4 #include "object-store.h"
6 #include "xdiff-interface.h"
13 static int grep_source_load(struct grep_source *gs);
14 static int grep_source_is_binary(struct grep_source *gs,
15 struct index_state *istate);
17 static struct grep_opt grep_defaults;
19 static const char *color_grep_slots[] = {
20 [GREP_COLOR_CONTEXT] = "context",
21 [GREP_COLOR_FILENAME] = "filename",
22 [GREP_COLOR_FUNCTION] = "function",
23 [GREP_COLOR_LINENO] = "lineNumber",
24 [GREP_COLOR_COLUMNNO] = "column",
25 [GREP_COLOR_MATCH_CONTEXT] = "matchContext",
26 [GREP_COLOR_MATCH_SELECTED] = "matchSelected",
27 [GREP_COLOR_SELECTED] = "selected",
28 [GREP_COLOR_SEP] = "separator",
31 static void std_output(struct grep_opt *opt, const void *buf, size_t size)
33 fwrite(buf, size, 1, stdout);
36 static void color_set(char *dst, const char *color_bytes)
38 xsnprintf(dst, COLOR_MAXLEN, "%s", color_bytes);
42 * Initialize the grep_defaults template with hardcoded defaults.
43 * We could let the compiler do this, but without C99 initializers
44 * the code gets unwieldy and unreadable, so...
46 void init_grep_defaults(struct repository *repo)
48 struct grep_opt *opt = &grep_defaults;
55 memset(opt, 0, sizeof(*opt));
60 opt->pattern_type_option = GREP_PATTERN_TYPE_UNSPECIFIED;
61 color_set(opt->colors[GREP_COLOR_CONTEXT], "");
62 color_set(opt->colors[GREP_COLOR_FILENAME], "");
63 color_set(opt->colors[GREP_COLOR_FUNCTION], "");
64 color_set(opt->colors[GREP_COLOR_LINENO], "");
65 color_set(opt->colors[GREP_COLOR_COLUMNNO], "");
66 color_set(opt->colors[GREP_COLOR_MATCH_CONTEXT], GIT_COLOR_BOLD_RED);
67 color_set(opt->colors[GREP_COLOR_MATCH_SELECTED], GIT_COLOR_BOLD_RED);
68 color_set(opt->colors[GREP_COLOR_SELECTED], "");
69 color_set(opt->colors[GREP_COLOR_SEP], GIT_COLOR_CYAN);
70 opt->only_matching = 0;
72 opt->output = std_output;
75 static int parse_pattern_type_arg(const char *opt, const char *arg)
77 if (!strcmp(arg, "default"))
78 return GREP_PATTERN_TYPE_UNSPECIFIED;
79 else if (!strcmp(arg, "basic"))
80 return GREP_PATTERN_TYPE_BRE;
81 else if (!strcmp(arg, "extended"))
82 return GREP_PATTERN_TYPE_ERE;
83 else if (!strcmp(arg, "fixed"))
84 return GREP_PATTERN_TYPE_FIXED;
85 else if (!strcmp(arg, "perl"))
86 return GREP_PATTERN_TYPE_PCRE;
87 die("bad %s argument: %s", opt, arg);
90 define_list_config_array_extra(color_grep_slots, {"match"});
93 * Read the configuration file once and store it in
94 * the grep_defaults template.
96 int grep_config(const char *var, const char *value, void *cb)
98 struct grep_opt *opt = &grep_defaults;
101 if (userdiff_config(var, value) < 0)
104 if (!strcmp(var, "grep.extendedregexp")) {
105 opt->extended_regexp_option = git_config_bool(var, value);
109 if (!strcmp(var, "grep.patterntype")) {
110 opt->pattern_type_option = parse_pattern_type_arg(var, value);
114 if (!strcmp(var, "grep.linenumber")) {
115 opt->linenum = git_config_bool(var, value);
118 if (!strcmp(var, "grep.column")) {
119 opt->columnnum = git_config_bool(var, value);
123 if (!strcmp(var, "grep.fullname")) {
124 opt->relative = !git_config_bool(var, value);
128 if (!strcmp(var, "color.grep"))
129 opt->color = git_config_colorbool(var, value);
130 if (!strcmp(var, "color.grep.match")) {
131 if (grep_config("color.grep.matchcontext", value, cb) < 0)
133 if (grep_config("color.grep.matchselected", value, cb) < 0)
135 } else if (skip_prefix(var, "color.grep.", &slot)) {
136 int i = LOOKUP_CONFIG(color_grep_slots, slot);
141 color = opt->colors[i];
143 return config_error_nonbool(var);
144 return color_parse(value, color);
150 * Initialize one instance of grep_opt and copy the
151 * default values from the template we read the configuration
152 * information in an earlier call to git_config(grep_config).
154 void grep_init(struct grep_opt *opt, struct repository *repo, const char *prefix)
156 struct grep_opt *def = &grep_defaults;
159 memset(opt, 0, sizeof(*opt));
161 opt->prefix = prefix;
162 opt->prefix_length = (prefix && *prefix) ? strlen(prefix) : 0;
163 opt->pattern_tail = &opt->pattern_list;
164 opt->header_tail = &opt->header_list;
166 opt->only_matching = def->only_matching;
167 opt->color = def->color;
168 opt->extended_regexp_option = def->extended_regexp_option;
169 opt->pattern_type_option = def->pattern_type_option;
170 opt->linenum = def->linenum;
171 opt->columnnum = def->columnnum;
172 opt->max_depth = def->max_depth;
173 opt->pathname = def->pathname;
174 opt->relative = def->relative;
175 opt->output = def->output;
177 for (i = 0; i < NR_GREP_COLORS; i++)
178 color_set(opt->colors[i], def->colors[i]);
181 static void grep_set_pattern_type_option(enum grep_pattern_type pattern_type, struct grep_opt *opt)
184 * When committing to the pattern type by setting the relevant
185 * fields in grep_opt it's generally not necessary to zero out
186 * the fields we're not choosing, since they won't have been
187 * set by anything. The extended_regexp_option field is the
188 * only exception to this.
190 * This is because in the process of parsing grep.patternType
191 * & grep.extendedRegexp we set opt->pattern_type_option and
192 * opt->extended_regexp_option, respectively. We then
193 * internally use opt->extended_regexp_option to see if we're
194 * compiling an ERE. It must be unset if that's not actually
197 if (pattern_type != GREP_PATTERN_TYPE_ERE &&
198 opt->extended_regexp_option)
199 opt->extended_regexp_option = 0;
201 switch (pattern_type) {
202 case GREP_PATTERN_TYPE_UNSPECIFIED:
205 case GREP_PATTERN_TYPE_BRE:
208 case GREP_PATTERN_TYPE_ERE:
209 opt->extended_regexp_option = 1;
212 case GREP_PATTERN_TYPE_FIXED:
216 case GREP_PATTERN_TYPE_PCRE:
221 * It's important that pcre1 always be assigned to
222 * even when there's no USE_LIBPCRE* defined. We still
223 * call the PCRE stub function, it just dies with
224 * "cannot use Perl-compatible regexes[...]".
232 void grep_commit_pattern_type(enum grep_pattern_type pattern_type, struct grep_opt *opt)
234 if (pattern_type != GREP_PATTERN_TYPE_UNSPECIFIED)
235 grep_set_pattern_type_option(pattern_type, opt);
236 else if (opt->pattern_type_option != GREP_PATTERN_TYPE_UNSPECIFIED)
237 grep_set_pattern_type_option(opt->pattern_type_option, opt);
238 else if (opt->extended_regexp_option)
240 * This branch *must* happen after setting from the
241 * opt->pattern_type_option above, we don't want
242 * grep.extendedRegexp to override grep.patternType!
244 grep_set_pattern_type_option(GREP_PATTERN_TYPE_ERE, opt);
247 static struct grep_pat *create_grep_pat(const char *pat, size_t patlen,
248 const char *origin, int no,
249 enum grep_pat_token t,
250 enum grep_header_field field)
252 struct grep_pat *p = xcalloc(1, sizeof(*p));
253 p->pattern = xmemdupz(pat, patlen);
254 p->patternlen = patlen;
262 static void do_append_grep_pat(struct grep_pat ***tail, struct grep_pat *p)
269 case GREP_PATTERN: /* atom */
270 case GREP_PATTERN_HEAD:
271 case GREP_PATTERN_BODY:
273 struct grep_pat *new_pat;
275 char *cp = p->pattern + p->patternlen, *nl = NULL;
276 while (++len <= p->patternlen) {
277 if (*(--cp) == '\n') {
284 new_pat = create_grep_pat(nl + 1, len - 1, p->origin,
285 p->no, p->token, p->field);
286 new_pat->next = p->next;
288 *tail = &new_pat->next;
291 p->patternlen -= len;
299 void append_header_grep_pattern(struct grep_opt *opt,
300 enum grep_header_field field, const char *pat)
302 struct grep_pat *p = create_grep_pat(pat, strlen(pat), "header", 0,
303 GREP_PATTERN_HEAD, field);
304 if (field == GREP_HEADER_REFLOG)
305 opt->use_reflog_filter = 1;
306 do_append_grep_pat(&opt->header_tail, p);
309 void append_grep_pattern(struct grep_opt *opt, const char *pat,
310 const char *origin, int no, enum grep_pat_token t)
312 append_grep_pat(opt, pat, strlen(pat), origin, no, t);
315 void append_grep_pat(struct grep_opt *opt, const char *pat, size_t patlen,
316 const char *origin, int no, enum grep_pat_token t)
318 struct grep_pat *p = create_grep_pat(pat, patlen, origin, no, t, 0);
319 do_append_grep_pat(&opt->pattern_tail, p);
322 struct grep_opt *grep_opt_dup(const struct grep_opt *opt)
324 struct grep_pat *pat;
325 struct grep_opt *ret = xmalloc(sizeof(struct grep_opt));
328 ret->pattern_list = NULL;
329 ret->pattern_tail = &ret->pattern_list;
331 for(pat = opt->pattern_list; pat != NULL; pat = pat->next)
333 if(pat->token == GREP_PATTERN_HEAD)
334 append_header_grep_pattern(ret, pat->field,
337 append_grep_pat(ret, pat->pattern, pat->patternlen,
338 pat->origin, pat->no, pat->token);
344 static NORETURN void compile_regexp_failed(const struct grep_pat *p,
350 xsnprintf(where, sizeof(where), "In '%s' at %d, ", p->origin, p->no);
352 xsnprintf(where, sizeof(where), "%s, ", p->origin);
356 die("%s'%s': %s", where, p->pattern, error);
359 static int is_fixed(const char *s, size_t len)
363 for (i = 0; i < len; i++) {
364 if (is_regex_special(s[i]))
372 static void compile_pcre1_regexp(struct grep_pat *p, const struct grep_opt *opt)
376 int options = PCRE_MULTILINE;
378 if (opt->ignore_case) {
379 if (!opt->ignore_locale && has_non_ascii(p->pattern))
380 p->pcre1_tables = pcre_maketables();
381 options |= PCRE_CASELESS;
383 if (!opt->ignore_locale && is_utf8_locale() && has_non_ascii(p->pattern))
384 options |= PCRE_UTF8;
386 p->pcre1_regexp = pcre_compile(p->pattern, options, &error, &erroffset,
388 if (!p->pcre1_regexp)
389 compile_regexp_failed(p, error);
391 p->pcre1_extra_info = pcre_study(p->pcre1_regexp, GIT_PCRE_STUDY_JIT_COMPILE, &error);
392 if (!p->pcre1_extra_info && error)
395 #ifdef GIT_PCRE1_USE_JIT
396 pcre_config(PCRE_CONFIG_JIT, &p->pcre1_jit_on);
400 static int pcre1match(struct grep_pat *p, const char *line, const char *eol,
401 regmatch_t *match, int eflags)
403 int ovector[30], ret, flags = 0;
405 if (eflags & REG_NOTBOL)
406 flags |= PCRE_NOTBOL;
408 ret = pcre_exec(p->pcre1_regexp, p->pcre1_extra_info, line,
409 eol - line, 0, flags, ovector,
410 ARRAY_SIZE(ovector));
412 if (ret < 0 && ret != PCRE_ERROR_NOMATCH)
413 die("pcre_exec failed with error code %d", ret);
416 match->rm_so = ovector[0];
417 match->rm_eo = ovector[1];
423 static void free_pcre1_regexp(struct grep_pat *p)
425 pcre_free(p->pcre1_regexp);
426 #ifdef GIT_PCRE1_USE_JIT
428 pcre_free_study(p->pcre1_extra_info);
431 pcre_free(p->pcre1_extra_info);
432 pcre_free((void *)p->pcre1_tables);
434 #else /* !USE_LIBPCRE1 */
435 static void compile_pcre1_regexp(struct grep_pat *p, const struct grep_opt *opt)
437 die("cannot use Perl-compatible regexes when not compiled with USE_LIBPCRE");
440 static int pcre1match(struct grep_pat *p, const char *line, const char *eol,
441 regmatch_t *match, int eflags)
446 static void free_pcre1_regexp(struct grep_pat *p)
449 #endif /* !USE_LIBPCRE1 */
452 static void compile_pcre2_pattern(struct grep_pat *p, const struct grep_opt *opt)
455 PCRE2_UCHAR errbuf[256];
456 PCRE2_SIZE erroffset;
457 int options = PCRE2_MULTILINE;
458 const uint8_t *character_tables = NULL;
465 p->pcre2_compile_context = NULL;
467 if (opt->ignore_case) {
468 if (!opt->ignore_locale && has_non_ascii(p->pattern)) {
469 character_tables = pcre2_maketables(NULL);
470 p->pcre2_compile_context = pcre2_compile_context_create(NULL);
471 pcre2_set_character_tables(p->pcre2_compile_context, character_tables);
473 options |= PCRE2_CASELESS;
475 if (!opt->ignore_locale && is_utf8_locale() && has_non_ascii(p->pattern) &&
476 !(!opt->ignore_case && (p->fixed || p->is_fixed)))
477 options |= PCRE2_UTF;
479 p->pcre2_pattern = pcre2_compile((PCRE2_SPTR)p->pattern,
480 p->patternlen, options, &error, &erroffset,
481 p->pcre2_compile_context);
483 if (p->pcre2_pattern) {
484 p->pcre2_match_data = pcre2_match_data_create_from_pattern(p->pcre2_pattern, NULL);
485 if (!p->pcre2_match_data)
486 die("Couldn't allocate PCRE2 match data");
488 pcre2_get_error_message(error, errbuf, sizeof(errbuf));
489 compile_regexp_failed(p, (const char *)&errbuf);
492 pcre2_config(PCRE2_CONFIG_JIT, &p->pcre2_jit_on);
493 if (p->pcre2_jit_on) {
494 jitret = pcre2_jit_compile(p->pcre2_pattern, PCRE2_JIT_COMPLETE);
496 die("Couldn't JIT the PCRE2 pattern '%s', got '%d'\n", p->pattern, jitret);
499 * The pcre2_config(PCRE2_CONFIG_JIT, ...) call just
500 * tells us whether the library itself supports JIT,
501 * but to see whether we're going to be actually using
502 * JIT we need to extract PCRE2_INFO_JITSIZE from the
503 * pattern *after* we do pcre2_jit_compile() above.
505 * This is because if the pattern contains the
506 * (*NO_JIT) verb (see pcre2syntax(3))
507 * pcre2_jit_compile() will exit early with 0. If we
508 * then proceed to call pcre2_jit_match() further down
509 * the line instead of pcre2_match() we'll either
510 * segfault (pre PCRE 10.31) or run into a fatal error
513 patinforet = pcre2_pattern_info(p->pcre2_pattern, PCRE2_INFO_JITSIZE, &jitsizearg);
515 BUG("pcre2_pattern_info() failed: %d", patinforet);
516 if (jitsizearg == 0) {
523 static int pcre2match(struct grep_pat *p, const char *line, const char *eol,
524 regmatch_t *match, int eflags)
528 PCRE2_UCHAR errbuf[256];
530 if (eflags & REG_NOTBOL)
531 flags |= PCRE2_NOTBOL;
534 ret = pcre2_jit_match(p->pcre2_pattern, (unsigned char *)line,
535 eol - line, 0, flags, p->pcre2_match_data,
538 ret = pcre2_match(p->pcre2_pattern, (unsigned char *)line,
539 eol - line, 0, flags, p->pcre2_match_data,
542 if (ret < 0 && ret != PCRE2_ERROR_NOMATCH) {
543 pcre2_get_error_message(ret, errbuf, sizeof(errbuf));
544 die("%s failed with error code %d: %s",
545 (p->pcre2_jit_on ? "pcre2_jit_match" : "pcre2_match"), ret,
549 ovector = pcre2_get_ovector_pointer(p->pcre2_match_data);
551 match->rm_so = (int)ovector[0];
552 match->rm_eo = (int)ovector[1];
558 static void free_pcre2_pattern(struct grep_pat *p)
560 pcre2_compile_context_free(p->pcre2_compile_context);
561 pcre2_code_free(p->pcre2_pattern);
562 pcre2_match_data_free(p->pcre2_match_data);
564 #else /* !USE_LIBPCRE2 */
565 static void compile_pcre2_pattern(struct grep_pat *p, const struct grep_opt *opt)
568 * Unreachable until USE_LIBPCRE2 becomes synonymous with
569 * USE_LIBPCRE. See the sibling comment in
570 * grep_set_pattern_type_option().
572 die("cannot use Perl-compatible regexes when not compiled with USE_LIBPCRE");
575 static int pcre2match(struct grep_pat *p, const char *line, const char *eol,
576 regmatch_t *match, int eflags)
581 static void free_pcre2_pattern(struct grep_pat *p)
585 static void compile_fixed_regexp(struct grep_pat *p, struct grep_opt *opt)
587 struct strbuf sb = STRBUF_INIT;
591 basic_regex_quote_buf(&sb, p->pattern);
592 if (opt->ignore_case)
593 regflags |= REG_ICASE;
594 err = regcomp(&p->regexp, sb.buf, regflags);
596 fprintf(stderr, "fixed %s\n", sb.buf);
600 regerror(err, &p->regexp, errbuf, sizeof(errbuf));
601 compile_regexp_failed(p, errbuf);
604 #endif /* !USE_LIBPCRE2 */
606 static void compile_regexp(struct grep_pat *p, struct grep_opt *opt)
609 int regflags = REG_NEWLINE;
611 p->word_regexp = opt->word_regexp;
612 p->ignore_case = opt->ignore_case;
613 p->fixed = opt->fixed;
615 if (memchr(p->pattern, 0, p->patternlen) && !opt->pcre2)
616 die(_("given pattern contains NULL byte (via -f <file>). This is only supported with -P under PCRE v2"));
618 p->is_fixed = is_fixed(p->pattern, p->patternlen);
620 if (!p->fixed && !p->is_fixed) {
621 const char *no_jit = "(*NO_JIT)";
622 const int no_jit_len = strlen(no_jit);
623 if (starts_with(p->pattern, no_jit) &&
624 is_fixed(p->pattern + no_jit_len,
625 p->patternlen - no_jit_len))
629 if (p->fixed || p->is_fixed) {
633 compile_pcre2_pattern(p, opt);
636 * E.g. t7811-grep-open.sh relies on the
637 * pattern being restored.
639 char *old_pattern = p->pattern;
640 size_t old_patternlen = p->patternlen;
641 struct strbuf sb = STRBUF_INIT;
644 * There is the PCRE2_LITERAL flag, but it's
645 * only in PCRE v2 10.30 and later. Needing to
646 * ifdef our way around that and dealing with
647 * it + PCRE2_MULTILINE being an error is more
648 * complex than just quoting this ourselves.
650 strbuf_add(&sb, "\\Q", 2);
651 strbuf_add(&sb, p->pattern, p->patternlen);
652 strbuf_add(&sb, "\\E", 2);
655 p->patternlen = sb.len;
656 compile_pcre2_pattern(p, opt);
657 p->pattern = old_pattern;
658 p->patternlen = old_patternlen;
661 #else /* !USE_LIBPCRE2 */
662 compile_fixed_regexp(p, opt);
663 #endif /* !USE_LIBPCRE2 */
668 compile_pcre2_pattern(p, opt);
673 compile_pcre1_regexp(p, opt);
678 regflags |= REG_ICASE;
679 if (opt->extended_regexp_option)
680 regflags |= REG_EXTENDED;
681 err = regcomp(&p->regexp, p->pattern, regflags);
684 regerror(err, &p->regexp, errbuf, 1024);
685 compile_regexp_failed(p, errbuf);
689 static struct grep_expr *compile_pattern_or(struct grep_pat **);
690 static struct grep_expr *compile_pattern_atom(struct grep_pat **list)
699 case GREP_PATTERN: /* atom */
700 case GREP_PATTERN_HEAD:
701 case GREP_PATTERN_BODY:
702 x = xcalloc(1, sizeof (struct grep_expr));
703 x->node = GREP_NODE_ATOM;
707 case GREP_OPEN_PAREN:
709 x = compile_pattern_or(list);
710 if (!*list || (*list)->token != GREP_CLOSE_PAREN)
711 die("unmatched parenthesis");
712 *list = (*list)->next;
719 static struct grep_expr *compile_pattern_not(struct grep_pat **list)
730 die("--not not followed by pattern expression");
732 x = xcalloc(1, sizeof (struct grep_expr));
733 x->node = GREP_NODE_NOT;
734 x->u.unary = compile_pattern_not(list);
736 die("--not followed by non pattern expression");
739 return compile_pattern_atom(list);
743 static struct grep_expr *compile_pattern_and(struct grep_pat **list)
746 struct grep_expr *x, *y, *z;
748 x = compile_pattern_not(list);
750 if (p && p->token == GREP_AND) {
752 die("--and not followed by pattern expression");
754 y = compile_pattern_and(list);
756 die("--and not followed by pattern expression");
757 z = xcalloc(1, sizeof (struct grep_expr));
758 z->node = GREP_NODE_AND;
759 z->u.binary.left = x;
760 z->u.binary.right = y;
766 static struct grep_expr *compile_pattern_or(struct grep_pat **list)
769 struct grep_expr *x, *y, *z;
771 x = compile_pattern_and(list);
773 if (x && p && p->token != GREP_CLOSE_PAREN) {
774 y = compile_pattern_or(list);
776 die("not a pattern expression %s", p->pattern);
777 z = xcalloc(1, sizeof (struct grep_expr));
778 z->node = GREP_NODE_OR;
779 z->u.binary.left = x;
780 z->u.binary.right = y;
786 static struct grep_expr *compile_pattern_expr(struct grep_pat **list)
788 return compile_pattern_or(list);
791 static void indent(int in)
797 static void dump_grep_pat(struct grep_pat *p)
800 case GREP_AND: fprintf(stderr, "*and*"); break;
801 case GREP_OPEN_PAREN: fprintf(stderr, "*(*"); break;
802 case GREP_CLOSE_PAREN: fprintf(stderr, "*)*"); break;
803 case GREP_NOT: fprintf(stderr, "*not*"); break;
804 case GREP_OR: fprintf(stderr, "*or*"); break;
806 case GREP_PATTERN: fprintf(stderr, "pattern"); break;
807 case GREP_PATTERN_HEAD: fprintf(stderr, "pattern_head"); break;
808 case GREP_PATTERN_BODY: fprintf(stderr, "pattern_body"); break;
813 case GREP_PATTERN_HEAD:
814 fprintf(stderr, "<head %d>", p->field); break;
815 case GREP_PATTERN_BODY:
816 fprintf(stderr, "<body>"); break;
820 case GREP_PATTERN_HEAD:
821 case GREP_PATTERN_BODY:
823 fprintf(stderr, "%.*s", (int)p->patternlen, p->pattern);
829 static void dump_grep_expression_1(struct grep_expr *x, int in)
834 fprintf(stderr, "true\n");
837 dump_grep_pat(x->u.atom);
840 fprintf(stderr, "(not\n");
841 dump_grep_expression_1(x->u.unary, in+1);
843 fprintf(stderr, ")\n");
846 fprintf(stderr, "(and\n");
847 dump_grep_expression_1(x->u.binary.left, in+1);
848 dump_grep_expression_1(x->u.binary.right, in+1);
850 fprintf(stderr, ")\n");
853 fprintf(stderr, "(or\n");
854 dump_grep_expression_1(x->u.binary.left, in+1);
855 dump_grep_expression_1(x->u.binary.right, in+1);
857 fprintf(stderr, ")\n");
862 static void dump_grep_expression(struct grep_opt *opt)
864 struct grep_expr *x = opt->pattern_expression;
867 fprintf(stderr, "[all-match]\n");
868 dump_grep_expression_1(x, 0);
872 static struct grep_expr *grep_true_expr(void)
874 struct grep_expr *z = xcalloc(1, sizeof(*z));
875 z->node = GREP_NODE_TRUE;
879 static struct grep_expr *grep_or_expr(struct grep_expr *left, struct grep_expr *right)
881 struct grep_expr *z = xcalloc(1, sizeof(*z));
882 z->node = GREP_NODE_OR;
883 z->u.binary.left = left;
884 z->u.binary.right = right;
888 static struct grep_expr *prep_header_patterns(struct grep_opt *opt)
891 struct grep_expr *header_expr;
892 struct grep_expr *(header_group[GREP_HEADER_FIELD_MAX]);
893 enum grep_header_field fld;
895 if (!opt->header_list)
898 for (p = opt->header_list; p; p = p->next) {
899 if (p->token != GREP_PATTERN_HEAD)
900 BUG("a non-header pattern in grep header list.");
901 if (p->field < GREP_HEADER_FIELD_MIN ||
902 GREP_HEADER_FIELD_MAX <= p->field)
903 BUG("unknown header field %d", p->field);
904 compile_regexp(p, opt);
907 for (fld = 0; fld < GREP_HEADER_FIELD_MAX; fld++)
908 header_group[fld] = NULL;
910 for (p = opt->header_list; p; p = p->next) {
912 struct grep_pat *pp = p;
914 h = compile_pattern_atom(&pp);
915 if (!h || pp != p->next)
916 BUG("malformed header expr");
917 if (!header_group[p->field]) {
918 header_group[p->field] = h;
921 header_group[p->field] = grep_or_expr(h, header_group[p->field]);
926 for (fld = 0; fld < GREP_HEADER_FIELD_MAX; fld++) {
927 if (!header_group[fld])
930 header_expr = grep_true_expr();
931 header_expr = grep_or_expr(header_group[fld], header_expr);
936 static struct grep_expr *grep_splice_or(struct grep_expr *x, struct grep_expr *y)
938 struct grep_expr *z = x;
941 assert(x->node == GREP_NODE_OR);
942 if (x->u.binary.right &&
943 x->u.binary.right->node == GREP_NODE_TRUE) {
944 x->u.binary.right = y;
947 x = x->u.binary.right;
952 static void compile_grep_patterns_real(struct grep_opt *opt)
955 struct grep_expr *header_expr = prep_header_patterns(opt);
957 for (p = opt->pattern_list; p; p = p->next) {
959 case GREP_PATTERN: /* atom */
960 case GREP_PATTERN_HEAD:
961 case GREP_PATTERN_BODY:
962 compile_regexp(p, opt);
970 if (opt->all_match || header_expr)
972 else if (!opt->extended && !opt->debug)
975 p = opt->pattern_list;
977 opt->pattern_expression = compile_pattern_expr(&p);
979 die("incomplete pattern expression: %s", p->pattern);
984 if (!opt->pattern_expression)
985 opt->pattern_expression = header_expr;
986 else if (opt->all_match)
987 opt->pattern_expression = grep_splice_or(header_expr,
988 opt->pattern_expression);
990 opt->pattern_expression = grep_or_expr(opt->pattern_expression,
995 void compile_grep_patterns(struct grep_opt *opt)
997 compile_grep_patterns_real(opt);
999 dump_grep_expression(opt);
1002 static void free_pattern_expr(struct grep_expr *x)
1005 case GREP_NODE_TRUE:
1006 case GREP_NODE_ATOM:
1009 free_pattern_expr(x->u.unary);
1013 free_pattern_expr(x->u.binary.left);
1014 free_pattern_expr(x->u.binary.right);
1020 void free_grep_patterns(struct grep_opt *opt)
1022 struct grep_pat *p, *n;
1024 for (p = opt->pattern_list; p; p = n) {
1027 case GREP_PATTERN: /* atom */
1028 case GREP_PATTERN_HEAD:
1029 case GREP_PATTERN_BODY:
1030 if (p->pcre1_regexp)
1031 free_pcre1_regexp(p);
1032 else if (p->pcre2_pattern)
1033 free_pcre2_pattern(p);
1035 regfree(&p->regexp);
1046 free_pattern_expr(opt->pattern_expression);
1049 static char *end_of_line(char *cp, unsigned long *left)
1051 unsigned long l = *left;
1052 while (l && *cp != '\n') {
1060 static int word_char(char ch)
1062 return isalnum(ch) || ch == '_';
1065 static void output_color(struct grep_opt *opt, const void *data, size_t size,
1068 if (want_color(opt->color) && color && color[0]) {
1069 opt->output(opt, color, strlen(color));
1070 opt->output(opt, data, size);
1071 opt->output(opt, GIT_COLOR_RESET, strlen(GIT_COLOR_RESET));
1073 opt->output(opt, data, size);
1076 static void output_sep(struct grep_opt *opt, char sign)
1078 if (opt->null_following_name)
1079 opt->output(opt, "\0", 1);
1081 output_color(opt, &sign, 1, opt->colors[GREP_COLOR_SEP]);
1084 static void show_name(struct grep_opt *opt, const char *name)
1086 output_color(opt, name, strlen(name), opt->colors[GREP_COLOR_FILENAME]);
1087 opt->output(opt, opt->null_following_name ? "\0" : "\n", 1);
1090 static int patmatch(struct grep_pat *p, char *line, char *eol,
1091 regmatch_t *match, int eflags)
1095 if (p->pcre1_regexp)
1096 hit = !pcre1match(p, line, eol, match, eflags);
1097 else if (p->pcre2_pattern)
1098 hit = !pcre2match(p, line, eol, match, eflags);
1100 hit = !regexec_buf(&p->regexp, line, eol - line, 1, match,
1106 static int strip_timestamp(char *bol, char **eol_p)
1111 while (bol < --eol) {
1125 } header_field[] = {
1127 { "committer ", 10 },
1131 static int match_one_pattern(struct grep_pat *p, char *bol, char *eol,
1132 enum grep_context ctx,
1133 regmatch_t *pmatch, int eflags)
1137 const char *start = bol;
1139 if ((p->token != GREP_PATTERN) &&
1140 ((p->token == GREP_PATTERN_HEAD) != (ctx == GREP_CONTEXT_HEAD)))
1143 if (p->token == GREP_PATTERN_HEAD) {
1146 assert(p->field < ARRAY_SIZE(header_field));
1147 field = header_field[p->field].field;
1148 len = header_field[p->field].len;
1149 if (strncmp(bol, field, len))
1153 case GREP_HEADER_AUTHOR:
1154 case GREP_HEADER_COMMITTER:
1155 saved_ch = strip_timestamp(bol, &eol);
1163 hit = patmatch(p, bol, eol, pmatch, eflags);
1165 if (hit && p->word_regexp) {
1166 if ((pmatch[0].rm_so < 0) ||
1167 (eol - bol) < pmatch[0].rm_so ||
1168 (pmatch[0].rm_eo < 0) ||
1169 (eol - bol) < pmatch[0].rm_eo)
1170 die("regexp returned nonsense");
1172 /* Match beginning must be either beginning of the
1173 * line, or at word boundary (i.e. the last char must
1174 * not be a word char). Similarly, match end must be
1175 * either end of the line, or at word boundary
1176 * (i.e. the next char must not be a word char).
1178 if ( ((pmatch[0].rm_so == 0) ||
1179 !word_char(bol[pmatch[0].rm_so-1])) &&
1180 ((pmatch[0].rm_eo == (eol-bol)) ||
1181 !word_char(bol[pmatch[0].rm_eo])) )
1186 /* Words consist of at least one character. */
1187 if (pmatch->rm_so == pmatch->rm_eo)
1190 if (!hit && pmatch[0].rm_so + bol + 1 < eol) {
1191 /* There could be more than one match on the
1192 * line, and the first match might not be
1193 * strict word match. But later ones could be!
1194 * Forward to the next possible start, i.e. the
1195 * next position following a non-word char.
1197 bol = pmatch[0].rm_so + bol + 1;
1198 while (word_char(bol[-1]) && bol < eol)
1200 eflags |= REG_NOTBOL;
1205 if (p->token == GREP_PATTERN_HEAD && saved_ch)
1208 pmatch[0].rm_so += bol - start;
1209 pmatch[0].rm_eo += bol - start;
1214 static int match_expr_eval(struct grep_opt *opt, struct grep_expr *x, char *bol,
1215 char *eol, enum grep_context ctx, ssize_t *col,
1216 ssize_t *icol, int collect_hits)
1221 die("Not a valid grep expression");
1223 case GREP_NODE_TRUE:
1226 case GREP_NODE_ATOM:
1229 h = match_one_pattern(x->u.atom, bol, eol, ctx,
1231 if (h && (*col < 0 || tmp.rm_so < *col))
1237 * Upon visiting a GREP_NODE_NOT, col and icol become swapped.
1239 h = !match_expr_eval(opt, x->u.unary, bol, eol, ctx, icol, col,
1243 h = match_expr_eval(opt, x->u.binary.left, bol, eol, ctx, col,
1245 if (h || opt->columnnum) {
1247 * Don't short-circuit AND when given --column, since a
1248 * NOT earlier in the tree may turn this into an OR. In
1249 * this case, see the below comment.
1251 h &= match_expr_eval(opt, x->u.binary.right, bol, eol,
1256 if (!(collect_hits || opt->columnnum)) {
1258 * Don't short-circuit OR when given --column (or
1259 * collecting hits) to ensure we don't skip a later
1260 * child that would produce an earlier match.
1262 return (match_expr_eval(opt, x->u.binary.left, bol, eol,
1263 ctx, col, icol, 0) ||
1264 match_expr_eval(opt, x->u.binary.right, bol,
1265 eol, ctx, col, icol, 0));
1267 h = match_expr_eval(opt, x->u.binary.left, bol, eol, ctx, col,
1270 x->u.binary.left->hit |= h;
1271 h |= match_expr_eval(opt, x->u.binary.right, bol, eol, ctx, col,
1272 icol, collect_hits);
1275 die("Unexpected node type (internal error) %d", x->node);
1282 static int match_expr(struct grep_opt *opt, char *bol, char *eol,
1283 enum grep_context ctx, ssize_t *col,
1284 ssize_t *icol, int collect_hits)
1286 struct grep_expr *x = opt->pattern_expression;
1287 return match_expr_eval(opt, x, bol, eol, ctx, col, icol, collect_hits);
1290 static int match_line(struct grep_opt *opt, char *bol, char *eol,
1291 ssize_t *col, ssize_t *icol,
1292 enum grep_context ctx, int collect_hits)
1298 return match_expr(opt, bol, eol, ctx, col, icol,
1301 /* we do not call with collect_hits without being extended */
1302 for (p = opt->pattern_list; p; p = p->next) {
1304 if (match_one_pattern(p, bol, eol, ctx, &tmp, 0)) {
1306 if (!opt->columnnum) {
1308 * Without --column, any single match on a line
1309 * is enough to know that it needs to be
1310 * printed. With --column, scan _all_ patterns
1311 * to find the earliest.
1315 if (*col < 0 || tmp.rm_so < *col)
1322 static int match_next_pattern(struct grep_pat *p, char *bol, char *eol,
1323 enum grep_context ctx,
1324 regmatch_t *pmatch, int eflags)
1328 if (!match_one_pattern(p, bol, eol, ctx, &match, eflags))
1330 if (match.rm_so < 0 || match.rm_eo < 0)
1332 if (pmatch->rm_so >= 0 && pmatch->rm_eo >= 0) {
1333 if (match.rm_so > pmatch->rm_so)
1335 if (match.rm_so == pmatch->rm_so && match.rm_eo < pmatch->rm_eo)
1338 pmatch->rm_so = match.rm_so;
1339 pmatch->rm_eo = match.rm_eo;
1343 static int next_match(struct grep_opt *opt, char *bol, char *eol,
1344 enum grep_context ctx, regmatch_t *pmatch, int eflags)
1349 pmatch->rm_so = pmatch->rm_eo = -1;
1351 for (p = opt->pattern_list; p; p = p->next) {
1353 case GREP_PATTERN: /* atom */
1354 case GREP_PATTERN_HEAD:
1355 case GREP_PATTERN_BODY:
1356 hit |= match_next_pattern(p, bol, eol, ctx,
1367 static void show_line_header(struct grep_opt *opt, const char *name,
1368 unsigned lno, ssize_t cno, char sign)
1370 if (opt->heading && opt->last_shown == 0) {
1371 output_color(opt, name, strlen(name), opt->colors[GREP_COLOR_FILENAME]);
1372 opt->output(opt, "\n", 1);
1374 opt->last_shown = lno;
1376 if (!opt->heading && opt->pathname) {
1377 output_color(opt, name, strlen(name), opt->colors[GREP_COLOR_FILENAME]);
1378 output_sep(opt, sign);
1382 xsnprintf(buf, sizeof(buf), "%d", lno);
1383 output_color(opt, buf, strlen(buf), opt->colors[GREP_COLOR_LINENO]);
1384 output_sep(opt, sign);
1387 * Treat 'cno' as the 1-indexed offset from the start of a non-context
1388 * line to its first match. Otherwise, 'cno' is 0 indicating that we are
1389 * being called with a context line.
1391 if (opt->columnnum && cno) {
1393 xsnprintf(buf, sizeof(buf), "%"PRIuMAX, (uintmax_t)cno);
1394 output_color(opt, buf, strlen(buf), opt->colors[GREP_COLOR_COLUMNNO]);
1395 output_sep(opt, sign);
1399 static void show_line(struct grep_opt *opt, char *bol, char *eol,
1400 const char *name, unsigned lno, ssize_t cno, char sign)
1402 int rest = eol - bol;
1403 const char *match_color = NULL;
1404 const char *line_color = NULL;
1406 if (opt->file_break && opt->last_shown == 0) {
1407 if (opt->show_hunk_mark)
1408 opt->output(opt, "\n", 1);
1409 } else if (opt->pre_context || opt->post_context || opt->funcbody) {
1410 if (opt->last_shown == 0) {
1411 if (opt->show_hunk_mark) {
1412 output_color(opt, "--", 2, opt->colors[GREP_COLOR_SEP]);
1413 opt->output(opt, "\n", 1);
1415 } else if (lno > opt->last_shown + 1) {
1416 output_color(opt, "--", 2, opt->colors[GREP_COLOR_SEP]);
1417 opt->output(opt, "\n", 1);
1420 if (!opt->only_matching) {
1422 * In case the line we're being called with contains more than
1423 * one match, leave printing each header to the loop below.
1425 show_line_header(opt, name, lno, cno, sign);
1427 if (opt->color || opt->only_matching) {
1429 enum grep_context ctx = GREP_CONTEXT_BODY;
1435 match_color = opt->colors[GREP_COLOR_MATCH_SELECTED];
1437 match_color = opt->colors[GREP_COLOR_MATCH_CONTEXT];
1439 line_color = opt->colors[GREP_COLOR_SELECTED];
1440 else if (sign == '-')
1441 line_color = opt->colors[GREP_COLOR_CONTEXT];
1442 else if (sign == '=')
1443 line_color = opt->colors[GREP_COLOR_FUNCTION];
1446 while (next_match(opt, bol, eol, ctx, &match, eflags)) {
1447 if (match.rm_so == match.rm_eo)
1450 if (opt->only_matching)
1451 show_line_header(opt, name, lno, cno, sign);
1453 output_color(opt, bol, match.rm_so, line_color);
1454 output_color(opt, bol + match.rm_so,
1455 match.rm_eo - match.rm_so, match_color);
1456 if (opt->only_matching)
1457 opt->output(opt, "\n", 1);
1460 rest -= match.rm_eo;
1461 eflags = REG_NOTBOL;
1465 if (!opt->only_matching) {
1466 output_color(opt, bol, rest, line_color);
1467 opt->output(opt, "\n", 1);
1474 * This lock protects access to the gitattributes machinery, which is
1477 pthread_mutex_t grep_attr_mutex;
1479 static inline void grep_attr_lock(void)
1482 pthread_mutex_lock(&grep_attr_mutex);
1485 static inline void grep_attr_unlock(void)
1488 pthread_mutex_unlock(&grep_attr_mutex);
1492 * Same as git_attr_mutex, but protecting the thread-unsafe object db access.
1494 pthread_mutex_t grep_read_mutex;
1496 static int match_funcname(struct grep_opt *opt, struct grep_source *gs, char *bol, char *eol)
1498 xdemitconf_t *xecfg = opt->priv;
1499 if (xecfg && !xecfg->find_func) {
1500 grep_source_load_driver(gs, opt->repo->index);
1501 if (gs->driver->funcname.pattern) {
1502 const struct userdiff_funcname *pe = &gs->driver->funcname;
1503 xdiff_set_find_func(xecfg, pe->pattern, pe->cflags);
1505 xecfg = opt->priv = NULL;
1511 return xecfg->find_func(bol, eol - bol, buf, 1,
1512 xecfg->find_func_priv) >= 0;
1517 if (isalpha(*bol) || *bol == '_' || *bol == '$')
1522 static void show_funcname_line(struct grep_opt *opt, struct grep_source *gs,
1523 char *bol, unsigned lno)
1525 while (bol > gs->buf) {
1528 while (bol > gs->buf && bol[-1] != '\n')
1532 if (lno <= opt->last_shown)
1535 if (match_funcname(opt, gs, bol, eol)) {
1536 show_line(opt, bol, eol, gs->name, lno, 0, '=');
1542 static int is_empty_line(const char *bol, const char *eol);
1544 static void show_pre_context(struct grep_opt *opt, struct grep_source *gs,
1545 char *bol, char *end, unsigned lno)
1547 unsigned cur = lno, from = 1, funcname_lno = 0, orig_from;
1548 int funcname_needed = !!opt->funcname, comment_needed = 0;
1550 if (opt->pre_context < lno)
1551 from = lno - opt->pre_context;
1552 if (from <= opt->last_shown)
1553 from = opt->last_shown + 1;
1555 if (opt->funcbody) {
1556 if (match_funcname(opt, gs, bol, end))
1559 funcname_needed = 1;
1560 from = opt->last_shown + 1;
1564 while (bol > gs->buf && cur > from) {
1565 char *next_bol = bol;
1568 while (bol > gs->buf && bol[-1] != '\n')
1571 if (comment_needed && (is_empty_line(bol, eol) ||
1572 match_funcname(opt, gs, bol, eol))) {
1581 if (funcname_needed && match_funcname(opt, gs, bol, eol)) {
1583 funcname_needed = 0;
1591 /* We need to look even further back to find a function signature. */
1592 if (opt->funcname && funcname_needed)
1593 show_funcname_line(opt, gs, bol, cur);
1597 char *eol = bol, sign = (cur == funcname_lno) ? '=' : '-';
1599 while (*eol != '\n')
1601 show_line(opt, bol, eol, gs->name, cur, 0, sign);
1607 static int should_lookahead(struct grep_opt *opt)
1612 return 0; /* punt for too complex stuff */
1615 for (p = opt->pattern_list; p; p = p->next) {
1616 if (p->token != GREP_PATTERN)
1617 return 0; /* punt for "header only" and stuff */
1622 static int look_ahead(struct grep_opt *opt,
1623 unsigned long *left_p,
1627 unsigned lno = *lno_p;
1630 char *sp, *last_bol;
1631 regoff_t earliest = -1;
1633 for (p = opt->pattern_list; p; p = p->next) {
1637 hit = patmatch(p, bol, bol + *left_p, &m, 0);
1638 if (!hit || m.rm_so < 0 || m.rm_eo < 0)
1640 if (earliest < 0 || m.rm_so < earliest)
1645 *bol_p = bol + *left_p;
1649 for (sp = bol + earliest; bol < sp && sp[-1] != '\n'; sp--)
1650 ; /* find the beginning of the line */
1653 for (sp = bol; sp < last_bol; sp++) {
1657 *left_p -= last_bol - bol;
1663 static int fill_textconv_grep(struct repository *r,
1664 struct userdiff_driver *driver,
1665 struct grep_source *gs)
1667 struct diff_filespec *df;
1671 if (!driver || !driver->textconv)
1672 return grep_source_load(gs);
1675 * The textconv interface is intimately tied to diff_filespecs, so we
1676 * have to pretend to be one. If we could unify the grep_source
1677 * and diff_filespec structs, this mess could just go away.
1679 df = alloc_filespec(gs->path);
1681 case GREP_SOURCE_OID:
1682 fill_filespec(df, gs->identifier, 1, 0100644);
1684 case GREP_SOURCE_FILE:
1685 fill_filespec(df, &null_oid, 0, 0100644);
1688 BUG("attempt to textconv something without a path?");
1692 * fill_textconv is not remotely thread-safe; it may load objects
1693 * behind the scenes, and it modifies the global diff tempfile
1697 size = fill_textconv(r, driver, df, &buf);
1702 * The normal fill_textconv usage by the diff machinery would just keep
1703 * the textconv'd buf separate from the diff_filespec. But much of the
1704 * grep code passes around a grep_source and assumes that its "buf"
1705 * pointer is the beginning of the thing we are searching. So let's
1706 * install our textconv'd version into the grep_source, taking care not
1707 * to leak any existing buffer.
1709 grep_source_clear_data(gs);
1716 static int is_empty_line(const char *bol, const char *eol)
1718 while (bol < eol && isspace(*bol))
1723 static int grep_source_1(struct grep_opt *opt, struct grep_source *gs, int collect_hits)
1726 char *peek_bol = NULL;
1729 unsigned last_hit = 0;
1730 int binary_match_only = 0;
1732 int try_lookahead = 0;
1733 int show_function = 0;
1734 struct userdiff_driver *textconv = NULL;
1735 enum grep_context ctx = GREP_CONTEXT_HEAD;
1738 if (!opt->status_only && gs->name == NULL)
1739 BUG("grep call which could print a name requires "
1740 "grep_source.name be non-NULL");
1743 opt->output = std_output;
1745 if (opt->pre_context || opt->post_context || opt->file_break ||
1747 /* Show hunk marks, except for the first file. */
1748 if (opt->last_shown)
1749 opt->show_hunk_mark = 1;
1751 * If we're using threads then we can't easily identify
1752 * the first file. Always put hunk marks in that case
1753 * and skip the very first one later in work_done().
1755 if (opt->output != std_output)
1756 opt->show_hunk_mark = 1;
1758 opt->last_shown = 0;
1760 if (opt->allow_textconv) {
1761 grep_source_load_driver(gs, opt->repo->index);
1763 * We might set up the shared textconv cache data here, which
1764 * is not thread-safe.
1767 textconv = userdiff_get_textconv(opt->repo, gs->driver);
1772 * We know the result of a textconv is text, so we only have to care
1773 * about binary handling if we are not using it.
1776 switch (opt->binary) {
1777 case GREP_BINARY_DEFAULT:
1778 if (grep_source_is_binary(gs, opt->repo->index))
1779 binary_match_only = 1;
1781 case GREP_BINARY_NOMATCH:
1782 if (grep_source_is_binary(gs, opt->repo->index))
1783 return 0; /* Assume unmatch */
1785 case GREP_BINARY_TEXT:
1788 BUG("unknown binary handling mode");
1792 memset(&xecfg, 0, sizeof(xecfg));
1795 try_lookahead = should_lookahead(opt);
1797 if (fill_textconv_grep(opt->repo, textconv, gs) < 0)
1806 ssize_t col = -1, icol = -1;
1809 * look_ahead() skips quickly to the line that possibly
1810 * has the next hit; don't call it if we need to do
1811 * something more than just skipping the current line
1812 * in response to an unmatch for the current line. E.g.
1813 * inside a post-context window, we will show the current
1814 * line as a context around the previous hit when it
1819 && (show_function ||
1820 lno <= last_hit + opt->post_context))
1821 && look_ahead(opt, &left, &lno, &bol))
1823 eol = end_of_line(bol, &left);
1827 if ((ctx == GREP_CONTEXT_HEAD) && (eol == bol))
1828 ctx = GREP_CONTEXT_BODY;
1830 hit = match_line(opt, bol, eol, &col, &icol, ctx, collect_hits);
1836 /* "grep -v -e foo -e bla" should list lines
1837 * that do not have either, so inversion should
1842 if (opt->unmatch_name_only) {
1849 if (opt->status_only)
1851 if (opt->name_only) {
1852 show_name(opt, gs->name);
1857 if (binary_match_only) {
1858 opt->output(opt, "Binary file ", 12);
1859 output_color(opt, gs->name, strlen(gs->name),
1860 opt->colors[GREP_COLOR_FILENAME]);
1861 opt->output(opt, " matches\n", 9);
1864 /* Hit at this line. If we haven't shown the
1865 * pre-context lines, we would need to show them.
1867 if (opt->pre_context || opt->funcbody)
1868 show_pre_context(opt, gs, bol, eol, lno);
1869 else if (opt->funcname)
1870 show_funcname_line(opt, gs, bol, lno);
1871 cno = opt->invert ? icol : col;
1874 * A negative cno indicates that there was no
1875 * match on the line. We are thus inverted and
1876 * being asked to show all lines that _don't_
1877 * match a given expression. Therefore, set cno
1878 * to 0 to suggest the whole line matches.
1882 show_line(opt, bol, eol, gs->name, lno, cno + 1, ':');
1888 if (show_function && (!peek_bol || peek_bol < bol)) {
1889 unsigned long peek_left = left;
1890 char *peek_eol = eol;
1893 * Trailing empty lines are not interesting.
1894 * Peek past them to see if they belong to the
1895 * body of the current function.
1898 while (is_empty_line(peek_bol, peek_eol)) {
1899 peek_bol = peek_eol + 1;
1900 peek_eol = end_of_line(peek_bol, &peek_left);
1903 if (match_funcname(opt, gs, peek_bol, peek_eol))
1906 if (show_function ||
1907 (last_hit && lno <= last_hit + opt->post_context)) {
1908 /* If the last hit is within the post context,
1909 * we need to show this line.
1911 show_line(opt, bol, eol, gs->name, lno, col + 1, '-');
1925 if (opt->status_only)
1926 return opt->unmatch_name_only;
1927 if (opt->unmatch_name_only) {
1928 /* We did not see any hit, so we want to show this */
1929 show_name(opt, gs->name);
1933 xdiff_clear_find_func(&xecfg);
1937 * The real "grep -c foo *.c" gives many "bar.c:0" lines,
1938 * which feels mostly useless but sometimes useful. Maybe
1939 * make it another option? For now suppress them.
1941 if (opt->count && count) {
1943 if (opt->pathname) {
1944 output_color(opt, gs->name, strlen(gs->name),
1945 opt->colors[GREP_COLOR_FILENAME]);
1946 output_sep(opt, ':');
1948 xsnprintf(buf, sizeof(buf), "%u\n", count);
1949 opt->output(opt, buf, strlen(buf));
1955 static void clr_hit_marker(struct grep_expr *x)
1957 /* All-hit markers are meaningful only at the very top level
1962 if (x->node != GREP_NODE_OR)
1964 x->u.binary.left->hit = 0;
1965 x = x->u.binary.right;
1969 static int chk_hit_marker(struct grep_expr *x)
1971 /* Top level nodes have hit markers. See if they all are hits */
1973 if (x->node != GREP_NODE_OR)
1975 if (!x->u.binary.left->hit)
1977 x = x->u.binary.right;
1981 int grep_source(struct grep_opt *opt, struct grep_source *gs)
1984 * we do not have to do the two-pass grep when we do not check
1985 * buffer-wide "all-match".
1987 if (!opt->all_match)
1988 return grep_source_1(opt, gs, 0);
1990 /* Otherwise the toplevel "or" terms hit a bit differently.
1991 * We first clear hit markers from them.
1993 clr_hit_marker(opt->pattern_expression);
1994 grep_source_1(opt, gs, 1);
1996 if (!chk_hit_marker(opt->pattern_expression))
1999 return grep_source_1(opt, gs, 0);
2002 int grep_buffer(struct grep_opt *opt, char *buf, unsigned long size)
2004 struct grep_source gs;
2007 grep_source_init(&gs, GREP_SOURCE_BUF, NULL, NULL, NULL);
2011 r = grep_source(opt, &gs);
2013 grep_source_clear(&gs);
2017 void grep_source_init(struct grep_source *gs, enum grep_source_type type,
2018 const char *name, const char *path,
2019 const void *identifier)
2022 gs->name = xstrdup_or_null(name);
2023 gs->path = xstrdup_or_null(path);
2029 case GREP_SOURCE_FILE:
2030 gs->identifier = xstrdup(identifier);
2032 case GREP_SOURCE_OID:
2033 gs->identifier = oiddup(identifier);
2035 case GREP_SOURCE_BUF:
2036 gs->identifier = NULL;
2041 void grep_source_clear(struct grep_source *gs)
2043 FREE_AND_NULL(gs->name);
2044 FREE_AND_NULL(gs->path);
2045 FREE_AND_NULL(gs->identifier);
2046 grep_source_clear_data(gs);
2049 void grep_source_clear_data(struct grep_source *gs)
2052 case GREP_SOURCE_FILE:
2053 case GREP_SOURCE_OID:
2054 FREE_AND_NULL(gs->buf);
2057 case GREP_SOURCE_BUF:
2058 /* leave user-provided buf intact */
2063 static int grep_source_load_oid(struct grep_source *gs)
2065 enum object_type type;
2068 gs->buf = read_object_file(gs->identifier, &type, &gs->size);
2072 return error(_("'%s': unable to read %s"),
2074 oid_to_hex(gs->identifier));
2078 static int grep_source_load_file(struct grep_source *gs)
2080 const char *filename = gs->identifier;
2086 if (lstat(filename, &st) < 0) {
2088 if (errno != ENOENT)
2089 error_errno(_("failed to stat '%s'"), filename);
2092 if (!S_ISREG(st.st_mode))
2094 size = xsize_t(st.st_size);
2095 i = open(filename, O_RDONLY);
2098 data = xmallocz(size);
2099 if (st.st_size != read_in_full(i, data, size)) {
2100 error_errno(_("'%s': short read"), filename);
2112 static int grep_source_load(struct grep_source *gs)
2118 case GREP_SOURCE_FILE:
2119 return grep_source_load_file(gs);
2120 case GREP_SOURCE_OID:
2121 return grep_source_load_oid(gs);
2122 case GREP_SOURCE_BUF:
2123 return gs->buf ? 0 : -1;
2125 BUG("invalid grep_source type to load");
2128 void grep_source_load_driver(struct grep_source *gs,
2129 struct index_state *istate)
2136 gs->driver = userdiff_find_by_path(istate, gs->path);
2138 gs->driver = userdiff_find_by_name("default");
2142 static int grep_source_is_binary(struct grep_source *gs,
2143 struct index_state *istate)
2145 grep_source_load_driver(gs, istate);
2146 if (gs->driver->binary != -1)
2147 return gs->driver->binary;
2149 if (!grep_source_load(gs))
2150 return buffer_is_binary(gs->buf, gs->size);