4 #include "xdiff-interface.h"
6 static int grep_source_load(struct grep_source
*gs
);
7 static int grep_source_is_binary(struct grep_source
*gs
);
10 static struct grep_pat
*create_grep_pat(const char *pat
, size_t patlen
,
11 const char *origin
, int no
,
12 enum grep_pat_token t
,
13 enum grep_header_field field
)
15 struct grep_pat
*p
= xcalloc(1, sizeof(*p
));
16 p
->pattern
= xmemdupz(pat
, patlen
);
17 p
->patternlen
= patlen
;
25 static void do_append_grep_pat(struct grep_pat
***tail
, struct grep_pat
*p
)
32 case GREP_PATTERN
: /* atom */
33 case GREP_PATTERN_HEAD
:
34 case GREP_PATTERN_BODY
:
36 struct grep_pat
*new_pat
;
38 char *cp
= p
->pattern
+ p
->patternlen
, *nl
= NULL
;
39 while (++len
<= p
->patternlen
) {
40 if (*(--cp
) == '\n') {
47 new_pat
= create_grep_pat(nl
+ 1, len
- 1, p
->origin
,
48 p
->no
, p
->token
, p
->field
);
49 new_pat
->next
= p
->next
;
51 *tail
= &new_pat
->next
;
62 void append_header_grep_pattern(struct grep_opt
*opt
,
63 enum grep_header_field field
, const char *pat
)
65 struct grep_pat
*p
= create_grep_pat(pat
, strlen(pat
), "header", 0,
66 GREP_PATTERN_HEAD
, field
);
67 if (field
== GREP_HEADER_REFLOG
)
68 opt
->use_reflog_filter
= 1;
69 do_append_grep_pat(&opt
->header_tail
, p
);
72 void append_grep_pattern(struct grep_opt
*opt
, const char *pat
,
73 const char *origin
, int no
, enum grep_pat_token t
)
75 append_grep_pat(opt
, pat
, strlen(pat
), origin
, no
, t
);
78 void append_grep_pat(struct grep_opt
*opt
, const char *pat
, size_t patlen
,
79 const char *origin
, int no
, enum grep_pat_token t
)
81 struct grep_pat
*p
= create_grep_pat(pat
, patlen
, origin
, no
, t
, 0);
82 do_append_grep_pat(&opt
->pattern_tail
, p
);
85 struct grep_opt
*grep_opt_dup(const struct grep_opt
*opt
)
88 struct grep_opt
*ret
= xmalloc(sizeof(struct grep_opt
));
91 ret
->pattern_list
= NULL
;
92 ret
->pattern_tail
= &ret
->pattern_list
;
94 for(pat
= opt
->pattern_list
; pat
!= NULL
; pat
= pat
->next
)
96 if(pat
->token
== GREP_PATTERN_HEAD
)
97 append_header_grep_pattern(ret
, pat
->field
,
100 append_grep_pat(ret
, pat
->pattern
, pat
->patternlen
,
101 pat
->origin
, pat
->no
, pat
->token
);
107 static NORETURN
void compile_regexp_failed(const struct grep_pat
*p
,
113 sprintf(where
, "In '%s' at %d, ", p
->origin
, p
->no
);
115 sprintf(where
, "%s, ", p
->origin
);
119 die("%s'%s': %s", where
, p
->pattern
, error
);
123 static void compile_pcre_regexp(struct grep_pat
*p
, const struct grep_opt
*opt
)
127 int options
= PCRE_MULTILINE
;
129 if (opt
->ignore_case
)
130 options
|= PCRE_CASELESS
;
132 p
->pcre_regexp
= pcre_compile(p
->pattern
, options
, &error
, &erroffset
,
135 compile_regexp_failed(p
, error
);
137 p
->pcre_extra_info
= pcre_study(p
->pcre_regexp
, 0, &error
);
138 if (!p
->pcre_extra_info
&& error
)
142 static int pcrematch(struct grep_pat
*p
, const char *line
, const char *eol
,
143 regmatch_t
*match
, int eflags
)
145 int ovector
[30], ret
, flags
= 0;
147 if (eflags
& REG_NOTBOL
)
148 flags
|= PCRE_NOTBOL
;
150 ret
= pcre_exec(p
->pcre_regexp
, p
->pcre_extra_info
, line
, eol
- line
,
151 0, flags
, ovector
, ARRAY_SIZE(ovector
));
152 if (ret
< 0 && ret
!= PCRE_ERROR_NOMATCH
)
153 die("pcre_exec failed with error code %d", ret
);
156 match
->rm_so
= ovector
[0];
157 match
->rm_eo
= ovector
[1];
163 static void free_pcre_regexp(struct grep_pat
*p
)
165 pcre_free(p
->pcre_regexp
);
166 pcre_free(p
->pcre_extra_info
);
168 #else /* !USE_LIBPCRE */
169 static void compile_pcre_regexp(struct grep_pat
*p
, const struct grep_opt
*opt
)
171 die("cannot use Perl-compatible regexes when not compiled with USE_LIBPCRE");
174 static int pcrematch(struct grep_pat
*p
, const char *line
, const char *eol
,
175 regmatch_t
*match
, int eflags
)
180 static void free_pcre_regexp(struct grep_pat
*p
)
183 #endif /* !USE_LIBPCRE */
185 static int is_fixed(const char *s
, size_t len
)
189 /* regcomp cannot accept patterns with NULs so we
190 * consider any pattern containing a NUL fixed.
192 if (memchr(s
, 0, len
))
195 for (i
= 0; i
< len
; i
++) {
196 if (is_regex_special(s
[i
]))
203 static void compile_regexp(struct grep_pat
*p
, struct grep_opt
*opt
)
207 p
->word_regexp
= opt
->word_regexp
;
208 p
->ignore_case
= opt
->ignore_case
;
210 if (opt
->fixed
|| is_fixed(p
->pattern
, p
->patternlen
))
216 if (opt
->regflags
& REG_ICASE
|| p
->ignore_case
)
217 p
->kws
= kwsalloc(tolower_trans_tbl
);
219 p
->kws
= kwsalloc(NULL
);
220 kwsincr(p
->kws
, p
->pattern
, p
->patternlen
);
226 compile_pcre_regexp(p
, opt
);
230 err
= regcomp(&p
->regexp
, p
->pattern
, opt
->regflags
);
233 regerror(err
, &p
->regexp
, errbuf
, 1024);
235 compile_regexp_failed(p
, errbuf
);
239 static struct grep_expr
*compile_pattern_or(struct grep_pat
**);
240 static struct grep_expr
*compile_pattern_atom(struct grep_pat
**list
)
249 case GREP_PATTERN
: /* atom */
250 case GREP_PATTERN_HEAD
:
251 case GREP_PATTERN_BODY
:
252 x
= xcalloc(1, sizeof (struct grep_expr
));
253 x
->node
= GREP_NODE_ATOM
;
257 case GREP_OPEN_PAREN
:
259 x
= compile_pattern_or(list
);
260 if (!*list
|| (*list
)->token
!= GREP_CLOSE_PAREN
)
261 die("unmatched parenthesis");
262 *list
= (*list
)->next
;
269 static struct grep_expr
*compile_pattern_not(struct grep_pat
**list
)
280 die("--not not followed by pattern expression");
282 x
= xcalloc(1, sizeof (struct grep_expr
));
283 x
->node
= GREP_NODE_NOT
;
284 x
->u
.unary
= compile_pattern_not(list
);
286 die("--not followed by non pattern expression");
289 return compile_pattern_atom(list
);
293 static struct grep_expr
*compile_pattern_and(struct grep_pat
**list
)
296 struct grep_expr
*x
, *y
, *z
;
298 x
= compile_pattern_not(list
);
300 if (p
&& p
->token
== GREP_AND
) {
302 die("--and not followed by pattern expression");
304 y
= compile_pattern_and(list
);
306 die("--and not followed by pattern expression");
307 z
= xcalloc(1, sizeof (struct grep_expr
));
308 z
->node
= GREP_NODE_AND
;
309 z
->u
.binary
.left
= x
;
310 z
->u
.binary
.right
= y
;
316 static struct grep_expr
*compile_pattern_or(struct grep_pat
**list
)
319 struct grep_expr
*x
, *y
, *z
;
321 x
= compile_pattern_and(list
);
323 if (x
&& p
&& p
->token
!= GREP_CLOSE_PAREN
) {
324 y
= compile_pattern_or(list
);
326 die("not a pattern expression %s", p
->pattern
);
327 z
= xcalloc(1, sizeof (struct grep_expr
));
328 z
->node
= GREP_NODE_OR
;
329 z
->u
.binary
.left
= x
;
330 z
->u
.binary
.right
= y
;
336 static struct grep_expr
*compile_pattern_expr(struct grep_pat
**list
)
338 return compile_pattern_or(list
);
341 static void indent(int in
)
347 static void dump_grep_pat(struct grep_pat
*p
)
350 case GREP_AND
: fprintf(stderr
, "*and*"); break;
351 case GREP_OPEN_PAREN
: fprintf(stderr
, "*(*"); break;
352 case GREP_CLOSE_PAREN
: fprintf(stderr
, "*)*"); break;
353 case GREP_NOT
: fprintf(stderr
, "*not*"); break;
354 case GREP_OR
: fprintf(stderr
, "*or*"); break;
356 case GREP_PATTERN
: fprintf(stderr
, "pattern"); break;
357 case GREP_PATTERN_HEAD
: fprintf(stderr
, "pattern_head"); break;
358 case GREP_PATTERN_BODY
: fprintf(stderr
, "pattern_body"); break;
363 case GREP_PATTERN_HEAD
:
364 fprintf(stderr
, "<head %d>", p
->field
); break;
365 case GREP_PATTERN_BODY
:
366 fprintf(stderr
, "<body>"); break;
370 case GREP_PATTERN_HEAD
:
371 case GREP_PATTERN_BODY
:
373 fprintf(stderr
, "%.*s", (int)p
->patternlen
, p
->pattern
);
379 static void dump_grep_expression_1(struct grep_expr
*x
, int in
)
384 fprintf(stderr
, "true\n");
387 dump_grep_pat(x
->u
.atom
);
390 fprintf(stderr
, "(not\n");
391 dump_grep_expression_1(x
->u
.unary
, in
+1);
393 fprintf(stderr
, ")\n");
396 fprintf(stderr
, "(and\n");
397 dump_grep_expression_1(x
->u
.binary
.left
, in
+1);
398 dump_grep_expression_1(x
->u
.binary
.right
, in
+1);
400 fprintf(stderr
, ")\n");
403 fprintf(stderr
, "(or\n");
404 dump_grep_expression_1(x
->u
.binary
.left
, in
+1);
405 dump_grep_expression_1(x
->u
.binary
.right
, in
+1);
407 fprintf(stderr
, ")\n");
412 static void dump_grep_expression(struct grep_opt
*opt
)
414 struct grep_expr
*x
= opt
->pattern_expression
;
417 fprintf(stderr
, "[all-match]\n");
418 dump_grep_expression_1(x
, 0);
422 static struct grep_expr
*grep_true_expr(void)
424 struct grep_expr
*z
= xcalloc(1, sizeof(*z
));
425 z
->node
= GREP_NODE_TRUE
;
429 static struct grep_expr
*grep_or_expr(struct grep_expr
*left
, struct grep_expr
*right
)
431 struct grep_expr
*z
= xcalloc(1, sizeof(*z
));
432 z
->node
= GREP_NODE_OR
;
433 z
->u
.binary
.left
= left
;
434 z
->u
.binary
.right
= right
;
438 static struct grep_expr
*prep_header_patterns(struct grep_opt
*opt
)
441 struct grep_expr
*header_expr
;
442 struct grep_expr
*(header_group
[GREP_HEADER_FIELD_MAX
]);
443 enum grep_header_field fld
;
445 if (!opt
->header_list
)
448 for (p
= opt
->header_list
; p
; p
= p
->next
) {
449 if (p
->token
!= GREP_PATTERN_HEAD
)
450 die("bug: a non-header pattern in grep header list.");
451 if (p
->field
< 0 || GREP_HEADER_FIELD_MAX
<= p
->field
)
452 die("bug: unknown header field %d", p
->field
);
453 compile_regexp(p
, opt
);
456 for (fld
= 0; fld
< GREP_HEADER_FIELD_MAX
; fld
++)
457 header_group
[fld
] = NULL
;
459 for (p
= opt
->header_list
; p
; p
= p
->next
) {
461 struct grep_pat
*pp
= p
;
463 h
= compile_pattern_atom(&pp
);
464 if (!h
|| pp
!= p
->next
)
465 die("bug: malformed header expr");
466 if (!header_group
[p
->field
]) {
467 header_group
[p
->field
] = h
;
470 header_group
[p
->field
] = grep_or_expr(h
, header_group
[p
->field
]);
475 for (fld
= 0; fld
< GREP_HEADER_FIELD_MAX
; fld
++) {
476 if (!header_group
[fld
])
479 header_expr
= grep_true_expr();
480 header_expr
= grep_or_expr(header_group
[fld
], header_expr
);
485 static struct grep_expr
*grep_splice_or(struct grep_expr
*x
, struct grep_expr
*y
)
487 struct grep_expr
*z
= x
;
490 assert(x
->node
== GREP_NODE_OR
);
491 if (x
->u
.binary
.right
&&
492 x
->u
.binary
.right
->node
== GREP_NODE_TRUE
) {
493 x
->u
.binary
.right
= y
;
496 x
= x
->u
.binary
.right
;
501 static void compile_grep_patterns_real(struct grep_opt
*opt
)
504 struct grep_expr
*header_expr
= prep_header_patterns(opt
);
506 for (p
= opt
->pattern_list
; p
; p
= p
->next
) {
508 case GREP_PATTERN
: /* atom */
509 case GREP_PATTERN_HEAD
:
510 case GREP_PATTERN_BODY
:
511 compile_regexp(p
, opt
);
519 if (opt
->all_match
|| header_expr
)
521 else if (!opt
->extended
&& !opt
->debug
)
524 p
= opt
->pattern_list
;
526 opt
->pattern_expression
= compile_pattern_expr(&p
);
528 die("incomplete pattern expression: %s", p
->pattern
);
533 if (!opt
->pattern_expression
)
534 opt
->pattern_expression
= header_expr
;
535 else if (opt
->all_match
)
536 opt
->pattern_expression
= grep_splice_or(header_expr
,
537 opt
->pattern_expression
);
539 opt
->pattern_expression
= grep_or_expr(opt
->pattern_expression
,
544 void compile_grep_patterns(struct grep_opt
*opt
)
546 compile_grep_patterns_real(opt
);
548 dump_grep_expression(opt
);
551 static void free_pattern_expr(struct grep_expr
*x
)
558 free_pattern_expr(x
->u
.unary
);
562 free_pattern_expr(x
->u
.binary
.left
);
563 free_pattern_expr(x
->u
.binary
.right
);
569 void free_grep_patterns(struct grep_opt
*opt
)
571 struct grep_pat
*p
, *n
;
573 for (p
= opt
->pattern_list
; p
; p
= n
) {
576 case GREP_PATTERN
: /* atom */
577 case GREP_PATTERN_HEAD
:
578 case GREP_PATTERN_BODY
:
581 else if (p
->pcre_regexp
)
595 free_pattern_expr(opt
->pattern_expression
);
598 static char *end_of_line(char *cp
, unsigned long *left
)
600 unsigned long l
= *left
;
601 while (l
&& *cp
!= '\n') {
609 static int word_char(char ch
)
611 return isalnum(ch
) || ch
== '_';
614 static void output_color(struct grep_opt
*opt
, const void *data
, size_t size
,
617 if (want_color(opt
->color
) && color
&& color
[0]) {
618 opt
->output(opt
, color
, strlen(color
));
619 opt
->output(opt
, data
, size
);
620 opt
->output(opt
, GIT_COLOR_RESET
, strlen(GIT_COLOR_RESET
));
622 opt
->output(opt
, data
, size
);
625 static void output_sep(struct grep_opt
*opt
, char sign
)
627 if (opt
->null_following_name
)
628 opt
->output(opt
, "\0", 1);
630 output_color(opt
, &sign
, 1, opt
->color_sep
);
633 static void show_name(struct grep_opt
*opt
, const char *name
)
635 output_color(opt
, name
, strlen(name
), opt
->color_filename
);
636 opt
->output(opt
, opt
->null_following_name
? "\0" : "\n", 1);
639 static int fixmatch(struct grep_pat
*p
, char *line
, char *eol
,
642 struct kwsmatch kwsm
;
643 size_t offset
= kwsexec(p
->kws
, line
, eol
- line
, &kwsm
);
645 match
->rm_so
= match
->rm_eo
= -1;
648 match
->rm_so
= offset
;
649 match
->rm_eo
= match
->rm_so
+ kwsm
.size
[0];
654 static int regmatch(const regex_t
*preg
, char *line
, char *eol
,
655 regmatch_t
*match
, int eflags
)
659 match
->rm_eo
= eol
- line
;
660 eflags
|= REG_STARTEND
;
662 return regexec(preg
, line
, 1, match
, eflags
);
665 static int patmatch(struct grep_pat
*p
, char *line
, char *eol
,
666 regmatch_t
*match
, int eflags
)
671 hit
= !fixmatch(p
, line
, eol
, match
);
672 else if (p
->pcre_regexp
)
673 hit
= !pcrematch(p
, line
, eol
, match
, eflags
);
675 hit
= !regmatch(&p
->regexp
, line
, eol
, match
, eflags
);
680 static int strip_timestamp(char *bol
, char **eol_p
)
685 while (bol
< --eol
) {
701 { "committer ", 10 },
705 static int match_one_pattern(struct grep_pat
*p
, char *bol
, char *eol
,
706 enum grep_context ctx
,
707 regmatch_t
*pmatch
, int eflags
)
711 const char *start
= bol
;
713 if ((p
->token
!= GREP_PATTERN
) &&
714 ((p
->token
== GREP_PATTERN_HEAD
) != (ctx
== GREP_CONTEXT_HEAD
)))
717 if (p
->token
== GREP_PATTERN_HEAD
) {
720 assert(p
->field
< ARRAY_SIZE(header_field
));
721 field
= header_field
[p
->field
].field
;
722 len
= header_field
[p
->field
].len
;
723 if (strncmp(bol
, field
, len
))
727 case GREP_HEADER_AUTHOR
:
728 case GREP_HEADER_COMMITTER
:
729 saved_ch
= strip_timestamp(bol
, &eol
);
737 hit
= patmatch(p
, bol
, eol
, pmatch
, eflags
);
739 if (hit
&& p
->word_regexp
) {
740 if ((pmatch
[0].rm_so
< 0) ||
741 (eol
- bol
) < pmatch
[0].rm_so
||
742 (pmatch
[0].rm_eo
< 0) ||
743 (eol
- bol
) < pmatch
[0].rm_eo
)
744 die("regexp returned nonsense");
746 /* Match beginning must be either beginning of the
747 * line, or at word boundary (i.e. the last char must
748 * not be a word char). Similarly, match end must be
749 * either end of the line, or at word boundary
750 * (i.e. the next char must not be a word char).
752 if ( ((pmatch
[0].rm_so
== 0) ||
753 !word_char(bol
[pmatch
[0].rm_so
-1])) &&
754 ((pmatch
[0].rm_eo
== (eol
-bol
)) ||
755 !word_char(bol
[pmatch
[0].rm_eo
])) )
760 /* Words consist of at least one character. */
761 if (pmatch
->rm_so
== pmatch
->rm_eo
)
764 if (!hit
&& pmatch
[0].rm_so
+ bol
+ 1 < eol
) {
765 /* There could be more than one match on the
766 * line, and the first match might not be
767 * strict word match. But later ones could be!
768 * Forward to the next possible start, i.e. the
769 * next position following a non-word char.
771 bol
= pmatch
[0].rm_so
+ bol
+ 1;
772 while (word_char(bol
[-1]) && bol
< eol
)
774 eflags
|= REG_NOTBOL
;
779 if (p
->token
== GREP_PATTERN_HEAD
&& saved_ch
)
782 pmatch
[0].rm_so
+= bol
- start
;
783 pmatch
[0].rm_eo
+= bol
- start
;
788 static int match_expr_eval(struct grep_expr
*x
, char *bol
, char *eol
,
789 enum grep_context ctx
, int collect_hits
)
795 die("Not a valid grep expression");
801 h
= match_one_pattern(x
->u
.atom
, bol
, eol
, ctx
, &match
, 0);
804 h
= !match_expr_eval(x
->u
.unary
, bol
, eol
, ctx
, 0);
807 if (!match_expr_eval(x
->u
.binary
.left
, bol
, eol
, ctx
, 0))
809 h
= match_expr_eval(x
->u
.binary
.right
, bol
, eol
, ctx
, 0);
813 return (match_expr_eval(x
->u
.binary
.left
,
815 match_expr_eval(x
->u
.binary
.right
,
817 h
= match_expr_eval(x
->u
.binary
.left
, bol
, eol
, ctx
, 0);
818 x
->u
.binary
.left
->hit
|= h
;
819 h
|= match_expr_eval(x
->u
.binary
.right
, bol
, eol
, ctx
, 1);
822 die("Unexpected node type (internal error) %d", x
->node
);
829 static int match_expr(struct grep_opt
*opt
, char *bol
, char *eol
,
830 enum grep_context ctx
, int collect_hits
)
832 struct grep_expr
*x
= opt
->pattern_expression
;
833 return match_expr_eval(x
, bol
, eol
, ctx
, collect_hits
);
836 static int match_line(struct grep_opt
*opt
, char *bol
, char *eol
,
837 enum grep_context ctx
, int collect_hits
)
843 return match_expr(opt
, bol
, eol
, ctx
, collect_hits
);
845 /* we do not call with collect_hits without being extended */
846 for (p
= opt
->pattern_list
; p
; p
= p
->next
) {
847 if (match_one_pattern(p
, bol
, eol
, ctx
, &match
, 0))
853 static int match_next_pattern(struct grep_pat
*p
, char *bol
, char *eol
,
854 enum grep_context ctx
,
855 regmatch_t
*pmatch
, int eflags
)
859 if (!match_one_pattern(p
, bol
, eol
, ctx
, &match
, eflags
))
861 if (match
.rm_so
< 0 || match
.rm_eo
< 0)
863 if (pmatch
->rm_so
>= 0 && pmatch
->rm_eo
>= 0) {
864 if (match
.rm_so
> pmatch
->rm_so
)
866 if (match
.rm_so
== pmatch
->rm_so
&& match
.rm_eo
< pmatch
->rm_eo
)
869 pmatch
->rm_so
= match
.rm_so
;
870 pmatch
->rm_eo
= match
.rm_eo
;
874 static int next_match(struct grep_opt
*opt
, char *bol
, char *eol
,
875 enum grep_context ctx
, regmatch_t
*pmatch
, int eflags
)
880 pmatch
->rm_so
= pmatch
->rm_eo
= -1;
882 for (p
= opt
->pattern_list
; p
; p
= p
->next
) {
884 case GREP_PATTERN
: /* atom */
885 case GREP_PATTERN_HEAD
:
886 case GREP_PATTERN_BODY
:
887 hit
|= match_next_pattern(p
, bol
, eol
, ctx
,
898 static void show_line(struct grep_opt
*opt
, char *bol
, char *eol
,
899 const char *name
, unsigned lno
, char sign
)
901 int rest
= eol
- bol
;
902 char *line_color
= NULL
;
904 if (opt
->file_break
&& opt
->last_shown
== 0) {
905 if (opt
->show_hunk_mark
)
906 opt
->output(opt
, "\n", 1);
907 } else if (opt
->pre_context
|| opt
->post_context
|| opt
->funcbody
) {
908 if (opt
->last_shown
== 0) {
909 if (opt
->show_hunk_mark
) {
910 output_color(opt
, "--", 2, opt
->color_sep
);
911 opt
->output(opt
, "\n", 1);
913 } else if (lno
> opt
->last_shown
+ 1) {
914 output_color(opt
, "--", 2, opt
->color_sep
);
915 opt
->output(opt
, "\n", 1);
918 if (opt
->heading
&& opt
->last_shown
== 0) {
919 output_color(opt
, name
, strlen(name
), opt
->color_filename
);
920 opt
->output(opt
, "\n", 1);
922 opt
->last_shown
= lno
;
924 if (!opt
->heading
&& opt
->pathname
) {
925 output_color(opt
, name
, strlen(name
), opt
->color_filename
);
926 output_sep(opt
, sign
);
930 snprintf(buf
, sizeof(buf
), "%d", lno
);
931 output_color(opt
, buf
, strlen(buf
), opt
->color_lineno
);
932 output_sep(opt
, sign
);
936 enum grep_context ctx
= GREP_CONTEXT_BODY
;
941 line_color
= opt
->color_selected
;
942 else if (sign
== '-')
943 line_color
= opt
->color_context
;
944 else if (sign
== '=')
945 line_color
= opt
->color_function
;
947 while (next_match(opt
, bol
, eol
, ctx
, &match
, eflags
)) {
948 if (match
.rm_so
== match
.rm_eo
)
951 output_color(opt
, bol
, match
.rm_so
, line_color
);
952 output_color(opt
, bol
+ match
.rm_so
,
953 match
.rm_eo
- match
.rm_so
,
961 output_color(opt
, bol
, rest
, line_color
);
962 opt
->output(opt
, "\n", 1);
969 * This lock protects access to the gitattributes machinery, which is
972 pthread_mutex_t grep_attr_mutex
;
974 static inline void grep_attr_lock(void)
977 pthread_mutex_lock(&grep_attr_mutex
);
980 static inline void grep_attr_unlock(void)
983 pthread_mutex_unlock(&grep_attr_mutex
);
987 * Same as git_attr_mutex, but protecting the thread-unsafe object db access.
989 pthread_mutex_t grep_read_mutex
;
992 #define grep_attr_lock()
993 #define grep_attr_unlock()
996 static int match_funcname(struct grep_opt
*opt
, struct grep_source
*gs
, char *bol
, char *eol
)
998 xdemitconf_t
*xecfg
= opt
->priv
;
999 if (xecfg
&& !xecfg
->find_func
) {
1000 grep_source_load_driver(gs
);
1001 if (gs
->driver
->funcname
.pattern
) {
1002 const struct userdiff_funcname
*pe
= &gs
->driver
->funcname
;
1003 xdiff_set_find_func(xecfg
, pe
->pattern
, pe
->cflags
);
1005 xecfg
= opt
->priv
= NULL
;
1011 return xecfg
->find_func(bol
, eol
- bol
, buf
, 1,
1012 xecfg
->find_func_priv
) >= 0;
1017 if (isalpha(*bol
) || *bol
== '_' || *bol
== '$')
1022 static void show_funcname_line(struct grep_opt
*opt
, struct grep_source
*gs
,
1023 char *bol
, unsigned lno
)
1025 while (bol
> gs
->buf
) {
1028 while (bol
> gs
->buf
&& bol
[-1] != '\n')
1032 if (lno
<= opt
->last_shown
)
1035 if (match_funcname(opt
, gs
, bol
, eol
)) {
1036 show_line(opt
, bol
, eol
, gs
->name
, lno
, '=');
1042 static void show_pre_context(struct grep_opt
*opt
, struct grep_source
*gs
,
1043 char *bol
, char *end
, unsigned lno
)
1045 unsigned cur
= lno
, from
= 1, funcname_lno
= 0;
1046 int funcname_needed
= !!opt
->funcname
;
1048 if (opt
->funcbody
&& !match_funcname(opt
, gs
, bol
, end
))
1049 funcname_needed
= 2;
1051 if (opt
->pre_context
< lno
)
1052 from
= lno
- opt
->pre_context
;
1053 if (from
<= opt
->last_shown
)
1054 from
= opt
->last_shown
+ 1;
1057 while (bol
> gs
->buf
&&
1058 cur
> (funcname_needed
== 2 ? opt
->last_shown
+ 1 : from
)) {
1061 while (bol
> gs
->buf
&& bol
[-1] != '\n')
1064 if (funcname_needed
&& match_funcname(opt
, gs
, bol
, eol
)) {
1066 funcname_needed
= 0;
1070 /* We need to look even further back to find a function signature. */
1071 if (opt
->funcname
&& funcname_needed
)
1072 show_funcname_line(opt
, gs
, bol
, cur
);
1076 char *eol
= bol
, sign
= (cur
== funcname_lno
) ? '=' : '-';
1078 while (*eol
!= '\n')
1080 show_line(opt
, bol
, eol
, gs
->name
, cur
, sign
);
1086 static int should_lookahead(struct grep_opt
*opt
)
1091 return 0; /* punt for too complex stuff */
1094 for (p
= opt
->pattern_list
; p
; p
= p
->next
) {
1095 if (p
->token
!= GREP_PATTERN
)
1096 return 0; /* punt for "header only" and stuff */
1101 static int look_ahead(struct grep_opt
*opt
,
1102 unsigned long *left_p
,
1106 unsigned lno
= *lno_p
;
1109 char *sp
, *last_bol
;
1110 regoff_t earliest
= -1;
1112 for (p
= opt
->pattern_list
; p
; p
= p
->next
) {
1116 hit
= patmatch(p
, bol
, bol
+ *left_p
, &m
, 0);
1117 if (!hit
|| m
.rm_so
< 0 || m
.rm_eo
< 0)
1119 if (earliest
< 0 || m
.rm_so
< earliest
)
1124 *bol_p
= bol
+ *left_p
;
1128 for (sp
= bol
+ earliest
; bol
< sp
&& sp
[-1] != '\n'; sp
--)
1129 ; /* find the beginning of the line */
1132 for (sp
= bol
; sp
< last_bol
; sp
++) {
1136 *left_p
-= last_bol
- bol
;
1142 static void std_output(struct grep_opt
*opt
, const void *buf
, size_t size
)
1144 fwrite(buf
, size
, 1, stdout
);
1147 static int grep_source_1(struct grep_opt
*opt
, struct grep_source
*gs
, int collect_hits
)
1152 unsigned last_hit
= 0;
1153 int binary_match_only
= 0;
1155 int try_lookahead
= 0;
1156 int show_function
= 0;
1157 enum grep_context ctx
= GREP_CONTEXT_HEAD
;
1161 opt
->output
= std_output
;
1163 if (opt
->pre_context
|| opt
->post_context
|| opt
->file_break
||
1165 /* Show hunk marks, except for the first file. */
1166 if (opt
->last_shown
)
1167 opt
->show_hunk_mark
= 1;
1169 * If we're using threads then we can't easily identify
1170 * the first file. Always put hunk marks in that case
1171 * and skip the very first one later in work_done().
1173 if (opt
->output
!= std_output
)
1174 opt
->show_hunk_mark
= 1;
1176 opt
->last_shown
= 0;
1178 switch (opt
->binary
) {
1179 case GREP_BINARY_DEFAULT
:
1180 if (grep_source_is_binary(gs
))
1181 binary_match_only
= 1;
1183 case GREP_BINARY_NOMATCH
:
1184 if (grep_source_is_binary(gs
))
1185 return 0; /* Assume unmatch */
1187 case GREP_BINARY_TEXT
:
1190 die("bug: unknown binary handling mode");
1193 memset(&xecfg
, 0, sizeof(xecfg
));
1196 try_lookahead
= should_lookahead(opt
);
1198 if (grep_source_load(gs
) < 0)
1208 * look_ahead() skips quickly to the line that possibly
1209 * has the next hit; don't call it if we need to do
1210 * something more than just skipping the current line
1211 * in response to an unmatch for the current line. E.g.
1212 * inside a post-context window, we will show the current
1213 * line as a context around the previous hit when it
1218 && (show_function
||
1219 lno
<= last_hit
+ opt
->post_context
))
1220 && look_ahead(opt
, &left
, &lno
, &bol
))
1222 eol
= end_of_line(bol
, &left
);
1226 if ((ctx
== GREP_CONTEXT_HEAD
) && (eol
== bol
))
1227 ctx
= GREP_CONTEXT_BODY
;
1229 hit
= match_line(opt
, bol
, eol
, ctx
, collect_hits
);
1235 /* "grep -v -e foo -e bla" should list lines
1236 * that do not have either, so inversion should
1241 if (opt
->unmatch_name_only
) {
1248 if (opt
->status_only
)
1250 if (opt
->name_only
) {
1251 show_name(opt
, gs
->name
);
1256 if (binary_match_only
) {
1257 opt
->output(opt
, "Binary file ", 12);
1258 output_color(opt
, gs
->name
, strlen(gs
->name
),
1259 opt
->color_filename
);
1260 opt
->output(opt
, " matches\n", 9);
1263 /* Hit at this line. If we haven't shown the
1264 * pre-context lines, we would need to show them.
1266 if (opt
->pre_context
|| opt
->funcbody
)
1267 show_pre_context(opt
, gs
, bol
, eol
, lno
);
1268 else if (opt
->funcname
)
1269 show_funcname_line(opt
, gs
, bol
, lno
);
1270 show_line(opt
, bol
, eol
, gs
->name
, lno
, ':');
1276 if (show_function
&& match_funcname(opt
, gs
, bol
, eol
))
1278 if (show_function
||
1279 (last_hit
&& lno
<= last_hit
+ opt
->post_context
)) {
1280 /* If the last hit is within the post context,
1281 * we need to show this line.
1283 show_line(opt
, bol
, eol
, gs
->name
, lno
, '-');
1297 if (opt
->status_only
)
1299 if (opt
->unmatch_name_only
) {
1300 /* We did not see any hit, so we want to show this */
1301 show_name(opt
, gs
->name
);
1305 xdiff_clear_find_func(&xecfg
);
1309 * The real "grep -c foo *.c" gives many "bar.c:0" lines,
1310 * which feels mostly useless but sometimes useful. Maybe
1311 * make it another option? For now suppress them.
1313 if (opt
->count
&& count
) {
1315 output_color(opt
, gs
->name
, strlen(gs
->name
), opt
->color_filename
);
1316 output_sep(opt
, ':');
1317 snprintf(buf
, sizeof(buf
), "%u\n", count
);
1318 opt
->output(opt
, buf
, strlen(buf
));
1324 static void clr_hit_marker(struct grep_expr
*x
)
1326 /* All-hit markers are meaningful only at the very top level
1331 if (x
->node
!= GREP_NODE_OR
)
1333 x
->u
.binary
.left
->hit
= 0;
1334 x
= x
->u
.binary
.right
;
1338 static int chk_hit_marker(struct grep_expr
*x
)
1340 /* Top level nodes have hit markers. See if they all are hits */
1342 if (x
->node
!= GREP_NODE_OR
)
1344 if (!x
->u
.binary
.left
->hit
)
1346 x
= x
->u
.binary
.right
;
1350 int grep_source(struct grep_opt
*opt
, struct grep_source
*gs
)
1353 * we do not have to do the two-pass grep when we do not check
1354 * buffer-wide "all-match".
1356 if (!opt
->all_match
)
1357 return grep_source_1(opt
, gs
, 0);
1359 /* Otherwise the toplevel "or" terms hit a bit differently.
1360 * We first clear hit markers from them.
1362 clr_hit_marker(opt
->pattern_expression
);
1363 grep_source_1(opt
, gs
, 1);
1365 if (!chk_hit_marker(opt
->pattern_expression
))
1368 return grep_source_1(opt
, gs
, 0);
1371 int grep_buffer(struct grep_opt
*opt
, char *buf
, unsigned long size
)
1373 struct grep_source gs
;
1376 grep_source_init(&gs
, GREP_SOURCE_BUF
, NULL
, NULL
);
1380 r
= grep_source(opt
, &gs
);
1382 grep_source_clear(&gs
);
1386 void grep_source_init(struct grep_source
*gs
, enum grep_source_type type
,
1387 const char *name
, const void *identifier
)
1390 gs
->name
= name
? xstrdup(name
) : NULL
;
1396 case GREP_SOURCE_FILE
:
1397 gs
->identifier
= xstrdup(identifier
);
1399 case GREP_SOURCE_SHA1
:
1400 gs
->identifier
= xmalloc(20);
1401 memcpy(gs
->identifier
, identifier
, 20);
1403 case GREP_SOURCE_BUF
:
1404 gs
->identifier
= NULL
;
1408 void grep_source_clear(struct grep_source
*gs
)
1412 free(gs
->identifier
);
1413 gs
->identifier
= NULL
;
1414 grep_source_clear_data(gs
);
1417 void grep_source_clear_data(struct grep_source
*gs
)
1420 case GREP_SOURCE_FILE
:
1421 case GREP_SOURCE_SHA1
:
1426 case GREP_SOURCE_BUF
:
1427 /* leave user-provided buf intact */
1432 static int grep_source_load_sha1(struct grep_source
*gs
)
1434 enum object_type type
;
1437 gs
->buf
= read_sha1_file(gs
->identifier
, &type
, &gs
->size
);
1441 return error(_("'%s': unable to read %s"),
1443 sha1_to_hex(gs
->identifier
));
1447 static int grep_source_load_file(struct grep_source
*gs
)
1449 const char *filename
= gs
->identifier
;
1455 if (lstat(filename
, &st
) < 0) {
1457 if (errno
!= ENOENT
)
1458 error(_("'%s': %s"), filename
, strerror(errno
));
1461 if (!S_ISREG(st
.st_mode
))
1463 size
= xsize_t(st
.st_size
);
1464 i
= open(filename
, O_RDONLY
);
1467 data
= xmalloc(size
+ 1);
1468 if (st
.st_size
!= read_in_full(i
, data
, size
)) {
1469 error(_("'%s': short read %s"), filename
, strerror(errno
));
1482 static int grep_source_load(struct grep_source
*gs
)
1488 case GREP_SOURCE_FILE
:
1489 return grep_source_load_file(gs
);
1490 case GREP_SOURCE_SHA1
:
1491 return grep_source_load_sha1(gs
);
1492 case GREP_SOURCE_BUF
:
1493 return gs
->buf
? 0 : -1;
1495 die("BUG: invalid grep_source type");
1498 void grep_source_load_driver(struct grep_source
*gs
)
1504 gs
->driver
= userdiff_find_by_path(gs
->name
);
1506 gs
->driver
= userdiff_find_by_name("default");
1510 static int grep_source_is_binary(struct grep_source
*gs
)
1512 grep_source_load_driver(gs
);
1513 if (gs
->driver
->binary
!= -1)
1514 return gs
->driver
->binary
;
1516 if (!grep_source_load(gs
))
1517 return buffer_is_binary(gs
->buf
, gs
->size
);