xref: /vim-8.2.3635/src/fold.c (revision e48a2dd3)
1 /* vim:set ts=8 sts=4 sw=4:
2  * vim600:fdm=marker fdl=1 fdc=3:
3  *
4  * VIM - Vi IMproved	by Bram Moolenaar
5  *
6  * Do ":help uganda"  in Vim to read copying and usage conditions.
7  * Do ":help credits" in Vim to see a list of people who contributed.
8  * See README.txt for an overview of the Vim source code.
9  */
10 
11 /*
12  * fold.c: code for folding
13  */
14 
15 #include "vim.h"
16 
17 #if defined(FEAT_FOLDING) || defined(PROTO)
18 
19 /* local declarations. {{{1 */
20 /* typedef fold_T {{{2 */
21 /*
22  * The toplevel folds for each window are stored in the w_folds growarray.
23  * Each toplevel fold can contain an array of second level folds in the
24  * fd_nested growarray.
25  * The info stored in both growarrays is the same: An array of fold_T.
26  */
27 typedef struct
28 {
29     linenr_T	fd_top;		/* first line of fold; for nested fold
30 				 * relative to parent */
31     linenr_T	fd_len;		/* number of lines in the fold */
32     garray_T	fd_nested;	/* array of nested folds */
33     char	fd_flags;	/* see below */
34     char	fd_small;	/* TRUE, FALSE or MAYBE: fold smaller than
35 				   'foldminlines'; MAYBE applies to nested
36 				   folds too */
37 } fold_T;
38 
39 #define FD_OPEN		0	/* fold is open (nested ones can be closed) */
40 #define FD_CLOSED	1	/* fold is closed */
41 #define FD_LEVEL	2	/* depends on 'foldlevel' (nested folds too) */
42 
43 #define MAX_LEVEL	20	/* maximum fold depth */
44 
45 /* static functions {{{2 */
46 static void newFoldLevelWin __ARGS((win_T *wp));
47 static int checkCloseRec __ARGS((garray_T *gap, linenr_T lnum, int level));
48 static int foldFind __ARGS((garray_T *gap, linenr_T lnum, fold_T **fpp));
49 static int foldLevelWin __ARGS((win_T *wp, linenr_T lnum));
50 static void checkupdate __ARGS((win_T *wp));
51 static void setFoldRepeat __ARGS((linenr_T lnum, long count, int do_open));
52 static linenr_T setManualFold __ARGS((linenr_T lnum, int opening, int recurse, int *donep));
53 static linenr_T setManualFoldWin __ARGS((win_T *wp, linenr_T lnum, int opening, int recurse, int *donep));
54 static void foldOpenNested __ARGS((fold_T *fpr));
55 static void deleteFoldEntry __ARGS((garray_T *gap, int idx, int recursive));
56 static void foldMarkAdjustRecurse __ARGS((garray_T *gap, linenr_T line1, linenr_T line2, long amount, long amount_after));
57 static int getDeepestNestingRecurse __ARGS((garray_T *gap));
58 static int check_closed __ARGS((win_T *win, fold_T *fp, int *use_levelp, int level, int *maybe_smallp, linenr_T lnum_off));
59 static void checkSmall __ARGS((win_T *wp, fold_T *fp, linenr_T lnum_off));
60 static void setSmallMaybe __ARGS((garray_T *gap));
61 static void foldCreateMarkers __ARGS((linenr_T start, linenr_T end));
62 static void foldAddMarker __ARGS((linenr_T lnum, char_u *marker, int markerlen));
63 static void deleteFoldMarkers __ARGS((fold_T *fp, int recursive, linenr_T lnum_off));
64 static void foldDelMarker __ARGS((linenr_T lnum, char_u *marker, int markerlen));
65 static void foldUpdateIEMS __ARGS((win_T *wp, linenr_T top, linenr_T bot));
66 static void parseMarker __ARGS((win_T *wp));
67 
68 static char *e_nofold = N_("E490: No fold found");
69 
70 /*
71  * While updating the folds lines between invalid_top and invalid_bot have an
72  * undefined fold level.  Only used for the window currently being updated.
73  */
74 static linenr_T invalid_top = (linenr_T)0;
75 static linenr_T invalid_bot = (linenr_T)0;
76 
77 /*
78  * When using 'foldexpr' we sometimes get the level of the next line, which
79  * calls foldlevel() to get the level of the current line, which hasn't been
80  * stored yet.  To get around this chicken-egg problem the level of the
81  * previous line is stored here when available.  prev_lnum is zero when the
82  * level is not available.
83  */
84 static linenr_T prev_lnum = 0;
85 static int prev_lnum_lvl = -1;
86 
87 /* Flags used for "done" argument of setManualFold. */
88 #define DONE_NOTHING	0
89 #define DONE_ACTION	1	/* did close or open a fold */
90 #define DONE_FOLD	2	/* did find a fold */
91 
92 static int foldstartmarkerlen;
93 static char_u *foldendmarker;
94 static int foldendmarkerlen;
95 
96 /* Exported folding functions. {{{1 */
97 /* copyFoldingState() {{{2 */
98 #if defined(FEAT_WINDOWS) || defined(PROTO)
99 /*
100  * Copy that folding state from window "wp_from" to window "wp_to".
101  */
102     void
103 copyFoldingState(wp_from, wp_to)
104     win_T	*wp_from;
105     win_T	*wp_to;
106 {
107     wp_to->w_fold_manual = wp_from->w_fold_manual;
108     wp_to->w_foldinvalid = wp_from->w_foldinvalid;
109     cloneFoldGrowArray(&wp_from->w_folds, &wp_to->w_folds);
110 }
111 #endif
112 
113 /* hasAnyFolding() {{{2 */
114 /*
115  * Return TRUE if there may be folded lines in the current window.
116  */
117     int
118 hasAnyFolding(win)
119     win_T	*win;
120 {
121     /* very simple now, but can become more complex later */
122     return (win->w_p_fen
123 	    && (!foldmethodIsManual(win) || win->w_folds.ga_len > 0));
124 }
125 
126 /* hasFolding() {{{2 */
127 /*
128  * Return TRUE if line "lnum" in the current window is part of a closed
129  * fold.
130  * When returning TRUE, *firstp and *lastp are set to the first and last
131  * lnum of the sequence of folded lines (skipped when NULL).
132  */
133     int
134 hasFolding(lnum, firstp, lastp)
135     linenr_T	lnum;
136     linenr_T	*firstp;
137     linenr_T	*lastp;
138 {
139     return hasFoldingWin(curwin, lnum, firstp, lastp, TRUE, NULL);
140 }
141 
142 /* hasFoldingWin() {{{2 */
143     int
144 hasFoldingWin(win, lnum, firstp, lastp, cache, infop)
145     win_T	*win;
146     linenr_T	lnum;
147     linenr_T	*firstp;
148     linenr_T	*lastp;
149     int		cache;		/* when TRUE: use cached values of window */
150     foldinfo_T	*infop;		/* where to store fold info */
151 {
152     int		had_folded = FALSE;
153     linenr_T	first = 0;
154     linenr_T	last = 0;
155     linenr_T	lnum_rel = lnum;
156     int		x;
157     fold_T	*fp;
158     int		level = 0;
159     int		use_level = FALSE;
160     int		maybe_small = FALSE;
161     garray_T	*gap;
162     int		low_level = 0;;
163 
164     checkupdate(win);
165     /*
166      * Return quickly when there is no folding at all in this window.
167      */
168     if (!hasAnyFolding(win))
169     {
170 	if (infop != NULL)
171 	    infop->fi_level = 0;
172 	return FALSE;
173     }
174 
175     if (cache)
176     {
177 	/*
178 	 * First look in cached info for displayed lines.  This is probably
179 	 * the fastest, but it can only be used if the entry is still valid.
180 	 */
181 	x = find_wl_entry(win, lnum);
182 	if (x >= 0)
183 	{
184 	    first = win->w_lines[x].wl_lnum;
185 	    last = win->w_lines[x].wl_lastlnum;
186 	    had_folded = win->w_lines[x].wl_folded;
187 	}
188     }
189 
190     if (first == 0)
191     {
192 	/*
193 	 * Recursively search for a fold that contains "lnum".
194 	 */
195 	gap = &win->w_folds;
196 	for (;;)
197 	{
198 	    if (!foldFind(gap, lnum_rel, &fp))
199 		break;
200 
201 	    /* Remember lowest level of fold that starts in "lnum". */
202 	    if (lnum_rel == fp->fd_top && low_level == 0)
203 		low_level = level + 1;
204 
205 	    first += fp->fd_top;
206 	    last += fp->fd_top;
207 
208 	    /* is this fold closed? */
209 	    had_folded = check_closed(win, fp, &use_level, level,
210 					       &maybe_small, lnum - lnum_rel);
211 	    if (had_folded)
212 	    {
213 		/* Fold closed: Set last and quit loop. */
214 		last += fp->fd_len - 1;
215 		break;
216 	    }
217 
218 	    /* Fold found, but it's open: Check nested folds.  Line number is
219 	     * relative to containing fold. */
220 	    gap = &fp->fd_nested;
221 	    lnum_rel -= fp->fd_top;
222 	    ++level;
223 	}
224     }
225 
226     if (!had_folded)
227     {
228 	if (infop != NULL)
229 	{
230 	    infop->fi_level = level;
231 	    infop->fi_lnum = lnum - lnum_rel;
232 	    infop->fi_low_level = low_level == 0 ? level : low_level;
233 	}
234 	return FALSE;
235     }
236 
237     if (lastp != NULL)
238 	*lastp = last;
239     if (firstp != NULL)
240 	*firstp = first;
241     if (infop != NULL)
242     {
243 	infop->fi_level = level + 1;
244 	infop->fi_lnum = first;
245 	infop->fi_low_level = low_level == 0 ? level + 1 : low_level;
246     }
247     return TRUE;
248 }
249 
250 /* foldLevel() {{{2 */
251 /*
252  * Return fold level at line number "lnum" in the current window.
253  */
254     int
255 foldLevel(lnum)
256     linenr_T	lnum;
257 {
258     /* While updating the folds lines between invalid_top and invalid_bot have
259      * an undefined fold level.  Otherwise update the folds first. */
260     if (invalid_top == (linenr_T)0)
261 	checkupdate(curwin);
262     else if (lnum == prev_lnum && prev_lnum_lvl >= 0)
263 	return prev_lnum_lvl;
264     else if (lnum >= invalid_top && lnum <= invalid_bot)
265 	return -1;
266 
267     /* Return quickly when there is no folding at all in this window. */
268     if (!hasAnyFolding(curwin))
269 	return 0;
270 
271     return foldLevelWin(curwin, lnum);
272 }
273 
274 /* lineFolded()	{{{2 */
275 /*
276  * Low level function to check if a line is folded.  Doesn't use any caching.
277  * Return TRUE if line is folded.
278  * Return FALSE if line is not folded.
279  * Return MAYBE if the line is folded when next to a folded line.
280  */
281     int
282 lineFolded(win, lnum)
283     win_T	*win;
284     linenr_T	lnum;
285 {
286     return foldedCount(win, lnum, NULL) != 0;
287 }
288 
289 /* foldedCount() {{{2 */
290 /*
291  * Count the number of lines that are folded at line number "lnum".
292  * Normally "lnum" is the first line of a possible fold, and the returned
293  * number is the number of lines in the fold.
294  * Doesn't use caching from the displayed window.
295  * Returns number of folded lines from "lnum", or 0 if line is not folded.
296  * When "infop" is not NULL, fills *infop with the fold level info.
297  */
298     long
299 foldedCount(win, lnum, infop)
300     win_T	*win;
301     linenr_T	lnum;
302     foldinfo_T	*infop;
303 {
304     linenr_T	last;
305 
306     if (hasFoldingWin(win, lnum, NULL, &last, FALSE, infop))
307 	return (long)(last - lnum + 1);
308     return 0;
309 }
310 
311 /* foldmethodIsManual() {{{2 */
312 /*
313  * Return TRUE if 'foldmethod' is "manual"
314  */
315     int
316 foldmethodIsManual(wp)
317     win_T	*wp;
318 {
319     return (wp->w_p_fdm[3] == 'u');
320 }
321 
322 /* foldmethodIsIndent() {{{2 */
323 /*
324  * Return TRUE if 'foldmethod' is "indent"
325  */
326     int
327 foldmethodIsIndent(wp)
328     win_T	*wp;
329 {
330     return (wp->w_p_fdm[0] == 'i');
331 }
332 
333 /* foldmethodIsExpr() {{{2 */
334 /*
335  * Return TRUE if 'foldmethod' is "expr"
336  */
337     int
338 foldmethodIsExpr(wp)
339     win_T	*wp;
340 {
341     return (wp->w_p_fdm[1] == 'x');
342 }
343 
344 /* foldmethodIsMarker() {{{2 */
345 /*
346  * Return TRUE if 'foldmethod' is "marker"
347  */
348     int
349 foldmethodIsMarker(wp)
350     win_T	*wp;
351 {
352     return (wp->w_p_fdm[2] == 'r');
353 }
354 
355 /* foldmethodIsSyntax() {{{2 */
356 /*
357  * Return TRUE if 'foldmethod' is "syntax"
358  */
359     int
360 foldmethodIsSyntax(wp)
361     win_T	*wp;
362 {
363     return (wp->w_p_fdm[0] == 's');
364 }
365 
366 /* foldmethodIsDiff() {{{2 */
367 /*
368  * Return TRUE if 'foldmethod' is "diff"
369  */
370     int
371 foldmethodIsDiff(wp)
372     win_T	*wp;
373 {
374     return (wp->w_p_fdm[0] == 'd');
375 }
376 
377 /* closeFold() {{{2 */
378 /*
379  * Close fold for current window at line "lnum".
380  * Repeat "count" times.
381  */
382     void
383 closeFold(lnum, count)
384     linenr_T	lnum;
385     long	count;
386 {
387     setFoldRepeat(lnum, count, FALSE);
388 }
389 
390 /* closeFoldRecurse() {{{2 */
391 /*
392  * Close fold for current window at line "lnum" recursively.
393  */
394     void
395 closeFoldRecurse(lnum)
396     linenr_T	lnum;
397 {
398     (void)setManualFold(lnum, FALSE, TRUE, NULL);
399 }
400 
401 /* opFoldRange() {{{2 */
402 /*
403  * Open or Close folds for current window in lines "first" to "last".
404  * Used for "zo", "zO", "zc" and "zC" in Visual mode.
405  */
406     void
407 opFoldRange(first, last, opening, recurse, had_visual)
408     linenr_T	first;
409     linenr_T	last;
410     int		opening;	/* TRUE to open, FALSE to close */
411     int		recurse;	/* TRUE to do it recursively */
412     int		had_visual;	/* TRUE when Visual selection used */
413 {
414     int		done = DONE_NOTHING;	/* avoid error messages */
415     linenr_T	lnum;
416     linenr_T	lnum_next;
417 
418     for (lnum = first; lnum <= last; lnum = lnum_next + 1)
419     {
420 	lnum_next = lnum;
421 	/* Opening one level only: next fold to open is after the one going to
422 	 * be opened. */
423 	if (opening && !recurse)
424 	    (void)hasFolding(lnum, NULL, &lnum_next);
425 	(void)setManualFold(lnum, opening, recurse, &done);
426 	/* Closing one level only: next line to close a fold is after just
427 	 * closed fold. */
428 	if (!opening && !recurse)
429 	    (void)hasFolding(lnum, NULL, &lnum_next);
430     }
431     if (done == DONE_NOTHING)
432 	EMSG(_(e_nofold));
433 #ifdef FEAT_VISUAL
434     /* Force a redraw to remove the Visual highlighting. */
435     if (had_visual)
436 	redraw_curbuf_later(INVERTED);
437 #endif
438 }
439 
440 /* openFold() {{{2 */
441 /*
442  * Open fold for current window at line "lnum".
443  * Repeat "count" times.
444  */
445     void
446 openFold(lnum, count)
447     linenr_T	lnum;
448     long	count;
449 {
450     setFoldRepeat(lnum, count, TRUE);
451 }
452 
453 /* openFoldRecurse() {{{2 */
454 /*
455  * Open fold for current window at line "lnum" recursively.
456  */
457     void
458 openFoldRecurse(lnum)
459     linenr_T	lnum;
460 {
461     (void)setManualFold(lnum, TRUE, TRUE, NULL);
462 }
463 
464 /* foldOpenCursor() {{{2 */
465 /*
466  * Open folds until the cursor line is not in a closed fold.
467  */
468     void
469 foldOpenCursor()
470 {
471     int		done;
472 
473     checkupdate(curwin);
474     if (hasAnyFolding(curwin))
475 	for (;;)
476 	{
477 	    done = DONE_NOTHING;
478 	    (void)setManualFold(curwin->w_cursor.lnum, TRUE, FALSE, &done);
479 	    if (!(done & DONE_ACTION))
480 		break;
481 	}
482 }
483 
484 /* newFoldLevel() {{{2 */
485 /*
486  * Set new foldlevel for current window.
487  */
488     void
489 newFoldLevel()
490 {
491     newFoldLevelWin(curwin);
492 
493 #ifdef FEAT_DIFF
494     if (foldmethodIsDiff(curwin) && curwin->w_p_scb)
495     {
496 	win_T	    *wp;
497 
498 	/*
499 	 * Set the same foldlevel in other windows in diff mode.
500 	 */
501 	FOR_ALL_WINDOWS(wp)
502 	{
503 	    if (wp != curwin && foldmethodIsDiff(wp) && wp->w_p_scb)
504 	    {
505 		wp->w_p_fdl = curwin->w_p_fdl;
506 		newFoldLevelWin(wp);
507 	    }
508 	}
509     }
510 #endif
511 }
512 
513     static void
514 newFoldLevelWin(wp)
515     win_T	*wp;
516 {
517     fold_T	*fp;
518     int		i;
519 
520     checkupdate(wp);
521     if (wp->w_fold_manual)
522     {
523 	/* Set all flags for the first level of folds to FD_LEVEL.  Following
524 	 * manual open/close will then change the flags to FD_OPEN or
525 	 * FD_CLOSED for those folds that don't use 'foldlevel'. */
526 	fp = (fold_T *)wp->w_folds.ga_data;
527 	for (i = 0; i < wp->w_folds.ga_len; ++i)
528 	    fp[i].fd_flags = FD_LEVEL;
529 	wp->w_fold_manual = FALSE;
530     }
531     changed_window_setting_win(wp);
532 }
533 
534 /* foldCheckClose() {{{2 */
535 /*
536  * Apply 'foldlevel' to all folds that don't contain the cursor.
537  */
538     void
539 foldCheckClose()
540 {
541     if (*p_fcl != NUL)	/* can only be "all" right now */
542     {
543 	checkupdate(curwin);
544 	if (checkCloseRec(&curwin->w_folds, curwin->w_cursor.lnum,
545 							(int)curwin->w_p_fdl))
546 	    changed_window_setting();
547     }
548 }
549 
550 /* checkCloseRec() {{{2 */
551     static int
552 checkCloseRec(gap, lnum, level)
553     garray_T	*gap;
554     linenr_T	lnum;
555     int		level;
556 {
557     fold_T	*fp;
558     int		retval = FALSE;
559     int		i;
560 
561     fp = (fold_T *)gap->ga_data;
562     for (i = 0; i < gap->ga_len; ++i)
563     {
564 	/* Only manually opened folds may need to be closed. */
565 	if (fp[i].fd_flags == FD_OPEN)
566 	{
567 	    if (level <= 0 && (lnum < fp[i].fd_top
568 				      || lnum >= fp[i].fd_top + fp[i].fd_len))
569 	    {
570 		fp[i].fd_flags = FD_LEVEL;
571 		retval = TRUE;
572 	    }
573 	    else
574 		retval |= checkCloseRec(&fp[i].fd_nested, lnum - fp[i].fd_top,
575 								   level - 1);
576 	}
577     }
578     return retval;
579 }
580 
581 /* foldCreateAllowed() {{{2 */
582 /*
583  * Return TRUE if it's allowed to manually create or delete a fold.
584  * Give an error message and return FALSE if not.
585  */
586     int
587 foldManualAllowed(create)
588     int		create;
589 {
590     if (foldmethodIsManual(curwin) || foldmethodIsMarker(curwin))
591 	return TRUE;
592     if (create)
593 	EMSG(_("E350: Cannot create fold with current 'foldmethod'"));
594     else
595 	EMSG(_("E351: Cannot delete fold with current 'foldmethod'"));
596     return FALSE;
597 }
598 
599 /* foldCreate() {{{2 */
600 /*
601  * Create a fold from line "start" to line "end" (inclusive) in the current
602  * window.
603  */
604     void
605 foldCreate(start, end)
606     linenr_T	start;
607     linenr_T	end;
608 {
609     fold_T	*fp;
610     garray_T	*gap;
611     garray_T	fold_ga;
612     int		i, j;
613     int		cont;
614     int		use_level = FALSE;
615     int		closed = FALSE;
616     int		level = 0;
617     linenr_T	start_rel = start;
618     linenr_T	end_rel = end;
619 
620     if (start > end)
621     {
622 	/* reverse the range */
623 	end = start_rel;
624 	start = end_rel;
625 	start_rel = start;
626 	end_rel = end;
627     }
628 
629     /* When 'foldmethod' is "marker" add markers, which creates the folds. */
630     if (foldmethodIsMarker(curwin))
631     {
632 	foldCreateMarkers(start, end);
633 	return;
634     }
635 
636     checkupdate(curwin);
637 
638     /* Find the place to insert the new fold. */
639     gap = &curwin->w_folds;
640     for (;;)
641     {
642 	if (!foldFind(gap, start_rel, &fp))
643 	    break;
644 	if (fp->fd_top + fp->fd_len > end_rel)
645 	{
646 	    /* New fold is completely inside this fold: Go one level deeper. */
647 	    gap = &fp->fd_nested;
648 	    start_rel -= fp->fd_top;
649 	    end_rel -= fp->fd_top;
650 	    if (use_level || fp->fd_flags == FD_LEVEL)
651 	    {
652 		use_level = TRUE;
653 		if (level >= curwin->w_p_fdl)
654 		    closed = TRUE;
655 	    }
656 	    else if (fp->fd_flags == FD_CLOSED)
657 		closed = TRUE;
658 	    ++level;
659 	}
660 	else
661 	{
662 	    /* This fold and new fold overlap: Insert here and move some folds
663 	     * inside the new fold. */
664 	    break;
665 	}
666     }
667 
668     i = (int)(fp - (fold_T *)gap->ga_data);
669     if (ga_grow(gap, 1) == OK)
670     {
671 	fp = (fold_T *)gap->ga_data + i;
672 	ga_init2(&fold_ga, (int)sizeof(fold_T), 10);
673 
674 	/* Count number of folds that will be contained in the new fold. */
675 	for (cont = 0; i + cont < gap->ga_len; ++cont)
676 	    if (fp[cont].fd_top > end_rel)
677 		break;
678 	if (cont > 0 && ga_grow(&fold_ga, cont) == OK)
679 	{
680 	    /* If the first fold starts before the new fold, let the new fold
681 	     * start there.  Otherwise the existing fold would change. */
682 	    if (start_rel > fp->fd_top)
683 		start_rel = fp->fd_top;
684 
685 	    /* When last contained fold isn't completely contained, adjust end
686 	     * of new fold. */
687 	    if (end_rel < fp[cont - 1].fd_top + fp[cont - 1].fd_len - 1)
688 		end_rel = fp[cont - 1].fd_top + fp[cont - 1].fd_len - 1;
689 	    /* Move contained folds to inside new fold. */
690 	    mch_memmove(fold_ga.ga_data, fp, sizeof(fold_T) * cont);
691 	    fold_ga.ga_len += cont;
692 	    i += cont;
693 
694 	    /* Adjust line numbers in contained folds to be relative to the
695 	     * new fold. */
696 	    for (j = 0; j < cont; ++j)
697 		((fold_T *)fold_ga.ga_data)[j].fd_top -= start_rel;
698 	}
699 	/* Move remaining entries to after the new fold. */
700 	if (i < gap->ga_len)
701 	    mch_memmove(fp + 1, (fold_T *)gap->ga_data + i,
702 				     sizeof(fold_T) * (gap->ga_len - i));
703 	gap->ga_len = gap->ga_len + 1 - cont;
704 
705 	/* insert new fold */
706 	fp->fd_nested = fold_ga;
707 	fp->fd_top = start_rel;
708 	fp->fd_len = end_rel - start_rel + 1;
709 
710 	/* We want the new fold to be closed.  If it would remain open because
711 	 * of using 'foldlevel', need to adjust fd_flags of containing folds.
712 	 */
713 	if (use_level && !closed && level < curwin->w_p_fdl)
714 	    closeFold(start, 1L);
715 	if (!use_level)
716 	    curwin->w_fold_manual = TRUE;
717 	fp->fd_flags = FD_CLOSED;
718 	fp->fd_small = MAYBE;
719 
720 	/* redraw */
721 	changed_window_setting();
722     }
723 }
724 
725 /* deleteFold() {{{2 */
726 /*
727  * Delete a fold at line "start" in the current window.
728  * When "end" is not 0, delete all folds from "start" to "end".
729  * When "recursive" is TRUE delete recursively.
730  */
731     void
732 deleteFold(start, end, recursive, had_visual)
733     linenr_T	start;
734     linenr_T	end;
735     int		recursive;
736     int		had_visual;	/* TRUE when Visual selection used */
737 {
738     garray_T	*gap;
739     fold_T	*fp;
740     garray_T	*found_ga;
741     fold_T	*found_fp = NULL;
742     linenr_T	found_off = 0;
743     int		use_level;
744     int		maybe_small = FALSE;
745     int		level = 0;
746     linenr_T	lnum = start;
747     linenr_T	lnum_off;
748     int		did_one = FALSE;
749     linenr_T	first_lnum = MAXLNUM;
750     linenr_T	last_lnum = 0;
751 
752     checkupdate(curwin);
753 
754     while (lnum <= end)
755     {
756 	/* Find the deepest fold for "start". */
757 	gap = &curwin->w_folds;
758 	found_ga = NULL;
759 	lnum_off = 0;
760 	use_level = FALSE;
761 	for (;;)
762 	{
763 	    if (!foldFind(gap, lnum - lnum_off, &fp))
764 		break;
765 	    /* lnum is inside this fold, remember info */
766 	    found_ga = gap;
767 	    found_fp = fp;
768 	    found_off = lnum_off;
769 
770 	    /* if "lnum" is folded, don't check nesting */
771 	    if (check_closed(curwin, fp, &use_level, level,
772 						      &maybe_small, lnum_off))
773 		break;
774 
775 	    /* check nested folds */
776 	    gap = &fp->fd_nested;
777 	    lnum_off += fp->fd_top;
778 	    ++level;
779 	}
780 	if (found_ga == NULL)
781 	{
782 	    ++lnum;
783 	}
784 	else
785 	{
786 	    lnum = found_fp->fd_top + found_fp->fd_len + found_off;
787 
788 	    if (foldmethodIsManual(curwin))
789 		deleteFoldEntry(found_ga,
790 		    (int)(found_fp - (fold_T *)found_ga->ga_data), recursive);
791 	    else
792 	    {
793 		if (first_lnum > found_fp->fd_top + found_off)
794 		    first_lnum = found_fp->fd_top + found_off;
795 		if (last_lnum < lnum)
796 		    last_lnum = lnum;
797 		if (!did_one)
798 		    parseMarker(curwin);
799 		deleteFoldMarkers(found_fp, recursive, found_off);
800 	    }
801 	    did_one = TRUE;
802 
803 	    /* redraw window */
804 	    changed_window_setting();
805 	}
806     }
807     if (!did_one)
808     {
809 	EMSG(_(e_nofold));
810 #ifdef FEAT_VISUAL
811 	/* Force a redraw to remove the Visual highlighting. */
812 	if (had_visual)
813 	    redraw_curbuf_later(INVERTED);
814 #endif
815     }
816     else
817 	/* Deleting markers may make cursor column invalid. */
818 	check_cursor_col();
819 
820     if (last_lnum > 0)
821 	changed_lines(first_lnum, (colnr_T)0, last_lnum, 0L);
822 }
823 
824 /* clearFolding() {{{2 */
825 /*
826  * Remove all folding for window "win".
827  */
828     void
829 clearFolding(win)
830     win_T	*win;
831 {
832     deleteFoldRecurse(&win->w_folds);
833     win->w_foldinvalid = FALSE;
834 }
835 
836 /* foldUpdate() {{{2 */
837 /*
838  * Update folds for changes in the buffer of a window.
839  * Note that inserted/deleted lines must have already been taken care of by
840  * calling foldMarkAdjust().
841  * The changes in lines from top to bot (inclusive).
842  */
843     void
844 foldUpdate(wp, top, bot)
845     win_T	*wp;
846     linenr_T	top;
847     linenr_T	bot;
848 {
849     fold_T	*fp;
850 
851     /* Mark all folds from top to bot as maybe-small. */
852     (void)foldFind(&curwin->w_folds, top, &fp);
853     while (fp < (fold_T *)curwin->w_folds.ga_data + curwin->w_folds.ga_len
854 	    && fp->fd_top < bot)
855     {
856 	fp->fd_small = MAYBE;
857 	++fp;
858     }
859 
860     if (foldmethodIsIndent(wp)
861 	    || foldmethodIsExpr(wp)
862 	    || foldmethodIsMarker(wp)
863 #ifdef FEAT_DIFF
864 	    || foldmethodIsDiff(wp)
865 #endif
866 	    || foldmethodIsSyntax(wp))
867     {
868 	int save_got_int = got_int;
869 
870 	/* reset got_int here, otherwise it won't work */
871 	got_int = FALSE;
872 	foldUpdateIEMS(wp, top, bot);
873 	got_int |= save_got_int;
874     }
875 }
876 
877 /* foldUpdateAll() {{{2 */
878 /*
879  * Update all lines in a window for folding.
880  * Used when a fold setting changes or after reloading the buffer.
881  * The actual updating is postponed until fold info is used, to avoid doing
882  * every time a setting is changed or a syntax item is added.
883  */
884     void
885 foldUpdateAll(win)
886     win_T	*win;
887 {
888     win->w_foldinvalid = TRUE;
889     redraw_win_later(win, NOT_VALID);
890 }
891 
892 /* foldMoveTo() {{{2 */
893 /*
894  * If "updown" is FALSE: Move to the start or end of the fold.
895  * If "updown" is TRUE: move to fold at the same level.
896  * If not moved return FAIL.
897  */
898     int
899 foldMoveTo(updown, dir, count)
900     int		updown;
901     int		dir;	    /* FORWARD or BACKWARD */
902     long	count;
903 {
904     long	n;
905     int		retval = FAIL;
906     linenr_T	lnum_off;
907     linenr_T	lnum_found;
908     linenr_T	lnum;
909     int		use_level;
910     int		maybe_small;
911     garray_T	*gap;
912     fold_T	*fp;
913     int		level;
914     int		last;
915 
916     checkupdate(curwin);
917 
918     /* Repeat "count" times. */
919     for (n = 0; n < count; ++n)
920     {
921 	/* Find nested folds.  Stop when a fold is closed.  The deepest fold
922 	 * that moves the cursor is used. */
923 	lnum_off = 0;
924 	gap = &curwin->w_folds;
925 	use_level = FALSE;
926 	maybe_small = FALSE;
927 	lnum_found = curwin->w_cursor.lnum;
928 	level = 0;
929 	last = FALSE;
930 	for (;;)
931 	{
932 	    if (!foldFind(gap, curwin->w_cursor.lnum - lnum_off, &fp))
933 	    {
934 		if (!updown)
935 		    break;
936 
937 		/* When moving up, consider a fold above the cursor; when
938 		 * moving down consider a fold below the cursor. */
939 		if (dir == FORWARD)
940 		{
941 		    if (fp - (fold_T *)gap->ga_data >= gap->ga_len)
942 			break;
943 		    --fp;
944 		}
945 		else
946 		{
947 		    if (fp == (fold_T *)gap->ga_data)
948 			break;
949 		}
950 		/* don't look for contained folds, they will always move
951 		 * the cursor too far. */
952 		last = TRUE;
953 	    }
954 
955 	    if (!last)
956 	    {
957 		/* Check if this fold is closed. */
958 		if (check_closed(curwin, fp, &use_level, level,
959 						      &maybe_small, lnum_off))
960 		    last = TRUE;
961 
962 		/* "[z" and "]z" stop at closed fold */
963 		if (last && !updown)
964 		    break;
965 	    }
966 
967 	    if (updown)
968 	    {
969 		if (dir == FORWARD)
970 		{
971 		    /* to start of next fold if there is one */
972 		    if (fp + 1 - (fold_T *)gap->ga_data < gap->ga_len)
973 		    {
974 			lnum = fp[1].fd_top + lnum_off;
975 			if (lnum > curwin->w_cursor.lnum)
976 			    lnum_found = lnum;
977 		    }
978 		}
979 		else
980 		{
981 		    /* to end of previous fold if there is one */
982 		    if (fp > (fold_T *)gap->ga_data)
983 		    {
984 			lnum = fp[-1].fd_top + lnum_off + fp[-1].fd_len - 1;
985 			if (lnum < curwin->w_cursor.lnum)
986 			    lnum_found = lnum;
987 		    }
988 		}
989 	    }
990 	    else
991 	    {
992 		/* Open fold found, set cursor to its start/end and then check
993 		 * nested folds. */
994 		if (dir == FORWARD)
995 		{
996 		    lnum = fp->fd_top + lnum_off + fp->fd_len - 1;
997 		    if (lnum > curwin->w_cursor.lnum)
998 			lnum_found = lnum;
999 		}
1000 		else
1001 		{
1002 		    lnum = fp->fd_top + lnum_off;
1003 		    if (lnum < curwin->w_cursor.lnum)
1004 			lnum_found = lnum;
1005 		}
1006 	    }
1007 
1008 	    if (last)
1009 		break;
1010 
1011 	    /* Check nested folds (if any). */
1012 	    gap = &fp->fd_nested;
1013 	    lnum_off += fp->fd_top;
1014 	    ++level;
1015 	}
1016 	if (lnum_found != curwin->w_cursor.lnum)
1017 	{
1018 	    if (retval == FAIL)
1019 		setpcmark();
1020 	    curwin->w_cursor.lnum = lnum_found;
1021 	    curwin->w_cursor.col = 0;
1022 	    retval = OK;
1023 	}
1024 	else
1025 	    break;
1026     }
1027 
1028     return retval;
1029 }
1030 
1031 /* foldInitWin() {{{2 */
1032 /*
1033  * Init the fold info in a new window.
1034  */
1035     void
1036 foldInitWin(new_win)
1037     win_T	*new_win;
1038 {
1039     ga_init2(&new_win->w_folds, (int)sizeof(fold_T), 10);
1040 }
1041 
1042 /* find_wl_entry() {{{2 */
1043 /*
1044  * Find an entry in the win->w_lines[] array for buffer line "lnum".
1045  * Only valid entries are considered (for entries where wl_valid is FALSE the
1046  * line number can be wrong).
1047  * Returns index of entry or -1 if not found.
1048  */
1049     int
1050 find_wl_entry(win, lnum)
1051     win_T	*win;
1052     linenr_T	lnum;
1053 {
1054     int		i;
1055 
1056     for (i = 0; i < win->w_lines_valid; ++i)
1057 	if (win->w_lines[i].wl_valid)
1058 	{
1059 	    if (lnum < win->w_lines[i].wl_lnum)
1060 		return -1;
1061 	    if (lnum <= win->w_lines[i].wl_lastlnum)
1062 		return i;
1063 	}
1064     return -1;
1065 }
1066 
1067 /* foldAdjustVisual() {{{2 */
1068 #ifdef FEAT_VISUAL
1069 /*
1070  * Adjust the Visual area to include any fold at the start or end completely.
1071  */
1072     void
1073 foldAdjustVisual()
1074 {
1075     pos_T	*start, *end;
1076     char_u	*ptr;
1077 
1078     if (!VIsual_active || !hasAnyFolding(curwin))
1079 	return;
1080 
1081     if (ltoreq(VIsual, curwin->w_cursor))
1082     {
1083 	start = &VIsual;
1084 	end = &curwin->w_cursor;
1085     }
1086     else
1087     {
1088 	start = &curwin->w_cursor;
1089 	end = &VIsual;
1090     }
1091     if (hasFolding(start->lnum, &start->lnum, NULL))
1092 	start->col = 0;
1093     if (hasFolding(end->lnum, NULL, &end->lnum))
1094     {
1095 	ptr = ml_get(end->lnum);
1096 	end->col = (colnr_T)STRLEN(ptr);
1097 	if (end->col > 0 && *p_sel == 'o')
1098 	    --end->col;
1099 #ifdef FEAT_MBYTE
1100 	/* prevent cursor from moving on the trail byte */
1101 	if (has_mbyte)
1102 	    mb_adjust_cursor();
1103 #endif
1104     }
1105 }
1106 #endif
1107 
1108 /* cursor_foldstart() {{{2 */
1109 /*
1110  * Move the cursor to the first line of a closed fold.
1111  */
1112     void
1113 foldAdjustCursor()
1114 {
1115     (void)hasFolding(curwin->w_cursor.lnum, &curwin->w_cursor.lnum, NULL);
1116 }
1117 
1118 /* Internal functions for "fold_T" {{{1 */
1119 /* cloneFoldGrowArray() {{{2 */
1120 /*
1121  * Will "clone" (i.e deep copy) a garray_T of folds.
1122  *
1123  * Return FAIL if the operation cannot be completed, otherwise OK.
1124  */
1125     void
1126 cloneFoldGrowArray(from, to)
1127     garray_T	*from;
1128     garray_T	*to;
1129 {
1130     int		i;
1131     fold_T	*from_p;
1132     fold_T	*to_p;
1133 
1134     ga_init2(to, from->ga_itemsize, from->ga_growsize);
1135     if (from->ga_len == 0 || ga_grow(to, from->ga_len) == FAIL)
1136 	return;
1137 
1138     from_p = (fold_T *)from->ga_data;
1139     to_p = (fold_T *)to->ga_data;
1140 
1141     for (i = 0; i < from->ga_len; i++)
1142     {
1143 	to_p->fd_top = from_p->fd_top;
1144 	to_p->fd_len = from_p->fd_len;
1145 	to_p->fd_flags = from_p->fd_flags;
1146 	to_p->fd_small = from_p->fd_small;
1147 	cloneFoldGrowArray(&from_p->fd_nested, &to_p->fd_nested);
1148 	++to->ga_len;
1149 	++from_p;
1150 	++to_p;
1151     }
1152 }
1153 
1154 /* foldFind() {{{2 */
1155 /*
1156  * Search for line "lnum" in folds of growarray "gap".
1157  * Set *fpp to the fold struct for the fold that contains "lnum" or
1158  * the first fold below it (careful: it can be beyond the end of the array!).
1159  * Returns FALSE when there is no fold that contains "lnum".
1160  */
1161     static int
1162 foldFind(gap, lnum, fpp)
1163     garray_T	*gap;
1164     linenr_T	lnum;
1165     fold_T	**fpp;
1166 {
1167     linenr_T	low, high;
1168     fold_T	*fp;
1169     int		i;
1170 
1171     /*
1172      * Perform a binary search.
1173      * "low" is lowest index of possible match.
1174      * "high" is highest index of possible match.
1175      */
1176     fp = (fold_T *)gap->ga_data;
1177     low = 0;
1178     high = gap->ga_len - 1;
1179     while (low <= high)
1180     {
1181 	i = (low + high) / 2;
1182 	if (fp[i].fd_top > lnum)
1183 	    /* fold below lnum, adjust high */
1184 	    high = i - 1;
1185 	else if (fp[i].fd_top + fp[i].fd_len <= lnum)
1186 	    /* fold above lnum, adjust low */
1187 	    low = i + 1;
1188 	else
1189 	{
1190 	    /* lnum is inside this fold */
1191 	    *fpp = fp + i;
1192 	    return TRUE;
1193 	}
1194     }
1195     *fpp = fp + low;
1196     return FALSE;
1197 }
1198 
1199 /* foldLevelWin() {{{2 */
1200 /*
1201  * Return fold level at line number "lnum" in window "wp".
1202  */
1203     static int
1204 foldLevelWin(wp, lnum)
1205     win_T	*wp;
1206     linenr_T	lnum;
1207 {
1208     fold_T	*fp;
1209     linenr_T	lnum_rel = lnum;
1210     int		level =  0;
1211     garray_T	*gap;
1212 
1213     /* Recursively search for a fold that contains "lnum". */
1214     gap = &wp->w_folds;
1215     for (;;)
1216     {
1217 	if (!foldFind(gap, lnum_rel, &fp))
1218 	    break;
1219 	/* Check nested folds.  Line number is relative to containing fold. */
1220 	gap = &fp->fd_nested;
1221 	lnum_rel -= fp->fd_top;
1222 	++level;
1223     }
1224 
1225     return level;
1226 }
1227 
1228 /* checkupdate() {{{2 */
1229 /*
1230  * Check if the folds in window "wp" are invalid and update them if needed.
1231  */
1232     static void
1233 checkupdate(wp)
1234     win_T	*wp;
1235 {
1236     if (wp->w_foldinvalid)
1237     {
1238 	foldUpdate(wp, (linenr_T)1, (linenr_T)MAXLNUM); /* will update all */
1239 	wp->w_foldinvalid = FALSE;
1240     }
1241 }
1242 
1243 /* setFoldRepeat() {{{2 */
1244 /*
1245  * Open or close fold for current window at line "lnum".
1246  * Repeat "count" times.
1247  */
1248     static void
1249 setFoldRepeat(lnum, count, do_open)
1250     linenr_T	lnum;
1251     long	count;
1252     int		do_open;
1253 {
1254     int		done;
1255     long	n;
1256 
1257     for (n = 0; n < count; ++n)
1258     {
1259 	done = DONE_NOTHING;
1260 	(void)setManualFold(lnum, do_open, FALSE, &done);
1261 	if (!(done & DONE_ACTION))
1262 	{
1263 	    /* Only give an error message when no fold could be opened. */
1264 	    if (n == 0 && !(done & DONE_FOLD))
1265 		EMSG(_(e_nofold));
1266 	    break;
1267 	}
1268     }
1269 }
1270 
1271 /* setManualFold() {{{2 */
1272 /*
1273  * Open or close the fold in the current window which contains "lnum".
1274  * Also does this for other windows in diff mode when needed.
1275  */
1276     static linenr_T
1277 setManualFold(lnum, opening, recurse, donep)
1278     linenr_T	lnum;
1279     int		opening;    /* TRUE when opening, FALSE when closing */
1280     int		recurse;    /* TRUE when closing/opening recursive */
1281     int		*donep;
1282 {
1283 #ifdef FEAT_DIFF
1284     if (foldmethodIsDiff(curwin) && curwin->w_p_scb)
1285     {
1286 	win_T	    *wp;
1287 	linenr_T    dlnum;
1288 
1289 	/*
1290 	 * Do the same operation in other windows in diff mode.  Calculate the
1291 	 * line number from the diffs.
1292 	 */
1293 	FOR_ALL_WINDOWS(wp)
1294 	{
1295 	    if (wp != curwin && foldmethodIsDiff(wp) && wp->w_p_scb)
1296 	    {
1297 		dlnum = diff_lnum_win(curwin->w_cursor.lnum, wp);
1298 		if (dlnum != 0)
1299 		    (void)setManualFoldWin(wp, dlnum, opening, recurse, NULL);
1300 	    }
1301 	}
1302     }
1303 #endif
1304 
1305     return setManualFoldWin(curwin, lnum, opening, recurse, donep);
1306 }
1307 
1308 /* setManualFoldWin() {{{2 */
1309 /*
1310  * Open or close the fold in window "wp" which contains "lnum".
1311  * "donep", when not NULL, points to flag that is set to DONE_FOLD when some
1312  * fold was found and to DONE_ACTION when some fold was opened or closed.
1313  * When "donep" is NULL give an error message when no fold was found for
1314  * "lnum", but only if "wp" is "curwin".
1315  * Return the line number of the next line that could be closed.
1316  * It's only valid when "opening" is TRUE!
1317  */
1318     static linenr_T
1319 setManualFoldWin(wp, lnum, opening, recurse, donep)
1320     win_T	*wp;
1321     linenr_T	lnum;
1322     int		opening;    /* TRUE when opening, FALSE when closing */
1323     int		recurse;    /* TRUE when closing/opening recursive */
1324     int		*donep;
1325 {
1326     fold_T	*fp;
1327     fold_T	*fp2;
1328     fold_T	*found = NULL;
1329     int		j;
1330     int		level = 0;
1331     int		use_level = FALSE;
1332     int		found_fold = FALSE;
1333     garray_T	*gap;
1334     linenr_T	next = MAXLNUM;
1335     linenr_T	off = 0;
1336     int		done = 0;
1337 
1338     checkupdate(wp);
1339 
1340     /*
1341      * Find the fold, open or close it.
1342      */
1343     gap = &wp->w_folds;
1344     for (;;)
1345     {
1346 	if (!foldFind(gap, lnum, &fp))
1347 	{
1348 	    /* If there is a following fold, continue there next time. */
1349 	    if (fp < (fold_T *)gap->ga_data + gap->ga_len)
1350 		next = fp->fd_top + off;
1351 	    break;
1352 	}
1353 
1354 	/* lnum is inside this fold */
1355 	found_fold = TRUE;
1356 
1357 	/* If there is a following fold, continue there next time. */
1358 	if (fp + 1 < (fold_T *)gap->ga_data + gap->ga_len)
1359 	    next = fp[1].fd_top + off;
1360 
1361 	/* Change from level-dependent folding to manual. */
1362 	if (use_level || fp->fd_flags == FD_LEVEL)
1363 	{
1364 	    use_level = TRUE;
1365 	    if (level >= wp->w_p_fdl)
1366 		fp->fd_flags = FD_CLOSED;
1367 	    else
1368 		fp->fd_flags = FD_OPEN;
1369 	    fp2 = (fold_T *)fp->fd_nested.ga_data;
1370 	    for (j = 0; j < fp->fd_nested.ga_len; ++j)
1371 		fp2[j].fd_flags = FD_LEVEL;
1372 	}
1373 
1374 	/* Simple case: Close recursively means closing the fold. */
1375 	if (!opening && recurse)
1376 	{
1377 	    if (fp->fd_flags != FD_CLOSED)
1378 	    {
1379 		done |= DONE_ACTION;
1380 		fp->fd_flags = FD_CLOSED;
1381 	    }
1382 	}
1383 	else if (fp->fd_flags == FD_CLOSED)
1384 	{
1385 	    /* When opening, open topmost closed fold. */
1386 	    if (opening)
1387 	    {
1388 		fp->fd_flags = FD_OPEN;
1389 		done |= DONE_ACTION;
1390 		if (recurse)
1391 		    foldOpenNested(fp);
1392 	    }
1393 	    break;
1394 	}
1395 
1396 	/* fold is open, check nested folds */
1397 	found = fp;
1398 	gap = &fp->fd_nested;
1399 	lnum -= fp->fd_top;
1400 	off += fp->fd_top;
1401 	++level;
1402     }
1403     if (found_fold)
1404     {
1405 	/* When closing and not recurse, close deepest open fold. */
1406 	if (!opening && found != NULL)
1407 	{
1408 	    found->fd_flags = FD_CLOSED;
1409 	    done |= DONE_ACTION;
1410 	}
1411 	wp->w_fold_manual = TRUE;
1412 	if (done & DONE_ACTION)
1413 	    changed_window_setting_win(wp);
1414 	done |= DONE_FOLD;
1415     }
1416     else if (donep == NULL && wp == curwin)
1417 	EMSG(_(e_nofold));
1418 
1419     if (donep != NULL)
1420 	*donep |= done;
1421 
1422     return next;
1423 }
1424 
1425 /* foldOpenNested() {{{2 */
1426 /*
1427  * Open all nested folds in fold "fpr" recursively.
1428  */
1429     static void
1430 foldOpenNested(fpr)
1431     fold_T	*fpr;
1432 {
1433     int		i;
1434     fold_T	*fp;
1435 
1436     fp = (fold_T *)fpr->fd_nested.ga_data;
1437     for (i = 0; i < fpr->fd_nested.ga_len; ++i)
1438     {
1439 	foldOpenNested(&fp[i]);
1440 	fp[i].fd_flags = FD_OPEN;
1441     }
1442 }
1443 
1444 /* deleteFoldEntry() {{{2 */
1445 /*
1446  * Delete fold "idx" from growarray "gap".
1447  * When "recursive" is TRUE also delete all the folds contained in it.
1448  * When "recursive" is FALSE contained folds are moved one level up.
1449  */
1450     static void
1451 deleteFoldEntry(gap, idx, recursive)
1452     garray_T	*gap;
1453     int		idx;
1454     int		recursive;
1455 {
1456     fold_T	*fp;
1457     int		i;
1458     long	moved;
1459     fold_T	*nfp;
1460 
1461     fp = (fold_T *)gap->ga_data + idx;
1462     if (recursive || fp->fd_nested.ga_len == 0)
1463     {
1464 	/* recursively delete the contained folds */
1465 	deleteFoldRecurse(&fp->fd_nested);
1466 	--gap->ga_len;
1467 	if (idx < gap->ga_len)
1468 	    mch_memmove(fp, fp + 1, sizeof(fold_T) * (gap->ga_len - idx));
1469     }
1470     else
1471     {
1472 	/* Move nested folds one level up, to overwrite the fold that is
1473 	 * deleted. */
1474 	moved = fp->fd_nested.ga_len;
1475 	if (ga_grow(gap, (int)(moved - 1)) == OK)
1476 	{
1477 	    /* Get "fp" again, the array may have been reallocated. */
1478 	    fp = (fold_T *)gap->ga_data + idx;
1479 
1480 	    /* adjust fd_top and fd_flags for the moved folds */
1481 	    nfp = (fold_T *)fp->fd_nested.ga_data;
1482 	    for (i = 0; i < moved; ++i)
1483 	    {
1484 		nfp[i].fd_top += fp->fd_top;
1485 		if (fp->fd_flags == FD_LEVEL)
1486 		    nfp[i].fd_flags = FD_LEVEL;
1487 		if (fp->fd_small == MAYBE)
1488 		    nfp[i].fd_small = MAYBE;
1489 	    }
1490 
1491 	    /* move the existing folds down to make room */
1492 	    if (idx + 1 < gap->ga_len)
1493 		mch_memmove(fp + moved, fp + 1,
1494 				  sizeof(fold_T) * (gap->ga_len - (idx + 1)));
1495 	    /* move the contained folds one level up */
1496 	    mch_memmove(fp, nfp, (size_t)(sizeof(fold_T) * moved));
1497 	    vim_free(nfp);
1498 	    gap->ga_len += moved - 1;
1499 	}
1500     }
1501 }
1502 
1503 /* deleteFoldRecurse() {{{2 */
1504 /*
1505  * Delete nested folds in a fold.
1506  */
1507     void
1508 deleteFoldRecurse(gap)
1509     garray_T	*gap;
1510 {
1511     int		i;
1512 
1513     for (i = 0; i < gap->ga_len; ++i)
1514 	deleteFoldRecurse(&(((fold_T *)(gap->ga_data))[i].fd_nested));
1515     ga_clear(gap);
1516 }
1517 
1518 /* foldMarkAdjust() {{{2 */
1519 /*
1520  * Update line numbers of folds for inserted/deleted lines.
1521  */
1522     void
1523 foldMarkAdjust(wp, line1, line2, amount, amount_after)
1524     win_T	*wp;
1525     linenr_T	line1;
1526     linenr_T	line2;
1527     long	amount;
1528     long	amount_after;
1529 {
1530     /* If deleting marks from line1 to line2, but not deleting all those
1531      * lines, set line2 so that only deleted lines have their folds removed. */
1532     if (amount == MAXLNUM && line2 >= line1 && line2 - line1 >= -amount_after)
1533 	line2 = line1 - amount_after - 1;
1534     /* If appending a line in Insert mode, it should be included in the fold
1535      * just above the line. */
1536     if ((State & INSERT) && amount == (linenr_T)1 && line2 == MAXLNUM)
1537 	--line1;
1538     foldMarkAdjustRecurse(&wp->w_folds, line1, line2, amount, amount_after);
1539 }
1540 
1541 /* foldMarkAdjustRecurse() {{{2 */
1542     static void
1543 foldMarkAdjustRecurse(gap, line1, line2, amount, amount_after)
1544     garray_T	*gap;
1545     linenr_T	line1;
1546     linenr_T	line2;
1547     long	amount;
1548     long	amount_after;
1549 {
1550     fold_T	*fp;
1551     int		i;
1552     linenr_T	last;
1553     linenr_T	top;
1554 
1555     /* In Insert mode an inserted line at the top of a fold is considered part
1556      * of the fold, otherwise it isn't. */
1557     if ((State & INSERT) && amount == (linenr_T)1 && line2 == MAXLNUM)
1558 	top = line1 + 1;
1559     else
1560 	top = line1;
1561 
1562     /* Find the fold containing or just below "line1". */
1563     (void)foldFind(gap, line1, &fp);
1564 
1565     /*
1566      * Adjust all folds below "line1" that are affected.
1567      */
1568     for (i = (int)(fp - (fold_T *)gap->ga_data); i < gap->ga_len; ++i, ++fp)
1569     {
1570 	/*
1571 	 * Check for these situations:
1572 	 *	  1  2	3
1573 	 *	  1  2	3
1574 	 * line1     2	3  4  5
1575 	 *	     2	3  4  5
1576 	 *	     2	3  4  5
1577 	 * line2     2	3  4  5
1578 	 *		3     5  6
1579 	 *		3     5  6
1580 	 */
1581 
1582 	last = fp->fd_top + fp->fd_len - 1; /* last line of fold */
1583 
1584 	/* 1. fold completely above line1: nothing to do */
1585 	if (last < line1)
1586 	    continue;
1587 
1588 	/* 6. fold below line2: only adjust for amount_after */
1589 	if (fp->fd_top > line2)
1590 	{
1591 	    if (amount_after == 0)
1592 		break;
1593 	    fp->fd_top += amount_after;
1594 	}
1595 	else
1596 	{
1597 	    if (fp->fd_top >= top && last <= line2)
1598 	    {
1599 		/* 4. fold completely contained in range */
1600 		if (amount == MAXLNUM)
1601 		{
1602 		    /* Deleting lines: delete the fold completely */
1603 		    deleteFoldEntry(gap, i, TRUE);
1604 		    --i;    /* adjust index for deletion */
1605 		    --fp;
1606 		}
1607 		else
1608 		    fp->fd_top += amount;
1609 	    }
1610 	    else
1611 	    {
1612 		if (fp->fd_top < top)
1613 		{
1614 		    /* 2 or 3: need to correct nested folds too */
1615 		    foldMarkAdjustRecurse(&fp->fd_nested, line1 - fp->fd_top,
1616 				  line2 - fp->fd_top, amount, amount_after);
1617 		    if (last <= line2)
1618 		    {
1619 			/* 2. fold contains line1, line2 is below fold */
1620 			if (amount == MAXLNUM)
1621 			    fp->fd_len = line1 - fp->fd_top;
1622 			else
1623 			    fp->fd_len += amount;
1624 		    }
1625 		    else
1626 		    {
1627 			/* 3. fold contains line1 and line2 */
1628 			fp->fd_len += amount_after;
1629 		    }
1630 		}
1631 		else
1632 		{
1633 		    /* 5. fold is below line1 and contains line2; need to
1634 		     * correct nested folds too */
1635 		    foldMarkAdjustRecurse(&fp->fd_nested, line1 - fp->fd_top,
1636 				  line2 - fp->fd_top, amount,
1637 				  amount_after + (fp->fd_top - top));
1638 		    if (amount == MAXLNUM)
1639 		    {
1640 			fp->fd_len -= line2 - fp->fd_top + 1;
1641 			fp->fd_top = line1;
1642 		    }
1643 		    else
1644 		    {
1645 			fp->fd_len += amount_after - amount;
1646 			fp->fd_top += amount;
1647 		    }
1648 		}
1649 	    }
1650 	}
1651     }
1652 }
1653 
1654 /* getDeepestNesting() {{{2 */
1655 /*
1656  * Get the lowest 'foldlevel' value that makes the deepest nested fold in the
1657  * current window open.
1658  */
1659     int
1660 getDeepestNesting()
1661 {
1662     checkupdate(curwin);
1663     return getDeepestNestingRecurse(&curwin->w_folds);
1664 }
1665 
1666     static int
1667 getDeepestNestingRecurse(gap)
1668     garray_T	*gap;
1669 {
1670     int		i;
1671     int		level;
1672     int		maxlevel = 0;
1673     fold_T	*fp;
1674 
1675     fp = (fold_T *)gap->ga_data;
1676     for (i = 0; i < gap->ga_len; ++i)
1677     {
1678 	level = getDeepestNestingRecurse(&fp[i].fd_nested) + 1;
1679 	if (level > maxlevel)
1680 	    maxlevel = level;
1681     }
1682 
1683     return maxlevel;
1684 }
1685 
1686 /* check_closed() {{{2 */
1687 /*
1688  * Check if a fold is closed and update the info needed to check nested folds.
1689  */
1690     static int
1691 check_closed(win, fp, use_levelp, level, maybe_smallp, lnum_off)
1692     win_T	*win;
1693     fold_T	*fp;
1694     int		*use_levelp;	    /* TRUE: outer fold had FD_LEVEL */
1695     int		level;		    /* folding depth */
1696     int		*maybe_smallp;	    /* TRUE: outer this had fd_small == MAYBE */
1697     linenr_T	lnum_off;	    /* line number offset for fp->fd_top */
1698 {
1699     int		closed = FALSE;
1700 
1701     /* Check if this fold is closed.  If the flag is FD_LEVEL this
1702      * fold and all folds it contains depend on 'foldlevel'. */
1703     if (*use_levelp || fp->fd_flags == FD_LEVEL)
1704     {
1705 	*use_levelp = TRUE;
1706 	if (level >= win->w_p_fdl)
1707 	    closed = TRUE;
1708     }
1709     else if (fp->fd_flags == FD_CLOSED)
1710 	closed = TRUE;
1711 
1712     /* Small fold isn't closed anyway. */
1713     if (fp->fd_small == MAYBE)
1714 	*maybe_smallp = TRUE;
1715     if (closed)
1716     {
1717 	if (*maybe_smallp)
1718 	    fp->fd_small = MAYBE;
1719 	checkSmall(win, fp, lnum_off);
1720 	if (fp->fd_small == TRUE)
1721 	    closed = FALSE;
1722     }
1723     return closed;
1724 }
1725 
1726 /* checkSmall() {{{2 */
1727 /*
1728  * Update fd_small field of fold "fp".
1729  */
1730     static void
1731 checkSmall(wp, fp, lnum_off)
1732     win_T	*wp;
1733     fold_T	*fp;
1734     linenr_T	lnum_off;	/* offset for fp->fd_top */
1735 {
1736     int		count;
1737     int		n;
1738 
1739     if (fp->fd_small == MAYBE)
1740     {
1741 	/* Mark any nested folds to maybe-small */
1742 	setSmallMaybe(&fp->fd_nested);
1743 
1744 	if (fp->fd_len > curwin->w_p_fml)
1745 	    fp->fd_small = FALSE;
1746 	else
1747 	{
1748 	    count = 0;
1749 	    for (n = 0; n < fp->fd_len; ++n)
1750 	    {
1751 		count += plines_win_nofold(wp, fp->fd_top + lnum_off + n);
1752 		if (count > curwin->w_p_fml)
1753 		{
1754 		    fp->fd_small = FALSE;
1755 		    return;
1756 		}
1757 	    }
1758 	    fp->fd_small = TRUE;
1759 	}
1760     }
1761 }
1762 
1763 /* setSmallMaybe() {{{2 */
1764 /*
1765  * Set small flags in "gap" to MAYBE.
1766  */
1767     static void
1768 setSmallMaybe(gap)
1769     garray_T	*gap;
1770 {
1771     int		i;
1772     fold_T	*fp;
1773 
1774     fp = (fold_T *)gap->ga_data;
1775     for (i = 0; i < gap->ga_len; ++i)
1776 	fp[i].fd_small = MAYBE;
1777 }
1778 
1779 /* foldCreateMarkers() {{{2 */
1780 /*
1781  * Create a fold from line "start" to line "end" (inclusive) in the current
1782  * window by adding markers.
1783  */
1784     static void
1785 foldCreateMarkers(start, end)
1786     linenr_T	start;
1787     linenr_T	end;
1788 {
1789     if (!curbuf->b_p_ma)
1790     {
1791 	EMSG(_(e_modifiable));
1792 	return;
1793     }
1794     parseMarker(curwin);
1795 
1796     foldAddMarker(start, curwin->w_p_fmr, foldstartmarkerlen);
1797     foldAddMarker(end, foldendmarker, foldendmarkerlen);
1798 
1799     /* Update both changes here, to avoid all folds after the start are
1800      * changed when the start marker is inserted and the end isn't. */
1801     changed_lines(start, (colnr_T)0, end, 0L);
1802 }
1803 
1804 /* foldAddMarker() {{{2 */
1805 /*
1806  * Add "marker[markerlen]" in 'commentstring' to line "lnum".
1807  */
1808     static void
1809 foldAddMarker(lnum, marker, markerlen)
1810     linenr_T	lnum;
1811     char_u	*marker;
1812     int		markerlen;
1813 {
1814     char_u	*cms = curbuf->b_p_cms;
1815     char_u	*line;
1816     int		line_len;
1817     char_u	*newline;
1818     char_u	*p = (char_u *)strstr((char *)curbuf->b_p_cms, "%s");
1819 
1820     /* Allocate a new line: old-line + 'cms'-start + marker + 'cms'-end */
1821     line = ml_get(lnum);
1822     line_len = (int)STRLEN(line);
1823 
1824     if (u_save(lnum - 1, lnum + 1) == OK)
1825     {
1826 	newline = alloc((unsigned)(line_len + markerlen + STRLEN(cms) + 1));
1827 	if (newline == NULL)
1828 	    return;
1829 	STRCPY(newline, line);
1830 	if (p == NULL)
1831 	    vim_strncpy(newline + line_len, marker, markerlen);
1832 	else
1833 	{
1834 	    STRCPY(newline + line_len, cms);
1835 	    STRNCPY(newline + line_len + (p - cms), marker, markerlen);
1836 	    STRCPY(newline + line_len + (p - cms) + markerlen, p + 2);
1837 	}
1838 
1839 	ml_replace(lnum, newline, FALSE);
1840     }
1841 }
1842 
1843 /* deleteFoldMarkers() {{{2 */
1844 /*
1845  * Delete the markers for a fold, causing it to be deleted.
1846  */
1847     static void
1848 deleteFoldMarkers(fp, recursive, lnum_off)
1849     fold_T	*fp;
1850     int		recursive;
1851     linenr_T	lnum_off;	/* offset for fp->fd_top */
1852 {
1853     int		i;
1854 
1855     if (recursive)
1856 	for (i = 0; i < fp->fd_nested.ga_len; ++i)
1857 	    deleteFoldMarkers((fold_T *)fp->fd_nested.ga_data + i, TRUE,
1858 						       lnum_off + fp->fd_top);
1859     foldDelMarker(fp->fd_top + lnum_off, curwin->w_p_fmr, foldstartmarkerlen);
1860     foldDelMarker(fp->fd_top + lnum_off + fp->fd_len - 1,
1861 					     foldendmarker, foldendmarkerlen);
1862 }
1863 
1864 /* foldDelMarker() {{{2 */
1865 /*
1866  * Delete marker "marker[markerlen]" at the end of line "lnum".
1867  * Delete 'commentstring' if it matches.
1868  * If the marker is not found, there is no error message.  Could a missing
1869  * close-marker.
1870  */
1871     static void
1872 foldDelMarker(lnum, marker, markerlen)
1873     linenr_T	lnum;
1874     char_u	*marker;
1875     int		markerlen;
1876 {
1877     char_u	*line;
1878     char_u	*newline;
1879     char_u	*p;
1880     int		len;
1881     char_u	*cms = curbuf->b_p_cms;
1882     char_u	*cms2;
1883 
1884     line = ml_get(lnum);
1885     for (p = line; *p != NUL; ++p)
1886 	if (STRNCMP(p, marker, markerlen) == 0)
1887 	{
1888 	    /* Found the marker, include a digit if it's there. */
1889 	    len = markerlen;
1890 	    if (VIM_ISDIGIT(p[len]))
1891 		++len;
1892 	    if (*cms != NUL)
1893 	    {
1894 		/* Also delete 'commentstring' if it matches. */
1895 		cms2 = (char_u *)strstr((char *)cms, "%s");
1896 		if (p - line >= cms2 - cms
1897 			&& STRNCMP(p - (cms2 - cms), cms, cms2 - cms) == 0
1898 			&& STRNCMP(p + len, cms2 + 2, STRLEN(cms2 + 2)) == 0)
1899 		{
1900 		    p -= cms2 - cms;
1901 		    len += (int)STRLEN(cms) - 2;
1902 		}
1903 	    }
1904 	    if (u_save(lnum - 1, lnum + 1) == OK)
1905 	    {
1906 		/* Make new line: text-before-marker + text-after-marker */
1907 		newline = alloc((unsigned)(STRLEN(line) - len + 1));
1908 		if (newline != NULL)
1909 		{
1910 		    STRNCPY(newline, line, p - line);
1911 		    STRCPY(newline + (p - line), p + len);
1912 		    ml_replace(lnum, newline, FALSE);
1913 		}
1914 	    }
1915 	    break;
1916 	}
1917 }
1918 
1919 /* get_foldtext() {{{2 */
1920 /*
1921  * Return the text for a closed fold at line "lnum", with last line "lnume".
1922  * When 'foldtext' isn't set puts the result in "buf[51]".  Otherwise the
1923  * result is in allocated memory.
1924  */
1925     char_u *
1926 get_foldtext(wp, lnum, lnume, foldinfo, buf)
1927     win_T	*wp;
1928     linenr_T	lnum, lnume;
1929     foldinfo_T	*foldinfo;
1930     char_u	*buf;
1931 {
1932     char_u	*text = NULL;
1933 
1934 #ifdef FEAT_EVAL
1935     if (*wp->w_p_fdt != NUL)
1936     {
1937 	char_u	dashes[MAX_LEVEL + 2];
1938 	win_T	*save_curwin;
1939 	int	level;
1940 	char_u	*p;
1941 
1942 	/* Set "v:foldstart" and "v:foldend". */
1943 	set_vim_var_nr(VV_FOLDSTART, lnum);
1944 	set_vim_var_nr(VV_FOLDEND, lnume);
1945 
1946 	/* Set "v:folddashes" to a string of "level" dashes. */
1947 	/* Set "v:foldlevel" to "level". */
1948 	level = foldinfo->fi_level;
1949 	if (level > (int)sizeof(dashes) - 1)
1950 	    level = (int)sizeof(dashes) - 1;
1951 	vim_memset(dashes, '-', (size_t)level);
1952 	dashes[level] = NUL;
1953 	set_vim_var_string(VV_FOLDDASHES, dashes, -1);
1954 	set_vim_var_nr(VV_FOLDLEVEL, (long)level);
1955 	save_curwin = curwin;
1956 	curwin = wp;
1957 	curbuf = wp->w_buffer;
1958 
1959 	++emsg_off;
1960 	text = eval_to_string_safe(wp->w_p_fdt, NULL,
1961 			 was_set_insecurely((char_u *)"foldtext", OPT_LOCAL));
1962 	--emsg_off;
1963 
1964 	curwin = save_curwin;
1965 	curbuf = curwin->w_buffer;
1966 	set_vim_var_string(VV_FOLDDASHES, NULL, -1);
1967 
1968 	if (text != NULL)
1969 	{
1970 	    /* Replace unprintable characters, if there are any.  But
1971 	     * replace a TAB with a space. */
1972 	    for (p = text; *p != NUL; ++p)
1973 	    {
1974 # ifdef FEAT_MBYTE
1975 		int	len;
1976 
1977 		if (has_mbyte && (len = (*mb_ptr2len)(p)) > 1)
1978 		{
1979 		    if (!vim_isprintc((*mb_ptr2char)(p)))
1980 			break;
1981 		    p += len - 1;
1982 		}
1983 		else
1984 # endif
1985 		    if (*p == TAB)
1986 			*p = ' ';
1987 		    else if (ptr2cells(p) > 1)
1988 			break;
1989 	    }
1990 	    if (*p != NUL)
1991 	    {
1992 		p = transstr(text);
1993 		vim_free(text);
1994 		text = p;
1995 	    }
1996 	}
1997     }
1998     if (text == NULL)
1999 #endif
2000     {
2001 	sprintf((char *)buf, _("+--%3ld lines folded "),
2002 						    (long)(lnume - lnum + 1));
2003 	text = buf;
2004     }
2005     return text;
2006 }
2007 
2008 /* foldtext_cleanup() {{{2 */
2009 /*
2010  * Remove 'foldmarker' and 'commentstring' from "str" (in-place).
2011  */
2012     void
2013 foldtext_cleanup(str)
2014     char_u	*str;
2015 {
2016     char_u	*cms_start;	/* first part or the whole comment */
2017     int		cms_slen = 0;	/* length of cms_start */
2018     char_u	*cms_end;	/* last part of the comment or NULL */
2019     int		cms_elen = 0;	/* length of cms_end */
2020     char_u	*s;
2021     char_u	*p;
2022     int		len;
2023     int		did1 = FALSE;
2024     int		did2 = FALSE;
2025 
2026     /* Ignore leading and trailing white space in 'commentstring'. */
2027     cms_start = skipwhite(curbuf->b_p_cms);
2028     cms_slen = (int)STRLEN(cms_start);
2029     while (cms_slen > 0 && vim_iswhite(cms_start[cms_slen - 1]))
2030 	--cms_slen;
2031 
2032     /* locate "%s" in 'commentstring', use the part before and after it. */
2033     cms_end = (char_u *)strstr((char *)cms_start, "%s");
2034     if (cms_end != NULL)
2035     {
2036 	cms_elen = cms_slen - (int)(cms_end - cms_start);
2037 	cms_slen = (int)(cms_end - cms_start);
2038 
2039 	/* exclude white space before "%s" */
2040 	while (cms_slen > 0 && vim_iswhite(cms_start[cms_slen - 1]))
2041 	    --cms_slen;
2042 
2043 	/* skip "%s" and white space after it */
2044 	s = skipwhite(cms_end + 2);
2045 	cms_elen -= (int)(s - cms_end);
2046 	cms_end = s;
2047     }
2048     parseMarker(curwin);
2049 
2050     for (s = str; *s != NUL; )
2051     {
2052 	len = 0;
2053 	if (STRNCMP(s, curwin->w_p_fmr, foldstartmarkerlen) == 0)
2054 	    len = foldstartmarkerlen;
2055 	else if (STRNCMP(s, foldendmarker, foldendmarkerlen) == 0)
2056 	    len = foldendmarkerlen;
2057 	if (len > 0)
2058 	{
2059 	    if (VIM_ISDIGIT(s[len]))
2060 		++len;
2061 
2062 	    /* May remove 'commentstring' start.  Useful when it's a double
2063 	     * quote and we already removed a double quote. */
2064 	    for (p = s; p > str && vim_iswhite(p[-1]); --p)
2065 		;
2066 	    if (p >= str + cms_slen
2067 			   && STRNCMP(p - cms_slen, cms_start, cms_slen) == 0)
2068 	    {
2069 		len += (int)(s - p) + cms_slen;
2070 		s = p - cms_slen;
2071 	    }
2072 	}
2073 	else if (cms_end != NULL)
2074 	{
2075 	    if (!did1 && cms_slen > 0 && STRNCMP(s, cms_start, cms_slen) == 0)
2076 	    {
2077 		len = cms_slen;
2078 		did1 = TRUE;
2079 	    }
2080 	    else if (!did2 && cms_elen > 0
2081 					&& STRNCMP(s, cms_end, cms_elen) == 0)
2082 	    {
2083 		len = cms_elen;
2084 		did2 = TRUE;
2085 	    }
2086 	}
2087 	if (len != 0)
2088 	{
2089 	    while (vim_iswhite(s[len]))
2090 		++len;
2091 	    STRMOVE(s, s + len);
2092 	}
2093 	else
2094 	{
2095 	    mb_ptr_adv(s);
2096 	}
2097     }
2098 }
2099 
2100 /* Folding by indent, expr, marker and syntax. {{{1 */
2101 /* Define "fline_T", passed to get fold level for a line. {{{2 */
2102 typedef struct
2103 {
2104     win_T	*wp;		/* window */
2105     linenr_T	lnum;		/* current line number */
2106     linenr_T	off;		/* offset between lnum and real line number */
2107     linenr_T	lnum_save;	/* line nr used by foldUpdateIEMSRecurse() */
2108     int		lvl;		/* current level (-1 for undefined) */
2109     int		lvl_next;	/* level used for next line */
2110     int		start;		/* number of folds that are forced to start at
2111 				   this line. */
2112     int		end;		/* level of fold that is forced to end below
2113 				   this line */
2114     int		had_end;	/* level of fold that is forced to end above
2115 				   this line (copy of "end" of prev. line) */
2116 } fline_T;
2117 
2118 /* Flag is set when redrawing is needed. */
2119 static int fold_changed;
2120 
2121 /* Function declarations. {{{2 */
2122 static linenr_T foldUpdateIEMSRecurse __ARGS((garray_T *gap, int level, linenr_T startlnum, fline_T *flp, void (*getlevel)__ARGS((fline_T *)), linenr_T bot, int topflags));
2123 static int foldInsert __ARGS((garray_T *gap, int i));
2124 static void foldSplit __ARGS((garray_T *gap, int i, linenr_T top, linenr_T bot));
2125 static void foldRemove __ARGS((garray_T *gap, linenr_T top, linenr_T bot));
2126 static void foldMerge __ARGS((fold_T *fp1, garray_T *gap, fold_T *fp2));
2127 static void foldlevelIndent __ARGS((fline_T *flp));
2128 #ifdef FEAT_DIFF
2129 static void foldlevelDiff __ARGS((fline_T *flp));
2130 #endif
2131 static void foldlevelExpr __ARGS((fline_T *flp));
2132 static void foldlevelMarker __ARGS((fline_T *flp));
2133 static void foldlevelSyntax __ARGS((fline_T *flp));
2134 
2135 /* foldUpdateIEMS() {{{2 */
2136 /*
2137  * Update the folding for window "wp", at least from lines "top" to "bot".
2138  * Return TRUE if any folds did change.
2139  */
2140     static void
2141 foldUpdateIEMS(wp, top, bot)
2142     win_T	*wp;
2143     linenr_T	top;
2144     linenr_T	bot;
2145 {
2146     linenr_T	start;
2147     linenr_T	end;
2148     fline_T	fline;
2149     void	(*getlevel)__ARGS((fline_T *));
2150     int		level;
2151     fold_T	*fp;
2152 
2153     /* Avoid problems when being called recursively. */
2154     if (invalid_top != (linenr_T)0)
2155 	return;
2156 
2157     if (wp->w_foldinvalid)
2158     {
2159 	/* Need to update all folds. */
2160 	top = 1;
2161 	bot = wp->w_buffer->b_ml.ml_line_count;
2162 	wp->w_foldinvalid = FALSE;
2163 
2164 	/* Mark all folds a maybe-small. */
2165 	setSmallMaybe(&wp->w_folds);
2166     }
2167 
2168 #ifdef FEAT_DIFF
2169     /* add the context for "diff" folding */
2170     if (foldmethodIsDiff(wp))
2171     {
2172 	if (top > diff_context)
2173 	    top -= diff_context;
2174 	else
2175 	    top = 1;
2176 	bot += diff_context;
2177     }
2178 #endif
2179 
2180     /* When deleting lines at the end of the buffer "top" can be past the end
2181      * of the buffer. */
2182     if (top > wp->w_buffer->b_ml.ml_line_count)
2183 	top = wp->w_buffer->b_ml.ml_line_count;
2184 
2185     fold_changed = FALSE;
2186     fline.wp = wp;
2187     fline.off = 0;
2188     fline.lvl = 0;
2189     fline.lvl_next = -1;
2190     fline.start = 0;
2191     fline.end = MAX_LEVEL + 1;
2192     fline.had_end = MAX_LEVEL + 1;
2193 
2194     invalid_top = top;
2195     invalid_bot = bot;
2196 
2197     if (foldmethodIsMarker(wp))
2198     {
2199 	getlevel = foldlevelMarker;
2200 
2201 	/* Init marker variables to speed up foldlevelMarker(). */
2202 	parseMarker(wp);
2203 
2204 	/* Need to get the level of the line above top, it is used if there is
2205 	 * no marker at the top. */
2206 	if (top > 1)
2207 	{
2208 	    /* Get the fold level at top - 1. */
2209 	    level = foldLevelWin(wp, top - 1);
2210 
2211 	    /* The fold may end just above the top, check for that. */
2212 	    fline.lnum = top - 1;
2213 	    fline.lvl = level;
2214 	    getlevel(&fline);
2215 
2216 	    /* If a fold started here, we already had the level, if it stops
2217 	     * here, we need to use lvl_next.  Could also start and end a fold
2218 	     * in the same line. */
2219 	    if (fline.lvl > level)
2220 		fline.lvl = level - (fline.lvl - fline.lvl_next);
2221 	    else
2222 		fline.lvl = fline.lvl_next;
2223 	}
2224 	fline.lnum = top;
2225 	getlevel(&fline);
2226     }
2227     else
2228     {
2229 	fline.lnum = top;
2230 	if (foldmethodIsExpr(wp))
2231 	{
2232 	    getlevel = foldlevelExpr;
2233 	    /* start one line back, because a "<1" may indicate the end of a
2234 	     * fold in the topline */
2235 	    if (top > 1)
2236 		--fline.lnum;
2237 	}
2238 	else if (foldmethodIsSyntax(wp))
2239 	    getlevel = foldlevelSyntax;
2240 #ifdef FEAT_DIFF
2241 	else if (foldmethodIsDiff(wp))
2242 	    getlevel = foldlevelDiff;
2243 #endif
2244 	else
2245 	    getlevel = foldlevelIndent;
2246 
2247 	/* Backup to a line for which the fold level is defined.  Since it's
2248 	 * always defined for line one, we will stop there. */
2249 	fline.lvl = -1;
2250 	for ( ; !got_int; --fline.lnum)
2251 	{
2252 	    /* Reset lvl_next each time, because it will be set to a value for
2253 	     * the next line, but we search backwards here. */
2254 	    fline.lvl_next = -1;
2255 	    getlevel(&fline);
2256 	    if (fline.lvl >= 0)
2257 		break;
2258 	}
2259     }
2260 
2261     /*
2262      * If folding is defined by the syntax, it is possible that a change in
2263      * one line will cause all sub-folds of the current fold to change (e.g.,
2264      * closing a C-style comment can cause folds in the subsequent lines to
2265      * appear). To take that into account we should adjust the value of "bot"
2266      * to point to the end of the current fold:
2267      */
2268     if (foldlevelSyntax == getlevel)
2269     {
2270 	garray_T *gap = &wp->w_folds;
2271 	fold_T	 *fpn = NULL;
2272 	int	  current_fdl = 0;
2273 	linenr_T  fold_start_lnum = 0;
2274 	linenr_T  lnum_rel = fline.lnum;
2275 
2276 	while (current_fdl < fline.lvl)
2277 	{
2278 	    if (!foldFind(gap, lnum_rel, &fpn))
2279 		break;
2280 	    ++current_fdl;
2281 
2282 	    fold_start_lnum += fpn->fd_top;
2283 	    gap = &fpn->fd_nested;
2284 	    lnum_rel -= fpn->fd_top;
2285 	}
2286 	if (fpn != NULL && current_fdl == fline.lvl)
2287 	{
2288 	    linenr_T fold_end_lnum = fold_start_lnum + fpn->fd_len;
2289 
2290 	    if (fold_end_lnum > bot)
2291 		bot = fold_end_lnum;
2292 	}
2293     }
2294 
2295     start = fline.lnum;
2296     end = bot;
2297     /* Do at least one line. */
2298     if (start > end && end < wp->w_buffer->b_ml.ml_line_count)
2299 	end = start;
2300     while (!got_int)
2301     {
2302 	/* Always stop at the end of the file ("end" can be past the end of
2303 	 * the file). */
2304 	if (fline.lnum > wp->w_buffer->b_ml.ml_line_count)
2305 	    break;
2306 	if (fline.lnum > end)
2307 	{
2308 	    /* For "marker", "expr"  and "syntax"  methods: If a change caused
2309 	     * a fold to be removed, we need to continue at least until where
2310 	     * it ended. */
2311 	    if (getlevel != foldlevelMarker
2312 		    && getlevel != foldlevelSyntax
2313 		    && getlevel != foldlevelExpr)
2314 		break;
2315 	    if ((start <= end
2316 			&& foldFind(&wp->w_folds, end, &fp)
2317 			&& fp->fd_top + fp->fd_len - 1 > end)
2318 		    || (fline.lvl == 0
2319 			&& foldFind(&wp->w_folds, fline.lnum, &fp)
2320 			&& fp->fd_top < fline.lnum))
2321 		end = fp->fd_top + fp->fd_len - 1;
2322 	    else if (getlevel == foldlevelSyntax
2323 		    && foldLevelWin(wp, fline.lnum) != fline.lvl)
2324 		/* For "syntax" method: Compare the foldlevel that the syntax
2325 		 * tells us to the foldlevel from the existing folds.  If they
2326 		 * don't match continue updating folds. */
2327 		end = fline.lnum;
2328 	    else
2329 		break;
2330 	}
2331 
2332 	/* A level 1 fold starts at a line with foldlevel > 0. */
2333 	if (fline.lvl > 0)
2334 	{
2335 	    invalid_top = fline.lnum;
2336 	    invalid_bot = end;
2337 	    end = foldUpdateIEMSRecurse(&wp->w_folds,
2338 				   1, start, &fline, getlevel, end, FD_LEVEL);
2339 	    start = fline.lnum;
2340 	}
2341 	else
2342 	{
2343 	    if (fline.lnum == wp->w_buffer->b_ml.ml_line_count)
2344 		break;
2345 	    ++fline.lnum;
2346 	    fline.lvl = fline.lvl_next;
2347 	    getlevel(&fline);
2348 	}
2349     }
2350 
2351     /* There can't be any folds from start until end now. */
2352     foldRemove(&wp->w_folds, start, end);
2353 
2354     /* If some fold changed, need to redraw and position cursor. */
2355     if (fold_changed && wp->w_p_fen)
2356 	changed_window_setting_win(wp);
2357 
2358     /* If we updated folds past "bot", need to redraw more lines.  Don't do
2359      * this in other situations, the changed lines will be redrawn anyway and
2360      * this method can cause the whole window to be updated. */
2361     if (end != bot)
2362     {
2363 	if (wp->w_redraw_top == 0 || wp->w_redraw_top > top)
2364 	    wp->w_redraw_top = top;
2365 	if (wp->w_redraw_bot < end)
2366 	    wp->w_redraw_bot = end;
2367     }
2368 
2369     invalid_top = (linenr_T)0;
2370 }
2371 
2372 /* foldUpdateIEMSRecurse() {{{2 */
2373 /*
2374  * Update a fold that starts at "flp->lnum".  At this line there is always a
2375  * valid foldlevel, and its level >= "level".
2376  * "flp" is valid for "flp->lnum" when called and it's valid when returning.
2377  * "flp->lnum" is set to the lnum just below the fold, if it ends before
2378  * "bot", it's "bot" plus one if the fold continues and it's bigger when using
2379  * the marker method and a text change made following folds to change.
2380  * When returning, "flp->lnum_save" is the line number that was used to get
2381  * the level when the level at "flp->lnum" is invalid.
2382  * Remove any folds from "startlnum" up to here at this level.
2383  * Recursively update nested folds.
2384  * Below line "bot" there are no changes in the text.
2385  * "flp->lnum", "flp->lnum_save" and "bot" are relative to the start of the
2386  * outer fold.
2387  * "flp->off" is the offset to the real line number in the buffer.
2388  *
2389  * All this would be a lot simpler if all folds in the range would be deleted
2390  * and then created again.  But we would lose all information about the
2391  * folds, even when making changes that don't affect the folding (e.g. "vj~").
2392  *
2393  * Returns bot, which may have been increased for lines that also need to be
2394  * updated as a result of a detected change in the fold.
2395  */
2396     static linenr_T
2397 foldUpdateIEMSRecurse(gap, level, startlnum, flp, getlevel, bot, topflags)
2398     garray_T	*gap;
2399     int		level;
2400     linenr_T	startlnum;
2401     fline_T	*flp;
2402     void	(*getlevel)__ARGS((fline_T *));
2403     linenr_T	bot;
2404     int		topflags;	/* flags used by containing fold */
2405 {
2406     linenr_T	ll;
2407     fold_T	*fp = NULL;
2408     fold_T	*fp2;
2409     int		lvl = level;
2410     linenr_T	startlnum2 = startlnum;
2411     linenr_T	firstlnum = flp->lnum;	/* first lnum we got */
2412     int		i;
2413     int		finish = FALSE;
2414     linenr_T	linecount = flp->wp->w_buffer->b_ml.ml_line_count - flp->off;
2415     int		concat;
2416 
2417     /*
2418      * If using the marker method, the start line is not the start of a fold
2419      * at the level we're dealing with and the level is non-zero, we must use
2420      * the previous fold.  But ignore a fold that starts at or below
2421      * startlnum, it must be deleted.
2422      */
2423     if (getlevel == foldlevelMarker && flp->start <= flp->lvl - level
2424 							      && flp->lvl > 0)
2425     {
2426 	foldFind(gap, startlnum - 1, &fp);
2427 	if (fp >= ((fold_T *)gap->ga_data) + gap->ga_len
2428 						   || fp->fd_top >= startlnum)
2429 	    fp = NULL;
2430     }
2431 
2432     /*
2433      * Loop over all lines in this fold, or until "bot" is hit.
2434      * Handle nested folds inside of this fold.
2435      * "flp->lnum" is the current line.  When finding the end of the fold, it
2436      * is just below the end of the fold.
2437      * "*flp" contains the level of the line "flp->lnum" or a following one if
2438      * there are lines with an invalid fold level.  "flp->lnum_save" is the
2439      * line number that was used to get the fold level (below "flp->lnum" when
2440      * it has an invalid fold level).  When called the fold level is always
2441      * valid, thus "flp->lnum_save" is equal to "flp->lnum".
2442      */
2443     flp->lnum_save = flp->lnum;
2444     while (!got_int)
2445     {
2446 	/* Updating folds can be slow, check for CTRL-C. */
2447 	line_breakcheck();
2448 
2449 	/* Set "lvl" to the level of line "flp->lnum".  When flp->start is set
2450 	 * and after the first line of the fold, set the level to zero to
2451 	 * force the fold to end.  Do the same when had_end is set: Previous
2452 	 * line was marked as end of a fold. */
2453 	lvl = flp->lvl;
2454 	if (lvl > MAX_LEVEL)
2455 	    lvl = MAX_LEVEL;
2456 	if (flp->lnum > firstlnum
2457 		&& (level > lvl - flp->start || level >= flp->had_end))
2458 	    lvl = 0;
2459 
2460 	if (flp->lnum > bot && !finish && fp != NULL)
2461 	{
2462 	    /* For "marker" and "syntax" methods:
2463 	     * - If a change caused a nested fold to be removed, we need to
2464 	     *   delete it and continue at least until where it ended.
2465 	     * - If a change caused a nested fold to be created, or this fold
2466 	     *   to continue below its original end, need to finish this fold.
2467 	     */
2468 	    if (getlevel != foldlevelMarker
2469 		    && getlevel != foldlevelExpr
2470 		    && getlevel != foldlevelSyntax)
2471 		break;
2472 	    i = 0;
2473 	    fp2 = fp;
2474 	    if (lvl >= level)
2475 	    {
2476 		/* Compute how deep the folds currently are, if it's deeper
2477 		 * than "lvl" then some must be deleted, need to update
2478 		 * at least one nested fold. */
2479 		ll = flp->lnum - fp->fd_top;
2480 		while (foldFind(&fp2->fd_nested, ll, &fp2))
2481 		{
2482 		    ++i;
2483 		    ll -= fp2->fd_top;
2484 		}
2485 	    }
2486 	    if (lvl < level + i)
2487 	    {
2488 		foldFind(&fp->fd_nested, flp->lnum - fp->fd_top, &fp2);
2489 		if (fp2 != NULL)
2490 		    bot = fp2->fd_top + fp2->fd_len - 1 + fp->fd_top;
2491 	    }
2492 	    else if (fp->fd_top + fp->fd_len <= flp->lnum && lvl >= level)
2493 		finish = TRUE;
2494 	    else
2495 		break;
2496 	}
2497 
2498 	/* At the start of the first nested fold and at the end of the current
2499 	 * fold: check if existing folds at this level, before the current
2500 	 * one, need to be deleted or truncated. */
2501 	if (fp == NULL
2502 		&& (lvl != level
2503 		    || flp->lnum_save >= bot
2504 		    || flp->start != 0
2505 		    || flp->had_end <= MAX_LEVEL
2506 		    || flp->lnum == linecount))
2507 	{
2508 	    /*
2509 	     * Remove or update folds that have lines between startlnum and
2510 	     * firstlnum.
2511 	     */
2512 	    while (!got_int)
2513 	    {
2514 		/* set concat to 1 if it's allowed to concatenated this fold
2515 		 * with a previous one that touches it. */
2516 		if (flp->start != 0 || flp->had_end <= MAX_LEVEL)
2517 		    concat = 0;
2518 		else
2519 		    concat = 1;
2520 
2521 		/* Find an existing fold to re-use.  Preferably one that
2522 		 * includes startlnum, otherwise one that ends just before
2523 		 * startlnum or starts after it. */
2524 		if (foldFind(gap, startlnum, &fp)
2525 			|| (fp < ((fold_T *)gap->ga_data) + gap->ga_len
2526 			    && fp->fd_top <= firstlnum)
2527 			|| foldFind(gap, firstlnum - concat, &fp)
2528 			|| (fp < ((fold_T *)gap->ga_data) + gap->ga_len
2529 			    && ((lvl < level && fp->fd_top < flp->lnum)
2530 				|| (lvl >= level
2531 					   && fp->fd_top <= flp->lnum_save))))
2532 		{
2533 		    if (fp->fd_top + fp->fd_len + concat > firstlnum)
2534 		    {
2535 			/* Use existing fold for the new fold.  If it starts
2536 			 * before where we started looking, extend it.  If it
2537 			 * starts at another line, update nested folds to keep
2538 			 * their position, compensating for the new fd_top. */
2539 			if (fp->fd_top >= startlnum && fp->fd_top != firstlnum)
2540 			{
2541 			    if (fp->fd_top > firstlnum)
2542 				/* like lines are inserted */
2543 				foldMarkAdjustRecurse(&fp->fd_nested,
2544 					(linenr_T)0, (linenr_T)MAXLNUM,
2545 					(long)(fp->fd_top - firstlnum), 0L);
2546 			    else
2547 				/* like lines are deleted */
2548 				foldMarkAdjustRecurse(&fp->fd_nested,
2549 					(linenr_T)0,
2550 					(long)(firstlnum - fp->fd_top - 1),
2551 					(linenr_T)MAXLNUM,
2552 					(long)(fp->fd_top - firstlnum));
2553 			    fp->fd_len += fp->fd_top - firstlnum;
2554 			    fp->fd_top = firstlnum;
2555 			    fold_changed = TRUE;
2556 			}
2557 			else if (flp->start != 0 && lvl == level
2558 						   && fp->fd_top != firstlnum)
2559 			{
2560 			    /* Existing fold that includes startlnum must stop
2561 			     * if we find the start of a new fold at the same
2562 			     * level.  Split it.  Delete contained folds at
2563 			     * this point to split them too. */
2564 			    foldRemove(&fp->fd_nested, flp->lnum - fp->fd_top,
2565 						      flp->lnum - fp->fd_top);
2566 			    i = (int)(fp - (fold_T *)gap->ga_data);
2567 			    foldSplit(gap, i, flp->lnum, flp->lnum - 1);
2568 			    fp = (fold_T *)gap->ga_data + i + 1;
2569 			    /* If using the "marker" or "syntax" method, we
2570 			     * need to continue until the end of the fold is
2571 			     * found. */
2572 			    if (getlevel == foldlevelMarker
2573 				    || getlevel == foldlevelExpr
2574 				    || getlevel == foldlevelSyntax)
2575 				finish = TRUE;
2576 			}
2577 			break;
2578 		    }
2579 		    if (fp->fd_top >= startlnum)
2580 		    {
2581 			/* A fold that starts at or after startlnum and stops
2582 			 * before the new fold must be deleted.  Continue
2583 			 * looking for the next one. */
2584 			deleteFoldEntry(gap,
2585 				     (int)(fp - (fold_T *)gap->ga_data), TRUE);
2586 		    }
2587 		    else
2588 		    {
2589 			/* A fold has some lines above startlnum, truncate it
2590 			 * to stop just above startlnum.  */
2591 			fp->fd_len = startlnum - fp->fd_top;
2592 			foldMarkAdjustRecurse(&fp->fd_nested,
2593 				(linenr_T)fp->fd_len, (linenr_T)MAXLNUM,
2594 						       (linenr_T)MAXLNUM, 0L);
2595 			fold_changed = TRUE;
2596 		    }
2597 		}
2598 		else
2599 		{
2600 		    /* Insert new fold.  Careful: ga_data may be NULL and it
2601 		     * may change! */
2602 		    i = (int)(fp - (fold_T *)gap->ga_data);
2603 		    if (foldInsert(gap, i) != OK)
2604 			return bot;
2605 		    fp = (fold_T *)gap->ga_data + i;
2606 		    /* The new fold continues until bot, unless we find the
2607 		     * end earlier. */
2608 		    fp->fd_top = firstlnum;
2609 		    fp->fd_len = bot - firstlnum + 1;
2610 		    /* When the containing fold is open, the new fold is open.
2611 		     * The new fold is closed if the fold above it is closed.
2612 		     * The first fold depends on the containing fold. */
2613 		    if (topflags == FD_OPEN)
2614 		    {
2615 			flp->wp->w_fold_manual = TRUE;
2616 			fp->fd_flags = FD_OPEN;
2617 		    }
2618 		    else if (i <= 0)
2619 		    {
2620 			fp->fd_flags = topflags;
2621 			if (topflags != FD_LEVEL)
2622 			    flp->wp->w_fold_manual = TRUE;
2623 		    }
2624 		    else
2625 			fp->fd_flags = (fp - 1)->fd_flags;
2626 		    fp->fd_small = MAYBE;
2627 		    /* If using the "marker", "expr" or "syntax" method, we
2628 		     * need to continue until the end of the fold is found. */
2629 		    if (getlevel == foldlevelMarker
2630 			    || getlevel == foldlevelExpr
2631 			    || getlevel == foldlevelSyntax)
2632 			finish = TRUE;
2633 		    fold_changed = TRUE;
2634 		    break;
2635 		}
2636 	    }
2637 	}
2638 
2639 	if (lvl < level || flp->lnum > linecount)
2640 	{
2641 	    /*
2642 	     * Found a line with a lower foldlevel, this fold ends just above
2643 	     * "flp->lnum".
2644 	     */
2645 	    break;
2646 	}
2647 
2648 	/*
2649 	 * The fold includes the line "flp->lnum" and "flp->lnum_save".
2650 	 * Check "fp" for safety.
2651 	 */
2652 	if (lvl > level && fp != NULL)
2653 	{
2654 	    /*
2655 	     * There is a nested fold, handle it recursively.
2656 	     */
2657 	    /* At least do one line (can happen when finish is TRUE). */
2658 	    if (bot < flp->lnum)
2659 		bot = flp->lnum;
2660 
2661 	    /* Line numbers in the nested fold are relative to the start of
2662 	     * this fold. */
2663 	    flp->lnum = flp->lnum_save - fp->fd_top;
2664 	    flp->off += fp->fd_top;
2665 	    i = (int)(fp - (fold_T *)gap->ga_data);
2666 	    bot = foldUpdateIEMSRecurse(&fp->fd_nested, level + 1,
2667 				       startlnum2 - fp->fd_top, flp, getlevel,
2668 					      bot - fp->fd_top, fp->fd_flags);
2669 	    fp = (fold_T *)gap->ga_data + i;
2670 	    flp->lnum += fp->fd_top;
2671 	    flp->lnum_save += fp->fd_top;
2672 	    flp->off -= fp->fd_top;
2673 	    bot += fp->fd_top;
2674 	    startlnum2 = flp->lnum;
2675 
2676 	    /* This fold may end at the same line, don't incr. flp->lnum. */
2677 	}
2678 	else
2679 	{
2680 	    /*
2681 	     * Get the level of the next line, then continue the loop to check
2682 	     * if it ends there.
2683 	     * Skip over undefined lines, to find the foldlevel after it.
2684 	     * For the last line in the file the foldlevel is always valid.
2685 	     */
2686 	    flp->lnum = flp->lnum_save;
2687 	    ll = flp->lnum + 1;
2688 	    while (!got_int)
2689 	    {
2690 		/* Make the previous level available to foldlevel(). */
2691 		prev_lnum = flp->lnum;
2692 		prev_lnum_lvl = flp->lvl;
2693 
2694 		if (++flp->lnum > linecount)
2695 		    break;
2696 		flp->lvl = flp->lvl_next;
2697 		getlevel(flp);
2698 		if (flp->lvl >= 0 || flp->had_end <= MAX_LEVEL)
2699 		    break;
2700 	    }
2701 	    prev_lnum = 0;
2702 	    if (flp->lnum > linecount)
2703 		break;
2704 
2705 	    /* leave flp->lnum_save to lnum of the line that was used to get
2706 	     * the level, flp->lnum to the lnum of the next line. */
2707 	    flp->lnum_save = flp->lnum;
2708 	    flp->lnum = ll;
2709 	}
2710     }
2711 
2712     if (fp == NULL)	/* only happens when got_int is set */
2713 	return bot;
2714 
2715     /*
2716      * Get here when:
2717      * lvl < level: the folds ends just above "flp->lnum"
2718      * lvl >= level: fold continues below "bot"
2719      */
2720 
2721     /* Current fold at least extends until lnum. */
2722     if (fp->fd_len < flp->lnum - fp->fd_top)
2723     {
2724 	fp->fd_len = flp->lnum - fp->fd_top;
2725 	fp->fd_small = MAYBE;
2726 	fold_changed = TRUE;
2727     }
2728 
2729     /* Delete contained folds from the end of the last one found until where
2730      * we stopped looking. */
2731     foldRemove(&fp->fd_nested, startlnum2 - fp->fd_top,
2732 						  flp->lnum - 1 - fp->fd_top);
2733 
2734     if (lvl < level)
2735     {
2736 	/* End of fold found, update the length when it got shorter. */
2737 	if (fp->fd_len != flp->lnum - fp->fd_top)
2738 	{
2739 	    if (fp->fd_top + fp->fd_len > bot + 1)
2740 	    {
2741 		/* fold continued below bot */
2742 		if (getlevel == foldlevelMarker
2743 			|| getlevel == foldlevelExpr
2744 			|| getlevel == foldlevelSyntax)
2745 		{
2746 		    /* marker method: truncate the fold and make sure the
2747 		     * previously included lines are processed again */
2748 		    bot = fp->fd_top + fp->fd_len - 1;
2749 		    fp->fd_len = flp->lnum - fp->fd_top;
2750 		}
2751 		else
2752 		{
2753 		    /* indent or expr method: split fold to create a new one
2754 		     * below bot */
2755 		    i = (int)(fp - (fold_T *)gap->ga_data);
2756 		    foldSplit(gap, i, flp->lnum, bot);
2757 		    fp = (fold_T *)gap->ga_data + i;
2758 		}
2759 	    }
2760 	    else
2761 		fp->fd_len = flp->lnum - fp->fd_top;
2762 	    fold_changed = TRUE;
2763 	}
2764     }
2765 
2766     /* delete following folds that end before the current line */
2767     for (;;)
2768     {
2769 	fp2 = fp + 1;
2770 	if (fp2 >= (fold_T *)gap->ga_data + gap->ga_len
2771 						  || fp2->fd_top > flp->lnum)
2772 	    break;
2773 	if (fp2->fd_top + fp2->fd_len > flp->lnum)
2774 	{
2775 	    if (fp2->fd_top < flp->lnum)
2776 	    {
2777 		/* Make fold that includes lnum start at lnum. */
2778 		foldMarkAdjustRecurse(&fp2->fd_nested,
2779 			(linenr_T)0, (long)(flp->lnum - fp2->fd_top - 1),
2780 			(linenr_T)MAXLNUM, (long)(fp2->fd_top - flp->lnum));
2781 		fp2->fd_len -= flp->lnum - fp2->fd_top;
2782 		fp2->fd_top = flp->lnum;
2783 		fold_changed = TRUE;
2784 	    }
2785 
2786 	    if (lvl >= level)
2787 	    {
2788 		/* merge new fold with existing fold that follows */
2789 		foldMerge(fp, gap, fp2);
2790 	    }
2791 	    break;
2792 	}
2793 	fold_changed = TRUE;
2794 	deleteFoldEntry(gap, (int)(fp2 - (fold_T *)gap->ga_data), TRUE);
2795     }
2796 
2797     /* Need to redraw the lines we inspected, which might be further down than
2798      * was asked for. */
2799     if (bot < flp->lnum - 1)
2800 	bot = flp->lnum - 1;
2801 
2802     return bot;
2803 }
2804 
2805 /* foldInsert() {{{2 */
2806 /*
2807  * Insert a new fold in "gap" at position "i".
2808  * Returns OK for success, FAIL for failure.
2809  */
2810     static int
2811 foldInsert(gap, i)
2812     garray_T	*gap;
2813     int		i;
2814 {
2815     fold_T	*fp;
2816 
2817     if (ga_grow(gap, 1) != OK)
2818 	return FAIL;
2819     fp = (fold_T *)gap->ga_data + i;
2820     if (i < gap->ga_len)
2821 	mch_memmove(fp + 1, fp, sizeof(fold_T) * (gap->ga_len - i));
2822     ++gap->ga_len;
2823     ga_init2(&fp->fd_nested, (int)sizeof(fold_T), 10);
2824     return OK;
2825 }
2826 
2827 /* foldSplit() {{{2 */
2828 /*
2829  * Split the "i"th fold in "gap", which starts before "top" and ends below
2830  * "bot" in two pieces, one ending above "top" and the other starting below
2831  * "bot".
2832  * The caller must first have taken care of any nested folds from "top" to
2833  * "bot"!
2834  */
2835     static void
2836 foldSplit(gap, i, top, bot)
2837     garray_T	*gap;
2838     int		i;
2839     linenr_T	top;
2840     linenr_T	bot;
2841 {
2842     fold_T	*fp;
2843     fold_T	*fp2;
2844     garray_T	*gap1;
2845     garray_T	*gap2;
2846     int		idx;
2847     int		len;
2848 
2849     /* The fold continues below bot, need to split it. */
2850     if (foldInsert(gap, i + 1) == FAIL)
2851 	return;
2852     fp = (fold_T *)gap->ga_data + i;
2853     fp[1].fd_top = bot + 1;
2854     fp[1].fd_len = fp->fd_len - (fp[1].fd_top - fp->fd_top);
2855     fp[1].fd_flags = fp->fd_flags;
2856     fp[1].fd_small = MAYBE;
2857     fp->fd_small = MAYBE;
2858 
2859     /* Move nested folds below bot to new fold.  There can't be
2860      * any between top and bot, they have been removed by the caller. */
2861     gap1 = &fp->fd_nested;
2862     gap2 = &fp[1].fd_nested;
2863     (void)(foldFind(gap1, bot + 1 - fp->fd_top, &fp2));
2864     len = (int)((fold_T *)gap1->ga_data + gap1->ga_len - fp2);
2865     if (len > 0 && ga_grow(gap2, len) == OK)
2866     {
2867 	for (idx = 0; idx < len; ++idx)
2868 	{
2869 	    ((fold_T *)gap2->ga_data)[idx] = fp2[idx];
2870 	    ((fold_T *)gap2->ga_data)[idx].fd_top
2871 						 -= fp[1].fd_top - fp->fd_top;
2872 	}
2873 	gap2->ga_len = len;
2874 	gap1->ga_len -= len;
2875     }
2876     fp->fd_len = top - fp->fd_top;
2877     fold_changed = TRUE;
2878 }
2879 
2880 /* foldRemove() {{{2 */
2881 /*
2882  * Remove folds within the range "top" to and including "bot".
2883  * Check for these situations:
2884  *      1  2  3
2885  *      1  2  3
2886  * top     2  3  4  5
2887  *	   2  3  4  5
2888  * bot	   2  3  4  5
2889  *	      3     5  6
2890  *	      3     5  6
2891  *
2892  * 1: not changed
2893  * 2: truncate to stop above "top"
2894  * 3: split in two parts, one stops above "top", other starts below "bot".
2895  * 4: deleted
2896  * 5: made to start below "bot".
2897  * 6: not changed
2898  */
2899     static void
2900 foldRemove(gap, top, bot)
2901     garray_T	*gap;
2902     linenr_T	top;
2903     linenr_T	bot;
2904 {
2905     fold_T	*fp = NULL;
2906 
2907     if (bot < top)
2908 	return;		/* nothing to do */
2909 
2910     for (;;)
2911     {
2912 	/* Find fold that includes top or a following one. */
2913 	if (foldFind(gap, top, &fp) && fp->fd_top < top)
2914 	{
2915 	    /* 2: or 3: need to delete nested folds */
2916 	    foldRemove(&fp->fd_nested, top - fp->fd_top, bot - fp->fd_top);
2917 	    if (fp->fd_top + fp->fd_len > bot + 1)
2918 	    {
2919 		/* 3: need to split it. */
2920 		foldSplit(gap, (int)(fp - (fold_T *)gap->ga_data), top, bot);
2921 	    }
2922 	    else
2923 	    {
2924 		/* 2: truncate fold at "top". */
2925 		fp->fd_len = top - fp->fd_top;
2926 	    }
2927 	    fold_changed = TRUE;
2928 	    continue;
2929 	}
2930 	if (fp >= (fold_T *)(gap->ga_data) + gap->ga_len
2931 		|| fp->fd_top > bot)
2932 	{
2933 	    /* 6: Found a fold below bot, can stop looking. */
2934 	    break;
2935 	}
2936 	if (fp->fd_top >= top)
2937 	{
2938 	    /* Found an entry below top. */
2939 	    fold_changed = TRUE;
2940 	    if (fp->fd_top + fp->fd_len - 1 > bot)
2941 	    {
2942 		/* 5: Make fold that includes bot start below bot. */
2943 		foldMarkAdjustRecurse(&fp->fd_nested,
2944 			(linenr_T)0, (long)(bot - fp->fd_top),
2945 			(linenr_T)MAXLNUM, (long)(fp->fd_top - bot - 1));
2946 		fp->fd_len -= bot - fp->fd_top + 1;
2947 		fp->fd_top = bot + 1;
2948 		break;
2949 	    }
2950 
2951 	    /* 4: Delete completely contained fold. */
2952 	    deleteFoldEntry(gap, (int)(fp - (fold_T *)gap->ga_data), TRUE);
2953 	}
2954     }
2955 }
2956 
2957 /* foldMerge() {{{2 */
2958 /*
2959  * Merge two adjacent folds (and the nested ones in them).
2960  * This only works correctly when the folds are really adjacent!  Thus "fp1"
2961  * must end just above "fp2".
2962  * The resulting fold is "fp1", nested folds are moved from "fp2" to "fp1".
2963  * Fold entry "fp2" in "gap" is deleted.
2964  */
2965     static void
2966 foldMerge(fp1, gap, fp2)
2967     fold_T	*fp1;
2968     garray_T	*gap;
2969     fold_T	*fp2;
2970 {
2971     fold_T	*fp3;
2972     fold_T	*fp4;
2973     int		idx;
2974     garray_T	*gap1 = &fp1->fd_nested;
2975     garray_T	*gap2 = &fp2->fd_nested;
2976 
2977     /* If the last nested fold in fp1 touches the first nested fold in fp2,
2978      * merge them recursively. */
2979     if (foldFind(gap1, fp1->fd_len - 1L, &fp3) && foldFind(gap2, 0L, &fp4))
2980 	foldMerge(fp3, gap2, fp4);
2981 
2982     /* Move nested folds in fp2 to the end of fp1. */
2983     if (gap2->ga_len > 0 && ga_grow(gap1, gap2->ga_len) == OK)
2984     {
2985 	for (idx = 0; idx < gap2->ga_len; ++idx)
2986 	{
2987 	    ((fold_T *)gap1->ga_data)[gap1->ga_len]
2988 					= ((fold_T *)gap2->ga_data)[idx];
2989 	    ((fold_T *)gap1->ga_data)[gap1->ga_len].fd_top += fp1->fd_len;
2990 	    ++gap1->ga_len;
2991 	}
2992 	gap2->ga_len = 0;
2993     }
2994 
2995     fp1->fd_len += fp2->fd_len;
2996     deleteFoldEntry(gap, (int)(fp2 - (fold_T *)gap->ga_data), TRUE);
2997     fold_changed = TRUE;
2998 }
2999 
3000 /* foldlevelIndent() {{{2 */
3001 /*
3002  * Low level function to get the foldlevel for the "indent" method.
3003  * Doesn't use any caching.
3004  * Returns a level of -1 if the foldlevel depends on surrounding lines.
3005  */
3006     static void
3007 foldlevelIndent(flp)
3008     fline_T	*flp;
3009 {
3010     char_u	*s;
3011     buf_T	*buf;
3012     linenr_T	lnum = flp->lnum + flp->off;
3013 
3014     buf = flp->wp->w_buffer;
3015     s = skipwhite(ml_get_buf(buf, lnum, FALSE));
3016 
3017     /* empty line or lines starting with a character in 'foldignore': level
3018      * depends on surrounding lines */
3019     if (*s == NUL || vim_strchr(flp->wp->w_p_fdi, *s) != NULL)
3020     {
3021 	/* first and last line can't be undefined, use level 0 */
3022 	if (lnum == 1 || lnum == buf->b_ml.ml_line_count)
3023 	    flp->lvl = 0;
3024 	else
3025 	    flp->lvl = -1;
3026     }
3027     else
3028 	flp->lvl = get_indent_buf(buf, lnum) / get_sw_value();
3029     if (flp->lvl > flp->wp->w_p_fdn)
3030     {
3031 	flp->lvl = flp->wp->w_p_fdn;
3032 	if (flp->lvl < 0)
3033 	    flp->lvl = 0;
3034     }
3035 }
3036 
3037 /* foldlevelDiff() {{{2 */
3038 #ifdef FEAT_DIFF
3039 /*
3040  * Low level function to get the foldlevel for the "diff" method.
3041  * Doesn't use any caching.
3042  */
3043     static void
3044 foldlevelDiff(flp)
3045     fline_T	*flp;
3046 {
3047     if (diff_infold(flp->wp, flp->lnum + flp->off))
3048 	flp->lvl = 1;
3049     else
3050 	flp->lvl = 0;
3051 }
3052 #endif
3053 
3054 /* foldlevelExpr() {{{2 */
3055 /*
3056  * Low level function to get the foldlevel for the "expr" method.
3057  * Doesn't use any caching.
3058  * Returns a level of -1 if the foldlevel depends on surrounding lines.
3059  */
3060     static void
3061 foldlevelExpr(flp)
3062     fline_T	*flp;
3063 {
3064 #ifndef FEAT_EVAL
3065     flp->start = FALSE;
3066     flp->lvl = 0;
3067 #else
3068     win_T	*win;
3069     int		n;
3070     int		c;
3071     linenr_T	lnum = flp->lnum + flp->off;
3072     int		save_keytyped;
3073 
3074     win = curwin;
3075     curwin = flp->wp;
3076     curbuf = flp->wp->w_buffer;
3077     set_vim_var_nr(VV_LNUM, lnum);
3078 
3079     flp->start = 0;
3080     flp->had_end = flp->end;
3081     flp->end = MAX_LEVEL + 1;
3082     if (lnum <= 1)
3083 	flp->lvl = 0;
3084 
3085     /* KeyTyped may be reset to 0 when calling a function which invokes
3086      * do_cmdline().  To make 'foldopen' work correctly restore KeyTyped. */
3087     save_keytyped = KeyTyped;
3088     n = eval_foldexpr(flp->wp->w_p_fde, &c);
3089     KeyTyped = save_keytyped;
3090 
3091     switch (c)
3092     {
3093 	/* "a1", "a2", .. : add to the fold level */
3094 	case 'a': if (flp->lvl >= 0)
3095 		  {
3096 		      flp->lvl += n;
3097 		      flp->lvl_next = flp->lvl;
3098 		  }
3099 		  flp->start = n;
3100 		  break;
3101 
3102 	/* "s1", "s2", .. : subtract from the fold level */
3103 	case 's': if (flp->lvl >= 0)
3104 		  {
3105 		      if (n > flp->lvl)
3106 			  flp->lvl_next = 0;
3107 		      else
3108 			  flp->lvl_next = flp->lvl - n;
3109 		      flp->end = flp->lvl_next + 1;
3110 		  }
3111 		  break;
3112 
3113 	/* ">1", ">2", .. : start a fold with a certain level */
3114 	case '>': flp->lvl = n;
3115 		  flp->lvl_next = n;
3116 		  flp->start = 1;
3117 		  break;
3118 
3119 	/* "<1", "<2", .. : end a fold with a certain level */
3120 	case '<': flp->lvl_next = n - 1;
3121 		  flp->end = n;
3122 		  break;
3123 
3124 	/* "=": No change in level */
3125 	case '=': flp->lvl_next = flp->lvl;
3126 		  break;
3127 
3128 	/* "-1", "0", "1", ..: set fold level */
3129 	default:  if (n < 0)
3130 		      /* Use the current level for the next line, so that "a1"
3131 		       * will work there. */
3132 		      flp->lvl_next = flp->lvl;
3133 		  else
3134 		      flp->lvl_next = n;
3135 		  flp->lvl = n;
3136 		  break;
3137     }
3138 
3139     /* If the level is unknown for the first or the last line in the file, use
3140      * level 0. */
3141     if (flp->lvl < 0)
3142     {
3143 	if (lnum <= 1)
3144 	{
3145 	    flp->lvl = 0;
3146 	    flp->lvl_next = 0;
3147 	}
3148 	if (lnum == curbuf->b_ml.ml_line_count)
3149 	    flp->lvl_next = 0;
3150     }
3151 
3152     curwin = win;
3153     curbuf = curwin->w_buffer;
3154 #endif
3155 }
3156 
3157 /* parseMarker() {{{2 */
3158 /*
3159  * Parse 'foldmarker' and set "foldendmarker", "foldstartmarkerlen" and
3160  * "foldendmarkerlen".
3161  * Relies on the option value to have been checked for correctness already.
3162  */
3163     static void
3164 parseMarker(wp)
3165     win_T	*wp;
3166 {
3167     foldendmarker = vim_strchr(wp->w_p_fmr, ',');
3168     foldstartmarkerlen = (int)(foldendmarker++ - wp->w_p_fmr);
3169     foldendmarkerlen = (int)STRLEN(foldendmarker);
3170 }
3171 
3172 /* foldlevelMarker() {{{2 */
3173 /*
3174  * Low level function to get the foldlevel for the "marker" method.
3175  * "foldendmarker", "foldstartmarkerlen" and "foldendmarkerlen" must have been
3176  * set before calling this.
3177  * Requires that flp->lvl is set to the fold level of the previous line!
3178  * Careful: This means you can't call this function twice on the same line.
3179  * Doesn't use any caching.
3180  * Sets flp->start when a start marker was found.
3181  */
3182     static void
3183 foldlevelMarker(flp)
3184     fline_T	*flp;
3185 {
3186     char_u	*startmarker;
3187     int		cstart;
3188     int		cend;
3189     int		start_lvl = flp->lvl;
3190     char_u	*s;
3191     int		n;
3192 
3193     /* cache a few values for speed */
3194     startmarker = flp->wp->w_p_fmr;
3195     cstart = *startmarker;
3196     ++startmarker;
3197     cend = *foldendmarker;
3198 
3199     /* Default: no start found, next level is same as current level */
3200     flp->start = 0;
3201     flp->lvl_next = flp->lvl;
3202 
3203     s = ml_get_buf(flp->wp->w_buffer, flp->lnum + flp->off, FALSE);
3204     while (*s)
3205     {
3206 	if (*s == cstart
3207 		  && STRNCMP(s + 1, startmarker, foldstartmarkerlen - 1) == 0)
3208 	{
3209 	    /* found startmarker: set flp->lvl */
3210 	    s += foldstartmarkerlen;
3211 	    if (VIM_ISDIGIT(*s))
3212 	    {
3213 		n = atoi((char *)s);
3214 		if (n > 0)
3215 		{
3216 		    flp->lvl = n;
3217 		    flp->lvl_next = n;
3218 		    if (n <= start_lvl)
3219 			flp->start = 1;
3220 		    else
3221 			flp->start = n - start_lvl;
3222 		}
3223 	    }
3224 	    else
3225 	    {
3226 		++flp->lvl;
3227 		++flp->lvl_next;
3228 		++flp->start;
3229 	    }
3230 	}
3231 	else if (*s == cend
3232 	      && STRNCMP(s + 1, foldendmarker + 1, foldendmarkerlen - 1) == 0)
3233 	{
3234 	    /* found endmarker: set flp->lvl_next */
3235 	    s += foldendmarkerlen;
3236 	    if (VIM_ISDIGIT(*s))
3237 	    {
3238 		n = atoi((char *)s);
3239 		if (n > 0)
3240 		{
3241 		    flp->lvl = n;
3242 		    flp->lvl_next = n - 1;
3243 		    /* never start a fold with an end marker */
3244 		    if (flp->lvl_next > start_lvl)
3245 			flp->lvl_next = start_lvl;
3246 		}
3247 	    }
3248 	    else
3249 		--flp->lvl_next;
3250 	}
3251 	else
3252 	    mb_ptr_adv(s);
3253     }
3254 
3255     /* The level can't go negative, must be missing a start marker. */
3256     if (flp->lvl_next < 0)
3257 	flp->lvl_next = 0;
3258 }
3259 
3260 /* foldlevelSyntax() {{{2 */
3261 /*
3262  * Low level function to get the foldlevel for the "syntax" method.
3263  * Doesn't use any caching.
3264  */
3265     static void
3266 foldlevelSyntax(flp)
3267     fline_T	*flp;
3268 {
3269 #ifndef FEAT_SYN_HL
3270     flp->start = 0;
3271     flp->lvl = 0;
3272 #else
3273     linenr_T	lnum = flp->lnum + flp->off;
3274     int		n;
3275 
3276     /* Use the maximum fold level at the start of this line and the next. */
3277     flp->lvl = syn_get_foldlevel(flp->wp, lnum);
3278     flp->start = 0;
3279     if (lnum < flp->wp->w_buffer->b_ml.ml_line_count)
3280     {
3281 	n = syn_get_foldlevel(flp->wp, lnum + 1);
3282 	if (n > flp->lvl)
3283 	{
3284 	    flp->start = n - flp->lvl;	/* fold(s) start here */
3285 	    flp->lvl = n;
3286 	}
3287     }
3288 #endif
3289 }
3290 
3291 /* functions for storing the fold state in a View {{{1 */
3292 /* put_folds() {{{2 */
3293 #if defined(FEAT_SESSION) || defined(PROTO)
3294 static int put_folds_recurse __ARGS((FILE *fd, garray_T *gap, linenr_T off));
3295 static int put_foldopen_recurse __ARGS((FILE *fd, win_T *wp, garray_T *gap, linenr_T off));
3296 static int put_fold_open_close __ARGS((FILE *fd, fold_T *fp, linenr_T off));
3297 
3298 /*
3299  * Write commands to "fd" to restore the manual folds in window "wp".
3300  * Return FAIL if writing fails.
3301  */
3302     int
3303 put_folds(fd, wp)
3304     FILE	*fd;
3305     win_T	*wp;
3306 {
3307     if (foldmethodIsManual(wp))
3308     {
3309 	if (put_line(fd, "silent! normal! zE") == FAIL
3310 		|| put_folds_recurse(fd, &wp->w_folds, (linenr_T)0) == FAIL)
3311 	    return FAIL;
3312     }
3313 
3314     /* If some folds are manually opened/closed, need to restore that. */
3315     if (wp->w_fold_manual)
3316 	return put_foldopen_recurse(fd, wp, &wp->w_folds, (linenr_T)0);
3317 
3318     return OK;
3319 }
3320 
3321 /* put_folds_recurse() {{{2 */
3322 /*
3323  * Write commands to "fd" to recreate manually created folds.
3324  * Returns FAIL when writing failed.
3325  */
3326     static int
3327 put_folds_recurse(fd, gap, off)
3328     FILE	*fd;
3329     garray_T	*gap;
3330     linenr_T	off;
3331 {
3332     int		i;
3333     fold_T	*fp;
3334 
3335     fp = (fold_T *)gap->ga_data;
3336     for (i = 0; i < gap->ga_len; i++)
3337     {
3338 	/* Do nested folds first, they will be created closed. */
3339 	if (put_folds_recurse(fd, &fp->fd_nested, off + fp->fd_top) == FAIL)
3340 	    return FAIL;
3341 	if (fprintf(fd, "%ld,%ldfold", fp->fd_top + off,
3342 					fp->fd_top + off + fp->fd_len - 1) < 0
3343 		|| put_eol(fd) == FAIL)
3344 	    return FAIL;
3345 	++fp;
3346     }
3347     return OK;
3348 }
3349 
3350 /* put_foldopen_recurse() {{{2 */
3351 /*
3352  * Write commands to "fd" to open and close manually opened/closed folds.
3353  * Returns FAIL when writing failed.
3354  */
3355     static int
3356 put_foldopen_recurse(fd, wp, gap, off)
3357     FILE	*fd;
3358     win_T	*wp;
3359     garray_T	*gap;
3360     linenr_T	off;
3361 {
3362     int		i;
3363     int		level;
3364     fold_T	*fp;
3365 
3366     fp = (fold_T *)gap->ga_data;
3367     for (i = 0; i < gap->ga_len; i++)
3368     {
3369 	if (fp->fd_flags != FD_LEVEL)
3370 	{
3371 	    if (fp->fd_nested.ga_len > 0)
3372 	    {
3373 		/* open nested folds while this fold is open */
3374 		if (fprintf(fd, "%ld", fp->fd_top + off) < 0
3375 			|| put_eol(fd) == FAIL
3376 			|| put_line(fd, "normal! zo") == FAIL)
3377 		    return FAIL;
3378 		if (put_foldopen_recurse(fd, wp, &fp->fd_nested,
3379 							     off + fp->fd_top)
3380 			== FAIL)
3381 		    return FAIL;
3382 		/* close the parent when needed */
3383 		if (fp->fd_flags == FD_CLOSED)
3384 		{
3385 		    if (put_fold_open_close(fd, fp, off) == FAIL)
3386 			return FAIL;
3387 		}
3388 	    }
3389 	    else
3390 	    {
3391 		/* Open or close the leaf according to the window foldlevel.
3392 		 * Do not close a leaf that is already closed, as it will close
3393 		 * the parent. */
3394 		level = foldLevelWin(wp, off + fp->fd_top);
3395 		if ((fp->fd_flags == FD_CLOSED && wp->w_p_fdl >= level)
3396 			|| (fp->fd_flags != FD_CLOSED && wp->w_p_fdl < level))
3397 		if (put_fold_open_close(fd, fp, off) == FAIL)
3398 		    return FAIL;
3399 	    }
3400 	}
3401 	++fp;
3402     }
3403 
3404     return OK;
3405 }
3406 
3407 /* put_fold_open_close() {{{2 */
3408 /*
3409  * Write the open or close command to "fd".
3410  * Returns FAIL when writing failed.
3411  */
3412     static int
3413 put_fold_open_close(fd, fp, off)
3414     FILE	*fd;
3415     fold_T	*fp;
3416     linenr_T	off;
3417 {
3418     if (fprintf(fd, "%ld", fp->fd_top + off) < 0
3419 	    || put_eol(fd) == FAIL
3420 	    || fprintf(fd, "normal! z%c",
3421 			   fp->fd_flags == FD_CLOSED ? 'c' : 'o') < 0
3422 	    || put_eol(fd) == FAIL)
3423 	return FAIL;
3424 
3425     return OK;
3426 }
3427 #endif /* FEAT_SESSION */
3428 
3429 /* }}}1 */
3430 #endif /* defined(FEAT_FOLDING) || defined(PROTO) */
3431