1#include "../cache.h" 2#include "../refs.h" 3#include "refs-internal.h" 4#include "ref-cache.h" 5#include "../iterator.h" 6#include "../dir-iterator.h" 7#include "../lockfile.h" 8#include "../object.h" 9#include "../dir.h" 10 11struct ref_lock { 12 char *ref_name; 13 struct lock_file *lk; 14 struct object_id old_oid; 15}; 16 17/* 18 * Return true if refname, which has the specified oid and flags, can 19 * be resolved to an object in the database. If the referred-to object 20 * does not exist, emit a warning and return false. 21 */ 22static int ref_resolves_to_object(const char *refname, 23 const struct object_id *oid, 24 unsigned int flags) 25{ 26 if (flags & REF_ISBROKEN) 27 return 0; 28 if (!has_sha1_file(oid->hash)) { 29 error("%s does not point to a valid object!", refname); 30 return 0; 31 } 32 return 1; 33} 34 35struct packed_ref_cache { 36 struct ref_cache *cache; 37 38 /* 39 * Count of references to the data structure in this instance, 40 * including the pointer from files_ref_store::packed if any. 41 * The data will not be freed as long as the reference count 42 * is nonzero. 43 */ 44 unsigned int referrers; 45 46 /* The metadata from when this packed-refs cache was read */ 47 struct stat_validity validity; 48}; 49 50/* 51 * A container for `packed-refs`-related data. It is not (yet) a 52 * `ref_store`. 53 */ 54struct packed_ref_store { 55 unsigned int store_flags; 56 57 /* The path of the "packed-refs" file: */ 58 char *path; 59 60 /* 61 * A cache of the values read from the `packed-refs` file, if 62 * it might still be current; otherwise, NULL. 63 */ 64 struct packed_ref_cache *cache; 65 66 /* 67 * Lock used for the "packed-refs" file. Note that this (and 68 * thus the enclosing `packed_ref_store`) must not be freed. 69 */ 70 struct lock_file lock; 71}; 72 73static struct packed_ref_store *packed_ref_store_create( 74 const char *path, unsigned int store_flags) 75{ 76 struct packed_ref_store *refs = xcalloc(1, sizeof(*refs)); 77 78 refs->store_flags = store_flags; 79 refs->path = xstrdup(path); 80 return refs; 81} 82 83/* 84 * Die if refs is not the main ref store. caller is used in any 85 * necessary error messages. 86 */ 87static void packed_assert_main_repository(struct packed_ref_store *refs, 88 const char *caller) 89{ 90 if (refs->store_flags & REF_STORE_MAIN) 91 return; 92 93 die("BUG: operation %s only allowed for main ref store", caller); 94} 95 96/* 97 * Future: need to be in "struct repository" 98 * when doing a full libification. 99 */ 100struct files_ref_store { 101 struct ref_store base; 102 unsigned int store_flags; 103 104 char *gitdir; 105 char *gitcommondir; 106 107 struct ref_cache *loose; 108 109 struct packed_ref_store *packed_ref_store; 110}; 111 112/* 113 * Increment the reference count of *packed_refs. 114 */ 115static void acquire_packed_ref_cache(struct packed_ref_cache *packed_refs) 116{ 117 packed_refs->referrers++; 118} 119 120/* 121 * Decrease the reference count of *packed_refs. If it goes to zero, 122 * free *packed_refs and return true; otherwise return false. 123 */ 124static int release_packed_ref_cache(struct packed_ref_cache *packed_refs) 125{ 126 if (!--packed_refs->referrers) { 127 free_ref_cache(packed_refs->cache); 128 stat_validity_clear(&packed_refs->validity); 129 free(packed_refs); 130 return 1; 131 } else { 132 return 0; 133 } 134} 135 136static void clear_packed_ref_cache(struct packed_ref_store *refs) 137{ 138 if (refs->cache) { 139 struct packed_ref_cache *cache = refs->cache; 140 141 if (is_lock_file_locked(&refs->lock)) 142 die("BUG: packed-ref cache cleared while locked"); 143 refs->cache = NULL; 144 release_packed_ref_cache(cache); 145 } 146} 147 148static void clear_loose_ref_cache(struct files_ref_store *refs) 149{ 150 if (refs->loose) { 151 free_ref_cache(refs->loose); 152 refs->loose = NULL; 153 } 154} 155 156/* 157 * Create a new submodule ref cache and add it to the internal 158 * set of caches. 159 */ 160static struct ref_store *files_ref_store_create(const char *gitdir, 161 unsigned int flags) 162{ 163 struct files_ref_store *refs = xcalloc(1, sizeof(*refs)); 164 struct ref_store *ref_store = (struct ref_store *)refs; 165 struct strbuf sb = STRBUF_INIT; 166 167 base_ref_store_init(ref_store, &refs_be_files); 168 refs->store_flags = flags; 169 170 refs->gitdir = xstrdup(gitdir); 171 get_common_dir_noenv(&sb, gitdir); 172 refs->gitcommondir = strbuf_detach(&sb, NULL); 173 strbuf_addf(&sb, "%s/packed-refs", refs->gitcommondir); 174 refs->packed_ref_store = packed_ref_store_create(sb.buf, flags); 175 strbuf_release(&sb); 176 177 return ref_store; 178} 179 180/* 181 * Die if refs is not the main ref store. caller is used in any 182 * necessary error messages. 183 */ 184static void files_assert_main_repository(struct files_ref_store *refs, 185 const char *caller) 186{ 187 if (refs->store_flags & REF_STORE_MAIN) 188 return; 189 190 die("BUG: operation %s only allowed for main ref store", caller); 191} 192 193/* 194 * Downcast ref_store to files_ref_store. Die if ref_store is not a 195 * files_ref_store. required_flags is compared with ref_store's 196 * store_flags to ensure the ref_store has all required capabilities. 197 * "caller" is used in any necessary error messages. 198 */ 199static struct files_ref_store *files_downcast(struct ref_store *ref_store, 200 unsigned int required_flags, 201 const char *caller) 202{ 203 struct files_ref_store *refs; 204 205 if (ref_store->be != &refs_be_files) 206 die("BUG: ref_store is type \"%s\" not \"files\" in %s", 207 ref_store->be->name, caller); 208 209 refs = (struct files_ref_store *)ref_store; 210 211 if ((refs->store_flags & required_flags) != required_flags) 212 die("BUG: operation %s requires abilities 0x%x, but only have 0x%x", 213 caller, required_flags, refs->store_flags); 214 215 return refs; 216} 217 218/* The length of a peeled reference line in packed-refs, including EOL: */ 219#define PEELED_LINE_LENGTH 42 220 221/* 222 * The packed-refs header line that we write out. Perhaps other 223 * traits will be added later. The trailing space is required. 224 */ 225static const char PACKED_REFS_HEADER[] = 226 "# pack-refs with: peeled fully-peeled \n"; 227 228/* 229 * Parse one line from a packed-refs file. Write the SHA1 to sha1. 230 * Return a pointer to the refname within the line (null-terminated), 231 * or NULL if there was a problem. 232 */ 233static const char *parse_ref_line(struct strbuf *line, struct object_id *oid) 234{ 235 const char *ref; 236 237 if (parse_oid_hex(line->buf, oid, &ref) < 0) 238 return NULL; 239 if (!isspace(*ref++)) 240 return NULL; 241 242 if (isspace(*ref)) 243 return NULL; 244 245 if (line->buf[line->len - 1] != '\n') 246 return NULL; 247 line->buf[--line->len] = 0; 248 249 return ref; 250} 251 252/* 253 * Read from `packed_refs_file` into a newly-allocated 254 * `packed_ref_cache` and return it. The return value will already 255 * have its reference count incremented. 256 * 257 * A comment line of the form "# pack-refs with: " may contain zero or 258 * more traits. We interpret the traits as follows: 259 * 260 * No traits: 261 * 262 * Probably no references are peeled. But if the file contains a 263 * peeled value for a reference, we will use it. 264 * 265 * peeled: 266 * 267 * References under "refs/tags/", if they *can* be peeled, *are* 268 * peeled in this file. References outside of "refs/tags/" are 269 * probably not peeled even if they could have been, but if we find 270 * a peeled value for such a reference we will use it. 271 * 272 * fully-peeled: 273 * 274 * All references in the file that can be peeled are peeled. 275 * Inversely (and this is more important), any references in the 276 * file for which no peeled value is recorded is not peelable. This 277 * trait should typically be written alongside "peeled" for 278 * compatibility with older clients, but we do not require it 279 * (i.e., "peeled" is a no-op if "fully-peeled" is set). 280 */ 281static struct packed_ref_cache *read_packed_refs(const char *packed_refs_file) 282{ 283 FILE *f; 284 struct packed_ref_cache *packed_refs = xcalloc(1, sizeof(*packed_refs)); 285 struct ref_entry *last = NULL; 286 struct strbuf line = STRBUF_INIT; 287 enum { PEELED_NONE, PEELED_TAGS, PEELED_FULLY } peeled = PEELED_NONE; 288 struct ref_dir *dir; 289 290 acquire_packed_ref_cache(packed_refs); 291 packed_refs->cache = create_ref_cache(NULL, NULL); 292 packed_refs->cache->root->flag &= ~REF_INCOMPLETE; 293 294 f = fopen(packed_refs_file, "r"); 295 if (!f) { 296 if (errno == ENOENT) { 297 /* 298 * This is OK; it just means that no 299 * "packed-refs" file has been written yet, 300 * which is equivalent to it being empty. 301 */ 302 return packed_refs; 303 } else { 304 die_errno("couldn't read %s", packed_refs_file); 305 } 306 } 307 308 stat_validity_update(&packed_refs->validity, fileno(f)); 309 310 dir = get_ref_dir(packed_refs->cache->root); 311 while (strbuf_getwholeline(&line, f, '\n') != EOF) { 312 struct object_id oid; 313 const char *refname; 314 const char *traits; 315 316 if (skip_prefix(line.buf, "# pack-refs with:", &traits)) { 317 if (strstr(traits, " fully-peeled ")) 318 peeled = PEELED_FULLY; 319 else if (strstr(traits, " peeled ")) 320 peeled = PEELED_TAGS; 321 /* perhaps other traits later as well */ 322 continue; 323 } 324 325 refname = parse_ref_line(&line, &oid); 326 if (refname) { 327 int flag = REF_ISPACKED; 328 329 if (check_refname_format(refname, REFNAME_ALLOW_ONELEVEL)) { 330 if (!refname_is_safe(refname)) 331 die("packed refname is dangerous: %s", refname); 332 oidclr(&oid); 333 flag |= REF_BAD_NAME | REF_ISBROKEN; 334 } 335 last = create_ref_entry(refname, &oid, flag); 336 if (peeled == PEELED_FULLY || 337 (peeled == PEELED_TAGS && starts_with(refname, "refs/tags/"))) 338 last->flag |= REF_KNOWS_PEELED; 339 add_ref_entry(dir, last); 340 continue; 341 } 342 if (last && 343 line.buf[0] == '^' && 344 line.len == PEELED_LINE_LENGTH && 345 line.buf[PEELED_LINE_LENGTH - 1] == '\n' && 346 !get_oid_hex(line.buf + 1, &oid)) { 347 oidcpy(&last->u.value.peeled, &oid); 348 /* 349 * Regardless of what the file header said, 350 * we definitely know the value of *this* 351 * reference: 352 */ 353 last->flag |= REF_KNOWS_PEELED; 354 } 355 } 356 357 fclose(f); 358 strbuf_release(&line); 359 360 return packed_refs; 361} 362 363static void files_reflog_path(struct files_ref_store *refs, 364 struct strbuf *sb, 365 const char *refname) 366{ 367 if (!refname) { 368 /* 369 * FIXME: of course this is wrong in multi worktree 370 * setting. To be fixed real soon. 371 */ 372 strbuf_addf(sb, "%s/logs", refs->gitcommondir); 373 return; 374 } 375 376 switch (ref_type(refname)) { 377 case REF_TYPE_PER_WORKTREE: 378 case REF_TYPE_PSEUDOREF: 379 strbuf_addf(sb, "%s/logs/%s", refs->gitdir, refname); 380 break; 381 case REF_TYPE_NORMAL: 382 strbuf_addf(sb, "%s/logs/%s", refs->gitcommondir, refname); 383 break; 384 default: 385 die("BUG: unknown ref type %d of ref %s", 386 ref_type(refname), refname); 387 } 388} 389 390static void files_ref_path(struct files_ref_store *refs, 391 struct strbuf *sb, 392 const char *refname) 393{ 394 switch (ref_type(refname)) { 395 case REF_TYPE_PER_WORKTREE: 396 case REF_TYPE_PSEUDOREF: 397 strbuf_addf(sb, "%s/%s", refs->gitdir, refname); 398 break; 399 case REF_TYPE_NORMAL: 400 strbuf_addf(sb, "%s/%s", refs->gitcommondir, refname); 401 break; 402 default: 403 die("BUG: unknown ref type %d of ref %s", 404 ref_type(refname), refname); 405 } 406} 407 408/* 409 * Check that the packed refs cache (if any) still reflects the 410 * contents of the file. If not, clear the cache. 411 */ 412static void validate_packed_ref_cache(struct packed_ref_store *refs) 413{ 414 if (refs->cache && 415 !stat_validity_check(&refs->cache->validity, refs->path)) 416 clear_packed_ref_cache(refs); 417} 418 419/* 420 * Get the packed_ref_cache for the specified packed_ref_store, 421 * creating and populating it if it hasn't been read before or if the 422 * file has been changed (according to its `validity` field) since it 423 * was last read. On the other hand, if we hold the lock, then assume 424 * that the file hasn't been changed out from under us, so skip the 425 * extra `stat()` call in `stat_validity_check()`. 426 */ 427static struct packed_ref_cache *get_packed_ref_cache(struct packed_ref_store *refs) 428{ 429 if (!is_lock_file_locked(&refs->lock)) 430 validate_packed_ref_cache(refs); 431 432 if (!refs->cache) 433 refs->cache = read_packed_refs(refs->path); 434 435 return refs->cache; 436} 437 438static struct ref_dir *get_packed_ref_dir(struct packed_ref_cache *packed_ref_cache) 439{ 440 return get_ref_dir(packed_ref_cache->cache->root); 441} 442 443static struct ref_dir *get_packed_refs(struct packed_ref_store *refs) 444{ 445 return get_packed_ref_dir(get_packed_ref_cache(refs)); 446} 447 448/* 449 * Add or overwrite a reference in the in-memory packed reference 450 * cache. This may only be called while the packed-refs file is locked 451 * (see lock_packed_refs()). To actually write the packed-refs file, 452 * call commit_packed_refs(). 453 */ 454static void add_packed_ref(struct packed_ref_store *refs, 455 const char *refname, const struct object_id *oid) 456{ 457 struct ref_dir *packed_refs; 458 struct ref_entry *packed_entry; 459 460 if (!is_lock_file_locked(&refs->lock)) 461 die("BUG: packed refs not locked"); 462 463 if (check_refname_format(refname, REFNAME_ALLOW_ONELEVEL)) 464 die("Reference has invalid format: '%s'", refname); 465 466 packed_refs = get_packed_refs(refs); 467 packed_entry = find_ref_entry(packed_refs, refname); 468 if (packed_entry) { 469 /* Overwrite the existing entry: */ 470 oidcpy(&packed_entry->u.value.oid, oid); 471 packed_entry->flag = REF_ISPACKED; 472 oidclr(&packed_entry->u.value.peeled); 473 } else { 474 packed_entry = create_ref_entry(refname, oid, REF_ISPACKED); 475 add_ref_entry(packed_refs, packed_entry); 476 } 477} 478 479/* 480 * Read the loose references from the namespace dirname into dir 481 * (without recursing). dirname must end with '/'. dir must be the 482 * directory entry corresponding to dirname. 483 */ 484static void loose_fill_ref_dir(struct ref_store *ref_store, 485 struct ref_dir *dir, const char *dirname) 486{ 487 struct files_ref_store *refs = 488 files_downcast(ref_store, REF_STORE_READ, "fill_ref_dir"); 489 DIR *d; 490 struct dirent *de; 491 int dirnamelen = strlen(dirname); 492 struct strbuf refname; 493 struct strbuf path = STRBUF_INIT; 494 size_t path_baselen; 495 496 files_ref_path(refs, &path, dirname); 497 path_baselen = path.len; 498 499 d = opendir(path.buf); 500 if (!d) { 501 strbuf_release(&path); 502 return; 503 } 504 505 strbuf_init(&refname, dirnamelen + 257); 506 strbuf_add(&refname, dirname, dirnamelen); 507 508 while ((de = readdir(d)) != NULL) { 509 struct object_id oid; 510 struct stat st; 511 int flag; 512 513 if (de->d_name[0] == '.') 514 continue; 515 if (ends_with(de->d_name, ".lock")) 516 continue; 517 strbuf_addstr(&refname, de->d_name); 518 strbuf_addstr(&path, de->d_name); 519 if (stat(path.buf, &st) < 0) { 520 ; /* silently ignore */ 521 } else if (S_ISDIR(st.st_mode)) { 522 strbuf_addch(&refname, '/'); 523 add_entry_to_dir(dir, 524 create_dir_entry(dir->cache, refname.buf, 525 refname.len, 1)); 526 } else { 527 if (!refs_resolve_ref_unsafe(&refs->base, 528 refname.buf, 529 RESOLVE_REF_READING, 530 oid.hash, &flag)) { 531 oidclr(&oid); 532 flag |= REF_ISBROKEN; 533 } else if (is_null_oid(&oid)) { 534 /* 535 * It is so astronomically unlikely 536 * that NULL_SHA1 is the SHA-1 of an 537 * actual object that we consider its 538 * appearance in a loose reference 539 * file to be repo corruption 540 * (probably due to a software bug). 541 */ 542 flag |= REF_ISBROKEN; 543 } 544 545 if (check_refname_format(refname.buf, 546 REFNAME_ALLOW_ONELEVEL)) { 547 if (!refname_is_safe(refname.buf)) 548 die("loose refname is dangerous: %s", refname.buf); 549 oidclr(&oid); 550 flag |= REF_BAD_NAME | REF_ISBROKEN; 551 } 552 add_entry_to_dir(dir, 553 create_ref_entry(refname.buf, &oid, flag)); 554 } 555 strbuf_setlen(&refname, dirnamelen); 556 strbuf_setlen(&path, path_baselen); 557 } 558 strbuf_release(&refname); 559 strbuf_release(&path); 560 closedir(d); 561 562 /* 563 * Manually add refs/bisect, which, being per-worktree, might 564 * not appear in the directory listing for refs/ in the main 565 * repo. 566 */ 567 if (!strcmp(dirname, "refs/")) { 568 int pos = search_ref_dir(dir, "refs/bisect/", 12); 569 570 if (pos < 0) { 571 struct ref_entry *child_entry = create_dir_entry( 572 dir->cache, "refs/bisect/", 12, 1); 573 add_entry_to_dir(dir, child_entry); 574 } 575 } 576} 577 578static struct ref_cache *get_loose_ref_cache(struct files_ref_store *refs) 579{ 580 if (!refs->loose) { 581 /* 582 * Mark the top-level directory complete because we 583 * are about to read the only subdirectory that can 584 * hold references: 585 */ 586 refs->loose = create_ref_cache(&refs->base, loose_fill_ref_dir); 587 588 /* We're going to fill the top level ourselves: */ 589 refs->loose->root->flag &= ~REF_INCOMPLETE; 590 591 /* 592 * Add an incomplete entry for "refs/" (to be filled 593 * lazily): 594 */ 595 add_entry_to_dir(get_ref_dir(refs->loose->root), 596 create_dir_entry(refs->loose, "refs/", 5, 1)); 597 } 598 return refs->loose; 599} 600 601/* 602 * Return the ref_entry for the given refname from the packed 603 * references. If it does not exist, return NULL. 604 */ 605static struct ref_entry *get_packed_ref(struct packed_ref_store *refs, 606 const char *refname) 607{ 608 return find_ref_entry(get_packed_refs(refs), refname); 609} 610 611/* 612 * A loose ref file doesn't exist; check for a packed ref. 613 */ 614static int resolve_packed_ref(struct files_ref_store *refs, 615 const char *refname, 616 unsigned char *sha1, unsigned int *flags) 617{ 618 struct ref_entry *entry; 619 620 /* 621 * The loose reference file does not exist; check for a packed 622 * reference. 623 */ 624 entry = get_packed_ref(refs->packed_ref_store, refname); 625 if (entry) { 626 hashcpy(sha1, entry->u.value.oid.hash); 627 *flags |= REF_ISPACKED; 628 return 0; 629 } 630 /* refname is not a packed reference. */ 631 return -1; 632} 633 634static int files_read_raw_ref(struct ref_store *ref_store, 635 const char *refname, unsigned char *sha1, 636 struct strbuf *referent, unsigned int *type) 637{ 638 struct files_ref_store *refs = 639 files_downcast(ref_store, REF_STORE_READ, "read_raw_ref"); 640 struct strbuf sb_contents = STRBUF_INIT; 641 struct strbuf sb_path = STRBUF_INIT; 642 const char *path; 643 const char *buf; 644 struct stat st; 645 int fd; 646 int ret = -1; 647 int save_errno; 648 int remaining_retries = 3; 649 650 *type = 0; 651 strbuf_reset(&sb_path); 652 653 files_ref_path(refs, &sb_path, refname); 654 655 path = sb_path.buf; 656 657stat_ref: 658 /* 659 * We might have to loop back here to avoid a race 660 * condition: first we lstat() the file, then we try 661 * to read it as a link or as a file. But if somebody 662 * changes the type of the file (file <-> directory 663 * <-> symlink) between the lstat() and reading, then 664 * we don't want to report that as an error but rather 665 * try again starting with the lstat(). 666 * 667 * We'll keep a count of the retries, though, just to avoid 668 * any confusing situation sending us into an infinite loop. 669 */ 670 671 if (remaining_retries-- <= 0) 672 goto out; 673 674 if (lstat(path, &st) < 0) { 675 if (errno != ENOENT) 676 goto out; 677 if (resolve_packed_ref(refs, refname, sha1, type)) { 678 errno = ENOENT; 679 goto out; 680 } 681 ret = 0; 682 goto out; 683 } 684 685 /* Follow "normalized" - ie "refs/.." symlinks by hand */ 686 if (S_ISLNK(st.st_mode)) { 687 strbuf_reset(&sb_contents); 688 if (strbuf_readlink(&sb_contents, path, 0) < 0) { 689 if (errno == ENOENT || errno == EINVAL) 690 /* inconsistent with lstat; retry */ 691 goto stat_ref; 692 else 693 goto out; 694 } 695 if (starts_with(sb_contents.buf, "refs/") && 696 !check_refname_format(sb_contents.buf, 0)) { 697 strbuf_swap(&sb_contents, referent); 698 *type |= REF_ISSYMREF; 699 ret = 0; 700 goto out; 701 } 702 /* 703 * It doesn't look like a refname; fall through to just 704 * treating it like a non-symlink, and reading whatever it 705 * points to. 706 */ 707 } 708 709 /* Is it a directory? */ 710 if (S_ISDIR(st.st_mode)) { 711 /* 712 * Even though there is a directory where the loose 713 * ref is supposed to be, there could still be a 714 * packed ref: 715 */ 716 if (resolve_packed_ref(refs, refname, sha1, type)) { 717 errno = EISDIR; 718 goto out; 719 } 720 ret = 0; 721 goto out; 722 } 723 724 /* 725 * Anything else, just open it and try to use it as 726 * a ref 727 */ 728 fd = open(path, O_RDONLY); 729 if (fd < 0) { 730 if (errno == ENOENT && !S_ISLNK(st.st_mode)) 731 /* inconsistent with lstat; retry */ 732 goto stat_ref; 733 else 734 goto out; 735 } 736 strbuf_reset(&sb_contents); 737 if (strbuf_read(&sb_contents, fd, 256) < 0) { 738 int save_errno = errno; 739 close(fd); 740 errno = save_errno; 741 goto out; 742 } 743 close(fd); 744 strbuf_rtrim(&sb_contents); 745 buf = sb_contents.buf; 746 if (starts_with(buf, "ref:")) { 747 buf += 4; 748 while (isspace(*buf)) 749 buf++; 750 751 strbuf_reset(referent); 752 strbuf_addstr(referent, buf); 753 *type |= REF_ISSYMREF; 754 ret = 0; 755 goto out; 756 } 757 758 /* 759 * Please note that FETCH_HEAD has additional 760 * data after the sha. 761 */ 762 if (get_sha1_hex(buf, sha1) || 763 (buf[40] != '\0' && !isspace(buf[40]))) { 764 *type |= REF_ISBROKEN; 765 errno = EINVAL; 766 goto out; 767 } 768 769 ret = 0; 770 771out: 772 save_errno = errno; 773 strbuf_release(&sb_path); 774 strbuf_release(&sb_contents); 775 errno = save_errno; 776 return ret; 777} 778 779static void unlock_ref(struct ref_lock *lock) 780{ 781 /* Do not free lock->lk -- atexit() still looks at them */ 782 if (lock->lk) 783 rollback_lock_file(lock->lk); 784 free(lock->ref_name); 785 free(lock); 786} 787 788/* 789 * Lock refname, without following symrefs, and set *lock_p to point 790 * at a newly-allocated lock object. Fill in lock->old_oid, referent, 791 * and type similarly to read_raw_ref(). 792 * 793 * The caller must verify that refname is a "safe" reference name (in 794 * the sense of refname_is_safe()) before calling this function. 795 * 796 * If the reference doesn't already exist, verify that refname doesn't 797 * have a D/F conflict with any existing references. extras and skip 798 * are passed to refs_verify_refname_available() for this check. 799 * 800 * If mustexist is not set and the reference is not found or is 801 * broken, lock the reference anyway but clear sha1. 802 * 803 * Return 0 on success. On failure, write an error message to err and 804 * return TRANSACTION_NAME_CONFLICT or TRANSACTION_GENERIC_ERROR. 805 * 806 * Implementation note: This function is basically 807 * 808 * lock reference 809 * read_raw_ref() 810 * 811 * but it includes a lot more code to 812 * - Deal with possible races with other processes 813 * - Avoid calling refs_verify_refname_available() when it can be 814 * avoided, namely if we were successfully able to read the ref 815 * - Generate informative error messages in the case of failure 816 */ 817static int lock_raw_ref(struct files_ref_store *refs, 818 const char *refname, int mustexist, 819 const struct string_list *extras, 820 const struct string_list *skip, 821 struct ref_lock **lock_p, 822 struct strbuf *referent, 823 unsigned int *type, 824 struct strbuf *err) 825{ 826 struct ref_lock *lock; 827 struct strbuf ref_file = STRBUF_INIT; 828 int attempts_remaining = 3; 829 int ret = TRANSACTION_GENERIC_ERROR; 830 831 assert(err); 832 files_assert_main_repository(refs, "lock_raw_ref"); 833 834 *type = 0; 835 836 /* First lock the file so it can't change out from under us. */ 837 838 *lock_p = lock = xcalloc(1, sizeof(*lock)); 839 840 lock->ref_name = xstrdup(refname); 841 files_ref_path(refs, &ref_file, refname); 842 843retry: 844 switch (safe_create_leading_directories(ref_file.buf)) { 845 case SCLD_OK: 846 break; /* success */ 847 case SCLD_EXISTS: 848 /* 849 * Suppose refname is "refs/foo/bar". We just failed 850 * to create the containing directory, "refs/foo", 851 * because there was a non-directory in the way. This 852 * indicates a D/F conflict, probably because of 853 * another reference such as "refs/foo". There is no 854 * reason to expect this error to be transitory. 855 */ 856 if (refs_verify_refname_available(&refs->base, refname, 857 extras, skip, err)) { 858 if (mustexist) { 859 /* 860 * To the user the relevant error is 861 * that the "mustexist" reference is 862 * missing: 863 */ 864 strbuf_reset(err); 865 strbuf_addf(err, "unable to resolve reference '%s'", 866 refname); 867 } else { 868 /* 869 * The error message set by 870 * refs_verify_refname_available() is 871 * OK. 872 */ 873 ret = TRANSACTION_NAME_CONFLICT; 874 } 875 } else { 876 /* 877 * The file that is in the way isn't a loose 878 * reference. Report it as a low-level 879 * failure. 880 */ 881 strbuf_addf(err, "unable to create lock file %s.lock; " 882 "non-directory in the way", 883 ref_file.buf); 884 } 885 goto error_return; 886 case SCLD_VANISHED: 887 /* Maybe another process was tidying up. Try again. */ 888 if (--attempts_remaining > 0) 889 goto retry; 890 /* fall through */ 891 default: 892 strbuf_addf(err, "unable to create directory for %s", 893 ref_file.buf); 894 goto error_return; 895 } 896 897 if (!lock->lk) 898 lock->lk = xcalloc(1, sizeof(struct lock_file)); 899 900 if (hold_lock_file_for_update(lock->lk, ref_file.buf, LOCK_NO_DEREF) < 0) { 901 if (errno == ENOENT && --attempts_remaining > 0) { 902 /* 903 * Maybe somebody just deleted one of the 904 * directories leading to ref_file. Try 905 * again: 906 */ 907 goto retry; 908 } else { 909 unable_to_lock_message(ref_file.buf, errno, err); 910 goto error_return; 911 } 912 } 913 914 /* 915 * Now we hold the lock and can read the reference without 916 * fear that its value will change. 917 */ 918 919 if (files_read_raw_ref(&refs->base, refname, 920 lock->old_oid.hash, referent, type)) { 921 if (errno == ENOENT) { 922 if (mustexist) { 923 /* Garden variety missing reference. */ 924 strbuf_addf(err, "unable to resolve reference '%s'", 925 refname); 926 goto error_return; 927 } else { 928 /* 929 * Reference is missing, but that's OK. We 930 * know that there is not a conflict with 931 * another loose reference because 932 * (supposing that we are trying to lock 933 * reference "refs/foo/bar"): 934 * 935 * - We were successfully able to create 936 * the lockfile refs/foo/bar.lock, so we 937 * know there cannot be a loose reference 938 * named "refs/foo". 939 * 940 * - We got ENOENT and not EISDIR, so we 941 * know that there cannot be a loose 942 * reference named "refs/foo/bar/baz". 943 */ 944 } 945 } else if (errno == EISDIR) { 946 /* 947 * There is a directory in the way. It might have 948 * contained references that have been deleted. If 949 * we don't require that the reference already 950 * exists, try to remove the directory so that it 951 * doesn't cause trouble when we want to rename the 952 * lockfile into place later. 953 */ 954 if (mustexist) { 955 /* Garden variety missing reference. */ 956 strbuf_addf(err, "unable to resolve reference '%s'", 957 refname); 958 goto error_return; 959 } else if (remove_dir_recursively(&ref_file, 960 REMOVE_DIR_EMPTY_ONLY)) { 961 if (refs_verify_refname_available( 962 &refs->base, refname, 963 extras, skip, err)) { 964 /* 965 * The error message set by 966 * verify_refname_available() is OK. 967 */ 968 ret = TRANSACTION_NAME_CONFLICT; 969 goto error_return; 970 } else { 971 /* 972 * We can't delete the directory, 973 * but we also don't know of any 974 * references that it should 975 * contain. 976 */ 977 strbuf_addf(err, "there is a non-empty directory '%s' " 978 "blocking reference '%s'", 979 ref_file.buf, refname); 980 goto error_return; 981 } 982 } 983 } else if (errno == EINVAL && (*type & REF_ISBROKEN)) { 984 strbuf_addf(err, "unable to resolve reference '%s': " 985 "reference broken", refname); 986 goto error_return; 987 } else { 988 strbuf_addf(err, "unable to resolve reference '%s': %s", 989 refname, strerror(errno)); 990 goto error_return; 991 } 992 993 /* 994 * If the ref did not exist and we are creating it, 995 * make sure there is no existing ref that conflicts 996 * with refname: 997 */ 998 if (refs_verify_refname_available( 999 &refs->base, refname,1000 extras, skip, err))1001 goto error_return;1002 }10031004 ret = 0;1005 goto out;10061007error_return:1008 unlock_ref(lock);1009 *lock_p = NULL;10101011out:1012 strbuf_release(&ref_file);1013 return ret;1014}10151016static int packed_peel_ref(struct packed_ref_store *refs,1017 const char *refname, unsigned char *sha1)1018{1019 struct ref_entry *r = get_packed_ref(refs, refname);10201021 if (!r || peel_entry(r, 0))1022 return -1;10231024 hashcpy(sha1, r->u.value.peeled.hash);1025 return 0;1026}10271028static int files_peel_ref(struct ref_store *ref_store,1029 const char *refname, unsigned char *sha1)1030{1031 struct files_ref_store *refs =1032 files_downcast(ref_store, REF_STORE_READ | REF_STORE_ODB,1033 "peel_ref");1034 int flag;1035 unsigned char base[20];10361037 if (current_ref_iter && current_ref_iter->refname == refname) {1038 struct object_id peeled;10391040 if (ref_iterator_peel(current_ref_iter, &peeled))1041 return -1;1042 hashcpy(sha1, peeled.hash);1043 return 0;1044 }10451046 if (refs_read_ref_full(ref_store, refname,1047 RESOLVE_REF_READING, base, &flag))1048 return -1;10491050 /*1051 * If the reference is packed, read its ref_entry from the1052 * cache in the hope that we already know its peeled value.1053 * We only try this optimization on packed references because1054 * (a) forcing the filling of the loose reference cache could1055 * be expensive and (b) loose references anyway usually do not1056 * have REF_KNOWS_PEELED.1057 */1058 if (flag & REF_ISPACKED &&1059 !packed_peel_ref(refs->packed_ref_store, refname, sha1))1060 return 0;10611062 return peel_object(base, sha1);1063}10641065struct packed_ref_iterator {1066 struct ref_iterator base;10671068 struct packed_ref_cache *cache;1069 struct ref_iterator *iter0;1070 unsigned int flags;1071};10721073static int packed_ref_iterator_advance(struct ref_iterator *ref_iterator)1074{1075 struct packed_ref_iterator *iter =1076 (struct packed_ref_iterator *)ref_iterator;1077 int ok;10781079 while ((ok = ref_iterator_advance(iter->iter0)) == ITER_OK) {1080 if (iter->flags & DO_FOR_EACH_PER_WORKTREE_ONLY &&1081 ref_type(iter->iter0->refname) != REF_TYPE_PER_WORKTREE)1082 continue;10831084 if (!(iter->flags & DO_FOR_EACH_INCLUDE_BROKEN) &&1085 !ref_resolves_to_object(iter->iter0->refname,1086 iter->iter0->oid,1087 iter->iter0->flags))1088 continue;10891090 iter->base.refname = iter->iter0->refname;1091 iter->base.oid = iter->iter0->oid;1092 iter->base.flags = iter->iter0->flags;1093 return ITER_OK;1094 }10951096 iter->iter0 = NULL;1097 if (ref_iterator_abort(ref_iterator) != ITER_DONE)1098 ok = ITER_ERROR;10991100 return ok;1101}11021103static int packed_ref_iterator_peel(struct ref_iterator *ref_iterator,1104 struct object_id *peeled)1105{1106 struct packed_ref_iterator *iter =1107 (struct packed_ref_iterator *)ref_iterator;11081109 return ref_iterator_peel(iter->iter0, peeled);1110}11111112static int packed_ref_iterator_abort(struct ref_iterator *ref_iterator)1113{1114 struct packed_ref_iterator *iter =1115 (struct packed_ref_iterator *)ref_iterator;1116 int ok = ITER_DONE;11171118 if (iter->iter0)1119 ok = ref_iterator_abort(iter->iter0);11201121 release_packed_ref_cache(iter->cache);1122 base_ref_iterator_free(ref_iterator);1123 return ok;1124}11251126static struct ref_iterator_vtable packed_ref_iterator_vtable = {1127 packed_ref_iterator_advance,1128 packed_ref_iterator_peel,1129 packed_ref_iterator_abort1130};11311132static struct ref_iterator *packed_ref_iterator_begin(1133 struct packed_ref_store *refs,1134 const char *prefix, unsigned int flags)1135{1136 struct packed_ref_iterator *iter;1137 struct ref_iterator *ref_iterator;11381139 iter = xcalloc(1, sizeof(*iter));1140 ref_iterator = &iter->base;1141 base_ref_iterator_init(ref_iterator, &packed_ref_iterator_vtable);11421143 /*1144 * Note that get_packed_ref_cache() internally checks whether1145 * the packed-ref cache is up to date with what is on disk,1146 * and re-reads it if not.1147 */11481149 iter->cache = get_packed_ref_cache(refs);1150 acquire_packed_ref_cache(iter->cache);1151 iter->iter0 = cache_ref_iterator_begin(iter->cache->cache, prefix, 0);11521153 iter->flags = flags;11541155 return ref_iterator;1156}11571158struct files_ref_iterator {1159 struct ref_iterator base;11601161 struct ref_iterator *iter0;1162 unsigned int flags;1163};11641165static int files_ref_iterator_advance(struct ref_iterator *ref_iterator)1166{1167 struct files_ref_iterator *iter =1168 (struct files_ref_iterator *)ref_iterator;1169 int ok;11701171 while ((ok = ref_iterator_advance(iter->iter0)) == ITER_OK) {1172 if (iter->flags & DO_FOR_EACH_PER_WORKTREE_ONLY &&1173 ref_type(iter->iter0->refname) != REF_TYPE_PER_WORKTREE)1174 continue;11751176 if (!(iter->flags & DO_FOR_EACH_INCLUDE_BROKEN) &&1177 !ref_resolves_to_object(iter->iter0->refname,1178 iter->iter0->oid,1179 iter->iter0->flags))1180 continue;11811182 iter->base.refname = iter->iter0->refname;1183 iter->base.oid = iter->iter0->oid;1184 iter->base.flags = iter->iter0->flags;1185 return ITER_OK;1186 }11871188 iter->iter0 = NULL;1189 if (ref_iterator_abort(ref_iterator) != ITER_DONE)1190 ok = ITER_ERROR;11911192 return ok;1193}11941195static int files_ref_iterator_peel(struct ref_iterator *ref_iterator,1196 struct object_id *peeled)1197{1198 struct files_ref_iterator *iter =1199 (struct files_ref_iterator *)ref_iterator;12001201 return ref_iterator_peel(iter->iter0, peeled);1202}12031204static int files_ref_iterator_abort(struct ref_iterator *ref_iterator)1205{1206 struct files_ref_iterator *iter =1207 (struct files_ref_iterator *)ref_iterator;1208 int ok = ITER_DONE;12091210 if (iter->iter0)1211 ok = ref_iterator_abort(iter->iter0);12121213 base_ref_iterator_free(ref_iterator);1214 return ok;1215}12161217static struct ref_iterator_vtable files_ref_iterator_vtable = {1218 files_ref_iterator_advance,1219 files_ref_iterator_peel,1220 files_ref_iterator_abort1221};12221223static struct ref_iterator *files_ref_iterator_begin(1224 struct ref_store *ref_store,1225 const char *prefix, unsigned int flags)1226{1227 struct files_ref_store *refs;1228 struct ref_iterator *loose_iter, *packed_iter;1229 struct files_ref_iterator *iter;1230 struct ref_iterator *ref_iterator;1231 unsigned int required_flags = REF_STORE_READ;12321233 if (!(flags & DO_FOR_EACH_INCLUDE_BROKEN))1234 required_flags |= REF_STORE_ODB;12351236 refs = files_downcast(ref_store, required_flags, "ref_iterator_begin");12371238 iter = xcalloc(1, sizeof(*iter));1239 ref_iterator = &iter->base;1240 base_ref_iterator_init(ref_iterator, &files_ref_iterator_vtable);12411242 /*1243 * We must make sure that all loose refs are read before1244 * accessing the packed-refs file; this avoids a race1245 * condition if loose refs are migrated to the packed-refs1246 * file by a simultaneous process, but our in-memory view is1247 * from before the migration. We ensure this as follows:1248 * First, we call start the loose refs iteration with its1249 * `prime_ref` argument set to true. This causes the loose1250 * references in the subtree to be pre-read into the cache.1251 * (If they've already been read, that's OK; we only need to1252 * guarantee that they're read before the packed refs, not1253 * *how much* before.) After that, we call1254 * packed_ref_iterator_begin(), which internally checks1255 * whether the packed-ref cache is up to date with what is on1256 * disk, and re-reads it if not.1257 */12581259 loose_iter = cache_ref_iterator_begin(get_loose_ref_cache(refs),1260 prefix, 1);12611262 /*1263 * The packed-refs file might contain broken references, for1264 * example an old version of a reference that points at an1265 * object that has since been garbage-collected. This is OK as1266 * long as there is a corresponding loose reference that1267 * overrides it, and we don't want to emit an error message in1268 * this case. So ask the packed_ref_store for all of its1269 * references, and (if needed) do our own check for broken1270 * ones in files_ref_iterator_advance(), after we have merged1271 * the packed and loose references.1272 */1273 packed_iter = packed_ref_iterator_begin(1274 refs->packed_ref_store, prefix,1275 DO_FOR_EACH_INCLUDE_BROKEN);12761277 iter->iter0 = overlay_ref_iterator_begin(loose_iter, packed_iter);1278 iter->flags = flags;12791280 return ref_iterator;1281}12821283/*1284 * Verify that the reference locked by lock has the value old_sha1.1285 * Fail if the reference doesn't exist and mustexist is set. Return 01286 * on success. On error, write an error message to err, set errno, and1287 * return a negative value.1288 */1289static int verify_lock(struct ref_store *ref_store, struct ref_lock *lock,1290 const unsigned char *old_sha1, int mustexist,1291 struct strbuf *err)1292{1293 assert(err);12941295 if (refs_read_ref_full(ref_store, lock->ref_name,1296 mustexist ? RESOLVE_REF_READING : 0,1297 lock->old_oid.hash, NULL)) {1298 if (old_sha1) {1299 int save_errno = errno;1300 strbuf_addf(err, "can't verify ref '%s'", lock->ref_name);1301 errno = save_errno;1302 return -1;1303 } else {1304 oidclr(&lock->old_oid);1305 return 0;1306 }1307 }1308 if (old_sha1 && hashcmp(lock->old_oid.hash, old_sha1)) {1309 strbuf_addf(err, "ref '%s' is at %s but expected %s",1310 lock->ref_name,1311 oid_to_hex(&lock->old_oid),1312 sha1_to_hex(old_sha1));1313 errno = EBUSY;1314 return -1;1315 }1316 return 0;1317}13181319static int remove_empty_directories(struct strbuf *path)1320{1321 /*1322 * we want to create a file but there is a directory there;1323 * if that is an empty directory (or a directory that contains1324 * only empty directories), remove them.1325 */1326 return remove_dir_recursively(path, REMOVE_DIR_EMPTY_ONLY);1327}13281329static int create_reflock(const char *path, void *cb)1330{1331 struct lock_file *lk = cb;13321333 return hold_lock_file_for_update(lk, path, LOCK_NO_DEREF) < 0 ? -1 : 0;1334}13351336/*1337 * Locks a ref returning the lock on success and NULL on failure.1338 * On failure errno is set to something meaningful.1339 */1340static struct ref_lock *lock_ref_sha1_basic(struct files_ref_store *refs,1341 const char *refname,1342 const unsigned char *old_sha1,1343 const struct string_list *extras,1344 const struct string_list *skip,1345 unsigned int flags, int *type,1346 struct strbuf *err)1347{1348 struct strbuf ref_file = STRBUF_INIT;1349 struct ref_lock *lock;1350 int last_errno = 0;1351 int mustexist = (old_sha1 && !is_null_sha1(old_sha1));1352 int resolve_flags = RESOLVE_REF_NO_RECURSE;1353 int resolved;13541355 files_assert_main_repository(refs, "lock_ref_sha1_basic");1356 assert(err);13571358 lock = xcalloc(1, sizeof(struct ref_lock));13591360 if (mustexist)1361 resolve_flags |= RESOLVE_REF_READING;1362 if (flags & REF_DELETING)1363 resolve_flags |= RESOLVE_REF_ALLOW_BAD_NAME;13641365 files_ref_path(refs, &ref_file, refname);1366 resolved = !!refs_resolve_ref_unsafe(&refs->base,1367 refname, resolve_flags,1368 lock->old_oid.hash, type);1369 if (!resolved && errno == EISDIR) {1370 /*1371 * we are trying to lock foo but we used to1372 * have foo/bar which now does not exist;1373 * it is normal for the empty directory 'foo'1374 * to remain.1375 */1376 if (remove_empty_directories(&ref_file)) {1377 last_errno = errno;1378 if (!refs_verify_refname_available(1379 &refs->base,1380 refname, extras, skip, err))1381 strbuf_addf(err, "there are still refs under '%s'",1382 refname);1383 goto error_return;1384 }1385 resolved = !!refs_resolve_ref_unsafe(&refs->base,1386 refname, resolve_flags,1387 lock->old_oid.hash, type);1388 }1389 if (!resolved) {1390 last_errno = errno;1391 if (last_errno != ENOTDIR ||1392 !refs_verify_refname_available(&refs->base, refname,1393 extras, skip, err))1394 strbuf_addf(err, "unable to resolve reference '%s': %s",1395 refname, strerror(last_errno));13961397 goto error_return;1398 }13991400 /*1401 * If the ref did not exist and we are creating it, make sure1402 * there is no existing packed ref whose name begins with our1403 * refname, nor a packed ref whose name is a proper prefix of1404 * our refname.1405 */1406 if (is_null_oid(&lock->old_oid) &&1407 refs_verify_refname_available(&refs->base, refname,1408 extras, skip, err)) {1409 last_errno = ENOTDIR;1410 goto error_return;1411 }14121413 lock->lk = xcalloc(1, sizeof(struct lock_file));14141415 lock->ref_name = xstrdup(refname);14161417 if (raceproof_create_file(ref_file.buf, create_reflock, lock->lk)) {1418 last_errno = errno;1419 unable_to_lock_message(ref_file.buf, errno, err);1420 goto error_return;1421 }14221423 if (verify_lock(&refs->base, lock, old_sha1, mustexist, err)) {1424 last_errno = errno;1425 goto error_return;1426 }1427 goto out;14281429 error_return:1430 unlock_ref(lock);1431 lock = NULL;14321433 out:1434 strbuf_release(&ref_file);1435 errno = last_errno;1436 return lock;1437}14381439/*1440 * Write an entry to the packed-refs file for the specified refname.1441 * If peeled is non-NULL, write it as the entry's peeled value.1442 */1443static void write_packed_entry(FILE *fh, const char *refname,1444 const unsigned char *sha1,1445 const unsigned char *peeled)1446{1447 fprintf_or_die(fh, "%s %s\n", sha1_to_hex(sha1), refname);1448 if (peeled)1449 fprintf_or_die(fh, "^%s\n", sha1_to_hex(peeled));1450}14511452/*1453 * Lock the packed-refs file for writing. Flags is passed to1454 * hold_lock_file_for_update(). Return 0 on success. On errors, set1455 * errno appropriately and return a nonzero value.1456 */1457static int lock_packed_refs(struct packed_ref_store *refs, int flags)1458{1459 static int timeout_configured = 0;1460 static int timeout_value = 1000;1461 struct packed_ref_cache *packed_ref_cache;14621463 packed_assert_main_repository(refs, "lock_packed_refs");14641465 if (!timeout_configured) {1466 git_config_get_int("core.packedrefstimeout", &timeout_value);1467 timeout_configured = 1;1468 }14691470 if (hold_lock_file_for_update_timeout(1471 &refs->lock,1472 refs->path,1473 flags, timeout_value) < 0)1474 return -1;14751476 /*1477 * Now that we hold the `packed-refs` lock, make sure that our1478 * cache matches the current version of the file. Normally1479 * `get_packed_ref_cache()` does that for us, but that1480 * function assumes that when the file is locked, any existing1481 * cache is still valid. We've just locked the file, but it1482 * might have changed the moment *before* we locked it.1483 */1484 validate_packed_ref_cache(refs);14851486 packed_ref_cache = get_packed_ref_cache(refs);1487 /* Increment the reference count to prevent it from being freed: */1488 acquire_packed_ref_cache(packed_ref_cache);1489 return 0;1490}14911492/*1493 * Write the current version of the packed refs cache from memory to1494 * disk. The packed-refs file must already be locked for writing (see1495 * lock_packed_refs()). Return zero on success. On errors, set errno1496 * and return a nonzero value1497 */1498static int commit_packed_refs(struct packed_ref_store *refs)1499{1500 struct packed_ref_cache *packed_ref_cache =1501 get_packed_ref_cache(refs);1502 int ok, error = 0;1503 int save_errno = 0;1504 FILE *out;1505 struct ref_iterator *iter;15061507 packed_assert_main_repository(refs, "commit_packed_refs");15081509 if (!is_lock_file_locked(&refs->lock))1510 die("BUG: packed-refs not locked");15111512 out = fdopen_lock_file(&refs->lock, "w");1513 if (!out)1514 die_errno("unable to fdopen packed-refs descriptor");15151516 fprintf_or_die(out, "%s", PACKED_REFS_HEADER);15171518 iter = cache_ref_iterator_begin(packed_ref_cache->cache, NULL, 0);1519 while ((ok = ref_iterator_advance(iter)) == ITER_OK) {1520 struct object_id peeled;1521 int peel_error = ref_iterator_peel(iter, &peeled);15221523 write_packed_entry(out, iter->refname, iter->oid->hash,1524 peel_error ? NULL : peeled.hash);1525 }15261527 if (ok != ITER_DONE)1528 die("error while iterating over references");15291530 if (commit_lock_file(&refs->lock)) {1531 save_errno = errno;1532 error = -1;1533 }1534 release_packed_ref_cache(packed_ref_cache);1535 errno = save_errno;1536 return error;1537}15381539/*1540 * Rollback the lockfile for the packed-refs file, and discard the1541 * in-memory packed reference cache. (The packed-refs file will be1542 * read anew if it is needed again after this function is called.)1543 */1544static void rollback_packed_refs(struct packed_ref_store *refs)1545{1546 struct packed_ref_cache *packed_ref_cache = get_packed_ref_cache(refs);15471548 packed_assert_main_repository(refs, "rollback_packed_refs");15491550 if (!is_lock_file_locked(&refs->lock))1551 die("BUG: packed-refs not locked");1552 rollback_lock_file(&refs->lock);1553 release_packed_ref_cache(packed_ref_cache);1554 clear_packed_ref_cache(refs);1555}15561557struct ref_to_prune {1558 struct ref_to_prune *next;1559 unsigned char sha1[20];1560 char name[FLEX_ARRAY];1561};15621563enum {1564 REMOVE_EMPTY_PARENTS_REF = 0x01,1565 REMOVE_EMPTY_PARENTS_REFLOG = 0x021566};15671568/*1569 * Remove empty parent directories associated with the specified1570 * reference and/or its reflog, but spare [logs/]refs/ and immediate1571 * subdirs. flags is a combination of REMOVE_EMPTY_PARENTS_REF and/or1572 * REMOVE_EMPTY_PARENTS_REFLOG.1573 */1574static void try_remove_empty_parents(struct files_ref_store *refs,1575 const char *refname,1576 unsigned int flags)1577{1578 struct strbuf buf = STRBUF_INIT;1579 struct strbuf sb = STRBUF_INIT;1580 char *p, *q;1581 int i;15821583 strbuf_addstr(&buf, refname);1584 p = buf.buf;1585 for (i = 0; i < 2; i++) { /* refs/{heads,tags,...}/ */1586 while (*p && *p != '/')1587 p++;1588 /* tolerate duplicate slashes; see check_refname_format() */1589 while (*p == '/')1590 p++;1591 }1592 q = buf.buf + buf.len;1593 while (flags & (REMOVE_EMPTY_PARENTS_REF | REMOVE_EMPTY_PARENTS_REFLOG)) {1594 while (q > p && *q != '/')1595 q--;1596 while (q > p && *(q-1) == '/')1597 q--;1598 if (q == p)1599 break;1600 strbuf_setlen(&buf, q - buf.buf);16011602 strbuf_reset(&sb);1603 files_ref_path(refs, &sb, buf.buf);1604 if ((flags & REMOVE_EMPTY_PARENTS_REF) && rmdir(sb.buf))1605 flags &= ~REMOVE_EMPTY_PARENTS_REF;16061607 strbuf_reset(&sb);1608 files_reflog_path(refs, &sb, buf.buf);1609 if ((flags & REMOVE_EMPTY_PARENTS_REFLOG) && rmdir(sb.buf))1610 flags &= ~REMOVE_EMPTY_PARENTS_REFLOG;1611 }1612 strbuf_release(&buf);1613 strbuf_release(&sb);1614}16151616/* make sure nobody touched the ref, and unlink */1617static void prune_ref(struct files_ref_store *refs, struct ref_to_prune *r)1618{1619 struct ref_transaction *transaction;1620 struct strbuf err = STRBUF_INIT;16211622 if (check_refname_format(r->name, 0))1623 return;16241625 transaction = ref_store_transaction_begin(&refs->base, &err);1626 if (!transaction ||1627 ref_transaction_delete(transaction, r->name, r->sha1,1628 REF_ISPRUNING | REF_NODEREF, NULL, &err) ||1629 ref_transaction_commit(transaction, &err)) {1630 ref_transaction_free(transaction);1631 error("%s", err.buf);1632 strbuf_release(&err);1633 return;1634 }1635 ref_transaction_free(transaction);1636 strbuf_release(&err);1637}16381639static void prune_refs(struct files_ref_store *refs, struct ref_to_prune *r)1640{1641 while (r) {1642 prune_ref(refs, r);1643 r = r->next;1644 }1645}16461647/*1648 * Return true if the specified reference should be packed.1649 */1650static int should_pack_ref(const char *refname,1651 const struct object_id *oid, unsigned int ref_flags,1652 unsigned int pack_flags)1653{1654 /* Do not pack per-worktree refs: */1655 if (ref_type(refname) != REF_TYPE_NORMAL)1656 return 0;16571658 /* Do not pack non-tags unless PACK_REFS_ALL is set: */1659 if (!(pack_flags & PACK_REFS_ALL) && !starts_with(refname, "refs/tags/"))1660 return 0;16611662 /* Do not pack symbolic refs: */1663 if (ref_flags & REF_ISSYMREF)1664 return 0;16651666 /* Do not pack broken refs: */1667 if (!ref_resolves_to_object(refname, oid, ref_flags))1668 return 0;16691670 return 1;1671}16721673static int files_pack_refs(struct ref_store *ref_store, unsigned int flags)1674{1675 struct files_ref_store *refs =1676 files_downcast(ref_store, REF_STORE_WRITE | REF_STORE_ODB,1677 "pack_refs");1678 struct ref_iterator *iter;1679 int ok;1680 struct ref_to_prune *refs_to_prune = NULL;16811682 lock_packed_refs(refs->packed_ref_store, LOCK_DIE_ON_ERROR);16831684 iter = cache_ref_iterator_begin(get_loose_ref_cache(refs), NULL, 0);1685 while ((ok = ref_iterator_advance(iter)) == ITER_OK) {1686 /*1687 * If the loose reference can be packed, add an entry1688 * in the packed ref cache. If the reference should be1689 * pruned, also add it to refs_to_prune.1690 */1691 if (!should_pack_ref(iter->refname, iter->oid, iter->flags,1692 flags))1693 continue;16941695 /*1696 * Create an entry in the packed-refs cache equivalent1697 * to the one from the loose ref cache, except that1698 * we don't copy the peeled status, because we want it1699 * to be re-peeled.1700 */1701 add_packed_ref(refs->packed_ref_store, iter->refname, iter->oid);17021703 /* Schedule the loose reference for pruning if requested. */1704 if ((flags & PACK_REFS_PRUNE)) {1705 struct ref_to_prune *n;1706 FLEX_ALLOC_STR(n, name, iter->refname);1707 hashcpy(n->sha1, iter->oid->hash);1708 n->next = refs_to_prune;1709 refs_to_prune = n;1710 }1711 }1712 if (ok != ITER_DONE)1713 die("error while iterating over references");17141715 if (commit_packed_refs(refs->packed_ref_store))1716 die_errno("unable to overwrite old ref-pack file");17171718 prune_refs(refs, refs_to_prune);1719 return 0;1720}17211722/*1723 * Rewrite the packed-refs file, omitting any refs listed in1724 * 'refnames'. On error, leave packed-refs unchanged, write an error1725 * message to 'err', and return a nonzero value.1726 *1727 * The refs in 'refnames' needn't be sorted. `err` must not be NULL.1728 */1729static int repack_without_refs(struct packed_ref_store *refs,1730 struct string_list *refnames, struct strbuf *err)1731{1732 struct ref_dir *packed;1733 struct string_list_item *refname;1734 int ret, needs_repacking = 0, removed = 0;17351736 packed_assert_main_repository(refs, "repack_without_refs");1737 assert(err);17381739 /* Look for a packed ref */1740 for_each_string_list_item(refname, refnames) {1741 if (get_packed_ref(refs, refname->string)) {1742 needs_repacking = 1;1743 break;1744 }1745 }17461747 /* Avoid locking if we have nothing to do */1748 if (!needs_repacking)1749 return 0; /* no refname exists in packed refs */17501751 if (lock_packed_refs(refs, 0)) {1752 unable_to_lock_message(refs->path, errno, err);1753 return -1;1754 }1755 packed = get_packed_refs(refs);17561757 /* Remove refnames from the cache */1758 for_each_string_list_item(refname, refnames)1759 if (remove_entry_from_dir(packed, refname->string) != -1)1760 removed = 1;1761 if (!removed) {1762 /*1763 * All packed entries disappeared while we were1764 * acquiring the lock.1765 */1766 rollback_packed_refs(refs);1767 return 0;1768 }17691770 /* Write what remains */1771 ret = commit_packed_refs(refs);1772 if (ret)1773 strbuf_addf(err, "unable to overwrite old ref-pack file: %s",1774 strerror(errno));1775 return ret;1776}17771778static int files_delete_refs(struct ref_store *ref_store, const char *msg,1779 struct string_list *refnames, unsigned int flags)1780{1781 struct files_ref_store *refs =1782 files_downcast(ref_store, REF_STORE_WRITE, "delete_refs");1783 struct strbuf err = STRBUF_INIT;1784 int i, result = 0;17851786 if (!refnames->nr)1787 return 0;17881789 result = repack_without_refs(refs->packed_ref_store, refnames, &err);1790 if (result) {1791 /*1792 * If we failed to rewrite the packed-refs file, then1793 * it is unsafe to try to remove loose refs, because1794 * doing so might expose an obsolete packed value for1795 * a reference that might even point at an object that1796 * has been garbage collected.1797 */1798 if (refnames->nr == 1)1799 error(_("could not delete reference %s: %s"),1800 refnames->items[0].string, err.buf);1801 else1802 error(_("could not delete references: %s"), err.buf);18031804 goto out;1805 }18061807 for (i = 0; i < refnames->nr; i++) {1808 const char *refname = refnames->items[i].string;18091810 if (refs_delete_ref(&refs->base, msg, refname, NULL, flags))1811 result |= error(_("could not remove reference %s"), refname);1812 }18131814out:1815 strbuf_release(&err);1816 return result;1817}18181819/*1820 * People using contrib's git-new-workdir have .git/logs/refs ->1821 * /some/other/path/.git/logs/refs, and that may live on another device.1822 *1823 * IOW, to avoid cross device rename errors, the temporary renamed log must1824 * live into logs/refs.1825 */1826#define TMP_RENAMED_LOG "refs/.tmp-renamed-log"18271828struct rename_cb {1829 const char *tmp_renamed_log;1830 int true_errno;1831};18321833static int rename_tmp_log_callback(const char *path, void *cb_data)1834{1835 struct rename_cb *cb = cb_data;18361837 if (rename(cb->tmp_renamed_log, path)) {1838 /*1839 * rename(a, b) when b is an existing directory ought1840 * to result in ISDIR, but Solaris 5.8 gives ENOTDIR.1841 * Sheesh. Record the true errno for error reporting,1842 * but report EISDIR to raceproof_create_file() so1843 * that it knows to retry.1844 */1845 cb->true_errno = errno;1846 if (errno == ENOTDIR)1847 errno = EISDIR;1848 return -1;1849 } else {1850 return 0;1851 }1852}18531854static int rename_tmp_log(struct files_ref_store *refs, const char *newrefname)1855{1856 struct strbuf path = STRBUF_INIT;1857 struct strbuf tmp = STRBUF_INIT;1858 struct rename_cb cb;1859 int ret;18601861 files_reflog_path(refs, &path, newrefname);1862 files_reflog_path(refs, &tmp, TMP_RENAMED_LOG);1863 cb.tmp_renamed_log = tmp.buf;1864 ret = raceproof_create_file(path.buf, rename_tmp_log_callback, &cb);1865 if (ret) {1866 if (errno == EISDIR)1867 error("directory not empty: %s", path.buf);1868 else1869 error("unable to move logfile %s to %s: %s",1870 tmp.buf, path.buf,1871 strerror(cb.true_errno));1872 }18731874 strbuf_release(&path);1875 strbuf_release(&tmp);1876 return ret;1877}18781879static int write_ref_to_lockfile(struct ref_lock *lock,1880 const struct object_id *oid, struct strbuf *err);1881static int commit_ref_update(struct files_ref_store *refs,1882 struct ref_lock *lock,1883 const struct object_id *oid, const char *logmsg,1884 struct strbuf *err);18851886static int files_rename_ref(struct ref_store *ref_store,1887 const char *oldrefname, const char *newrefname,1888 const char *logmsg)1889{1890 struct files_ref_store *refs =1891 files_downcast(ref_store, REF_STORE_WRITE, "rename_ref");1892 struct object_id oid, orig_oid;1893 int flag = 0, logmoved = 0;1894 struct ref_lock *lock;1895 struct stat loginfo;1896 struct strbuf sb_oldref = STRBUF_INIT;1897 struct strbuf sb_newref = STRBUF_INIT;1898 struct strbuf tmp_renamed_log = STRBUF_INIT;1899 int log, ret;1900 struct strbuf err = STRBUF_INIT;19011902 files_reflog_path(refs, &sb_oldref, oldrefname);1903 files_reflog_path(refs, &sb_newref, newrefname);1904 files_reflog_path(refs, &tmp_renamed_log, TMP_RENAMED_LOG);19051906 log = !lstat(sb_oldref.buf, &loginfo);1907 if (log && S_ISLNK(loginfo.st_mode)) {1908 ret = error("reflog for %s is a symlink", oldrefname);1909 goto out;1910 }19111912 if (!refs_resolve_ref_unsafe(&refs->base, oldrefname,1913 RESOLVE_REF_READING | RESOLVE_REF_NO_RECURSE,1914 orig_oid.hash, &flag)) {1915 ret = error("refname %s not found", oldrefname);1916 goto out;1917 }19181919 if (flag & REF_ISSYMREF) {1920 ret = error("refname %s is a symbolic ref, renaming it is not supported",1921 oldrefname);1922 goto out;1923 }1924 if (!refs_rename_ref_available(&refs->base, oldrefname, newrefname)) {1925 ret = 1;1926 goto out;1927 }19281929 if (log && rename(sb_oldref.buf, tmp_renamed_log.buf)) {1930 ret = error("unable to move logfile logs/%s to logs/"TMP_RENAMED_LOG": %s",1931 oldrefname, strerror(errno));1932 goto out;1933 }19341935 if (refs_delete_ref(&refs->base, logmsg, oldrefname,1936 orig_oid.hash, REF_NODEREF)) {1937 error("unable to delete old %s", oldrefname);1938 goto rollback;1939 }19401941 /*1942 * Since we are doing a shallow lookup, oid is not the1943 * correct value to pass to delete_ref as old_oid. But that1944 * doesn't matter, because an old_oid check wouldn't add to1945 * the safety anyway; we want to delete the reference whatever1946 * its current value.1947 */1948 if (!refs_read_ref_full(&refs->base, newrefname,1949 RESOLVE_REF_READING | RESOLVE_REF_NO_RECURSE,1950 oid.hash, NULL) &&1951 refs_delete_ref(&refs->base, NULL, newrefname,1952 NULL, REF_NODEREF)) {1953 if (errno == EISDIR) {1954 struct strbuf path = STRBUF_INIT;1955 int result;19561957 files_ref_path(refs, &path, newrefname);1958 result = remove_empty_directories(&path);1959 strbuf_release(&path);19601961 if (result) {1962 error("Directory not empty: %s", newrefname);1963 goto rollback;1964 }1965 } else {1966 error("unable to delete existing %s", newrefname);1967 goto rollback;1968 }1969 }19701971 if (log && rename_tmp_log(refs, newrefname))1972 goto rollback;19731974 logmoved = log;19751976 lock = lock_ref_sha1_basic(refs, newrefname, NULL, NULL, NULL,1977 REF_NODEREF, NULL, &err);1978 if (!lock) {1979 error("unable to rename '%s' to '%s': %s", oldrefname, newrefname, err.buf);1980 strbuf_release(&err);1981 goto rollback;1982 }1983 oidcpy(&lock->old_oid, &orig_oid);19841985 if (write_ref_to_lockfile(lock, &orig_oid, &err) ||1986 commit_ref_update(refs, lock, &orig_oid, logmsg, &err)) {1987 error("unable to write current sha1 into %s: %s", newrefname, err.buf);1988 strbuf_release(&err);1989 goto rollback;1990 }19911992 ret = 0;1993 goto out;19941995 rollback:1996 lock = lock_ref_sha1_basic(refs, oldrefname, NULL, NULL, NULL,1997 REF_NODEREF, NULL, &err);1998 if (!lock) {1999 error("unable to lock %s for rollback: %s", oldrefname, err.buf);2000 strbuf_release(&err);2001 goto rollbacklog;2002 }20032004 flag = log_all_ref_updates;2005 log_all_ref_updates = LOG_REFS_NONE;2006 if (write_ref_to_lockfile(lock, &orig_oid, &err) ||2007 commit_ref_update(refs, lock, &orig_oid, NULL, &err)) {2008 error("unable to write current sha1 into %s: %s", oldrefname, err.buf);2009 strbuf_release(&err);2010 }2011 log_all_ref_updates = flag;20122013 rollbacklog:2014 if (logmoved && rename(sb_newref.buf, sb_oldref.buf))2015 error("unable to restore logfile %s from %s: %s",2016 oldrefname, newrefname, strerror(errno));2017 if (!logmoved && log &&2018 rename(tmp_renamed_log.buf, sb_oldref.buf))2019 error("unable to restore logfile %s from logs/"TMP_RENAMED_LOG": %s",2020 oldrefname, strerror(errno));2021 ret = 1;2022 out:2023 strbuf_release(&sb_newref);2024 strbuf_release(&sb_oldref);2025 strbuf_release(&tmp_renamed_log);20262027 return ret;2028}20292030static int close_ref(struct ref_lock *lock)2031{2032 if (close_lock_file(lock->lk))2033 return -1;2034 return 0;2035}20362037static int commit_ref(struct ref_lock *lock)2038{2039 char *path = get_locked_file_path(lock->lk);2040 struct stat st;20412042 if (!lstat(path, &st) && S_ISDIR(st.st_mode)) {2043 /*2044 * There is a directory at the path we want to rename2045 * the lockfile to. Hopefully it is empty; try to2046 * delete it.2047 */2048 size_t len = strlen(path);2049 struct strbuf sb_path = STRBUF_INIT;20502051 strbuf_attach(&sb_path, path, len, len);20522053 /*2054 * If this fails, commit_lock_file() will also fail2055 * and will report the problem.2056 */2057 remove_empty_directories(&sb_path);2058 strbuf_release(&sb_path);2059 } else {2060 free(path);2061 }20622063 if (commit_lock_file(lock->lk))2064 return -1;2065 return 0;2066}20672068static int open_or_create_logfile(const char *path, void *cb)2069{2070 int *fd = cb;20712072 *fd = open(path, O_APPEND | O_WRONLY | O_CREAT, 0666);2073 return (*fd < 0) ? -1 : 0;2074}20752076/*2077 * Create a reflog for a ref. If force_create = 0, only create the2078 * reflog for certain refs (those for which should_autocreate_reflog2079 * returns non-zero). Otherwise, create it regardless of the reference2080 * name. If the logfile already existed or was created, return 0 and2081 * set *logfd to the file descriptor opened for appending to the file.2082 * If no logfile exists and we decided not to create one, return 0 and2083 * set *logfd to -1. On failure, fill in *err, set *logfd to -1, and2084 * return -1.2085 */2086static int log_ref_setup(struct files_ref_store *refs,2087 const char *refname, int force_create,2088 int *logfd, struct strbuf *err)2089{2090 struct strbuf logfile_sb = STRBUF_INIT;2091 char *logfile;20922093 files_reflog_path(refs, &logfile_sb, refname);2094 logfile = strbuf_detach(&logfile_sb, NULL);20952096 if (force_create || should_autocreate_reflog(refname)) {2097 if (raceproof_create_file(logfile, open_or_create_logfile, logfd)) {2098 if (errno == ENOENT)2099 strbuf_addf(err, "unable to create directory for '%s': "2100 "%s", logfile, strerror(errno));2101 else if (errno == EISDIR)2102 strbuf_addf(err, "there are still logs under '%s'",2103 logfile);2104 else2105 strbuf_addf(err, "unable to append to '%s': %s",2106 logfile, strerror(errno));21072108 goto error;2109 }2110 } else {2111 *logfd = open(logfile, O_APPEND | O_WRONLY, 0666);2112 if (*logfd < 0) {2113 if (errno == ENOENT || errno == EISDIR) {2114 /*2115 * The logfile doesn't already exist,2116 * but that is not an error; it only2117 * means that we won't write log2118 * entries to it.2119 */2120 ;2121 } else {2122 strbuf_addf(err, "unable to append to '%s': %s",2123 logfile, strerror(errno));2124 goto error;2125 }2126 }2127 }21282129 if (*logfd >= 0)2130 adjust_shared_perm(logfile);21312132 free(logfile);2133 return 0;21342135error:2136 free(logfile);2137 return -1;2138}21392140static int files_create_reflog(struct ref_store *ref_store,2141 const char *refname, int force_create,2142 struct strbuf *err)2143{2144 struct files_ref_store *refs =2145 files_downcast(ref_store, REF_STORE_WRITE, "create_reflog");2146 int fd;21472148 if (log_ref_setup(refs, refname, force_create, &fd, err))2149 return -1;21502151 if (fd >= 0)2152 close(fd);21532154 return 0;2155}21562157static int log_ref_write_fd(int fd, const struct object_id *old_oid,2158 const struct object_id *new_oid,2159 const char *committer, const char *msg)2160{2161 int msglen, written;2162 unsigned maxlen, len;2163 char *logrec;21642165 msglen = msg ? strlen(msg) : 0;2166 maxlen = strlen(committer) + msglen + 100;2167 logrec = xmalloc(maxlen);2168 len = xsnprintf(logrec, maxlen, "%s %s %s\n",2169 oid_to_hex(old_oid),2170 oid_to_hex(new_oid),2171 committer);2172 if (msglen)2173 len += copy_reflog_msg(logrec + len - 1, msg) - 1;21742175 written = len <= maxlen ? write_in_full(fd, logrec, len) : -1;2176 free(logrec);2177 if (written != len)2178 return -1;21792180 return 0;2181}21822183static int files_log_ref_write(struct files_ref_store *refs,2184 const char *refname, const struct object_id *old_oid,2185 const struct object_id *new_oid, const char *msg,2186 int flags, struct strbuf *err)2187{2188 int logfd, result;21892190 if (log_all_ref_updates == LOG_REFS_UNSET)2191 log_all_ref_updates = is_bare_repository() ? LOG_REFS_NONE : LOG_REFS_NORMAL;21922193 result = log_ref_setup(refs, refname,2194 flags & REF_FORCE_CREATE_REFLOG,2195 &logfd, err);21962197 if (result)2198 return result;21992200 if (logfd < 0)2201 return 0;2202 result = log_ref_write_fd(logfd, old_oid, new_oid,2203 git_committer_info(0), msg);2204 if (result) {2205 struct strbuf sb = STRBUF_INIT;2206 int save_errno = errno;22072208 files_reflog_path(refs, &sb, refname);2209 strbuf_addf(err, "unable to append to '%s': %s",2210 sb.buf, strerror(save_errno));2211 strbuf_release(&sb);2212 close(logfd);2213 return -1;2214 }2215 if (close(logfd)) {2216 struct strbuf sb = STRBUF_INIT;2217 int save_errno = errno;22182219 files_reflog_path(refs, &sb, refname);2220 strbuf_addf(err, "unable to append to '%s': %s",2221 sb.buf, strerror(save_errno));2222 strbuf_release(&sb);2223 return -1;2224 }2225 return 0;2226}22272228/*2229 * Write sha1 into the open lockfile, then close the lockfile. On2230 * errors, rollback the lockfile, fill in *err and2231 * return -1.2232 */2233static int write_ref_to_lockfile(struct ref_lock *lock,2234 const struct object_id *oid, struct strbuf *err)2235{2236 static char term = '\n';2237 struct object *o;2238 int fd;22392240 o = parse_object(oid);2241 if (!o) {2242 strbuf_addf(err,2243 "trying to write ref '%s' with nonexistent object %s",2244 lock->ref_name, oid_to_hex(oid));2245 unlock_ref(lock);2246 return -1;2247 }2248 if (o->type != OBJ_COMMIT && is_branch(lock->ref_name)) {2249 strbuf_addf(err,2250 "trying to write non-commit object %s to branch '%s'",2251 oid_to_hex(oid), lock->ref_name);2252 unlock_ref(lock);2253 return -1;2254 }2255 fd = get_lock_file_fd(lock->lk);2256 if (write_in_full(fd, oid_to_hex(oid), GIT_SHA1_HEXSZ) != GIT_SHA1_HEXSZ ||2257 write_in_full(fd, &term, 1) != 1 ||2258 close_ref(lock) < 0) {2259 strbuf_addf(err,2260 "couldn't write '%s'", get_lock_file_path(lock->lk));2261 unlock_ref(lock);2262 return -1;2263 }2264 return 0;2265}22662267/*2268 * Commit a change to a loose reference that has already been written2269 * to the loose reference lockfile. Also update the reflogs if2270 * necessary, using the specified lockmsg (which can be NULL).2271 */2272static int commit_ref_update(struct files_ref_store *refs,2273 struct ref_lock *lock,2274 const struct object_id *oid, const char *logmsg,2275 struct strbuf *err)2276{2277 files_assert_main_repository(refs, "commit_ref_update");22782279 clear_loose_ref_cache(refs);2280 if (files_log_ref_write(refs, lock->ref_name,2281 &lock->old_oid, oid,2282 logmsg, 0, err)) {2283 char *old_msg = strbuf_detach(err, NULL);2284 strbuf_addf(err, "cannot update the ref '%s': %s",2285 lock->ref_name, old_msg);2286 free(old_msg);2287 unlock_ref(lock);2288 return -1;2289 }22902291 if (strcmp(lock->ref_name, "HEAD") != 0) {2292 /*2293 * Special hack: If a branch is updated directly and HEAD2294 * points to it (may happen on the remote side of a push2295 * for example) then logically the HEAD reflog should be2296 * updated too.2297 * A generic solution implies reverse symref information,2298 * but finding all symrefs pointing to the given branch2299 * would be rather costly for this rare event (the direct2300 * update of a branch) to be worth it. So let's cheat and2301 * check with HEAD only which should cover 99% of all usage2302 * scenarios (even 100% of the default ones).2303 */2304 struct object_id head_oid;2305 int head_flag;2306 const char *head_ref;23072308 head_ref = refs_resolve_ref_unsafe(&refs->base, "HEAD",2309 RESOLVE_REF_READING,2310 head_oid.hash, &head_flag);2311 if (head_ref && (head_flag & REF_ISSYMREF) &&2312 !strcmp(head_ref, lock->ref_name)) {2313 struct strbuf log_err = STRBUF_INIT;2314 if (files_log_ref_write(refs, "HEAD",2315 &lock->old_oid, oid,2316 logmsg, 0, &log_err)) {2317 error("%s", log_err.buf);2318 strbuf_release(&log_err);2319 }2320 }2321 }23222323 if (commit_ref(lock)) {2324 strbuf_addf(err, "couldn't set '%s'", lock->ref_name);2325 unlock_ref(lock);2326 return -1;2327 }23282329 unlock_ref(lock);2330 return 0;2331}23322333static int create_ref_symlink(struct ref_lock *lock, const char *target)2334{2335 int ret = -1;2336#ifndef NO_SYMLINK_HEAD2337 char *ref_path = get_locked_file_path(lock->lk);2338 unlink(ref_path);2339 ret = symlink(target, ref_path);2340 free(ref_path);23412342 if (ret)2343 fprintf(stderr, "no symlink - falling back to symbolic ref\n");2344#endif2345 return ret;2346}23472348static void update_symref_reflog(struct files_ref_store *refs,2349 struct ref_lock *lock, const char *refname,2350 const char *target, const char *logmsg)2351{2352 struct strbuf err = STRBUF_INIT;2353 struct object_id new_oid;2354 if (logmsg &&2355 !refs_read_ref_full(&refs->base, target,2356 RESOLVE_REF_READING, new_oid.hash, NULL) &&2357 files_log_ref_write(refs, refname, &lock->old_oid,2358 &new_oid, logmsg, 0, &err)) {2359 error("%s", err.buf);2360 strbuf_release(&err);2361 }2362}23632364static int create_symref_locked(struct files_ref_store *refs,2365 struct ref_lock *lock, const char *refname,2366 const char *target, const char *logmsg)2367{2368 if (prefer_symlink_refs && !create_ref_symlink(lock, target)) {2369 update_symref_reflog(refs, lock, refname, target, logmsg);2370 return 0;2371 }23722373 if (!fdopen_lock_file(lock->lk, "w"))2374 return error("unable to fdopen %s: %s",2375 lock->lk->tempfile.filename.buf, strerror(errno));23762377 update_symref_reflog(refs, lock, refname, target, logmsg);23782379 /* no error check; commit_ref will check ferror */2380 fprintf(lock->lk->tempfile.fp, "ref: %s\n", target);2381 if (commit_ref(lock) < 0)2382 return error("unable to write symref for %s: %s", refname,2383 strerror(errno));2384 return 0;2385}23862387static int files_create_symref(struct ref_store *ref_store,2388 const char *refname, const char *target,2389 const char *logmsg)2390{2391 struct files_ref_store *refs =2392 files_downcast(ref_store, REF_STORE_WRITE, "create_symref");2393 struct strbuf err = STRBUF_INIT;2394 struct ref_lock *lock;2395 int ret;23962397 lock = lock_ref_sha1_basic(refs, refname, NULL,2398 NULL, NULL, REF_NODEREF, NULL,2399 &err);2400 if (!lock) {2401 error("%s", err.buf);2402 strbuf_release(&err);2403 return -1;2404 }24052406 ret = create_symref_locked(refs, lock, refname, target, logmsg);2407 unlock_ref(lock);2408 return ret;2409}24102411static int files_reflog_exists(struct ref_store *ref_store,2412 const char *refname)2413{2414 struct files_ref_store *refs =2415 files_downcast(ref_store, REF_STORE_READ, "reflog_exists");2416 struct strbuf sb = STRBUF_INIT;2417 struct stat st;2418 int ret;24192420 files_reflog_path(refs, &sb, refname);2421 ret = !lstat(sb.buf, &st) && S_ISREG(st.st_mode);2422 strbuf_release(&sb);2423 return ret;2424}24252426static int files_delete_reflog(struct ref_store *ref_store,2427 const char *refname)2428{2429 struct files_ref_store *refs =2430 files_downcast(ref_store, REF_STORE_WRITE, "delete_reflog");2431 struct strbuf sb = STRBUF_INIT;2432 int ret;24332434 files_reflog_path(refs, &sb, refname);2435 ret = remove_path(sb.buf);2436 strbuf_release(&sb);2437 return ret;2438}24392440static int show_one_reflog_ent(struct strbuf *sb, each_reflog_ent_fn fn, void *cb_data)2441{2442 struct object_id ooid, noid;2443 char *email_end, *message;2444 timestamp_t timestamp;2445 int tz;2446 const char *p = sb->buf;24472448 /* old SP new SP name <email> SP time TAB msg LF */2449 if (!sb->len || sb->buf[sb->len - 1] != '\n' ||2450 parse_oid_hex(p, &ooid, &p) || *p++ != ' ' ||2451 parse_oid_hex(p, &noid, &p) || *p++ != ' ' ||2452 !(email_end = strchr(p, '>')) ||2453 email_end[1] != ' ' ||2454 !(timestamp = parse_timestamp(email_end + 2, &message, 10)) ||2455 !message || message[0] != ' ' ||2456 (message[1] != '+' && message[1] != '-') ||2457 !isdigit(message[2]) || !isdigit(message[3]) ||2458 !isdigit(message[4]) || !isdigit(message[5]))2459 return 0; /* corrupt? */2460 email_end[1] = '\0';2461 tz = strtol(message + 1, NULL, 10);2462 if (message[6] != '\t')2463 message += 6;2464 else2465 message += 7;2466 return fn(&ooid, &noid, p, timestamp, tz, message, cb_data);2467}24682469static char *find_beginning_of_line(char *bob, char *scan)2470{2471 while (bob < scan && *(--scan) != '\n')2472 ; /* keep scanning backwards */2473 /*2474 * Return either beginning of the buffer, or LF at the end of2475 * the previous line.2476 */2477 return scan;2478}24792480static int files_for_each_reflog_ent_reverse(struct ref_store *ref_store,2481 const char *refname,2482 each_reflog_ent_fn fn,2483 void *cb_data)2484{2485 struct files_ref_store *refs =2486 files_downcast(ref_store, REF_STORE_READ,2487 "for_each_reflog_ent_reverse");2488 struct strbuf sb = STRBUF_INIT;2489 FILE *logfp;2490 long pos;2491 int ret = 0, at_tail = 1;24922493 files_reflog_path(refs, &sb, refname);2494 logfp = fopen(sb.buf, "r");2495 strbuf_release(&sb);2496 if (!logfp)2497 return -1;24982499 /* Jump to the end */2500 if (fseek(logfp, 0, SEEK_END) < 0)2501 ret = error("cannot seek back reflog for %s: %s",2502 refname, strerror(errno));2503 pos = ftell(logfp);2504 while (!ret && 0 < pos) {2505 int cnt;2506 size_t nread;2507 char buf[BUFSIZ];2508 char *endp, *scanp;25092510 /* Fill next block from the end */2511 cnt = (sizeof(buf) < pos) ? sizeof(buf) : pos;2512 if (fseek(logfp, pos - cnt, SEEK_SET)) {2513 ret = error("cannot seek back reflog for %s: %s",2514 refname, strerror(errno));2515 break;2516 }2517 nread = fread(buf, cnt, 1, logfp);2518 if (nread != 1) {2519 ret = error("cannot read %d bytes from reflog for %s: %s",2520 cnt, refname, strerror(errno));2521 break;2522 }2523 pos -= cnt;25242525 scanp = endp = buf + cnt;2526 if (at_tail && scanp[-1] == '\n')2527 /* Looking at the final LF at the end of the file */2528 scanp--;2529 at_tail = 0;25302531 while (buf < scanp) {2532 /*2533 * terminating LF of the previous line, or the beginning2534 * of the buffer.2535 */2536 char *bp;25372538 bp = find_beginning_of_line(buf, scanp);25392540 if (*bp == '\n') {2541 /*2542 * The newline is the end of the previous line,2543 * so we know we have complete line starting2544 * at (bp + 1). Prefix it onto any prior data2545 * we collected for the line and process it.2546 */2547 strbuf_splice(&sb, 0, 0, bp + 1, endp - (bp + 1));2548 scanp = bp;2549 endp = bp + 1;2550 ret = show_one_reflog_ent(&sb, fn, cb_data);2551 strbuf_reset(&sb);2552 if (ret)2553 break;2554 } else if (!pos) {2555 /*2556 * We are at the start of the buffer, and the2557 * start of the file; there is no previous2558 * line, and we have everything for this one.2559 * Process it, and we can end the loop.2560 */2561 strbuf_splice(&sb, 0, 0, buf, endp - buf);2562 ret = show_one_reflog_ent(&sb, fn, cb_data);2563 strbuf_reset(&sb);2564 break;2565 }25662567 if (bp == buf) {2568 /*2569 * We are at the start of the buffer, and there2570 * is more file to read backwards. Which means2571 * we are in the middle of a line. Note that we2572 * may get here even if *bp was a newline; that2573 * just means we are at the exact end of the2574 * previous line, rather than some spot in the2575 * middle.2576 *2577 * Save away what we have to be combined with2578 * the data from the next read.2579 */2580 strbuf_splice(&sb, 0, 0, buf, endp - buf);2581 break;2582 }2583 }25842585 }2586 if (!ret && sb.len)2587 die("BUG: reverse reflog parser had leftover data");25882589 fclose(logfp);2590 strbuf_release(&sb);2591 return ret;2592}25932594static int files_for_each_reflog_ent(struct ref_store *ref_store,2595 const char *refname,2596 each_reflog_ent_fn fn, void *cb_data)2597{2598 struct files_ref_store *refs =2599 files_downcast(ref_store, REF_STORE_READ,2600 "for_each_reflog_ent");2601 FILE *logfp;2602 struct strbuf sb = STRBUF_INIT;2603 int ret = 0;26042605 files_reflog_path(refs, &sb, refname);2606 logfp = fopen(sb.buf, "r");2607 strbuf_release(&sb);2608 if (!logfp)2609 return -1;26102611 while (!ret && !strbuf_getwholeline(&sb, logfp, '\n'))2612 ret = show_one_reflog_ent(&sb, fn, cb_data);2613 fclose(logfp);2614 strbuf_release(&sb);2615 return ret;2616}26172618struct files_reflog_iterator {2619 struct ref_iterator base;26202621 struct ref_store *ref_store;2622 struct dir_iterator *dir_iterator;2623 struct object_id oid;2624};26252626static int files_reflog_iterator_advance(struct ref_iterator *ref_iterator)2627{2628 struct files_reflog_iterator *iter =2629 (struct files_reflog_iterator *)ref_iterator;2630 struct dir_iterator *diter = iter->dir_iterator;2631 int ok;26322633 while ((ok = dir_iterator_advance(diter)) == ITER_OK) {2634 int flags;26352636 if (!S_ISREG(diter->st.st_mode))2637 continue;2638 if (diter->basename[0] == '.')2639 continue;2640 if (ends_with(diter->basename, ".lock"))2641 continue;26422643 if (refs_read_ref_full(iter->ref_store,2644 diter->relative_path, 0,2645 iter->oid.hash, &flags)) {2646 error("bad ref for %s", diter->path.buf);2647 continue;2648 }26492650 iter->base.refname = diter->relative_path;2651 iter->base.oid = &iter->oid;2652 iter->base.flags = flags;2653 return ITER_OK;2654 }26552656 iter->dir_iterator = NULL;2657 if (ref_iterator_abort(ref_iterator) == ITER_ERROR)2658 ok = ITER_ERROR;2659 return ok;2660}26612662static int files_reflog_iterator_peel(struct ref_iterator *ref_iterator,2663 struct object_id *peeled)2664{2665 die("BUG: ref_iterator_peel() called for reflog_iterator");2666}26672668static int files_reflog_iterator_abort(struct ref_iterator *ref_iterator)2669{2670 struct files_reflog_iterator *iter =2671 (struct files_reflog_iterator *)ref_iterator;2672 int ok = ITER_DONE;26732674 if (iter->dir_iterator)2675 ok = dir_iterator_abort(iter->dir_iterator);26762677 base_ref_iterator_free(ref_iterator);2678 return ok;2679}26802681static struct ref_iterator_vtable files_reflog_iterator_vtable = {2682 files_reflog_iterator_advance,2683 files_reflog_iterator_peel,2684 files_reflog_iterator_abort2685};26862687static struct ref_iterator *files_reflog_iterator_begin(struct ref_store *ref_store)2688{2689 struct files_ref_store *refs =2690 files_downcast(ref_store, REF_STORE_READ,2691 "reflog_iterator_begin");2692 struct files_reflog_iterator *iter = xcalloc(1, sizeof(*iter));2693 struct ref_iterator *ref_iterator = &iter->base;2694 struct strbuf sb = STRBUF_INIT;26952696 base_ref_iterator_init(ref_iterator, &files_reflog_iterator_vtable);2697 files_reflog_path(refs, &sb, NULL);2698 iter->dir_iterator = dir_iterator_begin(sb.buf);2699 iter->ref_store = ref_store;2700 strbuf_release(&sb);2701 return ref_iterator;2702}27032704/*2705 * If update is a direct update of head_ref (the reference pointed to2706 * by HEAD), then add an extra REF_LOG_ONLY update for HEAD.2707 */2708static int split_head_update(struct ref_update *update,2709 struct ref_transaction *transaction,2710 const char *head_ref,2711 struct string_list *affected_refnames,2712 struct strbuf *err)2713{2714 struct string_list_item *item;2715 struct ref_update *new_update;27162717 if ((update->flags & REF_LOG_ONLY) ||2718 (update->flags & REF_ISPRUNING) ||2719 (update->flags & REF_UPDATE_VIA_HEAD))2720 return 0;27212722 if (strcmp(update->refname, head_ref))2723 return 0;27242725 /*2726 * First make sure that HEAD is not already in the2727 * transaction. This insertion is O(N) in the transaction2728 * size, but it happens at most once per transaction.2729 */2730 item = string_list_insert(affected_refnames, "HEAD");2731 if (item->util) {2732 /* An entry already existed */2733 strbuf_addf(err,2734 "multiple updates for 'HEAD' (including one "2735 "via its referent '%s') are not allowed",2736 update->refname);2737 return TRANSACTION_NAME_CONFLICT;2738 }27392740 new_update = ref_transaction_add_update(2741 transaction, "HEAD",2742 update->flags | REF_LOG_ONLY | REF_NODEREF,2743 update->new_oid.hash, update->old_oid.hash,2744 update->msg);27452746 item->util = new_update;27472748 return 0;2749}27502751/*2752 * update is for a symref that points at referent and doesn't have2753 * REF_NODEREF set. Split it into two updates:2754 * - The original update, but with REF_LOG_ONLY and REF_NODEREF set2755 * - A new, separate update for the referent reference2756 * Note that the new update will itself be subject to splitting when2757 * the iteration gets to it.2758 */2759static int split_symref_update(struct files_ref_store *refs,2760 struct ref_update *update,2761 const char *referent,2762 struct ref_transaction *transaction,2763 struct string_list *affected_refnames,2764 struct strbuf *err)2765{2766 struct string_list_item *item;2767 struct ref_update *new_update;2768 unsigned int new_flags;27692770 /*2771 * First make sure that referent is not already in the2772 * transaction. This insertion is O(N) in the transaction2773 * size, but it happens at most once per symref in a2774 * transaction.2775 */2776 item = string_list_insert(affected_refnames, referent);2777 if (item->util) {2778 /* An entry already existed */2779 strbuf_addf(err,2780 "multiple updates for '%s' (including one "2781 "via symref '%s') are not allowed",2782 referent, update->refname);2783 return TRANSACTION_NAME_CONFLICT;2784 }27852786 new_flags = update->flags;2787 if (!strcmp(update->refname, "HEAD")) {2788 /*2789 * Record that the new update came via HEAD, so that2790 * when we process it, split_head_update() doesn't try2791 * to add another reflog update for HEAD. Note that2792 * this bit will be propagated if the new_update2793 * itself needs to be split.2794 */2795 new_flags |= REF_UPDATE_VIA_HEAD;2796 }27972798 new_update = ref_transaction_add_update(2799 transaction, referent, new_flags,2800 update->new_oid.hash, update->old_oid.hash,2801 update->msg);28022803 new_update->parent_update = update;28042805 /*2806 * Change the symbolic ref update to log only. Also, it2807 * doesn't need to check its old SHA-1 value, as that will be2808 * done when new_update is processed.2809 */2810 update->flags |= REF_LOG_ONLY | REF_NODEREF;2811 update->flags &= ~REF_HAVE_OLD;28122813 item->util = new_update;28142815 return 0;2816}28172818/*2819 * Return the refname under which update was originally requested.2820 */2821static const char *original_update_refname(struct ref_update *update)2822{2823 while (update->parent_update)2824 update = update->parent_update;28252826 return update->refname;2827}28282829/*2830 * Check whether the REF_HAVE_OLD and old_oid values stored in update2831 * are consistent with oid, which is the reference's current value. If2832 * everything is OK, return 0; otherwise, write an error message to2833 * err and return -1.2834 */2835static int check_old_oid(struct ref_update *update, struct object_id *oid,2836 struct strbuf *err)2837{2838 if (!(update->flags & REF_HAVE_OLD) ||2839 !oidcmp(oid, &update->old_oid))2840 return 0;28412842 if (is_null_oid(&update->old_oid))2843 strbuf_addf(err, "cannot lock ref '%s': "2844 "reference already exists",2845 original_update_refname(update));2846 else if (is_null_oid(oid))2847 strbuf_addf(err, "cannot lock ref '%s': "2848 "reference is missing but expected %s",2849 original_update_refname(update),2850 oid_to_hex(&update->old_oid));2851 else2852 strbuf_addf(err, "cannot lock ref '%s': "2853 "is at %s but expected %s",2854 original_update_refname(update),2855 oid_to_hex(oid),2856 oid_to_hex(&update->old_oid));28572858 return -1;2859}28602861/*2862 * Prepare for carrying out update:2863 * - Lock the reference referred to by update.2864 * - Read the reference under lock.2865 * - Check that its old SHA-1 value (if specified) is correct, and in2866 * any case record it in update->lock->old_oid for later use when2867 * writing the reflog.2868 * - If it is a symref update without REF_NODEREF, split it up into a2869 * REF_LOG_ONLY update of the symref and add a separate update for2870 * the referent to transaction.2871 * - If it is an update of head_ref, add a corresponding REF_LOG_ONLY2872 * update of HEAD.2873 */2874static int lock_ref_for_update(struct files_ref_store *refs,2875 struct ref_update *update,2876 struct ref_transaction *transaction,2877 const char *head_ref,2878 struct string_list *affected_refnames,2879 struct strbuf *err)2880{2881 struct strbuf referent = STRBUF_INIT;2882 int mustexist = (update->flags & REF_HAVE_OLD) &&2883 !is_null_oid(&update->old_oid);2884 int ret;2885 struct ref_lock *lock;28862887 files_assert_main_repository(refs, "lock_ref_for_update");28882889 if ((update->flags & REF_HAVE_NEW) && is_null_oid(&update->new_oid))2890 update->flags |= REF_DELETING;28912892 if (head_ref) {2893 ret = split_head_update(update, transaction, head_ref,2894 affected_refnames, err);2895 if (ret)2896 return ret;2897 }28982899 ret = lock_raw_ref(refs, update->refname, mustexist,2900 affected_refnames, NULL,2901 &lock, &referent,2902 &update->type, err);2903 if (ret) {2904 char *reason;29052906 reason = strbuf_detach(err, NULL);2907 strbuf_addf(err, "cannot lock ref '%s': %s",2908 original_update_refname(update), reason);2909 free(reason);2910 return ret;2911 }29122913 update->backend_data = lock;29142915 if (update->type & REF_ISSYMREF) {2916 if (update->flags & REF_NODEREF) {2917 /*2918 * We won't be reading the referent as part of2919 * the transaction, so we have to read it here2920 * to record and possibly check old_sha1:2921 */2922 if (refs_read_ref_full(&refs->base,2923 referent.buf, 0,2924 lock->old_oid.hash, NULL)) {2925 if (update->flags & REF_HAVE_OLD) {2926 strbuf_addf(err, "cannot lock ref '%s': "2927 "error reading reference",2928 original_update_refname(update));2929 return -1;2930 }2931 } else if (check_old_oid(update, &lock->old_oid, err)) {2932 return TRANSACTION_GENERIC_ERROR;2933 }2934 } else {2935 /*2936 * Create a new update for the reference this2937 * symref is pointing at. Also, we will record2938 * and verify old_sha1 for this update as part2939 * of processing the split-off update, so we2940 * don't have to do it here.2941 */2942 ret = split_symref_update(refs, update,2943 referent.buf, transaction,2944 affected_refnames, err);2945 if (ret)2946 return ret;2947 }2948 } else {2949 struct ref_update *parent_update;29502951 if (check_old_oid(update, &lock->old_oid, err))2952 return TRANSACTION_GENERIC_ERROR;29532954 /*2955 * If this update is happening indirectly because of a2956 * symref update, record the old SHA-1 in the parent2957 * update:2958 */2959 for (parent_update = update->parent_update;2960 parent_update;2961 parent_update = parent_update->parent_update) {2962 struct ref_lock *parent_lock = parent_update->backend_data;2963 oidcpy(&parent_lock->old_oid, &lock->old_oid);2964 }2965 }29662967 if ((update->flags & REF_HAVE_NEW) &&2968 !(update->flags & REF_DELETING) &&2969 !(update->flags & REF_LOG_ONLY)) {2970 if (!(update->type & REF_ISSYMREF) &&2971 !oidcmp(&lock->old_oid, &update->new_oid)) {2972 /*2973 * The reference already has the desired2974 * value, so we don't need to write it.2975 */2976 } else if (write_ref_to_lockfile(lock, &update->new_oid,2977 err)) {2978 char *write_err = strbuf_detach(err, NULL);29792980 /*2981 * The lock was freed upon failure of2982 * write_ref_to_lockfile():2983 */2984 update->backend_data = NULL;2985 strbuf_addf(err,2986 "cannot update ref '%s': %s",2987 update->refname, write_err);2988 free(write_err);2989 return TRANSACTION_GENERIC_ERROR;2990 } else {2991 update->flags |= REF_NEEDS_COMMIT;2992 }2993 }2994 if (!(update->flags & REF_NEEDS_COMMIT)) {2995 /*2996 * We didn't call write_ref_to_lockfile(), so2997 * the lockfile is still open. Close it to2998 * free up the file descriptor:2999 */3000 if (close_ref(lock)) {3001 strbuf_addf(err, "couldn't close '%s.lock'",3002 update->refname);3003 return TRANSACTION_GENERIC_ERROR;3004 }3005 }3006 return 0;3007}30083009/*3010 * Unlock any references in `transaction` that are still locked, and3011 * mark the transaction closed.3012 */3013static void files_transaction_cleanup(struct ref_transaction *transaction)3014{3015 size_t i;30163017 for (i = 0; i < transaction->nr; i++) {3018 struct ref_update *update = transaction->updates[i];3019 struct ref_lock *lock = update->backend_data;30203021 if (lock) {3022 unlock_ref(lock);3023 update->backend_data = NULL;3024 }3025 }30263027 transaction->state = REF_TRANSACTION_CLOSED;3028}30293030static int files_transaction_prepare(struct ref_store *ref_store,3031 struct ref_transaction *transaction,3032 struct strbuf *err)3033{3034 struct files_ref_store *refs =3035 files_downcast(ref_store, REF_STORE_WRITE,3036 "ref_transaction_prepare");3037 size_t i;3038 int ret = 0;3039 struct string_list affected_refnames = STRING_LIST_INIT_NODUP;3040 char *head_ref = NULL;3041 int head_type;3042 struct object_id head_oid;30433044 assert(err);30453046 if (!transaction->nr)3047 goto cleanup;30483049 /*3050 * Fail if a refname appears more than once in the3051 * transaction. (If we end up splitting up any updates using3052 * split_symref_update() or split_head_update(), those3053 * functions will check that the new updates don't have the3054 * same refname as any existing ones.)3055 */3056 for (i = 0; i < transaction->nr; i++) {3057 struct ref_update *update = transaction->updates[i];3058 struct string_list_item *item =3059 string_list_append(&affected_refnames, update->refname);30603061 /*3062 * We store a pointer to update in item->util, but at3063 * the moment we never use the value of this field3064 * except to check whether it is non-NULL.3065 */3066 item->util = update;3067 }3068 string_list_sort(&affected_refnames);3069 if (ref_update_reject_duplicates(&affected_refnames, err)) {3070 ret = TRANSACTION_GENERIC_ERROR;3071 goto cleanup;3072 }30733074 /*3075 * Special hack: If a branch is updated directly and HEAD3076 * points to it (may happen on the remote side of a push3077 * for example) then logically the HEAD reflog should be3078 * updated too.3079 *3080 * A generic solution would require reverse symref lookups,3081 * but finding all symrefs pointing to a given branch would be3082 * rather costly for this rare event (the direct update of a3083 * branch) to be worth it. So let's cheat and check with HEAD3084 * only, which should cover 99% of all usage scenarios (even3085 * 100% of the default ones).3086 *3087 * So if HEAD is a symbolic reference, then record the name of3088 * the reference that it points to. If we see an update of3089 * head_ref within the transaction, then split_head_update()3090 * arranges for the reflog of HEAD to be updated, too.3091 */3092 head_ref = refs_resolve_refdup(ref_store, "HEAD",3093 RESOLVE_REF_NO_RECURSE,3094 head_oid.hash, &head_type);30953096 if (head_ref && !(head_type & REF_ISSYMREF)) {3097 free(head_ref);3098 head_ref = NULL;3099 }31003101 /*3102 * Acquire all locks, verify old values if provided, check3103 * that new values are valid, and write new values to the3104 * lockfiles, ready to be activated. Only keep one lockfile3105 * open at a time to avoid running out of file descriptors.3106 * Note that lock_ref_for_update() might append more updates3107 * to the transaction.3108 */3109 for (i = 0; i < transaction->nr; i++) {3110 struct ref_update *update = transaction->updates[i];31113112 ret = lock_ref_for_update(refs, update, transaction,3113 head_ref, &affected_refnames, err);3114 if (ret)3115 break;3116 }31173118cleanup:3119 free(head_ref);3120 string_list_clear(&affected_refnames, 0);31213122 if (ret)3123 files_transaction_cleanup(transaction);3124 else3125 transaction->state = REF_TRANSACTION_PREPARED;31263127 return ret;3128}31293130static int files_transaction_finish(struct ref_store *ref_store,3131 struct ref_transaction *transaction,3132 struct strbuf *err)3133{3134 struct files_ref_store *refs =3135 files_downcast(ref_store, 0, "ref_transaction_finish");3136 size_t i;3137 int ret = 0;3138 struct string_list refs_to_delete = STRING_LIST_INIT_NODUP;3139 struct string_list_item *ref_to_delete;3140 struct strbuf sb = STRBUF_INIT;31413142 assert(err);31433144 if (!transaction->nr) {3145 transaction->state = REF_TRANSACTION_CLOSED;3146 return 0;3147 }31483149 /* Perform updates first so live commits remain referenced */3150 for (i = 0; i < transaction->nr; i++) {3151 struct ref_update *update = transaction->updates[i];3152 struct ref_lock *lock = update->backend_data;31533154 if (update->flags & REF_NEEDS_COMMIT ||3155 update->flags & REF_LOG_ONLY) {3156 if (files_log_ref_write(refs,3157 lock->ref_name,3158 &lock->old_oid,3159 &update->new_oid,3160 update->msg, update->flags,3161 err)) {3162 char *old_msg = strbuf_detach(err, NULL);31633164 strbuf_addf(err, "cannot update the ref '%s': %s",3165 lock->ref_name, old_msg);3166 free(old_msg);3167 unlock_ref(lock);3168 update->backend_data = NULL;3169 ret = TRANSACTION_GENERIC_ERROR;3170 goto cleanup;3171 }3172 }3173 if (update->flags & REF_NEEDS_COMMIT) {3174 clear_loose_ref_cache(refs);3175 if (commit_ref(lock)) {3176 strbuf_addf(err, "couldn't set '%s'", lock->ref_name);3177 unlock_ref(lock);3178 update->backend_data = NULL;3179 ret = TRANSACTION_GENERIC_ERROR;3180 goto cleanup;3181 }3182 }3183 }3184 /* Perform deletes now that updates are safely completed */3185 for (i = 0; i < transaction->nr; i++) {3186 struct ref_update *update = transaction->updates[i];3187 struct ref_lock *lock = update->backend_data;31883189 if (update->flags & REF_DELETING &&3190 !(update->flags & REF_LOG_ONLY)) {3191 if (!(update->type & REF_ISPACKED) ||3192 update->type & REF_ISSYMREF) {3193 /* It is a loose reference. */3194 strbuf_reset(&sb);3195 files_ref_path(refs, &sb, lock->ref_name);3196 if (unlink_or_msg(sb.buf, err)) {3197 ret = TRANSACTION_GENERIC_ERROR;3198 goto cleanup;3199 }3200 update->flags |= REF_DELETED_LOOSE;3201 }32023203 if (!(update->flags & REF_ISPRUNING))3204 string_list_append(&refs_to_delete,3205 lock->ref_name);3206 }3207 }32083209 if (repack_without_refs(refs->packed_ref_store, &refs_to_delete, err)) {3210 ret = TRANSACTION_GENERIC_ERROR;3211 goto cleanup;3212 }32133214 /* Delete the reflogs of any references that were deleted: */3215 for_each_string_list_item(ref_to_delete, &refs_to_delete) {3216 strbuf_reset(&sb);3217 files_reflog_path(refs, &sb, ref_to_delete->string);3218 if (!unlink_or_warn(sb.buf))3219 try_remove_empty_parents(refs, ref_to_delete->string,3220 REMOVE_EMPTY_PARENTS_REFLOG);3221 }32223223 clear_loose_ref_cache(refs);32243225cleanup:3226 files_transaction_cleanup(transaction);32273228 for (i = 0; i < transaction->nr; i++) {3229 struct ref_update *update = transaction->updates[i];32303231 if (update->flags & REF_DELETED_LOOSE) {3232 /*3233 * The loose reference was deleted. Delete any3234 * empty parent directories. (Note that this3235 * can only work because we have already3236 * removed the lockfile.)3237 */3238 try_remove_empty_parents(refs, update->refname,3239 REMOVE_EMPTY_PARENTS_REF);3240 }3241 }32423243 strbuf_release(&sb);3244 string_list_clear(&refs_to_delete, 0);3245 return ret;3246}32473248static int files_transaction_abort(struct ref_store *ref_store,3249 struct ref_transaction *transaction,3250 struct strbuf *err)3251{3252 files_transaction_cleanup(transaction);3253 return 0;3254}32553256static int ref_present(const char *refname,3257 const struct object_id *oid, int flags, void *cb_data)3258{3259 struct string_list *affected_refnames = cb_data;32603261 return string_list_has_string(affected_refnames, refname);3262}32633264static int files_initial_transaction_commit(struct ref_store *ref_store,3265 struct ref_transaction *transaction,3266 struct strbuf *err)3267{3268 struct files_ref_store *refs =3269 files_downcast(ref_store, REF_STORE_WRITE,3270 "initial_ref_transaction_commit");3271 size_t i;3272 int ret = 0;3273 struct string_list affected_refnames = STRING_LIST_INIT_NODUP;32743275 assert(err);32763277 if (transaction->state != REF_TRANSACTION_OPEN)3278 die("BUG: commit called for transaction that is not open");32793280 /* Fail if a refname appears more than once in the transaction: */3281 for (i = 0; i < transaction->nr; i++)3282 string_list_append(&affected_refnames,3283 transaction->updates[i]->refname);3284 string_list_sort(&affected_refnames);3285 if (ref_update_reject_duplicates(&affected_refnames, err)) {3286 ret = TRANSACTION_GENERIC_ERROR;3287 goto cleanup;3288 }32893290 /*3291 * It's really undefined to call this function in an active3292 * repository or when there are existing references: we are3293 * only locking and changing packed-refs, so (1) any3294 * simultaneous processes might try to change a reference at3295 * the same time we do, and (2) any existing loose versions of3296 * the references that we are setting would have precedence3297 * over our values. But some remote helpers create the remote3298 * "HEAD" and "master" branches before calling this function,3299 * so here we really only check that none of the references3300 * that we are creating already exists.3301 */3302 if (refs_for_each_rawref(&refs->base, ref_present,3303 &affected_refnames))3304 die("BUG: initial ref transaction called with existing refs");33053306 for (i = 0; i < transaction->nr; i++) {3307 struct ref_update *update = transaction->updates[i];33083309 if ((update->flags & REF_HAVE_OLD) &&3310 !is_null_oid(&update->old_oid))3311 die("BUG: initial ref transaction with old_sha1 set");3312 if (refs_verify_refname_available(&refs->base, update->refname,3313 &affected_refnames, NULL,3314 err)) {3315 ret = TRANSACTION_NAME_CONFLICT;3316 goto cleanup;3317 }3318 }33193320 if (lock_packed_refs(refs->packed_ref_store, 0)) {3321 strbuf_addf(err, "unable to lock packed-refs file: %s",3322 strerror(errno));3323 ret = TRANSACTION_GENERIC_ERROR;3324 goto cleanup;3325 }33263327 for (i = 0; i < transaction->nr; i++) {3328 struct ref_update *update = transaction->updates[i];33293330 if ((update->flags & REF_HAVE_NEW) &&3331 !is_null_oid(&update->new_oid))3332 add_packed_ref(refs->packed_ref_store, update->refname,3333 &update->new_oid);3334 }33353336 if (commit_packed_refs(refs->packed_ref_store)) {3337 strbuf_addf(err, "unable to commit packed-refs file: %s",3338 strerror(errno));3339 ret = TRANSACTION_GENERIC_ERROR;3340 goto cleanup;3341 }33423343cleanup:3344 transaction->state = REF_TRANSACTION_CLOSED;3345 string_list_clear(&affected_refnames, 0);3346 return ret;3347}33483349struct expire_reflog_cb {3350 unsigned int flags;3351 reflog_expiry_should_prune_fn *should_prune_fn;3352 void *policy_cb;3353 FILE *newlog;3354 struct object_id last_kept_oid;3355};33563357static int expire_reflog_ent(struct object_id *ooid, struct object_id *noid,3358 const char *email, timestamp_t timestamp, int tz,3359 const char *message, void *cb_data)3360{3361 struct expire_reflog_cb *cb = cb_data;3362 struct expire_reflog_policy_cb *policy_cb = cb->policy_cb;33633364 if (cb->flags & EXPIRE_REFLOGS_REWRITE)3365 ooid = &cb->last_kept_oid;33663367 if ((*cb->should_prune_fn)(ooid, noid, email, timestamp, tz,3368 message, policy_cb)) {3369 if (!cb->newlog)3370 printf("would prune %s", message);3371 else if (cb->flags & EXPIRE_REFLOGS_VERBOSE)3372 printf("prune %s", message);3373 } else {3374 if (cb->newlog) {3375 fprintf(cb->newlog, "%s %s %s %"PRItime" %+05d\t%s",3376 oid_to_hex(ooid), oid_to_hex(noid),3377 email, timestamp, tz, message);3378 oidcpy(&cb->last_kept_oid, noid);3379 }3380 if (cb->flags & EXPIRE_REFLOGS_VERBOSE)3381 printf("keep %s", message);3382 }3383 return 0;3384}33853386static int files_reflog_expire(struct ref_store *ref_store,3387 const char *refname, const unsigned char *sha1,3388 unsigned int flags,3389 reflog_expiry_prepare_fn prepare_fn,3390 reflog_expiry_should_prune_fn should_prune_fn,3391 reflog_expiry_cleanup_fn cleanup_fn,3392 void *policy_cb_data)3393{3394 struct files_ref_store *refs =3395 files_downcast(ref_store, REF_STORE_WRITE, "reflog_expire");3396 static struct lock_file reflog_lock;3397 struct expire_reflog_cb cb;3398 struct ref_lock *lock;3399 struct strbuf log_file_sb = STRBUF_INIT;3400 char *log_file;3401 int status = 0;3402 int type;3403 struct strbuf err = STRBUF_INIT;3404 struct object_id oid;34053406 memset(&cb, 0, sizeof(cb));3407 cb.flags = flags;3408 cb.policy_cb = policy_cb_data;3409 cb.should_prune_fn = should_prune_fn;34103411 /*3412 * The reflog file is locked by holding the lock on the3413 * reference itself, plus we might need to update the3414 * reference if --updateref was specified:3415 */3416 lock = lock_ref_sha1_basic(refs, refname, sha1,3417 NULL, NULL, REF_NODEREF,3418 &type, &err);3419 if (!lock) {3420 error("cannot lock ref '%s': %s", refname, err.buf);3421 strbuf_release(&err);3422 return -1;3423 }3424 if (!refs_reflog_exists(ref_store, refname)) {3425 unlock_ref(lock);3426 return 0;3427 }34283429 files_reflog_path(refs, &log_file_sb, refname);3430 log_file = strbuf_detach(&log_file_sb, NULL);3431 if (!(flags & EXPIRE_REFLOGS_DRY_RUN)) {3432 /*3433 * Even though holding $GIT_DIR/logs/$reflog.lock has3434 * no locking implications, we use the lock_file3435 * machinery here anyway because it does a lot of the3436 * work we need, including cleaning up if the program3437 * exits unexpectedly.3438 */3439 if (hold_lock_file_for_update(&reflog_lock, log_file, 0) < 0) {3440 struct strbuf err = STRBUF_INIT;3441 unable_to_lock_message(log_file, errno, &err);3442 error("%s", err.buf);3443 strbuf_release(&err);3444 goto failure;3445 }3446 cb.newlog = fdopen_lock_file(&reflog_lock, "w");3447 if (!cb.newlog) {3448 error("cannot fdopen %s (%s)",3449 get_lock_file_path(&reflog_lock), strerror(errno));3450 goto failure;3451 }3452 }34533454 hashcpy(oid.hash, sha1);34553456 (*prepare_fn)(refname, &oid, cb.policy_cb);3457 refs_for_each_reflog_ent(ref_store, refname, expire_reflog_ent, &cb);3458 (*cleanup_fn)(cb.policy_cb);34593460 if (!(flags & EXPIRE_REFLOGS_DRY_RUN)) {3461 /*3462 * It doesn't make sense to adjust a reference pointed3463 * to by a symbolic ref based on expiring entries in3464 * the symbolic reference's reflog. Nor can we update3465 * a reference if there are no remaining reflog3466 * entries.3467 */3468 int update = (flags & EXPIRE_REFLOGS_UPDATE_REF) &&3469 !(type & REF_ISSYMREF) &&3470 !is_null_oid(&cb.last_kept_oid);34713472 if (close_lock_file(&reflog_lock)) {3473 status |= error("couldn't write %s: %s", log_file,3474 strerror(errno));3475 } else if (update &&3476 (write_in_full(get_lock_file_fd(lock->lk),3477 oid_to_hex(&cb.last_kept_oid), GIT_SHA1_HEXSZ) != GIT_SHA1_HEXSZ ||3478 write_str_in_full(get_lock_file_fd(lock->lk), "\n") != 1 ||3479 close_ref(lock) < 0)) {3480 status |= error("couldn't write %s",3481 get_lock_file_path(lock->lk));3482 rollback_lock_file(&reflog_lock);3483 } else if (commit_lock_file(&reflog_lock)) {3484 status |= error("unable to write reflog '%s' (%s)",3485 log_file, strerror(errno));3486 } else if (update && commit_ref(lock)) {3487 status |= error("couldn't set %s", lock->ref_name);3488 }3489 }3490 free(log_file);3491 unlock_ref(lock);3492 return status;34933494 failure:3495 rollback_lock_file(&reflog_lock);3496 free(log_file);3497 unlock_ref(lock);3498 return -1;3499}35003501static int files_init_db(struct ref_store *ref_store, struct strbuf *err)3502{3503 struct files_ref_store *refs =3504 files_downcast(ref_store, REF_STORE_WRITE, "init_db");3505 struct strbuf sb = STRBUF_INIT;35063507 /*3508 * Create .git/refs/{heads,tags}3509 */3510 files_ref_path(refs, &sb, "refs/heads");3511 safe_create_dir(sb.buf, 1);35123513 strbuf_reset(&sb);3514 files_ref_path(refs, &sb, "refs/tags");3515 safe_create_dir(sb.buf, 1);35163517 strbuf_release(&sb);3518 return 0;3519}35203521struct ref_storage_be refs_be_files = {3522 NULL,3523 "files",3524 files_ref_store_create,3525 files_init_db,3526 files_transaction_prepare,3527 files_transaction_finish,3528 files_transaction_abort,3529 files_initial_transaction_commit,35303531 files_pack_refs,3532 files_peel_ref,3533 files_create_symref,3534 files_delete_refs,3535 files_rename_ref,35363537 files_ref_iterator_begin,3538 files_read_raw_ref,35393540 files_reflog_iterator_begin,3541 files_for_each_reflog_ent,3542 files_for_each_reflog_ent_reverse,3543 files_reflog_exists,3544 files_create_reflog,3545 files_delete_reflog,3546 files_reflog_expire3547};