11 #include "pack-revindex.h"
12 #include "csum-file.h"
13 #include "tree-walk.h"
16 #include "list-objects.h"
20 #ifdef THREADED_DELTA_SEARCH
21 #include "thread-utils.h"
25 static const char pack_usage
[] = "\
26 git-pack-objects [{ -q | --progress | --all-progress }] \n\
27 [--max-pack-size=N] [--local] [--incremental] \n\
28 [--window=N] [--window-memory=N] [--depth=N] \n\
29 [--no-reuse-delta] [--no-reuse-object] [--delta-base-offset] \n\
30 [--threads=N] [--non-empty] [--revs [--unpacked | --all]*] [--reflog] \n\
31 [--stdout | base-name] [--include-tag] \n\
32 [--keep-unreachable | --unpack-unreachable] \n\
33 [<ref-list | <object-list]";
36 struct pack_idx_entry idx
;
37 unsigned long size
; /* uncompressed size */
38 struct packed_git
*in_pack
; /* already in pack */
40 struct object_entry
*delta
; /* delta base object */
41 struct object_entry
*delta_child
; /* deltified objects who bases me */
42 struct object_entry
*delta_sibling
; /* other deltified objects who
43 * uses the same base as me
45 void *delta_data
; /* cached delta (uncompressed) */
46 unsigned long delta_size
; /* delta data size (uncompressed) */
47 unsigned long z_delta_size
; /* delta data size (compressed) */
48 unsigned int hash
; /* name hint hash */
49 enum object_type type
;
50 enum object_type in_pack_type
; /* could be delta */
51 unsigned char in_pack_header_size
;
52 unsigned char preferred_base
; /* we do not pack this, but is available
53 * to be used as the base object to delta
56 unsigned char no_try_delta
;
60 * Objects we are going to pack are collected in objects array (dynamically
61 * expanded). nr_objects & nr_alloc controls this array. They are stored
62 * in the order we see -- typically rev-list --objects order that gives us
63 * nice "minimum seek" order.
65 static struct object_entry
*objects
;
66 static struct pack_idx_entry
**written_list
;
67 static uint32_t nr_objects
, nr_alloc
, nr_result
, nr_written
;
70 static int reuse_delta
= 1, reuse_object
= 1;
71 static int keep_unreachable
, unpack_unreachable
, include_tag
;
73 static int incremental
;
74 static int allow_ofs_delta
;
75 static const char *base_name
;
76 static int progress
= 1;
77 static int window
= 10;
78 static uint32_t pack_size_limit
, pack_size_limit_cfg
;
79 static int depth
= 50;
80 static int delta_search_threads
= 1;
81 static int pack_to_stdout
;
82 static int num_preferred_base
;
83 static struct progress
*progress_state
;
84 static int pack_compression_level
= Z_DEFAULT_COMPRESSION
;
85 static int pack_compression_seen
;
87 static unsigned long delta_cache_size
= 0;
88 static unsigned long max_delta_cache_size
= 0;
89 static unsigned long cache_max_small_delta_size
= 1000;
91 static unsigned long window_memory_limit
= 0;
94 * The object names in objects array are hashed with this hashtable,
95 * to help looking up the entry by object name.
96 * This hashtable is built after all the objects are seen.
98 static int *object_ix
;
99 static int object_ix_hashsz
;
104 static uint32_t written
, written_delta
;
105 static uint32_t reused
, reused_delta
;
108 static void *get_delta(struct object_entry
*entry
)
110 unsigned long size
, base_size
, delta_size
;
111 void *buf
, *base_buf
, *delta_buf
;
112 enum object_type type
;
114 buf
= read_sha1_file(entry
->idx
.sha1
, &type
, &size
);
116 die("unable to read %s", sha1_to_hex(entry
->idx
.sha1
));
117 base_buf
= read_sha1_file(entry
->delta
->idx
.sha1
, &type
, &base_size
);
119 die("unable to read %s", sha1_to_hex(entry
->delta
->idx
.sha1
));
120 delta_buf
= diff_delta(base_buf
, base_size
,
121 buf
, size
, &delta_size
, 0);
122 if (!delta_buf
|| delta_size
!= entry
->delta_size
)
123 die("delta size changed");
129 static unsigned long do_compress(void **pptr
, unsigned long size
)
133 unsigned long maxsize
;
135 memset(&stream
, 0, sizeof(stream
));
136 deflateInit(&stream
, pack_compression_level
);
137 maxsize
= deflateBound(&stream
, size
);
140 out
= xmalloc(maxsize
);
144 stream
.avail_in
= size
;
145 stream
.next_out
= out
;
146 stream
.avail_out
= maxsize
;
147 while (deflate(&stream
, Z_FINISH
) == Z_OK
)
152 return stream
.total_out
;
156 * The per-object header is a pretty dense thing, which is
157 * - first byte: low four bits are "size", then three bits of "type",
158 * and the high bit is "size continues".
159 * - each byte afterwards: low seven bits are size continuation,
160 * with the high bit being "size continues"
162 static int encode_header(enum object_type type
, unsigned long size
, unsigned char *hdr
)
167 if (type
< OBJ_COMMIT
|| type
> OBJ_REF_DELTA
)
168 die("bad type %d", type
);
170 c
= (type
<< 4) | (size
& 15);
183 * we are going to reuse the existing object data as is. make
184 * sure it is not corrupt.
186 static int check_pack_inflate(struct packed_git
*p
,
187 struct pack_window
**w_curs
,
190 unsigned long expect
)
193 unsigned char fakebuf
[4096], *in
;
196 memset(&stream
, 0, sizeof(stream
));
197 inflateInit(&stream
);
199 in
= use_pack(p
, w_curs
, offset
, &stream
.avail_in
);
201 stream
.next_out
= fakebuf
;
202 stream
.avail_out
= sizeof(fakebuf
);
203 st
= inflate(&stream
, Z_FINISH
);
204 offset
+= stream
.next_in
- in
;
205 } while (st
== Z_OK
|| st
== Z_BUF_ERROR
);
207 return (st
== Z_STREAM_END
&&
208 stream
.total_out
== expect
&&
209 stream
.total_in
== len
) ? 0 : -1;
212 static int check_pack_crc(struct packed_git
*p
, struct pack_window
**w_curs
,
213 off_t offset
, off_t len
, unsigned int nr
)
215 const uint32_t *index_crc
;
216 uint32_t data_crc
= crc32(0, Z_NULL
, 0);
220 void *data
= use_pack(p
, w_curs
, offset
, &avail
);
223 data_crc
= crc32(data_crc
, data
, avail
);
228 index_crc
= p
->index_data
;
229 index_crc
+= 2 + 256 + p
->num_objects
* (20/4) + nr
;
231 return data_crc
!= ntohl(*index_crc
);
234 static void copy_pack_data(struct sha1file
*f
,
235 struct packed_git
*p
,
236 struct pack_window
**w_curs
,
244 in
= use_pack(p
, w_curs
, offset
, &avail
);
246 avail
= (unsigned int)len
;
247 sha1write(f
, in
, avail
);
253 static unsigned long write_object(struct sha1file
*f
,
254 struct object_entry
*entry
,
257 unsigned long size
, limit
, datalen
;
259 unsigned char header
[10], dheader
[10];
261 enum object_type type
;
262 int usable_delta
, to_reuse
;
269 /* write limit if limited packsize and not first object */
270 limit
= pack_size_limit
&& nr_written
?
271 pack_size_limit
- write_offset
: 0;
274 usable_delta
= 0; /* no delta */
275 else if (!pack_size_limit
)
276 usable_delta
= 1; /* unlimited packfile */
277 else if (entry
->delta
->idx
.offset
== (off_t
)-1)
278 usable_delta
= 0; /* base was written to another pack */
279 else if (entry
->delta
->idx
.offset
)
280 usable_delta
= 1; /* base already exists in this pack */
282 usable_delta
= 0; /* base could end up in another pack */
285 to_reuse
= 0; /* explicit */
286 else if (!entry
->in_pack
)
287 to_reuse
= 0; /* can't reuse what we don't have */
288 else if (type
== OBJ_REF_DELTA
|| type
== OBJ_OFS_DELTA
)
289 /* check_object() decided it for us ... */
290 to_reuse
= usable_delta
;
291 /* ... but pack split may override that */
292 else if (type
!= entry
->in_pack_type
)
293 to_reuse
= 0; /* pack has delta which is unusable */
294 else if (entry
->delta
)
295 to_reuse
= 0; /* we want to pack afresh */
297 to_reuse
= 1; /* we have it in-pack undeltified,
298 * and we do not need to deltify it.
303 buf
= read_sha1_file(entry
->idx
.sha1
, &type
, &size
);
305 die("unable to read %s", sha1_to_hex(entry
->idx
.sha1
));
307 * make sure no cached delta data remains from a
308 * previous attempt before a pack split occured.
310 free(entry
->delta_data
);
311 entry
->delta_data
= NULL
;
312 entry
->z_delta_size
= 0;
313 } else if (entry
->delta_data
) {
314 size
= entry
->delta_size
;
315 buf
= entry
->delta_data
;
316 entry
->delta_data
= NULL
;
317 type
= (allow_ofs_delta
&& entry
->delta
->idx
.offset
) ?
318 OBJ_OFS_DELTA
: OBJ_REF_DELTA
;
320 buf
= get_delta(entry
);
321 size
= entry
->delta_size
;
322 type
= (allow_ofs_delta
&& entry
->delta
->idx
.offset
) ?
323 OBJ_OFS_DELTA
: OBJ_REF_DELTA
;
326 if (entry
->z_delta_size
)
327 datalen
= entry
->z_delta_size
;
329 datalen
= do_compress(&buf
, size
);
332 * The object header is a byte of 'type' followed by zero or
333 * more bytes of length.
335 hdrlen
= encode_header(type
, size
, header
);
337 if (type
== OBJ_OFS_DELTA
) {
339 * Deltas with relative base contain an additional
340 * encoding of the relative offset for the delta
341 * base from this object's position in the pack.
343 off_t ofs
= entry
->idx
.offset
- entry
->delta
->idx
.offset
;
344 unsigned pos
= sizeof(dheader
) - 1;
345 dheader
[pos
] = ofs
& 127;
347 dheader
[--pos
] = 128 | (--ofs
& 127);
348 if (limit
&& hdrlen
+ sizeof(dheader
) - pos
+ datalen
+ 20 >= limit
) {
352 sha1write(f
, header
, hdrlen
);
353 sha1write(f
, dheader
+ pos
, sizeof(dheader
) - pos
);
354 hdrlen
+= sizeof(dheader
) - pos
;
355 } else if (type
== OBJ_REF_DELTA
) {
357 * Deltas with a base reference contain
358 * an additional 20 bytes for the base sha1.
360 if (limit
&& hdrlen
+ 20 + datalen
+ 20 >= limit
) {
364 sha1write(f
, header
, hdrlen
);
365 sha1write(f
, entry
->delta
->idx
.sha1
, 20);
368 if (limit
&& hdrlen
+ datalen
+ 20 >= limit
) {
372 sha1write(f
, header
, hdrlen
);
374 sha1write(f
, buf
, datalen
);
378 struct packed_git
*p
= entry
->in_pack
;
379 struct pack_window
*w_curs
= NULL
;
380 struct revindex_entry
*revidx
;
384 type
= (allow_ofs_delta
&& entry
->delta
->idx
.offset
) ?
385 OBJ_OFS_DELTA
: OBJ_REF_DELTA
;
388 hdrlen
= encode_header(type
, entry
->size
, header
);
389 offset
= entry
->in_pack_offset
;
390 revidx
= find_pack_revindex(p
, offset
);
391 datalen
= revidx
[1].offset
- offset
;
392 if (!pack_to_stdout
&& p
->index_version
> 1 &&
393 check_pack_crc(p
, &w_curs
, offset
, datalen
, revidx
->nr
))
394 die("bad packed object CRC for %s", sha1_to_hex(entry
->idx
.sha1
));
395 offset
+= entry
->in_pack_header_size
;
396 datalen
-= entry
->in_pack_header_size
;
397 if (type
== OBJ_OFS_DELTA
) {
398 off_t ofs
= entry
->idx
.offset
- entry
->delta
->idx
.offset
;
399 unsigned pos
= sizeof(dheader
) - 1;
400 dheader
[pos
] = ofs
& 127;
402 dheader
[--pos
] = 128 | (--ofs
& 127);
403 if (limit
&& hdrlen
+ sizeof(dheader
) - pos
+ datalen
+ 20 >= limit
)
405 sha1write(f
, header
, hdrlen
);
406 sha1write(f
, dheader
+ pos
, sizeof(dheader
) - pos
);
407 hdrlen
+= sizeof(dheader
) - pos
;
408 } else if (type
== OBJ_REF_DELTA
) {
409 if (limit
&& hdrlen
+ 20 + datalen
+ 20 >= limit
)
411 sha1write(f
, header
, hdrlen
);
412 sha1write(f
, entry
->delta
->idx
.sha1
, 20);
415 if (limit
&& hdrlen
+ datalen
+ 20 >= limit
)
417 sha1write(f
, header
, hdrlen
);
420 if (!pack_to_stdout
&& p
->index_version
== 1 &&
421 check_pack_inflate(p
, &w_curs
, offset
, datalen
, entry
->size
))
422 die("corrupt packed object for %s", sha1_to_hex(entry
->idx
.sha1
));
423 copy_pack_data(f
, p
, &w_curs
, offset
, datalen
);
431 entry
->idx
.crc32
= crc32_end(f
);
432 return hdrlen
+ datalen
;
435 static off_t
write_one(struct sha1file
*f
,
436 struct object_entry
*e
,
441 /* offset is non zero if object is written already. */
442 if (e
->idx
.offset
|| e
->preferred_base
)
445 /* if we are deltified, write out base object first. */
447 offset
= write_one(f
, e
->delta
, offset
);
452 e
->idx
.offset
= offset
;
453 size
= write_object(f
, e
, offset
);
458 written_list
[nr_written
++] = &e
->idx
;
460 /* make sure off_t is sufficiently large not to wrap */
461 if (offset
> offset
+ size
)
462 die("pack too large for current definition of off_t");
463 return offset
+ size
;
466 /* forward declaration for write_pack_file */
467 static int adjust_perm(const char *path
, mode_t mode
);
469 static void write_pack_file(void)
473 off_t offset
, offset_one
, last_obj_offset
= 0;
474 struct pack_header hdr
;
475 uint32_t nr_remaining
= nr_result
;
476 time_t last_mtime
= 0;
478 if (progress
> pack_to_stdout
)
479 progress_state
= start_progress("Writing objects", nr_result
);
480 written_list
= xmalloc(nr_objects
* sizeof(*written_list
));
483 unsigned char sha1
[20];
484 char *pack_tmp_name
= NULL
;
486 if (pack_to_stdout
) {
487 f
= sha1fd_throughput(1, "<stdout>", progress_state
);
489 char tmpname
[PATH_MAX
];
491 snprintf(tmpname
, sizeof(tmpname
),
492 "%s/tmp_pack_XXXXXX", get_object_directory());
493 fd
= xmkstemp(tmpname
);
494 pack_tmp_name
= xstrdup(tmpname
);
495 f
= sha1fd(fd
, pack_tmp_name
);
498 hdr
.hdr_signature
= htonl(PACK_SIGNATURE
);
499 hdr
.hdr_version
= htonl(PACK_VERSION
);
500 hdr
.hdr_entries
= htonl(nr_remaining
);
501 sha1write(f
, &hdr
, sizeof(hdr
));
502 offset
= sizeof(hdr
);
504 for (; i
< nr_objects
; i
++) {
505 last_obj_offset
= offset
;
506 offset_one
= write_one(f
, objects
+ i
, offset
);
510 display_progress(progress_state
, written
);
514 * Did we write the wrong # entries in the header?
515 * If so, rewrite it like in fast-import
517 if (pack_to_stdout
) {
518 sha1close(f
, sha1
, CSUM_CLOSE
);
519 } else if (nr_written
== nr_remaining
) {
520 sha1close(f
, sha1
, CSUM_FSYNC
);
522 int fd
= sha1close(f
, NULL
, 0);
523 fixup_pack_header_footer(fd
, sha1
, pack_tmp_name
, nr_written
);
524 fsync_or_die(fd
, pack_tmp_name
);
528 if (!pack_to_stdout
) {
529 mode_t mode
= umask(0);
531 char *idx_tmp_name
, tmpname
[PATH_MAX
];
536 idx_tmp_name
= write_idx_file(NULL
, written_list
,
539 snprintf(tmpname
, sizeof(tmpname
), "%s-%s.pack",
540 base_name
, sha1_to_hex(sha1
));
541 if (adjust_perm(pack_tmp_name
, mode
))
542 die("unable to make temporary pack file readable: %s",
544 if (rename(pack_tmp_name
, tmpname
))
545 die("unable to rename temporary pack file: %s",
549 * Packs are runtime accessed in their mtime
550 * order since newer packs are more likely to contain
551 * younger objects. So if we are creating multiple
552 * packs then we should modify the mtime of later ones
553 * to preserve this property.
555 if (stat(tmpname
, &st
) < 0) {
556 warning("failed to stat %s: %s",
557 tmpname
, strerror(errno
));
558 } else if (!last_mtime
) {
559 last_mtime
= st
.st_mtime
;
562 utb
.actime
= st
.st_atime
;
563 utb
.modtime
= --last_mtime
;
564 if (utime(tmpname
, &utb
) < 0)
565 warning("failed utime() on %s: %s",
566 tmpname
, strerror(errno
));
569 snprintf(tmpname
, sizeof(tmpname
), "%s-%s.idx",
570 base_name
, sha1_to_hex(sha1
));
571 if (adjust_perm(idx_tmp_name
, mode
))
572 die("unable to make temporary index file readable: %s",
574 if (rename(idx_tmp_name
, tmpname
))
575 die("unable to rename temporary index file: %s",
580 puts(sha1_to_hex(sha1
));
583 /* mark written objects as written to previous pack */
584 for (j
= 0; j
< nr_written
; j
++) {
585 written_list
[j
]->offset
= (off_t
)-1;
587 nr_remaining
-= nr_written
;
588 } while (nr_remaining
&& i
< nr_objects
);
591 stop_progress(&progress_state
);
592 if (written
!= nr_result
)
593 die("wrote %u objects while expecting %u", written
, nr_result
);
595 * We have scanned through [0 ... i). Since we have written
596 * the correct number of objects, the remaining [i ... nr_objects)
597 * items must be either already written (due to out-of-order delta base)
598 * or a preferred base. Count those which are neither and complain if any.
600 for (j
= 0; i
< nr_objects
; i
++) {
601 struct object_entry
*e
= objects
+ i
;
602 j
+= !e
->idx
.offset
&& !e
->preferred_base
;
605 die("wrote %u objects as expected but %u unwritten", written
, j
);
608 static int locate_object_entry_hash(const unsigned char *sha1
)
612 memcpy(&ui
, sha1
, sizeof(unsigned int));
613 i
= ui
% object_ix_hashsz
;
614 while (0 < object_ix
[i
]) {
615 if (!hashcmp(sha1
, objects
[object_ix
[i
] - 1].idx
.sha1
))
617 if (++i
== object_ix_hashsz
)
623 static struct object_entry
*locate_object_entry(const unsigned char *sha1
)
627 if (!object_ix_hashsz
)
630 i
= locate_object_entry_hash(sha1
);
632 return &objects
[object_ix
[i
]-1];
636 static void rehash_objects(void)
639 struct object_entry
*oe
;
641 object_ix_hashsz
= nr_objects
* 3;
642 if (object_ix_hashsz
< 1024)
643 object_ix_hashsz
= 1024;
644 object_ix
= xrealloc(object_ix
, sizeof(int) * object_ix_hashsz
);
645 memset(object_ix
, 0, sizeof(int) * object_ix_hashsz
);
646 for (i
= 0, oe
= objects
; i
< nr_objects
; i
++, oe
++) {
647 int ix
= locate_object_entry_hash(oe
->idx
.sha1
);
651 object_ix
[ix
] = i
+ 1;
655 static unsigned name_hash(const char *name
)
664 * This effectively just creates a sortable number from the
665 * last sixteen non-whitespace characters. Last characters
666 * count "most", so things that end in ".c" sort together.
668 while ((c
= *name
++) != 0) {
671 hash
= (hash
>> 2) + (c
<< 24);
676 static void setup_delta_attr_check(struct git_attr_check
*check
)
678 static struct git_attr
*attr_delta
;
681 attr_delta
= git_attr("delta", 5);
683 check
[0].attr
= attr_delta
;
686 static int no_try_delta(const char *path
)
688 struct git_attr_check check
[1];
690 setup_delta_attr_check(check
);
691 if (git_checkattr(path
, ARRAY_SIZE(check
), check
))
693 if (ATTR_FALSE(check
->value
))
698 static int add_object_entry(const unsigned char *sha1
, enum object_type type
,
699 const char *name
, int exclude
)
701 struct object_entry
*entry
;
702 struct packed_git
*p
, *found_pack
= NULL
;
703 off_t found_offset
= 0;
705 unsigned hash
= name_hash(name
);
707 ix
= nr_objects
? locate_object_entry_hash(sha1
) : -1;
710 entry
= objects
+ object_ix
[ix
] - 1;
711 if (!entry
->preferred_base
)
713 entry
->preferred_base
= 1;
718 for (p
= packed_git
; p
; p
= p
->next
) {
719 off_t offset
= find_pack_entry_one(sha1
, p
);
722 found_offset
= offset
;
729 if (local
&& !p
->pack_local
)
734 if (nr_objects
>= nr_alloc
) {
735 nr_alloc
= (nr_alloc
+ 1024) * 3 / 2;
736 objects
= xrealloc(objects
, nr_alloc
* sizeof(*entry
));
739 entry
= objects
+ nr_objects
++;
740 memset(entry
, 0, sizeof(*entry
));
741 hashcpy(entry
->idx
.sha1
, sha1
);
746 entry
->preferred_base
= 1;
750 entry
->in_pack
= found_pack
;
751 entry
->in_pack_offset
= found_offset
;
754 if (object_ix_hashsz
* 3 <= nr_objects
* 4)
757 object_ix
[-1 - ix
] = nr_objects
;
759 display_progress(progress_state
, nr_objects
);
761 if (name
&& no_try_delta(name
))
762 entry
->no_try_delta
= 1;
767 struct pbase_tree_cache
{
768 unsigned char sha1
[20];
772 unsigned long tree_size
;
775 static struct pbase_tree_cache
*(pbase_tree_cache
[256]);
776 static int pbase_tree_cache_ix(const unsigned char *sha1
)
778 return sha1
[0] % ARRAY_SIZE(pbase_tree_cache
);
780 static int pbase_tree_cache_ix_incr(int ix
)
782 return (ix
+1) % ARRAY_SIZE(pbase_tree_cache
);
785 static struct pbase_tree
{
786 struct pbase_tree
*next
;
787 /* This is a phony "cache" entry; we are not
788 * going to evict it nor find it through _get()
789 * mechanism -- this is for the toplevel node that
790 * would almost always change with any commit.
792 struct pbase_tree_cache pcache
;
795 static struct pbase_tree_cache
*pbase_tree_get(const unsigned char *sha1
)
797 struct pbase_tree_cache
*ent
, *nent
;
800 enum object_type type
;
802 int my_ix
= pbase_tree_cache_ix(sha1
);
803 int available_ix
= -1;
805 /* pbase-tree-cache acts as a limited hashtable.
806 * your object will be found at your index or within a few
807 * slots after that slot if it is cached.
809 for (neigh
= 0; neigh
< 8; neigh
++) {
810 ent
= pbase_tree_cache
[my_ix
];
811 if (ent
&& !hashcmp(ent
->sha1
, sha1
)) {
815 else if (((available_ix
< 0) && (!ent
|| !ent
->ref
)) ||
816 ((0 <= available_ix
) &&
817 (!ent
&& pbase_tree_cache
[available_ix
])))
818 available_ix
= my_ix
;
821 my_ix
= pbase_tree_cache_ix_incr(my_ix
);
824 /* Did not find one. Either we got a bogus request or
825 * we need to read and perhaps cache.
827 data
= read_sha1_file(sha1
, &type
, &size
);
830 if (type
!= OBJ_TREE
) {
835 /* We need to either cache or return a throwaway copy */
837 if (available_ix
< 0)
840 ent
= pbase_tree_cache
[available_ix
];
841 my_ix
= available_ix
;
845 nent
= xmalloc(sizeof(*nent
));
846 nent
->temporary
= (available_ix
< 0);
849 /* evict and reuse */
850 free(ent
->tree_data
);
853 hashcpy(nent
->sha1
, sha1
);
854 nent
->tree_data
= data
;
855 nent
->tree_size
= size
;
857 if (!nent
->temporary
)
858 pbase_tree_cache
[my_ix
] = nent
;
862 static void pbase_tree_put(struct pbase_tree_cache
*cache
)
864 if (!cache
->temporary
) {
868 free(cache
->tree_data
);
872 static int name_cmp_len(const char *name
)
875 for (i
= 0; name
[i
] && name
[i
] != '\n' && name
[i
] != '/'; i
++)
880 static void add_pbase_object(struct tree_desc
*tree
,
883 const char *fullname
)
885 struct name_entry entry
;
888 while (tree_entry(tree
,&entry
)) {
889 if (S_ISGITLINK(entry
.mode
))
891 cmp
= tree_entry_len(entry
.path
, entry
.sha1
) != cmplen
? 1 :
892 memcmp(name
, entry
.path
, cmplen
);
897 if (name
[cmplen
] != '/') {
898 add_object_entry(entry
.sha1
,
899 object_type(entry
.mode
),
903 if (S_ISDIR(entry
.mode
)) {
904 struct tree_desc sub
;
905 struct pbase_tree_cache
*tree
;
906 const char *down
= name
+cmplen
+1;
907 int downlen
= name_cmp_len(down
);
909 tree
= pbase_tree_get(entry
.sha1
);
912 init_tree_desc(&sub
, tree
->tree_data
, tree
->tree_size
);
914 add_pbase_object(&sub
, down
, downlen
, fullname
);
915 pbase_tree_put(tree
);
920 static unsigned *done_pbase_paths
;
921 static int done_pbase_paths_num
;
922 static int done_pbase_paths_alloc
;
923 static int done_pbase_path_pos(unsigned hash
)
926 int hi
= done_pbase_paths_num
;
928 int mi
= (hi
+ lo
) / 2;
929 if (done_pbase_paths
[mi
] == hash
)
931 if (done_pbase_paths
[mi
] < hash
)
939 static int check_pbase_path(unsigned hash
)
941 int pos
= (!done_pbase_paths
) ? -1 : done_pbase_path_pos(hash
);
945 if (done_pbase_paths_alloc
<= done_pbase_paths_num
) {
946 done_pbase_paths_alloc
= alloc_nr(done_pbase_paths_alloc
);
947 done_pbase_paths
= xrealloc(done_pbase_paths
,
948 done_pbase_paths_alloc
*
951 done_pbase_paths_num
++;
952 if (pos
< done_pbase_paths_num
)
953 memmove(done_pbase_paths
+ pos
+ 1,
954 done_pbase_paths
+ pos
,
955 (done_pbase_paths_num
- pos
- 1) * sizeof(unsigned));
956 done_pbase_paths
[pos
] = hash
;
960 static void add_preferred_base_object(const char *name
)
962 struct pbase_tree
*it
;
964 unsigned hash
= name_hash(name
);
966 if (!num_preferred_base
|| check_pbase_path(hash
))
969 cmplen
= name_cmp_len(name
);
970 for (it
= pbase_tree
; it
; it
= it
->next
) {
972 add_object_entry(it
->pcache
.sha1
, OBJ_TREE
, NULL
, 1);
975 struct tree_desc tree
;
976 init_tree_desc(&tree
, it
->pcache
.tree_data
, it
->pcache
.tree_size
);
977 add_pbase_object(&tree
, name
, cmplen
, name
);
982 static void add_preferred_base(unsigned char *sha1
)
984 struct pbase_tree
*it
;
987 unsigned char tree_sha1
[20];
989 if (window
<= num_preferred_base
++)
992 data
= read_object_with_reference(sha1
, tree_type
, &size
, tree_sha1
);
996 for (it
= pbase_tree
; it
; it
= it
->next
) {
997 if (!hashcmp(it
->pcache
.sha1
, tree_sha1
)) {
1003 it
= xcalloc(1, sizeof(*it
));
1004 it
->next
= pbase_tree
;
1007 hashcpy(it
->pcache
.sha1
, tree_sha1
);
1008 it
->pcache
.tree_data
= data
;
1009 it
->pcache
.tree_size
= size
;
1012 static void check_object(struct object_entry
*entry
)
1014 if (entry
->in_pack
) {
1015 struct packed_git
*p
= entry
->in_pack
;
1016 struct pack_window
*w_curs
= NULL
;
1017 const unsigned char *base_ref
= NULL
;
1018 struct object_entry
*base_entry
;
1019 unsigned long used
, used_0
;
1022 unsigned char *buf
, c
;
1024 buf
= use_pack(p
, &w_curs
, entry
->in_pack_offset
, &avail
);
1027 * We want in_pack_type even if we do not reuse delta
1028 * since non-delta representations could still be reused.
1030 used
= unpack_object_header_gently(buf
, avail
,
1031 &entry
->in_pack_type
,
1035 * Determine if this is a delta and if so whether we can
1036 * reuse it or not. Otherwise let's find out as cheaply as
1037 * possible what the actual type and size for this object is.
1039 switch (entry
->in_pack_type
) {
1041 /* Not a delta hence we've already got all we need. */
1042 entry
->type
= entry
->in_pack_type
;
1043 entry
->in_pack_header_size
= used
;
1044 unuse_pack(&w_curs
);
1047 if (reuse_delta
&& !entry
->preferred_base
)
1048 base_ref
= use_pack(p
, &w_curs
,
1049 entry
->in_pack_offset
+ used
, NULL
);
1050 entry
->in_pack_header_size
= used
+ 20;
1053 buf
= use_pack(p
, &w_curs
,
1054 entry
->in_pack_offset
+ used
, NULL
);
1060 if (!ofs
|| MSB(ofs
, 7))
1061 die("delta base offset overflow in pack for %s",
1062 sha1_to_hex(entry
->idx
.sha1
));
1064 ofs
= (ofs
<< 7) + (c
& 127);
1066 if (ofs
>= entry
->in_pack_offset
)
1067 die("delta base offset out of bound for %s",
1068 sha1_to_hex(entry
->idx
.sha1
));
1069 ofs
= entry
->in_pack_offset
- ofs
;
1070 if (reuse_delta
&& !entry
->preferred_base
) {
1071 struct revindex_entry
*revidx
;
1072 revidx
= find_pack_revindex(p
, ofs
);
1073 base_ref
= nth_packed_object_sha1(p
, revidx
->nr
);
1075 entry
->in_pack_header_size
= used
+ used_0
;
1079 if (base_ref
&& (base_entry
= locate_object_entry(base_ref
))) {
1081 * If base_ref was set above that means we wish to
1082 * reuse delta data, and we even found that base
1083 * in the list of objects we want to pack. Goodie!
1085 * Depth value does not matter - find_deltas() will
1086 * never consider reused delta as the base object to
1087 * deltify other objects against, in order to avoid
1090 entry
->type
= entry
->in_pack_type
;
1091 entry
->delta
= base_entry
;
1092 entry
->delta_sibling
= base_entry
->delta_child
;
1093 base_entry
->delta_child
= entry
;
1094 unuse_pack(&w_curs
);
1100 * This must be a delta and we already know what the
1101 * final object type is. Let's extract the actual
1102 * object size from the delta header.
1104 entry
->size
= get_size_from_delta(p
, &w_curs
,
1105 entry
->in_pack_offset
+ entry
->in_pack_header_size
);
1106 unuse_pack(&w_curs
);
1111 * No choice but to fall back to the recursive delta walk
1112 * with sha1_object_info() to find about the object type
1115 unuse_pack(&w_curs
);
1118 entry
->type
= sha1_object_info(entry
->idx
.sha1
, &entry
->size
);
1119 if (entry
->type
< 0)
1120 die("unable to get type of object %s",
1121 sha1_to_hex(entry
->idx
.sha1
));
1124 static int pack_offset_sort(const void *_a
, const void *_b
)
1126 const struct object_entry
*a
= *(struct object_entry
**)_a
;
1127 const struct object_entry
*b
= *(struct object_entry
**)_b
;
1129 /* avoid filesystem trashing with loose objects */
1130 if (!a
->in_pack
&& !b
->in_pack
)
1131 return hashcmp(a
->idx
.sha1
, b
->idx
.sha1
);
1133 if (a
->in_pack
< b
->in_pack
)
1135 if (a
->in_pack
> b
->in_pack
)
1137 return a
->in_pack_offset
< b
->in_pack_offset
? -1 :
1138 (a
->in_pack_offset
> b
->in_pack_offset
);
1141 static void get_object_details(void)
1144 struct object_entry
**sorted_by_offset
;
1146 sorted_by_offset
= xcalloc(nr_objects
, sizeof(struct object_entry
*));
1147 for (i
= 0; i
< nr_objects
; i
++)
1148 sorted_by_offset
[i
] = objects
+ i
;
1149 qsort(sorted_by_offset
, nr_objects
, sizeof(*sorted_by_offset
), pack_offset_sort
);
1151 for (i
= 0; i
< nr_objects
; i
++)
1152 check_object(sorted_by_offset
[i
]);
1154 free(sorted_by_offset
);
1158 * We search for deltas in a list sorted by type, by filename hash, and then
1159 * by size, so that we see progressively smaller and smaller files.
1160 * That's because we prefer deltas to be from the bigger file
1161 * to the smaller -- deletes are potentially cheaper, but perhaps
1162 * more importantly, the bigger file is likely the more recent
1163 * one. The deepest deltas are therefore the oldest objects which are
1164 * less susceptible to be accessed often.
1166 static int type_size_sort(const void *_a
, const void *_b
)
1168 const struct object_entry
*a
= *(struct object_entry
**)_a
;
1169 const struct object_entry
*b
= *(struct object_entry
**)_b
;
1171 if (a
->type
> b
->type
)
1173 if (a
->type
< b
->type
)
1175 if (a
->hash
> b
->hash
)
1177 if (a
->hash
< b
->hash
)
1179 if (a
->preferred_base
> b
->preferred_base
)
1181 if (a
->preferred_base
< b
->preferred_base
)
1183 if (a
->size
> b
->size
)
1185 if (a
->size
< b
->size
)
1187 return a
< b
? -1 : (a
> b
); /* newest first */
1191 struct object_entry
*entry
;
1193 struct delta_index
*index
;
1197 static int delta_cacheable(unsigned long src_size
, unsigned long trg_size
,
1198 unsigned long delta_size
)
1200 if (max_delta_cache_size
&& delta_cache_size
+ delta_size
> max_delta_cache_size
)
1203 if (delta_size
< cache_max_small_delta_size
)
1206 /* cache delta, if objects are large enough compared to delta size */
1207 if ((src_size
>> 20) + (trg_size
>> 21) > (delta_size
>> 10))
1213 #ifdef THREADED_DELTA_SEARCH
1215 static pthread_mutex_t read_mutex
= PTHREAD_MUTEX_INITIALIZER
;
1216 #define read_lock() pthread_mutex_lock(&read_mutex)
1217 #define read_unlock() pthread_mutex_unlock(&read_mutex)
1219 static pthread_mutex_t cache_mutex
= PTHREAD_MUTEX_INITIALIZER
;
1220 #define cache_lock() pthread_mutex_lock(&cache_mutex)
1221 #define cache_unlock() pthread_mutex_unlock(&cache_mutex)
1223 static pthread_mutex_t progress_mutex
= PTHREAD_MUTEX_INITIALIZER
;
1224 #define progress_lock() pthread_mutex_lock(&progress_mutex)
1225 #define progress_unlock() pthread_mutex_unlock(&progress_mutex)
1229 #define read_lock() (void)0
1230 #define read_unlock() (void)0
1231 #define cache_lock() (void)0
1232 #define cache_unlock() (void)0
1233 #define progress_lock() (void)0
1234 #define progress_unlock() (void)0
1238 static int try_delta(struct unpacked
*trg
, struct unpacked
*src
,
1239 unsigned max_depth
, unsigned long *mem_usage
)
1241 struct object_entry
*trg_entry
= trg
->entry
;
1242 struct object_entry
*src_entry
= src
->entry
;
1243 unsigned long trg_size
, src_size
, delta_size
, sizediff
, max_size
, sz
;
1245 enum object_type type
;
1248 /* Don't bother doing diffs between different types */
1249 if (trg_entry
->type
!= src_entry
->type
)
1253 * We do not bother to try a delta that we discarded
1254 * on an earlier try, but only when reusing delta data.
1256 if (reuse_delta
&& trg_entry
->in_pack
&&
1257 trg_entry
->in_pack
== src_entry
->in_pack
&&
1258 trg_entry
->in_pack_type
!= OBJ_REF_DELTA
&&
1259 trg_entry
->in_pack_type
!= OBJ_OFS_DELTA
)
1262 /* Let's not bust the allowed depth. */
1263 if (src
->depth
>= max_depth
)
1266 /* Now some size filtering heuristics. */
1267 trg_size
= trg_entry
->size
;
1268 if (!trg_entry
->delta
) {
1269 max_size
= trg_size
/2 - 20;
1272 max_size
= trg_entry
->delta_size
;
1273 ref_depth
= trg
->depth
;
1275 max_size
= max_size
* (max_depth
- src
->depth
) /
1276 (max_depth
- ref_depth
+ 1);
1279 src_size
= src_entry
->size
;
1280 sizediff
= src_size
< trg_size
? trg_size
- src_size
: 0;
1281 if (sizediff
>= max_size
)
1283 if (trg_size
< src_size
/ 32)
1286 /* Load data if not already done */
1289 trg
->data
= read_sha1_file(trg_entry
->idx
.sha1
, &type
, &sz
);
1292 die("object %s cannot be read",
1293 sha1_to_hex(trg_entry
->idx
.sha1
));
1295 die("object %s inconsistent object length (%lu vs %lu)",
1296 sha1_to_hex(trg_entry
->idx
.sha1
), sz
, trg_size
);
1301 src
->data
= read_sha1_file(src_entry
->idx
.sha1
, &type
, &sz
);
1304 die("object %s cannot be read",
1305 sha1_to_hex(src_entry
->idx
.sha1
));
1307 die("object %s inconsistent object length (%lu vs %lu)",
1308 sha1_to_hex(src_entry
->idx
.sha1
), sz
, src_size
);
1312 src
->index
= create_delta_index(src
->data
, src_size
);
1314 static int warned
= 0;
1316 warning("suboptimal pack - out of memory");
1319 *mem_usage
+= sizeof_delta_index(src
->index
);
1322 delta_buf
= create_delta(src
->index
, trg
->data
, trg_size
, &delta_size
, max_size
);
1326 if (trg_entry
->delta
) {
1327 /* Prefer only shallower same-sized deltas. */
1328 if (delta_size
== trg_entry
->delta_size
&&
1329 src
->depth
+ 1 >= trg
->depth
) {
1336 * Handle memory allocation outside of the cache
1337 * accounting lock. Compiler will optimize the strangeness
1338 * away when THREADED_DELTA_SEARCH is not defined.
1340 free(trg_entry
->delta_data
);
1342 if (trg_entry
->delta_data
) {
1343 delta_cache_size
-= trg_entry
->delta_size
;
1344 trg_entry
->delta_data
= NULL
;
1346 if (delta_cacheable(src_size
, trg_size
, delta_size
)) {
1347 delta_cache_size
+= delta_size
;
1349 trg_entry
->delta_data
= xrealloc(delta_buf
, delta_size
);
1355 trg_entry
->delta
= src_entry
;
1356 trg_entry
->delta_size
= delta_size
;
1357 trg
->depth
= src
->depth
+ 1;
1362 static unsigned int check_delta_limit(struct object_entry
*me
, unsigned int n
)
1364 struct object_entry
*child
= me
->delta_child
;
1367 unsigned int c
= check_delta_limit(child
, n
+ 1);
1370 child
= child
->delta_sibling
;
1375 static unsigned long free_unpacked(struct unpacked
*n
)
1377 unsigned long freed_mem
= sizeof_delta_index(n
->index
);
1378 free_delta_index(n
->index
);
1381 freed_mem
+= n
->entry
->size
;
1390 static void find_deltas(struct object_entry
**list
, unsigned *list_size
,
1391 int window
, int depth
, unsigned *processed
)
1393 uint32_t i
, idx
= 0, count
= 0;
1394 unsigned int array_size
= window
* sizeof(struct unpacked
);
1395 struct unpacked
*array
;
1396 unsigned long mem_usage
= 0;
1398 array
= xmalloc(array_size
);
1399 memset(array
, 0, array_size
);
1402 struct object_entry
*entry
= *list
++;
1403 struct unpacked
*n
= array
+ idx
;
1404 int j
, max_depth
, best_base
= -1;
1412 if (!entry
->preferred_base
) {
1414 display_progress(progress_state
, *processed
);
1418 mem_usage
-= free_unpacked(n
);
1421 while (window_memory_limit
&&
1422 mem_usage
> window_memory_limit
&&
1424 uint32_t tail
= (idx
+ window
- count
) % window
;
1425 mem_usage
-= free_unpacked(array
+ tail
);
1429 /* We do not compute delta to *create* objects we are not
1432 if (entry
->preferred_base
)
1436 * If the current object is at pack edge, take the depth the
1437 * objects that depend on the current object into account
1438 * otherwise they would become too deep.
1441 if (entry
->delta_child
) {
1442 max_depth
-= check_delta_limit(entry
, 0);
1450 uint32_t other_idx
= idx
+ j
;
1452 if (other_idx
>= window
)
1453 other_idx
-= window
;
1454 m
= array
+ other_idx
;
1457 ret
= try_delta(n
, m
, max_depth
, &mem_usage
);
1461 best_base
= other_idx
;
1465 * If we decided to cache the delta data, then it is best
1466 * to compress it right away. First because we have to do
1467 * it anyway, and doing it here while we're threaded will
1468 * save a lot of time in the non threaded write phase,
1469 * as well as allow for caching more deltas within
1470 * the same cache size limit.
1472 * But only if not writing to stdout, since in that case
1473 * the network is most likely throttling writes anyway,
1474 * and therefore it is best to go to the write phase ASAP
1475 * instead, as we can afford spending more time compressing
1476 * between writes at that moment.
1478 if (entry
->delta_data
&& !pack_to_stdout
) {
1479 entry
->z_delta_size
= do_compress(&entry
->delta_data
,
1482 delta_cache_size
-= entry
->delta_size
;
1483 delta_cache_size
+= entry
->z_delta_size
;
1487 /* if we made n a delta, and if n is already at max
1488 * depth, leaving it in the window is pointless. we
1489 * should evict it first.
1491 if (entry
->delta
&& max_depth
<= n
->depth
)
1495 * Move the best delta base up in the window, after the
1496 * currently deltified object, to keep it longer. It will
1497 * be the first base object to be attempted next.
1500 struct unpacked swap
= array
[best_base
];
1501 int dist
= (window
+ idx
- best_base
) % window
;
1502 int dst
= best_base
;
1504 int src
= (dst
+ 1) % window
;
1505 array
[dst
] = array
[src
];
1513 if (count
+ 1 < window
)
1519 for (i
= 0; i
< window
; ++i
) {
1520 free_delta_index(array
[i
].index
);
1521 free(array
[i
].data
);
1526 #ifdef THREADED_DELTA_SEARCH
1529 * The main thread waits on the condition that (at least) one of the workers
1530 * has stopped working (which is indicated in the .working member of
1531 * struct thread_params).
1532 * When a work thread has completed its work, it sets .working to 0 and
1533 * signals the main thread and waits on the condition that .data_ready
1537 struct thread_params
{
1539 struct object_entry
**list
;
1546 pthread_mutex_t mutex
;
1547 pthread_cond_t cond
;
1548 unsigned *processed
;
1551 static pthread_cond_t progress_cond
= PTHREAD_COND_INITIALIZER
;
1553 static void *threaded_find_deltas(void *arg
)
1555 struct thread_params
*me
= arg
;
1557 while (me
->remaining
) {
1558 find_deltas(me
->list
, &me
->remaining
,
1559 me
->window
, me
->depth
, me
->processed
);
1563 pthread_cond_signal(&progress_cond
);
1567 * We must not set ->data_ready before we wait on the
1568 * condition because the main thread may have set it to 1
1569 * before we get here. In order to be sure that new
1570 * work is available if we see 1 in ->data_ready, it
1571 * was initialized to 0 before this thread was spawned
1572 * and we reset it to 0 right away.
1574 pthread_mutex_lock(&me
->mutex
);
1575 while (!me
->data_ready
)
1576 pthread_cond_wait(&me
->cond
, &me
->mutex
);
1578 pthread_mutex_unlock(&me
->mutex
);
1580 /* leave ->working 1 so that this doesn't get more work assigned */
1584 static void ll_find_deltas(struct object_entry
**list
, unsigned list_size
,
1585 int window
, int depth
, unsigned *processed
)
1587 struct thread_params p
[delta_search_threads
];
1588 int i
, ret
, active_threads
= 0;
1590 if (delta_search_threads
<= 1) {
1591 find_deltas(list
, &list_size
, window
, depth
, processed
);
1595 /* Partition the work amongst work threads. */
1596 for (i
= 0; i
< delta_search_threads
; i
++) {
1597 unsigned sub_size
= list_size
/ (delta_search_threads
- i
);
1599 p
[i
].window
= window
;
1601 p
[i
].processed
= processed
;
1603 p
[i
].data_ready
= 0;
1605 /* try to split chunks on "path" boundaries */
1606 while (sub_size
&& sub_size
< list_size
&&
1607 list
[sub_size
]->hash
&&
1608 list
[sub_size
]->hash
== list
[sub_size
-1]->hash
)
1612 p
[i
].list_size
= sub_size
;
1613 p
[i
].remaining
= sub_size
;
1616 list_size
-= sub_size
;
1619 /* Start work threads. */
1620 for (i
= 0; i
< delta_search_threads
; i
++) {
1621 if (!p
[i
].list_size
)
1623 pthread_mutex_init(&p
[i
].mutex
, NULL
);
1624 pthread_cond_init(&p
[i
].cond
, NULL
);
1625 ret
= pthread_create(&p
[i
].thread
, NULL
,
1626 threaded_find_deltas
, &p
[i
]);
1628 die("unable to create thread: %s", strerror(ret
));
1633 * Now let's wait for work completion. Each time a thread is done
1634 * with its work, we steal half of the remaining work from the
1635 * thread with the largest number of unprocessed objects and give
1636 * it to that newly idle thread. This ensure good load balancing
1637 * until the remaining object list segments are simply too short
1638 * to be worth splitting anymore.
1640 while (active_threads
) {
1641 struct thread_params
*target
= NULL
;
1642 struct thread_params
*victim
= NULL
;
1643 unsigned sub_size
= 0;
1647 for (i
= 0; !target
&& i
< delta_search_threads
; i
++)
1652 pthread_cond_wait(&progress_cond
, &progress_mutex
);
1655 for (i
= 0; i
< delta_search_threads
; i
++)
1656 if (p
[i
].remaining
> 2*window
&&
1657 (!victim
|| victim
->remaining
< p
[i
].remaining
))
1660 sub_size
= victim
->remaining
/ 2;
1661 list
= victim
->list
+ victim
->list_size
- sub_size
;
1662 while (sub_size
&& list
[0]->hash
&&
1663 list
[0]->hash
== list
[-1]->hash
) {
1669 * It is possible for some "paths" to have
1670 * so many objects that no hash boundary
1671 * might be found. Let's just steal the
1672 * exact half in that case.
1674 sub_size
= victim
->remaining
/ 2;
1677 target
->list
= list
;
1678 victim
->list_size
-= sub_size
;
1679 victim
->remaining
-= sub_size
;
1681 target
->list_size
= sub_size
;
1682 target
->remaining
= sub_size
;
1683 target
->working
= 1;
1686 pthread_mutex_lock(&target
->mutex
);
1687 target
->data_ready
= 1;
1688 pthread_cond_signal(&target
->cond
);
1689 pthread_mutex_unlock(&target
->mutex
);
1692 pthread_join(target
->thread
, NULL
);
1693 pthread_cond_destroy(&target
->cond
);
1694 pthread_mutex_destroy(&target
->mutex
);
1701 #define ll_find_deltas(l, s, w, d, p) find_deltas(l, &s, w, d, p)
1704 static int add_ref_tag(const char *path
, const unsigned char *sha1
, int flag
, void *cb_data
)
1706 unsigned char peeled
[20];
1708 if (!prefixcmp(path
, "refs/tags/") && /* is a tag? */
1709 !peel_ref(path
, peeled
) && /* peelable? */
1710 !is_null_sha1(peeled
) && /* annotated tag? */
1711 locate_object_entry(peeled
)) /* object packed? */
1712 add_object_entry(sha1
, OBJ_TAG
, NULL
, 0);
1716 static void prepare_pack(int window
, int depth
)
1718 struct object_entry
**delta_list
;
1719 uint32_t i
, n
, nr_deltas
;
1721 get_object_details();
1723 if (!nr_objects
|| !window
|| !depth
)
1726 delta_list
= xmalloc(nr_objects
* sizeof(*delta_list
));
1729 for (i
= 0; i
< nr_objects
; i
++) {
1730 struct object_entry
*entry
= objects
+ i
;
1733 /* This happens if we decided to reuse existing
1734 * delta from a pack. "reuse_delta &&" is implied.
1738 if (entry
->size
< 50)
1741 if (entry
->no_try_delta
)
1744 if (!entry
->preferred_base
)
1747 delta_list
[n
++] = entry
;
1750 if (nr_deltas
&& n
> 1) {
1751 unsigned nr_done
= 0;
1753 progress_state
= start_progress("Compressing objects",
1755 qsort(delta_list
, n
, sizeof(*delta_list
), type_size_sort
);
1756 ll_find_deltas(delta_list
, n
, window
+1, depth
, &nr_done
);
1757 stop_progress(&progress_state
);
1758 if (nr_done
!= nr_deltas
)
1759 die("inconsistency with delta count");
1764 static int git_pack_config(const char *k
, const char *v
, void *cb
)
1766 if(!strcmp(k
, "pack.window")) {
1767 window
= git_config_int(k
, v
);
1770 if (!strcmp(k
, "pack.windowmemory")) {
1771 window_memory_limit
= git_config_ulong(k
, v
);
1774 if (!strcmp(k
, "pack.depth")) {
1775 depth
= git_config_int(k
, v
);
1778 if (!strcmp(k
, "pack.compression")) {
1779 int level
= git_config_int(k
, v
);
1781 level
= Z_DEFAULT_COMPRESSION
;
1782 else if (level
< 0 || level
> Z_BEST_COMPRESSION
)
1783 die("bad pack compression level %d", level
);
1784 pack_compression_level
= level
;
1785 pack_compression_seen
= 1;
1788 if (!strcmp(k
, "pack.deltacachesize")) {
1789 max_delta_cache_size
= git_config_int(k
, v
);
1792 if (!strcmp(k
, "pack.deltacachelimit")) {
1793 cache_max_small_delta_size
= git_config_int(k
, v
);
1796 if (!strcmp(k
, "pack.threads")) {
1797 delta_search_threads
= git_config_int(k
, v
);
1798 if (delta_search_threads
< 0)
1799 die("invalid number of threads specified (%d)",
1800 delta_search_threads
);
1801 #ifndef THREADED_DELTA_SEARCH
1802 if (delta_search_threads
!= 1)
1803 warning("no threads support, ignoring %s", k
);
1807 if (!strcmp(k
, "pack.indexversion")) {
1808 pack_idx_default_version
= git_config_int(k
, v
);
1809 if (pack_idx_default_version
> 2)
1810 die("bad pack.indexversion=%d", pack_idx_default_version
);
1813 if (!strcmp(k
, "pack.packsizelimit")) {
1814 pack_size_limit_cfg
= git_config_ulong(k
, v
);
1817 return git_default_config(k
, v
, cb
);
1820 static void read_object_list_from_stdin(void)
1822 char line
[40 + 1 + PATH_MAX
+ 2];
1823 unsigned char sha1
[20];
1826 if (!fgets(line
, sizeof(line
), stdin
)) {
1830 die("fgets returned NULL, not EOF, not error!");
1832 die("fgets: %s", strerror(errno
));
1836 if (line
[0] == '-') {
1837 if (get_sha1_hex(line
+1, sha1
))
1838 die("expected edge sha1, got garbage:\n %s",
1840 add_preferred_base(sha1
);
1843 if (get_sha1_hex(line
, sha1
))
1844 die("expected sha1, got garbage:\n %s", line
);
1846 add_preferred_base_object(line
+41);
1847 add_object_entry(sha1
, 0, line
+41, 0);
1851 #define OBJECT_ADDED (1u<<20)
1853 static void show_commit(struct commit
*commit
)
1855 add_object_entry(commit
->object
.sha1
, OBJ_COMMIT
, NULL
, 0);
1856 commit
->object
.flags
|= OBJECT_ADDED
;
1859 static void show_object(struct object_array_entry
*p
)
1861 add_preferred_base_object(p
->name
);
1862 add_object_entry(p
->item
->sha1
, p
->item
->type
, p
->name
, 0);
1863 p
->item
->flags
|= OBJECT_ADDED
;
1866 static void show_edge(struct commit
*commit
)
1868 add_preferred_base(commit
->object
.sha1
);
1871 struct in_pack_object
{
1873 struct object
*object
;
1879 struct in_pack_object
*array
;
1882 static void mark_in_pack_object(struct object
*object
, struct packed_git
*p
, struct in_pack
*in_pack
)
1884 in_pack
->array
[in_pack
->nr
].offset
= find_pack_entry_one(object
->sha1
, p
);
1885 in_pack
->array
[in_pack
->nr
].object
= object
;
1890 * Compare the objects in the offset order, in order to emulate the
1891 * "git-rev-list --objects" output that produced the pack originally.
1893 static int ofscmp(const void *a_
, const void *b_
)
1895 struct in_pack_object
*a
= (struct in_pack_object
*)a_
;
1896 struct in_pack_object
*b
= (struct in_pack_object
*)b_
;
1898 if (a
->offset
< b
->offset
)
1900 else if (a
->offset
> b
->offset
)
1903 return hashcmp(a
->object
->sha1
, b
->object
->sha1
);
1906 static void add_objects_in_unpacked_packs(struct rev_info
*revs
)
1908 struct packed_git
*p
;
1909 struct in_pack in_pack
;
1912 memset(&in_pack
, 0, sizeof(in_pack
));
1914 for (p
= packed_git
; p
; p
= p
->next
) {
1915 const unsigned char *sha1
;
1918 for (i
= 0; i
< revs
->num_ignore_packed
; i
++) {
1919 if (matches_pack_name(p
, revs
->ignore_packed
[i
]))
1922 if (revs
->num_ignore_packed
<= i
)
1924 if (open_pack_index(p
))
1925 die("cannot open pack index");
1927 ALLOC_GROW(in_pack
.array
,
1928 in_pack
.nr
+ p
->num_objects
,
1931 for (i
= 0; i
< p
->num_objects
; i
++) {
1932 sha1
= nth_packed_object_sha1(p
, i
);
1933 o
= lookup_unknown_object(sha1
);
1934 if (!(o
->flags
& OBJECT_ADDED
))
1935 mark_in_pack_object(o
, p
, &in_pack
);
1936 o
->flags
|= OBJECT_ADDED
;
1941 qsort(in_pack
.array
, in_pack
.nr
, sizeof(in_pack
.array
[0]),
1943 for (i
= 0; i
< in_pack
.nr
; i
++) {
1944 struct object
*o
= in_pack
.array
[i
].object
;
1945 add_object_entry(o
->sha1
, o
->type
, "", 0);
1948 free(in_pack
.array
);
1951 static void loosen_unused_packed_objects(struct rev_info
*revs
)
1953 struct packed_git
*p
;
1955 const unsigned char *sha1
;
1957 for (p
= packed_git
; p
; p
= p
->next
) {
1958 for (i
= 0; i
< revs
->num_ignore_packed
; i
++) {
1959 if (matches_pack_name(p
, revs
->ignore_packed
[i
]))
1962 if (revs
->num_ignore_packed
<= i
)
1965 if (open_pack_index(p
))
1966 die("cannot open pack index");
1968 for (i
= 0; i
< p
->num_objects
; i
++) {
1969 sha1
= nth_packed_object_sha1(p
, i
);
1970 if (!locate_object_entry(sha1
))
1971 if (force_object_loose(sha1
, p
->mtime
))
1972 die("unable to force loose object");
1977 static void get_object_list(int ac
, const char **av
)
1979 struct rev_info revs
;
1983 init_revisions(&revs
, NULL
);
1984 save_commit_buffer
= 0;
1985 setup_revisions(ac
, av
, &revs
, NULL
);
1987 while (fgets(line
, sizeof(line
), stdin
) != NULL
) {
1988 int len
= strlen(line
);
1989 if (len
&& line
[len
- 1] == '\n')
1994 if (!strcmp(line
, "--not")) {
1995 flags
^= UNINTERESTING
;
1998 die("not a rev '%s'", line
);
2000 if (handle_revision_arg(line
, &revs
, flags
, 1))
2001 die("bad revision '%s'", line
);
2004 if (prepare_revision_walk(&revs
))
2005 die("revision walk setup failed");
2006 mark_edges_uninteresting(revs
.commits
, &revs
, show_edge
);
2007 traverse_commit_list(&revs
, show_commit
, show_object
);
2009 if (keep_unreachable
)
2010 add_objects_in_unpacked_packs(&revs
);
2011 if (unpack_unreachable
)
2012 loosen_unused_packed_objects(&revs
);
2015 static int adjust_perm(const char *path
, mode_t mode
)
2017 if (chmod(path
, mode
))
2019 return adjust_shared_perm(path
);
2022 int cmd_pack_objects(int argc
, const char **argv
, const char *prefix
)
2024 int use_internal_rev_list
= 0;
2028 int rp_ac_alloc
= 64;
2031 rp_av
= xcalloc(rp_ac_alloc
, sizeof(*rp_av
));
2033 rp_av
[0] = "pack-objects";
2034 rp_av
[1] = "--objects"; /* --thin will make it --objects-edge */
2037 git_config(git_pack_config
, NULL
);
2038 if (!pack_compression_seen
&& core_compression_seen
)
2039 pack_compression_level
= core_compression_level
;
2041 progress
= isatty(2);
2042 for (i
= 1; i
< argc
; i
++) {
2043 const char *arg
= argv
[i
];
2048 if (!strcmp("--non-empty", arg
)) {
2052 if (!strcmp("--local", arg
)) {
2056 if (!strcmp("--incremental", arg
)) {
2060 if (!prefixcmp(arg
, "--compression=")) {
2062 int level
= strtoul(arg
+14, &end
, 0);
2063 if (!arg
[14] || *end
)
2066 level
= Z_DEFAULT_COMPRESSION
;
2067 else if (level
< 0 || level
> Z_BEST_COMPRESSION
)
2068 die("bad pack compression level %d", level
);
2069 pack_compression_level
= level
;
2072 if (!prefixcmp(arg
, "--max-pack-size=")) {
2074 pack_size_limit_cfg
= 0;
2075 pack_size_limit
= strtoul(arg
+16, &end
, 0) * 1024 * 1024;
2076 if (!arg
[16] || *end
)
2080 if (!prefixcmp(arg
, "--window=")) {
2082 window
= strtoul(arg
+9, &end
, 0);
2083 if (!arg
[9] || *end
)
2087 if (!prefixcmp(arg
, "--window-memory=")) {
2088 if (!git_parse_ulong(arg
+16, &window_memory_limit
))
2092 if (!prefixcmp(arg
, "--threads=")) {
2094 delta_search_threads
= strtoul(arg
+10, &end
, 0);
2095 if (!arg
[10] || *end
|| delta_search_threads
< 0)
2097 #ifndef THREADED_DELTA_SEARCH
2098 if (delta_search_threads
!= 1)
2099 warning("no threads support, "
2100 "ignoring %s", arg
);
2104 if (!prefixcmp(arg
, "--depth=")) {
2106 depth
= strtoul(arg
+8, &end
, 0);
2107 if (!arg
[8] || *end
)
2111 if (!strcmp("--progress", arg
)) {
2115 if (!strcmp("--all-progress", arg
)) {
2119 if (!strcmp("-q", arg
)) {
2123 if (!strcmp("--no-reuse-delta", arg
)) {
2127 if (!strcmp("--no-reuse-object", arg
)) {
2128 reuse_object
= reuse_delta
= 0;
2131 if (!strcmp("--delta-base-offset", arg
)) {
2132 allow_ofs_delta
= 1;
2135 if (!strcmp("--stdout", arg
)) {
2139 if (!strcmp("--revs", arg
)) {
2140 use_internal_rev_list
= 1;
2143 if (!strcmp("--keep-unreachable", arg
)) {
2144 keep_unreachable
= 1;
2147 if (!strcmp("--unpack-unreachable", arg
)) {
2148 unpack_unreachable
= 1;
2151 if (!strcmp("--include-tag", arg
)) {
2155 if (!strcmp("--unpacked", arg
) ||
2156 !prefixcmp(arg
, "--unpacked=") ||
2157 !strcmp("--reflog", arg
) ||
2158 !strcmp("--all", arg
)) {
2159 use_internal_rev_list
= 1;
2160 if (rp_ac
>= rp_ac_alloc
- 1) {
2161 rp_ac_alloc
= alloc_nr(rp_ac_alloc
);
2162 rp_av
= xrealloc(rp_av
,
2163 rp_ac_alloc
* sizeof(*rp_av
));
2165 rp_av
[rp_ac
++] = arg
;
2168 if (!strcmp("--thin", arg
)) {
2169 use_internal_rev_list
= 1;
2171 rp_av
[1] = "--objects-edge";
2174 if (!prefixcmp(arg
, "--index-version=")) {
2176 pack_idx_default_version
= strtoul(arg
+ 16, &c
, 10);
2177 if (pack_idx_default_version
> 2)
2180 pack_idx_off32_limit
= strtoul(c
+1, &c
, 0);
2181 if (*c
|| pack_idx_off32_limit
& 0x80000000)
2188 /* Traditionally "pack-objects [options] base extra" failed;
2189 * we would however want to take refs parameter that would
2190 * have been given to upstream rev-list ourselves, which means
2191 * we somehow want to say what the base name is. So the
2194 * pack-objects [options] base <refs...>
2196 * in other words, we would treat the first non-option as the
2197 * base_name and send everything else to the internal revision
2201 if (!pack_to_stdout
)
2202 base_name
= argv
[i
++];
2204 if (pack_to_stdout
!= !base_name
)
2207 if (!pack_to_stdout
&& !pack_size_limit
)
2208 pack_size_limit
= pack_size_limit_cfg
;
2210 if (pack_to_stdout
&& pack_size_limit
)
2211 die("--max-pack-size cannot be used to build a pack for transfer.");
2213 if (!pack_to_stdout
&& thin
)
2214 die("--thin cannot be used to build an indexable pack.");
2216 if (keep_unreachable
&& unpack_unreachable
)
2217 die("--keep-unreachable and --unpack-unreachable are incompatible.");
2219 #ifdef THREADED_DELTA_SEARCH
2220 if (!delta_search_threads
) /* --threads=0 means autodetect */
2221 delta_search_threads
= online_cpus();
2224 prepare_packed_git();
2227 progress_state
= start_progress("Counting objects", 0);
2228 if (!use_internal_rev_list
)
2229 read_object_list_from_stdin();
2231 rp_av
[rp_ac
] = NULL
;
2232 get_object_list(rp_ac
, rp_av
);
2234 if (include_tag
&& nr_result
)
2235 for_each_ref(add_ref_tag
, NULL
);
2236 stop_progress(&progress_state
);
2238 if (non_empty
&& !nr_result
)
2241 prepare_pack(window
, depth
);
2244 fprintf(stderr
, "Total %u (delta %u), reused %u (delta %u)\n",
2245 written
, written_delta
, reused
, reused_delta
);