1#include "cache.h"
2#include "tag.h"
3#include "commit.h"
4#include "tree.h"
5#include "blob.h"
6#include "tree-walk.h"
7#include "refs.h"
8#include "remote.h"
9
10static int get_sha1_oneline(const char *, unsigned char *, struct commit_list *);
11
12typedef int (*disambiguate_hint_fn)(const unsigned char *, void *);
13
14struct disambiguate_state {
15 disambiguate_hint_fn fn;
16 void *cb_data;
17 unsigned char candidate[20];
18 unsigned candidate_exists:1;
19 unsigned candidate_checked:1;
20 unsigned candidate_ok:1;
21 unsigned disambiguate_fn_used:1;
22 unsigned ambiguous:1;
23 unsigned always_call_fn:1;
24};
25
26static void update_candidates(struct disambiguate_state *ds, const unsigned char *current)
27{
28 if (ds->always_call_fn) {
29 ds->ambiguous = ds->fn(current, ds->cb_data) ? 1 : 0;
30 return;
31 }
32 if (!ds->candidate_exists) {
33 /* this is the first candidate */
34 hashcpy(ds->candidate, current);
35 ds->candidate_exists = 1;
36 return;
37 } else if (!hashcmp(ds->candidate, current)) {
38 /* the same as what we already have seen */
39 return;
40 }
41
42 if (!ds->fn) {
43 /* cannot disambiguate between ds->candidate and current */
44 ds->ambiguous = 1;
45 return;
46 }
47
48 if (!ds->candidate_checked) {
49 ds->candidate_ok = ds->fn(ds->candidate, ds->cb_data);
50 ds->disambiguate_fn_used = 1;
51 ds->candidate_checked = 1;
52 }
53
54 if (!ds->candidate_ok) {
55 /* discard the candidate; we know it does not satisfy fn */
56 hashcpy(ds->candidate, current);
57 ds->candidate_checked = 0;
58 return;
59 }
60
61 /* if we reach this point, we know ds->candidate satisfies fn */
62 if (ds->fn(current, ds->cb_data)) {
63 /*
64 * if both current and candidate satisfy fn, we cannot
65 * disambiguate.
66 */
67 ds->candidate_ok = 0;
68 ds->ambiguous = 1;
69 }
70
71 /* otherwise, current can be discarded and candidate is still good */
72}
73
74static void find_short_object_filename(int len, const char *hex_pfx, struct disambiguate_state *ds)
75{
76 struct alternate_object_database *alt;
77 char hex[40];
78 static struct alternate_object_database *fakeent;
79
80 if (!fakeent) {
81 /*
82 * Create a "fake" alternate object database that
83 * points to our own object database, to make it
84 * easier to get a temporary working space in
85 * alt->name/alt->base while iterating over the
86 * object databases including our own.
87 */
88 const char *objdir = get_object_directory();
89 int objdir_len = strlen(objdir);
90 int entlen = objdir_len + 43;
91 fakeent = xmalloc(sizeof(*fakeent) + entlen);
92 memcpy(fakeent->base, objdir, objdir_len);
93 fakeent->name = fakeent->base + objdir_len + 1;
94 fakeent->name[-1] = '/';
95 }
96 fakeent->next = alt_odb_list;
97
98 sprintf(hex, "%.2s", hex_pfx);
99 for (alt = fakeent; alt && !ds->ambiguous; alt = alt->next) {
100 struct dirent *de;
101 DIR *dir;
102 sprintf(alt->name, "%.2s/", hex_pfx);
103 dir = opendir(alt->base);
104 if (!dir)
105 continue;
106
107 while (!ds->ambiguous && (de = readdir(dir)) != NULL) {
108 unsigned char sha1[20];
109
110 if (strlen(de->d_name) != 38)
111 continue;
112 if (memcmp(de->d_name, hex_pfx + 2, len - 2))
113 continue;
114 memcpy(hex + 2, de->d_name, 38);
115 if (!get_sha1_hex(hex, sha1))
116 update_candidates(ds, sha1);
117 }
118 closedir(dir);
119 }
120}
121
122static int match_sha(unsigned len, const unsigned char *a, const unsigned char *b)
123{
124 do {
125 if (*a != *b)
126 return 0;
127 a++;
128 b++;
129 len -= 2;
130 } while (len > 1);
131 if (len)
132 if ((*a ^ *b) & 0xf0)
133 return 0;
134 return 1;
135}
136
137static void unique_in_pack(int len,
138 const unsigned char *bin_pfx,
139 struct packed_git *p,
140 struct disambiguate_state *ds)
141{
142 uint32_t num, last, i, first = 0;
143 const unsigned char *current = NULL;
144
145 open_pack_index(p);
146 num = p->num_objects;
147 last = num;
148 while (first < last) {
149 uint32_t mid = (first + last) / 2;
150 const unsigned char *current;
151 int cmp;
152
153 current = nth_packed_object_sha1(p, mid);
154 cmp = hashcmp(bin_pfx, current);
155 if (!cmp) {
156 first = mid;
157 break;
158 }
159 if (cmp > 0) {
160 first = mid+1;
161 continue;
162 }
163 last = mid;
164 }
165
166 /*
167 * At this point, "first" is the location of the lowest object
168 * with an object name that could match "bin_pfx". See if we have
169 * 0, 1 or more objects that actually match(es).
170 */
171 for (i = first; i < num && !ds->ambiguous; i++) {
172 current = nth_packed_object_sha1(p, i);
173 if (!match_sha(len, bin_pfx, current))
174 break;
175 update_candidates(ds, current);
176 }
177}
178
179static void find_short_packed_object(int len, const unsigned char *bin_pfx,
180 struct disambiguate_state *ds)
181{
182 struct packed_git *p;
183
184 prepare_packed_git();
185 for (p = packed_git; p && !ds->ambiguous; p = p->next)
186 unique_in_pack(len, bin_pfx, p, ds);
187}
188
189#define SHORT_NAME_NOT_FOUND (-1)
190#define SHORT_NAME_AMBIGUOUS (-2)
191
192static int finish_object_disambiguation(struct disambiguate_state *ds,
193 unsigned char *sha1)
194{
195 if (ds->ambiguous)
196 return SHORT_NAME_AMBIGUOUS;
197
198 if (!ds->candidate_exists)
199 return SHORT_NAME_NOT_FOUND;
200
201 if (!ds->candidate_checked)
202 /*
203 * If this is the only candidate, there is no point
204 * calling the disambiguation hint callback.
205 *
206 * On the other hand, if the current candidate
207 * replaced an earlier candidate that did _not_ pass
208 * the disambiguation hint callback, then we do have
209 * more than one objects that match the short name
210 * given, so we should make sure this one matches;
211 * otherwise, if we discovered this one and the one
212 * that we previously discarded in the reverse order,
213 * we would end up showing different results in the
214 * same repository!
215 */
216 ds->candidate_ok = (!ds->disambiguate_fn_used ||
217 ds->fn(ds->candidate, ds->cb_data));
218
219 if (!ds->candidate_ok)
220 return SHORT_NAME_AMBIGUOUS;
221
222 hashcpy(sha1, ds->candidate);
223 return 0;
224}
225
226static int disambiguate_commit_only(const unsigned char *sha1, void *cb_data_unused)
227{
228 int kind = sha1_object_info(sha1, NULL);
229 return kind == OBJ_COMMIT;
230}
231
232static int disambiguate_committish_only(const unsigned char *sha1, void *cb_data_unused)
233{
234 struct object *obj;
235 int kind;
236
237 kind = sha1_object_info(sha1, NULL);
238 if (kind == OBJ_COMMIT)
239 return 1;
240 if (kind != OBJ_TAG)
241 return 0;
242
243 /* We need to do this the hard way... */
244 obj = deref_tag(parse_object(sha1), NULL, 0);
245 if (obj && obj->type == OBJ_COMMIT)
246 return 1;
247 return 0;
248}
249
250static int disambiguate_tree_only(const unsigned char *sha1, void *cb_data_unused)
251{
252 int kind = sha1_object_info(sha1, NULL);
253 return kind == OBJ_TREE;
254}
255
256static int disambiguate_treeish_only(const unsigned char *sha1, void *cb_data_unused)
257{
258 struct object *obj;
259 int kind;
260
261 kind = sha1_object_info(sha1, NULL);
262 if (kind == OBJ_TREE || kind == OBJ_COMMIT)
263 return 1;
264 if (kind != OBJ_TAG)
265 return 0;
266
267 /* We need to do this the hard way... */
268 obj = deref_tag(lookup_object(sha1), NULL, 0);
269 if (obj && (obj->type == OBJ_TREE || obj->type == OBJ_COMMIT))
270 return 1;
271 return 0;
272}
273
274static int disambiguate_blob_only(const unsigned char *sha1, void *cb_data_unused)
275{
276 int kind = sha1_object_info(sha1, NULL);
277 return kind == OBJ_BLOB;
278}
279
280static int prepare_prefixes(const char *name, int len,
281 unsigned char *bin_pfx,
282 char *hex_pfx)
283{
284 int i;
285
286 hashclr(bin_pfx);
287 memset(hex_pfx, 'x', 40);
288 for (i = 0; i < len ;i++) {
289 unsigned char c = name[i];
290 unsigned char val;
291 if (c >= '0' && c <= '9')
292 val = c - '0';
293 else if (c >= 'a' && c <= 'f')
294 val = c - 'a' + 10;
295 else if (c >= 'A' && c <='F') {
296 val = c - 'A' + 10;
297 c -= 'A' - 'a';
298 }
299 else
300 return -1;
301 hex_pfx[i] = c;
302 if (!(i & 1))
303 val <<= 4;
304 bin_pfx[i >> 1] |= val;
305 }
306 return 0;
307}
308
309static int get_short_sha1(const char *name, int len, unsigned char *sha1,
310 unsigned flags)
311{
312 int status;
313 char hex_pfx[40];
314 unsigned char bin_pfx[20];
315 struct disambiguate_state ds;
316 int quietly = !!(flags & GET_SHA1_QUIETLY);
317
318 if (len < MINIMUM_ABBREV || len > 40)
319 return -1;
320 if (prepare_prefixes(name, len, bin_pfx, hex_pfx) < 0)
321 return -1;
322
323 prepare_alt_odb();
324
325 memset(&ds, 0, sizeof(ds));
326 if (flags & GET_SHA1_COMMIT)
327 ds.fn = disambiguate_commit_only;
328 else if (flags & GET_SHA1_COMMITTISH)
329 ds.fn = disambiguate_committish_only;
330 else if (flags & GET_SHA1_TREE)
331 ds.fn = disambiguate_tree_only;
332 else if (flags & GET_SHA1_TREEISH)
333 ds.fn = disambiguate_treeish_only;
334 else if (flags & GET_SHA1_BLOB)
335 ds.fn = disambiguate_blob_only;
336
337 find_short_object_filename(len, hex_pfx, &ds);
338 find_short_packed_object(len, bin_pfx, &ds);
339 status = finish_object_disambiguation(&ds, sha1);
340
341 if (!quietly && (status == SHORT_NAME_AMBIGUOUS))
342 return error("short SHA1 %.*s is ambiguous.", len, hex_pfx);
343 return status;
344}
345
346
347int for_each_abbrev(const char *prefix, each_abbrev_fn fn, void *cb_data)
348{
349 char hex_pfx[40];
350 unsigned char bin_pfx[20];
351 struct disambiguate_state ds;
352 int len = strlen(prefix);
353
354 if (len < MINIMUM_ABBREV || len > 40)
355 return -1;
356 if (prepare_prefixes(prefix, len, bin_pfx, hex_pfx) < 0)
357 return -1;
358
359 prepare_alt_odb();
360
361 memset(&ds, 0, sizeof(ds));
362 ds.always_call_fn = 1;
363 ds.cb_data = cb_data;
364 ds.fn = fn;
365
366 find_short_object_filename(len, hex_pfx, &ds);
367 find_short_packed_object(len, bin_pfx, &ds);
368 return ds.ambiguous;
369}
370
371const char *find_unique_abbrev(const unsigned char *sha1, int len)
372{
373 int status, exists;
374 static char hex[41];
375
376 exists = has_sha1_file(sha1);
377 memcpy(hex, sha1_to_hex(sha1), 40);
378 if (len == 40 || !len)
379 return hex;
380 while (len < 40) {
381 unsigned char sha1_ret[20];
382 status = get_short_sha1(hex, len, sha1_ret, GET_SHA1_QUIETLY);
383 if (exists
384 ? !status
385 : status == SHORT_NAME_NOT_FOUND) {
386 hex[len] = 0;
387 return hex;
388 }
389 len++;
390 }
391 return hex;
392}
393
394static int ambiguous_path(const char *path, int len)
395{
396 int slash = 1;
397 int cnt;
398
399 for (cnt = 0; cnt < len; cnt++) {
400 switch (*path++) {
401 case '\0':
402 break;
403 case '/':
404 if (slash)
405 break;
406 slash = 1;
407 continue;
408 case '.':
409 continue;
410 default:
411 slash = 0;
412 continue;
413 }
414 break;
415 }
416 return slash;
417}
418
419static inline int upstream_mark(const char *string, int len)
420{
421 const char *suffix[] = { "@{upstream}", "@{u}" };
422 int i;
423
424 for (i = 0; i < ARRAY_SIZE(suffix); i++) {
425 int suffix_len = strlen(suffix[i]);
426 if (suffix_len <= len
427 && !memcmp(string, suffix[i], suffix_len))
428 return suffix_len;
429 }
430 return 0;
431}
432
433static int get_sha1_1(const char *name, int len, unsigned char *sha1, unsigned lookup_flags);
434static int interpret_nth_prior_checkout(const char *name, struct strbuf *buf);
435
436static int get_sha1_basic(const char *str, int len, unsigned char *sha1)
437{
438 static const char *warn_msg = "refname '%.*s' is ambiguous.";
439 static const char *object_name_msg = N_(
440 "Git normally never creates a ref that ends with 40 hex characters\n"
441 "because it will be ignored when you just specify 40-hex. These refs\n"
442 "may be created by mistake. For example,\n"
443 "\n"
444 " git checkout -b $br $(git rev-parse ...)\n"
445 "\n"
446 "where \"$br\" is somehow empty and a 40-hex ref is created. Please\n"
447 "examine these refs and maybe delete them. Turn this message off by\n"
448 "running \"git config advice.objectNameWarning false\"");
449 unsigned char tmp_sha1[20];
450 char *real_ref = NULL;
451 int refs_found = 0;
452 int at, reflog_len, nth_prior = 0;
453
454 if (len == 40 && !get_sha1_hex(str, sha1)) {
455 if (warn_on_object_refname_ambiguity) {
456 refs_found = dwim_ref(str, len, tmp_sha1, &real_ref);
457 if (refs_found > 0 && warn_ambiguous_refs) {
458 warning(warn_msg, len, str);
459 if (advice_object_name_warning)
460 fprintf(stderr, "%s\n", _(object_name_msg));
461 }
462 free(real_ref);
463 }
464 return 0;
465 }
466
467 /* basic@{time or number or -number} format to query ref-log */
468 reflog_len = at = 0;
469 if (len && str[len-1] == '}') {
470 for (at = len-4; at >= 0; at--) {
471 if (str[at] == '@' && str[at+1] == '{') {
472 if (str[at+2] == '-') {
473 if (at != 0)
474 /* @{-N} not at start */
475 return -1;
476 nth_prior = 1;
477 continue;
478 }
479 if (!upstream_mark(str + at, len - at)) {
480 reflog_len = (len-1) - (at+2);
481 len = at;
482 }
483 break;
484 }
485 }
486 }
487
488 /* Accept only unambiguous ref paths. */
489 if (len && ambiguous_path(str, len))
490 return -1;
491
492 if (nth_prior) {
493 struct strbuf buf = STRBUF_INIT;
494 int detached;
495
496 if (interpret_nth_prior_checkout(str, &buf) > 0) {
497 detached = (buf.len == 40 && !get_sha1_hex(buf.buf, sha1));
498 strbuf_release(&buf);
499 if (detached)
500 return 0;
501 }
502 }
503
504 if (!len && reflog_len)
505 /* allow "@{...}" to mean the current branch reflog */
506 refs_found = dwim_ref("HEAD", 4, sha1, &real_ref);
507 else if (reflog_len)
508 refs_found = dwim_log(str, len, sha1, &real_ref);
509 else
510 refs_found = dwim_ref(str, len, sha1, &real_ref);
511
512 if (!refs_found)
513 return -1;
514
515 if (warn_ambiguous_refs &&
516 (refs_found > 1 ||
517 !get_short_sha1(str, len, tmp_sha1, GET_SHA1_QUIETLY)))
518 warning(warn_msg, len, str);
519
520 if (reflog_len) {
521 int nth, i;
522 unsigned long at_time;
523 unsigned long co_time;
524 int co_tz, co_cnt;
525
526 /* Is it asking for N-th entry, or approxidate? */
527 for (i = nth = 0; 0 <= nth && i < reflog_len; i++) {
528 char ch = str[at+2+i];
529 if ('0' <= ch && ch <= '9')
530 nth = nth * 10 + ch - '0';
531 else
532 nth = -1;
533 }
534 if (100000000 <= nth) {
535 at_time = nth;
536 nth = -1;
537 } else if (0 <= nth)
538 at_time = 0;
539 else {
540 int errors = 0;
541 char *tmp = xstrndup(str + at + 2, reflog_len);
542 at_time = approxidate_careful(tmp, &errors);
543 free(tmp);
544 if (errors)
545 return -1;
546 }
547 if (read_ref_at(real_ref, at_time, nth, sha1, NULL,
548 &co_time, &co_tz, &co_cnt)) {
549 if (!len) {
550 if (!prefixcmp(real_ref, "refs/heads/")) {
551 str = real_ref + 11;
552 len = strlen(real_ref + 11);
553 } else {
554 /* detached HEAD */
555 str = "HEAD";
556 len = 4;
557 }
558 }
559 if (at_time)
560 warning("Log for '%.*s' only goes "
561 "back to %s.", len, str,
562 show_date(co_time, co_tz, DATE_RFC2822));
563 else {
564 die("Log for '%.*s' only has %d entries.",
565 len, str, co_cnt);
566 }
567 }
568 }
569
570 free(real_ref);
571 return 0;
572}
573
574static int get_parent(const char *name, int len,
575 unsigned char *result, int idx)
576{
577 unsigned char sha1[20];
578 int ret = get_sha1_1(name, len, sha1, GET_SHA1_COMMITTISH);
579 struct commit *commit;
580 struct commit_list *p;
581
582 if (ret)
583 return ret;
584 commit = lookup_commit_reference(sha1);
585 if (!commit)
586 return -1;
587 if (parse_commit(commit))
588 return -1;
589 if (!idx) {
590 hashcpy(result, commit->object.sha1);
591 return 0;
592 }
593 p = commit->parents;
594 while (p) {
595 if (!--idx) {
596 hashcpy(result, p->item->object.sha1);
597 return 0;
598 }
599 p = p->next;
600 }
601 return -1;
602}
603
604static int get_nth_ancestor(const char *name, int len,
605 unsigned char *result, int generation)
606{
607 unsigned char sha1[20];
608 struct commit *commit;
609 int ret;
610
611 ret = get_sha1_1(name, len, sha1, GET_SHA1_COMMITTISH);
612 if (ret)
613 return ret;
614 commit = lookup_commit_reference(sha1);
615 if (!commit)
616 return -1;
617
618 while (generation--) {
619 if (parse_commit(commit) || !commit->parents)
620 return -1;
621 commit = commit->parents->item;
622 }
623 hashcpy(result, commit->object.sha1);
624 return 0;
625}
626
627struct object *peel_to_type(const char *name, int namelen,
628 struct object *o, enum object_type expected_type)
629{
630 if (name && !namelen)
631 namelen = strlen(name);
632 while (1) {
633 if (!o || (!o->parsed && !parse_object(o->sha1)))
634 return NULL;
635 if (expected_type == OBJ_ANY || o->type == expected_type)
636 return o;
637 if (o->type == OBJ_TAG)
638 o = ((struct tag*) o)->tagged;
639 else if (o->type == OBJ_COMMIT)
640 o = &(((struct commit *) o)->tree->object);
641 else {
642 if (name)
643 error("%.*s: expected %s type, but the object "
644 "dereferences to %s type",
645 namelen, name, typename(expected_type),
646 typename(o->type));
647 return NULL;
648 }
649 }
650}
651
652static int peel_onion(const char *name, int len, unsigned char *sha1)
653{
654 unsigned char outer[20];
655 const char *sp;
656 unsigned int expected_type = 0;
657 unsigned lookup_flags = 0;
658 struct object *o;
659
660 /*
661 * "ref^{type}" dereferences ref repeatedly until you cannot
662 * dereference anymore, or you get an object of given type,
663 * whichever comes first. "ref^{}" means just dereference
664 * tags until you get a non-tag. "ref^0" is a shorthand for
665 * "ref^{commit}". "commit^{tree}" could be used to find the
666 * top-level tree of the given commit.
667 */
668 if (len < 4 || name[len-1] != '}')
669 return -1;
670
671 for (sp = name + len - 1; name <= sp; sp--) {
672 int ch = *sp;
673 if (ch == '{' && name < sp && sp[-1] == '^')
674 break;
675 }
676 if (sp <= name)
677 return -1;
678
679 sp++; /* beginning of type name, or closing brace for empty */
680 if (!prefixcmp(sp, "commit}"))
681 expected_type = OBJ_COMMIT;
682 else if (!prefixcmp(sp, "tag}"))
683 expected_type = OBJ_TAG;
684 else if (!prefixcmp(sp, "tree}"))
685 expected_type = OBJ_TREE;
686 else if (!prefixcmp(sp, "blob}"))
687 expected_type = OBJ_BLOB;
688 else if (!prefixcmp(sp, "object}"))
689 expected_type = OBJ_ANY;
690 else if (sp[0] == '}')
691 expected_type = OBJ_NONE;
692 else if (sp[0] == '/')
693 expected_type = OBJ_COMMIT;
694 else
695 return -1;
696
697 if (expected_type == OBJ_COMMIT)
698 lookup_flags = GET_SHA1_COMMITTISH;
699 else if (expected_type == OBJ_TREE)
700 lookup_flags = GET_SHA1_TREEISH;
701
702 if (get_sha1_1(name, sp - name - 2, outer, lookup_flags))
703 return -1;
704
705 o = parse_object(outer);
706 if (!o)
707 return -1;
708 if (!expected_type) {
709 o = deref_tag(o, name, sp - name - 2);
710 if (!o || (!o->parsed && !parse_object(o->sha1)))
711 return -1;
712 hashcpy(sha1, o->sha1);
713 return 0;
714 }
715
716 /*
717 * At this point, the syntax look correct, so
718 * if we do not get the needed object, we should
719 * barf.
720 */
721 o = peel_to_type(name, len, o, expected_type);
722 if (!o)
723 return -1;
724
725 hashcpy(sha1, o->sha1);
726 if (sp[0] == '/') {
727 /* "$commit^{/foo}" */
728 char *prefix;
729 int ret;
730 struct commit_list *list = NULL;
731
732 /*
733 * $commit^{/}. Some regex implementation may reject.
734 * We don't need regex anyway. '' pattern always matches.
735 */
736 if (sp[1] == '}')
737 return 0;
738
739 prefix = xstrndup(sp + 1, name + len - 1 - (sp + 1));
740 commit_list_insert((struct commit *)o, &list);
741 ret = get_sha1_oneline(prefix, sha1, list);
742 free(prefix);
743 return ret;
744 }
745 return 0;
746}
747
748static int get_describe_name(const char *name, int len, unsigned char *sha1)
749{
750 const char *cp;
751 unsigned flags = GET_SHA1_QUIETLY | GET_SHA1_COMMIT;
752
753 for (cp = name + len - 1; name + 2 <= cp; cp--) {
754 char ch = *cp;
755 if (hexval(ch) & ~0377) {
756 /* We must be looking at g in "SOMETHING-g"
757 * for it to be describe output.
758 */
759 if (ch == 'g' && cp[-1] == '-') {
760 cp++;
761 len -= cp - name;
762 return get_short_sha1(cp, len, sha1, flags);
763 }
764 }
765 }
766 return -1;
767}
768
769static int get_sha1_1(const char *name, int len, unsigned char *sha1, unsigned lookup_flags)
770{
771 int ret, has_suffix;
772 const char *cp;
773
774 /*
775 * "name~3" is "name^^^", "name~" is "name~1", and "name^" is "name^1".
776 */
777 has_suffix = 0;
778 for (cp = name + len - 1; name <= cp; cp--) {
779 int ch = *cp;
780 if ('0' <= ch && ch <= '9')
781 continue;
782 if (ch == '~' || ch == '^')
783 has_suffix = ch;
784 break;
785 }
786
787 if (has_suffix) {
788 int num = 0;
789 int len1 = cp - name;
790 cp++;
791 while (cp < name + len)
792 num = num * 10 + *cp++ - '0';
793 if (!num && len1 == len - 1)
794 num = 1;
795 if (has_suffix == '^')
796 return get_parent(name, len1, sha1, num);
797 /* else if (has_suffix == '~') -- goes without saying */
798 return get_nth_ancestor(name, len1, sha1, num);
799 }
800
801 ret = peel_onion(name, len, sha1);
802 if (!ret)
803 return 0;
804
805 ret = get_sha1_basic(name, len, sha1);
806 if (!ret)
807 return 0;
808
809 /* It could be describe output that is "SOMETHING-gXXXX" */
810 ret = get_describe_name(name, len, sha1);
811 if (!ret)
812 return 0;
813
814 return get_short_sha1(name, len, sha1, lookup_flags);
815}
816
817/*
818 * This interprets names like ':/Initial revision of "git"' by searching
819 * through history and returning the first commit whose message starts
820 * the given regular expression.
821 *
822 * For future extension, ':/!' is reserved. If you want to match a message
823 * beginning with a '!', you have to repeat the exclamation mark.
824 */
825#define ONELINE_SEEN (1u<<20)
826
827static int handle_one_ref(const char *path,
828 const unsigned char *sha1, int flag, void *cb_data)
829{
830 struct commit_list **list = cb_data;
831 struct object *object = parse_object(sha1);
832 if (!object)
833 return 0;
834 if (object->type == OBJ_TAG) {
835 object = deref_tag(object, path, strlen(path));
836 if (!object)
837 return 0;
838 }
839 if (object->type != OBJ_COMMIT)
840 return 0;
841 commit_list_insert_by_date((struct commit *)object, list);
842 return 0;
843}
844
845static int get_sha1_oneline(const char *prefix, unsigned char *sha1,
846 struct commit_list *list)
847{
848 struct commit_list *backup = NULL, *l;
849 int found = 0;
850 regex_t regex;
851
852 if (prefix[0] == '!') {
853 if (prefix[1] != '!')
854 die ("Invalid search pattern: %s", prefix);
855 prefix++;
856 }
857
858 if (regcomp(®ex, prefix, REG_EXTENDED))
859 die("Invalid search pattern: %s", prefix);
860
861 for (l = list; l; l = l->next) {
862 l->item->object.flags |= ONELINE_SEEN;
863 commit_list_insert(l->item, &backup);
864 }
865 while (list) {
866 char *p, *to_free = NULL;
867 struct commit *commit;
868 enum object_type type;
869 unsigned long size;
870 int matches;
871
872 commit = pop_most_recent_commit(&list, ONELINE_SEEN);
873 if (!parse_object(commit->object.sha1))
874 continue;
875 if (commit->buffer)
876 p = commit->buffer;
877 else {
878 p = read_sha1_file(commit->object.sha1, &type, &size);
879 if (!p)
880 continue;
881 to_free = p;
882 }
883
884 p = strstr(p, "\n\n");
885 matches = p && !regexec(®ex, p + 2, 0, NULL, 0);
886 free(to_free);
887
888 if (matches) {
889 hashcpy(sha1, commit->object.sha1);
890 found = 1;
891 break;
892 }
893 }
894 regfree(®ex);
895 free_commit_list(list);
896 for (l = backup; l; l = l->next)
897 clear_commit_marks(l->item, ONELINE_SEEN);
898 free_commit_list(backup);
899 return found ? 0 : -1;
900}
901
902struct grab_nth_branch_switch_cbdata {
903 int remaining;
904 struct strbuf buf;
905};
906
907static int grab_nth_branch_switch(unsigned char *osha1, unsigned char *nsha1,
908 const char *email, unsigned long timestamp, int tz,
909 const char *message, void *cb_data)
910{
911 struct grab_nth_branch_switch_cbdata *cb = cb_data;
912 const char *match = NULL, *target = NULL;
913 size_t len;
914
915 if (!prefixcmp(message, "checkout: moving from ")) {
916 match = message + strlen("checkout: moving from ");
917 target = strstr(match, " to ");
918 }
919
920 if (!match || !target)
921 return 0;
922 if (--(cb->remaining) == 0) {
923 len = target - match;
924 strbuf_reset(&cb->buf);
925 strbuf_add(&cb->buf, match, len);
926 return 1; /* we are done */
927 }
928 return 0;
929}
930
931/*
932 * Parse @{-N} syntax, return the number of characters parsed
933 * if successful; otherwise signal an error with negative value.
934 */
935static int interpret_nth_prior_checkout(const char *name, struct strbuf *buf)
936{
937 long nth;
938 int retval;
939 struct grab_nth_branch_switch_cbdata cb;
940 const char *brace;
941 char *num_end;
942
943 if (name[0] != '@' || name[1] != '{' || name[2] != '-')
944 return -1;
945 brace = strchr(name, '}');
946 if (!brace)
947 return -1;
948 nth = strtol(name + 3, &num_end, 10);
949 if (num_end != brace)
950 return -1;
951 if (nth <= 0)
952 return -1;
953 cb.remaining = nth;
954 strbuf_init(&cb.buf, 20);
955
956 retval = 0;
957 if (0 < for_each_reflog_ent_reverse("HEAD", grab_nth_branch_switch, &cb)) {
958 strbuf_reset(buf);
959 strbuf_add(buf, cb.buf.buf, cb.buf.len);
960 retval = brace - name + 1;
961 }
962
963 strbuf_release(&cb.buf);
964 return retval;
965}
966
967int get_sha1_mb(const char *name, unsigned char *sha1)
968{
969 struct commit *one, *two;
970 struct commit_list *mbs;
971 unsigned char sha1_tmp[20];
972 const char *dots;
973 int st;
974
975 dots = strstr(name, "...");
976 if (!dots)
977 return get_sha1(name, sha1);
978 if (dots == name)
979 st = get_sha1("HEAD", sha1_tmp);
980 else {
981 struct strbuf sb;
982 strbuf_init(&sb, dots - name);
983 strbuf_add(&sb, name, dots - name);
984 st = get_sha1_committish(sb.buf, sha1_tmp);
985 strbuf_release(&sb);
986 }
987 if (st)
988 return st;
989 one = lookup_commit_reference_gently(sha1_tmp, 0);
990 if (!one)
991 return -1;
992
993 if (get_sha1_committish(dots[3] ? (dots + 3) : "HEAD", sha1_tmp))
994 return -1;
995 two = lookup_commit_reference_gently(sha1_tmp, 0);
996 if (!two)
997 return -1;
998 mbs = get_merge_bases(one, two, 1);
999 if (!mbs || mbs->next)
1000 st = -1;
1001 else {
1002 st = 0;
1003 hashcpy(sha1, mbs->item->object.sha1);
1004 }
1005 free_commit_list(mbs);
1006 return st;
1007}
1008
1009/* parse @something syntax, when 'something' is not {.*} */
1010static int interpret_empty_at(const char *name, int namelen, int len, struct strbuf *buf)
1011{
1012 const char *next;
1013
1014 if (len || name[1] == '{')
1015 return -1;
1016
1017 /* make sure it's a single @, or @@{.*}, not @foo */
1018 next = strchr(name + len + 1, '@');
1019 if (next && next[1] != '{')
1020 return -1;
1021 if (!next)
1022 next = name + namelen;
1023 if (next != name + 1)
1024 return -1;
1025
1026 strbuf_reset(buf);
1027 strbuf_add(buf, "HEAD", 4);
1028 return 1;
1029}
1030
1031static int reinterpret(const char *name, int namelen, int len, struct strbuf *buf)
1032{
1033 /* we have extra data, which might need further processing */
1034 struct strbuf tmp = STRBUF_INIT;
1035 int used = buf->len;
1036 int ret;
1037
1038 strbuf_add(buf, name + len, namelen - len);
1039 ret = interpret_branch_name(buf->buf, buf->len, &tmp);
1040 /* that data was not interpreted, remove our cruft */
1041 if (ret < 0) {
1042 strbuf_setlen(buf, used);
1043 return len;
1044 }
1045 strbuf_reset(buf);
1046 strbuf_addbuf(buf, &tmp);
1047 strbuf_release(&tmp);
1048 /* tweak for size of {-N} versus expanded ref name */
1049 return ret - used + len;
1050}
1051
1052/*
1053 * This reads short-hand syntax that not only evaluates to a commit
1054 * object name, but also can act as if the end user spelled the name
1055 * of the branch from the command line.
1056 *
1057 * - "@{-N}" finds the name of the Nth previous branch we were on, and
1058 * places the name of the branch in the given buf and returns the
1059 * number of characters parsed if successful.
1060 *
1061 * - "<branch>@{upstream}" finds the name of the other ref that
1062 * <branch> is configured to merge with (missing <branch> defaults
1063 * to the current branch), and places the name of the branch in the
1064 * given buf and returns the number of characters parsed if
1065 * successful.
1066 *
1067 * If the input is not of the accepted format, it returns a negative
1068 * number to signal an error.
1069 *
1070 * If the input was ok but there are not N branch switches in the
1071 * reflog, it returns 0.
1072 */
1073int interpret_branch_name(const char *name, int namelen, struct strbuf *buf)
1074{
1075 char *cp;
1076 struct branch *upstream;
1077 int len = interpret_nth_prior_checkout(name, buf);
1078 int tmp_len;
1079
1080 if (!namelen)
1081 namelen = strlen(name);
1082
1083 if (!len) {
1084 return len; /* syntax Ok, not enough switches */
1085 } else if (len > 0) {
1086 if (len == namelen)
1087 return len; /* consumed all */
1088 else
1089 return reinterpret(name, namelen, len, buf);
1090 }
1091
1092 cp = strchr(name, '@');
1093 if (!cp)
1094 return -1;
1095
1096 len = interpret_empty_at(name, namelen, cp - name, buf);
1097 if (len > 0)
1098 return reinterpret(name, namelen, len, buf);
1099
1100 tmp_len = upstream_mark(cp, namelen - (cp - name));
1101 if (!tmp_len)
1102 return -1;
1103
1104 len = cp + tmp_len - name;
1105 cp = xstrndup(name, cp - name);
1106 upstream = branch_get(*cp ? cp : NULL);
1107 /*
1108 * Upstream can be NULL only if cp refers to HEAD and HEAD
1109 * points to something different than a branch.
1110 */
1111 if (!upstream)
1112 die(_("HEAD does not point to a branch"));
1113 if (!upstream->merge || !upstream->merge[0]->dst) {
1114 if (!ref_exists(upstream->refname))
1115 die(_("No such branch: '%s'"), cp);
1116 if (!upstream->merge) {
1117 die(_("No upstream configured for branch '%s'"),
1118 upstream->name);
1119 }
1120 die(
1121 _("Upstream branch '%s' not stored as a remote-tracking branch"),
1122 upstream->merge[0]->src);
1123 }
1124 free(cp);
1125 cp = shorten_unambiguous_ref(upstream->merge[0]->dst, 0);
1126 strbuf_reset(buf);
1127 strbuf_addstr(buf, cp);
1128 free(cp);
1129 return len;
1130}
1131
1132int strbuf_branchname(struct strbuf *sb, const char *name)
1133{
1134 int len = strlen(name);
1135 int used = interpret_branch_name(name, len, sb);
1136
1137 if (used == len)
1138 return 0;
1139 if (used < 0)
1140 used = 0;
1141 strbuf_add(sb, name + used, len - used);
1142 return len;
1143}
1144
1145int strbuf_check_branch_ref(struct strbuf *sb, const char *name)
1146{
1147 strbuf_branchname(sb, name);
1148 if (name[0] == '-')
1149 return -1;
1150 strbuf_splice(sb, 0, 0, "refs/heads/", 11);
1151 return check_refname_format(sb->buf, 0);
1152}
1153
1154/*
1155 * This is like "get_sha1_basic()", except it allows "sha1 expressions",
1156 * notably "xyz^" for "parent of xyz"
1157 */
1158int get_sha1(const char *name, unsigned char *sha1)
1159{
1160 struct object_context unused;
1161 return get_sha1_with_context(name, 0, sha1, &unused);
1162}
1163
1164/*
1165 * Many callers know that the user meant to name a commit-ish by
1166 * syntactical positions where the object name appears. Calling this
1167 * function allows the machinery to disambiguate shorter-than-unique
1168 * abbreviated object names between commit-ish and others.
1169 *
1170 * Note that this does NOT error out when the named object is not a
1171 * commit-ish. It is merely to give a hint to the disambiguation
1172 * machinery.
1173 */
1174int get_sha1_committish(const char *name, unsigned char *sha1)
1175{
1176 struct object_context unused;
1177 return get_sha1_with_context(name, GET_SHA1_COMMITTISH,
1178 sha1, &unused);
1179}
1180
1181int get_sha1_treeish(const char *name, unsigned char *sha1)
1182{
1183 struct object_context unused;
1184 return get_sha1_with_context(name, GET_SHA1_TREEISH,
1185 sha1, &unused);
1186}
1187
1188int get_sha1_commit(const char *name, unsigned char *sha1)
1189{
1190 struct object_context unused;
1191 return get_sha1_with_context(name, GET_SHA1_COMMIT,
1192 sha1, &unused);
1193}
1194
1195int get_sha1_tree(const char *name, unsigned char *sha1)
1196{
1197 struct object_context unused;
1198 return get_sha1_with_context(name, GET_SHA1_TREE,
1199 sha1, &unused);
1200}
1201
1202int get_sha1_blob(const char *name, unsigned char *sha1)
1203{
1204 struct object_context unused;
1205 return get_sha1_with_context(name, GET_SHA1_BLOB,
1206 sha1, &unused);
1207}
1208
1209/* Must be called only when object_name:filename doesn't exist. */
1210static void diagnose_invalid_sha1_path(const char *prefix,
1211 const char *filename,
1212 const unsigned char *tree_sha1,
1213 const char *object_name,
1214 int object_name_len)
1215{
1216 struct stat st;
1217 unsigned char sha1[20];
1218 unsigned mode;
1219
1220 if (!prefix)
1221 prefix = "";
1222
1223 if (!lstat(filename, &st))
1224 die("Path '%s' exists on disk, but not in '%.*s'.",
1225 filename, object_name_len, object_name);
1226 if (errno == ENOENT || errno == ENOTDIR) {
1227 char *fullname = xmalloc(strlen(filename)
1228 + strlen(prefix) + 1);
1229 strcpy(fullname, prefix);
1230 strcat(fullname, filename);
1231
1232 if (!get_tree_entry(tree_sha1, fullname,
1233 sha1, &mode)) {
1234 die("Path '%s' exists, but not '%s'.\n"
1235 "Did you mean '%.*s:%s' aka '%.*s:./%s'?",
1236 fullname,
1237 filename,
1238 object_name_len, object_name,
1239 fullname,
1240 object_name_len, object_name,
1241 filename);
1242 }
1243 die("Path '%s' does not exist in '%.*s'",
1244 filename, object_name_len, object_name);
1245 }
1246}
1247
1248/* Must be called only when :stage:filename doesn't exist. */
1249static void diagnose_invalid_index_path(int stage,
1250 const char *prefix,
1251 const char *filename)
1252{
1253 struct stat st;
1254 const struct cache_entry *ce;
1255 int pos;
1256 unsigned namelen = strlen(filename);
1257 unsigned fullnamelen;
1258 char *fullname;
1259
1260 if (!prefix)
1261 prefix = "";
1262
1263 /* Wrong stage number? */
1264 pos = cache_name_pos(filename, namelen);
1265 if (pos < 0)
1266 pos = -pos - 1;
1267 if (pos < active_nr) {
1268 ce = active_cache[pos];
1269 if (ce_namelen(ce) == namelen &&
1270 !memcmp(ce->name, filename, namelen))
1271 die("Path '%s' is in the index, but not at stage %d.\n"
1272 "Did you mean ':%d:%s'?",
1273 filename, stage,
1274 ce_stage(ce), filename);
1275 }
1276
1277 /* Confusion between relative and absolute filenames? */
1278 fullnamelen = namelen + strlen(prefix);
1279 fullname = xmalloc(fullnamelen + 1);
1280 strcpy(fullname, prefix);
1281 strcat(fullname, filename);
1282 pos = cache_name_pos(fullname, fullnamelen);
1283 if (pos < 0)
1284 pos = -pos - 1;
1285 if (pos < active_nr) {
1286 ce = active_cache[pos];
1287 if (ce_namelen(ce) == fullnamelen &&
1288 !memcmp(ce->name, fullname, fullnamelen))
1289 die("Path '%s' is in the index, but not '%s'.\n"
1290 "Did you mean ':%d:%s' aka ':%d:./%s'?",
1291 fullname, filename,
1292 ce_stage(ce), fullname,
1293 ce_stage(ce), filename);
1294 }
1295
1296 if (!lstat(filename, &st))
1297 die("Path '%s' exists on disk, but not in the index.", filename);
1298 if (errno == ENOENT || errno == ENOTDIR)
1299 die("Path '%s' does not exist (neither on disk nor in the index).",
1300 filename);
1301
1302 free(fullname);
1303}
1304
1305
1306static char *resolve_relative_path(const char *rel)
1307{
1308 if (prefixcmp(rel, "./") && prefixcmp(rel, "../"))
1309 return NULL;
1310
1311 if (!startup_info)
1312 die("BUG: startup_info struct is not initialized.");
1313
1314 if (!is_inside_work_tree())
1315 die("relative path syntax can't be used outside working tree.");
1316
1317 /* die() inside prefix_path() if resolved path is outside worktree */
1318 return prefix_path(startup_info->prefix,
1319 startup_info->prefix ? strlen(startup_info->prefix) : 0,
1320 rel);
1321}
1322
1323static int get_sha1_with_context_1(const char *name,
1324 unsigned flags,
1325 const char *prefix,
1326 unsigned char *sha1,
1327 struct object_context *oc)
1328{
1329 int ret, bracket_depth;
1330 int namelen = strlen(name);
1331 const char *cp;
1332 int only_to_die = flags & GET_SHA1_ONLY_TO_DIE;
1333
1334 memset(oc, 0, sizeof(*oc));
1335 oc->mode = S_IFINVALID;
1336 ret = get_sha1_1(name, namelen, sha1, flags);
1337 if (!ret)
1338 return ret;
1339 /*
1340 * sha1:path --> object name of path in ent sha1
1341 * :path -> object name of absolute path in index
1342 * :./path -> object name of path relative to cwd in index
1343 * :[0-3]:path -> object name of path in index at stage
1344 * :/foo -> recent commit matching foo
1345 */
1346 if (name[0] == ':') {
1347 int stage = 0;
1348 const struct cache_entry *ce;
1349 char *new_path = NULL;
1350 int pos;
1351 if (!only_to_die && namelen > 2 && name[1] == '/') {
1352 struct commit_list *list = NULL;
1353 for_each_ref(handle_one_ref, &list);
1354 return get_sha1_oneline(name + 2, sha1, list);
1355 }
1356 if (namelen < 3 ||
1357 name[2] != ':' ||
1358 name[1] < '0' || '3' < name[1])
1359 cp = name + 1;
1360 else {
1361 stage = name[1] - '0';
1362 cp = name + 3;
1363 }
1364 new_path = resolve_relative_path(cp);
1365 if (!new_path) {
1366 namelen = namelen - (cp - name);
1367 } else {
1368 cp = new_path;
1369 namelen = strlen(cp);
1370 }
1371
1372 strncpy(oc->path, cp,
1373 sizeof(oc->path));
1374 oc->path[sizeof(oc->path)-1] = '\0';
1375
1376 if (!active_cache)
1377 read_cache();
1378 pos = cache_name_pos(cp, namelen);
1379 if (pos < 0)
1380 pos = -pos - 1;
1381 while (pos < active_nr) {
1382 ce = active_cache[pos];
1383 if (ce_namelen(ce) != namelen ||
1384 memcmp(ce->name, cp, namelen))
1385 break;
1386 if (ce_stage(ce) == stage) {
1387 hashcpy(sha1, ce->sha1);
1388 oc->mode = ce->ce_mode;
1389 free(new_path);
1390 return 0;
1391 }
1392 pos++;
1393 }
1394 if (only_to_die && name[1] && name[1] != '/')
1395 diagnose_invalid_index_path(stage, prefix, cp);
1396 free(new_path);
1397 return -1;
1398 }
1399 for (cp = name, bracket_depth = 0; *cp; cp++) {
1400 if (*cp == '{')
1401 bracket_depth++;
1402 else if (bracket_depth && *cp == '}')
1403 bracket_depth--;
1404 else if (!bracket_depth && *cp == ':')
1405 break;
1406 }
1407 if (*cp == ':') {
1408 unsigned char tree_sha1[20];
1409 int len = cp - name;
1410 if (!get_sha1_1(name, len, tree_sha1, GET_SHA1_TREEISH)) {
1411 const char *filename = cp+1;
1412 char *new_filename = NULL;
1413
1414 new_filename = resolve_relative_path(filename);
1415 if (new_filename)
1416 filename = new_filename;
1417 ret = get_tree_entry(tree_sha1, filename, sha1, &oc->mode);
1418 if (ret && only_to_die) {
1419 diagnose_invalid_sha1_path(prefix, filename,
1420 tree_sha1,
1421 name, len);
1422 }
1423 hashcpy(oc->tree, tree_sha1);
1424 strncpy(oc->path, filename,
1425 sizeof(oc->path));
1426 oc->path[sizeof(oc->path)-1] = '\0';
1427
1428 free(new_filename);
1429 return ret;
1430 } else {
1431 if (only_to_die)
1432 die("Invalid object name '%.*s'.", len, name);
1433 }
1434 }
1435 return ret;
1436}
1437
1438/*
1439 * Call this function when you know "name" given by the end user must
1440 * name an object but it doesn't; the function _may_ die with a better
1441 * diagnostic message than "no such object 'name'", e.g. "Path 'doc' does not
1442 * exist in 'HEAD'" when given "HEAD:doc", or it may return in which case
1443 * you have a chance to diagnose the error further.
1444 */
1445void maybe_die_on_misspelt_object_name(const char *name, const char *prefix)
1446{
1447 struct object_context oc;
1448 unsigned char sha1[20];
1449 get_sha1_with_context_1(name, GET_SHA1_ONLY_TO_DIE, prefix, sha1, &oc);
1450}
1451
1452int get_sha1_with_context(const char *str, unsigned flags, unsigned char *sha1, struct object_context *orc)
1453{
1454 return get_sha1_with_context_1(str, flags, NULL, sha1, orc);
1455}