index-pack: make resolve_delta() assume base data
[git] / builtin / index-pack.c
1 #include "builtin.h"
2 #include "config.h"
3 #include "delta.h"
4 #include "pack.h"
5 #include "csum-file.h"
6 #include "blob.h"
7 #include "commit.h"
8 #include "tag.h"
9 #include "tree.h"
10 #include "progress.h"
11 #include "fsck.h"
12 #include "exec-cmd.h"
13 #include "streaming.h"
14 #include "thread-utils.h"
15 #include "packfile.h"
16 #include "object-store.h"
17 #include "promisor-remote.h"
18
19 static const char index_pack_usage[] =
20 "git index-pack [-v] [-o <index-file>] [--keep | --keep=<msg>] [--verify] [--strict] (<pack-file> | --stdin [--fix-thin] [<pack-file>])";
21
22 struct object_entry {
23         struct pack_idx_entry idx;
24         unsigned long size;
25         unsigned char hdr_size;
26         signed char type;
27         signed char real_type;
28 };
29
30 struct object_stat {
31         unsigned delta_depth;
32         int base_object_no;
33 };
34
35 struct base_data {
36         /* Initialized by make_base(). */
37         struct base_data *base;
38         struct object_entry *obj;
39         int ref_first, ref_last;
40         int ofs_first, ofs_last;
41
42         /* Not initialized by make_base(). */
43         void *data;
44         unsigned long size;
45 };
46
47 struct thread_local {
48         pthread_t thread;
49         size_t base_cache_used;
50         int pack_fd;
51 };
52
53 /* Remember to update object flag allocation in object.h */
54 #define FLAG_LINK (1u<<20)
55 #define FLAG_CHECKED (1u<<21)
56
57 struct ofs_delta_entry {
58         off_t offset;
59         int obj_no;
60 };
61
62 struct ref_delta_entry {
63         struct object_id oid;
64         int obj_no;
65 };
66
67 static struct object_entry *objects;
68 static struct object_stat *obj_stat;
69 static struct ofs_delta_entry *ofs_deltas;
70 static struct ref_delta_entry *ref_deltas;
71 static struct thread_local nothread_data;
72 static int nr_objects;
73 static int nr_ofs_deltas;
74 static int nr_ref_deltas;
75 static int ref_deltas_alloc;
76 static int nr_resolved_deltas;
77 static int nr_threads;
78
79 static int from_stdin;
80 static int strict;
81 static int do_fsck_object;
82 static struct fsck_options fsck_options = FSCK_OPTIONS_STRICT;
83 static int verbose;
84 static int show_resolving_progress;
85 static int show_stat;
86 static int check_self_contained_and_connected;
87
88 static struct progress *progress;
89
90 /* We always read in 4kB chunks. */
91 static unsigned char input_buffer[4096];
92 static unsigned int input_offset, input_len;
93 static off_t consumed_bytes;
94 static off_t max_input_size;
95 static unsigned deepest_delta;
96 static git_hash_ctx input_ctx;
97 static uint32_t input_crc32;
98 static int input_fd, output_fd;
99 static const char *curr_pack;
100
101 static struct thread_local *thread_data;
102 static int nr_dispatched;
103 static int threads_active;
104
105 static pthread_mutex_t read_mutex;
106 #define read_lock()             lock_mutex(&read_mutex)
107 #define read_unlock()           unlock_mutex(&read_mutex)
108
109 static pthread_mutex_t counter_mutex;
110 #define counter_lock()          lock_mutex(&counter_mutex)
111 #define counter_unlock()        unlock_mutex(&counter_mutex)
112
113 static pthread_mutex_t work_mutex;
114 #define work_lock()             lock_mutex(&work_mutex)
115 #define work_unlock()           unlock_mutex(&work_mutex)
116
117 static pthread_mutex_t deepest_delta_mutex;
118 #define deepest_delta_lock()    lock_mutex(&deepest_delta_mutex)
119 #define deepest_delta_unlock()  unlock_mutex(&deepest_delta_mutex)
120
121 static pthread_mutex_t type_cas_mutex;
122 #define type_cas_lock()         lock_mutex(&type_cas_mutex)
123 #define type_cas_unlock()       unlock_mutex(&type_cas_mutex)
124
125 static pthread_key_t key;
126
127 static inline void lock_mutex(pthread_mutex_t *mutex)
128 {
129         if (threads_active)
130                 pthread_mutex_lock(mutex);
131 }
132
133 static inline void unlock_mutex(pthread_mutex_t *mutex)
134 {
135         if (threads_active)
136                 pthread_mutex_unlock(mutex);
137 }
138
139 /*
140  * Mutex and conditional variable can't be statically-initialized on Windows.
141  */
142 static void init_thread(void)
143 {
144         int i;
145         init_recursive_mutex(&read_mutex);
146         pthread_mutex_init(&counter_mutex, NULL);
147         pthread_mutex_init(&work_mutex, NULL);
148         pthread_mutex_init(&type_cas_mutex, NULL);
149         if (show_stat)
150                 pthread_mutex_init(&deepest_delta_mutex, NULL);
151         pthread_key_create(&key, NULL);
152         thread_data = xcalloc(nr_threads, sizeof(*thread_data));
153         for (i = 0; i < nr_threads; i++) {
154                 thread_data[i].pack_fd = open(curr_pack, O_RDONLY);
155                 if (thread_data[i].pack_fd == -1)
156                         die_errno(_("unable to open %s"), curr_pack);
157         }
158
159         threads_active = 1;
160 }
161
162 static void cleanup_thread(void)
163 {
164         int i;
165         if (!threads_active)
166                 return;
167         threads_active = 0;
168         pthread_mutex_destroy(&read_mutex);
169         pthread_mutex_destroy(&counter_mutex);
170         pthread_mutex_destroy(&work_mutex);
171         pthread_mutex_destroy(&type_cas_mutex);
172         if (show_stat)
173                 pthread_mutex_destroy(&deepest_delta_mutex);
174         for (i = 0; i < nr_threads; i++)
175                 close(thread_data[i].pack_fd);
176         pthread_key_delete(key);
177         free(thread_data);
178 }
179
180 static int mark_link(struct object *obj, int type, void *data, struct fsck_options *options)
181 {
182         if (!obj)
183                 return -1;
184
185         if (type != OBJ_ANY && obj->type != type)
186                 die(_("object type mismatch at %s"), oid_to_hex(&obj->oid));
187
188         obj->flags |= FLAG_LINK;
189         return 0;
190 }
191
192 /* The content of each linked object must have been checked
193    or it must be already present in the object database */
194 static unsigned check_object(struct object *obj)
195 {
196         if (!obj)
197                 return 0;
198
199         if (!(obj->flags & FLAG_LINK))
200                 return 0;
201
202         if (!(obj->flags & FLAG_CHECKED)) {
203                 unsigned long size;
204                 int type = oid_object_info(the_repository, &obj->oid, &size);
205                 if (type <= 0)
206                         die(_("did not receive expected object %s"),
207                               oid_to_hex(&obj->oid));
208                 if (type != obj->type)
209                         die(_("object %s: expected type %s, found %s"),
210                             oid_to_hex(&obj->oid),
211                             type_name(obj->type), type_name(type));
212                 obj->flags |= FLAG_CHECKED;
213                 return 1;
214         }
215
216         return 0;
217 }
218
219 static unsigned check_objects(void)
220 {
221         unsigned i, max, foreign_nr = 0;
222
223         max = get_max_object_index();
224
225         if (verbose)
226                 progress = start_delayed_progress(_("Checking objects"), max);
227
228         for (i = 0; i < max; i++) {
229                 foreign_nr += check_object(get_indexed_object(i));
230                 display_progress(progress, i + 1);
231         }
232
233         stop_progress(&progress);
234         return foreign_nr;
235 }
236
237
238 /* Discard current buffer used content. */
239 static void flush(void)
240 {
241         if (input_offset) {
242                 if (output_fd >= 0)
243                         write_or_die(output_fd, input_buffer, input_offset);
244                 the_hash_algo->update_fn(&input_ctx, input_buffer, input_offset);
245                 memmove(input_buffer, input_buffer + input_offset, input_len);
246                 input_offset = 0;
247         }
248 }
249
250 /*
251  * Make sure at least "min" bytes are available in the buffer, and
252  * return the pointer to the buffer.
253  */
254 static void *fill(int min)
255 {
256         if (min <= input_len)
257                 return input_buffer + input_offset;
258         if (min > sizeof(input_buffer))
259                 die(Q_("cannot fill %d byte",
260                        "cannot fill %d bytes",
261                        min),
262                     min);
263         flush();
264         do {
265                 ssize_t ret = xread(input_fd, input_buffer + input_len,
266                                 sizeof(input_buffer) - input_len);
267                 if (ret <= 0) {
268                         if (!ret)
269                                 die(_("early EOF"));
270                         die_errno(_("read error on input"));
271                 }
272                 input_len += ret;
273                 if (from_stdin)
274                         display_throughput(progress, consumed_bytes + input_len);
275         } while (input_len < min);
276         return input_buffer;
277 }
278
279 static void use(int bytes)
280 {
281         if (bytes > input_len)
282                 die(_("used more bytes than were available"));
283         input_crc32 = crc32(input_crc32, input_buffer + input_offset, bytes);
284         input_len -= bytes;
285         input_offset += bytes;
286
287         /* make sure off_t is sufficiently large not to wrap */
288         if (signed_add_overflows(consumed_bytes, bytes))
289                 die(_("pack too large for current definition of off_t"));
290         consumed_bytes += bytes;
291         if (max_input_size && consumed_bytes > max_input_size)
292                 die(_("pack exceeds maximum allowed size"));
293 }
294
295 static const char *open_pack_file(const char *pack_name)
296 {
297         if (from_stdin) {
298                 input_fd = 0;
299                 if (!pack_name) {
300                         struct strbuf tmp_file = STRBUF_INIT;
301                         output_fd = odb_mkstemp(&tmp_file,
302                                                 "pack/tmp_pack_XXXXXX");
303                         pack_name = strbuf_detach(&tmp_file, NULL);
304                 } else {
305                         output_fd = open(pack_name, O_CREAT|O_EXCL|O_RDWR, 0600);
306                         if (output_fd < 0)
307                                 die_errno(_("unable to create '%s'"), pack_name);
308                 }
309                 nothread_data.pack_fd = output_fd;
310         } else {
311                 input_fd = open(pack_name, O_RDONLY);
312                 if (input_fd < 0)
313                         die_errno(_("cannot open packfile '%s'"), pack_name);
314                 output_fd = -1;
315                 nothread_data.pack_fd = input_fd;
316         }
317         the_hash_algo->init_fn(&input_ctx);
318         return pack_name;
319 }
320
321 static void parse_pack_header(void)
322 {
323         struct pack_header *hdr = fill(sizeof(struct pack_header));
324
325         /* Header consistency check */
326         if (hdr->hdr_signature != htonl(PACK_SIGNATURE))
327                 die(_("pack signature mismatch"));
328         if (!pack_version_ok(hdr->hdr_version))
329                 die(_("pack version %"PRIu32" unsupported"),
330                         ntohl(hdr->hdr_version));
331
332         nr_objects = ntohl(hdr->hdr_entries);
333         use(sizeof(struct pack_header));
334 }
335
336 static NORETURN void bad_object(off_t offset, const char *format,
337                        ...) __attribute__((format (printf, 2, 3)));
338
339 static NORETURN void bad_object(off_t offset, const char *format, ...)
340 {
341         va_list params;
342         char buf[1024];
343
344         va_start(params, format);
345         vsnprintf(buf, sizeof(buf), format, params);
346         va_end(params);
347         die(_("pack has bad object at offset %"PRIuMAX": %s"),
348             (uintmax_t)offset, buf);
349 }
350
351 static inline struct thread_local *get_thread_data(void)
352 {
353         if (HAVE_THREADS) {
354                 if (threads_active)
355                         return pthread_getspecific(key);
356                 assert(!threads_active &&
357                        "This should only be reached when all threads are gone");
358         }
359         return &nothread_data;
360 }
361
362 static void set_thread_data(struct thread_local *data)
363 {
364         if (threads_active)
365                 pthread_setspecific(key, data);
366 }
367
368 static void free_base_data(struct base_data *c)
369 {
370         if (c->data) {
371                 FREE_AND_NULL(c->data);
372                 get_thread_data()->base_cache_used -= c->size;
373         }
374 }
375
376 static void prune_base_data(struct base_data *youngest_child)
377 {
378         struct base_data *b;
379         struct thread_local *data = get_thread_data();
380         struct base_data **ancestry = NULL;
381         size_t nr = 0, alloc = 0;
382         ssize_t i;
383
384         if (data->base_cache_used <= delta_base_cache_limit)
385                 return;
386
387         /*
388          * Free all ancestors of youngest_child until we have enough space,
389          * starting with the oldest. (We cannot free youngest_child itself.)
390          */
391         for (b = youngest_child->base; b != NULL; b = b->base) {
392                 ALLOC_GROW(ancestry, nr + 1, alloc);
393                 ancestry[nr++] = b;
394         }
395         for (i = nr - 1;
396              i >= 0 && data->base_cache_used > delta_base_cache_limit;
397              i--) {
398                 if (ancestry[i]->data)
399                         free_base_data(ancestry[i]);
400         }
401         free(ancestry);
402 }
403
404 static int is_delta_type(enum object_type type)
405 {
406         return (type == OBJ_REF_DELTA || type == OBJ_OFS_DELTA);
407 }
408
409 static void *unpack_entry_data(off_t offset, unsigned long size,
410                                enum object_type type, struct object_id *oid)
411 {
412         static char fixed_buf[8192];
413         int status;
414         git_zstream stream;
415         void *buf;
416         git_hash_ctx c;
417         char hdr[32];
418         int hdrlen;
419
420         if (!is_delta_type(type)) {
421                 hdrlen = xsnprintf(hdr, sizeof(hdr), "%s %"PRIuMAX,
422                                    type_name(type),(uintmax_t)size) + 1;
423                 the_hash_algo->init_fn(&c);
424                 the_hash_algo->update_fn(&c, hdr, hdrlen);
425         } else
426                 oid = NULL;
427         if (type == OBJ_BLOB && size > big_file_threshold)
428                 buf = fixed_buf;
429         else
430                 buf = xmallocz(size);
431
432         memset(&stream, 0, sizeof(stream));
433         git_inflate_init(&stream);
434         stream.next_out = buf;
435         stream.avail_out = buf == fixed_buf ? sizeof(fixed_buf) : size;
436
437         do {
438                 unsigned char *last_out = stream.next_out;
439                 stream.next_in = fill(1);
440                 stream.avail_in = input_len;
441                 status = git_inflate(&stream, 0);
442                 use(input_len - stream.avail_in);
443                 if (oid)
444                         the_hash_algo->update_fn(&c, last_out, stream.next_out - last_out);
445                 if (buf == fixed_buf) {
446                         stream.next_out = buf;
447                         stream.avail_out = sizeof(fixed_buf);
448                 }
449         } while (status == Z_OK);
450         if (stream.total_out != size || status != Z_STREAM_END)
451                 bad_object(offset, _("inflate returned %d"), status);
452         git_inflate_end(&stream);
453         if (oid)
454                 the_hash_algo->final_fn(oid->hash, &c);
455         return buf == fixed_buf ? NULL : buf;
456 }
457
458 static void *unpack_raw_entry(struct object_entry *obj,
459                               off_t *ofs_offset,
460                               struct object_id *ref_oid,
461                               struct object_id *oid)
462 {
463         unsigned char *p;
464         unsigned long size, c;
465         off_t base_offset;
466         unsigned shift;
467         void *data;
468
469         obj->idx.offset = consumed_bytes;
470         input_crc32 = crc32(0, NULL, 0);
471
472         p = fill(1);
473         c = *p;
474         use(1);
475         obj->type = (c >> 4) & 7;
476         size = (c & 15);
477         shift = 4;
478         while (c & 0x80) {
479                 p = fill(1);
480                 c = *p;
481                 use(1);
482                 size += (c & 0x7f) << shift;
483                 shift += 7;
484         }
485         obj->size = size;
486
487         switch (obj->type) {
488         case OBJ_REF_DELTA:
489                 hashcpy(ref_oid->hash, fill(the_hash_algo->rawsz));
490                 use(the_hash_algo->rawsz);
491                 break;
492         case OBJ_OFS_DELTA:
493                 p = fill(1);
494                 c = *p;
495                 use(1);
496                 base_offset = c & 127;
497                 while (c & 128) {
498                         base_offset += 1;
499                         if (!base_offset || MSB(base_offset, 7))
500                                 bad_object(obj->idx.offset, _("offset value overflow for delta base object"));
501                         p = fill(1);
502                         c = *p;
503                         use(1);
504                         base_offset = (base_offset << 7) + (c & 127);
505                 }
506                 *ofs_offset = obj->idx.offset - base_offset;
507                 if (*ofs_offset <= 0 || *ofs_offset >= obj->idx.offset)
508                         bad_object(obj->idx.offset, _("delta base offset is out of bound"));
509                 break;
510         case OBJ_COMMIT:
511         case OBJ_TREE:
512         case OBJ_BLOB:
513         case OBJ_TAG:
514                 break;
515         default:
516                 bad_object(obj->idx.offset, _("unknown object type %d"), obj->type);
517         }
518         obj->hdr_size = consumed_bytes - obj->idx.offset;
519
520         data = unpack_entry_data(obj->idx.offset, obj->size, obj->type, oid);
521         obj->idx.crc32 = input_crc32;
522         return data;
523 }
524
525 static void *unpack_data(struct object_entry *obj,
526                          int (*consume)(const unsigned char *, unsigned long, void *),
527                          void *cb_data)
528 {
529         off_t from = obj[0].idx.offset + obj[0].hdr_size;
530         off_t len = obj[1].idx.offset - from;
531         unsigned char *data, *inbuf;
532         git_zstream stream;
533         int status;
534
535         data = xmallocz(consume ? 64*1024 : obj->size);
536         inbuf = xmalloc((len < 64*1024) ? (int)len : 64*1024);
537
538         memset(&stream, 0, sizeof(stream));
539         git_inflate_init(&stream);
540         stream.next_out = data;
541         stream.avail_out = consume ? 64*1024 : obj->size;
542
543         do {
544                 ssize_t n = (len < 64*1024) ? (ssize_t)len : 64*1024;
545                 n = xpread(get_thread_data()->pack_fd, inbuf, n, from);
546                 if (n < 0)
547                         die_errno(_("cannot pread pack file"));
548                 if (!n)
549                         die(Q_("premature end of pack file, %"PRIuMAX" byte missing",
550                                "premature end of pack file, %"PRIuMAX" bytes missing",
551                                (unsigned int)len),
552                             (uintmax_t)len);
553                 from += n;
554                 len -= n;
555                 stream.next_in = inbuf;
556                 stream.avail_in = n;
557                 if (!consume)
558                         status = git_inflate(&stream, 0);
559                 else {
560                         do {
561                                 status = git_inflate(&stream, 0);
562                                 if (consume(data, stream.next_out - data, cb_data)) {
563                                         free(inbuf);
564                                         free(data);
565                                         return NULL;
566                                 }
567                                 stream.next_out = data;
568                                 stream.avail_out = 64*1024;
569                         } while (status == Z_OK && stream.avail_in);
570                 }
571         } while (len && status == Z_OK && !stream.avail_in);
572
573         /* This has been inflated OK when first encountered, so... */
574         if (status != Z_STREAM_END || stream.total_out != obj->size)
575                 die(_("serious inflate inconsistency"));
576
577         git_inflate_end(&stream);
578         free(inbuf);
579         if (consume) {
580                 FREE_AND_NULL(data);
581         }
582         return data;
583 }
584
585 static void *get_data_from_pack(struct object_entry *obj)
586 {
587         return unpack_data(obj, NULL, NULL);
588 }
589
590 static int compare_ofs_delta_bases(off_t offset1, off_t offset2,
591                                    enum object_type type1,
592                                    enum object_type type2)
593 {
594         int cmp = type1 - type2;
595         if (cmp)
596                 return cmp;
597         return offset1 < offset2 ? -1 :
598                offset1 > offset2 ?  1 :
599                0;
600 }
601
602 static int find_ofs_delta(const off_t offset)
603 {
604         int first = 0, last = nr_ofs_deltas;
605
606         while (first < last) {
607                 int next = first + (last - first) / 2;
608                 struct ofs_delta_entry *delta = &ofs_deltas[next];
609                 int cmp;
610
611                 cmp = compare_ofs_delta_bases(offset, delta->offset,
612                                               OBJ_OFS_DELTA,
613                                               objects[delta->obj_no].type);
614                 if (!cmp)
615                         return next;
616                 if (cmp < 0) {
617                         last = next;
618                         continue;
619                 }
620                 first = next+1;
621         }
622         return -first-1;
623 }
624
625 static void find_ofs_delta_children(off_t offset,
626                                     int *first_index, int *last_index)
627 {
628         int first = find_ofs_delta(offset);
629         int last = first;
630         int end = nr_ofs_deltas - 1;
631
632         if (first < 0) {
633                 *first_index = 0;
634                 *last_index = -1;
635                 return;
636         }
637         while (first > 0 && ofs_deltas[first - 1].offset == offset)
638                 --first;
639         while (last < end && ofs_deltas[last + 1].offset == offset)
640                 ++last;
641         *first_index = first;
642         *last_index = last;
643 }
644
645 static int compare_ref_delta_bases(const struct object_id *oid1,
646                                    const struct object_id *oid2,
647                                    enum object_type type1,
648                                    enum object_type type2)
649 {
650         int cmp = type1 - type2;
651         if (cmp)
652                 return cmp;
653         return oidcmp(oid1, oid2);
654 }
655
656 static int find_ref_delta(const struct object_id *oid)
657 {
658         int first = 0, last = nr_ref_deltas;
659
660         while (first < last) {
661                 int next = first + (last - first) / 2;
662                 struct ref_delta_entry *delta = &ref_deltas[next];
663                 int cmp;
664
665                 cmp = compare_ref_delta_bases(oid, &delta->oid,
666                                               OBJ_REF_DELTA,
667                                               objects[delta->obj_no].type);
668                 if (!cmp)
669                         return next;
670                 if (cmp < 0) {
671                         last = next;
672                         continue;
673                 }
674                 first = next+1;
675         }
676         return -first-1;
677 }
678
679 static void find_ref_delta_children(const struct object_id *oid,
680                                     int *first_index, int *last_index)
681 {
682         int first = find_ref_delta(oid);
683         int last = first;
684         int end = nr_ref_deltas - 1;
685
686         if (first < 0) {
687                 *first_index = 0;
688                 *last_index = -1;
689                 return;
690         }
691         while (first > 0 && oideq(&ref_deltas[first - 1].oid, oid))
692                 --first;
693         while (last < end && oideq(&ref_deltas[last + 1].oid, oid))
694                 ++last;
695         *first_index = first;
696         *last_index = last;
697 }
698
699 struct compare_data {
700         struct object_entry *entry;
701         struct git_istream *st;
702         unsigned char *buf;
703         unsigned long buf_size;
704 };
705
706 static int compare_objects(const unsigned char *buf, unsigned long size,
707                            void *cb_data)
708 {
709         struct compare_data *data = cb_data;
710
711         if (data->buf_size < size) {
712                 free(data->buf);
713                 data->buf = xmalloc(size);
714                 data->buf_size = size;
715         }
716
717         while (size) {
718                 ssize_t len = read_istream(data->st, data->buf, size);
719                 if (len == 0)
720                         die(_("SHA1 COLLISION FOUND WITH %s !"),
721                             oid_to_hex(&data->entry->idx.oid));
722                 if (len < 0)
723                         die(_("unable to read %s"),
724                             oid_to_hex(&data->entry->idx.oid));
725                 if (memcmp(buf, data->buf, len))
726                         die(_("SHA1 COLLISION FOUND WITH %s !"),
727                             oid_to_hex(&data->entry->idx.oid));
728                 size -= len;
729                 buf += len;
730         }
731         return 0;
732 }
733
734 static int check_collison(struct object_entry *entry)
735 {
736         struct compare_data data;
737         enum object_type type;
738         unsigned long size;
739
740         if (entry->size <= big_file_threshold || entry->type != OBJ_BLOB)
741                 return -1;
742
743         memset(&data, 0, sizeof(data));
744         data.entry = entry;
745         data.st = open_istream(the_repository, &entry->idx.oid, &type, &size,
746                                NULL);
747         if (!data.st)
748                 return -1;
749         if (size != entry->size || type != entry->type)
750                 die(_("SHA1 COLLISION FOUND WITH %s !"),
751                     oid_to_hex(&entry->idx.oid));
752         unpack_data(entry, compare_objects, &data);
753         close_istream(data.st);
754         free(data.buf);
755         return 0;
756 }
757
758 static void sha1_object(const void *data, struct object_entry *obj_entry,
759                         unsigned long size, enum object_type type,
760                         const struct object_id *oid)
761 {
762         void *new_data = NULL;
763         int collision_test_needed = 0;
764
765         assert(data || obj_entry);
766
767         if (startup_info->have_repository) {
768                 read_lock();
769                 collision_test_needed =
770                         has_object_file_with_flags(oid, OBJECT_INFO_QUICK);
771                 read_unlock();
772         }
773
774         if (collision_test_needed && !data) {
775                 read_lock();
776                 if (!check_collison(obj_entry))
777                         collision_test_needed = 0;
778                 read_unlock();
779         }
780         if (collision_test_needed) {
781                 void *has_data;
782                 enum object_type has_type;
783                 unsigned long has_size;
784                 read_lock();
785                 has_type = oid_object_info(the_repository, oid, &has_size);
786                 if (has_type < 0)
787                         die(_("cannot read existing object info %s"), oid_to_hex(oid));
788                 if (has_type != type || has_size != size)
789                         die(_("SHA1 COLLISION FOUND WITH %s !"), oid_to_hex(oid));
790                 has_data = read_object_file(oid, &has_type, &has_size);
791                 read_unlock();
792                 if (!data)
793                         data = new_data = get_data_from_pack(obj_entry);
794                 if (!has_data)
795                         die(_("cannot read existing object %s"), oid_to_hex(oid));
796                 if (size != has_size || type != has_type ||
797                     memcmp(data, has_data, size) != 0)
798                         die(_("SHA1 COLLISION FOUND WITH %s !"), oid_to_hex(oid));
799                 free(has_data);
800         }
801
802         if (strict || do_fsck_object) {
803                 read_lock();
804                 if (type == OBJ_BLOB) {
805                         struct blob *blob = lookup_blob(the_repository, oid);
806                         if (blob)
807                                 blob->object.flags |= FLAG_CHECKED;
808                         else
809                                 die(_("invalid blob object %s"), oid_to_hex(oid));
810                         if (do_fsck_object &&
811                             fsck_object(&blob->object, (void *)data, size, &fsck_options))
812                                 die(_("fsck error in packed object"));
813                 } else {
814                         struct object *obj;
815                         int eaten;
816                         void *buf = (void *) data;
817
818                         assert(data && "data can only be NULL for large _blobs_");
819
820                         /*
821                          * we do not need to free the memory here, as the
822                          * buf is deleted by the caller.
823                          */
824                         obj = parse_object_buffer(the_repository, oid, type,
825                                                   size, buf,
826                                                   &eaten);
827                         if (!obj)
828                                 die(_("invalid %s"), type_name(type));
829                         if (do_fsck_object &&
830                             fsck_object(obj, buf, size, &fsck_options))
831                                 die(_("fsck error in packed object"));
832                         if (strict && fsck_walk(obj, NULL, &fsck_options))
833                                 die(_("Not all child objects of %s are reachable"), oid_to_hex(&obj->oid));
834
835                         if (obj->type == OBJ_TREE) {
836                                 struct tree *item = (struct tree *) obj;
837                                 item->buffer = NULL;
838                                 obj->parsed = 0;
839                         }
840                         if (obj->type == OBJ_COMMIT) {
841                                 struct commit *commit = (struct commit *) obj;
842                                 if (detach_commit_buffer(commit, NULL) != data)
843                                         BUG("parse_object_buffer transmogrified our buffer");
844                         }
845                         obj->flags |= FLAG_CHECKED;
846                 }
847                 read_unlock();
848         }
849
850         free(new_data);
851 }
852
853 /*
854  * This function is part of find_unresolved_deltas(). There are two
855  * walkers going in the opposite ways.
856  *
857  * The first one in find_unresolved_deltas() traverses down from
858  * parent node to children, deflating nodes along the way. However,
859  * memory for deflated nodes is limited by delta_base_cache_limit, so
860  * at some point parent node's deflated content may be freed.
861  *
862  * The second walker is this function, which goes from current node up
863  * to top parent if necessary to deflate the node. In normal
864  * situation, its parent node would be already deflated, so it just
865  * needs to apply delta.
866  *
867  * In the worst case scenario, parent node is no longer deflated because
868  * we're running out of delta_base_cache_limit; we need to re-deflate
869  * parents, possibly up to the top base.
870  *
871  * All deflated objects here are subject to be freed if we exceed
872  * delta_base_cache_limit, just like in find_unresolved_deltas(), we
873  * just need to make sure the last node is not freed.
874  */
875 static void *get_base_data(struct base_data *c)
876 {
877         if (!c->data) {
878                 struct object_entry *obj = c->obj;
879                 struct base_data **delta = NULL;
880                 int delta_nr = 0, delta_alloc = 0;
881
882                 while (is_delta_type(c->obj->type) && !c->data) {
883                         ALLOC_GROW(delta, delta_nr + 1, delta_alloc);
884                         delta[delta_nr++] = c;
885                         c = c->base;
886                 }
887                 if (!delta_nr) {
888                         c->data = get_data_from_pack(obj);
889                         c->size = obj->size;
890                         get_thread_data()->base_cache_used += c->size;
891                         prune_base_data(c);
892                 }
893                 for (; delta_nr > 0; delta_nr--) {
894                         void *base, *raw;
895                         c = delta[delta_nr - 1];
896                         obj = c->obj;
897                         base = get_base_data(c->base);
898                         raw = get_data_from_pack(obj);
899                         c->data = patch_delta(
900                                 base, c->base->size,
901                                 raw, obj->size,
902                                 &c->size);
903                         free(raw);
904                         if (!c->data)
905                                 bad_object(obj->idx.offset, _("failed to apply delta"));
906                         get_thread_data()->base_cache_used += c->size;
907                         prune_base_data(c);
908                 }
909                 free(delta);
910         }
911         return c->data;
912 }
913
914 static struct base_data *make_base(struct object_entry *obj,
915                                    struct base_data *parent)
916 {
917         struct base_data *base = xcalloc(1, sizeof(struct base_data));
918         base->base = parent;
919         base->obj = obj;
920         find_ref_delta_children(&obj->idx.oid,
921                                 &base->ref_first, &base->ref_last);
922         find_ofs_delta_children(obj->idx.offset,
923                                 &base->ofs_first, &base->ofs_last);
924         return base;
925 }
926
927 static struct base_data *resolve_delta(struct object_entry *delta_obj,
928                                        struct base_data *base)
929 {
930         void *delta_data, *result_data;
931         struct base_data *result;
932         unsigned long result_size;
933
934         if (show_stat) {
935                 int i = delta_obj - objects;
936                 int j = base->obj - objects;
937                 obj_stat[i].delta_depth = obj_stat[j].delta_depth + 1;
938                 deepest_delta_lock();
939                 if (deepest_delta < obj_stat[i].delta_depth)
940                         deepest_delta = obj_stat[i].delta_depth;
941                 deepest_delta_unlock();
942                 obj_stat[i].base_object_no = j;
943         }
944         delta_data = get_data_from_pack(delta_obj);
945         assert(base->data);
946         result_data = patch_delta(base->data, base->size,
947                                   delta_data, delta_obj->size, &result_size);
948         free(delta_data);
949         if (!result_data)
950                 bad_object(delta_obj->idx.offset, _("failed to apply delta"));
951         hash_object_file(the_hash_algo, result_data, result_size,
952                          type_name(delta_obj->real_type), &delta_obj->idx.oid);
953         sha1_object(result_data, NULL, result_size, delta_obj->real_type,
954                     &delta_obj->idx.oid);
955
956         result = make_base(delta_obj, base);
957         if (result->ref_last == -1 && result->ofs_last == -1) {
958                 free(result_data);
959         } else {
960                 result->data = result_data;
961                 result->size = result_size;
962                 get_thread_data()->base_cache_used += result->size;
963                 prune_base_data(result);
964         }
965
966         counter_lock();
967         nr_resolved_deltas++;
968         counter_unlock();
969
970         return result;
971 }
972
973 /*
974  * Standard boolean compare-and-swap: atomically check whether "*type" is
975  * "want"; if so, swap in "set" and return true. Otherwise, leave it untouched
976  * and return false.
977  */
978 static int compare_and_swap_type(signed char *type,
979                                  enum object_type want,
980                                  enum object_type set)
981 {
982         enum object_type old;
983
984         type_cas_lock();
985         old = *type;
986         if (old == want)
987                 *type = set;
988         type_cas_unlock();
989
990         return old == want;
991 }
992
993 static struct base_data *find_unresolved_deltas_1(struct base_data *base,
994                                                   struct base_data *prev_base)
995 {
996         if (base->ref_first <= base->ref_last) {
997                 struct object_entry *child = objects + ref_deltas[base->ref_first].obj_no;
998                 struct base_data *result;
999
1000                 if (!compare_and_swap_type(&child->real_type, OBJ_REF_DELTA,
1001                                            base->obj->real_type))
1002                         die("REF_DELTA at offset %"PRIuMAX" already resolved (duplicate base %s?)",
1003                             (uintmax_t)child->idx.offset,
1004                             oid_to_hex(&base->obj->idx.oid));
1005
1006                 get_base_data(base);
1007                 result = resolve_delta(child, base);
1008                 if (base->ref_first == base->ref_last && base->ofs_last == -1)
1009                         free_base_data(base);
1010
1011                 base->ref_first++;
1012                 return result;
1013         }
1014
1015         if (base->ofs_first <= base->ofs_last) {
1016                 struct object_entry *child = objects + ofs_deltas[base->ofs_first].obj_no;
1017                 struct base_data *result;
1018
1019                 assert(child->real_type == OBJ_OFS_DELTA);
1020                 child->real_type = base->obj->real_type;
1021                 get_base_data(base);
1022                 result = resolve_delta(child, base);
1023                 if (base->ofs_first == base->ofs_last)
1024                         free_base_data(base);
1025
1026                 base->ofs_first++;
1027                 return result;
1028         }
1029
1030         free_base_data(base);
1031         return NULL;
1032 }
1033
1034 static void find_unresolved_deltas(struct base_data *base)
1035 {
1036         struct base_data *new_base, *prev_base = NULL;
1037         for (;;) {
1038                 new_base = find_unresolved_deltas_1(base, prev_base);
1039
1040                 if (new_base) {
1041                         prev_base = base;
1042                         base = new_base;
1043                 } else {
1044                         free(base);
1045                         base = prev_base;
1046                         if (!base)
1047                                 return;
1048                         prev_base = base->base;
1049                 }
1050         }
1051 }
1052
1053 static int compare_ofs_delta_entry(const void *a, const void *b)
1054 {
1055         const struct ofs_delta_entry *delta_a = a;
1056         const struct ofs_delta_entry *delta_b = b;
1057
1058         return delta_a->offset < delta_b->offset ? -1 :
1059                delta_a->offset > delta_b->offset ?  1 :
1060                0;
1061 }
1062
1063 static int compare_ref_delta_entry(const void *a, const void *b)
1064 {
1065         const struct ref_delta_entry *delta_a = a;
1066         const struct ref_delta_entry *delta_b = b;
1067
1068         return oidcmp(&delta_a->oid, &delta_b->oid);
1069 }
1070
1071 static void resolve_base(struct object_entry *obj)
1072 {
1073         struct base_data *base_obj = make_base(obj, NULL);
1074
1075         find_unresolved_deltas(base_obj);
1076 }
1077
1078 static void *threaded_second_pass(void *data)
1079 {
1080         set_thread_data(data);
1081         for (;;) {
1082                 int i;
1083                 counter_lock();
1084                 display_progress(progress, nr_resolved_deltas);
1085                 counter_unlock();
1086                 work_lock();
1087                 while (nr_dispatched < nr_objects &&
1088                        is_delta_type(objects[nr_dispatched].type))
1089                         nr_dispatched++;
1090                 if (nr_dispatched >= nr_objects) {
1091                         work_unlock();
1092                         break;
1093                 }
1094                 i = nr_dispatched++;
1095                 work_unlock();
1096
1097                 resolve_base(&objects[i]);
1098         }
1099         return NULL;
1100 }
1101
1102 /*
1103  * First pass:
1104  * - find locations of all objects;
1105  * - calculate SHA1 of all non-delta objects;
1106  * - remember base (SHA1 or offset) for all deltas.
1107  */
1108 static void parse_pack_objects(unsigned char *hash)
1109 {
1110         int i, nr_delays = 0;
1111         struct ofs_delta_entry *ofs_delta = ofs_deltas;
1112         struct object_id ref_delta_oid;
1113         struct stat st;
1114
1115         if (verbose)
1116                 progress = start_progress(
1117                                 from_stdin ? _("Receiving objects") : _("Indexing objects"),
1118                                 nr_objects);
1119         for (i = 0; i < nr_objects; i++) {
1120                 struct object_entry *obj = &objects[i];
1121                 void *data = unpack_raw_entry(obj, &ofs_delta->offset,
1122                                               &ref_delta_oid,
1123                                               &obj->idx.oid);
1124                 obj->real_type = obj->type;
1125                 if (obj->type == OBJ_OFS_DELTA) {
1126                         nr_ofs_deltas++;
1127                         ofs_delta->obj_no = i;
1128                         ofs_delta++;
1129                 } else if (obj->type == OBJ_REF_DELTA) {
1130                         ALLOC_GROW(ref_deltas, nr_ref_deltas + 1, ref_deltas_alloc);
1131                         oidcpy(&ref_deltas[nr_ref_deltas].oid, &ref_delta_oid);
1132                         ref_deltas[nr_ref_deltas].obj_no = i;
1133                         nr_ref_deltas++;
1134                 } else if (!data) {
1135                         /* large blobs, check later */
1136                         obj->real_type = OBJ_BAD;
1137                         nr_delays++;
1138                 } else
1139                         sha1_object(data, NULL, obj->size, obj->type,
1140                                     &obj->idx.oid);
1141                 free(data);
1142                 display_progress(progress, i+1);
1143         }
1144         objects[i].idx.offset = consumed_bytes;
1145         stop_progress(&progress);
1146
1147         /* Check pack integrity */
1148         flush();
1149         the_hash_algo->final_fn(hash, &input_ctx);
1150         if (!hasheq(fill(the_hash_algo->rawsz), hash))
1151                 die(_("pack is corrupted (SHA1 mismatch)"));
1152         use(the_hash_algo->rawsz);
1153
1154         /* If input_fd is a file, we should have reached its end now. */
1155         if (fstat(input_fd, &st))
1156                 die_errno(_("cannot fstat packfile"));
1157         if (S_ISREG(st.st_mode) &&
1158                         lseek(input_fd, 0, SEEK_CUR) - input_len != st.st_size)
1159                 die(_("pack has junk at the end"));
1160
1161         for (i = 0; i < nr_objects; i++) {
1162                 struct object_entry *obj = &objects[i];
1163                 if (obj->real_type != OBJ_BAD)
1164                         continue;
1165                 obj->real_type = obj->type;
1166                 sha1_object(NULL, obj, obj->size, obj->type,
1167                             &obj->idx.oid);
1168                 nr_delays--;
1169         }
1170         if (nr_delays)
1171                 die(_("confusion beyond insanity in parse_pack_objects()"));
1172 }
1173
1174 /*
1175  * Second pass:
1176  * - for all non-delta objects, look if it is used as a base for
1177  *   deltas;
1178  * - if used as a base, uncompress the object and apply all deltas,
1179  *   recursively checking if the resulting object is used as a base
1180  *   for some more deltas.
1181  */
1182 static void resolve_deltas(void)
1183 {
1184         int i;
1185
1186         if (!nr_ofs_deltas && !nr_ref_deltas)
1187                 return;
1188
1189         /* Sort deltas by base SHA1/offset for fast searching */
1190         QSORT(ofs_deltas, nr_ofs_deltas, compare_ofs_delta_entry);
1191         QSORT(ref_deltas, nr_ref_deltas, compare_ref_delta_entry);
1192
1193         if (verbose || show_resolving_progress)
1194                 progress = start_progress(_("Resolving deltas"),
1195                                           nr_ref_deltas + nr_ofs_deltas);
1196
1197         nr_dispatched = 0;
1198         if (nr_threads > 1 || getenv("GIT_FORCE_THREADS")) {
1199                 init_thread();
1200                 for (i = 0; i < nr_threads; i++) {
1201                         int ret = pthread_create(&thread_data[i].thread, NULL,
1202                                                  threaded_second_pass, thread_data + i);
1203                         if (ret)
1204                                 die(_("unable to create thread: %s"),
1205                                     strerror(ret));
1206                 }
1207                 for (i = 0; i < nr_threads; i++)
1208                         pthread_join(thread_data[i].thread, NULL);
1209                 cleanup_thread();
1210                 return;
1211         }
1212         threaded_second_pass(&nothread_data);
1213 }
1214
1215 /*
1216  * Third pass:
1217  * - append objects to convert thin pack to full pack if required
1218  * - write the final pack hash
1219  */
1220 static void fix_unresolved_deltas(struct hashfile *f);
1221 static void conclude_pack(int fix_thin_pack, const char *curr_pack, unsigned char *pack_hash)
1222 {
1223         if (nr_ref_deltas + nr_ofs_deltas == nr_resolved_deltas) {
1224                 stop_progress(&progress);
1225                 /* Flush remaining pack final hash. */
1226                 flush();
1227                 return;
1228         }
1229
1230         if (fix_thin_pack) {
1231                 struct hashfile *f;
1232                 unsigned char read_hash[GIT_MAX_RAWSZ], tail_hash[GIT_MAX_RAWSZ];
1233                 struct strbuf msg = STRBUF_INIT;
1234                 int nr_unresolved = nr_ofs_deltas + nr_ref_deltas - nr_resolved_deltas;
1235                 int nr_objects_initial = nr_objects;
1236                 if (nr_unresolved <= 0)
1237                         die(_("confusion beyond insanity"));
1238                 REALLOC_ARRAY(objects, nr_objects + nr_unresolved + 1);
1239                 memset(objects + nr_objects + 1, 0,
1240                        nr_unresolved * sizeof(*objects));
1241                 f = hashfd(output_fd, curr_pack);
1242                 fix_unresolved_deltas(f);
1243                 strbuf_addf(&msg, Q_("completed with %d local object",
1244                                      "completed with %d local objects",
1245                                      nr_objects - nr_objects_initial),
1246                             nr_objects - nr_objects_initial);
1247                 stop_progress_msg(&progress, msg.buf);
1248                 strbuf_release(&msg);
1249                 finalize_hashfile(f, tail_hash, 0);
1250                 hashcpy(read_hash, pack_hash);
1251                 fixup_pack_header_footer(output_fd, pack_hash,
1252                                          curr_pack, nr_objects,
1253                                          read_hash, consumed_bytes-the_hash_algo->rawsz);
1254                 if (!hasheq(read_hash, tail_hash))
1255                         die(_("Unexpected tail checksum for %s "
1256                               "(disk corruption?)"), curr_pack);
1257         }
1258         if (nr_ofs_deltas + nr_ref_deltas != nr_resolved_deltas)
1259                 die(Q_("pack has %d unresolved delta",
1260                        "pack has %d unresolved deltas",
1261                        nr_ofs_deltas + nr_ref_deltas - nr_resolved_deltas),
1262                     nr_ofs_deltas + nr_ref_deltas - nr_resolved_deltas);
1263 }
1264
1265 static int write_compressed(struct hashfile *f, void *in, unsigned int size)
1266 {
1267         git_zstream stream;
1268         int status;
1269         unsigned char outbuf[4096];
1270
1271         git_deflate_init(&stream, zlib_compression_level);
1272         stream.next_in = in;
1273         stream.avail_in = size;
1274
1275         do {
1276                 stream.next_out = outbuf;
1277                 stream.avail_out = sizeof(outbuf);
1278                 status = git_deflate(&stream, Z_FINISH);
1279                 hashwrite(f, outbuf, sizeof(outbuf) - stream.avail_out);
1280         } while (status == Z_OK);
1281
1282         if (status != Z_STREAM_END)
1283                 die(_("unable to deflate appended object (%d)"), status);
1284         size = stream.total_out;
1285         git_deflate_end(&stream);
1286         return size;
1287 }
1288
1289 static struct object_entry *append_obj_to_pack(struct hashfile *f,
1290                                const unsigned char *sha1, void *buf,
1291                                unsigned long size, enum object_type type)
1292 {
1293         struct object_entry *obj = &objects[nr_objects++];
1294         unsigned char header[10];
1295         unsigned long s = size;
1296         int n = 0;
1297         unsigned char c = (type << 4) | (s & 15);
1298         s >>= 4;
1299         while (s) {
1300                 header[n++] = c | 0x80;
1301                 c = s & 0x7f;
1302                 s >>= 7;
1303         }
1304         header[n++] = c;
1305         crc32_begin(f);
1306         hashwrite(f, header, n);
1307         obj[0].size = size;
1308         obj[0].hdr_size = n;
1309         obj[0].type = type;
1310         obj[0].real_type = type;
1311         obj[1].idx.offset = obj[0].idx.offset + n;
1312         obj[1].idx.offset += write_compressed(f, buf, size);
1313         obj[0].idx.crc32 = crc32_end(f);
1314         hashflush(f);
1315         hashcpy(obj->idx.oid.hash, sha1);
1316         return obj;
1317 }
1318
1319 static int delta_pos_compare(const void *_a, const void *_b)
1320 {
1321         struct ref_delta_entry *a = *(struct ref_delta_entry **)_a;
1322         struct ref_delta_entry *b = *(struct ref_delta_entry **)_b;
1323         return a->obj_no - b->obj_no;
1324 }
1325
1326 static void fix_unresolved_deltas(struct hashfile *f)
1327 {
1328         struct ref_delta_entry **sorted_by_pos;
1329         int i;
1330
1331         /*
1332          * Since many unresolved deltas may well be themselves base objects
1333          * for more unresolved deltas, we really want to include the
1334          * smallest number of base objects that would cover as much delta
1335          * as possible by picking the
1336          * trunc deltas first, allowing for other deltas to resolve without
1337          * additional base objects.  Since most base objects are to be found
1338          * before deltas depending on them, a good heuristic is to start
1339          * resolving deltas in the same order as their position in the pack.
1340          */
1341         ALLOC_ARRAY(sorted_by_pos, nr_ref_deltas);
1342         for (i = 0; i < nr_ref_deltas; i++)
1343                 sorted_by_pos[i] = &ref_deltas[i];
1344         QSORT(sorted_by_pos, nr_ref_deltas, delta_pos_compare);
1345
1346         if (has_promisor_remote()) {
1347                 /*
1348                  * Prefetch the delta bases.
1349                  */
1350                 struct oid_array to_fetch = OID_ARRAY_INIT;
1351                 for (i = 0; i < nr_ref_deltas; i++) {
1352                         struct ref_delta_entry *d = sorted_by_pos[i];
1353                         if (!oid_object_info_extended(the_repository, &d->oid,
1354                                                       NULL,
1355                                                       OBJECT_INFO_FOR_PREFETCH))
1356                                 continue;
1357                         oid_array_append(&to_fetch, &d->oid);
1358                 }
1359                 promisor_remote_get_direct(the_repository,
1360                                            to_fetch.oid, to_fetch.nr);
1361                 oid_array_clear(&to_fetch);
1362         }
1363
1364         for (i = 0; i < nr_ref_deltas; i++) {
1365                 struct ref_delta_entry *d = sorted_by_pos[i];
1366                 enum object_type type;
1367                 struct base_data *base;
1368                 void *data;
1369                 unsigned long size;
1370                 struct object_entry *obj;
1371
1372                 if (objects[d->obj_no].real_type != OBJ_REF_DELTA)
1373                         continue;
1374                 data = read_object_file(&d->oid, &type, &size);
1375                 if (!data)
1376                         continue;
1377
1378                 if (check_object_signature(the_repository, &d->oid,
1379                                            data, size,
1380                                            type_name(type)))
1381                         die(_("local object %s is corrupt"), oid_to_hex(&d->oid));
1382                 obj = append_obj_to_pack(f, d->oid.hash, data, size, type);
1383                 base = make_base(obj, NULL);
1384                 base->data = data;
1385                 base->size = size;
1386                 find_unresolved_deltas(base);
1387                 display_progress(progress, nr_resolved_deltas);
1388         }
1389         free(sorted_by_pos);
1390 }
1391
1392 static const char *derive_filename(const char *pack_name, const char *suffix,
1393                                    struct strbuf *buf)
1394 {
1395         size_t len;
1396         if (!strip_suffix(pack_name, ".pack", &len))
1397                 die(_("packfile name '%s' does not end with '.pack'"),
1398                     pack_name);
1399         strbuf_add(buf, pack_name, len);
1400         strbuf_addch(buf, '.');
1401         strbuf_addstr(buf, suffix);
1402         return buf->buf;
1403 }
1404
1405 static void write_special_file(const char *suffix, const char *msg,
1406                                const char *pack_name, const unsigned char *hash,
1407                                const char **report)
1408 {
1409         struct strbuf name_buf = STRBUF_INIT;
1410         const char *filename;
1411         int fd;
1412         int msg_len = strlen(msg);
1413
1414         if (pack_name)
1415                 filename = derive_filename(pack_name, suffix, &name_buf);
1416         else
1417                 filename = odb_pack_name(&name_buf, hash, suffix);
1418
1419         fd = odb_pack_keep(filename);
1420         if (fd < 0) {
1421                 if (errno != EEXIST)
1422                         die_errno(_("cannot write %s file '%s'"),
1423                                   suffix, filename);
1424         } else {
1425                 if (msg_len > 0) {
1426                         write_or_die(fd, msg, msg_len);
1427                         write_or_die(fd, "\n", 1);
1428                 }
1429                 if (close(fd) != 0)
1430                         die_errno(_("cannot close written %s file '%s'"),
1431                                   suffix, filename);
1432                 if (report)
1433                         *report = suffix;
1434         }
1435         strbuf_release(&name_buf);
1436 }
1437
1438 static void final(const char *final_pack_name, const char *curr_pack_name,
1439                   const char *final_index_name, const char *curr_index_name,
1440                   const char *keep_msg, const char *promisor_msg,
1441                   unsigned char *hash)
1442 {
1443         const char *report = "pack";
1444         struct strbuf pack_name = STRBUF_INIT;
1445         struct strbuf index_name = STRBUF_INIT;
1446         int err;
1447
1448         if (!from_stdin) {
1449                 close(input_fd);
1450         } else {
1451                 fsync_or_die(output_fd, curr_pack_name);
1452                 err = close(output_fd);
1453                 if (err)
1454                         die_errno(_("error while closing pack file"));
1455         }
1456
1457         if (keep_msg)
1458                 write_special_file("keep", keep_msg, final_pack_name, hash,
1459                                    &report);
1460         if (promisor_msg)
1461                 write_special_file("promisor", promisor_msg, final_pack_name,
1462                                    hash, NULL);
1463
1464         if (final_pack_name != curr_pack_name) {
1465                 if (!final_pack_name)
1466                         final_pack_name = odb_pack_name(&pack_name, hash, "pack");
1467                 if (finalize_object_file(curr_pack_name, final_pack_name))
1468                         die(_("cannot store pack file"));
1469         } else if (from_stdin)
1470                 chmod(final_pack_name, 0444);
1471
1472         if (final_index_name != curr_index_name) {
1473                 if (!final_index_name)
1474                         final_index_name = odb_pack_name(&index_name, hash, "idx");
1475                 if (finalize_object_file(curr_index_name, final_index_name))
1476                         die(_("cannot store index file"));
1477         } else
1478                 chmod(final_index_name, 0444);
1479
1480         if (do_fsck_object) {
1481                 struct packed_git *p;
1482                 p = add_packed_git(final_index_name, strlen(final_index_name), 0);
1483                 if (p)
1484                         install_packed_git(the_repository, p);
1485         }
1486
1487         if (!from_stdin) {
1488                 printf("%s\n", hash_to_hex(hash));
1489         } else {
1490                 struct strbuf buf = STRBUF_INIT;
1491
1492                 strbuf_addf(&buf, "%s\t%s\n", report, hash_to_hex(hash));
1493                 write_or_die(1, buf.buf, buf.len);
1494                 strbuf_release(&buf);
1495
1496                 /*
1497                  * Let's just mimic git-unpack-objects here and write
1498                  * the last part of the input buffer to stdout.
1499                  */
1500                 while (input_len) {
1501                         err = xwrite(1, input_buffer + input_offset, input_len);
1502                         if (err <= 0)
1503                                 break;
1504                         input_len -= err;
1505                         input_offset += err;
1506                 }
1507         }
1508
1509         strbuf_release(&index_name);
1510         strbuf_release(&pack_name);
1511 }
1512
1513 static int git_index_pack_config(const char *k, const char *v, void *cb)
1514 {
1515         struct pack_idx_option *opts = cb;
1516
1517         if (!strcmp(k, "pack.indexversion")) {
1518                 opts->version = git_config_int(k, v);
1519                 if (opts->version > 2)
1520                         die(_("bad pack.indexversion=%"PRIu32), opts->version);
1521                 return 0;
1522         }
1523         if (!strcmp(k, "pack.threads")) {
1524                 nr_threads = git_config_int(k, v);
1525                 if (nr_threads < 0)
1526                         die(_("invalid number of threads specified (%d)"),
1527                             nr_threads);
1528                 if (!HAVE_THREADS && nr_threads != 1) {
1529                         warning(_("no threads support, ignoring %s"), k);
1530                         nr_threads = 1;
1531                 }
1532                 return 0;
1533         }
1534         return git_default_config(k, v, cb);
1535 }
1536
1537 static int cmp_uint32(const void *a_, const void *b_)
1538 {
1539         uint32_t a = *((uint32_t *)a_);
1540         uint32_t b = *((uint32_t *)b_);
1541
1542         return (a < b) ? -1 : (a != b);
1543 }
1544
1545 static void read_v2_anomalous_offsets(struct packed_git *p,
1546                                       struct pack_idx_option *opts)
1547 {
1548         const uint32_t *idx1, *idx2;
1549         uint32_t i;
1550
1551         /* The address of the 4-byte offset table */
1552         idx1 = (((const uint32_t *)((const uint8_t *)p->index_data + p->crc_offset))
1553                 + p->num_objects /* CRC32 table */
1554                 );
1555
1556         /* The address of the 8-byte offset table */
1557         idx2 = idx1 + p->num_objects;
1558
1559         for (i = 0; i < p->num_objects; i++) {
1560                 uint32_t off = ntohl(idx1[i]);
1561                 if (!(off & 0x80000000))
1562                         continue;
1563                 off = off & 0x7fffffff;
1564                 check_pack_index_ptr(p, &idx2[off * 2]);
1565                 if (idx2[off * 2])
1566                         continue;
1567                 /*
1568                  * The real offset is ntohl(idx2[off * 2]) in high 4
1569                  * octets, and ntohl(idx2[off * 2 + 1]) in low 4
1570                  * octets.  But idx2[off * 2] is Zero!!!
1571                  */
1572                 ALLOC_GROW(opts->anomaly, opts->anomaly_nr + 1, opts->anomaly_alloc);
1573                 opts->anomaly[opts->anomaly_nr++] = ntohl(idx2[off * 2 + 1]);
1574         }
1575
1576         QSORT(opts->anomaly, opts->anomaly_nr, cmp_uint32);
1577 }
1578
1579 static void read_idx_option(struct pack_idx_option *opts, const char *pack_name)
1580 {
1581         struct packed_git *p = add_packed_git(pack_name, strlen(pack_name), 1);
1582
1583         if (!p)
1584                 die(_("Cannot open existing pack file '%s'"), pack_name);
1585         if (open_pack_index(p))
1586                 die(_("Cannot open existing pack idx file for '%s'"), pack_name);
1587
1588         /* Read the attributes from the existing idx file */
1589         opts->version = p->index_version;
1590
1591         if (opts->version == 2)
1592                 read_v2_anomalous_offsets(p, opts);
1593
1594         /*
1595          * Get rid of the idx file as we do not need it anymore.
1596          * NEEDSWORK: extract this bit from free_pack_by_name() in
1597          * sha1-file.c, perhaps?  It shouldn't matter very much as we
1598          * know we haven't installed this pack (hence we never have
1599          * read anything from it).
1600          */
1601         close_pack_index(p);
1602         free(p);
1603 }
1604
1605 static void show_pack_info(int stat_only)
1606 {
1607         int i, baseobjects = nr_objects - nr_ref_deltas - nr_ofs_deltas;
1608         unsigned long *chain_histogram = NULL;
1609
1610         if (deepest_delta)
1611                 chain_histogram = xcalloc(deepest_delta, sizeof(unsigned long));
1612
1613         for (i = 0; i < nr_objects; i++) {
1614                 struct object_entry *obj = &objects[i];
1615
1616                 if (is_delta_type(obj->type))
1617                         chain_histogram[obj_stat[i].delta_depth - 1]++;
1618                 if (stat_only)
1619                         continue;
1620                 printf("%s %-6s %"PRIuMAX" %"PRIuMAX" %"PRIuMAX,
1621                        oid_to_hex(&obj->idx.oid),
1622                        type_name(obj->real_type), (uintmax_t)obj->size,
1623                        (uintmax_t)(obj[1].idx.offset - obj->idx.offset),
1624                        (uintmax_t)obj->idx.offset);
1625                 if (is_delta_type(obj->type)) {
1626                         struct object_entry *bobj = &objects[obj_stat[i].base_object_no];
1627                         printf(" %u %s", obj_stat[i].delta_depth,
1628                                oid_to_hex(&bobj->idx.oid));
1629                 }
1630                 putchar('\n');
1631         }
1632
1633         if (baseobjects)
1634                 printf_ln(Q_("non delta: %d object",
1635                              "non delta: %d objects",
1636                              baseobjects),
1637                           baseobjects);
1638         for (i = 0; i < deepest_delta; i++) {
1639                 if (!chain_histogram[i])
1640                         continue;
1641                 printf_ln(Q_("chain length = %d: %lu object",
1642                              "chain length = %d: %lu objects",
1643                              chain_histogram[i]),
1644                           i + 1,
1645                           chain_histogram[i]);
1646         }
1647 }
1648
1649 int cmd_index_pack(int argc, const char **argv, const char *prefix)
1650 {
1651         int i, fix_thin_pack = 0, verify = 0, stat_only = 0;
1652         const char *curr_index;
1653         const char *index_name = NULL, *pack_name = NULL;
1654         const char *keep_msg = NULL;
1655         const char *promisor_msg = NULL;
1656         struct strbuf index_name_buf = STRBUF_INIT;
1657         struct pack_idx_entry **idx_objects;
1658         struct pack_idx_option opts;
1659         unsigned char pack_hash[GIT_MAX_RAWSZ];
1660         unsigned foreign_nr = 1;        /* zero is a "good" value, assume bad */
1661         int report_end_of_input = 0;
1662         int hash_algo = 0;
1663
1664         /*
1665          * index-pack never needs to fetch missing objects except when
1666          * REF_DELTA bases are missing (which are explicitly handled). It only
1667          * accesses the repo to do hash collision checks and to check which
1668          * REF_DELTA bases need to be fetched.
1669          */
1670         fetch_if_missing = 0;
1671
1672         if (argc == 2 && !strcmp(argv[1], "-h"))
1673                 usage(index_pack_usage);
1674
1675         read_replace_refs = 0;
1676         fsck_options.walk = mark_link;
1677
1678         reset_pack_idx_option(&opts);
1679         git_config(git_index_pack_config, &opts);
1680         if (prefix && chdir(prefix))
1681                 die(_("Cannot come back to cwd"));
1682
1683         for (i = 1; i < argc; i++) {
1684                 const char *arg = argv[i];
1685
1686                 if (*arg == '-') {
1687                         if (!strcmp(arg, "--stdin")) {
1688                                 from_stdin = 1;
1689                         } else if (!strcmp(arg, "--fix-thin")) {
1690                                 fix_thin_pack = 1;
1691                         } else if (skip_to_optional_arg(arg, "--strict", &arg)) {
1692                                 strict = 1;
1693                                 do_fsck_object = 1;
1694                                 fsck_set_msg_types(&fsck_options, arg);
1695                         } else if (!strcmp(arg, "--check-self-contained-and-connected")) {
1696                                 strict = 1;
1697                                 check_self_contained_and_connected = 1;
1698                         } else if (!strcmp(arg, "--fsck-objects")) {
1699                                 do_fsck_object = 1;
1700                         } else if (!strcmp(arg, "--verify")) {
1701                                 verify = 1;
1702                         } else if (!strcmp(arg, "--verify-stat")) {
1703                                 verify = 1;
1704                                 show_stat = 1;
1705                         } else if (!strcmp(arg, "--verify-stat-only")) {
1706                                 verify = 1;
1707                                 show_stat = 1;
1708                                 stat_only = 1;
1709                         } else if (skip_to_optional_arg(arg, "--keep", &keep_msg)) {
1710                                 ; /* nothing to do */
1711                         } else if (skip_to_optional_arg(arg, "--promisor", &promisor_msg)) {
1712                                 ; /* already parsed */
1713                         } else if (starts_with(arg, "--threads=")) {
1714                                 char *end;
1715                                 nr_threads = strtoul(arg+10, &end, 0);
1716                                 if (!arg[10] || *end || nr_threads < 0)
1717                                         usage(index_pack_usage);
1718                                 if (!HAVE_THREADS && nr_threads != 1) {
1719                                         warning(_("no threads support, ignoring %s"), arg);
1720                                         nr_threads = 1;
1721                                 }
1722                         } else if (starts_with(arg, "--pack_header=")) {
1723                                 struct pack_header *hdr;
1724                                 char *c;
1725
1726                                 hdr = (struct pack_header *)input_buffer;
1727                                 hdr->hdr_signature = htonl(PACK_SIGNATURE);
1728                                 hdr->hdr_version = htonl(strtoul(arg + 14, &c, 10));
1729                                 if (*c != ',')
1730                                         die(_("bad %s"), arg);
1731                                 hdr->hdr_entries = htonl(strtoul(c + 1, &c, 10));
1732                                 if (*c)
1733                                         die(_("bad %s"), arg);
1734                                 input_len = sizeof(*hdr);
1735                         } else if (!strcmp(arg, "-v")) {
1736                                 verbose = 1;
1737                         } else if (!strcmp(arg, "--show-resolving-progress")) {
1738                                 show_resolving_progress = 1;
1739                         } else if (!strcmp(arg, "--report-end-of-input")) {
1740                                 report_end_of_input = 1;
1741                         } else if (!strcmp(arg, "-o")) {
1742                                 if (index_name || (i+1) >= argc)
1743                                         usage(index_pack_usage);
1744                                 index_name = argv[++i];
1745                         } else if (starts_with(arg, "--index-version=")) {
1746                                 char *c;
1747                                 opts.version = strtoul(arg + 16, &c, 10);
1748                                 if (opts.version > 2)
1749                                         die(_("bad %s"), arg);
1750                                 if (*c == ',')
1751                                         opts.off32_limit = strtoul(c+1, &c, 0);
1752                                 if (*c || opts.off32_limit & 0x80000000)
1753                                         die(_("bad %s"), arg);
1754                         } else if (skip_prefix(arg, "--max-input-size=", &arg)) {
1755                                 max_input_size = strtoumax(arg, NULL, 10);
1756                         } else if (skip_prefix(arg, "--object-format=", &arg)) {
1757                                 hash_algo = hash_algo_by_name(arg);
1758                                 if (hash_algo == GIT_HASH_UNKNOWN)
1759                                         die(_("unknown hash algorithm '%s'"), arg);
1760                                 repo_set_hash_algo(the_repository, hash_algo);
1761                         } else
1762                                 usage(index_pack_usage);
1763                         continue;
1764                 }
1765
1766                 if (pack_name)
1767                         usage(index_pack_usage);
1768                 pack_name = arg;
1769         }
1770
1771         if (!pack_name && !from_stdin)
1772                 usage(index_pack_usage);
1773         if (fix_thin_pack && !from_stdin)
1774                 die(_("--fix-thin cannot be used without --stdin"));
1775         if (from_stdin && !startup_info->have_repository)
1776                 die(_("--stdin requires a git repository"));
1777         if (from_stdin && hash_algo)
1778                 die(_("--object-format cannot be used with --stdin"));
1779         if (!index_name && pack_name)
1780                 index_name = derive_filename(pack_name, "idx", &index_name_buf);
1781
1782         if (verify) {
1783                 if (!index_name)
1784                         die(_("--verify with no packfile name given"));
1785                 read_idx_option(&opts, index_name);
1786                 opts.flags |= WRITE_IDX_VERIFY | WRITE_IDX_STRICT;
1787         }
1788         if (strict)
1789                 opts.flags |= WRITE_IDX_STRICT;
1790
1791         if (HAVE_THREADS && !nr_threads) {
1792                 nr_threads = online_cpus();
1793                 /* An experiment showed that more threads does not mean faster */
1794                 if (nr_threads > 3)
1795                         nr_threads = 3;
1796         }
1797
1798         curr_pack = open_pack_file(pack_name);
1799         parse_pack_header();
1800         objects = xcalloc(st_add(nr_objects, 1), sizeof(struct object_entry));
1801         if (show_stat)
1802                 obj_stat = xcalloc(st_add(nr_objects, 1), sizeof(struct object_stat));
1803         ofs_deltas = xcalloc(nr_objects, sizeof(struct ofs_delta_entry));
1804         parse_pack_objects(pack_hash);
1805         if (report_end_of_input)
1806                 write_in_full(2, "\0", 1);
1807         resolve_deltas();
1808         conclude_pack(fix_thin_pack, curr_pack, pack_hash);
1809         free(ofs_deltas);
1810         free(ref_deltas);
1811         if (strict)
1812                 foreign_nr = check_objects();
1813
1814         if (show_stat)
1815                 show_pack_info(stat_only);
1816
1817         ALLOC_ARRAY(idx_objects, nr_objects);
1818         for (i = 0; i < nr_objects; i++)
1819                 idx_objects[i] = &objects[i].idx;
1820         curr_index = write_idx_file(index_name, idx_objects, nr_objects, &opts, pack_hash);
1821         free(idx_objects);
1822
1823         if (!verify)
1824                 final(pack_name, curr_pack,
1825                       index_name, curr_index,
1826                       keep_msg, promisor_msg,
1827                       pack_hash);
1828         else
1829                 close(input_fd);
1830
1831         if (do_fsck_object && fsck_finish(&fsck_options))
1832                 die(_("fsck error in pack objects"));
1833
1834         free(objects);
1835         strbuf_release(&index_name_buf);
1836         if (pack_name == NULL)
1837                 free((void *) curr_pack);
1838         if (index_name == NULL)
1839                 free((void *) curr_index);
1840
1841         /*
1842          * Let the caller know this pack is not self contained
1843          */
1844         if (check_self_contained_and_connected && foreign_nr)
1845                 return 1;
1846
1847         return 0;
1848 }