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Bram Moolenaar14c01f82019-10-09 22:53:08 +02001/* vi:set ts=8 sts=4 sw=4 noet:
2 *
3 * VIM - Vi IMproved by Bram Moolenaar
4 *
5 * Do ":help uganda" in Vim to read copying and usage conditions.
6 * Do ":help credits" in Vim to see a list of people who contributed.
7 * See README.txt for an overview of the Vim source code.
8 */
9
10/*
11 * cindent.c: C indentation related functions
12 *
13 * Many of C-indenting functions originally come from Eric Fischer.
14 *
15 * Below "XXX" means that this function may unlock the current line.
16 */
17
18#include "vim.h"
19
20// values for the "lookfor" state
21#define LOOKFOR_INITIAL 0
22#define LOOKFOR_IF 1
23#define LOOKFOR_DO 2
24#define LOOKFOR_CASE 3
25#define LOOKFOR_ANY 4
26#define LOOKFOR_TERM 5
27#define LOOKFOR_UNTERM 6
28#define LOOKFOR_SCOPEDECL 7
29#define LOOKFOR_NOBREAK 8
30#define LOOKFOR_CPP_BASECLASS 9
31#define LOOKFOR_ENUM_OR_INIT 10
32#define LOOKFOR_JS_KEY 11
33#define LOOKFOR_COMMA 12
34
35#if defined(FEAT_CINDENT) || defined(FEAT_SMARTINDENT)
36/*
37 * Return TRUE if the string "line" starts with a word from 'cinwords'.
38 */
39 int
40cin_is_cinword(char_u *line)
41{
42 char_u *cinw;
43 char_u *cinw_buf;
44 int cinw_len;
45 int retval = FALSE;
46 int len;
47
48 cinw_len = (int)STRLEN(curbuf->b_p_cinw) + 1;
49 cinw_buf = alloc(cinw_len);
50 if (cinw_buf != NULL)
51 {
52 line = skipwhite(line);
53 for (cinw = curbuf->b_p_cinw; *cinw; )
54 {
55 len = copy_option_part(&cinw, cinw_buf, cinw_len, ",");
56 if (STRNCMP(line, cinw_buf, len) == 0
57 && (!vim_iswordc(line[len]) || !vim_iswordc(line[len - 1])))
58 {
59 retval = TRUE;
60 break;
61 }
62 }
63 vim_free(cinw_buf);
64 }
65 return retval;
66}
67#endif
68
69#if defined(FEAT_CINDENT) || defined(FEAT_SYN_HL)
70
71/*
72 * Skip to the end of a "string" and a 'c' character.
73 * If there is no string or character, return argument unmodified.
74 */
75 static char_u *
76skip_string(char_u *p)
77{
78 int i;
79
80 // We loop, because strings may be concatenated: "date""time".
81 for ( ; ; ++p)
82 {
83 if (p[0] == '\'') // 'c' or '\n' or '\000'
84 {
85 if (!p[1]) // ' at end of line
86 break;
87 i = 2;
88 if (p[1] == '\\') // '\n' or '\000'
89 {
90 ++i;
91 while (vim_isdigit(p[i - 1])) // '\000'
92 ++i;
93 }
94 if (p[i] == '\'') // check for trailing '
95 {
96 p += i;
97 continue;
98 }
99 }
100 else if (p[0] == '"') // start of string
101 {
102 for (++p; p[0]; ++p)
103 {
104 if (p[0] == '\\' && p[1] != NUL)
105 ++p;
106 else if (p[0] == '"') // end of string
107 break;
108 }
109 if (p[0] == '"')
110 continue; // continue for another string
111 }
112 else if (p[0] == 'R' && p[1] == '"')
113 {
114 // Raw string: R"[delim](...)[delim]"
115 char_u *delim = p + 2;
116 char_u *paren = vim_strchr(delim, '(');
117
118 if (paren != NULL)
119 {
120 size_t delim_len = paren - delim;
121
122 for (p += 3; *p; ++p)
123 if (p[0] == ')' && STRNCMP(p + 1, delim, delim_len) == 0
124 && p[delim_len + 1] == '"')
125 {
126 p += delim_len + 1;
127 break;
128 }
129 if (p[0] == '"')
130 continue; // continue for another string
131 }
132 }
133 break; // no string found
134 }
135 if (!*p)
136 --p; // backup from NUL
137 return p;
138}
139
140/*
141 * Find the start of a comment, not knowing if we are in a comment right now.
142 * Search starts at w_cursor.lnum and goes backwards.
143 * Return NULL when not inside a comment.
144 */
145 static pos_T *
146ind_find_start_comment(void) // XXX
147{
148 return find_start_comment(curbuf->b_ind_maxcomment);
149}
150
151 pos_T *
152find_start_comment(int ind_maxcomment) // XXX
153{
154 pos_T *pos;
155 char_u *line;
156 char_u *p;
157 int cur_maxcomment = ind_maxcomment;
158
159 for (;;)
160 {
161 pos = findmatchlimit(NULL, '*', FM_BACKWARD, cur_maxcomment);
162 if (pos == NULL)
163 break;
164
165 // Check if the comment start we found is inside a string.
166 // If it is then restrict the search to below this line and try again.
167 line = ml_get(pos->lnum);
168 for (p = line; *p && (colnr_T)(p - line) < pos->col; ++p)
169 p = skip_string(p);
170 if ((colnr_T)(p - line) <= pos->col)
171 break;
172 cur_maxcomment = curwin->w_cursor.lnum - pos->lnum - 1;
173 if (cur_maxcomment <= 0)
174 {
175 pos = NULL;
176 break;
177 }
178 }
179 return pos;
180}
181
182/*
183 * Find the start of a raw string, not knowing if we are in one right now.
184 * Search starts at w_cursor.lnum and goes backwards.
185 * Return NULL when not inside a raw string.
186 */
187 static pos_T *
188find_start_rawstring(int ind_maxcomment) // XXX
189{
190 pos_T *pos;
191 char_u *line;
192 char_u *p;
193 int cur_maxcomment = ind_maxcomment;
194
195 for (;;)
196 {
197 pos = findmatchlimit(NULL, 'R', FM_BACKWARD, cur_maxcomment);
198 if (pos == NULL)
199 break;
200
201 // Check if the raw string start we found is inside a string.
202 // If it is then restrict the search to below this line and try again.
203 line = ml_get(pos->lnum);
204 for (p = line; *p && (colnr_T)(p - line) < pos->col; ++p)
205 p = skip_string(p);
206 if ((colnr_T)(p - line) <= pos->col)
207 break;
208 cur_maxcomment = curwin->w_cursor.lnum - pos->lnum - 1;
209 if (cur_maxcomment <= 0)
210 {
211 pos = NULL;
212 break;
213 }
214 }
215 return pos;
216}
217
218/*
219 * Find the start of a comment or raw string, not knowing if we are in a
220 * comment or raw string right now.
221 * Search starts at w_cursor.lnum and goes backwards.
222 * If is_raw is given and returns start of raw_string, sets it to true.
223 * Return NULL when not inside a comment or raw string.
224 * "CORS" -> Comment Or Raw String
225 */
226 static pos_T *
227ind_find_start_CORS(linenr_T *is_raw) // XXX
228{
229 static pos_T comment_pos_copy;
230 pos_T *comment_pos;
231 pos_T *rs_pos;
232
233 comment_pos = find_start_comment(curbuf->b_ind_maxcomment);
234 if (comment_pos != NULL)
235 {
236 // Need to make a copy of the static pos in findmatchlimit(),
237 // calling find_start_rawstring() may change it.
238 comment_pos_copy = *comment_pos;
239 comment_pos = &comment_pos_copy;
240 }
241 rs_pos = find_start_rawstring(curbuf->b_ind_maxcomment);
242
243 // If comment_pos is before rs_pos the raw string is inside the comment.
244 // If rs_pos is before comment_pos the comment is inside the raw string.
245 if (comment_pos == NULL || (rs_pos != NULL
246 && LT_POS(*rs_pos, *comment_pos)))
247 {
248 if (is_raw != NULL && rs_pos != NULL)
249 *is_raw = rs_pos->lnum;
250 return rs_pos;
251 }
252 return comment_pos;
253}
254#endif // FEAT_CINDENT || FEAT_SYN_HL
255
256#if defined(FEAT_CINDENT) || defined(PROTO)
257
258/*
259 * Return TRUE if C-indenting is on.
260 */
261 int
262cindent_on(void)
263{
264 return (!p_paste && (curbuf->b_p_cin
265# ifdef FEAT_EVAL
266 || *curbuf->b_p_inde != NUL
267# endif
268 ));
269}
270
271// Find result cache for cpp_baseclass
272typedef struct {
273 int found;
274 lpos_T lpos;
275} cpp_baseclass_cache_T;
276
277/*
278 * Skip over white space and C comments within the line.
279 * Also skip over Perl/shell comments if desired.
280 */
281 static char_u *
282cin_skipcomment(char_u *s)
283{
284 while (*s)
285 {
286 char_u *prev_s = s;
287
288 s = skipwhite(s);
289
290 // Perl/shell # comment comment continues until eol. Require a space
291 // before # to avoid recognizing $#array.
292 if (curbuf->b_ind_hash_comment != 0 && s != prev_s && *s == '#')
293 {
294 s += STRLEN(s);
295 break;
296 }
297 if (*s != '/')
298 break;
299 ++s;
300 if (*s == '/') // slash-slash comment continues till eol
301 {
302 s += STRLEN(s);
303 break;
304 }
305 if (*s != '*')
306 break;
307 for (++s; *s; ++s) // skip slash-star comment
308 if (s[0] == '*' && s[1] == '/')
309 {
310 s += 2;
311 break;
312 }
313 }
314 return s;
315}
316
317/*
318 * Return TRUE if there is no code at *s. White space and comments are
319 * not considered code.
320 */
321 static int
322cin_nocode(char_u *s)
323{
324 return *cin_skipcomment(s) == NUL;
325}
326
327/*
328 * Recognize the start of a C or C++ comment.
329 */
330 static int
331cin_iscomment(char_u *p)
332{
333 return (p[0] == '/' && (p[1] == '*' || p[1] == '/'));
334}
335
336/*
337 * Recognize the start of a "//" comment.
338 */
339 static int
340cin_islinecomment(char_u *p)
341{
342 return (p[0] == '/' && p[1] == '/');
343}
344
345/*
346 * Check previous lines for a "//" line comment, skipping over blank lines.
347 */
348 static pos_T *
349find_line_comment(void) // XXX
350{
351 static pos_T pos;
352 char_u *line;
353 char_u *p;
354
355 pos = curwin->w_cursor;
356 while (--pos.lnum > 0)
357 {
358 line = ml_get(pos.lnum);
359 p = skipwhite(line);
360 if (cin_islinecomment(p))
361 {
362 pos.col = (int)(p - line);
363 return &pos;
364 }
365 if (*p != NUL)
366 break;
367 }
368 return NULL;
369}
370
371/*
372 * Return TRUE if "text" starts with "key:".
373 */
374 static int
375cin_has_js_key(char_u *text)
376{
377 char_u *s = skipwhite(text);
378 int quote = -1;
379
380 if (*s == '\'' || *s == '"')
381 {
382 // can be 'key': or "key":
383 quote = *s;
384 ++s;
385 }
386 if (!vim_isIDc(*s)) // need at least one ID character
387 return FALSE;
388
389 while (vim_isIDc(*s))
390 ++s;
391 if (*s == quote)
392 ++s;
393
394 s = cin_skipcomment(s);
395
396 // "::" is not a label, it's C++
397 return (*s == ':' && s[1] != ':');
398}
399
400/*
401 * Check if string matches "label:"; move to character after ':' if true.
402 * "*s" must point to the start of the label, if there is one.
403 */
404 static int
405cin_islabel_skip(char_u **s)
406{
407 if (!vim_isIDc(**s)) // need at least one ID character
408 return FALSE;
409
410 while (vim_isIDc(**s))
411 (*s)++;
412
413 *s = cin_skipcomment(*s);
414
415 // "::" is not a label, it's C++
416 return (**s == ':' && *++*s != ':');
417}
418
419/*
420 * Recognize a "public/private/protected" scope declaration label.
421 */
422 static int
423cin_isscopedecl(char_u *s)
424{
425 int i;
426
427 s = cin_skipcomment(s);
428 if (STRNCMP(s, "public", 6) == 0)
429 i = 6;
430 else if (STRNCMP(s, "protected", 9) == 0)
431 i = 9;
432 else if (STRNCMP(s, "private", 7) == 0)
433 i = 7;
434 else
435 return FALSE;
436 return (*(s = cin_skipcomment(s + i)) == ':' && s[1] != ':');
437}
438
439/*
440 * Recognize a preprocessor statement: Any line that starts with '#'.
441 */
442 static int
443cin_ispreproc(char_u *s)
444{
445 if (*skipwhite(s) == '#')
446 return TRUE;
447 return FALSE;
448}
449
450/*
451 * Return TRUE if line "*pp" at "*lnump" is a preprocessor statement or a
452 * continuation line of a preprocessor statement. Decrease "*lnump" to the
453 * start and return the line in "*pp".
454 * Put the amount of indent in "*amount".
455 */
456 static int
457cin_ispreproc_cont(char_u **pp, linenr_T *lnump, int *amount)
458{
459 char_u *line = *pp;
460 linenr_T lnum = *lnump;
461 int retval = FALSE;
462 int candidate_amount = *amount;
463
464 if (*line != NUL && line[STRLEN(line) - 1] == '\\')
465 candidate_amount = get_indent_lnum(lnum);
466
467 for (;;)
468 {
469 if (cin_ispreproc(line))
470 {
471 retval = TRUE;
472 *lnump = lnum;
473 break;
474 }
475 if (lnum == 1)
476 break;
477 line = ml_get(--lnum);
478 if (*line == NUL || line[STRLEN(line) - 1] != '\\')
479 break;
480 }
481
482 if (lnum != *lnump)
483 *pp = ml_get(*lnump);
484 if (retval)
485 *amount = candidate_amount;
486 return retval;
487}
488
489 static int
490cin_iselse(
491 char_u *p)
492{
493 if (*p == '}') // accept "} else"
494 p = cin_skipcomment(p + 1);
495 return (STRNCMP(p, "else", 4) == 0 && !vim_isIDc(p[4]));
496}
497
498/*
499 * Recognize a line that starts with '{' or '}', or ends with ';', ',', '{' or
500 * '}'.
501 * Don't consider "} else" a terminated line.
502 * If a line begins with an "else", only consider it terminated if no unmatched
503 * opening braces follow (handle "else { foo();" correctly).
504 * Return the character terminating the line (ending char's have precedence if
505 * both apply in order to determine initializations).
506 */
507 static int
508cin_isterminated(
509 char_u *s,
510 int incl_open, // include '{' at the end as terminator
511 int incl_comma) // recognize a trailing comma
512{
513 char_u found_start = 0;
514 unsigned n_open = 0;
515 int is_else = FALSE;
516
517 s = cin_skipcomment(s);
518
519 if (*s == '{' || (*s == '}' && !cin_iselse(s)))
520 found_start = *s;
521
522 if (!found_start)
523 is_else = cin_iselse(s);
524
525 while (*s)
526 {
527 // skip over comments, "" strings and 'c'haracters
528 s = skip_string(cin_skipcomment(s));
529 if (*s == '}' && n_open > 0)
530 --n_open;
531 if ((!is_else || n_open == 0)
532 && (*s == ';' || *s == '}' || (incl_comma && *s == ','))
533 && cin_nocode(s + 1))
534 return *s;
535 else if (*s == '{')
536 {
537 if (incl_open && cin_nocode(s + 1))
538 return *s;
539 else
540 ++n_open;
541 }
542
543 if (*s)
544 s++;
545 }
546 return found_start;
547}
548
549/*
550 * Return TRUE when "s" starts with "word" and then a non-ID character.
551 */
552 static int
553cin_starts_with(char_u *s, char *word)
554{
555 int l = (int)STRLEN(word);
556
557 return (STRNCMP(s, word, l) == 0 && !vim_isIDc(s[l]));
558}
559
560/*
561 * Recognize a "default" switch label.
562 */
563 static int
564cin_isdefault(char_u *s)
565{
566 return (STRNCMP(s, "default", 7) == 0
567 && *(s = cin_skipcomment(s + 7)) == ':'
568 && s[1] != ':');
569}
570
571/*
572 * Recognize a switch label: "case .*:" or "default:".
573 */
574 static int
575cin_iscase(
576 char_u *s,
577 int strict) // Allow relaxed check of case statement for JS
578{
579 s = cin_skipcomment(s);
580 if (cin_starts_with(s, "case"))
581 {
582 for (s += 4; *s; ++s)
583 {
584 s = cin_skipcomment(s);
Bram Moolenaar02ad4632020-01-12 13:48:18 +0100585 if (*s == NUL)
586 break;
Bram Moolenaar14c01f82019-10-09 22:53:08 +0200587 if (*s == ':')
588 {
589 if (s[1] == ':') // skip over "::" for C++
590 ++s;
591 else
592 return TRUE;
593 }
594 if (*s == '\'' && s[1] && s[2] == '\'')
595 s += 2; // skip over ':'
596 else if (*s == '/' && (s[1] == '*' || s[1] == '/'))
597 return FALSE; // stop at comment
598 else if (*s == '"')
599 {
600 // JS etc.
601 if (strict)
602 return FALSE; // stop at string
603 else
604 return TRUE;
605 }
606 }
607 return FALSE;
608 }
609
610 if (cin_isdefault(s))
611 return TRUE;
612 return FALSE;
613}
614
615/*
616 * Recognize a label: "label:".
617 * Note: curwin->w_cursor must be where we are looking for the label.
618 */
619 static int
620cin_islabel(void) // XXX
621{
622 char_u *s;
623
624 s = cin_skipcomment(ml_get_curline());
625
626 // Exclude "default" from labels, since it should be indented
627 // like a switch label. Same for C++ scope declarations.
628 if (cin_isdefault(s))
629 return FALSE;
630 if (cin_isscopedecl(s))
631 return FALSE;
632
633 if (cin_islabel_skip(&s))
634 {
635 // Only accept a label if the previous line is terminated or is a case
636 // label.
637 pos_T cursor_save;
638 pos_T *trypos;
639 char_u *line;
640
641 cursor_save = curwin->w_cursor;
642 while (curwin->w_cursor.lnum > 1)
643 {
644 --curwin->w_cursor.lnum;
645
646 // If we're in a comment or raw string now, skip to the start of
647 // it.
648 curwin->w_cursor.col = 0;
649 if ((trypos = ind_find_start_CORS(NULL)) != NULL) // XXX
650 curwin->w_cursor = *trypos;
651
652 line = ml_get_curline();
653 if (cin_ispreproc(line)) // ignore #defines, #if, etc.
654 continue;
655 if (*(line = cin_skipcomment(line)) == NUL)
656 continue;
657
658 curwin->w_cursor = cursor_save;
659 if (cin_isterminated(line, TRUE, FALSE)
660 || cin_isscopedecl(line)
661 || cin_iscase(line, TRUE)
662 || (cin_islabel_skip(&line) && cin_nocode(line)))
663 return TRUE;
664 return FALSE;
665 }
666 curwin->w_cursor = cursor_save;
667 return TRUE; // label at start of file???
668 }
669 return FALSE;
670}
671
672/*
673 * Return TRUE if string "s" ends with the string "find", possibly followed by
674 * white space and comments. Skip strings and comments.
675 * Ignore "ignore" after "find" if it's not NULL.
676 */
677 static int
678cin_ends_in(char_u *s, char_u *find, char_u *ignore)
679{
680 char_u *p = s;
681 char_u *r;
682 int len = (int)STRLEN(find);
683
684 while (*p != NUL)
685 {
686 p = cin_skipcomment(p);
687 if (STRNCMP(p, find, len) == 0)
688 {
689 r = skipwhite(p + len);
690 if (ignore != NULL && STRNCMP(r, ignore, STRLEN(ignore)) == 0)
691 r = skipwhite(r + STRLEN(ignore));
692 if (cin_nocode(r))
693 return TRUE;
694 }
695 if (*p != NUL)
696 ++p;
697 }
698 return FALSE;
699}
700
701/*
702 * Recognize structure initialization and enumerations:
703 * "[typedef] [static|public|protected|private] enum"
704 * "[typedef] [static|public|protected|private] = {"
705 */
706 static int
707cin_isinit(void)
708{
709 char_u *s;
710 static char *skip[] = {"static", "public", "protected", "private"};
711
712 s = cin_skipcomment(ml_get_curline());
713
714 if (cin_starts_with(s, "typedef"))
715 s = cin_skipcomment(s + 7);
716
717 for (;;)
718 {
719 int i, l;
720
K.Takataeeec2542021-06-02 13:28:16 +0200721 for (i = 0; i < (int)ARRAY_LENGTH(skip); ++i)
Bram Moolenaar14c01f82019-10-09 22:53:08 +0200722 {
723 l = (int)strlen(skip[i]);
724 if (cin_starts_with(s, skip[i]))
725 {
726 s = cin_skipcomment(s + l);
727 l = 0;
728 break;
729 }
730 }
731 if (l != 0)
732 break;
733 }
734
735 if (cin_starts_with(s, "enum"))
736 return TRUE;
737
738 if (cin_ends_in(s, (char_u *)"=", (char_u *)"{"))
739 return TRUE;
740
741 return FALSE;
742}
743
744// Maximum number of lines to search back for a "namespace" line.
745#define FIND_NAMESPACE_LIM 20
746
747/*
748 * Recognize a "namespace" scope declaration.
749 */
750 static int
751cin_is_cpp_namespace(char_u *s)
752{
753 char_u *p;
754 int has_name = FALSE;
755 int has_name_start = FALSE;
756
757 s = cin_skipcomment(s);
758 if (STRNCMP(s, "namespace", 9) == 0 && (s[9] == NUL || !vim_iswordc(s[9])))
759 {
760 p = cin_skipcomment(skipwhite(s + 9));
761 while (*p != NUL)
762 {
763 if (VIM_ISWHITE(*p))
764 {
765 has_name = TRUE; // found end of a name
766 p = cin_skipcomment(skipwhite(p));
767 }
768 else if (*p == '{')
769 {
770 break;
771 }
772 else if (vim_iswordc(*p))
773 {
774 has_name_start = TRUE;
775 if (has_name)
776 return FALSE; // word character after skipping past name
777 ++p;
778 }
779 else if (p[0] == ':' && p[1] == ':' && vim_iswordc(p[2]))
780 {
781 if (!has_name_start || has_name)
782 return FALSE;
783 // C++ 17 nested namespace
784 p += 3;
785 }
786 else
787 {
788 return FALSE;
789 }
790 }
791 return TRUE;
792 }
793 return FALSE;
794}
795
796/*
797 * Recognize a `extern "C"` or `extern "C++"` linkage specifications.
798 */
799 static int
800cin_is_cpp_extern_c(char_u *s)
801{
802 char_u *p;
803 int has_string_literal = FALSE;
804
805 s = cin_skipcomment(s);
806 if (STRNCMP(s, "extern", 6) == 0 && (s[6] == NUL || !vim_iswordc(s[6])))
807 {
808 p = cin_skipcomment(skipwhite(s + 6));
809 while (*p != NUL)
810 {
811 if (VIM_ISWHITE(*p))
812 {
813 p = cin_skipcomment(skipwhite(p));
814 }
815 else if (*p == '{')
816 {
817 break;
818 }
819 else if (p[0] == '"' && p[1] == 'C' && p[2] == '"')
820 {
821 if (has_string_literal)
822 return FALSE;
823 has_string_literal = TRUE;
824 p += 3;
825 }
826 else if (p[0] == '"' && p[1] == 'C' && p[2] == '+' && p[3] == '+'
827 && p[4] == '"')
828 {
829 if (has_string_literal)
830 return FALSE;
831 has_string_literal = TRUE;
832 p += 5;
833 }
834 else
835 {
836 return FALSE;
837 }
838 }
839 return has_string_literal ? TRUE : FALSE;
840 }
841 return FALSE;
842}
843
844/*
845 * Return a pointer to the first non-empty non-comment character after a ':'.
846 * Return NULL if not found.
847 * case 234: a = b;
848 * ^
849 */
850 static char_u *
851after_label(char_u *l)
852{
853 for ( ; *l; ++l)
854 {
855 if (*l == ':')
856 {
857 if (l[1] == ':') // skip over "::" for C++
858 ++l;
859 else if (!cin_iscase(l + 1, FALSE))
860 break;
861 }
862 else if (*l == '\'' && l[1] && l[2] == '\'')
863 l += 2; // skip over 'x'
864 }
865 if (*l == NUL)
866 return NULL;
867 l = cin_skipcomment(l + 1);
868 if (*l == NUL)
869 return NULL;
870 return l;
871}
872
873/*
874 * Get indent of line "lnum", skipping a label.
875 * Return 0 if there is nothing after the label.
876 */
877 static int
878get_indent_nolabel (linenr_T lnum) // XXX
879{
880 char_u *l;
881 pos_T fp;
882 colnr_T col;
883 char_u *p;
884
885 l = ml_get(lnum);
886 p = after_label(l);
887 if (p == NULL)
888 return 0;
889
890 fp.col = (colnr_T)(p - l);
891 fp.lnum = lnum;
892 getvcol(curwin, &fp, &col, NULL, NULL);
893 return (int)col;
894}
895
896/*
897 * Find indent for line "lnum", ignoring any case or jump label.
898 * Also return a pointer to the text (after the label) in "pp".
899 * label: if (asdf && asdfasdf)
900 * ^
901 */
902 static int
903skip_label(linenr_T lnum, char_u **pp)
904{
905 char_u *l;
906 int amount;
907 pos_T cursor_save;
908
909 cursor_save = curwin->w_cursor;
910 curwin->w_cursor.lnum = lnum;
911 l = ml_get_curline();
912 // XXX
913 if (cin_iscase(l, FALSE) || cin_isscopedecl(l) || cin_islabel())
914 {
915 amount = get_indent_nolabel(lnum);
916 l = after_label(ml_get_curline());
917 if (l == NULL) // just in case
918 l = ml_get_curline();
919 }
920 else
921 {
922 amount = get_indent();
923 l = ml_get_curline();
924 }
925 *pp = l;
926
927 curwin->w_cursor = cursor_save;
928 return amount;
929}
930
931/*
932 * Return the indent of the first variable name after a type in a declaration.
933 * int a, indent of "a"
934 * static struct foo b, indent of "b"
935 * enum bla c, indent of "c"
936 * Returns zero when it doesn't look like a declaration.
937 */
938 static int
939cin_first_id_amount(void)
940{
941 char_u *line, *p, *s;
942 int len;
943 pos_T fp;
944 colnr_T col;
945
946 line = ml_get_curline();
947 p = skipwhite(line);
948 len = (int)(skiptowhite(p) - p);
949 if (len == 6 && STRNCMP(p, "static", 6) == 0)
950 {
951 p = skipwhite(p + 6);
952 len = (int)(skiptowhite(p) - p);
953 }
954 if (len == 6 && STRNCMP(p, "struct", 6) == 0)
955 p = skipwhite(p + 6);
956 else if (len == 4 && STRNCMP(p, "enum", 4) == 0)
957 p = skipwhite(p + 4);
958 else if ((len == 8 && STRNCMP(p, "unsigned", 8) == 0)
959 || (len == 6 && STRNCMP(p, "signed", 6) == 0))
960 {
961 s = skipwhite(p + len);
962 if ((STRNCMP(s, "int", 3) == 0 && VIM_ISWHITE(s[3]))
963 || (STRNCMP(s, "long", 4) == 0 && VIM_ISWHITE(s[4]))
964 || (STRNCMP(s, "short", 5) == 0 && VIM_ISWHITE(s[5]))
965 || (STRNCMP(s, "char", 4) == 0 && VIM_ISWHITE(s[4])))
966 p = s;
967 }
968 for (len = 0; vim_isIDc(p[len]); ++len)
969 ;
970 if (len == 0 || !VIM_ISWHITE(p[len]) || cin_nocode(p))
971 return 0;
972
973 p = skipwhite(p + len);
974 fp.lnum = curwin->w_cursor.lnum;
975 fp.col = (colnr_T)(p - line);
976 getvcol(curwin, &fp, &col, NULL, NULL);
977 return (int)col;
978}
979
980/*
981 * Return the indent of the first non-blank after an equal sign.
982 * char *foo = "here";
983 * Return zero if no (useful) equal sign found.
984 * Return -1 if the line above "lnum" ends in a backslash.
985 * foo = "asdf\
986 * asdf\
987 * here";
988 */
989 static int
990cin_get_equal_amount(linenr_T lnum)
991{
992 char_u *line;
993 char_u *s;
994 colnr_T col;
995 pos_T fp;
996
997 if (lnum > 1)
998 {
999 line = ml_get(lnum - 1);
1000 if (*line != NUL && line[STRLEN(line) - 1] == '\\')
1001 return -1;
1002 }
1003
1004 line = s = ml_get(lnum);
1005 while (*s != NUL && vim_strchr((char_u *)"=;{}\"'", *s) == NULL)
1006 {
1007 if (cin_iscomment(s)) // ignore comments
1008 s = cin_skipcomment(s);
1009 else
1010 ++s;
1011 }
1012 if (*s != '=')
1013 return 0;
1014
1015 s = skipwhite(s + 1);
1016 if (cin_nocode(s))
1017 return 0;
1018
1019 if (*s == '"') // nice alignment for continued strings
1020 ++s;
1021
1022 fp.lnum = lnum;
1023 fp.col = (colnr_T)(s - line);
1024 getvcol(curwin, &fp, &col, NULL, NULL);
1025 return (int)col;
1026}
1027
1028/*
1029 * Skip strings, chars and comments until at or past "trypos".
1030 * Return the column found.
1031 */
1032 static int
1033cin_skip2pos(pos_T *trypos)
1034{
1035 char_u *line;
1036 char_u *p;
1037 char_u *new_p;
1038
1039 p = line = ml_get(trypos->lnum);
1040 while (*p && (colnr_T)(p - line) < trypos->col)
1041 {
1042 if (cin_iscomment(p))
1043 p = cin_skipcomment(p);
1044 else
1045 {
1046 new_p = skip_string(p);
1047 if (new_p == p)
1048 ++p;
1049 else
1050 p = new_p;
1051 }
1052 }
1053 return (int)(p - line);
1054}
1055
1056 static pos_T *
1057find_match_char(int c, int ind_maxparen) // XXX
1058{
1059 pos_T cursor_save;
1060 pos_T *trypos;
1061 static pos_T pos_copy;
1062 int ind_maxp_wk;
1063
1064 cursor_save = curwin->w_cursor;
1065 ind_maxp_wk = ind_maxparen;
1066retry:
1067 if ((trypos = findmatchlimit(NULL, c, 0, ind_maxp_wk)) != NULL)
1068 {
1069 // check if the ( is in a // comment
1070 if ((colnr_T)cin_skip2pos(trypos) > trypos->col)
1071 {
1072 ind_maxp_wk = ind_maxparen - (int)(cursor_save.lnum - trypos->lnum);
1073 if (ind_maxp_wk > 0)
1074 {
1075 curwin->w_cursor = *trypos;
1076 curwin->w_cursor.col = 0; // XXX
1077 goto retry;
1078 }
1079 trypos = NULL;
1080 }
1081 else
1082 {
1083 pos_T *trypos_wk;
1084
1085 pos_copy = *trypos; // copy trypos, findmatch will change it
1086 trypos = &pos_copy;
1087 curwin->w_cursor = *trypos;
1088 if ((trypos_wk = ind_find_start_CORS(NULL)) != NULL) // XXX
1089 {
1090 ind_maxp_wk = ind_maxparen - (int)(cursor_save.lnum
1091 - trypos_wk->lnum);
1092 if (ind_maxp_wk > 0)
1093 {
1094 curwin->w_cursor = *trypos_wk;
1095 goto retry;
1096 }
1097 trypos = NULL;
1098 }
1099 }
1100 }
1101 curwin->w_cursor = cursor_save;
1102 return trypos;
1103}
1104
1105/*
1106 * Find the matching '(', ignoring it if it is in a comment.
1107 * Return NULL if no match found.
1108 */
1109 static pos_T *
1110find_match_paren(int ind_maxparen) // XXX
1111{
1112 return find_match_char('(', ind_maxparen);
1113}
1114
1115/*
1116 * Set w_cursor.col to the column number of the last unmatched ')' or '{' in
1117 * line "l". "l" must point to the start of the line.
1118 */
1119 static int
1120find_last_paren(char_u *l, int start, int end)
1121{
1122 int i;
1123 int retval = FALSE;
1124 int open_count = 0;
1125
1126 curwin->w_cursor.col = 0; // default is start of line
1127
1128 for (i = 0; l[i] != NUL; i++)
1129 {
1130 i = (int)(cin_skipcomment(l + i) - l); // ignore parens in comments
1131 i = (int)(skip_string(l + i) - l); // ignore parens in quotes
1132 if (l[i] == start)
1133 ++open_count;
1134 else if (l[i] == end)
1135 {
1136 if (open_count > 0)
1137 --open_count;
1138 else
1139 {
1140 curwin->w_cursor.col = i;
1141 retval = TRUE;
1142 }
1143 }
1144 }
1145 return retval;
1146}
1147
1148/*
1149 * Recognize the basic picture of a function declaration -- it needs to
1150 * have an open paren somewhere and a close paren at the end of the line and
1151 * no semicolons anywhere.
1152 * When a line ends in a comma we continue looking in the next line.
1153 * "sp" points to a string with the line. When looking at other lines it must
1154 * be restored to the line. When it's NULL fetch lines here.
1155 * "first_lnum" is where we start looking.
1156 * "min_lnum" is the line before which we will not be looking.
1157 */
1158 static int
1159cin_isfuncdecl(
1160 char_u **sp,
1161 linenr_T first_lnum,
1162 linenr_T min_lnum)
1163{
1164 char_u *s;
1165 linenr_T lnum = first_lnum;
1166 linenr_T save_lnum = curwin->w_cursor.lnum;
1167 int retval = FALSE;
1168 pos_T *trypos;
1169 int just_started = TRUE;
1170
1171 if (sp == NULL)
1172 s = ml_get(lnum);
1173 else
1174 s = *sp;
1175
1176 curwin->w_cursor.lnum = lnum;
1177 if (find_last_paren(s, '(', ')')
1178 && (trypos = find_match_paren(curbuf->b_ind_maxparen)) != NULL)
1179 {
1180 lnum = trypos->lnum;
1181 if (lnum < min_lnum)
1182 {
1183 curwin->w_cursor.lnum = save_lnum;
1184 return FALSE;
1185 }
1186
1187 s = ml_get(lnum);
1188 }
1189 curwin->w_cursor.lnum = save_lnum;
1190
1191 // Ignore line starting with #.
1192 if (cin_ispreproc(s))
1193 return FALSE;
1194
1195 while (*s && *s != '(' && *s != ';' && *s != '\'' && *s != '"')
1196 {
1197 if (cin_iscomment(s)) // ignore comments
1198 s = cin_skipcomment(s);
1199 else if (*s == ':')
1200 {
1201 if (*(s + 1) == ':')
1202 s += 2;
1203 else
1204 // To avoid a mistake in the following situation:
1205 // A::A(int a, int b)
1206 // : a(0) // <--not a function decl
1207 // , b(0)
1208 // {...
1209 return FALSE;
1210 }
1211 else
1212 ++s;
1213 }
1214 if (*s != '(')
1215 return FALSE; // ';', ' or " before any () or no '('
1216
1217 while (*s && *s != ';' && *s != '\'' && *s != '"')
1218 {
1219 if (*s == ')' && cin_nocode(s + 1))
1220 {
1221 // ')' at the end: may have found a match
1222 // Check for he previous line not to end in a backslash:
1223 // #if defined(x) && {backslash}
1224 // defined(y)
1225 lnum = first_lnum - 1;
1226 s = ml_get(lnum);
1227 if (*s == NUL || s[STRLEN(s) - 1] != '\\')
1228 retval = TRUE;
1229 goto done;
1230 }
1231 if ((*s == ',' && cin_nocode(s + 1)) || s[1] == NUL || cin_nocode(s))
1232 {
1233 int comma = (*s == ',');
1234
1235 // ',' at the end: continue looking in the next line.
1236 // At the end: check for ',' in the next line, for this style:
1237 // func(arg1
1238 // , arg2)
1239 for (;;)
1240 {
1241 if (lnum >= curbuf->b_ml.ml_line_count)
1242 break;
1243 s = ml_get(++lnum);
1244 if (!cin_ispreproc(s))
1245 break;
1246 }
1247 if (lnum >= curbuf->b_ml.ml_line_count)
1248 break;
1249 // Require a comma at end of the line or a comma or ')' at the
1250 // start of next line.
1251 s = skipwhite(s);
1252 if (!just_started && (!comma && *s != ',' && *s != ')'))
1253 break;
1254 just_started = FALSE;
1255 }
1256 else if (cin_iscomment(s)) // ignore comments
1257 s = cin_skipcomment(s);
1258 else
1259 {
1260 ++s;
1261 just_started = FALSE;
1262 }
1263 }
1264
1265done:
1266 if (lnum != first_lnum && sp != NULL)
1267 *sp = ml_get(first_lnum);
1268
1269 return retval;
1270}
1271
1272 static int
1273cin_isif(char_u *p)
1274{
1275 return (STRNCMP(p, "if", 2) == 0 && !vim_isIDc(p[2]));
1276}
1277
1278 static int
1279cin_isdo(char_u *p)
1280{
1281 return (STRNCMP(p, "do", 2) == 0 && !vim_isIDc(p[2]));
1282}
1283
1284/*
1285 * Check if this is a "while" that should have a matching "do".
1286 * We only accept a "while (condition) ;", with only white space between the
1287 * ')' and ';'. The condition may be spread over several lines.
1288 */
1289 static int
1290cin_iswhileofdo (char_u *p, linenr_T lnum) // XXX
1291{
1292 pos_T cursor_save;
1293 pos_T *trypos;
1294 int retval = FALSE;
1295
1296 p = cin_skipcomment(p);
1297 if (*p == '}') // accept "} while (cond);"
1298 p = cin_skipcomment(p + 1);
1299 if (cin_starts_with(p, "while"))
1300 {
1301 cursor_save = curwin->w_cursor;
1302 curwin->w_cursor.lnum = lnum;
1303 curwin->w_cursor.col = 0;
1304 p = ml_get_curline();
1305 while (*p && *p != 'w') // skip any '}', until the 'w' of the "while"
1306 {
1307 ++p;
1308 ++curwin->w_cursor.col;
1309 }
1310 if ((trypos = findmatchlimit(NULL, 0, 0,
1311 curbuf->b_ind_maxparen)) != NULL
1312 && *cin_skipcomment(ml_get_pos(trypos) + 1) == ';')
1313 retval = TRUE;
1314 curwin->w_cursor = cursor_save;
1315 }
1316 return retval;
1317}
1318
1319/*
1320 * Check whether in "p" there is an "if", "for" or "while" before "*poffset".
1321 * Return 0 if there is none.
1322 * Otherwise return !0 and update "*poffset" to point to the place where the
1323 * string was found.
1324 */
1325 static int
1326cin_is_if_for_while_before_offset(char_u *line, int *poffset)
1327{
1328 int offset = *poffset;
1329
1330 if (offset-- < 2)
1331 return 0;
1332 while (offset > 2 && VIM_ISWHITE(line[offset]))
1333 --offset;
1334
1335 offset -= 1;
1336 if (!STRNCMP(line + offset, "if", 2))
1337 goto probablyFound;
1338
1339 if (offset >= 1)
1340 {
1341 offset -= 1;
1342 if (!STRNCMP(line + offset, "for", 3))
1343 goto probablyFound;
1344
1345 if (offset >= 2)
1346 {
1347 offset -= 2;
1348 if (!STRNCMP(line + offset, "while", 5))
1349 goto probablyFound;
1350 }
1351 }
1352 return 0;
1353
1354probablyFound:
1355 if (!offset || !vim_isIDc(line[offset - 1]))
1356 {
1357 *poffset = offset;
1358 return 1;
1359 }
1360 return 0;
1361}
1362
1363/*
1364 * Return TRUE if we are at the end of a do-while.
1365 * do
1366 * nothing;
1367 * while (foo
1368 * && bar); <-- here
1369 * Adjust the cursor to the line with "while".
1370 */
1371 static int
1372cin_iswhileofdo_end(int terminated)
1373{
1374 char_u *line;
1375 char_u *p;
1376 char_u *s;
1377 pos_T *trypos;
1378 int i;
1379
1380 if (terminated != ';') // there must be a ';' at the end
1381 return FALSE;
1382
1383 p = line = ml_get_curline();
1384 while (*p != NUL)
1385 {
1386 p = cin_skipcomment(p);
1387 if (*p == ')')
1388 {
1389 s = skipwhite(p + 1);
1390 if (*s == ';' && cin_nocode(s + 1))
1391 {
1392 // Found ");" at end of the line, now check there is "while"
1393 // before the matching '('. XXX
1394 i = (int)(p - line);
1395 curwin->w_cursor.col = i;
1396 trypos = find_match_paren(curbuf->b_ind_maxparen);
1397 if (trypos != NULL)
1398 {
1399 s = cin_skipcomment(ml_get(trypos->lnum));
1400 if (*s == '}') // accept "} while (cond);"
1401 s = cin_skipcomment(s + 1);
1402 if (cin_starts_with(s, "while"))
1403 {
1404 curwin->w_cursor.lnum = trypos->lnum;
1405 return TRUE;
1406 }
1407 }
1408
1409 // Searching may have made "line" invalid, get it again.
1410 line = ml_get_curline();
1411 p = line + i;
1412 }
1413 }
1414 if (*p != NUL)
1415 ++p;
1416 }
1417 return FALSE;
1418}
1419
1420 static int
1421cin_isbreak(char_u *p)
1422{
1423 return (STRNCMP(p, "break", 5) == 0 && !vim_isIDc(p[5]));
1424}
1425
1426/*
1427 * Find the position of a C++ base-class declaration or
1428 * constructor-initialization. eg:
1429 *
1430 * class MyClass :
1431 * baseClass <-- here
1432 * class MyClass : public baseClass,
1433 * anotherBaseClass <-- here (should probably lineup ??)
1434 * MyClass::MyClass(...) :
1435 * baseClass(...) <-- here (constructor-initialization)
1436 *
1437 * This is a lot of guessing. Watch out for "cond ? func() : foo".
1438 */
1439 static int
1440cin_is_cpp_baseclass(
1441 cpp_baseclass_cache_T *cached) // input and output
1442{
1443 lpos_T *pos = &cached->lpos; // find position
1444 char_u *s;
1445 int class_or_struct, lookfor_ctor_init, cpp_base_class;
1446 linenr_T lnum = curwin->w_cursor.lnum;
1447 char_u *line = ml_get_curline();
1448
1449 if (pos->lnum <= lnum)
1450 return cached->found; // Use the cached result
1451
1452 pos->col = 0;
1453
1454 s = skipwhite(line);
1455 if (*s == '#') // skip #define FOO x ? (x) : x
1456 return FALSE;
1457 s = cin_skipcomment(s);
1458 if (*s == NUL)
1459 return FALSE;
1460
1461 cpp_base_class = lookfor_ctor_init = class_or_struct = FALSE;
1462
1463 // Search for a line starting with '#', empty, ending in ';' or containing
1464 // '{' or '}' and start below it. This handles the following situations:
1465 // a = cond ?
1466 // func() :
1467 // asdf;
1468 // func::foo()
1469 // : something
1470 // {}
1471 // Foo::Foo (int one, int two)
1472 // : something(4),
1473 // somethingelse(3)
1474 // {}
1475 while (lnum > 1)
1476 {
1477 line = ml_get(lnum - 1);
1478 s = skipwhite(line);
1479 if (*s == '#' || *s == NUL)
1480 break;
1481 while (*s != NUL)
1482 {
1483 s = cin_skipcomment(s);
1484 if (*s == '{' || *s == '}'
1485 || (*s == ';' && cin_nocode(s + 1)))
1486 break;
1487 if (*s != NUL)
1488 ++s;
1489 }
1490 if (*s != NUL)
1491 break;
1492 --lnum;
1493 }
1494
1495 pos->lnum = lnum;
1496 line = ml_get(lnum);
1497 s = line;
1498 for (;;)
1499 {
1500 if (*s == NUL)
1501 {
1502 if (lnum == curwin->w_cursor.lnum)
1503 break;
1504 // Continue in the cursor line.
1505 line = ml_get(++lnum);
1506 s = line;
1507 }
1508 if (s == line)
1509 {
1510 // don't recognize "case (foo):" as a baseclass
1511 if (cin_iscase(s, FALSE))
1512 break;
1513 s = cin_skipcomment(line);
1514 if (*s == NUL)
1515 continue;
1516 }
1517
1518 if (s[0] == '"' || (s[0] == 'R' && s[1] == '"'))
1519 s = skip_string(s) + 1;
1520 else if (s[0] == ':')
1521 {
1522 if (s[1] == ':')
1523 {
1524 // skip double colon. It can't be a constructor
1525 // initialization any more
1526 lookfor_ctor_init = FALSE;
1527 s = cin_skipcomment(s + 2);
1528 }
1529 else if (lookfor_ctor_init || class_or_struct)
1530 {
1531 // we have something found, that looks like the start of
1532 // cpp-base-class-declaration or constructor-initialization
1533 cpp_base_class = TRUE;
1534 lookfor_ctor_init = class_or_struct = FALSE;
1535 pos->col = 0;
1536 s = cin_skipcomment(s + 1);
1537 }
1538 else
1539 s = cin_skipcomment(s + 1);
1540 }
1541 else if ((STRNCMP(s, "class", 5) == 0 && !vim_isIDc(s[5]))
1542 || (STRNCMP(s, "struct", 6) == 0 && !vim_isIDc(s[6])))
1543 {
1544 class_or_struct = TRUE;
1545 lookfor_ctor_init = FALSE;
1546
1547 if (*s == 'c')
1548 s = cin_skipcomment(s + 5);
1549 else
1550 s = cin_skipcomment(s + 6);
1551 }
1552 else
1553 {
1554 if (s[0] == '{' || s[0] == '}' || s[0] == ';')
1555 {
1556 cpp_base_class = lookfor_ctor_init = class_or_struct = FALSE;
1557 }
1558 else if (s[0] == ')')
1559 {
1560 // Constructor-initialization is assumed if we come across
1561 // something like "):"
1562 class_or_struct = FALSE;
1563 lookfor_ctor_init = TRUE;
1564 }
1565 else if (s[0] == '?')
1566 {
1567 // Avoid seeing '() :' after '?' as constructor init.
1568 return FALSE;
1569 }
1570 else if (!vim_isIDc(s[0]))
1571 {
1572 // if it is not an identifier, we are wrong
1573 class_or_struct = FALSE;
1574 lookfor_ctor_init = FALSE;
1575 }
1576 else if (pos->col == 0)
1577 {
1578 // it can't be a constructor-initialization any more
1579 lookfor_ctor_init = FALSE;
1580
1581 // the first statement starts here: lineup with this one...
1582 if (cpp_base_class)
1583 pos->col = (colnr_T)(s - line);
1584 }
1585
1586 // When the line ends in a comma don't align with it.
1587 if (lnum == curwin->w_cursor.lnum && *s == ',' && cin_nocode(s + 1))
1588 pos->col = 0;
1589
1590 s = cin_skipcomment(s + 1);
1591 }
1592 }
1593
1594 cached->found = cpp_base_class;
1595 if (cpp_base_class)
1596 pos->lnum = lnum;
1597 return cpp_base_class;
1598}
1599
1600 static int
1601get_baseclass_amount(int col)
1602{
1603 int amount;
1604 colnr_T vcol;
1605 pos_T *trypos;
1606
1607 if (col == 0)
1608 {
1609 amount = get_indent();
1610 if (find_last_paren(ml_get_curline(), '(', ')')
1611 && (trypos = find_match_paren(curbuf->b_ind_maxparen)) != NULL)
1612 amount = get_indent_lnum(trypos->lnum); // XXX
1613 if (!cin_ends_in(ml_get_curline(), (char_u *)",", NULL))
1614 amount += curbuf->b_ind_cpp_baseclass;
1615 }
1616 else
1617 {
1618 curwin->w_cursor.col = col;
1619 getvcol(curwin, &curwin->w_cursor, &vcol, NULL, NULL);
1620 amount = (int)vcol;
1621 }
1622 if (amount < curbuf->b_ind_cpp_baseclass)
1623 amount = curbuf->b_ind_cpp_baseclass;
1624 return amount;
1625}
1626
1627/*
1628 * Find the '{' at the start of the block we are in.
1629 * Return NULL if no match found.
1630 * Ignore a '{' that is in a comment, makes indenting the next three lines
1631 * work.
1632 */
Bram Moolenaarc667da52019-11-30 20:52:27 +01001633// foo()
1634// {
1635// }
Bram Moolenaar14c01f82019-10-09 22:53:08 +02001636
1637 static pos_T *
1638find_start_brace(void) // XXX
1639{
1640 pos_T cursor_save;
1641 pos_T *trypos;
1642 pos_T *pos;
1643 static pos_T pos_copy;
1644
1645 cursor_save = curwin->w_cursor;
1646 while ((trypos = findmatchlimit(NULL, '{', FM_BLOCKSTOP, 0)) != NULL)
1647 {
1648 pos_copy = *trypos; // copy pos_T, next findmatch will change it
1649 trypos = &pos_copy;
1650 curwin->w_cursor = *trypos;
1651 pos = NULL;
1652 // ignore the { if it's in a // or / * * / comment
1653 if ((colnr_T)cin_skip2pos(trypos) == trypos->col
1654 && (pos = ind_find_start_CORS(NULL)) == NULL) // XXX
1655 break;
1656 if (pos != NULL)
1657 curwin->w_cursor.lnum = pos->lnum;
1658 }
1659 curwin->w_cursor = cursor_save;
1660 return trypos;
1661}
1662
1663/*
1664 * Find the matching '(', ignoring it if it is in a comment or before an
1665 * unmatched {.
1666 * Return NULL if no match found.
1667 */
1668 static pos_T *
1669find_match_paren_after_brace (int ind_maxparen) // XXX
1670{
1671 pos_T *trypos = find_match_paren(ind_maxparen);
1672
1673 if (trypos != NULL)
1674 {
1675 pos_T *tryposBrace = find_start_brace();
1676
1677 // If both an unmatched '(' and '{' is found. Ignore the '('
1678 // position if the '{' is further down.
1679 if (tryposBrace != NULL
1680 && (trypos->lnum != tryposBrace->lnum
1681 ? trypos->lnum < tryposBrace->lnum
1682 : trypos->col < tryposBrace->col))
1683 trypos = NULL;
1684 }
1685 return trypos;
1686}
1687
1688/*
1689 * Return ind_maxparen corrected for the difference in line number between the
1690 * cursor position and "startpos". This makes sure that searching for a
1691 * matching paren above the cursor line doesn't find a match because of
1692 * looking a few lines further.
1693 */
1694 static int
1695corr_ind_maxparen(pos_T *startpos)
1696{
1697 long n = (long)startpos->lnum - (long)curwin->w_cursor.lnum;
1698
1699 if (n > 0 && n < curbuf->b_ind_maxparen / 2)
1700 return curbuf->b_ind_maxparen - (int)n;
1701 return curbuf->b_ind_maxparen;
1702}
1703
1704/*
1705 * Parse 'cinoptions' and set the values in "curbuf".
1706 * Must be called when 'cinoptions', 'shiftwidth' and/or 'tabstop' changes.
1707 */
1708 void
1709parse_cino(buf_T *buf)
1710{
1711 char_u *p;
1712 char_u *l;
1713 char_u *digits;
1714 int n;
1715 int divider;
1716 int fraction = 0;
1717 int sw = (int)get_sw_value(buf);
1718
1719 // Set the default values.
1720
1721 // Spaces from a block's opening brace the prevailing indent for that
1722 // block should be.
1723 buf->b_ind_level = sw;
1724
1725 // Spaces from the edge of the line an open brace that's at the end of a
1726 // line is imagined to be.
1727 buf->b_ind_open_imag = 0;
1728
1729 // Spaces from the prevailing indent for a line that is not preceded by
1730 // an opening brace.
1731 buf->b_ind_no_brace = 0;
1732
1733 // Column where the first { of a function should be located }.
1734 buf->b_ind_first_open = 0;
1735
1736 // Spaces from the prevailing indent a leftmost open brace should be
1737 // located.
1738 buf->b_ind_open_extra = 0;
1739
1740 // Spaces from the matching open brace (real location for one at the left
1741 // edge; imaginary location from one that ends a line) the matching close
1742 // brace should be located.
1743 buf->b_ind_close_extra = 0;
1744
1745 // Spaces from the edge of the line an open brace sitting in the leftmost
1746 // column is imagined to be.
1747 buf->b_ind_open_left_imag = 0;
1748
1749 // Spaces jump labels should be shifted to the left if N is non-negative,
1750 // otherwise the jump label will be put to column 1.
1751 buf->b_ind_jump_label = -1;
1752
1753 // Spaces from the switch() indent a "case xx" label should be located.
1754 buf->b_ind_case = sw;
1755
1756 // Spaces from the "case xx:" code after a switch() should be located.
1757 buf->b_ind_case_code = sw;
1758
1759 // Lineup break at end of case in switch() with case label.
1760 buf->b_ind_case_break = 0;
1761
1762 // Spaces from the class declaration indent a scope declaration label
1763 // should be located.
1764 buf->b_ind_scopedecl = sw;
1765
1766 // Spaces from the scope declaration label code should be located.
1767 buf->b_ind_scopedecl_code = sw;
1768
1769 // Amount K&R-style parameters should be indented.
1770 buf->b_ind_param = sw;
1771
1772 // Amount a function type spec should be indented.
1773 buf->b_ind_func_type = sw;
1774
1775 // Amount a cpp base class declaration or constructor initialization
1776 // should be indented.
1777 buf->b_ind_cpp_baseclass = sw;
1778
1779 // additional spaces beyond the prevailing indent a continuation line
1780 // should be located.
1781 buf->b_ind_continuation = sw;
1782
Bram Moolenaar32aa1022019-11-02 22:54:41 +01001783 // Spaces from the indent of the line with an unclosed parenthesis.
Bram Moolenaar14c01f82019-10-09 22:53:08 +02001784 buf->b_ind_unclosed = sw * 2;
1785
Bram Moolenaar32aa1022019-11-02 22:54:41 +01001786 // Spaces from the indent of the line with an unclosed parenthesis, which
Bram Moolenaar14c01f82019-10-09 22:53:08 +02001787 // itself is also unclosed.
1788 buf->b_ind_unclosed2 = sw;
1789
1790 // Suppress ignoring spaces from the indent of a line starting with an
1791 // unclosed parentheses.
1792 buf->b_ind_unclosed_noignore = 0;
1793
1794 // If the opening paren is the last nonwhite character on the line, and
1795 // b_ind_unclosed_wrapped is nonzero, use this indent relative to the outer
1796 // context (for very long lines).
1797 buf->b_ind_unclosed_wrapped = 0;
1798
1799 // Suppress ignoring white space when lining up with the character after
Bram Moolenaar32aa1022019-11-02 22:54:41 +01001800 // an unclosed parenthesis.
Bram Moolenaar14c01f82019-10-09 22:53:08 +02001801 buf->b_ind_unclosed_whiteok = 0;
1802
1803 // Indent a closing parentheses under the line start of the matching
1804 // opening parentheses.
1805 buf->b_ind_matching_paren = 0;
1806
1807 // Indent a closing parentheses under the previous line.
1808 buf->b_ind_paren_prev = 0;
1809
1810 // Extra indent for comments.
1811 buf->b_ind_comment = 0;
1812
1813 // Spaces from the comment opener when there is nothing after it.
1814 buf->b_ind_in_comment = 3;
1815
1816 // Boolean: if non-zero, use b_ind_in_comment even if there is something
1817 // after the comment opener.
1818 buf->b_ind_in_comment2 = 0;
1819
1820 // Max lines to search for an open paren.
1821 buf->b_ind_maxparen = 20;
1822
1823 // Max lines to search for an open comment.
1824 buf->b_ind_maxcomment = 70;
1825
1826 // Handle braces for java code.
1827 buf->b_ind_java = 0;
1828
1829 // Not to confuse JS object properties with labels.
1830 buf->b_ind_js = 0;
1831
1832 // Handle blocked cases correctly.
1833 buf->b_ind_keep_case_label = 0;
1834
1835 // Handle C++ namespace.
1836 buf->b_ind_cpp_namespace = 0;
1837
1838 // Handle continuation lines containing conditions of if(), for() and
1839 // while().
1840 buf->b_ind_if_for_while = 0;
1841
1842 // indentation for # comments
1843 buf->b_ind_hash_comment = 0;
1844
1845 // Handle C++ extern "C" or "C++"
1846 buf->b_ind_cpp_extern_c = 0;
1847
Bram Moolenaard881b512020-05-31 17:49:30 +02001848 // Handle C #pragma directives
1849 buf->b_ind_pragma = 0;
1850
Bram Moolenaar14c01f82019-10-09 22:53:08 +02001851 for (p = buf->b_p_cino; *p; )
1852 {
1853 l = p++;
1854 if (*p == '-')
1855 ++p;
1856 digits = p; // remember where the digits start
1857 n = getdigits(&p);
1858 divider = 0;
1859 if (*p == '.') // ".5s" means a fraction
1860 {
1861 fraction = atol((char *)++p);
1862 while (VIM_ISDIGIT(*p))
1863 {
1864 ++p;
1865 if (divider)
1866 divider *= 10;
1867 else
1868 divider = 10;
1869 }
1870 }
1871 if (*p == 's') // "2s" means two times 'shiftwidth'
1872 {
1873 if (p == digits)
1874 n = sw; // just "s" is one 'shiftwidth'
1875 else
1876 {
1877 n *= sw;
1878 if (divider)
1879 n += (sw * fraction + divider / 2) / divider;
1880 }
1881 ++p;
1882 }
1883 if (l[1] == '-')
1884 n = -n;
1885
1886 // When adding an entry here, also update the default 'cinoptions' in
1887 // doc/indent.txt, and add explanation for it!
1888 switch (*l)
1889 {
1890 case '>': buf->b_ind_level = n; break;
1891 case 'e': buf->b_ind_open_imag = n; break;
1892 case 'n': buf->b_ind_no_brace = n; break;
1893 case 'f': buf->b_ind_first_open = n; break;
1894 case '{': buf->b_ind_open_extra = n; break;
1895 case '}': buf->b_ind_close_extra = n; break;
1896 case '^': buf->b_ind_open_left_imag = n; break;
1897 case 'L': buf->b_ind_jump_label = n; break;
1898 case ':': buf->b_ind_case = n; break;
1899 case '=': buf->b_ind_case_code = n; break;
1900 case 'b': buf->b_ind_case_break = n; break;
1901 case 'p': buf->b_ind_param = n; break;
1902 case 't': buf->b_ind_func_type = n; break;
1903 case '/': buf->b_ind_comment = n; break;
1904 case 'c': buf->b_ind_in_comment = n; break;
1905 case 'C': buf->b_ind_in_comment2 = n; break;
1906 case 'i': buf->b_ind_cpp_baseclass = n; break;
1907 case '+': buf->b_ind_continuation = n; break;
1908 case '(': buf->b_ind_unclosed = n; break;
1909 case 'u': buf->b_ind_unclosed2 = n; break;
1910 case 'U': buf->b_ind_unclosed_noignore = n; break;
1911 case 'W': buf->b_ind_unclosed_wrapped = n; break;
1912 case 'w': buf->b_ind_unclosed_whiteok = n; break;
1913 case 'm': buf->b_ind_matching_paren = n; break;
1914 case 'M': buf->b_ind_paren_prev = n; break;
1915 case ')': buf->b_ind_maxparen = n; break;
1916 case '*': buf->b_ind_maxcomment = n; break;
1917 case 'g': buf->b_ind_scopedecl = n; break;
1918 case 'h': buf->b_ind_scopedecl_code = n; break;
1919 case 'j': buf->b_ind_java = n; break;
1920 case 'J': buf->b_ind_js = n; break;
1921 case 'l': buf->b_ind_keep_case_label = n; break;
1922 case '#': buf->b_ind_hash_comment = n; break;
1923 case 'N': buf->b_ind_cpp_namespace = n; break;
1924 case 'k': buf->b_ind_if_for_while = n; break;
1925 case 'E': buf->b_ind_cpp_extern_c = n; break;
Bram Moolenaard881b512020-05-31 17:49:30 +02001926 case 'P': buf->b_ind_pragma = n; break;
Bram Moolenaar14c01f82019-10-09 22:53:08 +02001927 }
1928 if (*p == ',')
1929 ++p;
1930 }
1931}
1932
1933 static int
1934find_match(int lookfor, linenr_T ourscope)
1935{
1936 char_u *look;
1937 pos_T *theirscope;
1938 char_u *mightbeif;
1939 int elselevel;
1940 int whilelevel;
1941
1942 if (lookfor == LOOKFOR_IF)
1943 {
1944 elselevel = 1;
1945 whilelevel = 0;
1946 }
1947 else
1948 {
1949 elselevel = 0;
1950 whilelevel = 1;
1951 }
1952
1953 curwin->w_cursor.col = 0;
1954
1955 while (curwin->w_cursor.lnum > ourscope + 1)
1956 {
1957 curwin->w_cursor.lnum--;
1958 curwin->w_cursor.col = 0;
1959
1960 look = cin_skipcomment(ml_get_curline());
1961 if (cin_iselse(look)
1962 || cin_isif(look)
1963 || cin_isdo(look) // XXX
1964 || cin_iswhileofdo(look, curwin->w_cursor.lnum))
1965 {
1966 // if we've gone outside the braces entirely,
1967 // we must be out of scope...
1968 theirscope = find_start_brace(); // XXX
1969 if (theirscope == NULL)
1970 break;
1971
1972 // and if the brace enclosing this is further
1973 // back than the one enclosing the else, we're
1974 // out of luck too.
1975 if (theirscope->lnum < ourscope)
1976 break;
1977
1978 // and if they're enclosed in a *deeper* brace,
1979 // then we can ignore it because it's in a
1980 // different scope...
1981 if (theirscope->lnum > ourscope)
1982 continue;
1983
1984 // if it was an "else" (that's not an "else if")
1985 // then we need to go back to another if, so
1986 // increment elselevel
1987 look = cin_skipcomment(ml_get_curline());
1988 if (cin_iselse(look))
1989 {
1990 mightbeif = cin_skipcomment(look + 4);
1991 if (!cin_isif(mightbeif))
1992 ++elselevel;
1993 continue;
1994 }
1995
1996 // if it was a "while" then we need to go back to
1997 // another "do", so increment whilelevel. XXX
1998 if (cin_iswhileofdo(look, curwin->w_cursor.lnum))
1999 {
2000 ++whilelevel;
2001 continue;
2002 }
2003
2004 // If it's an "if" decrement elselevel
2005 look = cin_skipcomment(ml_get_curline());
2006 if (cin_isif(look))
2007 {
2008 elselevel--;
2009 // When looking for an "if" ignore "while"s that
2010 // get in the way.
2011 if (elselevel == 0 && lookfor == LOOKFOR_IF)
2012 whilelevel = 0;
2013 }
2014
2015 // If it's a "do" decrement whilelevel
2016 if (cin_isdo(look))
2017 whilelevel--;
2018
2019 // if we've used up all the elses, then
2020 // this must be the if that we want!
2021 // match the indent level of that if.
2022 if (elselevel <= 0 && whilelevel <= 0)
2023 return OK;
2024 }
2025 }
2026 return FAIL;
2027}
2028
2029/*
2030 * Return the desired indent for C code.
2031 * Return -1 if the indent should be left alone (inside a raw string).
2032 */
2033 int
2034get_c_indent(void)
2035{
2036 pos_T cur_curpos;
2037 int amount;
2038 int scope_amount;
2039 int cur_amount = MAXCOL;
2040 colnr_T col;
2041 char_u *theline;
2042 char_u *linecopy;
2043 pos_T *trypos;
2044 pos_T *comment_pos;
2045 pos_T *tryposBrace = NULL;
2046 pos_T tryposCopy;
2047 pos_T our_paren_pos;
2048 char_u *start;
2049 int start_brace;
2050#define BRACE_IN_COL0 1 // '{' is in column 0
2051#define BRACE_AT_START 2 // '{' is at start of line
2052#define BRACE_AT_END 3 // '{' is at end of line
2053 linenr_T ourscope;
2054 char_u *l;
2055 char_u *look;
2056 char_u terminated;
2057 int lookfor;
2058 int whilelevel;
2059 linenr_T lnum;
2060 int n;
2061 int iscase;
2062 int lookfor_break;
2063 int lookfor_cpp_namespace = FALSE;
2064 int cont_amount = 0; // amount for continuation line
2065 int original_line_islabel;
2066 int added_to_amount = 0;
2067 int js_cur_has_key = 0;
2068 linenr_T raw_string_start = 0;
2069 cpp_baseclass_cache_T cache_cpp_baseclass = { FALSE, { MAXLNUM, 0 } };
2070
2071 // make a copy, value is changed below
2072 int ind_continuation = curbuf->b_ind_continuation;
2073
2074 // remember where the cursor was when we started
2075 cur_curpos = curwin->w_cursor;
2076
2077 // if we are at line 1 zero indent is fine, right?
2078 if (cur_curpos.lnum == 1)
2079 return 0;
2080
2081 // Get a copy of the current contents of the line.
2082 // This is required, because only the most recent line obtained with
2083 // ml_get is valid!
2084 linecopy = vim_strsave(ml_get(cur_curpos.lnum));
2085 if (linecopy == NULL)
2086 return 0;
2087
2088 // In insert mode and the cursor is on a ')' truncate the line at the
2089 // cursor position. We don't want to line up with the matching '(' when
2090 // inserting new stuff.
2091 // For unknown reasons the cursor might be past the end of the line, thus
2092 // check for that.
2093 if ((State & INSERT)
2094 && curwin->w_cursor.col < (colnr_T)STRLEN(linecopy)
2095 && linecopy[curwin->w_cursor.col] == ')')
2096 linecopy[curwin->w_cursor.col] = NUL;
2097
2098 theline = skipwhite(linecopy);
2099
2100 // move the cursor to the start of the line
2101
2102 curwin->w_cursor.col = 0;
2103
2104 original_line_islabel = cin_islabel(); // XXX
2105
2106 // If we are inside a raw string don't change the indent.
2107 // Ignore a raw string inside a comment.
2108 comment_pos = ind_find_start_comment();
2109 if (comment_pos != NULL)
2110 {
2111 // findmatchlimit() static pos is overwritten, make a copy
2112 tryposCopy = *comment_pos;
2113 comment_pos = &tryposCopy;
2114 }
2115 trypos = find_start_rawstring(curbuf->b_ind_maxcomment);
2116 if (trypos != NULL && (comment_pos == NULL
2117 || LT_POS(*trypos, *comment_pos)))
2118 {
2119 amount = -1;
2120 goto laterend;
2121 }
2122
Bram Moolenaard881b512020-05-31 17:49:30 +02002123 // #defines and so on go at the left when included in 'cinkeys',
Bram Moolenaar8e7d6222020-12-18 19:49:56 +01002124 // excluding pragmas when customized in 'cinoptions'
Bram Moolenaar14c01f82019-10-09 22:53:08 +02002125 if (*theline == '#' && (*linecopy == '#' || in_cinkeys('#', ' ', TRUE)))
2126 {
Bram Moolenaard881b512020-05-31 17:49:30 +02002127 char_u *directive = skipwhite(theline + 1);
2128 if (curbuf->b_ind_pragma == 0 || STRNCMP(directive, "pragma", 6) != 0)
2129 {
2130 amount = curbuf->b_ind_hash_comment;
2131 goto theend;
2132 }
Bram Moolenaar14c01f82019-10-09 22:53:08 +02002133 }
2134
2135 // Is it a non-case label? Then that goes at the left margin too unless:
2136 // - JS flag is set.
2137 // - 'L' item has a positive value.
2138 if (original_line_islabel && !curbuf->b_ind_js
2139 && curbuf->b_ind_jump_label < 0)
2140 {
2141 amount = 0;
2142 goto theend;
2143 }
2144
2145 // If we're inside a "//" comment and there is a "//" comment in a
2146 // previous line, lineup with that one.
2147 if (cin_islinecomment(theline)
2148 && (trypos = find_line_comment()) != NULL) // XXX
2149 {
2150 // find how indented the line beginning the comment is
2151 getvcol(curwin, trypos, &col, NULL, NULL);
2152 amount = col;
2153 goto theend;
2154 }
2155
2156 // If we're inside a comment and not looking at the start of the
2157 // comment, try using the 'comments' option.
2158 if (!cin_iscomment(theline) && comment_pos != NULL) // XXX
2159 {
2160 int lead_start_len = 2;
2161 int lead_middle_len = 1;
2162 char_u lead_start[COM_MAX_LEN]; // start-comment string
2163 char_u lead_middle[COM_MAX_LEN]; // middle-comment string
2164 char_u lead_end[COM_MAX_LEN]; // end-comment string
2165 char_u *p;
2166 int start_align = 0;
2167 int start_off = 0;
2168 int done = FALSE;
2169
2170 // find how indented the line beginning the comment is
2171 getvcol(curwin, comment_pos, &col, NULL, NULL);
2172 amount = col;
2173 *lead_start = NUL;
2174 *lead_middle = NUL;
2175
2176 p = curbuf->b_p_com;
2177 while (*p != NUL)
2178 {
2179 int align = 0;
2180 int off = 0;
2181 int what = 0;
2182
2183 while (*p != NUL && *p != ':')
2184 {
2185 if (*p == COM_START || *p == COM_END || *p == COM_MIDDLE)
2186 what = *p++;
2187 else if (*p == COM_LEFT || *p == COM_RIGHT)
2188 align = *p++;
2189 else if (VIM_ISDIGIT(*p) || *p == '-')
2190 off = getdigits(&p);
2191 else
2192 ++p;
2193 }
2194
2195 if (*p == ':')
2196 ++p;
2197 (void)copy_option_part(&p, lead_end, COM_MAX_LEN, ",");
2198 if (what == COM_START)
2199 {
2200 STRCPY(lead_start, lead_end);
2201 lead_start_len = (int)STRLEN(lead_start);
2202 start_off = off;
2203 start_align = align;
2204 }
2205 else if (what == COM_MIDDLE)
2206 {
2207 STRCPY(lead_middle, lead_end);
2208 lead_middle_len = (int)STRLEN(lead_middle);
2209 }
2210 else if (what == COM_END)
2211 {
2212 // If our line starts with the middle comment string, line it
2213 // up with the comment opener per the 'comments' option.
2214 if (STRNCMP(theline, lead_middle, lead_middle_len) == 0
2215 && STRNCMP(theline, lead_end, STRLEN(lead_end)) != 0)
2216 {
2217 done = TRUE;
2218 if (curwin->w_cursor.lnum > 1)
2219 {
2220 // If the start comment string matches in the previous
2221 // line, use the indent of that line plus offset. If
2222 // the middle comment string matches in the previous
2223 // line, use the indent of that line. XXX
2224 look = skipwhite(ml_get(curwin->w_cursor.lnum - 1));
2225 if (STRNCMP(look, lead_start, lead_start_len) == 0)
2226 amount = get_indent_lnum(curwin->w_cursor.lnum - 1);
2227 else if (STRNCMP(look, lead_middle,
2228 lead_middle_len) == 0)
2229 {
2230 amount = get_indent_lnum(curwin->w_cursor.lnum - 1);
2231 break;
2232 }
2233 // If the start comment string doesn't match with the
2234 // start of the comment, skip this entry. XXX
2235 else if (STRNCMP(ml_get(comment_pos->lnum) + comment_pos->col,
2236 lead_start, lead_start_len) != 0)
2237 continue;
2238 }
2239 if (start_off != 0)
2240 amount += start_off;
2241 else if (start_align == COM_RIGHT)
2242 amount += vim_strsize(lead_start)
2243 - vim_strsize(lead_middle);
2244 break;
2245 }
2246
2247 // If our line starts with the end comment string, line it up
2248 // with the middle comment
2249 if (STRNCMP(theline, lead_middle, lead_middle_len) != 0
2250 && STRNCMP(theline, lead_end, STRLEN(lead_end)) == 0)
2251 {
2252 amount = get_indent_lnum(curwin->w_cursor.lnum - 1);
2253 // XXX
2254 if (off != 0)
2255 amount += off;
2256 else if (align == COM_RIGHT)
2257 amount += vim_strsize(lead_start)
2258 - vim_strsize(lead_middle);
2259 done = TRUE;
2260 break;
2261 }
2262 }
2263 }
2264
2265 // If our line starts with an asterisk, line up with the
2266 // asterisk in the comment opener; otherwise, line up
2267 // with the first character of the comment text.
2268 if (done)
2269 ;
2270 else if (theline[0] == '*')
2271 amount += 1;
2272 else
2273 {
2274 // If we are more than one line away from the comment opener, take
2275 // the indent of the previous non-empty line. If 'cino' has "CO"
2276 // and we are just below the comment opener and there are any
2277 // white characters after it line up with the text after it;
2278 // otherwise, add the amount specified by "c" in 'cino'
2279 amount = -1;
2280 for (lnum = cur_curpos.lnum - 1; lnum > comment_pos->lnum; --lnum)
2281 {
2282 if (linewhite(lnum)) // skip blank lines
2283 continue;
2284 amount = get_indent_lnum(lnum); // XXX
2285 break;
2286 }
2287 if (amount == -1) // use the comment opener
2288 {
2289 if (!curbuf->b_ind_in_comment2)
2290 {
2291 start = ml_get(comment_pos->lnum);
2292 look = start + comment_pos->col + 2; // skip / and *
2293 if (*look != NUL) // if something after it
2294 comment_pos->col = (colnr_T)(skipwhite(look) - start);
2295 }
2296 getvcol(curwin, comment_pos, &col, NULL, NULL);
2297 amount = col;
2298 if (curbuf->b_ind_in_comment2 || *look == NUL)
2299 amount += curbuf->b_ind_in_comment;
2300 }
2301 }
2302 goto theend;
2303 }
2304
2305 // Are we looking at a ']' that has a match?
2306 if (*skipwhite(theline) == ']'
2307 && (trypos = find_match_char('[', curbuf->b_ind_maxparen)) != NULL)
2308 {
2309 // align with the line containing the '['.
2310 amount = get_indent_lnum(trypos->lnum);
2311 goto theend;
2312 }
2313
2314 // Are we inside parentheses or braces? XXX
2315 if (((trypos = find_match_paren(curbuf->b_ind_maxparen)) != NULL
2316 && curbuf->b_ind_java == 0)
2317 || (tryposBrace = find_start_brace()) != NULL
2318 || trypos != NULL)
2319 {
2320 if (trypos != NULL && tryposBrace != NULL)
2321 {
2322 // Both an unmatched '(' and '{' is found. Use the one which is
2323 // closer to the current cursor position, set the other to NULL.
2324 if (trypos->lnum != tryposBrace->lnum
2325 ? trypos->lnum < tryposBrace->lnum
2326 : trypos->col < tryposBrace->col)
2327 trypos = NULL;
2328 else
2329 tryposBrace = NULL;
2330 }
2331
2332 if (trypos != NULL)
2333 {
2334 // If the matching paren is more than one line away, use the indent of
2335 // a previous non-empty line that matches the same paren.
2336 if (theline[0] == ')' && curbuf->b_ind_paren_prev)
2337 {
2338 // Line up with the start of the matching paren line.
2339 amount = get_indent_lnum(curwin->w_cursor.lnum - 1); // XXX
2340 }
2341 else
2342 {
2343 amount = -1;
2344 our_paren_pos = *trypos;
2345 for (lnum = cur_curpos.lnum - 1; lnum > our_paren_pos.lnum; --lnum)
2346 {
2347 l = skipwhite(ml_get(lnum));
2348 if (cin_nocode(l)) // skip comment lines
2349 continue;
2350 if (cin_ispreproc_cont(&l, &lnum, &amount))
2351 continue; // ignore #define, #if, etc.
2352 curwin->w_cursor.lnum = lnum;
2353
2354 // Skip a comment or raw string. XXX
2355 if ((trypos = ind_find_start_CORS(NULL)) != NULL)
2356 {
2357 lnum = trypos->lnum + 1;
2358 continue;
2359 }
2360
2361 // XXX
2362 if ((trypos = find_match_paren(
2363 corr_ind_maxparen(&cur_curpos))) != NULL
2364 && trypos->lnum == our_paren_pos.lnum
2365 && trypos->col == our_paren_pos.col)
2366 {
2367 amount = get_indent_lnum(lnum); // XXX
2368
2369 if (theline[0] == ')')
2370 {
2371 if (our_paren_pos.lnum != lnum
2372 && cur_amount > amount)
2373 cur_amount = amount;
2374 amount = -1;
2375 }
2376 break;
2377 }
2378 }
2379 }
2380
2381 // Line up with line where the matching paren is. XXX
2382 // If the line starts with a '(' or the indent for unclosed
2383 // parentheses is zero, line up with the unclosed parentheses.
2384 if (amount == -1)
2385 {
2386 int ignore_paren_col = 0;
2387 int is_if_for_while = 0;
2388
2389 if (curbuf->b_ind_if_for_while)
2390 {
2391 // Look for the outermost opening parenthesis on this line
2392 // and check whether it belongs to an "if", "for" or "while".
2393
2394 pos_T cursor_save = curwin->w_cursor;
2395 pos_T outermost;
2396 char_u *line;
2397
2398 trypos = &our_paren_pos;
2399 do {
2400 outermost = *trypos;
2401 curwin->w_cursor.lnum = outermost.lnum;
2402 curwin->w_cursor.col = outermost.col;
2403
2404 trypos = find_match_paren(curbuf->b_ind_maxparen);
2405 } while (trypos && trypos->lnum == outermost.lnum);
2406
2407 curwin->w_cursor = cursor_save;
2408
2409 line = ml_get(outermost.lnum);
2410
2411 is_if_for_while =
2412 cin_is_if_for_while_before_offset(line, &outermost.col);
2413 }
2414
2415 amount = skip_label(our_paren_pos.lnum, &look);
2416 look = skipwhite(look);
2417 if (*look == '(')
2418 {
2419 linenr_T save_lnum = curwin->w_cursor.lnum;
2420 char_u *line;
2421 int look_col;
2422
2423 // Ignore a '(' in front of the line that has a match before
2424 // our matching '('.
2425 curwin->w_cursor.lnum = our_paren_pos.lnum;
2426 line = ml_get_curline();
2427 look_col = (int)(look - line);
2428 curwin->w_cursor.col = look_col + 1;
2429 if ((trypos = findmatchlimit(NULL, ')', 0,
2430 curbuf->b_ind_maxparen))
2431 != NULL
2432 && trypos->lnum == our_paren_pos.lnum
2433 && trypos->col < our_paren_pos.col)
2434 ignore_paren_col = trypos->col + 1;
2435
2436 curwin->w_cursor.lnum = save_lnum;
2437 look = ml_get(our_paren_pos.lnum) + look_col;
2438 }
2439 if (theline[0] == ')' || (curbuf->b_ind_unclosed == 0
2440 && is_if_for_while == 0)
2441 || (!curbuf->b_ind_unclosed_noignore && *look == '('
2442 && ignore_paren_col == 0))
2443 {
2444 // If we're looking at a close paren, line up right there;
2445 // otherwise, line up with the next (non-white) character.
2446 // When b_ind_unclosed_wrapped is set and the matching paren is
2447 // the last nonwhite character of the line, use either the
2448 // indent of the current line or the indentation of the next
2449 // outer paren and add b_ind_unclosed_wrapped (for very long
2450 // lines).
2451 if (theline[0] != ')')
2452 {
2453 cur_amount = MAXCOL;
2454 l = ml_get(our_paren_pos.lnum);
2455 if (curbuf->b_ind_unclosed_wrapped
2456 && cin_ends_in(l, (char_u *)"(", NULL))
2457 {
2458 // look for opening unmatched paren, indent one level
2459 // for each additional level
2460 n = 1;
2461 for (col = 0; col < our_paren_pos.col; ++col)
2462 {
2463 switch (l[col])
2464 {
2465 case '(':
2466 case '{': ++n;
2467 break;
2468
2469 case ')':
2470 case '}': if (n > 1)
2471 --n;
2472 break;
2473 }
2474 }
2475
2476 our_paren_pos.col = 0;
2477 amount += n * curbuf->b_ind_unclosed_wrapped;
2478 }
2479 else if (curbuf->b_ind_unclosed_whiteok)
2480 our_paren_pos.col++;
2481 else
2482 {
2483 col = our_paren_pos.col + 1;
2484 while (VIM_ISWHITE(l[col]))
2485 col++;
2486 if (l[col] != NUL) // In case of trailing space
2487 our_paren_pos.col = col;
2488 else
2489 our_paren_pos.col++;
2490 }
2491 }
2492
2493 // Find how indented the paren is, or the character after it
2494 // if we did the above "if".
2495 if (our_paren_pos.col > 0)
2496 {
2497 getvcol(curwin, &our_paren_pos, &col, NULL, NULL);
2498 if (cur_amount > (int)col)
2499 cur_amount = col;
2500 }
2501 }
2502
2503 if (theline[0] == ')' && curbuf->b_ind_matching_paren)
2504 {
2505 // Line up with the start of the matching paren line.
2506 }
2507 else if ((curbuf->b_ind_unclosed == 0 && is_if_for_while == 0)
2508 || (!curbuf->b_ind_unclosed_noignore
2509 && *look == '(' && ignore_paren_col == 0))
2510 {
2511 if (cur_amount != MAXCOL)
2512 amount = cur_amount;
2513 }
2514 else
2515 {
2516 // Add b_ind_unclosed2 for each '(' before our matching one,
2517 // but ignore (void) before the line (ignore_paren_col).
2518 col = our_paren_pos.col;
2519 while ((int)our_paren_pos.col > ignore_paren_col)
2520 {
2521 --our_paren_pos.col;
2522 switch (*ml_get_pos(&our_paren_pos))
2523 {
2524 case '(': amount += curbuf->b_ind_unclosed2;
2525 col = our_paren_pos.col;
2526 break;
2527 case ')': amount -= curbuf->b_ind_unclosed2;
2528 col = MAXCOL;
2529 break;
2530 }
2531 }
2532
2533 // Use b_ind_unclosed once, when the first '(' is not inside
2534 // braces
2535 if (col == MAXCOL)
2536 amount += curbuf->b_ind_unclosed;
2537 else
2538 {
2539 curwin->w_cursor.lnum = our_paren_pos.lnum;
2540 curwin->w_cursor.col = col;
2541 if (find_match_paren_after_brace(curbuf->b_ind_maxparen)
2542 != NULL)
2543 amount += curbuf->b_ind_unclosed2;
2544 else
2545 {
2546 if (is_if_for_while)
2547 amount += curbuf->b_ind_if_for_while;
2548 else
2549 amount += curbuf->b_ind_unclosed;
2550 }
2551 }
2552 // For a line starting with ')' use the minimum of the two
2553 // positions, to avoid giving it more indent than the previous
2554 // lines:
2555 // func_long_name( if (x
2556 // arg && yy
2557 // ) ^ not here ) ^ not here
2558 if (cur_amount < amount)
2559 amount = cur_amount;
2560 }
2561 }
2562
2563 // add extra indent for a comment
2564 if (cin_iscomment(theline))
2565 amount += curbuf->b_ind_comment;
2566 }
2567 else
2568 {
2569 // We are inside braces, there is a { before this line at the position
2570 // stored in tryposBrace.
2571 // Make a copy of tryposBrace, it may point to pos_copy inside
2572 // find_start_brace(), which may be changed somewhere.
2573 tryposCopy = *tryposBrace;
2574 tryposBrace = &tryposCopy;
2575 trypos = tryposBrace;
2576 ourscope = trypos->lnum;
2577 start = ml_get(ourscope);
2578
2579 // Now figure out how indented the line is in general.
2580 // If the brace was at the start of the line, we use that;
2581 // otherwise, check out the indentation of the line as
2582 // a whole and then add the "imaginary indent" to that.
2583 look = skipwhite(start);
2584 if (*look == '{')
2585 {
2586 getvcol(curwin, trypos, &col, NULL, NULL);
2587 amount = col;
2588 if (*start == '{')
2589 start_brace = BRACE_IN_COL0;
2590 else
2591 start_brace = BRACE_AT_START;
2592 }
2593 else
2594 {
2595 // That opening brace might have been on a continuation
2596 // line. if so, find the start of the line.
2597 curwin->w_cursor.lnum = ourscope;
2598
2599 // Position the cursor over the rightmost paren, so that
2600 // matching it will take us back to the start of the line.
2601 lnum = ourscope;
2602 if (find_last_paren(start, '(', ')')
2603 && (trypos = find_match_paren(curbuf->b_ind_maxparen))
2604 != NULL)
2605 lnum = trypos->lnum;
2606
2607 // It could have been something like
2608 // case 1: if (asdf &&
2609 // ldfd) {
2610 // }
2611 if ((curbuf->b_ind_js || curbuf->b_ind_keep_case_label)
2612 && cin_iscase(skipwhite(ml_get_curline()), FALSE))
2613 amount = get_indent();
2614 else if (curbuf->b_ind_js)
2615 amount = get_indent_lnum(lnum);
2616 else
2617 amount = skip_label(lnum, &l);
2618
2619 start_brace = BRACE_AT_END;
2620 }
2621
2622 // For Javascript check if the line starts with "key:".
2623 if (curbuf->b_ind_js)
2624 js_cur_has_key = cin_has_js_key(theline);
2625
2626 // If we're looking at a closing brace, that's where
2627 // we want to be. otherwise, add the amount of room
2628 // that an indent is supposed to be.
2629 if (theline[0] == '}')
2630 {
2631 // they may want closing braces to line up with something
2632 // other than the open brace. indulge them, if so.
2633 amount += curbuf->b_ind_close_extra;
2634 }
2635 else
2636 {
2637 // If we're looking at an "else", try to find an "if"
2638 // to match it with.
2639 // If we're looking at a "while", try to find a "do"
2640 // to match it with.
2641 lookfor = LOOKFOR_INITIAL;
2642 if (cin_iselse(theline))
2643 lookfor = LOOKFOR_IF;
2644 else if (cin_iswhileofdo(theline, cur_curpos.lnum)) // XXX
2645 lookfor = LOOKFOR_DO;
2646 if (lookfor != LOOKFOR_INITIAL)
2647 {
2648 curwin->w_cursor.lnum = cur_curpos.lnum;
2649 if (find_match(lookfor, ourscope) == OK)
2650 {
2651 amount = get_indent(); // XXX
2652 goto theend;
2653 }
2654 }
2655
2656 // We get here if we are not on an "while-of-do" or "else" (or
2657 // failed to find a matching "if").
2658 // Search backwards for something to line up with.
2659 // First set amount for when we don't find anything.
2660
2661 // if the '{' is _really_ at the left margin, use the imaginary
2662 // location of a left-margin brace. Otherwise, correct the
2663 // location for b_ind_open_extra.
2664
2665 if (start_brace == BRACE_IN_COL0) // '{' is in column 0
2666 {
2667 amount = curbuf->b_ind_open_left_imag;
2668 lookfor_cpp_namespace = TRUE;
2669 }
2670 else if (start_brace == BRACE_AT_START &&
2671 lookfor_cpp_namespace) // '{' is at start
2672 {
2673
2674 lookfor_cpp_namespace = TRUE;
2675 }
2676 else
2677 {
2678 if (start_brace == BRACE_AT_END) // '{' is at end of line
2679 {
2680 amount += curbuf->b_ind_open_imag;
2681
2682 l = skipwhite(ml_get_curline());
2683 if (cin_is_cpp_namespace(l))
2684 amount += curbuf->b_ind_cpp_namespace;
2685 else if (cin_is_cpp_extern_c(l))
2686 amount += curbuf->b_ind_cpp_extern_c;
2687 }
2688 else
2689 {
2690 // Compensate for adding b_ind_open_extra later.
2691 amount -= curbuf->b_ind_open_extra;
2692 if (amount < 0)
2693 amount = 0;
2694 }
2695 }
2696
2697 lookfor_break = FALSE;
2698
2699 if (cin_iscase(theline, FALSE)) // it's a switch() label
2700 {
2701 lookfor = LOOKFOR_CASE; // find a previous switch() label
2702 amount += curbuf->b_ind_case;
2703 }
2704 else if (cin_isscopedecl(theline)) // private:, ...
2705 {
2706 lookfor = LOOKFOR_SCOPEDECL; // class decl is this block
2707 amount += curbuf->b_ind_scopedecl;
2708 }
2709 else
2710 {
2711 if (curbuf->b_ind_case_break && cin_isbreak(theline))
2712 // break; ...
2713 lookfor_break = TRUE;
2714
2715 lookfor = LOOKFOR_INITIAL;
2716 // b_ind_level from start of block
2717 amount += curbuf->b_ind_level;
2718 }
2719 scope_amount = amount;
2720 whilelevel = 0;
2721
2722 // Search backwards. If we find something we recognize, line up
2723 // with that.
2724 //
2725 // If we're looking at an open brace, indent
2726 // the usual amount relative to the conditional
2727 // that opens the block.
2728 curwin->w_cursor = cur_curpos;
2729 for (;;)
2730 {
2731 curwin->w_cursor.lnum--;
2732 curwin->w_cursor.col = 0;
2733
2734 // If we went all the way back to the start of our scope, line
2735 // up with it.
2736 if (curwin->w_cursor.lnum <= ourscope)
2737 {
2738 // We reached end of scope:
Bram Moolenaar32aa1022019-11-02 22:54:41 +01002739 // If looking for an enum or structure initialization
Bram Moolenaar14c01f82019-10-09 22:53:08 +02002740 // go further back:
2741 // If it is an initializer (enum xxx or xxx =), then
2742 // don't add ind_continuation, otherwise it is a variable
2743 // declaration:
2744 // int x,
2745 // here; <-- add ind_continuation
2746 if (lookfor == LOOKFOR_ENUM_OR_INIT)
2747 {
2748 if (curwin->w_cursor.lnum == 0
2749 || curwin->w_cursor.lnum
2750 < ourscope - curbuf->b_ind_maxparen)
2751 {
2752 // nothing found (abuse curbuf->b_ind_maxparen as
2753 // limit) assume terminated line (i.e. a variable
2754 // initialization)
2755 if (cont_amount > 0)
2756 amount = cont_amount;
2757 else if (!curbuf->b_ind_js)
2758 amount += ind_continuation;
2759 break;
2760 }
2761
2762 l = ml_get_curline();
2763
2764 // If we're in a comment or raw string now, skip to
2765 // the start of it.
2766 trypos = ind_find_start_CORS(NULL);
2767 if (trypos != NULL)
2768 {
2769 curwin->w_cursor.lnum = trypos->lnum + 1;
2770 curwin->w_cursor.col = 0;
2771 continue;
2772 }
2773
2774 // Skip preprocessor directives and blank lines.
2775 if (cin_ispreproc_cont(&l, &curwin->w_cursor.lnum,
2776 &amount))
2777 continue;
2778
2779 if (cin_nocode(l))
2780 continue;
2781
2782 terminated = cin_isterminated(l, FALSE, TRUE);
2783
2784 // If we are at top level and the line looks like a
2785 // function declaration, we are done
2786 // (it's a variable declaration).
2787 if (start_brace != BRACE_IN_COL0
2788 || !cin_isfuncdecl(&l, curwin->w_cursor.lnum, 0))
2789 {
2790 // if the line is terminated with another ','
2791 // it is a continued variable initialization.
2792 // don't add extra indent.
2793 // TODO: does not work, if a function
2794 // declaration is split over multiple lines:
2795 // cin_isfuncdecl returns FALSE then.
2796 if (terminated == ',')
2797 break;
2798
Bram Moolenaar32aa1022019-11-02 22:54:41 +01002799 // if it is an enum declaration or an assignment,
Bram Moolenaar14c01f82019-10-09 22:53:08 +02002800 // we are done.
2801 if (terminated != ';' && cin_isinit())
2802 break;
2803
2804 // nothing useful found
2805 if (terminated == 0 || terminated == '{')
2806 continue;
2807 }
2808
2809 if (terminated != ';')
2810 {
2811 // Skip parens and braces. Position the cursor
2812 // over the rightmost paren, so that matching it
2813 // will take us back to the start of the line.
2814 // XXX
2815 trypos = NULL;
2816 if (find_last_paren(l, '(', ')'))
2817 trypos = find_match_paren(
2818 curbuf->b_ind_maxparen);
2819
2820 if (trypos == NULL && find_last_paren(l, '{', '}'))
2821 trypos = find_start_brace();
2822
2823 if (trypos != NULL)
2824 {
2825 curwin->w_cursor.lnum = trypos->lnum + 1;
2826 curwin->w_cursor.col = 0;
2827 continue;
2828 }
2829 }
2830
2831 // it's a variable declaration, add indentation
2832 // like in
2833 // int a,
2834 // b;
2835 if (cont_amount > 0)
2836 amount = cont_amount;
2837 else
2838 amount += ind_continuation;
2839 }
2840 else if (lookfor == LOOKFOR_UNTERM)
2841 {
2842 if (cont_amount > 0)
2843 amount = cont_amount;
2844 else
2845 amount += ind_continuation;
2846 }
2847 else
2848 {
2849 if (lookfor != LOOKFOR_TERM
2850 && lookfor != LOOKFOR_CPP_BASECLASS
2851 && lookfor != LOOKFOR_COMMA)
2852 {
2853 amount = scope_amount;
2854 if (theline[0] == '{')
2855 {
2856 amount += curbuf->b_ind_open_extra;
2857 added_to_amount = curbuf->b_ind_open_extra;
2858 }
2859 }
2860
2861 if (lookfor_cpp_namespace)
2862 {
2863 // Looking for C++ namespace, need to look further
2864 // back.
2865 if (curwin->w_cursor.lnum == ourscope)
2866 continue;
2867
2868 if (curwin->w_cursor.lnum == 0
2869 || curwin->w_cursor.lnum
2870 < ourscope - FIND_NAMESPACE_LIM)
2871 break;
2872
2873 l = ml_get_curline();
2874
2875 // If we're in a comment or raw string now, skip
2876 // to the start of it.
2877 trypos = ind_find_start_CORS(NULL);
2878 if (trypos != NULL)
2879 {
2880 curwin->w_cursor.lnum = trypos->lnum + 1;
2881 curwin->w_cursor.col = 0;
2882 continue;
2883 }
2884
2885 // Skip preprocessor directives and blank lines.
2886 if (cin_ispreproc_cont(&l, &curwin->w_cursor.lnum,
2887 &amount))
2888 continue;
2889
2890 // Finally the actual check for "namespace".
2891 if (cin_is_cpp_namespace(l))
2892 {
2893 amount += curbuf->b_ind_cpp_namespace
2894 - added_to_amount;
2895 break;
2896 }
2897 else if (cin_is_cpp_extern_c(l))
2898 {
2899 amount += curbuf->b_ind_cpp_extern_c
2900 - added_to_amount;
2901 break;
2902 }
2903
2904 if (cin_nocode(l))
2905 continue;
2906 }
2907 }
2908 break;
2909 }
2910
2911 // If we're in a comment or raw string now, skip to the start
2912 // of it. XXX
2913 if ((trypos = ind_find_start_CORS(&raw_string_start)) != NULL)
2914 {
2915 curwin->w_cursor.lnum = trypos->lnum + 1;
2916 curwin->w_cursor.col = 0;
2917 continue;
2918 }
2919
2920 l = ml_get_curline();
2921
2922 // If this is a switch() label, may line up relative to that.
2923 // If this is a C++ scope declaration, do the same.
2924 iscase = cin_iscase(l, FALSE);
2925 if (iscase || cin_isscopedecl(l))
2926 {
2927 // we are only looking for cpp base class
2928 // declaration/initialization any longer
2929 if (lookfor == LOOKFOR_CPP_BASECLASS)
2930 break;
2931
2932 // When looking for a "do" we are not interested in
2933 // labels.
2934 if (whilelevel > 0)
2935 continue;
2936
2937 // case xx:
2938 // c = 99 + <- this indent plus continuation
2939 //-> here;
2940 if (lookfor == LOOKFOR_UNTERM
2941 || lookfor == LOOKFOR_ENUM_OR_INIT)
2942 {
2943 if (cont_amount > 0)
2944 amount = cont_amount;
2945 else
2946 amount += ind_continuation;
2947 break;
2948 }
2949
2950 // case xx: <- line up with this case
2951 // x = 333;
2952 // case yy:
2953 if ( (iscase && lookfor == LOOKFOR_CASE)
2954 || (iscase && lookfor_break)
2955 || (!iscase && lookfor == LOOKFOR_SCOPEDECL))
2956 {
2957 // Check that this case label is not for another
2958 // switch() XXX
2959 if ((trypos = find_start_brace()) == NULL
2960 || trypos->lnum == ourscope)
2961 {
2962 amount = get_indent(); // XXX
2963 break;
2964 }
2965 continue;
2966 }
2967
2968 n = get_indent_nolabel(curwin->w_cursor.lnum); // XXX
2969
2970 // case xx: if (cond) <- line up with this if
2971 // y = y + 1;
2972 // -> s = 99;
2973 //
2974 // case xx:
2975 // if (cond) <- line up with this line
2976 // y = y + 1;
2977 // -> s = 99;
2978 if (lookfor == LOOKFOR_TERM)
2979 {
2980 if (n)
2981 amount = n;
2982
2983 if (!lookfor_break)
2984 break;
2985 }
2986
2987 // case xx: x = x + 1; <- line up with this x
2988 // -> y = y + 1;
2989 //
2990 // case xx: if (cond) <- line up with this if
2991 // -> y = y + 1;
2992 if (n)
2993 {
2994 amount = n;
2995 l = after_label(ml_get_curline());
2996 if (l != NULL && cin_is_cinword(l))
2997 {
2998 if (theline[0] == '{')
2999 amount += curbuf->b_ind_open_extra;
3000 else
3001 amount += curbuf->b_ind_level
3002 + curbuf->b_ind_no_brace;
3003 }
3004 break;
3005 }
3006
3007 // Try to get the indent of a statement before the switch
3008 // label. If nothing is found, line up relative to the
3009 // switch label.
3010 // break; <- may line up with this line
3011 // case xx:
3012 // -> y = 1;
3013 scope_amount = get_indent() + (iscase // XXX
3014 ? curbuf->b_ind_case_code
3015 : curbuf->b_ind_scopedecl_code);
3016 lookfor = curbuf->b_ind_case_break
3017 ? LOOKFOR_NOBREAK : LOOKFOR_ANY;
3018 continue;
3019 }
3020
3021 // Looking for a switch() label or C++ scope declaration,
3022 // ignore other lines, skip {}-blocks.
3023 if (lookfor == LOOKFOR_CASE || lookfor == LOOKFOR_SCOPEDECL)
3024 {
3025 if (find_last_paren(l, '{', '}')
3026 && (trypos = find_start_brace()) != NULL)
3027 {
3028 curwin->w_cursor.lnum = trypos->lnum + 1;
3029 curwin->w_cursor.col = 0;
3030 }
3031 continue;
3032 }
3033
3034 // Ignore jump labels with nothing after them.
3035 if (!curbuf->b_ind_js && cin_islabel())
3036 {
3037 l = after_label(ml_get_curline());
3038 if (l == NULL || cin_nocode(l))
3039 continue;
3040 }
3041
3042 // Ignore #defines, #if, etc.
3043 // Ignore comment and empty lines.
3044 // (need to get the line again, cin_islabel() may have
3045 // unlocked it)
3046 l = ml_get_curline();
3047 if (cin_ispreproc_cont(&l, &curwin->w_cursor.lnum, &amount)
3048 || cin_nocode(l))
3049 continue;
3050
3051 // Are we at the start of a cpp base class declaration or
3052 // constructor initialization? XXX
3053 n = FALSE;
3054 if (lookfor != LOOKFOR_TERM && curbuf->b_ind_cpp_baseclass > 0)
3055 {
3056 n = cin_is_cpp_baseclass(&cache_cpp_baseclass);
3057 l = ml_get_curline();
3058 }
3059 if (n)
3060 {
3061 if (lookfor == LOOKFOR_UNTERM)
3062 {
3063 if (cont_amount > 0)
3064 amount = cont_amount;
3065 else
3066 amount += ind_continuation;
3067 }
3068 else if (theline[0] == '{')
3069 {
3070 // Need to find start of the declaration.
3071 lookfor = LOOKFOR_UNTERM;
3072 ind_continuation = 0;
3073 continue;
3074 }
3075 else
3076 // XXX
3077 amount = get_baseclass_amount(
3078 cache_cpp_baseclass.lpos.col);
3079 break;
3080 }
3081 else if (lookfor == LOOKFOR_CPP_BASECLASS)
3082 {
3083 // only look, whether there is a cpp base class
3084 // declaration or initialization before the opening brace.
3085 if (cin_isterminated(l, TRUE, FALSE))
3086 break;
3087 else
3088 continue;
3089 }
3090
3091 // What happens next depends on the line being terminated.
3092 // If terminated with a ',' only consider it terminating if
3093 // there is another unterminated statement behind, eg:
3094 // 123,
3095 // sizeof
3096 // here
Bram Moolenaar32aa1022019-11-02 22:54:41 +01003097 // Otherwise check whether it is an enumeration or structure
Bram Moolenaar14c01f82019-10-09 22:53:08 +02003098 // initialisation (not indented) or a variable declaration
3099 // (indented).
3100 terminated = cin_isterminated(l, FALSE, TRUE);
3101
3102 if (js_cur_has_key)
3103 {
3104 js_cur_has_key = 0; // only check the first line
3105 if (curbuf->b_ind_js && terminated == ',')
3106 {
3107 // For Javascript we might be inside an object:
3108 // key: something, <- align with this
3109 // key: something
3110 // or:
3111 // key: something + <- align with this
3112 // something,
3113 // key: something
3114 lookfor = LOOKFOR_JS_KEY;
3115 }
3116 }
3117 if (lookfor == LOOKFOR_JS_KEY && cin_has_js_key(l))
3118 {
3119 amount = get_indent();
3120 break;
3121 }
3122 if (lookfor == LOOKFOR_COMMA)
3123 {
3124 if (tryposBrace != NULL && tryposBrace->lnum
3125 >= curwin->w_cursor.lnum)
3126 break;
3127 if (terminated == ',')
3128 // line below current line is the one that starts a
3129 // (possibly broken) line ending in a comma.
3130 break;
3131 else
3132 {
3133 amount = get_indent();
3134 if (curwin->w_cursor.lnum - 1 == ourscope)
3135 // line above is start of the scope, thus current
3136 // line is the one that stars a (possibly broken)
3137 // line ending in a comma.
3138 break;
3139 }
3140 }
3141
3142 if (terminated == 0 || (lookfor != LOOKFOR_UNTERM
3143 && terminated == ','))
3144 {
3145 if (lookfor != LOOKFOR_ENUM_OR_INIT &&
3146 (*skipwhite(l) == '[' || l[STRLEN(l) - 1] == '['))
3147 amount += ind_continuation;
3148 // if we're in the middle of a paren thing,
3149 // go back to the line that starts it so
3150 // we can get the right prevailing indent
3151 // if ( foo &&
3152 // bar )
3153
3154 // Position the cursor over the rightmost paren, so that
3155 // matching it will take us back to the start of the line.
3156 // Ignore a match before the start of the block.
3157 (void)find_last_paren(l, '(', ')');
3158 trypos = find_match_paren(corr_ind_maxparen(&cur_curpos));
3159 if (trypos != NULL && (trypos->lnum < tryposBrace->lnum
3160 || (trypos->lnum == tryposBrace->lnum
3161 && trypos->col < tryposBrace->col)))
3162 trypos = NULL;
3163
3164 // If we are looking for ',', we also look for matching
3165 // braces.
3166 if (trypos == NULL && terminated == ','
3167 && find_last_paren(l, '{', '}'))
3168 trypos = find_start_brace();
3169
3170 if (trypos != NULL)
3171 {
3172 // Check if we are on a case label now. This is
3173 // handled above.
3174 // case xx: if ( asdf &&
3175 // asdf)
3176 curwin->w_cursor = *trypos;
3177 l = ml_get_curline();
3178 if (cin_iscase(l, FALSE) || cin_isscopedecl(l))
3179 {
3180 ++curwin->w_cursor.lnum;
3181 curwin->w_cursor.col = 0;
3182 continue;
3183 }
3184 }
3185
3186 // Skip over continuation lines to find the one to get the
3187 // indent from
3188 // char *usethis = "bla{backslash}
3189 // bla",
3190 // here;
3191 if (terminated == ',')
3192 {
3193 while (curwin->w_cursor.lnum > 1)
3194 {
3195 l = ml_get(curwin->w_cursor.lnum - 1);
3196 if (*l == NUL || l[STRLEN(l) - 1] != '\\')
3197 break;
3198 --curwin->w_cursor.lnum;
3199 curwin->w_cursor.col = 0;
3200 }
3201 }
3202
3203 // Get indent and pointer to text for current line,
3204 // ignoring any jump label. XXX
3205 if (curbuf->b_ind_js)
3206 cur_amount = get_indent();
3207 else
3208 cur_amount = skip_label(curwin->w_cursor.lnum, &l);
3209 // If this is just above the line we are indenting, and it
3210 // starts with a '{', line it up with this line.
3211 // while (not)
3212 // -> {
3213 // }
3214 if (terminated != ',' && lookfor != LOOKFOR_TERM
3215 && theline[0] == '{')
3216 {
3217 amount = cur_amount;
3218 // Only add b_ind_open_extra when the current line
3219 // doesn't start with a '{', which must have a match
3220 // in the same line (scope is the same). Probably:
3221 // { 1, 2 },
3222 // -> { 3, 4 }
3223 if (*skipwhite(l) != '{')
3224 amount += curbuf->b_ind_open_extra;
3225
3226 if (curbuf->b_ind_cpp_baseclass && !curbuf->b_ind_js)
3227 {
3228 // have to look back, whether it is a cpp base
3229 // class declaration or initialization
3230 lookfor = LOOKFOR_CPP_BASECLASS;
3231 continue;
3232 }
3233 break;
3234 }
3235
3236 // Check if we are after an "if", "while", etc.
3237 // Also allow " } else".
3238 if (cin_is_cinword(l) || cin_iselse(skipwhite(l)))
3239 {
3240 // Found an unterminated line after an if (), line up
3241 // with the last one.
3242 // if (cond)
3243 // 100 +
3244 // -> here;
3245 if (lookfor == LOOKFOR_UNTERM
3246 || lookfor == LOOKFOR_ENUM_OR_INIT)
3247 {
3248 if (cont_amount > 0)
3249 amount = cont_amount;
3250 else
3251 amount += ind_continuation;
3252 break;
3253 }
3254
3255 // If this is just above the line we are indenting, we
3256 // are finished.
3257 // while (not)
3258 // -> here;
3259 // Otherwise this indent can be used when the line
3260 // before this is terminated.
3261 // yyy;
3262 // if (stat)
3263 // while (not)
3264 // xxx;
3265 // -> here;
3266 amount = cur_amount;
3267 if (theline[0] == '{')
3268 amount += curbuf->b_ind_open_extra;
3269 if (lookfor != LOOKFOR_TERM)
3270 {
3271 amount += curbuf->b_ind_level
3272 + curbuf->b_ind_no_brace;
3273 break;
3274 }
3275
3276 // Special trick: when expecting the while () after a
3277 // do, line up with the while()
3278 // do
3279 // x = 1;
3280 // -> here
3281 l = skipwhite(ml_get_curline());
3282 if (cin_isdo(l))
3283 {
3284 if (whilelevel == 0)
3285 break;
3286 --whilelevel;
3287 }
3288
3289 // When searching for a terminated line, don't use the
3290 // one between the "if" and the matching "else".
3291 // Need to use the scope of this "else". XXX
3292 // If whilelevel != 0 continue looking for a "do {".
3293 if (cin_iselse(l) && whilelevel == 0)
3294 {
3295 // If we're looking at "} else", let's make sure we
3296 // find the opening brace of the enclosing scope,
3297 // not the one from "if () {".
3298 if (*l == '}')
3299 curwin->w_cursor.col =
3300 (colnr_T)(l - ml_get_curline()) + 1;
3301
3302 if ((trypos = find_start_brace()) == NULL
3303 || find_match(LOOKFOR_IF, trypos->lnum)
3304 == FAIL)
3305 break;
3306 }
3307 }
3308
3309 // If we're below an unterminated line that is not an
3310 // "if" or something, we may line up with this line or
3311 // add something for a continuation line, depending on
3312 // the line before this one.
3313 else
3314 {
3315 // Found two unterminated lines on a row, line up with
3316 // the last one.
3317 // c = 99 +
3318 // 100 +
3319 // -> here;
3320 if (lookfor == LOOKFOR_UNTERM)
3321 {
3322 // When line ends in a comma add extra indent
3323 if (terminated == ',')
3324 amount += ind_continuation;
3325 break;
3326 }
3327
3328 if (lookfor == LOOKFOR_ENUM_OR_INIT)
3329 {
3330 // Found two lines ending in ',', lineup with the
3331 // lowest one, but check for cpp base class
3332 // declaration/initialization, if it is an
3333 // opening brace or we are looking just for
3334 // enumerations/initializations.
3335 if (terminated == ',')
3336 {
3337 if (curbuf->b_ind_cpp_baseclass == 0)
3338 break;
3339
3340 lookfor = LOOKFOR_CPP_BASECLASS;
3341 continue;
3342 }
3343
3344 // Ignore unterminated lines in between, but
3345 // reduce indent.
3346 if (amount > cur_amount)
3347 amount = cur_amount;
3348 }
3349 else
3350 {
3351 // Found first unterminated line on a row, may
3352 // line up with this line, remember its indent
3353 // 100 +
3354 // -> here;
3355 l = ml_get_curline();
3356 amount = cur_amount;
3357
3358 n = (int)STRLEN(l);
3359 if (terminated == ',' && (*skipwhite(l) == ']'
3360 || (n >=2 && l[n - 2] == ']')))
3361 break;
3362
3363 // If previous line ends in ',', check whether we
3364 // are in an initialization or enum
3365 // struct xxx =
3366 // {
3367 // sizeof a,
3368 // 124 };
3369 // or a normal possible continuation line.
3370 // but only, of no other statement has been found
3371 // yet.
3372 if (lookfor == LOOKFOR_INITIAL && terminated == ',')
3373 {
3374 if (curbuf->b_ind_js)
3375 {
3376 // Search for a line ending in a comma
3377 // and line up with the line below it
3378 // (could be the current line).
3379 // some = [
3380 // 1, <- line up here
3381 // 2,
3382 // some = [
3383 // 3 + <- line up here
3384 // 4 *
3385 // 5,
3386 // 6,
3387 if (cin_iscomment(skipwhite(l)))
3388 break;
3389 lookfor = LOOKFOR_COMMA;
3390 trypos = find_match_char('[',
3391 curbuf->b_ind_maxparen);
3392 if (trypos != NULL)
3393 {
3394 if (trypos->lnum
3395 == curwin->w_cursor.lnum - 1)
3396 {
3397 // Current line is first inside
3398 // [], line up with it.
3399 break;
3400 }
3401 ourscope = trypos->lnum;
3402 }
3403 }
3404 else
3405 {
3406 lookfor = LOOKFOR_ENUM_OR_INIT;
3407 cont_amount = cin_first_id_amount();
3408 }
3409 }
3410 else
3411 {
3412 if (lookfor == LOOKFOR_INITIAL
3413 && *l != NUL
3414 && l[STRLEN(l) - 1] == '\\')
3415 // XXX
3416 cont_amount = cin_get_equal_amount(
3417 curwin->w_cursor.lnum);
3418 if (lookfor != LOOKFOR_TERM
3419 && lookfor != LOOKFOR_JS_KEY
3420 && lookfor != LOOKFOR_COMMA
3421 && raw_string_start != curwin->w_cursor.lnum)
3422 lookfor = LOOKFOR_UNTERM;
3423 }
3424 }
3425 }
3426 }
3427
3428 // Check if we are after a while (cond);
3429 // If so: Ignore until the matching "do".
3430 else if (cin_iswhileofdo_end(terminated)) // XXX
3431 {
3432 // Found an unterminated line after a while ();, line up
3433 // with the last one.
3434 // while (cond);
3435 // 100 + <- line up with this one
3436 // -> here;
3437 if (lookfor == LOOKFOR_UNTERM
3438 || lookfor == LOOKFOR_ENUM_OR_INIT)
3439 {
3440 if (cont_amount > 0)
3441 amount = cont_amount;
3442 else
3443 amount += ind_continuation;
3444 break;
3445 }
3446
3447 if (whilelevel == 0)
3448 {
3449 lookfor = LOOKFOR_TERM;
3450 amount = get_indent(); // XXX
3451 if (theline[0] == '{')
3452 amount += curbuf->b_ind_open_extra;
3453 }
3454 ++whilelevel;
3455 }
3456
3457 // We are after a "normal" statement.
3458 // If we had another statement we can stop now and use the
3459 // indent of that other statement.
3460 // Otherwise the indent of the current statement may be used,
3461 // search backwards for the next "normal" statement.
3462 else
3463 {
3464 // Skip single break line, if before a switch label. It
3465 // may be lined up with the case label.
3466 if (lookfor == LOOKFOR_NOBREAK
3467 && cin_isbreak(skipwhite(ml_get_curline())))
3468 {
3469 lookfor = LOOKFOR_ANY;
3470 continue;
3471 }
3472
3473 // Handle "do {" line.
3474 if (whilelevel > 0)
3475 {
3476 l = cin_skipcomment(ml_get_curline());
3477 if (cin_isdo(l))
3478 {
3479 amount = get_indent(); // XXX
3480 --whilelevel;
3481 continue;
3482 }
3483 }
3484
3485 // Found a terminated line above an unterminated line. Add
3486 // the amount for a continuation line.
3487 // x = 1;
3488 // y = foo +
3489 // -> here;
3490 // or
3491 // int x = 1;
3492 // int foo,
3493 // -> here;
3494 if (lookfor == LOOKFOR_UNTERM
3495 || lookfor == LOOKFOR_ENUM_OR_INIT)
3496 {
3497 if (cont_amount > 0)
3498 amount = cont_amount;
3499 else
3500 amount += ind_continuation;
3501 break;
3502 }
3503
3504 // Found a terminated line above a terminated line or "if"
3505 // etc. line. Use the amount of the line below us.
3506 // x = 1; x = 1;
3507 // if (asdf) y = 2;
3508 // while (asdf) ->here;
3509 // here;
3510 // ->foo;
3511 if (lookfor == LOOKFOR_TERM)
3512 {
3513 if (!lookfor_break && whilelevel == 0)
3514 break;
3515 }
3516
3517 // First line above the one we're indenting is terminated.
3518 // To know what needs to be done look further backward for
3519 // a terminated line.
3520 else
3521 {
3522 // position the cursor over the rightmost paren, so
3523 // that matching it will take us back to the start of
3524 // the line. Helps for:
3525 // func(asdr,
3526 // asdfasdf);
3527 // here;
3528term_again:
3529 l = ml_get_curline();
3530 if (find_last_paren(l, '(', ')')
3531 && (trypos = find_match_paren(
3532 curbuf->b_ind_maxparen)) != NULL)
3533 {
3534 // Check if we are on a case label now. This is
3535 // handled above.
3536 // case xx: if ( asdf &&
3537 // asdf)
3538 curwin->w_cursor = *trypos;
3539 l = ml_get_curline();
3540 if (cin_iscase(l, FALSE) || cin_isscopedecl(l))
3541 {
3542 ++curwin->w_cursor.lnum;
3543 curwin->w_cursor.col = 0;
3544 continue;
3545 }
3546 }
3547
3548 // When aligning with the case statement, don't align
3549 // with a statement after it.
3550 // case 1: { <-- don't use this { position
3551 // stat;
3552 // }
3553 // case 2:
3554 // stat;
3555 // }
3556 iscase = (curbuf->b_ind_keep_case_label
3557 && cin_iscase(l, FALSE));
3558
3559 // Get indent and pointer to text for current line,
3560 // ignoring any jump label.
3561 amount = skip_label(curwin->w_cursor.lnum, &l);
3562
3563 if (theline[0] == '{')
3564 amount += curbuf->b_ind_open_extra;
3565 // See remark above: "Only add b_ind_open_extra.."
3566 l = skipwhite(l);
3567 if (*l == '{')
3568 amount -= curbuf->b_ind_open_extra;
3569 lookfor = iscase ? LOOKFOR_ANY : LOOKFOR_TERM;
3570
3571 // When a terminated line starts with "else" skip to
3572 // the matching "if":
3573 // else 3;
3574 // indent this;
3575 // Need to use the scope of this "else". XXX
3576 // If whilelevel != 0 continue looking for a "do {".
3577 if (lookfor == LOOKFOR_TERM
3578 && *l != '}'
3579 && cin_iselse(l)
3580 && whilelevel == 0)
3581 {
3582 if ((trypos = find_start_brace()) == NULL
3583 || find_match(LOOKFOR_IF, trypos->lnum)
3584 == FAIL)
3585 break;
3586 continue;
3587 }
3588
3589 // If we're at the end of a block, skip to the start of
3590 // that block.
3591 l = ml_get_curline();
3592 if (find_last_paren(l, '{', '}') // XXX
3593 && (trypos = find_start_brace()) != NULL)
3594 {
3595 curwin->w_cursor = *trypos;
3596 // if not "else {" check for terminated again
3597 // but skip block for "} else {"
3598 l = cin_skipcomment(ml_get_curline());
3599 if (*l == '}' || !cin_iselse(l))
3600 goto term_again;
3601 ++curwin->w_cursor.lnum;
3602 curwin->w_cursor.col = 0;
3603 }
3604 }
3605 }
3606 }
3607 }
3608 }
3609
3610 // add extra indent for a comment
3611 if (cin_iscomment(theline))
3612 amount += curbuf->b_ind_comment;
3613
3614 // subtract extra left-shift for jump labels
3615 if (curbuf->b_ind_jump_label > 0 && original_line_islabel)
3616 amount -= curbuf->b_ind_jump_label;
3617
3618 goto theend;
3619 }
3620
3621 // ok -- we're not inside any sort of structure at all!
3622 //
3623 // This means we're at the top level, and everything should
3624 // basically just match where the previous line is, except
3625 // for the lines immediately following a function declaration,
3626 // which are K&R-style parameters and need to be indented.
3627 //
3628 // if our line starts with an open brace, forget about any
3629 // prevailing indent and make sure it looks like the start
3630 // of a function
3631
3632 if (theline[0] == '{')
3633 {
3634 amount = curbuf->b_ind_first_open;
3635 goto theend;
3636 }
3637
3638 // If the NEXT line is a function declaration, the current
3639 // line needs to be indented as a function type spec.
3640 // Don't do this if the current line looks like a comment or if the
3641 // current line is terminated, ie. ends in ';', or if the current line
3642 // contains { or }: "void f() {\n if (1)"
3643 if (cur_curpos.lnum < curbuf->b_ml.ml_line_count
3644 && !cin_nocode(theline)
3645 && vim_strchr(theline, '{') == NULL
3646 && vim_strchr(theline, '}') == NULL
3647 && !cin_ends_in(theline, (char_u *)":", NULL)
3648 && !cin_ends_in(theline, (char_u *)",", NULL)
3649 && cin_isfuncdecl(NULL, cur_curpos.lnum + 1,
3650 cur_curpos.lnum + 1)
3651 && !cin_isterminated(theline, FALSE, TRUE))
3652 {
3653 amount = curbuf->b_ind_func_type;
3654 goto theend;
3655 }
3656
3657 // search backwards until we find something we recognize
3658 amount = 0;
3659 curwin->w_cursor = cur_curpos;
3660 while (curwin->w_cursor.lnum > 1)
3661 {
3662 curwin->w_cursor.lnum--;
3663 curwin->w_cursor.col = 0;
3664
3665 l = ml_get_curline();
3666
3667 // If we're in a comment or raw string now, skip to the start
3668 // of it. XXX
3669 if ((trypos = ind_find_start_CORS(NULL)) != NULL)
3670 {
3671 curwin->w_cursor.lnum = trypos->lnum + 1;
3672 curwin->w_cursor.col = 0;
3673 continue;
3674 }
3675
3676 // Are we at the start of a cpp base class declaration or
3677 // constructor initialization? XXX
3678 n = FALSE;
3679 if (curbuf->b_ind_cpp_baseclass != 0 && theline[0] != '{')
3680 {
3681 n = cin_is_cpp_baseclass(&cache_cpp_baseclass);
3682 l = ml_get_curline();
3683 }
3684 if (n)
3685 {
3686 // XXX
3687 amount = get_baseclass_amount(cache_cpp_baseclass.lpos.col);
3688 break;
3689 }
3690
3691 // Skip preprocessor directives and blank lines.
3692 if (cin_ispreproc_cont(&l, &curwin->w_cursor.lnum, &amount))
3693 continue;
3694
3695 if (cin_nocode(l))
3696 continue;
3697
3698 // If the previous line ends in ',', use one level of
3699 // indentation:
3700 // int foo,
3701 // bar;
3702 // do this before checking for '}' in case of eg.
3703 // enum foobar
3704 // {
3705 // ...
3706 // } foo,
3707 // bar;
3708 n = 0;
3709 if (cin_ends_in(l, (char_u *)",", NULL)
3710 || (*l != NUL && (n = l[STRLEN(l) - 1]) == '\\'))
3711 {
3712 // take us back to opening paren
3713 if (find_last_paren(l, '(', ')')
3714 && (trypos = find_match_paren(
3715 curbuf->b_ind_maxparen)) != NULL)
3716 curwin->w_cursor = *trypos;
3717
3718 // For a line ending in ',' that is a continuation line go
3719 // back to the first line with a backslash:
3720 // char *foo = "bla{backslash}
3721 // bla",
3722 // here;
3723 while (n == 0 && curwin->w_cursor.lnum > 1)
3724 {
3725 l = ml_get(curwin->w_cursor.lnum - 1);
3726 if (*l == NUL || l[STRLEN(l) - 1] != '\\')
3727 break;
3728 --curwin->w_cursor.lnum;
3729 curwin->w_cursor.col = 0;
3730 }
3731
3732 amount = get_indent(); // XXX
3733
3734 if (amount == 0)
3735 amount = cin_first_id_amount();
3736 if (amount == 0)
3737 amount = ind_continuation;
3738 break;
3739 }
3740
3741 // If the line looks like a function declaration, and we're
3742 // not in a comment, put it the left margin.
3743 if (cin_isfuncdecl(NULL, cur_curpos.lnum, 0)) // XXX
3744 break;
3745 l = ml_get_curline();
3746
3747 // Finding the closing '}' of a previous function. Put
3748 // current line at the left margin. For when 'cino' has "fs".
3749 if (*skipwhite(l) == '}')
3750 break;
3751
3752 // (matching {)
3753 // If the previous line ends on '};' (maybe followed by
3754 // comments) align at column 0. For example:
3755 // char *string_array[] = { "foo",
3756 // / * x * / "b};ar" }; / * foobar * /
3757 if (cin_ends_in(l, (char_u *)"};", NULL))
3758 break;
3759
3760 // If the previous line ends on '[' we are probably in an
3761 // array constant:
3762 // something = [
3763 // 234, <- extra indent
3764 if (cin_ends_in(l, (char_u *)"[", NULL))
3765 {
3766 amount = get_indent() + ind_continuation;
3767 break;
3768 }
3769
3770 // Find a line only has a semicolon that belongs to a previous
3771 // line ending in '}', e.g. before an #endif. Don't increase
3772 // indent then.
3773 if (*(look = skipwhite(l)) == ';' && cin_nocode(look + 1))
3774 {
3775 pos_T curpos_save = curwin->w_cursor;
3776
3777 while (curwin->w_cursor.lnum > 1)
3778 {
3779 look = ml_get(--curwin->w_cursor.lnum);
3780 if (!(cin_nocode(look) || cin_ispreproc_cont(
3781 &look, &curwin->w_cursor.lnum, &amount)))
3782 break;
3783 }
3784 if (curwin->w_cursor.lnum > 0
3785 && cin_ends_in(look, (char_u *)"}", NULL))
3786 break;
3787
3788 curwin->w_cursor = curpos_save;
3789 }
3790
3791 // If the PREVIOUS line is a function declaration, the current
3792 // line (and the ones that follow) needs to be indented as
3793 // parameters.
3794 if (cin_isfuncdecl(&l, curwin->w_cursor.lnum, 0))
3795 {
3796 amount = curbuf->b_ind_param;
3797 break;
3798 }
3799
3800 // If the previous line ends in ';' and the line before the
3801 // previous line ends in ',' or '\', ident to column zero:
3802 // int foo,
3803 // bar;
3804 // indent_to_0 here;
3805 if (cin_ends_in(l, (char_u *)";", NULL))
3806 {
3807 l = ml_get(curwin->w_cursor.lnum - 1);
3808 if (cin_ends_in(l, (char_u *)",", NULL)
3809 || (*l != NUL && l[STRLEN(l) - 1] == '\\'))
3810 break;
3811 l = ml_get_curline();
3812 }
3813
3814 // Doesn't look like anything interesting -- so just
3815 // use the indent of this line.
3816 //
3817 // Position the cursor over the rightmost paren, so that
3818 // matching it will take us back to the start of the line.
3819 find_last_paren(l, '(', ')');
3820
3821 if ((trypos = find_match_paren(curbuf->b_ind_maxparen)) != NULL)
3822 curwin->w_cursor = *trypos;
3823 amount = get_indent(); // XXX
3824 break;
3825 }
3826
3827 // add extra indent for a comment
3828 if (cin_iscomment(theline))
3829 amount += curbuf->b_ind_comment;
3830
3831 // add extra indent if the previous line ended in a backslash:
3832 // "asdfasdf{backslash}
3833 // here";
3834 // char *foo = "asdf{backslash}
3835 // here";
3836 if (cur_curpos.lnum > 1)
3837 {
3838 l = ml_get(cur_curpos.lnum - 1);
3839 if (*l != NUL && l[STRLEN(l) - 1] == '\\')
3840 {
3841 cur_amount = cin_get_equal_amount(cur_curpos.lnum - 1);
3842 if (cur_amount > 0)
3843 amount = cur_amount;
3844 else if (cur_amount == 0)
3845 amount += ind_continuation;
3846 }
3847 }
3848
3849theend:
3850 if (amount < 0)
3851 amount = 0;
3852
3853laterend:
3854 // put the cursor back where it belongs
3855 curwin->w_cursor = cur_curpos;
3856
3857 vim_free(linecopy);
3858
3859 return amount;
3860}
3861
3862/*
3863 * return TRUE if 'cinkeys' contains the key "keytyped",
3864 * when == '*': Only if key is preceded with '*' (indent before insert)
3865 * when == '!': Only if key is preceded with '!' (don't insert)
3866 * when == ' ': Only if key is not preceded with '*'(indent afterwards)
3867 *
3868 * "keytyped" can have a few special values:
3869 * KEY_OPEN_FORW
3870 * KEY_OPEN_BACK
3871 * KEY_COMPLETE just finished completion.
3872 *
3873 * If line_is_empty is TRUE accept keys with '0' before them.
3874 */
3875 int
3876in_cinkeys(
3877 int keytyped,
3878 int when,
3879 int line_is_empty)
3880{
3881 char_u *look;
3882 int try_match;
3883 int try_match_word;
3884 char_u *p;
3885 char_u *line;
3886 int icase;
3887 int i;
3888
3889 if (keytyped == NUL)
3890 // Can happen with CTRL-Y and CTRL-E on a short line.
3891 return FALSE;
3892
3893#ifdef FEAT_EVAL
3894 if (*curbuf->b_p_inde != NUL)
3895 look = curbuf->b_p_indk; // 'indentexpr' set: use 'indentkeys'
3896 else
3897#endif
3898 look = curbuf->b_p_cink; // 'indentexpr' empty: use 'cinkeys'
3899 while (*look)
3900 {
3901 // Find out if we want to try a match with this key, depending on
3902 // 'when' and a '*' or '!' before the key.
3903 switch (when)
3904 {
3905 case '*': try_match = (*look == '*'); break;
3906 case '!': try_match = (*look == '!'); break;
3907 default: try_match = (*look != '*'); break;
3908 }
3909 if (*look == '*' || *look == '!')
3910 ++look;
3911
3912 // If there is a '0', only accept a match if the line is empty.
3913 // But may still match when typing last char of a word.
3914 if (*look == '0')
3915 {
3916 try_match_word = try_match;
3917 if (!line_is_empty)
3918 try_match = FALSE;
3919 ++look;
3920 }
3921 else
3922 try_match_word = FALSE;
3923
3924 // does it look like a control character?
3925 if (*look == '^'
3926#ifdef EBCDIC
3927 && (Ctrl_chr(look[1]) != 0)
3928#else
3929 && look[1] >= '?' && look[1] <= '_'
3930#endif
3931 )
3932 {
3933 if (try_match && keytyped == Ctrl_chr(look[1]))
3934 return TRUE;
3935 look += 2;
3936 }
3937 // 'o' means "o" command, open forward.
3938 // 'O' means "O" command, open backward.
3939 else if (*look == 'o')
3940 {
3941 if (try_match && keytyped == KEY_OPEN_FORW)
3942 return TRUE;
3943 ++look;
3944 }
3945 else if (*look == 'O')
3946 {
3947 if (try_match && keytyped == KEY_OPEN_BACK)
3948 return TRUE;
3949 ++look;
3950 }
3951
3952 // 'e' means to check for "else" at start of line and just before the
3953 // cursor.
3954 else if (*look == 'e')
3955 {
3956 if (try_match && keytyped == 'e' && curwin->w_cursor.col >= 4)
3957 {
3958 p = ml_get_curline();
3959 if (skipwhite(p) == p + curwin->w_cursor.col - 4 &&
3960 STRNCMP(p + curwin->w_cursor.col - 4, "else", 4) == 0)
3961 return TRUE;
3962 }
3963 ++look;
3964 }
3965
3966 // ':' only causes an indent if it is at the end of a label or case
3967 // statement, or when it was before typing the ':' (to fix
3968 // class::method for C++).
3969 else if (*look == ':')
3970 {
3971 if (try_match && keytyped == ':')
3972 {
3973 p = ml_get_curline();
3974 if (cin_iscase(p, FALSE) || cin_isscopedecl(p) || cin_islabel())
3975 return TRUE;
3976 // Need to get the line again after cin_islabel().
3977 p = ml_get_curline();
3978 if (curwin->w_cursor.col > 2
3979 && p[curwin->w_cursor.col - 1] == ':'
3980 && p[curwin->w_cursor.col - 2] == ':')
3981 {
3982 p[curwin->w_cursor.col - 1] = ' ';
3983 i = (cin_iscase(p, FALSE) || cin_isscopedecl(p)
3984 || cin_islabel());
3985 p = ml_get_curline();
3986 p[curwin->w_cursor.col - 1] = ':';
3987 if (i)
3988 return TRUE;
3989 }
3990 }
3991 ++look;
3992 }
3993
3994
3995 // Is it a key in <>, maybe?
3996 else if (*look == '<')
3997 {
3998 if (try_match)
3999 {
4000 // make up some named keys <o>, <O>, <e>, <0>, <>>, <<>, <*>,
4001 // <:> and <!> so that people can re-indent on o, O, e, 0, <,
4002 // >, *, : and ! keys if they really really want to.
4003 if (vim_strchr((char_u *)"<>!*oOe0:", look[1]) != NULL
4004 && keytyped == look[1])
4005 return TRUE;
4006
4007 if (keytyped == get_special_key_code(look + 1))
4008 return TRUE;
4009 }
4010 while (*look && *look != '>')
4011 look++;
4012 while (*look == '>')
4013 look++;
4014 }
4015
4016 // Is it a word: "=word"?
4017 else if (*look == '=' && look[1] != ',' && look[1] != NUL)
4018 {
4019 ++look;
4020 if (*look == '~')
4021 {
4022 icase = TRUE;
4023 ++look;
4024 }
4025 else
4026 icase = FALSE;
4027 p = vim_strchr(look, ',');
4028 if (p == NULL)
4029 p = look + STRLEN(look);
4030 if ((try_match || try_match_word)
4031 && curwin->w_cursor.col >= (colnr_T)(p - look))
4032 {
4033 int match = FALSE;
4034
4035 if (keytyped == KEY_COMPLETE)
4036 {
4037 char_u *s;
4038
4039 // Just completed a word, check if it starts with "look".
4040 // search back for the start of a word.
4041 line = ml_get_curline();
4042 if (has_mbyte)
4043 {
4044 char_u *n;
4045
4046 for (s = line + curwin->w_cursor.col; s > line; s = n)
4047 {
4048 n = mb_prevptr(line, s);
4049 if (!vim_iswordp(n))
4050 break;
4051 }
4052 }
4053 else
4054 for (s = line + curwin->w_cursor.col; s > line; --s)
4055 if (!vim_iswordc(s[-1]))
4056 break;
4057 if (s + (p - look) <= line + curwin->w_cursor.col
4058 && (icase
4059 ? MB_STRNICMP(s, look, p - look)
4060 : STRNCMP(s, look, p - look)) == 0)
4061 match = TRUE;
4062 }
4063 else
4064 // TODO: multi-byte
4065 if (keytyped == (int)p[-1] || (icase && keytyped < 256
4066 && TOLOWER_LOC(keytyped) == TOLOWER_LOC((int)p[-1])))
4067 {
4068 line = ml_get_cursor();
4069 if ((curwin->w_cursor.col == (colnr_T)(p - look)
4070 || !vim_iswordc(line[-(p - look) - 1]))
4071 && (icase
4072 ? MB_STRNICMP(line - (p - look), look, p - look)
4073 : STRNCMP(line - (p - look), look, p - look))
4074 == 0)
4075 match = TRUE;
4076 }
4077 if (match && try_match_word && !try_match)
4078 {
4079 // "0=word": Check if there are only blanks before the
4080 // word.
4081 if (getwhitecols_curline() !=
4082 (int)(curwin->w_cursor.col - (p - look)))
4083 match = FALSE;
4084 }
4085 if (match)
4086 return TRUE;
4087 }
4088 look = p;
4089 }
4090
4091 // ok, it's a boring generic character.
4092 else
4093 {
4094 if (try_match && *look == keytyped)
4095 return TRUE;
4096 if (*look != NUL)
4097 ++look;
4098 }
4099
4100 // Skip over ", ".
4101 look = skip_to_option_part(look);
4102 }
4103 return FALSE;
4104}
4105
4106/*
4107 * Do C or expression indenting on the current line.
4108 */
4109 void
4110do_c_expr_indent(void)
4111{
4112# ifdef FEAT_EVAL
4113 if (*curbuf->b_p_inde != NUL)
4114 fixthisline(get_expr_indent);
4115 else
4116# endif
4117 fixthisline(get_c_indent);
4118}
4119#endif
4120
4121#if defined(FEAT_EVAL) || defined(PROTO)
4122/*
4123 * "cindent(lnum)" function
4124 */
4125 void
4126f_cindent(typval_T *argvars UNUSED, typval_T *rettv)
4127{
4128# ifdef FEAT_CINDENT
4129 pos_T pos;
4130 linenr_T lnum;
4131
Yegappan Lakshmanan4490ec42021-07-27 22:00:44 +02004132 if (in_vim9script() && check_for_lnum_arg(argvars, 0) == FAIL)
4133 return;
4134
Bram Moolenaar14c01f82019-10-09 22:53:08 +02004135 pos = curwin->w_cursor;
4136 lnum = tv_get_lnum(argvars);
4137 if (lnum >= 1 && lnum <= curbuf->b_ml.ml_line_count)
4138 {
4139 curwin->w_cursor.lnum = lnum;
4140 rettv->vval.v_number = get_c_indent();
4141 curwin->w_cursor = pos;
4142 }
4143 else
4144# endif
4145 rettv->vval.v_number = -1;
4146}
4147#endif