Coverage Report

Created: 2025-12-31 07:01

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/git/read-cache.c
Line
Count
Source
1
/*
2
 * GIT - The information manager from hell
3
 *
4
 * Copyright (C) Linus Torvalds, 2005
5
 */
6
7
#define USE_THE_REPOSITORY_VARIABLE
8
#define DISABLE_SIGN_COMPARE_WARNINGS
9
10
#include "git-compat-util.h"
11
#include "config.h"
12
#include "date.h"
13
#include "diff.h"
14
#include "diffcore.h"
15
#include "hex.h"
16
#include "tempfile.h"
17
#include "lockfile.h"
18
#include "cache-tree.h"
19
#include "refs.h"
20
#include "dir.h"
21
#include "object-file.h"
22
#include "odb.h"
23
#include "oid-array.h"
24
#include "tree.h"
25
#include "commit.h"
26
#include "environment.h"
27
#include "gettext.h"
28
#include "mem-pool.h"
29
#include "name-hash.h"
30
#include "object-name.h"
31
#include "path.h"
32
#include "preload-index.h"
33
#include "read-cache.h"
34
#include "repository.h"
35
#include "resolve-undo.h"
36
#include "revision.h"
37
#include "strbuf.h"
38
#include "trace2.h"
39
#include "varint.h"
40
#include "split-index.h"
41
#include "symlinks.h"
42
#include "utf8.h"
43
#include "fsmonitor.h"
44
#include "thread-utils.h"
45
#include "progress.h"
46
#include "sparse-index.h"
47
#include "csum-file.h"
48
#include "promisor-remote.h"
49
#include "hook.h"
50
51
/* Mask for the name length in ce_flags in the on-disk index */
52
53
0
#define CE_NAMEMASK  (0x0fff)
54
55
/* Index extensions.
56
 *
57
 * The first letter should be 'A'..'Z' for extensions that are not
58
 * necessary for a correct operation (i.e. optimization data).
59
 * When new extensions are added that _needs_ to be understood in
60
 * order to correctly interpret the index file, pick character that
61
 * is outside the range, to cause the reader to abort.
62
 */
63
64
0
#define CACHE_EXT(s) ( (s[0]<<24)|(s[1]<<16)|(s[2]<<8)|(s[3]) )
65
0
#define CACHE_EXT_TREE 0x54524545  /* "TREE" */
66
0
#define CACHE_EXT_RESOLVE_UNDO 0x52455543 /* "REUC" */
67
0
#define CACHE_EXT_LINK 0x6c696e6b    /* "link" */
68
0
#define CACHE_EXT_UNTRACKED 0x554E5452    /* "UNTR" */
69
0
#define CACHE_EXT_FSMONITOR 0x46534D4E    /* "FSMN" */
70
0
#define CACHE_EXT_ENDOFINDEXENTRIES 0x454F4945  /* "EOIE" */
71
0
#define CACHE_EXT_INDEXENTRYOFFSETTABLE 0x49454F54 /* "IEOT" */
72
0
#define CACHE_EXT_SPARSE_DIRECTORIES 0x73646972 /* "sdir" */
73
74
/* changes that can be kept in $GIT_DIR/index (basically all extensions) */
75
0
#define EXTMASK (RESOLVE_UNDO_CHANGED | CACHE_TREE_CHANGED | \
76
0
     CE_ENTRY_ADDED | CE_ENTRY_REMOVED | CE_ENTRY_CHANGED | \
77
0
     SPLIT_INDEX_ORDERED | UNTRACKED_CHANGED | FSMONITOR_CHANGED)
78
79
80
/*
81
 * This is an estimate of the pathname length in the index.  We use
82
 * this for V4 index files to guess the un-deltafied size of the index
83
 * in memory because of pathname deltafication.  This is not required
84
 * for V2/V3 index formats because their pathnames are not compressed.
85
 * If the initial amount of memory set aside is not sufficient, the
86
 * mem pool will allocate extra memory.
87
 */
88
0
#define CACHE_ENTRY_PATH_LENGTH 80
89
90
enum index_search_mode {
91
  NO_EXPAND_SPARSE = 0,
92
  EXPAND_SPARSE = 1
93
};
94
95
static inline struct cache_entry *mem_pool__ce_alloc(struct mem_pool *mem_pool, size_t len)
96
0
{
97
0
  struct cache_entry *ce;
98
0
  ce = mem_pool_alloc(mem_pool, cache_entry_size(len));
99
0
  ce->mem_pool_allocated = 1;
100
0
  return ce;
101
0
}
102
103
static inline struct cache_entry *mem_pool__ce_calloc(struct mem_pool *mem_pool, size_t len)
104
0
{
105
0
  struct cache_entry * ce;
106
0
  ce = mem_pool_calloc(mem_pool, 1, cache_entry_size(len));
107
0
  ce->mem_pool_allocated = 1;
108
0
  return ce;
109
0
}
110
111
static struct mem_pool *find_mem_pool(struct index_state *istate)
112
0
{
113
0
  struct mem_pool **pool_ptr;
114
115
0
  if (istate->split_index && istate->split_index->base)
116
0
    pool_ptr = &istate->split_index->base->ce_mem_pool;
117
0
  else
118
0
    pool_ptr = &istate->ce_mem_pool;
119
120
0
  if (!*pool_ptr) {
121
0
    *pool_ptr = xmalloc(sizeof(**pool_ptr));
122
0
    mem_pool_init(*pool_ptr, 0);
123
0
  }
124
125
0
  return *pool_ptr;
126
0
}
127
128
static const char *alternate_index_output;
129
130
static void set_index_entry(struct index_state *istate, int nr, struct cache_entry *ce)
131
0
{
132
0
  if (S_ISSPARSEDIR(ce->ce_mode))
133
0
    istate->sparse_index = INDEX_COLLAPSED;
134
135
0
  istate->cache[nr] = ce;
136
0
  add_name_hash(istate, ce);
137
0
}
138
139
static void replace_index_entry(struct index_state *istate, int nr, struct cache_entry *ce)
140
0
{
141
0
  struct cache_entry *old = istate->cache[nr];
142
143
0
  replace_index_entry_in_base(istate, old, ce);
144
0
  remove_name_hash(istate, old);
145
0
  discard_cache_entry(old);
146
0
  ce->ce_flags &= ~CE_HASHED;
147
0
  set_index_entry(istate, nr, ce);
148
0
  ce->ce_flags |= CE_UPDATE_IN_BASE;
149
0
  mark_fsmonitor_invalid(istate, ce);
150
0
  istate->cache_changed |= CE_ENTRY_CHANGED;
151
0
}
152
153
void rename_index_entry_at(struct index_state *istate, int nr, const char *new_name)
154
0
{
155
0
  struct cache_entry *old_entry = istate->cache[nr], *new_entry, *refreshed;
156
0
  int namelen = strlen(new_name);
157
158
0
  new_entry = make_empty_cache_entry(istate, namelen);
159
0
  copy_cache_entry(new_entry, old_entry);
160
0
  new_entry->ce_flags &= ~CE_HASHED;
161
0
  new_entry->ce_namelen = namelen;
162
0
  new_entry->index = 0;
163
0
  memcpy(new_entry->name, new_name, namelen + 1);
164
165
0
  cache_tree_invalidate_path(istate, old_entry->name);
166
0
  untracked_cache_remove_from_index(istate, old_entry->name);
167
0
  remove_index_entry_at(istate, nr);
168
169
  /*
170
   * Refresh the new index entry. Using 'refresh_cache_entry' ensures
171
   * we only update stat info if the entry is otherwise up-to-date (i.e.,
172
   * the contents/mode haven't changed). This ensures that we reflect the
173
   * 'ctime' of the rename in the index without (incorrectly) updating
174
   * the cached stat info to reflect unstaged changes on disk.
175
   */
176
0
  refreshed = refresh_cache_entry(istate, new_entry, CE_MATCH_REFRESH);
177
0
  if (refreshed && refreshed != new_entry) {
178
0
    add_index_entry(istate, refreshed, ADD_CACHE_OK_TO_ADD|ADD_CACHE_OK_TO_REPLACE);
179
0
    discard_cache_entry(new_entry);
180
0
  } else
181
0
    add_index_entry(istate, new_entry, ADD_CACHE_OK_TO_ADD|ADD_CACHE_OK_TO_REPLACE);
182
0
}
183
184
/*
185
 * This only updates the "non-critical" parts of the directory
186
 * cache, ie the parts that aren't tracked by GIT, and only used
187
 * to validate the cache.
188
 */
189
void fill_stat_cache_info(struct index_state *istate, struct cache_entry *ce, struct stat *st)
190
0
{
191
0
  fill_stat_data(&ce->ce_stat_data, st);
192
193
0
  if (assume_unchanged)
194
0
    ce->ce_flags |= CE_VALID;
195
196
0
  if (S_ISREG(st->st_mode)) {
197
0
    ce_mark_uptodate(ce);
198
0
    mark_fsmonitor_valid(istate, ce);
199
0
  }
200
0
}
201
202
static unsigned int st_mode_from_ce(const struct cache_entry *ce)
203
0
{
204
0
  extern int trust_executable_bit, has_symlinks;
205
206
0
  switch (ce->ce_mode & S_IFMT) {
207
0
  case S_IFLNK:
208
0
    return has_symlinks ? S_IFLNK : (S_IFREG | 0644);
209
0
  case S_IFREG:
210
0
    return (ce->ce_mode & (trust_executable_bit ? 0755 : 0644)) | S_IFREG;
211
0
  case S_IFGITLINK:
212
0
    return S_IFDIR | 0755;
213
0
  case S_IFDIR:
214
0
    return ce->ce_mode;
215
0
  default:
216
0
    BUG("unsupported ce_mode: %o", ce->ce_mode);
217
0
  }
218
0
}
219
220
int fake_lstat(const struct cache_entry *ce, struct stat *st)
221
0
{
222
0
  fake_lstat_data(&ce->ce_stat_data, st);
223
0
  st->st_mode = st_mode_from_ce(ce);
224
225
  /* always succeed as lstat() replacement */
226
0
  return 0;
227
0
}
228
229
static int ce_compare_data(struct index_state *istate,
230
         const struct cache_entry *ce,
231
         struct stat *st)
232
0
{
233
0
  int match = -1;
234
0
  int fd = git_open_cloexec(ce->name, O_RDONLY);
235
236
0
  if (fd >= 0) {
237
0
    struct object_id oid;
238
0
    if (!index_fd(istate, &oid, fd, st, OBJ_BLOB, ce->name, 0))
239
0
      match = !oideq(&oid, &ce->oid);
240
    /* index_fd() closed the file descriptor already */
241
0
  }
242
0
  return match;
243
0
}
244
245
static int ce_compare_link(const struct cache_entry *ce, size_t expected_size)
246
0
{
247
0
  int match = -1;
248
0
  void *buffer;
249
0
  unsigned long size;
250
0
  enum object_type type;
251
0
  struct strbuf sb = STRBUF_INIT;
252
253
0
  if (strbuf_readlink(&sb, ce->name, expected_size))
254
0
    return -1;
255
256
0
  buffer = odb_read_object(the_repository->objects, &ce->oid, &type, &size);
257
0
  if (buffer) {
258
0
    if (size == sb.len)
259
0
      match = memcmp(buffer, sb.buf, size);
260
0
    free(buffer);
261
0
  }
262
0
  strbuf_release(&sb);
263
0
  return match;
264
0
}
265
266
static int ce_compare_gitlink(const struct cache_entry *ce)
267
0
{
268
0
  struct object_id oid;
269
270
  /*
271
   * We don't actually require that the .git directory
272
   * under GITLINK directory be a valid git directory. It
273
   * might even be missing (in case nobody populated that
274
   * sub-project).
275
   *
276
   * If so, we consider it always to match.
277
   */
278
0
  if (repo_resolve_gitlink_ref(the_repository, ce->name,
279
0
             "HEAD", &oid) < 0)
280
0
    return 0;
281
0
  return !oideq(&oid, &ce->oid);
282
0
}
283
284
static int ce_modified_check_fs(struct index_state *istate,
285
        const struct cache_entry *ce,
286
        struct stat *st)
287
0
{
288
0
  switch (st->st_mode & S_IFMT) {
289
0
  case S_IFREG:
290
0
    if (ce_compare_data(istate, ce, st))
291
0
      return DATA_CHANGED;
292
0
    break;
293
0
  case S_IFLNK:
294
0
    if (ce_compare_link(ce, xsize_t(st->st_size)))
295
0
      return DATA_CHANGED;
296
0
    break;
297
0
  case S_IFDIR:
298
0
    if (S_ISGITLINK(ce->ce_mode))
299
0
      return ce_compare_gitlink(ce) ? DATA_CHANGED : 0;
300
    /* else fallthrough */
301
0
  default:
302
0
    return TYPE_CHANGED;
303
0
  }
304
0
  return 0;
305
0
}
306
307
static int ce_match_stat_basic(const struct cache_entry *ce, struct stat *st)
308
0
{
309
0
  unsigned int changed = 0;
310
311
0
  if (ce->ce_flags & CE_REMOVE)
312
0
    return MODE_CHANGED | DATA_CHANGED | TYPE_CHANGED;
313
314
0
  switch (ce->ce_mode & S_IFMT) {
315
0
  case S_IFREG:
316
0
    changed |= !S_ISREG(st->st_mode) ? TYPE_CHANGED : 0;
317
    /* We consider only the owner x bit to be relevant for
318
     * "mode changes"
319
     */
320
0
    if (trust_executable_bit &&
321
0
        (0100 & (ce->ce_mode ^ st->st_mode)))
322
0
      changed |= MODE_CHANGED;
323
0
    break;
324
0
  case S_IFLNK:
325
0
    if (!S_ISLNK(st->st_mode) &&
326
0
        (has_symlinks || !S_ISREG(st->st_mode)))
327
0
      changed |= TYPE_CHANGED;
328
0
    break;
329
0
  case S_IFGITLINK:
330
    /* We ignore most of the st_xxx fields for gitlinks */
331
0
    if (!S_ISDIR(st->st_mode))
332
0
      changed |= TYPE_CHANGED;
333
0
    else if (ce_compare_gitlink(ce))
334
0
      changed |= DATA_CHANGED;
335
0
    return changed;
336
0
  default:
337
0
    BUG("unsupported ce_mode: %o", ce->ce_mode);
338
0
  }
339
340
0
  changed |= match_stat_data(&ce->ce_stat_data, st);
341
342
  /* Racily smudged entry? */
343
0
  if (!ce->ce_stat_data.sd_size) {
344
0
    if (!is_empty_blob_oid(&ce->oid, the_repository->hash_algo))
345
0
      changed |= DATA_CHANGED;
346
0
  }
347
348
0
  return changed;
349
0
}
350
351
static int is_racy_stat(const struct index_state *istate,
352
      const struct stat_data *sd)
353
0
{
354
0
  return (istate->timestamp.sec &&
355
#ifdef USE_NSEC
356
     /* nanosecond timestamped files can also be racy! */
357
    (istate->timestamp.sec < sd->sd_mtime.sec ||
358
     (istate->timestamp.sec == sd->sd_mtime.sec &&
359
      istate->timestamp.nsec <= sd->sd_mtime.nsec))
360
#else
361
0
    istate->timestamp.sec <= sd->sd_mtime.sec
362
0
#endif
363
0
    );
364
0
}
365
366
int is_racy_timestamp(const struct index_state *istate,
367
           const struct cache_entry *ce)
368
0
{
369
0
  return (!S_ISGITLINK(ce->ce_mode) &&
370
0
    is_racy_stat(istate, &ce->ce_stat_data));
371
0
}
372
373
int match_stat_data_racy(const struct index_state *istate,
374
       const struct stat_data *sd, struct stat *st)
375
0
{
376
0
  if (is_racy_stat(istate, sd))
377
0
    return MTIME_CHANGED;
378
0
  return match_stat_data(sd, st);
379
0
}
380
381
int ie_match_stat(struct index_state *istate,
382
      const struct cache_entry *ce, struct stat *st,
383
      unsigned int options)
384
0
{
385
0
  unsigned int changed;
386
0
  int ignore_valid = options & CE_MATCH_IGNORE_VALID;
387
0
  int ignore_skip_worktree = options & CE_MATCH_IGNORE_SKIP_WORKTREE;
388
0
  int assume_racy_is_modified = options & CE_MATCH_RACY_IS_DIRTY;
389
0
  int ignore_fsmonitor = options & CE_MATCH_IGNORE_FSMONITOR;
390
391
0
  if (!ignore_fsmonitor)
392
0
    refresh_fsmonitor(istate);
393
  /*
394
   * If it's marked as always valid in the index, it's
395
   * valid whatever the checked-out copy says.
396
   *
397
   * skip-worktree has the same effect with higher precedence
398
   */
399
0
  if (!ignore_skip_worktree && ce_skip_worktree(ce))
400
0
    return 0;
401
0
  if (!ignore_valid && (ce->ce_flags & CE_VALID))
402
0
    return 0;
403
0
  if (!ignore_fsmonitor && (ce->ce_flags & CE_FSMONITOR_VALID))
404
0
    return 0;
405
406
  /*
407
   * Intent-to-add entries have not been added, so the index entry
408
   * by definition never matches what is in the work tree until it
409
   * actually gets added.
410
   */
411
0
  if (ce_intent_to_add(ce))
412
0
    return DATA_CHANGED | TYPE_CHANGED | MODE_CHANGED;
413
414
0
  changed = ce_match_stat_basic(ce, st);
415
416
  /*
417
   * Within 1 second of this sequence:
418
   *  echo xyzzy >file && git-update-index --add file
419
   * running this command:
420
   *  echo frotz >file
421
   * would give a falsely clean cache entry.  The mtime and
422
   * length match the cache, and other stat fields do not change.
423
   *
424
   * We could detect this at update-index time (the cache entry
425
   * being registered/updated records the same time as "now")
426
   * and delay the return from git-update-index, but that would
427
   * effectively mean we can make at most one commit per second,
428
   * which is not acceptable.  Instead, we check cache entries
429
   * whose mtime are the same as the index file timestamp more
430
   * carefully than others.
431
   */
432
0
  if (!changed && is_racy_timestamp(istate, ce)) {
433
0
    if (assume_racy_is_modified)
434
0
      changed |= DATA_CHANGED;
435
0
    else
436
0
      changed |= ce_modified_check_fs(istate, ce, st);
437
0
  }
438
439
0
  return changed;
440
0
}
441
442
int ie_modified(struct index_state *istate,
443
    const struct cache_entry *ce,
444
    struct stat *st, unsigned int options)
445
0
{
446
0
  int changed, changed_fs;
447
448
0
  changed = ie_match_stat(istate, ce, st, options);
449
0
  if (!changed)
450
0
    return 0;
451
  /*
452
   * If the mode or type has changed, there's no point in trying
453
   * to refresh the entry - it's not going to match
454
   */
455
0
  if (changed & (MODE_CHANGED | TYPE_CHANGED))
456
0
    return changed;
457
458
  /*
459
   * Immediately after read-tree or update-index --cacheinfo,
460
   * the length field is zero, as we have never even read the
461
   * lstat(2) information once, and we cannot trust DATA_CHANGED
462
   * returned by ie_match_stat() which in turn was returned by
463
   * ce_match_stat_basic() to signal that the filesize of the
464
   * blob changed.  We have to actually go to the filesystem to
465
   * see if the contents match, and if so, should answer "unchanged".
466
   *
467
   * The logic does not apply to gitlinks, as ce_match_stat_basic()
468
   * already has checked the actual HEAD from the filesystem in the
469
   * subproject.  If ie_match_stat() already said it is different,
470
   * then we know it is.
471
   */
472
0
  if ((changed & DATA_CHANGED) &&
473
0
      (S_ISGITLINK(ce->ce_mode) || ce->ce_stat_data.sd_size != 0))
474
0
    return changed;
475
476
0
  changed_fs = ce_modified_check_fs(istate, ce, st);
477
0
  if (changed_fs)
478
0
    return changed | changed_fs;
479
0
  return 0;
480
0
}
481
482
static int cache_name_stage_compare(const char *name1, int len1, int stage1,
483
            const char *name2, int len2, int stage2)
484
0
{
485
0
  int cmp;
486
487
0
  cmp = name_compare(name1, len1, name2, len2);
488
0
  if (cmp)
489
0
    return cmp;
490
491
0
  if (stage1 < stage2)
492
0
    return -1;
493
0
  if (stage1 > stage2)
494
0
    return 1;
495
0
  return 0;
496
0
}
497
498
int cmp_cache_name_compare(const void *a_, const void *b_)
499
0
{
500
0
  const struct cache_entry *ce1, *ce2;
501
502
0
  ce1 = *((const struct cache_entry **)a_);
503
0
  ce2 = *((const struct cache_entry **)b_);
504
0
  return cache_name_stage_compare(ce1->name, ce1->ce_namelen, ce_stage(ce1),
505
0
          ce2->name, ce2->ce_namelen, ce_stage(ce2));
506
0
}
507
508
static int index_name_stage_pos(struct index_state *istate,
509
        const char *name, int namelen,
510
        int stage,
511
        enum index_search_mode search_mode)
512
0
{
513
0
  int first, last;
514
515
0
  first = 0;
516
0
  last = istate->cache_nr;
517
0
  while (last > first) {
518
0
    int next = first + ((last - first) >> 1);
519
0
    struct cache_entry *ce = istate->cache[next];
520
0
    int cmp = cache_name_stage_compare(name, namelen, stage, ce->name, ce_namelen(ce), ce_stage(ce));
521
0
    if (!cmp)
522
0
      return next;
523
0
    if (cmp < 0) {
524
0
      last = next;
525
0
      continue;
526
0
    }
527
0
    first = next+1;
528
0
  }
529
530
0
  if (search_mode == EXPAND_SPARSE && istate->sparse_index &&
531
0
      first > 0) {
532
    /* Note: first <= istate->cache_nr */
533
0
    struct cache_entry *ce = istate->cache[first - 1];
534
535
    /*
536
     * If we are in a sparse-index _and_ the entry before the
537
     * insertion position is a sparse-directory entry that is
538
     * an ancestor of 'name', then we need to expand the index
539
     * and search again. This will only trigger once, because
540
     * thereafter the index is fully expanded.
541
     */
542
0
    if (S_ISSPARSEDIR(ce->ce_mode) &&
543
0
        ce_namelen(ce) < namelen &&
544
0
        !strncmp(name, ce->name, ce_namelen(ce))) {
545
0
      ensure_full_index(istate);
546
0
      return index_name_stage_pos(istate, name, namelen, stage, search_mode);
547
0
    }
548
0
  }
549
550
0
  return -first-1;
551
0
}
552
553
int index_name_pos(struct index_state *istate, const char *name, int namelen)
554
0
{
555
0
  return index_name_stage_pos(istate, name, namelen, 0, EXPAND_SPARSE);
556
0
}
557
558
int index_name_pos_sparse(struct index_state *istate, const char *name, int namelen)
559
0
{
560
0
  return index_name_stage_pos(istate, name, namelen, 0, NO_EXPAND_SPARSE);
561
0
}
562
563
int index_entry_exists(struct index_state *istate, const char *name, int namelen)
564
0
{
565
0
  return index_name_stage_pos(istate, name, namelen, 0, NO_EXPAND_SPARSE) >= 0;
566
0
}
567
568
int remove_index_entry_at(struct index_state *istate, int pos)
569
0
{
570
0
  struct cache_entry *ce = istate->cache[pos];
571
572
0
  record_resolve_undo(istate, ce);
573
0
  remove_name_hash(istate, ce);
574
0
  save_or_free_index_entry(istate, ce);
575
0
  istate->cache_changed |= CE_ENTRY_REMOVED;
576
0
  istate->cache_nr--;
577
0
  if (pos >= istate->cache_nr)
578
0
    return 0;
579
0
  MOVE_ARRAY(istate->cache + pos, istate->cache + pos + 1,
580
0
       istate->cache_nr - pos);
581
0
  return 1;
582
0
}
583
584
/*
585
 * Remove all cache entries marked for removal, that is where
586
 * CE_REMOVE is set in ce_flags.  This is much more effective than
587
 * calling remove_index_entry_at() for each entry to be removed.
588
 */
589
void remove_marked_cache_entries(struct index_state *istate, int invalidate)
590
0
{
591
0
  struct cache_entry **ce_array = istate->cache;
592
0
  unsigned int i, j;
593
594
0
  for (i = j = 0; i < istate->cache_nr; i++) {
595
0
    if (ce_array[i]->ce_flags & CE_REMOVE) {
596
0
      if (invalidate) {
597
0
        cache_tree_invalidate_path(istate,
598
0
                 ce_array[i]->name);
599
0
        untracked_cache_remove_from_index(istate,
600
0
                  ce_array[i]->name);
601
0
      }
602
0
      remove_name_hash(istate, ce_array[i]);
603
0
      save_or_free_index_entry(istate, ce_array[i]);
604
0
    }
605
0
    else
606
0
      ce_array[j++] = ce_array[i];
607
0
  }
608
0
  if (j == istate->cache_nr)
609
0
    return;
610
0
  istate->cache_changed |= CE_ENTRY_REMOVED;
611
0
  istate->cache_nr = j;
612
0
}
613
614
int remove_file_from_index(struct index_state *istate, const char *path)
615
0
{
616
0
  int pos = index_name_pos(istate, path, strlen(path));
617
0
  if (pos < 0)
618
0
    pos = -pos-1;
619
0
  cache_tree_invalidate_path(istate, path);
620
0
  untracked_cache_remove_from_index(istate, path);
621
0
  while (pos < istate->cache_nr && !strcmp(istate->cache[pos]->name, path))
622
0
    remove_index_entry_at(istate, pos);
623
0
  return 0;
624
0
}
625
626
static int compare_name(struct cache_entry *ce, const char *path, int namelen)
627
0
{
628
0
  return namelen != ce_namelen(ce) || memcmp(path, ce->name, namelen);
629
0
}
630
631
static int index_name_pos_also_unmerged(struct index_state *istate,
632
  const char *path, int namelen)
633
0
{
634
0
  int pos = index_name_pos(istate, path, namelen);
635
0
  struct cache_entry *ce;
636
637
0
  if (pos >= 0)
638
0
    return pos;
639
640
  /* maybe unmerged? */
641
0
  pos = -1 - pos;
642
0
  if (pos >= istate->cache_nr ||
643
0
      compare_name((ce = istate->cache[pos]), path, namelen))
644
0
    return -1;
645
646
  /* order of preference: stage 2, 1, 3 */
647
0
  if (ce_stage(ce) == 1 && pos + 1 < istate->cache_nr &&
648
0
      ce_stage((ce = istate->cache[pos + 1])) == 2 &&
649
0
      !compare_name(ce, path, namelen))
650
0
    pos++;
651
0
  return pos;
652
0
}
653
654
static int different_name(struct cache_entry *ce, struct cache_entry *alias)
655
0
{
656
0
  int len = ce_namelen(ce);
657
0
  return ce_namelen(alias) != len || memcmp(ce->name, alias->name, len);
658
0
}
659
660
/*
661
 * If we add a filename that aliases in the cache, we will use the
662
 * name that we already have - but we don't want to update the same
663
 * alias twice, because that implies that there were actually two
664
 * different files with aliasing names!
665
 *
666
 * So we use the CE_ADDED flag to verify that the alias was an old
667
 * one before we accept it as
668
 */
669
static struct cache_entry *create_alias_ce(struct index_state *istate,
670
             struct cache_entry *ce,
671
             struct cache_entry *alias)
672
0
{
673
0
  int len;
674
0
  struct cache_entry *new_entry;
675
676
0
  if (alias->ce_flags & CE_ADDED)
677
0
    die(_("will not add file alias '%s' ('%s' already exists in index)"),
678
0
        ce->name, alias->name);
679
680
  /* Ok, create the new entry using the name of the existing alias */
681
0
  len = ce_namelen(alias);
682
0
  new_entry = make_empty_cache_entry(istate, len);
683
0
  memcpy(new_entry->name, alias->name, len);
684
0
  copy_cache_entry(new_entry, ce);
685
0
  save_or_free_index_entry(istate, ce);
686
0
  return new_entry;
687
0
}
688
689
void set_object_name_for_intent_to_add_entry(struct cache_entry *ce)
690
0
{
691
0
  struct object_id oid;
692
0
  if (odb_write_object(the_repository->objects, "", 0, OBJ_BLOB, &oid))
693
0
    die(_("cannot create an empty blob in the object database"));
694
0
  oidcpy(&ce->oid, &oid);
695
0
}
696
697
int add_to_index(struct index_state *istate, const char *path, struct stat *st, int flags)
698
0
{
699
0
  int namelen, was_same;
700
0
  mode_t st_mode = st->st_mode;
701
0
  struct cache_entry *ce, *alias = NULL;
702
0
  unsigned ce_option = CE_MATCH_IGNORE_VALID|CE_MATCH_IGNORE_SKIP_WORKTREE|CE_MATCH_RACY_IS_DIRTY;
703
0
  int verbose = flags & (ADD_CACHE_VERBOSE | ADD_CACHE_PRETEND);
704
0
  int pretend = flags & ADD_CACHE_PRETEND;
705
0
  int intent_only = flags & ADD_CACHE_INTENT;
706
0
  int add_option = (ADD_CACHE_OK_TO_ADD|ADD_CACHE_OK_TO_REPLACE|
707
0
        (intent_only ? ADD_CACHE_NEW_ONLY : 0));
708
0
  unsigned hash_flags = pretend ? 0 : INDEX_WRITE_OBJECT;
709
710
0
  if (flags & ADD_CACHE_RENORMALIZE)
711
0
    hash_flags |= INDEX_RENORMALIZE;
712
713
0
  if (!S_ISREG(st_mode) && !S_ISLNK(st_mode) && !S_ISDIR(st_mode))
714
0
    return error(_("%s: can only add regular files, symbolic links or git-directories"), path);
715
716
0
  namelen = strlen(path);
717
0
  if (S_ISDIR(st_mode)) {
718
0
    while (namelen && path[namelen-1] == '/')
719
0
      namelen--;
720
0
  }
721
0
  ce = make_empty_cache_entry(istate, namelen);
722
0
  memcpy(ce->name, path, namelen);
723
0
  ce->ce_namelen = namelen;
724
0
  if (!intent_only)
725
0
    fill_stat_cache_info(istate, ce, st);
726
0
  else
727
0
    ce->ce_flags |= CE_INTENT_TO_ADD;
728
729
730
0
  if (trust_executable_bit && has_symlinks) {
731
0
    ce->ce_mode = create_ce_mode(st_mode);
732
0
  } else {
733
    /* If there is an existing entry, pick the mode bits and type
734
     * from it, otherwise assume unexecutable regular file.
735
     */
736
0
    struct cache_entry *ent;
737
0
    int pos = index_name_pos_also_unmerged(istate, path, namelen);
738
739
0
    ent = (0 <= pos) ? istate->cache[pos] : NULL;
740
0
    ce->ce_mode = ce_mode_from_stat(ent, st_mode);
741
0
  }
742
743
  /* When core.ignorecase=true, determine if a directory of the same name but differing
744
   * case already exists within the Git repository.  If it does, ensure the directory
745
   * case of the file being added to the repository matches (is folded into) the existing
746
   * entry's directory case.
747
   */
748
0
  if (ignore_case) {
749
0
    adjust_dirname_case(istate, ce->name);
750
0
  }
751
0
  if (!(flags & ADD_CACHE_RENORMALIZE)) {
752
0
    alias = index_file_exists(istate, ce->name,
753
0
            ce_namelen(ce), ignore_case);
754
0
    if (alias &&
755
0
        !ce_stage(alias) &&
756
0
        !ie_match_stat(istate, alias, st, ce_option)) {
757
      /* Nothing changed, really */
758
0
      if (!S_ISGITLINK(alias->ce_mode))
759
0
        ce_mark_uptodate(alias);
760
0
      alias->ce_flags |= CE_ADDED;
761
762
0
      discard_cache_entry(ce);
763
0
      return 0;
764
0
    }
765
0
  }
766
0
  if (!intent_only) {
767
0
    if (index_path(istate, &ce->oid, path, st, hash_flags)) {
768
0
      discard_cache_entry(ce);
769
0
      return error(_("unable to index file '%s'"), path);
770
0
    }
771
0
  } else
772
0
    set_object_name_for_intent_to_add_entry(ce);
773
774
0
  if (ignore_case && alias && different_name(ce, alias))
775
0
    ce = create_alias_ce(istate, ce, alias);
776
0
  ce->ce_flags |= CE_ADDED;
777
778
  /* It was suspected to be racily clean, but it turns out to be Ok */
779
0
  was_same = (alias &&
780
0
        !ce_stage(alias) &&
781
0
        oideq(&alias->oid, &ce->oid) &&
782
0
        ce->ce_mode == alias->ce_mode);
783
784
0
  if (pretend)
785
0
    discard_cache_entry(ce);
786
0
  else if (add_index_entry(istate, ce, add_option)) {
787
0
    discard_cache_entry(ce);
788
0
    return error(_("unable to add '%s' to index"), path);
789
0
  }
790
0
  if (verbose && !was_same)
791
0
    printf("add '%s'\n", path);
792
0
  return 0;
793
0
}
794
795
int add_file_to_index(struct index_state *istate, const char *path, int flags)
796
0
{
797
0
  struct stat st;
798
0
  if (lstat(path, &st))
799
0
    die_errno(_("unable to stat '%s'"), path);
800
0
  return add_to_index(istate, path, &st, flags);
801
0
}
802
803
struct cache_entry *make_empty_cache_entry(struct index_state *istate, size_t len)
804
0
{
805
0
  return mem_pool__ce_calloc(find_mem_pool(istate), len);
806
0
}
807
808
struct cache_entry *make_empty_transient_cache_entry(size_t len,
809
                 struct mem_pool *ce_mem_pool)
810
0
{
811
0
  if (ce_mem_pool)
812
0
    return mem_pool__ce_calloc(ce_mem_pool, len);
813
0
  return xcalloc(1, cache_entry_size(len));
814
0
}
815
816
enum verify_path_result {
817
  PATH_OK,
818
  PATH_INVALID,
819
  PATH_DIR_WITH_SEP,
820
};
821
822
static enum verify_path_result verify_path_internal(const char *, unsigned);
823
824
int verify_path(const char *path, unsigned mode)
825
0
{
826
0
  return verify_path_internal(path, mode) == PATH_OK;
827
0
}
828
829
struct cache_entry *make_cache_entry(struct index_state *istate,
830
             unsigned int mode,
831
             const struct object_id *oid,
832
             const char *path,
833
             int stage,
834
             unsigned int refresh_options)
835
0
{
836
0
  struct cache_entry *ce, *ret;
837
0
  int len;
838
839
0
  if (verify_path_internal(path, mode) == PATH_INVALID) {
840
0
    error(_("invalid path '%s'"), path);
841
0
    return NULL;
842
0
  }
843
844
0
  len = strlen(path);
845
0
  ce = make_empty_cache_entry(istate, len);
846
847
0
  oidcpy(&ce->oid, oid);
848
0
  memcpy(ce->name, path, len);
849
0
  ce->ce_flags = create_ce_flags(stage);
850
0
  ce->ce_namelen = len;
851
0
  ce->ce_mode = create_ce_mode(mode);
852
853
0
  ret = refresh_cache_entry(istate, ce, refresh_options);
854
0
  if (ret != ce)
855
0
    discard_cache_entry(ce);
856
0
  return ret;
857
0
}
858
859
struct cache_entry *make_transient_cache_entry(unsigned int mode,
860
                 const struct object_id *oid,
861
                 const char *path,
862
                 int stage,
863
                 struct mem_pool *ce_mem_pool)
864
0
{
865
0
  struct cache_entry *ce;
866
0
  int len;
867
868
0
  if (!verify_path(path, mode)) {
869
0
    error(_("invalid path '%s'"), path);
870
0
    return NULL;
871
0
  }
872
873
0
  len = strlen(path);
874
0
  ce = make_empty_transient_cache_entry(len, ce_mem_pool);
875
876
0
  oidcpy(&ce->oid, oid);
877
0
  memcpy(ce->name, path, len);
878
0
  ce->ce_flags = create_ce_flags(stage);
879
0
  ce->ce_namelen = len;
880
0
  ce->ce_mode = create_ce_mode(mode);
881
882
0
  return ce;
883
0
}
884
885
/*
886
 * Chmod an index entry with either +x or -x.
887
 *
888
 * Returns -1 if the chmod for the particular cache entry failed (if it's
889
 * not a regular file), -2 if an invalid flip argument is passed in, 0
890
 * otherwise.
891
 */
892
int chmod_index_entry(struct index_state *istate, struct cache_entry *ce,
893
          char flip)
894
0
{
895
0
  if (!S_ISREG(ce->ce_mode))
896
0
    return -1;
897
0
  switch (flip) {
898
0
  case '+':
899
0
    ce->ce_mode |= 0111;
900
0
    break;
901
0
  case '-':
902
0
    ce->ce_mode &= ~0111;
903
0
    break;
904
0
  default:
905
0
    return -2;
906
0
  }
907
0
  cache_tree_invalidate_path(istate, ce->name);
908
0
  ce->ce_flags |= CE_UPDATE_IN_BASE;
909
0
  mark_fsmonitor_invalid(istate, ce);
910
0
  istate->cache_changed |= CE_ENTRY_CHANGED;
911
912
0
  return 0;
913
0
}
914
915
int ce_same_name(const struct cache_entry *a, const struct cache_entry *b)
916
0
{
917
0
  int len = ce_namelen(a);
918
0
  return ce_namelen(b) == len && !memcmp(a->name, b->name, len);
919
0
}
920
921
/*
922
 * We fundamentally don't like some paths: we don't want
923
 * dot or dot-dot anywhere, and for obvious reasons don't
924
 * want to recurse into ".git" either.
925
 *
926
 * Also, we don't want double slashes or slashes at the
927
 * end that can make pathnames ambiguous.
928
 */
929
static int verify_dotfile(const char *rest, unsigned mode)
930
0
{
931
  /*
932
   * The first character was '.', but that
933
   * has already been discarded, we now test
934
   * the rest.
935
   */
936
937
  /* "." is not allowed */
938
0
  if (*rest == '\0' || is_dir_sep(*rest))
939
0
    return 0;
940
941
0
  switch (*rest) {
942
  /*
943
   * ".git" followed by NUL or slash is bad. Note that we match
944
   * case-insensitively here, even if ignore_case is not set.
945
   * This outlaws ".GIT" everywhere out of an abundance of caution,
946
   * since there's really no good reason to allow it.
947
   *
948
   * Once we've seen ".git", we can also find ".gitmodules", etc (also
949
   * case-insensitively).
950
   */
951
0
  case 'g':
952
0
  case 'G':
953
0
    if (rest[1] != 'i' && rest[1] != 'I')
954
0
      break;
955
0
    if (rest[2] != 't' && rest[2] != 'T')
956
0
      break;
957
0
    if (rest[3] == '\0' || is_dir_sep(rest[3]))
958
0
      return 0;
959
0
    if (S_ISLNK(mode)) {
960
0
      rest += 3;
961
0
      if (skip_iprefix(rest, "modules", &rest) &&
962
0
          (*rest == '\0' || is_dir_sep(*rest)))
963
0
        return 0;
964
0
    }
965
0
    break;
966
0
  case '.':
967
0
    if (rest[1] == '\0' || is_dir_sep(rest[1]))
968
0
      return 0;
969
0
  }
970
0
  return 1;
971
0
}
972
973
static enum verify_path_result verify_path_internal(const char *path,
974
                unsigned mode)
975
0
{
976
0
  char c = 0;
977
978
0
  if (has_dos_drive_prefix(path))
979
0
    return PATH_INVALID;
980
981
0
  if (!is_valid_path(path))
982
0
    return PATH_INVALID;
983
984
0
  goto inside;
985
0
  for (;;) {
986
0
    if (!c)
987
0
      return PATH_OK;
988
0
    if (is_dir_sep(c)) {
989
0
inside:
990
0
      if (protect_hfs) {
991
992
0
        if (is_hfs_dotgit(path))
993
0
          return PATH_INVALID;
994
0
        if (S_ISLNK(mode)) {
995
0
          if (is_hfs_dotgitmodules(path))
996
0
            return PATH_INVALID;
997
0
        }
998
0
      }
999
0
      if (protect_ntfs) {
1000
#if defined GIT_WINDOWS_NATIVE || defined __CYGWIN__
1001
        if (c == '\\')
1002
          return PATH_INVALID;
1003
#endif
1004
0
        if (is_ntfs_dotgit(path))
1005
0
          return PATH_INVALID;
1006
0
        if (S_ISLNK(mode)) {
1007
0
          if (is_ntfs_dotgitmodules(path))
1008
0
            return PATH_INVALID;
1009
0
        }
1010
0
      }
1011
1012
0
      c = *path++;
1013
0
      if ((c == '.' && !verify_dotfile(path, mode)) ||
1014
0
          is_dir_sep(c))
1015
0
        return PATH_INVALID;
1016
      /*
1017
       * allow terminating directory separators for
1018
       * sparse directory entries.
1019
       */
1020
0
      if (c == '\0')
1021
0
        return S_ISDIR(mode) ? PATH_DIR_WITH_SEP :
1022
0
                   PATH_INVALID;
1023
0
    } else if (c == '\\' && protect_ntfs) {
1024
0
      if (is_ntfs_dotgit(path))
1025
0
        return PATH_INVALID;
1026
0
      if (S_ISLNK(mode)) {
1027
0
        if (is_ntfs_dotgitmodules(path))
1028
0
          return PATH_INVALID;
1029
0
      }
1030
0
    }
1031
1032
0
    c = *path++;
1033
0
  }
1034
0
}
1035
1036
/*
1037
 * Do we have another file that has the beginning components being a
1038
 * proper superset of the name we're trying to add?
1039
 */
1040
static int has_file_name(struct index_state *istate,
1041
       const struct cache_entry *ce, int pos, int ok_to_replace)
1042
0
{
1043
0
  int retval = 0;
1044
0
  int len = ce_namelen(ce);
1045
0
  int stage = ce_stage(ce);
1046
0
  const char *name = ce->name;
1047
1048
0
  while (pos < istate->cache_nr) {
1049
0
    struct cache_entry *p = istate->cache[pos++];
1050
1051
0
    if (len >= ce_namelen(p))
1052
0
      break;
1053
0
    if (memcmp(name, p->name, len))
1054
0
      break;
1055
0
    if (ce_stage(p) != stage)
1056
0
      continue;
1057
0
    if (p->name[len] != '/')
1058
0
      continue;
1059
0
    if (p->ce_flags & CE_REMOVE)
1060
0
      continue;
1061
0
    retval = -1;
1062
0
    if (!ok_to_replace)
1063
0
      break;
1064
0
    remove_index_entry_at(istate, --pos);
1065
0
  }
1066
0
  return retval;
1067
0
}
1068
1069
1070
/*
1071
 * Like strcmp(), but also return the offset of the first change.
1072
 * If strings are equal, return the length.
1073
 */
1074
int strcmp_offset(const char *s1, const char *s2, size_t *first_change)
1075
0
{
1076
0
  size_t k;
1077
1078
0
  if (!first_change)
1079
0
    return strcmp(s1, s2);
1080
1081
0
  for (k = 0; s1[k] == s2[k]; k++)
1082
0
    if (s1[k] == '\0')
1083
0
      break;
1084
1085
0
  *first_change = k;
1086
0
  return (unsigned char)s1[k] - (unsigned char)s2[k];
1087
0
}
1088
1089
/*
1090
 * Do we have another file with a pathname that is a proper
1091
 * subset of the name we're trying to add?
1092
 *
1093
 * That is, is there another file in the index with a path
1094
 * that matches a sub-directory in the given entry?
1095
 */
1096
static int has_dir_name(struct index_state *istate,
1097
      const struct cache_entry *ce, int pos, int ok_to_replace)
1098
0
{
1099
0
  int retval = 0;
1100
0
  int stage = ce_stage(ce);
1101
0
  const char *name = ce->name;
1102
0
  const char *slash = name + ce_namelen(ce);
1103
0
  size_t len_eq_last;
1104
0
  int cmp_last = 0;
1105
1106
  /*
1107
   * We are frequently called during an iteration on a sorted
1108
   * list of pathnames and while building a new index.  Therefore,
1109
   * there is a high probability that this entry will eventually
1110
   * be appended to the index, rather than inserted in the middle.
1111
   * If we can confirm that, we can avoid binary searches on the
1112
   * components of the pathname.
1113
   *
1114
   * Compare the entry's full path with the last path in the index.
1115
   */
1116
0
  if (!istate->cache_nr)
1117
0
    return 0;
1118
1119
0
  cmp_last = strcmp_offset(name,
1120
0
         istate->cache[istate->cache_nr - 1]->name,
1121
0
         &len_eq_last);
1122
0
  if (cmp_last > 0 && name[len_eq_last] != '/')
1123
    /*
1124
     * The entry sorts AFTER the last one in the
1125
     * index and their paths have no common prefix,
1126
     * so there cannot be a F/D conflict.
1127
     */
1128
0
    return 0;
1129
1130
0
  for (;;) {
1131
0
    size_t len;
1132
1133
0
    for (;;) {
1134
0
      if (*--slash == '/')
1135
0
        break;
1136
0
      if (slash <= ce->name)
1137
0
        return retval;
1138
0
    }
1139
0
    len = slash - name;
1140
1141
0
    pos = index_name_stage_pos(istate, name, len, stage, EXPAND_SPARSE);
1142
0
    if (pos >= 0) {
1143
      /*
1144
       * Found one, but not so fast.  This could
1145
       * be a marker that says "I was here, but
1146
       * I am being removed".  Such an entry is
1147
       * not a part of the resulting tree, and
1148
       * it is Ok to have a directory at the same
1149
       * path.
1150
       */
1151
0
      if (!(istate->cache[pos]->ce_flags & CE_REMOVE)) {
1152
0
        retval = -1;
1153
0
        if (!ok_to_replace)
1154
0
          break;
1155
0
        remove_index_entry_at(istate, pos);
1156
0
        continue;
1157
0
      }
1158
0
    }
1159
0
    else
1160
0
      pos = -pos-1;
1161
1162
    /*
1163
     * Trivial optimization: if we find an entry that
1164
     * already matches the sub-directory, then we know
1165
     * we're ok, and we can exit.
1166
     */
1167
0
    while (pos < istate->cache_nr) {
1168
0
      struct cache_entry *p = istate->cache[pos];
1169
0
      if ((ce_namelen(p) <= len) ||
1170
0
          (p->name[len] != '/') ||
1171
0
          memcmp(p->name, name, len))
1172
0
        break; /* not our subdirectory */
1173
0
      if (ce_stage(p) == stage && !(p->ce_flags & CE_REMOVE))
1174
        /*
1175
         * p is at the same stage as our entry, and
1176
         * is a subdirectory of what we are looking
1177
         * at, so we cannot have conflicts at our
1178
         * level or anything shorter.
1179
         */
1180
0
        return retval;
1181
0
      pos++;
1182
0
    }
1183
0
  }
1184
0
  return retval;
1185
0
}
1186
1187
/* We may be in a situation where we already have path/file and path
1188
 * is being added, or we already have path and path/file is being
1189
 * added.  Either one would result in a nonsense tree that has path
1190
 * twice when git-write-tree tries to write it out.  Prevent it.
1191
 *
1192
 * If ok-to-replace is specified, we remove the conflicting entries
1193
 * from the cache so the caller should recompute the insert position.
1194
 * When this happens, we return non-zero.
1195
 */
1196
static int check_file_directory_conflict(struct index_state *istate,
1197
           const struct cache_entry *ce,
1198
           int pos, int ok_to_replace)
1199
0
{
1200
0
  int retval;
1201
1202
  /*
1203
   * When ce is an "I am going away" entry, we allow it to be added
1204
   */
1205
0
  if (ce->ce_flags & CE_REMOVE)
1206
0
    return 0;
1207
1208
  /*
1209
   * We check if the path is a sub-path of a subsequent pathname
1210
   * first, since removing those will not change the position
1211
   * in the array.
1212
   */
1213
0
  retval = has_file_name(istate, ce, pos, ok_to_replace);
1214
1215
  /*
1216
   * Then check if the path might have a clashing sub-directory
1217
   * before it.
1218
   */
1219
0
  return retval + has_dir_name(istate, ce, pos, ok_to_replace);
1220
0
}
1221
1222
static int add_index_entry_with_check(struct index_state *istate, struct cache_entry *ce, int option)
1223
0
{
1224
0
  int pos;
1225
0
  int ok_to_add = option & ADD_CACHE_OK_TO_ADD;
1226
0
  int ok_to_replace = option & ADD_CACHE_OK_TO_REPLACE;
1227
0
  int skip_df_check = option & ADD_CACHE_SKIP_DFCHECK;
1228
0
  int new_only = option & ADD_CACHE_NEW_ONLY;
1229
1230
  /*
1231
   * If this entry's path sorts after the last entry in the index,
1232
   * we can avoid searching for it.
1233
   */
1234
0
  if (istate->cache_nr > 0 &&
1235
0
    strcmp(ce->name, istate->cache[istate->cache_nr - 1]->name) > 0)
1236
0
    pos = index_pos_to_insert_pos(istate->cache_nr);
1237
0
  else
1238
0
    pos = index_name_stage_pos(istate, ce->name, ce_namelen(ce), ce_stage(ce), EXPAND_SPARSE);
1239
1240
  /*
1241
   * Cache tree path should be invalidated only after index_name_stage_pos,
1242
   * in case it expands a sparse index.
1243
   */
1244
0
  if (!(option & ADD_CACHE_KEEP_CACHE_TREE))
1245
0
    cache_tree_invalidate_path(istate, ce->name);
1246
1247
  /* existing match? Just replace it. */
1248
0
  if (pos >= 0) {
1249
0
    if (!new_only)
1250
0
      replace_index_entry(istate, pos, ce);
1251
0
    return 0;
1252
0
  }
1253
0
  pos = -pos-1;
1254
1255
0
  if (!(option & ADD_CACHE_KEEP_CACHE_TREE))
1256
0
    untracked_cache_add_to_index(istate, ce->name);
1257
1258
  /*
1259
   * Inserting a merged entry ("stage 0") into the index
1260
   * will always replace all non-merged entries..
1261
   */
1262
0
  if (pos < istate->cache_nr && ce_stage(ce) == 0) {
1263
0
    while (ce_same_name(istate->cache[pos], ce)) {
1264
0
      ok_to_add = 1;
1265
0
      if (!remove_index_entry_at(istate, pos))
1266
0
        break;
1267
0
    }
1268
0
  }
1269
1270
0
  if (!ok_to_add)
1271
0
    return -1;
1272
0
  if (verify_path_internal(ce->name, ce->ce_mode) == PATH_INVALID)
1273
0
    return error(_("invalid path '%s'"), ce->name);
1274
1275
0
  if (!skip_df_check &&
1276
0
      check_file_directory_conflict(istate, ce, pos, ok_to_replace)) {
1277
0
    if (!ok_to_replace)
1278
0
      return error(_("'%s' appears as both a file and as a directory"),
1279
0
             ce->name);
1280
0
    pos = index_name_stage_pos(istate, ce->name, ce_namelen(ce), ce_stage(ce), EXPAND_SPARSE);
1281
0
    pos = -pos-1;
1282
0
  }
1283
0
  return pos + 1;
1284
0
}
1285
1286
int add_index_entry(struct index_state *istate, struct cache_entry *ce, int option)
1287
0
{
1288
0
  int pos;
1289
1290
0
  if (option & ADD_CACHE_JUST_APPEND)
1291
0
    pos = istate->cache_nr;
1292
0
  else {
1293
0
    int ret;
1294
0
    ret = add_index_entry_with_check(istate, ce, option);
1295
0
    if (ret <= 0)
1296
0
      return ret;
1297
0
    pos = ret - 1;
1298
0
  }
1299
1300
  /* Make sure the array is big enough .. */
1301
0
  ALLOC_GROW(istate->cache, istate->cache_nr + 1, istate->cache_alloc);
1302
1303
  /* Add it in.. */
1304
0
  istate->cache_nr++;
1305
0
  if (istate->cache_nr > pos + 1)
1306
0
    MOVE_ARRAY(istate->cache + pos + 1, istate->cache + pos,
1307
0
         istate->cache_nr - pos - 1);
1308
0
  set_index_entry(istate, pos, ce);
1309
0
  istate->cache_changed |= CE_ENTRY_ADDED;
1310
0
  return 0;
1311
0
}
1312
1313
/*
1314
 * "refresh" does not calculate a new sha1 file or bring the
1315
 * cache up-to-date for mode/content changes. But what it
1316
 * _does_ do is to "re-match" the stat information of a file
1317
 * with the cache, so that you can refresh the cache for a
1318
 * file that hasn't been changed but where the stat entry is
1319
 * out of date.
1320
 *
1321
 * For example, you'd want to do this after doing a "git-read-tree",
1322
 * to link up the stat cache details with the proper files.
1323
 */
1324
static struct cache_entry *refresh_cache_ent(struct index_state *istate,
1325
               struct cache_entry *ce,
1326
               unsigned int options, int *err,
1327
               int *changed_ret,
1328
               int *t2_did_lstat,
1329
               int *t2_did_scan)
1330
0
{
1331
0
  struct stat st;
1332
0
  struct cache_entry *updated;
1333
0
  int changed;
1334
0
  int refresh = options & CE_MATCH_REFRESH;
1335
0
  int ignore_valid = options & CE_MATCH_IGNORE_VALID;
1336
0
  int ignore_skip_worktree = options & CE_MATCH_IGNORE_SKIP_WORKTREE;
1337
0
  int ignore_missing = options & CE_MATCH_IGNORE_MISSING;
1338
0
  int ignore_fsmonitor = options & CE_MATCH_IGNORE_FSMONITOR;
1339
1340
0
  if (!refresh || ce_uptodate(ce))
1341
0
    return ce;
1342
1343
0
  if (!ignore_fsmonitor)
1344
0
    refresh_fsmonitor(istate);
1345
  /*
1346
   * CE_VALID or CE_SKIP_WORKTREE means the user promised us
1347
   * that the change to the work tree does not matter and told
1348
   * us not to worry.
1349
   */
1350
0
  if (!ignore_skip_worktree && ce_skip_worktree(ce)) {
1351
0
    ce_mark_uptodate(ce);
1352
0
    return ce;
1353
0
  }
1354
0
  if (!ignore_valid && (ce->ce_flags & CE_VALID)) {
1355
0
    ce_mark_uptodate(ce);
1356
0
    return ce;
1357
0
  }
1358
0
  if (!ignore_fsmonitor && (ce->ce_flags & CE_FSMONITOR_VALID)) {
1359
0
    ce_mark_uptodate(ce);
1360
0
    return ce;
1361
0
  }
1362
1363
0
  if (has_symlink_leading_path(ce->name, ce_namelen(ce))) {
1364
0
    if (ignore_missing)
1365
0
      return ce;
1366
0
    if (err)
1367
0
      *err = ENOENT;
1368
0
    return NULL;
1369
0
  }
1370
1371
0
  if (t2_did_lstat)
1372
0
    *t2_did_lstat = 1;
1373
0
  if (lstat(ce->name, &st) < 0) {
1374
0
    if (ignore_missing && errno == ENOENT)
1375
0
      return ce;
1376
0
    if (err)
1377
0
      *err = errno;
1378
0
    return NULL;
1379
0
  }
1380
1381
0
  changed = ie_match_stat(istate, ce, &st, options);
1382
0
  if (changed_ret)
1383
0
    *changed_ret = changed;
1384
0
  if (!changed) {
1385
    /*
1386
     * The path is unchanged.  If we were told to ignore
1387
     * valid bit, then we did the actual stat check and
1388
     * found that the entry is unmodified.  If the entry
1389
     * is not marked VALID, this is the place to mark it
1390
     * valid again, under "assume unchanged" mode.
1391
     */
1392
0
    if (ignore_valid && assume_unchanged &&
1393
0
        !(ce->ce_flags & CE_VALID))
1394
0
      ; /* mark this one VALID again */
1395
0
    else {
1396
      /*
1397
       * We do not mark the index itself "modified"
1398
       * because CE_UPTODATE flag is in-core only;
1399
       * we are not going to write this change out.
1400
       */
1401
0
      if (!S_ISGITLINK(ce->ce_mode)) {
1402
0
        ce_mark_uptodate(ce);
1403
0
        mark_fsmonitor_valid(istate, ce);
1404
0
      }
1405
0
      return ce;
1406
0
    }
1407
0
  }
1408
1409
0
  if (t2_did_scan)
1410
0
    *t2_did_scan = 1;
1411
0
  if (ie_modified(istate, ce, &st, options)) {
1412
0
    if (err)
1413
0
      *err = EINVAL;
1414
0
    return NULL;
1415
0
  }
1416
1417
0
  updated = make_empty_cache_entry(istate, ce_namelen(ce));
1418
0
  copy_cache_entry(updated, ce);
1419
0
  memcpy(updated->name, ce->name, ce->ce_namelen + 1);
1420
0
  fill_stat_cache_info(istate, updated, &st);
1421
  /*
1422
   * If ignore_valid is not set, we should leave CE_VALID bit
1423
   * alone.  Otherwise, paths marked with --no-assume-unchanged
1424
   * (i.e. things to be edited) will reacquire CE_VALID bit
1425
   * automatically, which is not really what we want.
1426
   */
1427
0
  if (!ignore_valid && assume_unchanged &&
1428
0
      !(ce->ce_flags & CE_VALID))
1429
0
    updated->ce_flags &= ~CE_VALID;
1430
1431
  /* istate->cache_changed is updated in the caller */
1432
0
  return updated;
1433
0
}
1434
1435
static void show_file(const char * fmt, const char * name, int in_porcelain,
1436
          int * first, const char *header_msg)
1437
0
{
1438
0
  if (in_porcelain && *first && header_msg) {
1439
0
    printf("%s\n", header_msg);
1440
0
    *first = 0;
1441
0
  }
1442
0
  printf(fmt, name);
1443
0
}
1444
1445
int repo_refresh_and_write_index(struct repository *repo,
1446
         unsigned int refresh_flags,
1447
         unsigned int write_flags,
1448
         int gentle,
1449
         const struct pathspec *pathspec,
1450
         char *seen, const char *header_msg)
1451
0
{
1452
0
  struct lock_file lock_file = LOCK_INIT;
1453
0
  int fd, ret = 0;
1454
1455
0
  fd = repo_hold_locked_index(repo, &lock_file,
1456
0
            gentle ? 0 : LOCK_REPORT_ON_ERROR);
1457
0
  if (!gentle && fd < 0)
1458
0
    return -1;
1459
0
  if (refresh_index(repo->index, refresh_flags, pathspec, seen, header_msg))
1460
0
    ret = 1;
1461
0
  if (0 <= fd && write_locked_index(repo->index, &lock_file, COMMIT_LOCK | write_flags))
1462
0
    ret = -1;
1463
0
  return ret;
1464
0
}
1465
1466
1467
int refresh_index(struct index_state *istate, unsigned int flags,
1468
      const struct pathspec *pathspec,
1469
      char *seen, const char *header_msg)
1470
0
{
1471
0
  int i;
1472
0
  int has_errors = 0;
1473
0
  int really = (flags & REFRESH_REALLY) != 0;
1474
0
  int allow_unmerged = (flags & REFRESH_UNMERGED) != 0;
1475
0
  int quiet = (flags & REFRESH_QUIET) != 0;
1476
0
  int not_new = (flags & REFRESH_IGNORE_MISSING) != 0;
1477
0
  int ignore_submodules = (flags & REFRESH_IGNORE_SUBMODULES) != 0;
1478
0
  int ignore_skip_worktree = (flags & REFRESH_IGNORE_SKIP_WORKTREE) != 0;
1479
0
  int first = 1;
1480
0
  int in_porcelain = (flags & REFRESH_IN_PORCELAIN);
1481
0
  unsigned int options = (CE_MATCH_REFRESH |
1482
0
        (really ? CE_MATCH_IGNORE_VALID : 0) |
1483
0
        (not_new ? CE_MATCH_IGNORE_MISSING : 0));
1484
0
  const char *modified_fmt;
1485
0
  const char *deleted_fmt;
1486
0
  const char *typechange_fmt;
1487
0
  const char *added_fmt;
1488
0
  const char *unmerged_fmt;
1489
0
  struct progress *progress = NULL;
1490
0
  int t2_sum_lstat = 0;
1491
0
  int t2_sum_scan = 0;
1492
1493
0
  if (flags & REFRESH_PROGRESS && isatty(2))
1494
0
    progress = start_delayed_progress(the_repository,
1495
0
              _("Refresh index"),
1496
0
              istate->cache_nr);
1497
1498
0
  trace_performance_enter();
1499
0
  modified_fmt   = in_porcelain ? "M\t%s\n" : "%s: needs update\n";
1500
0
  deleted_fmt    = in_porcelain ? "D\t%s\n" : "%s: needs update\n";
1501
0
  typechange_fmt = in_porcelain ? "T\t%s\n" : "%s: needs update\n";
1502
0
  added_fmt      = in_porcelain ? "A\t%s\n" : "%s: needs update\n";
1503
0
  unmerged_fmt   = in_porcelain ? "U\t%s\n" : "%s: needs merge\n";
1504
  /*
1505
   * Use the multi-threaded preload_index() to refresh most of the
1506
   * cache entries quickly then in the single threaded loop below,
1507
   * we only have to do the special cases that are left.
1508
   */
1509
0
  preload_index(istate, pathspec, 0);
1510
0
  trace2_region_enter("index", "refresh", NULL);
1511
1512
0
  for (i = 0; i < istate->cache_nr; i++) {
1513
0
    struct cache_entry *ce, *new_entry;
1514
0
    int cache_errno = 0;
1515
0
    int changed = 0;
1516
0
    int filtered = 0;
1517
0
    int t2_did_lstat = 0;
1518
0
    int t2_did_scan = 0;
1519
1520
0
    ce = istate->cache[i];
1521
0
    if (ignore_submodules && S_ISGITLINK(ce->ce_mode))
1522
0
      continue;
1523
0
    if (ignore_skip_worktree && ce_skip_worktree(ce))
1524
0
      continue;
1525
1526
    /*
1527
     * If this entry is a sparse directory, then there isn't
1528
     * any stat() information to update. Ignore the entry.
1529
     */
1530
0
    if (S_ISSPARSEDIR(ce->ce_mode))
1531
0
      continue;
1532
1533
0
    if (pathspec && !ce_path_match(istate, ce, pathspec, seen))
1534
0
      filtered = 1;
1535
1536
0
    if (ce_stage(ce)) {
1537
0
      while ((i < istate->cache_nr) &&
1538
0
             ! strcmp(istate->cache[i]->name, ce->name))
1539
0
        i++;
1540
0
      i--;
1541
0
      if (allow_unmerged)
1542
0
        continue;
1543
0
      if (!filtered)
1544
0
        show_file(unmerged_fmt, ce->name, in_porcelain,
1545
0
            &first, header_msg);
1546
0
      has_errors = 1;
1547
0
      continue;
1548
0
    }
1549
1550
0
    if (filtered)
1551
0
      continue;
1552
1553
0
    new_entry = refresh_cache_ent(istate, ce, options,
1554
0
                &cache_errno, &changed,
1555
0
                &t2_did_lstat, &t2_did_scan);
1556
0
    t2_sum_lstat += t2_did_lstat;
1557
0
    t2_sum_scan += t2_did_scan;
1558
0
    if (new_entry == ce)
1559
0
      continue;
1560
0
    display_progress(progress, i);
1561
0
    if (!new_entry) {
1562
0
      const char *fmt;
1563
1564
0
      if (really && cache_errno == EINVAL) {
1565
        /* If we are doing --really-refresh that
1566
         * means the index is not valid anymore.
1567
         */
1568
0
        ce->ce_flags &= ~CE_VALID;
1569
0
        ce->ce_flags |= CE_UPDATE_IN_BASE;
1570
0
        mark_fsmonitor_invalid(istate, ce);
1571
0
        istate->cache_changed |= CE_ENTRY_CHANGED;
1572
0
      }
1573
0
      if (quiet)
1574
0
        continue;
1575
1576
0
      if (cache_errno == ENOENT)
1577
0
        fmt = deleted_fmt;
1578
0
      else if (ce_intent_to_add(ce))
1579
0
        fmt = added_fmt; /* must be before other checks */
1580
0
      else if (changed & TYPE_CHANGED)
1581
0
        fmt = typechange_fmt;
1582
0
      else
1583
0
        fmt = modified_fmt;
1584
0
      show_file(fmt,
1585
0
          ce->name, in_porcelain, &first, header_msg);
1586
0
      has_errors = 1;
1587
0
      continue;
1588
0
    }
1589
1590
0
    replace_index_entry(istate, i, new_entry);
1591
0
  }
1592
0
  trace2_data_intmax("index", NULL, "refresh/sum_lstat", t2_sum_lstat);
1593
0
  trace2_data_intmax("index", NULL, "refresh/sum_scan", t2_sum_scan);
1594
0
  trace2_region_leave("index", "refresh", NULL);
1595
0
  display_progress(progress, istate->cache_nr);
1596
0
  stop_progress(&progress);
1597
0
  trace_performance_leave("refresh index");
1598
0
  return has_errors;
1599
0
}
1600
1601
struct cache_entry *refresh_cache_entry(struct index_state *istate,
1602
          struct cache_entry *ce,
1603
          unsigned int options)
1604
0
{
1605
0
  return refresh_cache_ent(istate, ce, options, NULL, NULL, NULL, NULL);
1606
0
}
1607
1608
1609
/*****************************************************************
1610
 * Index File I/O
1611
 *****************************************************************/
1612
1613
0
#define INDEX_FORMAT_DEFAULT 3
1614
1615
static unsigned int get_index_format_default(struct repository *r)
1616
0
{
1617
0
  char *envversion = getenv("GIT_INDEX_VERSION");
1618
0
  char *endp;
1619
0
  unsigned int version = INDEX_FORMAT_DEFAULT;
1620
1621
0
  if (!envversion) {
1622
0
    prepare_repo_settings(r);
1623
1624
0
    if (r->settings.index_version >= 0)
1625
0
      version = r->settings.index_version;
1626
0
    if (version < INDEX_FORMAT_LB || INDEX_FORMAT_UB < version) {
1627
0
      warning(_("index.version set, but the value is invalid.\n"
1628
0
          "Using version %i"), INDEX_FORMAT_DEFAULT);
1629
0
      return INDEX_FORMAT_DEFAULT;
1630
0
    }
1631
0
    return version;
1632
0
  }
1633
1634
0
  version = strtoul(envversion, &endp, 10);
1635
0
  if (*endp ||
1636
0
      version < INDEX_FORMAT_LB || INDEX_FORMAT_UB < version) {
1637
0
    warning(_("GIT_INDEX_VERSION set, but the value is invalid.\n"
1638
0
        "Using version %i"), INDEX_FORMAT_DEFAULT);
1639
0
    version = INDEX_FORMAT_DEFAULT;
1640
0
  }
1641
0
  return version;
1642
0
}
1643
1644
/*
1645
 * dev/ino/uid/gid/size are also just tracked to the low 32 bits
1646
 * Again - this is just a (very strong in practice) heuristic that
1647
 * the inode hasn't changed.
1648
 *
1649
 * We save the fields in big-endian order to allow using the
1650
 * index file over NFS transparently.
1651
 */
1652
struct ondisk_cache_entry {
1653
  struct cache_time ctime;
1654
  struct cache_time mtime;
1655
  uint32_t dev;
1656
  uint32_t ino;
1657
  uint32_t mode;
1658
  uint32_t uid;
1659
  uint32_t gid;
1660
  uint32_t size;
1661
  /*
1662
   * unsigned char hash[hashsz];
1663
   * uint16_t flags;
1664
   * if (flags & CE_EXTENDED)
1665
   *  uint16_t flags2;
1666
   */
1667
  unsigned char data[GIT_MAX_RAWSZ + 2 * sizeof(uint16_t)];
1668
  char name[FLEX_ARRAY];
1669
};
1670
1671
/* These are only used for v3 or lower */
1672
0
#define align_padding_size(size, len) ((size + (len) + 8) & ~7) - (size + len)
1673
0
#define align_flex_name(STRUCT,len) ((offsetof(struct STRUCT,data) + (len) + 8) & ~7)
1674
0
#define ondisk_cache_entry_size(len) align_flex_name(ondisk_cache_entry,len)
1675
0
#define ondisk_data_size(flags, len) (the_hash_algo->rawsz + \
1676
0
             ((flags & CE_EXTENDED) ? 2 : 1) * sizeof(uint16_t) + len)
1677
#define ondisk_data_size_max(len) (ondisk_data_size(CE_EXTENDED, len))
1678
0
#define ondisk_ce_size(ce) (ondisk_cache_entry_size(ondisk_data_size((ce)->ce_flags, ce_namelen(ce))))
1679
1680
/* Allow fsck to force verification of the index checksum. */
1681
int verify_index_checksum;
1682
1683
/* Allow fsck to force verification of the cache entry order. */
1684
int verify_ce_order;
1685
1686
static int verify_hdr(const struct cache_header *hdr, unsigned long size)
1687
0
{
1688
0
  struct git_hash_ctx c;
1689
0
  unsigned char hash[GIT_MAX_RAWSZ];
1690
0
  int hdr_version;
1691
0
  unsigned char *start, *end;
1692
0
  struct object_id oid;
1693
1694
0
  if (hdr->hdr_signature != htonl(CACHE_SIGNATURE))
1695
0
    return error(_("bad signature 0x%08x"), hdr->hdr_signature);
1696
0
  hdr_version = ntohl(hdr->hdr_version);
1697
0
  if (hdr_version < INDEX_FORMAT_LB || INDEX_FORMAT_UB < hdr_version)
1698
0
    return error(_("bad index version %d"), hdr_version);
1699
1700
0
  if (!verify_index_checksum)
1701
0
    return 0;
1702
1703
0
  end = (unsigned char *)hdr + size;
1704
0
  start = end - the_hash_algo->rawsz;
1705
0
  oidread(&oid, start, the_repository->hash_algo);
1706
0
  if (oideq(&oid, null_oid(the_hash_algo)))
1707
0
    return 0;
1708
1709
0
  the_hash_algo->init_fn(&c);
1710
0
  git_hash_update(&c, hdr, size - the_hash_algo->rawsz);
1711
0
  git_hash_final(hash, &c);
1712
0
  if (!hasheq(hash, start, the_repository->hash_algo))
1713
0
    return error(_("bad index file sha1 signature"));
1714
0
  return 0;
1715
0
}
1716
1717
static int read_index_extension(struct index_state *istate,
1718
        const char *ext, const char *data, unsigned long sz)
1719
0
{
1720
0
  switch (CACHE_EXT(ext)) {
1721
0
  case CACHE_EXT_TREE:
1722
0
    istate->cache_tree = cache_tree_read(data, sz);
1723
0
    break;
1724
0
  case CACHE_EXT_RESOLVE_UNDO:
1725
0
    istate->resolve_undo = resolve_undo_read(data, sz, the_hash_algo);
1726
0
    break;
1727
0
  case CACHE_EXT_LINK:
1728
0
    if (read_link_extension(istate, data, sz))
1729
0
      return -1;
1730
0
    break;
1731
0
  case CACHE_EXT_UNTRACKED:
1732
0
    istate->untracked = read_untracked_extension(data, sz);
1733
0
    break;
1734
0
  case CACHE_EXT_FSMONITOR:
1735
0
    read_fsmonitor_extension(istate, data, sz);
1736
0
    break;
1737
0
  case CACHE_EXT_ENDOFINDEXENTRIES:
1738
0
  case CACHE_EXT_INDEXENTRYOFFSETTABLE:
1739
    /* already handled in do_read_index() */
1740
0
    break;
1741
0
  case CACHE_EXT_SPARSE_DIRECTORIES:
1742
    /* no content, only an indicator */
1743
0
    istate->sparse_index = INDEX_COLLAPSED;
1744
0
    break;
1745
0
  default:
1746
0
    if (*ext < 'A' || 'Z' < *ext)
1747
0
      return error(_("index uses %.4s extension, which we do not understand"),
1748
0
             ext);
1749
0
    fprintf_ln(stderr, _("ignoring %.4s extension"), ext);
1750
0
    break;
1751
0
  }
1752
0
  return 0;
1753
0
}
1754
1755
/*
1756
 * Parses the contents of the cache entry contained within the 'ondisk' buffer
1757
 * into a new incore 'cache_entry'.
1758
 *
1759
 * Note that 'char *ondisk' may not be aligned to a 4-byte address interval in
1760
 * index v4, so we cannot cast it to 'struct ondisk_cache_entry *' and access
1761
 * its members. Instead, we use the byte offsets of members within the struct to
1762
 * identify where 'get_be16()', 'get_be32()', and 'oidread()' (which can all
1763
 * read from an unaligned memory buffer) should read from the 'ondisk' buffer
1764
 * into the corresponding incore 'cache_entry' members.
1765
 */
1766
static struct cache_entry *create_from_disk(struct mem_pool *ce_mem_pool,
1767
              unsigned int version,
1768
              const char *ondisk,
1769
              unsigned long *ent_size,
1770
              const struct cache_entry *previous_ce)
1771
0
{
1772
0
  struct cache_entry *ce;
1773
0
  size_t len;
1774
0
  const char *name;
1775
0
  const unsigned hashsz = the_hash_algo->rawsz;
1776
0
  const char *flagsp = ondisk + offsetof(struct ondisk_cache_entry, data) + hashsz;
1777
0
  unsigned int flags;
1778
0
  size_t copy_len = 0;
1779
  /*
1780
   * Adjacent cache entries tend to share the leading paths, so it makes
1781
   * sense to only store the differences in later entries.  In the v4
1782
   * on-disk format of the index, each on-disk cache entry stores the
1783
   * number of bytes to be stripped from the end of the previous name,
1784
   * and the bytes to append to the result, to come up with its name.
1785
   */
1786
0
  int expand_name_field = version == 4;
1787
1788
  /* On-disk flags are just 16 bits */
1789
0
  flags = get_be16(flagsp);
1790
0
  len = flags & CE_NAMEMASK;
1791
1792
0
  if (flags & CE_EXTENDED) {
1793
0
    int extended_flags;
1794
0
    extended_flags = get_be16(flagsp + sizeof(uint16_t)) << 16;
1795
    /* We do not yet understand any bit out of CE_EXTENDED_FLAGS */
1796
0
    if (extended_flags & ~CE_EXTENDED_FLAGS)
1797
0
      die(_("unknown index entry format 0x%08x"), extended_flags);
1798
0
    flags |= extended_flags;
1799
0
    name = (const char *)(flagsp + 2 * sizeof(uint16_t));
1800
0
  }
1801
0
  else
1802
0
    name = (const char *)(flagsp + sizeof(uint16_t));
1803
1804
0
  if (expand_name_field) {
1805
0
    const unsigned char *cp = (const unsigned char *)name;
1806
0
    uint64_t strip_len, previous_len;
1807
1808
    /* If we're at the beginning of a block, ignore the previous name */
1809
0
    strip_len = decode_varint(&cp);
1810
0
    if (previous_ce) {
1811
0
      previous_len = previous_ce->ce_namelen;
1812
0
      if (previous_len < strip_len)
1813
0
        die(_("malformed name field in the index, near path '%s'"),
1814
0
          previous_ce->name);
1815
0
      copy_len = previous_len - strip_len;
1816
0
    }
1817
0
    name = (const char *)cp;
1818
0
  }
1819
1820
0
  if (len == CE_NAMEMASK) {
1821
0
    len = strlen(name);
1822
0
    if (expand_name_field)
1823
0
      len += copy_len;
1824
0
  }
1825
1826
0
  ce = mem_pool__ce_alloc(ce_mem_pool, len);
1827
1828
  /*
1829
   * NEEDSWORK: using 'offsetof()' is cumbersome and should be replaced
1830
   * with something more akin to 'load_bitmap_entries_v1()'s use of
1831
   * 'read_be16'/'read_be32'. For consistency with the corresponding
1832
   * ondisk entry write function ('copy_cache_entry_to_ondisk()'), this
1833
   * should be done at the same time as removing references to
1834
   * 'ondisk_cache_entry' there.
1835
   */
1836
0
  ce->ce_stat_data.sd_ctime.sec = get_be32(ondisk + offsetof(struct ondisk_cache_entry, ctime)
1837
0
              + offsetof(struct cache_time, sec));
1838
0
  ce->ce_stat_data.sd_mtime.sec = get_be32(ondisk + offsetof(struct ondisk_cache_entry, mtime)
1839
0
              + offsetof(struct cache_time, sec));
1840
0
  ce->ce_stat_data.sd_ctime.nsec = get_be32(ondisk + offsetof(struct ondisk_cache_entry, ctime)
1841
0
               + offsetof(struct cache_time, nsec));
1842
0
  ce->ce_stat_data.sd_mtime.nsec = get_be32(ondisk + offsetof(struct ondisk_cache_entry, mtime)
1843
0
               + offsetof(struct cache_time, nsec));
1844
0
  ce->ce_stat_data.sd_dev   = get_be32(ondisk + offsetof(struct ondisk_cache_entry, dev));
1845
0
  ce->ce_stat_data.sd_ino   = get_be32(ondisk + offsetof(struct ondisk_cache_entry, ino));
1846
0
  ce->ce_mode  = get_be32(ondisk + offsetof(struct ondisk_cache_entry, mode));
1847
0
  ce->ce_stat_data.sd_uid   = get_be32(ondisk + offsetof(struct ondisk_cache_entry, uid));
1848
0
  ce->ce_stat_data.sd_gid   = get_be32(ondisk + offsetof(struct ondisk_cache_entry, gid));
1849
0
  ce->ce_stat_data.sd_size  = get_be32(ondisk + offsetof(struct ondisk_cache_entry, size));
1850
0
  ce->ce_flags = flags & ~CE_NAMEMASK;
1851
0
  ce->ce_namelen = len;
1852
0
  ce->index = 0;
1853
0
  oidread(&ce->oid, (const unsigned char *)ondisk + offsetof(struct ondisk_cache_entry, data),
1854
0
    the_repository->hash_algo);
1855
1856
0
  if (expand_name_field) {
1857
0
    if (copy_len)
1858
0
      memcpy(ce->name, previous_ce->name, copy_len);
1859
0
    memcpy(ce->name + copy_len, name, len + 1 - copy_len);
1860
0
    *ent_size = (name - ((char *)ondisk)) + len + 1 - copy_len;
1861
0
  } else {
1862
0
    memcpy(ce->name, name, len + 1);
1863
0
    *ent_size = ondisk_ce_size(ce);
1864
0
  }
1865
0
  return ce;
1866
0
}
1867
1868
static void check_ce_order(struct index_state *istate)
1869
0
{
1870
0
  unsigned int i;
1871
1872
0
  if (!verify_ce_order)
1873
0
    return;
1874
1875
0
  for (i = 1; i < istate->cache_nr; i++) {
1876
0
    struct cache_entry *ce = istate->cache[i - 1];
1877
0
    struct cache_entry *next_ce = istate->cache[i];
1878
0
    int name_compare = strcmp(ce->name, next_ce->name);
1879
1880
0
    if (0 < name_compare)
1881
0
      die(_("unordered stage entries in index"));
1882
0
    if (!name_compare) {
1883
0
      if (!ce_stage(ce))
1884
0
        die(_("multiple stage entries for merged file '%s'"),
1885
0
            ce->name);
1886
0
      if (ce_stage(ce) > ce_stage(next_ce))
1887
0
        die(_("unordered stage entries for '%s'"),
1888
0
            ce->name);
1889
0
    }
1890
0
  }
1891
0
}
1892
1893
static void tweak_untracked_cache(struct index_state *istate)
1894
0
{
1895
0
  struct repository *r = the_repository;
1896
1897
0
  prepare_repo_settings(r);
1898
1899
0
  switch (r->settings.core_untracked_cache) {
1900
0
  case UNTRACKED_CACHE_REMOVE:
1901
0
    remove_untracked_cache(istate);
1902
0
    break;
1903
0
  case UNTRACKED_CACHE_WRITE:
1904
0
    add_untracked_cache(istate);
1905
0
    break;
1906
0
  case UNTRACKED_CACHE_KEEP:
1907
    /*
1908
     * Either an explicit "core.untrackedCache=keep", the
1909
     * default if "core.untrackedCache" isn't configured,
1910
     * or a fallback on an unknown "core.untrackedCache"
1911
     * value.
1912
     */
1913
0
    break;
1914
0
  }
1915
0
}
1916
1917
static void tweak_split_index(struct index_state *istate)
1918
0
{
1919
0
  switch (repo_config_get_split_index(the_repository)) {
1920
0
  case -1: /* unset: do nothing */
1921
0
    break;
1922
0
  case 0: /* false */
1923
0
    remove_split_index(istate);
1924
0
    break;
1925
0
  case 1: /* true */
1926
0
    add_split_index(istate);
1927
0
    break;
1928
0
  default: /* unknown value: do nothing */
1929
0
    break;
1930
0
  }
1931
0
}
1932
1933
static void post_read_index_from(struct index_state *istate)
1934
0
{
1935
0
  check_ce_order(istate);
1936
0
  tweak_untracked_cache(istate);
1937
0
  tweak_split_index(istate);
1938
0
  tweak_fsmonitor(istate);
1939
0
}
1940
1941
static size_t estimate_cache_size_from_compressed(unsigned int entries)
1942
0
{
1943
0
  return entries * (sizeof(struct cache_entry) + CACHE_ENTRY_PATH_LENGTH);
1944
0
}
1945
1946
static size_t estimate_cache_size(size_t ondisk_size, unsigned int entries)
1947
0
{
1948
0
  long per_entry = sizeof(struct cache_entry) - sizeof(struct ondisk_cache_entry);
1949
1950
  /*
1951
   * Account for potential alignment differences.
1952
   */
1953
0
  per_entry += align_padding_size(per_entry, 0);
1954
0
  return ondisk_size + entries * per_entry;
1955
0
}
1956
1957
struct index_entry_offset
1958
{
1959
  /* starting byte offset into index file, count of index entries in this block */
1960
  int offset, nr;
1961
};
1962
1963
struct index_entry_offset_table
1964
{
1965
  int nr;
1966
  struct index_entry_offset entries[FLEX_ARRAY];
1967
};
1968
1969
static struct index_entry_offset_table *read_ieot_extension(const char *mmap, size_t mmap_size, size_t offset);
1970
static void write_ieot_extension(struct strbuf *sb, struct index_entry_offset_table *ieot);
1971
1972
static size_t read_eoie_extension(const char *mmap, size_t mmap_size);
1973
static void write_eoie_extension(struct strbuf *sb, struct git_hash_ctx *eoie_context, size_t offset);
1974
1975
struct load_index_extensions
1976
{
1977
  pthread_t pthread;
1978
  struct index_state *istate;
1979
  const char *mmap;
1980
  size_t mmap_size;
1981
  unsigned long src_offset;
1982
};
1983
1984
static void *load_index_extensions(void *_data)
1985
0
{
1986
0
  struct load_index_extensions *p = _data;
1987
0
  unsigned long src_offset = p->src_offset;
1988
1989
0
  while (src_offset <= p->mmap_size - the_hash_algo->rawsz - 8) {
1990
    /* After an array of active_nr index entries,
1991
     * there can be arbitrary number of extended
1992
     * sections, each of which is prefixed with
1993
     * extension name (4-byte) and section length
1994
     * in 4-byte network byte order.
1995
     */
1996
0
    uint32_t extsize = get_be32(p->mmap + src_offset + 4);
1997
0
    if (read_index_extension(p->istate,
1998
0
           p->mmap + src_offset,
1999
0
           p->mmap + src_offset + 8,
2000
0
           extsize) < 0) {
2001
0
      munmap((void *)p->mmap, p->mmap_size);
2002
0
      die(_("index file corrupt"));
2003
0
    }
2004
0
    src_offset += 8;
2005
0
    src_offset += extsize;
2006
0
  }
2007
2008
0
  return NULL;
2009
0
}
2010
2011
/*
2012
 * A helper function that will load the specified range of cache entries
2013
 * from the memory mapped file and add them to the given index.
2014
 */
2015
static unsigned long load_cache_entry_block(struct index_state *istate,
2016
      struct mem_pool *ce_mem_pool, int offset, int nr, const char *mmap,
2017
      unsigned long start_offset, const struct cache_entry *previous_ce)
2018
0
{
2019
0
  int i;
2020
0
  unsigned long src_offset = start_offset;
2021
2022
0
  for (i = offset; i < offset + nr; i++) {
2023
0
    struct cache_entry *ce;
2024
0
    unsigned long consumed;
2025
2026
0
    ce = create_from_disk(ce_mem_pool, istate->version,
2027
0
              mmap + src_offset,
2028
0
              &consumed, previous_ce);
2029
0
    set_index_entry(istate, i, ce);
2030
2031
0
    src_offset += consumed;
2032
0
    previous_ce = ce;
2033
0
  }
2034
0
  return src_offset - start_offset;
2035
0
}
2036
2037
static unsigned long load_all_cache_entries(struct index_state *istate,
2038
      const char *mmap, size_t mmap_size, unsigned long src_offset)
2039
0
{
2040
0
  unsigned long consumed;
2041
2042
0
  istate->ce_mem_pool = xmalloc(sizeof(*istate->ce_mem_pool));
2043
0
  if (istate->version == 4) {
2044
0
    mem_pool_init(istate->ce_mem_pool,
2045
0
        estimate_cache_size_from_compressed(istate->cache_nr));
2046
0
  } else {
2047
0
    mem_pool_init(istate->ce_mem_pool,
2048
0
        estimate_cache_size(mmap_size, istate->cache_nr));
2049
0
  }
2050
2051
0
  consumed = load_cache_entry_block(istate, istate->ce_mem_pool,
2052
0
          0, istate->cache_nr, mmap, src_offset, NULL);
2053
0
  return consumed;
2054
0
}
2055
2056
/*
2057
 * Mostly randomly chosen maximum thread counts: we
2058
 * cap the parallelism to online_cpus() threads, and we want
2059
 * to have at least 10000 cache entries per thread for it to
2060
 * be worth starting a thread.
2061
 */
2062
2063
0
#define THREAD_COST   (10000)
2064
2065
struct load_cache_entries_thread_data
2066
{
2067
  pthread_t pthread;
2068
  struct index_state *istate;
2069
  struct mem_pool *ce_mem_pool;
2070
  int offset;
2071
  const char *mmap;
2072
  struct index_entry_offset_table *ieot;
2073
  int ieot_start;   /* starting index into the ieot array */
2074
  int ieot_blocks;  /* count of ieot entries to process */
2075
  unsigned long consumed; /* return # of bytes in index file processed */
2076
};
2077
2078
/*
2079
 * A thread proc to run the load_cache_entries() computation
2080
 * across multiple background threads.
2081
 */
2082
static void *load_cache_entries_thread(void *_data)
2083
0
{
2084
0
  struct load_cache_entries_thread_data *p = _data;
2085
0
  int i;
2086
2087
  /* iterate across all ieot blocks assigned to this thread */
2088
0
  for (i = p->ieot_start; i < p->ieot_start + p->ieot_blocks; i++) {
2089
0
    p->consumed += load_cache_entry_block(p->istate, p->ce_mem_pool,
2090
0
      p->offset, p->ieot->entries[i].nr, p->mmap, p->ieot->entries[i].offset, NULL);
2091
0
    p->offset += p->ieot->entries[i].nr;
2092
0
  }
2093
0
  return NULL;
2094
0
}
2095
2096
static unsigned long load_cache_entries_threaded(struct index_state *istate, const char *mmap, size_t mmap_size,
2097
             int nr_threads, struct index_entry_offset_table *ieot)
2098
0
{
2099
0
  int i, offset, ieot_blocks, ieot_start, err;
2100
0
  struct load_cache_entries_thread_data *data;
2101
0
  unsigned long consumed = 0;
2102
2103
  /* a little sanity checking */
2104
0
  if (istate->name_hash_initialized)
2105
0
    BUG("the name hash isn't thread safe");
2106
2107
0
  istate->ce_mem_pool = xmalloc(sizeof(*istate->ce_mem_pool));
2108
0
  mem_pool_init(istate->ce_mem_pool, 0);
2109
2110
  /* ensure we have no more threads than we have blocks to process */
2111
0
  if (nr_threads > ieot->nr)
2112
0
    nr_threads = ieot->nr;
2113
0
  CALLOC_ARRAY(data, nr_threads);
2114
2115
0
  offset = ieot_start = 0;
2116
0
  ieot_blocks = DIV_ROUND_UP(ieot->nr, nr_threads);
2117
0
  for (i = 0; i < nr_threads; i++) {
2118
0
    struct load_cache_entries_thread_data *p = &data[i];
2119
0
    int nr, j;
2120
2121
0
    if (ieot_start + ieot_blocks > ieot->nr)
2122
0
      ieot_blocks = ieot->nr - ieot_start;
2123
2124
0
    p->istate = istate;
2125
0
    p->offset = offset;
2126
0
    p->mmap = mmap;
2127
0
    p->ieot = ieot;
2128
0
    p->ieot_start = ieot_start;
2129
0
    p->ieot_blocks = ieot_blocks;
2130
2131
    /* create a mem_pool for each thread */
2132
0
    nr = 0;
2133
0
    for (j = p->ieot_start; j < p->ieot_start + p->ieot_blocks; j++)
2134
0
      nr += p->ieot->entries[j].nr;
2135
0
    p->ce_mem_pool = xmalloc(sizeof(*istate->ce_mem_pool));
2136
0
    if (istate->version == 4) {
2137
0
      mem_pool_init(p->ce_mem_pool,
2138
0
        estimate_cache_size_from_compressed(nr));
2139
0
    } else {
2140
0
      mem_pool_init(p->ce_mem_pool,
2141
0
        estimate_cache_size(mmap_size, nr));
2142
0
    }
2143
2144
0
    err = pthread_create(&p->pthread, NULL, load_cache_entries_thread, p);
2145
0
    if (err)
2146
0
      die(_("unable to create load_cache_entries thread: %s"), strerror(err));
2147
2148
    /* increment by the number of cache entries in the ieot block being processed */
2149
0
    for (j = 0; j < ieot_blocks; j++)
2150
0
      offset += ieot->entries[ieot_start + j].nr;
2151
0
    ieot_start += ieot_blocks;
2152
0
  }
2153
2154
0
  for (i = 0; i < nr_threads; i++) {
2155
0
    struct load_cache_entries_thread_data *p = &data[i];
2156
2157
0
    err = pthread_join(p->pthread, NULL);
2158
0
    if (err)
2159
0
      die(_("unable to join load_cache_entries thread: %s"), strerror(err));
2160
0
    mem_pool_combine(istate->ce_mem_pool, p->ce_mem_pool);
2161
0
    free(p->ce_mem_pool);
2162
0
    consumed += p->consumed;
2163
0
  }
2164
2165
0
  free(data);
2166
2167
0
  return consumed;
2168
0
}
2169
2170
static void set_new_index_sparsity(struct index_state *istate)
2171
0
{
2172
  /*
2173
   * If the index's repo exists, mark it sparse according to
2174
   * repo settings.
2175
   */
2176
0
  prepare_repo_settings(istate->repo);
2177
0
  if (!istate->repo->settings.command_requires_full_index &&
2178
0
      is_sparse_index_allowed(istate, 0))
2179
0
    istate->sparse_index = 1;
2180
0
}
2181
2182
/* remember to discard_cache() before reading a different cache! */
2183
int do_read_index(struct index_state *istate, const char *path, int must_exist)
2184
0
{
2185
0
  int fd;
2186
0
  struct stat st;
2187
0
  unsigned long src_offset;
2188
0
  const struct cache_header *hdr;
2189
0
  const char *mmap;
2190
0
  size_t mmap_size;
2191
0
  struct load_index_extensions p;
2192
0
  size_t extension_offset = 0;
2193
0
  int nr_threads, cpus;
2194
0
  struct index_entry_offset_table *ieot = NULL;
2195
2196
0
  if (istate->initialized)
2197
0
    return istate->cache_nr;
2198
2199
0
  istate->timestamp.sec = 0;
2200
0
  istate->timestamp.nsec = 0;
2201
0
  fd = open(path, O_RDONLY);
2202
0
  if (fd < 0) {
2203
0
    if (!must_exist && errno == ENOENT) {
2204
0
      set_new_index_sparsity(istate);
2205
0
      istate->initialized = 1;
2206
0
      return 0;
2207
0
    }
2208
0
    die_errno(_("%s: index file open failed"), path);
2209
0
  }
2210
2211
0
  if (fstat(fd, &st))
2212
0
    die_errno(_("%s: cannot stat the open index"), path);
2213
2214
0
  mmap_size = xsize_t(st.st_size);
2215
0
  if (mmap_size < sizeof(struct cache_header) + the_hash_algo->rawsz)
2216
0
    die(_("%s: index file smaller than expected"), path);
2217
2218
0
  mmap = xmmap_gently(NULL, mmap_size, PROT_READ, MAP_PRIVATE, fd, 0);
2219
0
  if (mmap == MAP_FAILED)
2220
0
    die_errno(_("%s: unable to map index file%s"), path,
2221
0
      mmap_os_err());
2222
0
  close(fd);
2223
2224
0
  hdr = (const struct cache_header *)mmap;
2225
0
  if (verify_hdr(hdr, mmap_size) < 0)
2226
0
    goto unmap;
2227
2228
0
  oidread(&istate->oid, (const unsigned char *)hdr + mmap_size - the_hash_algo->rawsz,
2229
0
    the_repository->hash_algo);
2230
0
  istate->version = ntohl(hdr->hdr_version);
2231
0
  istate->cache_nr = ntohl(hdr->hdr_entries);
2232
0
  istate->cache_alloc = alloc_nr(istate->cache_nr);
2233
0
  CALLOC_ARRAY(istate->cache, istate->cache_alloc);
2234
0
  istate->initialized = 1;
2235
2236
0
  p.istate = istate;
2237
0
  p.mmap = mmap;
2238
0
  p.mmap_size = mmap_size;
2239
2240
0
  src_offset = sizeof(*hdr);
2241
2242
0
  if (repo_config_get_index_threads(the_repository, &nr_threads))
2243
0
    nr_threads = 1;
2244
2245
  /* TODO: does creating more threads than cores help? */
2246
0
  if (!nr_threads) {
2247
0
    nr_threads = istate->cache_nr / THREAD_COST;
2248
0
    cpus = online_cpus();
2249
0
    if (nr_threads > cpus)
2250
0
      nr_threads = cpus;
2251
0
  }
2252
2253
0
  if (!HAVE_THREADS)
2254
0
    nr_threads = 1;
2255
2256
0
  if (nr_threads > 1) {
2257
0
    extension_offset = read_eoie_extension(mmap, mmap_size);
2258
0
    if (extension_offset) {
2259
0
      int err;
2260
2261
0
      p.src_offset = extension_offset;
2262
0
      err = pthread_create(&p.pthread, NULL, load_index_extensions, &p);
2263
0
      if (err)
2264
0
        die(_("unable to create load_index_extensions thread: %s"), strerror(err));
2265
2266
0
      nr_threads--;
2267
0
    }
2268
0
  }
2269
2270
  /*
2271
   * Locate and read the index entry offset table so that we can use it
2272
   * to multi-thread the reading of the cache entries.
2273
   */
2274
0
  if (extension_offset && nr_threads > 1)
2275
0
    ieot = read_ieot_extension(mmap, mmap_size, extension_offset);
2276
2277
0
  if (ieot) {
2278
0
    src_offset += load_cache_entries_threaded(istate, mmap, mmap_size, nr_threads, ieot);
2279
0
    free(ieot);
2280
0
  } else {
2281
0
    src_offset += load_all_cache_entries(istate, mmap, mmap_size, src_offset);
2282
0
  }
2283
2284
0
  istate->timestamp.sec = st.st_mtime;
2285
0
  istate->timestamp.nsec = ST_MTIME_NSEC(st);
2286
2287
  /* if we created a thread, join it otherwise load the extensions on the primary thread */
2288
0
  if (extension_offset) {
2289
0
    int ret = pthread_join(p.pthread, NULL);
2290
0
    if (ret)
2291
0
      die(_("unable to join load_index_extensions thread: %s"), strerror(ret));
2292
0
  } else {
2293
0
    p.src_offset = src_offset;
2294
0
    load_index_extensions(&p);
2295
0
  }
2296
0
  munmap((void *)mmap, mmap_size);
2297
2298
  /*
2299
   * TODO trace2: replace "the_repository" with the actual repo instance
2300
   * that is associated with the given "istate".
2301
   */
2302
0
  trace2_data_intmax("index", the_repository, "read/version",
2303
0
         istate->version);
2304
0
  trace2_data_intmax("index", the_repository, "read/cache_nr",
2305
0
         istate->cache_nr);
2306
2307
  /*
2308
   * If the command explicitly requires a full index, force it
2309
   * to be full. Otherwise, correct the sparsity based on repository
2310
   * settings and other properties of the index (if necessary).
2311
   */
2312
0
  prepare_repo_settings(istate->repo);
2313
0
  if (istate->repo->settings.command_requires_full_index)
2314
0
    ensure_full_index(istate);
2315
0
  else
2316
0
    ensure_correct_sparsity(istate);
2317
2318
0
  return istate->cache_nr;
2319
2320
0
unmap:
2321
0
  munmap((void *)mmap, mmap_size);
2322
0
  die(_("index file corrupt"));
2323
0
}
2324
2325
/*
2326
 * Signal that the shared index is used by updating its mtime.
2327
 *
2328
 * This way, shared index can be removed if they have not been used
2329
 * for some time.
2330
 */
2331
static void freshen_shared_index(const char *shared_index, int warn)
2332
0
{
2333
0
  if (!check_and_freshen_file(shared_index, 1) && warn)
2334
0
    warning(_("could not freshen shared index '%s'"), shared_index);
2335
0
}
2336
2337
int read_index_from(struct index_state *istate, const char *path,
2338
        const char *gitdir)
2339
0
{
2340
0
  struct split_index *split_index;
2341
0
  int ret;
2342
0
  char *base_oid_hex;
2343
0
  char *base_path;
2344
2345
  /* istate->initialized covers both .git/index and .git/sharedindex.xxx */
2346
0
  if (istate->initialized)
2347
0
    return istate->cache_nr;
2348
2349
  /*
2350
   * TODO trace2: replace "the_repository" with the actual repo instance
2351
   * that is associated with the given "istate".
2352
   */
2353
0
  trace2_region_enter_printf("index", "do_read_index", the_repository,
2354
0
           "%s", path);
2355
0
  trace_performance_enter();
2356
0
  ret = do_read_index(istate, path, 0);
2357
0
  trace_performance_leave("read cache %s", path);
2358
0
  trace2_region_leave_printf("index", "do_read_index", the_repository,
2359
0
           "%s", path);
2360
2361
0
  split_index = istate->split_index;
2362
0
  if (!split_index || is_null_oid(&split_index->base_oid)) {
2363
0
    post_read_index_from(istate);
2364
0
    return ret;
2365
0
  }
2366
2367
0
  trace_performance_enter();
2368
0
  if (split_index->base)
2369
0
    release_index(split_index->base);
2370
0
  else
2371
0
    ALLOC_ARRAY(split_index->base, 1);
2372
0
  index_state_init(split_index->base, istate->repo);
2373
2374
0
  base_oid_hex = oid_to_hex(&split_index->base_oid);
2375
0
  base_path = xstrfmt("%s/sharedindex.%s", gitdir, base_oid_hex);
2376
0
  if (file_exists(base_path)) {
2377
0
    trace2_region_enter_printf("index", "shared/do_read_index",
2378
0
          the_repository, "%s", base_path);
2379
2380
0
    ret = do_read_index(split_index->base, base_path, 0);
2381
0
    trace2_region_leave_printf("index", "shared/do_read_index",
2382
0
          the_repository, "%s", base_path);
2383
0
  } else {
2384
0
    char *path_copy = xstrdup(path);
2385
0
    char *base_path2 = xstrfmt("%s/sharedindex.%s",
2386
0
             dirname(path_copy), base_oid_hex);
2387
0
    free(path_copy);
2388
0
    trace2_region_enter_printf("index", "shared/do_read_index",
2389
0
             the_repository, "%s", base_path2);
2390
0
    ret = do_read_index(split_index->base, base_path2, 1);
2391
0
    trace2_region_leave_printf("index", "shared/do_read_index",
2392
0
             the_repository, "%s", base_path2);
2393
0
    free(base_path2);
2394
0
  }
2395
0
  if (!oideq(&split_index->base_oid, &split_index->base->oid))
2396
0
    die(_("broken index, expect %s in %s, got %s"),
2397
0
        base_oid_hex, base_path,
2398
0
        oid_to_hex(&split_index->base->oid));
2399
2400
0
  freshen_shared_index(base_path, 0);
2401
0
  merge_base_index(istate);
2402
0
  post_read_index_from(istate);
2403
0
  trace_performance_leave("read cache %s", base_path);
2404
0
  free(base_path);
2405
0
  return ret;
2406
0
}
2407
2408
int is_index_unborn(struct index_state *istate)
2409
0
{
2410
0
  return (!istate->cache_nr && !istate->timestamp.sec);
2411
0
}
2412
2413
void index_state_init(struct index_state *istate, struct repository *r)
2414
0
{
2415
0
  struct index_state blank = INDEX_STATE_INIT(r);
2416
0
  memcpy(istate, &blank, sizeof(*istate));
2417
0
}
2418
2419
void release_index(struct index_state *istate)
2420
0
{
2421
  /*
2422
   * Cache entries in istate->cache[] should have been allocated
2423
   * from the memory pool associated with this index, or from an
2424
   * associated split_index. There is no need to free individual
2425
   * cache entries. validate_cache_entries can detect when this
2426
   * assertion does not hold.
2427
   */
2428
0
  validate_cache_entries(istate);
2429
2430
0
  resolve_undo_clear_index(istate);
2431
0
  free_name_hash(istate);
2432
0
  cache_tree_free(&(istate->cache_tree));
2433
0
  free(istate->fsmonitor_last_update);
2434
0
  free(istate->cache);
2435
0
  discard_split_index(istate);
2436
0
  free_untracked_cache(istate->untracked);
2437
2438
0
  if (istate->sparse_checkout_patterns) {
2439
0
    clear_pattern_list(istate->sparse_checkout_patterns);
2440
0
    FREE_AND_NULL(istate->sparse_checkout_patterns);
2441
0
  }
2442
2443
0
  if (istate->ce_mem_pool) {
2444
0
    mem_pool_discard(istate->ce_mem_pool, should_validate_cache_entries());
2445
0
    FREE_AND_NULL(istate->ce_mem_pool);
2446
0
  }
2447
0
}
2448
2449
void discard_index(struct index_state *istate)
2450
0
{
2451
0
  release_index(istate);
2452
0
  index_state_init(istate, istate->repo);
2453
0
}
2454
2455
/*
2456
 * Validate the cache entries of this index.
2457
 * All cache entries associated with this index
2458
 * should have been allocated by the memory pool
2459
 * associated with this index, or by a referenced
2460
 * split index.
2461
 */
2462
void validate_cache_entries(const struct index_state *istate)
2463
0
{
2464
0
  int i;
2465
2466
0
  if (!should_validate_cache_entries() ||!istate || !istate->initialized)
2467
0
    return;
2468
2469
0
  for (i = 0; i < istate->cache_nr; i++) {
2470
0
    if (!istate) {
2471
0
      BUG("cache entry is not allocated from expected memory pool");
2472
0
    } else if (!istate->ce_mem_pool ||
2473
0
      !mem_pool_contains(istate->ce_mem_pool, istate->cache[i])) {
2474
0
      if (!istate->split_index ||
2475
0
        !istate->split_index->base ||
2476
0
        !istate->split_index->base->ce_mem_pool ||
2477
0
        !mem_pool_contains(istate->split_index->base->ce_mem_pool, istate->cache[i])) {
2478
0
        BUG("cache entry is not allocated from expected memory pool");
2479
0
      }
2480
0
    }
2481
0
  }
2482
2483
0
  if (istate->split_index)
2484
0
    validate_cache_entries(istate->split_index->base);
2485
0
}
2486
2487
int unmerged_index(const struct index_state *istate)
2488
0
{
2489
0
  int i;
2490
0
  for (i = 0; i < istate->cache_nr; i++) {
2491
0
    if (ce_stage(istate->cache[i]))
2492
0
      return 1;
2493
0
  }
2494
0
  return 0;
2495
0
}
2496
2497
int repo_index_has_changes(struct repository *repo,
2498
         struct tree *tree,
2499
         struct strbuf *sb)
2500
0
{
2501
0
  struct index_state *istate = repo->index;
2502
0
  struct object_id cmp;
2503
0
  int i;
2504
2505
0
  if (tree)
2506
0
    cmp = tree->object.oid;
2507
0
  if (tree || !repo_get_oid_tree(repo, "HEAD", &cmp)) {
2508
0
    struct diff_options opt;
2509
2510
0
    repo_diff_setup(repo, &opt);
2511
0
    opt.flags.exit_with_status = 1;
2512
0
    if (!sb)
2513
0
      opt.flags.quick = 1;
2514
0
    diff_setup_done(&opt);
2515
0
    do_diff_cache(&cmp, &opt);
2516
0
    diffcore_std(&opt);
2517
0
    for (i = 0; sb && i < diff_queued_diff.nr; i++) {
2518
0
      if (i)
2519
0
        strbuf_addch(sb, ' ');
2520
0
      strbuf_addstr(sb, diff_queued_diff.queue[i]->two->path);
2521
0
    }
2522
0
    diff_flush(&opt);
2523
0
    return opt.flags.has_changes != 0;
2524
0
  } else {
2525
    /* TODO: audit for interaction with sparse-index. */
2526
0
    ensure_full_index(istate);
2527
0
    for (i = 0; sb && i < istate->cache_nr; i++) {
2528
0
      if (i)
2529
0
        strbuf_addch(sb, ' ');
2530
0
      strbuf_addstr(sb, istate->cache[i]->name);
2531
0
    }
2532
0
    return !!istate->cache_nr;
2533
0
  }
2534
0
}
2535
2536
static int write_index_ext_header(struct hashfile *f,
2537
          struct git_hash_ctx *eoie_f,
2538
          unsigned int ext,
2539
          unsigned int sz)
2540
0
{
2541
0
  hashwrite_be32(f, ext);
2542
0
  hashwrite_be32(f, sz);
2543
2544
0
  if (eoie_f) {
2545
0
    ext = htonl(ext);
2546
0
    sz = htonl(sz);
2547
0
    git_hash_update(eoie_f, &ext, sizeof(ext));
2548
0
    git_hash_update(eoie_f, &sz, sizeof(sz));
2549
0
  }
2550
0
  return 0;
2551
0
}
2552
2553
static void ce_smudge_racily_clean_entry(struct index_state *istate,
2554
           struct cache_entry *ce)
2555
0
{
2556
  /*
2557
   * The only thing we care about in this function is to smudge the
2558
   * falsely clean entry due to touch-update-touch race, so we leave
2559
   * everything else as they are.  We are called for entries whose
2560
   * ce_stat_data.sd_mtime match the index file mtime.
2561
   *
2562
   * Note that this actually does not do much for gitlinks, for
2563
   * which ce_match_stat_basic() always goes to the actual
2564
   * contents.  The caller checks with is_racy_timestamp() which
2565
   * always says "no" for gitlinks, so we are not called for them ;-)
2566
   */
2567
0
  struct stat st;
2568
2569
0
  if (lstat(ce->name, &st) < 0)
2570
0
    return;
2571
0
  if (ce_match_stat_basic(ce, &st))
2572
0
    return;
2573
0
  if (ce_modified_check_fs(istate, ce, &st)) {
2574
    /* This is "racily clean"; smudge it.  Note that this
2575
     * is a tricky code.  At first glance, it may appear
2576
     * that it can break with this sequence:
2577
     *
2578
     * $ echo xyzzy >frotz
2579
     * $ git-update-index --add frotz
2580
     * $ : >frotz
2581
     * $ sleep 3
2582
     * $ echo filfre >nitfol
2583
     * $ git-update-index --add nitfol
2584
     *
2585
     * but it does not.  When the second update-index runs,
2586
     * it notices that the entry "frotz" has the same timestamp
2587
     * as index, and if we were to smudge it by resetting its
2588
     * size to zero here, then the object name recorded
2589
     * in index is the 6-byte file but the cached stat information
2590
     * becomes zero --- which would then match what we would
2591
     * obtain from the filesystem next time we stat("frotz").
2592
     *
2593
     * However, the second update-index, before calling
2594
     * this function, notices that the cached size is 6
2595
     * bytes and what is on the filesystem is an empty
2596
     * file, and never calls us, so the cached size information
2597
     * for "frotz" stays 6 which does not match the filesystem.
2598
     */
2599
0
    ce->ce_stat_data.sd_size = 0;
2600
0
  }
2601
0
}
2602
2603
/* Copy miscellaneous fields but not the name */
2604
static void copy_cache_entry_to_ondisk(struct ondisk_cache_entry *ondisk,
2605
               struct cache_entry *ce)
2606
0
{
2607
0
  short flags;
2608
0
  const unsigned hashsz = the_hash_algo->rawsz;
2609
0
  uint16_t *flagsp = (uint16_t *)(ondisk->data + hashsz);
2610
2611
0
  ondisk->ctime.sec = htonl(ce->ce_stat_data.sd_ctime.sec);
2612
0
  ondisk->mtime.sec = htonl(ce->ce_stat_data.sd_mtime.sec);
2613
0
  ondisk->ctime.nsec = htonl(ce->ce_stat_data.sd_ctime.nsec);
2614
0
  ondisk->mtime.nsec = htonl(ce->ce_stat_data.sd_mtime.nsec);
2615
0
  ondisk->dev  = htonl(ce->ce_stat_data.sd_dev);
2616
0
  ondisk->ino  = htonl(ce->ce_stat_data.sd_ino);
2617
0
  ondisk->mode = htonl(ce->ce_mode);
2618
0
  ondisk->uid  = htonl(ce->ce_stat_data.sd_uid);
2619
0
  ondisk->gid  = htonl(ce->ce_stat_data.sd_gid);
2620
0
  ondisk->size = htonl(ce->ce_stat_data.sd_size);
2621
0
  hashcpy(ondisk->data, ce->oid.hash, the_repository->hash_algo);
2622
2623
0
  flags = ce->ce_flags & ~CE_NAMEMASK;
2624
0
  flags |= (ce_namelen(ce) >= CE_NAMEMASK ? CE_NAMEMASK : ce_namelen(ce));
2625
0
  flagsp[0] = htons(flags);
2626
0
  if (ce->ce_flags & CE_EXTENDED) {
2627
0
    flagsp[1] = htons((ce->ce_flags & CE_EXTENDED_FLAGS) >> 16);
2628
0
  }
2629
0
}
2630
2631
static int ce_write_entry(struct hashfile *f, struct cache_entry *ce,
2632
        struct strbuf *previous_name, struct ondisk_cache_entry *ondisk)
2633
0
{
2634
0
  int size;
2635
0
  unsigned int saved_namelen;
2636
0
  int stripped_name = 0;
2637
0
  static unsigned char padding[8] = { 0x00 };
2638
2639
0
  if (ce->ce_flags & CE_STRIP_NAME) {
2640
0
    saved_namelen = ce_namelen(ce);
2641
0
    ce->ce_namelen = 0;
2642
0
    stripped_name = 1;
2643
0
  }
2644
2645
0
  size = offsetof(struct ondisk_cache_entry,data) + ondisk_data_size(ce->ce_flags, 0);
2646
2647
0
  if (!previous_name) {
2648
0
    int len = ce_namelen(ce);
2649
0
    copy_cache_entry_to_ondisk(ondisk, ce);
2650
0
    hashwrite(f, ondisk, size);
2651
0
    hashwrite(f, ce->name, len);
2652
0
    hashwrite(f, padding, align_padding_size(size, len));
2653
0
  } else {
2654
0
    int common, to_remove;
2655
0
    uint8_t prefix_size;
2656
0
    unsigned char to_remove_vi[16];
2657
2658
0
    for (common = 0;
2659
0
         (common < previous_name->len &&
2660
0
          ce->name[common] &&
2661
0
          ce->name[common] == previous_name->buf[common]);
2662
0
         common++)
2663
0
      ; /* still matching */
2664
0
    to_remove = previous_name->len - common;
2665
0
    prefix_size = encode_varint(to_remove, to_remove_vi);
2666
2667
0
    copy_cache_entry_to_ondisk(ondisk, ce);
2668
0
    hashwrite(f, ondisk, size);
2669
0
    hashwrite(f, to_remove_vi, prefix_size);
2670
0
    hashwrite(f, ce->name + common, ce_namelen(ce) - common);
2671
0
    hashwrite(f, padding, 1);
2672
2673
0
    strbuf_splice(previous_name, common, to_remove,
2674
0
            ce->name + common, ce_namelen(ce) - common);
2675
0
  }
2676
0
  if (stripped_name) {
2677
0
    ce->ce_namelen = saved_namelen;
2678
0
    ce->ce_flags &= ~CE_STRIP_NAME;
2679
0
  }
2680
2681
0
  return 0;
2682
0
}
2683
2684
/*
2685
 * This function verifies if index_state has the correct sha1 of the
2686
 * index file.  Don't die if we have any other failure, just return 0.
2687
 */
2688
static int verify_index_from(const struct index_state *istate, const char *path)
2689
0
{
2690
0
  int fd;
2691
0
  ssize_t n;
2692
0
  struct stat st;
2693
0
  unsigned char hash[GIT_MAX_RAWSZ];
2694
2695
0
  if (!istate->initialized)
2696
0
    return 0;
2697
2698
0
  fd = open(path, O_RDONLY);
2699
0
  if (fd < 0)
2700
0
    return 0;
2701
2702
0
  if (fstat(fd, &st))
2703
0
    goto out;
2704
2705
0
  if (st.st_size < sizeof(struct cache_header) + the_hash_algo->rawsz)
2706
0
    goto out;
2707
2708
0
  n = pread_in_full(fd, hash, the_hash_algo->rawsz, st.st_size - the_hash_algo->rawsz);
2709
0
  if (n != the_hash_algo->rawsz)
2710
0
    goto out;
2711
2712
0
  if (!hasheq(istate->oid.hash, hash, the_repository->hash_algo))
2713
0
    goto out;
2714
2715
0
  close(fd);
2716
0
  return 1;
2717
2718
0
out:
2719
0
  close(fd);
2720
0
  return 0;
2721
0
}
2722
2723
static int repo_verify_index(struct repository *repo)
2724
0
{
2725
0
  return verify_index_from(repo->index, repo->index_file);
2726
0
}
2727
2728
int has_racy_timestamp(struct index_state *istate)
2729
0
{
2730
0
  int entries = istate->cache_nr;
2731
0
  int i;
2732
2733
0
  for (i = 0; i < entries; i++) {
2734
0
    struct cache_entry *ce = istate->cache[i];
2735
0
    if (is_racy_timestamp(istate, ce))
2736
0
      return 1;
2737
0
  }
2738
0
  return 0;
2739
0
}
2740
2741
void repo_update_index_if_able(struct repository *repo,
2742
             struct lock_file *lockfile)
2743
0
{
2744
0
  if ((repo->index->cache_changed ||
2745
0
       has_racy_timestamp(repo->index)) &&
2746
0
      repo_verify_index(repo))
2747
0
    write_locked_index(repo->index, lockfile, COMMIT_LOCK);
2748
0
  else
2749
0
    rollback_lock_file(lockfile);
2750
0
}
2751
2752
static int record_eoie(void)
2753
0
{
2754
0
  int val;
2755
2756
0
  if (!repo_config_get_bool(the_repository, "index.recordendofindexentries", &val))
2757
0
    return val;
2758
2759
  /*
2760
   * As a convenience, the end of index entries extension
2761
   * used for threading is written by default if the user
2762
   * explicitly requested threaded index reads.
2763
   */
2764
0
  return !repo_config_get_index_threads(the_repository, &val) && val != 1;
2765
0
}
2766
2767
static int record_ieot(void)
2768
0
{
2769
0
  int val;
2770
2771
0
  if (!repo_config_get_bool(the_repository, "index.recordoffsettable", &val))
2772
0
    return val;
2773
2774
  /*
2775
   * As a convenience, the offset table used for threading is
2776
   * written by default if the user explicitly requested
2777
   * threaded index reads.
2778
   */
2779
0
  return !repo_config_get_index_threads(the_repository, &val) && val != 1;
2780
0
}
2781
2782
enum write_extensions {
2783
  WRITE_NO_EXTENSION =              0,
2784
  WRITE_SPLIT_INDEX_EXTENSION =     1<<0,
2785
  WRITE_CACHE_TREE_EXTENSION =      1<<1,
2786
  WRITE_RESOLVE_UNDO_EXTENSION =    1<<2,
2787
  WRITE_UNTRACKED_CACHE_EXTENSION = 1<<3,
2788
  WRITE_FSMONITOR_EXTENSION =       1<<4,
2789
};
2790
0
#define WRITE_ALL_EXTENSIONS ((enum write_extensions)-1)
2791
2792
/*
2793
 * On success, `tempfile` is closed. If it is the temporary file
2794
 * of a `struct lock_file`, we will therefore effectively perform
2795
 * a 'close_lock_file_gently()`. Since that is an implementation
2796
 * detail of lockfiles, callers of `do_write_index()` should not
2797
 * rely on it.
2798
 */
2799
static int do_write_index(struct index_state *istate, struct tempfile *tempfile,
2800
        enum write_extensions write_extensions, unsigned flags)
2801
0
{
2802
0
  uint64_t start = getnanotime();
2803
0
  struct hashfile *f;
2804
0
  struct git_hash_ctx *eoie_c = NULL;
2805
0
  struct cache_header hdr;
2806
0
  int i, err = 0, removed, extended, hdr_version;
2807
0
  struct cache_entry **cache = istate->cache;
2808
0
  int entries = istate->cache_nr;
2809
0
  struct stat st;
2810
0
  struct ondisk_cache_entry ondisk;
2811
0
  struct strbuf previous_name_buf = STRBUF_INIT, *previous_name;
2812
0
  int drop_cache_tree = istate->drop_cache_tree;
2813
0
  off_t offset;
2814
0
  int csum_fsync_flag;
2815
0
  int ieot_entries = 1;
2816
0
  struct index_entry_offset_table *ieot = NULL;
2817
0
  struct repository *r = istate->repo;
2818
0
  struct strbuf sb = STRBUF_INIT;
2819
0
  int nr, nr_threads, ret;
2820
2821
0
  f = hashfd(the_repository->hash_algo, tempfile->fd, tempfile->filename.buf);
2822
2823
0
  prepare_repo_settings(r);
2824
0
  f->skip_hash = r->settings.index_skip_hash;
2825
2826
0
  for (i = removed = extended = 0; i < entries; i++) {
2827
0
    if (cache[i]->ce_flags & CE_REMOVE)
2828
0
      removed++;
2829
2830
    /* reduce extended entries if possible */
2831
0
    cache[i]->ce_flags &= ~CE_EXTENDED;
2832
0
    if (cache[i]->ce_flags & CE_EXTENDED_FLAGS) {
2833
0
      extended++;
2834
0
      cache[i]->ce_flags |= CE_EXTENDED;
2835
0
    }
2836
0
  }
2837
2838
0
  if (!istate->version)
2839
0
    istate->version = get_index_format_default(r);
2840
2841
  /* demote version 3 to version 2 when the latter suffices */
2842
0
  if (istate->version == 3 || istate->version == 2)
2843
0
    istate->version = extended ? 3 : 2;
2844
2845
0
  hdr_version = istate->version;
2846
2847
0
  hdr.hdr_signature = htonl(CACHE_SIGNATURE);
2848
0
  hdr.hdr_version = htonl(hdr_version);
2849
0
  hdr.hdr_entries = htonl(entries - removed);
2850
2851
0
  hashwrite(f, &hdr, sizeof(hdr));
2852
2853
0
  if (!HAVE_THREADS || repo_config_get_index_threads(the_repository, &nr_threads))
2854
0
    nr_threads = 1;
2855
2856
0
  if (nr_threads != 1 && record_ieot()) {
2857
0
    int ieot_blocks, cpus;
2858
2859
    /*
2860
     * ensure default number of ieot blocks maps evenly to the
2861
     * default number of threads that will process them leaving
2862
     * room for the thread to load the index extensions.
2863
     */
2864
0
    if (!nr_threads) {
2865
0
      ieot_blocks = istate->cache_nr / THREAD_COST;
2866
0
      cpus = online_cpus();
2867
0
      if (ieot_blocks > cpus - 1)
2868
0
        ieot_blocks = cpus - 1;
2869
0
    } else {
2870
0
      ieot_blocks = nr_threads;
2871
0
      if (ieot_blocks > istate->cache_nr)
2872
0
        ieot_blocks = istate->cache_nr;
2873
0
    }
2874
2875
    /*
2876
     * no reason to write out the IEOT extension if we don't
2877
     * have enough blocks to utilize multi-threading
2878
     */
2879
0
    if (ieot_blocks > 1) {
2880
0
      ieot = xcalloc(1, sizeof(struct index_entry_offset_table)
2881
0
        + (ieot_blocks * sizeof(struct index_entry_offset)));
2882
0
      ieot_entries = DIV_ROUND_UP(entries, ieot_blocks);
2883
0
    }
2884
0
  }
2885
2886
0
  offset = hashfile_total(f);
2887
2888
0
  nr = 0;
2889
0
  previous_name = (hdr_version == 4) ? &previous_name_buf : NULL;
2890
2891
0
  for (i = 0; i < entries; i++) {
2892
0
    struct cache_entry *ce = cache[i];
2893
0
    if (ce->ce_flags & CE_REMOVE)
2894
0
      continue;
2895
0
    if (!ce_uptodate(ce) && is_racy_timestamp(istate, ce))
2896
0
      ce_smudge_racily_clean_entry(istate, ce);
2897
0
    if (is_null_oid(&ce->oid)) {
2898
0
      static const char msg[] = "cache entry has null sha1: %s";
2899
0
      static int allow = -1;
2900
2901
0
      if (allow < 0)
2902
0
        allow = git_env_bool("GIT_ALLOW_NULL_SHA1", 0);
2903
0
      if (allow)
2904
0
        warning(msg, ce->name);
2905
0
      else
2906
0
        err = error(msg, ce->name);
2907
2908
0
      drop_cache_tree = 1;
2909
0
    }
2910
0
    if (ieot && i && (i % ieot_entries == 0)) {
2911
0
      ieot->entries[ieot->nr].nr = nr;
2912
0
      ieot->entries[ieot->nr].offset = offset;
2913
0
      ieot->nr++;
2914
      /*
2915
       * If we have a V4 index, set the first byte to an invalid
2916
       * character to ensure there is nothing common with the previous
2917
       * entry
2918
       */
2919
0
      if (previous_name)
2920
0
        previous_name->buf[0] = 0;
2921
0
      nr = 0;
2922
2923
0
      offset = hashfile_total(f);
2924
0
    }
2925
0
    if (ce_write_entry(f, ce, previous_name, (struct ondisk_cache_entry *)&ondisk) < 0)
2926
0
      err = -1;
2927
2928
0
    if (err)
2929
0
      break;
2930
0
    nr++;
2931
0
  }
2932
0
  if (ieot && nr) {
2933
0
    ieot->entries[ieot->nr].nr = nr;
2934
0
    ieot->entries[ieot->nr].offset = offset;
2935
0
    ieot->nr++;
2936
0
  }
2937
0
  strbuf_release(&previous_name_buf);
2938
2939
0
  if (err) {
2940
0
    ret = err;
2941
0
    goto out;
2942
0
  }
2943
2944
0
  offset = hashfile_total(f);
2945
2946
  /*
2947
   * The extension headers must be hashed on their own for the
2948
   * EOIE extension. Create a hashfile here to compute that hash.
2949
   */
2950
0
  if (offset && record_eoie()) {
2951
0
    CALLOC_ARRAY(eoie_c, 1);
2952
0
    the_hash_algo->init_fn(eoie_c);
2953
0
  }
2954
2955
  /*
2956
   * Lets write out CACHE_EXT_INDEXENTRYOFFSETTABLE first so that we
2957
   * can minimize the number of extensions we have to scan through to
2958
   * find it during load.  Write it out regardless of the
2959
   * strip_extensions parameter as we need it when loading the shared
2960
   * index.
2961
   */
2962
0
  if (ieot) {
2963
0
    strbuf_reset(&sb);
2964
2965
0
    write_ieot_extension(&sb, ieot);
2966
0
    err = write_index_ext_header(f, eoie_c, CACHE_EXT_INDEXENTRYOFFSETTABLE, sb.len) < 0;
2967
0
    hashwrite(f, sb.buf, sb.len);
2968
0
    if (err) {
2969
0
      ret = -1;
2970
0
      goto out;
2971
0
    }
2972
0
  }
2973
2974
0
  if (write_extensions & WRITE_SPLIT_INDEX_EXTENSION &&
2975
0
      istate->split_index) {
2976
0
    strbuf_reset(&sb);
2977
2978
0
    if (istate->sparse_index)
2979
0
      die(_("cannot write split index for a sparse index"));
2980
2981
0
    err = write_link_extension(&sb, istate) < 0 ||
2982
0
      write_index_ext_header(f, eoie_c, CACHE_EXT_LINK,
2983
0
                 sb.len) < 0;
2984
0
    hashwrite(f, sb.buf, sb.len);
2985
0
    if (err) {
2986
0
      ret = -1;
2987
0
      goto out;
2988
0
    }
2989
0
  }
2990
0
  if (write_extensions & WRITE_CACHE_TREE_EXTENSION &&
2991
0
      !drop_cache_tree && istate->cache_tree) {
2992
0
    strbuf_reset(&sb);
2993
2994
0
    cache_tree_write(&sb, istate->cache_tree);
2995
0
    err = write_index_ext_header(f, eoie_c, CACHE_EXT_TREE, sb.len) < 0;
2996
0
    hashwrite(f, sb.buf, sb.len);
2997
0
    if (err) {
2998
0
      ret = -1;
2999
0
      goto out;
3000
0
    }
3001
0
  }
3002
0
  if (write_extensions & WRITE_RESOLVE_UNDO_EXTENSION &&
3003
0
      istate->resolve_undo) {
3004
0
    strbuf_reset(&sb);
3005
3006
0
    resolve_undo_write(&sb, istate->resolve_undo, the_hash_algo);
3007
0
    err = write_index_ext_header(f, eoie_c, CACHE_EXT_RESOLVE_UNDO,
3008
0
               sb.len) < 0;
3009
0
    hashwrite(f, sb.buf, sb.len);
3010
0
    if (err) {
3011
0
      ret = -1;
3012
0
      goto out;
3013
0
    }
3014
0
  }
3015
0
  if (write_extensions & WRITE_UNTRACKED_CACHE_EXTENSION &&
3016
0
      istate->untracked) {
3017
0
    strbuf_reset(&sb);
3018
3019
0
    write_untracked_extension(&sb, istate->untracked);
3020
0
    err = write_index_ext_header(f, eoie_c, CACHE_EXT_UNTRACKED,
3021
0
               sb.len) < 0;
3022
0
    hashwrite(f, sb.buf, sb.len);
3023
0
    if (err) {
3024
0
      ret = -1;
3025
0
      goto out;
3026
0
    }
3027
0
  }
3028
0
  if (write_extensions & WRITE_FSMONITOR_EXTENSION &&
3029
0
      istate->fsmonitor_last_update) {
3030
0
    strbuf_reset(&sb);
3031
3032
0
    write_fsmonitor_extension(&sb, istate);
3033
0
    err = write_index_ext_header(f, eoie_c, CACHE_EXT_FSMONITOR, sb.len) < 0;
3034
0
    hashwrite(f, sb.buf, sb.len);
3035
0
    if (err) {
3036
0
      ret = -1;
3037
0
      goto out;
3038
0
    }
3039
0
  }
3040
0
  if (istate->sparse_index) {
3041
0
    if (write_index_ext_header(f, eoie_c, CACHE_EXT_SPARSE_DIRECTORIES, 0) < 0) {
3042
0
      ret = -1;
3043
0
      goto out;
3044
0
    }
3045
0
  }
3046
3047
  /*
3048
   * CACHE_EXT_ENDOFINDEXENTRIES must be written as the last entry before the SHA1
3049
   * so that it can be found and processed before all the index entries are
3050
   * read.  Write it out regardless of the strip_extensions parameter as we need it
3051
   * when loading the shared index.
3052
   */
3053
0
  if (eoie_c) {
3054
0
    strbuf_reset(&sb);
3055
3056
0
    write_eoie_extension(&sb, eoie_c, offset);
3057
0
    err = write_index_ext_header(f, NULL, CACHE_EXT_ENDOFINDEXENTRIES, sb.len) < 0;
3058
0
    hashwrite(f, sb.buf, sb.len);
3059
0
    if (err) {
3060
0
      ret = -1;
3061
0
      goto out;
3062
0
    }
3063
0
  }
3064
3065
0
  csum_fsync_flag = 0;
3066
0
  if (!alternate_index_output && (flags & COMMIT_LOCK))
3067
0
    csum_fsync_flag = CSUM_FSYNC;
3068
3069
0
  finalize_hashfile(f, istate->oid.hash, FSYNC_COMPONENT_INDEX,
3070
0
        CSUM_HASH_IN_STREAM | csum_fsync_flag);
3071
0
  f = NULL;
3072
3073
0
  if (close_tempfile_gently(tempfile)) {
3074
0
    ret = error(_("could not close '%s'"), get_tempfile_path(tempfile));
3075
0
    goto out;
3076
0
  }
3077
0
  if (stat(get_tempfile_path(tempfile), &st)) {
3078
0
    ret = -1;
3079
0
    goto out;
3080
0
  }
3081
0
  istate->timestamp.sec = (unsigned int)st.st_mtime;
3082
0
  istate->timestamp.nsec = ST_MTIME_NSEC(st);
3083
0
  trace_performance_since(start, "write index, changed mask = %x", istate->cache_changed);
3084
3085
  /*
3086
   * TODO trace2: replace "the_repository" with the actual repo instance
3087
   * that is associated with the given "istate".
3088
   */
3089
0
  trace2_data_intmax("index", the_repository, "write/version",
3090
0
         istate->version);
3091
0
  trace2_data_intmax("index", the_repository, "write/cache_nr",
3092
0
         istate->cache_nr);
3093
3094
0
  ret = 0;
3095
3096
0
out:
3097
0
  if (f)
3098
0
    free_hashfile(f);
3099
0
  strbuf_release(&sb);
3100
0
  free(eoie_c);
3101
0
  free(ieot);
3102
0
  return ret;
3103
0
}
3104
3105
void set_alternate_index_output(const char *name)
3106
0
{
3107
0
  alternate_index_output = name;
3108
0
}
3109
3110
static int commit_locked_index(struct lock_file *lk)
3111
0
{
3112
0
  if (alternate_index_output)
3113
0
    return commit_lock_file_to(lk, alternate_index_output);
3114
0
  else
3115
0
    return commit_lock_file(lk);
3116
0
}
3117
3118
static int do_write_locked_index(struct index_state *istate,
3119
         struct lock_file *lock,
3120
         unsigned flags,
3121
         enum write_extensions write_extensions)
3122
0
{
3123
0
  int ret;
3124
0
  int was_full = istate->sparse_index == INDEX_EXPANDED;
3125
3126
0
  ret = convert_to_sparse(istate, 0);
3127
3128
0
  if (ret) {
3129
0
    warning(_("failed to convert to a sparse-index"));
3130
0
    return ret;
3131
0
  }
3132
3133
  /*
3134
   * TODO trace2: replace "the_repository" with the actual repo instance
3135
   * that is associated with the given "istate".
3136
   */
3137
0
  trace2_region_enter_printf("index", "do_write_index", the_repository,
3138
0
           "%s", get_lock_file_path(lock));
3139
0
  ret = do_write_index(istate, lock->tempfile, write_extensions, flags);
3140
0
  trace2_region_leave_printf("index", "do_write_index", the_repository,
3141
0
           "%s", get_lock_file_path(lock));
3142
3143
0
  if (was_full)
3144
0
    ensure_full_index(istate);
3145
3146
0
  if (ret)
3147
0
    return ret;
3148
0
  if (flags & COMMIT_LOCK)
3149
0
    ret = commit_locked_index(lock);
3150
0
  else
3151
0
    ret = close_lock_file_gently(lock);
3152
3153
0
  run_hooks_l(the_repository, "post-index-change",
3154
0
        istate->updated_workdir ? "1" : "0",
3155
0
        istate->updated_skipworktree ? "1" : "0", NULL);
3156
0
  istate->updated_workdir = 0;
3157
0
  istate->updated_skipworktree = 0;
3158
3159
0
  return ret;
3160
0
}
3161
3162
static int write_split_index(struct index_state *istate,
3163
           struct lock_file *lock,
3164
           unsigned flags)
3165
0
{
3166
0
  int ret;
3167
0
  prepare_to_write_split_index(istate);
3168
0
  ret = do_write_locked_index(istate, lock, flags, WRITE_ALL_EXTENSIONS);
3169
0
  finish_writing_split_index(istate);
3170
0
  return ret;
3171
0
}
3172
3173
static unsigned long get_shared_index_expire_date(void)
3174
0
{
3175
0
  static unsigned long shared_index_expire_date;
3176
0
  static int shared_index_expire_date_prepared;
3177
3178
0
  if (!shared_index_expire_date_prepared) {
3179
0
    const char *shared_index_expire = "2.weeks.ago";
3180
0
    char *value = NULL;
3181
3182
0
    repo_config_get_expiry(the_repository, "splitindex.sharedindexexpire",
3183
0
               &value);
3184
0
    if (value)
3185
0
      shared_index_expire = value;
3186
3187
0
    shared_index_expire_date = approxidate(shared_index_expire);
3188
0
    shared_index_expire_date_prepared = 1;
3189
3190
0
    free(value);
3191
0
  }
3192
3193
0
  return shared_index_expire_date;
3194
0
}
3195
3196
static int should_delete_shared_index(const char *shared_index_path)
3197
0
{
3198
0
  struct stat st;
3199
0
  unsigned long expiration;
3200
3201
  /* Check timestamp */
3202
0
  expiration = get_shared_index_expire_date();
3203
0
  if (!expiration)
3204
0
    return 0;
3205
0
  if (stat(shared_index_path, &st))
3206
0
    return error_errno(_("could not stat '%s'"), shared_index_path);
3207
0
  if (st.st_mtime > expiration)
3208
0
    return 0;
3209
3210
0
  return 1;
3211
0
}
3212
3213
static int clean_shared_index_files(const char *current_hex)
3214
0
{
3215
0
  struct dirent *de;
3216
0
  DIR *dir = opendir(repo_get_git_dir(the_repository));
3217
3218
0
  if (!dir)
3219
0
    return error_errno(_("unable to open git dir: %s"),
3220
0
           repo_get_git_dir(the_repository));
3221
3222
0
  while ((de = readdir(dir)) != NULL) {
3223
0
    const char *sha1_hex;
3224
0
    char *shared_index_path;
3225
0
    if (!skip_prefix(de->d_name, "sharedindex.", &sha1_hex))
3226
0
      continue;
3227
0
    if (!strcmp(sha1_hex, current_hex))
3228
0
      continue;
3229
3230
0
    shared_index_path = repo_git_path(the_repository, "%s", de->d_name);
3231
0
    if (should_delete_shared_index(shared_index_path) > 0 &&
3232
0
        unlink(shared_index_path))
3233
0
      warning_errno(_("unable to unlink: %s"), shared_index_path);
3234
3235
0
    free(shared_index_path);
3236
0
  }
3237
0
  closedir(dir);
3238
3239
0
  return 0;
3240
0
}
3241
3242
static int write_shared_index(struct index_state *istate,
3243
            struct tempfile **temp, unsigned flags)
3244
0
{
3245
0
  struct split_index *si = istate->split_index;
3246
0
  int ret, was_full = !istate->sparse_index;
3247
0
  char *path;
3248
3249
0
  move_cache_to_base_index(istate);
3250
0
  convert_to_sparse(istate, 0);
3251
3252
0
  trace2_region_enter_printf("index", "shared/do_write_index",
3253
0
           the_repository, "%s", get_tempfile_path(*temp));
3254
0
  ret = do_write_index(si->base, *temp, WRITE_NO_EXTENSION, flags);
3255
0
  trace2_region_leave_printf("index", "shared/do_write_index",
3256
0
           the_repository, "%s", get_tempfile_path(*temp));
3257
3258
0
  if (was_full)
3259
0
    ensure_full_index(istate);
3260
3261
0
  if (ret)
3262
0
    return ret;
3263
0
  ret = adjust_shared_perm(the_repository, get_tempfile_path(*temp));
3264
0
  if (ret) {
3265
0
    error(_("cannot fix permission bits on '%s'"), get_tempfile_path(*temp));
3266
0
    return ret;
3267
0
  }
3268
3269
0
  path = repo_git_path(the_repository, "sharedindex.%s", oid_to_hex(&si->base->oid));
3270
0
  ret = rename_tempfile(temp, path);
3271
0
  if (!ret) {
3272
0
    oidcpy(&si->base_oid, &si->base->oid);
3273
0
    clean_shared_index_files(oid_to_hex(&si->base->oid));
3274
0
  }
3275
3276
0
  free(path);
3277
0
  return ret;
3278
0
}
3279
3280
static const int default_max_percent_split_change = 20;
3281
3282
static int too_many_not_shared_entries(struct index_state *istate)
3283
0
{
3284
0
  int i, not_shared = 0;
3285
0
  int max_split = repo_config_get_max_percent_split_change(the_repository);
3286
3287
0
  switch (max_split) {
3288
0
  case -1:
3289
    /* not or badly configured: use the default value */
3290
0
    max_split = default_max_percent_split_change;
3291
0
    break;
3292
0
  case 0:
3293
0
    return 1; /* 0% means always write a new shared index */
3294
0
  case 100:
3295
0
    return 0; /* 100% means never write a new shared index */
3296
0
  default:
3297
0
    break; /* just use the configured value */
3298
0
  }
3299
3300
  /* Count not shared entries */
3301
0
  for (i = 0; i < istate->cache_nr; i++) {
3302
0
    struct cache_entry *ce = istate->cache[i];
3303
0
    if (!ce->index)
3304
0
      not_shared++;
3305
0
  }
3306
3307
0
  return (int64_t)istate->cache_nr * max_split < (int64_t)not_shared * 100;
3308
0
}
3309
3310
int write_locked_index(struct index_state *istate, struct lock_file *lock,
3311
           unsigned flags)
3312
0
{
3313
0
  int new_shared_index, ret, test_split_index_env;
3314
0
  struct split_index *si = istate->split_index;
3315
3316
0
  if (git_env_bool("GIT_TEST_CHECK_CACHE_TREE", 0) &&
3317
0
      cache_tree_verify(the_repository, istate) < 0)
3318
0
    return -1;
3319
3320
0
  if ((flags & SKIP_IF_UNCHANGED) && !istate->cache_changed) {
3321
0
    if (flags & COMMIT_LOCK)
3322
0
      rollback_lock_file(lock);
3323
0
    return 0;
3324
0
  }
3325
3326
0
  if (istate->fsmonitor_last_update)
3327
0
    fill_fsmonitor_bitmap(istate);
3328
3329
0
  test_split_index_env = git_env_bool("GIT_TEST_SPLIT_INDEX", 0);
3330
3331
0
  if ((!si && !test_split_index_env) ||
3332
0
      alternate_index_output ||
3333
0
      (istate->cache_changed & ~EXTMASK)) {
3334
0
    ret = do_write_locked_index(istate, lock, flags,
3335
0
              ~WRITE_SPLIT_INDEX_EXTENSION);
3336
0
    goto out;
3337
0
  }
3338
3339
0
  if (test_split_index_env) {
3340
0
    if (!si) {
3341
0
      si = init_split_index(istate);
3342
0
      istate->cache_changed |= SPLIT_INDEX_ORDERED;
3343
0
    } else {
3344
0
      int v = si->base_oid.hash[0];
3345
0
      if ((v & 15) < 6)
3346
0
        istate->cache_changed |= SPLIT_INDEX_ORDERED;
3347
0
    }
3348
0
  }
3349
0
  if (too_many_not_shared_entries(istate))
3350
0
    istate->cache_changed |= SPLIT_INDEX_ORDERED;
3351
3352
0
  new_shared_index = istate->cache_changed & SPLIT_INDEX_ORDERED;
3353
3354
0
  if (new_shared_index) {
3355
0
    struct tempfile *temp;
3356
0
    int saved_errno;
3357
0
    char *path;
3358
3359
    /* Same initial permissions as the main .git/index file */
3360
0
    path = repo_git_path(the_repository, "sharedindex_XXXXXX");
3361
0
    temp = mks_tempfile_sm(path, 0, 0666);
3362
0
    free(path);
3363
0
    if (!temp) {
3364
0
      ret = do_write_locked_index(istate, lock, flags,
3365
0
                ~WRITE_SPLIT_INDEX_EXTENSION);
3366
0
      goto out;
3367
0
    }
3368
0
    ret = write_shared_index(istate, &temp, flags);
3369
3370
0
    saved_errno = errno;
3371
0
    if (is_tempfile_active(temp))
3372
0
      delete_tempfile(&temp);
3373
0
    errno = saved_errno;
3374
3375
0
    if (ret)
3376
0
      goto out;
3377
0
  }
3378
3379
0
  ret = write_split_index(istate, lock, flags);
3380
3381
  /* Freshen the shared index only if the split-index was written */
3382
0
  if (!ret && !new_shared_index && !is_null_oid(&si->base_oid)) {
3383
0
    char *shared_index = repo_git_path(the_repository, "sharedindex.%s",
3384
0
               oid_to_hex(&si->base_oid));
3385
0
    freshen_shared_index(shared_index, 1);
3386
0
    free(shared_index);
3387
0
  }
3388
3389
0
out:
3390
0
  if (flags & COMMIT_LOCK)
3391
0
    rollback_lock_file(lock);
3392
0
  return ret;
3393
0
}
3394
3395
/*
3396
 * Read the index file that is potentially unmerged into given
3397
 * index_state, dropping any unmerged entries to stage #0 (potentially
3398
 * resulting in a path appearing as both a file and a directory in the
3399
 * index; the caller is responsible to clear out the extra entries
3400
 * before writing the index to a tree).  Returns true if the index is
3401
 * unmerged.  Callers who want to refuse to work from an unmerged
3402
 * state can call this and check its return value, instead of calling
3403
 * read_cache().
3404
 */
3405
int repo_read_index_unmerged(struct repository *repo)
3406
0
{
3407
0
  struct index_state *istate;
3408
0
  int i;
3409
0
  int unmerged = 0;
3410
3411
0
  repo_read_index(repo);
3412
0
  istate = repo->index;
3413
0
  for (i = 0; i < istate->cache_nr; i++) {
3414
0
    struct cache_entry *ce = istate->cache[i];
3415
0
    struct cache_entry *new_ce;
3416
0
    int len;
3417
3418
0
    if (!ce_stage(ce))
3419
0
      continue;
3420
0
    unmerged = 1;
3421
0
    len = ce_namelen(ce);
3422
0
    new_ce = make_empty_cache_entry(istate, len);
3423
0
    memcpy(new_ce->name, ce->name, len);
3424
0
    new_ce->ce_flags = create_ce_flags(0) | CE_CONFLICTED;
3425
0
    new_ce->ce_namelen = len;
3426
0
    new_ce->ce_mode = ce->ce_mode;
3427
0
    if (add_index_entry(istate, new_ce, ADD_CACHE_SKIP_DFCHECK))
3428
0
      return error(_("%s: cannot drop to stage #0"),
3429
0
             new_ce->name);
3430
0
  }
3431
0
  return unmerged;
3432
0
}
3433
3434
/*
3435
 * Returns 1 if the path is an "other" path with respect to
3436
 * the index; that is, the path is not mentioned in the index at all,
3437
 * either as a file, a directory with some files in the index,
3438
 * or as an unmerged entry.
3439
 *
3440
 * We helpfully remove a trailing "/" from directories so that
3441
 * the output of read_directory can be used as-is.
3442
 */
3443
int index_name_is_other(struct index_state *istate, const char *name,
3444
      int namelen)
3445
0
{
3446
0
  int pos;
3447
0
  if (namelen && name[namelen - 1] == '/')
3448
0
    namelen--;
3449
0
  pos = index_name_pos(istate, name, namelen);
3450
0
  if (0 <= pos)
3451
0
    return 0; /* exact match */
3452
0
  pos = -pos - 1;
3453
0
  if (pos < istate->cache_nr) {
3454
0
    struct cache_entry *ce = istate->cache[pos];
3455
0
    if (ce_namelen(ce) == namelen &&
3456
0
        !memcmp(ce->name, name, namelen))
3457
0
      return 0; /* Yup, this one exists unmerged */
3458
0
  }
3459
0
  return 1;
3460
0
}
3461
3462
void *read_blob_data_from_index(struct index_state *istate,
3463
        const char *path, unsigned long *size)
3464
0
{
3465
0
  int pos, len;
3466
0
  unsigned long sz;
3467
0
  enum object_type type;
3468
0
  void *data;
3469
3470
0
  len = strlen(path);
3471
0
  pos = index_name_pos(istate, path, len);
3472
0
  if (pos < 0) {
3473
    /*
3474
     * We might be in the middle of a merge, in which
3475
     * case we would read stage #2 (ours).
3476
     */
3477
0
    int i;
3478
0
    for (i = -pos - 1;
3479
0
         (pos < 0 && i < istate->cache_nr &&
3480
0
          !strcmp(istate->cache[i]->name, path));
3481
0
         i++)
3482
0
      if (ce_stage(istate->cache[i]) == 2)
3483
0
        pos = i;
3484
0
  }
3485
0
  if (pos < 0)
3486
0
    return NULL;
3487
0
  data = odb_read_object(the_repository->objects, &istate->cache[pos]->oid,
3488
0
             &type, &sz);
3489
0
  if (!data || type != OBJ_BLOB) {
3490
0
    free(data);
3491
0
    return NULL;
3492
0
  }
3493
0
  if (size)
3494
0
    *size = sz;
3495
0
  return data;
3496
0
}
3497
3498
void move_index_extensions(struct index_state *dst, struct index_state *src)
3499
0
{
3500
0
  dst->untracked = src->untracked;
3501
0
  src->untracked = NULL;
3502
0
  dst->cache_tree = src->cache_tree;
3503
0
  src->cache_tree = NULL;
3504
0
}
3505
3506
struct cache_entry *dup_cache_entry(const struct cache_entry *ce,
3507
            struct index_state *istate)
3508
0
{
3509
0
  unsigned int size = ce_size(ce);
3510
0
  int mem_pool_allocated;
3511
0
  struct cache_entry *new_entry = make_empty_cache_entry(istate, ce_namelen(ce));
3512
0
  mem_pool_allocated = new_entry->mem_pool_allocated;
3513
3514
0
  memcpy(new_entry, ce, size);
3515
0
  new_entry->mem_pool_allocated = mem_pool_allocated;
3516
0
  return new_entry;
3517
0
}
3518
3519
void discard_cache_entry(struct cache_entry *ce)
3520
0
{
3521
0
  if (ce && should_validate_cache_entries())
3522
0
    memset(ce, 0xCD, cache_entry_size(ce->ce_namelen));
3523
3524
0
  if (ce && ce->mem_pool_allocated)
3525
0
    return;
3526
3527
0
  free(ce);
3528
0
}
3529
3530
int should_validate_cache_entries(void)
3531
0
{
3532
0
  static int validate_index_cache_entries = -1;
3533
3534
0
  if (validate_index_cache_entries < 0) {
3535
0
    if (getenv("GIT_TEST_VALIDATE_INDEX_CACHE_ENTRIES"))
3536
0
      validate_index_cache_entries = 1;
3537
0
    else
3538
0
      validate_index_cache_entries = 0;
3539
0
  }
3540
3541
0
  return validate_index_cache_entries;
3542
0
}
3543
3544
0
#define EOIE_SIZE (4 + GIT_SHA1_RAWSZ) /* <4-byte offset> + <20-byte hash> */
3545
0
#define EOIE_SIZE_WITH_HEADER (4 + 4 + EOIE_SIZE) /* <4-byte signature> + <4-byte length> + EOIE_SIZE */
3546
3547
static size_t read_eoie_extension(const char *mmap, size_t mmap_size)
3548
0
{
3549
  /*
3550
   * The end of index entries (EOIE) extension is guaranteed to be last
3551
   * so that it can be found by scanning backwards from the EOF.
3552
   *
3553
   * "EOIE"
3554
   * <4-byte length>
3555
   * <4-byte offset>
3556
   * <20-byte hash>
3557
   */
3558
0
  const char *index, *eoie;
3559
0
  uint32_t extsize;
3560
0
  size_t offset, src_offset;
3561
0
  unsigned char hash[GIT_MAX_RAWSZ];
3562
0
  struct git_hash_ctx c;
3563
3564
  /* ensure we have an index big enough to contain an EOIE extension */
3565
0
  if (mmap_size < sizeof(struct cache_header) + EOIE_SIZE_WITH_HEADER + the_hash_algo->rawsz)
3566
0
    return 0;
3567
3568
  /* validate the extension signature */
3569
0
  index = eoie = mmap + mmap_size - EOIE_SIZE_WITH_HEADER - the_hash_algo->rawsz;
3570
0
  if (CACHE_EXT(index) != CACHE_EXT_ENDOFINDEXENTRIES)
3571
0
    return 0;
3572
0
  index += sizeof(uint32_t);
3573
3574
  /* validate the extension size */
3575
0
  extsize = get_be32(index);
3576
0
  if (extsize != EOIE_SIZE)
3577
0
    return 0;
3578
0
  index += sizeof(uint32_t);
3579
3580
  /*
3581
   * Validate the offset we're going to look for the first extension
3582
   * signature is after the index header and before the eoie extension.
3583
   */
3584
0
  offset = get_be32(index);
3585
0
  if (mmap + offset < mmap + sizeof(struct cache_header))
3586
0
    return 0;
3587
0
  if (mmap + offset >= eoie)
3588
0
    return 0;
3589
0
  index += sizeof(uint32_t);
3590
3591
  /*
3592
   * The hash is computed over extension types and their sizes (but not
3593
   * their contents).  E.g. if we have "TREE" extension that is N-bytes
3594
   * long, "REUC" extension that is M-bytes long, followed by "EOIE",
3595
   * then the hash would be:
3596
   *
3597
   * SHA-1("TREE" + <binary representation of N> +
3598
   *   "REUC" + <binary representation of M>)
3599
   */
3600
0
  src_offset = offset;
3601
0
  the_hash_algo->init_fn(&c);
3602
0
  while (src_offset < mmap_size - the_hash_algo->rawsz - EOIE_SIZE_WITH_HEADER) {
3603
    /* After an array of active_nr index entries,
3604
     * there can be arbitrary number of extended
3605
     * sections, each of which is prefixed with
3606
     * extension name (4-byte) and section length
3607
     * in 4-byte network byte order.
3608
     */
3609
0
    uint32_t extsize;
3610
0
    memcpy(&extsize, mmap + src_offset + 4, 4);
3611
0
    extsize = ntohl(extsize);
3612
3613
    /* verify the extension size isn't so large it will wrap around */
3614
0
    if (src_offset + 8 + extsize < src_offset)
3615
0
      return 0;
3616
3617
0
    git_hash_update(&c, mmap + src_offset, 8);
3618
3619
0
    src_offset += 8;
3620
0
    src_offset += extsize;
3621
0
  }
3622
0
  git_hash_final(hash, &c);
3623
0
  if (!hasheq(hash, (const unsigned char *)index, the_repository->hash_algo))
3624
0
    return 0;
3625
3626
  /* Validate that the extension offsets returned us back to the eoie extension. */
3627
0
  if (src_offset != mmap_size - the_hash_algo->rawsz - EOIE_SIZE_WITH_HEADER)
3628
0
    return 0;
3629
3630
0
  return offset;
3631
0
}
3632
3633
static void write_eoie_extension(struct strbuf *sb, struct git_hash_ctx *eoie_context, size_t offset)
3634
0
{
3635
0
  uint32_t buffer;
3636
0
  unsigned char hash[GIT_MAX_RAWSZ];
3637
3638
  /* offset */
3639
0
  put_be32(&buffer, offset);
3640
0
  strbuf_add(sb, &buffer, sizeof(uint32_t));
3641
3642
  /* hash */
3643
0
  git_hash_final(hash, eoie_context);
3644
0
  strbuf_add(sb, hash, the_hash_algo->rawsz);
3645
0
}
3646
3647
0
#define IEOT_VERSION  (1)
3648
3649
static struct index_entry_offset_table *read_ieot_extension(const char *mmap, size_t mmap_size, size_t offset)
3650
0
{
3651
0
  const char *index = NULL;
3652
0
  uint32_t extsize, ext_version;
3653
0
  struct index_entry_offset_table *ieot;
3654
0
  int i, nr;
3655
3656
  /* find the IEOT extension */
3657
0
  if (!offset)
3658
0
    return NULL;
3659
0
  while (offset <= mmap_size - the_hash_algo->rawsz - 8) {
3660
0
    extsize = get_be32(mmap + offset + 4);
3661
0
    if (CACHE_EXT((mmap + offset)) == CACHE_EXT_INDEXENTRYOFFSETTABLE) {
3662
0
      index = mmap + offset + 4 + 4;
3663
0
      break;
3664
0
    }
3665
0
    offset += 8;
3666
0
    offset += extsize;
3667
0
  }
3668
0
  if (!index)
3669
0
    return NULL;
3670
3671
  /* validate the version is IEOT_VERSION */
3672
0
  ext_version = get_be32(index);
3673
0
  if (ext_version != IEOT_VERSION) {
3674
0
    error("invalid IEOT version %d", ext_version);
3675
0
    return NULL;
3676
0
  }
3677
0
  index += sizeof(uint32_t);
3678
3679
  /* extension size - version bytes / bytes per entry */
3680
0
  nr = (extsize - sizeof(uint32_t)) / (sizeof(uint32_t) + sizeof(uint32_t));
3681
0
  if (!nr) {
3682
0
    error("invalid number of IEOT entries %d", nr);
3683
0
    return NULL;
3684
0
  }
3685
0
  ieot = xmalloc(sizeof(struct index_entry_offset_table)
3686
0
           + (nr * sizeof(struct index_entry_offset)));
3687
0
  ieot->nr = nr;
3688
0
  for (i = 0; i < nr; i++) {
3689
0
    ieot->entries[i].offset = get_be32(index);
3690
0
    index += sizeof(uint32_t);
3691
0
    ieot->entries[i].nr = get_be32(index);
3692
0
    index += sizeof(uint32_t);
3693
0
  }
3694
3695
0
  return ieot;
3696
0
}
3697
3698
static void write_ieot_extension(struct strbuf *sb, struct index_entry_offset_table *ieot)
3699
0
{
3700
0
  uint32_t buffer;
3701
0
  int i;
3702
3703
  /* version */
3704
0
  put_be32(&buffer, IEOT_VERSION);
3705
0
  strbuf_add(sb, &buffer, sizeof(uint32_t));
3706
3707
  /* ieot */
3708
0
  for (i = 0; i < ieot->nr; i++) {
3709
3710
    /* offset */
3711
0
    put_be32(&buffer, ieot->entries[i].offset);
3712
0
    strbuf_add(sb, &buffer, sizeof(uint32_t));
3713
3714
    /* count */
3715
0
    put_be32(&buffer, ieot->entries[i].nr);
3716
0
    strbuf_add(sb, &buffer, sizeof(uint32_t));
3717
0
  }
3718
0
}
3719
3720
void prefetch_cache_entries(const struct index_state *istate,
3721
          must_prefetch_predicate must_prefetch)
3722
0
{
3723
0
  int i;
3724
0
  struct oid_array to_fetch = OID_ARRAY_INIT;
3725
3726
0
  for (i = 0; i < istate->cache_nr; i++) {
3727
0
    struct cache_entry *ce = istate->cache[i];
3728
3729
0
    if (S_ISGITLINK(ce->ce_mode) || !must_prefetch(ce))
3730
0
      continue;
3731
0
    if (!odb_read_object_info_extended(the_repository->objects,
3732
0
               &ce->oid, NULL,
3733
0
               OBJECT_INFO_FOR_PREFETCH))
3734
0
      continue;
3735
0
    oid_array_append(&to_fetch, &ce->oid);
3736
0
  }
3737
0
  promisor_remote_get_direct(the_repository,
3738
0
           to_fetch.oid, to_fetch.nr);
3739
0
  oid_array_clear(&to_fetch);
3740
0
}
3741
3742
static int read_one_entry_opt(struct index_state *istate,
3743
            const struct object_id *oid,
3744
            struct strbuf *base,
3745
            const char *pathname,
3746
            unsigned mode, int opt)
3747
0
{
3748
0
  int len;
3749
0
  struct cache_entry *ce;
3750
3751
0
  if (S_ISDIR(mode))
3752
0
    return READ_TREE_RECURSIVE;
3753
3754
0
  len = strlen(pathname);
3755
0
  ce = make_empty_cache_entry(istate, base->len + len);
3756
3757
0
  ce->ce_mode = create_ce_mode(mode);
3758
0
  ce->ce_flags = create_ce_flags(1);
3759
0
  ce->ce_namelen = base->len + len;
3760
0
  memcpy(ce->name, base->buf, base->len);
3761
0
  memcpy(ce->name + base->len, pathname, len+1);
3762
0
  oidcpy(&ce->oid, oid);
3763
0
  return add_index_entry(istate, ce, opt);
3764
0
}
3765
3766
static int read_one_entry(const struct object_id *oid, struct strbuf *base,
3767
        const char *pathname, unsigned mode,
3768
        void *context)
3769
0
{
3770
0
  struct index_state *istate = context;
3771
0
  return read_one_entry_opt(istate, oid, base, pathname,
3772
0
          mode,
3773
0
          ADD_CACHE_OK_TO_ADD|ADD_CACHE_SKIP_DFCHECK);
3774
0
}
3775
3776
/*
3777
 * This is used when the caller knows there is no existing entries at
3778
 * the stage that will conflict with the entry being added.
3779
 */
3780
static int read_one_entry_quick(const struct object_id *oid, struct strbuf *base,
3781
        const char *pathname, unsigned mode,
3782
        void *context)
3783
0
{
3784
0
  struct index_state *istate = context;
3785
0
  return read_one_entry_opt(istate, oid, base, pathname,
3786
0
          mode, ADD_CACHE_JUST_APPEND);
3787
0
}
3788
3789
/*
3790
 * Read the tree specified with --with-tree option
3791
 * (typically, HEAD) into stage #1 and then
3792
 * squash them down to stage #0.  This is used for
3793
 * --error-unmatch to list and check the path patterns
3794
 * that were given from the command line.  We are not
3795
 * going to write this index out.
3796
 */
3797
void overlay_tree_on_index(struct index_state *istate,
3798
         const char *tree_name, const char *prefix)
3799
0
{
3800
0
  struct tree *tree;
3801
0
  struct object_id oid;
3802
0
  struct pathspec pathspec;
3803
0
  struct cache_entry *last_stage0 = NULL;
3804
0
  int i;
3805
0
  read_tree_fn_t fn = NULL;
3806
0
  int err;
3807
3808
0
  if (repo_get_oid(the_repository, tree_name, &oid))
3809
0
    die("tree-ish %s not found.", tree_name);
3810
0
  tree = parse_tree_indirect(&oid);
3811
0
  if (!tree)
3812
0
    die("bad tree-ish %s", tree_name);
3813
3814
  /* Hoist the unmerged entries up to stage #3 to make room */
3815
  /* TODO: audit for interaction with sparse-index. */
3816
0
  ensure_full_index(istate);
3817
0
  for (i = 0; i < istate->cache_nr; i++) {
3818
0
    struct cache_entry *ce = istate->cache[i];
3819
0
    if (!ce_stage(ce))
3820
0
      continue;
3821
0
    ce->ce_flags |= CE_STAGEMASK;
3822
0
  }
3823
3824
0
  if (prefix) {
3825
0
    static const char *(matchbuf[1]);
3826
0
    matchbuf[0] = NULL;
3827
0
    parse_pathspec(&pathspec, PATHSPEC_ALL_MAGIC,
3828
0
             PATHSPEC_PREFER_CWD, prefix, matchbuf);
3829
0
  } else
3830
0
    memset(&pathspec, 0, sizeof(pathspec));
3831
3832
  /*
3833
   * See if we have cache entry at the stage.  If so,
3834
   * do it the original slow way, otherwise, append and then
3835
   * sort at the end.
3836
   */
3837
0
  for (i = 0; !fn && i < istate->cache_nr; i++) {
3838
0
    const struct cache_entry *ce = istate->cache[i];
3839
0
    if (ce_stage(ce) == 1)
3840
0
      fn = read_one_entry;
3841
0
  }
3842
3843
0
  if (!fn)
3844
0
    fn = read_one_entry_quick;
3845
0
  err = read_tree(the_repository, tree, &pathspec, fn, istate);
3846
0
  clear_pathspec(&pathspec);
3847
0
  if (err)
3848
0
    die("unable to read tree entries %s", tree_name);
3849
3850
  /*
3851
   * Sort the cache entry -- we need to nuke the cache tree, though.
3852
   */
3853
0
  if (fn == read_one_entry_quick) {
3854
0
    cache_tree_free(&istate->cache_tree);
3855
0
    QSORT(istate->cache, istate->cache_nr, cmp_cache_name_compare);
3856
0
  }
3857
3858
0
  for (i = 0; i < istate->cache_nr; i++) {
3859
0
    struct cache_entry *ce = istate->cache[i];
3860
0
    switch (ce_stage(ce)) {
3861
0
    case 0:
3862
0
      last_stage0 = ce;
3863
      /* fallthru */
3864
0
    default:
3865
0
      continue;
3866
0
    case 1:
3867
      /*
3868
       * If there is stage #0 entry for this, we do not
3869
       * need to show it.  We use CE_UPDATE bit to mark
3870
       * such an entry.
3871
       */
3872
0
      if (last_stage0 &&
3873
0
          !strcmp(last_stage0->name, ce->name))
3874
0
        ce->ce_flags |= CE_UPDATE;
3875
0
    }
3876
0
  }
3877
0
}
3878
3879
struct update_callback_data {
3880
  struct index_state *index;
3881
  int include_sparse;
3882
  int flags;
3883
  int add_errors;
3884
};
3885
3886
static int fix_unmerged_status(struct diff_filepair *p,
3887
             struct update_callback_data *data)
3888
0
{
3889
0
  if (p->status != DIFF_STATUS_UNMERGED)
3890
0
    return p->status;
3891
0
  if (!(data->flags & ADD_CACHE_IGNORE_REMOVAL) && !p->two->mode)
3892
    /*
3893
     * This is not an explicit add request, and the
3894
     * path is missing from the working tree (deleted)
3895
     */
3896
0
    return DIFF_STATUS_DELETED;
3897
0
  else
3898
    /*
3899
     * Either an explicit add request, or path exists
3900
     * in the working tree.  An attempt to explicitly
3901
     * add a path that does not exist in the working tree
3902
     * will be caught as an error by the caller immediately.
3903
     */
3904
0
    return DIFF_STATUS_MODIFIED;
3905
0
}
3906
3907
static void update_callback(struct diff_queue_struct *q,
3908
          struct diff_options *opt UNUSED, void *cbdata)
3909
0
{
3910
0
  int i;
3911
0
  struct update_callback_data *data = cbdata;
3912
3913
0
  for (i = 0; i < q->nr; i++) {
3914
0
    struct diff_filepair *p = q->queue[i];
3915
0
    const char *path = p->one->path;
3916
3917
0
    if (!data->include_sparse &&
3918
0
        !path_in_sparse_checkout(path, data->index))
3919
0
      continue;
3920
3921
0
    switch (fix_unmerged_status(p, data)) {
3922
0
    default:
3923
0
      die(_("unexpected diff status %c"), p->status);
3924
0
    case DIFF_STATUS_MODIFIED:
3925
0
    case DIFF_STATUS_TYPE_CHANGED:
3926
0
      if (add_file_to_index(data->index, path, data->flags)) {
3927
0
        if (!(data->flags & ADD_CACHE_IGNORE_ERRORS))
3928
0
          die(_("updating files failed"));
3929
0
        data->add_errors++;
3930
0
      }
3931
0
      break;
3932
0
    case DIFF_STATUS_DELETED:
3933
0
      if (data->flags & ADD_CACHE_IGNORE_REMOVAL)
3934
0
        break;
3935
0
      if (!(data->flags & ADD_CACHE_PRETEND))
3936
0
        remove_file_from_index(data->index, path);
3937
0
      if (data->flags & (ADD_CACHE_PRETEND|ADD_CACHE_VERBOSE))
3938
0
        printf(_("remove '%s'\n"), path);
3939
0
      break;
3940
0
    }
3941
0
  }
3942
0
}
3943
3944
int add_files_to_cache(struct repository *repo, const char *prefix,
3945
           const struct pathspec *pathspec, char *ps_matched,
3946
           int include_sparse, int flags)
3947
0
{
3948
0
  struct odb_transaction *transaction;
3949
0
  struct update_callback_data data;
3950
0
  struct rev_info rev;
3951
3952
0
  memset(&data, 0, sizeof(data));
3953
0
  data.index = repo->index;
3954
0
  data.include_sparse = include_sparse;
3955
0
  data.flags = flags;
3956
3957
0
  repo_init_revisions(repo, &rev, prefix);
3958
0
  setup_revisions(0, NULL, &rev, NULL);
3959
0
  if (pathspec) {
3960
0
    copy_pathspec(&rev.prune_data, pathspec);
3961
0
    rev.ps_matched = ps_matched;
3962
0
  }
3963
0
  rev.diffopt.output_format = DIFF_FORMAT_CALLBACK;
3964
0
  rev.diffopt.format_callback = update_callback;
3965
0
  rev.diffopt.format_callback_data = &data;
3966
0
  rev.diffopt.flags.override_submodule_config = 1;
3967
0
  rev.max_count = 0; /* do not compare unmerged paths with stage #2 */
3968
3969
  /*
3970
   * Use an ODB transaction to optimize adding multiple objects.
3971
   * This function is invoked from commands other than 'add', which
3972
   * may not have their own transaction active.
3973
   */
3974
0
  transaction = odb_transaction_begin(repo->objects);
3975
0
  run_diff_files(&rev, DIFF_RACY_IS_MODIFIED);
3976
0
  odb_transaction_commit(transaction);
3977
3978
0
  release_revisions(&rev);
3979
0
  return !!data.add_errors;
3980
0
}