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1 /*
2 * The backend-independent part of the reference module.
3 */
4
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 "run-command.h"
13 #include "hook.h"
14 #include "object-store.h"
15 #include "object.h"
16 #include "tag.h"
17 #include "submodule.h"
18 #include "worktree.h"
19 #include "strvec.h"
20 #include "repository.h"
21 #include "sigchain.h"
22 #include "date.h"
23
24 /*
25 * List of all available backends
26 */
27 static struct ref_storage_be *refs_backends = &refs_be_files;
28
29 static struct ref_storage_be *find_ref_storage_backend(const char *name)
30 {
31 struct ref_storage_be *be;
32 for (be = refs_backends; be; be = be->next)
33 if (!strcmp(be->name, name))
34 return be;
35 return NULL;
36 }
37
38 /*
39 * How to handle various characters in refnames:
40 * 0: An acceptable character for refs
41 * 1: End-of-component
42 * 2: ., look for a preceding . to reject .. in refs
43 * 3: {, look for a preceding @ to reject @{ in refs
44 * 4: A bad character: ASCII control characters, and
45 * ":", "?", "[", "\", "^", "~", SP, or TAB
46 * 5: *, reject unless REFNAME_REFSPEC_PATTERN is set
47 */
48 static unsigned char refname_disposition[256] = {
49 1, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4,
50 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4, 4,
51 4, 0, 0, 0, 0, 0, 0, 0, 0, 0, 5, 0, 0, 0, 2, 1,
52 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 4, 0, 0, 0, 0, 4,
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, 4, 4, 0, 4, 0,
55 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
56 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 3, 0, 0, 4, 4
57 };
58
59 /*
60 * Try to read one refname component from the front of refname.
61 * Return the length of the component found, or -1 if the component is
62 * not legal. It is legal if it is something reasonable to have under
63 * ".git/refs/"; We do not like it if:
64 *
65 * - it begins with ".", or
66 * - it has double dots "..", or
67 * - it has ASCII control characters, or
68 * - it has ":", "?", "[", "\", "^", "~", SP, or TAB anywhere, or
69 * - it has "*" anywhere unless REFNAME_REFSPEC_PATTERN is set, or
70 * - it ends with a "/", or
71 * - it ends with ".lock", or
72 * - it contains a "@{" portion
73 *
74 * When sanitized is not NULL, instead of rejecting the input refname
75 * as an error, try to come up with a usable replacement for the input
76 * refname in it.
77 */
78 static int check_refname_component(const char *refname, int *flags,
79 struct strbuf *sanitized)
80 {
81 const char *cp;
82 char last = '\0';
83 size_t component_start = 0; /* garbage - not a reasonable initial value */
84
85 if (sanitized)
86 component_start = sanitized->len;
87
88 for (cp = refname; ; cp++) {
89 int ch = *cp & 255;
90 unsigned char disp = refname_disposition[ch];
91
92 if (sanitized && disp != 1)
93 strbuf_addch(sanitized, ch);
94
95 switch (disp) {
96 case 1:
97 goto out;
98 case 2:
99 if (last == '.') { /* Refname contains "..". */
100 if (sanitized)
101 /* collapse ".." to single "." */
102 strbuf_setlen(sanitized, sanitized->len - 1);
103 else
104 return -1;
105 }
106 break;
107 case 3:
108 if (last == '@') { /* Refname contains "@{". */
109 if (sanitized)
110 sanitized->buf[sanitized->len-1] = '-';
111 else
112 return -1;
113 }
114 break;
115 case 4:
116 /* forbidden char */
117 if (sanitized)
118 sanitized->buf[sanitized->len-1] = '-';
119 else
120 return -1;
121 break;
122 case 5:
123 if (!(*flags & REFNAME_REFSPEC_PATTERN)) {
124 /* refspec can't be a pattern */
125 if (sanitized)
126 sanitized->buf[sanitized->len-1] = '-';
127 else
128 return -1;
129 }
130
131 /*
132 * Unset the pattern flag so that we only accept
133 * a single asterisk for one side of refspec.
134 */
135 *flags &= ~ REFNAME_REFSPEC_PATTERN;
136 break;
137 }
138 last = ch;
139 }
140 out:
141 if (cp == refname)
142 return 0; /* Component has zero length. */
143
144 if (refname[0] == '.') { /* Component starts with '.'. */
145 if (sanitized)
146 sanitized->buf[component_start] = '-';
147 else
148 return -1;
149 }
150 if (cp - refname >= LOCK_SUFFIX_LEN &&
151 !memcmp(cp - LOCK_SUFFIX_LEN, LOCK_SUFFIX, LOCK_SUFFIX_LEN)) {
152 if (!sanitized)
153 return -1;
154 /* Refname ends with ".lock". */
155 while (strbuf_strip_suffix(sanitized, LOCK_SUFFIX)) {
156 /* try again in case we have .lock.lock */
157 }
158 }
159 return cp - refname;
160 }
161
162 static int check_or_sanitize_refname(const char *refname, int flags,
163 struct strbuf *sanitized)
164 {
165 int component_len, component_count = 0;
166
167 if (!strcmp(refname, "@")) {
168 /* Refname is a single character '@'. */
169 if (sanitized)
170 strbuf_addch(sanitized, '-');
171 else
172 return -1;
173 }
174
175 while (1) {
176 if (sanitized && sanitized->len)
177 strbuf_complete(sanitized, '/');
178
179 /* We are at the start of a path component. */
180 component_len = check_refname_component(refname, &flags,
181 sanitized);
182 if (sanitized && component_len == 0)
183 ; /* OK, omit empty component */
184 else if (component_len <= 0)
185 return -1;
186
187 component_count++;
188 if (refname[component_len] == '\0')
189 break;
190 /* Skip to next component. */
191 refname += component_len + 1;
192 }
193
194 if (refname[component_len - 1] == '.') {
195 /* Refname ends with '.'. */
196 if (sanitized)
197 ; /* omit ending dot */
198 else
199 return -1;
200 }
201 if (!(flags & REFNAME_ALLOW_ONELEVEL) && component_count < 2)
202 return -1; /* Refname has only one component. */
203 return 0;
204 }
205
206 int check_refname_format(const char *refname, int flags)
207 {
208 return check_or_sanitize_refname(refname, flags, NULL);
209 }
210
211 void sanitize_refname_component(const char *refname, struct strbuf *out)
212 {
213 if (check_or_sanitize_refname(refname, REFNAME_ALLOW_ONELEVEL, out))
214 BUG("sanitizing refname '%s' check returned error", refname);
215 }
216
217 int refname_is_safe(const char *refname)
218 {
219 const char *rest;
220
221 if (skip_prefix(refname, "refs/", &rest)) {
222 char *buf;
223 int result;
224 size_t restlen = strlen(rest);
225
226 /* rest must not be empty, or start or end with "/" */
227 if (!restlen || *rest == '/' || rest[restlen - 1] == '/')
228 return 0;
229
230 /*
231 * Does the refname try to escape refs/?
232 * For example: refs/foo/../bar is safe but refs/foo/../../bar
233 * is not.
234 */
235 buf = xmallocz(restlen);
236 result = !normalize_path_copy(buf, rest) && !strcmp(buf, rest);
237 free(buf);
238 return result;
239 }
240
241 do {
242 if (!isupper(*refname) && *refname != '_')
243 return 0;
244 refname++;
245 } while (*refname);
246 return 1;
247 }
248
249 /*
250 * Return true if refname, which has the specified oid and flags, can
251 * be resolved to an object in the database. If the referred-to object
252 * does not exist, emit a warning and return false.
253 */
254 int ref_resolves_to_object(const char *refname,
255 struct repository *repo,
256 const struct object_id *oid,
257 unsigned int flags)
258 {
259 if (flags & REF_ISBROKEN)
260 return 0;
261 if (!repo_has_object_file(repo, oid)) {
262 error(_("%s does not point to a valid object!"), refname);
263 return 0;
264 }
265 return 1;
266 }
267
268 char *refs_resolve_refdup(struct ref_store *refs,
269 const char *refname, int resolve_flags,
270 struct object_id *oid, int *flags)
271 {
272 const char *result;
273
274 result = refs_resolve_ref_unsafe(refs, refname, resolve_flags,
275 oid, flags);
276 return xstrdup_or_null(result);
277 }
278
279 char *resolve_refdup(const char *refname, int resolve_flags,
280 struct object_id *oid, int *flags)
281 {
282 return refs_resolve_refdup(get_main_ref_store(the_repository),
283 refname, resolve_flags,
284 oid, flags);
285 }
286
287 /* The argument to filter_refs */
288 struct ref_filter {
289 const char *pattern;
290 const char *prefix;
291 each_ref_fn *fn;
292 void *cb_data;
293 };
294
295 int read_ref_full(const char *refname, int resolve_flags, struct object_id *oid, int *flags)
296 {
297 struct ref_store *refs = get_main_ref_store(the_repository);
298
299 if (refs_resolve_ref_unsafe(refs, refname, resolve_flags,
300 oid, flags))
301 return 0;
302 return -1;
303 }
304
305 int read_ref(const char *refname, struct object_id *oid)
306 {
307 return read_ref_full(refname, RESOLVE_REF_READING, oid, NULL);
308 }
309
310 int refs_ref_exists(struct ref_store *refs, const char *refname)
311 {
312 return !!refs_resolve_ref_unsafe(refs, refname, RESOLVE_REF_READING,
313 NULL, NULL);
314 }
315
316 int ref_exists(const char *refname)
317 {
318 return refs_ref_exists(get_main_ref_store(the_repository), refname);
319 }
320
321 static int filter_refs(const char *refname, const struct object_id *oid,
322 int flags, void *data)
323 {
324 struct ref_filter *filter = (struct ref_filter *)data;
325
326 if (wildmatch(filter->pattern, refname, 0))
327 return 0;
328 if (filter->prefix)
329 skip_prefix(refname, filter->prefix, &refname);
330 return filter->fn(refname, oid, flags, filter->cb_data);
331 }
332
333 enum peel_status peel_object(const struct object_id *name, struct object_id *oid)
334 {
335 struct object *o = lookup_unknown_object(the_repository, name);
336
337 if (o->type == OBJ_NONE) {
338 int type = oid_object_info(the_repository, name, NULL);
339 if (type < 0 || !object_as_type(o, type, 0))
340 return PEEL_INVALID;
341 }
342
343 if (o->type != OBJ_TAG)
344 return PEEL_NON_TAG;
345
346 o = deref_tag_noverify(o);
347 if (!o)
348 return PEEL_INVALID;
349
350 oidcpy(oid, &o->oid);
351 return PEEL_PEELED;
352 }
353
354 struct warn_if_dangling_data {
355 FILE *fp;
356 const char *refname;
357 const struct string_list *refnames;
358 const char *msg_fmt;
359 };
360
361 static int warn_if_dangling_symref(const char *refname, const struct object_id *oid,
362 int flags, void *cb_data)
363 {
364 struct warn_if_dangling_data *d = cb_data;
365 const char *resolves_to;
366
367 if (!(flags & REF_ISSYMREF))
368 return 0;
369
370 resolves_to = resolve_ref_unsafe(refname, 0, NULL, NULL);
371 if (!resolves_to
372 || (d->refname
373 ? strcmp(resolves_to, d->refname)
374 : !string_list_has_string(d->refnames, resolves_to))) {
375 return 0;
376 }
377
378 fprintf(d->fp, d->msg_fmt, refname);
379 fputc('\n', d->fp);
380 return 0;
381 }
382
383 void warn_dangling_symref(FILE *fp, const char *msg_fmt, const char *refname)
384 {
385 struct warn_if_dangling_data data;
386
387 data.fp = fp;
388 data.refname = refname;
389 data.refnames = NULL;
390 data.msg_fmt = msg_fmt;
391 for_each_rawref(warn_if_dangling_symref, &data);
392 }
393
394 void warn_dangling_symrefs(FILE *fp, const char *msg_fmt, const struct string_list *refnames)
395 {
396 struct warn_if_dangling_data data;
397
398 data.fp = fp;
399 data.refname = NULL;
400 data.refnames = refnames;
401 data.msg_fmt = msg_fmt;
402 for_each_rawref(warn_if_dangling_symref, &data);
403 }
404
405 int refs_for_each_tag_ref(struct ref_store *refs, each_ref_fn fn, void *cb_data)
406 {
407 return refs_for_each_ref_in(refs, "refs/tags/", fn, cb_data);
408 }
409
410 int for_each_tag_ref(each_ref_fn fn, void *cb_data)
411 {
412 return refs_for_each_tag_ref(get_main_ref_store(the_repository), fn, cb_data);
413 }
414
415 int refs_for_each_branch_ref(struct ref_store *refs, each_ref_fn fn, void *cb_data)
416 {
417 return refs_for_each_ref_in(refs, "refs/heads/", fn, cb_data);
418 }
419
420 int for_each_branch_ref(each_ref_fn fn, void *cb_data)
421 {
422 return refs_for_each_branch_ref(get_main_ref_store(the_repository), fn, cb_data);
423 }
424
425 int refs_for_each_remote_ref(struct ref_store *refs, each_ref_fn fn, void *cb_data)
426 {
427 return refs_for_each_ref_in(refs, "refs/remotes/", fn, cb_data);
428 }
429
430 int for_each_remote_ref(each_ref_fn fn, void *cb_data)
431 {
432 return refs_for_each_remote_ref(get_main_ref_store(the_repository), fn, cb_data);
433 }
434
435 int head_ref_namespaced(each_ref_fn fn, void *cb_data)
436 {
437 struct strbuf buf = STRBUF_INIT;
438 int ret = 0;
439 struct object_id oid;
440 int flag;
441
442 strbuf_addf(&buf, "%sHEAD", get_git_namespace());
443 if (!read_ref_full(buf.buf, RESOLVE_REF_READING, &oid, &flag))
444 ret = fn(buf.buf, &oid, flag, cb_data);
445 strbuf_release(&buf);
446
447 return ret;
448 }
449
450 void normalize_glob_ref(struct string_list_item *item, const char *prefix,
451 const char *pattern)
452 {
453 struct strbuf normalized_pattern = STRBUF_INIT;
454
455 if (*pattern == '/')
456 BUG("pattern must not start with '/'");
457
458 if (prefix) {
459 strbuf_addstr(&normalized_pattern, prefix);
460 }
461 else if (!starts_with(pattern, "refs/"))
462 strbuf_addstr(&normalized_pattern, "refs/");
463 strbuf_addstr(&normalized_pattern, pattern);
464 strbuf_strip_suffix(&normalized_pattern, "/");
465
466 item->string = strbuf_detach(&normalized_pattern, NULL);
467 item->util = has_glob_specials(pattern) ? NULL : item->string;
468 strbuf_release(&normalized_pattern);
469 }
470
471 int for_each_glob_ref_in(each_ref_fn fn, const char *pattern,
472 const char *prefix, void *cb_data)
473 {
474 struct strbuf real_pattern = STRBUF_INIT;
475 struct ref_filter filter;
476 int ret;
477
478 if (!prefix && !starts_with(pattern, "refs/"))
479 strbuf_addstr(&real_pattern, "refs/");
480 else if (prefix)
481 strbuf_addstr(&real_pattern, prefix);
482 strbuf_addstr(&real_pattern, pattern);
483
484 if (!has_glob_specials(pattern)) {
485 /* Append implied '/' '*' if not present. */
486 strbuf_complete(&real_pattern, '/');
487 /* No need to check for '*', there is none. */
488 strbuf_addch(&real_pattern, '*');
489 }
490
491 filter.pattern = real_pattern.buf;
492 filter.prefix = prefix;
493 filter.fn = fn;
494 filter.cb_data = cb_data;
495 ret = for_each_ref(filter_refs, &filter);
496
497 strbuf_release(&real_pattern);
498 return ret;
499 }
500
501 int for_each_glob_ref(each_ref_fn fn, const char *pattern, void *cb_data)
502 {
503 return for_each_glob_ref_in(fn, pattern, NULL, cb_data);
504 }
505
506 const char *prettify_refname(const char *name)
507 {
508 if (skip_prefix(name, "refs/heads/", &name) ||
509 skip_prefix(name, "refs/tags/", &name) ||
510 skip_prefix(name, "refs/remotes/", &name))
511 ; /* nothing */
512 return name;
513 }
514
515 static const char *ref_rev_parse_rules[] = {
516 "%.*s",
517 "refs/%.*s",
518 "refs/tags/%.*s",
519 "refs/heads/%.*s",
520 "refs/remotes/%.*s",
521 "refs/remotes/%.*s/HEAD",
522 NULL
523 };
524
525 #define NUM_REV_PARSE_RULES (ARRAY_SIZE(ref_rev_parse_rules) - 1)
526
527 /*
528 * Is it possible that the caller meant full_name with abbrev_name?
529 * If so return a non-zero value to signal "yes"; the magnitude of
530 * the returned value gives the precedence used for disambiguation.
531 *
532 * If abbrev_name cannot mean full_name, return 0.
533 */
534 int refname_match(const char *abbrev_name, const char *full_name)
535 {
536 const char **p;
537 const int abbrev_name_len = strlen(abbrev_name);
538 const int num_rules = NUM_REV_PARSE_RULES;
539
540 for (p = ref_rev_parse_rules; *p; p++)
541 if (!strcmp(full_name, mkpath(*p, abbrev_name_len, abbrev_name)))
542 return &ref_rev_parse_rules[num_rules] - p;
543
544 return 0;
545 }
546
547 /*
548 * Given a 'prefix' expand it by the rules in 'ref_rev_parse_rules' and add
549 * the results to 'prefixes'
550 */
551 void expand_ref_prefix(struct strvec *prefixes, const char *prefix)
552 {
553 const char **p;
554 int len = strlen(prefix);
555
556 for (p = ref_rev_parse_rules; *p; p++)
557 strvec_pushf(prefixes, *p, len, prefix);
558 }
559
560 static const char default_branch_name_advice[] = N_(
561 "Using '%s' as the name for the initial branch. This default branch name\n"
562 "is subject to change. To configure the initial branch name to use in all\n"
563 "of your new repositories, which will suppress this warning, call:\n"
564 "\n"
565 "\tgit config --global init.defaultBranch <name>\n"
566 "\n"
567 "Names commonly chosen instead of 'master' are 'main', 'trunk' and\n"
568 "'development'. The just-created branch can be renamed via this command:\n"
569 "\n"
570 "\tgit branch -m <name>\n"
571 );
572
573 char *repo_default_branch_name(struct repository *r, int quiet)
574 {
575 const char *config_key = "init.defaultbranch";
576 const char *config_display_key = "init.defaultBranch";
577 char *ret = NULL, *full_ref;
578 const char *env = getenv("GIT_TEST_DEFAULT_INITIAL_BRANCH_NAME");
579
580 if (env && *env)
581 ret = xstrdup(env);
582 else if (repo_config_get_string(r, config_key, &ret) < 0)
583 die(_("could not retrieve `%s`"), config_display_key);
584
585 if (!ret) {
586 ret = xstrdup("master");
587 if (!quiet)
588 advise(_(default_branch_name_advice), ret);
589 }
590
591 full_ref = xstrfmt("refs/heads/%s", ret);
592 if (check_refname_format(full_ref, 0))
593 die(_("invalid branch name: %s = %s"), config_display_key, ret);
594 free(full_ref);
595
596 return ret;
597 }
598
599 const char *git_default_branch_name(int quiet)
600 {
601 static char *ret;
602
603 if (!ret)
604 ret = repo_default_branch_name(the_repository, quiet);
605
606 return ret;
607 }
608
609 /*
610 * *string and *len will only be substituted, and *string returned (for
611 * later free()ing) if the string passed in is a magic short-hand form
612 * to name a branch.
613 */
614 static char *substitute_branch_name(struct repository *r,
615 const char **string, int *len,
616 int nonfatal_dangling_mark)
617 {
618 struct strbuf buf = STRBUF_INIT;
619 struct interpret_branch_name_options options = {
620 .nonfatal_dangling_mark = nonfatal_dangling_mark
621 };
622 int ret = repo_interpret_branch_name(r, *string, *len, &buf, &options);
623
624 if (ret == *len) {
625 size_t size;
626 *string = strbuf_detach(&buf, &size);
627 *len = size;
628 return (char *)*string;
629 }
630
631 return NULL;
632 }
633
634 int repo_dwim_ref(struct repository *r, const char *str, int len,
635 struct object_id *oid, char **ref, int nonfatal_dangling_mark)
636 {
637 char *last_branch = substitute_branch_name(r, &str, &len,
638 nonfatal_dangling_mark);
639 int refs_found = expand_ref(r, str, len, oid, ref);
640 free(last_branch);
641 return refs_found;
642 }
643
644 int expand_ref(struct repository *repo, const char *str, int len,
645 struct object_id *oid, char **ref)
646 {
647 const char **p, *r;
648 int refs_found = 0;
649 struct strbuf fullref = STRBUF_INIT;
650
651 *ref = NULL;
652 for (p = ref_rev_parse_rules; *p; p++) {
653 struct object_id oid_from_ref;
654 struct object_id *this_result;
655 int flag;
656 struct ref_store *refs = get_main_ref_store(repo);
657
658 this_result = refs_found ? &oid_from_ref : oid;
659 strbuf_reset(&fullref);
660 strbuf_addf(&fullref, *p, len, str);
661 r = refs_resolve_ref_unsafe(refs, fullref.buf,
662 RESOLVE_REF_READING,
663 this_result, &flag);
664 if (r) {
665 if (!refs_found++)
666 *ref = xstrdup(r);
667 if (!warn_ambiguous_refs)
668 break;
669 } else if ((flag & REF_ISSYMREF) && strcmp(fullref.buf, "HEAD")) {
670 warning(_("ignoring dangling symref %s"), fullref.buf);
671 } else if ((flag & REF_ISBROKEN) && strchr(fullref.buf, '/')) {
672 warning(_("ignoring broken ref %s"), fullref.buf);
673 }
674 }
675 strbuf_release(&fullref);
676 return refs_found;
677 }
678
679 int repo_dwim_log(struct repository *r, const char *str, int len,
680 struct object_id *oid, char **log)
681 {
682 struct ref_store *refs = get_main_ref_store(r);
683 char *last_branch = substitute_branch_name(r, &str, &len, 0);
684 const char **p;
685 int logs_found = 0;
686 struct strbuf path = STRBUF_INIT;
687
688 *log = NULL;
689 for (p = ref_rev_parse_rules; *p; p++) {
690 struct object_id hash;
691 const char *ref, *it;
692
693 strbuf_reset(&path);
694 strbuf_addf(&path, *p, len, str);
695 ref = refs_resolve_ref_unsafe(refs, path.buf,
696 RESOLVE_REF_READING,
697 oid ? &hash : NULL, NULL);
698 if (!ref)
699 continue;
700 if (refs_reflog_exists(refs, path.buf))
701 it = path.buf;
702 else if (strcmp(ref, path.buf) &&
703 refs_reflog_exists(refs, ref))
704 it = ref;
705 else
706 continue;
707 if (!logs_found++) {
708 *log = xstrdup(it);
709 if (oid)
710 oidcpy(oid, &hash);
711 }
712 if (!warn_ambiguous_refs)
713 break;
714 }
715 strbuf_release(&path);
716 free(last_branch);
717 return logs_found;
718 }
719
720 int dwim_log(const char *str, int len, struct object_id *oid, char **log)
721 {
722 return repo_dwim_log(the_repository, str, len, oid, log);
723 }
724
725 static int is_per_worktree_ref(const char *refname)
726 {
727 return starts_with(refname, "refs/worktree/") ||
728 starts_with(refname, "refs/bisect/") ||
729 starts_with(refname, "refs/rewritten/");
730 }
731
732 static int is_pseudoref_syntax(const char *refname)
733 {
734 const char *c;
735
736 for (c = refname; *c; c++) {
737 if (!isupper(*c) && *c != '-' && *c != '_')
738 return 0;
739 }
740
741 return 1;
742 }
743
744 static int is_main_pseudoref_syntax(const char *refname)
745 {
746 return skip_prefix(refname, "main-worktree/", &refname) &&
747 *refname &&
748 is_pseudoref_syntax(refname);
749 }
750
751 static int is_other_pseudoref_syntax(const char *refname)
752 {
753 if (!skip_prefix(refname, "worktrees/", &refname))
754 return 0;
755 refname = strchr(refname, '/');
756 if (!refname || !refname[1])
757 return 0;
758 return is_pseudoref_syntax(refname + 1);
759 }
760
761 enum ref_type ref_type(const char *refname)
762 {
763 if (is_per_worktree_ref(refname))
764 return REF_TYPE_PER_WORKTREE;
765 if (is_pseudoref_syntax(refname))
766 return REF_TYPE_PSEUDOREF;
767 if (is_main_pseudoref_syntax(refname))
768 return REF_TYPE_MAIN_PSEUDOREF;
769 if (is_other_pseudoref_syntax(refname))
770 return REF_TYPE_OTHER_PSEUDOREF;
771 return REF_TYPE_NORMAL;
772 }
773
774 long get_files_ref_lock_timeout_ms(void)
775 {
776 static int configured = 0;
777
778 /* The default timeout is 100 ms: */
779 static int timeout_ms = 100;
780
781 if (!configured) {
782 git_config_get_int("core.filesreflocktimeout", &timeout_ms);
783 configured = 1;
784 }
785
786 return timeout_ms;
787 }
788
789 int refs_delete_ref(struct ref_store *refs, const char *msg,
790 const char *refname,
791 const struct object_id *old_oid,
792 unsigned int flags)
793 {
794 struct ref_transaction *transaction;
795 struct strbuf err = STRBUF_INIT;
796
797 transaction = ref_store_transaction_begin(refs, &err);
798 if (!transaction ||
799 ref_transaction_delete(transaction, refname, old_oid,
800 flags, msg, &err) ||
801 ref_transaction_commit(transaction, &err)) {
802 error("%s", err.buf);
803 ref_transaction_free(transaction);
804 strbuf_release(&err);
805 return 1;
806 }
807 ref_transaction_free(transaction);
808 strbuf_release(&err);
809 return 0;
810 }
811
812 int delete_ref(const char *msg, const char *refname,
813 const struct object_id *old_oid, unsigned int flags)
814 {
815 return refs_delete_ref(get_main_ref_store(the_repository), msg, refname,
816 old_oid, flags);
817 }
818
819 static void copy_reflog_msg(struct strbuf *sb, const char *msg)
820 {
821 char c;
822 int wasspace = 1;
823
824 while ((c = *msg++)) {
825 if (wasspace && isspace(c))
826 continue;
827 wasspace = isspace(c);
828 if (wasspace)
829 c = ' ';
830 strbuf_addch(sb, c);
831 }
832 strbuf_rtrim(sb);
833 }
834
835 static char *normalize_reflog_message(const char *msg)
836 {
837 struct strbuf sb = STRBUF_INIT;
838
839 if (msg && *msg)
840 copy_reflog_msg(&sb, msg);
841 return strbuf_detach(&sb, NULL);
842 }
843
844 int should_autocreate_reflog(const char *refname)
845 {
846 switch (log_all_ref_updates) {
847 case LOG_REFS_ALWAYS:
848 return 1;
849 case LOG_REFS_NORMAL:
850 return starts_with(refname, "refs/heads/") ||
851 starts_with(refname, "refs/remotes/") ||
852 starts_with(refname, "refs/notes/") ||
853 !strcmp(refname, "HEAD");
854 default:
855 return 0;
856 }
857 }
858
859 int is_branch(const char *refname)
860 {
861 return !strcmp(refname, "HEAD") || starts_with(refname, "refs/heads/");
862 }
863
864 struct read_ref_at_cb {
865 const char *refname;
866 timestamp_t at_time;
867 int cnt;
868 int reccnt;
869 struct object_id *oid;
870 int found_it;
871
872 struct object_id ooid;
873 struct object_id noid;
874 int tz;
875 timestamp_t date;
876 char **msg;
877 timestamp_t *cutoff_time;
878 int *cutoff_tz;
879 int *cutoff_cnt;
880 };
881
882 static void set_read_ref_cutoffs(struct read_ref_at_cb *cb,
883 timestamp_t timestamp, int tz, const char *message)
884 {
885 if (cb->msg)
886 *cb->msg = xstrdup(message);
887 if (cb->cutoff_time)
888 *cb->cutoff_time = timestamp;
889 if (cb->cutoff_tz)
890 *cb->cutoff_tz = tz;
891 if (cb->cutoff_cnt)
892 *cb->cutoff_cnt = cb->reccnt;
893 }
894
895 static int read_ref_at_ent(struct object_id *ooid, struct object_id *noid,
896 const char *email, timestamp_t timestamp, int tz,
897 const char *message, void *cb_data)
898 {
899 struct read_ref_at_cb *cb = cb_data;
900 int reached_count;
901
902 cb->tz = tz;
903 cb->date = timestamp;
904
905 /*
906 * It is not possible for cb->cnt == 0 on the first iteration because
907 * that special case is handled in read_ref_at().
908 */
909 if (cb->cnt > 0)
910 cb->cnt--;
911 reached_count = cb->cnt == 0 && !is_null_oid(ooid);
912 if (timestamp <= cb->at_time || reached_count) {
913 set_read_ref_cutoffs(cb, timestamp, tz, message);
914 /*
915 * we have not yet updated cb->[n|o]oid so they still
916 * hold the values for the previous record.
917 */
918 if (!is_null_oid(&cb->ooid) && !oideq(&cb->ooid, noid))
919 warning(_("log for ref %s has gap after %s"),
920 cb->refname, show_date(cb->date, cb->tz, DATE_MODE(RFC2822)));
921 if (reached_count)
922 oidcpy(cb->oid, ooid);
923 else if (!is_null_oid(&cb->ooid) || cb->date == cb->at_time)
924 oidcpy(cb->oid, noid);
925 else if (!oideq(noid, cb->oid))
926 warning(_("log for ref %s unexpectedly ended on %s"),
927 cb->refname, show_date(cb->date, cb->tz,
928 DATE_MODE(RFC2822)));
929 cb->found_it = 1;
930 }
931 cb->reccnt++;
932 oidcpy(&cb->ooid, ooid);
933 oidcpy(&cb->noid, noid);
934 return cb->found_it;
935 }
936
937 static int read_ref_at_ent_newest(struct object_id *ooid, struct object_id *noid,
938 const char *email, timestamp_t timestamp,
939 int tz, const char *message, void *cb_data)
940 {
941 struct read_ref_at_cb *cb = cb_data;
942
943 set_read_ref_cutoffs(cb, timestamp, tz, message);
944 oidcpy(cb->oid, noid);
945 /* We just want the first entry */
946 return 1;
947 }
948
949 static int read_ref_at_ent_oldest(struct object_id *ooid, struct object_id *noid,
950 const char *email, timestamp_t timestamp,
951 int tz, const char *message, void *cb_data)
952 {
953 struct read_ref_at_cb *cb = cb_data;
954
955 set_read_ref_cutoffs(cb, timestamp, tz, message);
956 oidcpy(cb->oid, ooid);
957 if (is_null_oid(cb->oid))
958 oidcpy(cb->oid, noid);
959 /* We just want the first entry */
960 return 1;
961 }
962
963 int read_ref_at(struct ref_store *refs, const char *refname,
964 unsigned int flags, timestamp_t at_time, int cnt,
965 struct object_id *oid, char **msg,
966 timestamp_t *cutoff_time, int *cutoff_tz, int *cutoff_cnt)
967 {
968 struct read_ref_at_cb cb;
969
970 memset(&cb, 0, sizeof(cb));
971 cb.refname = refname;
972 cb.at_time = at_time;
973 cb.cnt = cnt;
974 cb.msg = msg;
975 cb.cutoff_time = cutoff_time;
976 cb.cutoff_tz = cutoff_tz;
977 cb.cutoff_cnt = cutoff_cnt;
978 cb.oid = oid;
979
980 if (cb.cnt == 0) {
981 refs_for_each_reflog_ent_reverse(refs, refname, read_ref_at_ent_newest, &cb);
982 return 0;
983 }
984
985 refs_for_each_reflog_ent_reverse(refs, refname, read_ref_at_ent, &cb);
986
987 if (!cb.reccnt) {
988 if (flags & GET_OID_QUIETLY)
989 exit(128);
990 else
991 die(_("log for %s is empty"), refname);
992 }
993 if (cb.found_it)
994 return 0;
995
996 refs_for_each_reflog_ent(refs, refname, read_ref_at_ent_oldest, &cb);
997
998 return 1;
999 }
1000
1001 struct ref_transaction *ref_store_transaction_begin(struct ref_store *refs,
1002 struct strbuf *err)
1003 {
1004 struct ref_transaction *tr;
1005 assert(err);
1006
1007 CALLOC_ARRAY(tr, 1);
1008 tr->ref_store = refs;
1009 return tr;
1010 }
1011
1012 struct ref_transaction *ref_transaction_begin(struct strbuf *err)
1013 {
1014 return ref_store_transaction_begin(get_main_ref_store(the_repository), err);
1015 }
1016
1017 void ref_transaction_free(struct ref_transaction *transaction)
1018 {
1019 size_t i;
1020
1021 if (!transaction)
1022 return;
1023
1024 switch (transaction->state) {
1025 case REF_TRANSACTION_OPEN:
1026 case REF_TRANSACTION_CLOSED:
1027 /* OK */
1028 break;
1029 case REF_TRANSACTION_PREPARED:
1030 BUG("free called on a prepared reference transaction");
1031 break;
1032 default:
1033 BUG("unexpected reference transaction state");
1034 break;
1035 }
1036
1037 for (i = 0; i < transaction->nr; i++) {
1038 free(transaction->updates[i]->msg);
1039 free(transaction->updates[i]);
1040 }
1041 free(transaction->updates);
1042 free(transaction);
1043 }
1044
1045 struct ref_update *ref_transaction_add_update(
1046 struct ref_transaction *transaction,
1047 const char *refname, unsigned int flags,
1048 const struct object_id *new_oid,
1049 const struct object_id *old_oid,
1050 const char *msg)
1051 {
1052 struct ref_update *update;
1053
1054 if (transaction->state != REF_TRANSACTION_OPEN)
1055 BUG("update called for transaction that is not open");
1056
1057 FLEX_ALLOC_STR(update, refname, refname);
1058 ALLOC_GROW(transaction->updates, transaction->nr + 1, transaction->alloc);
1059 transaction->updates[transaction->nr++] = update;
1060
1061 update->flags = flags;
1062
1063 if (flags & REF_HAVE_NEW)
1064 oidcpy(&update->new_oid, new_oid);
1065 if (flags & REF_HAVE_OLD)
1066 oidcpy(&update->old_oid, old_oid);
1067 update->msg = normalize_reflog_message(msg);
1068 return update;
1069 }
1070
1071 int ref_transaction_update(struct ref_transaction *transaction,
1072 const char *refname,
1073 const struct object_id *new_oid,
1074 const struct object_id *old_oid,
1075 unsigned int flags, const char *msg,
1076 struct strbuf *err)
1077 {
1078 assert(err);
1079
1080 if (!(flags & REF_SKIP_REFNAME_VERIFICATION) &&
1081 ((new_oid && !is_null_oid(new_oid)) ?
1082 check_refname_format(refname, REFNAME_ALLOW_ONELEVEL) :
1083 !refname_is_safe(refname))) {
1084 strbuf_addf(err, _("refusing to update ref with bad name '%s'"),
1085 refname);
1086 return -1;
1087 }
1088
1089 if (flags & ~REF_TRANSACTION_UPDATE_ALLOWED_FLAGS)
1090 BUG("illegal flags 0x%x passed to ref_transaction_update()", flags);
1091
1092 /*
1093 * Clear flags outside the allowed set; this should be a noop because
1094 * of the BUG() check above, but it works around a -Wnonnull warning
1095 * with some versions of "gcc -O3".
1096 */
1097 flags &= REF_TRANSACTION_UPDATE_ALLOWED_FLAGS;
1098
1099 flags |= (new_oid ? REF_HAVE_NEW : 0) | (old_oid ? REF_HAVE_OLD : 0);
1100
1101 ref_transaction_add_update(transaction, refname, flags,
1102 new_oid, old_oid, msg);
1103 return 0;
1104 }
1105
1106 int ref_transaction_create(struct ref_transaction *transaction,
1107 const char *refname,
1108 const struct object_id *new_oid,
1109 unsigned int flags, const char *msg,
1110 struct strbuf *err)
1111 {
1112 if (!new_oid || is_null_oid(new_oid))
1113 BUG("create called without valid new_oid");
1114 return ref_transaction_update(transaction, refname, new_oid,
1115 null_oid(), flags, msg, err);
1116 }
1117
1118 int ref_transaction_delete(struct ref_transaction *transaction,
1119 const char *refname,
1120 const struct object_id *old_oid,
1121 unsigned int flags, const char *msg,
1122 struct strbuf *err)
1123 {
1124 if (old_oid && is_null_oid(old_oid))
1125 BUG("delete called with old_oid set to zeros");
1126 return ref_transaction_update(transaction, refname,
1127 null_oid(), old_oid,
1128 flags, msg, err);
1129 }
1130
1131 int ref_transaction_verify(struct ref_transaction *transaction,
1132 const char *refname,
1133 const struct object_id *old_oid,
1134 unsigned int flags,
1135 struct strbuf *err)
1136 {
1137 if (!old_oid)
1138 BUG("verify called with old_oid set to NULL");
1139 return ref_transaction_update(transaction, refname,
1140 NULL, old_oid,
1141 flags, NULL, err);
1142 }
1143
1144 int refs_update_ref(struct ref_store *refs, const char *msg,
1145 const char *refname, const struct object_id *new_oid,
1146 const struct object_id *old_oid, unsigned int flags,
1147 enum action_on_err onerr)
1148 {
1149 struct ref_transaction *t = NULL;
1150 struct strbuf err = STRBUF_INIT;
1151 int ret = 0;
1152
1153 t = ref_store_transaction_begin(refs, &err);
1154 if (!t ||
1155 ref_transaction_update(t, refname, new_oid, old_oid, flags, msg,
1156 &err) ||
1157 ref_transaction_commit(t, &err)) {
1158 ret = 1;
1159 ref_transaction_free(t);
1160 }
1161 if (ret) {
1162 const char *str = _("update_ref failed for ref '%s': %s");
1163
1164 switch (onerr) {
1165 case UPDATE_REFS_MSG_ON_ERR:
1166 error(str, refname, err.buf);
1167 break;
1168 case UPDATE_REFS_DIE_ON_ERR:
1169 die(str, refname, err.buf);
1170 break;
1171 case UPDATE_REFS_QUIET_ON_ERR:
1172 break;
1173 }
1174 strbuf_release(&err);
1175 return 1;
1176 }
1177 strbuf_release(&err);
1178 if (t)
1179 ref_transaction_free(t);
1180 return 0;
1181 }
1182
1183 int update_ref(const char *msg, const char *refname,
1184 const struct object_id *new_oid,
1185 const struct object_id *old_oid,
1186 unsigned int flags, enum action_on_err onerr)
1187 {
1188 return refs_update_ref(get_main_ref_store(the_repository), msg, refname, new_oid,
1189 old_oid, flags, onerr);
1190 }
1191
1192 char *refs_shorten_unambiguous_ref(struct ref_store *refs,
1193 const char *refname, int strict)
1194 {
1195 int i;
1196 static char **scanf_fmts;
1197 static int nr_rules;
1198 char *short_name;
1199 struct strbuf resolved_buf = STRBUF_INIT;
1200
1201 if (!nr_rules) {
1202 /*
1203 * Pre-generate scanf formats from ref_rev_parse_rules[].
1204 * Generate a format suitable for scanf from a
1205 * ref_rev_parse_rules rule by interpolating "%s" at the
1206 * location of the "%.*s".
1207 */
1208 size_t total_len = 0;
1209 size_t offset = 0;
1210
1211 /* the rule list is NULL terminated, count them first */
1212 for (nr_rules = 0; ref_rev_parse_rules[nr_rules]; nr_rules++)
1213 /* -2 for strlen("%.*s") - strlen("%s"); +1 for NUL */
1214 total_len += strlen(ref_rev_parse_rules[nr_rules]) - 2 + 1;
1215
1216 scanf_fmts = xmalloc(st_add(st_mult(sizeof(char *), nr_rules), total_len));
1217
1218 offset = 0;
1219 for (i = 0; i < nr_rules; i++) {
1220 assert(offset < total_len);
1221 scanf_fmts[i] = (char *)&scanf_fmts[nr_rules] + offset;
1222 offset += xsnprintf(scanf_fmts[i], total_len - offset,
1223 ref_rev_parse_rules[i], 2, "%s") + 1;
1224 }
1225 }
1226
1227 /* bail out if there are no rules */
1228 if (!nr_rules)
1229 return xstrdup(refname);
1230
1231 /* buffer for scanf result, at most refname must fit */
1232 short_name = xstrdup(refname);
1233
1234 /* skip first rule, it will always match */
1235 for (i = nr_rules - 1; i > 0 ; --i) {
1236 int j;
1237 int rules_to_fail = i;
1238 int short_name_len;
1239
1240 if (1 != sscanf(refname, scanf_fmts[i], short_name))
1241 continue;
1242
1243 short_name_len = strlen(short_name);
1244
1245 /*
1246 * in strict mode, all (except the matched one) rules
1247 * must fail to resolve to a valid non-ambiguous ref
1248 */
1249 if (strict)
1250 rules_to_fail = nr_rules;
1251
1252 /*
1253 * check if the short name resolves to a valid ref,
1254 * but use only rules prior to the matched one
1255 */
1256 for (j = 0; j < rules_to_fail; j++) {
1257 const char *rule = ref_rev_parse_rules[j];
1258
1259 /* skip matched rule */
1260 if (i == j)
1261 continue;
1262
1263 /*
1264 * the short name is ambiguous, if it resolves
1265 * (with this previous rule) to a valid ref
1266 * read_ref() returns 0 on success
1267 */
1268 strbuf_reset(&resolved_buf);
1269 strbuf_addf(&resolved_buf, rule,
1270 short_name_len, short_name);
1271 if (refs_ref_exists(refs, resolved_buf.buf))
1272 break;
1273 }
1274
1275 /*
1276 * short name is non-ambiguous if all previous rules
1277 * haven't resolved to a valid ref
1278 */
1279 if (j == rules_to_fail) {
1280 strbuf_release(&resolved_buf);
1281 return short_name;
1282 }
1283 }
1284
1285 strbuf_release(&resolved_buf);
1286 free(short_name);
1287 return xstrdup(refname);
1288 }
1289
1290 char *shorten_unambiguous_ref(const char *refname, int strict)
1291 {
1292 return refs_shorten_unambiguous_ref(get_main_ref_store(the_repository),
1293 refname, strict);
1294 }
1295
1296 static struct string_list *hide_refs;
1297
1298 int parse_hide_refs_config(const char *var, const char *value, const char *section)
1299 {
1300 const char *key;
1301 if (!strcmp("transfer.hiderefs", var) ||
1302 (!parse_config_key(var, section, NULL, NULL, &key) &&
1303 !strcmp(key, "hiderefs"))) {
1304 char *ref;
1305 int len;
1306
1307 if (!value)
1308 return config_error_nonbool(var);
1309 ref = xstrdup(value);
1310 len = strlen(ref);
1311 while (len && ref[len - 1] == '/')
1312 ref[--len] = '\0';
1313 if (!hide_refs) {
1314 CALLOC_ARRAY(hide_refs, 1);
1315 hide_refs->strdup_strings = 1;
1316 }
1317 string_list_append(hide_refs, ref);
1318 }
1319 return 0;
1320 }
1321
1322 int ref_is_hidden(const char *refname, const char *refname_full)
1323 {
1324 int i;
1325
1326 if (!hide_refs)
1327 return 0;
1328 for (i = hide_refs->nr - 1; i >= 0; i--) {
1329 const char *match = hide_refs->items[i].string;
1330 const char *subject;
1331 int neg = 0;
1332 const char *p;
1333
1334 if (*match == '!') {
1335 neg = 1;
1336 match++;
1337 }
1338
1339 if (*match == '^') {
1340 subject = refname_full;
1341 match++;
1342 } else {
1343 subject = refname;
1344 }
1345
1346 /* refname can be NULL when namespaces are used. */
1347 if (subject &&
1348 skip_prefix(subject, match, &p) &&
1349 (!*p || *p == '/'))
1350 return !neg;
1351 }
1352 return 0;
1353 }
1354
1355 const char *find_descendant_ref(const char *dirname,
1356 const struct string_list *extras,
1357 const struct string_list *skip)
1358 {
1359 int pos;
1360
1361 if (!extras)
1362 return NULL;
1363
1364 /*
1365 * Look at the place where dirname would be inserted into
1366 * extras. If there is an entry at that position that starts
1367 * with dirname (remember, dirname includes the trailing
1368 * slash) and is not in skip, then we have a conflict.
1369 */
1370 for (pos = string_list_find_insert_index(extras, dirname, 0);
1371 pos < extras->nr; pos++) {
1372 const char *extra_refname = extras->items[pos].string;
1373
1374 if (!starts_with(extra_refname, dirname))
1375 break;
1376
1377 if (!skip || !string_list_has_string(skip, extra_refname))
1378 return extra_refname;
1379 }
1380 return NULL;
1381 }
1382
1383 int refs_head_ref(struct ref_store *refs, each_ref_fn fn, void *cb_data)
1384 {
1385 struct object_id oid;
1386 int flag;
1387
1388 if (refs_resolve_ref_unsafe(refs, "HEAD", RESOLVE_REF_READING,
1389 &oid, &flag))
1390 return fn("HEAD", &oid, flag, cb_data);
1391
1392 return 0;
1393 }
1394
1395 int head_ref(each_ref_fn fn, void *cb_data)
1396 {
1397 return refs_head_ref(get_main_ref_store(the_repository), fn, cb_data);
1398 }
1399
1400 struct ref_iterator *refs_ref_iterator_begin(
1401 struct ref_store *refs,
1402 const char *prefix, int trim,
1403 enum do_for_each_ref_flags flags)
1404 {
1405 struct ref_iterator *iter;
1406
1407 if (!(flags & DO_FOR_EACH_INCLUDE_BROKEN)) {
1408 static int ref_paranoia = -1;
1409
1410 if (ref_paranoia < 0)
1411 ref_paranoia = git_env_bool("GIT_REF_PARANOIA", 1);
1412 if (ref_paranoia) {
1413 flags |= DO_FOR_EACH_INCLUDE_BROKEN;
1414 flags |= DO_FOR_EACH_OMIT_DANGLING_SYMREFS;
1415 }
1416 }
1417
1418 iter = refs->be->iterator_begin(refs, prefix, flags);
1419
1420 /*
1421 * `iterator_begin()` already takes care of prefix, but we
1422 * might need to do some trimming:
1423 */
1424 if (trim)
1425 iter = prefix_ref_iterator_begin(iter, "", trim);
1426
1427 /* Sanity check for subclasses: */
1428 if (!iter->ordered)
1429 BUG("reference iterator is not ordered");
1430
1431 return iter;
1432 }
1433
1434 /*
1435 * Call fn for each reference in the specified submodule for which the
1436 * refname begins with prefix. If trim is non-zero, then trim that
1437 * many characters off the beginning of each refname before passing
1438 * the refname to fn. flags can be DO_FOR_EACH_INCLUDE_BROKEN to
1439 * include broken references in the iteration. If fn ever returns a
1440 * non-zero value, stop the iteration and return that value;
1441 * otherwise, return 0.
1442 */
1443 static int do_for_each_repo_ref(struct repository *r, const char *prefix,
1444 each_repo_ref_fn fn, int trim, int flags,
1445 void *cb_data)
1446 {
1447 struct ref_iterator *iter;
1448 struct ref_store *refs = get_main_ref_store(r);
1449
1450 if (!refs)
1451 return 0;
1452
1453 iter = refs_ref_iterator_begin(refs, prefix, trim, flags);
1454
1455 return do_for_each_repo_ref_iterator(r, iter, fn, cb_data);
1456 }
1457
1458 struct do_for_each_ref_help {
1459 each_ref_fn *fn;
1460 void *cb_data;
1461 };
1462
1463 static int do_for_each_ref_helper(struct repository *r,
1464 const char *refname,
1465 const struct object_id *oid,
1466 int flags,
1467 void *cb_data)
1468 {
1469 struct do_for_each_ref_help *hp = cb_data;
1470
1471 return hp->fn(refname, oid, flags, hp->cb_data);
1472 }
1473
1474 static int do_for_each_ref(struct ref_store *refs, const char *prefix,
1475 each_ref_fn fn, int trim,
1476 enum do_for_each_ref_flags flags, void *cb_data)
1477 {
1478 struct ref_iterator *iter;
1479 struct do_for_each_ref_help hp = { fn, cb_data };
1480
1481 if (!refs)
1482 return 0;
1483
1484 iter = refs_ref_iterator_begin(refs, prefix, trim, flags);
1485
1486 return do_for_each_repo_ref_iterator(the_repository, iter,
1487 do_for_each_ref_helper, &hp);
1488 }
1489
1490 int refs_for_each_ref(struct ref_store *refs, each_ref_fn fn, void *cb_data)
1491 {
1492 return do_for_each_ref(refs, "", fn, 0, 0, cb_data);
1493 }
1494
1495 int for_each_ref(each_ref_fn fn, void *cb_data)
1496 {
1497 return refs_for_each_ref(get_main_ref_store(the_repository), fn, cb_data);
1498 }
1499
1500 int refs_for_each_ref_in(struct ref_store *refs, const char *prefix,
1501 each_ref_fn fn, void *cb_data)
1502 {
1503 return do_for_each_ref(refs, prefix, fn, strlen(prefix), 0, cb_data);
1504 }
1505
1506 int for_each_ref_in(const char *prefix, each_ref_fn fn, void *cb_data)
1507 {
1508 return refs_for_each_ref_in(get_main_ref_store(the_repository), prefix, fn, cb_data);
1509 }
1510
1511 int for_each_fullref_in(const char *prefix, each_ref_fn fn, void *cb_data)
1512 {
1513 return do_for_each_ref(get_main_ref_store(the_repository),
1514 prefix, fn, 0, 0, cb_data);
1515 }
1516
1517 int refs_for_each_fullref_in(struct ref_store *refs, const char *prefix,
1518 each_ref_fn fn, void *cb_data)
1519 {
1520 return do_for_each_ref(refs, prefix, fn, 0, 0, cb_data);
1521 }
1522
1523 int for_each_replace_ref(struct repository *r, each_repo_ref_fn fn, void *cb_data)
1524 {
1525 return do_for_each_repo_ref(r, git_replace_ref_base, fn,
1526 strlen(git_replace_ref_base),
1527 DO_FOR_EACH_INCLUDE_BROKEN, cb_data);
1528 }
1529
1530 int for_each_namespaced_ref(each_ref_fn fn, void *cb_data)
1531 {
1532 struct strbuf buf = STRBUF_INIT;
1533 int ret;
1534 strbuf_addf(&buf, "%srefs/", get_git_namespace());
1535 ret = do_for_each_ref(get_main_ref_store(the_repository),
1536 buf.buf, fn, 0, 0, cb_data);
1537 strbuf_release(&buf);
1538 return ret;
1539 }
1540
1541 int refs_for_each_rawref(struct ref_store *refs, each_ref_fn fn, void *cb_data)
1542 {
1543 return do_for_each_ref(refs, "", fn, 0,
1544 DO_FOR_EACH_INCLUDE_BROKEN, cb_data);
1545 }
1546
1547 int for_each_rawref(each_ref_fn fn, void *cb_data)
1548 {
1549 return refs_for_each_rawref(get_main_ref_store(the_repository), fn, cb_data);
1550 }
1551
1552 static int qsort_strcmp(const void *va, const void *vb)
1553 {
1554 const char *a = *(const char **)va;
1555 const char *b = *(const char **)vb;
1556
1557 return strcmp(a, b);
1558 }
1559
1560 static void find_longest_prefixes_1(struct string_list *out,
1561 struct strbuf *prefix,
1562 const char **patterns, size_t nr)
1563 {
1564 size_t i;
1565
1566 for (i = 0; i < nr; i++) {
1567 char c = patterns[i][prefix->len];
1568 if (!c || is_glob_special(c)) {
1569 string_list_append(out, prefix->buf);
1570 return;
1571 }
1572 }
1573
1574 i = 0;
1575 while (i < nr) {
1576 size_t end;
1577
1578 /*
1579 * Set "end" to the index of the element _after_ the last one
1580 * in our group.
1581 */
1582 for (end = i + 1; end < nr; end++) {
1583 if (patterns[i][prefix->len] != patterns[end][prefix->len])
1584 break;
1585 }
1586
1587 strbuf_addch(prefix, patterns[i][prefix->len]);
1588 find_longest_prefixes_1(out, prefix, patterns + i, end - i);
1589 strbuf_setlen(prefix, prefix->len - 1);
1590
1591 i = end;
1592 }
1593 }
1594
1595 static void find_longest_prefixes(struct string_list *out,
1596 const char **patterns)
1597 {
1598 struct strvec sorted = STRVEC_INIT;
1599 struct strbuf prefix = STRBUF_INIT;
1600
1601 strvec_pushv(&sorted, patterns);
1602 QSORT(sorted.v, sorted.nr, qsort_strcmp);
1603
1604 find_longest_prefixes_1(out, &prefix, sorted.v, sorted.nr);
1605
1606 strvec_clear(&sorted);
1607 strbuf_release(&prefix);
1608 }
1609
1610 int for_each_fullref_in_prefixes(const char *namespace,
1611 const char **patterns,
1612 each_ref_fn fn, void *cb_data)
1613 {
1614 struct string_list prefixes = STRING_LIST_INIT_DUP;
1615 struct string_list_item *prefix;
1616 struct strbuf buf = STRBUF_INIT;
1617 int ret = 0, namespace_len;
1618
1619 find_longest_prefixes(&prefixes, patterns);
1620
1621 if (namespace)
1622 strbuf_addstr(&buf, namespace);
1623 namespace_len = buf.len;
1624
1625 for_each_string_list_item(prefix, &prefixes) {
1626 strbuf_addstr(&buf, prefix->string);
1627 ret = for_each_fullref_in(buf.buf, fn, cb_data);
1628 if (ret)
1629 break;
1630 strbuf_setlen(&buf, namespace_len);
1631 }
1632
1633 string_list_clear(&prefixes, 0);
1634 strbuf_release(&buf);
1635 return ret;
1636 }
1637
1638 static int refs_read_special_head(struct ref_store *ref_store,
1639 const char *refname, struct object_id *oid,
1640 struct strbuf *referent, unsigned int *type,
1641 int *failure_errno)
1642 {
1643 struct strbuf full_path = STRBUF_INIT;
1644 struct strbuf content = STRBUF_INIT;
1645 int result = -1;
1646 strbuf_addf(&full_path, "%s/%s", ref_store->gitdir, refname);
1647
1648 if (strbuf_read_file(&content, full_path.buf, 0) < 0)
1649 goto done;
1650
1651 result = parse_loose_ref_contents(content.buf, oid, referent, type,
1652 failure_errno);
1653
1654 done:
1655 strbuf_release(&full_path);
1656 strbuf_release(&content);
1657 return result;
1658 }
1659
1660 int refs_read_raw_ref(struct ref_store *ref_store, const char *refname,
1661 struct object_id *oid, struct strbuf *referent,
1662 unsigned int *type, int *failure_errno)
1663 {
1664 assert(failure_errno);
1665 if (!strcmp(refname, "FETCH_HEAD") || !strcmp(refname, "MERGE_HEAD")) {
1666 return refs_read_special_head(ref_store, refname, oid, referent,
1667 type, failure_errno);
1668 }
1669
1670 return ref_store->be->read_raw_ref(ref_store, refname, oid, referent,
1671 type, failure_errno);
1672 }
1673
1674 int refs_read_symbolic_ref(struct ref_store *ref_store, const char *refname,
1675 struct strbuf *referent)
1676 {
1677 return ref_store->be->read_symbolic_ref(ref_store, refname, referent);
1678 }
1679
1680 const char *refs_resolve_ref_unsafe(struct ref_store *refs,
1681 const char *refname,
1682 int resolve_flags,
1683 struct object_id *oid,
1684 int *flags)
1685 {
1686 static struct strbuf sb_refname = STRBUF_INIT;
1687 struct object_id unused_oid;
1688 int unused_flags;
1689 int symref_count;
1690
1691 if (!oid)
1692 oid = &unused_oid;
1693 if (!flags)
1694 flags = &unused_flags;
1695
1696 *flags = 0;
1697
1698 if (check_refname_format(refname, REFNAME_ALLOW_ONELEVEL)) {
1699 if (!(resolve_flags & RESOLVE_REF_ALLOW_BAD_NAME) ||
1700 !refname_is_safe(refname))
1701 return NULL;
1702
1703 /*
1704 * dwim_ref() uses REF_ISBROKEN to distinguish between
1705 * missing refs and refs that were present but invalid,
1706 * to complain about the latter to stderr.
1707 *
1708 * We don't know whether the ref exists, so don't set
1709 * REF_ISBROKEN yet.
1710 */
1711 *flags |= REF_BAD_NAME;
1712 }
1713
1714 for (symref_count = 0; symref_count < SYMREF_MAXDEPTH; symref_count++) {
1715 unsigned int read_flags = 0;
1716 int failure_errno;
1717
1718 if (refs_read_raw_ref(refs, refname, oid, &sb_refname,
1719 &read_flags, &failure_errno)) {
1720 *flags |= read_flags;
1721
1722 /* In reading mode, refs must eventually resolve */
1723 if (resolve_flags & RESOLVE_REF_READING)
1724 return NULL;
1725
1726 /*
1727 * Otherwise a missing ref is OK. But the files backend
1728 * may show errors besides ENOENT if there are
1729 * similarly-named refs.
1730 */
1731 if (failure_errno != ENOENT &&
1732 failure_errno != EISDIR &&
1733 failure_errno != ENOTDIR)
1734 return NULL;
1735
1736 oidclr(oid);
1737 if (*flags & REF_BAD_NAME)
1738 *flags |= REF_ISBROKEN;
1739 return refname;
1740 }
1741
1742 *flags |= read_flags;
1743
1744 if (!(read_flags & REF_ISSYMREF)) {
1745 if (*flags & REF_BAD_NAME) {
1746 oidclr(oid);
1747 *flags |= REF_ISBROKEN;
1748 }
1749 return refname;
1750 }
1751
1752 refname = sb_refname.buf;
1753 if (resolve_flags & RESOLVE_REF_NO_RECURSE) {
1754 oidclr(oid);
1755 return refname;
1756 }
1757 if (check_refname_format(refname, REFNAME_ALLOW_ONELEVEL)) {
1758 if (!(resolve_flags & RESOLVE_REF_ALLOW_BAD_NAME) ||
1759 !refname_is_safe(refname))
1760 return NULL;
1761
1762 *flags |= REF_ISBROKEN | REF_BAD_NAME;
1763 }
1764 }
1765
1766 return NULL;
1767 }
1768
1769 /* backend functions */
1770 int refs_init_db(struct strbuf *err)
1771 {
1772 struct ref_store *refs = get_main_ref_store(the_repository);
1773
1774 return refs->be->init_db(refs, err);
1775 }
1776
1777 const char *resolve_ref_unsafe(const char *refname, int resolve_flags,
1778 struct object_id *oid, int *flags)
1779 {
1780 return refs_resolve_ref_unsafe(get_main_ref_store(the_repository), refname,
1781 resolve_flags, oid, flags);
1782 }
1783
1784 int resolve_gitlink_ref(const char *submodule, const char *refname,
1785 struct object_id *oid)
1786 {
1787 struct ref_store *refs;
1788 int flags;
1789
1790 refs = get_submodule_ref_store(submodule);
1791
1792 if (!refs)
1793 return -1;
1794
1795 if (!refs_resolve_ref_unsafe(refs, refname, 0, oid, &flags) ||
1796 is_null_oid(oid))
1797 return -1;
1798 return 0;
1799 }
1800
1801 struct ref_store_hash_entry
1802 {
1803 struct hashmap_entry ent;
1804
1805 struct ref_store *refs;
1806
1807 /* NUL-terminated identifier of the ref store: */
1808 char name[FLEX_ARRAY];
1809 };
1810
1811 static int ref_store_hash_cmp(const void *unused_cmp_data,
1812 const struct hashmap_entry *eptr,
1813 const struct hashmap_entry *entry_or_key,
1814 const void *keydata)
1815 {
1816 const struct ref_store_hash_entry *e1, *e2;
1817 const char *name;
1818
1819 e1 = container_of(eptr, const struct ref_store_hash_entry, ent);
1820 e2 = container_of(entry_or_key, const struct ref_store_hash_entry, ent);
1821 name = keydata ? keydata : e2->name;
1822
1823 return strcmp(e1->name, name);
1824 }
1825
1826 static struct ref_store_hash_entry *alloc_ref_store_hash_entry(
1827 const char *name, struct ref_store *refs)
1828 {
1829 struct ref_store_hash_entry *entry;
1830
1831 FLEX_ALLOC_STR(entry, name, name);
1832 hashmap_entry_init(&entry->ent, strhash(name));
1833 entry->refs = refs;
1834 return entry;
1835 }
1836
1837 /* A hashmap of ref_stores, stored by submodule name: */
1838 static struct hashmap submodule_ref_stores;
1839
1840 /* A hashmap of ref_stores, stored by worktree id: */
1841 static struct hashmap worktree_ref_stores;
1842
1843 /*
1844 * Look up a ref store by name. If that ref_store hasn't been
1845 * registered yet, return NULL.
1846 */
1847 static struct ref_store *lookup_ref_store_map(struct hashmap *map,
1848 const char *name)
1849 {
1850 struct ref_store_hash_entry *entry;
1851 unsigned int hash;
1852
1853 if (!map->tablesize)
1854 /* It's initialized on demand in register_ref_store(). */
1855 return NULL;
1856
1857 hash = strhash(name);
1858 entry = hashmap_get_entry_from_hash(map, hash, name,
1859 struct ref_store_hash_entry, ent);
1860 return entry ? entry->refs : NULL;
1861 }
1862
1863 /*
1864 * Create, record, and return a ref_store instance for the specified
1865 * gitdir.
1866 */
1867 static struct ref_store *ref_store_init(struct repository *repo,
1868 const char *gitdir,
1869 unsigned int flags)
1870 {
1871 const char *be_name = "files";
1872 struct ref_storage_be *be = find_ref_storage_backend(be_name);
1873 struct ref_store *refs;
1874
1875 if (!be)
1876 BUG("reference backend %s is unknown", be_name);
1877
1878 refs = be->init(repo, gitdir, flags);
1879 return refs;
1880 }
1881
1882 struct ref_store *get_main_ref_store(struct repository *r)
1883 {
1884 if (r->refs_private)
1885 return r->refs_private;
1886
1887 if (!r->gitdir)
1888 BUG("attempting to get main_ref_store outside of repository");
1889
1890 r->refs_private = ref_store_init(r, r->gitdir, REF_STORE_ALL_CAPS);
1891 r->refs_private = maybe_debug_wrap_ref_store(r->gitdir, r->refs_private);
1892 return r->refs_private;
1893 }
1894
1895 /*
1896 * Associate a ref store with a name. It is a fatal error to call this
1897 * function twice for the same name.
1898 */
1899 static void register_ref_store_map(struct hashmap *map,
1900 const char *type,
1901 struct ref_store *refs,
1902 const char *name)
1903 {
1904 struct ref_store_hash_entry *entry;
1905
1906 if (!map->tablesize)
1907 hashmap_init(map, ref_store_hash_cmp, NULL, 0);
1908
1909 entry = alloc_ref_store_hash_entry(name, refs);
1910 if (hashmap_put(map, &entry->ent))
1911 BUG("%s ref_store '%s' initialized twice", type, name);
1912 }
1913
1914 struct ref_store *get_submodule_ref_store(const char *submodule)
1915 {
1916 struct strbuf submodule_sb = STRBUF_INIT;
1917 struct ref_store *refs;
1918 char *to_free = NULL;
1919 size_t len;
1920 struct repository *subrepo;
1921
1922 if (!submodule)
1923 return NULL;
1924
1925 len = strlen(submodule);
1926 while (len && is_dir_sep(submodule[len - 1]))
1927 len--;
1928 if (!len)
1929 return NULL;
1930
1931 if (submodule[len])
1932 /* We need to strip off one or more trailing slashes */
1933 submodule = to_free = xmemdupz(submodule, len);
1934
1935 refs = lookup_ref_store_map(&submodule_ref_stores, submodule);
1936 if (refs)
1937 goto done;
1938
1939 strbuf_addstr(&submodule_sb, submodule);
1940 if (!is_nonbare_repository_dir(&submodule_sb))
1941 goto done;
1942
1943 if (submodule_to_gitdir(&submodule_sb, submodule))
1944 goto done;
1945
1946 subrepo = xmalloc(sizeof(*subrepo));
1947 /*
1948 * NEEDSWORK: Make get_submodule_ref_store() work with arbitrary
1949 * superprojects other than the_repository. This probably should be
1950 * done by making it take a struct repository * parameter instead of a
1951 * submodule path.
1952 */
1953 if (repo_submodule_init(subrepo, the_repository, submodule,
1954 null_oid())) {
1955 free(subrepo);
1956 goto done;
1957 }
1958 refs = ref_store_init(subrepo, submodule_sb.buf,
1959 REF_STORE_READ | REF_STORE_ODB);
1960 register_ref_store_map(&submodule_ref_stores, "submodule",
1961 refs, submodule);
1962
1963 done:
1964 strbuf_release(&submodule_sb);
1965 free(to_free);
1966
1967 return refs;
1968 }
1969
1970 struct ref_store *get_worktree_ref_store(const struct worktree *wt)
1971 {
1972 struct ref_store *refs;
1973 const char *id;
1974
1975 if (wt->is_current)
1976 return get_main_ref_store(the_repository);
1977
1978 id = wt->id ? wt->id : "/";
1979 refs = lookup_ref_store_map(&worktree_ref_stores, id);
1980 if (refs)
1981 return refs;
1982
1983 if (wt->id)
1984 refs = ref_store_init(the_repository,
1985 git_common_path("worktrees/%s", wt->id),
1986 REF_STORE_ALL_CAPS);
1987 else
1988 refs = ref_store_init(the_repository,
1989 get_git_common_dir(),
1990 REF_STORE_ALL_CAPS);
1991
1992 if (refs)
1993 register_ref_store_map(&worktree_ref_stores, "worktree",
1994 refs, id);
1995 return refs;
1996 }
1997
1998 void base_ref_store_init(struct ref_store *refs, struct repository *repo,
1999 const char *path, const struct ref_storage_be *be)
2000 {
2001 refs->be = be;
2002 refs->repo = repo;
2003 refs->gitdir = xstrdup(path);
2004 }
2005
2006 /* backend functions */
2007 int refs_pack_refs(struct ref_store *refs, unsigned int flags)
2008 {
2009 return refs->be->pack_refs(refs, flags);
2010 }
2011
2012 int peel_iterated_oid(const struct object_id *base, struct object_id *peeled)
2013 {
2014 if (current_ref_iter &&
2015 (current_ref_iter->oid == base ||
2016 oideq(current_ref_iter->oid, base)))
2017 return ref_iterator_peel(current_ref_iter, peeled);
2018
2019 return peel_object(base, peeled) ? -1 : 0;
2020 }
2021
2022 int refs_create_symref(struct ref_store *refs,
2023 const char *ref_target,
2024 const char *refs_heads_master,
2025 const char *logmsg)
2026 {
2027 char *msg;
2028 int retval;
2029
2030 msg = normalize_reflog_message(logmsg);
2031 retval = refs->be->create_symref(refs, ref_target, refs_heads_master,
2032 msg);
2033 free(msg);
2034 return retval;
2035 }
2036
2037 int create_symref(const char *ref_target, const char *refs_heads_master,
2038 const char *logmsg)
2039 {
2040 return refs_create_symref(get_main_ref_store(the_repository), ref_target,
2041 refs_heads_master, logmsg);
2042 }
2043
2044 int ref_update_reject_duplicates(struct string_list *refnames,
2045 struct strbuf *err)
2046 {
2047 size_t i, n = refnames->nr;
2048
2049 assert(err);
2050
2051 for (i = 1; i < n; i++) {
2052 int cmp = strcmp(refnames->items[i - 1].string,
2053 refnames->items[i].string);
2054
2055 if (!cmp) {
2056 strbuf_addf(err,
2057 _("multiple updates for ref '%s' not allowed"),
2058 refnames->items[i].string);
2059 return 1;
2060 } else if (cmp > 0) {
2061 BUG("ref_update_reject_duplicates() received unsorted list");
2062 }
2063 }
2064 return 0;
2065 }
2066
2067 static int run_transaction_hook(struct ref_transaction *transaction,
2068 const char *state)
2069 {
2070 struct child_process proc = CHILD_PROCESS_INIT;
2071 struct strbuf buf = STRBUF_INIT;
2072 const char *hook;
2073 int ret = 0, i;
2074
2075 hook = find_hook("reference-transaction");
2076 if (!hook)
2077 return ret;
2078
2079 strvec_pushl(&proc.args, hook, state, NULL);
2080 proc.in = -1;
2081 proc.stdout_to_stderr = 1;
2082 proc.trace2_hook_name = "reference-transaction";
2083
2084 ret = start_command(&proc);
2085 if (ret)
2086 return ret;
2087
2088 sigchain_push(SIGPIPE, SIG_IGN);
2089
2090 for (i = 0; i < transaction->nr; i++) {
2091 struct ref_update *update = transaction->updates[i];
2092
2093 strbuf_reset(&buf);
2094 strbuf_addf(&buf, "%s %s %s\n",
2095 oid_to_hex(&update->old_oid),
2096 oid_to_hex(&update->new_oid),
2097 update->refname);
2098
2099 if (write_in_full(proc.in, buf.buf, buf.len) < 0) {
2100 if (errno != EPIPE) {
2101 /* Don't leak errno outside this API */
2102 errno = 0;
2103 ret = -1;
2104 }
2105 break;
2106 }
2107 }
2108
2109 close(proc.in);
2110 sigchain_pop(SIGPIPE);
2111 strbuf_release(&buf);
2112
2113 ret |= finish_command(&proc);
2114 return ret;
2115 }
2116
2117 int ref_transaction_prepare(struct ref_transaction *transaction,
2118 struct strbuf *err)
2119 {
2120 struct ref_store *refs = transaction->ref_store;
2121 int ret;
2122
2123 switch (transaction->state) {
2124 case REF_TRANSACTION_OPEN:
2125 /* Good. */
2126 break;
2127 case REF_TRANSACTION_PREPARED:
2128 BUG("prepare called twice on reference transaction");
2129 break;
2130 case REF_TRANSACTION_CLOSED:
2131 BUG("prepare called on a closed reference transaction");
2132 break;
2133 default:
2134 BUG("unexpected reference transaction state");
2135 break;
2136 }
2137
2138 if (refs->repo->objects->odb->disable_ref_updates) {
2139 strbuf_addstr(err,
2140 _("ref updates forbidden inside quarantine environment"));
2141 return -1;
2142 }
2143
2144 ret = refs->be->transaction_prepare(refs, transaction, err);
2145 if (ret)
2146 return ret;
2147
2148 ret = run_transaction_hook(transaction, "prepared");
2149 if (ret) {
2150 ref_transaction_abort(transaction, err);
2151 die(_("ref updates aborted by hook"));
2152 }
2153
2154 return 0;
2155 }
2156
2157 int ref_transaction_abort(struct ref_transaction *transaction,
2158 struct strbuf *err)
2159 {
2160 struct ref_store *refs = transaction->ref_store;
2161 int ret = 0;
2162
2163 switch (transaction->state) {
2164 case REF_TRANSACTION_OPEN:
2165 /* No need to abort explicitly. */
2166 break;
2167 case REF_TRANSACTION_PREPARED:
2168 ret = refs->be->transaction_abort(refs, transaction, err);
2169 break;
2170 case REF_TRANSACTION_CLOSED:
2171 BUG("abort called on a closed reference transaction");
2172 break;
2173 default:
2174 BUG("unexpected reference transaction state");
2175 break;
2176 }
2177
2178 run_transaction_hook(transaction, "aborted");
2179
2180 ref_transaction_free(transaction);
2181 return ret;
2182 }
2183
2184 int ref_transaction_commit(struct ref_transaction *transaction,
2185 struct strbuf *err)
2186 {
2187 struct ref_store *refs = transaction->ref_store;
2188 int ret;
2189
2190 switch (transaction->state) {
2191 case REF_TRANSACTION_OPEN:
2192 /* Need to prepare first. */
2193 ret = ref_transaction_prepare(transaction, err);
2194 if (ret)
2195 return ret;
2196 break;
2197 case REF_TRANSACTION_PREPARED:
2198 /* Fall through to finish. */
2199 break;
2200 case REF_TRANSACTION_CLOSED:
2201 BUG("commit called on a closed reference transaction");
2202 break;
2203 default:
2204 BUG("unexpected reference transaction state");
2205 break;
2206 }
2207
2208 ret = refs->be->transaction_finish(refs, transaction, err);
2209 if (!ret)
2210 run_transaction_hook(transaction, "committed");
2211 return ret;
2212 }
2213
2214 int refs_verify_refname_available(struct ref_store *refs,
2215 const char *refname,
2216 const struct string_list *extras,
2217 const struct string_list *skip,
2218 struct strbuf *err)
2219 {
2220 const char *slash;
2221 const char *extra_refname;
2222 struct strbuf dirname = STRBUF_INIT;
2223 struct strbuf referent = STRBUF_INIT;
2224 struct object_id oid;
2225 unsigned int type;
2226 struct ref_iterator *iter;
2227 int ok;
2228 int ret = -1;
2229
2230 /*
2231 * For the sake of comments in this function, suppose that
2232 * refname is "refs/foo/bar".
2233 */
2234
2235 assert(err);
2236
2237 strbuf_grow(&dirname, strlen(refname) + 1);
2238 for (slash = strchr(refname, '/'); slash; slash = strchr(slash + 1, '/')) {
2239 /*
2240 * Just saying "Is a directory" when we e.g. can't
2241 * lock some multi-level ref isn't very informative,
2242 * the user won't be told *what* is a directory, so
2243 * let's not use strerror() below.
2244 */
2245 int ignore_errno;
2246 /* Expand dirname to the new prefix, not including the trailing slash: */
2247 strbuf_add(&dirname, refname + dirname.len, slash - refname - dirname.len);
2248
2249 /*
2250 * We are still at a leading dir of the refname (e.g.,
2251 * "refs/foo"; if there is a reference with that name,
2252 * it is a conflict, *unless* it is in skip.
2253 */
2254 if (skip && string_list_has_string(skip, dirname.buf))
2255 continue;
2256
2257 if (!refs_read_raw_ref(refs, dirname.buf, &oid, &referent,
2258 &type, &ignore_errno)) {
2259 strbuf_addf(err, _("'%s' exists; cannot create '%s'"),
2260 dirname.buf, refname);
2261 goto cleanup;
2262 }
2263
2264 if (extras && string_list_has_string(extras, dirname.buf)) {
2265 strbuf_addf(err, _("cannot process '%s' and '%s' at the same time"),
2266 refname, dirname.buf);
2267 goto cleanup;
2268 }
2269 }
2270
2271 /*
2272 * We are at the leaf of our refname (e.g., "refs/foo/bar").
2273 * There is no point in searching for a reference with that
2274 * name, because a refname isn't considered to conflict with
2275 * itself. But we still need to check for references whose
2276 * names are in the "refs/foo/bar/" namespace, because they
2277 * *do* conflict.
2278 */
2279 strbuf_addstr(&dirname, refname + dirname.len);
2280 strbuf_addch(&dirname, '/');
2281
2282 iter = refs_ref_iterator_begin(refs, dirname.buf, 0,
2283 DO_FOR_EACH_INCLUDE_BROKEN);
2284 while ((ok = ref_iterator_advance(iter)) == ITER_OK) {
2285 if (skip &&
2286 string_list_has_string(skip, iter->refname))
2287 continue;
2288
2289 strbuf_addf(err, _("'%s' exists; cannot create '%s'"),
2290 iter->refname, refname);
2291 ref_iterator_abort(iter);
2292 goto cleanup;
2293 }
2294
2295 if (ok != ITER_DONE)
2296 BUG("error while iterating over references");
2297
2298 extra_refname = find_descendant_ref(dirname.buf, extras, skip);
2299 if (extra_refname)
2300 strbuf_addf(err, _("cannot process '%s' and '%s' at the same time"),
2301 refname, extra_refname);
2302 else
2303 ret = 0;
2304
2305 cleanup:
2306 strbuf_release(&referent);
2307 strbuf_release(&dirname);
2308 return ret;
2309 }
2310
2311 int refs_for_each_reflog(struct ref_store *refs, each_ref_fn fn, void *cb_data)
2312 {
2313 struct ref_iterator *iter;
2314 struct do_for_each_ref_help hp = { fn, cb_data };
2315
2316 iter = refs->be->reflog_iterator_begin(refs);
2317
2318 return do_for_each_repo_ref_iterator(the_repository, iter,
2319 do_for_each_ref_helper, &hp);
2320 }
2321
2322 int for_each_reflog(each_ref_fn fn, void *cb_data)
2323 {
2324 return refs_for_each_reflog(get_main_ref_store(the_repository), fn, cb_data);
2325 }
2326
2327 int refs_for_each_reflog_ent_reverse(struct ref_store *refs,
2328 const char *refname,
2329 each_reflog_ent_fn fn,
2330 void *cb_data)
2331 {
2332 return refs->be->for_each_reflog_ent_reverse(refs, refname,
2333 fn, cb_data);
2334 }
2335
2336 int for_each_reflog_ent_reverse(const char *refname, each_reflog_ent_fn fn,
2337 void *cb_data)
2338 {
2339 return refs_for_each_reflog_ent_reverse(get_main_ref_store(the_repository),
2340 refname, fn, cb_data);
2341 }
2342
2343 int refs_for_each_reflog_ent(struct ref_store *refs, const char *refname,
2344 each_reflog_ent_fn fn, void *cb_data)
2345 {
2346 return refs->be->for_each_reflog_ent(refs, refname, fn, cb_data);
2347 }
2348
2349 int for_each_reflog_ent(const char *refname, each_reflog_ent_fn fn,
2350 void *cb_data)
2351 {
2352 return refs_for_each_reflog_ent(get_main_ref_store(the_repository), refname,
2353 fn, cb_data);
2354 }
2355
2356 int refs_reflog_exists(struct ref_store *refs, const char *refname)
2357 {
2358 return refs->be->reflog_exists(refs, refname);
2359 }
2360
2361 int reflog_exists(const char *refname)
2362 {
2363 return refs_reflog_exists(get_main_ref_store(the_repository), refname);
2364 }
2365
2366 int refs_create_reflog(struct ref_store *refs, const char *refname,
2367 struct strbuf *err)
2368 {
2369 return refs->be->create_reflog(refs, refname, err);
2370 }
2371
2372 int safe_create_reflog(const char *refname, struct strbuf *err)
2373 {
2374 return refs_create_reflog(get_main_ref_store(the_repository), refname,
2375 err);
2376 }
2377
2378 int refs_delete_reflog(struct ref_store *refs, const char *refname)
2379 {
2380 return refs->be->delete_reflog(refs, refname);
2381 }
2382
2383 int delete_reflog(const char *refname)
2384 {
2385 return refs_delete_reflog(get_main_ref_store(the_repository), refname);
2386 }
2387
2388 int refs_reflog_expire(struct ref_store *refs,
2389 const char *refname,
2390 unsigned int flags,
2391 reflog_expiry_prepare_fn prepare_fn,
2392 reflog_expiry_should_prune_fn should_prune_fn,
2393 reflog_expiry_cleanup_fn cleanup_fn,
2394 void *policy_cb_data)
2395 {
2396 return refs->be->reflog_expire(refs, refname, flags,
2397 prepare_fn, should_prune_fn,
2398 cleanup_fn, policy_cb_data);
2399 }
2400
2401 int reflog_expire(const char *refname,
2402 unsigned int flags,
2403 reflog_expiry_prepare_fn prepare_fn,
2404 reflog_expiry_should_prune_fn should_prune_fn,
2405 reflog_expiry_cleanup_fn cleanup_fn,
2406 void *policy_cb_data)
2407 {
2408 return refs_reflog_expire(get_main_ref_store(the_repository),
2409 refname, flags,
2410 prepare_fn, should_prune_fn,
2411 cleanup_fn, policy_cb_data);
2412 }
2413
2414 int initial_ref_transaction_commit(struct ref_transaction *transaction,
2415 struct strbuf *err)
2416 {
2417 struct ref_store *refs = transaction->ref_store;
2418
2419 return refs->be->initial_transaction_commit(refs, transaction, err);
2420 }
2421
2422 void ref_transaction_for_each_queued_update(struct ref_transaction *transaction,
2423 ref_transaction_for_each_queued_update_fn cb,
2424 void *cb_data)
2425 {
2426 int i;
2427
2428 for (i = 0; i < transaction->nr; i++) {
2429 struct ref_update *update = transaction->updates[i];
2430
2431 cb(update->refname,
2432 (update->flags & REF_HAVE_OLD) ? &update->old_oid : NULL,
2433 (update->flags & REF_HAVE_NEW) ? &update->new_oid : NULL,
2434 cb_data);
2435 }
2436 }
2437
2438 int refs_delete_refs(struct ref_store *refs, const char *logmsg,
2439 struct string_list *refnames, unsigned int flags)
2440 {
2441 char *msg;
2442 int retval;
2443
2444 msg = normalize_reflog_message(logmsg);
2445 retval = refs->be->delete_refs(refs, msg, refnames, flags);
2446 free(msg);
2447 return retval;
2448 }
2449
2450 int delete_refs(const char *msg, struct string_list *refnames,
2451 unsigned int flags)
2452 {
2453 return refs_delete_refs(get_main_ref_store(the_repository), msg, refnames, flags);
2454 }
2455
2456 int refs_rename_ref(struct ref_store *refs, const char *oldref,
2457 const char *newref, const char *logmsg)
2458 {
2459 char *msg;
2460 int retval;
2461
2462 msg = normalize_reflog_message(logmsg);
2463 retval = refs->be->rename_ref(refs, oldref, newref, msg);
2464 free(msg);
2465 return retval;
2466 }
2467
2468 int rename_ref(const char *oldref, const char *newref, const char *logmsg)
2469 {
2470 return refs_rename_ref(get_main_ref_store(the_repository), oldref, newref, logmsg);
2471 }
2472
2473 int refs_copy_existing_ref(struct ref_store *refs, const char *oldref,
2474 const char *newref, const char *logmsg)
2475 {
2476 char *msg;
2477 int retval;
2478
2479 msg = normalize_reflog_message(logmsg);
2480 retval = refs->be->copy_ref(refs, oldref, newref, msg);
2481 free(msg);
2482 return retval;
2483 }
2484
2485 int copy_existing_ref(const char *oldref, const char *newref, const char *logmsg)
2486 {
2487 return refs_copy_existing_ref(get_main_ref_store(the_repository), oldref, newref, logmsg);
2488 }