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dir: add commentary explaining match_pathspec_item's return value
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1 /*
2 * This handles recursive filename detection with exclude
3 * files, index knowledge etc..
4 *
5 * See Documentation/technical/api-directory-listing.txt
6 *
7 * Copyright (C) Linus Torvalds, 2005-2006
8 * Junio Hamano, 2005-2006
9 */
10 #include "cache.h"
11 #include "config.h"
12 #include "dir.h"
13 #include "object-store.h"
14 #include "attr.h"
15 #include "refs.h"
16 #include "wildmatch.h"
17 #include "pathspec.h"
18 #include "utf8.h"
19 #include "varint.h"
20 #include "ewah/ewok.h"
21 #include "fsmonitor.h"
22 #include "submodule-config.h"
23
24 /*
25 * Tells read_directory_recursive how a file or directory should be treated.
26 * Values are ordered by significance, e.g. if a directory contains both
27 * excluded and untracked files, it is listed as untracked because
28 * path_untracked > path_excluded.
29 */
30 enum path_treatment {
31 path_none = 0,
32 path_recurse,
33 path_excluded,
34 path_untracked
35 };
36
37 /*
38 * Support data structure for our opendir/readdir/closedir wrappers
39 */
40 struct cached_dir {
41 DIR *fdir;
42 struct untracked_cache_dir *untracked;
43 int nr_files;
44 int nr_dirs;
45
46 struct dirent *de;
47 const char *file;
48 struct untracked_cache_dir *ucd;
49 };
50
51 static enum path_treatment read_directory_recursive(struct dir_struct *dir,
52 struct index_state *istate, const char *path, int len,
53 struct untracked_cache_dir *untracked,
54 int check_only, int stop_at_first_file, const struct pathspec *pathspec);
55 static int get_dtype(struct dirent *de, struct index_state *istate,
56 const char *path, int len);
57
58 int count_slashes(const char *s)
59 {
60 int cnt = 0;
61 while (*s)
62 if (*s++ == '/')
63 cnt++;
64 return cnt;
65 }
66
67 int fspathcmp(const char *a, const char *b)
68 {
69 return ignore_case ? strcasecmp(a, b) : strcmp(a, b);
70 }
71
72 int fspathncmp(const char *a, const char *b, size_t count)
73 {
74 return ignore_case ? strncasecmp(a, b, count) : strncmp(a, b, count);
75 }
76
77 int git_fnmatch(const struct pathspec_item *item,
78 const char *pattern, const char *string,
79 int prefix)
80 {
81 if (prefix > 0) {
82 if (ps_strncmp(item, pattern, string, prefix))
83 return WM_NOMATCH;
84 pattern += prefix;
85 string += prefix;
86 }
87 if (item->flags & PATHSPEC_ONESTAR) {
88 int pattern_len = strlen(++pattern);
89 int string_len = strlen(string);
90 return string_len < pattern_len ||
91 ps_strcmp(item, pattern,
92 string + string_len - pattern_len);
93 }
94 if (item->magic & PATHSPEC_GLOB)
95 return wildmatch(pattern, string,
96 WM_PATHNAME |
97 (item->magic & PATHSPEC_ICASE ? WM_CASEFOLD : 0));
98 else
99 /* wildmatch has not learned no FNM_PATHNAME mode yet */
100 return wildmatch(pattern, string,
101 item->magic & PATHSPEC_ICASE ? WM_CASEFOLD : 0);
102 }
103
104 static int fnmatch_icase_mem(const char *pattern, int patternlen,
105 const char *string, int stringlen,
106 int flags)
107 {
108 int match_status;
109 struct strbuf pat_buf = STRBUF_INIT;
110 struct strbuf str_buf = STRBUF_INIT;
111 const char *use_pat = pattern;
112 const char *use_str = string;
113
114 if (pattern[patternlen]) {
115 strbuf_add(&pat_buf, pattern, patternlen);
116 use_pat = pat_buf.buf;
117 }
118 if (string[stringlen]) {
119 strbuf_add(&str_buf, string, stringlen);
120 use_str = str_buf.buf;
121 }
122
123 if (ignore_case)
124 flags |= WM_CASEFOLD;
125 match_status = wildmatch(use_pat, use_str, flags);
126
127 strbuf_release(&pat_buf);
128 strbuf_release(&str_buf);
129
130 return match_status;
131 }
132
133 static size_t common_prefix_len(const struct pathspec *pathspec)
134 {
135 int n;
136 size_t max = 0;
137
138 /*
139 * ":(icase)path" is treated as a pathspec full of
140 * wildcard. In other words, only prefix is considered common
141 * prefix. If the pathspec is abc/foo abc/bar, running in
142 * subdir xyz, the common prefix is still xyz, not xyz/abc as
143 * in non-:(icase).
144 */
145 GUARD_PATHSPEC(pathspec,
146 PATHSPEC_FROMTOP |
147 PATHSPEC_MAXDEPTH |
148 PATHSPEC_LITERAL |
149 PATHSPEC_GLOB |
150 PATHSPEC_ICASE |
151 PATHSPEC_EXCLUDE |
152 PATHSPEC_ATTR);
153
154 for (n = 0; n < pathspec->nr; n++) {
155 size_t i = 0, len = 0, item_len;
156 if (pathspec->items[n].magic & PATHSPEC_EXCLUDE)
157 continue;
158 if (pathspec->items[n].magic & PATHSPEC_ICASE)
159 item_len = pathspec->items[n].prefix;
160 else
161 item_len = pathspec->items[n].nowildcard_len;
162 while (i < item_len && (n == 0 || i < max)) {
163 char c = pathspec->items[n].match[i];
164 if (c != pathspec->items[0].match[i])
165 break;
166 if (c == '/')
167 len = i + 1;
168 i++;
169 }
170 if (n == 0 || len < max) {
171 max = len;
172 if (!max)
173 break;
174 }
175 }
176 return max;
177 }
178
179 /*
180 * Returns a copy of the longest leading path common among all
181 * pathspecs.
182 */
183 char *common_prefix(const struct pathspec *pathspec)
184 {
185 unsigned long len = common_prefix_len(pathspec);
186
187 return len ? xmemdupz(pathspec->items[0].match, len) : NULL;
188 }
189
190 int fill_directory(struct dir_struct *dir,
191 struct index_state *istate,
192 const struct pathspec *pathspec)
193 {
194 const char *prefix;
195 size_t prefix_len;
196
197 /*
198 * Calculate common prefix for the pathspec, and
199 * use that to optimize the directory walk
200 */
201 prefix_len = common_prefix_len(pathspec);
202 prefix = prefix_len ? pathspec->items[0].match : "";
203
204 /* Read the directory and prune it */
205 read_directory(dir, istate, prefix, prefix_len, pathspec);
206
207 return prefix_len;
208 }
209
210 int within_depth(const char *name, int namelen,
211 int depth, int max_depth)
212 {
213 const char *cp = name, *cpe = name + namelen;
214
215 while (cp < cpe) {
216 if (*cp++ != '/')
217 continue;
218 depth++;
219 if (depth > max_depth)
220 return 0;
221 }
222 return 1;
223 }
224
225 /*
226 * Read the contents of the blob with the given OID into a buffer.
227 * Append a trailing LF to the end if the last line doesn't have one.
228 *
229 * Returns:
230 * -1 when the OID is invalid or unknown or does not refer to a blob.
231 * 0 when the blob is empty.
232 * 1 along with { data, size } of the (possibly augmented) buffer
233 * when successful.
234 *
235 * Optionally updates the given oid_stat with the given OID (when valid).
236 */
237 static int do_read_blob(const struct object_id *oid, struct oid_stat *oid_stat,
238 size_t *size_out, char **data_out)
239 {
240 enum object_type type;
241 unsigned long sz;
242 char *data;
243
244 *size_out = 0;
245 *data_out = NULL;
246
247 data = read_object_file(oid, &type, &sz);
248 if (!data || type != OBJ_BLOB) {
249 free(data);
250 return -1;
251 }
252
253 if (oid_stat) {
254 memset(&oid_stat->stat, 0, sizeof(oid_stat->stat));
255 oidcpy(&oid_stat->oid, oid);
256 }
257
258 if (sz == 0) {
259 free(data);
260 return 0;
261 }
262
263 if (data[sz - 1] != '\n') {
264 data = xrealloc(data, st_add(sz, 1));
265 data[sz++] = '\n';
266 }
267
268 *size_out = xsize_t(sz);
269 *data_out = data;
270
271 return 1;
272 }
273
274 #define DO_MATCH_EXCLUDE (1<<0)
275 #define DO_MATCH_DIRECTORY (1<<1)
276 #define DO_MATCH_LEADING_PATHSPEC (1<<2)
277
278 /*
279 * Does the given pathspec match the given name? A match is found if
280 *
281 * (1) the pathspec string is leading directory of 'name' ("RECURSIVELY"), or
282 * (2) the pathspec string has a leading part matching 'name' ("LEADING"), or
283 * (3) the pathspec string is a wildcard and matches 'name' ("WILDCARD"), or
284 * (4) the pathspec string is exactly the same as 'name' ("EXACT").
285 *
286 * Return value tells which case it was (1-4), or 0 when there is no match.
287 *
288 * It may be instructive to look at a small table of concrete examples
289 * to understand the differences between 1, 2, and 4:
290 *
291 * Pathspecs
292 * | a/b | a/b/ | a/b/c
293 * ------+-----------+-----------+------------
294 * a/b | EXACT | EXACT[1] | LEADING[2]
295 * Names a/b/ | RECURSIVE | EXACT | LEADING[2]
296 * a/b/c | RECURSIVE | RECURSIVE | EXACT
297 *
298 * [1] Only if DO_MATCH_DIRECTORY is passed; otherwise, this is NOT a match.
299 * [2] Only if DO_MATCH_LEADING_PATHSPEC is passed; otherwise, not a match.
300 */
301 static int match_pathspec_item(const struct index_state *istate,
302 const struct pathspec_item *item, int prefix,
303 const char *name, int namelen, unsigned flags)
304 {
305 /* name/namelen has prefix cut off by caller */
306 const char *match = item->match + prefix;
307 int matchlen = item->len - prefix;
308
309 /*
310 * The normal call pattern is:
311 * 1. prefix = common_prefix_len(ps);
312 * 2. prune something, or fill_directory
313 * 3. match_pathspec()
314 *
315 * 'prefix' at #1 may be shorter than the command's prefix and
316 * it's ok for #2 to match extra files. Those extras will be
317 * trimmed at #3.
318 *
319 * Suppose the pathspec is 'foo' and '../bar' running from
320 * subdir 'xyz'. The common prefix at #1 will be empty, thanks
321 * to "../". We may have xyz/foo _and_ XYZ/foo after #2. The
322 * user does not want XYZ/foo, only the "foo" part should be
323 * case-insensitive. We need to filter out XYZ/foo here. In
324 * other words, we do not trust the caller on comparing the
325 * prefix part when :(icase) is involved. We do exact
326 * comparison ourselves.
327 *
328 * Normally the caller (common_prefix_len() in fact) does
329 * _exact_ matching on name[-prefix+1..-1] and we do not need
330 * to check that part. Be defensive and check it anyway, in
331 * case common_prefix_len is changed, or a new caller is
332 * introduced that does not use common_prefix_len.
333 *
334 * If the penalty turns out too high when prefix is really
335 * long, maybe change it to
336 * strncmp(match, name, item->prefix - prefix)
337 */
338 if (item->prefix && (item->magic & PATHSPEC_ICASE) &&
339 strncmp(item->match, name - prefix, item->prefix))
340 return 0;
341
342 if (item->attr_match_nr &&
343 !match_pathspec_attrs(istate, name, namelen, item))
344 return 0;
345
346 /* If the match was just the prefix, we matched */
347 if (!*match)
348 return MATCHED_RECURSIVELY;
349
350 if (matchlen <= namelen && !ps_strncmp(item, match, name, matchlen)) {
351 if (matchlen == namelen)
352 return MATCHED_EXACTLY;
353
354 if (match[matchlen-1] == '/' || name[matchlen] == '/')
355 return MATCHED_RECURSIVELY;
356 } else if ((flags & DO_MATCH_DIRECTORY) &&
357 match[matchlen - 1] == '/' &&
358 namelen == matchlen - 1 &&
359 !ps_strncmp(item, match, name, namelen))
360 return MATCHED_EXACTLY;
361
362 if (item->nowildcard_len < item->len &&
363 !git_fnmatch(item, match, name,
364 item->nowildcard_len - prefix))
365 return MATCHED_FNMATCH;
366
367 /* Perform checks to see if "name" is a leading string of the pathspec */
368 if (flags & DO_MATCH_LEADING_PATHSPEC) {
369 /* name is a literal prefix of the pathspec */
370 int offset = name[namelen-1] == '/' ? 1 : 0;
371 if ((namelen < matchlen) &&
372 (match[namelen-offset] == '/') &&
373 !ps_strncmp(item, match, name, namelen))
374 return MATCHED_RECURSIVELY_LEADING_PATHSPEC;
375
376 /* name" doesn't match up to the first wild character */
377 if (item->nowildcard_len < item->len &&
378 ps_strncmp(item, match, name,
379 item->nowildcard_len - prefix))
380 return 0;
381
382 /*
383 * Here is where we would perform a wildmatch to check if
384 * "name" can be matched as a directory (or a prefix) against
385 * the pathspec. Since wildmatch doesn't have this capability
386 * at the present we have to punt and say that it is a match,
387 * potentially returning a false positive
388 * The submodules themselves will be able to perform more
389 * accurate matching to determine if the pathspec matches.
390 */
391 return MATCHED_RECURSIVELY_LEADING_PATHSPEC;
392 }
393
394 return 0;
395 }
396
397 /*
398 * Given a name and a list of pathspecs, returns the nature of the
399 * closest (i.e. most specific) match of the name to any of the
400 * pathspecs.
401 *
402 * The caller typically calls this multiple times with the same
403 * pathspec and seen[] array but with different name/namelen
404 * (e.g. entries from the index) and is interested in seeing if and
405 * how each pathspec matches all the names it calls this function
406 * with. A mark is left in the seen[] array for each pathspec element
407 * indicating the closest type of match that element achieved, so if
408 * seen[n] remains zero after multiple invocations, that means the nth
409 * pathspec did not match any names, which could indicate that the
410 * user mistyped the nth pathspec.
411 */
412 static int do_match_pathspec(const struct index_state *istate,
413 const struct pathspec *ps,
414 const char *name, int namelen,
415 int prefix, char *seen,
416 unsigned flags)
417 {
418 int i, retval = 0, exclude = flags & DO_MATCH_EXCLUDE;
419
420 GUARD_PATHSPEC(ps,
421 PATHSPEC_FROMTOP |
422 PATHSPEC_MAXDEPTH |
423 PATHSPEC_LITERAL |
424 PATHSPEC_GLOB |
425 PATHSPEC_ICASE |
426 PATHSPEC_EXCLUDE |
427 PATHSPEC_ATTR);
428
429 if (!ps->nr) {
430 if (!ps->recursive ||
431 !(ps->magic & PATHSPEC_MAXDEPTH) ||
432 ps->max_depth == -1)
433 return MATCHED_RECURSIVELY;
434
435 if (within_depth(name, namelen, 0, ps->max_depth))
436 return MATCHED_EXACTLY;
437 else
438 return 0;
439 }
440
441 name += prefix;
442 namelen -= prefix;
443
444 for (i = ps->nr - 1; i >= 0; i--) {
445 int how;
446
447 if ((!exclude && ps->items[i].magic & PATHSPEC_EXCLUDE) ||
448 ( exclude && !(ps->items[i].magic & PATHSPEC_EXCLUDE)))
449 continue;
450
451 if (seen && seen[i] == MATCHED_EXACTLY)
452 continue;
453 /*
454 * Make exclude patterns optional and never report
455 * "pathspec ':(exclude)foo' matches no files"
456 */
457 if (seen && ps->items[i].magic & PATHSPEC_EXCLUDE)
458 seen[i] = MATCHED_FNMATCH;
459 how = match_pathspec_item(istate, ps->items+i, prefix, name,
460 namelen, flags);
461 if (ps->recursive &&
462 (ps->magic & PATHSPEC_MAXDEPTH) &&
463 ps->max_depth != -1 &&
464 how && how != MATCHED_FNMATCH) {
465 int len = ps->items[i].len;
466 if (name[len] == '/')
467 len++;
468 if (within_depth(name+len, namelen-len, 0, ps->max_depth))
469 how = MATCHED_EXACTLY;
470 else
471 how = 0;
472 }
473 if (how) {
474 if (retval < how)
475 retval = how;
476 if (seen && seen[i] < how)
477 seen[i] = how;
478 }
479 }
480 return retval;
481 }
482
483 int match_pathspec(const struct index_state *istate,
484 const struct pathspec *ps,
485 const char *name, int namelen,
486 int prefix, char *seen, int is_dir)
487 {
488 int positive, negative;
489 unsigned flags = is_dir ? DO_MATCH_DIRECTORY : 0;
490 positive = do_match_pathspec(istate, ps, name, namelen,
491 prefix, seen, flags);
492 if (!(ps->magic & PATHSPEC_EXCLUDE) || !positive)
493 return positive;
494 negative = do_match_pathspec(istate, ps, name, namelen,
495 prefix, seen,
496 flags | DO_MATCH_EXCLUDE);
497 return negative ? 0 : positive;
498 }
499
500 /**
501 * Check if a submodule is a superset of the pathspec
502 */
503 int submodule_path_match(const struct index_state *istate,
504 const struct pathspec *ps,
505 const char *submodule_name,
506 char *seen)
507 {
508 int matched = do_match_pathspec(istate, ps, submodule_name,
509 strlen(submodule_name),
510 0, seen,
511 DO_MATCH_DIRECTORY |
512 DO_MATCH_LEADING_PATHSPEC);
513 return matched;
514 }
515
516 int report_path_error(const char *ps_matched,
517 const struct pathspec *pathspec)
518 {
519 /*
520 * Make sure all pathspec matched; otherwise it is an error.
521 */
522 int num, errors = 0;
523 for (num = 0; num < pathspec->nr; num++) {
524 int other, found_dup;
525
526 if (ps_matched[num])
527 continue;
528 /*
529 * The caller might have fed identical pathspec
530 * twice. Do not barf on such a mistake.
531 * FIXME: parse_pathspec should have eliminated
532 * duplicate pathspec.
533 */
534 for (found_dup = other = 0;
535 !found_dup && other < pathspec->nr;
536 other++) {
537 if (other == num || !ps_matched[other])
538 continue;
539 if (!strcmp(pathspec->items[other].original,
540 pathspec->items[num].original))
541 /*
542 * Ok, we have a match already.
543 */
544 found_dup = 1;
545 }
546 if (found_dup)
547 continue;
548
549 error(_("pathspec '%s' did not match any file(s) known to git"),
550 pathspec->items[num].original);
551 errors++;
552 }
553 return errors;
554 }
555
556 /*
557 * Return the length of the "simple" part of a path match limiter.
558 */
559 int simple_length(const char *match)
560 {
561 int len = -1;
562
563 for (;;) {
564 unsigned char c = *match++;
565 len++;
566 if (c == '\0' || is_glob_special(c))
567 return len;
568 }
569 }
570
571 int no_wildcard(const char *string)
572 {
573 return string[simple_length(string)] == '\0';
574 }
575
576 void parse_exclude_pattern(const char **pattern,
577 int *patternlen,
578 unsigned *flags,
579 int *nowildcardlen)
580 {
581 const char *p = *pattern;
582 size_t i, len;
583
584 *flags = 0;
585 if (*p == '!') {
586 *flags |= EXC_FLAG_NEGATIVE;
587 p++;
588 }
589 len = strlen(p);
590 if (len && p[len - 1] == '/') {
591 len--;
592 *flags |= EXC_FLAG_MUSTBEDIR;
593 }
594 for (i = 0; i < len; i++) {
595 if (p[i] == '/')
596 break;
597 }
598 if (i == len)
599 *flags |= EXC_FLAG_NODIR;
600 *nowildcardlen = simple_length(p);
601 /*
602 * we should have excluded the trailing slash from 'p' too,
603 * but that's one more allocation. Instead just make sure
604 * nowildcardlen does not exceed real patternlen
605 */
606 if (*nowildcardlen > len)
607 *nowildcardlen = len;
608 if (*p == '*' && no_wildcard(p + 1))
609 *flags |= EXC_FLAG_ENDSWITH;
610 *pattern = p;
611 *patternlen = len;
612 }
613
614 void add_exclude(const char *string, const char *base,
615 int baselen, struct exclude_list *el, int srcpos)
616 {
617 struct exclude *x;
618 int patternlen;
619 unsigned flags;
620 int nowildcardlen;
621
622 parse_exclude_pattern(&string, &patternlen, &flags, &nowildcardlen);
623 if (flags & EXC_FLAG_MUSTBEDIR) {
624 FLEXPTR_ALLOC_MEM(x, pattern, string, patternlen);
625 } else {
626 x = xmalloc(sizeof(*x));
627 x->pattern = string;
628 }
629 x->patternlen = patternlen;
630 x->nowildcardlen = nowildcardlen;
631 x->base = base;
632 x->baselen = baselen;
633 x->flags = flags;
634 x->srcpos = srcpos;
635 ALLOC_GROW(el->excludes, el->nr + 1, el->alloc);
636 el->excludes[el->nr++] = x;
637 x->el = el;
638 }
639
640 static int read_skip_worktree_file_from_index(const struct index_state *istate,
641 const char *path,
642 size_t *size_out, char **data_out,
643 struct oid_stat *oid_stat)
644 {
645 int pos, len;
646
647 len = strlen(path);
648 pos = index_name_pos(istate, path, len);
649 if (pos < 0)
650 return -1;
651 if (!ce_skip_worktree(istate->cache[pos]))
652 return -1;
653
654 return do_read_blob(&istate->cache[pos]->oid, oid_stat, size_out, data_out);
655 }
656
657 /*
658 * Frees memory within el which was allocated for exclude patterns and
659 * the file buffer. Does not free el itself.
660 */
661 void clear_exclude_list(struct exclude_list *el)
662 {
663 int i;
664
665 for (i = 0; i < el->nr; i++)
666 free(el->excludes[i]);
667 free(el->excludes);
668 free(el->filebuf);
669
670 memset(el, 0, sizeof(*el));
671 }
672
673 static void trim_trailing_spaces(char *buf)
674 {
675 char *p, *last_space = NULL;
676
677 for (p = buf; *p; p++)
678 switch (*p) {
679 case ' ':
680 if (!last_space)
681 last_space = p;
682 break;
683 case '\\':
684 p++;
685 if (!*p)
686 return;
687 /* fallthrough */
688 default:
689 last_space = NULL;
690 }
691
692 if (last_space)
693 *last_space = '\0';
694 }
695
696 /*
697 * Given a subdirectory name and "dir" of the current directory,
698 * search the subdir in "dir" and return it, or create a new one if it
699 * does not exist in "dir".
700 *
701 * If "name" has the trailing slash, it'll be excluded in the search.
702 */
703 static struct untracked_cache_dir *lookup_untracked(struct untracked_cache *uc,
704 struct untracked_cache_dir *dir,
705 const char *name, int len)
706 {
707 int first, last;
708 struct untracked_cache_dir *d;
709 if (!dir)
710 return NULL;
711 if (len && name[len - 1] == '/')
712 len--;
713 first = 0;
714 last = dir->dirs_nr;
715 while (last > first) {
716 int cmp, next = first + ((last - first) >> 1);
717 d = dir->dirs[next];
718 cmp = strncmp(name, d->name, len);
719 if (!cmp && strlen(d->name) > len)
720 cmp = -1;
721 if (!cmp)
722 return d;
723 if (cmp < 0) {
724 last = next;
725 continue;
726 }
727 first = next+1;
728 }
729
730 uc->dir_created++;
731 FLEX_ALLOC_MEM(d, name, name, len);
732
733 ALLOC_GROW(dir->dirs, dir->dirs_nr + 1, dir->dirs_alloc);
734 MOVE_ARRAY(dir->dirs + first + 1, dir->dirs + first,
735 dir->dirs_nr - first);
736 dir->dirs_nr++;
737 dir->dirs[first] = d;
738 return d;
739 }
740
741 static void do_invalidate_gitignore(struct untracked_cache_dir *dir)
742 {
743 int i;
744 dir->valid = 0;
745 dir->untracked_nr = 0;
746 for (i = 0; i < dir->dirs_nr; i++)
747 do_invalidate_gitignore(dir->dirs[i]);
748 }
749
750 static void invalidate_gitignore(struct untracked_cache *uc,
751 struct untracked_cache_dir *dir)
752 {
753 uc->gitignore_invalidated++;
754 do_invalidate_gitignore(dir);
755 }
756
757 static void invalidate_directory(struct untracked_cache *uc,
758 struct untracked_cache_dir *dir)
759 {
760 int i;
761
762 /*
763 * Invalidation increment here is just roughly correct. If
764 * untracked_nr or any of dirs[].recurse is non-zero, we
765 * should increment dir_invalidated too. But that's more
766 * expensive to do.
767 */
768 if (dir->valid)
769 uc->dir_invalidated++;
770
771 dir->valid = 0;
772 dir->untracked_nr = 0;
773 for (i = 0; i < dir->dirs_nr; i++)
774 dir->dirs[i]->recurse = 0;
775 }
776
777 static int add_excludes_from_buffer(char *buf, size_t size,
778 const char *base, int baselen,
779 struct exclude_list *el);
780
781 /*
782 * Given a file with name "fname", read it (either from disk, or from
783 * an index if 'istate' is non-null), parse it and store the
784 * exclude rules in "el".
785 *
786 * If "ss" is not NULL, compute SHA-1 of the exclude file and fill
787 * stat data from disk (only valid if add_excludes returns zero). If
788 * ss_valid is non-zero, "ss" must contain good value as input.
789 */
790 static int add_excludes(const char *fname, const char *base, int baselen,
791 struct exclude_list *el, struct index_state *istate,
792 struct oid_stat *oid_stat)
793 {
794 struct stat st;
795 int r;
796 int fd;
797 size_t size = 0;
798 char *buf;
799
800 fd = open(fname, O_RDONLY);
801 if (fd < 0 || fstat(fd, &st) < 0) {
802 if (fd < 0)
803 warn_on_fopen_errors(fname);
804 else
805 close(fd);
806 if (!istate)
807 return -1;
808 r = read_skip_worktree_file_from_index(istate, fname,
809 &size, &buf,
810 oid_stat);
811 if (r != 1)
812 return r;
813 } else {
814 size = xsize_t(st.st_size);
815 if (size == 0) {
816 if (oid_stat) {
817 fill_stat_data(&oid_stat->stat, &st);
818 oidcpy(&oid_stat->oid, the_hash_algo->empty_blob);
819 oid_stat->valid = 1;
820 }
821 close(fd);
822 return 0;
823 }
824 buf = xmallocz(size);
825 if (read_in_full(fd, buf, size) != size) {
826 free(buf);
827 close(fd);
828 return -1;
829 }
830 buf[size++] = '\n';
831 close(fd);
832 if (oid_stat) {
833 int pos;
834 if (oid_stat->valid &&
835 !match_stat_data_racy(istate, &oid_stat->stat, &st))
836 ; /* no content change, ss->sha1 still good */
837 else if (istate &&
838 (pos = index_name_pos(istate, fname, strlen(fname))) >= 0 &&
839 !ce_stage(istate->cache[pos]) &&
840 ce_uptodate(istate->cache[pos]) &&
841 !would_convert_to_git(istate, fname))
842 oidcpy(&oid_stat->oid,
843 &istate->cache[pos]->oid);
844 else
845 hash_object_file(buf, size, "blob",
846 &oid_stat->oid);
847 fill_stat_data(&oid_stat->stat, &st);
848 oid_stat->valid = 1;
849 }
850 }
851
852 add_excludes_from_buffer(buf, size, base, baselen, el);
853 return 0;
854 }
855
856 static int add_excludes_from_buffer(char *buf, size_t size,
857 const char *base, int baselen,
858 struct exclude_list *el)
859 {
860 int i, lineno = 1;
861 char *entry;
862
863 el->filebuf = buf;
864
865 if (skip_utf8_bom(&buf, size))
866 size -= buf - el->filebuf;
867
868 entry = buf;
869
870 for (i = 0; i < size; i++) {
871 if (buf[i] == '\n') {
872 if (entry != buf + i && entry[0] != '#') {
873 buf[i - (i && buf[i-1] == '\r')] = 0;
874 trim_trailing_spaces(entry);
875 add_exclude(entry, base, baselen, el, lineno);
876 }
877 lineno++;
878 entry = buf + i + 1;
879 }
880 }
881 return 0;
882 }
883
884 int add_excludes_from_file_to_list(const char *fname, const char *base,
885 int baselen, struct exclude_list *el,
886 struct index_state *istate)
887 {
888 return add_excludes(fname, base, baselen, el, istate, NULL);
889 }
890
891 int add_excludes_from_blob_to_list(
892 struct object_id *oid,
893 const char *base, int baselen,
894 struct exclude_list *el)
895 {
896 char *buf;
897 size_t size;
898 int r;
899
900 r = do_read_blob(oid, NULL, &size, &buf);
901 if (r != 1)
902 return r;
903
904 add_excludes_from_buffer(buf, size, base, baselen, el);
905 return 0;
906 }
907
908 struct exclude_list *add_exclude_list(struct dir_struct *dir,
909 int group_type, const char *src)
910 {
911 struct exclude_list *el;
912 struct exclude_list_group *group;
913
914 group = &dir->exclude_list_group[group_type];
915 ALLOC_GROW(group->el, group->nr + 1, group->alloc);
916 el = &group->el[group->nr++];
917 memset(el, 0, sizeof(*el));
918 el->src = src;
919 return el;
920 }
921
922 /*
923 * Used to set up core.excludesfile and .git/info/exclude lists.
924 */
925 static void add_excludes_from_file_1(struct dir_struct *dir, const char *fname,
926 struct oid_stat *oid_stat)
927 {
928 struct exclude_list *el;
929 /*
930 * catch setup_standard_excludes() that's called before
931 * dir->untracked is assigned. That function behaves
932 * differently when dir->untracked is non-NULL.
933 */
934 if (!dir->untracked)
935 dir->unmanaged_exclude_files++;
936 el = add_exclude_list(dir, EXC_FILE, fname);
937 if (add_excludes(fname, "", 0, el, NULL, oid_stat) < 0)
938 die(_("cannot use %s as an exclude file"), fname);
939 }
940
941 void add_excludes_from_file(struct dir_struct *dir, const char *fname)
942 {
943 dir->unmanaged_exclude_files++; /* see validate_untracked_cache() */
944 add_excludes_from_file_1(dir, fname, NULL);
945 }
946
947 int match_basename(const char *basename, int basenamelen,
948 const char *pattern, int prefix, int patternlen,
949 unsigned flags)
950 {
951 if (prefix == patternlen) {
952 if (patternlen == basenamelen &&
953 !fspathncmp(pattern, basename, basenamelen))
954 return 1;
955 } else if (flags & EXC_FLAG_ENDSWITH) {
956 /* "*literal" matching against "fooliteral" */
957 if (patternlen - 1 <= basenamelen &&
958 !fspathncmp(pattern + 1,
959 basename + basenamelen - (patternlen - 1),
960 patternlen - 1))
961 return 1;
962 } else {
963 if (fnmatch_icase_mem(pattern, patternlen,
964 basename, basenamelen,
965 0) == 0)
966 return 1;
967 }
968 return 0;
969 }
970
971 int match_pathname(const char *pathname, int pathlen,
972 const char *base, int baselen,
973 const char *pattern, int prefix, int patternlen,
974 unsigned flags)
975 {
976 const char *name;
977 int namelen;
978
979 /*
980 * match with FNM_PATHNAME; the pattern has base implicitly
981 * in front of it.
982 */
983 if (*pattern == '/') {
984 pattern++;
985 patternlen--;
986 prefix--;
987 }
988
989 /*
990 * baselen does not count the trailing slash. base[] may or
991 * may not end with a trailing slash though.
992 */
993 if (pathlen < baselen + 1 ||
994 (baselen && pathname[baselen] != '/') ||
995 fspathncmp(pathname, base, baselen))
996 return 0;
997
998 namelen = baselen ? pathlen - baselen - 1 : pathlen;
999 name = pathname + pathlen - namelen;
1000
1001 if (prefix) {
1002 /*
1003 * if the non-wildcard part is longer than the
1004 * remaining pathname, surely it cannot match.
1005 */
1006 if (prefix > namelen)
1007 return 0;
1008
1009 if (fspathncmp(pattern, name, prefix))
1010 return 0;
1011 pattern += prefix;
1012 patternlen -= prefix;
1013 name += prefix;
1014 namelen -= prefix;
1015
1016 /*
1017 * If the whole pattern did not have a wildcard,
1018 * then our prefix match is all we need; we
1019 * do not need to call fnmatch at all.
1020 */
1021 if (!patternlen && !namelen)
1022 return 1;
1023 }
1024
1025 return fnmatch_icase_mem(pattern, patternlen,
1026 name, namelen,
1027 WM_PATHNAME) == 0;
1028 }
1029
1030 /*
1031 * Scan the given exclude list in reverse to see whether pathname
1032 * should be ignored. The first match (i.e. the last on the list), if
1033 * any, determines the fate. Returns the exclude_list element which
1034 * matched, or NULL for undecided.
1035 */
1036 static struct exclude *last_exclude_matching_from_list(const char *pathname,
1037 int pathlen,
1038 const char *basename,
1039 int *dtype,
1040 struct exclude_list *el,
1041 struct index_state *istate)
1042 {
1043 struct exclude *exc = NULL; /* undecided */
1044 int i;
1045
1046 if (!el->nr)
1047 return NULL; /* undefined */
1048
1049 for (i = el->nr - 1; 0 <= i; i--) {
1050 struct exclude *x = el->excludes[i];
1051 const char *exclude = x->pattern;
1052 int prefix = x->nowildcardlen;
1053
1054 if (x->flags & EXC_FLAG_MUSTBEDIR) {
1055 if (*dtype == DT_UNKNOWN)
1056 *dtype = get_dtype(NULL, istate, pathname, pathlen);
1057 if (*dtype != DT_DIR)
1058 continue;
1059 }
1060
1061 if (x->flags & EXC_FLAG_NODIR) {
1062 if (match_basename(basename,
1063 pathlen - (basename - pathname),
1064 exclude, prefix, x->patternlen,
1065 x->flags)) {
1066 exc = x;
1067 break;
1068 }
1069 continue;
1070 }
1071
1072 assert(x->baselen == 0 || x->base[x->baselen - 1] == '/');
1073 if (match_pathname(pathname, pathlen,
1074 x->base, x->baselen ? x->baselen - 1 : 0,
1075 exclude, prefix, x->patternlen, x->flags)) {
1076 exc = x;
1077 break;
1078 }
1079 }
1080 return exc;
1081 }
1082
1083 /*
1084 * Scan the list and let the last match determine the fate.
1085 * Return 1 for exclude, 0 for include and -1 for undecided.
1086 */
1087 int is_excluded_from_list(const char *pathname,
1088 int pathlen, const char *basename, int *dtype,
1089 struct exclude_list *el, struct index_state *istate)
1090 {
1091 struct exclude *exclude;
1092 exclude = last_exclude_matching_from_list(pathname, pathlen, basename,
1093 dtype, el, istate);
1094 if (exclude)
1095 return exclude->flags & EXC_FLAG_NEGATIVE ? 0 : 1;
1096 return -1; /* undecided */
1097 }
1098
1099 static struct exclude *last_exclude_matching_from_lists(struct dir_struct *dir,
1100 struct index_state *istate,
1101 const char *pathname, int pathlen, const char *basename,
1102 int *dtype_p)
1103 {
1104 int i, j;
1105 struct exclude_list_group *group;
1106 struct exclude *exclude;
1107 for (i = EXC_CMDL; i <= EXC_FILE; i++) {
1108 group = &dir->exclude_list_group[i];
1109 for (j = group->nr - 1; j >= 0; j--) {
1110 exclude = last_exclude_matching_from_list(
1111 pathname, pathlen, basename, dtype_p,
1112 &group->el[j], istate);
1113 if (exclude)
1114 return exclude;
1115 }
1116 }
1117 return NULL;
1118 }
1119
1120 /*
1121 * Loads the per-directory exclude list for the substring of base
1122 * which has a char length of baselen.
1123 */
1124 static void prep_exclude(struct dir_struct *dir,
1125 struct index_state *istate,
1126 const char *base, int baselen)
1127 {
1128 struct exclude_list_group *group;
1129 struct exclude_list *el;
1130 struct exclude_stack *stk = NULL;
1131 struct untracked_cache_dir *untracked;
1132 int current;
1133
1134 group = &dir->exclude_list_group[EXC_DIRS];
1135
1136 /*
1137 * Pop the exclude lists from the EXCL_DIRS exclude_list_group
1138 * which originate from directories not in the prefix of the
1139 * path being checked.
1140 */
1141 while ((stk = dir->exclude_stack) != NULL) {
1142 if (stk->baselen <= baselen &&
1143 !strncmp(dir->basebuf.buf, base, stk->baselen))
1144 break;
1145 el = &group->el[dir->exclude_stack->exclude_ix];
1146 dir->exclude_stack = stk->prev;
1147 dir->exclude = NULL;
1148 free((char *)el->src); /* see strbuf_detach() below */
1149 clear_exclude_list(el);
1150 free(stk);
1151 group->nr--;
1152 }
1153
1154 /* Skip traversing into sub directories if the parent is excluded */
1155 if (dir->exclude)
1156 return;
1157
1158 /*
1159 * Lazy initialization. All call sites currently just
1160 * memset(dir, 0, sizeof(*dir)) before use. Changing all of
1161 * them seems lots of work for little benefit.
1162 */
1163 if (!dir->basebuf.buf)
1164 strbuf_init(&dir->basebuf, PATH_MAX);
1165
1166 /* Read from the parent directories and push them down. */
1167 current = stk ? stk->baselen : -1;
1168 strbuf_setlen(&dir->basebuf, current < 0 ? 0 : current);
1169 if (dir->untracked)
1170 untracked = stk ? stk->ucd : dir->untracked->root;
1171 else
1172 untracked = NULL;
1173
1174 while (current < baselen) {
1175 const char *cp;
1176 struct oid_stat oid_stat;
1177
1178 stk = xcalloc(1, sizeof(*stk));
1179 if (current < 0) {
1180 cp = base;
1181 current = 0;
1182 } else {
1183 cp = strchr(base + current + 1, '/');
1184 if (!cp)
1185 die("oops in prep_exclude");
1186 cp++;
1187 untracked =
1188 lookup_untracked(dir->untracked, untracked,
1189 base + current,
1190 cp - base - current);
1191 }
1192 stk->prev = dir->exclude_stack;
1193 stk->baselen = cp - base;
1194 stk->exclude_ix = group->nr;
1195 stk->ucd = untracked;
1196 el = add_exclude_list(dir, EXC_DIRS, NULL);
1197 strbuf_add(&dir->basebuf, base + current, stk->baselen - current);
1198 assert(stk->baselen == dir->basebuf.len);
1199
1200 /* Abort if the directory is excluded */
1201 if (stk->baselen) {
1202 int dt = DT_DIR;
1203 dir->basebuf.buf[stk->baselen - 1] = 0;
1204 dir->exclude = last_exclude_matching_from_lists(dir,
1205 istate,
1206 dir->basebuf.buf, stk->baselen - 1,
1207 dir->basebuf.buf + current, &dt);
1208 dir->basebuf.buf[stk->baselen - 1] = '/';
1209 if (dir->exclude &&
1210 dir->exclude->flags & EXC_FLAG_NEGATIVE)
1211 dir->exclude = NULL;
1212 if (dir->exclude) {
1213 dir->exclude_stack = stk;
1214 return;
1215 }
1216 }
1217
1218 /* Try to read per-directory file */
1219 oidclr(&oid_stat.oid);
1220 oid_stat.valid = 0;
1221 if (dir->exclude_per_dir &&
1222 /*
1223 * If we know that no files have been added in
1224 * this directory (i.e. valid_cached_dir() has
1225 * been executed and set untracked->valid) ..
1226 */
1227 (!untracked || !untracked->valid ||
1228 /*
1229 * .. and .gitignore does not exist before
1230 * (i.e. null exclude_oid). Then we can skip
1231 * loading .gitignore, which would result in
1232 * ENOENT anyway.
1233 */
1234 !is_null_oid(&untracked->exclude_oid))) {
1235 /*
1236 * dir->basebuf gets reused by the traversal, but we
1237 * need fname to remain unchanged to ensure the src
1238 * member of each struct exclude correctly
1239 * back-references its source file. Other invocations
1240 * of add_exclude_list provide stable strings, so we
1241 * strbuf_detach() and free() here in the caller.
1242 */
1243 struct strbuf sb = STRBUF_INIT;
1244 strbuf_addbuf(&sb, &dir->basebuf);
1245 strbuf_addstr(&sb, dir->exclude_per_dir);
1246 el->src = strbuf_detach(&sb, NULL);
1247 add_excludes(el->src, el->src, stk->baselen, el, istate,
1248 untracked ? &oid_stat : NULL);
1249 }
1250 /*
1251 * NEEDSWORK: when untracked cache is enabled, prep_exclude()
1252 * will first be called in valid_cached_dir() then maybe many
1253 * times more in last_exclude_matching(). When the cache is
1254 * used, last_exclude_matching() will not be called and
1255 * reading .gitignore content will be a waste.
1256 *
1257 * So when it's called by valid_cached_dir() and we can get
1258 * .gitignore SHA-1 from the index (i.e. .gitignore is not
1259 * modified on work tree), we could delay reading the
1260 * .gitignore content until we absolutely need it in
1261 * last_exclude_matching(). Be careful about ignore rule
1262 * order, though, if you do that.
1263 */
1264 if (untracked &&
1265 !oideq(&oid_stat.oid, &untracked->exclude_oid)) {
1266 invalidate_gitignore(dir->untracked, untracked);
1267 oidcpy(&untracked->exclude_oid, &oid_stat.oid);
1268 }
1269 dir->exclude_stack = stk;
1270 current = stk->baselen;
1271 }
1272 strbuf_setlen(&dir->basebuf, baselen);
1273 }
1274
1275 /*
1276 * Loads the exclude lists for the directory containing pathname, then
1277 * scans all exclude lists to determine whether pathname is excluded.
1278 * Returns the exclude_list element which matched, or NULL for
1279 * undecided.
1280 */
1281 struct exclude *last_exclude_matching(struct dir_struct *dir,
1282 struct index_state *istate,
1283 const char *pathname,
1284 int *dtype_p)
1285 {
1286 int pathlen = strlen(pathname);
1287 const char *basename = strrchr(pathname, '/');
1288 basename = (basename) ? basename+1 : pathname;
1289
1290 prep_exclude(dir, istate, pathname, basename-pathname);
1291
1292 if (dir->exclude)
1293 return dir->exclude;
1294
1295 return last_exclude_matching_from_lists(dir, istate, pathname, pathlen,
1296 basename, dtype_p);
1297 }
1298
1299 /*
1300 * Loads the exclude lists for the directory containing pathname, then
1301 * scans all exclude lists to determine whether pathname is excluded.
1302 * Returns 1 if true, otherwise 0.
1303 */
1304 int is_excluded(struct dir_struct *dir, struct index_state *istate,
1305 const char *pathname, int *dtype_p)
1306 {
1307 struct exclude *exclude =
1308 last_exclude_matching(dir, istate, pathname, dtype_p);
1309 if (exclude)
1310 return exclude->flags & EXC_FLAG_NEGATIVE ? 0 : 1;
1311 return 0;
1312 }
1313
1314 static struct dir_entry *dir_entry_new(const char *pathname, int len)
1315 {
1316 struct dir_entry *ent;
1317
1318 FLEX_ALLOC_MEM(ent, name, pathname, len);
1319 ent->len = len;
1320 return ent;
1321 }
1322
1323 static struct dir_entry *dir_add_name(struct dir_struct *dir,
1324 struct index_state *istate,
1325 const char *pathname, int len)
1326 {
1327 if (index_file_exists(istate, pathname, len, ignore_case))
1328 return NULL;
1329
1330 ALLOC_GROW(dir->entries, dir->nr+1, dir->alloc);
1331 return dir->entries[dir->nr++] = dir_entry_new(pathname, len);
1332 }
1333
1334 struct dir_entry *dir_add_ignored(struct dir_struct *dir,
1335 struct index_state *istate,
1336 const char *pathname, int len)
1337 {
1338 if (!index_name_is_other(istate, pathname, len))
1339 return NULL;
1340
1341 ALLOC_GROW(dir->ignored, dir->ignored_nr+1, dir->ignored_alloc);
1342 return dir->ignored[dir->ignored_nr++] = dir_entry_new(pathname, len);
1343 }
1344
1345 enum exist_status {
1346 index_nonexistent = 0,
1347 index_directory,
1348 index_gitdir
1349 };
1350
1351 /*
1352 * Do not use the alphabetically sorted index to look up
1353 * the directory name; instead, use the case insensitive
1354 * directory hash.
1355 */
1356 static enum exist_status directory_exists_in_index_icase(struct index_state *istate,
1357 const char *dirname, int len)
1358 {
1359 struct cache_entry *ce;
1360
1361 if (index_dir_exists(istate, dirname, len))
1362 return index_directory;
1363
1364 ce = index_file_exists(istate, dirname, len, ignore_case);
1365 if (ce && S_ISGITLINK(ce->ce_mode))
1366 return index_gitdir;
1367
1368 return index_nonexistent;
1369 }
1370
1371 /*
1372 * The index sorts alphabetically by entry name, which
1373 * means that a gitlink sorts as '\0' at the end, while
1374 * a directory (which is defined not as an entry, but as
1375 * the files it contains) will sort with the '/' at the
1376 * end.
1377 */
1378 static enum exist_status directory_exists_in_index(struct index_state *istate,
1379 const char *dirname, int len)
1380 {
1381 int pos;
1382
1383 if (ignore_case)
1384 return directory_exists_in_index_icase(istate, dirname, len);
1385
1386 pos = index_name_pos(istate, dirname, len);
1387 if (pos < 0)
1388 pos = -pos-1;
1389 while (pos < istate->cache_nr) {
1390 const struct cache_entry *ce = istate->cache[pos++];
1391 unsigned char endchar;
1392
1393 if (strncmp(ce->name, dirname, len))
1394 break;
1395 endchar = ce->name[len];
1396 if (endchar > '/')
1397 break;
1398 if (endchar == '/')
1399 return index_directory;
1400 if (!endchar && S_ISGITLINK(ce->ce_mode))
1401 return index_gitdir;
1402 }
1403 return index_nonexistent;
1404 }
1405
1406 /*
1407 * When we find a directory when traversing the filesystem, we
1408 * have three distinct cases:
1409 *
1410 * - ignore it
1411 * - see it as a directory
1412 * - recurse into it
1413 *
1414 * and which one we choose depends on a combination of existing
1415 * git index contents and the flags passed into the directory
1416 * traversal routine.
1417 *
1418 * Case 1: If we *already* have entries in the index under that
1419 * directory name, we always recurse into the directory to see
1420 * all the files.
1421 *
1422 * Case 2: If we *already* have that directory name as a gitlink,
1423 * we always continue to see it as a gitlink, regardless of whether
1424 * there is an actual git directory there or not (it might not
1425 * be checked out as a subproject!)
1426 *
1427 * Case 3: if we didn't have it in the index previously, we
1428 * have a few sub-cases:
1429 *
1430 * (a) if "show_other_directories" is true, we show it as
1431 * just a directory, unless "hide_empty_directories" is
1432 * also true, in which case we need to check if it contains any
1433 * untracked and / or ignored files.
1434 * (b) if it looks like a git directory, and we don't have
1435 * 'no_gitlinks' set we treat it as a gitlink, and show it
1436 * as a directory.
1437 * (c) otherwise, we recurse into it.
1438 */
1439 static enum path_treatment treat_directory(struct dir_struct *dir,
1440 struct index_state *istate,
1441 struct untracked_cache_dir *untracked,
1442 const char *dirname, int len, int baselen, int exclude,
1443 const struct pathspec *pathspec)
1444 {
1445 /* The "len-1" is to strip the final '/' */
1446 switch (directory_exists_in_index(istate, dirname, len-1)) {
1447 case index_directory:
1448 return path_recurse;
1449
1450 case index_gitdir:
1451 return path_none;
1452
1453 case index_nonexistent:
1454 if (dir->flags & DIR_SHOW_OTHER_DIRECTORIES)
1455 break;
1456 if (exclude &&
1457 (dir->flags & DIR_SHOW_IGNORED_TOO) &&
1458 (dir->flags & DIR_SHOW_IGNORED_TOO_MODE_MATCHING)) {
1459
1460 /*
1461 * This is an excluded directory and we are
1462 * showing ignored paths that match an exclude
1463 * pattern. (e.g. show directory as ignored
1464 * only if it matches an exclude pattern).
1465 * This path will either be 'path_excluded`
1466 * (if we are showing empty directories or if
1467 * the directory is not empty), or will be
1468 * 'path_none' (empty directory, and we are
1469 * not showing empty directories).
1470 */
1471 if (!(dir->flags & DIR_HIDE_EMPTY_DIRECTORIES))
1472 return path_excluded;
1473
1474 if (read_directory_recursive(dir, istate, dirname, len,
1475 untracked, 1, 1, pathspec) == path_excluded)
1476 return path_excluded;
1477
1478 return path_none;
1479 }
1480 if (!(dir->flags & DIR_NO_GITLINKS)) {
1481 struct strbuf sb = STRBUF_INIT;
1482 strbuf_addstr(&sb, dirname);
1483 if (is_nonbare_repository_dir(&sb))
1484 return exclude ? path_excluded : path_untracked;
1485 strbuf_release(&sb);
1486 }
1487 return path_recurse;
1488 }
1489
1490 /* This is the "show_other_directories" case */
1491
1492 if (!(dir->flags & DIR_HIDE_EMPTY_DIRECTORIES))
1493 return exclude ? path_excluded : path_untracked;
1494
1495 untracked = lookup_untracked(dir->untracked, untracked,
1496 dirname + baselen, len - baselen);
1497
1498 /*
1499 * If this is an excluded directory, then we only need to check if
1500 * the directory contains any files.
1501 */
1502 return read_directory_recursive(dir, istate, dirname, len,
1503 untracked, 1, exclude, pathspec);
1504 }
1505
1506 /*
1507 * This is an inexact early pruning of any recursive directory
1508 * reading - if the path cannot possibly be in the pathspec,
1509 * return true, and we'll skip it early.
1510 */
1511 static int simplify_away(const char *path, int pathlen,
1512 const struct pathspec *pathspec)
1513 {
1514 int i;
1515
1516 if (!pathspec || !pathspec->nr)
1517 return 0;
1518
1519 GUARD_PATHSPEC(pathspec,
1520 PATHSPEC_FROMTOP |
1521 PATHSPEC_MAXDEPTH |
1522 PATHSPEC_LITERAL |
1523 PATHSPEC_GLOB |
1524 PATHSPEC_ICASE |
1525 PATHSPEC_EXCLUDE |
1526 PATHSPEC_ATTR);
1527
1528 for (i = 0; i < pathspec->nr; i++) {
1529 const struct pathspec_item *item = &pathspec->items[i];
1530 int len = item->nowildcard_len;
1531
1532 if (len > pathlen)
1533 len = pathlen;
1534 if (!ps_strncmp(item, item->match, path, len))
1535 return 0;
1536 }
1537
1538 return 1;
1539 }
1540
1541 /*
1542 * This function tells us whether an excluded path matches a
1543 * list of "interesting" pathspecs. That is, whether a path matched
1544 * by any of the pathspecs could possibly be ignored by excluding
1545 * the specified path. This can happen if:
1546 *
1547 * 1. the path is mentioned explicitly in the pathspec
1548 *
1549 * 2. the path is a directory prefix of some element in the
1550 * pathspec
1551 */
1552 static int exclude_matches_pathspec(const char *path, int pathlen,
1553 const struct pathspec *pathspec)
1554 {
1555 int i;
1556
1557 if (!pathspec || !pathspec->nr)
1558 return 0;
1559
1560 GUARD_PATHSPEC(pathspec,
1561 PATHSPEC_FROMTOP |
1562 PATHSPEC_MAXDEPTH |
1563 PATHSPEC_LITERAL |
1564 PATHSPEC_GLOB |
1565 PATHSPEC_ICASE |
1566 PATHSPEC_EXCLUDE);
1567
1568 for (i = 0; i < pathspec->nr; i++) {
1569 const struct pathspec_item *item = &pathspec->items[i];
1570 int len = item->nowildcard_len;
1571
1572 if (len == pathlen &&
1573 !ps_strncmp(item, item->match, path, pathlen))
1574 return 1;
1575 if (len > pathlen &&
1576 item->match[pathlen] == '/' &&
1577 !ps_strncmp(item, item->match, path, pathlen))
1578 return 1;
1579 }
1580 return 0;
1581 }
1582
1583 static int get_index_dtype(struct index_state *istate,
1584 const char *path, int len)
1585 {
1586 int pos;
1587 const struct cache_entry *ce;
1588
1589 ce = index_file_exists(istate, path, len, 0);
1590 if (ce) {
1591 if (!ce_uptodate(ce))
1592 return DT_UNKNOWN;
1593 if (S_ISGITLINK(ce->ce_mode))
1594 return DT_DIR;
1595 /*
1596 * Nobody actually cares about the
1597 * difference between DT_LNK and DT_REG
1598 */
1599 return DT_REG;
1600 }
1601
1602 /* Try to look it up as a directory */
1603 pos = index_name_pos(istate, path, len);
1604 if (pos >= 0)
1605 return DT_UNKNOWN;
1606 pos = -pos-1;
1607 while (pos < istate->cache_nr) {
1608 ce = istate->cache[pos++];
1609 if (strncmp(ce->name, path, len))
1610 break;
1611 if (ce->name[len] > '/')
1612 break;
1613 if (ce->name[len] < '/')
1614 continue;
1615 if (!ce_uptodate(ce))
1616 break; /* continue? */
1617 return DT_DIR;
1618 }
1619 return DT_UNKNOWN;
1620 }
1621
1622 static int get_dtype(struct dirent *de, struct index_state *istate,
1623 const char *path, int len)
1624 {
1625 int dtype = de ? DTYPE(de) : DT_UNKNOWN;
1626 struct stat st;
1627
1628 if (dtype != DT_UNKNOWN)
1629 return dtype;
1630 dtype = get_index_dtype(istate, path, len);
1631 if (dtype != DT_UNKNOWN)
1632 return dtype;
1633 if (lstat(path, &st))
1634 return dtype;
1635 if (S_ISREG(st.st_mode))
1636 return DT_REG;
1637 if (S_ISDIR(st.st_mode))
1638 return DT_DIR;
1639 if (S_ISLNK(st.st_mode))
1640 return DT_LNK;
1641 return dtype;
1642 }
1643
1644 static enum path_treatment treat_one_path(struct dir_struct *dir,
1645 struct untracked_cache_dir *untracked,
1646 struct index_state *istate,
1647 struct strbuf *path,
1648 int baselen,
1649 const struct pathspec *pathspec,
1650 int dtype, struct dirent *de)
1651 {
1652 int exclude;
1653 int has_path_in_index = !!index_file_exists(istate, path->buf, path->len, ignore_case);
1654 enum path_treatment path_treatment;
1655
1656 if (dtype == DT_UNKNOWN)
1657 dtype = get_dtype(de, istate, path->buf, path->len);
1658
1659 /* Always exclude indexed files */
1660 if (dtype != DT_DIR && has_path_in_index)
1661 return path_none;
1662
1663 /*
1664 * When we are looking at a directory P in the working tree,
1665 * there are three cases:
1666 *
1667 * (1) P exists in the index. Everything inside the directory P in
1668 * the working tree needs to go when P is checked out from the
1669 * index.
1670 *
1671 * (2) P does not exist in the index, but there is P/Q in the index.
1672 * We know P will stay a directory when we check out the contents
1673 * of the index, but we do not know yet if there is a directory
1674 * P/Q in the working tree to be killed, so we need to recurse.
1675 *
1676 * (3) P does not exist in the index, and there is no P/Q in the index
1677 * to require P to be a directory, either. Only in this case, we
1678 * know that everything inside P will not be killed without
1679 * recursing.
1680 */
1681 if ((dir->flags & DIR_COLLECT_KILLED_ONLY) &&
1682 (dtype == DT_DIR) &&
1683 !has_path_in_index &&
1684 (directory_exists_in_index(istate, path->buf, path->len) == index_nonexistent))
1685 return path_none;
1686
1687 exclude = is_excluded(dir, istate, path->buf, &dtype);
1688
1689 /*
1690 * Excluded? If we don't explicitly want to show
1691 * ignored files, ignore it
1692 */
1693 if (exclude && !(dir->flags & (DIR_SHOW_IGNORED|DIR_SHOW_IGNORED_TOO)))
1694 return path_excluded;
1695
1696 switch (dtype) {
1697 default:
1698 return path_none;
1699 case DT_DIR:
1700 strbuf_addch(path, '/');
1701 path_treatment = treat_directory(dir, istate, untracked,
1702 path->buf, path->len,
1703 baselen, exclude, pathspec);
1704 /*
1705 * If 1) we only want to return directories that
1706 * match an exclude pattern and 2) this directory does
1707 * not match an exclude pattern but all of its
1708 * contents are excluded, then indicate that we should
1709 * recurse into this directory (instead of marking the
1710 * directory itself as an ignored path).
1711 */
1712 if (!exclude &&
1713 path_treatment == path_excluded &&
1714 (dir->flags & DIR_SHOW_IGNORED_TOO) &&
1715 (dir->flags & DIR_SHOW_IGNORED_TOO_MODE_MATCHING))
1716 return path_recurse;
1717 return path_treatment;
1718 case DT_REG:
1719 case DT_LNK:
1720 return exclude ? path_excluded : path_untracked;
1721 }
1722 }
1723
1724 static enum path_treatment treat_path_fast(struct dir_struct *dir,
1725 struct untracked_cache_dir *untracked,
1726 struct cached_dir *cdir,
1727 struct index_state *istate,
1728 struct strbuf *path,
1729 int baselen,
1730 const struct pathspec *pathspec)
1731 {
1732 strbuf_setlen(path, baselen);
1733 if (!cdir->ucd) {
1734 strbuf_addstr(path, cdir->file);
1735 return path_untracked;
1736 }
1737 strbuf_addstr(path, cdir->ucd->name);
1738 /* treat_one_path() does this before it calls treat_directory() */
1739 strbuf_complete(path, '/');
1740 if (cdir->ucd->check_only)
1741 /*
1742 * check_only is set as a result of treat_directory() getting
1743 * to its bottom. Verify again the same set of directories
1744 * with check_only set.
1745 */
1746 return read_directory_recursive(dir, istate, path->buf, path->len,
1747 cdir->ucd, 1, 0, pathspec);
1748 /*
1749 * We get path_recurse in the first run when
1750 * directory_exists_in_index() returns index_nonexistent. We
1751 * are sure that new changes in the index does not impact the
1752 * outcome. Return now.
1753 */
1754 return path_recurse;
1755 }
1756
1757 static enum path_treatment treat_path(struct dir_struct *dir,
1758 struct untracked_cache_dir *untracked,
1759 struct cached_dir *cdir,
1760 struct index_state *istate,
1761 struct strbuf *path,
1762 int baselen,
1763 const struct pathspec *pathspec)
1764 {
1765 int dtype;
1766 struct dirent *de = cdir->de;
1767
1768 if (!de)
1769 return treat_path_fast(dir, untracked, cdir, istate, path,
1770 baselen, pathspec);
1771 if (is_dot_or_dotdot(de->d_name) || !fspathcmp(de->d_name, ".git"))
1772 return path_none;
1773 strbuf_setlen(path, baselen);
1774 strbuf_addstr(path, de->d_name);
1775 if (simplify_away(path->buf, path->len, pathspec))
1776 return path_none;
1777
1778 dtype = DTYPE(de);
1779 return treat_one_path(dir, untracked, istate, path, baselen, pathspec, dtype, de);
1780 }
1781
1782 static void add_untracked(struct untracked_cache_dir *dir, const char *name)
1783 {
1784 if (!dir)
1785 return;
1786 ALLOC_GROW(dir->untracked, dir->untracked_nr + 1,
1787 dir->untracked_alloc);
1788 dir->untracked[dir->untracked_nr++] = xstrdup(name);
1789 }
1790
1791 static int valid_cached_dir(struct dir_struct *dir,
1792 struct untracked_cache_dir *untracked,
1793 struct index_state *istate,
1794 struct strbuf *path,
1795 int check_only)
1796 {
1797 struct stat st;
1798
1799 if (!untracked)
1800 return 0;
1801
1802 /*
1803 * With fsmonitor, we can trust the untracked cache's valid field.
1804 */
1805 refresh_fsmonitor(istate);
1806 if (!(dir->untracked->use_fsmonitor && untracked->valid)) {
1807 if (lstat(path->len ? path->buf : ".", &st)) {
1808 memset(&untracked->stat_data, 0, sizeof(untracked->stat_data));
1809 return 0;
1810 }
1811 if (!untracked->valid ||
1812 match_stat_data_racy(istate, &untracked->stat_data, &st)) {
1813 fill_stat_data(&untracked->stat_data, &st);
1814 return 0;
1815 }
1816 }
1817
1818 if (untracked->check_only != !!check_only)
1819 return 0;
1820
1821 /*
1822 * prep_exclude will be called eventually on this directory,
1823 * but it's called much later in last_exclude_matching(). We
1824 * need it now to determine the validity of the cache for this
1825 * path. The next calls will be nearly no-op, the way
1826 * prep_exclude() is designed.
1827 */
1828 if (path->len && path->buf[path->len - 1] != '/') {
1829 strbuf_addch(path, '/');
1830 prep_exclude(dir, istate, path->buf, path->len);
1831 strbuf_setlen(path, path->len - 1);
1832 } else
1833 prep_exclude(dir, istate, path->buf, path->len);
1834
1835 /* hopefully prep_exclude() haven't invalidated this entry... */
1836 return untracked->valid;
1837 }
1838
1839 static int open_cached_dir(struct cached_dir *cdir,
1840 struct dir_struct *dir,
1841 struct untracked_cache_dir *untracked,
1842 struct index_state *istate,
1843 struct strbuf *path,
1844 int check_only)
1845 {
1846 const char *c_path;
1847
1848 memset(cdir, 0, sizeof(*cdir));
1849 cdir->untracked = untracked;
1850 if (valid_cached_dir(dir, untracked, istate, path, check_only))
1851 return 0;
1852 c_path = path->len ? path->buf : ".";
1853 cdir->fdir = opendir(c_path);
1854 if (!cdir->fdir)
1855 warning_errno(_("could not open directory '%s'"), c_path);
1856 if (dir->untracked) {
1857 invalidate_directory(dir->untracked, untracked);
1858 dir->untracked->dir_opened++;
1859 }
1860 if (!cdir->fdir)
1861 return -1;
1862 return 0;
1863 }
1864
1865 static int read_cached_dir(struct cached_dir *cdir)
1866 {
1867 if (cdir->fdir) {
1868 cdir->de = readdir(cdir->fdir);
1869 if (!cdir->de)
1870 return -1;
1871 return 0;
1872 }
1873 while (cdir->nr_dirs < cdir->untracked->dirs_nr) {
1874 struct untracked_cache_dir *d = cdir->untracked->dirs[cdir->nr_dirs];
1875 if (!d->recurse) {
1876 cdir->nr_dirs++;
1877 continue;
1878 }
1879 cdir->ucd = d;
1880 cdir->nr_dirs++;
1881 return 0;
1882 }
1883 cdir->ucd = NULL;
1884 if (cdir->nr_files < cdir->untracked->untracked_nr) {
1885 struct untracked_cache_dir *d = cdir->untracked;
1886 cdir->file = d->untracked[cdir->nr_files++];
1887 return 0;
1888 }
1889 return -1;
1890 }
1891
1892 static void close_cached_dir(struct cached_dir *cdir)
1893 {
1894 if (cdir->fdir)
1895 closedir(cdir->fdir);
1896 /*
1897 * We have gone through this directory and found no untracked
1898 * entries. Mark it valid.
1899 */
1900 if (cdir->untracked) {
1901 cdir->untracked->valid = 1;
1902 cdir->untracked->recurse = 1;
1903 }
1904 }
1905
1906 /*
1907 * Read a directory tree. We currently ignore anything but
1908 * directories, regular files and symlinks. That's because git
1909 * doesn't handle them at all yet. Maybe that will change some
1910 * day.
1911 *
1912 * Also, we ignore the name ".git" (even if it is not a directory).
1913 * That likely will not change.
1914 *
1915 * If 'stop_at_first_file' is specified, 'path_excluded' is returned
1916 * to signal that a file was found. This is the least significant value that
1917 * indicates that a file was encountered that does not depend on the order of
1918 * whether an untracked or exluded path was encountered first.
1919 *
1920 * Returns the most significant path_treatment value encountered in the scan.
1921 * If 'stop_at_first_file' is specified, `path_excluded` is the most
1922 * significant path_treatment value that will be returned.
1923 */
1924
1925 static enum path_treatment read_directory_recursive(struct dir_struct *dir,
1926 struct index_state *istate, const char *base, int baselen,
1927 struct untracked_cache_dir *untracked, int check_only,
1928 int stop_at_first_file, const struct pathspec *pathspec)
1929 {
1930 struct cached_dir cdir;
1931 enum path_treatment state, subdir_state, dir_state = path_none;
1932 struct strbuf path = STRBUF_INIT;
1933
1934 strbuf_add(&path, base, baselen);
1935
1936 if (open_cached_dir(&cdir, dir, untracked, istate, &path, check_only))
1937 goto out;
1938
1939 if (untracked)
1940 untracked->check_only = !!check_only;
1941
1942 while (!read_cached_dir(&cdir)) {
1943 /* check how the file or directory should be treated */
1944 state = treat_path(dir, untracked, &cdir, istate, &path,
1945 baselen, pathspec);
1946
1947 if (state > dir_state)
1948 dir_state = state;
1949
1950 /* recurse into subdir if instructed by treat_path */
1951 if ((state == path_recurse) ||
1952 ((state == path_untracked) &&
1953 (get_dtype(cdir.de, istate, path.buf, path.len) == DT_DIR) &&
1954 ((dir->flags & DIR_SHOW_IGNORED_TOO) ||
1955 do_match_pathspec(istate, pathspec, path.buf, path.len,
1956 baselen, NULL, DO_MATCH_LEADING_PATHSPEC) == MATCHED_RECURSIVELY_LEADING_PATHSPEC))) {
1957 struct untracked_cache_dir *ud;
1958 ud = lookup_untracked(dir->untracked, untracked,
1959 path.buf + baselen,
1960 path.len - baselen);
1961 subdir_state =
1962 read_directory_recursive(dir, istate, path.buf,
1963 path.len, ud,
1964 check_only, stop_at_first_file, pathspec);
1965 if (subdir_state > dir_state)
1966 dir_state = subdir_state;
1967
1968 if (!match_pathspec(istate, pathspec, path.buf, path.len,
1969 0 /* prefix */, NULL,
1970 0 /* do NOT special case dirs */))
1971 state = path_none;
1972 }
1973
1974 if (check_only) {
1975 if (stop_at_first_file) {
1976 /*
1977 * If stopping at first file, then
1978 * signal that a file was found by
1979 * returning `path_excluded`. This is
1980 * to return a consistent value
1981 * regardless of whether an ignored or
1982 * excluded file happened to be
1983 * encountered 1st.
1984 *
1985 * In current usage, the
1986 * `stop_at_first_file` is passed when
1987 * an ancestor directory has matched
1988 * an exclude pattern, so any found
1989 * files will be excluded.
1990 */
1991 if (dir_state >= path_excluded) {
1992 dir_state = path_excluded;
1993 break;
1994 }
1995 }
1996
1997 /* abort early if maximum state has been reached */
1998 if (dir_state == path_untracked) {
1999 if (cdir.fdir)
2000 add_untracked(untracked, path.buf + baselen);
2001 break;
2002 }
2003 /* skip the dir_add_* part */
2004 continue;
2005 }
2006
2007 /* add the path to the appropriate result list */
2008 switch (state) {
2009 case path_excluded:
2010 if (dir->flags & DIR_SHOW_IGNORED)
2011 dir_add_name(dir, istate, path.buf, path.len);
2012 else if ((dir->flags & DIR_SHOW_IGNORED_TOO) ||
2013 ((dir->flags & DIR_COLLECT_IGNORED) &&
2014 exclude_matches_pathspec(path.buf, path.len,
2015 pathspec)))
2016 dir_add_ignored(dir, istate, path.buf, path.len);
2017 break;
2018
2019 case path_untracked:
2020 if (dir->flags & DIR_SHOW_IGNORED)
2021 break;
2022 dir_add_name(dir, istate, path.buf, path.len);
2023 if (cdir.fdir)
2024 add_untracked(untracked, path.buf + baselen);
2025 break;
2026
2027 default:
2028 break;
2029 }
2030 }
2031 close_cached_dir(&cdir);
2032 out:
2033 strbuf_release(&path);
2034
2035 return dir_state;
2036 }
2037
2038 int cmp_dir_entry(const void *p1, const void *p2)
2039 {
2040 const struct dir_entry *e1 = *(const struct dir_entry **)p1;
2041 const struct dir_entry *e2 = *(const struct dir_entry **)p2;
2042
2043 return name_compare(e1->name, e1->len, e2->name, e2->len);
2044 }
2045
2046 /* check if *out lexically strictly contains *in */
2047 int check_dir_entry_contains(const struct dir_entry *out, const struct dir_entry *in)
2048 {
2049 return (out->len < in->len) &&
2050 (out->name[out->len - 1] == '/') &&
2051 !memcmp(out->name, in->name, out->len);
2052 }
2053
2054 static int treat_leading_path(struct dir_struct *dir,
2055 struct index_state *istate,
2056 const char *path, int len,
2057 const struct pathspec *pathspec)
2058 {
2059 struct strbuf sb = STRBUF_INIT;
2060 int baselen, rc = 0;
2061 const char *cp;
2062 int old_flags = dir->flags;
2063
2064 while (len && path[len - 1] == '/')
2065 len--;
2066 if (!len)
2067 return 1;
2068 baselen = 0;
2069 dir->flags &= ~DIR_SHOW_OTHER_DIRECTORIES;
2070 while (1) {
2071 cp = path + baselen + !!baselen;
2072 cp = memchr(cp, '/', path + len - cp);
2073 if (!cp)
2074 baselen = len;
2075 else
2076 baselen = cp - path;
2077 strbuf_setlen(&sb, 0);
2078 strbuf_add(&sb, path, baselen);
2079 if (!is_directory(sb.buf))
2080 break;
2081 if (simplify_away(sb.buf, sb.len, pathspec))
2082 break;
2083 if (treat_one_path(dir, NULL, istate, &sb, baselen, pathspec,
2084 DT_DIR, NULL) == path_none)
2085 break; /* do not recurse into it */
2086 if (len <= baselen) {
2087 rc = 1;
2088 break; /* finished checking */
2089 }
2090 }
2091 strbuf_release(&sb);
2092 dir->flags = old_flags;
2093 return rc;
2094 }
2095
2096 static const char *get_ident_string(void)
2097 {
2098 static struct strbuf sb = STRBUF_INIT;
2099 struct utsname uts;
2100
2101 if (sb.len)
2102 return sb.buf;
2103 if (uname(&uts) < 0)
2104 die_errno(_("failed to get kernel name and information"));
2105 strbuf_addf(&sb, "Location %s, system %s", get_git_work_tree(),
2106 uts.sysname);
2107 return sb.buf;
2108 }
2109
2110 static int ident_in_untracked(const struct untracked_cache *uc)
2111 {
2112 /*
2113 * Previous git versions may have saved many NUL separated
2114 * strings in the "ident" field, but it is insane to manage
2115 * many locations, so just take care of the first one.
2116 */
2117
2118 return !strcmp(uc->ident.buf, get_ident_string());
2119 }
2120
2121 static void set_untracked_ident(struct untracked_cache *uc)
2122 {
2123 strbuf_reset(&uc->ident);
2124 strbuf_addstr(&uc->ident, get_ident_string());
2125
2126 /*
2127 * This strbuf used to contain a list of NUL separated
2128 * strings, so save NUL too for backward compatibility.
2129 */
2130 strbuf_addch(&uc->ident, 0);
2131 }
2132
2133 static void new_untracked_cache(struct index_state *istate)
2134 {
2135 struct untracked_cache *uc = xcalloc(1, sizeof(*uc));
2136 strbuf_init(&uc->ident, 100);
2137 uc->exclude_per_dir = ".gitignore";
2138 /* should be the same flags used by git-status */
2139 uc->dir_flags = DIR_SHOW_OTHER_DIRECTORIES | DIR_HIDE_EMPTY_DIRECTORIES;
2140 set_untracked_ident(uc);
2141 istate->untracked = uc;
2142 istate->cache_changed |= UNTRACKED_CHANGED;
2143 }
2144
2145 void add_untracked_cache(struct index_state *istate)
2146 {
2147 if (!istate->untracked) {
2148 new_untracked_cache(istate);
2149 } else {
2150 if (!ident_in_untracked(istate->untracked)) {
2151 free_untracked_cache(istate->untracked);
2152 new_untracked_cache(istate);
2153 }
2154 }
2155 }
2156
2157 void remove_untracked_cache(struct index_state *istate)
2158 {
2159 if (istate->untracked) {
2160 free_untracked_cache(istate->untracked);
2161 istate->untracked = NULL;
2162 istate->cache_changed |= UNTRACKED_CHANGED;
2163 }
2164 }
2165
2166 static struct untracked_cache_dir *validate_untracked_cache(struct dir_struct *dir,
2167 int base_len,
2168 const struct pathspec *pathspec)
2169 {
2170 struct untracked_cache_dir *root;
2171 static int untracked_cache_disabled = -1;
2172
2173 if (!dir->untracked)
2174 return NULL;
2175 if (untracked_cache_disabled < 0)
2176 untracked_cache_disabled = git_env_bool("GIT_DISABLE_UNTRACKED_CACHE", 0);
2177 if (untracked_cache_disabled)
2178 return NULL;
2179
2180 /*
2181 * We only support $GIT_DIR/info/exclude and core.excludesfile
2182 * as the global ignore rule files. Any other additions
2183 * (e.g. from command line) invalidate the cache. This
2184 * condition also catches running setup_standard_excludes()
2185 * before setting dir->untracked!
2186 */
2187 if (dir->unmanaged_exclude_files)
2188 return NULL;
2189
2190 /*
2191 * Optimize for the main use case only: whole-tree git
2192 * status. More work involved in treat_leading_path() if we
2193 * use cache on just a subset of the worktree. pathspec
2194 * support could make the matter even worse.
2195 */
2196 if (base_len || (pathspec && pathspec->nr))
2197 return NULL;
2198
2199 /* Different set of flags may produce different results */
2200 if (dir->flags != dir->untracked->dir_flags ||
2201 /*
2202 * See treat_directory(), case index_nonexistent. Without
2203 * this flag, we may need to also cache .git file content
2204 * for the resolve_gitlink_ref() call, which we don't.
2205 */
2206 !(dir->flags & DIR_SHOW_OTHER_DIRECTORIES) ||
2207 /* We don't support collecting ignore files */
2208 (dir->flags & (DIR_SHOW_IGNORED | DIR_SHOW_IGNORED_TOO |
2209 DIR_COLLECT_IGNORED)))
2210 return NULL;
2211
2212 /*
2213 * If we use .gitignore in the cache and now you change it to
2214 * .gitexclude, everything will go wrong.
2215 */
2216 if (dir->exclude_per_dir != dir->untracked->exclude_per_dir &&
2217 strcmp(dir->exclude_per_dir, dir->untracked->exclude_per_dir))
2218 return NULL;
2219
2220 /*
2221 * EXC_CMDL is not considered in the cache. If people set it,
2222 * skip the cache.
2223 */
2224 if (dir->exclude_list_group[EXC_CMDL].nr)
2225 return NULL;
2226
2227 if (!ident_in_untracked(dir->untracked)) {
2228 warning(_("untracked cache is disabled on this system or location"));
2229 return NULL;
2230 }
2231
2232 if (!dir->untracked->root) {
2233 const int len = sizeof(*dir->untracked->root);
2234 dir->untracked->root = xmalloc(len);
2235 memset(dir->untracked->root, 0, len);
2236 }
2237
2238 /* Validate $GIT_DIR/info/exclude and core.excludesfile */
2239 root = dir->untracked->root;
2240 if (!oideq(&dir->ss_info_exclude.oid,
2241 &dir->untracked->ss_info_exclude.oid)) {
2242 invalidate_gitignore(dir->untracked, root);
2243 dir->untracked->ss_info_exclude = dir->ss_info_exclude;
2244 }
2245 if (!oideq(&dir->ss_excludes_file.oid,
2246 &dir->untracked->ss_excludes_file.oid)) {
2247 invalidate_gitignore(dir->untracked, root);
2248 dir->untracked->ss_excludes_file = dir->ss_excludes_file;
2249 }
2250
2251 /* Make sure this directory is not dropped out at saving phase */
2252 root->recurse = 1;
2253 return root;
2254 }
2255
2256 int read_directory(struct dir_struct *dir, struct index_state *istate,
2257 const char *path, int len, const struct pathspec *pathspec)
2258 {
2259 struct untracked_cache_dir *untracked;
2260
2261 trace_performance_enter();
2262
2263 if (has_symlink_leading_path(path, len)) {
2264 trace_performance_leave("read directory %.*s", len, path);
2265 return dir->nr;
2266 }
2267
2268 untracked = validate_untracked_cache(dir, len, pathspec);
2269 if (!untracked)
2270 /*
2271 * make sure untracked cache code path is disabled,
2272 * e.g. prep_exclude()
2273 */
2274 dir->untracked = NULL;
2275 if (!len || treat_leading_path(dir, istate, path, len, pathspec))
2276 read_directory_recursive(dir, istate, path, len, untracked, 0, 0, pathspec);
2277 QSORT(dir->entries, dir->nr, cmp_dir_entry);
2278 QSORT(dir->ignored, dir->ignored_nr, cmp_dir_entry);
2279
2280 /*
2281 * If DIR_SHOW_IGNORED_TOO is set, read_directory_recursive() will
2282 * also pick up untracked contents of untracked dirs; by default
2283 * we discard these, but given DIR_KEEP_UNTRACKED_CONTENTS we do not.
2284 */
2285 if ((dir->flags & DIR_SHOW_IGNORED_TOO) &&
2286 !(dir->flags & DIR_KEEP_UNTRACKED_CONTENTS)) {
2287 int i, j;
2288
2289 /* remove from dir->entries untracked contents of untracked dirs */
2290 for (i = j = 0; j < dir->nr; j++) {
2291 if (i &&
2292 check_dir_entry_contains(dir->entries[i - 1], dir->entries[j])) {
2293 FREE_AND_NULL(dir->entries[j]);
2294 } else {
2295 dir->entries[i++] = dir->entries[j];
2296 }
2297 }
2298
2299 dir->nr = i;
2300 }
2301
2302 trace_performance_leave("read directory %.*s", len, path);
2303 if (dir->untracked) {
2304 static int force_untracked_cache = -1;
2305 static struct trace_key trace_untracked_stats = TRACE_KEY_INIT(UNTRACKED_STATS);
2306
2307 if (force_untracked_cache < 0)
2308 force_untracked_cache =
2309 git_env_bool("GIT_FORCE_UNTRACKED_CACHE", 0);
2310 trace_printf_key(&trace_untracked_stats,
2311 "node creation: %u\n"
2312 "gitignore invalidation: %u\n"
2313 "directory invalidation: %u\n"
2314 "opendir: %u\n",
2315 dir->untracked->dir_created,
2316 dir->untracked->gitignore_invalidated,
2317 dir->untracked->dir_invalidated,
2318 dir->untracked->dir_opened);
2319 if (force_untracked_cache &&
2320 dir->untracked == istate->untracked &&
2321 (dir->untracked->dir_opened ||
2322 dir->untracked->gitignore_invalidated ||
2323 dir->untracked->dir_invalidated))
2324 istate->cache_changed |= UNTRACKED_CHANGED;
2325 if (dir->untracked != istate->untracked) {
2326 FREE_AND_NULL(dir->untracked);
2327 }
2328 }
2329 return dir->nr;
2330 }
2331
2332 int file_exists(const char *f)
2333 {
2334 struct stat sb;
2335 return lstat(f, &sb) == 0;
2336 }
2337
2338 int repo_file_exists(struct repository *repo, const char *path)
2339 {
2340 if (repo != the_repository)
2341 BUG("do not know how to check file existence in arbitrary repo");
2342
2343 return file_exists(path);
2344 }
2345
2346 static int cmp_icase(char a, char b)
2347 {
2348 if (a == b)
2349 return 0;
2350 if (ignore_case)
2351 return toupper(a) - toupper(b);
2352 return a - b;
2353 }
2354
2355 /*
2356 * Given two normalized paths (a trailing slash is ok), if subdir is
2357 * outside dir, return -1. Otherwise return the offset in subdir that
2358 * can be used as relative path to dir.
2359 */
2360 int dir_inside_of(const char *subdir, const char *dir)
2361 {
2362 int offset = 0;
2363
2364 assert(dir && subdir && *dir && *subdir);
2365
2366 while (*dir && *subdir && !cmp_icase(*dir, *subdir)) {
2367 dir++;
2368 subdir++;
2369 offset++;
2370 }
2371
2372 /* hel[p]/me vs hel[l]/yeah */
2373 if (*dir && *subdir)
2374 return -1;
2375
2376 if (!*subdir)
2377 return !*dir ? offset : -1; /* same dir */
2378
2379 /* foo/[b]ar vs foo/[] */
2380 if (is_dir_sep(dir[-1]))
2381 return is_dir_sep(subdir[-1]) ? offset : -1;
2382
2383 /* foo[/]bar vs foo[] */
2384 return is_dir_sep(*subdir) ? offset + 1 : -1;
2385 }
2386
2387 int is_inside_dir(const char *dir)
2388 {
2389 char *cwd;
2390 int rc;
2391
2392 if (!dir)
2393 return 0;
2394
2395 cwd = xgetcwd();
2396 rc = (dir_inside_of(cwd, dir) >= 0);
2397 free(cwd);
2398 return rc;
2399 }
2400
2401 int is_empty_dir(const char *path)
2402 {
2403 DIR *dir = opendir(path);
2404 struct dirent *e;
2405 int ret = 1;
2406
2407 if (!dir)
2408 return 0;
2409
2410 while ((e = readdir(dir)) != NULL)
2411 if (!is_dot_or_dotdot(e->d_name)) {
2412 ret = 0;
2413 break;
2414 }
2415
2416 closedir(dir);
2417 return ret;
2418 }
2419
2420 static int remove_dir_recurse(struct strbuf *path, int flag, int *kept_up)
2421 {
2422 DIR *dir;
2423 struct dirent *e;
2424 int ret = 0, original_len = path->len, len, kept_down = 0;
2425 int only_empty = (flag & REMOVE_DIR_EMPTY_ONLY);
2426 int keep_toplevel = (flag & REMOVE_DIR_KEEP_TOPLEVEL);
2427 struct object_id submodule_head;
2428
2429 if ((flag & REMOVE_DIR_KEEP_NESTED_GIT) &&
2430 !resolve_gitlink_ref(path->buf, "HEAD", &submodule_head)) {
2431 /* Do not descend and nuke a nested git work tree. */
2432 if (kept_up)
2433 *kept_up = 1;
2434 return 0;
2435 }
2436
2437 flag &= ~REMOVE_DIR_KEEP_TOPLEVEL;
2438 dir = opendir(path->buf);
2439 if (!dir) {
2440 if (errno == ENOENT)
2441 return keep_toplevel ? -1 : 0;
2442 else if (errno == EACCES && !keep_toplevel)
2443 /*
2444 * An empty dir could be removable even if it
2445 * is unreadable:
2446 */
2447 return rmdir(path->buf);
2448 else
2449 return -1;
2450 }
2451 strbuf_complete(path, '/');
2452
2453 len = path->len;
2454 while ((e = readdir(dir)) != NULL) {
2455 struct stat st;
2456 if (is_dot_or_dotdot(e->d_name))
2457 continue;
2458
2459 strbuf_setlen(path, len);
2460 strbuf_addstr(path, e->d_name);
2461 if (lstat(path->buf, &st)) {
2462 if (errno == ENOENT)
2463 /*
2464 * file disappeared, which is what we
2465 * wanted anyway
2466 */
2467 continue;
2468 /* fall thru */
2469 } else if (S_ISDIR(st.st_mode)) {
2470 if (!remove_dir_recurse(path, flag, &kept_down))
2471 continue; /* happy */
2472 } else if (!only_empty &&
2473 (!unlink(path->buf) || errno == ENOENT)) {
2474 continue; /* happy, too */
2475 }
2476
2477 /* path too long, stat fails, or non-directory still exists */
2478 ret = -1;
2479 break;
2480 }
2481 closedir(dir);
2482
2483 strbuf_setlen(path, original_len);
2484 if (!ret && !keep_toplevel && !kept_down)
2485 ret = (!rmdir(path->buf) || errno == ENOENT) ? 0 : -1;
2486 else if (kept_up)
2487 /*
2488 * report the uplevel that it is not an error that we
2489 * did not rmdir() our directory.
2490 */
2491 *kept_up = !ret;
2492 return ret;
2493 }
2494
2495 int remove_dir_recursively(struct strbuf *path, int flag)
2496 {
2497 return remove_dir_recurse(path, flag, NULL);
2498 }
2499
2500 static GIT_PATH_FUNC(git_path_info_exclude, "info/exclude")
2501
2502 void setup_standard_excludes(struct dir_struct *dir)
2503 {
2504 dir->exclude_per_dir = ".gitignore";
2505
2506 /* core.excludesfile defaulting to $XDG_CONFIG_HOME/git/ignore */
2507 if (!excludes_file)
2508 excludes_file = xdg_config_home("ignore");
2509 if (excludes_file && !access_or_warn(excludes_file, R_OK, 0))
2510 add_excludes_from_file_1(dir, excludes_file,
2511 dir->untracked ? &dir->ss_excludes_file : NULL);
2512
2513 /* per repository user preference */
2514 if (startup_info->have_repository) {
2515 const char *path = git_path_info_exclude();
2516 if (!access_or_warn(path, R_OK, 0))
2517 add_excludes_from_file_1(dir, path,
2518 dir->untracked ? &dir->ss_info_exclude : NULL);
2519 }
2520 }
2521
2522 int remove_path(const char *name)
2523 {
2524 char *slash;
2525
2526 if (unlink(name) && !is_missing_file_error(errno))
2527 return -1;
2528
2529 slash = strrchr(name, '/');
2530 if (slash) {
2531 char *dirs = xstrdup(name);
2532 slash = dirs + (slash - name);
2533 do {
2534 *slash = '\0';
2535 } while (rmdir(dirs) == 0 && (slash = strrchr(dirs, '/')));
2536 free(dirs);
2537 }
2538 return 0;
2539 }
2540
2541 /*
2542 * Frees memory within dir which was allocated for exclude lists and
2543 * the exclude_stack. Does not free dir itself.
2544 */
2545 void clear_directory(struct dir_struct *dir)
2546 {
2547 int i, j;
2548 struct exclude_list_group *group;
2549 struct exclude_list *el;
2550 struct exclude_stack *stk;
2551
2552 for (i = EXC_CMDL; i <= EXC_FILE; i++) {
2553 group = &dir->exclude_list_group[i];
2554 for (j = 0; j < group->nr; j++) {
2555 el = &group->el[j];
2556 if (i == EXC_DIRS)
2557 free((char *)el->src);
2558 clear_exclude_list(el);
2559 }
2560 free(group->el);
2561 }
2562
2563 stk = dir->exclude_stack;
2564 while (stk) {
2565 struct exclude_stack *prev = stk->prev;
2566 free(stk);
2567 stk = prev;
2568 }
2569 strbuf_release(&dir->basebuf);
2570 }
2571
2572 struct ondisk_untracked_cache {
2573 struct stat_data info_exclude_stat;
2574 struct stat_data excludes_file_stat;
2575 uint32_t dir_flags;
2576 };
2577
2578 #define ouc_offset(x) offsetof(struct ondisk_untracked_cache, x)
2579
2580 struct write_data {
2581 int index; /* number of written untracked_cache_dir */
2582 struct ewah_bitmap *check_only; /* from untracked_cache_dir */
2583 struct ewah_bitmap *valid; /* from untracked_cache_dir */
2584 struct ewah_bitmap *sha1_valid; /* set if exclude_sha1 is not null */
2585 struct strbuf out;
2586 struct strbuf sb_stat;
2587 struct strbuf sb_sha1;
2588 };
2589
2590 static void stat_data_to_disk(struct stat_data *to, const struct stat_data *from)
2591 {
2592 to->sd_ctime.sec = htonl(from->sd_ctime.sec);
2593 to->sd_ctime.nsec = htonl(from->sd_ctime.nsec);
2594 to->sd_mtime.sec = htonl(from->sd_mtime.sec);
2595 to->sd_mtime.nsec = htonl(from->sd_mtime.nsec);
2596 to->sd_dev = htonl(from->sd_dev);
2597 to->sd_ino = htonl(from->sd_ino);
2598 to->sd_uid = htonl(from->sd_uid);
2599 to->sd_gid = htonl(from->sd_gid);
2600 to->sd_size = htonl(from->sd_size);
2601 }
2602
2603 static void write_one_dir(struct untracked_cache_dir *untracked,
2604 struct write_data *wd)
2605 {
2606 struct stat_data stat_data;
2607 struct strbuf *out = &wd->out;
2608 unsigned char intbuf[16];
2609 unsigned int intlen, value;
2610 int i = wd->index++;
2611
2612 /*
2613 * untracked_nr should be reset whenever valid is clear, but
2614 * for safety..
2615 */
2616 if (!untracked->valid) {
2617 untracked->untracked_nr = 0;
2618 untracked->check_only = 0;
2619 }
2620
2621 if (untracked->check_only)
2622 ewah_set(wd->check_only, i);
2623 if (untracked->valid) {
2624 ewah_set(wd->valid, i);
2625 stat_data_to_disk(&stat_data, &untracked->stat_data);
2626 strbuf_add(&wd->sb_stat, &stat_data, sizeof(stat_data));
2627 }
2628 if (!is_null_oid(&untracked->exclude_oid)) {
2629 ewah_set(wd->sha1_valid, i);
2630 strbuf_add(&wd->sb_sha1, untracked->exclude_oid.hash,
2631 the_hash_algo->rawsz);
2632 }
2633
2634 intlen = encode_varint(untracked->untracked_nr, intbuf);
2635 strbuf_add(out, intbuf, intlen);
2636
2637 /* skip non-recurse directories */
2638 for (i = 0, value = 0; i < untracked->dirs_nr; i++)
2639 if (untracked->dirs[i]->recurse)
2640 value++;
2641 intlen = encode_varint(value, intbuf);
2642 strbuf_add(out, intbuf, intlen);
2643
2644 strbuf_add(out, untracked->name, strlen(untracked->name) + 1);
2645
2646 for (i = 0; i < untracked->untracked_nr; i++)
2647 strbuf_add(out, untracked->untracked[i],
2648 strlen(untracked->untracked[i]) + 1);
2649
2650 for (i = 0; i < untracked->dirs_nr; i++)
2651 if (untracked->dirs[i]->recurse)
2652 write_one_dir(untracked->dirs[i], wd);
2653 }
2654
2655 void write_untracked_extension(struct strbuf *out, struct untracked_cache *untracked)
2656 {
2657 struct ondisk_untracked_cache *ouc;
2658 struct write_data wd;
2659 unsigned char varbuf[16];
2660 int varint_len;
2661 const unsigned hashsz = the_hash_algo->rawsz;
2662
2663 ouc = xcalloc(1, sizeof(*ouc));
2664 stat_data_to_disk(&ouc->info_exclude_stat, &untracked->ss_info_exclude.stat);
2665 stat_data_to_disk(&ouc->excludes_file_stat, &untracked->ss_excludes_file.stat);
2666 ouc->dir_flags = htonl(untracked->dir_flags);
2667
2668 varint_len = encode_varint(untracked->ident.len, varbuf);
2669 strbuf_add(out, varbuf, varint_len);
2670 strbuf_addbuf(out, &untracked->ident);
2671
2672 strbuf_add(out, ouc, sizeof(*ouc));
2673 strbuf_add(out, untracked->ss_info_exclude.oid.hash, hashsz);
2674 strbuf_add(out, untracked->ss_excludes_file.oid.hash, hashsz);
2675 strbuf_add(out, untracked->exclude_per_dir, strlen(untracked->exclude_per_dir) + 1);
2676 FREE_AND_NULL(ouc);
2677
2678 if (!untracked->root) {
2679 varint_len = encode_varint(0, varbuf);
2680 strbuf_add(out, varbuf, varint_len);
2681 return;
2682 }
2683
2684 wd.index = 0;
2685 wd.check_only = ewah_new();
2686 wd.valid = ewah_new();
2687 wd.sha1_valid = ewah_new();
2688 strbuf_init(&wd.out, 1024);
2689 strbuf_init(&wd.sb_stat, 1024);
2690 strbuf_init(&wd.sb_sha1, 1024);
2691 write_one_dir(untracked->root, &wd);
2692
2693 varint_len = encode_varint(wd.index, varbuf);
2694 strbuf_add(out, varbuf, varint_len);
2695 strbuf_addbuf(out, &wd.out);
2696 ewah_serialize_strbuf(wd.valid, out);
2697 ewah_serialize_strbuf(wd.check_only, out);
2698 ewah_serialize_strbuf(wd.sha1_valid, out);
2699 strbuf_addbuf(out, &wd.sb_stat);
2700 strbuf_addbuf(out, &wd.sb_sha1);
2701 strbuf_addch(out, '\0'); /* safe guard for string lists */
2702
2703 ewah_free(wd.valid);
2704 ewah_free(wd.check_only);
2705 ewah_free(wd.sha1_valid);
2706 strbuf_release(&wd.out);
2707 strbuf_release(&wd.sb_stat);
2708 strbuf_release(&wd.sb_sha1);
2709 }
2710
2711 static void free_untracked(struct untracked_cache_dir *ucd)
2712 {
2713 int i;
2714 if (!ucd)
2715 return;
2716 for (i = 0; i < ucd->dirs_nr; i++)
2717 free_untracked(ucd->dirs[i]);
2718 for (i = 0; i < ucd->untracked_nr; i++)
2719 free(ucd->untracked[i]);
2720 free(ucd->untracked);
2721 free(ucd->dirs);
2722 free(ucd);
2723 }
2724
2725 void free_untracked_cache(struct untracked_cache *uc)
2726 {
2727 if (uc)
2728 free_untracked(uc->root);
2729 free(uc);
2730 }
2731
2732 struct read_data {
2733 int index;
2734 struct untracked_cache_dir **ucd;
2735 struct ewah_bitmap *check_only;
2736 struct ewah_bitmap *valid;
2737 struct ewah_bitmap *sha1_valid;
2738 const unsigned char *data;
2739 const unsigned char *end;
2740 };
2741
2742 static void stat_data_from_disk(struct stat_data *to, const unsigned char *data)
2743 {
2744 memcpy(to, data, sizeof(*to));
2745 to->sd_ctime.sec = ntohl(to->sd_ctime.sec);
2746 to->sd_ctime.nsec = ntohl(to->sd_ctime.nsec);
2747 to->sd_mtime.sec = ntohl(to->sd_mtime.sec);
2748 to->sd_mtime.nsec = ntohl(to->sd_mtime.nsec);
2749 to->sd_dev = ntohl(to->sd_dev);
2750 to->sd_ino = ntohl(to->sd_ino);
2751 to->sd_uid = ntohl(to->sd_uid);
2752 to->sd_gid = ntohl(to->sd_gid);
2753 to->sd_size = ntohl(to->sd_size);
2754 }
2755
2756 static int read_one_dir(struct untracked_cache_dir **untracked_,
2757 struct read_data *rd)
2758 {
2759 struct untracked_cache_dir ud, *untracked;
2760 const unsigned char *data = rd->data, *end = rd->end;
2761 const unsigned char *eos;
2762 unsigned int value;
2763 int i;
2764
2765 memset(&ud, 0, sizeof(ud));
2766
2767 value = decode_varint(&data);
2768 if (data > end)
2769 return -1;
2770 ud.recurse = 1;
2771 ud.untracked_alloc = value;
2772 ud.untracked_nr = value;
2773 if (ud.untracked_nr)
2774 ALLOC_ARRAY(ud.untracked, ud.untracked_nr);
2775
2776 ud.dirs_alloc = ud.dirs_nr = decode_varint(&data);
2777 if (data > end)
2778 return -1;
2779 ALLOC_ARRAY(ud.dirs, ud.dirs_nr);
2780
2781 eos = memchr(data, '\0', end - data);
2782 if (!eos || eos == end)
2783 return -1;
2784
2785 *untracked_ = untracked = xmalloc(st_add3(sizeof(*untracked), eos - data, 1));
2786 memcpy(untracked, &ud, sizeof(ud));
2787 memcpy(untracked->name, data, eos - data + 1);
2788 data = eos + 1;
2789
2790 for (i = 0; i < untracked->untracked_nr; i++) {
2791 eos = memchr(data, '\0', end - data);
2792 if (!eos || eos == end)
2793 return -1;
2794 untracked->untracked[i] = xmemdupz(data, eos - data);
2795 data = eos + 1;
2796 }
2797
2798 rd->ucd[rd->index++] = untracked;
2799 rd->data = data;
2800
2801 for (i = 0; i < untracked->dirs_nr; i++) {
2802 if (read_one_dir(untracked->dirs + i, rd) < 0)
2803 return -1;
2804 }
2805 return 0;
2806 }
2807
2808 static void set_check_only(size_t pos, void *cb)
2809 {
2810 struct read_data *rd = cb;
2811 struct untracked_cache_dir *ud = rd->ucd[pos];
2812 ud->check_only = 1;
2813 }
2814
2815 static void read_stat(size_t pos, void *cb)
2816 {
2817 struct read_data *rd = cb;
2818 struct untracked_cache_dir *ud = rd->ucd[pos];
2819 if (rd->data + sizeof(struct stat_data) > rd->end) {
2820 rd->data = rd->end + 1;
2821 return;
2822 }
2823 stat_data_from_disk(&ud->stat_data, rd->data);
2824 rd->data += sizeof(struct stat_data);
2825 ud->valid = 1;
2826 }
2827
2828 static void read_oid(size_t pos, void *cb)
2829 {
2830 struct read_data *rd = cb;
2831 struct untracked_cache_dir *ud = rd->ucd[pos];
2832 if (rd->data + the_hash_algo->rawsz > rd->end) {
2833 rd->data = rd->end + 1;
2834 return;
2835 }
2836 hashcpy(ud->exclude_oid.hash, rd->data);
2837 rd->data += the_hash_algo->rawsz;
2838 }
2839
2840 static void load_oid_stat(struct oid_stat *oid_stat, const unsigned char *data,
2841 const unsigned char *sha1)
2842 {
2843 stat_data_from_disk(&oid_stat->stat, data);
2844 hashcpy(oid_stat->oid.hash, sha1);
2845 oid_stat->valid = 1;
2846 }
2847
2848 struct untracked_cache *read_untracked_extension(const void *data, unsigned long sz)
2849 {
2850 struct untracked_cache *uc;
2851 struct read_data rd;
2852 const unsigned char *next = data, *end = (const unsigned char *)data + sz;
2853 const char *ident;
2854 int ident_len;
2855 ssize_t len;
2856 const char *exclude_per_dir;
2857 const unsigned hashsz = the_hash_algo->rawsz;
2858 const unsigned offset = sizeof(struct ondisk_untracked_cache);
2859 const unsigned exclude_per_dir_offset = offset + 2 * hashsz;
2860
2861 if (sz <= 1 || end[-1] != '\0')
2862 return NULL;
2863 end--;
2864
2865 ident_len = decode_varint(&next);
2866 if (next + ident_len > end)
2867 return NULL;
2868 ident = (const char *)next;
2869 next += ident_len;
2870
2871 if (next + exclude_per_dir_offset + 1 > end)
2872 return NULL;
2873
2874 uc = xcalloc(1, sizeof(*uc));
2875 strbuf_init(&uc->ident, ident_len);
2876 strbuf_add(&uc->ident, ident, ident_len);
2877 load_oid_stat(&uc->ss_info_exclude,
2878 next + ouc_offset(info_exclude_stat),
2879 next + offset);
2880 load_oid_stat(&uc->ss_excludes_file,
2881 next + ouc_offset(excludes_file_stat),
2882 next + offset + hashsz);
2883 uc->dir_flags = get_be32(next + ouc_offset(dir_flags));
2884 exclude_per_dir = (const char *)next + exclude_per_dir_offset;
2885 uc->exclude_per_dir = xstrdup(exclude_per_dir);
2886 /* NUL after exclude_per_dir is covered by sizeof(*ouc) */
2887 next += exclude_per_dir_offset + strlen(exclude_per_dir) + 1;
2888 if (next >= end)
2889 goto done2;
2890
2891 len = decode_varint(&next);
2892 if (next > end || len == 0)
2893 goto done2;
2894
2895 rd.valid = ewah_new();
2896 rd.check_only = ewah_new();
2897 rd.sha1_valid = ewah_new();
2898 rd.data = next;
2899 rd.end = end;
2900 rd.index = 0;
2901 ALLOC_ARRAY(rd.ucd, len);
2902
2903 if (read_one_dir(&uc->root, &rd) || rd.index != len)
2904 goto done;
2905
2906 next = rd.data;
2907 len = ewah_read_mmap(rd.valid, next, end - next);
2908 if (len < 0)
2909 goto done;
2910
2911 next += len;
2912 len = ewah_read_mmap(rd.check_only, next, end - next);
2913 if (len < 0)
2914 goto done;
2915
2916 next += len;
2917 len = ewah_read_mmap(rd.sha1_valid, next, end - next);
2918 if (len < 0)
2919 goto done;
2920
2921 ewah_each_bit(rd.check_only, set_check_only, &rd);
2922 rd.data = next + len;
2923 ewah_each_bit(rd.valid, read_stat, &rd);
2924 ewah_each_bit(rd.sha1_valid, read_oid, &rd);
2925 next = rd.data;
2926
2927 done:
2928 free(rd.ucd);
2929 ewah_free(rd.valid);
2930 ewah_free(rd.check_only);
2931 ewah_free(rd.sha1_valid);
2932 done2:
2933 if (next != end) {
2934 free_untracked_cache(uc);
2935 uc = NULL;
2936 }
2937 return uc;
2938 }
2939
2940 static void invalidate_one_directory(struct untracked_cache *uc,
2941 struct untracked_cache_dir *ucd)
2942 {
2943 uc->dir_invalidated++;
2944 ucd->valid = 0;
2945 ucd->untracked_nr = 0;
2946 }
2947
2948 /*
2949 * Normally when an entry is added or removed from a directory,
2950 * invalidating that directory is enough. No need to touch its
2951 * ancestors. When a directory is shown as "foo/bar/" in git-status
2952 * however, deleting or adding an entry may have cascading effect.
2953 *
2954 * Say the "foo/bar/file" has become untracked, we need to tell the
2955 * untracked_cache_dir of "foo" that "bar/" is not an untracked
2956 * directory any more (because "bar" is managed by foo as an untracked
2957 * "file").
2958 *
2959 * Similarly, if "foo/bar/file" moves from untracked to tracked and it
2960 * was the last untracked entry in the entire "foo", we should show
2961 * "foo/" instead. Which means we have to invalidate past "bar" up to
2962 * "foo".
2963 *
2964 * This function traverses all directories from root to leaf. If there
2965 * is a chance of one of the above cases happening, we invalidate back
2966 * to root. Otherwise we just invalidate the leaf. There may be a more
2967 * sophisticated way than checking for SHOW_OTHER_DIRECTORIES to
2968 * detect these cases and avoid unnecessary invalidation, for example,
2969 * checking for the untracked entry named "bar/" in "foo", but for now
2970 * stick to something safe and simple.
2971 */
2972 static int invalidate_one_component(struct untracked_cache *uc,
2973 struct untracked_cache_dir *dir,
2974 const char *path, int len)
2975 {
2976 const char *rest = strchr(path, '/');
2977
2978 if (rest) {
2979 int component_len = rest - path;
2980 struct untracked_cache_dir *d =
2981 lookup_untracked(uc, dir, path, component_len);
2982 int ret =
2983 invalidate_one_component(uc, d, rest + 1,
2984 len - (component_len + 1));
2985 if (ret)
2986 invalidate_one_directory(uc, dir);
2987 return ret;
2988 }
2989
2990 invalidate_one_directory(uc, dir);
2991 return uc->dir_flags & DIR_SHOW_OTHER_DIRECTORIES;
2992 }
2993
2994 void untracked_cache_invalidate_path(struct index_state *istate,
2995 const char *path, int safe_path)
2996 {
2997 if (!istate->untracked || !istate->untracked->root)
2998 return;
2999 if (!safe_path && !verify_path(path, 0))
3000 return;
3001 invalidate_one_component(istate->untracked, istate->untracked->root,
3002 path, strlen(path));
3003 }
3004
3005 void untracked_cache_remove_from_index(struct index_state *istate,
3006 const char *path)
3007 {
3008 untracked_cache_invalidate_path(istate, path, 1);
3009 }
3010
3011 void untracked_cache_add_to_index(struct index_state *istate,
3012 const char *path)
3013 {
3014 untracked_cache_invalidate_path(istate, path, 1);
3015 }
3016
3017 static void connect_wt_gitdir_in_nested(const char *sub_worktree,
3018 const char *sub_gitdir)
3019 {
3020 int i;
3021 struct repository subrepo;
3022 struct strbuf sub_wt = STRBUF_INIT;
3023 struct strbuf sub_gd = STRBUF_INIT;
3024
3025 const struct submodule *sub;
3026
3027 /* If the submodule has no working tree, we can ignore it. */
3028 if (repo_init(&subrepo, sub_gitdir, sub_worktree))
3029 return;
3030
3031 if (repo_read_index(&subrepo) < 0)
3032 die(_("index file corrupt in repo %s"), subrepo.gitdir);
3033
3034 for (i = 0; i < subrepo.index->cache_nr; i++) {
3035 const struct cache_entry *ce = subrepo.index->cache[i];
3036
3037 if (!S_ISGITLINK(ce->ce_mode))
3038 continue;
3039
3040 while (i + 1 < subrepo.index->cache_nr &&
3041 !strcmp(ce->name, subrepo.index->cache[i + 1]->name))
3042 /*
3043 * Skip entries with the same name in different stages
3044 * to make sure an entry is returned only once.
3045 */
3046 i++;
3047
3048 sub = submodule_from_path(&subrepo, &null_oid, ce->name);
3049 if (!sub || !is_submodule_active(&subrepo, ce->name))
3050 /* .gitmodules broken or inactive sub */
3051 continue;
3052
3053 strbuf_reset(&sub_wt);
3054 strbuf_reset(&sub_gd);
3055 strbuf_addf(&sub_wt, "%s/%s", sub_worktree, sub->path);
3056 strbuf_addf(&sub_gd, "%s/modules/%s", sub_gitdir, sub->name);
3057
3058 connect_work_tree_and_git_dir(sub_wt.buf, sub_gd.buf, 1);
3059 }
3060 strbuf_release(&sub_wt);
3061 strbuf_release(&sub_gd);
3062 repo_clear(&subrepo);
3063 }
3064
3065 void connect_work_tree_and_git_dir(const char *work_tree_,
3066 const char *git_dir_,
3067 int recurse_into_nested)
3068 {
3069 struct strbuf gitfile_sb = STRBUF_INIT;
3070 struct strbuf cfg_sb = STRBUF_INIT;
3071 struct strbuf rel_path = STRBUF_INIT;
3072 char *git_dir, *work_tree;
3073
3074 /* Prepare .git file */
3075 strbuf_addf(&gitfile_sb, "%s/.git", work_tree_);
3076 if (safe_create_leading_directories_const(gitfile_sb.buf))
3077 die(_("could not create directories for %s"), gitfile_sb.buf);
3078
3079 /* Prepare config file */
3080 strbuf_addf(&cfg_sb, "%s/config", git_dir_);
3081 if (safe_create_leading_directories_const(cfg_sb.buf))
3082 die(_("could not create directories for %s"), cfg_sb.buf);
3083
3084 git_dir = real_pathdup(git_dir_, 1);
3085 work_tree = real_pathdup(work_tree_, 1);
3086
3087 /* Write .git file */
3088 write_file(gitfile_sb.buf, "gitdir: %s",
3089 relative_path(git_dir, work_tree, &rel_path));
3090 /* Update core.worktree setting */
3091 git_config_set_in_file(cfg_sb.buf, "core.worktree",
3092 relative_path(work_tree, git_dir, &rel_path));
3093
3094 strbuf_release(&gitfile_sb);
3095 strbuf_release(&cfg_sb);
3096 strbuf_release(&rel_path);
3097
3098 if (recurse_into_nested)
3099 connect_wt_gitdir_in_nested(work_tree, git_dir);
3100
3101 free(work_tree);
3102 free(git_dir);
3103 }
3104
3105 /*
3106 * Migrate the git directory of the given path from old_git_dir to new_git_dir.
3107 */
3108 void relocate_gitdir(const char *path, const char *old_git_dir, const char *new_git_dir)
3109 {
3110 if (rename(old_git_dir, new_git_dir) < 0)
3111 die_errno(_("could not migrate git directory from '%s' to '%s'"),
3112 old_git_dir, new_git_dir);
3113
3114 connect_work_tree_and_git_dir(path, new_git_dir, 0);
3115 }