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midx.c: consider annotated tags during bitmap selection
[thirdparty/git.git] / midx.c
CommitLineData
a3407730 1#include "cache.h"
c4d25228 2#include "config.h"
fc59e748 3#include "csum-file.h"
396f2570 4#include "dir.h"
fc59e748 5#include "lockfile.h"
396f2570 6#include "packfile.h"
4d80560c 7#include "object-store.h"
bc626927 8#include "hash-lookup.h"
a3407730 9#include "midx.h"
144d7033 10#include "progress.h"
d829223a 11#include "trace2.h"
ce1e4a10 12#include "run-command.h"
18e449f8 13#include "repository.h"
63a8f0e9 14#include "chunk-format.h"
38ff7cab 15#include "pack.h"
c528e179
TB
16#include "pack-bitmap.h"
17#include "refs.h"
18#include "revision.h"
19#include "list-objects.h"
a3407730 20
fc59e748
DS
21#define MIDX_SIGNATURE 0x4d494458 /* "MIDX" */
22#define MIDX_VERSION 1
4d80560c
DS
23#define MIDX_BYTE_FILE_VERSION 4
24#define MIDX_BYTE_HASH_VERSION 5
25#define MIDX_BYTE_NUM_CHUNKS 6
26#define MIDX_BYTE_NUM_PACKS 8
fc59e748 27#define MIDX_HEADER_SIZE 12
aaa95dfa 28#define MIDX_MIN_SIZE (MIDX_HEADER_SIZE + the_hash_algo->rawsz)
fc59e748 29
32f3c541
DS
30#define MIDX_CHUNK_ALIGNMENT 4
31#define MIDX_CHUNKID_PACKNAMES 0x504e414d /* "PNAM" */
d7cacf29 32#define MIDX_CHUNKID_OIDFANOUT 0x4f494446 /* "OIDF" */
0d5b3a5e 33#define MIDX_CHUNKID_OIDLOOKUP 0x4f49444c /* "OIDL" */
662148c4
DS
34#define MIDX_CHUNKID_OBJECTOFFSETS 0x4f4f4646 /* "OOFF" */
35#define MIDX_CHUNKID_LARGEOFFSETS 0x4c4f4646 /* "LOFF" */
95e8383b 36#define MIDX_CHUNKID_REVINDEX 0x52494458 /* "RIDX" */
d7cacf29 37#define MIDX_CHUNK_FANOUT_SIZE (sizeof(uint32_t) * 256)
662148c4
DS
38#define MIDX_CHUNK_OFFSET_WIDTH (2 * sizeof(uint32_t))
39#define MIDX_CHUNK_LARGE_OFFSET_WIDTH (sizeof(uint64_t))
40#define MIDX_LARGE_OFFSET_NEEDED 0x80000000
32f3c541 41
19575c7c
DS
42#define PACK_EXPIRED UINT_MAX
43
0f533c72 44const unsigned char *get_midx_checksum(struct multi_pack_index *m)
f894081d
TB
45{
46 return m->data + m->data_len - the_hash_algo->rawsz;
47}
48
60980aed 49void get_midx_filename(struct strbuf *out, const char *object_dir)
fc59e748 50{
60980aed 51 strbuf_addf(out, "%s/pack/multi-pack-index", object_dir);
fc59e748
DS
52}
53
60980aed 54void get_midx_rev_filename(struct strbuf *out, struct multi_pack_index *m)
f894081d 55{
60980aed
TB
56 get_midx_filename(out, m->object_dir);
57 strbuf_addf(out, "-%s.rev", hash_to_hex(get_midx_checksum(m)));
f894081d
TB
58}
59
6ab3b8b8
DS
60static int midx_read_oid_fanout(const unsigned char *chunk_start,
61 size_t chunk_size, void *data)
62{
63 struct multi_pack_index *m = data;
64 m->chunk_oid_fanout = (uint32_t *)chunk_start;
65
66 if (chunk_size != 4 * 256) {
67 error(_("multi-pack-index OID fanout is of the wrong size"));
68 return 1;
69 }
70 return 0;
71}
72
2cf489a3 73struct multi_pack_index *load_multi_pack_index(const char *object_dir, int local)
4d80560c
DS
74{
75 struct multi_pack_index *m = NULL;
76 int fd;
77 struct stat st;
78 size_t midx_size;
79 void *midx_map = NULL;
80 uint32_t hash_version;
60980aed 81 struct strbuf midx_name = STRBUF_INIT;
32f3c541 82 uint32_t i;
3227565c 83 const char *cur_pack_name;
6ab3b8b8 84 struct chunkfile *cf = NULL;
4d80560c 85
60980aed
TB
86 get_midx_filename(&midx_name, object_dir);
87
88 fd = git_open(midx_name.buf);
4d80560c
DS
89
90 if (fd < 0)
91 goto cleanup_fail;
92 if (fstat(fd, &st)) {
60980aed 93 error_errno(_("failed to read %s"), midx_name.buf);
4d80560c
DS
94 goto cleanup_fail;
95 }
96
97 midx_size = xsize_t(st.st_size);
98
99 if (midx_size < MIDX_MIN_SIZE) {
60980aed 100 error(_("multi-pack-index file %s is too small"), midx_name.buf);
4d80560c
DS
101 goto cleanup_fail;
102 }
103
60980aed 104 strbuf_release(&midx_name);
4d80560c
DS
105
106 midx_map = xmmap(NULL, midx_size, PROT_READ, MAP_PRIVATE, fd, 0);
6c7ff7cf 107 close(fd);
4d80560c 108
577314ca 109 FLEX_ALLOC_STR(m, object_dir, object_dir);
4d80560c
DS
110 m->data = midx_map;
111 m->data_len = midx_size;
2cf489a3 112 m->local = local;
4d80560c
DS
113
114 m->signature = get_be32(m->data);
53ad0407
DS
115 if (m->signature != MIDX_SIGNATURE)
116 die(_("multi-pack-index signature 0x%08x does not match signature 0x%08x"),
4d80560c 117 m->signature, MIDX_SIGNATURE);
4d80560c
DS
118
119 m->version = m->data[MIDX_BYTE_FILE_VERSION];
53ad0407
DS
120 if (m->version != MIDX_VERSION)
121 die(_("multi-pack-index version %d not recognized"),
4d80560c 122 m->version);
4d80560c
DS
123
124 hash_version = m->data[MIDX_BYTE_HASH_VERSION];
d9fef9d9 125 if (hash_version != oid_version(the_hash_algo)) {
d9607542 126 error(_("multi-pack-index hash version %u does not match version %u"),
d9fef9d9 127 hash_version, oid_version(the_hash_algo));
d9607542
DS
128 goto cleanup_fail;
129 }
aaa95dfa 130 m->hash_len = the_hash_algo->rawsz;
4d80560c
DS
131
132 m->num_chunks = m->data[MIDX_BYTE_NUM_CHUNKS];
133
134 m->num_packs = get_be32(m->data + MIDX_BYTE_NUM_PACKS);
135
6ab3b8b8 136 cf = init_chunkfile(NULL);
32f3c541 137
6ab3b8b8
DS
138 if (read_table_of_contents(cf, m->data, midx_size,
139 MIDX_HEADER_SIZE, m->num_chunks))
140 goto cleanup_fail;
32f3c541 141
6ab3b8b8 142 if (pair_chunk(cf, MIDX_CHUNKID_PACKNAMES, &m->chunk_pack_names) == CHUNK_NOT_FOUND)
32f3c541 143 die(_("multi-pack-index missing required pack-name chunk"));
6ab3b8b8 144 if (read_chunk(cf, MIDX_CHUNKID_OIDFANOUT, midx_read_oid_fanout, m) == CHUNK_NOT_FOUND)
d7cacf29 145 die(_("multi-pack-index missing required OID fanout chunk"));
6ab3b8b8 146 if (pair_chunk(cf, MIDX_CHUNKID_OIDLOOKUP, &m->chunk_oid_lookup) == CHUNK_NOT_FOUND)
0d5b3a5e 147 die(_("multi-pack-index missing required OID lookup chunk"));
6ab3b8b8 148 if (pair_chunk(cf, MIDX_CHUNKID_OBJECTOFFSETS, &m->chunk_object_offsets) == CHUNK_NOT_FOUND)
662148c4 149 die(_("multi-pack-index missing required object offsets chunk"));
32f3c541 150
6ab3b8b8
DS
151 pair_chunk(cf, MIDX_CHUNKID_LARGEOFFSETS, &m->chunk_large_offsets);
152
7f514b7a
TB
153 if (git_env_bool("GIT_TEST_MIDX_READ_RIDX", 1))
154 pair_chunk(cf, MIDX_CHUNKID_REVINDEX, &m->chunk_revindex);
155
d7cacf29
DS
156 m->num_objects = ntohl(m->chunk_oid_fanout[255]);
157
ca56dadb
RS
158 CALLOC_ARRAY(m->pack_names, m->num_packs);
159 CALLOC_ARRAY(m->packs, m->num_packs);
3227565c
DS
160
161 cur_pack_name = (const char *)m->chunk_pack_names;
162 for (i = 0; i < m->num_packs; i++) {
163 m->pack_names[i] = cur_pack_name;
164
165 cur_pack_name += strlen(cur_pack_name) + 1;
166
8e72a3c3
DS
167 if (i && strcmp(m->pack_names[i], m->pack_names[i - 1]) <= 0)
168 die(_("multi-pack-index pack names out of order: '%s' before '%s'"),
3227565c
DS
169 m->pack_names[i - 1],
170 m->pack_names[i]);
3227565c
DS
171 }
172
d829223a
JH
173 trace2_data_intmax("midx", the_repository, "load/num_packs", m->num_packs);
174 trace2_data_intmax("midx", the_repository, "load/num_objects", m->num_objects);
175
692305ec 176 free_chunkfile(cf);
4d80560c
DS
177 return m;
178
179cleanup_fail:
180 free(m);
60980aed 181 strbuf_release(&midx_name);
692305ec 182 free_chunkfile(cf);
4d80560c
DS
183 if (midx_map)
184 munmap(midx_map, midx_size);
185 if (0 <= fd)
186 close(fd);
187 return NULL;
188}
189
1dcd9f20 190void close_midx(struct multi_pack_index *m)
a40498a1
DS
191{
192 uint32_t i;
1dcd9f20
DS
193
194 if (!m)
195 return;
196
9bb6c2e5
TB
197 close_midx(m->next);
198
a40498a1 199 munmap((unsigned char *)m->data, m->data_len);
a40498a1
DS
200
201 for (i = 0; i < m->num_packs; i++) {
af96fe33
DS
202 if (m->packs[i])
203 m->packs[i]->multi_pack_index = 0;
a40498a1
DS
204 }
205 FREE_AND_NULL(m->packs);
206 FREE_AND_NULL(m->pack_names);
9bb6c2e5 207 free(m);
a40498a1
DS
208}
209
64404a24 210int prepare_midx_pack(struct repository *r, struct multi_pack_index *m, uint32_t pack_int_id)
3715a633
DS
211{
212 struct strbuf pack_name = STRBUF_INIT;
af96fe33 213 struct packed_git *p;
3715a633
DS
214
215 if (pack_int_id >= m->num_packs)
d355e46a 216 die(_("bad pack-int-id: %u (%u total packs)"),
cc6af73c 217 pack_int_id, m->num_packs);
3715a633
DS
218
219 if (m->packs[pack_int_id])
220 return 0;
221
222 strbuf_addf(&pack_name, "%s/pack/%s", m->object_dir,
223 m->pack_names[pack_int_id]);
224
af96fe33 225 p = add_packed_git(pack_name.buf, pack_name.len, m->local);
3715a633 226 strbuf_release(&pack_name);
af96fe33
DS
227
228 if (!p)
229 return 1;
230
231 p->multi_pack_index = 1;
232 m->packs[pack_int_id] = p;
233 install_packed_git(r, p);
234 list_add_tail(&p->mru, &r->objects->packed_git_mru);
235
236 return 0;
3715a633
DS
237}
238
239int bsearch_midx(const struct object_id *oid, struct multi_pack_index *m, uint32_t *result)
240{
241 return bsearch_hash(oid->hash, m->chunk_oid_fanout, m->chunk_oid_lookup,
aaa95dfa 242 the_hash_algo->rawsz, result);
3715a633
DS
243}
244
8aac67a1
DS
245struct object_id *nth_midxed_object_oid(struct object_id *oid,
246 struct multi_pack_index *m,
247 uint32_t n)
248{
249 if (n >= m->num_objects)
250 return NULL;
251
92e2cab9 252 oidread(oid, m->chunk_oid_lookup + m->hash_len * n);
8aac67a1
DS
253 return oid;
254}
255
62f2c1b5 256off_t nth_midxed_offset(struct multi_pack_index *m, uint32_t pos)
3715a633
DS
257{
258 const unsigned char *offset_data;
259 uint32_t offset32;
260
329fac3a 261 offset_data = m->chunk_object_offsets + (off_t)pos * MIDX_CHUNK_OFFSET_WIDTH;
3715a633
DS
262 offset32 = get_be32(offset_data + sizeof(uint32_t));
263
264 if (m->chunk_large_offsets && offset32 & MIDX_LARGE_OFFSET_NEEDED) {
d8ac9ee1 265 if (sizeof(off_t) < sizeof(uint64_t))
3715a633
DS
266 die(_("multi-pack-index stores a 64-bit offset, but off_t is too small"));
267
268 offset32 ^= MIDX_LARGE_OFFSET_NEEDED;
269 return get_be64(m->chunk_large_offsets + sizeof(uint64_t) * offset32);
270 }
271
272 return offset32;
273}
274
62f2c1b5 275uint32_t nth_midxed_pack_int_id(struct multi_pack_index *m, uint32_t pos)
3715a633 276{
329fac3a
DS
277 return get_be32(m->chunk_object_offsets +
278 (off_t)pos * MIDX_CHUNK_OFFSET_WIDTH);
3715a633
DS
279}
280
a8437f3c 281int fill_midx_entry(struct repository *r,
893b5635
RS
282 const struct object_id *oid,
283 struct pack_entry *e,
284 struct multi_pack_index *m)
3715a633 285{
893b5635 286 uint32_t pos;
3715a633
DS
287 uint32_t pack_int_id;
288 struct packed_git *p;
289
893b5635
RS
290 if (!bsearch_midx(oid, m, &pos))
291 return 0;
292
3715a633
DS
293 if (pos >= m->num_objects)
294 return 0;
295
296 pack_int_id = nth_midxed_pack_int_id(m, pos);
297
64404a24 298 if (prepare_midx_pack(r, m, pack_int_id))
506ec2fb 299 return 0;
3715a633
DS
300 p = m->packs[pack_int_id];
301
302 /*
303 * We are about to tell the caller where they can locate the
304 * requested object. We better make sure the packfile is
305 * still here and can be accessed before supplying that
306 * answer, as it may have been deleted since the MIDX was
307 * loaded!
308 */
309 if (!is_pack_valid(p))
310 return 0;
311
09ef6617
RS
312 if (oidset_size(&p->bad_objects) &&
313 oidset_contains(&p->bad_objects, oid))
314 return 0;
c39b02ae 315
3715a633
DS
316 e->offset = nth_midxed_offset(m, pos);
317 e->p = p;
318
319 return 1;
320}
321
013fd7ad
JK
322/* Match "foo.idx" against either "foo.pack" _or_ "foo.idx". */
323static int cmp_idx_or_pack_name(const char *idx_or_pack_name,
324 const char *idx_name)
325{
326 /* Skip past any initial matching prefix. */
327 while (*idx_name && *idx_name == *idx_or_pack_name) {
328 idx_name++;
329 idx_or_pack_name++;
330 }
331
332 /*
333 * If we didn't match completely, we may have matched "pack-1234." and
334 * be left with "idx" and "pack" respectively, which is also OK. We do
335 * not have to check for "idx" and "idx", because that would have been
336 * a complete match (and in that case these strcmps will be false, but
337 * we'll correctly return 0 from the final strcmp() below.
338 *
339 * Technically this matches "fooidx" and "foopack", but we'd never have
340 * such names in the first place.
341 */
342 if (!strcmp(idx_name, "idx") && !strcmp(idx_or_pack_name, "pack"))
343 return 0;
344
345 /*
346 * This not only checks for a complete match, but also orders based on
347 * the first non-identical character, which means our ordering will
348 * match a raw strcmp(). That makes it OK to use this to binary search
349 * a naively-sorted list.
350 */
351 return strcmp(idx_or_pack_name, idx_name);
352}
353
354int midx_contains_pack(struct multi_pack_index *m, const char *idx_or_pack_name)
a40498a1
DS
355{
356 uint32_t first = 0, last = m->num_packs;
357
358 while (first < last) {
359 uint32_t mid = first + (last - first) / 2;
360 const char *current;
361 int cmp;
362
363 current = m->pack_names[mid];
013fd7ad 364 cmp = cmp_idx_or_pack_name(idx_or_pack_name, current);
a40498a1
DS
365 if (!cmp)
366 return 1;
367 if (cmp > 0) {
368 first = mid + 1;
369 continue;
370 }
371 last = mid;
372 }
373
374 return 0;
375}
376
2cf489a3 377int prepare_multi_pack_index_one(struct repository *r, const char *object_dir, int local)
c4d25228 378{
29e2016b 379 struct multi_pack_index *m;
c4d25228 380 struct multi_pack_index *m_search;
c4d25228 381
18e449f8
DS
382 prepare_repo_settings(r);
383 if (!r->settings.core_multi_pack_index)
c4d25228
DS
384 return 0;
385
29e2016b 386 for (m_search = r->objects->multi_pack_index; m_search; m_search = m_search->next)
c4d25228
DS
387 if (!strcmp(object_dir, m_search->object_dir))
388 return 1;
389
29e2016b 390 m = load_multi_pack_index(object_dir, local);
c4d25228 391
29e2016b 392 if (m) {
59552fb3
TB
393 struct multi_pack_index *mp = r->objects->multi_pack_index;
394 if (mp) {
395 m->next = mp->next;
396 mp->next = m;
397 } else
398 r->objects->multi_pack_index = m;
c4d25228
DS
399 return 1;
400 }
401
402 return 0;
403}
404
fc59e748
DS
405static size_t write_midx_header(struct hashfile *f,
406 unsigned char num_chunks,
407 uint32_t num_packs)
408{
fc59e748 409 hashwrite_be32(f, MIDX_SIGNATURE);
014f1447 410 hashwrite_u8(f, MIDX_VERSION);
d9fef9d9 411 hashwrite_u8(f, oid_version(the_hash_algo));
014f1447
RS
412 hashwrite_u8(f, num_chunks);
413 hashwrite_u8(f, 0); /* unused */
fc59e748
DS
414 hashwrite_be32(f, num_packs);
415
416 return MIDX_HEADER_SIZE;
417}
418
d01bf2e6
DS
419struct pack_info {
420 uint32_t orig_pack_int_id;
421 char *pack_name;
422 struct packed_git *p;
19575c7c 423 unsigned expired : 1;
d01bf2e6
DS
424};
425
426static int pack_info_compare(const void *_a, const void *_b)
427{
428 struct pack_info *a = (struct pack_info *)_a;
429 struct pack_info *b = (struct pack_info *)_b;
430 return strcmp(a->pack_name, b->pack_name);
431}
432
9218c6a4
TB
433static int idx_or_pack_name_cmp(const void *_va, const void *_vb)
434{
435 const char *pack_name = _va;
436 const struct pack_info *compar = _vb;
437
438 return cmp_idx_or_pack_name(pack_name, compar->pack_name);
439}
440
577dc496 441struct write_midx_context {
d01bf2e6 442 struct pack_info *info;
396f2570 443 uint32_t nr;
d01bf2e6 444 uint32_t alloc;
a40498a1 445 struct multi_pack_index *m;
840cef0c
WB
446 struct progress *progress;
447 unsigned pack_paths_checked;
31bda9a2
DS
448
449 struct pack_midx_entry *entries;
450 uint32_t entries_nr;
7a3ada11
DS
451
452 uint32_t *pack_perm;
38ff7cab 453 uint32_t *pack_order;
7a3ada11 454 unsigned large_offsets_needed:1;
980f525c 455 uint32_t num_large_offsets;
9218c6a4
TB
456
457 int preferred_pack_idx;
56d863e9
TB
458
459 struct string_list *to_include;
396f2570
DS
460};
461
462static void add_pack_to_midx(const char *full_path, size_t full_path_len,
463 const char *file_name, void *data)
464{
577dc496 465 struct write_midx_context *ctx = data;
396f2570
DS
466
467 if (ends_with(file_name, ".idx")) {
577dc496 468 display_progress(ctx->progress, ++ctx->pack_paths_checked);
56d863e9
TB
469 /*
470 * Note that at most one of ctx->m and ctx->to_include are set,
471 * so we are testing midx_contains_pack() and
472 * string_list_has_string() independently (guarded by the
473 * appropriate NULL checks).
474 *
475 * We could support passing to_include while reusing an existing
476 * MIDX, but don't currently since the reuse process drags
477 * forward all packs from an existing MIDX (without checking
478 * whether or not they appear in the to_include list).
479 *
480 * If we added support for that, these next two conditional
481 * should be performed independently (likely checking
482 * to_include before the existing MIDX).
483 */
577dc496 484 if (ctx->m && midx_contains_pack(ctx->m, file_name))
a40498a1 485 return;
56d863e9
TB
486 else if (ctx->to_include &&
487 !string_list_has_string(ctx->to_include, file_name))
488 return;
a40498a1 489
577dc496 490 ALLOC_GROW(ctx->info, ctx->nr + 1, ctx->alloc);
396f2570 491
577dc496
DS
492 ctx->info[ctx->nr].p = add_packed_git(full_path,
493 full_path_len,
494 0);
fe1ed56f 495
577dc496 496 if (!ctx->info[ctx->nr].p) {
396f2570
DS
497 warning(_("failed to add packfile '%s'"),
498 full_path);
499 return;
500 }
501
577dc496 502 if (open_pack_index(ctx->info[ctx->nr].p)) {
fe1ed56f
DS
503 warning(_("failed to open pack-index '%s'"),
504 full_path);
577dc496
DS
505 close_pack(ctx->info[ctx->nr].p);
506 FREE_AND_NULL(ctx->info[ctx->nr].p);
fe1ed56f
DS
507 return;
508 }
509
577dc496
DS
510 ctx->info[ctx->nr].pack_name = xstrdup(file_name);
511 ctx->info[ctx->nr].orig_pack_int_id = ctx->nr;
512 ctx->info[ctx->nr].expired = 0;
513 ctx->nr++;
396f2570
DS
514 }
515}
516
fe1ed56f
DS
517struct pack_midx_entry {
518 struct object_id oid;
519 uint32_t pack_int_id;
520 time_t pack_mtime;
521 uint64_t offset;
9218c6a4 522 unsigned preferred : 1;
fe1ed56f
DS
523};
524
525static int midx_oid_compare(const void *_a, const void *_b)
526{
527 const struct pack_midx_entry *a = (const struct pack_midx_entry *)_a;
528 const struct pack_midx_entry *b = (const struct pack_midx_entry *)_b;
529 int cmp = oidcmp(&a->oid, &b->oid);
530
531 if (cmp)
532 return cmp;
533
9218c6a4
TB
534 /* Sort objects in a preferred pack first when multiple copies exist. */
535 if (a->preferred > b->preferred)
536 return -1;
537 if (a->preferred < b->preferred)
538 return 1;
539
fe1ed56f
DS
540 if (a->pack_mtime > b->pack_mtime)
541 return -1;
542 else if (a->pack_mtime < b->pack_mtime)
543 return 1;
544
545 return a->pack_int_id - b->pack_int_id;
546}
547
a40498a1 548static int nth_midxed_pack_midx_entry(struct multi_pack_index *m,
a40498a1
DS
549 struct pack_midx_entry *e,
550 uint32_t pos)
551{
552 if (pos >= m->num_objects)
553 return 1;
554
555 nth_midxed_object_oid(&e->oid, m, pos);
d01bf2e6 556 e->pack_int_id = nth_midxed_pack_int_id(m, pos);
a40498a1
DS
557 e->offset = nth_midxed_offset(m, pos);
558
559 /* consider objects in midx to be from "old" packs */
560 e->pack_mtime = 0;
561 return 0;
562}
563
fe1ed56f
DS
564static void fill_pack_entry(uint32_t pack_int_id,
565 struct packed_git *p,
566 uint32_t cur_object,
9218c6a4
TB
567 struct pack_midx_entry *entry,
568 int preferred)
fe1ed56f 569{
0763671b 570 if (nth_packed_object_id(&entry->oid, p, cur_object) < 0)
fe1ed56f
DS
571 die(_("failed to locate object %d in packfile"), cur_object);
572
573 entry->pack_int_id = pack_int_id;
574 entry->pack_mtime = p->mtime;
575
576 entry->offset = nth_packed_object_offset(p, cur_object);
9218c6a4 577 entry->preferred = !!preferred;
fe1ed56f
DS
578}
579
989d9cbd
TB
580struct midx_fanout {
581 struct pack_midx_entry *entries;
582 uint32_t nr;
583 uint32_t alloc;
584};
585
586static void midx_fanout_grow(struct midx_fanout *fanout, uint32_t nr)
587{
588 ALLOC_GROW(fanout->entries, nr, fanout->alloc);
589}
590
591static void midx_fanout_sort(struct midx_fanout *fanout)
592{
593 QSORT(fanout->entries, fanout->nr, midx_oid_compare);
594}
595
852c5301
TB
596static void midx_fanout_add_midx_fanout(struct midx_fanout *fanout,
597 struct multi_pack_index *m,
99e4d084
TB
598 uint32_t cur_fanout,
599 int preferred_pack)
852c5301
TB
600{
601 uint32_t start = 0, end;
602 uint32_t cur_object;
603
604 if (cur_fanout)
605 start = ntohl(m->chunk_oid_fanout[cur_fanout - 1]);
606 end = ntohl(m->chunk_oid_fanout[cur_fanout]);
607
608 for (cur_object = start; cur_object < end; cur_object++) {
99e4d084
TB
609 if ((preferred_pack > -1) &&
610 (preferred_pack == nth_midxed_pack_int_id(m, cur_object))) {
611 /*
612 * Objects from preferred packs are added
613 * separately.
614 */
615 continue;
616 }
617
852c5301
TB
618 midx_fanout_grow(fanout, fanout->nr + 1);
619 nth_midxed_pack_midx_entry(m,
620 &fanout->entries[fanout->nr],
621 cur_object);
cdf517be 622 fanout->entries[fanout->nr].preferred = 0;
852c5301
TB
623 fanout->nr++;
624 }
625}
626
1d6f4c64
TB
627static void midx_fanout_add_pack_fanout(struct midx_fanout *fanout,
628 struct pack_info *info,
629 uint32_t cur_pack,
630 int preferred,
631 uint32_t cur_fanout)
632{
633 struct packed_git *pack = info[cur_pack].p;
634 uint32_t start = 0, end;
635 uint32_t cur_object;
636
637 if (cur_fanout)
638 start = get_pack_fanout(pack, cur_fanout - 1);
639 end = get_pack_fanout(pack, cur_fanout);
640
641 for (cur_object = start; cur_object < end; cur_object++) {
642 midx_fanout_grow(fanout, fanout->nr + 1);
643 fill_pack_entry(cur_pack,
644 info[cur_pack].p,
645 cur_object,
646 &fanout->entries[fanout->nr],
647 preferred);
648 fanout->nr++;
649 }
650}
651
fe1ed56f
DS
652/*
653 * It is possible to artificially get into a state where there are many
654 * duplicate copies of objects. That can create high memory pressure if
655 * we are to create a list of all objects before de-duplication. To reduce
656 * this memory pressure without a significant performance drop, automatically
657 * group objects by the first byte of their object id. Use the IDX fanout
658 * tables to group the data, copy to a local array, then sort.
659 *
660 * Copy only the de-duplicated entries (selected by most-recent modified time
661 * of a packfile containing the object).
662 */
a40498a1 663static struct pack_midx_entry *get_sorted_entries(struct multi_pack_index *m,
d01bf2e6 664 struct pack_info *info,
fe1ed56f 665 uint32_t nr_packs,
9218c6a4
TB
666 uint32_t *nr_objects,
667 int preferred_pack)
fe1ed56f
DS
668{
669 uint32_t cur_fanout, cur_pack, cur_object;
989d9cbd
TB
670 uint32_t alloc_objects, total_objects = 0;
671 struct midx_fanout fanout = { 0 };
fe1ed56f 672 struct pack_midx_entry *deduplicated_entries = NULL;
a40498a1 673 uint32_t start_pack = m ? m->num_packs : 0;
fe1ed56f 674
a40498a1 675 for (cur_pack = start_pack; cur_pack < nr_packs; cur_pack++)
d01bf2e6 676 total_objects += info[cur_pack].p->num_objects;
fe1ed56f
DS
677
678 /*
679 * As we de-duplicate by fanout value, we expect the fanout
680 * slices to be evenly distributed, with some noise. Hence,
681 * allocate slightly more than one 256th.
682 */
989d9cbd 683 alloc_objects = fanout.alloc = total_objects > 3200 ? total_objects / 200 : 16;
fe1ed56f 684
989d9cbd 685 ALLOC_ARRAY(fanout.entries, fanout.alloc);
fe1ed56f
DS
686 ALLOC_ARRAY(deduplicated_entries, alloc_objects);
687 *nr_objects = 0;
688
689 for (cur_fanout = 0; cur_fanout < 256; cur_fanout++) {
989d9cbd 690 fanout.nr = 0;
fe1ed56f 691
852c5301 692 if (m)
99e4d084
TB
693 midx_fanout_add_midx_fanout(&fanout, m, cur_fanout,
694 preferred_pack);
a40498a1
DS
695
696 for (cur_pack = start_pack; cur_pack < nr_packs; cur_pack++) {
9218c6a4 697 int preferred = cur_pack == preferred_pack;
1d6f4c64
TB
698 midx_fanout_add_pack_fanout(&fanout,
699 info, cur_pack,
700 preferred, cur_fanout);
fe1ed56f
DS
701 }
702
cdf517be
TB
703 if (-1 < preferred_pack && preferred_pack < start_pack)
704 midx_fanout_add_pack_fanout(&fanout, info,
705 preferred_pack, 1,
706 cur_fanout);
707
989d9cbd 708 midx_fanout_sort(&fanout);
fe1ed56f
DS
709
710 /*
711 * The batch is now sorted by OID and then mtime (descending).
712 * Take only the first duplicate.
713 */
989d9cbd
TB
714 for (cur_object = 0; cur_object < fanout.nr; cur_object++) {
715 if (cur_object && oideq(&fanout.entries[cur_object - 1].oid,
716 &fanout.entries[cur_object].oid))
fe1ed56f
DS
717 continue;
718
719 ALLOC_GROW(deduplicated_entries, *nr_objects + 1, alloc_objects);
720 memcpy(&deduplicated_entries[*nr_objects],
989d9cbd 721 &fanout.entries[cur_object],
fe1ed56f
DS
722 sizeof(struct pack_midx_entry));
723 (*nr_objects)++;
724 }
725 }
726
989d9cbd 727 free(fanout.entries);
fe1ed56f
DS
728 return deduplicated_entries;
729}
730
0ccd713c 731static int write_midx_pack_names(struct hashfile *f, void *data)
32f3c541 732{
b4d94142 733 struct write_midx_context *ctx = data;
32f3c541
DS
734 uint32_t i;
735 unsigned char padding[MIDX_CHUNK_ALIGNMENT];
736 size_t written = 0;
737
b4d94142 738 for (i = 0; i < ctx->nr; i++) {
19575c7c
DS
739 size_t writelen;
740
b4d94142 741 if (ctx->info[i].expired)
19575c7c 742 continue;
32f3c541 743
b4d94142 744 if (i && strcmp(ctx->info[i].pack_name, ctx->info[i - 1].pack_name) <= 0)
32f3c541 745 BUG("incorrect pack-file order: %s before %s",
b4d94142
DS
746 ctx->info[i - 1].pack_name,
747 ctx->info[i].pack_name);
32f3c541 748
b4d94142
DS
749 writelen = strlen(ctx->info[i].pack_name) + 1;
750 hashwrite(f, ctx->info[i].pack_name, writelen);
32f3c541
DS
751 written += writelen;
752 }
753
754 /* add padding to be aligned */
755 i = MIDX_CHUNK_ALIGNMENT - (written % MIDX_CHUNK_ALIGNMENT);
756 if (i < MIDX_CHUNK_ALIGNMENT) {
757 memset(padding, 0, sizeof(padding));
758 hashwrite(f, padding, i);
32f3c541
DS
759 }
760
0ccd713c 761 return 0;
32f3c541
DS
762}
763
0ccd713c
DS
764static int write_midx_oid_fanout(struct hashfile *f,
765 void *data)
d7cacf29 766{
31bda9a2
DS
767 struct write_midx_context *ctx = data;
768 struct pack_midx_entry *list = ctx->entries;
769 struct pack_midx_entry *last = ctx->entries + ctx->entries_nr;
d7cacf29
DS
770 uint32_t count = 0;
771 uint32_t i;
772
773 /*
774 * Write the first-level table (the list is sorted,
775 * but we use a 256-entry lookup to be able to avoid
776 * having to do eight extra binary search iterations).
777 */
778 for (i = 0; i < 256; i++) {
779 struct pack_midx_entry *next = list;
780
781 while (next < last && next->oid.hash[0] == i) {
782 count++;
783 next++;
784 }
785
786 hashwrite_be32(f, count);
787 list = next;
788 }
789
0ccd713c 790 return 0;
d7cacf29
DS
791}
792
0ccd713c
DS
793static int write_midx_oid_lookup(struct hashfile *f,
794 void *data)
0d5b3a5e 795{
31bda9a2
DS
796 struct write_midx_context *ctx = data;
797 unsigned char hash_len = the_hash_algo->rawsz;
798 struct pack_midx_entry *list = ctx->entries;
0d5b3a5e 799 uint32_t i;
0d5b3a5e 800
31bda9a2 801 for (i = 0; i < ctx->entries_nr; i++) {
0d5b3a5e
DS
802 struct pack_midx_entry *obj = list++;
803
31bda9a2 804 if (i < ctx->entries_nr - 1) {
0d5b3a5e
DS
805 struct pack_midx_entry *next = list;
806 if (oidcmp(&obj->oid, &next->oid) >= 0)
807 BUG("OIDs not in order: %s >= %s",
808 oid_to_hex(&obj->oid),
809 oid_to_hex(&next->oid));
810 }
811
812 hashwrite(f, obj->oid.hash, (int)hash_len);
0d5b3a5e
DS
813 }
814
0ccd713c 815 return 0;
0d5b3a5e
DS
816}
817
0ccd713c
DS
818static int write_midx_object_offsets(struct hashfile *f,
819 void *data)
662148c4 820{
7a3ada11
DS
821 struct write_midx_context *ctx = data;
822 struct pack_midx_entry *list = ctx->entries;
662148c4 823 uint32_t i, nr_large_offset = 0;
662148c4 824
7a3ada11 825 for (i = 0; i < ctx->entries_nr; i++) {
662148c4
DS
826 struct pack_midx_entry *obj = list++;
827
7a3ada11 828 if (ctx->pack_perm[obj->pack_int_id] == PACK_EXPIRED)
19575c7c
DS
829 BUG("object %s is in an expired pack with int-id %d",
830 oid_to_hex(&obj->oid),
831 obj->pack_int_id);
832
7a3ada11 833 hashwrite_be32(f, ctx->pack_perm[obj->pack_int_id]);
662148c4 834
7a3ada11 835 if (ctx->large_offsets_needed && obj->offset >> 31)
662148c4 836 hashwrite_be32(f, MIDX_LARGE_OFFSET_NEEDED | nr_large_offset++);
7a3ada11 837 else if (!ctx->large_offsets_needed && obj->offset >> 32)
662148c4
DS
838 BUG("object %s requires a large offset (%"PRIx64") but the MIDX is not writing large offsets!",
839 oid_to_hex(&obj->oid),
840 obj->offset);
841 else
842 hashwrite_be32(f, (uint32_t)obj->offset);
662148c4
DS
843 }
844
0ccd713c 845 return 0;
662148c4
DS
846}
847
0ccd713c
DS
848static int write_midx_large_offsets(struct hashfile *f,
849 void *data)
662148c4 850{
980f525c
DS
851 struct write_midx_context *ctx = data;
852 struct pack_midx_entry *list = ctx->entries;
853 struct pack_midx_entry *end = ctx->entries + ctx->entries_nr;
980f525c 854 uint32_t nr_large_offset = ctx->num_large_offsets;
662148c4
DS
855
856 while (nr_large_offset) {
61b0fcbb
JK
857 struct pack_midx_entry *obj;
858 uint64_t offset;
859
860 if (list >= end)
861 BUG("too many large-offset objects");
862
863 obj = list++;
864 offset = obj->offset;
662148c4
DS
865
866 if (!(offset >> 31))
867 continue;
868
0ccd713c 869 hashwrite_be64(f, offset);
662148c4
DS
870
871 nr_large_offset--;
872 }
873
0ccd713c 874 return 0;
662148c4
DS
875}
876
95e8383b
TB
877static int write_midx_revindex(struct hashfile *f,
878 void *data)
879{
880 struct write_midx_context *ctx = data;
881 uint32_t i;
882
883 for (i = 0; i < ctx->entries_nr; i++)
884 hashwrite_be32(f, ctx->pack_order[i]);
885
886 return 0;
887}
888
30077524
JK
889struct midx_pack_order_data {
890 uint32_t nr;
891 uint32_t pack;
892 off_t offset;
893};
38ff7cab 894
30077524
JK
895static int midx_pack_order_cmp(const void *va, const void *vb)
896{
897 const struct midx_pack_order_data *a = va, *b = vb;
898 if (a->pack < b->pack)
38ff7cab 899 return -1;
30077524 900 else if (a->pack > b->pack)
38ff7cab 901 return 1;
30077524 902 else if (a->offset < b->offset)
38ff7cab 903 return -1;
30077524 904 else if (a->offset > b->offset)
38ff7cab 905 return 1;
30077524
JK
906 else
907 return 0;
38ff7cab
TB
908}
909
910static uint32_t *midx_pack_order(struct write_midx_context *ctx)
911{
30077524 912 struct midx_pack_order_data *data;
38ff7cab
TB
913 uint32_t *pack_order;
914 uint32_t i;
915
30077524
JK
916 ALLOC_ARRAY(data, ctx->entries_nr);
917 for (i = 0; i < ctx->entries_nr; i++) {
918 struct pack_midx_entry *e = &ctx->entries[i];
919 data[i].nr = i;
920 data[i].pack = ctx->pack_perm[e->pack_int_id];
921 if (!e->preferred)
922 data[i].pack |= (1U << 31);
923 data[i].offset = e->offset;
924 }
925
926 QSORT(data, ctx->entries_nr, midx_pack_order_cmp);
927
38ff7cab
TB
928 ALLOC_ARRAY(pack_order, ctx->entries_nr);
929 for (i = 0; i < ctx->entries_nr; i++)
30077524
JK
930 pack_order[i] = data[i].nr;
931 free(data);
38ff7cab
TB
932
933 return pack_order;
934}
935
936static void write_midx_reverse_index(char *midx_name, unsigned char *midx_hash,
937 struct write_midx_context *ctx)
938{
939 struct strbuf buf = STRBUF_INIT;
940 const char *tmp_file;
941
942 strbuf_addf(&buf, "%s-%s.rev", midx_name, hash_to_hex(midx_hash));
943
944 tmp_file = write_rev_file_order(NULL, ctx->pack_order, ctx->entries_nr,
945 midx_hash, WRITE_REV);
946
947 if (finalize_object_file(tmp_file, buf.buf))
948 die(_("cannot store reverse index file"));
949
950 strbuf_release(&buf);
951}
952
426c00e4 953static void clear_midx_files_ext(const char *object_dir, const char *ext,
38ff7cab
TB
954 unsigned char *keep_hash);
955
ec1e28ef
TB
956static int midx_checksum_valid(struct multi_pack_index *m)
957{
958 return hashfile_checksum_valid(m->data, m->data_len);
959}
960
c528e179
TB
961static void prepare_midx_packing_data(struct packing_data *pdata,
962 struct write_midx_context *ctx)
963{
964 uint32_t i;
965
966 memset(pdata, 0, sizeof(struct packing_data));
967 prepare_packing_data(the_repository, pdata);
968
969 for (i = 0; i < ctx->entries_nr; i++) {
970 struct pack_midx_entry *from = &ctx->entries[ctx->pack_order[i]];
971 struct object_entry *to = packlist_alloc(pdata, &from->oid);
972
973 oe_set_in_pack(pdata, to,
974 ctx->info[ctx->pack_perm[from->pack_int_id]].p);
975 }
976}
977
978static int add_ref_to_pending(const char *refname,
979 const struct object_id *oid,
980 int flag, void *cb_data)
981{
982 struct rev_info *revs = (struct rev_info*)cb_data;
1dc4f1ef 983 struct object_id peeled;
c528e179
TB
984 struct object *object;
985
986 if ((flag & REF_ISSYMREF) && (flag & REF_ISBROKEN)) {
987 warning("symbolic ref is dangling: %s", refname);
988 return 0;
989 }
990
1dc4f1ef
TB
991 if (!peel_iterated_oid(oid, &peeled))
992 oid = &peeled;
993
c528e179
TB
994 object = parse_object_or_die(oid, refname);
995 if (object->type != OBJ_COMMIT)
996 return 0;
997
998 add_pending_object(revs, object, "");
999 if (bitmap_is_preferred_refname(revs->repo, refname))
1000 object->flags |= NEEDS_BITMAP;
1001 return 0;
1002}
1003
1004struct bitmap_commit_cb {
1005 struct commit **commits;
1006 size_t commits_nr, commits_alloc;
1007
1008 struct write_midx_context *ctx;
1009};
1010
1011static const struct object_id *bitmap_oid_access(size_t index,
1012 const void *_entries)
1013{
1014 const struct pack_midx_entry *entries = _entries;
1015 return &entries[index].oid;
1016}
1017
1018static void bitmap_show_commit(struct commit *commit, void *_data)
1019{
1020 struct bitmap_commit_cb *data = _data;
1021 int pos = oid_pos(&commit->object.oid, data->ctx->entries,
1022 data->ctx->entries_nr,
1023 bitmap_oid_access);
1024 if (pos < 0)
1025 return;
1026
1027 ALLOC_GROW(data->commits, data->commits_nr + 1, data->commits_alloc);
1028 data->commits[data->commits_nr++] = commit;
1029}
1030
08944d1c
TB
1031static int read_refs_snapshot(const char *refs_snapshot,
1032 struct rev_info *revs)
1033{
1034 struct strbuf buf = STRBUF_INIT;
1035 struct object_id oid;
1036 FILE *f = xfopen(refs_snapshot, "r");
1037
1038 while (strbuf_getline(&buf, f) != EOF) {
1039 struct object *object;
1040 int preferred = 0;
1041 char *hex = buf.buf;
1042 const char *end = NULL;
1043
1044 if (buf.len && *buf.buf == '+') {
1045 preferred = 1;
1046 hex = &buf.buf[1];
1047 }
1048
1049 if (parse_oid_hex(hex, &oid, &end) < 0)
1050 die(_("could not parse line: %s"), buf.buf);
1051 if (*end)
1052 die(_("malformed line: %s"), buf.buf);
1053
1054 object = parse_object_or_die(&oid, NULL);
1055 if (preferred)
1056 object->flags |= NEEDS_BITMAP;
1057
1058 add_pending_object(revs, object, "");
1059 }
1060
1061 fclose(f);
1062 strbuf_release(&buf);
1063 return 0;
1064}
1065
c528e179 1066static struct commit **find_commits_for_midx_bitmap(uint32_t *indexed_commits_nr_p,
08944d1c 1067 const char *refs_snapshot,
c528e179
TB
1068 struct write_midx_context *ctx)
1069{
1070 struct rev_info revs;
1071 struct bitmap_commit_cb cb = {0};
1072
1073 cb.ctx = ctx;
1074
1075 repo_init_revisions(the_repository, &revs, NULL);
08944d1c
TB
1076 if (refs_snapshot) {
1077 read_refs_snapshot(refs_snapshot, &revs);
1078 } else {
1079 setup_revisions(0, NULL, &revs, NULL);
1080 for_each_ref(add_ref_to_pending, &revs);
1081 }
c528e179
TB
1082
1083 /*
1084 * Skipping promisor objects here is intentional, since it only excludes
1085 * them from the list of reachable commits that we want to select from
1086 * when computing the selection of MIDX'd commits to receive bitmaps.
1087 *
1088 * Reachability bitmaps do require that their objects be closed under
1089 * reachability, but fetching any objects missing from promisors at this
1090 * point is too late. But, if one of those objects can be reached from
1091 * an another object that is included in the bitmap, then we will
1092 * complain later that we don't have reachability closure (and fail
1093 * appropriately).
1094 */
1095 fetch_if_missing = 0;
1096 revs.exclude_promisor_objects = 1;
1097
1098 if (prepare_revision_walk(&revs))
1099 die(_("revision walk setup failed"));
1100
1101 traverse_commit_list(&revs, bitmap_show_commit, NULL, &cb);
1102 if (indexed_commits_nr_p)
1103 *indexed_commits_nr_p = cb.commits_nr;
1104
2108fe4a 1105 release_revisions(&revs);
c528e179
TB
1106 return cb.commits;
1107}
1108
90b2bb71
DS
1109static int write_midx_bitmap(const char *midx_name,
1110 const unsigned char *midx_hash,
1111 struct packing_data *pdata,
1112 struct commit **commits,
1113 uint32_t commits_nr,
1114 uint32_t *pack_order,
c528e179
TB
1115 unsigned flags)
1116{
90b2bb71 1117 int ret, i;
caca3c9f 1118 uint16_t options = 0;
90b2bb71
DS
1119 struct pack_idx_entry **index;
1120 char *bitmap_name = xstrfmt("%s-%s.bitmap", midx_name,
1121 hash_to_hex(midx_hash));
eb57277b 1122
caca3c9f
TB
1123 if (flags & MIDX_WRITE_BITMAP_HASH_CACHE)
1124 options |= BITMAP_OPT_HASH_CACHE;
1125
76f14b77
AC
1126 if (flags & MIDX_WRITE_BITMAP_LOOKUP_TABLE)
1127 options |= BITMAP_OPT_LOOKUP_TABLE;
1128
c528e179
TB
1129 /*
1130 * Build the MIDX-order index based on pdata.objects (which is already
1131 * in MIDX order; c.f., 'midx_pack_order_cmp()' for the definition of
1132 * this order).
1133 */
90b2bb71
DS
1134 ALLOC_ARRAY(index, pdata->nr_objects);
1135 for (i = 0; i < pdata->nr_objects; i++)
1136 index[i] = &pdata->objects[i].idx;
c528e179
TB
1137
1138 bitmap_writer_show_progress(flags & MIDX_PROGRESS);
90b2bb71 1139 bitmap_writer_build_type_index(pdata, index, pdata->nr_objects);
c528e179
TB
1140
1141 /*
1142 * bitmap_writer_finish expects objects in lex order, but pack_order
1143 * gives us exactly that. use it directly instead of re-sorting the
1144 * array.
1145 *
1146 * This changes the order of objects in 'index' between
1147 * bitmap_writer_build_type_index and bitmap_writer_finish.
1148 *
1149 * The same re-ordering takes place in the single-pack bitmap code via
1150 * write_idx_file(), which is called by finish_tmp_packfile(), which
1151 * happens between bitmap_writer_build_type_index() and
1152 * bitmap_writer_finish().
1153 */
90b2bb71
DS
1154 for (i = 0; i < pdata->nr_objects; i++)
1155 index[pack_order[i]] = &pdata->objects[i].idx;
c528e179
TB
1156
1157 bitmap_writer_select_commits(commits, commits_nr, -1);
90b2bb71 1158 ret = bitmap_writer_build(pdata);
c528e179
TB
1159 if (ret < 0)
1160 goto cleanup;
1161
1162 bitmap_writer_set_checksum(midx_hash);
90b2bb71 1163 bitmap_writer_finish(index, pdata->nr_objects, bitmap_name, options);
c528e179
TB
1164
1165cleanup:
1166 free(index);
1167 free(bitmap_name);
1168 return ret;
1169}
1170
504131ac
TB
1171static struct multi_pack_index *lookup_multi_pack_index(struct repository *r,
1172 const char *object_dir)
1173{
eafcc6de 1174 struct multi_pack_index *result = NULL;
504131ac 1175 struct multi_pack_index *cur;
eafcc6de
DS
1176 char *obj_dir_real = real_pathdup(object_dir, 1);
1177 struct strbuf cur_path_real = STRBUF_INIT;
504131ac
TB
1178
1179 /* Ensure the given object_dir is local, or a known alternate. */
eafcc6de 1180 find_odb(r, obj_dir_real);
504131ac
TB
1181
1182 for (cur = get_multi_pack_index(r); cur; cur = cur->next) {
eafcc6de
DS
1183 strbuf_realpath(&cur_path_real, cur->object_dir, 1);
1184 if (!strcmp(obj_dir_real, cur_path_real.buf)) {
1185 result = cur;
1186 goto cleanup;
1187 }
504131ac
TB
1188 }
1189
eafcc6de
DS
1190cleanup:
1191 free(obj_dir_real);
1192 strbuf_release(&cur_path_real);
1193 return result;
504131ac
TB
1194}
1195
f57a7396 1196static int write_midx_internal(const char *object_dir,
56d863e9 1197 struct string_list *packs_to_include,
9218c6a4
TB
1198 struct string_list *packs_to_drop,
1199 const char *preferred_pack_name,
08944d1c 1200 const char *refs_snapshot,
9218c6a4 1201 unsigned flags)
a3407730 1202{
60980aed 1203 struct strbuf midx_name = STRBUF_INIT;
9f191611 1204 unsigned char midx_hash[GIT_MAX_RAWSZ];
396f2570 1205 uint32_t i;
fc59e748
DS
1206 struct hashfile *f = NULL;
1207 struct lock_file lk;
577dc496 1208 struct write_midx_context ctx = { 0 };
dba6175c 1209 int pack_name_concat_len = 0;
19575c7c
DS
1210 int dropped_packs = 0;
1211 int result = 0;
63a8f0e9 1212 struct chunkfile *cf;
fc59e748 1213
60980aed
TB
1214 get_midx_filename(&midx_name, object_dir);
1215 if (safe_create_leading_directories(midx_name.buf))
fc59e748 1216 die_errno(_("unable to create leading directories of %s"),
60980aed 1217 midx_name.buf);
fc59e748 1218
56d863e9
TB
1219 if (!packs_to_include) {
1220 /*
1221 * Only reference an existing MIDX when not filtering which
1222 * packs to include, since all packs and objects are copied
1223 * blindly from an existing MIDX if one is present.
1224 */
504131ac 1225 ctx.m = lookup_multi_pack_index(the_repository, object_dir);
f57a7396 1226 }
577dc496 1227
ec1e28ef
TB
1228 if (ctx.m && !midx_checksum_valid(ctx.m)) {
1229 warning(_("ignoring existing multi-pack-index; checksum mismatch"));
1230 ctx.m = NULL;
1231 }
1232
577dc496
DS
1233 ctx.nr = 0;
1234 ctx.alloc = ctx.m ? ctx.m->num_packs : 16;
1235 ctx.info = NULL;
1236 ALLOC_ARRAY(ctx.info, ctx.alloc);
1237
1238 if (ctx.m) {
1239 for (i = 0; i < ctx.m->num_packs; i++) {
1240 ALLOC_GROW(ctx.info, ctx.nr + 1, ctx.alloc);
1241
1242 ctx.info[ctx.nr].orig_pack_int_id = i;
1243 ctx.info[ctx.nr].pack_name = xstrdup(ctx.m->pack_names[i]);
c528e179 1244 ctx.info[ctx.nr].p = ctx.m->packs[i];
577dc496 1245 ctx.info[ctx.nr].expired = 0;
5d3cd09a
TB
1246
1247 if (flags & MIDX_WRITE_REV_INDEX) {
1248 /*
1249 * If generating a reverse index, need to have
1250 * packed_git's loaded to compare their
1251 * mtimes and object count.
1252 */
1253 if (prepare_midx_pack(the_repository, ctx.m, i)) {
1254 error(_("could not load pack"));
1255 result = 1;
1256 goto cleanup;
1257 }
1258
1259 if (open_pack_index(ctx.m->packs[i]))
1260 die(_("could not open index for %s"),
1261 ctx.m->packs[i]->pack_name);
1262 ctx.info[ctx.nr].p = ctx.m->packs[i];
1263 }
1264
577dc496 1265 ctx.nr++;
a40498a1
DS
1266 }
1267 }
1268
577dc496 1269 ctx.pack_paths_checked = 0;
840cef0c 1270 if (flags & MIDX_PROGRESS)
577dc496 1271 ctx.progress = start_delayed_progress(_("Adding packfiles to multi-pack-index"), 0);
840cef0c 1272 else
577dc496 1273 ctx.progress = NULL;
840cef0c 1274
56d863e9
TB
1275 ctx.to_include = packs_to_include;
1276
577dc496
DS
1277 for_each_file_in_pack_dir(object_dir, add_pack_to_midx, &ctx);
1278 stop_progress(&ctx.progress);
396f2570 1279
56d863e9
TB
1280 if ((ctx.m && ctx.nr == ctx.m->num_packs) &&
1281 !(packs_to_include || packs_to_drop)) {
c528e179
TB
1282 struct bitmap_index *bitmap_git;
1283 int bitmap_exists;
1284 int want_bitmap = flags & MIDX_WRITE_BITMAP;
1285
bfbb60d3 1286 bitmap_git = prepare_midx_bitmap_git(ctx.m);
c528e179
TB
1287 bitmap_exists = bitmap_git && bitmap_is_midx(bitmap_git);
1288 free_bitmap_index(bitmap_git);
1289
1290 if (bitmap_exists || !want_bitmap) {
1291 /*
1292 * The correct MIDX already exists, and so does a
1293 * corresponding bitmap (or one wasn't requested).
1294 */
1295 if (!want_bitmap)
1296 clear_midx_files_ext(object_dir, ".bitmap",
1297 NULL);
1298 goto cleanup;
1299 }
1300 }
a40498a1 1301
9218c6a4 1302 if (preferred_pack_name) {
177c0d6e 1303 int found = 0;
9218c6a4
TB
1304 for (i = 0; i < ctx.nr; i++) {
1305 if (!cmp_idx_or_pack_name(preferred_pack_name,
1306 ctx.info[i].pack_name)) {
1307 ctx.preferred_pack_idx = i;
177c0d6e 1308 found = 1;
9218c6a4
TB
1309 break;
1310 }
1311 }
177c0d6e
TB
1312
1313 if (!found)
1314 warning(_("unknown preferred pack: '%s'"),
1315 preferred_pack_name);
c528e179
TB
1316 } else if (ctx.nr &&
1317 (flags & (MIDX_WRITE_REV_INDEX | MIDX_WRITE_BITMAP))) {
177c0d6e
TB
1318 struct packed_git *oldest = ctx.info[ctx.preferred_pack_idx].p;
1319 ctx.preferred_pack_idx = 0;
1320
1321 if (packs_to_drop && packs_to_drop->nr)
1322 BUG("cannot write a MIDX bitmap during expiration");
1323
1324 /*
1325 * set a preferred pack when writing a bitmap to ensure that
1326 * the pack from which the first object is selected in pseudo
1327 * pack-order has all of its objects selected from that pack
1328 * (and not another pack containing a duplicate)
1329 */
1330 for (i = 1; i < ctx.nr; i++) {
1331 struct packed_git *p = ctx.info[i].p;
1332
1333 if (!oldest->num_objects || p->mtime < oldest->mtime) {
1334 oldest = p;
1335 ctx.preferred_pack_idx = i;
1336 }
1337 }
1338
1339 if (!oldest->num_objects) {
1340 /*
1341 * If all packs are empty; unset the preferred index.
1342 * This is acceptable since there will be no duplicate
1343 * objects to resolve, so the preferred value doesn't
1344 * matter.
1345 */
1346 ctx.preferred_pack_idx = -1;
1347 }
1348 } else {
1349 /*
1350 * otherwise don't mark any pack as preferred to avoid
1351 * interfering with expiration logic below
1352 */
1353 ctx.preferred_pack_idx = -1;
9218c6a4
TB
1354 }
1355
5d3cd09a
TB
1356 if (ctx.preferred_pack_idx > -1) {
1357 struct packed_git *preferred = ctx.info[ctx.preferred_pack_idx].p;
1358 if (!preferred->num_objects) {
1359 error(_("cannot select preferred pack %s with no objects"),
1360 preferred->pack_name);
1361 result = 1;
1362 goto cleanup;
1363 }
1364 }
1365
9218c6a4
TB
1366 ctx.entries = get_sorted_entries(ctx.m, ctx.info, ctx.nr, &ctx.entries_nr,
1367 ctx.preferred_pack_idx);
a40498a1 1368
7a3ada11 1369 ctx.large_offsets_needed = 0;
31bda9a2
DS
1370 for (i = 0; i < ctx.entries_nr; i++) {
1371 if (ctx.entries[i].offset > 0x7fffffff)
980f525c 1372 ctx.num_large_offsets++;
31bda9a2 1373 if (ctx.entries[i].offset > 0xffffffff)
7a3ada11 1374 ctx.large_offsets_needed = 1;
662148c4 1375 }
fe1ed56f 1376
577dc496 1377 QSORT(ctx.info, ctx.nr, pack_info_compare);
d01bf2e6 1378
19575c7c
DS
1379 if (packs_to_drop && packs_to_drop->nr) {
1380 int drop_index = 0;
1381 int missing_drops = 0;
1382
577dc496
DS
1383 for (i = 0; i < ctx.nr && drop_index < packs_to_drop->nr; i++) {
1384 int cmp = strcmp(ctx.info[i].pack_name,
19575c7c
DS
1385 packs_to_drop->items[drop_index].string);
1386
1387 if (!cmp) {
1388 drop_index++;
577dc496 1389 ctx.info[i].expired = 1;
19575c7c
DS
1390 } else if (cmp > 0) {
1391 error(_("did not see pack-file %s to drop"),
1392 packs_to_drop->items[drop_index].string);
1393 drop_index++;
1394 missing_drops++;
1395 i--;
1396 } else {
577dc496 1397 ctx.info[i].expired = 0;
19575c7c
DS
1398 }
1399 }
1400
1401 if (missing_drops) {
1402 result = 1;
1403 goto cleanup;
1404 }
1405 }
1406
d01bf2e6
DS
1407 /*
1408 * pack_perm stores a permutation between pack-int-ids from the
1409 * previous multi-pack-index to the new one we are writing:
1410 *
1411 * pack_perm[old_id] = new_id
1412 */
7a3ada11 1413 ALLOC_ARRAY(ctx.pack_perm, ctx.nr);
577dc496
DS
1414 for (i = 0; i < ctx.nr; i++) {
1415 if (ctx.info[i].expired) {
19575c7c 1416 dropped_packs++;
7a3ada11 1417 ctx.pack_perm[ctx.info[i].orig_pack_int_id] = PACK_EXPIRED;
19575c7c 1418 } else {
7a3ada11 1419 ctx.pack_perm[ctx.info[i].orig_pack_int_id] = i - dropped_packs;
19575c7c 1420 }
d01bf2e6
DS
1421 }
1422
577dc496
DS
1423 for (i = 0; i < ctx.nr; i++) {
1424 if (!ctx.info[i].expired)
1425 pack_name_concat_len += strlen(ctx.info[i].pack_name) + 1;
19575c7c 1426 }
dba6175c 1427
9218c6a4
TB
1428 /* Check that the preferred pack wasn't expired (if given). */
1429 if (preferred_pack_name) {
1430 struct pack_info *preferred = bsearch(preferred_pack_name,
1431 ctx.info, ctx.nr,
1432 sizeof(*ctx.info),
1433 idx_or_pack_name_cmp);
177c0d6e 1434 if (preferred) {
9218c6a4
TB
1435 uint32_t perm = ctx.pack_perm[preferred->orig_pack_int_id];
1436 if (perm == PACK_EXPIRED)
1437 warning(_("preferred pack '%s' is expired"),
1438 preferred_pack_name);
1439 }
1440 }
1441
dba6175c
DS
1442 if (pack_name_concat_len % MIDX_CHUNK_ALIGNMENT)
1443 pack_name_concat_len += MIDX_CHUNK_ALIGNMENT -
1444 (pack_name_concat_len % MIDX_CHUNK_ALIGNMENT);
1445
60980aed 1446 hold_lock_file_for_update(&lk, midx_name.buf, LOCK_DIE_ON_ERROR);
acd71602 1447 f = hashfd(get_lock_file_fd(&lk), get_lock_file_path(&lk));
fc59e748 1448
577dc496 1449 if (ctx.nr - dropped_packs == 0) {
796d61cd
DR
1450 error(_("no pack files to index."));
1451 result = 1;
1452 goto cleanup;
1453 }
1454
eb57277b
TB
1455 if (!ctx.entries_nr) {
1456 if (flags & MIDX_WRITE_BITMAP)
1457 warning(_("refusing to write multi-pack .bitmap without any objects"));
1458 flags &= ~(MIDX_WRITE_REV_INDEX | MIDX_WRITE_BITMAP);
1459 }
1460
63a8f0e9 1461 cf = init_chunkfile(f);
32f3c541 1462
63a8f0e9
DS
1463 add_chunk(cf, MIDX_CHUNKID_PACKNAMES, pack_name_concat_len,
1464 write_midx_pack_names);
1465 add_chunk(cf, MIDX_CHUNKID_OIDFANOUT, MIDX_CHUNK_FANOUT_SIZE,
1466 write_midx_oid_fanout);
1467 add_chunk(cf, MIDX_CHUNKID_OIDLOOKUP,
329fac3a 1468 (size_t)ctx.entries_nr * the_hash_algo->rawsz,
63a8f0e9
DS
1469 write_midx_oid_lookup);
1470 add_chunk(cf, MIDX_CHUNKID_OBJECTOFFSETS,
329fac3a 1471 (size_t)ctx.entries_nr * MIDX_CHUNK_OFFSET_WIDTH,
63a8f0e9 1472 write_midx_object_offsets);
32f3c541 1473
63a8f0e9
DS
1474 if (ctx.large_offsets_needed)
1475 add_chunk(cf, MIDX_CHUNKID_LARGEOFFSETS,
329fac3a 1476 (size_t)ctx.num_large_offsets * MIDX_CHUNK_LARGE_OFFSET_WIDTH,
63a8f0e9 1477 write_midx_large_offsets);
32f3c541 1478
95e8383b
TB
1479 if (flags & (MIDX_WRITE_REV_INDEX | MIDX_WRITE_BITMAP)) {
1480 ctx.pack_order = midx_pack_order(&ctx);
1481 add_chunk(cf, MIDX_CHUNKID_REVINDEX,
1482 ctx.entries_nr * sizeof(uint32_t),
1483 write_midx_revindex);
1484 }
1485
63a8f0e9
DS
1486 write_midx_header(f, get_num_chunks(cf), ctx.nr - dropped_packs);
1487 write_chunkfile(cf, &ctx);
fc59e748 1488
020406ea
NS
1489 finalize_hashfile(f, midx_hash, FSYNC_COMPONENT_PACK_METADATA,
1490 CSUM_FSYNC | CSUM_HASH_IN_STREAM);
63a8f0e9 1491 free_chunkfile(cf);
38ff7cab 1492
7f514b7a
TB
1493 if (flags & MIDX_WRITE_REV_INDEX &&
1494 git_env_bool("GIT_TEST_MIDX_WRITE_REV", 0))
60980aed 1495 write_midx_reverse_index(midx_name.buf, midx_hash, &ctx);
90b2bb71 1496
c528e179 1497 if (flags & MIDX_WRITE_BITMAP) {
90b2bb71
DS
1498 struct packing_data pdata;
1499 struct commit **commits;
1500 uint32_t commits_nr;
1501
1502 if (!ctx.entries_nr)
1503 BUG("cannot write a bitmap without any objects");
1504
1505 prepare_midx_packing_data(&pdata, &ctx);
1506
1507 commits = find_commits_for_midx_bitmap(&commits_nr, refs_snapshot, &ctx);
1508
068fa54c
DS
1509 /*
1510 * The previous steps translated the information from
1511 * 'entries' into information suitable for constructing
1512 * bitmaps. We no longer need that array, so clear it to
1513 * reduce memory pressure.
1514 */
1515 FREE_AND_NULL(ctx.entries);
1516 ctx.entries_nr = 0;
1517
90b2bb71
DS
1518 if (write_midx_bitmap(midx_name.buf, midx_hash, &pdata,
1519 commits, commits_nr, ctx.pack_order,
51d1b69a 1520 flags) < 0) {
c528e179
TB
1521 error(_("could not write multi-pack bitmap"));
1522 result = 1;
1523 goto cleanup;
1524 }
1525 }
068fa54c
DS
1526 /*
1527 * NOTE: Do not use ctx.entries beyond this point, since it might
1528 * have been freed in the previous if block.
1529 */
c528e179
TB
1530
1531 if (ctx.m)
1532 close_object_store(the_repository->objects);
38ff7cab 1533
ae22e841
TB
1534 if (commit_lock_file(&lk) < 0)
1535 die_errno(_("could not write multi-pack-index"));
fc59e748 1536
c528e179 1537 clear_midx_files_ext(object_dir, ".bitmap", midx_hash);
f5909d34
TB
1538 clear_midx_files_ext(object_dir, ".rev", midx_hash);
1539
a40498a1 1540cleanup:
577dc496
DS
1541 for (i = 0; i < ctx.nr; i++) {
1542 if (ctx.info[i].p) {
1543 close_pack(ctx.info[i].p);
1544 free(ctx.info[i].p);
396f2570 1545 }
577dc496 1546 free(ctx.info[i].pack_name);
396f2570
DS
1547 }
1548
577dc496 1549 free(ctx.info);
31bda9a2 1550 free(ctx.entries);
7a3ada11 1551 free(ctx.pack_perm);
38ff7cab 1552 free(ctx.pack_order);
60980aed 1553 strbuf_release(&midx_name);
c528e179 1554
19575c7c
DS
1555 return result;
1556}
1557
9218c6a4
TB
1558int write_midx_file(const char *object_dir,
1559 const char *preferred_pack_name,
08944d1c 1560 const char *refs_snapshot,
9218c6a4 1561 unsigned flags)
19575c7c 1562{
56d863e9 1563 return write_midx_internal(object_dir, NULL, NULL, preferred_pack_name,
08944d1c 1564 refs_snapshot, flags);
56d863e9
TB
1565}
1566
1567int write_midx_file_only(const char *object_dir,
1568 struct string_list *packs_to_include,
1569 const char *preferred_pack_name,
08944d1c 1570 const char *refs_snapshot,
56d863e9
TB
1571 unsigned flags)
1572{
1573 return write_midx_internal(object_dir, packs_to_include, NULL,
08944d1c 1574 preferred_pack_name, refs_snapshot, flags);
a3407730 1575}
525e18c0 1576
38ff7cab
TB
1577struct clear_midx_data {
1578 char *keep;
1579 const char *ext;
1580};
1581
1582static void clear_midx_file_ext(const char *full_path, size_t full_path_len,
1583 const char *file_name, void *_data)
1584{
1585 struct clear_midx_data *data = _data;
1586
1587 if (!(starts_with(file_name, "multi-pack-index-") &&
1588 ends_with(file_name, data->ext)))
1589 return;
1590 if (data->keep && !strcmp(data->keep, file_name))
1591 return;
1592
1593 if (unlink(full_path))
1594 die_errno(_("failed to remove %s"), full_path);
1595}
1596
426c00e4 1597static void clear_midx_files_ext(const char *object_dir, const char *ext,
38ff7cab
TB
1598 unsigned char *keep_hash)
1599{
1600 struct clear_midx_data data;
1601 memset(&data, 0, sizeof(struct clear_midx_data));
1602
1603 if (keep_hash)
1604 data.keep = xstrfmt("multi-pack-index-%s%s",
1605 hash_to_hex(keep_hash), ext);
1606 data.ext = ext;
1607
426c00e4 1608 for_each_file_in_pack_dir(object_dir,
38ff7cab
TB
1609 clear_midx_file_ext,
1610 &data);
1611
1612 free(data.keep);
a3407730 1613}
525e18c0 1614
1dcd9f20 1615void clear_midx_file(struct repository *r)
525e18c0 1616{
60980aed
TB
1617 struct strbuf midx = STRBUF_INIT;
1618
1619 get_midx_filename(&midx, r->objects->odb->path);
1dcd9f20
DS
1620
1621 if (r->objects && r->objects->multi_pack_index) {
1622 close_midx(r->objects->multi_pack_index);
1623 r->objects->multi_pack_index = NULL;
1624 }
525e18c0 1625
60980aed
TB
1626 if (remove_path(midx.buf))
1627 die(_("failed to clear multi-pack-index at %s"), midx.buf);
525e18c0 1628
c528e179 1629 clear_midx_files_ext(r->objects->odb->path, ".bitmap", NULL);
426c00e4 1630 clear_midx_files_ext(r->objects->odb->path, ".rev", NULL);
38ff7cab 1631
60980aed 1632 strbuf_release(&midx);
525e18c0 1633}
56ee7ff1
DS
1634
1635static int verify_midx_error;
1636
48ca53ca 1637__attribute__((format (printf, 1, 2)))
d4bf1d88
DS
1638static void midx_report(const char *fmt, ...)
1639{
1640 va_list ap;
1641 verify_midx_error = 1;
1642 va_start(ap, fmt);
1643 vfprintf(stderr, fmt, ap);
1644 fprintf(stderr, "\n");
1645 va_end(ap);
1646}
1647
5ae18df9
JH
1648struct pair_pos_vs_id
1649{
1650 uint32_t pos;
1651 uint32_t pack_int_id;
1652};
1653
1654static int compare_pair_pos_vs_id(const void *_a, const void *_b)
1655{
1656 struct pair_pos_vs_id *a = (struct pair_pos_vs_id *)_a;
1657 struct pair_pos_vs_id *b = (struct pair_pos_vs_id *)_b;
1658
1659 return b->pack_int_id - a->pack_int_id;
1660}
1661
430efb8a
JH
1662/*
1663 * Limit calls to display_progress() for performance reasons.
1664 * The interval here was arbitrarily chosen.
1665 */
1666#define SPARSE_PROGRESS_INTERVAL (1 << 12)
1667#define midx_display_sparse_progress(progress, n) \
1668 do { \
1669 uint64_t _n = (n); \
1670 if ((_n & (SPARSE_PROGRESS_INTERVAL - 1)) == 0) \
1671 display_progress(progress, _n); \
1672 } while (0)
1673
efbc3aee 1674int verify_midx_file(struct repository *r, const char *object_dir, unsigned flags)
56ee7ff1 1675{
5ae18df9 1676 struct pair_pos_vs_id *pairs = NULL;
d4bf1d88 1677 uint32_t i;
ad60096d 1678 struct progress *progress = NULL;
56ee7ff1
DS
1679 struct multi_pack_index *m = load_multi_pack_index(object_dir, 1);
1680 verify_midx_error = 0;
1681
d9607542
DS
1682 if (!m) {
1683 int result = 0;
1684 struct stat sb;
60980aed
TB
1685 struct strbuf filename = STRBUF_INIT;
1686
1687 get_midx_filename(&filename, object_dir);
1688
1689 if (!stat(filename.buf, &sb)) {
d9607542
DS
1690 error(_("multi-pack-index file exists, but failed to parse"));
1691 result = 1;
1692 }
60980aed 1693 strbuf_release(&filename);
d9607542
DS
1694 return result;
1695 }
56ee7ff1 1696
f89ecf79
TB
1697 if (!midx_checksum_valid(m))
1698 midx_report(_("incorrect checksum"));
1699
ad60096d 1700 if (flags & MIDX_PROGRESS)
efdd2f0d 1701 progress = start_delayed_progress(_("Looking for referenced packfiles"),
ad60096d 1702 m->num_packs);
d4bf1d88 1703 for (i = 0; i < m->num_packs; i++) {
64404a24 1704 if (prepare_midx_pack(r, m, i))
d4bf1d88 1705 midx_report("failed to load pack in position %d", i);
430efb8a
JH
1706
1707 display_progress(progress, i + 1);
d4bf1d88 1708 }
430efb8a 1709 stop_progress(&progress);
d4bf1d88 1710
2f23d3f3
DS
1711 for (i = 0; i < 255; i++) {
1712 uint32_t oid_fanout1 = ntohl(m->chunk_oid_fanout[i]);
1713 uint32_t oid_fanout2 = ntohl(m->chunk_oid_fanout[i + 1]);
1714
1715 if (oid_fanout1 > oid_fanout2)
1716 midx_report(_("oid fanout out of order: fanout[%d] = %"PRIx32" > %"PRIx32" = fanout[%d]"),
1717 i, oid_fanout1, oid_fanout2, i + 1);
1718 }
1719
796d61cd
DR
1720 if (m->num_objects == 0) {
1721 midx_report(_("the midx contains no oid"));
1722 /*
1723 * Remaining tests assume that we have objects, so we can
1724 * return here.
1725 */
492cb394 1726 goto cleanup;
796d61cd
DR
1727 }
1728
ad60096d
WB
1729 if (flags & MIDX_PROGRESS)
1730 progress = start_sparse_progress(_("Verifying OID order in multi-pack-index"),
1731 m->num_objects - 1);
55c5648d
DS
1732 for (i = 0; i < m->num_objects - 1; i++) {
1733 struct object_id oid1, oid2;
1734
1735 nth_midxed_object_oid(&oid1, m, i);
1736 nth_midxed_object_oid(&oid2, m, i + 1);
1737
1738 if (oidcmp(&oid1, &oid2) >= 0)
1739 midx_report(_("oid lookup out of order: oid[%d] = %s >= %s = oid[%d]"),
1740 i, oid_to_hex(&oid1), oid_to_hex(&oid2), i + 1);
430efb8a
JH
1741
1742 midx_display_sparse_progress(progress, i + 1);
55c5648d 1743 }
430efb8a 1744 stop_progress(&progress);
55c5648d 1745
5ae18df9
JH
1746 /*
1747 * Create an array mapping each object to its packfile id. Sort it
1748 * to group the objects by packfile. Use this permutation to visit
1749 * each of the objects and only require 1 packfile to be open at a
1750 * time.
1751 */
1752 ALLOC_ARRAY(pairs, m->num_objects);
1753 for (i = 0; i < m->num_objects; i++) {
1754 pairs[i].pos = i;
1755 pairs[i].pack_int_id = nth_midxed_pack_int_id(m, i);
1756 }
1757
ad60096d
WB
1758 if (flags & MIDX_PROGRESS)
1759 progress = start_sparse_progress(_("Sorting objects by packfile"),
1760 m->num_objects);
5ae18df9
JH
1761 display_progress(progress, 0); /* TODO: Measure QSORT() progress */
1762 QSORT(pairs, m->num_objects, compare_pair_pos_vs_id);
1763 stop_progress(&progress);
1764
ad60096d
WB
1765 if (flags & MIDX_PROGRESS)
1766 progress = start_sparse_progress(_("Verifying object offsets"), m->num_objects);
cc6af73c
DS
1767 for (i = 0; i < m->num_objects; i++) {
1768 struct object_id oid;
1769 struct pack_entry e;
1770 off_t m_offset, p_offset;
1771
5ae18df9
JH
1772 if (i > 0 && pairs[i-1].pack_int_id != pairs[i].pack_int_id &&
1773 m->packs[pairs[i-1].pack_int_id])
1774 {
1775 close_pack_fd(m->packs[pairs[i-1].pack_int_id]);
1776 close_pack_index(m->packs[pairs[i-1].pack_int_id]);
1777 }
1778
1779 nth_midxed_object_oid(&oid, m, pairs[i].pos);
1780
64404a24 1781 if (!fill_midx_entry(r, &oid, &e, m)) {
cc6af73c 1782 midx_report(_("failed to load pack entry for oid[%d] = %s"),
5ae18df9 1783 pairs[i].pos, oid_to_hex(&oid));
cc6af73c
DS
1784 continue;
1785 }
1786
1787 if (open_pack_index(e.p)) {
1788 midx_report(_("failed to load pack-index for packfile %s"),
1789 e.p->pack_name);
1790 break;
1791 }
1792
1793 m_offset = e.offset;
1794 p_offset = find_pack_entry_one(oid.hash, e.p);
1795
1796 if (m_offset != p_offset)
1797 midx_report(_("incorrect object offset for oid[%d] = %s: %"PRIx64" != %"PRIx64),
5ae18df9 1798 pairs[i].pos, oid_to_hex(&oid), m_offset, p_offset);
144d7033 1799
430efb8a 1800 midx_display_sparse_progress(progress, i + 1);
cc6af73c 1801 }
144d7033 1802 stop_progress(&progress);
cc6af73c 1803
492cb394 1804cleanup:
5ae18df9 1805 free(pairs);
492cb394 1806 close_midx(m);
5ae18df9 1807
56ee7ff1
DS
1808 return verify_midx_error;
1809}
cff97116 1810
efbc3aee 1811int expire_midx_packs(struct repository *r, const char *object_dir, unsigned flags)
cff97116 1812{
19575c7c
DS
1813 uint32_t i, *count, result = 0;
1814 struct string_list packs_to_drop = STRING_LIST_INIT_DUP;
98926e0d 1815 struct multi_pack_index *m = lookup_multi_pack_index(r, object_dir);
8dc18f89 1816 struct progress *progress = NULL;
19575c7c
DS
1817
1818 if (!m)
1819 return 0;
1820
ca56dadb 1821 CALLOC_ARRAY(count, m->num_packs);
8dc18f89
WB
1822
1823 if (flags & MIDX_PROGRESS)
efdd2f0d 1824 progress = start_delayed_progress(_("Counting referenced objects"),
8dc18f89 1825 m->num_objects);
19575c7c
DS
1826 for (i = 0; i < m->num_objects; i++) {
1827 int pack_int_id = nth_midxed_pack_int_id(m, i);
1828 count[pack_int_id]++;
8dc18f89 1829 display_progress(progress, i + 1);
19575c7c 1830 }
8dc18f89 1831 stop_progress(&progress);
19575c7c 1832
8dc18f89 1833 if (flags & MIDX_PROGRESS)
efdd2f0d 1834 progress = start_delayed_progress(_("Finding and deleting unreferenced packfiles"),
8dc18f89 1835 m->num_packs);
19575c7c
DS
1836 for (i = 0; i < m->num_packs; i++) {
1837 char *pack_name;
8dc18f89 1838 display_progress(progress, i + 1);
19575c7c
DS
1839
1840 if (count[i])
1841 continue;
1842
1843 if (prepare_midx_pack(r, m, i))
1844 continue;
1845
1846 if (m->packs[i]->pack_keep)
1847 continue;
1848
1849 pack_name = xstrdup(m->packs[i]->pack_name);
1850 close_pack(m->packs[i]);
1851
1852 string_list_insert(&packs_to_drop, m->pack_names[i]);
1853 unlink_pack_path(pack_name, 0);
1854 free(pack_name);
1855 }
8dc18f89 1856 stop_progress(&progress);
19575c7c
DS
1857
1858 free(count);
1859
98926e0d 1860 if (packs_to_drop.nr)
08944d1c 1861 result = write_midx_internal(object_dir, NULL, &packs_to_drop, NULL, NULL, flags);
19575c7c
DS
1862
1863 string_list_clear(&packs_to_drop, 0);
98926e0d 1864
19575c7c 1865 return result;
cff97116 1866}
2af890bb 1867
ce1e4a10
DS
1868struct repack_info {
1869 timestamp_t mtime;
1870 uint32_t referenced_objects;
1871 uint32_t pack_int_id;
1872};
1873
1874static int compare_by_mtime(const void *a_, const void *b_)
2af890bb 1875{
ce1e4a10
DS
1876 const struct repack_info *a, *b;
1877
1878 a = (const struct repack_info *)a_;
1879 b = (const struct repack_info *)b_;
1880
1881 if (a->mtime < b->mtime)
1882 return -1;
1883 if (a->mtime > b->mtime)
1884 return 1;
1885 return 0;
1886}
1887
3ce4ca0a
DS
1888static int fill_included_packs_all(struct repository *r,
1889 struct multi_pack_index *m,
ce1e4a10
DS
1890 unsigned char *include_pack)
1891{
3ce4ca0a
DS
1892 uint32_t i, count = 0;
1893 int pack_kept_objects = 0;
1894
1895 repo_config_get_bool(r, "repack.packkeptobjects", &pack_kept_objects);
1896
1897 for (i = 0; i < m->num_packs; i++) {
1898 if (prepare_midx_pack(r, m, i))
1899 continue;
1900 if (!pack_kept_objects && m->packs[i]->pack_keep)
1901 continue;
ce1e4a10 1902
ce1e4a10 1903 include_pack[i] = 1;
3ce4ca0a
DS
1904 count++;
1905 }
ce1e4a10 1906
3ce4ca0a 1907 return count < 2;
ce1e4a10
DS
1908}
1909
1910static int fill_included_packs_batch(struct repository *r,
1911 struct multi_pack_index *m,
1912 unsigned char *include_pack,
1913 size_t batch_size)
1914{
1915 uint32_t i, packs_to_repack;
1916 size_t total_size;
1917 struct repack_info *pack_info = xcalloc(m->num_packs, sizeof(struct repack_info));
3ce4ca0a
DS
1918 int pack_kept_objects = 0;
1919
1920 repo_config_get_bool(r, "repack.packkeptobjects", &pack_kept_objects);
ce1e4a10
DS
1921
1922 for (i = 0; i < m->num_packs; i++) {
1923 pack_info[i].pack_int_id = i;
1924
1925 if (prepare_midx_pack(r, m, i))
1926 continue;
1927
1928 pack_info[i].mtime = m->packs[i]->mtime;
1929 }
1930
1931 for (i = 0; batch_size && i < m->num_objects; i++) {
1932 uint32_t pack_int_id = nth_midxed_pack_int_id(m, i);
1933 pack_info[pack_int_id].referenced_objects++;
1934 }
1935
1936 QSORT(pack_info, m->num_packs, compare_by_mtime);
1937
1938 total_size = 0;
1939 packs_to_repack = 0;
1940 for (i = 0; total_size < batch_size && i < m->num_packs; i++) {
1941 int pack_int_id = pack_info[i].pack_int_id;
1942 struct packed_git *p = m->packs[pack_int_id];
1943 size_t expected_size;
1944
1945 if (!p)
1946 continue;
3ce4ca0a
DS
1947 if (!pack_kept_objects && p->pack_keep)
1948 continue;
ce1e4a10
DS
1949 if (open_pack_index(p) || !p->num_objects)
1950 continue;
1951
1952 expected_size = (size_t)(p->pack_size
1953 * pack_info[i].referenced_objects);
1954 expected_size /= p->num_objects;
1955
1956 if (expected_size >= batch_size)
1957 continue;
1958
1959 packs_to_repack++;
1960 total_size += expected_size;
1961 include_pack[pack_int_id] = 1;
1962 }
1963
1964 free(pack_info);
1965
1eb22c7d 1966 if (packs_to_repack < 2)
ce1e4a10
DS
1967 return 1;
1968
2af890bb
DS
1969 return 0;
1970}
ce1e4a10 1971
efbc3aee 1972int midx_repack(struct repository *r, const char *object_dir, size_t batch_size, unsigned flags)
ce1e4a10
DS
1973{
1974 int result = 0;
1975 uint32_t i;
1976 unsigned char *include_pack;
1977 struct child_process cmd = CHILD_PROCESS_INIT;
6af3b00a 1978 FILE *cmd_in;
ce1e4a10 1979 struct strbuf base_name = STRBUF_INIT;
c0f1f9de 1980 struct multi_pack_index *m = lookup_multi_pack_index(r, object_dir);
ce1e4a10 1981
e11d86de
SLN
1982 /*
1983 * When updating the default for these configuration
1984 * variables in builtin/repack.c, these must be adjusted
1985 * to match.
1986 */
1987 int delta_base_offset = 1;
1988 int use_delta_islands = 0;
1989
ce1e4a10
DS
1990 if (!m)
1991 return 0;
1992
ca56dadb 1993 CALLOC_ARRAY(include_pack, m->num_packs);
ce1e4a10
DS
1994
1995 if (batch_size) {
1996 if (fill_included_packs_batch(r, m, include_pack, batch_size))
1997 goto cleanup;
3ce4ca0a 1998 } else if (fill_included_packs_all(r, m, include_pack))
ce1e4a10
DS
1999 goto cleanup;
2000
e11d86de
SLN
2001 repo_config_get_bool(r, "repack.usedeltabaseoffset", &delta_base_offset);
2002 repo_config_get_bool(r, "repack.usedeltaislands", &use_delta_islands);
2003
c972bf4c 2004 strvec_push(&cmd.args, "pack-objects");
ce1e4a10
DS
2005
2006 strbuf_addstr(&base_name, object_dir);
2007 strbuf_addstr(&base_name, "/pack/pack");
c972bf4c 2008 strvec_push(&cmd.args, base_name.buf);
64d80e7d 2009
e11d86de 2010 if (delta_base_offset)
c972bf4c 2011 strvec_push(&cmd.args, "--delta-base-offset");
e11d86de 2012 if (use_delta_islands)
c972bf4c 2013 strvec_push(&cmd.args, "--delta-islands");
e11d86de 2014
64d80e7d 2015 if (flags & MIDX_PROGRESS)
c972bf4c 2016 strvec_push(&cmd.args, "--progress");
64d80e7d 2017 else
c972bf4c 2018 strvec_push(&cmd.args, "-q");
64d80e7d 2019
ce1e4a10
DS
2020 strbuf_release(&base_name);
2021
2022 cmd.git_cmd = 1;
2023 cmd.in = cmd.out = -1;
2024
2025 if (start_command(&cmd)) {
2026 error(_("could not start pack-objects"));
2027 result = 1;
2028 goto cleanup;
2029 }
2030
6af3b00a
RS
2031 cmd_in = xfdopen(cmd.in, "w");
2032
ce1e4a10
DS
2033 for (i = 0; i < m->num_objects; i++) {
2034 struct object_id oid;
2035 uint32_t pack_int_id = nth_midxed_pack_int_id(m, i);
2036
2037 if (!include_pack[pack_int_id])
2038 continue;
2039
2040 nth_midxed_object_oid(&oid, m, i);
6af3b00a 2041 fprintf(cmd_in, "%s\n", oid_to_hex(&oid));
ce1e4a10 2042 }
6af3b00a 2043 fclose(cmd_in);
ce1e4a10
DS
2044
2045 if (finish_command(&cmd)) {
2046 error(_("could not finish pack-objects"));
2047 result = 1;
2048 goto cleanup;
2049 }
2050
08944d1c 2051 result = write_midx_internal(object_dir, NULL, NULL, NULL, NULL, flags);
ce1e4a10
DS
2052
2053cleanup:
ce1e4a10
DS
2054 free(include_pack);
2055 return result;
2056}