3 #include "run-command.h"
8 * convert.c - convert a file when checking it out and checking it in.
10 * This should use the pathname to decide on whether it wants to do some
11 * more interesting conversions (automatic gzip/unzip, general format
12 * conversions etc etc), but by default it just does automatic CRLF<->LF
13 * translation when the "text" attribute or "auto_crlf" option is set.
26 /* NUL, CR, LF and CRLF counts */
27 unsigned nul
, cr
, lf
, crlf
;
29 /* These are just approximations! */
30 unsigned printable
, nonprintable
;
33 static void gather_stats(const char *buf
, unsigned long size
, struct text_stat
*stats
)
37 memset(stats
, 0, sizeof(*stats
));
39 for (i
= 0; i
< size
; i
++) {
40 unsigned char c
= buf
[i
];
43 if (i
+1 < size
&& buf
[i
+1] == '\n')
53 stats
->nonprintable
++;
56 /* BS, HT, ESC and FF */
57 case '\b': case '\t': case '\033': case '\014':
64 stats
->nonprintable
++;
71 /* If file ends with EOF then don't count this EOF as non-printable. */
72 if (size
>= 1 && buf
[size
-1] == '\032')
73 stats
->nonprintable
--;
77 * The same heuristics as diff.c::mmfile_is_binary()
79 static int is_binary(unsigned long size
, struct text_stat
*stats
)
84 if ((stats
->printable
>> 7) < stats
->nonprintable
)
87 * Other heuristics? Average line length might be relevant,
88 * as might LF vs CR vs CRLF counts..
90 * NOTE! It might be normal to have a low ratio of CRLF to LF
91 * (somebody starts with a LF-only file and edits it with an editor
92 * that adds CRLF only to lines that are added..). But do we
93 * want to support CR-only? Probably not.
98 static enum eol
output_eol(enum crlf_action crlf_action
)
100 switch (crlf_action
) {
113 if (auto_crlf
== AUTO_CRLF_TRUE
)
115 else if (auto_crlf
== AUTO_CRLF_INPUT
)
117 else if (core_eol
== EOL_UNSET
)
123 static void check_safe_crlf(const char *path
, enum crlf_action crlf_action
,
124 struct text_stat
*stats
, enum safe_crlf checksafe
)
129 if (output_eol(crlf_action
) == EOL_LF
) {
131 * CRLFs would not be restored by checkout:
132 * check if we'd remove CRLFs
135 if (checksafe
== SAFE_CRLF_WARN
)
136 warning("CRLF will be replaced by LF in %s.\nThe file will have its original line endings in your working directory.", path
);
137 else /* i.e. SAFE_CRLF_FAIL */
138 die("CRLF would be replaced by LF in %s.", path
);
140 } else if (output_eol(crlf_action
) == EOL_CRLF
) {
142 * CRLFs would be added by checkout:
143 * check if we have "naked" LFs
145 if (stats
->lf
!= stats
->crlf
) {
146 if (checksafe
== SAFE_CRLF_WARN
)
147 warning("LF will be replaced by CRLF in %s.\nThe file will have its original line endings in your working directory.", path
);
148 else /* i.e. SAFE_CRLF_FAIL */
149 die("LF would be replaced by CRLF in %s", path
);
154 static int has_cr_in_index(const char *path
)
160 data
= read_blob_data_from_cache(path
, &sz
);
163 has_cr
= memchr(data
, '\r', sz
) != NULL
;
168 static int crlf_to_git(const char *path
, const char *src
, size_t len
,
170 enum crlf_action crlf_action
, enum safe_crlf checksafe
)
172 struct text_stat stats
;
175 if (crlf_action
== CRLF_BINARY
||
176 (crlf_action
== CRLF_GUESS
&& auto_crlf
== AUTO_CRLF_FALSE
) ||
181 * If we are doing a dry-run and have no source buffer, there is
182 * nothing to analyze; we must assume we would convert.
187 gather_stats(src
, len
, &stats
);
189 if (crlf_action
== CRLF_AUTO
|| crlf_action
== CRLF_GUESS
) {
191 * We're currently not going to even try to convert stuff
192 * that has bare CR characters. Does anybody do that crazy
195 if (stats
.cr
!= stats
.crlf
)
199 * And add some heuristics for binary vs text, of course...
201 if (is_binary(len
, &stats
))
204 if (crlf_action
== CRLF_GUESS
) {
206 * If the file in the index has any CR in it, do not convert.
207 * This is the new safer autocrlf handling.
209 if (has_cr_in_index(path
))
214 check_safe_crlf(path
, crlf_action
, &stats
, checksafe
);
216 /* Optimization: No CR? Nothing to convert, regardless. */
221 * At this point all of our source analysis is done, and we are sure we
222 * would convert. If we are in dry-run mode, we can give an answer.
227 /* only grow if not in place */
228 if (strbuf_avail(buf
) + buf
->len
< len
)
229 strbuf_grow(buf
, len
- buf
->len
);
231 if (crlf_action
== CRLF_AUTO
|| crlf_action
== CRLF_GUESS
) {
233 * If we guessed, we already know we rejected a file with
234 * lone CR, and we can strip a CR without looking at what
238 unsigned char c
= *src
++;
244 unsigned char c
= *src
++;
245 if (! (c
== '\r' && (1 < len
&& *src
== '\n')))
249 strbuf_setlen(buf
, dst
- buf
->buf
);
253 static int crlf_to_worktree(const char *path
, const char *src
, size_t len
,
254 struct strbuf
*buf
, enum crlf_action crlf_action
)
256 char *to_free
= NULL
;
257 struct text_stat stats
;
259 if (!len
|| output_eol(crlf_action
) != EOL_CRLF
)
262 gather_stats(src
, len
, &stats
);
264 /* No LF? Nothing to convert, regardless. */
268 /* Was it already in CRLF format? */
269 if (stats
.lf
== stats
.crlf
)
272 if (crlf_action
== CRLF_AUTO
|| crlf_action
== CRLF_GUESS
) {
273 if (crlf_action
== CRLF_GUESS
) {
274 /* If we have any CR or CRLF line endings, we do not touch it */
275 /* This is the new safer autocrlf-handling */
276 if (stats
.cr
> 0 || stats
.crlf
> 0)
280 /* If we have any bare CR characters, we're not going to touch it */
281 if (stats
.cr
!= stats
.crlf
)
284 if (is_binary(len
, &stats
))
288 /* are we "faking" in place editing ? */
290 to_free
= strbuf_detach(buf
, NULL
);
292 strbuf_grow(buf
, len
+ stats
.lf
- stats
.crlf
);
294 const char *nl
= memchr(src
, '\n', len
);
297 if (nl
> src
&& nl
[-1] == '\r') {
298 strbuf_add(buf
, src
, nl
+ 1 - src
);
300 strbuf_add(buf
, src
, nl
- src
);
301 strbuf_addstr(buf
, "\r\n");
306 strbuf_add(buf
, src
, len
);
312 struct filter_params
{
319 static int filter_buffer(int in
, int out
, void *data
)
322 * Spawn cmd and feed the buffer contents through its stdin.
324 struct child_process child_process
= CHILD_PROCESS_INIT
;
325 struct filter_params
*params
= (struct filter_params
*)data
;
326 int write_err
, status
;
327 const char *argv
[] = { NULL
, NULL
};
329 /* apply % substitution to cmd */
330 struct strbuf cmd
= STRBUF_INIT
;
331 struct strbuf path
= STRBUF_INIT
;
332 struct strbuf_expand_dict_entry dict
[] = {
337 /* quote the path to preserve spaces, etc. */
338 sq_quote_buf(&path
, params
->path
);
339 dict
[0].value
= path
.buf
;
341 /* expand all %f with the quoted path */
342 strbuf_expand(&cmd
, params
->cmd
, strbuf_expand_dict_cb
, &dict
);
343 strbuf_release(&path
);
347 child_process
.argv
= argv
;
348 child_process
.use_shell
= 1;
349 child_process
.in
= -1;
350 child_process
.out
= out
;
352 if (start_command(&child_process
))
353 return error("cannot fork to run external filter %s", params
->cmd
);
355 sigchain_push(SIGPIPE
, SIG_IGN
);
357 write_err
= (write_in_full(child_process
.in
, params
->src
, params
->size
) < 0);
358 if (close(child_process
.in
))
361 error("cannot feed the input to external filter %s", params
->cmd
);
363 sigchain_pop(SIGPIPE
);
365 status
= finish_command(&child_process
);
367 error("external filter %s failed %d", params
->cmd
, status
);
369 strbuf_release(&cmd
);
370 return (write_err
|| status
);
373 static int apply_filter(const char *path
, const char *src
, size_t len
,
374 struct strbuf
*dst
, const char *cmd
)
377 * Create a pipeline to have the command filter the buffer's
380 * (child --> cmd) --> us
383 struct strbuf nbuf
= STRBUF_INIT
;
385 struct filter_params params
;
393 memset(&async
, 0, sizeof(async
));
394 async
.proc
= filter_buffer
;
395 async
.data
= ¶ms
;
403 if (start_async(&async
))
404 return 0; /* error was already reported */
406 if (strbuf_read(&nbuf
, async
.out
, len
) < 0) {
407 error("read from external filter %s failed", cmd
);
410 if (close(async
.out
)) {
411 error("read from external filter %s failed", cmd
);
414 if (finish_async(&async
)) {
415 error("external filter %s failed", cmd
);
420 strbuf_swap(dst
, &nbuf
);
422 strbuf_release(&nbuf
);
426 static struct convert_driver
{
428 struct convert_driver
*next
;
432 } *user_convert
, **user_convert_tail
;
434 static int read_convert_config(const char *var
, const char *value
, void *cb
)
436 const char *key
, *name
;
438 struct convert_driver
*drv
;
441 * External conversion drivers are configured using
442 * "filter.<name>.variable".
444 if (parse_config_key(var
, "filter", &name
, &namelen
, &key
) < 0 || !name
)
446 for (drv
= user_convert
; drv
; drv
= drv
->next
)
447 if (!strncmp(drv
->name
, name
, namelen
) && !drv
->name
[namelen
])
450 drv
= xcalloc(1, sizeof(struct convert_driver
));
451 drv
->name
= xmemdupz(name
, namelen
);
452 *user_convert_tail
= drv
;
453 user_convert_tail
= &(drv
->next
);
457 * filter.<name>.smudge and filter.<name>.clean specifies
462 * The command-line will not be interpolated in any way.
465 if (!strcmp("smudge", key
))
466 return git_config_string(&drv
->smudge
, var
, value
);
468 if (!strcmp("clean", key
))
469 return git_config_string(&drv
->clean
, var
, value
);
471 if (!strcmp("required", key
)) {
472 drv
->required
= git_config_bool(var
, value
);
479 static int count_ident(const char *cp
, unsigned long size
)
482 * "$Id: 0000000000000000000000000000000000000000 $" <=> "$Id$"
494 if (memcmp("Id", cp
, 2))
505 * "$Id: ... "; scan up to the closing dollar sign and discard.
521 static int ident_to_git(const char *path
, const char *src
, size_t len
,
522 struct strbuf
*buf
, int ident
)
526 if (!ident
|| (src
&& !count_ident(src
, len
)))
532 /* only grow if not in place */
533 if (strbuf_avail(buf
) + buf
->len
< len
)
534 strbuf_grow(buf
, len
- buf
->len
);
537 dollar
= memchr(src
, '$', len
);
540 memmove(dst
, src
, dollar
+ 1 - src
);
541 dst
+= dollar
+ 1 - src
;
542 len
-= dollar
+ 1 - src
;
545 if (len
> 3 && !memcmp(src
, "Id:", 3)) {
546 dollar
= memchr(src
+ 3, '$', len
- 3);
549 if (memchr(src
+ 3, '\n', dollar
- src
- 3)) {
550 /* Line break before the next dollar. */
554 memcpy(dst
, "Id$", 3);
556 len
-= dollar
+ 1 - src
;
560 memmove(dst
, src
, len
);
561 strbuf_setlen(buf
, dst
+ len
- buf
->buf
);
565 static int ident_to_worktree(const char *path
, const char *src
, size_t len
,
566 struct strbuf
*buf
, int ident
)
568 unsigned char sha1
[20];
569 char *to_free
= NULL
, *dollar
, *spc
;
575 cnt
= count_ident(src
, len
);
579 /* are we "faking" in place editing ? */
581 to_free
= strbuf_detach(buf
, NULL
);
582 hash_sha1_file(src
, len
, "blob", sha1
);
584 strbuf_grow(buf
, len
+ cnt
* 43);
586 /* step 1: run to the next '$' */
587 dollar
= memchr(src
, '$', len
);
590 strbuf_add(buf
, src
, dollar
+ 1 - src
);
591 len
-= dollar
+ 1 - src
;
594 /* step 2: does it looks like a bit like Id:xxx$ or Id$ ? */
595 if (len
< 3 || memcmp("Id", src
, 2))
598 /* step 3: skip over Id$ or Id:xxxxx$ */
602 } else if (src
[2] == ':') {
604 * It's possible that an expanded Id has crept its way into the
605 * repository, we cope with that by stripping the expansion out.
606 * This is probably not a good idea, since it will cause changes
607 * on checkout, which won't go away by stash, but let's keep it
610 dollar
= memchr(src
+ 3, '$', len
- 3);
612 /* incomplete keyword, no more '$', so just quit the loop */
616 if (memchr(src
+ 3, '\n', dollar
- src
- 3)) {
617 /* Line break before the next dollar. */
621 spc
= memchr(src
+ 4, ' ', dollar
- src
- 4);
622 if (spc
&& spc
< dollar
-1) {
623 /* There are spaces in unexpected places.
624 * This is probably an id from some other
625 * versioning system. Keep it for now.
630 len
-= dollar
+ 1 - src
;
633 /* it wasn't a "Id$" or "Id:xxxx$" */
637 /* step 4: substitute */
638 strbuf_addstr(buf
, "Id: ");
639 strbuf_add(buf
, sha1_to_hex(sha1
), 40);
640 strbuf_addstr(buf
, " $");
642 strbuf_add(buf
, src
, len
);
648 static enum crlf_action
git_path_check_crlf(const char *path
, struct git_attr_check
*check
)
650 const char *value
= check
->value
;
652 if (ATTR_TRUE(value
))
654 else if (ATTR_FALSE(value
))
656 else if (ATTR_UNSET(value
))
658 else if (!strcmp(value
, "input"))
660 else if (!strcmp(value
, "auto"))
665 static enum eol
git_path_check_eol(const char *path
, struct git_attr_check
*check
)
667 const char *value
= check
->value
;
669 if (ATTR_UNSET(value
))
671 else if (!strcmp(value
, "lf"))
673 else if (!strcmp(value
, "crlf"))
678 static struct convert_driver
*git_path_check_convert(const char *path
,
679 struct git_attr_check
*check
)
681 const char *value
= check
->value
;
682 struct convert_driver
*drv
;
684 if (ATTR_TRUE(value
) || ATTR_FALSE(value
) || ATTR_UNSET(value
))
686 for (drv
= user_convert
; drv
; drv
= drv
->next
)
687 if (!strcmp(value
, drv
->name
))
692 static int git_path_check_ident(const char *path
, struct git_attr_check
*check
)
694 const char *value
= check
->value
;
696 return !!ATTR_TRUE(value
);
699 static enum crlf_action
input_crlf_action(enum crlf_action text_attr
, enum eol eol_attr
)
701 if (text_attr
== CRLF_BINARY
)
703 if (eol_attr
== EOL_LF
)
705 if (eol_attr
== EOL_CRLF
)
711 struct convert_driver
*drv
;
712 enum crlf_action crlf_action
;
717 static const char *conv_attr_name
[] = {
718 "crlf", "ident", "filter", "eol", "text",
720 #define NUM_CONV_ATTRS ARRAY_SIZE(conv_attr_name)
722 static void convert_attrs(struct conv_attrs
*ca
, const char *path
)
725 static struct git_attr_check ccheck
[NUM_CONV_ATTRS
];
727 if (!ccheck
[0].attr
) {
728 for (i
= 0; i
< NUM_CONV_ATTRS
; i
++)
729 ccheck
[i
].attr
= git_attr(conv_attr_name
[i
]);
730 user_convert_tail
= &user_convert
;
731 git_config(read_convert_config
, NULL
);
734 if (!git_check_attr(path
, NUM_CONV_ATTRS
, ccheck
)) {
735 ca
->crlf_action
= git_path_check_crlf(path
, ccheck
+ 4);
736 if (ca
->crlf_action
== CRLF_GUESS
)
737 ca
->crlf_action
= git_path_check_crlf(path
, ccheck
+ 0);
738 ca
->ident
= git_path_check_ident(path
, ccheck
+ 1);
739 ca
->drv
= git_path_check_convert(path
, ccheck
+ 2);
740 ca
->eol_attr
= git_path_check_eol(path
, ccheck
+ 3);
743 ca
->crlf_action
= CRLF_GUESS
;
744 ca
->eol_attr
= EOL_UNSET
;
749 int convert_to_git(const char *path
, const char *src
, size_t len
,
750 struct strbuf
*dst
, enum safe_crlf checksafe
)
753 const char *filter
= NULL
;
755 struct conv_attrs ca
;
757 convert_attrs(&ca
, path
);
759 filter
= ca
.drv
->clean
;
760 required
= ca
.drv
->required
;
763 ret
|= apply_filter(path
, src
, len
, dst
, filter
);
764 if (!ret
&& required
)
765 die("%s: clean filter '%s' failed", path
, ca
.drv
->name
);
771 ca
.crlf_action
= input_crlf_action(ca
.crlf_action
, ca
.eol_attr
);
772 ret
|= crlf_to_git(path
, src
, len
, dst
, ca
.crlf_action
, checksafe
);
777 return ret
| ident_to_git(path
, src
, len
, dst
, ca
.ident
);
780 static int convert_to_working_tree_internal(const char *path
, const char *src
,
781 size_t len
, struct strbuf
*dst
,
784 int ret
= 0, ret_filter
= 0;
785 const char *filter
= NULL
;
787 struct conv_attrs ca
;
789 convert_attrs(&ca
, path
);
791 filter
= ca
.drv
->smudge
;
792 required
= ca
.drv
->required
;
795 ret
|= ident_to_worktree(path
, src
, len
, dst
, ca
.ident
);
801 * CRLF conversion can be skipped if normalizing, unless there
802 * is a smudge filter. The filter might expect CRLFs.
804 if (filter
|| !normalizing
) {
805 ca
.crlf_action
= input_crlf_action(ca
.crlf_action
, ca
.eol_attr
);
806 ret
|= crlf_to_worktree(path
, src
, len
, dst
, ca
.crlf_action
);
813 ret_filter
= apply_filter(path
, src
, len
, dst
, filter
);
814 if (!ret_filter
&& required
)
815 die("%s: smudge filter %s failed", path
, ca
.drv
->name
);
817 return ret
| ret_filter
;
820 int convert_to_working_tree(const char *path
, const char *src
, size_t len
, struct strbuf
*dst
)
822 return convert_to_working_tree_internal(path
, src
, len
, dst
, 0);
825 int renormalize_buffer(const char *path
, const char *src
, size_t len
, struct strbuf
*dst
)
827 int ret
= convert_to_working_tree_internal(path
, src
, len
, dst
, 1);
832 return ret
| convert_to_git(path
, src
, len
, dst
, SAFE_CRLF_FALSE
);
835 /*****************************************************************
837 * Streaming conversion support
839 *****************************************************************/
841 typedef int (*filter_fn
)(struct stream_filter
*,
842 const char *input
, size_t *isize_p
,
843 char *output
, size_t *osize_p
);
844 typedef void (*free_fn
)(struct stream_filter
*);
846 struct stream_filter_vtbl
{
851 struct stream_filter
{
852 struct stream_filter_vtbl
*vtbl
;
855 static int null_filter_fn(struct stream_filter
*filter
,
856 const char *input
, size_t *isize_p
,
857 char *output
, size_t *osize_p
)
862 return 0; /* we do not keep any states */
864 if (*osize_p
< count
)
867 memmove(output
, input
, count
);
874 static void null_free_fn(struct stream_filter
*filter
)
876 ; /* nothing -- null instances are shared */
879 static struct stream_filter_vtbl null_vtbl
= {
884 static struct stream_filter null_filter_singleton
= {
888 int is_null_stream_filter(struct stream_filter
*filter
)
890 return filter
== &null_filter_singleton
;
898 struct lf_to_crlf_filter
{
899 struct stream_filter filter
;
904 static int lf_to_crlf_filter_fn(struct stream_filter
*filter
,
905 const char *input
, size_t *isize_p
,
906 char *output
, size_t *osize_p
)
909 struct lf_to_crlf_filter
*lf_to_crlf
= (struct lf_to_crlf_filter
*)filter
;
912 * We may be holding onto the CR to see if it is followed by a
913 * LF, in which case we would need to go to the main loop.
914 * Otherwise, just emit it to the output stream.
916 if (lf_to_crlf
->has_held
&& (lf_to_crlf
->held
!= '\r' || !input
)) {
917 output
[o
++] = lf_to_crlf
->held
;
918 lf_to_crlf
->has_held
= 0;
921 /* We are told to drain */
928 if (count
|| lf_to_crlf
->has_held
) {
932 if (lf_to_crlf
->has_held
) {
934 lf_to_crlf
->has_held
= 0;
937 for (i
= 0; o
< *osize_p
&& i
< count
; i
++) {
944 * Previous round saw CR and it is not followed
945 * by a LF; emit the CR before processing the
952 * We may have consumed the last output slot,
953 * in which case we need to break out of this
954 * loop; hold the current character before
958 lf_to_crlf
->has_held
= 1;
959 lf_to_crlf
->held
= ch
;
960 continue; /* break but increment i */
975 if (!lf_to_crlf
->has_held
&& was_cr
) {
976 lf_to_crlf
->has_held
= 1;
977 lf_to_crlf
->held
= '\r';
983 static void lf_to_crlf_free_fn(struct stream_filter
*filter
)
988 static struct stream_filter_vtbl lf_to_crlf_vtbl
= {
989 lf_to_crlf_filter_fn
,
993 static struct stream_filter
*lf_to_crlf_filter(void)
995 struct lf_to_crlf_filter
*lf_to_crlf
= xcalloc(1, sizeof(*lf_to_crlf
));
997 lf_to_crlf
->filter
.vtbl
= &lf_to_crlf_vtbl
;
998 return (struct stream_filter
*)lf_to_crlf
;
1004 #define FILTER_BUFFER 1024
1005 struct cascade_filter
{
1006 struct stream_filter filter
;
1007 struct stream_filter
*one
;
1008 struct stream_filter
*two
;
1009 char buf
[FILTER_BUFFER
];
1013 static int cascade_filter_fn(struct stream_filter
*filter
,
1014 const char *input
, size_t *isize_p
,
1015 char *output
, size_t *osize_p
)
1017 struct cascade_filter
*cas
= (struct cascade_filter
*) filter
;
1019 size_t sz
= *osize_p
;
1020 size_t to_feed
, remaining
;
1023 * input -- (one) --> buf -- (two) --> output
1025 while (filled
< sz
) {
1026 remaining
= sz
- filled
;
1028 /* do we already have something to feed two with? */
1029 if (cas
->ptr
< cas
->end
) {
1030 to_feed
= cas
->end
- cas
->ptr
;
1031 if (stream_filter(cas
->two
,
1032 cas
->buf
+ cas
->ptr
, &to_feed
,
1033 output
+ filled
, &remaining
))
1035 cas
->ptr
+= (cas
->end
- cas
->ptr
) - to_feed
;
1036 filled
= sz
- remaining
;
1040 /* feed one from upstream and have it emit into our buffer */
1041 to_feed
= input
? *isize_p
: 0;
1042 if (input
&& !to_feed
)
1044 remaining
= sizeof(cas
->buf
);
1045 if (stream_filter(cas
->one
,
1047 cas
->buf
, &remaining
))
1049 cas
->end
= sizeof(cas
->buf
) - remaining
;
1052 size_t fed
= *isize_p
- to_feed
;
1057 /* do we know that we drained one completely? */
1058 if (input
|| cas
->end
)
1061 /* tell two to drain; we have nothing more to give it */
1063 remaining
= sz
- filled
;
1064 if (stream_filter(cas
->two
,
1066 output
+ filled
, &remaining
))
1068 if (remaining
== (sz
- filled
))
1069 break; /* completely drained two */
1070 filled
= sz
- remaining
;
1076 static void cascade_free_fn(struct stream_filter
*filter
)
1078 struct cascade_filter
*cas
= (struct cascade_filter
*)filter
;
1079 free_stream_filter(cas
->one
);
1080 free_stream_filter(cas
->two
);
1084 static struct stream_filter_vtbl cascade_vtbl
= {
1089 static struct stream_filter
*cascade_filter(struct stream_filter
*one
,
1090 struct stream_filter
*two
)
1092 struct cascade_filter
*cascade
;
1094 if (!one
|| is_null_stream_filter(one
))
1096 if (!two
|| is_null_stream_filter(two
))
1099 cascade
= xmalloc(sizeof(*cascade
));
1102 cascade
->end
= cascade
->ptr
= 0;
1103 cascade
->filter
.vtbl
= &cascade_vtbl
;
1104 return (struct stream_filter
*)cascade
;
1110 #define IDENT_DRAINING (-1)
1111 #define IDENT_SKIPPING (-2)
1112 struct ident_filter
{
1113 struct stream_filter filter
;
1116 char ident
[45]; /* ": x40 $" */
1119 static int is_foreign_ident(const char *str
)
1123 if (!skip_prefix(str
, "$Id: ", &str
))
1125 for (i
= 0; str
[i
]; i
++) {
1126 if (isspace(str
[i
]) && str
[i
+1] != '$')
1132 static void ident_drain(struct ident_filter
*ident
, char **output_p
, size_t *osize_p
)
1134 size_t to_drain
= ident
->left
.len
;
1136 if (*osize_p
< to_drain
)
1137 to_drain
= *osize_p
;
1139 memcpy(*output_p
, ident
->left
.buf
, to_drain
);
1140 strbuf_remove(&ident
->left
, 0, to_drain
);
1141 *output_p
+= to_drain
;
1142 *osize_p
-= to_drain
;
1144 if (!ident
->left
.len
)
1148 static int ident_filter_fn(struct stream_filter
*filter
,
1149 const char *input
, size_t *isize_p
,
1150 char *output
, size_t *osize_p
)
1152 struct ident_filter
*ident
= (struct ident_filter
*)filter
;
1153 static const char head
[] = "$Id";
1156 /* drain upon eof */
1157 switch (ident
->state
) {
1159 strbuf_add(&ident
->left
, head
, ident
->state
);
1160 case IDENT_SKIPPING
:
1162 case IDENT_DRAINING
:
1163 ident_drain(ident
, &output
, osize_p
);
1168 while (*isize_p
|| (ident
->state
== IDENT_DRAINING
)) {
1171 if (ident
->state
== IDENT_DRAINING
) {
1172 ident_drain(ident
, &output
, osize_p
);
1181 if (ident
->state
== IDENT_SKIPPING
) {
1183 * Skipping until '$' or LF, but keeping them
1184 * in case it is a foreign ident.
1186 strbuf_addch(&ident
->left
, ch
);
1187 if (ch
!= '\n' && ch
!= '$')
1189 if (ch
== '$' && !is_foreign_ident(ident
->left
.buf
)) {
1190 strbuf_setlen(&ident
->left
, sizeof(head
) - 1);
1191 strbuf_addstr(&ident
->left
, ident
->ident
);
1193 ident
->state
= IDENT_DRAINING
;
1197 if (ident
->state
< sizeof(head
) &&
1198 head
[ident
->state
] == ch
) {
1204 strbuf_add(&ident
->left
, head
, ident
->state
);
1205 if (ident
->state
== sizeof(head
) - 1) {
1206 if (ch
!= ':' && ch
!= '$') {
1207 strbuf_addch(&ident
->left
, ch
);
1213 strbuf_addch(&ident
->left
, ch
);
1214 ident
->state
= IDENT_SKIPPING
;
1216 strbuf_addstr(&ident
->left
, ident
->ident
);
1217 ident
->state
= IDENT_DRAINING
;
1222 strbuf_addch(&ident
->left
, ch
);
1223 ident
->state
= IDENT_DRAINING
;
1228 static void ident_free_fn(struct stream_filter
*filter
)
1230 struct ident_filter
*ident
= (struct ident_filter
*)filter
;
1231 strbuf_release(&ident
->left
);
1235 static struct stream_filter_vtbl ident_vtbl
= {
1240 static struct stream_filter
*ident_filter(const unsigned char *sha1
)
1242 struct ident_filter
*ident
= xmalloc(sizeof(*ident
));
1244 sprintf(ident
->ident
, ": %s $", sha1_to_hex(sha1
));
1245 strbuf_init(&ident
->left
, 0);
1246 ident
->filter
.vtbl
= &ident_vtbl
;
1248 return (struct stream_filter
*)ident
;
1252 * Return an appropriately constructed filter for the path, or NULL if
1253 * the contents cannot be filtered without reading the whole thing
1256 * Note that you would be crazy to set CRLF, smuge/clean or ident to a
1257 * large binary blob you would want us not to slurp into the memory!
1259 struct stream_filter
*get_stream_filter(const char *path
, const unsigned char *sha1
)
1261 struct conv_attrs ca
;
1262 enum crlf_action crlf_action
;
1263 struct stream_filter
*filter
= NULL
;
1265 convert_attrs(&ca
, path
);
1267 if (ca
.drv
&& (ca
.drv
->smudge
|| ca
.drv
->clean
))
1271 filter
= ident_filter(sha1
);
1273 crlf_action
= input_crlf_action(ca
.crlf_action
, ca
.eol_attr
);
1275 if ((crlf_action
== CRLF_BINARY
) || (crlf_action
== CRLF_INPUT
) ||
1276 (crlf_action
== CRLF_GUESS
&& auto_crlf
== AUTO_CRLF_FALSE
))
1277 filter
= cascade_filter(filter
, &null_filter_singleton
);
1279 else if (output_eol(crlf_action
) == EOL_CRLF
&&
1280 !(crlf_action
== CRLF_AUTO
|| crlf_action
== CRLF_GUESS
))
1281 filter
= cascade_filter(filter
, lf_to_crlf_filter());
1286 void free_stream_filter(struct stream_filter
*filter
)
1288 filter
->vtbl
->free(filter
);
1291 int stream_filter(struct stream_filter
*filter
,
1292 const char *input
, size_t *isize_p
,
1293 char *output
, size_t *osize_p
)
1295 return filter
->vtbl
->filter(filter
, input
, isize_p
, output
, osize_p
);