. */
389 strbuf_addch(&real_pattern, '*');
392 filter.pattern = real_pattern.buf;
393 filter.fn = fn;
394 filter.cb_data = cb_data;
395 ret = for_each_ref(filter_refs, &filter);
397 strbuf_release(&real_pattern);
398 return ret;
401 int for_each_glob_ref(each_ref_fn fn, const char *pattern, void *cb_data)
403 return for_each_glob_ref_in(fn, pattern, NULL, cb_data);
406 const char *prettify_refname(const char *name)
408 if (skip_prefix(name, "refs/heads/", &name) ||
409 skip_prefix(name, "refs/tags/", &name) ||
410 skip_prefix(name, "refs/remotes/", &name))
411 ; /* nothing */
412 return name;
415 static const char *ref_rev_parse_rules[] = {
416 "%.*s",
417 "refs/%.*s",
418 "refs/tags/%.*s",
419 "refs/heads/%.*s",
420 "refs/remotes/%.*s",
421 "refs/remotes/%.*s/HEAD",
422 NULL
425 int refname_match(const char *abbrev_name, const char *full_name)
427 const char **p;
428 const int abbrev_name_len = strlen(abbrev_name);
430 for (p = ref_rev_parse_rules; *p; p++) {
431 if (!strcmp(full_name, mkpath(*p, abbrev_name_len, abbrev_name))) {
432 return 1;
436 return 0;
440 * *string and *len will only be substituted, and *string returned (for
441 * later free()ing) if the string passed in is a magic short-hand form
442 * to name a branch.
444 static char *substitute_branch_name(const char **string, int *len)
446 struct strbuf buf = STRBUF_INIT;
447 int ret = interpret_branch_name(*string, *len, &buf, 0);
449 if (ret == *len) {
450 size_t size;
451 *string = strbuf_detach(&buf, &size);
452 *len = size;
453 return (char *)*string;
456 return NULL;
459 int dwim_ref(const char *str, int len, unsigned char *sha1, char **ref)
461 char *last_branch = substitute_branch_name(&str, &len);
462 int refs_found = expand_ref(str, len, sha1, ref);
463 free(last_branch);
464 return refs_found;
467 int expand_ref(const char *str, int len, unsigned char *sha1, char **ref)
469 const char **p, *r;
470 int refs_found = 0;
471 struct strbuf fullref = STRBUF_INIT;
473 *ref = NULL;
474 for (p = ref_rev_parse_rules; *p; p++) {
475 unsigned char sha1_from_ref[20];
476 unsigned char *this_result;
477 int flag;
479 this_result = refs_found ? sha1_from_ref : sha1;
480 strbuf_reset(&fullref);
481 strbuf_addf(&fullref, *p, len, str);
482 r = resolve_ref_unsafe(fullref.buf, RESOLVE_REF_READING,
483 this_result, &flag);
484 if (r) {
485 if (!refs_found++)
486 *ref = xstrdup(r);
487 if (!warn_ambiguous_refs)
488 break;
489 } else if ((flag & REF_ISSYMREF) && strcmp(fullref.buf, "HEAD")) {
490 warning("ignoring dangling symref %s.", fullref.buf);
491 } else if ((flag & REF_ISBROKEN) && strchr(fullref.buf, '/')) {
492 warning("ignoring broken ref %s.", fullref.buf);
495 strbuf_release(&fullref);
496 return refs_found;
499 int dwim_log(const char *str, int len, unsigned char *sha1, char **log)
501 char *last_branch = substitute_branch_name(&str, &len);
502 const char **p;
503 int logs_found = 0;
504 struct strbuf path = STRBUF_INIT;
506 *log = NULL;
507 for (p = ref_rev_parse_rules; *p; p++) {
508 unsigned char hash[20];
509 const char *ref, *it;
511 strbuf_reset(&path);
512 strbuf_addf(&path, *p, len, str);
513 ref = resolve_ref_unsafe(path.buf, RESOLVE_REF_READING,
514 hash, NULL);
515 if (!ref)
516 continue;
517 if (reflog_exists(path.buf))
518 it = path.buf;
519 else if (strcmp(ref, path.buf) && reflog_exists(ref))
520 it = ref;
521 else
522 continue;
523 if (!logs_found++) {
524 *log = xstrdup(it);
525 hashcpy(sha1, hash);
527 if (!warn_ambiguous_refs)
528 break;
530 strbuf_release(&path);
531 free(last_branch);
532 return logs_found;
535 static int is_per_worktree_ref(const char *refname)
537 return !strcmp(refname, "HEAD") ||
538 starts_with(refname, "refs/bisect/");
541 static int is_pseudoref_syntax(const char *refname)
543 const char *c;
545 for (c = refname; *c; c++) {
546 if (!isupper(*c) && *c != '-' && *c != '_')
547 return 0;
550 return 1;
553 enum ref_type ref_type(const char *refname)
555 if (is_per_worktree_ref(refname))
556 return REF_TYPE_PER_WORKTREE;
557 if (is_pseudoref_syntax(refname))
558 return REF_TYPE_PSEUDOREF;
559 return REF_TYPE_NORMAL;
562 long get_files_ref_lock_timeout_ms(void)
564 static int configured = 0;
566 /* The default timeout is 100 ms: */
567 static int timeout_ms = 100;
569 if (!configured) {
570 git_config_get_int("core.filesreflocktimeout", &timeout_ms);
571 configured = 1;
574 return timeout_ms;
577 static int write_pseudoref(const char *pseudoref, const unsigned char *sha1,
578 const unsigned char *old_sha1, struct strbuf *err)
580 const char *filename;
581 int fd;
582 static struct lock_file lock;
583 struct strbuf buf = STRBUF_INIT;
584 int ret = -1;
586 strbuf_addf(&buf, "%s\n", sha1_to_hex(sha1));
588 filename = git_path("%s", pseudoref);
589 fd = hold_lock_file_for_update_timeout(&lock, filename,
590 LOCK_DIE_ON_ERROR,
591 get_files_ref_lock_timeout_ms());
592 if (fd < 0) {
593 strbuf_addf(err, "could not open '%s' for writing: %s",
594 filename, strerror(errno));
595 goto done;
598 if (old_sha1) {
599 unsigned char actual_old_sha1[20];
601 if (read_ref(pseudoref, actual_old_sha1))
602 die("could not read ref '%s'", pseudoref);
603 if (hashcmp(actual_old_sha1, old_sha1)) {
604 strbuf_addf(err, "unexpected sha1 when writing '%s'", pseudoref);
605 rollback_lock_file(&lock);
606 goto done;
610 if (write_in_full(fd, buf.buf, buf.len) != buf.len) {
611 strbuf_addf(err, "could not write to '%s'", filename);
612 rollback_lock_file(&lock);
613 goto done;
616 commit_lock_file(&lock);
617 ret = 0;
618 done:
619 strbuf_release(&buf);
620 return ret;
623 static int delete_pseudoref(const char *pseudoref, const unsigned char *old_sha1)
625 static struct lock_file lock;
626 const char *filename;
628 filename = git_path("%s", pseudoref);
630 if (old_sha1 && !is_null_sha1(old_sha1)) {
631 int fd;
632 unsigned char actual_old_sha1[20];
634 fd = hold_lock_file_for_update_timeout(
635 &lock, filename, LOCK_DIE_ON_ERROR,
636 get_files_ref_lock_timeout_ms());
637 if (fd < 0)
638 die_errno(_("Could not open '%s' for writing"), filename);
639 if (read_ref(pseudoref, actual_old_sha1))
640 die("could not read ref '%s'", pseudoref);
641 if (hashcmp(actual_old_sha1, old_sha1)) {
642 warning("Unexpected sha1 when deleting %s", pseudoref);
643 rollback_lock_file(&lock);
644 return -1;
647 unlink(filename);
648 rollback_lock_file(&lock);
649 } else {
650 unlink(filename);
653 return 0;
656 int refs_delete_ref(struct ref_store *refs, const char *msg,
657 const char *refname,
658 const unsigned char *old_sha1,
659 unsigned int flags)
661 struct ref_transaction *transaction;
662 struct strbuf err = STRBUF_INIT;
664 if (ref_type(refname) == REF_TYPE_PSEUDOREF) {
665 assert(refs == get_main_ref_store());
666 return delete_pseudoref(refname, old_sha1);
669 transaction = ref_store_transaction_begin(refs, &err);
670 if (!transaction ||
671 ref_transaction_delete(transaction, refname, old_sha1,
672 flags, msg, &err) ||
673 ref_transaction_commit(transaction, &err)) {
674 error("%s", err.buf);
675 ref_transaction_free(transaction);
676 strbuf_release(&err);
677 return 1;
679 ref_transaction_free(transaction);
680 strbuf_release(&err);
681 return 0;
684 int delete_ref(const char *msg, const char *refname,
685 const unsigned char *old_sha1, unsigned int flags)
687 return refs_delete_ref(get_main_ref_store(), msg, refname,
688 old_sha1, flags);
691 int copy_reflog_msg(char *buf, const char *msg)
693 char *cp = buf;
694 char c;
695 int wasspace = 1;
697 *cp++ = '\t';
698 while ((c = *msg++)) {
699 if (wasspace && isspace(c))
700 continue;
701 wasspace = isspace(c);
702 if (wasspace)
703 c = ' ';
704 *cp++ = c;
706 while (buf < cp && isspace(cp[-1]))
707 cp--;
708 *cp++ = '\n';
709 return cp - buf;
712 int should_autocreate_reflog(const char *refname)
714 switch (log_all_ref_updates) {
715 case LOG_REFS_ALWAYS:
716 return 1;
717 case LOG_REFS_NORMAL:
718 return starts_with(refname, "refs/heads/") ||
719 starts_with(refname, "refs/remotes/") ||
720 starts_with(refname, "refs/notes/") ||
721 !strcmp(refname, "HEAD");
722 default:
723 return 0;
727 int is_branch(const char *refname)
729 return !strcmp(refname, "HEAD") || starts_with(refname, "refs/heads/");
732 struct read_ref_at_cb {
733 const char *refname;
734 timestamp_t at_time;
735 int cnt;
736 int reccnt;
737 unsigned char *sha1;
738 int found_it;
740 unsigned char osha1[20];
741 unsigned char nsha1[20];
742 int tz;
743 timestamp_t date;
744 char **msg;
745 timestamp_t *cutoff_time;
746 int *cutoff_tz;
747 int *cutoff_cnt;
750 static int read_ref_at_ent(struct object_id *ooid, struct object_id *noid,
751 const char *email, timestamp_t timestamp, int tz,
752 const char *message, void *cb_data)
754 struct read_ref_at_cb *cb = cb_data;
756 cb->reccnt++;
757 cb->tz = tz;
758 cb->date = timestamp;
760 if (timestamp <= cb->at_time || cb->cnt == 0) {
761 if (cb->msg)
762 *cb->msg = xstrdup(message);
763 if (cb->cutoff_time)
764 *cb->cutoff_time = timestamp;
765 if (cb->cutoff_tz)
766 *cb->cutoff_tz = tz;
767 if (cb->cutoff_cnt)
768 *cb->cutoff_cnt = cb->reccnt - 1;
770 * we have not yet updated cb->[n|o]sha1 so they still
771 * hold the values for the previous record.
773 if (!is_null_sha1(cb->osha1)) {
774 hashcpy(cb->sha1, noid->hash);
775 if (hashcmp(cb->osha1, noid->hash))
776 warning("Log for ref %s has gap after %s.",
777 cb->refname, show_date(cb->date, cb->tz, DATE_MODE(RFC2822)));
779 else if (cb->date == cb->at_time)
780 hashcpy(cb->sha1, noid->hash);
781 else if (hashcmp(noid->hash, cb->sha1))
782 warning("Log for ref %s unexpectedly ended on %s.",
783 cb->refname, show_date(cb->date, cb->tz,
784 DATE_MODE(RFC2822)));
785 hashcpy(cb->osha1, ooid->hash);
786 hashcpy(cb->nsha1, noid->hash);
787 cb->found_it = 1;
788 return 1;
790 hashcpy(cb->osha1, ooid->hash);
791 hashcpy(cb->nsha1, noid->hash);
792 if (cb->cnt > 0)
793 cb->cnt--;
794 return 0;
797 static int read_ref_at_ent_oldest(struct object_id *ooid, struct object_id *noid,
798 const char *email, timestamp_t timestamp,
799 int tz, const char *message, void *cb_data)
801 struct read_ref_at_cb *cb = cb_data;
803 if (cb->msg)
804 *cb->msg = xstrdup(message);
805 if (cb->cutoff_time)
806 *cb->cutoff_time = timestamp;
807 if (cb->cutoff_tz)
808 *cb->cutoff_tz = tz;
809 if (cb->cutoff_cnt)
810 *cb->cutoff_cnt = cb->reccnt;
811 hashcpy(cb->sha1, ooid->hash);
812 if (is_null_sha1(cb->sha1))
813 hashcpy(cb->sha1, noid->hash);
814 /* We just want the first entry */
815 return 1;
818 int read_ref_at(const char *refname, unsigned int flags, timestamp_t at_time, int cnt,
819 unsigned char *sha1, char **msg,
820 timestamp_t *cutoff_time, int *cutoff_tz, int *cutoff_cnt)
822 struct read_ref_at_cb cb;
824 memset(&cb, 0, sizeof(cb));
825 cb.refname = refname;
826 cb.at_time = at_time;
827 cb.cnt = cnt;
828 cb.msg = msg;
829 cb.cutoff_time = cutoff_time;
830 cb.cutoff_tz = cutoff_tz;
831 cb.cutoff_cnt = cutoff_cnt;
832 cb.sha1 = sha1;
834 for_each_reflog_ent_reverse(refname, read_ref_at_ent, &cb);
836 if (!cb.reccnt) {
837 if (flags & GET_OID_QUIETLY)
838 exit(128);
839 else
840 die("Log for %s is empty.", refname);
842 if (cb.found_it)
843 return 0;
845 for_each_reflog_ent(refname, read_ref_at_ent_oldest, &cb);
847 return 1;
850 struct ref_transaction *ref_store_transaction_begin(struct ref_store *refs,
851 struct strbuf *err)
853 struct ref_transaction *tr;
854 assert(err);
856 tr = xcalloc(1, sizeof(struct ref_transaction));
857 tr->ref_store = refs;
858 return tr;
861 struct ref_transaction *ref_transaction_begin(struct strbuf *err)
863 return ref_store_transaction_begin(get_main_ref_store(), err);
866 void ref_transaction_free(struct ref_transaction *transaction)
868 size_t i;
870 if (!transaction)
871 return;
873 switch (transaction->state) {
874 case REF_TRANSACTION_OPEN:
875 case REF_TRANSACTION_CLOSED:
876 /* OK */
877 break;
878 case REF_TRANSACTION_PREPARED:
879 die("BUG: free called on a prepared reference transaction");
880 break;
881 default:
882 die("BUG: unexpected reference transaction state");
883 break;
886 for (i = 0; i < transaction->nr; i++) {
887 free(transaction->updates[i]->msg);
888 free(transaction->updates[i]);
890 free(transaction->updates);
891 free(transaction);
894 struct ref_update *ref_transaction_add_update(
895 struct ref_transaction *transaction,
896 const char *refname, unsigned int flags,
897 const unsigned char *new_sha1,
898 const unsigned char *old_sha1,
899 const char *msg)
901 struct ref_update *update;
903 if (transaction->state != REF_TRANSACTION_OPEN)
904 die("BUG: update called for transaction that is not open");
906 if ((flags & REF_ISPRUNING) && !(flags & REF_NODEREF))
907 die("BUG: REF_ISPRUNING set without REF_NODEREF");
909 FLEX_ALLOC_STR(update, refname, refname);
910 ALLOC_GROW(transaction->updates, transaction->nr + 1, transaction->alloc);
911 transaction->updates[transaction->nr++] = update;
913 update->flags = flags;
915 if (flags & REF_HAVE_NEW)
916 hashcpy(update->new_oid.hash, new_sha1);
917 if (flags & REF_HAVE_OLD)
918 hashcpy(update->old_oid.hash, old_sha1);
919 update->msg = xstrdup_or_null(msg);
920 return update;
923 int ref_transaction_update(struct ref_transaction *transaction,
924 const char *refname,
925 const unsigned char *new_sha1,
926 const unsigned char *old_sha1,
927 unsigned int flags, const char *msg,
928 struct strbuf *err)
930 assert(err);
932 if ((new_sha1 && !is_null_sha1(new_sha1)) ?
933 check_refname_format(refname, REFNAME_ALLOW_ONELEVEL) :
934 !refname_is_safe(refname)) {
935 strbuf_addf(err, "refusing to update ref with bad name '%s'",
936 refname);
937 return -1;
940 flags |= (new_sha1 ? REF_HAVE_NEW : 0) | (old_sha1 ? REF_HAVE_OLD : 0);
942 ref_transaction_add_update(transaction, refname, flags,
943 new_sha1, old_sha1, msg);
944 return 0;
947 int ref_transaction_create(struct ref_transaction *transaction,
948 const char *refname,
949 const unsigned char *new_sha1,
950 unsigned int flags, const char *msg,
951 struct strbuf *err)
953 if (!new_sha1 || is_null_sha1(new_sha1))
954 die("BUG: create called without valid new_sha1");
955 return ref_transaction_update(transaction, refname, new_sha1,
956 null_sha1, flags, msg, err);
959 int ref_transaction_delete(struct ref_transaction *transaction,
960 const char *refname,
961 const unsigned char *old_sha1,
962 unsigned int flags, const char *msg,
963 struct strbuf *err)
965 if (old_sha1 && is_null_sha1(old_sha1))
966 die("BUG: delete called with old_sha1 set to zeros");
967 return ref_transaction_update(transaction, refname,
968 null_sha1, old_sha1,
969 flags, msg, err);
972 int ref_transaction_verify(struct ref_transaction *transaction,
973 const char *refname,
974 const unsigned char *old_sha1,
975 unsigned int flags,
976 struct strbuf *err)
978 if (!old_sha1)
979 die("BUG: verify called with old_sha1 set to NULL");
980 return ref_transaction_update(transaction, refname,
981 NULL, old_sha1,
982 flags, NULL, err);
985 int update_ref_oid(const char *msg, const char *refname,
986 const struct object_id *new_oid, const struct object_id *old_oid,
987 unsigned int flags, enum action_on_err onerr)
989 return update_ref(msg, refname, new_oid ? new_oid->hash : NULL,
990 old_oid ? old_oid->hash : NULL, flags, onerr);
993 int refs_update_ref(struct ref_store *refs, const char *msg,
994 const char *refname, const unsigned char *new_sha1,
995 const unsigned char *old_sha1, unsigned int flags,
996 enum action_on_err onerr)
998 struct ref_transaction *t = NULL;
999 struct strbuf err = STRBUF_INIT;
1000 int ret = 0;
1002 if (ref_type(refname) == REF_TYPE_PSEUDOREF) {
1003 assert(refs == get_main_ref_store());
1004 ret = write_pseudoref(refname, new_sha1, old_sha1, &err);
1005 } else {
1006 t = ref_store_transaction_begin(refs, &err);
1007 if (!t ||
1008 ref_transaction_update(t, refname, new_sha1, old_sha1,
1009 flags, msg, &err) ||
1010 ref_transaction_commit(t, &err)) {
1011 ret = 1;
1012 ref_transaction_free(t);
1015 if (ret) {
1016 const char *str = "update_ref failed for ref '%s': %s";
1018 switch (onerr) {
1019 case UPDATE_REFS_MSG_ON_ERR:
1020 error(str, refname, err.buf);
1021 break;
1022 case UPDATE_REFS_DIE_ON_ERR:
1023 die(str, refname, err.buf);
1024 break;
1025 case UPDATE_REFS_QUIET_ON_ERR:
1026 break;
1028 strbuf_release(&err);
1029 return 1;
1031 strbuf_release(&err);
1032 if (t)
1033 ref_transaction_free(t);
1034 return 0;
1037 int update_ref(const char *msg, const char *refname,
1038 const unsigned char *new_sha1,
1039 const unsigned char *old_sha1,
1040 unsigned int flags, enum action_on_err onerr)
1042 return refs_update_ref(get_main_ref_store(), msg, refname, new_sha1,
1043 old_sha1, flags, onerr);
1046 char *shorten_unambiguous_ref(const char *refname, int strict)
1048 int i;
1049 static char **scanf_fmts;
1050 static int nr_rules;
1051 char *short_name;
1052 struct strbuf resolved_buf = STRBUF_INIT;
1054 if (!nr_rules) {
1056 * Pre-generate scanf formats from ref_rev_parse_rules[].
1057 * Generate a format suitable for scanf from a
1058 * ref_rev_parse_rules rule by interpolating "%s" at the
1059 * location of the "%.*s".
1061 size_t total_len = 0;
1062 size_t offset = 0;
1064 /* the rule list is NULL terminated, count them first */
1065 for (nr_rules = 0; ref_rev_parse_rules[nr_rules]; nr_rules++)
1066 /* -2 for strlen("%.*s") - strlen("%s"); +1 for NUL */
1067 total_len += strlen(ref_rev_parse_rules[nr_rules]) - 2 + 1;
1069 scanf_fmts = xmalloc(st_add(st_mult(sizeof(char *), nr_rules), total_len));
1071 offset = 0;
1072 for (i = 0; i < nr_rules; i++) {
1073 assert(offset < total_len);
1074 scanf_fmts[i] = (char *)&scanf_fmts[nr_rules] + offset;
1075 offset += snprintf(scanf_fmts[i], total_len - offset,
1076 ref_rev_parse_rules[i], 2, "%s") + 1;
1080 /* bail out if there are no rules */
1081 if (!nr_rules)
1082 return xstrdup(refname);
1084 /* buffer for scanf result, at most refname must fit */
1085 short_name = xstrdup(refname);
1087 /* skip first rule, it will always match */
1088 for (i = nr_rules - 1; i > 0 ; --i) {
1089 int j;
1090 int rules_to_fail = i;
1091 int short_name_len;
1093 if (1 != sscanf(refname, scanf_fmts[i], short_name))
1094 continue;
1096 short_name_len = strlen(short_name);
1099 * in strict mode, all (except the matched one) rules
1100 * must fail to resolve to a valid non-ambiguous ref
1102 if (strict)
1103 rules_to_fail = nr_rules;
1106 * check if the short name resolves to a valid ref,
1107 * but use only rules prior to the matched one
1109 for (j = 0; j < rules_to_fail; j++) {
1110 const char *rule = ref_rev_parse_rules[j];
1112 /* skip matched rule */
1113 if (i == j)
1114 continue;
1117 * the short name is ambiguous, if it resolves
1118 * (with this previous rule) to a valid ref
1119 * read_ref() returns 0 on success
1121 strbuf_reset(&resolved_buf);
1122 strbuf_addf(&resolved_buf, rule,
1123 short_name_len, short_name);
1124 if (ref_exists(resolved_buf.buf))
1125 break;
1129 * short name is non-ambiguous if all previous rules
1130 * haven't resolved to a valid ref
1132 if (j == rules_to_fail) {
1133 strbuf_release(&resolved_buf);
1134 return short_name;
1138 strbuf_release(&resolved_buf);
1139 free(short_name);
1140 return xstrdup(refname);
1143 static struct string_list *hide_refs;
1145 int parse_hide_refs_config(const char *var, const char *value, const char *section)
1147 const char *key;
1148 if (!strcmp("transfer.hiderefs", var) ||
1149 (!parse_config_key(var, section, NULL, NULL, &key) &&
1150 !strcmp(key, "hiderefs"))) {
1151 char *ref;
1152 int len;
1154 if (!value)
1155 return config_error_nonbool(var);
1156 ref = xstrdup(value);
1157 len = strlen(ref);
1158 while (len && ref[len - 1] == '/')
1159 ref[--len] = '\0';
1160 if (!hide_refs) {
1161 hide_refs = xcalloc(1, sizeof(*hide_refs));
1162 hide_refs->strdup_strings = 1;
1164 string_list_append(hide_refs, ref);
1166 return 0;
1169 int ref_is_hidden(const char *refname, const char *refname_full)
1171 int i;
1173 if (!hide_refs)
1174 return 0;
1175 for (i = hide_refs->nr - 1; i >= 0; i--) {
1176 const char *match = hide_refs->items[i].string;
1177 const char *subject;
1178 int neg = 0;
1179 const char *p;
1181 if (*match == '!') {
1182 neg = 1;
1183 match++;
1186 if (*match == '^') {
1187 subject = refname_full;
1188 match++;
1189 } else {
1190 subject = refname;
1193 /* refname can be NULL when namespaces are used. */
1194 if (subject &&
1195 skip_prefix(subject, match, &p) &&
1196 (!*p || *p == '/'))
1197 return !neg;
1199 return 0;
1202 const char *find_descendant_ref(const char *dirname,
1203 const struct string_list *extras,
1204 const struct string_list *skip)
1206 int pos;
1208 if (!extras)
1209 return NULL;
1212 * Look at the place where dirname would be inserted into
1213 * extras. If there is an entry at that position that starts
1214 * with dirname (remember, dirname includes the trailing
1215 * slash) and is not in skip, then we have a conflict.
1217 for (pos = string_list_find_insert_index(extras, dirname, 0);
1218 pos < extras->nr; pos++) {
1219 const char *extra_refname = extras->items[pos].string;
1221 if (!starts_with(extra_refname, dirname))
1222 break;
1224 if (!skip || !string_list_has_string(skip, extra_refname))
1225 return extra_refname;
1227 return NULL;
1230 int refs_rename_ref_available(struct ref_store *refs,
1231 const char *old_refname,
1232 const char *new_refname)
1234 struct string_list skip = STRING_LIST_INIT_NODUP;
1235 struct strbuf err = STRBUF_INIT;
1236 int ok;
1238 string_list_insert(&skip, old_refname);
1239 ok = !refs_verify_refname_available(refs, new_refname,
1240 NULL, &skip, &err);
1241 if (!ok)
1242 error("%s", err.buf);
1244 string_list_clear(&skip, 0);
1245 strbuf_release(&err);
1246 return ok;
1249 int refs_head_ref(struct ref_store *refs, each_ref_fn fn, void *cb_data)
1251 struct object_id oid;
1252 int flag;
1254 if (!refs_read_ref_full(refs, "HEAD", RESOLVE_REF_READING,
1255 oid.hash, &flag))
1256 return fn("HEAD", &oid, flag, cb_data);
1258 return 0;
1261 int head_ref(each_ref_fn fn, void *cb_data)
1263 return refs_head_ref(get_main_ref_store(), fn, cb_data);
1266 struct ref_iterator *refs_ref_iterator_begin(
1267 struct ref_store *refs,
1268 const char *prefix, int trim, int flags)
1270 struct ref_iterator *iter;
1272 if (ref_paranoia < 0)
1273 ref_paranoia = git_env_bool("GIT_REF_PARANOIA", 0);
1274 if (ref_paranoia)
1275 flags |= DO_FOR_EACH_INCLUDE_BROKEN;
1277 iter = refs->be->iterator_begin(refs, prefix, flags);
1280 * `iterator_begin()` already takes care of prefix, but we
1281 * might need to do some trimming:
1283 if (trim)
1284 iter = prefix_ref_iterator_begin(iter, "", trim);
1286 return iter;
1290 * Call fn for each reference in the specified submodule for which the
1291 * refname begins with prefix. If trim is non-zero, then trim that
1292 * many characters off the beginning of each refname before passing
1293 * the refname to fn. flags can be DO_FOR_EACH_INCLUDE_BROKEN to
1294 * include broken references in the iteration. If fn ever returns a
1295 * non-zero value, stop the iteration and return that value;
1296 * otherwise, return 0.
1298 static int do_for_each_ref(struct ref_store *refs, const char *prefix,
1299 each_ref_fn fn, int trim, int flags, void *cb_data)
1301 struct ref_iterator *iter;
1303 if (!refs)
1304 return 0;
1306 iter = refs_ref_iterator_begin(refs, prefix, trim, flags);
1308 return do_for_each_ref_iterator(iter, fn, cb_data);
1311 int refs_for_each_ref(struct ref_store *refs, each_ref_fn fn, void *cb_data)
1313 return do_for_each_ref(refs, "", fn, 0, 0, cb_data);
1316 int for_each_ref(each_ref_fn fn, void *cb_data)
1318 return refs_for_each_ref(get_main_ref_store(), fn, cb_data);
1321 int refs_for_each_ref_in(struct ref_store *refs, const char *prefix,
1322 each_ref_fn fn, void *cb_data)
1324 return do_for_each_ref(refs, prefix, fn, strlen(prefix), 0, cb_data);
1327 int for_each_ref_in(const char *prefix, each_ref_fn fn, void *cb_data)
1329 return refs_for_each_ref_in(get_main_ref_store(), prefix, fn, cb_data);
1332 int for_each_fullref_in(const char *prefix, each_ref_fn fn, void *cb_data, unsigned int broken)
1334 unsigned int flag = 0;
1336 if (broken)
1337 flag = DO_FOR_EACH_INCLUDE_BROKEN;
1338 return do_for_each_ref(get_main_ref_store(),
1339 prefix, fn, 0, flag, cb_data);
1342 int refs_for_each_fullref_in(struct ref_store *refs, const char *prefix,
1343 each_ref_fn fn, void *cb_data,
1344 unsigned int broken)
1346 unsigned int flag = 0;
1348 if (broken)
1349 flag = DO_FOR_EACH_INCLUDE_BROKEN;
1350 return do_for_each_ref(refs, prefix, fn, 0, flag, cb_data);
1353 int for_each_replace_ref(each_ref_fn fn, void *cb_data)
1355 return do_for_each_ref(get_main_ref_store(),
1356 git_replace_ref_base, fn,
1357 strlen(git_replace_ref_base),
1358 0, cb_data);
1361 int for_each_namespaced_ref(each_ref_fn fn, void *cb_data)
1363 struct strbuf buf = STRBUF_INIT;
1364 int ret;
1365 strbuf_addf(&buf, "%srefs/", get_git_namespace());
1366 ret = do_for_each_ref(get_main_ref_store(),
1367 buf.buf, fn, 0, 0, cb_data);
1368 strbuf_release(&buf);
1369 return ret;
1372 int refs_for_each_rawref(struct ref_store *refs, each_ref_fn fn, void *cb_data)
1374 return do_for_each_ref(refs, "", fn, 0,
1375 DO_FOR_EACH_INCLUDE_BROKEN, cb_data);
1378 int for_each_rawref(each_ref_fn fn, void *cb_data)
1380 return refs_for_each_rawref(get_main_ref_store(), fn, cb_data);
1383 int refs_read_raw_ref(struct ref_store *ref_store,
1384 const char *refname, unsigned char *sha1,
1385 struct strbuf *referent, unsigned int *type)
1387 return ref_store->be->read_raw_ref(ref_store, refname, sha1, referent, type);
1390 /* This function needs to return a meaningful errno on failure */
1391 const char *refs_resolve_ref_unsafe(struct ref_store *refs,
1392 const char *refname,
1393 int resolve_flags,
1394 unsigned char *sha1, int *flags)
1396 static struct strbuf sb_refname = STRBUF_INIT;
1397 struct object_id unused_oid;
1398 int unused_flags;
1399 int symref_count;
1401 if (!sha1)
1402 sha1 = unused_oid.hash;
1403 if (!flags)
1404 flags = &unused_flags;
1406 *flags = 0;
1408 if (check_refname_format(refname, REFNAME_ALLOW_ONELEVEL)) {
1409 if (!(resolve_flags & RESOLVE_REF_ALLOW_BAD_NAME) ||
1410 !refname_is_safe(refname)) {
1411 errno = EINVAL;
1412 return NULL;
1416 * dwim_ref() uses REF_ISBROKEN to distinguish between
1417 * missing refs and refs that were present but invalid,
1418 * to complain about the latter to stderr.
1420 * We don't know whether the ref exists, so don't set
1421 * REF_ISBROKEN yet.
1423 *flags |= REF_BAD_NAME;
1426 for (symref_count = 0; symref_count < SYMREF_MAXDEPTH; symref_count++) {
1427 unsigned int read_flags = 0;
1429 if (refs_read_raw_ref(refs, refname,
1430 sha1, &sb_refname, &read_flags)) {
1431 *flags |= read_flags;
1432 if (errno != ENOENT || (resolve_flags & RESOLVE_REF_READING))
1433 return NULL;
1434 hashclr(sha1);
1435 if (*flags & REF_BAD_NAME)
1436 *flags |= REF_ISBROKEN;
1437 return refname;
1440 *flags |= read_flags;
1442 if (!(read_flags & REF_ISSYMREF)) {
1443 if (*flags & REF_BAD_NAME) {
1444 hashclr(sha1);
1445 *flags |= REF_ISBROKEN;
1447 return refname;
1450 refname = sb_refname.buf;
1451 if (resolve_flags & RESOLVE_REF_NO_RECURSE) {
1452 hashclr(sha1);
1453 return refname;
1455 if (check_refname_format(refname, REFNAME_ALLOW_ONELEVEL)) {
1456 if (!(resolve_flags & RESOLVE_REF_ALLOW_BAD_NAME) ||
1457 !refname_is_safe(refname)) {
1458 errno = EINVAL;
1459 return NULL;
1462 *flags |= REF_ISBROKEN | REF_BAD_NAME;
1466 errno = ELOOP;
1467 return NULL;
1470 /* backend functions */
1471 int refs_init_db(struct strbuf *err)
1473 struct ref_store *refs = get_main_ref_store();
1475 return refs->be->init_db(refs, err);
1478 const char *resolve_ref_unsafe(const char *refname, int resolve_flags,
1479 unsigned char *sha1, int *flags)
1481 return refs_resolve_ref_unsafe(get_main_ref_store(), refname,
1482 resolve_flags, sha1, flags);
1485 int resolve_gitlink_ref(const char *submodule, const char *refname,
1486 unsigned char *sha1)
1488 struct ref_store *refs;
1489 int flags;
1491 refs = get_submodule_ref_store(submodule);
1493 if (!refs)
1494 return -1;
1496 if (!refs_resolve_ref_unsafe(refs, refname, 0, sha1, &flags) ||
1497 is_null_sha1(sha1))
1498 return -1;
1499 return 0;
1502 struct ref_store_hash_entry
1504 struct hashmap_entry ent; /* must be the first member! */
1506 struct ref_store *refs;
1508 /* NUL-terminated identifier of the ref store: */
1509 char name[FLEX_ARRAY];
1512 static int ref_store_hash_cmp(const void *unused_cmp_data,
1513 const void *entry, const void *entry_or_key,
1514 const void *keydata)
1516 const struct ref_store_hash_entry *e1 = entry, *e2 = entry_or_key;
1517 const char *name = keydata ? keydata : e2->name;
1519 return strcmp(e1->name, name);
1522 static struct ref_store_hash_entry *alloc_ref_store_hash_entry(
1523 const char *name, struct ref_store *refs)
1525 struct ref_store_hash_entry *entry;
1527 FLEX_ALLOC_STR(entry, name, name);
1528 hashmap_entry_init(entry, strhash(name));
1529 entry->refs = refs;
1530 return entry;
1533 /* A pointer to the ref_store for the main repository: */
1534 static struct ref_store *main_ref_store;
1536 /* A hashmap of ref_stores, stored by submodule name: */
1537 static struct hashmap submodule_ref_stores;
1539 /* A hashmap of ref_stores, stored by worktree id: */
1540 static struct hashmap worktree_ref_stores;
1543 * Look up a ref store by name. If that ref_store hasn't been
1544 * registered yet, return NULL.
1546 static struct ref_store *lookup_ref_store_map(struct hashmap *map,
1547 const char *name)
1549 struct ref_store_hash_entry *entry;
1551 if (!map->tablesize)
1552 /* It's initialized on demand in register_ref_store(). */
1553 return NULL;
1555 entry = hashmap_get_from_hash(map, strhash(name), name);
1556 return entry ? entry->refs : NULL;
1560 * Create, record, and return a ref_store instance for the specified
1561 * gitdir.
1563 static struct ref_store *ref_store_init(const char *gitdir,
1564 unsigned int flags)
1566 const char *be_name = "files";
1567 struct ref_storage_be *be = find_ref_storage_backend(be_name);
1568 struct ref_store *refs;
1570 if (!be)
1571 die("BUG: reference backend %s is unknown", be_name);
1573 refs = be->init(gitdir, flags);
1574 return refs;
1577 struct ref_store *get_main_ref_store(void)
1579 if (main_ref_store)
1580 return main_ref_store;
1582 main_ref_store = ref_store_init(get_git_dir(), REF_STORE_ALL_CAPS);
1583 return main_ref_store;
1587 * Associate a ref store with a name. It is a fatal error to call this
1588 * function twice for the same name.
1590 static void register_ref_store_map(struct hashmap *map,
1591 const char *type,
1592 struct ref_store *refs,
1593 const char *name)
1595 if (!map->tablesize)
1596 hashmap_init(map, ref_store_hash_cmp, NULL, 0);
1598 if (hashmap_put(map, alloc_ref_store_hash_entry(name, refs)))
1599 die("BUG: %s ref_store '%s' initialized twice", type, name);
1602 struct ref_store *get_submodule_ref_store(const char *submodule)
1604 struct strbuf submodule_sb = STRBUF_INIT;
1605 struct ref_store *refs;
1606 char *to_free = NULL;
1607 size_t len;
1609 if (!submodule)
1610 return NULL;
1612 len = strlen(submodule);
1613 while (len && is_dir_sep(submodule[len - 1]))
1614 len--;
1615 if (!len)
1616 return NULL;
1618 if (submodule[len])
1619 /* We need to strip off one or more trailing slashes */
1620 submodule = to_free = xmemdupz(submodule, len);
1622 refs = lookup_ref_store_map(&submodule_ref_stores, submodule);
1623 if (refs)
1624 goto done;
1626 strbuf_addstr(&submodule_sb, submodule);
1627 if (!is_nonbare_repository_dir(&submodule_sb))
1628 goto done;
1630 if (submodule_to_gitdir(&submodule_sb, submodule))
1631 goto done;
1633 /* assume that add_submodule_odb() has been called */
1634 refs = ref_store_init(submodule_sb.buf,
1635 REF_STORE_READ | REF_STORE_ODB);
1636 register_ref_store_map(&submodule_ref_stores, "submodule",
1637 refs, submodule);
1639 done:
1640 strbuf_release(&submodule_sb);
1641 free(to_free);
1643 return refs;
1646 struct ref_store *get_worktree_ref_store(const struct worktree *wt)
1648 struct ref_store *refs;
1649 const char *id;
1651 if (wt->is_current)
1652 return get_main_ref_store();
1654 id = wt->id ? wt->id : "/";
1655 refs = lookup_ref_store_map(&worktree_ref_stores, id);
1656 if (refs)
1657 return refs;
1659 if (wt->id)
1660 refs = ref_store_init(git_common_path("worktrees/%s", wt->id),
1661 REF_STORE_ALL_CAPS);
1662 else
1663 refs = ref_store_init(get_git_common_dir(),
1664 REF_STORE_ALL_CAPS);
1666 if (refs)
1667 register_ref_store_map(&worktree_ref_stores, "worktree",
1668 refs, id);
1669 return refs;
1672 void base_ref_store_init(struct ref_store *refs,
1673 const struct ref_storage_be *be)
1675 refs->be = be;
1678 /* backend functions */
1679 int refs_pack_refs(struct ref_store *refs, unsigned int flags)
1681 return refs->be->pack_refs(refs, flags);
1684 int refs_peel_ref(struct ref_store *refs, const char *refname,
1685 unsigned char *sha1)
1687 return refs->be->peel_ref(refs, refname, sha1);
1690 int peel_ref(const char *refname, unsigned char *sha1)
1692 return refs_peel_ref(get_main_ref_store(), refname, sha1);
1695 int refs_create_symref(struct ref_store *refs,
1696 const char *ref_target,
1697 const char *refs_heads_master,
1698 const char *logmsg)
1700 return refs->be->create_symref(refs, ref_target,
1701 refs_heads_master,
1702 logmsg);
1705 int create_symref(const char *ref_target, const char *refs_heads_master,
1706 const char *logmsg)
1708 return refs_create_symref(get_main_ref_store(), ref_target,
1709 refs_heads_master, logmsg);
1712 int ref_update_reject_duplicates(struct string_list *refnames,
1713 struct strbuf *err)
1715 size_t i, n = refnames->nr;
1717 assert(err);
1719 for (i = 1; i < n; i++) {
1720 int cmp = strcmp(refnames->items[i - 1].string,
1721 refnames->items[i].string);
1723 if (!cmp) {
1724 strbuf_addf(err,
1725 "multiple updates for ref '%s' not allowed.",
1726 refnames->items[i].string);
1727 return 1;
1728 } else if (cmp > 0) {
1729 die("BUG: ref_update_reject_duplicates() received unsorted list");
1732 return 0;
1735 int ref_transaction_prepare(struct ref_transaction *transaction,
1736 struct strbuf *err)
1738 struct ref_store *refs = transaction->ref_store;
1740 switch (transaction->state) {
1741 case REF_TRANSACTION_OPEN:
1742 /* Good. */
1743 break;
1744 case REF_TRANSACTION_PREPARED:
1745 die("BUG: prepare called twice on reference transaction");
1746 break;
1747 case REF_TRANSACTION_CLOSED:
1748 die("BUG: prepare called on a closed reference transaction");
1749 break;
1750 default:
1751 die("BUG: unexpected reference transaction state");
1752 break;
1755 if (getenv(GIT_QUARANTINE_ENVIRONMENT)) {
1756 strbuf_addstr(err,
1757 _("ref updates forbidden inside quarantine environment"));
1758 return -1;
1761 return refs->be->transaction_prepare(refs, transaction, err);
1764 int ref_transaction_abort(struct ref_transaction *transaction,
1765 struct strbuf *err)
1767 struct ref_store *refs = transaction->ref_store;
1768 int ret = 0;
1770 switch (transaction->state) {
1771 case REF_TRANSACTION_OPEN:
1772 /* No need to abort explicitly. */
1773 break;
1774 case REF_TRANSACTION_PREPARED:
1775 ret = refs->be->transaction_abort(refs, transaction, err);
1776 break;
1777 case REF_TRANSACTION_CLOSED:
1778 die("BUG: abort called on a closed reference transaction");
1779 break;
1780 default:
1781 die("BUG: unexpected reference transaction state");
1782 break;
1785 ref_transaction_free(transaction);
1786 return ret;
1789 int ref_transaction_commit(struct ref_transaction *transaction,
1790 struct strbuf *err)
1792 struct ref_store *refs = transaction->ref_store;
1793 int ret;
1795 switch (transaction->state) {
1796 case REF_TRANSACTION_OPEN:
1797 /* Need to prepare first. */
1798 ret = ref_transaction_prepare(transaction, err);
1799 if (ret)
1800 return ret;
1801 break;
1802 case REF_TRANSACTION_PREPARED:
1803 /* Fall through to finish. */
1804 break;
1805 case REF_TRANSACTION_CLOSED:
1806 die("BUG: commit called on a closed reference transaction");
1807 break;
1808 default:
1809 die("BUG: unexpected reference transaction state");
1810 break;
1813 return refs->be->transaction_finish(refs, transaction, err);
1816 int refs_verify_refname_available(struct ref_store *refs,
1817 const char *refname,
1818 const struct string_list *extras,
1819 const struct string_list *skip,
1820 struct strbuf *err)
1822 const char *slash;
1823 const char *extra_refname;
1824 struct strbuf dirname = STRBUF_INIT;
1825 struct strbuf referent = STRBUF_INIT;
1826 struct object_id oid;
1827 unsigned int type;
1828 struct ref_iterator *iter;
1829 int ok;
1830 int ret = -1;
1833 * For the sake of comments in this function, suppose that
1834 * refname is "refs/foo/bar".
1837 assert(err);
1839 strbuf_grow(&dirname, strlen(refname) + 1);
1840 for (slash = strchr(refname, '/'); slash; slash = strchr(slash + 1, '/')) {
1841 /* Expand dirname to the new prefix, not including the trailing slash: */
1842 strbuf_add(&dirname, refname + dirname.len, slash - refname - dirname.len);
1845 * We are still at a leading dir of the refname (e.g.,
1846 * "refs/foo"; if there is a reference with that name,
1847 * it is a conflict, *unless* it is in skip.
1849 if (skip && string_list_has_string(skip, dirname.buf))
1850 continue;
1852 if (!refs_read_raw_ref(refs, dirname.buf, oid.hash, &referent, &type)) {
1853 strbuf_addf(err, "'%s' exists; cannot create '%s'",
1854 dirname.buf, refname);
1855 goto cleanup;
1858 if (extras && string_list_has_string(extras, dirname.buf)) {
1859 strbuf_addf(err, "cannot process '%s' and '%s' at the same time",
1860 refname, dirname.buf);
1861 goto cleanup;
1866 * We are at the leaf of our refname (e.g., "refs/foo/bar").
1867 * There is no point in searching for a reference with that
1868 * name, because a refname isn't considered to conflict with
1869 * itself. But we still need to check for references whose
1870 * names are in the "refs/foo/bar/" namespace, because they
1871 * *do* conflict.
1873 strbuf_addstr(&dirname, refname + dirname.len);
1874 strbuf_addch(&dirname, '/');
1876 iter = refs_ref_iterator_begin(refs, dirname.buf, 0,
1877 DO_FOR_EACH_INCLUDE_BROKEN);
1878 while ((ok = ref_iterator_advance(iter)) == ITER_OK) {
1879 if (skip &&
1880 string_list_has_string(skip, iter->refname))
1881 continue;
1883 strbuf_addf(err, "'%s' exists; cannot create '%s'",
1884 iter->refname, refname);
1885 ref_iterator_abort(iter);
1886 goto cleanup;
1889 if (ok != ITER_DONE)
1890 die("BUG: error while iterating over references");
1892 extra_refname = find_descendant_ref(dirname.buf, extras, skip);
1893 if (extra_refname)
1894 strbuf_addf(err, "cannot process '%s' and '%s' at the same time",
1895 refname, extra_refname);
1896 else
1897 ret = 0;
1899 cleanup:
1900 strbuf_release(&referent);
1901 strbuf_release(&dirname);
1902 return ret;
1905 int refs_for_each_reflog(struct ref_store *refs, each_ref_fn fn, void *cb_data)
1907 struct ref_iterator *iter;
1909 iter = refs->be->reflog_iterator_begin(refs);
1911 return do_for_each_ref_iterator(iter, fn, cb_data);
1914 int for_each_reflog(each_ref_fn fn, void *cb_data)
1916 return refs_for_each_reflog(get_main_ref_store(), fn, cb_data);
1919 int refs_for_each_reflog_ent_reverse(struct ref_store *refs,
1920 const char *refname,
1921 each_reflog_ent_fn fn,
1922 void *cb_data)
1924 return refs->be->for_each_reflog_ent_reverse(refs, refname,
1925 fn, cb_data);
1928 int for_each_reflog_ent_reverse(const char *refname, each_reflog_ent_fn fn,
1929 void *cb_data)
1931 return refs_for_each_reflog_ent_reverse(get_main_ref_store(),
1932 refname, fn, cb_data);
1935 int refs_for_each_reflog_ent(struct ref_store *refs, const char *refname,
1936 each_reflog_ent_fn fn, void *cb_data)
1938 return refs->be->for_each_reflog_ent(refs, refname, fn, cb_data);
1941 int for_each_reflog_ent(const char *refname, each_reflog_ent_fn fn,
1942 void *cb_data)
1944 return refs_for_each_reflog_ent(get_main_ref_store(), refname,
1945 fn, cb_data);
1948 int refs_reflog_exists(struct ref_store *refs, const char *refname)
1950 return refs->be->reflog_exists(refs, refname);
1953 int reflog_exists(const char *refname)
1955 return refs_reflog_exists(get_main_ref_store(), refname);
1958 int refs_create_reflog(struct ref_store *refs, const char *refname,
1959 int force_create, struct strbuf *err)
1961 return refs->be->create_reflog(refs, refname, force_create, err);
1964 int safe_create_reflog(const char *refname, int force_create,
1965 struct strbuf *err)
1967 return refs_create_reflog(get_main_ref_store(), refname,
1968 force_create, err);
1971 int refs_delete_reflog(struct ref_store *refs, const char *refname)
1973 return refs->be->delete_reflog(refs, refname);
1976 int delete_reflog(const char *refname)
1978 return refs_delete_reflog(get_main_ref_store(), refname);
1981 int refs_reflog_expire(struct ref_store *refs,
1982 const char *refname, const unsigned char *sha1,
1983 unsigned int flags,
1984 reflog_expiry_prepare_fn prepare_fn,
1985 reflog_expiry_should_prune_fn should_prune_fn,
1986 reflog_expiry_cleanup_fn cleanup_fn,
1987 void *policy_cb_data)
1989 return refs->be->reflog_expire(refs, refname, sha1, flags,
1990 prepare_fn, should_prune_fn,
1991 cleanup_fn, policy_cb_data);
1994 int reflog_expire(const char *refname, const unsigned char *sha1,
1995 unsigned int flags,
1996 reflog_expiry_prepare_fn prepare_fn,
1997 reflog_expiry_should_prune_fn should_prune_fn,
1998 reflog_expiry_cleanup_fn cleanup_fn,
1999 void *policy_cb_data)
2001 return refs_reflog_expire(get_main_ref_store(),
2002 refname, sha1, flags,
2003 prepare_fn, should_prune_fn,
2004 cleanup_fn, policy_cb_data);
2007 int initial_ref_transaction_commit(struct ref_transaction *transaction,
2008 struct strbuf *err)
2010 struct ref_store *refs = transaction->ref_store;
2012 return refs->be->initial_transaction_commit(refs, transaction, err);
2015 int refs_delete_refs(struct ref_store *refs, const char *msg,
2016 struct string_list *refnames, unsigned int flags)
2018 return refs->be->delete_refs(refs, msg, refnames, flags);
2021 int delete_refs(const char *msg, struct string_list *refnames,
2022 unsigned int flags)
2024 return refs_delete_refs(get_main_ref_store(), msg, refnames, flags);
2027 int refs_rename_ref(struct ref_store *refs, const char *oldref,
2028 const char *newref, const char *logmsg)
2030 return refs->be->rename_ref(refs, oldref, newref, logmsg);
2033 int rename_ref(const char *oldref, const char *newref, const char *logmsg)
2035 return refs_rename_ref(get_main_ref_store(), oldref, newref, logmsg);