Use git_open_noatime when accessing pack data
[git] / sha1_file.c
1 /*
2  * GIT - The information manager from hell
3  *
4  * Copyright (C) Linus Torvalds, 2005
5  *
6  * This handles basic git sha1 object files - packing, unpacking,
7  * creation etc.
8  */
9 #include "cache.h"
10 #include "delta.h"
11 #include "pack.h"
12 #include "blob.h"
13 #include "commit.h"
14 #include "tag.h"
15 #include "tree.h"
16 #include "refs.h"
17 #include "pack-revindex.h"
18 #include "sha1-lookup.h"
19
20 #ifndef O_NOATIME
21 #if defined(__linux__) && (defined(__i386__) || defined(__PPC__))
22 #define O_NOATIME 01000000
23 #else
24 #define O_NOATIME 0
25 #endif
26 #endif
27
28 #ifdef NO_C99_FORMAT
29 #define SZ_FMT "lu"
30 static unsigned long sz_fmt(size_t s) { return (unsigned long)s; }
31 #else
32 #define SZ_FMT "zu"
33 static size_t sz_fmt(size_t s) { return s; }
34 #endif
35
36 const unsigned char null_sha1[20];
37
38 static int git_open_noatime(const char *name);
39
40 int safe_create_leading_directories(char *path)
41 {
42         char *pos = path + offset_1st_component(path);
43         struct stat st;
44
45         while (pos) {
46                 pos = strchr(pos, '/');
47                 if (!pos)
48                         break;
49                 while (*++pos == '/')
50                         ;
51                 if (!*pos)
52                         break;
53                 *--pos = '\0';
54                 if (!stat(path, &st)) {
55                         /* path exists */
56                         if (!S_ISDIR(st.st_mode)) {
57                                 *pos = '/';
58                                 return -3;
59                         }
60                 }
61                 else if (mkdir(path, 0777)) {
62                         *pos = '/';
63                         return -1;
64                 }
65                 else if (adjust_shared_perm(path)) {
66                         *pos = '/';
67                         return -2;
68                 }
69                 *pos++ = '/';
70         }
71         return 0;
72 }
73
74 int safe_create_leading_directories_const(const char *path)
75 {
76         /* path points to cache entries, so xstrdup before messing with it */
77         char *buf = xstrdup(path);
78         int result = safe_create_leading_directories(buf);
79         free(buf);
80         return result;
81 }
82
83 static void fill_sha1_path(char *pathbuf, const unsigned char *sha1)
84 {
85         int i;
86         for (i = 0; i < 20; i++) {
87                 static char hex[] = "0123456789abcdef";
88                 unsigned int val = sha1[i];
89                 char *pos = pathbuf + i*2 + (i > 0);
90                 *pos++ = hex[val >> 4];
91                 *pos = hex[val & 0xf];
92         }
93 }
94
95 /*
96  * NOTE! This returns a statically allocated buffer, so you have to be
97  * careful about using it. Do an "xstrdup()" if you need to save the
98  * filename.
99  *
100  * Also note that this returns the location for creating.  Reading
101  * SHA1 file can happen from any alternate directory listed in the
102  * DB_ENVIRONMENT environment variable if it is not found in
103  * the primary object database.
104  */
105 char *sha1_file_name(const unsigned char *sha1)
106 {
107         static char buf[PATH_MAX];
108         const char *objdir;
109         int len;
110
111         objdir = get_object_directory();
112         len = strlen(objdir);
113
114         /* '/' + sha1(2) + '/' + sha1(38) + '\0' */
115         if (len + 43 > PATH_MAX)
116                 die("insanely long object directory %s", objdir);
117         memcpy(buf, objdir, len);
118         buf[len] = '/';
119         buf[len+3] = '/';
120         buf[len+42] = '\0';
121         fill_sha1_path(buf + len + 1, sha1);
122         return buf;
123 }
124
125 static char *sha1_get_pack_name(const unsigned char *sha1,
126                                 char **name, char **base, const char *which)
127 {
128         static const char hex[] = "0123456789abcdef";
129         char *buf;
130         int i;
131
132         if (!*base) {
133                 const char *sha1_file_directory = get_object_directory();
134                 int len = strlen(sha1_file_directory);
135                 *base = xmalloc(len + 60);
136                 sprintf(*base, "%s/pack/pack-1234567890123456789012345678901234567890.%s",
137                         sha1_file_directory, which);
138                 *name = *base + len + 11;
139         }
140
141         buf = *name;
142
143         for (i = 0; i < 20; i++) {
144                 unsigned int val = *sha1++;
145                 *buf++ = hex[val >> 4];
146                 *buf++ = hex[val & 0xf];
147         }
148
149         return *base;
150 }
151
152 char *sha1_pack_name(const unsigned char *sha1)
153 {
154         static char *name, *base;
155
156         return sha1_get_pack_name(sha1, &name, &base, "pack");
157 }
158
159 char *sha1_pack_index_name(const unsigned char *sha1)
160 {
161         static char *name, *base;
162
163         return sha1_get_pack_name(sha1, &name, &base, "idx");
164 }
165
166 struct alternate_object_database *alt_odb_list;
167 static struct alternate_object_database **alt_odb_tail;
168
169 static void read_info_alternates(const char * alternates, int depth);
170
171 /*
172  * Prepare alternate object database registry.
173  *
174  * The variable alt_odb_list points at the list of struct
175  * alternate_object_database.  The elements on this list come from
176  * non-empty elements from colon separated ALTERNATE_DB_ENVIRONMENT
177  * environment variable, and $GIT_OBJECT_DIRECTORY/info/alternates,
178  * whose contents is similar to that environment variable but can be
179  * LF separated.  Its base points at a statically allocated buffer that
180  * contains "/the/directory/corresponding/to/.git/objects/...", while
181  * its name points just after the slash at the end of ".git/objects/"
182  * in the example above, and has enough space to hold 40-byte hex
183  * SHA1, an extra slash for the first level indirection, and the
184  * terminating NUL.
185  */
186 static int link_alt_odb_entry(const char * entry, int len, const char * relative_base, int depth)
187 {
188         const char *objdir = get_object_directory();
189         struct alternate_object_database *ent;
190         struct alternate_object_database *alt;
191         /* 43 = 40-byte + 2 '/' + terminating NUL */
192         int pfxlen = len;
193         int entlen = pfxlen + 43;
194         int base_len = -1;
195
196         if (!is_absolute_path(entry) && relative_base) {
197                 /* Relative alt-odb */
198                 if (base_len < 0)
199                         base_len = strlen(relative_base) + 1;
200                 entlen += base_len;
201                 pfxlen += base_len;
202         }
203         ent = xmalloc(sizeof(*ent) + entlen);
204
205         if (!is_absolute_path(entry) && relative_base) {
206                 memcpy(ent->base, relative_base, base_len - 1);
207                 ent->base[base_len - 1] = '/';
208                 memcpy(ent->base + base_len, entry, len);
209         }
210         else
211                 memcpy(ent->base, entry, pfxlen);
212
213         ent->name = ent->base + pfxlen + 1;
214         ent->base[pfxlen + 3] = '/';
215         ent->base[pfxlen] = ent->base[entlen-1] = 0;
216
217         /* Detect cases where alternate disappeared */
218         if (!is_directory(ent->base)) {
219                 error("object directory %s does not exist; "
220                       "check .git/objects/info/alternates.",
221                       ent->base);
222                 free(ent);
223                 return -1;
224         }
225
226         /* Prevent the common mistake of listing the same
227          * thing twice, or object directory itself.
228          */
229         for (alt = alt_odb_list; alt; alt = alt->next) {
230                 if (!memcmp(ent->base, alt->base, pfxlen)) {
231                         free(ent);
232                         return -1;
233                 }
234         }
235         if (!memcmp(ent->base, objdir, pfxlen)) {
236                 free(ent);
237                 return -1;
238         }
239
240         /* add the alternate entry */
241         *alt_odb_tail = ent;
242         alt_odb_tail = &(ent->next);
243         ent->next = NULL;
244
245         /* recursively add alternates */
246         read_info_alternates(ent->base, depth + 1);
247
248         ent->base[pfxlen] = '/';
249
250         return 0;
251 }
252
253 static void link_alt_odb_entries(const char *alt, const char *ep, int sep,
254                                  const char *relative_base, int depth)
255 {
256         const char *cp, *last;
257
258         if (depth > 5) {
259                 error("%s: ignoring alternate object stores, nesting too deep.",
260                                 relative_base);
261                 return;
262         }
263
264         last = alt;
265         while (last < ep) {
266                 cp = last;
267                 if (cp < ep && *cp == '#') {
268                         while (cp < ep && *cp != sep)
269                                 cp++;
270                         last = cp + 1;
271                         continue;
272                 }
273                 while (cp < ep && *cp != sep)
274                         cp++;
275                 if (last != cp) {
276                         if (!is_absolute_path(last) && depth) {
277                                 error("%s: ignoring relative alternate object store %s",
278                                                 relative_base, last);
279                         } else {
280                                 link_alt_odb_entry(last, cp - last,
281                                                 relative_base, depth);
282                         }
283                 }
284                 while (cp < ep && *cp == sep)
285                         cp++;
286                 last = cp;
287         }
288 }
289
290 static void read_info_alternates(const char * relative_base, int depth)
291 {
292         char *map;
293         size_t mapsz;
294         struct stat st;
295         const char alt_file_name[] = "info/alternates";
296         /* Given that relative_base is no longer than PATH_MAX,
297            ensure that "path" has enough space to append "/", the
298            file name, "info/alternates", and a trailing NUL.  */
299         char path[PATH_MAX + 1 + sizeof alt_file_name];
300         int fd;
301
302         sprintf(path, "%s/%s", relative_base, alt_file_name);
303         fd = git_open_noatime(path);
304         if (fd < 0)
305                 return;
306         if (fstat(fd, &st) || (st.st_size == 0)) {
307                 close(fd);
308                 return;
309         }
310         mapsz = xsize_t(st.st_size);
311         map = xmmap(NULL, mapsz, PROT_READ, MAP_PRIVATE, fd, 0);
312         close(fd);
313
314         link_alt_odb_entries(map, map + mapsz, '\n', relative_base, depth);
315
316         munmap(map, mapsz);
317 }
318
319 void add_to_alternates_file(const char *reference)
320 {
321         struct lock_file *lock = xcalloc(1, sizeof(struct lock_file));
322         int fd = hold_lock_file_for_append(lock, git_path("objects/info/alternates"), LOCK_DIE_ON_ERROR);
323         char *alt = mkpath("%s/objects\n", reference);
324         write_or_die(fd, alt, strlen(alt));
325         if (commit_lock_file(lock))
326                 die("could not close alternates file");
327         if (alt_odb_tail)
328                 link_alt_odb_entries(alt, alt + strlen(alt), '\n', NULL, 0);
329 }
330
331 void foreach_alt_odb(alt_odb_fn fn, void *cb)
332 {
333         struct alternate_object_database *ent;
334
335         prepare_alt_odb();
336         for (ent = alt_odb_list; ent; ent = ent->next)
337                 if (fn(ent, cb))
338                         return;
339 }
340
341 void prepare_alt_odb(void)
342 {
343         const char *alt;
344
345         if (alt_odb_tail)
346                 return;
347
348         alt = getenv(ALTERNATE_DB_ENVIRONMENT);
349         if (!alt) alt = "";
350
351         alt_odb_tail = &alt_odb_list;
352         link_alt_odb_entries(alt, alt + strlen(alt), PATH_SEP, NULL, 0);
353
354         read_info_alternates(get_object_directory(), 0);
355 }
356
357 static int has_loose_object_local(const unsigned char *sha1)
358 {
359         char *name = sha1_file_name(sha1);
360         return !access(name, F_OK);
361 }
362
363 int has_loose_object_nonlocal(const unsigned char *sha1)
364 {
365         struct alternate_object_database *alt;
366         prepare_alt_odb();
367         for (alt = alt_odb_list; alt; alt = alt->next) {
368                 fill_sha1_path(alt->name, sha1);
369                 if (!access(alt->base, F_OK))
370                         return 1;
371         }
372         return 0;
373 }
374
375 static int has_loose_object(const unsigned char *sha1)
376 {
377         return has_loose_object_local(sha1) ||
378                has_loose_object_nonlocal(sha1);
379 }
380
381 static unsigned int pack_used_ctr;
382 static unsigned int pack_mmap_calls;
383 static unsigned int peak_pack_open_windows;
384 static unsigned int pack_open_windows;
385 static size_t peak_pack_mapped;
386 static size_t pack_mapped;
387 struct packed_git *packed_git;
388
389 void pack_report(void)
390 {
391         fprintf(stderr,
392                 "pack_report: getpagesize()            = %10" SZ_FMT "\n"
393                 "pack_report: core.packedGitWindowSize = %10" SZ_FMT "\n"
394                 "pack_report: core.packedGitLimit      = %10" SZ_FMT "\n",
395                 sz_fmt(getpagesize()),
396                 sz_fmt(packed_git_window_size),
397                 sz_fmt(packed_git_limit));
398         fprintf(stderr,
399                 "pack_report: pack_used_ctr            = %10u\n"
400                 "pack_report: pack_mmap_calls          = %10u\n"
401                 "pack_report: pack_open_windows        = %10u / %10u\n"
402                 "pack_report: pack_mapped              = "
403                         "%10" SZ_FMT " / %10" SZ_FMT "\n",
404                 pack_used_ctr,
405                 pack_mmap_calls,
406                 pack_open_windows, peak_pack_open_windows,
407                 sz_fmt(pack_mapped), sz_fmt(peak_pack_mapped));
408 }
409
410 static int check_packed_git_idx(const char *path,  struct packed_git *p)
411 {
412         void *idx_map;
413         struct pack_idx_header *hdr;
414         size_t idx_size;
415         uint32_t version, nr, i, *index;
416         int fd = git_open_noatime(path);
417         struct stat st;
418
419         if (fd < 0)
420                 return -1;
421         if (fstat(fd, &st)) {
422                 close(fd);
423                 return -1;
424         }
425         idx_size = xsize_t(st.st_size);
426         if (idx_size < 4 * 256 + 20 + 20) {
427                 close(fd);
428                 return error("index file %s is too small", path);
429         }
430         idx_map = xmmap(NULL, idx_size, PROT_READ, MAP_PRIVATE, fd, 0);
431         close(fd);
432
433         hdr = idx_map;
434         if (hdr->idx_signature == htonl(PACK_IDX_SIGNATURE)) {
435                 version = ntohl(hdr->idx_version);
436                 if (version < 2 || version > 2) {
437                         munmap(idx_map, idx_size);
438                         return error("index file %s is version %"PRIu32
439                                      " and is not supported by this binary"
440                                      " (try upgrading GIT to a newer version)",
441                                      path, version);
442                 }
443         } else
444                 version = 1;
445
446         nr = 0;
447         index = idx_map;
448         if (version > 1)
449                 index += 2;  /* skip index header */
450         for (i = 0; i < 256; i++) {
451                 uint32_t n = ntohl(index[i]);
452                 if (n < nr) {
453                         munmap(idx_map, idx_size);
454                         return error("non-monotonic index %s", path);
455                 }
456                 nr = n;
457         }
458
459         if (version == 1) {
460                 /*
461                  * Total size:
462                  *  - 256 index entries 4 bytes each
463                  *  - 24-byte entries * nr (20-byte sha1 + 4-byte offset)
464                  *  - 20-byte SHA1 of the packfile
465                  *  - 20-byte SHA1 file checksum
466                  */
467                 if (idx_size != 4*256 + nr * 24 + 20 + 20) {
468                         munmap(idx_map, idx_size);
469                         return error("wrong index v1 file size in %s", path);
470                 }
471         } else if (version == 2) {
472                 /*
473                  * Minimum size:
474                  *  - 8 bytes of header
475                  *  - 256 index entries 4 bytes each
476                  *  - 20-byte sha1 entry * nr
477                  *  - 4-byte crc entry * nr
478                  *  - 4-byte offset entry * nr
479                  *  - 20-byte SHA1 of the packfile
480                  *  - 20-byte SHA1 file checksum
481                  * And after the 4-byte offset table might be a
482                  * variable sized table containing 8-byte entries
483                  * for offsets larger than 2^31.
484                  */
485                 unsigned long min_size = 8 + 4*256 + nr*(20 + 4 + 4) + 20 + 20;
486                 unsigned long max_size = min_size;
487                 if (nr)
488                         max_size += (nr - 1)*8;
489                 if (idx_size < min_size || idx_size > max_size) {
490                         munmap(idx_map, idx_size);
491                         return error("wrong index v2 file size in %s", path);
492                 }
493                 if (idx_size != min_size &&
494                     /*
495                      * make sure we can deal with large pack offsets.
496                      * 31-bit signed offset won't be enough, neither
497                      * 32-bit unsigned one will be.
498                      */
499                     (sizeof(off_t) <= 4)) {
500                         munmap(idx_map, idx_size);
501                         return error("pack too large for current definition of off_t in %s", path);
502                 }
503         }
504
505         p->index_version = version;
506         p->index_data = idx_map;
507         p->index_size = idx_size;
508         p->num_objects = nr;
509         return 0;
510 }
511
512 int open_pack_index(struct packed_git *p)
513 {
514         char *idx_name;
515         int ret;
516
517         if (p->index_data)
518                 return 0;
519
520         idx_name = xstrdup(p->pack_name);
521         strcpy(idx_name + strlen(idx_name) - strlen(".pack"), ".idx");
522         ret = check_packed_git_idx(idx_name, p);
523         free(idx_name);
524         return ret;
525 }
526
527 static void scan_windows(struct packed_git *p,
528         struct packed_git **lru_p,
529         struct pack_window **lru_w,
530         struct pack_window **lru_l)
531 {
532         struct pack_window *w, *w_l;
533
534         for (w_l = NULL, w = p->windows; w; w = w->next) {
535                 if (!w->inuse_cnt) {
536                         if (!*lru_w || w->last_used < (*lru_w)->last_used) {
537                                 *lru_p = p;
538                                 *lru_w = w;
539                                 *lru_l = w_l;
540                         }
541                 }
542                 w_l = w;
543         }
544 }
545
546 static int unuse_one_window(struct packed_git *current, int keep_fd)
547 {
548         struct packed_git *p, *lru_p = NULL;
549         struct pack_window *lru_w = NULL, *lru_l = NULL;
550
551         if (current)
552                 scan_windows(current, &lru_p, &lru_w, &lru_l);
553         for (p = packed_git; p; p = p->next)
554                 scan_windows(p, &lru_p, &lru_w, &lru_l);
555         if (lru_p) {
556                 munmap(lru_w->base, lru_w->len);
557                 pack_mapped -= lru_w->len;
558                 if (lru_l)
559                         lru_l->next = lru_w->next;
560                 else {
561                         lru_p->windows = lru_w->next;
562                         if (!lru_p->windows && lru_p->pack_fd != keep_fd) {
563                                 close(lru_p->pack_fd);
564                                 lru_p->pack_fd = -1;
565                         }
566                 }
567                 free(lru_w);
568                 pack_open_windows--;
569                 return 1;
570         }
571         return 0;
572 }
573
574 void release_pack_memory(size_t need, int fd)
575 {
576         size_t cur = pack_mapped;
577         while (need >= (cur - pack_mapped) && unuse_one_window(NULL, fd))
578                 ; /* nothing */
579 }
580
581 void close_pack_windows(struct packed_git *p)
582 {
583         while (p->windows) {
584                 struct pack_window *w = p->windows;
585
586                 if (w->inuse_cnt)
587                         die("pack '%s' still has open windows to it",
588                             p->pack_name);
589                 munmap(w->base, w->len);
590                 pack_mapped -= w->len;
591                 pack_open_windows--;
592                 p->windows = w->next;
593                 free(w);
594         }
595 }
596
597 void unuse_pack(struct pack_window **w_cursor)
598 {
599         struct pack_window *w = *w_cursor;
600         if (w) {
601                 w->inuse_cnt--;
602                 *w_cursor = NULL;
603         }
604 }
605
606 void close_pack_index(struct packed_git *p)
607 {
608         if (p->index_data) {
609                 munmap((void *)p->index_data, p->index_size);
610                 p->index_data = NULL;
611         }
612 }
613
614 /*
615  * This is used by git-repack in case a newly created pack happens to
616  * contain the same set of objects as an existing one.  In that case
617  * the resulting file might be different even if its name would be the
618  * same.  It is best to close any reference to the old pack before it is
619  * replaced on disk.  Of course no index pointers nor windows for given pack
620  * must subsist at this point.  If ever objects from this pack are requested
621  * again, the new version of the pack will be reinitialized through
622  * reprepare_packed_git().
623  */
624 void free_pack_by_name(const char *pack_name)
625 {
626         struct packed_git *p, **pp = &packed_git;
627
628         while (*pp) {
629                 p = *pp;
630                 if (strcmp(pack_name, p->pack_name) == 0) {
631                         clear_delta_base_cache();
632                         close_pack_windows(p);
633                         if (p->pack_fd != -1)
634                                 close(p->pack_fd);
635                         close_pack_index(p);
636                         free(p->bad_object_sha1);
637                         *pp = p->next;
638                         free(p);
639                         return;
640                 }
641                 pp = &p->next;
642         }
643 }
644
645 /*
646  * Do not call this directly as this leaks p->pack_fd on error return;
647  * call open_packed_git() instead.
648  */
649 static int open_packed_git_1(struct packed_git *p)
650 {
651         struct stat st;
652         struct pack_header hdr;
653         unsigned char sha1[20];
654         unsigned char *idx_sha1;
655         long fd_flag;
656
657         if (!p->index_data && open_pack_index(p))
658                 return error("packfile %s index unavailable", p->pack_name);
659
660         p->pack_fd = git_open_noatime(p->pack_name);
661         while (p->pack_fd < 0 && errno == EMFILE && unuse_one_window(p, -1))
662                 p->pack_fd = git_open_noatime(p->pack_name);
663         if (p->pack_fd < 0 || fstat(p->pack_fd, &st))
664                 return -1;
665
666         /* If we created the struct before we had the pack we lack size. */
667         if (!p->pack_size) {
668                 if (!S_ISREG(st.st_mode))
669                         return error("packfile %s not a regular file", p->pack_name);
670                 p->pack_size = st.st_size;
671         } else if (p->pack_size != st.st_size)
672                 return error("packfile %s size changed", p->pack_name);
673
674         /* We leave these file descriptors open with sliding mmap;
675          * there is no point keeping them open across exec(), though.
676          */
677         fd_flag = fcntl(p->pack_fd, F_GETFD, 0);
678         if (fd_flag < 0)
679                 return error("cannot determine file descriptor flags");
680         fd_flag |= FD_CLOEXEC;
681         if (fcntl(p->pack_fd, F_SETFD, fd_flag) == -1)
682                 return error("cannot set FD_CLOEXEC");
683
684         /* Verify we recognize this pack file format. */
685         if (read_in_full(p->pack_fd, &hdr, sizeof(hdr)) != sizeof(hdr))
686                 return error("file %s is far too short to be a packfile", p->pack_name);
687         if (hdr.hdr_signature != htonl(PACK_SIGNATURE))
688                 return error("file %s is not a GIT packfile", p->pack_name);
689         if (!pack_version_ok(hdr.hdr_version))
690                 return error("packfile %s is version %"PRIu32" and not"
691                         " supported (try upgrading GIT to a newer version)",
692                         p->pack_name, ntohl(hdr.hdr_version));
693
694         /* Verify the pack matches its index. */
695         if (p->num_objects != ntohl(hdr.hdr_entries))
696                 return error("packfile %s claims to have %"PRIu32" objects"
697                              " while index indicates %"PRIu32" objects",
698                              p->pack_name, ntohl(hdr.hdr_entries),
699                              p->num_objects);
700         if (lseek(p->pack_fd, p->pack_size - sizeof(sha1), SEEK_SET) == -1)
701                 return error("end of packfile %s is unavailable", p->pack_name);
702         if (read_in_full(p->pack_fd, sha1, sizeof(sha1)) != sizeof(sha1))
703                 return error("packfile %s signature is unavailable", p->pack_name);
704         idx_sha1 = ((unsigned char *)p->index_data) + p->index_size - 40;
705         if (hashcmp(sha1, idx_sha1))
706                 return error("packfile %s does not match index", p->pack_name);
707         return 0;
708 }
709
710 static int open_packed_git(struct packed_git *p)
711 {
712         if (!open_packed_git_1(p))
713                 return 0;
714         if (p->pack_fd != -1) {
715                 close(p->pack_fd);
716                 p->pack_fd = -1;
717         }
718         return -1;
719 }
720
721 static int in_window(struct pack_window *win, off_t offset)
722 {
723         /* We must promise at least 20 bytes (one hash) after the
724          * offset is available from this window, otherwise the offset
725          * is not actually in this window and a different window (which
726          * has that one hash excess) must be used.  This is to support
727          * the object header and delta base parsing routines below.
728          */
729         off_t win_off = win->offset;
730         return win_off <= offset
731                 && (offset + 20) <= (win_off + win->len);
732 }
733
734 unsigned char *use_pack(struct packed_git *p,
735                 struct pack_window **w_cursor,
736                 off_t offset,
737                 unsigned int *left)
738 {
739         struct pack_window *win = *w_cursor;
740
741         if (p->pack_fd == -1 && open_packed_git(p))
742                 die("packfile %s cannot be accessed", p->pack_name);
743
744         /* Since packfiles end in a hash of their content and it's
745          * pointless to ask for an offset into the middle of that
746          * hash, and the in_window function above wouldn't match
747          * don't allow an offset too close to the end of the file.
748          */
749         if (offset > (p->pack_size - 20))
750                 die("offset beyond end of packfile (truncated pack?)");
751
752         if (!win || !in_window(win, offset)) {
753                 if (win)
754                         win->inuse_cnt--;
755                 for (win = p->windows; win; win = win->next) {
756                         if (in_window(win, offset))
757                                 break;
758                 }
759                 if (!win) {
760                         size_t window_align = packed_git_window_size / 2;
761                         off_t len;
762                         win = xcalloc(1, sizeof(*win));
763                         win->offset = (offset / window_align) * window_align;
764                         len = p->pack_size - win->offset;
765                         if (len > packed_git_window_size)
766                                 len = packed_git_window_size;
767                         win->len = (size_t)len;
768                         pack_mapped += win->len;
769                         while (packed_git_limit < pack_mapped
770                                 && unuse_one_window(p, p->pack_fd))
771                                 ; /* nothing */
772                         win->base = xmmap(NULL, win->len,
773                                 PROT_READ, MAP_PRIVATE,
774                                 p->pack_fd, win->offset);
775                         if (win->base == MAP_FAILED)
776                                 die("packfile %s cannot be mapped: %s",
777                                         p->pack_name,
778                                         strerror(errno));
779                         pack_mmap_calls++;
780                         pack_open_windows++;
781                         if (pack_mapped > peak_pack_mapped)
782                                 peak_pack_mapped = pack_mapped;
783                         if (pack_open_windows > peak_pack_open_windows)
784                                 peak_pack_open_windows = pack_open_windows;
785                         win->next = p->windows;
786                         p->windows = win;
787                 }
788         }
789         if (win != *w_cursor) {
790                 win->last_used = pack_used_ctr++;
791                 win->inuse_cnt++;
792                 *w_cursor = win;
793         }
794         offset -= win->offset;
795         if (left)
796                 *left = win->len - xsize_t(offset);
797         return win->base + offset;
798 }
799
800 static struct packed_git *alloc_packed_git(int extra)
801 {
802         struct packed_git *p = xmalloc(sizeof(*p) + extra);
803         memset(p, 0, sizeof(*p));
804         p->pack_fd = -1;
805         return p;
806 }
807
808 struct packed_git *add_packed_git(const char *path, int path_len, int local)
809 {
810         struct stat st;
811         struct packed_git *p = alloc_packed_git(path_len + 2);
812
813         /*
814          * Make sure a corresponding .pack file exists and that
815          * the index looks sane.
816          */
817         path_len -= strlen(".idx");
818         if (path_len < 1) {
819                 free(p);
820                 return NULL;
821         }
822         memcpy(p->pack_name, path, path_len);
823
824         strcpy(p->pack_name + path_len, ".keep");
825         if (!access(p->pack_name, F_OK))
826                 p->pack_keep = 1;
827
828         strcpy(p->pack_name + path_len, ".pack");
829         if (stat(p->pack_name, &st) || !S_ISREG(st.st_mode)) {
830                 free(p);
831                 return NULL;
832         }
833
834         /* ok, it looks sane as far as we can check without
835          * actually mapping the pack file.
836          */
837         p->pack_size = st.st_size;
838         p->pack_local = local;
839         p->mtime = st.st_mtime;
840         if (path_len < 40 || get_sha1_hex(path + path_len - 40, p->sha1))
841                 hashclr(p->sha1);
842         return p;
843 }
844
845 struct packed_git *parse_pack_index(unsigned char *sha1, const char *idx_path)
846 {
847         const char *path = sha1_pack_name(sha1);
848         struct packed_git *p = alloc_packed_git(strlen(path) + 1);
849
850         strcpy(p->pack_name, path);
851         hashcpy(p->sha1, sha1);
852         if (check_packed_git_idx(idx_path, p)) {
853                 free(p);
854                 return NULL;
855         }
856
857         return p;
858 }
859
860 void install_packed_git(struct packed_git *pack)
861 {
862         pack->next = packed_git;
863         packed_git = pack;
864 }
865
866 static void prepare_packed_git_one(char *objdir, int local)
867 {
868         /* Ensure that this buffer is large enough so that we can
869            append "/pack/" without clobbering the stack even if
870            strlen(objdir) were PATH_MAX.  */
871         char path[PATH_MAX + 1 + 4 + 1 + 1];
872         int len;
873         DIR *dir;
874         struct dirent *de;
875
876         sprintf(path, "%s/pack", objdir);
877         len = strlen(path);
878         dir = opendir(path);
879         while (!dir && errno == EMFILE && unuse_one_window(packed_git, -1))
880                 dir = opendir(path);
881         if (!dir) {
882                 if (errno != ENOENT)
883                         error("unable to open object pack directory: %s: %s",
884                               path, strerror(errno));
885                 return;
886         }
887         path[len++] = '/';
888         while ((de = readdir(dir)) != NULL) {
889                 int namelen = strlen(de->d_name);
890                 struct packed_git *p;
891
892                 if (!has_extension(de->d_name, ".idx"))
893                         continue;
894
895                 if (len + namelen + 1 > sizeof(path))
896                         continue;
897
898                 /* Don't reopen a pack we already have. */
899                 strcpy(path + len, de->d_name);
900                 for (p = packed_git; p; p = p->next) {
901                         if (!memcmp(path, p->pack_name, len + namelen - 4))
902                                 break;
903                 }
904                 if (p)
905                         continue;
906                 /* See if it really is a valid .idx file with corresponding
907                  * .pack file that we can map.
908                  */
909                 p = add_packed_git(path, len + namelen, local);
910                 if (!p)
911                         continue;
912                 install_packed_git(p);
913         }
914         closedir(dir);
915 }
916
917 static int sort_pack(const void *a_, const void *b_)
918 {
919         struct packed_git *a = *((struct packed_git **)a_);
920         struct packed_git *b = *((struct packed_git **)b_);
921         int st;
922
923         /*
924          * Local packs tend to contain objects specific to our
925          * variant of the project than remote ones.  In addition,
926          * remote ones could be on a network mounted filesystem.
927          * Favor local ones for these reasons.
928          */
929         st = a->pack_local - b->pack_local;
930         if (st)
931                 return -st;
932
933         /*
934          * Younger packs tend to contain more recent objects,
935          * and more recent objects tend to get accessed more
936          * often.
937          */
938         if (a->mtime < b->mtime)
939                 return 1;
940         else if (a->mtime == b->mtime)
941                 return 0;
942         return -1;
943 }
944
945 static void rearrange_packed_git(void)
946 {
947         struct packed_git **ary, *p;
948         int i, n;
949
950         for (n = 0, p = packed_git; p; p = p->next)
951                 n++;
952         if (n < 2)
953                 return;
954
955         /* prepare an array of packed_git for easier sorting */
956         ary = xcalloc(n, sizeof(struct packed_git *));
957         for (n = 0, p = packed_git; p; p = p->next)
958                 ary[n++] = p;
959
960         qsort(ary, n, sizeof(struct packed_git *), sort_pack);
961
962         /* link them back again */
963         for (i = 0; i < n - 1; i++)
964                 ary[i]->next = ary[i + 1];
965         ary[n - 1]->next = NULL;
966         packed_git = ary[0];
967
968         free(ary);
969 }
970
971 static int prepare_packed_git_run_once = 0;
972 void prepare_packed_git(void)
973 {
974         struct alternate_object_database *alt;
975
976         if (prepare_packed_git_run_once)
977                 return;
978         prepare_packed_git_one(get_object_directory(), 1);
979         prepare_alt_odb();
980         for (alt = alt_odb_list; alt; alt = alt->next) {
981                 alt->name[-1] = 0;
982                 prepare_packed_git_one(alt->base, 0);
983                 alt->name[-1] = '/';
984         }
985         rearrange_packed_git();
986         prepare_packed_git_run_once = 1;
987 }
988
989 void reprepare_packed_git(void)
990 {
991         discard_revindex();
992         prepare_packed_git_run_once = 0;
993         prepare_packed_git();
994 }
995
996 static void mark_bad_packed_object(struct packed_git *p,
997                                    const unsigned char *sha1)
998 {
999         unsigned i;
1000         for (i = 0; i < p->num_bad_objects; i++)
1001                 if (!hashcmp(sha1, p->bad_object_sha1 + 20 * i))
1002                         return;
1003         p->bad_object_sha1 = xrealloc(p->bad_object_sha1, 20 * (p->num_bad_objects + 1));
1004         hashcpy(p->bad_object_sha1 + 20 * p->num_bad_objects, sha1);
1005         p->num_bad_objects++;
1006 }
1007
1008 static const struct packed_git *has_packed_and_bad(const unsigned char *sha1)
1009 {
1010         struct packed_git *p;
1011         unsigned i;
1012
1013         for (p = packed_git; p; p = p->next)
1014                 for (i = 0; i < p->num_bad_objects; i++)
1015                         if (!hashcmp(sha1, p->bad_object_sha1 + 20 * i))
1016                                 return p;
1017         return NULL;
1018 }
1019
1020 int check_sha1_signature(const unsigned char *sha1, void *map, unsigned long size, const char *type)
1021 {
1022         unsigned char real_sha1[20];
1023         hash_sha1_file(map, size, type, real_sha1);
1024         return hashcmp(sha1, real_sha1) ? -1 : 0;
1025 }
1026
1027 static int git_open_noatime(const char *name)
1028 {
1029         static int sha1_file_open_flag = O_NOATIME;
1030         int fd = open(name, O_RDONLY | sha1_file_open_flag);
1031
1032         /* Might the failure be due to O_NOATIME? */
1033         if (fd < 0 && errno != ENOENT && sha1_file_open_flag) {
1034                 fd = open(name, O_RDONLY);
1035                 if (fd >= 0)
1036                         sha1_file_open_flag = 0;
1037         }
1038         return fd;
1039 }
1040
1041 static int open_sha1_file(const unsigned char *sha1)
1042 {
1043         int fd;
1044         char *name = sha1_file_name(sha1);
1045         struct alternate_object_database *alt;
1046
1047         fd = git_open_noatime(name);
1048         if (fd >= 0)
1049                 return fd;
1050
1051         prepare_alt_odb();
1052         errno = ENOENT;
1053         for (alt = alt_odb_list; alt; alt = alt->next) {
1054                 name = alt->name;
1055                 fill_sha1_path(name, sha1);
1056                 fd = git_open_noatime(alt->base);
1057                 if (fd >= 0)
1058                         return fd;
1059         }
1060         return -1;
1061 }
1062
1063 static void *map_sha1_file(const unsigned char *sha1, unsigned long *size)
1064 {
1065         void *map;
1066         int fd;
1067
1068         fd = open_sha1_file(sha1);
1069         map = NULL;
1070         if (fd >= 0) {
1071                 struct stat st;
1072
1073                 if (!fstat(fd, &st)) {
1074                         *size = xsize_t(st.st_size);
1075                         map = xmmap(NULL, *size, PROT_READ, MAP_PRIVATE, fd, 0);
1076                 }
1077                 close(fd);
1078         }
1079         return map;
1080 }
1081
1082 static int legacy_loose_object(unsigned char *map)
1083 {
1084         unsigned int word;
1085
1086         /*
1087          * Is it a zlib-compressed buffer? If so, the first byte
1088          * must be 0x78 (15-bit window size, deflated), and the
1089          * first 16-bit word is evenly divisible by 31
1090          */
1091         word = (map[0] << 8) + map[1];
1092         if (map[0] == 0x78 && !(word % 31))
1093                 return 1;
1094         else
1095                 return 0;
1096 }
1097
1098 unsigned long unpack_object_header_buffer(const unsigned char *buf,
1099                 unsigned long len, enum object_type *type, unsigned long *sizep)
1100 {
1101         unsigned shift;
1102         unsigned long size, c;
1103         unsigned long used = 0;
1104
1105         c = buf[used++];
1106         *type = (c >> 4) & 7;
1107         size = c & 15;
1108         shift = 4;
1109         while (c & 0x80) {
1110                 if (len <= used || bitsizeof(long) <= shift) {
1111                         error("bad object header");
1112                         return 0;
1113                 }
1114                 c = buf[used++];
1115                 size += (c & 0x7f) << shift;
1116                 shift += 7;
1117         }
1118         *sizep = size;
1119         return used;
1120 }
1121
1122 static int unpack_sha1_header(z_stream *stream, unsigned char *map, unsigned long mapsize, void *buffer, unsigned long bufsiz)
1123 {
1124         unsigned long size, used;
1125         static const char valid_loose_object_type[8] = {
1126                 0, /* OBJ_EXT */
1127                 1, 1, 1, 1, /* "commit", "tree", "blob", "tag" */
1128                 0, /* "delta" and others are invalid in a loose object */
1129         };
1130         enum object_type type;
1131
1132         /* Get the data stream */
1133         memset(stream, 0, sizeof(*stream));
1134         stream->next_in = map;
1135         stream->avail_in = mapsize;
1136         stream->next_out = buffer;
1137         stream->avail_out = bufsiz;
1138
1139         if (legacy_loose_object(map)) {
1140                 git_inflate_init(stream);
1141                 return git_inflate(stream, 0);
1142         }
1143
1144
1145         /*
1146          * There used to be a second loose object header format which
1147          * was meant to mimic the in-pack format, allowing for direct
1148          * copy of the object data.  This format turned up not to be
1149          * really worth it and we don't write it any longer.  But we
1150          * can still read it.
1151          */
1152         used = unpack_object_header_buffer(map, mapsize, &type, &size);
1153         if (!used || !valid_loose_object_type[type])
1154                 return -1;
1155         map += used;
1156         mapsize -= used;
1157
1158         /* Set up the stream for the rest.. */
1159         stream->next_in = map;
1160         stream->avail_in = mapsize;
1161         git_inflate_init(stream);
1162
1163         /* And generate the fake traditional header */
1164         stream->total_out = 1 + snprintf(buffer, bufsiz, "%s %lu",
1165                                          typename(type), size);
1166         return 0;
1167 }
1168
1169 static void *unpack_sha1_rest(z_stream *stream, void *buffer, unsigned long size, const unsigned char *sha1)
1170 {
1171         int bytes = strlen(buffer) + 1;
1172         unsigned char *buf = xmallocz(size);
1173         unsigned long n;
1174         int status = Z_OK;
1175
1176         n = stream->total_out - bytes;
1177         if (n > size)
1178                 n = size;
1179         memcpy(buf, (char *) buffer + bytes, n);
1180         bytes = n;
1181         if (bytes <= size) {
1182                 /*
1183                  * The above condition must be (bytes <= size), not
1184                  * (bytes < size).  In other words, even though we
1185                  * expect no more output and set avail_out to zer0,
1186                  * the input zlib stream may have bytes that express
1187                  * "this concludes the stream", and we *do* want to
1188                  * eat that input.
1189                  *
1190                  * Otherwise we would not be able to test that we
1191                  * consumed all the input to reach the expected size;
1192                  * we also want to check that zlib tells us that all
1193                  * went well with status == Z_STREAM_END at the end.
1194                  */
1195                 stream->next_out = buf + bytes;
1196                 stream->avail_out = size - bytes;
1197                 while (status == Z_OK)
1198                         status = git_inflate(stream, Z_FINISH);
1199         }
1200         if (status == Z_STREAM_END && !stream->avail_in) {
1201                 git_inflate_end(stream);
1202                 return buf;
1203         }
1204
1205         if (status < 0)
1206                 error("corrupt loose object '%s'", sha1_to_hex(sha1));
1207         else if (stream->avail_in)
1208                 error("garbage at end of loose object '%s'",
1209                       sha1_to_hex(sha1));
1210         free(buf);
1211         return NULL;
1212 }
1213
1214 /*
1215  * We used to just use "sscanf()", but that's actually way
1216  * too permissive for what we want to check. So do an anal
1217  * object header parse by hand.
1218  */
1219 static int parse_sha1_header(const char *hdr, unsigned long *sizep)
1220 {
1221         char type[10];
1222         int i;
1223         unsigned long size;
1224
1225         /*
1226          * The type can be at most ten bytes (including the
1227          * terminating '\0' that we add), and is followed by
1228          * a space.
1229          */
1230         i = 0;
1231         for (;;) {
1232                 char c = *hdr++;
1233                 if (c == ' ')
1234                         break;
1235                 type[i++] = c;
1236                 if (i >= sizeof(type))
1237                         return -1;
1238         }
1239         type[i] = 0;
1240
1241         /*
1242          * The length must follow immediately, and be in canonical
1243          * decimal format (ie "010" is not valid).
1244          */
1245         size = *hdr++ - '0';
1246         if (size > 9)
1247                 return -1;
1248         if (size) {
1249                 for (;;) {
1250                         unsigned long c = *hdr - '0';
1251                         if (c > 9)
1252                                 break;
1253                         hdr++;
1254                         size = size * 10 + c;
1255                 }
1256         }
1257         *sizep = size;
1258
1259         /*
1260          * The length must be followed by a zero byte
1261          */
1262         return *hdr ? -1 : type_from_string(type);
1263 }
1264
1265 static void *unpack_sha1_file(void *map, unsigned long mapsize, enum object_type *type, unsigned long *size, const unsigned char *sha1)
1266 {
1267         int ret;
1268         z_stream stream;
1269         char hdr[8192];
1270
1271         ret = unpack_sha1_header(&stream, map, mapsize, hdr, sizeof(hdr));
1272         if (ret < Z_OK || (*type = parse_sha1_header(hdr, size)) < 0)
1273                 return NULL;
1274
1275         return unpack_sha1_rest(&stream, hdr, *size, sha1);
1276 }
1277
1278 unsigned long get_size_from_delta(struct packed_git *p,
1279                                   struct pack_window **w_curs,
1280                                   off_t curpos)
1281 {
1282         const unsigned char *data;
1283         unsigned char delta_head[20], *in;
1284         z_stream stream;
1285         int st;
1286
1287         memset(&stream, 0, sizeof(stream));
1288         stream.next_out = delta_head;
1289         stream.avail_out = sizeof(delta_head);
1290
1291         git_inflate_init(&stream);
1292         do {
1293                 in = use_pack(p, w_curs, curpos, &stream.avail_in);
1294                 stream.next_in = in;
1295                 st = git_inflate(&stream, Z_FINISH);
1296                 curpos += stream.next_in - in;
1297         } while ((st == Z_OK || st == Z_BUF_ERROR) &&
1298                  stream.total_out < sizeof(delta_head));
1299         git_inflate_end(&stream);
1300         if ((st != Z_STREAM_END) && stream.total_out != sizeof(delta_head)) {
1301                 error("delta data unpack-initial failed");
1302                 return 0;
1303         }
1304
1305         /* Examine the initial part of the delta to figure out
1306          * the result size.
1307          */
1308         data = delta_head;
1309
1310         /* ignore base size */
1311         get_delta_hdr_size(&data, delta_head+sizeof(delta_head));
1312
1313         /* Read the result size */
1314         return get_delta_hdr_size(&data, delta_head+sizeof(delta_head));
1315 }
1316
1317 static off_t get_delta_base(struct packed_git *p,
1318                                     struct pack_window **w_curs,
1319                                     off_t *curpos,
1320                                     enum object_type type,
1321                                     off_t delta_obj_offset)
1322 {
1323         unsigned char *base_info = use_pack(p, w_curs, *curpos, NULL);
1324         off_t base_offset;
1325
1326         /* use_pack() assured us we have [base_info, base_info + 20)
1327          * as a range that we can look at without walking off the
1328          * end of the mapped window.  Its actually the hash size
1329          * that is assured.  An OFS_DELTA longer than the hash size
1330          * is stupid, as then a REF_DELTA would be smaller to store.
1331          */
1332         if (type == OBJ_OFS_DELTA) {
1333                 unsigned used = 0;
1334                 unsigned char c = base_info[used++];
1335                 base_offset = c & 127;
1336                 while (c & 128) {
1337                         base_offset += 1;
1338                         if (!base_offset || MSB(base_offset, 7))
1339                                 return 0;  /* overflow */
1340                         c = base_info[used++];
1341                         base_offset = (base_offset << 7) + (c & 127);
1342                 }
1343                 base_offset = delta_obj_offset - base_offset;
1344                 if (base_offset <= 0 || base_offset >= delta_obj_offset)
1345                         return 0;  /* out of bound */
1346                 *curpos += used;
1347         } else if (type == OBJ_REF_DELTA) {
1348                 /* The base entry _must_ be in the same pack */
1349                 base_offset = find_pack_entry_one(base_info, p);
1350                 *curpos += 20;
1351         } else
1352                 die("I am totally screwed");
1353         return base_offset;
1354 }
1355
1356 /* forward declaration for a mutually recursive function */
1357 static int packed_object_info(struct packed_git *p, off_t offset,
1358                               unsigned long *sizep);
1359
1360 static int packed_delta_info(struct packed_git *p,
1361                              struct pack_window **w_curs,
1362                              off_t curpos,
1363                              enum object_type type,
1364                              off_t obj_offset,
1365                              unsigned long *sizep)
1366 {
1367         off_t base_offset;
1368
1369         base_offset = get_delta_base(p, w_curs, &curpos, type, obj_offset);
1370         if (!base_offset)
1371                 return OBJ_BAD;
1372         type = packed_object_info(p, base_offset, NULL);
1373         if (type <= OBJ_NONE) {
1374                 struct revindex_entry *revidx;
1375                 const unsigned char *base_sha1;
1376                 revidx = find_pack_revindex(p, base_offset);
1377                 if (!revidx)
1378                         return OBJ_BAD;
1379                 base_sha1 = nth_packed_object_sha1(p, revidx->nr);
1380                 mark_bad_packed_object(p, base_sha1);
1381                 type = sha1_object_info(base_sha1, NULL);
1382                 if (type <= OBJ_NONE)
1383                         return OBJ_BAD;
1384         }
1385
1386         /* We choose to only get the type of the base object and
1387          * ignore potentially corrupt pack file that expects the delta
1388          * based on a base with a wrong size.  This saves tons of
1389          * inflate() calls.
1390          */
1391         if (sizep) {
1392                 *sizep = get_size_from_delta(p, w_curs, curpos);
1393                 if (*sizep == 0)
1394                         type = OBJ_BAD;
1395         }
1396
1397         return type;
1398 }
1399
1400 static int unpack_object_header(struct packed_git *p,
1401                                 struct pack_window **w_curs,
1402                                 off_t *curpos,
1403                                 unsigned long *sizep)
1404 {
1405         unsigned char *base;
1406         unsigned int left;
1407         unsigned long used;
1408         enum object_type type;
1409
1410         /* use_pack() assures us we have [base, base + 20) available
1411          * as a range that we can look at at.  (Its actually the hash
1412          * size that is assured.)  With our object header encoding
1413          * the maximum deflated object size is 2^137, which is just
1414          * insane, so we know won't exceed what we have been given.
1415          */
1416         base = use_pack(p, w_curs, *curpos, &left);
1417         used = unpack_object_header_buffer(base, left, &type, sizep);
1418         if (!used) {
1419                 type = OBJ_BAD;
1420         } else
1421                 *curpos += used;
1422
1423         return type;
1424 }
1425
1426 const char *packed_object_info_detail(struct packed_git *p,
1427                                       off_t obj_offset,
1428                                       unsigned long *size,
1429                                       unsigned long *store_size,
1430                                       unsigned int *delta_chain_length,
1431                                       unsigned char *base_sha1)
1432 {
1433         struct pack_window *w_curs = NULL;
1434         off_t curpos;
1435         unsigned long dummy;
1436         unsigned char *next_sha1;
1437         enum object_type type;
1438         struct revindex_entry *revidx;
1439
1440         *delta_chain_length = 0;
1441         curpos = obj_offset;
1442         type = unpack_object_header(p, &w_curs, &curpos, size);
1443
1444         revidx = find_pack_revindex(p, obj_offset);
1445         *store_size = revidx[1].offset - obj_offset;
1446
1447         for (;;) {
1448                 switch (type) {
1449                 default:
1450                         die("pack %s contains unknown object type %d",
1451                             p->pack_name, type);
1452                 case OBJ_COMMIT:
1453                 case OBJ_TREE:
1454                 case OBJ_BLOB:
1455                 case OBJ_TAG:
1456                         unuse_pack(&w_curs);
1457                         return typename(type);
1458                 case OBJ_OFS_DELTA:
1459                         obj_offset = get_delta_base(p, &w_curs, &curpos, type, obj_offset);
1460                         if (!obj_offset)
1461                                 die("pack %s contains bad delta base reference of type %s",
1462                                     p->pack_name, typename(type));
1463                         if (*delta_chain_length == 0) {
1464                                 revidx = find_pack_revindex(p, obj_offset);
1465                                 hashcpy(base_sha1, nth_packed_object_sha1(p, revidx->nr));
1466                         }
1467                         break;
1468                 case OBJ_REF_DELTA:
1469                         next_sha1 = use_pack(p, &w_curs, curpos, NULL);
1470                         if (*delta_chain_length == 0)
1471                                 hashcpy(base_sha1, next_sha1);
1472                         obj_offset = find_pack_entry_one(next_sha1, p);
1473                         break;
1474                 }
1475                 (*delta_chain_length)++;
1476                 curpos = obj_offset;
1477                 type = unpack_object_header(p, &w_curs, &curpos, &dummy);
1478         }
1479 }
1480
1481 static int packed_object_info(struct packed_git *p, off_t obj_offset,
1482                               unsigned long *sizep)
1483 {
1484         struct pack_window *w_curs = NULL;
1485         unsigned long size;
1486         off_t curpos = obj_offset;
1487         enum object_type type;
1488
1489         type = unpack_object_header(p, &w_curs, &curpos, &size);
1490
1491         switch (type) {
1492         case OBJ_OFS_DELTA:
1493         case OBJ_REF_DELTA:
1494                 type = packed_delta_info(p, &w_curs, curpos,
1495                                          type, obj_offset, sizep);
1496                 break;
1497         case OBJ_COMMIT:
1498         case OBJ_TREE:
1499         case OBJ_BLOB:
1500         case OBJ_TAG:
1501                 if (sizep)
1502                         *sizep = size;
1503                 break;
1504         default:
1505                 error("unknown object type %i at offset %"PRIuMAX" in %s",
1506                       type, (uintmax_t)obj_offset, p->pack_name);
1507                 type = OBJ_BAD;
1508         }
1509         unuse_pack(&w_curs);
1510         return type;
1511 }
1512
1513 static void *unpack_compressed_entry(struct packed_git *p,
1514                                     struct pack_window **w_curs,
1515                                     off_t curpos,
1516                                     unsigned long size)
1517 {
1518         int st;
1519         z_stream stream;
1520         unsigned char *buffer, *in;
1521
1522         buffer = xmallocz(size);
1523         memset(&stream, 0, sizeof(stream));
1524         stream.next_out = buffer;
1525         stream.avail_out = size + 1;
1526
1527         git_inflate_init(&stream);
1528         do {
1529                 in = use_pack(p, w_curs, curpos, &stream.avail_in);
1530                 stream.next_in = in;
1531                 st = git_inflate(&stream, Z_FINISH);
1532                 if (!stream.avail_out)
1533                         break; /* the payload is larger than it should be */
1534                 curpos += stream.next_in - in;
1535         } while (st == Z_OK || st == Z_BUF_ERROR);
1536         git_inflate_end(&stream);
1537         if ((st != Z_STREAM_END) || stream.total_out != size) {
1538                 free(buffer);
1539                 return NULL;
1540         }
1541
1542         return buffer;
1543 }
1544
1545 #define MAX_DELTA_CACHE (256)
1546
1547 static size_t delta_base_cached;
1548
1549 static struct delta_base_cache_lru_list {
1550         struct delta_base_cache_lru_list *prev;
1551         struct delta_base_cache_lru_list *next;
1552 } delta_base_cache_lru = { &delta_base_cache_lru, &delta_base_cache_lru };
1553
1554 static struct delta_base_cache_entry {
1555         struct delta_base_cache_lru_list lru;
1556         void *data;
1557         struct packed_git *p;
1558         off_t base_offset;
1559         unsigned long size;
1560         enum object_type type;
1561 } delta_base_cache[MAX_DELTA_CACHE];
1562
1563 static unsigned long pack_entry_hash(struct packed_git *p, off_t base_offset)
1564 {
1565         unsigned long hash;
1566
1567         hash = (unsigned long)p + (unsigned long)base_offset;
1568         hash += (hash >> 8) + (hash >> 16);
1569         return hash % MAX_DELTA_CACHE;
1570 }
1571
1572 static void *cache_or_unpack_entry(struct packed_git *p, off_t base_offset,
1573         unsigned long *base_size, enum object_type *type, int keep_cache)
1574 {
1575         void *ret;
1576         unsigned long hash = pack_entry_hash(p, base_offset);
1577         struct delta_base_cache_entry *ent = delta_base_cache + hash;
1578
1579         ret = ent->data;
1580         if (!ret || ent->p != p || ent->base_offset != base_offset)
1581                 return unpack_entry(p, base_offset, type, base_size);
1582
1583         if (!keep_cache) {
1584                 ent->data = NULL;
1585                 ent->lru.next->prev = ent->lru.prev;
1586                 ent->lru.prev->next = ent->lru.next;
1587                 delta_base_cached -= ent->size;
1588         } else {
1589                 ret = xmemdupz(ent->data, ent->size);
1590         }
1591         *type = ent->type;
1592         *base_size = ent->size;
1593         return ret;
1594 }
1595
1596 static inline void release_delta_base_cache(struct delta_base_cache_entry *ent)
1597 {
1598         if (ent->data) {
1599                 free(ent->data);
1600                 ent->data = NULL;
1601                 ent->lru.next->prev = ent->lru.prev;
1602                 ent->lru.prev->next = ent->lru.next;
1603                 delta_base_cached -= ent->size;
1604         }
1605 }
1606
1607 void clear_delta_base_cache(void)
1608 {
1609         unsigned long p;
1610         for (p = 0; p < MAX_DELTA_CACHE; p++)
1611                 release_delta_base_cache(&delta_base_cache[p]);
1612 }
1613
1614 static void add_delta_base_cache(struct packed_git *p, off_t base_offset,
1615         void *base, unsigned long base_size, enum object_type type)
1616 {
1617         unsigned long hash = pack_entry_hash(p, base_offset);
1618         struct delta_base_cache_entry *ent = delta_base_cache + hash;
1619         struct delta_base_cache_lru_list *lru;
1620
1621         release_delta_base_cache(ent);
1622         delta_base_cached += base_size;
1623
1624         for (lru = delta_base_cache_lru.next;
1625              delta_base_cached > delta_base_cache_limit
1626              && lru != &delta_base_cache_lru;
1627              lru = lru->next) {
1628                 struct delta_base_cache_entry *f = (void *)lru;
1629                 if (f->type == OBJ_BLOB)
1630                         release_delta_base_cache(f);
1631         }
1632         for (lru = delta_base_cache_lru.next;
1633              delta_base_cached > delta_base_cache_limit
1634              && lru != &delta_base_cache_lru;
1635              lru = lru->next) {
1636                 struct delta_base_cache_entry *f = (void *)lru;
1637                 release_delta_base_cache(f);
1638         }
1639
1640         ent->p = p;
1641         ent->base_offset = base_offset;
1642         ent->type = type;
1643         ent->data = base;
1644         ent->size = base_size;
1645         ent->lru.next = &delta_base_cache_lru;
1646         ent->lru.prev = delta_base_cache_lru.prev;
1647         delta_base_cache_lru.prev->next = &ent->lru;
1648         delta_base_cache_lru.prev = &ent->lru;
1649 }
1650
1651 static void *read_object(const unsigned char *sha1, enum object_type *type,
1652                          unsigned long *size);
1653
1654 static void *unpack_delta_entry(struct packed_git *p,
1655                                 struct pack_window **w_curs,
1656                                 off_t curpos,
1657                                 unsigned long delta_size,
1658                                 off_t obj_offset,
1659                                 enum object_type *type,
1660                                 unsigned long *sizep)
1661 {
1662         void *delta_data, *result, *base;
1663         unsigned long base_size;
1664         off_t base_offset;
1665
1666         base_offset = get_delta_base(p, w_curs, &curpos, *type, obj_offset);
1667         if (!base_offset) {
1668                 error("failed to validate delta base reference "
1669                       "at offset %"PRIuMAX" from %s",
1670                       (uintmax_t)curpos, p->pack_name);
1671                 return NULL;
1672         }
1673         unuse_pack(w_curs);
1674         base = cache_or_unpack_entry(p, base_offset, &base_size, type, 0);
1675         if (!base) {
1676                 /*
1677                  * We're probably in deep shit, but let's try to fetch
1678                  * the required base anyway from another pack or loose.
1679                  * This is costly but should happen only in the presence
1680                  * of a corrupted pack, and is better than failing outright.
1681                  */
1682                 struct revindex_entry *revidx;
1683                 const unsigned char *base_sha1;
1684                 revidx = find_pack_revindex(p, base_offset);
1685                 if (!revidx)
1686                         return NULL;
1687                 base_sha1 = nth_packed_object_sha1(p, revidx->nr);
1688                 error("failed to read delta base object %s"
1689                       " at offset %"PRIuMAX" from %s",
1690                       sha1_to_hex(base_sha1), (uintmax_t)base_offset,
1691                       p->pack_name);
1692                 mark_bad_packed_object(p, base_sha1);
1693                 base = read_object(base_sha1, type, &base_size);
1694                 if (!base)
1695                         return NULL;
1696         }
1697
1698         delta_data = unpack_compressed_entry(p, w_curs, curpos, delta_size);
1699         if (!delta_data) {
1700                 error("failed to unpack compressed delta "
1701                       "at offset %"PRIuMAX" from %s",
1702                       (uintmax_t)curpos, p->pack_name);
1703                 free(base);
1704                 return NULL;
1705         }
1706         result = patch_delta(base, base_size,
1707                              delta_data, delta_size,
1708                              sizep);
1709         if (!result)
1710                 die("failed to apply delta");
1711         free(delta_data);
1712         add_delta_base_cache(p, base_offset, base, base_size, *type);
1713         return result;
1714 }
1715
1716 int do_check_packed_object_crc;
1717
1718 void *unpack_entry(struct packed_git *p, off_t obj_offset,
1719                    enum object_type *type, unsigned long *sizep)
1720 {
1721         struct pack_window *w_curs = NULL;
1722         off_t curpos = obj_offset;
1723         void *data;
1724
1725         if (do_check_packed_object_crc && p->index_version > 1) {
1726                 struct revindex_entry *revidx = find_pack_revindex(p, obj_offset);
1727                 unsigned long len = revidx[1].offset - obj_offset;
1728                 if (check_pack_crc(p, &w_curs, obj_offset, len, revidx->nr)) {
1729                         const unsigned char *sha1 =
1730                                 nth_packed_object_sha1(p, revidx->nr);
1731                         error("bad packed object CRC for %s",
1732                               sha1_to_hex(sha1));
1733                         mark_bad_packed_object(p, sha1);
1734                         unuse_pack(&w_curs);
1735                         return NULL;
1736                 }
1737         }
1738
1739         *type = unpack_object_header(p, &w_curs, &curpos, sizep);
1740         switch (*type) {
1741         case OBJ_OFS_DELTA:
1742         case OBJ_REF_DELTA:
1743                 data = unpack_delta_entry(p, &w_curs, curpos, *sizep,
1744                                           obj_offset, type, sizep);
1745                 break;
1746         case OBJ_COMMIT:
1747         case OBJ_TREE:
1748         case OBJ_BLOB:
1749         case OBJ_TAG:
1750                 data = unpack_compressed_entry(p, &w_curs, curpos, *sizep);
1751                 break;
1752         default:
1753                 data = NULL;
1754                 error("unknown object type %i at offset %"PRIuMAX" in %s",
1755                       *type, (uintmax_t)obj_offset, p->pack_name);
1756         }
1757         unuse_pack(&w_curs);
1758         return data;
1759 }
1760
1761 const unsigned char *nth_packed_object_sha1(struct packed_git *p,
1762                                             uint32_t n)
1763 {
1764         const unsigned char *index = p->index_data;
1765         if (!index) {
1766                 if (open_pack_index(p))
1767                         return NULL;
1768                 index = p->index_data;
1769         }
1770         if (n >= p->num_objects)
1771                 return NULL;
1772         index += 4 * 256;
1773         if (p->index_version == 1) {
1774                 return index + 24 * n + 4;
1775         } else {
1776                 index += 8;
1777                 return index + 20 * n;
1778         }
1779 }
1780
1781 off_t nth_packed_object_offset(const struct packed_git *p, uint32_t n)
1782 {
1783         const unsigned char *index = p->index_data;
1784         index += 4 * 256;
1785         if (p->index_version == 1) {
1786                 return ntohl(*((uint32_t *)(index + 24 * n)));
1787         } else {
1788                 uint32_t off;
1789                 index += 8 + p->num_objects * (20 + 4);
1790                 off = ntohl(*((uint32_t *)(index + 4 * n)));
1791                 if (!(off & 0x80000000))
1792                         return off;
1793                 index += p->num_objects * 4 + (off & 0x7fffffff) * 8;
1794                 return (((uint64_t)ntohl(*((uint32_t *)(index + 0)))) << 32) |
1795                                    ntohl(*((uint32_t *)(index + 4)));
1796         }
1797 }
1798
1799 off_t find_pack_entry_one(const unsigned char *sha1,
1800                                   struct packed_git *p)
1801 {
1802         const uint32_t *level1_ofs = p->index_data;
1803         const unsigned char *index = p->index_data;
1804         unsigned hi, lo, stride;
1805         static int use_lookup = -1;
1806         static int debug_lookup = -1;
1807
1808         if (debug_lookup < 0)
1809                 debug_lookup = !!getenv("GIT_DEBUG_LOOKUP");
1810
1811         if (!index) {
1812                 if (open_pack_index(p))
1813                         return 0;
1814                 level1_ofs = p->index_data;
1815                 index = p->index_data;
1816         }
1817         if (p->index_version > 1) {
1818                 level1_ofs += 2;
1819                 index += 8;
1820         }
1821         index += 4 * 256;
1822         hi = ntohl(level1_ofs[*sha1]);
1823         lo = ((*sha1 == 0x0) ? 0 : ntohl(level1_ofs[*sha1 - 1]));
1824         if (p->index_version > 1) {
1825                 stride = 20;
1826         } else {
1827                 stride = 24;
1828                 index += 4;
1829         }
1830
1831         if (debug_lookup)
1832                 printf("%02x%02x%02x... lo %u hi %u nr %"PRIu32"\n",
1833                        sha1[0], sha1[1], sha1[2], lo, hi, p->num_objects);
1834
1835         if (use_lookup < 0)
1836                 use_lookup = !!getenv("GIT_USE_LOOKUP");
1837         if (use_lookup) {
1838                 int pos = sha1_entry_pos(index, stride, 0,
1839                                          lo, hi, p->num_objects, sha1);
1840                 if (pos < 0)
1841                         return 0;
1842                 return nth_packed_object_offset(p, pos);
1843         }
1844
1845         do {
1846                 unsigned mi = (lo + hi) / 2;
1847                 int cmp = hashcmp(index + mi * stride, sha1);
1848
1849                 if (debug_lookup)
1850                         printf("lo %u hi %u rg %u mi %u\n",
1851                                lo, hi, hi - lo, mi);
1852                 if (!cmp)
1853                         return nth_packed_object_offset(p, mi);
1854                 if (cmp > 0)
1855                         hi = mi;
1856                 else
1857                         lo = mi+1;
1858         } while (lo < hi);
1859         return 0;
1860 }
1861
1862 static int find_pack_entry(const unsigned char *sha1, struct pack_entry *e)
1863 {
1864         static struct packed_git *last_found = (void *)1;
1865         struct packed_git *p;
1866         off_t offset;
1867
1868         prepare_packed_git();
1869         if (!packed_git)
1870                 return 0;
1871         p = (last_found == (void *)1) ? packed_git : last_found;
1872
1873         do {
1874                 if (p->num_bad_objects) {
1875                         unsigned i;
1876                         for (i = 0; i < p->num_bad_objects; i++)
1877                                 if (!hashcmp(sha1, p->bad_object_sha1 + 20 * i))
1878                                         goto next;
1879                 }
1880
1881                 offset = find_pack_entry_one(sha1, p);
1882                 if (offset) {
1883                         /*
1884                          * We are about to tell the caller where they can
1885                          * locate the requested object.  We better make
1886                          * sure the packfile is still here and can be
1887                          * accessed before supplying that answer, as
1888                          * it may have been deleted since the index
1889                          * was loaded!
1890                          */
1891                         if (p->pack_fd == -1 && open_packed_git(p)) {
1892                                 error("packfile %s cannot be accessed", p->pack_name);
1893                                 goto next;
1894                         }
1895                         e->offset = offset;
1896                         e->p = p;
1897                         hashcpy(e->sha1, sha1);
1898                         last_found = p;
1899                         return 1;
1900                 }
1901
1902                 next:
1903                 if (p == last_found)
1904                         p = packed_git;
1905                 else
1906                         p = p->next;
1907                 if (p == last_found)
1908                         p = p->next;
1909         } while (p);
1910         return 0;
1911 }
1912
1913 struct packed_git *find_sha1_pack(const unsigned char *sha1,
1914                                   struct packed_git *packs)
1915 {
1916         struct packed_git *p;
1917
1918         for (p = packs; p; p = p->next) {
1919                 if (find_pack_entry_one(sha1, p))
1920                         return p;
1921         }
1922         return NULL;
1923
1924 }
1925
1926 static int sha1_loose_object_info(const unsigned char *sha1, unsigned long *sizep)
1927 {
1928         int status;
1929         unsigned long mapsize, size;
1930         void *map;
1931         z_stream stream;
1932         char hdr[32];
1933
1934         map = map_sha1_file(sha1, &mapsize);
1935         if (!map)
1936                 return error("unable to find %s", sha1_to_hex(sha1));
1937         if (unpack_sha1_header(&stream, map, mapsize, hdr, sizeof(hdr)) < 0)
1938                 status = error("unable to unpack %s header",
1939                                sha1_to_hex(sha1));
1940         else if ((status = parse_sha1_header(hdr, &size)) < 0)
1941                 status = error("unable to parse %s header", sha1_to_hex(sha1));
1942         else if (sizep)
1943                 *sizep = size;
1944         git_inflate_end(&stream);
1945         munmap(map, mapsize);
1946         return status;
1947 }
1948
1949 int sha1_object_info(const unsigned char *sha1, unsigned long *sizep)
1950 {
1951         struct pack_entry e;
1952         int status;
1953
1954         if (!find_pack_entry(sha1, &e)) {
1955                 /* Most likely it's a loose object. */
1956                 status = sha1_loose_object_info(sha1, sizep);
1957                 if (status >= 0)
1958                         return status;
1959
1960                 /* Not a loose object; someone else may have just packed it. */
1961                 reprepare_packed_git();
1962                 if (!find_pack_entry(sha1, &e))
1963                         return status;
1964         }
1965
1966         status = packed_object_info(e.p, e.offset, sizep);
1967         if (status < 0) {
1968                 mark_bad_packed_object(e.p, sha1);
1969                 status = sha1_object_info(sha1, sizep);
1970         }
1971
1972         return status;
1973 }
1974
1975 static void *read_packed_sha1(const unsigned char *sha1,
1976                               enum object_type *type, unsigned long *size)
1977 {
1978         struct pack_entry e;
1979         void *data;
1980
1981         if (!find_pack_entry(sha1, &e))
1982                 return NULL;
1983         data = cache_or_unpack_entry(e.p, e.offset, size, type, 1);
1984         if (!data) {
1985                 /*
1986                  * We're probably in deep shit, but let's try to fetch
1987                  * the required object anyway from another pack or loose.
1988                  * This should happen only in the presence of a corrupted
1989                  * pack, and is better than failing outright.
1990                  */
1991                 error("failed to read object %s at offset %"PRIuMAX" from %s",
1992                       sha1_to_hex(sha1), (uintmax_t)e.offset, e.p->pack_name);
1993                 mark_bad_packed_object(e.p, sha1);
1994                 data = read_object(sha1, type, size);
1995         }
1996         return data;
1997 }
1998
1999 /*
2000  * This is meant to hold a *small* number of objects that you would
2001  * want read_sha1_file() to be able to return, but yet you do not want
2002  * to write them into the object store (e.g. a browse-only
2003  * application).
2004  */
2005 static struct cached_object {
2006         unsigned char sha1[20];
2007         enum object_type type;
2008         void *buf;
2009         unsigned long size;
2010 } *cached_objects;
2011 static int cached_object_nr, cached_object_alloc;
2012
2013 static struct cached_object empty_tree = {
2014         EMPTY_TREE_SHA1_BIN,
2015         OBJ_TREE,
2016         "",
2017         0
2018 };
2019
2020 static struct cached_object *find_cached_object(const unsigned char *sha1)
2021 {
2022         int i;
2023         struct cached_object *co = cached_objects;
2024
2025         for (i = 0; i < cached_object_nr; i++, co++) {
2026                 if (!hashcmp(co->sha1, sha1))
2027                         return co;
2028         }
2029         if (!hashcmp(sha1, empty_tree.sha1))
2030                 return &empty_tree;
2031         return NULL;
2032 }
2033
2034 int pretend_sha1_file(void *buf, unsigned long len, enum object_type type,
2035                       unsigned char *sha1)
2036 {
2037         struct cached_object *co;
2038
2039         hash_sha1_file(buf, len, typename(type), sha1);
2040         if (has_sha1_file(sha1) || find_cached_object(sha1))
2041                 return 0;
2042         if (cached_object_alloc <= cached_object_nr) {
2043                 cached_object_alloc = alloc_nr(cached_object_alloc);
2044                 cached_objects = xrealloc(cached_objects,
2045                                           sizeof(*cached_objects) *
2046                                           cached_object_alloc);
2047         }
2048         co = &cached_objects[cached_object_nr++];
2049         co->size = len;
2050         co->type = type;
2051         co->buf = xmalloc(len);
2052         memcpy(co->buf, buf, len);
2053         hashcpy(co->sha1, sha1);
2054         return 0;
2055 }
2056
2057 static void *read_object(const unsigned char *sha1, enum object_type *type,
2058                          unsigned long *size)
2059 {
2060         unsigned long mapsize;
2061         void *map, *buf;
2062         struct cached_object *co;
2063
2064         co = find_cached_object(sha1);
2065         if (co) {
2066                 *type = co->type;
2067                 *size = co->size;
2068                 return xmemdupz(co->buf, co->size);
2069         }
2070
2071         buf = read_packed_sha1(sha1, type, size);
2072         if (buf)
2073                 return buf;
2074         map = map_sha1_file(sha1, &mapsize);
2075         if (map) {
2076                 buf = unpack_sha1_file(map, mapsize, type, size, sha1);
2077                 munmap(map, mapsize);
2078                 return buf;
2079         }
2080         reprepare_packed_git();
2081         return read_packed_sha1(sha1, type, size);
2082 }
2083
2084 /*
2085  * This function dies on corrupt objects; the callers who want to
2086  * deal with them should arrange to call read_object() and give error
2087  * messages themselves.
2088  */
2089 void *read_sha1_file_repl(const unsigned char *sha1,
2090                           enum object_type *type,
2091                           unsigned long *size,
2092                           const unsigned char **replacement)
2093 {
2094         const unsigned char *repl = lookup_replace_object(sha1);
2095         void *data;
2096         char *path;
2097         const struct packed_git *p;
2098
2099         errno = 0;
2100         data = read_object(repl, type, size);
2101         if (data) {
2102                 if (replacement)
2103                         *replacement = repl;
2104                 return data;
2105         }
2106
2107         if (errno != ENOENT)
2108                 die_errno("failed to read object %s", sha1_to_hex(sha1));
2109
2110         /* die if we replaced an object with one that does not exist */
2111         if (repl != sha1)
2112                 die("replacement %s not found for %s",
2113                     sha1_to_hex(repl), sha1_to_hex(sha1));
2114
2115         if (has_loose_object(repl)) {
2116                 path = sha1_file_name(sha1);
2117                 die("loose object %s (stored in %s) is corrupt",
2118                     sha1_to_hex(repl), path);
2119         }
2120
2121         if ((p = has_packed_and_bad(repl)) != NULL)
2122                 die("packed object %s (stored in %s) is corrupt",
2123                     sha1_to_hex(repl), p->pack_name);
2124
2125         return NULL;
2126 }
2127
2128 void *read_object_with_reference(const unsigned char *sha1,
2129                                  const char *required_type_name,
2130                                  unsigned long *size,
2131                                  unsigned char *actual_sha1_return)
2132 {
2133         enum object_type type, required_type;
2134         void *buffer;
2135         unsigned long isize;
2136         unsigned char actual_sha1[20];
2137
2138         required_type = type_from_string(required_type_name);
2139         hashcpy(actual_sha1, sha1);
2140         while (1) {
2141                 int ref_length = -1;
2142                 const char *ref_type = NULL;
2143
2144                 buffer = read_sha1_file(actual_sha1, &type, &isize);
2145                 if (!buffer)
2146                         return NULL;
2147                 if (type == required_type) {
2148                         *size = isize;
2149                         if (actual_sha1_return)
2150                                 hashcpy(actual_sha1_return, actual_sha1);
2151                         return buffer;
2152                 }
2153                 /* Handle references */
2154                 else if (type == OBJ_COMMIT)
2155                         ref_type = "tree ";
2156                 else if (type == OBJ_TAG)
2157                         ref_type = "object ";
2158                 else {
2159                         free(buffer);
2160                         return NULL;
2161                 }
2162                 ref_length = strlen(ref_type);
2163
2164                 if (ref_length + 40 > isize ||
2165                     memcmp(buffer, ref_type, ref_length) ||
2166                     get_sha1_hex((char *) buffer + ref_length, actual_sha1)) {
2167                         free(buffer);
2168                         return NULL;
2169                 }
2170                 free(buffer);
2171                 /* Now we have the ID of the referred-to object in
2172                  * actual_sha1.  Check again. */
2173         }
2174 }
2175
2176 static void write_sha1_file_prepare(const void *buf, unsigned long len,
2177                                     const char *type, unsigned char *sha1,
2178                                     char *hdr, int *hdrlen)
2179 {
2180         git_SHA_CTX c;
2181
2182         /* Generate the header */
2183         *hdrlen = sprintf(hdr, "%s %lu", type, len)+1;
2184
2185         /* Sha1.. */
2186         git_SHA1_Init(&c);
2187         git_SHA1_Update(&c, hdr, *hdrlen);
2188         git_SHA1_Update(&c, buf, len);
2189         git_SHA1_Final(sha1, &c);
2190 }
2191
2192 /*
2193  * Move the just written object into its final resting place.
2194  * NEEDSWORK: this should be renamed to finalize_temp_file() as
2195  * "moving" is only a part of what it does, when no patch between
2196  * master to pu changes the call sites of this function.
2197  */
2198 int move_temp_to_file(const char *tmpfile, const char *filename)
2199 {
2200         int ret = 0;
2201
2202         if (object_creation_mode == OBJECT_CREATION_USES_RENAMES)
2203                 goto try_rename;
2204         else if (link(tmpfile, filename))
2205                 ret = errno;
2206
2207         /*
2208          * Coda hack - coda doesn't like cross-directory links,
2209          * so we fall back to a rename, which will mean that it
2210          * won't be able to check collisions, but that's not a
2211          * big deal.
2212          *
2213          * The same holds for FAT formatted media.
2214          *
2215          * When this succeeds, we just return.  We have nothing
2216          * left to unlink.
2217          */
2218         if (ret && ret != EEXIST) {
2219         try_rename:
2220                 if (!rename(tmpfile, filename))
2221                         goto out;
2222                 ret = errno;
2223         }
2224         unlink_or_warn(tmpfile);
2225         if (ret) {
2226                 if (ret != EEXIST) {
2227                         return error("unable to write sha1 filename %s: %s\n", filename, strerror(ret));
2228                 }
2229                 /* FIXME!!! Collision check here ? */
2230         }
2231
2232 out:
2233         if (adjust_shared_perm(filename))
2234                 return error("unable to set permission to '%s'", filename);
2235         return 0;
2236 }
2237
2238 static int write_buffer(int fd, const void *buf, size_t len)
2239 {
2240         if (write_in_full(fd, buf, len) < 0)
2241                 return error("file write error (%s)", strerror(errno));
2242         return 0;
2243 }
2244
2245 int hash_sha1_file(const void *buf, unsigned long len, const char *type,
2246                    unsigned char *sha1)
2247 {
2248         char hdr[32];
2249         int hdrlen;
2250         write_sha1_file_prepare(buf, len, type, sha1, hdr, &hdrlen);
2251         return 0;
2252 }
2253
2254 /* Finalize a file on disk, and close it. */
2255 static void close_sha1_file(int fd)
2256 {
2257         if (fsync_object_files)
2258                 fsync_or_die(fd, "sha1 file");
2259         if (close(fd) != 0)
2260                 die_errno("error when closing sha1 file");
2261 }
2262
2263 /* Size of directory component, including the ending '/' */
2264 static inline int directory_size(const char *filename)
2265 {
2266         const char *s = strrchr(filename, '/');
2267         if (!s)
2268                 return 0;
2269         return s - filename + 1;
2270 }
2271
2272 /*
2273  * This creates a temporary file in the same directory as the final
2274  * 'filename'
2275  *
2276  * We want to avoid cross-directory filename renames, because those
2277  * can have problems on various filesystems (FAT, NFS, Coda).
2278  */
2279 static int create_tmpfile(char *buffer, size_t bufsiz, const char *filename)
2280 {
2281         int fd, dirlen = directory_size(filename);
2282
2283         if (dirlen + 20 > bufsiz) {
2284                 errno = ENAMETOOLONG;
2285                 return -1;
2286         }
2287         memcpy(buffer, filename, dirlen);
2288         strcpy(buffer + dirlen, "tmp_obj_XXXXXX");
2289         fd = git_mkstemp_mode(buffer, 0444);
2290         if (fd < 0 && dirlen && errno == ENOENT) {
2291                 /* Make sure the directory exists */
2292                 memcpy(buffer, filename, dirlen);
2293                 buffer[dirlen-1] = 0;
2294                 if (mkdir(buffer, 0777) || adjust_shared_perm(buffer))
2295                         return -1;
2296
2297                 /* Try again */
2298                 strcpy(buffer + dirlen - 1, "/tmp_obj_XXXXXX");
2299                 fd = git_mkstemp_mode(buffer, 0444);
2300         }
2301         return fd;
2302 }
2303
2304 static int write_loose_object(const unsigned char *sha1, char *hdr, int hdrlen,
2305                               const void *buf, unsigned long len, time_t mtime)
2306 {
2307         int fd, ret;
2308         unsigned char compressed[4096];
2309         z_stream stream;
2310         git_SHA_CTX c;
2311         unsigned char parano_sha1[20];
2312         char *filename;
2313         static char tmpfile[PATH_MAX];
2314
2315         filename = sha1_file_name(sha1);
2316         fd = create_tmpfile(tmpfile, sizeof(tmpfile), filename);
2317         while (fd < 0 && errno == EMFILE && unuse_one_window(packed_git, -1))
2318                 fd = create_tmpfile(tmpfile, sizeof(tmpfile), filename);
2319         if (fd < 0) {
2320                 if (errno == EACCES)
2321                         return error("insufficient permission for adding an object to repository database %s\n", get_object_directory());
2322                 else
2323                         return error("unable to create temporary sha1 filename %s: %s\n", tmpfile, strerror(errno));
2324         }
2325
2326         /* Set it up */
2327         memset(&stream, 0, sizeof(stream));
2328         deflateInit(&stream, zlib_compression_level);
2329         stream.next_out = compressed;
2330         stream.avail_out = sizeof(compressed);
2331         git_SHA1_Init(&c);
2332
2333         /* First header.. */
2334         stream.next_in = (unsigned char *)hdr;
2335         stream.avail_in = hdrlen;
2336         while (deflate(&stream, 0) == Z_OK)
2337                 /* nothing */;
2338         git_SHA1_Update(&c, hdr, hdrlen);
2339
2340         /* Then the data itself.. */
2341         stream.next_in = (void *)buf;
2342         stream.avail_in = len;
2343         do {
2344                 unsigned char *in0 = stream.next_in;
2345                 ret = deflate(&stream, Z_FINISH);
2346                 git_SHA1_Update(&c, in0, stream.next_in - in0);
2347                 if (write_buffer(fd, compressed, stream.next_out - compressed) < 0)
2348                         die("unable to write sha1 file");
2349                 stream.next_out = compressed;
2350                 stream.avail_out = sizeof(compressed);
2351         } while (ret == Z_OK);
2352
2353         if (ret != Z_STREAM_END)
2354                 die("unable to deflate new object %s (%d)", sha1_to_hex(sha1), ret);
2355         ret = deflateEnd(&stream);
2356         if (ret != Z_OK)
2357                 die("deflateEnd on object %s failed (%d)", sha1_to_hex(sha1), ret);
2358         git_SHA1_Final(parano_sha1, &c);
2359         if (hashcmp(sha1, parano_sha1) != 0)
2360                 die("confused by unstable object source data for %s", sha1_to_hex(sha1));
2361
2362         close_sha1_file(fd);
2363
2364         if (mtime) {
2365                 struct utimbuf utb;
2366                 utb.actime = mtime;
2367                 utb.modtime = mtime;
2368                 if (utime(tmpfile, &utb) < 0)
2369                         warning("failed utime() on %s: %s",
2370                                 tmpfile, strerror(errno));
2371         }
2372
2373         return move_temp_to_file(tmpfile, filename);
2374 }
2375
2376 int write_sha1_file(const void *buf, unsigned long len, const char *type, unsigned char *returnsha1)
2377 {
2378         unsigned char sha1[20];
2379         char hdr[32];
2380         int hdrlen;
2381
2382         /* Normally if we have it in the pack then we do not bother writing
2383          * it out into .git/objects/??/?{38} file.
2384          */
2385         write_sha1_file_prepare(buf, len, type, sha1, hdr, &hdrlen);
2386         if (returnsha1)
2387                 hashcpy(returnsha1, sha1);
2388         if (has_sha1_file(sha1))
2389                 return 0;
2390         return write_loose_object(sha1, hdr, hdrlen, buf, len, 0);
2391 }
2392
2393 int force_object_loose(const unsigned char *sha1, time_t mtime)
2394 {
2395         void *buf;
2396         unsigned long len;
2397         enum object_type type;
2398         char hdr[32];
2399         int hdrlen;
2400         int ret;
2401
2402         if (has_loose_object(sha1))
2403                 return 0;
2404         buf = read_packed_sha1(sha1, &type, &len);
2405         if (!buf)
2406                 return error("cannot read sha1_file for %s", sha1_to_hex(sha1));
2407         hdrlen = sprintf(hdr, "%s %lu", typename(type), len) + 1;
2408         ret = write_loose_object(sha1, hdr, hdrlen, buf, len, mtime);
2409         free(buf);
2410
2411         return ret;
2412 }
2413
2414 int has_pack_index(const unsigned char *sha1)
2415 {
2416         struct stat st;
2417         if (stat(sha1_pack_index_name(sha1), &st))
2418                 return 0;
2419         return 1;
2420 }
2421
2422 int has_sha1_pack(const unsigned char *sha1)
2423 {
2424         struct pack_entry e;
2425         return find_pack_entry(sha1, &e);
2426 }
2427
2428 int has_sha1_file(const unsigned char *sha1)
2429 {
2430         struct pack_entry e;
2431
2432         if (find_pack_entry(sha1, &e))
2433                 return 1;
2434         return has_loose_object(sha1);
2435 }
2436
2437 static int index_mem(unsigned char *sha1, void *buf, size_t size,
2438                      int write_object, enum object_type type, const char *path)
2439 {
2440         int ret, re_allocated = 0;
2441
2442         if (!type)
2443                 type = OBJ_BLOB;
2444
2445         /*
2446          * Convert blobs to git internal format
2447          */
2448         if ((type == OBJ_BLOB) && path) {
2449                 struct strbuf nbuf = STRBUF_INIT;
2450                 if (convert_to_git(path, buf, size, &nbuf,
2451                                    write_object ? safe_crlf : 0)) {
2452                         buf = strbuf_detach(&nbuf, &size);
2453                         re_allocated = 1;
2454                 }
2455         }
2456
2457         if (write_object)
2458                 ret = write_sha1_file(buf, size, typename(type), sha1);
2459         else
2460                 ret = hash_sha1_file(buf, size, typename(type), sha1);
2461         if (re_allocated)
2462                 free(buf);
2463         return ret;
2464 }
2465
2466 #define SMALL_FILE_SIZE (32*1024)
2467
2468 int index_fd(unsigned char *sha1, int fd, struct stat *st, int write_object,
2469              enum object_type type, const char *path)
2470 {
2471         int ret;
2472         size_t size = xsize_t(st->st_size);
2473
2474         if (!S_ISREG(st->st_mode)) {
2475                 struct strbuf sbuf = STRBUF_INIT;
2476                 if (strbuf_read(&sbuf, fd, 4096) >= 0)
2477                         ret = index_mem(sha1, sbuf.buf, sbuf.len, write_object,
2478                                         type, path);
2479                 else
2480                         ret = -1;
2481                 strbuf_release(&sbuf);
2482         } else if (!size) {
2483                 ret = index_mem(sha1, NULL, size, write_object, type, path);
2484         } else if (size <= SMALL_FILE_SIZE) {
2485                 char *buf = xmalloc(size);
2486                 if (size == read_in_full(fd, buf, size))
2487                         ret = index_mem(sha1, buf, size, write_object, type,
2488                                         path);
2489                 else
2490                         ret = error("short read %s", strerror(errno));
2491                 free(buf);
2492         } else {
2493                 void *buf = xmmap(NULL, size, PROT_READ, MAP_PRIVATE, fd, 0);
2494                 ret = index_mem(sha1, buf, size, write_object, type, path);
2495                 munmap(buf, size);
2496         }
2497         close(fd);
2498         return ret;
2499 }
2500
2501 int index_path(unsigned char *sha1, const char *path, struct stat *st, int write_object)
2502 {
2503         int fd;
2504         struct strbuf sb = STRBUF_INIT;
2505
2506         switch (st->st_mode & S_IFMT) {
2507         case S_IFREG:
2508                 fd = open(path, O_RDONLY);
2509                 if (fd < 0)
2510                         return error("open(\"%s\"): %s", path,
2511                                      strerror(errno));
2512                 if (index_fd(sha1, fd, st, write_object, OBJ_BLOB, path) < 0)
2513                         return error("%s: failed to insert into database",
2514                                      path);
2515                 break;
2516         case S_IFLNK:
2517                 if (strbuf_readlink(&sb, path, st->st_size)) {
2518                         char *errstr = strerror(errno);
2519                         return error("readlink(\"%s\"): %s", path,
2520                                      errstr);
2521                 }
2522                 if (!write_object)
2523                         hash_sha1_file(sb.buf, sb.len, blob_type, sha1);
2524                 else if (write_sha1_file(sb.buf, sb.len, blob_type, sha1))
2525                         return error("%s: failed to insert into database",
2526                                      path);
2527                 strbuf_release(&sb);
2528                 break;
2529         case S_IFDIR:
2530                 return resolve_gitlink_ref(path, "HEAD", sha1);
2531         default:
2532                 return error("%s: unsupported file type", path);
2533         }
2534         return 0;
2535 }
2536
2537 int read_pack_header(int fd, struct pack_header *header)
2538 {
2539         if (read_in_full(fd, header, sizeof(*header)) < sizeof(*header))
2540                 /* "eof before pack header was fully read" */
2541                 return PH_ERROR_EOF;
2542
2543         if (header->hdr_signature != htonl(PACK_SIGNATURE))
2544                 /* "protocol error (pack signature mismatch detected)" */
2545                 return PH_ERROR_PACK_SIGNATURE;
2546         if (!pack_version_ok(header->hdr_version))
2547                 /* "protocol error (pack version unsupported)" */
2548                 return PH_ERROR_PROTOCOL;
2549         return 0;
2550 }
2551
2552 void assert_sha1_type(const unsigned char *sha1, enum object_type expect)
2553 {
2554         enum object_type type = sha1_object_info(sha1, NULL);
2555         if (type < 0)
2556                 die("%s is not a valid object", sha1_to_hex(sha1));
2557         if (type != expect)
2558                 die("%s is not a valid '%s' object", sha1_to_hex(sha1),
2559                     typename(expect));
2560 }