]> git.ipfire.org Git - thirdparty/git.git/blob - attr.c
Merge branch 'ps/attr-limits' into maint-2.32
[thirdparty/git.git] / attr.c
1 /*
2 * Handle git attributes. See gitattributes(5) for a description of
3 * the file syntax, and attr.h for a description of the API.
4 *
5 * One basic design decision here is that we are not going to support
6 * an insanely large number of attributes.
7 */
8
9 #include "cache.h"
10 #include "config.h"
11 #include "exec-cmd.h"
12 #include "attr.h"
13 #include "dir.h"
14 #include "utf8.h"
15 #include "quote.h"
16 #include "thread-utils.h"
17
18 const char git_attr__true[] = "(builtin)true";
19 const char git_attr__false[] = "\0(builtin)false";
20 static const char git_attr__unknown[] = "(builtin)unknown";
21 #define ATTR__TRUE git_attr__true
22 #define ATTR__FALSE git_attr__false
23 #define ATTR__UNSET NULL
24 #define ATTR__UNKNOWN git_attr__unknown
25
26 #ifndef DEBUG_ATTR
27 #define DEBUG_ATTR 0
28 #endif
29
30 struct git_attr {
31 unsigned int attr_nr; /* unique attribute number */
32 char name[FLEX_ARRAY]; /* attribute name */
33 };
34
35 const char *git_attr_name(const struct git_attr *attr)
36 {
37 return attr->name;
38 }
39
40 struct attr_hashmap {
41 struct hashmap map;
42 pthread_mutex_t mutex;
43 };
44
45 static inline void hashmap_lock(struct attr_hashmap *map)
46 {
47 pthread_mutex_lock(&map->mutex);
48 }
49
50 static inline void hashmap_unlock(struct attr_hashmap *map)
51 {
52 pthread_mutex_unlock(&map->mutex);
53 }
54
55 /* The container for objects stored in "struct attr_hashmap" */
56 struct attr_hash_entry {
57 struct hashmap_entry ent;
58 const char *key; /* the key; memory should be owned by value */
59 size_t keylen; /* length of the key */
60 void *value; /* the stored value */
61 };
62
63 /* attr_hashmap comparison function */
64 static int attr_hash_entry_cmp(const void *unused_cmp_data,
65 const struct hashmap_entry *eptr,
66 const struct hashmap_entry *entry_or_key,
67 const void *unused_keydata)
68 {
69 const struct attr_hash_entry *a, *b;
70
71 a = container_of(eptr, const struct attr_hash_entry, ent);
72 b = container_of(entry_or_key, const struct attr_hash_entry, ent);
73 return (a->keylen != b->keylen) || strncmp(a->key, b->key, a->keylen);
74 }
75
76 /*
77 * The global dictionary of all interned attributes. This
78 * is a singleton object which is shared between threads.
79 * Access to this dictionary must be surrounded with a mutex.
80 */
81 static struct attr_hashmap g_attr_hashmap = {
82 HASHMAP_INIT(attr_hash_entry_cmp, NULL)
83 };
84
85 /*
86 * Retrieve the 'value' stored in a hashmap given the provided 'key'.
87 * If there is no matching entry, return NULL.
88 */
89 static void *attr_hashmap_get(struct attr_hashmap *map,
90 const char *key, size_t keylen)
91 {
92 struct attr_hash_entry k;
93 struct attr_hash_entry *e;
94
95 hashmap_entry_init(&k.ent, memhash(key, keylen));
96 k.key = key;
97 k.keylen = keylen;
98 e = hashmap_get_entry(&map->map, &k, ent, NULL);
99
100 return e ? e->value : NULL;
101 }
102
103 /* Add 'value' to a hashmap based on the provided 'key'. */
104 static void attr_hashmap_add(struct attr_hashmap *map,
105 const char *key, size_t keylen,
106 void *value)
107 {
108 struct attr_hash_entry *e;
109
110 e = xmalloc(sizeof(struct attr_hash_entry));
111 hashmap_entry_init(&e->ent, memhash(key, keylen));
112 e->key = key;
113 e->keylen = keylen;
114 e->value = value;
115
116 hashmap_add(&map->map, &e->ent);
117 }
118
119 struct all_attrs_item {
120 const struct git_attr *attr;
121 const char *value;
122 /*
123 * If 'macro' is non-NULL, indicates that 'attr' is a macro based on
124 * the current attribute stack and contains a pointer to the match_attr
125 * definition of the macro
126 */
127 const struct match_attr *macro;
128 };
129
130 /*
131 * Reallocate and reinitialize the array of all attributes (which is used in
132 * the attribute collection process) in 'check' based on the global dictionary
133 * of attributes.
134 */
135 static void all_attrs_init(struct attr_hashmap *map, struct attr_check *check)
136 {
137 int i;
138 unsigned int size;
139
140 hashmap_lock(map);
141
142 size = hashmap_get_size(&map->map);
143 if (size < check->all_attrs_nr)
144 BUG("interned attributes shouldn't be deleted");
145
146 /*
147 * If the number of attributes in the global dictionary has increased
148 * (or this attr_check instance doesn't have an initialized all_attrs
149 * field), reallocate the provided attr_check instance's all_attrs
150 * field and fill each entry with its corresponding git_attr.
151 */
152 if (size != check->all_attrs_nr) {
153 struct attr_hash_entry *e;
154 struct hashmap_iter iter;
155
156 REALLOC_ARRAY(check->all_attrs, size);
157 check->all_attrs_nr = size;
158
159 hashmap_for_each_entry(&map->map, &iter, e,
160 ent /* member name */) {
161 const struct git_attr *a = e->value;
162 check->all_attrs[a->attr_nr].attr = a;
163 }
164 }
165
166 hashmap_unlock(map);
167
168 /*
169 * Re-initialize every entry in check->all_attrs.
170 * This re-initialization can live outside of the locked region since
171 * the attribute dictionary is no longer being accessed.
172 */
173 for (i = 0; i < check->all_attrs_nr; i++) {
174 check->all_attrs[i].value = ATTR__UNKNOWN;
175 check->all_attrs[i].macro = NULL;
176 }
177 }
178
179 static int attr_name_valid(const char *name, size_t namelen)
180 {
181 /*
182 * Attribute name cannot begin with '-' and must consist of
183 * characters from [-A-Za-z0-9_.].
184 */
185 if (namelen <= 0 || *name == '-')
186 return 0;
187 while (namelen--) {
188 char ch = *name++;
189 if (! (ch == '-' || ch == '.' || ch == '_' ||
190 ('0' <= ch && ch <= '9') ||
191 ('a' <= ch && ch <= 'z') ||
192 ('A' <= ch && ch <= 'Z')) )
193 return 0;
194 }
195 return 1;
196 }
197
198 static void report_invalid_attr(const char *name, size_t len,
199 const char *src, int lineno)
200 {
201 struct strbuf err = STRBUF_INIT;
202 strbuf_addf(&err, _("%.*s is not a valid attribute name"),
203 (int) len, name);
204 fprintf(stderr, "%s: %s:%d\n", err.buf, src, lineno);
205 strbuf_release(&err);
206 }
207
208 /*
209 * Given a 'name', lookup and return the corresponding attribute in the global
210 * dictionary. If no entry is found, create a new attribute and store it in
211 * the dictionary.
212 */
213 static const struct git_attr *git_attr_internal(const char *name, size_t namelen)
214 {
215 struct git_attr *a;
216
217 if (!attr_name_valid(name, namelen))
218 return NULL;
219
220 hashmap_lock(&g_attr_hashmap);
221
222 a = attr_hashmap_get(&g_attr_hashmap, name, namelen);
223
224 if (!a) {
225 FLEX_ALLOC_MEM(a, name, name, namelen);
226 a->attr_nr = hashmap_get_size(&g_attr_hashmap.map);
227
228 attr_hashmap_add(&g_attr_hashmap, a->name, namelen, a);
229 if (a->attr_nr != hashmap_get_size(&g_attr_hashmap.map) - 1)
230 die(_("unable to add additional attribute"));
231 }
232
233 hashmap_unlock(&g_attr_hashmap);
234
235 return a;
236 }
237
238 const struct git_attr *git_attr(const char *name)
239 {
240 return git_attr_internal(name, strlen(name));
241 }
242
243 /* What does a matched pattern decide? */
244 struct attr_state {
245 const struct git_attr *attr;
246 const char *setto;
247 };
248
249 struct pattern {
250 const char *pattern;
251 int patternlen;
252 int nowildcardlen;
253 unsigned flags; /* PATTERN_FLAG_* */
254 };
255
256 /*
257 * One rule, as from a .gitattributes file.
258 *
259 * If is_macro is true, then u.attr is a pointer to the git_attr being
260 * defined.
261 *
262 * If is_macro is false, then u.pat is the filename pattern to which the
263 * rule applies.
264 *
265 * In either case, num_attr is the number of attributes affected by
266 * this rule, and state is an array listing them. The attributes are
267 * listed as they appear in the file (macros unexpanded).
268 */
269 struct match_attr {
270 union {
271 struct pattern pat;
272 const struct git_attr *attr;
273 } u;
274 char is_macro;
275 size_t num_attr;
276 struct attr_state state[FLEX_ARRAY];
277 };
278
279 static const char blank[] = " \t\r\n";
280
281 /* Flags usable in read_attr() and parse_attr_line() family of functions. */
282 #define READ_ATTR_MACRO_OK (1<<0)
283 #define READ_ATTR_NOFOLLOW (1<<1)
284
285 /*
286 * Parse a whitespace-delimited attribute state (i.e., "attr",
287 * "-attr", "!attr", or "attr=value") from the string starting at src.
288 * If e is not NULL, write the results to *e. Return a pointer to the
289 * remainder of the string (with leading whitespace removed), or NULL
290 * if there was an error.
291 */
292 static const char *parse_attr(const char *src, int lineno, const char *cp,
293 struct attr_state *e)
294 {
295 const char *ep, *equals;
296 size_t len;
297
298 ep = cp + strcspn(cp, blank);
299 equals = strchr(cp, '=');
300 if (equals && ep < equals)
301 equals = NULL;
302 if (equals)
303 len = equals - cp;
304 else
305 len = ep - cp;
306 if (!e) {
307 if (*cp == '-' || *cp == '!') {
308 cp++;
309 len--;
310 }
311 if (!attr_name_valid(cp, len)) {
312 report_invalid_attr(cp, len, src, lineno);
313 return NULL;
314 }
315 } else {
316 /*
317 * As this function is always called twice, once with
318 * e == NULL in the first pass and then e != NULL in
319 * the second pass, no need for attr_name_valid()
320 * check here.
321 */
322 if (*cp == '-' || *cp == '!') {
323 e->setto = (*cp == '-') ? ATTR__FALSE : ATTR__UNSET;
324 cp++;
325 len--;
326 }
327 else if (!equals)
328 e->setto = ATTR__TRUE;
329 else {
330 e->setto = xmemdupz(equals + 1, ep - equals - 1);
331 }
332 e->attr = git_attr_internal(cp, len);
333 }
334 return ep + strspn(ep, blank);
335 }
336
337 static struct match_attr *parse_attr_line(const char *line, const char *src,
338 int lineno, unsigned flags)
339 {
340 size_t namelen, num_attr, i;
341 const char *cp, *name, *states;
342 struct match_attr *res = NULL;
343 int is_macro;
344 struct strbuf pattern = STRBUF_INIT;
345
346 cp = line + strspn(line, blank);
347 if (!*cp || *cp == '#')
348 return NULL;
349 name = cp;
350
351 if (strlen(line) >= ATTR_MAX_LINE_LENGTH) {
352 warning(_("ignoring overly long attributes line %d"), lineno);
353 return NULL;
354 }
355
356 if (*cp == '"' && !unquote_c_style(&pattern, name, &states)) {
357 name = pattern.buf;
358 namelen = pattern.len;
359 } else {
360 namelen = strcspn(name, blank);
361 states = name + namelen;
362 }
363
364 if (strlen(ATTRIBUTE_MACRO_PREFIX) < namelen &&
365 starts_with(name, ATTRIBUTE_MACRO_PREFIX)) {
366 if (!(flags & READ_ATTR_MACRO_OK)) {
367 fprintf_ln(stderr, _("%s not allowed: %s:%d"),
368 name, src, lineno);
369 goto fail_return;
370 }
371 is_macro = 1;
372 name += strlen(ATTRIBUTE_MACRO_PREFIX);
373 name += strspn(name, blank);
374 namelen = strcspn(name, blank);
375 if (!attr_name_valid(name, namelen)) {
376 report_invalid_attr(name, namelen, src, lineno);
377 goto fail_return;
378 }
379 }
380 else
381 is_macro = 0;
382
383 states += strspn(states, blank);
384
385 /* First pass to count the attr_states */
386 for (cp = states, num_attr = 0; *cp; num_attr++) {
387 cp = parse_attr(src, lineno, cp, NULL);
388 if (!cp)
389 goto fail_return;
390 }
391
392 res = xcalloc(1, st_add3(sizeof(*res),
393 st_mult(sizeof(struct attr_state), num_attr),
394 is_macro ? 0 : namelen + 1));
395 if (is_macro) {
396 res->u.attr = git_attr_internal(name, namelen);
397 } else {
398 char *p = (char *)&(res->state[num_attr]);
399 memcpy(p, name, namelen);
400 res->u.pat.pattern = p;
401 parse_path_pattern(&res->u.pat.pattern,
402 &res->u.pat.patternlen,
403 &res->u.pat.flags,
404 &res->u.pat.nowildcardlen);
405 if (res->u.pat.flags & PATTERN_FLAG_NEGATIVE) {
406 warning(_("Negative patterns are ignored in git attributes\n"
407 "Use '\\!' for literal leading exclamation."));
408 goto fail_return;
409 }
410 }
411 res->is_macro = is_macro;
412 res->num_attr = num_attr;
413
414 /* Second pass to fill the attr_states */
415 for (cp = states, i = 0; *cp; i++) {
416 cp = parse_attr(src, lineno, cp, &(res->state[i]));
417 }
418
419 strbuf_release(&pattern);
420 return res;
421
422 fail_return:
423 strbuf_release(&pattern);
424 free(res);
425 return NULL;
426 }
427
428 /*
429 * Like info/exclude and .gitignore, the attribute information can
430 * come from many places.
431 *
432 * (1) .gitattributes file of the same directory;
433 * (2) .gitattributes file of the parent directory if (1) does not have
434 * any match; this goes recursively upwards, just like .gitignore.
435 * (3) $GIT_DIR/info/attributes, which overrides both of the above.
436 *
437 * In the same file, later entries override the earlier match, so in the
438 * global list, we would have entries from info/attributes the earliest
439 * (reading the file from top to bottom), .gitattributes of the root
440 * directory (again, reading the file from top to bottom) down to the
441 * current directory, and then scan the list backwards to find the first match.
442 * This is exactly the same as what is_excluded() does in dir.c to deal with
443 * .gitignore file and info/excludes file as a fallback.
444 */
445
446 struct attr_stack {
447 struct attr_stack *prev;
448 char *origin;
449 size_t originlen;
450 unsigned num_matches;
451 unsigned alloc;
452 struct match_attr **attrs;
453 };
454
455 static void attr_stack_free(struct attr_stack *e)
456 {
457 unsigned i;
458 free(e->origin);
459 for (i = 0; i < e->num_matches; i++) {
460 struct match_attr *a = e->attrs[i];
461 size_t j;
462
463 for (j = 0; j < a->num_attr; j++) {
464 const char *setto = a->state[j].setto;
465 if (setto == ATTR__TRUE ||
466 setto == ATTR__FALSE ||
467 setto == ATTR__UNSET ||
468 setto == ATTR__UNKNOWN)
469 ;
470 else
471 free((char *) setto);
472 }
473 free(a);
474 }
475 free(e->attrs);
476 free(e);
477 }
478
479 static void drop_attr_stack(struct attr_stack **stack)
480 {
481 while (*stack) {
482 struct attr_stack *elem = *stack;
483 *stack = elem->prev;
484 attr_stack_free(elem);
485 }
486 }
487
488 /* List of all attr_check structs; access should be surrounded by mutex */
489 static struct check_vector {
490 size_t nr;
491 size_t alloc;
492 struct attr_check **checks;
493 pthread_mutex_t mutex;
494 } check_vector;
495
496 static inline void vector_lock(void)
497 {
498 pthread_mutex_lock(&check_vector.mutex);
499 }
500
501 static inline void vector_unlock(void)
502 {
503 pthread_mutex_unlock(&check_vector.mutex);
504 }
505
506 static void check_vector_add(struct attr_check *c)
507 {
508 vector_lock();
509
510 ALLOC_GROW(check_vector.checks,
511 check_vector.nr + 1,
512 check_vector.alloc);
513 check_vector.checks[check_vector.nr++] = c;
514
515 vector_unlock();
516 }
517
518 static void check_vector_remove(struct attr_check *check)
519 {
520 int i;
521
522 vector_lock();
523
524 /* Find entry */
525 for (i = 0; i < check_vector.nr; i++)
526 if (check_vector.checks[i] == check)
527 break;
528
529 if (i >= check_vector.nr)
530 BUG("no entry found");
531
532 /* shift entries over */
533 for (; i < check_vector.nr - 1; i++)
534 check_vector.checks[i] = check_vector.checks[i + 1];
535
536 check_vector.nr--;
537
538 vector_unlock();
539 }
540
541 /* Iterate through all attr_check instances and drop their stacks */
542 static void drop_all_attr_stacks(void)
543 {
544 int i;
545
546 vector_lock();
547
548 for (i = 0; i < check_vector.nr; i++) {
549 drop_attr_stack(&check_vector.checks[i]->stack);
550 }
551
552 vector_unlock();
553 }
554
555 struct attr_check *attr_check_alloc(void)
556 {
557 struct attr_check *c = xcalloc(1, sizeof(struct attr_check));
558
559 /* save pointer to the check struct */
560 check_vector_add(c);
561
562 return c;
563 }
564
565 struct attr_check *attr_check_initl(const char *one, ...)
566 {
567 struct attr_check *check;
568 int cnt;
569 va_list params;
570 const char *param;
571
572 va_start(params, one);
573 for (cnt = 1; (param = va_arg(params, const char *)) != NULL; cnt++)
574 ;
575 va_end(params);
576
577 check = attr_check_alloc();
578 check->nr = cnt;
579 check->alloc = cnt;
580 CALLOC_ARRAY(check->items, cnt);
581
582 check->items[0].attr = git_attr(one);
583 va_start(params, one);
584 for (cnt = 1; cnt < check->nr; cnt++) {
585 const struct git_attr *attr;
586 param = va_arg(params, const char *);
587 if (!param)
588 BUG("counted %d != ended at %d",
589 check->nr, cnt);
590 attr = git_attr(param);
591 if (!attr)
592 BUG("%s: not a valid attribute name", param);
593 check->items[cnt].attr = attr;
594 }
595 va_end(params);
596 return check;
597 }
598
599 struct attr_check *attr_check_dup(const struct attr_check *check)
600 {
601 struct attr_check *ret;
602
603 if (!check)
604 return NULL;
605
606 ret = attr_check_alloc();
607
608 ret->nr = check->nr;
609 ret->alloc = check->alloc;
610 ALLOC_ARRAY(ret->items, ret->nr);
611 COPY_ARRAY(ret->items, check->items, ret->nr);
612
613 return ret;
614 }
615
616 struct attr_check_item *attr_check_append(struct attr_check *check,
617 const struct git_attr *attr)
618 {
619 struct attr_check_item *item;
620
621 ALLOC_GROW(check->items, check->nr + 1, check->alloc);
622 item = &check->items[check->nr++];
623 item->attr = attr;
624 return item;
625 }
626
627 void attr_check_reset(struct attr_check *check)
628 {
629 check->nr = 0;
630 }
631
632 void attr_check_clear(struct attr_check *check)
633 {
634 FREE_AND_NULL(check->items);
635 check->alloc = 0;
636 check->nr = 0;
637
638 FREE_AND_NULL(check->all_attrs);
639 check->all_attrs_nr = 0;
640
641 drop_attr_stack(&check->stack);
642 }
643
644 void attr_check_free(struct attr_check *check)
645 {
646 if (check) {
647 /* Remove check from the check vector */
648 check_vector_remove(check);
649
650 attr_check_clear(check);
651 free(check);
652 }
653 }
654
655 static const char *builtin_attr[] = {
656 "[attr]binary -diff -merge -text",
657 NULL,
658 };
659
660 static void handle_attr_line(struct attr_stack *res,
661 const char *line,
662 const char *src,
663 int lineno,
664 unsigned flags)
665 {
666 struct match_attr *a;
667
668 a = parse_attr_line(line, src, lineno, flags);
669 if (!a)
670 return;
671 ALLOC_GROW_BY(res->attrs, res->num_matches, 1, res->alloc);
672 res->attrs[res->num_matches - 1] = a;
673 }
674
675 static struct attr_stack *read_attr_from_array(const char **list)
676 {
677 struct attr_stack *res;
678 const char *line;
679 int lineno = 0;
680
681 CALLOC_ARRAY(res, 1);
682 while ((line = *(list++)) != NULL)
683 handle_attr_line(res, line, "[builtin]", ++lineno,
684 READ_ATTR_MACRO_OK);
685 return res;
686 }
687
688 /*
689 * Callers into the attribute system assume there is a single, system-wide
690 * global state where attributes are read from and when the state is flipped by
691 * calling git_attr_set_direction(), the stack frames that have been
692 * constructed need to be discarded so so that subsequent calls into the
693 * attribute system will lazily read from the right place. Since changing
694 * direction causes a global paradigm shift, it should not ever be called while
695 * another thread could potentially be calling into the attribute system.
696 */
697 static enum git_attr_direction direction;
698
699 void git_attr_set_direction(enum git_attr_direction new_direction)
700 {
701 if (is_bare_repository() && new_direction != GIT_ATTR_INDEX)
702 BUG("non-INDEX attr direction in a bare repo");
703
704 if (new_direction != direction)
705 drop_all_attr_stacks();
706
707 direction = new_direction;
708 }
709
710 static struct attr_stack *read_attr_from_file(const char *path, unsigned flags)
711 {
712 struct strbuf buf = STRBUF_INIT;
713 int fd;
714 FILE *fp;
715 struct attr_stack *res;
716 int lineno = 0;
717 struct stat st;
718
719 if (flags & READ_ATTR_NOFOLLOW)
720 fd = open_nofollow(path, O_RDONLY);
721 else
722 fd = open(path, O_RDONLY);
723
724 if (fd < 0) {
725 warn_on_fopen_errors(path);
726 return NULL;
727 }
728 fp = xfdopen(fd, "r");
729 if (fstat(fd, &st)) {
730 warning_errno(_("cannot fstat gitattributes file '%s'"), path);
731 fclose(fp);
732 return NULL;
733 }
734 if (st.st_size >= ATTR_MAX_FILE_SIZE) {
735 warning(_("ignoring overly large gitattributes file '%s'"), path);
736 fclose(fp);
737 return NULL;
738 }
739
740 CALLOC_ARRAY(res, 1);
741 while (strbuf_getline(&buf, fp) != EOF) {
742 if (!lineno && starts_with(buf.buf, utf8_bom))
743 strbuf_remove(&buf, 0, strlen(utf8_bom));
744 handle_attr_line(res, buf.buf, path, ++lineno, flags);
745 }
746
747 fclose(fp);
748 strbuf_release(&buf);
749 return res;
750 }
751
752 static struct attr_stack *read_attr_from_index(struct index_state *istate,
753 const char *path,
754 unsigned flags)
755 {
756 struct attr_stack *res;
757 char *buf, *sp;
758 int lineno = 0;
759 size_t size;
760
761 if (!istate)
762 return NULL;
763
764 buf = read_blob_data_from_index(istate, path, &size);
765 if (!buf)
766 return NULL;
767 if (size >= ATTR_MAX_FILE_SIZE) {
768 warning(_("ignoring overly large gitattributes blob '%s'"), path);
769 return NULL;
770 }
771
772 CALLOC_ARRAY(res, 1);
773 for (sp = buf; *sp; ) {
774 char *ep;
775 int more;
776
777 ep = strchrnul(sp, '\n');
778 more = (*ep == '\n');
779 *ep = '\0';
780 handle_attr_line(res, sp, path, ++lineno, flags);
781 sp = ep + more;
782 }
783 free(buf);
784 return res;
785 }
786
787 static struct attr_stack *read_attr(struct index_state *istate,
788 const char *path, unsigned flags)
789 {
790 struct attr_stack *res = NULL;
791
792 if (direction == GIT_ATTR_INDEX) {
793 res = read_attr_from_index(istate, path, flags);
794 } else if (!is_bare_repository()) {
795 if (direction == GIT_ATTR_CHECKOUT) {
796 res = read_attr_from_index(istate, path, flags);
797 if (!res)
798 res = read_attr_from_file(path, flags);
799 } else if (direction == GIT_ATTR_CHECKIN) {
800 res = read_attr_from_file(path, flags);
801 if (!res)
802 /*
803 * There is no checked out .gitattributes file
804 * there, but we might have it in the index.
805 * We allow operation in a sparsely checked out
806 * work tree, so read from it.
807 */
808 res = read_attr_from_index(istate, path, flags);
809 }
810 }
811
812 if (!res)
813 CALLOC_ARRAY(res, 1);
814 return res;
815 }
816
817 #if DEBUG_ATTR
818 static void debug_info(const char *what, struct attr_stack *elem)
819 {
820 fprintf(stderr, "%s: %s\n", what, elem->origin ? elem->origin : "()");
821 }
822 static void debug_set(const char *what, const char *match, struct git_attr *attr, const void *v)
823 {
824 const char *value = v;
825
826 if (ATTR_TRUE(value))
827 value = "set";
828 else if (ATTR_FALSE(value))
829 value = "unset";
830 else if (ATTR_UNSET(value))
831 value = "unspecified";
832
833 fprintf(stderr, "%s: %s => %s (%s)\n",
834 what, attr->name, (char *) value, match);
835 }
836 #define debug_push(a) debug_info("push", (a))
837 #define debug_pop(a) debug_info("pop", (a))
838 #else
839 #define debug_push(a) do { ; } while (0)
840 #define debug_pop(a) do { ; } while (0)
841 #define debug_set(a,b,c,d) do { ; } while (0)
842 #endif /* DEBUG_ATTR */
843
844 static const char *git_etc_gitattributes(void)
845 {
846 static const char *system_wide;
847 if (!system_wide)
848 system_wide = system_path(ETC_GITATTRIBUTES);
849 return system_wide;
850 }
851
852 static const char *get_home_gitattributes(void)
853 {
854 if (!git_attributes_file)
855 git_attributes_file = xdg_config_home("attributes");
856
857 return git_attributes_file;
858 }
859
860 static int git_attr_system(void)
861 {
862 return !git_env_bool("GIT_ATTR_NOSYSTEM", 0);
863 }
864
865 static GIT_PATH_FUNC(git_path_info_attributes, INFOATTRIBUTES_FILE)
866
867 static void push_stack(struct attr_stack **attr_stack_p,
868 struct attr_stack *elem, char *origin, size_t originlen)
869 {
870 if (elem) {
871 elem->origin = origin;
872 if (origin)
873 elem->originlen = originlen;
874 elem->prev = *attr_stack_p;
875 *attr_stack_p = elem;
876 }
877 }
878
879 static void bootstrap_attr_stack(struct index_state *istate,
880 struct attr_stack **stack)
881 {
882 struct attr_stack *e;
883 unsigned flags = READ_ATTR_MACRO_OK;
884
885 if (*stack)
886 return;
887
888 /* builtin frame */
889 e = read_attr_from_array(builtin_attr);
890 push_stack(stack, e, NULL, 0);
891
892 /* system-wide frame */
893 if (git_attr_system()) {
894 e = read_attr_from_file(git_etc_gitattributes(), flags);
895 push_stack(stack, e, NULL, 0);
896 }
897
898 /* home directory */
899 if (get_home_gitattributes()) {
900 e = read_attr_from_file(get_home_gitattributes(), flags);
901 push_stack(stack, e, NULL, 0);
902 }
903
904 /* root directory */
905 e = read_attr(istate, GITATTRIBUTES_FILE, flags | READ_ATTR_NOFOLLOW);
906 push_stack(stack, e, xstrdup(""), 0);
907
908 /* info frame */
909 if (startup_info->have_repository)
910 e = read_attr_from_file(git_path_info_attributes(), flags);
911 else
912 e = NULL;
913 if (!e)
914 CALLOC_ARRAY(e, 1);
915 push_stack(stack, e, NULL, 0);
916 }
917
918 static void prepare_attr_stack(struct index_state *istate,
919 const char *path, int dirlen,
920 struct attr_stack **stack)
921 {
922 struct attr_stack *info;
923 struct strbuf pathbuf = STRBUF_INIT;
924
925 /*
926 * At the bottom of the attribute stack is the built-in
927 * set of attribute definitions, followed by the contents
928 * of $(prefix)/etc/gitattributes and a file specified by
929 * core.attributesfile. Then, contents from
930 * .gitattributes files from directories closer to the
931 * root to the ones in deeper directories are pushed
932 * to the stack. Finally, at the very top of the stack
933 * we always keep the contents of $GIT_DIR/info/attributes.
934 *
935 * When checking, we use entries from near the top of the
936 * stack, preferring $GIT_DIR/info/attributes, then
937 * .gitattributes in deeper directories to shallower ones,
938 * and finally use the built-in set as the default.
939 */
940 bootstrap_attr_stack(istate, stack);
941
942 /*
943 * Pop the "info" one that is always at the top of the stack.
944 */
945 info = *stack;
946 *stack = info->prev;
947
948 /*
949 * Pop the ones from directories that are not the prefix of
950 * the path we are checking. Break out of the loop when we see
951 * the root one (whose origin is an empty string "") or the builtin
952 * one (whose origin is NULL) without popping it.
953 */
954 while ((*stack)->origin) {
955 int namelen = (*stack)->originlen;
956 struct attr_stack *elem;
957
958 elem = *stack;
959 if (namelen <= dirlen &&
960 !strncmp(elem->origin, path, namelen) &&
961 (!namelen || path[namelen] == '/'))
962 break;
963
964 debug_pop(elem);
965 *stack = elem->prev;
966 attr_stack_free(elem);
967 }
968
969 /*
970 * bootstrap_attr_stack() should have added, and the
971 * above loop should have stopped before popping, the
972 * root element whose attr_stack->origin is set to an
973 * empty string.
974 */
975 assert((*stack)->origin);
976
977 strbuf_addstr(&pathbuf, (*stack)->origin);
978 /* Build up to the directory 'path' is in */
979 while (pathbuf.len < dirlen) {
980 size_t len = pathbuf.len;
981 struct attr_stack *next;
982 char *origin;
983
984 /* Skip path-separator */
985 if (len < dirlen && is_dir_sep(path[len]))
986 len++;
987 /* Find the end of the next component */
988 while (len < dirlen && !is_dir_sep(path[len]))
989 len++;
990
991 if (pathbuf.len > 0)
992 strbuf_addch(&pathbuf, '/');
993 strbuf_add(&pathbuf, path + pathbuf.len, (len - pathbuf.len));
994 strbuf_addf(&pathbuf, "/%s", GITATTRIBUTES_FILE);
995
996 next = read_attr(istate, pathbuf.buf, READ_ATTR_NOFOLLOW);
997
998 /* reset the pathbuf to not include "/.gitattributes" */
999 strbuf_setlen(&pathbuf, len);
1000
1001 origin = xstrdup(pathbuf.buf);
1002 push_stack(stack, next, origin, len);
1003 }
1004
1005 /*
1006 * Finally push the "info" one at the top of the stack.
1007 */
1008 push_stack(stack, info, NULL, 0);
1009
1010 strbuf_release(&pathbuf);
1011 }
1012
1013 static int path_matches(const char *pathname, int pathlen,
1014 int basename_offset,
1015 const struct pattern *pat,
1016 const char *base, int baselen)
1017 {
1018 const char *pattern = pat->pattern;
1019 int prefix = pat->nowildcardlen;
1020 int isdir = (pathlen && pathname[pathlen - 1] == '/');
1021
1022 if ((pat->flags & PATTERN_FLAG_MUSTBEDIR) && !isdir)
1023 return 0;
1024
1025 if (pat->flags & PATTERN_FLAG_NODIR) {
1026 return match_basename(pathname + basename_offset,
1027 pathlen - basename_offset - isdir,
1028 pattern, prefix,
1029 pat->patternlen, pat->flags);
1030 }
1031 return match_pathname(pathname, pathlen - isdir,
1032 base, baselen,
1033 pattern, prefix, pat->patternlen, pat->flags);
1034 }
1035
1036 static int macroexpand_one(struct all_attrs_item *all_attrs, int nr, int rem);
1037
1038 static int fill_one(const char *what, struct all_attrs_item *all_attrs,
1039 const struct match_attr *a, int rem)
1040 {
1041 size_t i;
1042
1043 for (i = a->num_attr; rem > 0 && i > 0; i--) {
1044 const struct git_attr *attr = a->state[i - 1].attr;
1045 const char **n = &(all_attrs[attr->attr_nr].value);
1046 const char *v = a->state[i - 1].setto;
1047
1048 if (*n == ATTR__UNKNOWN) {
1049 debug_set(what,
1050 a->is_macro ? a->u.attr->name : a->u.pat.pattern,
1051 attr, v);
1052 *n = v;
1053 rem--;
1054 rem = macroexpand_one(all_attrs, attr->attr_nr, rem);
1055 }
1056 }
1057 return rem;
1058 }
1059
1060 static int fill(const char *path, int pathlen, int basename_offset,
1061 const struct attr_stack *stack,
1062 struct all_attrs_item *all_attrs, int rem)
1063 {
1064 for (; rem > 0 && stack; stack = stack->prev) {
1065 unsigned i;
1066 const char *base = stack->origin ? stack->origin : "";
1067
1068 for (i = stack->num_matches; 0 < rem && 0 < i; i--) {
1069 const struct match_attr *a = stack->attrs[i - 1];
1070 if (a->is_macro)
1071 continue;
1072 if (path_matches(path, pathlen, basename_offset,
1073 &a->u.pat, base, stack->originlen))
1074 rem = fill_one("fill", all_attrs, a, rem);
1075 }
1076 }
1077
1078 return rem;
1079 }
1080
1081 static int macroexpand_one(struct all_attrs_item *all_attrs, int nr, int rem)
1082 {
1083 const struct all_attrs_item *item = &all_attrs[nr];
1084
1085 if (item->macro && item->value == ATTR__TRUE)
1086 return fill_one("expand", all_attrs, item->macro, rem);
1087 else
1088 return rem;
1089 }
1090
1091 /*
1092 * Marks the attributes which are macros based on the attribute stack.
1093 * This prevents having to search through the attribute stack each time
1094 * a macro needs to be expanded during the fill stage.
1095 */
1096 static void determine_macros(struct all_attrs_item *all_attrs,
1097 const struct attr_stack *stack)
1098 {
1099 for (; stack; stack = stack->prev) {
1100 unsigned i;
1101 for (i = stack->num_matches; i > 0; i--) {
1102 const struct match_attr *ma = stack->attrs[i - 1];
1103 if (ma->is_macro) {
1104 unsigned int n = ma->u.attr->attr_nr;
1105 if (!all_attrs[n].macro) {
1106 all_attrs[n].macro = ma;
1107 }
1108 }
1109 }
1110 }
1111 }
1112
1113 /*
1114 * Collect attributes for path into the array pointed to by check->all_attrs.
1115 * If check->check_nr is non-zero, only attributes in check[] are collected.
1116 * Otherwise all attributes are collected.
1117 */
1118 static void collect_some_attrs(struct index_state *istate,
1119 const char *path,
1120 struct attr_check *check)
1121 {
1122 int pathlen, rem, dirlen;
1123 const char *cp, *last_slash = NULL;
1124 int basename_offset;
1125
1126 for (cp = path; *cp; cp++) {
1127 if (*cp == '/' && cp[1])
1128 last_slash = cp;
1129 }
1130 pathlen = cp - path;
1131 if (last_slash) {
1132 basename_offset = last_slash + 1 - path;
1133 dirlen = last_slash - path;
1134 } else {
1135 basename_offset = 0;
1136 dirlen = 0;
1137 }
1138
1139 prepare_attr_stack(istate, path, dirlen, &check->stack);
1140 all_attrs_init(&g_attr_hashmap, check);
1141 determine_macros(check->all_attrs, check->stack);
1142
1143 rem = check->all_attrs_nr;
1144 fill(path, pathlen, basename_offset, check->stack, check->all_attrs, rem);
1145 }
1146
1147 void git_check_attr(struct index_state *istate,
1148 const char *path,
1149 struct attr_check *check)
1150 {
1151 int i;
1152
1153 collect_some_attrs(istate, path, check);
1154
1155 for (i = 0; i < check->nr; i++) {
1156 unsigned int n = check->items[i].attr->attr_nr;
1157 const char *value = check->all_attrs[n].value;
1158 if (value == ATTR__UNKNOWN)
1159 value = ATTR__UNSET;
1160 check->items[i].value = value;
1161 }
1162 }
1163
1164 void git_all_attrs(struct index_state *istate,
1165 const char *path, struct attr_check *check)
1166 {
1167 int i;
1168
1169 attr_check_reset(check);
1170 collect_some_attrs(istate, path, check);
1171
1172 for (i = 0; i < check->all_attrs_nr; i++) {
1173 const char *name = check->all_attrs[i].attr->name;
1174 const char *value = check->all_attrs[i].value;
1175 struct attr_check_item *item;
1176 if (value == ATTR__UNSET || value == ATTR__UNKNOWN)
1177 continue;
1178 item = attr_check_append(check, git_attr(name));
1179 item->value = value;
1180 }
1181 }
1182
1183 void attr_start(void)
1184 {
1185 pthread_mutex_init(&g_attr_hashmap.mutex, NULL);
1186 pthread_mutex_init(&check_vector.mutex, NULL);
1187 }