builtin / index-pack.con commit create_branch: move msg setup closer to point of use (3818b25)
   1#include "builtin.h"
   2#include "delta.h"
   3#include "pack.h"
   4#include "csum-file.h"
   5#include "blob.h"
   6#include "commit.h"
   7#include "tag.h"
   8#include "tree.h"
   9#include "progress.h"
  10#include "fsck.h"
  11#include "exec_cmd.h"
  12#include "streaming.h"
  13#include "thread-utils.h"
  14
  15static const char index_pack_usage[] =
  16"git index-pack [-v] [-o <index-file>] [--keep | --keep=<msg>] [--verify] [--strict] (<pack-file> | --stdin [--fix-thin] [<pack-file>])";
  17
  18struct object_entry {
  19        struct pack_idx_entry idx;
  20        unsigned long size;
  21        unsigned char hdr_size;
  22        signed char type;
  23        signed char real_type;
  24};
  25
  26struct object_stat {
  27        unsigned delta_depth;
  28        int base_object_no;
  29};
  30
  31struct base_data {
  32        struct base_data *base;
  33        struct base_data *child;
  34        struct object_entry *obj;
  35        void *data;
  36        unsigned long size;
  37        int ref_first, ref_last;
  38        int ofs_first, ofs_last;
  39};
  40
  41struct thread_local {
  42#ifndef NO_PTHREADS
  43        pthread_t thread;
  44#endif
  45        struct base_data *base_cache;
  46        size_t base_cache_used;
  47        int pack_fd;
  48};
  49
  50#define FLAG_LINK (1u<<20)
  51#define FLAG_CHECKED (1u<<21)
  52
  53struct ofs_delta_entry {
  54        off_t offset;
  55        int obj_no;
  56};
  57
  58struct ref_delta_entry {
  59        unsigned char sha1[20];
  60        int obj_no;
  61};
  62
  63static struct object_entry *objects;
  64static struct object_stat *obj_stat;
  65static struct ofs_delta_entry *ofs_deltas;
  66static struct ref_delta_entry *ref_deltas;
  67static struct thread_local nothread_data;
  68static int nr_objects;
  69static int nr_ofs_deltas;
  70static int nr_ref_deltas;
  71static int ref_deltas_alloc;
  72static int nr_resolved_deltas;
  73static int nr_threads;
  74
  75static int from_stdin;
  76static int strict;
  77static int do_fsck_object;
  78static struct fsck_options fsck_options = FSCK_OPTIONS_STRICT;
  79static int verbose;
  80static int show_resolving_progress;
  81static int show_stat;
  82static int check_self_contained_and_connected;
  83
  84static struct progress *progress;
  85
  86/* We always read in 4kB chunks. */
  87static unsigned char input_buffer[4096];
  88static unsigned int input_offset, input_len;
  89static off_t consumed_bytes;
  90static off_t max_input_size;
  91static unsigned deepest_delta;
  92static git_SHA_CTX input_ctx;
  93static uint32_t input_crc32;
  94static int input_fd, output_fd;
  95static const char *curr_pack;
  96
  97#ifndef NO_PTHREADS
  98
  99static struct thread_local *thread_data;
 100static int nr_dispatched;
 101static int threads_active;
 102
 103static pthread_mutex_t read_mutex;
 104#define read_lock()             lock_mutex(&read_mutex)
 105#define read_unlock()           unlock_mutex(&read_mutex)
 106
 107static pthread_mutex_t counter_mutex;
 108#define counter_lock()          lock_mutex(&counter_mutex)
 109#define counter_unlock()        unlock_mutex(&counter_mutex)
 110
 111static pthread_mutex_t work_mutex;
 112#define work_lock()             lock_mutex(&work_mutex)
 113#define work_unlock()           unlock_mutex(&work_mutex)
 114
 115static pthread_mutex_t deepest_delta_mutex;
 116#define deepest_delta_lock()    lock_mutex(&deepest_delta_mutex)
 117#define deepest_delta_unlock()  unlock_mutex(&deepest_delta_mutex)
 118
 119static pthread_mutex_t type_cas_mutex;
 120#define type_cas_lock()         lock_mutex(&type_cas_mutex)
 121#define type_cas_unlock()       unlock_mutex(&type_cas_mutex)
 122
 123static pthread_key_t key;
 124
 125static inline void lock_mutex(pthread_mutex_t *mutex)
 126{
 127        if (threads_active)
 128                pthread_mutex_lock(mutex);
 129}
 130
 131static inline void unlock_mutex(pthread_mutex_t *mutex)
 132{
 133        if (threads_active)
 134                pthread_mutex_unlock(mutex);
 135}
 136
 137/*
 138 * Mutex and conditional variable can't be statically-initialized on Windows.
 139 */
 140static void init_thread(void)
 141{
 142        int i;
 143        init_recursive_mutex(&read_mutex);
 144        pthread_mutex_init(&counter_mutex, NULL);
 145        pthread_mutex_init(&work_mutex, NULL);
 146        pthread_mutex_init(&type_cas_mutex, NULL);
 147        if (show_stat)
 148                pthread_mutex_init(&deepest_delta_mutex, NULL);
 149        pthread_key_create(&key, NULL);
 150        thread_data = xcalloc(nr_threads, sizeof(*thread_data));
 151        for (i = 0; i < nr_threads; i++) {
 152                thread_data[i].pack_fd = open(curr_pack, O_RDONLY);
 153                if (thread_data[i].pack_fd == -1)
 154                        die_errno(_("unable to open %s"), curr_pack);
 155        }
 156
 157        threads_active = 1;
 158}
 159
 160static void cleanup_thread(void)
 161{
 162        int i;
 163        if (!threads_active)
 164                return;
 165        threads_active = 0;
 166        pthread_mutex_destroy(&read_mutex);
 167        pthread_mutex_destroy(&counter_mutex);
 168        pthread_mutex_destroy(&work_mutex);
 169        pthread_mutex_destroy(&type_cas_mutex);
 170        if (show_stat)
 171                pthread_mutex_destroy(&deepest_delta_mutex);
 172        for (i = 0; i < nr_threads; i++)
 173                close(thread_data[i].pack_fd);
 174        pthread_key_delete(key);
 175        free(thread_data);
 176}
 177
 178#else
 179
 180#define read_lock()
 181#define read_unlock()
 182
 183#define counter_lock()
 184#define counter_unlock()
 185
 186#define work_lock()
 187#define work_unlock()
 188
 189#define deepest_delta_lock()
 190#define deepest_delta_unlock()
 191
 192#define type_cas_lock()
 193#define type_cas_unlock()
 194
 195#endif
 196
 197
 198static int mark_link(struct object *obj, int type, void *data, struct fsck_options *options)
 199{
 200        if (!obj)
 201                return -1;
 202
 203        if (type != OBJ_ANY && obj->type != type)
 204                die(_("object type mismatch at %s"), oid_to_hex(&obj->oid));
 205
 206        obj->flags |= FLAG_LINK;
 207        return 0;
 208}
 209
 210/* The content of each linked object must have been checked
 211   or it must be already present in the object database */
 212static unsigned check_object(struct object *obj)
 213{
 214        if (!obj)
 215                return 0;
 216
 217        if (!(obj->flags & FLAG_LINK))
 218                return 0;
 219
 220        if (!(obj->flags & FLAG_CHECKED)) {
 221                unsigned long size;
 222                int type = sha1_object_info(obj->oid.hash, &size);
 223                if (type <= 0)
 224                        die(_("did not receive expected object %s"),
 225                              oid_to_hex(&obj->oid));
 226                if (type != obj->type)
 227                        die(_("object %s: expected type %s, found %s"),
 228                            oid_to_hex(&obj->oid),
 229                            typename(obj->type), typename(type));
 230                obj->flags |= FLAG_CHECKED;
 231                return 1;
 232        }
 233
 234        return 0;
 235}
 236
 237static unsigned check_objects(void)
 238{
 239        unsigned i, max, foreign_nr = 0;
 240
 241        max = get_max_object_index();
 242        for (i = 0; i < max; i++)
 243                foreign_nr += check_object(get_indexed_object(i));
 244        return foreign_nr;
 245}
 246
 247
 248/* Discard current buffer used content. */
 249static void flush(void)
 250{
 251        if (input_offset) {
 252                if (output_fd >= 0)
 253                        write_or_die(output_fd, input_buffer, input_offset);
 254                git_SHA1_Update(&input_ctx, input_buffer, input_offset);
 255                memmove(input_buffer, input_buffer + input_offset, input_len);
 256                input_offset = 0;
 257        }
 258}
 259
 260/*
 261 * Make sure at least "min" bytes are available in the buffer, and
 262 * return the pointer to the buffer.
 263 */
 264static void *fill(int min)
 265{
 266        if (min <= input_len)
 267                return input_buffer + input_offset;
 268        if (min > sizeof(input_buffer))
 269                die(Q_("cannot fill %d byte",
 270                       "cannot fill %d bytes",
 271                       min),
 272                    min);
 273        flush();
 274        do {
 275                ssize_t ret = xread(input_fd, input_buffer + input_len,
 276                                sizeof(input_buffer) - input_len);
 277                if (ret <= 0) {
 278                        if (!ret)
 279                                die(_("early EOF"));
 280                        die_errno(_("read error on input"));
 281                }
 282                input_len += ret;
 283                if (from_stdin)
 284                        display_throughput(progress, consumed_bytes + input_len);
 285        } while (input_len < min);
 286        return input_buffer;
 287}
 288
 289static void use(int bytes)
 290{
 291        if (bytes > input_len)
 292                die(_("used more bytes than were available"));
 293        input_crc32 = crc32(input_crc32, input_buffer + input_offset, bytes);
 294        input_len -= bytes;
 295        input_offset += bytes;
 296
 297        /* make sure off_t is sufficiently large not to wrap */
 298        if (signed_add_overflows(consumed_bytes, bytes))
 299                die(_("pack too large for current definition of off_t"));
 300        consumed_bytes += bytes;
 301        if (max_input_size && consumed_bytes > max_input_size)
 302                die(_("pack exceeds maximum allowed size"));
 303}
 304
 305static const char *open_pack_file(const char *pack_name)
 306{
 307        if (from_stdin) {
 308                input_fd = 0;
 309                if (!pack_name) {
 310                        struct strbuf tmp_file = STRBUF_INIT;
 311                        output_fd = odb_mkstemp(&tmp_file,
 312                                                "pack/tmp_pack_XXXXXX");
 313                        pack_name = strbuf_detach(&tmp_file, NULL);
 314                } else {
 315                        output_fd = open(pack_name, O_CREAT|O_EXCL|O_RDWR, 0600);
 316                        if (output_fd < 0)
 317                                die_errno(_("unable to create '%s'"), pack_name);
 318                }
 319                nothread_data.pack_fd = output_fd;
 320        } else {
 321                input_fd = open(pack_name, O_RDONLY);
 322                if (input_fd < 0)
 323                        die_errno(_("cannot open packfile '%s'"), pack_name);
 324                output_fd = -1;
 325                nothread_data.pack_fd = input_fd;
 326        }
 327        git_SHA1_Init(&input_ctx);
 328        return pack_name;
 329}
 330
 331static void parse_pack_header(void)
 332{
 333        struct pack_header *hdr = fill(sizeof(struct pack_header));
 334
 335        /* Header consistency check */
 336        if (hdr->hdr_signature != htonl(PACK_SIGNATURE))
 337                die(_("pack signature mismatch"));
 338        if (!pack_version_ok(hdr->hdr_version))
 339                die(_("pack version %"PRIu32" unsupported"),
 340                        ntohl(hdr->hdr_version));
 341
 342        nr_objects = ntohl(hdr->hdr_entries);
 343        use(sizeof(struct pack_header));
 344}
 345
 346static NORETURN void bad_object(off_t offset, const char *format,
 347                       ...) __attribute__((format (printf, 2, 3)));
 348
 349static NORETURN void bad_object(off_t offset, const char *format, ...)
 350{
 351        va_list params;
 352        char buf[1024];
 353
 354        va_start(params, format);
 355        vsnprintf(buf, sizeof(buf), format, params);
 356        va_end(params);
 357        die(_("pack has bad object at offset %"PRIuMAX": %s"),
 358            (uintmax_t)offset, buf);
 359}
 360
 361static inline struct thread_local *get_thread_data(void)
 362{
 363#ifndef NO_PTHREADS
 364        if (threads_active)
 365                return pthread_getspecific(key);
 366        assert(!threads_active &&
 367               "This should only be reached when all threads are gone");
 368#endif
 369        return &nothread_data;
 370}
 371
 372#ifndef NO_PTHREADS
 373static void set_thread_data(struct thread_local *data)
 374{
 375        if (threads_active)
 376                pthread_setspecific(key, data);
 377}
 378#endif
 379
 380static struct base_data *alloc_base_data(void)
 381{
 382        struct base_data *base = xcalloc(1, sizeof(struct base_data));
 383        base->ref_last = -1;
 384        base->ofs_last = -1;
 385        return base;
 386}
 387
 388static void free_base_data(struct base_data *c)
 389{
 390        if (c->data) {
 391                free(c->data);
 392                c->data = NULL;
 393                get_thread_data()->base_cache_used -= c->size;
 394        }
 395}
 396
 397static void prune_base_data(struct base_data *retain)
 398{
 399        struct base_data *b;
 400        struct thread_local *data = get_thread_data();
 401        for (b = data->base_cache;
 402             data->base_cache_used > delta_base_cache_limit && b;
 403             b = b->child) {
 404                if (b->data && b != retain)
 405                        free_base_data(b);
 406        }
 407}
 408
 409static void link_base_data(struct base_data *base, struct base_data *c)
 410{
 411        if (base)
 412                base->child = c;
 413        else
 414                get_thread_data()->base_cache = c;
 415
 416        c->base = base;
 417        c->child = NULL;
 418        if (c->data)
 419                get_thread_data()->base_cache_used += c->size;
 420        prune_base_data(c);
 421}
 422
 423static void unlink_base_data(struct base_data *c)
 424{
 425        struct base_data *base = c->base;
 426        if (base)
 427                base->child = NULL;
 428        else
 429                get_thread_data()->base_cache = NULL;
 430        free_base_data(c);
 431}
 432
 433static int is_delta_type(enum object_type type)
 434{
 435        return (type == OBJ_REF_DELTA || type == OBJ_OFS_DELTA);
 436}
 437
 438static void *unpack_entry_data(off_t offset, unsigned long size,
 439                               enum object_type type, unsigned char *sha1)
 440{
 441        static char fixed_buf[8192];
 442        int status;
 443        git_zstream stream;
 444        void *buf;
 445        git_SHA_CTX c;
 446        char hdr[32];
 447        int hdrlen;
 448
 449        if (!is_delta_type(type)) {
 450                hdrlen = xsnprintf(hdr, sizeof(hdr), "%s %lu", typename(type), size) + 1;
 451                git_SHA1_Init(&c);
 452                git_SHA1_Update(&c, hdr, hdrlen);
 453        } else
 454                sha1 = NULL;
 455        if (type == OBJ_BLOB && size > big_file_threshold)
 456                buf = fixed_buf;
 457        else
 458                buf = xmallocz(size);
 459
 460        memset(&stream, 0, sizeof(stream));
 461        git_inflate_init(&stream);
 462        stream.next_out = buf;
 463        stream.avail_out = buf == fixed_buf ? sizeof(fixed_buf) : size;
 464
 465        do {
 466                unsigned char *last_out = stream.next_out;
 467                stream.next_in = fill(1);
 468                stream.avail_in = input_len;
 469                status = git_inflate(&stream, 0);
 470                use(input_len - stream.avail_in);
 471                if (sha1)
 472                        git_SHA1_Update(&c, last_out, stream.next_out - last_out);
 473                if (buf == fixed_buf) {
 474                        stream.next_out = buf;
 475                        stream.avail_out = sizeof(fixed_buf);
 476                }
 477        } while (status == Z_OK);
 478        if (stream.total_out != size || status != Z_STREAM_END)
 479                bad_object(offset, _("inflate returned %d"), status);
 480        git_inflate_end(&stream);
 481        if (sha1)
 482                git_SHA1_Final(sha1, &c);
 483        return buf == fixed_buf ? NULL : buf;
 484}
 485
 486static void *unpack_raw_entry(struct object_entry *obj,
 487                              off_t *ofs_offset,
 488                              unsigned char *ref_sha1,
 489                              unsigned char *sha1)
 490{
 491        unsigned char *p;
 492        unsigned long size, c;
 493        off_t base_offset;
 494        unsigned shift;
 495        void *data;
 496
 497        obj->idx.offset = consumed_bytes;
 498        input_crc32 = crc32(0, NULL, 0);
 499
 500        p = fill(1);
 501        c = *p;
 502        use(1);
 503        obj->type = (c >> 4) & 7;
 504        size = (c & 15);
 505        shift = 4;
 506        while (c & 0x80) {
 507                p = fill(1);
 508                c = *p;
 509                use(1);
 510                size += (c & 0x7f) << shift;
 511                shift += 7;
 512        }
 513        obj->size = size;
 514
 515        switch (obj->type) {
 516        case OBJ_REF_DELTA:
 517                hashcpy(ref_sha1, fill(20));
 518                use(20);
 519                break;
 520        case OBJ_OFS_DELTA:
 521                p = fill(1);
 522                c = *p;
 523                use(1);
 524                base_offset = c & 127;
 525                while (c & 128) {
 526                        base_offset += 1;
 527                        if (!base_offset || MSB(base_offset, 7))
 528                                bad_object(obj->idx.offset, _("offset value overflow for delta base object"));
 529                        p = fill(1);
 530                        c = *p;
 531                        use(1);
 532                        base_offset = (base_offset << 7) + (c & 127);
 533                }
 534                *ofs_offset = obj->idx.offset - base_offset;
 535                if (*ofs_offset <= 0 || *ofs_offset >= obj->idx.offset)
 536                        bad_object(obj->idx.offset, _("delta base offset is out of bound"));
 537                break;
 538        case OBJ_COMMIT:
 539        case OBJ_TREE:
 540        case OBJ_BLOB:
 541        case OBJ_TAG:
 542                break;
 543        default:
 544                bad_object(obj->idx.offset, _("unknown object type %d"), obj->type);
 545        }
 546        obj->hdr_size = consumed_bytes - obj->idx.offset;
 547
 548        data = unpack_entry_data(obj->idx.offset, obj->size, obj->type, sha1);
 549        obj->idx.crc32 = input_crc32;
 550        return data;
 551}
 552
 553static void *unpack_data(struct object_entry *obj,
 554                         int (*consume)(const unsigned char *, unsigned long, void *),
 555                         void *cb_data)
 556{
 557        off_t from = obj[0].idx.offset + obj[0].hdr_size;
 558        off_t len = obj[1].idx.offset - from;
 559        unsigned char *data, *inbuf;
 560        git_zstream stream;
 561        int status;
 562
 563        data = xmallocz(consume ? 64*1024 : obj->size);
 564        inbuf = xmalloc((len < 64*1024) ? (int)len : 64*1024);
 565
 566        memset(&stream, 0, sizeof(stream));
 567        git_inflate_init(&stream);
 568        stream.next_out = data;
 569        stream.avail_out = consume ? 64*1024 : obj->size;
 570
 571        do {
 572                ssize_t n = (len < 64*1024) ? (ssize_t)len : 64*1024;
 573                n = xpread(get_thread_data()->pack_fd, inbuf, n, from);
 574                if (n < 0)
 575                        die_errno(_("cannot pread pack file"));
 576                if (!n)
 577                        die(Q_("premature end of pack file, %"PRIuMAX" byte missing",
 578                               "premature end of pack file, %"PRIuMAX" bytes missing",
 579                               (unsigned int)len),
 580                            (uintmax_t)len);
 581                from += n;
 582                len -= n;
 583                stream.next_in = inbuf;
 584                stream.avail_in = n;
 585                if (!consume)
 586                        status = git_inflate(&stream, 0);
 587                else {
 588                        do {
 589                                status = git_inflate(&stream, 0);
 590                                if (consume(data, stream.next_out - data, cb_data)) {
 591                                        free(inbuf);
 592                                        free(data);
 593                                        return NULL;
 594                                }
 595                                stream.next_out = data;
 596                                stream.avail_out = 64*1024;
 597                        } while (status == Z_OK && stream.avail_in);
 598                }
 599        } while (len && status == Z_OK && !stream.avail_in);
 600
 601        /* This has been inflated OK when first encountered, so... */
 602        if (status != Z_STREAM_END || stream.total_out != obj->size)
 603                die(_("serious inflate inconsistency"));
 604
 605        git_inflate_end(&stream);
 606        free(inbuf);
 607        if (consume) {
 608                free(data);
 609                data = NULL;
 610        }
 611        return data;
 612}
 613
 614static void *get_data_from_pack(struct object_entry *obj)
 615{
 616        return unpack_data(obj, NULL, NULL);
 617}
 618
 619static int compare_ofs_delta_bases(off_t offset1, off_t offset2,
 620                                   enum object_type type1,
 621                                   enum object_type type2)
 622{
 623        int cmp = type1 - type2;
 624        if (cmp)
 625                return cmp;
 626        return offset1 < offset2 ? -1 :
 627               offset1 > offset2 ?  1 :
 628               0;
 629}
 630
 631static int find_ofs_delta(const off_t offset, enum object_type type)
 632{
 633        int first = 0, last = nr_ofs_deltas;
 634
 635        while (first < last) {
 636                int next = (first + last) / 2;
 637                struct ofs_delta_entry *delta = &ofs_deltas[next];
 638                int cmp;
 639
 640                cmp = compare_ofs_delta_bases(offset, delta->offset,
 641                                              type, objects[delta->obj_no].type);
 642                if (!cmp)
 643                        return next;
 644                if (cmp < 0) {
 645                        last = next;
 646                        continue;
 647                }
 648                first = next+1;
 649        }
 650        return -first-1;
 651}
 652
 653static void find_ofs_delta_children(off_t offset,
 654                                    int *first_index, int *last_index,
 655                                    enum object_type type)
 656{
 657        int first = find_ofs_delta(offset, type);
 658        int last = first;
 659        int end = nr_ofs_deltas - 1;
 660
 661        if (first < 0) {
 662                *first_index = 0;
 663                *last_index = -1;
 664                return;
 665        }
 666        while (first > 0 && ofs_deltas[first - 1].offset == offset)
 667                --first;
 668        while (last < end && ofs_deltas[last + 1].offset == offset)
 669                ++last;
 670        *first_index = first;
 671        *last_index = last;
 672}
 673
 674static int compare_ref_delta_bases(const unsigned char *sha1,
 675                                   const unsigned char *sha2,
 676                                   enum object_type type1,
 677                                   enum object_type type2)
 678{
 679        int cmp = type1 - type2;
 680        if (cmp)
 681                return cmp;
 682        return hashcmp(sha1, sha2);
 683}
 684
 685static int find_ref_delta(const unsigned char *sha1, enum object_type type)
 686{
 687        int first = 0, last = nr_ref_deltas;
 688
 689        while (first < last) {
 690                int next = (first + last) / 2;
 691                struct ref_delta_entry *delta = &ref_deltas[next];
 692                int cmp;
 693
 694                cmp = compare_ref_delta_bases(sha1, delta->sha1,
 695                                              type, objects[delta->obj_no].type);
 696                if (!cmp)
 697                        return next;
 698                if (cmp < 0) {
 699                        last = next;
 700                        continue;
 701                }
 702                first = next+1;
 703        }
 704        return -first-1;
 705}
 706
 707static void find_ref_delta_children(const unsigned char *sha1,
 708                                    int *first_index, int *last_index,
 709                                    enum object_type type)
 710{
 711        int first = find_ref_delta(sha1, type);
 712        int last = first;
 713        int end = nr_ref_deltas - 1;
 714
 715        if (first < 0) {
 716                *first_index = 0;
 717                *last_index = -1;
 718                return;
 719        }
 720        while (first > 0 && !hashcmp(ref_deltas[first - 1].sha1, sha1))
 721                --first;
 722        while (last < end && !hashcmp(ref_deltas[last + 1].sha1, sha1))
 723                ++last;
 724        *first_index = first;
 725        *last_index = last;
 726}
 727
 728struct compare_data {
 729        struct object_entry *entry;
 730        struct git_istream *st;
 731        unsigned char *buf;
 732        unsigned long buf_size;
 733};
 734
 735static int compare_objects(const unsigned char *buf, unsigned long size,
 736                           void *cb_data)
 737{
 738        struct compare_data *data = cb_data;
 739
 740        if (data->buf_size < size) {
 741                free(data->buf);
 742                data->buf = xmalloc(size);
 743                data->buf_size = size;
 744        }
 745
 746        while (size) {
 747                ssize_t len = read_istream(data->st, data->buf, size);
 748                if (len == 0)
 749                        die(_("SHA1 COLLISION FOUND WITH %s !"),
 750                            sha1_to_hex(data->entry->idx.sha1));
 751                if (len < 0)
 752                        die(_("unable to read %s"),
 753                            sha1_to_hex(data->entry->idx.sha1));
 754                if (memcmp(buf, data->buf, len))
 755                        die(_("SHA1 COLLISION FOUND WITH %s !"),
 756                            sha1_to_hex(data->entry->idx.sha1));
 757                size -= len;
 758                buf += len;
 759        }
 760        return 0;
 761}
 762
 763static int check_collison(struct object_entry *entry)
 764{
 765        struct compare_data data;
 766        enum object_type type;
 767        unsigned long size;
 768
 769        if (entry->size <= big_file_threshold || entry->type != OBJ_BLOB)
 770                return -1;
 771
 772        memset(&data, 0, sizeof(data));
 773        data.entry = entry;
 774        data.st = open_istream(entry->idx.sha1, &type, &size, NULL);
 775        if (!data.st)
 776                return -1;
 777        if (size != entry->size || type != entry->type)
 778                die(_("SHA1 COLLISION FOUND WITH %s !"),
 779                    sha1_to_hex(entry->idx.sha1));
 780        unpack_data(entry, compare_objects, &data);
 781        close_istream(data.st);
 782        free(data.buf);
 783        return 0;
 784}
 785
 786static void sha1_object(const void *data, struct object_entry *obj_entry,
 787                        unsigned long size, enum object_type type,
 788                        const unsigned char *sha1)
 789{
 790        void *new_data = NULL;
 791        int collision_test_needed = 0;
 792
 793        assert(data || obj_entry);
 794
 795        if (startup_info->have_repository) {
 796                read_lock();
 797                collision_test_needed = has_sha1_file_with_flags(sha1, HAS_SHA1_QUICK);
 798                read_unlock();
 799        }
 800
 801        if (collision_test_needed && !data) {
 802                read_lock();
 803                if (!check_collison(obj_entry))
 804                        collision_test_needed = 0;
 805                read_unlock();
 806        }
 807        if (collision_test_needed) {
 808                void *has_data;
 809                enum object_type has_type;
 810                unsigned long has_size;
 811                read_lock();
 812                has_type = sha1_object_info(sha1, &has_size);
 813                if (has_type != type || has_size != size)
 814                        die(_("SHA1 COLLISION FOUND WITH %s !"), sha1_to_hex(sha1));
 815                has_data = read_sha1_file(sha1, &has_type, &has_size);
 816                read_unlock();
 817                if (!data)
 818                        data = new_data = get_data_from_pack(obj_entry);
 819                if (!has_data)
 820                        die(_("cannot read existing object %s"), sha1_to_hex(sha1));
 821                if (size != has_size || type != has_type ||
 822                    memcmp(data, has_data, size) != 0)
 823                        die(_("SHA1 COLLISION FOUND WITH %s !"), sha1_to_hex(sha1));
 824                free(has_data);
 825        }
 826
 827        if (strict) {
 828                read_lock();
 829                if (type == OBJ_BLOB) {
 830                        struct blob *blob = lookup_blob(sha1);
 831                        if (blob)
 832                                blob->object.flags |= FLAG_CHECKED;
 833                        else
 834                                die(_("invalid blob object %s"), sha1_to_hex(sha1));
 835                } else {
 836                        struct object *obj;
 837                        int eaten;
 838                        void *buf = (void *) data;
 839
 840                        assert(data && "data can only be NULL for large _blobs_");
 841
 842                        /*
 843                         * we do not need to free the memory here, as the
 844                         * buf is deleted by the caller.
 845                         */
 846                        obj = parse_object_buffer(sha1, type, size, buf, &eaten);
 847                        if (!obj)
 848                                die(_("invalid %s"), typename(type));
 849                        if (do_fsck_object &&
 850                            fsck_object(obj, buf, size, &fsck_options))
 851                                die(_("Error in object"));
 852                        if (fsck_walk(obj, NULL, &fsck_options))
 853                                die(_("Not all child objects of %s are reachable"), oid_to_hex(&obj->oid));
 854
 855                        if (obj->type == OBJ_TREE) {
 856                                struct tree *item = (struct tree *) obj;
 857                                item->buffer = NULL;
 858                                obj->parsed = 0;
 859                        }
 860                        if (obj->type == OBJ_COMMIT) {
 861                                struct commit *commit = (struct commit *) obj;
 862                                if (detach_commit_buffer(commit, NULL) != data)
 863                                        die("BUG: parse_object_buffer transmogrified our buffer");
 864                        }
 865                        obj->flags |= FLAG_CHECKED;
 866                }
 867                read_unlock();
 868        }
 869
 870        free(new_data);
 871}
 872
 873/*
 874 * This function is part of find_unresolved_deltas(). There are two
 875 * walkers going in the opposite ways.
 876 *
 877 * The first one in find_unresolved_deltas() traverses down from
 878 * parent node to children, deflating nodes along the way. However,
 879 * memory for deflated nodes is limited by delta_base_cache_limit, so
 880 * at some point parent node's deflated content may be freed.
 881 *
 882 * The second walker is this function, which goes from current node up
 883 * to top parent if necessary to deflate the node. In normal
 884 * situation, its parent node would be already deflated, so it just
 885 * needs to apply delta.
 886 *
 887 * In the worst case scenario, parent node is no longer deflated because
 888 * we're running out of delta_base_cache_limit; we need to re-deflate
 889 * parents, possibly up to the top base.
 890 *
 891 * All deflated objects here are subject to be freed if we exceed
 892 * delta_base_cache_limit, just like in find_unresolved_deltas(), we
 893 * just need to make sure the last node is not freed.
 894 */
 895static void *get_base_data(struct base_data *c)
 896{
 897        if (!c->data) {
 898                struct object_entry *obj = c->obj;
 899                struct base_data **delta = NULL;
 900                int delta_nr = 0, delta_alloc = 0;
 901
 902                while (is_delta_type(c->obj->type) && !c->data) {
 903                        ALLOC_GROW(delta, delta_nr + 1, delta_alloc);
 904                        delta[delta_nr++] = c;
 905                        c = c->base;
 906                }
 907                if (!delta_nr) {
 908                        c->data = get_data_from_pack(obj);
 909                        c->size = obj->size;
 910                        get_thread_data()->base_cache_used += c->size;
 911                        prune_base_data(c);
 912                }
 913                for (; delta_nr > 0; delta_nr--) {
 914                        void *base, *raw;
 915                        c = delta[delta_nr - 1];
 916                        obj = c->obj;
 917                        base = get_base_data(c->base);
 918                        raw = get_data_from_pack(obj);
 919                        c->data = patch_delta(
 920                                base, c->base->size,
 921                                raw, obj->size,
 922                                &c->size);
 923                        free(raw);
 924                        if (!c->data)
 925                                bad_object(obj->idx.offset, _("failed to apply delta"));
 926                        get_thread_data()->base_cache_used += c->size;
 927                        prune_base_data(c);
 928                }
 929                free(delta);
 930        }
 931        return c->data;
 932}
 933
 934static void resolve_delta(struct object_entry *delta_obj,
 935                          struct base_data *base, struct base_data *result)
 936{
 937        void *base_data, *delta_data;
 938
 939        if (show_stat) {
 940                int i = delta_obj - objects;
 941                int j = base->obj - objects;
 942                obj_stat[i].delta_depth = obj_stat[j].delta_depth + 1;
 943                deepest_delta_lock();
 944                if (deepest_delta < obj_stat[i].delta_depth)
 945                        deepest_delta = obj_stat[i].delta_depth;
 946                deepest_delta_unlock();
 947                obj_stat[i].base_object_no = j;
 948        }
 949        delta_data = get_data_from_pack(delta_obj);
 950        base_data = get_base_data(base);
 951        result->obj = delta_obj;
 952        result->data = patch_delta(base_data, base->size,
 953                                   delta_data, delta_obj->size, &result->size);
 954        free(delta_data);
 955        if (!result->data)
 956                bad_object(delta_obj->idx.offset, _("failed to apply delta"));
 957        hash_sha1_file(result->data, result->size,
 958                       typename(delta_obj->real_type), delta_obj->idx.sha1);
 959        sha1_object(result->data, NULL, result->size, delta_obj->real_type,
 960                    delta_obj->idx.sha1);
 961        counter_lock();
 962        nr_resolved_deltas++;
 963        counter_unlock();
 964}
 965
 966/*
 967 * Standard boolean compare-and-swap: atomically check whether "*type" is
 968 * "want"; if so, swap in "set" and return true. Otherwise, leave it untouched
 969 * and return false.
 970 */
 971static int compare_and_swap_type(signed char *type,
 972                                 enum object_type want,
 973                                 enum object_type set)
 974{
 975        enum object_type old;
 976
 977        type_cas_lock();
 978        old = *type;
 979        if (old == want)
 980                *type = set;
 981        type_cas_unlock();
 982
 983        return old == want;
 984}
 985
 986static struct base_data *find_unresolved_deltas_1(struct base_data *base,
 987                                                  struct base_data *prev_base)
 988{
 989        if (base->ref_last == -1 && base->ofs_last == -1) {
 990                find_ref_delta_children(base->obj->idx.sha1,
 991                                        &base->ref_first, &base->ref_last,
 992                                        OBJ_REF_DELTA);
 993
 994                find_ofs_delta_children(base->obj->idx.offset,
 995                                        &base->ofs_first, &base->ofs_last,
 996                                        OBJ_OFS_DELTA);
 997
 998                if (base->ref_last == -1 && base->ofs_last == -1) {
 999                        free(base->data);
1000                        return NULL;
1001                }
1002
1003                link_base_data(prev_base, base);
1004        }
1005
1006        if (base->ref_first <= base->ref_last) {
1007                struct object_entry *child = objects + ref_deltas[base->ref_first].obj_no;
1008                struct base_data *result = alloc_base_data();
1009
1010                if (!compare_and_swap_type(&child->real_type, OBJ_REF_DELTA,
1011                                           base->obj->real_type))
1012                        die("BUG: child->real_type != OBJ_REF_DELTA");
1013
1014                resolve_delta(child, base, result);
1015                if (base->ref_first == base->ref_last && base->ofs_last == -1)
1016                        free_base_data(base);
1017
1018                base->ref_first++;
1019                return result;
1020        }
1021
1022        if (base->ofs_first <= base->ofs_last) {
1023                struct object_entry *child = objects + ofs_deltas[base->ofs_first].obj_no;
1024                struct base_data *result = alloc_base_data();
1025
1026                assert(child->real_type == OBJ_OFS_DELTA);
1027                child->real_type = base->obj->real_type;
1028                resolve_delta(child, base, result);
1029                if (base->ofs_first == base->ofs_last)
1030                        free_base_data(base);
1031
1032                base->ofs_first++;
1033                return result;
1034        }
1035
1036        unlink_base_data(base);
1037        return NULL;
1038}
1039
1040static void find_unresolved_deltas(struct base_data *base)
1041{
1042        struct base_data *new_base, *prev_base = NULL;
1043        for (;;) {
1044                new_base = find_unresolved_deltas_1(base, prev_base);
1045
1046                if (new_base) {
1047                        prev_base = base;
1048                        base = new_base;
1049                } else {
1050                        free(base);
1051                        base = prev_base;
1052                        if (!base)
1053                                return;
1054                        prev_base = base->base;
1055                }
1056        }
1057}
1058
1059static int compare_ofs_delta_entry(const void *a, const void *b)
1060{
1061        const struct ofs_delta_entry *delta_a = a;
1062        const struct ofs_delta_entry *delta_b = b;
1063
1064        return delta_a->offset < delta_b->offset ? -1 :
1065               delta_a->offset > delta_b->offset ?  1 :
1066               0;
1067}
1068
1069static int compare_ref_delta_entry(const void *a, const void *b)
1070{
1071        const struct ref_delta_entry *delta_a = a;
1072        const struct ref_delta_entry *delta_b = b;
1073
1074        return hashcmp(delta_a->sha1, delta_b->sha1);
1075}
1076
1077static void resolve_base(struct object_entry *obj)
1078{
1079        struct base_data *base_obj = alloc_base_data();
1080        base_obj->obj = obj;
1081        base_obj->data = NULL;
1082        find_unresolved_deltas(base_obj);
1083}
1084
1085#ifndef NO_PTHREADS
1086static void *threaded_second_pass(void *data)
1087{
1088        set_thread_data(data);
1089        for (;;) {
1090                int i;
1091                counter_lock();
1092                display_progress(progress, nr_resolved_deltas);
1093                counter_unlock();
1094                work_lock();
1095                while (nr_dispatched < nr_objects &&
1096                       is_delta_type(objects[nr_dispatched].type))
1097                        nr_dispatched++;
1098                if (nr_dispatched >= nr_objects) {
1099                        work_unlock();
1100                        break;
1101                }
1102                i = nr_dispatched++;
1103                work_unlock();
1104
1105                resolve_base(&objects[i]);
1106        }
1107        return NULL;
1108}
1109#endif
1110
1111/*
1112 * First pass:
1113 * - find locations of all objects;
1114 * - calculate SHA1 of all non-delta objects;
1115 * - remember base (SHA1 or offset) for all deltas.
1116 */
1117static void parse_pack_objects(unsigned char *sha1)
1118{
1119        int i, nr_delays = 0;
1120        struct ofs_delta_entry *ofs_delta = ofs_deltas;
1121        unsigned char ref_delta_sha1[20];
1122        struct stat st;
1123
1124        if (verbose)
1125                progress = start_progress(
1126                                from_stdin ? _("Receiving objects") : _("Indexing objects"),
1127                                nr_objects);
1128        for (i = 0; i < nr_objects; i++) {
1129                struct object_entry *obj = &objects[i];
1130                void *data = unpack_raw_entry(obj, &ofs_delta->offset,
1131                                              ref_delta_sha1, obj->idx.sha1);
1132                obj->real_type = obj->type;
1133                if (obj->type == OBJ_OFS_DELTA) {
1134                        nr_ofs_deltas++;
1135                        ofs_delta->obj_no = i;
1136                        ofs_delta++;
1137                } else if (obj->type == OBJ_REF_DELTA) {
1138                        ALLOC_GROW(ref_deltas, nr_ref_deltas + 1, ref_deltas_alloc);
1139                        hashcpy(ref_deltas[nr_ref_deltas].sha1, ref_delta_sha1);
1140                        ref_deltas[nr_ref_deltas].obj_no = i;
1141                        nr_ref_deltas++;
1142                } else if (!data) {
1143                        /* large blobs, check later */
1144                        obj->real_type = OBJ_BAD;
1145                        nr_delays++;
1146                } else
1147                        sha1_object(data, NULL, obj->size, obj->type, obj->idx.sha1);
1148                free(data);
1149                display_progress(progress, i+1);
1150        }
1151        objects[i].idx.offset = consumed_bytes;
1152        stop_progress(&progress);
1153
1154        /* Check pack integrity */
1155        flush();
1156        git_SHA1_Final(sha1, &input_ctx);
1157        if (hashcmp(fill(20), sha1))
1158                die(_("pack is corrupted (SHA1 mismatch)"));
1159        use(20);
1160
1161        /* If input_fd is a file, we should have reached its end now. */
1162        if (fstat(input_fd, &st))
1163                die_errno(_("cannot fstat packfile"));
1164        if (S_ISREG(st.st_mode) &&
1165                        lseek(input_fd, 0, SEEK_CUR) - input_len != st.st_size)
1166                die(_("pack has junk at the end"));
1167
1168        for (i = 0; i < nr_objects; i++) {
1169                struct object_entry *obj = &objects[i];
1170                if (obj->real_type != OBJ_BAD)
1171                        continue;
1172                obj->real_type = obj->type;
1173                sha1_object(NULL, obj, obj->size, obj->type, obj->idx.sha1);
1174                nr_delays--;
1175        }
1176        if (nr_delays)
1177                die(_("confusion beyond insanity in parse_pack_objects()"));
1178}
1179
1180/*
1181 * Second pass:
1182 * - for all non-delta objects, look if it is used as a base for
1183 *   deltas;
1184 * - if used as a base, uncompress the object and apply all deltas,
1185 *   recursively checking if the resulting object is used as a base
1186 *   for some more deltas.
1187 */
1188static void resolve_deltas(void)
1189{
1190        int i;
1191
1192        if (!nr_ofs_deltas && !nr_ref_deltas)
1193                return;
1194
1195        /* Sort deltas by base SHA1/offset for fast searching */
1196        QSORT(ofs_deltas, nr_ofs_deltas, compare_ofs_delta_entry);
1197        QSORT(ref_deltas, nr_ref_deltas, compare_ref_delta_entry);
1198
1199        if (verbose || show_resolving_progress)
1200                progress = start_progress(_("Resolving deltas"),
1201                                          nr_ref_deltas + nr_ofs_deltas);
1202
1203#ifndef NO_PTHREADS
1204        nr_dispatched = 0;
1205        if (nr_threads > 1 || getenv("GIT_FORCE_THREADS")) {
1206                init_thread();
1207                for (i = 0; i < nr_threads; i++) {
1208                        int ret = pthread_create(&thread_data[i].thread, NULL,
1209                                                 threaded_second_pass, thread_data + i);
1210                        if (ret)
1211                                die(_("unable to create thread: %s"),
1212                                    strerror(ret));
1213                }
1214                for (i = 0; i < nr_threads; i++)
1215                        pthread_join(thread_data[i].thread, NULL);
1216                cleanup_thread();
1217                return;
1218        }
1219#endif
1220
1221        for (i = 0; i < nr_objects; i++) {
1222                struct object_entry *obj = &objects[i];
1223
1224                if (is_delta_type(obj->type))
1225                        continue;
1226                resolve_base(obj);
1227                display_progress(progress, nr_resolved_deltas);
1228        }
1229}
1230
1231/*
1232 * Third pass:
1233 * - append objects to convert thin pack to full pack if required
1234 * - write the final 20-byte SHA-1
1235 */
1236static void fix_unresolved_deltas(struct sha1file *f);
1237static void conclude_pack(int fix_thin_pack, const char *curr_pack, unsigned char *pack_sha1)
1238{
1239        if (nr_ref_deltas + nr_ofs_deltas == nr_resolved_deltas) {
1240                stop_progress(&progress);
1241                /* Flush remaining pack final 20-byte SHA1. */
1242                flush();
1243                return;
1244        }
1245
1246        if (fix_thin_pack) {
1247                struct sha1file *f;
1248                unsigned char read_sha1[20], tail_sha1[20];
1249                struct strbuf msg = STRBUF_INIT;
1250                int nr_unresolved = nr_ofs_deltas + nr_ref_deltas - nr_resolved_deltas;
1251                int nr_objects_initial = nr_objects;
1252                if (nr_unresolved <= 0)
1253                        die(_("confusion beyond insanity"));
1254                REALLOC_ARRAY(objects, nr_objects + nr_unresolved + 1);
1255                memset(objects + nr_objects + 1, 0,
1256                       nr_unresolved * sizeof(*objects));
1257                f = sha1fd(output_fd, curr_pack);
1258                fix_unresolved_deltas(f);
1259                strbuf_addf(&msg, Q_("completed with %d local object",
1260                                     "completed with %d local objects",
1261                                     nr_objects - nr_objects_initial),
1262                            nr_objects - nr_objects_initial);
1263                stop_progress_msg(&progress, msg.buf);
1264                strbuf_release(&msg);
1265                sha1close(f, tail_sha1, 0);
1266                hashcpy(read_sha1, pack_sha1);
1267                fixup_pack_header_footer(output_fd, pack_sha1,
1268                                         curr_pack, nr_objects,
1269                                         read_sha1, consumed_bytes-20);
1270                if (hashcmp(read_sha1, tail_sha1) != 0)
1271                        die(_("Unexpected tail checksum for %s "
1272                              "(disk corruption?)"), curr_pack);
1273        }
1274        if (nr_ofs_deltas + nr_ref_deltas != nr_resolved_deltas)
1275                die(Q_("pack has %d unresolved delta",
1276                       "pack has %d unresolved deltas",
1277                       nr_ofs_deltas + nr_ref_deltas - nr_resolved_deltas),
1278                    nr_ofs_deltas + nr_ref_deltas - nr_resolved_deltas);
1279}
1280
1281static int write_compressed(struct sha1file *f, void *in, unsigned int size)
1282{
1283        git_zstream stream;
1284        int status;
1285        unsigned char outbuf[4096];
1286
1287        git_deflate_init(&stream, zlib_compression_level);
1288        stream.next_in = in;
1289        stream.avail_in = size;
1290
1291        do {
1292                stream.next_out = outbuf;
1293                stream.avail_out = sizeof(outbuf);
1294                status = git_deflate(&stream, Z_FINISH);
1295                sha1write(f, outbuf, sizeof(outbuf) - stream.avail_out);
1296        } while (status == Z_OK);
1297
1298        if (status != Z_STREAM_END)
1299                die(_("unable to deflate appended object (%d)"), status);
1300        size = stream.total_out;
1301        git_deflate_end(&stream);
1302        return size;
1303}
1304
1305static struct object_entry *append_obj_to_pack(struct sha1file *f,
1306                               const unsigned char *sha1, void *buf,
1307                               unsigned long size, enum object_type type)
1308{
1309        struct object_entry *obj = &objects[nr_objects++];
1310        unsigned char header[10];
1311        unsigned long s = size;
1312        int n = 0;
1313        unsigned char c = (type << 4) | (s & 15);
1314        s >>= 4;
1315        while (s) {
1316                header[n++] = c | 0x80;
1317                c = s & 0x7f;
1318                s >>= 7;
1319        }
1320        header[n++] = c;
1321        crc32_begin(f);
1322        sha1write(f, header, n);
1323        obj[0].size = size;
1324        obj[0].hdr_size = n;
1325        obj[0].type = type;
1326        obj[0].real_type = type;
1327        obj[1].idx.offset = obj[0].idx.offset + n;
1328        obj[1].idx.offset += write_compressed(f, buf, size);
1329        obj[0].idx.crc32 = crc32_end(f);
1330        sha1flush(f);
1331        hashcpy(obj->idx.sha1, sha1);
1332        return obj;
1333}
1334
1335static int delta_pos_compare(const void *_a, const void *_b)
1336{
1337        struct ref_delta_entry *a = *(struct ref_delta_entry **)_a;
1338        struct ref_delta_entry *b = *(struct ref_delta_entry **)_b;
1339        return a->obj_no - b->obj_no;
1340}
1341
1342static void fix_unresolved_deltas(struct sha1file *f)
1343{
1344        struct ref_delta_entry **sorted_by_pos;
1345        int i;
1346
1347        /*
1348         * Since many unresolved deltas may well be themselves base objects
1349         * for more unresolved deltas, we really want to include the
1350         * smallest number of base objects that would cover as much delta
1351         * as possible by picking the
1352         * trunc deltas first, allowing for other deltas to resolve without
1353         * additional base objects.  Since most base objects are to be found
1354         * before deltas depending on them, a good heuristic is to start
1355         * resolving deltas in the same order as their position in the pack.
1356         */
1357        ALLOC_ARRAY(sorted_by_pos, nr_ref_deltas);
1358        for (i = 0; i < nr_ref_deltas; i++)
1359                sorted_by_pos[i] = &ref_deltas[i];
1360        QSORT(sorted_by_pos, nr_ref_deltas, delta_pos_compare);
1361
1362        for (i = 0; i < nr_ref_deltas; i++) {
1363                struct ref_delta_entry *d = sorted_by_pos[i];
1364                enum object_type type;
1365                struct base_data *base_obj = alloc_base_data();
1366
1367                if (objects[d->obj_no].real_type != OBJ_REF_DELTA)
1368                        continue;
1369                base_obj->data = read_sha1_file(d->sha1, &type, &base_obj->size);
1370                if (!base_obj->data)
1371                        continue;
1372
1373                if (check_sha1_signature(d->sha1, base_obj->data,
1374                                base_obj->size, typename(type)))
1375                        die(_("local object %s is corrupt"), sha1_to_hex(d->sha1));
1376                base_obj->obj = append_obj_to_pack(f, d->sha1,
1377                                        base_obj->data, base_obj->size, type);
1378                find_unresolved_deltas(base_obj);
1379                display_progress(progress, nr_resolved_deltas);
1380        }
1381        free(sorted_by_pos);
1382}
1383
1384static void final(const char *final_pack_name, const char *curr_pack_name,
1385                  const char *final_index_name, const char *curr_index_name,
1386                  const char *keep_name, const char *keep_msg,
1387                  unsigned char *sha1)
1388{
1389        const char *report = "pack";
1390        struct strbuf pack_name = STRBUF_INIT;
1391        struct strbuf index_name = STRBUF_INIT;
1392        struct strbuf keep_name_buf = STRBUF_INIT;
1393        int err;
1394
1395        if (!from_stdin) {
1396                close(input_fd);
1397        } else {
1398                fsync_or_die(output_fd, curr_pack_name);
1399                err = close(output_fd);
1400                if (err)
1401                        die_errno(_("error while closing pack file"));
1402        }
1403
1404        if (keep_msg) {
1405                int keep_fd, keep_msg_len = strlen(keep_msg);
1406
1407                if (!keep_name)
1408                        keep_name = odb_pack_name(&keep_name_buf, sha1, "keep");
1409
1410                keep_fd = odb_pack_keep(keep_name);
1411                if (keep_fd < 0) {
1412                        if (errno != EEXIST)
1413                                die_errno(_("cannot write keep file '%s'"),
1414                                          keep_name);
1415                } else {
1416                        if (keep_msg_len > 0) {
1417                                write_or_die(keep_fd, keep_msg, keep_msg_len);
1418                                write_or_die(keep_fd, "\n", 1);
1419                        }
1420                        if (close(keep_fd) != 0)
1421                                die_errno(_("cannot close written keep file '%s'"),
1422                                          keep_name);
1423                        report = "keep";
1424                }
1425        }
1426
1427        if (final_pack_name != curr_pack_name) {
1428                if (!final_pack_name)
1429                        final_pack_name = odb_pack_name(&pack_name, sha1, "pack");
1430                if (finalize_object_file(curr_pack_name, final_pack_name))
1431                        die(_("cannot store pack file"));
1432        } else if (from_stdin)
1433                chmod(final_pack_name, 0444);
1434
1435        if (final_index_name != curr_index_name) {
1436                if (!final_index_name)
1437                        final_index_name = odb_pack_name(&index_name, sha1, "idx");
1438                if (finalize_object_file(curr_index_name, final_index_name))
1439                        die(_("cannot store index file"));
1440        } else
1441                chmod(final_index_name, 0444);
1442
1443        if (!from_stdin) {
1444                printf("%s\n", sha1_to_hex(sha1));
1445        } else {
1446                char buf[48];
1447                int len = snprintf(buf, sizeof(buf), "%s\t%s\n",
1448                                   report, sha1_to_hex(sha1));
1449                write_or_die(1, buf, len);
1450
1451                /*
1452                 * Let's just mimic git-unpack-objects here and write
1453                 * the last part of the input buffer to stdout.
1454                 */
1455                while (input_len) {
1456                        err = xwrite(1, input_buffer + input_offset, input_len);
1457                        if (err <= 0)
1458                                break;
1459                        input_len -= err;
1460                        input_offset += err;
1461                }
1462        }
1463
1464        strbuf_release(&index_name);
1465        strbuf_release(&pack_name);
1466        strbuf_release(&keep_name_buf);
1467}
1468
1469static int git_index_pack_config(const char *k, const char *v, void *cb)
1470{
1471        struct pack_idx_option *opts = cb;
1472
1473        if (!strcmp(k, "pack.indexversion")) {
1474                opts->version = git_config_int(k, v);
1475                if (opts->version > 2)
1476                        die(_("bad pack.indexversion=%"PRIu32), opts->version);
1477                return 0;
1478        }
1479        if (!strcmp(k, "pack.threads")) {
1480                nr_threads = git_config_int(k, v);
1481                if (nr_threads < 0)
1482                        die(_("invalid number of threads specified (%d)"),
1483                            nr_threads);
1484#ifdef NO_PTHREADS
1485                if (nr_threads != 1)
1486                        warning(_("no threads support, ignoring %s"), k);
1487                nr_threads = 1;
1488#endif
1489                return 0;
1490        }
1491        return git_default_config(k, v, cb);
1492}
1493
1494static int cmp_uint32(const void *a_, const void *b_)
1495{
1496        uint32_t a = *((uint32_t *)a_);
1497        uint32_t b = *((uint32_t *)b_);
1498
1499        return (a < b) ? -1 : (a != b);
1500}
1501
1502static void read_v2_anomalous_offsets(struct packed_git *p,
1503                                      struct pack_idx_option *opts)
1504{
1505        const uint32_t *idx1, *idx2;
1506        uint32_t i;
1507
1508        /* The address of the 4-byte offset table */
1509        idx1 = (((const uint32_t *)p->index_data)
1510                + 2 /* 8-byte header */
1511                + 256 /* fan out */
1512                + 5 * p->num_objects /* 20-byte SHA-1 table */
1513                + p->num_objects /* CRC32 table */
1514                );
1515
1516        /* The address of the 8-byte offset table */
1517        idx2 = idx1 + p->num_objects;
1518
1519        for (i = 0; i < p->num_objects; i++) {
1520                uint32_t off = ntohl(idx1[i]);
1521                if (!(off & 0x80000000))
1522                        continue;
1523                off = off & 0x7fffffff;
1524                check_pack_index_ptr(p, &idx2[off * 2]);
1525                if (idx2[off * 2])
1526                        continue;
1527                /*
1528                 * The real offset is ntohl(idx2[off * 2]) in high 4
1529                 * octets, and ntohl(idx2[off * 2 + 1]) in low 4
1530                 * octets.  But idx2[off * 2] is Zero!!!
1531                 */
1532                ALLOC_GROW(opts->anomaly, opts->anomaly_nr + 1, opts->anomaly_alloc);
1533                opts->anomaly[opts->anomaly_nr++] = ntohl(idx2[off * 2 + 1]);
1534        }
1535
1536        QSORT(opts->anomaly, opts->anomaly_nr, cmp_uint32);
1537}
1538
1539static void read_idx_option(struct pack_idx_option *opts, const char *pack_name)
1540{
1541        struct packed_git *p = add_packed_git(pack_name, strlen(pack_name), 1);
1542
1543        if (!p)
1544                die(_("Cannot open existing pack file '%s'"), pack_name);
1545        if (open_pack_index(p))
1546                die(_("Cannot open existing pack idx file for '%s'"), pack_name);
1547
1548        /* Read the attributes from the existing idx file */
1549        opts->version = p->index_version;
1550
1551        if (opts->version == 2)
1552                read_v2_anomalous_offsets(p, opts);
1553
1554        /*
1555         * Get rid of the idx file as we do not need it anymore.
1556         * NEEDSWORK: extract this bit from free_pack_by_name() in
1557         * sha1_file.c, perhaps?  It shouldn't matter very much as we
1558         * know we haven't installed this pack (hence we never have
1559         * read anything from it).
1560         */
1561        close_pack_index(p);
1562        free(p);
1563}
1564
1565static void show_pack_info(int stat_only)
1566{
1567        int i, baseobjects = nr_objects - nr_ref_deltas - nr_ofs_deltas;
1568        unsigned long *chain_histogram = NULL;
1569
1570        if (deepest_delta)
1571                chain_histogram = xcalloc(deepest_delta, sizeof(unsigned long));
1572
1573        for (i = 0; i < nr_objects; i++) {
1574                struct object_entry *obj = &objects[i];
1575
1576                if (is_delta_type(obj->type))
1577                        chain_histogram[obj_stat[i].delta_depth - 1]++;
1578                if (stat_only)
1579                        continue;
1580                printf("%s %-6s %lu %lu %"PRIuMAX,
1581                       sha1_to_hex(obj->idx.sha1),
1582                       typename(obj->real_type), obj->size,
1583                       (unsigned long)(obj[1].idx.offset - obj->idx.offset),
1584                       (uintmax_t)obj->idx.offset);
1585                if (is_delta_type(obj->type)) {
1586                        struct object_entry *bobj = &objects[obj_stat[i].base_object_no];
1587                        printf(" %u %s", obj_stat[i].delta_depth, sha1_to_hex(bobj->idx.sha1));
1588                }
1589                putchar('\n');
1590        }
1591
1592        if (baseobjects)
1593                printf_ln(Q_("non delta: %d object",
1594                             "non delta: %d objects",
1595                             baseobjects),
1596                          baseobjects);
1597        for (i = 0; i < deepest_delta; i++) {
1598                if (!chain_histogram[i])
1599                        continue;
1600                printf_ln(Q_("chain length = %d: %lu object",
1601                             "chain length = %d: %lu objects",
1602                             chain_histogram[i]),
1603                          i + 1,
1604                          chain_histogram[i]);
1605        }
1606}
1607
1608static const char *derive_filename(const char *pack_name, const char *suffix,
1609                                   struct strbuf *buf)
1610{
1611        size_t len;
1612        if (!strip_suffix(pack_name, ".pack", &len))
1613                die(_("packfile name '%s' does not end with '.pack'"),
1614                    pack_name);
1615        strbuf_add(buf, pack_name, len);
1616        strbuf_addstr(buf, suffix);
1617        return buf->buf;
1618}
1619
1620int cmd_index_pack(int argc, const char **argv, const char *prefix)
1621{
1622        int i, fix_thin_pack = 0, verify = 0, stat_only = 0;
1623        const char *curr_index;
1624        const char *index_name = NULL, *pack_name = NULL;
1625        const char *keep_name = NULL, *keep_msg = NULL;
1626        struct strbuf index_name_buf = STRBUF_INIT,
1627                      keep_name_buf = STRBUF_INIT;
1628        struct pack_idx_entry **idx_objects;
1629        struct pack_idx_option opts;
1630        unsigned char pack_sha1[20];
1631        unsigned foreign_nr = 1;        /* zero is a "good" value, assume bad */
1632        int report_end_of_input = 0;
1633
1634        if (argc == 2 && !strcmp(argv[1], "-h"))
1635                usage(index_pack_usage);
1636
1637        check_replace_refs = 0;
1638        fsck_options.walk = mark_link;
1639
1640        reset_pack_idx_option(&opts);
1641        git_config(git_index_pack_config, &opts);
1642        if (prefix && chdir(prefix))
1643                die(_("Cannot come back to cwd"));
1644
1645        for (i = 1; i < argc; i++) {
1646                const char *arg = argv[i];
1647
1648                if (*arg == '-') {
1649                        if (!strcmp(arg, "--stdin")) {
1650                                from_stdin = 1;
1651                        } else if (!strcmp(arg, "--fix-thin")) {
1652                                fix_thin_pack = 1;
1653                        } else if (!strcmp(arg, "--strict")) {
1654                                strict = 1;
1655                                do_fsck_object = 1;
1656                        } else if (skip_prefix(arg, "--strict=", &arg)) {
1657                                strict = 1;
1658                                do_fsck_object = 1;
1659                                fsck_set_msg_types(&fsck_options, arg);
1660                        } else if (!strcmp(arg, "--check-self-contained-and-connected")) {
1661                                strict = 1;
1662                                check_self_contained_and_connected = 1;
1663                        } else if (!strcmp(arg, "--verify")) {
1664                                verify = 1;
1665                        } else if (!strcmp(arg, "--verify-stat")) {
1666                                verify = 1;
1667                                show_stat = 1;
1668                        } else if (!strcmp(arg, "--verify-stat-only")) {
1669                                verify = 1;
1670                                show_stat = 1;
1671                                stat_only = 1;
1672                        } else if (!strcmp(arg, "--keep")) {
1673                                keep_msg = "";
1674                        } else if (starts_with(arg, "--keep=")) {
1675                                keep_msg = arg + 7;
1676                        } else if (starts_with(arg, "--threads=")) {
1677                                char *end;
1678                                nr_threads = strtoul(arg+10, &end, 0);
1679                                if (!arg[10] || *end || nr_threads < 0)
1680                                        usage(index_pack_usage);
1681#ifdef NO_PTHREADS
1682                                if (nr_threads != 1)
1683                                        warning(_("no threads support, "
1684                                                  "ignoring %s"), arg);
1685                                nr_threads = 1;
1686#endif
1687                        } else if (starts_with(arg, "--pack_header=")) {
1688                                struct pack_header *hdr;
1689                                char *c;
1690
1691                                hdr = (struct pack_header *)input_buffer;
1692                                hdr->hdr_signature = htonl(PACK_SIGNATURE);
1693                                hdr->hdr_version = htonl(strtoul(arg + 14, &c, 10));
1694                                if (*c != ',')
1695                                        die(_("bad %s"), arg);
1696                                hdr->hdr_entries = htonl(strtoul(c + 1, &c, 10));
1697                                if (*c)
1698                                        die(_("bad %s"), arg);
1699                                input_len = sizeof(*hdr);
1700                        } else if (!strcmp(arg, "-v")) {
1701                                verbose = 1;
1702                        } else if (!strcmp(arg, "--show-resolving-progress")) {
1703                                show_resolving_progress = 1;
1704                        } else if (!strcmp(arg, "--report-end-of-input")) {
1705                                report_end_of_input = 1;
1706                        } else if (!strcmp(arg, "-o")) {
1707                                if (index_name || (i+1) >= argc)
1708                                        usage(index_pack_usage);
1709                                index_name = argv[++i];
1710                        } else if (starts_with(arg, "--index-version=")) {
1711                                char *c;
1712                                opts.version = strtoul(arg + 16, &c, 10);
1713                                if (opts.version > 2)
1714                                        die(_("bad %s"), arg);
1715                                if (*c == ',')
1716                                        opts.off32_limit = strtoul(c+1, &c, 0);
1717                                if (*c || opts.off32_limit & 0x80000000)
1718                                        die(_("bad %s"), arg);
1719                        } else if (skip_prefix(arg, "--max-input-size=", &arg)) {
1720                                max_input_size = strtoumax(arg, NULL, 10);
1721                        } else
1722                                usage(index_pack_usage);
1723                        continue;
1724                }
1725
1726                if (pack_name)
1727                        usage(index_pack_usage);
1728                pack_name = arg;
1729        }
1730
1731        if (!pack_name && !from_stdin)
1732                usage(index_pack_usage);
1733        if (fix_thin_pack && !from_stdin)
1734                die(_("--fix-thin cannot be used without --stdin"));
1735        if (from_stdin && !startup_info->have_repository)
1736                die(_("--stdin requires a git repository"));
1737        if (!index_name && pack_name)
1738                index_name = derive_filename(pack_name, ".idx", &index_name_buf);
1739        if (keep_msg && !keep_name && pack_name)
1740                keep_name = derive_filename(pack_name, ".keep", &keep_name_buf);
1741
1742        if (verify) {
1743                if (!index_name)
1744                        die(_("--verify with no packfile name given"));
1745                read_idx_option(&opts, index_name);
1746                opts.flags |= WRITE_IDX_VERIFY | WRITE_IDX_STRICT;
1747        }
1748        if (strict)
1749                opts.flags |= WRITE_IDX_STRICT;
1750
1751#ifndef NO_PTHREADS
1752        if (!nr_threads) {
1753                nr_threads = online_cpus();
1754                /* An experiment showed that more threads does not mean faster */
1755                if (nr_threads > 3)
1756                        nr_threads = 3;
1757        }
1758#endif
1759
1760        curr_pack = open_pack_file(pack_name);
1761        parse_pack_header();
1762        objects = xcalloc(st_add(nr_objects, 1), sizeof(struct object_entry));
1763        if (show_stat)
1764                obj_stat = xcalloc(st_add(nr_objects, 1), sizeof(struct object_stat));
1765        ofs_deltas = xcalloc(nr_objects, sizeof(struct ofs_delta_entry));
1766        parse_pack_objects(pack_sha1);
1767        if (report_end_of_input)
1768                write_in_full(2, "\0", 1);
1769        resolve_deltas();
1770        conclude_pack(fix_thin_pack, curr_pack, pack_sha1);
1771        free(ofs_deltas);
1772        free(ref_deltas);
1773        if (strict)
1774                foreign_nr = check_objects();
1775
1776        if (show_stat)
1777                show_pack_info(stat_only);
1778
1779        ALLOC_ARRAY(idx_objects, nr_objects);
1780        for (i = 0; i < nr_objects; i++)
1781                idx_objects[i] = &objects[i].idx;
1782        curr_index = write_idx_file(index_name, idx_objects, nr_objects, &opts, pack_sha1);
1783        free(idx_objects);
1784
1785        if (!verify)
1786                final(pack_name, curr_pack,
1787                      index_name, curr_index,
1788                      keep_name, keep_msg,
1789                      pack_sha1);
1790        else
1791                close(input_fd);
1792        free(objects);
1793        strbuf_release(&index_name_buf);
1794        strbuf_release(&keep_name_buf);
1795        if (pack_name == NULL)
1796                free((void *) curr_pack);
1797        if (index_name == NULL)
1798                free((void *) curr_index);
1799
1800        /*
1801         * Let the caller know this pack is not self contained
1802         */
1803        if (check_self_contained_and_connected && foreign_nr)
1804                return 1;
1805
1806        return 0;
1807}