text.c 65 KB
Newer Older
1
2
/* $Id$ */
/**************************************************************************
David Lawrence Ramsey's avatar
David Lawrence Ramsey committed
3
 *   text.c                                                               *
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
 *                                                                        *
 *   Copyright (C) 2005 Chris Allegretta                                  *
 *   This program is free software; you can redistribute it and/or modify *
 *   it under the terms of the GNU General Public License as published by *
 *   the Free Software Foundation; either version 2, or (at your option)  *
 *   any later version.                                                   *
 *                                                                        *
 *   This program is distributed in the hope that it will be useful, but  *
 *   WITHOUT ANY WARRANTY; without even the implied warranty of           *
 *   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU    *
 *   General Public License for more details.                             *
 *                                                                        *
 *   You should have received a copy of the GNU General Public License    *
 *   along with this program; if not, write to the Free Software          *
 *   Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA            *
 *   02110-1301, USA.                                                     *
 *                                                                        *
 **************************************************************************/

#ifdef HAVE_CONFIG_H
#include <config.h>
#endif

27
#include <stdio.h>
28
29
30
31
32
33
34
35
36
#include <signal.h>
#include <unistd.h>
#include <string.h>
#include <fcntl.h>
#include <sys/wait.h>
#include <errno.h>
#include "proto.h"

#ifndef NANO_SMALL
37
38
39
static pid_t pid = -1;
	/* The PID of the newly forked process in execute_command(), for
	 * use with the cancel_command() signal handler. */
40
41
42
43
44
45
46
#endif
#ifndef DISABLE_WRAPPING
static bool same_line_wrap = FALSE;
	/* Should we prepend wrapped text to the next line? */
#endif
#ifndef DISABLE_JUSTIFY
static filestruct *jusbottom = NULL;
David Lawrence Ramsey's avatar
David Lawrence Ramsey committed
47
	/* Pointer to the end of the justify buffer. */
48
49
#endif

50
51
52
53
54
55
56
57
58
59
60
61
62
63
64
65
66
67
68
69
70
71
72
73
74
75
76
77
78
#ifndef NANO_SMALL
void do_mark(void)
{
    openfile->mark_set = !openfile->mark_set;
    if (openfile->mark_set) {
	statusbar(_("Mark Set"));
	openfile->mark_begin = openfile->current;
	openfile->mark_begin_x = openfile->current_x;
    } else {
	statusbar(_("Mark UNset"));
	openfile->mark_begin = NULL;
	openfile->mark_begin_x = 0;
	edit_refresh();
    }
}
#endif /* !NANO_SMALL */

void do_delete(void)
{
    bool do_refresh = FALSE;
	/* Do we have to call edit_refresh(), or can we get away with
	 * update_line()? */

    assert(openfile->current != NULL && openfile->current->data != NULL && openfile->current_x <= strlen(openfile->current->data));

    openfile->placewewant = xplustabs();

    if (openfile->current->data[openfile->current_x] != '\0') {
	int char_buf_len = parse_mbchar(openfile->current->data +
79
		openfile->current_x, NULL, NULL);
80
81
82
83
84
85
86
87
88
89
90
91
92
93
94
95
96
97
98
	size_t line_len = strlen(openfile->current->data +
		openfile->current_x);

	assert(openfile->current_x < strlen(openfile->current->data));

	/* Let's get dangerous. */
	charmove(&openfile->current->data[openfile->current_x],
		&openfile->current->data[openfile->current_x +
		char_buf_len], line_len - char_buf_len + 1);

	null_at(&openfile->current->data, openfile->current_x +
		line_len - char_buf_len);
#ifndef NANO_SMALL
	if (openfile->mark_set && openfile->mark_begin ==
		openfile->current && openfile->current_x <
		openfile->mark_begin_x)
	    openfile->mark_begin_x -= char_buf_len;
#endif
	openfile->totsize--;
99
    } else if (openfile->current != openfile->filebot) {
100
101
102
103
104
105
106
107
108
109
110
111
112
113
114
115
116
117
118
119
120
121
122
123
124
125
126
127
128
129
	filestruct *foo = openfile->current->next;

	assert(openfile->current_x == strlen(openfile->current->data));

	/* If we're deleting at the end of a line, we need to call
	 * edit_refresh(). */
	if (openfile->current->data[openfile->current_x] == '\0')
	    do_refresh = TRUE;

	openfile->current->data = charealloc(openfile->current->data,
		openfile->current_x + strlen(foo->data) + 1);
	strcpy(openfile->current->data + openfile->current_x,
		foo->data);
#ifndef NANO_SMALL
	if (openfile->mark_set && openfile->mark_begin ==
		openfile->current->next) {
	    openfile->mark_begin = openfile->current;
	    openfile->mark_begin_x += openfile->current_x;
	}
#endif
	if (openfile->filebot == foo)
	    openfile->filebot = openfile->current;

	unlink_node(foo);
	delete_node(foo);
	renumber(openfile->current);
	openfile->totsize--;
#ifndef DISABLE_WRAPPING
	wrap_reset();
#endif
130

131
132
	/* If the NO_NEWLINES flag isn't set, and text has been added to
	 * the magicline as a result of deleting at the end of the line
133
	 * before filebot, add a new magicline. */
134
135
	if (!ISSET(NO_NEWLINES) && openfile->current ==
		openfile->filebot && openfile->current->data[0] != '\0')
136
	    new_magicline();
137
138
139
    } else
	return;

140
    set_modified();
141
142
143
144
145
146
147
148
149
150
151
152
153
154
155
156
157
158

#ifdef ENABLE_COLOR
    /* If color syntaxes are available and turned on, we need to call
     * edit_refresh(). */
    if (openfile->colorstrings != NULL && !ISSET(NO_COLOR_SYNTAX))
	do_refresh = TRUE;
#endif

    if (do_refresh)
	edit_refresh();
    else
	update_line(openfile->current, openfile->current_x);
}

void do_backspace(void)
{
    if (openfile->current != openfile->fileage ||
	openfile->current_x > 0) {
159
	do_left();
160
161
162
163
164
165
166
167
168
	do_delete();
    }
}

void do_tab(void)
{
#ifndef NANO_SMALL
    if (ISSET(TABS_TO_SPACES)) {
	char *output;
169
	size_t output_len = 0, new_pww = xplustabs();
170
171
172
173
174
175
176
177
178
179
180
181
182
183
184
185
186
187
188
189
190
191

	do {
	    new_pww++;
	    output_len++;
	} while (new_pww % tabsize != 0);

	output = charalloc(output_len + 1);

	charset(output, ' ', output_len);
	output[output_len] = '\0';

	do_output(output, output_len, TRUE);

	free(output);
    } else {
#endif
	do_output("\t", 1, TRUE);
#ifndef NANO_SMALL
    }
#endif
}

192
/* Someone hits Enter *gasp!* */
193
194
195
196
197
198
199
200
201
202
203
204
205
206
207
208
209
210
211
212
213
214
215
216
217
218
219
220
221
222
223
224
225
226
227
228
229
230
231
232
233
234
235
236
237
238
239
240
241
void do_enter(void)
{
    filestruct *newnode = make_new_node(openfile->current);
    size_t extra = 0;

    assert(openfile->current != NULL && openfile->current->data != NULL);

#ifndef NANO_SMALL
    /* Do auto-indenting, like the neolithic Turbo Pascal editor. */
    if (ISSET(AUTOINDENT)) {
	/* If we are breaking the line in the indentation, the new
	 * indentation should have only current_x characters, and
	 * current_x should not change. */
	extra = indent_length(openfile->current->data);
	if (extra > openfile->current_x)
	    extra = openfile->current_x;
    }
#endif
    newnode->data = charalloc(strlen(openfile->current->data +
	openfile->current_x) + extra + 1);
    strcpy(&newnode->data[extra], openfile->current->data +
	openfile->current_x);
#ifndef NANO_SMALL
    if (ISSET(AUTOINDENT)) {
	strncpy(newnode->data, openfile->current->data, extra);
	openfile->totsize += mbstrlen(newnode->data);
    }
#endif
    null_at(&openfile->current->data, openfile->current_x);
#ifndef NANO_SMALL
    if (openfile->mark_set && openfile->current ==
	openfile->mark_begin && openfile->current_x <
	openfile->mark_begin_x) {
	openfile->mark_begin = newnode;
	openfile->mark_begin_x += extra - openfile->current_x;
    }
#endif
    openfile->current_x = extra;

    if (openfile->current == openfile->filebot)
	openfile->filebot = newnode;
    splice_node(openfile->current, newnode,
	openfile->current->next);

    renumber(openfile->current);
    openfile->current = newnode;

    openfile->totsize++;
    set_modified();
242

243
    openfile->placewewant = xplustabs();
244
245

    edit_refresh();
246
247
}

248
249
250
251
252
253
254
#ifndef NANO_SMALL
void cancel_command(int signal)
{
    if (kill(pid, SIGKILL) == -1)
	nperror("kill");
}

David Lawrence Ramsey's avatar
David Lawrence Ramsey committed
255
/* Execute command in a shell.  Return TRUE on success. */
256
257
258
259
260
261
262
263
264
265
266
267
268
269
270
271
272
273
274
275
276
277
278
279
280
281
282
283
284
285
286
287
288
289
290
291
292
293
294
295
296
297
298
299
300
301
302
303
304
305
306
307
308
309
310
311
312
313
314
315
316
317
318
319
320
321
322
323
324
325
326
327
328
329
330
331
332
333
334
335
336
337
338
339
340
341
342
343
344
345
346
347
348
bool execute_command(const char *command)
{
    int fd[2];
    FILE *f;
    struct sigaction oldaction, newaction;
	/* Original and temporary handlers for SIGINT. */
    bool sig_failed = FALSE;
	/* Did sigaction() fail without changing the signal handlers? */

    /* Make our pipes. */
    if (pipe(fd) == -1) {
	statusbar(_("Could not pipe"));
	return FALSE;
    }

    /* Fork a child. */
    if ((pid = fork()) == 0) {
	close(fd[0]);
	dup2(fd[1], fileno(stdout));
	dup2(fd[1], fileno(stderr));

	/* If execl() returns at all, there was an error. */
	execl("/bin/sh", "sh", "-c", command, NULL);
	exit(0);
    }

    /* Else continue as parent. */
    close(fd[1]);

    if (pid == -1) {
	close(fd[0]);
	statusbar(_("Could not fork"));
	return FALSE;
    }

    /* Before we start reading the forked command's output, we set
     * things up so that Ctrl-C will cancel the new process. */

    /* Enable interpretation of the special control keys so that we get
     * SIGINT when Ctrl-C is pressed. */
    enable_signals();

    if (sigaction(SIGINT, NULL, &newaction) == -1) {
	sig_failed = TRUE;
	nperror("sigaction");
    } else {
	newaction.sa_handler = cancel_command;
	if (sigaction(SIGINT, &newaction, &oldaction) == -1) {
	    sig_failed = TRUE;
	    nperror("sigaction");
	}
    }

    /* Note that now oldaction is the previous SIGINT signal handler,
     * to be restored later. */

    f = fdopen(fd[0], "rb");
    if (f == NULL)
	nperror("fdopen");

    read_file(f, "stdin");

    /* If multibuffer mode is on, we could be here in view mode.  If so,
     * don't set the modification flag. */
    if (!ISSET(VIEW_MODE))
	set_modified();

    if (wait(NULL) == -1)
	nperror("wait");

    if (!sig_failed && sigaction(SIGINT, &oldaction, NULL) == -1)
	nperror("sigaction");

    /* Disable interpretation of the special control keys so that we can
     * use Ctrl-C for other things. */
    disable_signals();

    return TRUE;
}
#endif /* !NANO_SMALL */

#ifndef DISABLE_WRAPPING
void wrap_reset(void)
{
    same_line_wrap = FALSE;
}

/* We wrap the given line.  Precondition: we assume the cursor has been
 * moved forward since the last typed character.  Return value: whether
 * we wrapped. */
bool do_wrap(filestruct *line)
{
    size_t line_len;
349
	/* The length of the line we wrap. */
350
    ssize_t wrap_loc;
351
	/* The index of line->data where we wrap. */
352
353
354
#ifndef NANO_SMALL
    const char *indent_string = NULL;
	/* Indentation to prepend to the new line. */
355
356
    size_t indent_len = 0;
	/* The length of indent_string. */
357
#endif
358
359
360
361
362
363
    const char *after_break;
	/* The text after the wrap point. */
    size_t after_break_len;
	/* The length of after_break. */
    bool wrapping = FALSE;
	/* Do we prepend to the next line? */
364
365
    const char *next_line = NULL;
	/* The next line, minus indentation. */
366
367
368
369
370
371
    size_t next_line_len = 0;
	/* The length of next_line. */
    char *new_line = NULL;
	/* The line we create. */
    size_t new_line_len = 0;
	/* The eventual length of new_line. */
372
373
374
375
376
377
378
379
380
381
382
383
384
385
386
387
388
389
390
391
392
393
394
395
396
397
398
399
400
401
402
403
404
405
406
407
408
409
410
411
412
413
414
415
416
417
418
419
420
421
422
423
424
425
426
427
428
429
430
431
432
433
434
435
436
437
438
439
440
441
442
443
444
445
446
447
448
449
450
451
452
453
454
455
456
457
458
459
460
461
462
463
464
465
466
467
468
469
470
471
472
473
474
475
476
477
478
479
480
481
482
483
484
485
486
487
488
489
490
491
492
493
494
495
496
497
498
499
500
501
502
503
504
505
506
507
508
509
510
511
512
513
514
515
516
517
518
519
520
521
522
523
524
525
526
527
528
529
530
531
532
533
534
535
536
537
538
539
540
541
542
543
544
545
546
547
548
549
550
551
552
553
554
555
556
557
558
559
560
561

    /* There are three steps.  First, we decide where to wrap.  Then, we
     * create the new wrap line.  Finally, we clean up. */

    /* Step 1, finding where to wrap.  We are going to add a new line
     * after a blank character.  In this step, we call break_line() to
     * get the location of the last blank we can break the line at, and
     * and set wrap_loc to the location of the character after it, so
     * that the blank is preserved at the end of the line.
     *
     * If there is no legal wrap point, or we reach the last character
     * of the line while trying to find one, we should return without
     * wrapping.  Note that if autoindent is turned on, we don't break
     * at the end of it! */
    assert(line != NULL && line->data != NULL);

    /* Save the length of the line. */
    line_len = strlen(line->data);

    /* Find the last blank where we can break the line. */
    wrap_loc = break_line(line->data, fill, FALSE);

    /* If we couldn't break the line, or we've reached the end of it, we
     * don't wrap. */
    if (wrap_loc == -1 || line->data[wrap_loc] == '\0')
	return FALSE;

    /* Otherwise, move forward to the character just after the blank. */
    wrap_loc += move_mbright(line->data + wrap_loc, 0);

    /* If we've reached the end of the line, we don't wrap. */
    if (line->data[wrap_loc] == '\0')
	return FALSE;

#ifndef NANO_SMALL
    /* If autoindent is turned on, and we're on the character just after
     * the indentation, we don't wrap. */
    if (ISSET(AUTOINDENT)) {
	/* Get the indentation of this line. */
	indent_string = line->data;
	indent_len = indent_length(indent_string);

	if (wrap_loc == indent_len)
	    return FALSE;
    }
#endif

    /* Step 2, making the new wrap line.  It will consist of indentation
     * followed by the text after the wrap point, optionally followed by
     * a space (if the text after the wrap point doesn't end in a blank)
     * and the text of the next line, if they can fit without
     * wrapping, the next line exists, and the same_line_wrap flag is
     * set. */

    /* after_break is the text that will be wrapped to the next line. */
    after_break = line->data + wrap_loc;
    after_break_len = line_len - wrap_loc;

    assert(strlen(after_break) == after_break_len);

    /* We prepend the wrapped text to the next line, if the
     * same_line_wrap flag is set, there is a next line, and prepending
     * would not make the line too long. */
    if (same_line_wrap && line->next != NULL) {
	const char *end = after_break + move_mbleft(after_break,
		after_break_len);

	/* If after_break doesn't end in a blank, make sure it ends in a
	 * space. */
	if (!is_blank_mbchar(end)) {
	    line_len++;
	    line->data = charealloc(line->data, line_len + 1);
	    line->data[line_len - 1] = ' ';
	    line->data[line_len] = '\0';
	    after_break = line->data + wrap_loc;
	    after_break_len++;
	    openfile->totsize++;
	}

	next_line = line->next->data;
	next_line_len = strlen(next_line);

	if (after_break_len + next_line_len <= fill) {
	    wrapping = TRUE;
	    new_line_len += next_line_len;
	}
    }

    /* new_line_len is now the length of the text that will be wrapped
     * to the next line, plus (if we're prepending to it) the length of
     * the text of the next line. */
    new_line_len += after_break_len;

#ifndef NANO_SMALL
    if (ISSET(AUTOINDENT)) {
	if (wrapping) {
	    /* If we're wrapping, the indentation will come from the
	     * next line. */
	    indent_string = next_line;
	    indent_len = indent_length(indent_string);
	    next_line += indent_len;
	} else {
	    /* Otherwise, it will come from this line, in which case
	     * we should increase new_line_len to make room for it. */
	    new_line_len += indent_len;
	    openfile->totsize += mbstrnlen(indent_string, indent_len);
	}
    }
#endif

    /* Now we allocate the new line and copy the text into it. */
    new_line = charalloc(new_line_len + 1);
    new_line[0] = '\0';

#ifndef NANO_SMALL
    if (ISSET(AUTOINDENT)) {
	/* Copy the indentation. */
	strncpy(new_line, indent_string, indent_len);
	new_line[indent_len] = '\0';
	new_line_len += indent_len;
    }
#endif

    /* Copy all the text after the wrap point of the current line. */
    strcat(new_line, after_break);

    /* Break the current line at the wrap point. */
    null_at(&line->data, wrap_loc);

    if (wrapping) {
	/* If we're wrapping, copy the text from the next line, minus
	 * the indentation that we already copied above. */
	strcat(new_line, next_line);

	free(line->next->data);
	line->next->data = new_line;
    } else {
	/* Otherwise, make a new line and copy the text after where we
	 * broke this line to the beginning of the new line. */
	splice_node(openfile->current, make_new_node(openfile->current),
		openfile->current->next);

	openfile->current->next->data = new_line;

	openfile->totsize++;
    }

    /* Step 3, clean up.  Reposition the cursor and mark, and do some
     * other sundry things. */

    /* Set the same_line_wrap flag, so that later wraps of this line
     * will be prepended to the next line. */
    same_line_wrap = TRUE;

    /* Each line knows its line number.  We recalculate these if we
     * inserted a new line. */
    if (!wrapping)
	renumber(line);

    /* If the cursor was after the break point, we must move it.  We
     * also clear the same_line_wrap flag in this case. */
    if (openfile->current_x > wrap_loc) {
	same_line_wrap = FALSE;
	openfile->current = openfile->current->next;
	openfile->current_x -= wrap_loc
#ifndef NANO_SMALL
		- indent_len
#endif
		;
	openfile->placewewant = xplustabs();
    }

#ifndef NANO_SMALL
    /* If the mark was on this line after the wrap point, we move it
     * down.  If it was on the next line and we wrapped onto that line,
     * we move it right. */
    if (openfile->mark_set) {
	if (openfile->mark_begin == line && openfile->mark_begin_x >
		wrap_loc) {
	    openfile->mark_begin = line->next;
	    openfile->mark_begin_x -= wrap_loc - indent_len + 1;
	} else if (wrapping && openfile->mark_begin == line->next)
	    openfile->mark_begin_x += after_break_len;
    }
#endif

    return TRUE;
}
#endif /* !DISABLE_WRAPPING */

562
563
#if !defined(DISABLE_HELP) || !defined(DISABLE_JUSTIFY) || !defined(DISABLE_WRAPPING)
/* We are trying to break a chunk off line.  We find the last blank such
564
565
 * that the display length to there is at most (goal + 1).  If there is
 * no such blank, then we find the first blank.  We then take the last
566
567
568
 * blank in that group of blanks.  The terminating '\0' counts as a
 * blank, as does a '\n' if newline is TRUE. */
ssize_t break_line(const char *line, ssize_t goal, bool newline)
569
{
570
571
572
573
574
575
    ssize_t blank_loc = -1;
	/* Current tentative return value.  Index of the last blank we
	 * found with short enough display width.  */
    ssize_t cur_loc = 0;
	/* Current index in line. */
    int line_len;
576

577
    assert(line != NULL);
578

579
    while (*line != '\0' && goal >= 0) {
580
	size_t pos = 0;
581

582
	line_len = parse_mbchar(line, NULL, &pos);
583

584
585
	if (is_blank_mbchar(line) || (newline && *line == '\n')) {
	    blank_loc = cur_loc;
586

587
588
589
590
	    if (newline && *line == '\n')
		break;
	}

591
	goal -= pos;
592
593
	line += line_len;
	cur_loc += line_len;
594
595
    }

596
597
598
    if (goal >= 0)
	/* In fact, the whole line displays shorter than goal. */
	return cur_loc;
599

600
601
602
    if (blank_loc == -1) {
	/* No blank was found that was short enough. */
	bool found_blank = FALSE;
603
	ssize_t found_blank_loc = 0;
604

605
	while (*line != '\0') {
606
	    line_len = parse_mbchar(line, NULL, NULL);
607

608
609
610
	    if (is_blank_mbchar(line) || (newline && *line == '\n')) {
		if (!found_blank)
		    found_blank = TRUE;
611
		found_blank_loc = cur_loc;
612
	    } else if (found_blank)
613
		return found_blank_loc;
614

615
616
617
	    line += line_len;
	    cur_loc += line_len;
	}
618

619
620
	return -1;
    }
621

622
623
624
    /* Move to the last blank after blank_loc, if there is one. */
    line -= cur_loc;
    line += blank_loc;
625
    line_len = parse_mbchar(line, NULL, NULL);
626
    line += line_len;
627

628
629
    while (*line != '\0' && (is_blank_mbchar(line) ||
	(newline && *line == '\n'))) {
630
	line_len = parse_mbchar(line, NULL, NULL);
631

632
633
	line += line_len;
	blank_loc += line_len;
634
635
    }

636
637
638
    return blank_loc;
}
#endif /* !DISABLE_HELP || !DISABLE_JUSTIFY || !DISABLE_WRAPPING */
639

640
641
642
643
644
645
646
647
#if !defined(NANO_SMALL) || !defined(DISABLE_JUSTIFY)
/* The "indentation" of a line is the whitespace between the quote part
 * and the non-whitespace of the line. */
size_t indent_length(const char *line)
{
    size_t len = 0;
    char *blank_mb;
    int blank_mb_len;
648

649
    assert(line != NULL);
650

651
    blank_mb = charalloc(mb_cur_max());
652

653
    while (*line != '\0') {
654
	blank_mb_len = parse_mbchar(line, blank_mb, NULL);
655

656
657
	if (!is_blank_mbchar(blank_mb))
	    break;
658

659
660
661
	line += blank_mb_len;
	len += blank_mb_len;
    }
662

663
664
665
    free(blank_mb);

    return len;
666
}
667
#endif /* !NANO_SMALL || !DISABLE_JUSTIFY */
668

669
670
671
672
673
674
675
676
677
678
679
680
#ifndef DISABLE_JUSTIFY
/* justify_format() replaces blanks with spaces and multiple spaces by 1
 * (except it maintains up to 2 after a character in punct optionally
 * followed by a character in brackets, and removes all from the end).
 *
 * justify_format() might make paragraph->data shorter, and change the
 * actual pointer with null_at().
 *
 * justify_format() will not look at the first skip characters of
 * paragraph.  skip should be at most strlen(paragraph->data).  The
 * character at paragraph[skip + 1] must not be blank. */
void justify_format(filestruct *paragraph, size_t skip)
681
{
682
683
684
685
686
    char *end, *new_end, *new_paragraph_data;
    size_t shift = 0;
#ifndef NANO_SMALL
    size_t mark_shift = 0;
#endif
687

688
689
690
691
692
    /* These four asserts are assumptions about the input data. */
    assert(paragraph != NULL);
    assert(paragraph->data != NULL);
    assert(skip < strlen(paragraph->data));
    assert(!is_blank_mbchar(paragraph->data + skip));
693

694
695
696
697
    end = paragraph->data + skip;
    new_paragraph_data = charalloc(strlen(paragraph->data) + 1);
    strncpy(new_paragraph_data, paragraph->data, skip);
    new_end = new_paragraph_data + skip;
698

699
700
    while (*end != '\0') {
	int end_len;
701

702
703
704
	/* If this character is blank, make sure that it's a space with
	 * no blanks after it. */
	if (is_blank_mbchar(end)) {
705
	    end_len = parse_mbchar(end, NULL, NULL);
706

707
708
709
	    *new_end = ' ';
	    new_end++;
	    end += end_len;
710

711
	    while (*end != '\0' && is_blank_mbchar(end)) {
712
		end_len = parse_mbchar(end, NULL, NULL);
713

714
715
		end += end_len;
		shift += end_len;
716

717
718
719
720
721
722
723
724
725
726
727
728
729
#ifndef NANO_SMALL
		/* Keep track of the change in the current line. */
		if (openfile->mark_set && openfile->mark_begin ==
			paragraph && openfile->mark_begin_x >= end -
			paragraph->data)
		    mark_shift += end_len;
#endif
	    }
	/* If this character is punctuation optionally followed by a
	 * bracket and then followed by blanks, make sure there are no
	 * more than two blanks after it, and make sure that the blanks
	 * are spaces. */
	} else if (mbstrchr(punct, end) != NULL) {
730
	    end_len = parse_mbchar(end, NULL, NULL);
731

732
733
734
735
736
737
	    while (end_len > 0) {
		*new_end = *end;
		new_end++;
		end++;
		end_len--;
	    }
738

739
	    if (*end != '\0' && mbstrchr(brackets, end) != NULL) {
740
		end_len = parse_mbchar(end, NULL, NULL);
741

742
743
744
745
746
747
748
		while (end_len > 0) {
		    *new_end = *end;
		    new_end++;
		    end++;
		    end_len--;
		}
	    }
749

750
	    if (*end != '\0' && is_blank_mbchar(end)) {
751
		end_len = parse_mbchar(end, NULL, NULL);
752

753
754
755
756
		*new_end = ' ';
		new_end++;
		end += end_len;
	    }
757

758
	    if (*end != '\0' && is_blank_mbchar(end)) {
759
		end_len = parse_mbchar(end, NULL, NULL);
760

761
762
763
764
		*new_end = ' ';
		new_end++;
		end += end_len;
	    }
765

766
	    while (*end != '\0' && is_blank_mbchar(end)) {
767
		end_len = parse_mbchar(end, NULL, NULL);
768

769
770
		end += end_len;
		shift += end_len;
771

772
773
774
775
776
777
778
779
780
781
782
#ifndef NANO_SMALL
		/* Keep track of the change in the current line. */
		if (openfile->mark_set && openfile->mark_begin ==
			paragraph && openfile->mark_begin_x >= end -
			paragraph->data)
		    mark_shift += end_len;
#endif
	    }
	/* If this character is neither blank nor punctuation, leave it
	 * alone. */
	} else {
783
	    end_len = parse_mbchar(end, NULL, NULL);
784

785
786
787
788
789
790
791
	    while (end_len > 0) {
		*new_end = *end;
		new_end++;
		end++;
		end_len--;
	    }
	}
792
793
    }

794
    assert(*end == '\0');
795

796
    *new_end = *end;
797

798
799
800
801
802
    /* Make sure that there are no spaces at the end of the line. */
    while (new_end > new_paragraph_data + skip &&
	*(new_end - 1) == ' ') {
	new_end--;
	shift++;
803
804
    }

805
806
807
808
809
    if (shift > 0) {
	openfile->totsize -= shift;
	null_at(&new_paragraph_data, new_end - new_paragraph_data);
	free(paragraph->data);
	paragraph->data = new_paragraph_data;
810

811
812
813
814
815
816
817
#ifndef NANO_SMALL
	/* Adjust the mark coordinates to compensate for the change in
	 * the current line. */
	if (openfile->mark_set && openfile->mark_begin == paragraph) {
	    openfile->mark_begin_x -= mark_shift;
	    if (openfile->mark_begin_x > new_end - new_paragraph_data)
		openfile->mark_begin_x = new_end - new_paragraph_data;
818
	}
819
820
821
822
#endif
    } else
	free(new_paragraph_data);
}
823

824
825
826
827
828
829
830
831
832
833
834
/* The "quote part" of a line is the largest initial substring matching
 * the quote string.  This function returns the length of the quote part
 * of the given line.
 *
 * Note that if !HAVE_REGEX_H then we match concatenated copies of
 * quotestr. */
size_t quote_length(const char *line)
{
#ifdef HAVE_REGEX_H
    regmatch_t matches;
    int rc = regexec(&quotereg, line, 1, &matches, 0);
835

836
837
838
839
840
841
842
    if (rc == REG_NOMATCH || matches.rm_so == (regoff_t)-1)
	return 0;
    /* matches.rm_so should be 0, since the quote string should start
     * with the caret ^. */
    return matches.rm_eo;
#else	/* !HAVE_REGEX_H */
    size_t qdepth = 0;
843

844
845
846
847
848
849
    /* Compute quote depth level. */
    while (strncmp(line + qdepth, quotestr, quotelen) == 0)
	qdepth += quotelen;
    return qdepth;
#endif	/* !HAVE_REGEX_H */
}
850

851
852
853
854
855
856
857
858
/* a_line and b_line are lines of text.  The quotation part of a_line is
 * the first a_quote characters.  Check that the quotation part of
 * b_line is the same. */
bool quotes_match(const char *a_line, size_t a_quote, const char
	*b_line)
{
    /* Here is the assumption about a_quote. */
    assert(a_quote == quote_length(a_line));
859

860
861
862
    return (a_quote == quote_length(b_line) &&
	strncmp(a_line, b_line, a_quote) == 0);
}
863

864
865
866
867
868
869
870
871
872
873
/* We assume a_line and b_line have no quote part.  Then, we return
 * whether b_line could follow a_line in a paragraph. */
bool indents_match(const char *a_line, size_t a_indent, const char
	*b_line, size_t b_indent)
{
    assert(a_indent == indent_length(a_line));
    assert(b_indent == indent_length(b_line));

    return (b_indent <= a_indent &&
	strncmp(a_line, b_line, b_indent) == 0);
874
875
}

876
877
878
879
880
881
882
883
884
885
886
887
888
889
890
891
892
893
894
895
896
897
898
899
/* Is foo the beginning of a paragraph?
 *
 *   A line of text consists of a "quote part", followed by an
 *   "indentation part", followed by text.  The functions quote_length()
 *   and indent_length() calculate these parts.
 *
 *   A line is "part of a paragraph" if it has a part not in the quote
 *   part or the indentation.
 *
 *   A line is "the beginning of a paragraph" if it is part of a
 *   paragraph and
 *	1) it is the top line of the file, or
 *	2) the line above it is not part of a paragraph, or
 *	3) the line above it does not have precisely the same quote
 *	   part, or
 *	4) the indentation of this line is not an initial substring of
 *	   the indentation of the previous line, or
 *	5) this line has no quote part and some indentation, and
 *	   autoindent isn't turned on.
 *   The reason for number 5) is that if autoindent isn't turned on,
 *   then an indented line is expected to start a paragraph, as in
 *   books.  Thus, nano can justify an indented paragraph only if
 *   autoindent is turned on. */
bool begpar(const filestruct *const foo)
900
{
901
902
903
904
    size_t quote_len, indent_len, temp_id_len;

    if (foo == NULL)
	return FALSE;
905

906
    /* Case 1). */
907
    if (foo == openfile->fileage)
908
	return TRUE;
909

910
911
    quote_len = quote_length(foo->data);
    indent_len = indent_length(foo->data + quote_len);
912

913
914
915
    /* Not part of a paragraph. */
    if (foo->data[quote_len + indent_len] == '\0')
	return FALSE;
916

917
918
919
    /* Case 3). */
    if (!quotes_match(foo->data, quote_len, foo->prev->data))
	return TRUE;
920

921
    temp_id_len = indent_length(foo->prev->data + quote_len);
922

923
924
925
926
927
928
929
930
931
    /* Case 2) or 5) or 4). */
    if (foo->prev->data[quote_len + temp_id_len] == '\0' ||
	(quote_len == 0 && indent_len > 0
#ifndef NANO_SMALL
	&& !ISSET(AUTOINDENT)
#endif
	) || !indents_match(foo->prev->data + quote_len, temp_id_len,
	foo->data + quote_len, indent_len))
	return TRUE;
932

933
934
    return FALSE;
}
935

936
937
938
939
/* Is foo inside a paragraph? */
bool inpar(const filestruct *const foo)
{
    size_t quote_len;
940

941
942
    if (foo == NULL)
	return FALSE;
943

944
    quote_len = quote_length(foo->data);
945

David Lawrence Ramsey's avatar
David Lawrence Ramsey committed
946
947
    return (foo->data[quote_len + indent_length(foo->data +
	quote_len)] != '\0');
948
}
949

950
/* Put the next par_len lines, starting with first_line, into the
951
952
953
954
 * justify buffer, leaving copies of those lines in place.  Assume that
 * par_len is greater than zero, and that there are enough lines after
 * first_line.  Return the new copy of first_line. */
filestruct *backup_lines(filestruct *first_line, size_t par_len)
955
956
957
958
959
960
961
962
963
964
965
{
    filestruct *top = first_line;
	/* The top of the paragraph we're backing up. */
    filestruct *bot = first_line;
	/* The bottom of the paragraph we're backing up. */
    size_t i;
	/* Generic loop variable. */
    size_t current_x_save = openfile->current_x;
    ssize_t fl_lineno_save = first_line->lineno;
    ssize_t edittop_lineno_save = openfile->edittop->lineno;
    ssize_t current_lineno_save = openfile->current->lineno;
966
#ifndef NANO_SMALL
967
968
969
    bool old_mark_set = openfile->mark_set;
    ssize_t mb_lineno_save = 0;
    size_t mark_begin_x_save = 0;
970
971

    if (old_mark_set) {
972
973
	mb_lineno_save = openfile->mark_begin->lineno;
	mark_begin_x_save = openfile->mark_begin_x;
974
975
976
    }
#endif

David Lawrence Ramsey's avatar
David Lawrence Ramsey committed
977
978
979
    /* Note: par_len will be one greater than the number of lines
     * between current and filebot if filebot is the last line to be
     * backed up. */
980
981
982
    assert(par_len > 0 && openfile->current->lineno + par_len <=
	filebot->lineno + 1);

983
984
985
    /* Move bot down par_len lines to the line after the last line of
     * the paragraph, if there is one. */
    for (i = par_len; i > 0 && bot != openfile->filebot; i--)
986
	bot = bot->next;
987

988
989
    /* Move the paragraph from the current buffer's filestruct to the
     * justify buffer. */
990
    move_to_filestruct(&jusbuffer, &jusbottom, top, 0, bot,
991
	(bot == openfile->filebot) ? strlen(bot->data) : 0);
992

993
994
995
    /* Copy the paragraph back to the current buffer's filestruct from
     * the justify buffer. */
    copy_from_filestruct(jusbuffer, jusbottom);
996

997
998
999
1000
    /* Move upward from the last line of the paragraph to the first
     * line, putting first_line, edittop, current, and mark_begin at the
     * same lines in the copied paragraph that they had in the original
     * paragraph. */
1001
1002
1003
1004
    if (openfile->current != openfile->filebot)
	top = openfile->current->prev;
    else
	top = openfile->current;
1005
1006
1007
1008
1009
1010
1011
    for (i = par_len; i > 0; i--) {
	if (top->lineno == fl_lineno_save)
	    first_line = top;
	if (top->lineno == edittop_lineno_save)
	    openfile->edittop = top;
	if (top->lineno == current_lineno_save)
	    openfile->current = top;
1012
#ifndef NANO_SMALL
1013
1014
1015
	if (old_mark_set && top->lineno == mb_lineno_save) {
	    openfile->mark_begin = top;
	    openfile->mark_begin_x = mark_begin_x_save;
1016
	}
1017
1018
1019
#endif
	top = top->prev;
    }
1020

1021
1022
1023
    /* Put current_x at the same place in the copied paragraph that it
     * had in the original paragraph. */
    openfile->current_x = current_x_save;
1024

1025
    set_modified();
1026

1027
1028
    return first_line;
}
1029

1030
1031
1032
1033
1034
1035
1036
1037
1038
1039
1040
1041
1042
1043
1044
1045
1046
/* Find the beginning of the current paragraph if we're in one, or the
 * beginning of the next paragraph if we're not.  Afterwards, save the
 * quote length and paragraph length in *quote and *par.  Return TRUE if
 * we found a paragraph, or FALSE if there was an error or we didn't
 * find a paragraph.
 *
 * See the comment at begpar() for more about when a line is the
 * beginning of a paragraph. */
bool find_paragraph(size_t *const quote, size_t *const par)
{
    size_t quote_len;
	/* Length of the initial quotation of the paragraph we search
	 * for. */
    size_t par_len;
	/* Number of lines in the paragraph we search for. */
    filestruct *current_save;
	/* The line at the beginning of the paragraph we search for. */
1047
1048
    size_t current_x_save;
	/* The x-coordinate at the end of the paragraph we search for. */
1049
1050
1051
    ssize_t current_y_save;
	/* The y-coordinate at the beginning of the paragraph we search
	 * for. */
1052

1053
1054
1055
1056
#ifdef HAVE_REGEX_H
    if (quoterc != 0) {
	statusbar(_("Bad quote string %s: %s"), quotestr, quoteerr);
	return FALSE;
1057
1058
1059
    }
#endif

1060
    assert(openfile->current != NULL);
1061

1062
1063
    /* Find the first line of the current or next paragraph.  First, if
     * the current line isn't in a paragraph, move forward to the line
1064
1065
1066
1067
1068
1069
     * after the last line of the next paragraph, if any.  If we end up
     * on the same line, or the line before that isn't in a paragraph, it
     * means that there aren't any paragraphs left, so get out.
     * Otherwise, move back to the last line of the paragraph.  If the
     * current line is in a paragraph and it isn't the first line of
     * that paragraph, move back to the first line. */
1070
1071
1072
1073
1074
1075
    if (!inpar(openfile->current)) {
	current_save = openfile->current;
	do_para_end(FALSE);
	if (openfile->current == current_save ||
		!inpar(openfile->current->prev))
	    return FALSE;
1076
	if (openfile->current != openfile->fileage)
1077
	    openfile->current = openfile->current->prev;
1078
    }
1079
1080
    if (!begpar(openfile->current))
	do_para_begin(FALSE);
1081

1082
1083
    /* Now current is the first line of the paragraph.  Set quote_len to
     * the quotation length of that line, and set par_len to the number
1084
     * of lines in this paragraph.  If, while calculating the latter, we
1085
1086
1087
     * end up past the beginning of the line, it means that we're at the
     * last line of the file, and the file doesn't end in a newline.  If
     * we were there before moving, there aren't any paragraphs left, so
1088
     * get out.  If we weren't there before moving, it means that the
1089
     * line is part of this paragraph. */
1090
1091
    quote_len = quote_length(openfile->current->data);
    current_save = openfile->current;
1092
    current_x_save = openfile->current_x;
1093
1094
1095
    current_y_save = openfile->current_y;
    do_para_end(FALSE);
    par_len = openfile->current->lineno - current_save->lineno;
1096
    if (openfile->current_x > 0) {
David Lawrence Ramsey's avatar
David Lawrence Ramsey committed
1097
	if (openfile->current == current_save &&
1098
		openfile->current_x == current_x_save)
1099
1100
1101
1102
	    return FALSE;
	else
	    par_len++;
    }
1103
    openfile->current = current_save;
1104
    openfile->current_x = current_x_save;
1105
    openfile->current_y = current_y_save;
1106

1107
1108
    /* Save the values of quote_len and par_len. */
    assert(quote != NULL && par != NULL);
1109

1110
1111
    *quote = quote_len;
    *par = par_len;
1112

1113
    return TRUE;
1114
1115
}

1116
1117
1118
/* If full_justify is TRUE, justify the entire file.  Otherwise, justify
 * the current paragraph. */
void do_justify(bool full_justify)
1119
{
1120
    filestruct *first_par_line = NULL;
1121
1122
	/* Will be the first line of the justified paragraph.  For
	 * restoring after unjustify. */
1123
    filestruct *last_par_line;
1124
1125
	/* Will be the line after the last line of the justified
	 * paragraph, if any.  Also for restoring after unjustify. */
1126

1127
1128
    /* We save these variables to be restored if the user
     * unjustifies. */
1129
1130
1131
1132
1133
1134
1135
1136
1137
1138
1139
1140
1141
    size_t current_x_save = openfile->current_x;
    size_t pww_save = openfile->placewewant;
    ssize_t current_y_save = openfile->current_y;
    bool modified_save = openfile->modified;
    size_t totsize_save = openfile->totsize;
    filestruct *edittop_save = openfile->edittop;
    filestruct *current_save = openfile->current;
#ifndef NANO_SMALL
    filestruct *mark_begin_save = openfile->mark_begin;
    size_t mark_begin_x_save = openfile->mark_begin_x;
#endif
    int kbinput;
    bool meta_key, func_key, s_or_t, ran_func, finished;
1142

1143
1144
1145
1146
1147
    /* Move to the beginning of the current line, so that justifying at
     * the end of the last line of the file will work if that line isn't
     * blank. */
    openfile->current_x = 0;

1148
1149
1150
    /* If we're justifying the entire file, start at the beginning. */
    if (full_justify)
	openfile->current = openfile->fileage;
1151

1152
    last_par_line = openfile->current;
1153

1154
1155
1156
1157
1158
1159
1160
1161
1162
1163
1164
1165
1166
1167
1168
1169
1170
1171
1172
1173
1174
1175
    while (TRUE) {
	size_t i;
	    /* Generic loop variable. */
	size_t quote_len;
	    /* Length of the initial quotation of the paragraph we
	     * justify. */
	size_t indent_len;
	    /* Length of the initial indentation of the paragraph we
	     * justify. */
	size_t par_len;
	    /* Number of lines in the paragraph we justify. */
	ssize_t break_pos;
	    /* Where we will break lines. */
	char *indent_string;
	    /* The first indentation that doesn't match the initial
	     * indentation of the paragraph we justify.  This is put at
	     * the beginning of every line broken off the first
	     * justified line of the paragraph.  (Note that this works
	     * because a paragraph can only contain two indentations at
	     * most: the initial one, and a different one starting on a
	     * line after the first.  See the comment at begpar() for
	     * more about when a line is part of a paragraph.) */
1176

1177
1178
1179
1180
1181
1182
1183
1184
1185
1186
1187
1188
1189
1190
1191
1192
1193
1194
	/* Find the first line of the paragraph to be justified.  That
	 * is the start of this paragraph if we're in one, or the start
	 * of the next otherwise.  Save the quote length and paragraph
	 * length (number of lines).  Don't refresh the screen yet,
	 * since we'll do that after we justify.
	 *
	 * If the search failed, we do one of two things.  If we're
	 * justifying the whole file, we've found at least one
	 * paragraph, and the search didn't leave us on the last line of
	 * the file, it means that we should justify all the way to the
	 * last line of the file, so set the last line of the text to be
	 * justified to the last line of the file and break out of the
	 * loop.  Otherwise, it means that there are no paragraph(s) to
	 * justify, so refresh the screen and get out. */
	if (!find_paragraph(&quote_len, &par_len)) {
	    if (full_justify && first_par_line != NULL &&
		first_par_line != openfile->filebot) {
		last_par_line = openfile->filebot;
1195
		break;
1196
1197
1198
1199
	    } else {
		edit_refresh();
		return;
	    }
1200
1201
	}

1202
1203
1204
1205
	/* If we haven't already done it, copy the original paragraph(s)
	 * to the justify buffer. */
	if (first_par_line == NULL)
	    first_par_line = backup_lines(openfile->current,
1206
1207
1208
		full_justify ? ((openfile->current ==
		openfile->filebot) ? 1 : openfile->filebot->lineno -
		openfile->current->lineno) : par_len);
1209

1210
1211
	/* Initialize indent_string to a blank string. */
	indent_string = mallocstrcpy(NULL, "");
1212

1213
1214
1215
1216
1217
1218
1219
	/* Find the first indentation in the paragraph that doesn't
	 * match the indentation of the first line, and save itin
	 * indent_string.  If all the indentations are the same, save
	 * the indentation of the first line in indent_string. */
	{
	    const filestruct *indent_line = openfile->current;
	    bool past_first_line = FALSE;
1220

1221
1222
1223
	    for (i = 0; i < par_len; i++) {
		indent_len = quote_len +
			indent_length(indent_line->data + quote_len);
1224

1225
1226
1227
1228
		if (indent_len != strlen(indent_string)) {
		    indent_string = mallocstrncpy(indent_string,
			indent_line->data, indent_len + 1);
		    indent_string[indent_len] = '\0';
1229

1230
1231
1232
		    if (past_first_line)
			break;
		}
1233

1234
1235
		if (indent_line == openfile->current)
		    past_first_line = TRUE;
1236

1237
1238
1239
		indent_line = indent_line->next;
	    }
	}
1240

1241
1242
1243
1244
1245
1246
1247
	/* Now tack all the lines of the paragraph together, skipping
	 * the quoting and indentation on all lines after the first. */
	for (i = 0; i < par_len - 1; i++) {
	    filestruct *next_line = openfile->current->next;
	    size_t line_len = strlen(openfile->current->data);
	    size_t next_line_len =
		strlen(openfile->current->next->data);
1248

1249
1250
1251
	    indent_len = quote_len +
		indent_length(openfile->current->next->data +
		quote_len);
1252

1253
1254
	    next_line_len -= indent_len;
	    openfile->totsize -= indent_len;
1255

1256
1257
1258
1259
1260
1261
1262
1263
1264
1265
1266
1267
	    /* We're just about to tack the next line onto this one.  If
	     * this line isn't empty, make sure it ends in a space. */
	    if (line_len > 0 &&
		openfile->current->data[line_len - 1] != ' ') {
		line_len++;
		openfile->current->data =
			charealloc(openfile->current->data,
			line_len + 1);
		openfile->current->data[line_len - 1] = ' ';
		openfile->current->data[line_len] = '\0';
		openfile->totsize++;
	    }
1268

1269
1270
1271
1272
1273
	    openfile->current->data =
		charealloc(openfile->current->data, line_len +
		next_line_len + 1);
	    strcat(openfile->current->data, next_line->data +
		indent_len);
1274

1275
	    /* Don't destroy edittop or filebot! */
David Lawrence Ramsey's avatar
David Lawrence Ramsey committed
1276
	    if (next_line == openfile->edittop)
1277
		openfile->edittop = openfile->current;
1278
1279
	    if (next_line == openfile->filebot)
		openfile->filebot = openfile->current;
1280

1281
1282
1283
1284
1285
1286
1287
1288
1289
#ifndef NANO_SMALL
	    /* Adjust the mark coordinates to compensate for the change
	     * in the next line. */
	    if (openfile->mark_set && openfile->mark_begin ==
		next_line) {
		openfile->mark_begin = openfile->current;
		openfile->mark_begin_x += line_len - indent_len;
	    }
#endif
1290

1291
1292
	    unlink_node(next_line);
	    delete_node(next_line);
1293

1294
1295
1296
	    /* If we've removed the next line, we need to go through
	     * this line again. */
	    i--;
1297

1298
1299
1300
	    par_len--;
	    openfile->totsize--;
	}
1301

1302
1303
1304
1305
1306
	/* Call justify_format() on the paragraph, which will remove
	 * excess spaces from it and change all blank characters to
	 * spaces. */
	justify_format(openfile->current, quote_len +
		indent_length(openfile->current->data + quote_len));
1307

1308
1309
	while (par_len > 0 && strlenpt(openfile->current->data) >
		fill) {
1310
	    size_t line_len = strlen(openfile->current->data);
1311

1312
	    indent_len = strlen(indent_string);
1313

1314
1315
	    /* If this line is too long, try to wrap it to the next line
	     * to make it short enough. */
1316
1317
1318
	    break_pos = break_line(openfile->current->data + indent_len,
		fill - strnlenpt(openfile->current->data, indent_len),
		FALSE);
1319

1320
1321
1322
	    /* We can't break the line, or don't need to, so get out. */
	    if (break_pos == -1 || break_pos + indent_len == line_len)
		break;
1323

1324
1325
1326
	    /* Move forward to the character after the indentation and
	     * just after the space. */
	    break_pos += indent_len + 1;
1327

1328
	    assert(break_pos <= line_len);
1329

1330
1331
1332
1333
1334
1335
	    /* Make a new line, and copy the text after where we're
	     * going to break this line to the beginning of the new
	     * line. */
	    splice_node(openfile->current,
		make_new_node(openfile->current),
		openfile->current->next);
1336

1337
1338
1339
1340
	    /* If this paragraph is non-quoted, and autoindent isn't
	     * turned on, set the indentation length to zero so that the
	     * indentation is treated as part of the line. */
	    if (quote_len == 0
1341
#ifndef NANO_SMALL
1342
		&& !ISSET(AUTOINDENT)
1343
#endif
1344
1345
		)
		indent_len = 0;
1346

1347
1348
1349
1350
1351
1352
1353
1354
	    /* Copy the text after where we're going to break the
	     * current line to the next line. */
	    openfile->current->next->data = charalloc(indent_len + 1 +
		line_len - break_pos);
	    strncpy(openfile->current->next->data, indent_string,
		indent_len);
	    strcpy(openfile->current->next->data + indent_len,
		openfile->current->data + break_pos);
1355

1356
1357
	    par_len++;
	    openfile->totsize += indent_len + 1;
1358

1359
1360
1361
1362
1363
1364
1365
1366
#ifndef NANO_SMALL
	    /* Adjust the mark coordinates to compensate for the change
	     * in the current line. */
	    if (openfile->mark_set && openfile->mark_begin ==
		openfile->current && openfile->mark_begin_x >
		break_pos) {
		openfile->mark_begin = openfile->current->next;
		openfile->mark_begin_x -= break_pos - indent_len;
1367
	    }
1368
#endif
1369

1370
1371
	    /* Break the current line. */
	    null_at(&openfile->current->data, break_pos);
1372

1373
1374
1375
1376
1377
	    /* If the current line is the last line of the file, move
	     * the last line of the file down. */
	    if (openfile->filebot == openfile->current)
		openfile->filebot = openfile->filebot->next;

1378
1379
	    /* Go to the next line. */
	    par_len--;
1380
1381
	    openfile->current_y++;
	    openfile->current = openfile->current->next;
1382
	}
1383

1384
1385
1386
	/* We're done breaking lines, so we don't need indent_string
	 * anymore. */
	free(indent_string);
1387

1388
1389
	/* Go to the next line, if possible.  If there is no next line,
	 * move to the end of the current line. */
1390
1391
1392
1393
1394
	if (openfile->current != openfile->filebot) {
	    openfile->current_y++;
	    openfile->current = openfile->current->next;
	} else
	    openfile->current_x = strlen(openfile->current->data);
1395

1396
1397
1398
1399
1400
	/* We've just justified a paragraph. If we're not justifying the
	 * entire file, break out of the loop.  Otherwise, continue the
	 * loop so that we justify all the paragraphs in the file. */
	if (!full_justify)
	    break;
1401
1402
    }

1403
    /* We are now done justifying the paragraph or the file, so clean
1404
1405
1406
1407
     * up.  totsize, and current_y have been maintained above.  Set
     * last_par_line to the new end of the paragraph, update fileage,
     * and renumber, since edit_refresh() needs the line numbers to be
     * right (but only do the last two if we actually justified
1408
1409
1410
1411
1412
1413
     * something). */
    last_par_line = openfile->current;
    if (first_par_line != NULL) {
	if (first_par_line->prev == NULL)
	    openfile->fileage = first_par_line;
	renumber(first_par_line);
1414
1415
    }

1416
    edit_refresh();
1417

1418
    statusbar(_("Can now UnJustify!"));
1419

1420
1421
1422
1423
    /* If constant cursor position display is on, make sure the current
     * cursor position will be properly displayed on the statusbar. */
    if (ISSET(CONST_UPDATE))
	do_cursorpos(TRUE);
1424

1425
1426
1427
    /* Display the shortcut list with UnJustify. */
    shortcut_init(TRUE);
    display_main_list();
1428

1429
1430
1431
1432
    /* Now get a keystroke and see if it's unjustify.  If not, put back
     * the keystroke and return. */
    kbinput = do_input(&meta_key, &func_key, &s_or_t, &ran_func,
	&finished, FALSE);
1433

1434
1435
1436
1437
1438
1439
1440
1441
    if (!meta_key && !func_key && s_or_t &&
	kbinput == NANO_UNJUSTIFY_KEY) {
	/* Restore the justify we just did (ungrateful user!). */
	openfile->current = current_save;
	openfile->current_x = current_x_save;
	openfile->placewewant = pww_save;
	openfile->current_y = current_y_save;
	openfile->edittop = edittop_save;
1442

1443
1444
1445
1446
	/* Splice the justify buffer back into the file, but only if we
	 * actually justified something. */
	if (first_par_line != NULL) {
	    filestruct *top_save;
1447

1448
1449
1450
	    /* Partition the filestruct so that it contains only the
	     * text of the justified paragraph. */
	    filepart = partition_filestruct(first_par_line, 0,
1451
		last_par_line, strlen(last_par_line->data));
1452

1453
1454
1455
1456
1457
	    /* Remove the text of the justified paragraph, and
	     * put the text in the justify buffer in its place. */
	    free_filestruct(openfile->fileage);
	    openfile->fileage = jusbuffer;
	    openfile->filebot = jusbottom;
1458

1459
	    top_save = openfile->fileage;
1460

1461
1462
1463
1464
	    /* Unpartition the filestruct so that it contains all the
	     * text again.  Note that the justified paragraph has been
	     * replaced with the unjustified paragraph. */
	    unpartition_filestruct(&filepart);
1465

1466
1467
1468
	     /* Renumber starting with the beginning line of the old
	      * partition. */
	    renumber(top_save);
1469

1470
1471
1472
1473
1474
1475
1476
1477
1478
	    /* Restore variables from before the justify. */
	    openfile->totsize = totsize_save;
#ifndef NANO_SMALL
	    if (openfile->mark_set) {
		openfile->mark_begin = mark_begin_save;
		openfile->mark_begin_x = mark_begin_x_save;
	    }
#endif
	    openfile->modified = modified_save;
1479

1480
1481
	    /* Clear the justify buffer. */
	    jusbuffer = NULL;
1482

1483
1484
1485
1486
1487
1488
	    if (!openfile->modified)
		titlebar(NULL);
	    edit_refresh();
	}
    } else {
	unget_kbinput(kbinput, meta_key, func_key);
1489

1490
1491
1492
1493
	/* Blow away the text in the justify buffer. */
	free_filestruct(jusbuffer);
	jusbuffer = NULL;
    }
1494

1495
1496
1497
1498
1499
    blank_statusbar();

    /* Display the shortcut list with UnCut. */
    shortcut_init(FALSE);
    display_main_list();
1500
1501
}

1502
void do_justify_void(void)
1503
{
1504
1505
    do_justify(FALSE);
}
1506

1507
1508
1509
void do_full_justify(void)
{
    do_justify(TRUE);
1510
}
1511
#endif /* !DISABLE_JUSTIFY */
1512

1513
1514
1515
1516
#ifndef DISABLE_SPELLER
/* A word is misspelled in the file.  Let the user replace it.  We
 * return FALSE if the user cancels. */
bool do_int_spell_fix(const char *word)
1517
{
1518
1519
1520
1521
1522
1523
1524
1525
1526
1527
1528
1529
1530
1531
1532
    char *save_search, *save_replace;
    size_t match_len, current_x_save = openfile->current_x;
    size_t pww_save = openfile->placewewant;
    filestruct *edittop_save = openfile->edittop;
    filestruct *current_save = openfile->current;
	/* Save where we are. */
    bool canceled = FALSE;
	/* The return value. */
    bool case_sens_set = ISSET(CASE_SENSITIVE);
#ifndef NANO_SMALL
    bool backwards_search_set = ISSET(BACKWARDS_SEARCH);
#endif
#ifdef HAVE_REGEX_H
    bool regexp_set = ISSET(USE_REGEXP);
#endif
1533
1534
#ifndef NANO_SMALL
    bool old_mark_set = openfile->mark_set;
1535
1536
1537
1538
1539
1540
1541
1542
1543
1544
1545
    bool added_magicline = FALSE;
	/* Whether we added a magicline after filebot. */
    bool right_side_up = FALSE;
	/* TRUE if (mark_begin, mark_begin_x) is the top of the mark,
	 * FALSE if (current, current_x) is. */
    filestruct *top, *bot;
    size_t top_x, bot_x;
#endif

    /* Make sure spell-check is case sensitive. */
    SET(CASE_SENSITIVE);
1546

1547
1548
1549
1550
1551
1552
1553
1554
1555
1556
1557
1558
1559
1560
1561
1562
1563
1564
1565
#ifndef NANO_SMALL
    /* Make sure spell-check goes forward only. */
    UNSET(BACKWARDS_SEARCH);
#endif
#ifdef HAVE_REGEX_H
    /* Make sure spell-check doesn't use regular expressions. */
    UNSET(USE_REGEXP);
#endif

    /* Save the current search/replace strings. */
    search_init_globals();
    save_search = last_search;
    save_replace = last_replace;

    /* Set the search/replace strings to the misspelled word. */
    last_search = mallocstrcpy(NULL, word);
    last_replace = mallocstrcpy(NULL, word);

#ifndef NANO_SMALL
1566
    if (old_mark_set) {
1567
	/* If the mark is on, partition the filestruct so that it
1568
1569
1570
1571
	 * contains only the marked text; if the NO_NEWLINES flag isn't
	 * set, keep track of whether the text will have a magicline
	 * added when we're done correcting misspelled words; and
	 * turn the mark off. */
1572
1573
1574
	mark_order((const filestruct **)&top, &top_x,
	    (const filestruct **)&bot, &bot_x, &right_side_up);
	filepart = partition_filestruct(top, top_x, bot, bot_x);
1575
1576
	if (!ISSET(NO_NEWLINES))
	    added_magicline = (openfile->filebot->data[0] != '\0');
1577
	openfile->mark_set = FALSE;
1578
1579
1580
    }
#endif

1581
1582
1583
1584
1585
    /* Start from the top of the file. */
    openfile->edittop = openfile->fileage;
    openfile->current = openfile->fileage;
    openfile->current_x = (size_t)-1;
    openfile->placewewant = 0;
1586

1587
1588
1589
1590
1591
1592
1593
1594
1595
1596
    /* Find the first whole-word occurrence of word. */
    findnextstr_wrap_reset();
    while (findnextstr(TRUE, TRUE, FALSE, openfile->fileage, 0, word,
	&match_len)) {
	if (is_whole_word(openfile->current_x, openfile->current->data,
		word)) {
	    size_t xpt = xplustabs();
	    char *exp_word = display_string(openfile->current->data,
		xpt, strnlenpt(openfile->current->data,
		openfile->current_x + match_len) - xpt, FALSE);
1597

1598
	    edit_refresh();
1599

1600
1601
1602
	    do_replace_highlight(TRUE, exp_word);

	    /* Allow all instances of the word to be corrected. */
1603
	    canceled = (do_prompt(FALSE, spell_list, word,
1604
#ifndef NANO_SMALL
1605
			NULL,
1606
#endif
1607
			 _("Edit a replacement")) == -1);
1608

1609
	    do_replace_highlight(FALSE, exp_word);
1610

1611
	    free(exp_word);
1612

1613
1614
1615
1616
1617
	    if (!canceled && strcmp(word, answer) != 0) {
		openfile->current_x--;
		do_replace_loop(word, openfile->current,
			&openfile->current_x, TRUE, &canceled);
	    }
1618

1619
1620
	    break;
	}
1621
1622
    }

1623
1624
#ifndef NANO_SMALL
    if (old_mark_set) {
1625
1626
1627
	/* If the mark was on, the NO_NEWLINES flag isn't set, and we
	 * added a magicline, remove it now. */
	if (!ISSET(NO_NEWLINES) && added_magicline)
1628
	    remove_magicline();
1629

1630
1631
1632
1633
1634
1635
1636
1637
1638
1639
1640
	/* Put the beginning and the end of the mark at the beginning
	 * and the end of the spell-checked text. */
	if (openfile->fileage == openfile->filebot)
	    bot_x += top_x;
	if (right_side_up) {
	    openfile->mark_begin_x = top_x;
	    current_x_save = bot_x;
	} else {
	    current_x_save = top_x;
	    openfile->mark_begin_x = bot_x;
	}
1641

1642
1643
1644
1645
	/* Unpartition the filestruct so that it contains all the text
	 * again, and turn the mark back on. */
	unpartition_filestruct(&filepart);
	openfile->mark_set = TRUE;
1646
    }
1647
#endif
1648

1649
1650
1651
1652
1653
1654
1655
1656
    /* Restore the search/replace strings. */
    free(last_search);
    last_search = save_search;
    free(last_replace);
    last_replace = save_replace;

    /* Restore where we were. */
    openfile->edittop = edittop_save;
1657
    openfile->current = current_save;
1658
1659
    openfile->current_x = current_x_save;
    openfile->placewewant = pww_save;
1660

1661
1662
1663
    /* Restore case sensitivity setting. */
    if (!case_sens_set)
	UNSET(CASE_SENSITIVE);
1664

1665
1666
1667
1668
1669
1670
1671
1672
1673
1674
#ifndef NANO_SMALL
    /* Restore search/replace direction. */
    if (backwards_search_set)
	SET(BACKWARDS_SEARCH);
#endif
#ifdef HAVE_REGEX_H
    /* Restore regular expression usage setting. */
    if (regexp_set)
	SET(USE_REGEXP);
#endif
1675

1676
    return !canceled;
1677
1678
}

1679
1680
1681
1682
/* Integrated spell checking using the spell program, filtered through
 * the sort and uniq programs.  Return NULL for normal termination,
 * and the error string otherwise. */
const char *do_int_speller(const char *tempfile_name)
1683
{
1684
1685
1686
1687
1688
    char *read_buff, *read_buff_ptr, *read_buff_word;
    size_t pipe_buff_size, read_buff_size, read_buff_read, bytesread;
    int spell_fd[2], sort_fd[2], uniq_fd[2], tempfile_fd = -1;
    pid_t pid_spell, pid_sort, pid_uniq;
    int spell_status, sort_status, uniq_status;
1689

1690
1691
1692
1693
    /* Create all three pipes up front. */
    if (pipe(spell_fd) == -1 || pipe(sort_fd) == -1 ||
	pipe(uniq_fd) == -1)
	return _("Could not create pipe");
1694

1695
    statusbar(_("Creating misspelled word list, please wait..."));
1696

1697
1698
1699
1700
    /* A new process to run spell in. */
    if ((pid_spell = fork()) == 0) {
	/* Child continues (i.e, future spell process). */
	close(spell_fd[0]);
1701

1702
1703
1704
	/* Replace the standard input with the temp file. */
	if ((tempfile_fd = open(tempfile_name, O_RDONLY)) == -1)
	    goto close_pipes_and_exit;
1705

1706
1707
	if (dup2(tempfile_fd, STDIN_FILENO) != STDIN_FILENO)
	    goto close_pipes_and_exit;
1708

1709
	close(tempfile_fd);
1710

1711
1712
1713
	/* Send spell's standard output to the pipe. */
	if (dup2(spell_fd[1], STDOUT_FILENO) != STDOUT_FILENO)
	    goto close_pipes_and_exit;
1714

1715
1716
1717
1718
1719
1720
1721
1722
1723
1724
1725
1726
1727
1728
1729
1730
1731
1732
1733
1734
1735
1736
1737
1738
1739
1740
1741
1742
1743
1744
1745
1746
1747
1748
	close(spell_fd[1]);

	/* Start the spell program; we are using PATH. */
	execlp("spell", "spell", NULL);

	/* This should not be reached if spell is found. */
	exit(1);
    }

    /* Parent continues here. */
    close(spell_fd[1]);

    /* A new process to run sort in. */
    if ((pid_sort = fork()) == 0) {
	/* Child continues (i.e, future spell process).  Replace the
	 * standard input with the standard output of the old pipe. */
	if (dup2(spell_fd[0], STDIN_FILENO) != STDIN_FILENO)
	    goto close_pipes_and_exit;

	close(spell_fd[0]);

	/* Send sort's standard output to the new pipe. */
	if (dup2(sort_fd[1], STDOUT_FILENO) != STDOUT_FILENO)
	    goto close_pipes_and_exit;

	close(sort_fd[1]);

	/* Start the sort program.  Use -f to remove mixed case.  If
	 * this isn't portable, let me know. */
	execlp("sort", "sort", "-f", NULL);

	/* This should not be reached if sort is found. */
	exit(1);
    }
1749

1750
1751
    close(spell_fd[0]);
    close(sort_fd[1]);
1752

1753
1754
1755
1756
1757
1758
    /* A new process to run uniq in. */
    if ((pid_uniq = fork()) == 0) {
	/* Child continues (i.e, future uniq process).  Replace the
	 * standard input with the standard output of the old pipe. */
	if (dup2(sort_fd[0], STDIN_FILENO) != STDIN_FILENO)
	    goto close_pipes_and_exit;
1759

1760
	close(sort_fd[0]);
1761

1762
1763
1764
	/* Send uniq's standard output to the new pipe. */
	if (dup2(uniq_fd[1], STDOUT_FILENO) != STDOUT_FILENO)
	    goto close_pipes_and_exit;
1765

1766
	close(uniq_fd[1]);
1767

1768
1769
	/* Start the uniq program; we are using PATH. */
	execlp("uniq", "uniq", NULL);
1770

1771
1772
1773
	/* This should not be reached if uniq is found. */
	exit(1);
    }
1774

1775
1776
    close(sort_fd[0]);
    close(uniq_fd[1]);
1777

1778
1779
1780
1781
1782
    /* The child process was not forked successfully. */
    if (pid_spell < 0 || pid_sort < 0 || pid_uniq < 0) {
	close(uniq_fd[0]);
	return _("Could not fork");
    }
1783

1784
1785
1786
1787
1788
    /* Get the system pipe buffer size. */
    if ((pipe_buff_size = fpathconf(uniq_fd[0], _PC_PIPE_BUF)) < 1) {
	close(uniq_fd[0]);
	return _("Could not get size of pipe buffer");
    }
1789

1790
1791
1792
1793
    /* Read in the returned spelling errors. */
    read_buff_read = 0;
    read_buff_size = pipe_buff_size + 1;
    read_buff = read_buff_ptr = charalloc(read_buff_size);
1794

1795
1796
1797
1798
1799
1800
1801
1802
    while ((bytesread = read(uniq_fd[0], read_buff_ptr,
	pipe_buff_size)) > 0) {
	read_buff_read += bytesread;
	read_buff_size += pipe_buff_size;
	read_buff = read_buff_ptr = charealloc(read_buff,
		read_buff_size);
	read_buff_ptr += read_buff_read;
    }
1803

1804
1805
    *read_buff_ptr = '\0';
    close(uniq_fd[0]);
1806

1807
1808
    /* Process the spelling errors. */
    read_buff_word = read_buff_ptr = read_buff;
1809

1810
1811
1812
1813
1814
1815
1816
1817
1818
1819
    while (*read_buff_ptr != '\0') {
	if ((*read_buff_ptr == '\r') || (*read_buff_ptr == '\n')) {
	    *read_buff_ptr = '\0';
	    if (read_buff_word != read_buff_ptr) {
		if (!do_int_spell_fix(read_buff_word)) {
		    read_buff_word = read_buff_ptr;
		    break;
		}
	    }
	    read_buff_word = read_buff_ptr + 1;
1820
	}
1821
1822
	read_buff_ptr++;
    }
1823

1824
1825
1826
    /* Special case: the last word doesn't end with '\r' or '\n'. */
    if (read_buff_word != read_buff_ptr)
	do_int_spell_fix(read_buff_word);
1827

1828
1829
1830
    free(read_buff);
    replace_abort();
    edit_refresh();
1831

1832
1833
1834
1835
    /* Process the end of the spell process. */
    waitpid(pid_spell, &spell_status, 0);
    waitpid(pid_sort, &sort_status, 0);
    waitpid(pid_uniq, &uniq_status, 0);
1836

1837
1838
    if (WIFEXITED(spell_status) == 0 || WEXITSTATUS(spell_status))
	return _("Error invoking \"spell\"");
1839

1840
1841
    if (WIFEXITED(sort_status)  == 0 || WEXITSTATUS(sort_status))
	return _("Error invoking \"sort -f\"");
1842

1843
1844
    if (WIFEXITED(uniq_status) == 0 || WEXITSTATUS(uniq_status))
	return _("Error invoking \"uniq\"");
1845

1846
1847
    /* Otherwise... */
    return NULL;
1848

1849
1850
1851
1852
1853
1854
1855
1856
1857
1858
1859
  close_pipes_and_exit:
    /* Don't leak any handles. */
    close(tempfile_fd);
    close(spell_fd[0]);
    close(spell_fd[1]);
    close(sort_fd[0]);
    close(sort_fd[1]);
    close(uniq_fd[0]);
    close(uniq_fd[1]);
    exit(1);
}
1860

1861
1862
1863
1864
1865
1866
1867
1868
1869
1870
1871
1872
1873
/* External spell checking.  Return value: NULL for normal termination,
 * otherwise the error string. */
const char *do_alt_speller(char *tempfile_name)
{
    int alt_spell_status;
    size_t current_x_save = openfile->current_x;
    size_t pww_save = openfile->placewewant;
    ssize_t current_y_save = openfile->current_y;
    ssize_t lineno_save = openfile->current->lineno;
    pid_t pid_spell;
    char *ptr;
    static int arglen = 3;
    static char **spellargs = NULL;
1874
#ifndef NANO_SMALL
1875
1876
1877
1878
1879
1880
1881
1882
1883
1884
1885
1886
1887
1888
1889
1890
    bool old_mark_set = openfile->mark_set;
    bool added_magicline = FALSE;
	/* Whether we added a magicline after filebot. */
    bool right_side_up = FALSE;
	/* TRUE if (mark_begin, mark_begin_x) is the top of the mark,
	 * FALSE if (current, current_x) is. */
    filestruct *top, *bot;
    size_t top_x, bot_x;
    ssize_t mb_lineno_save = 0;
	/* We're going to close the current file, and open the output of
	 * the alternate spell command.  The line that mark_begin points
	 * to will be freed, so we save the line number and restore it
	 * afterwards. */
    size_t totsize_save = openfile->totsize;
	/* Our saved value of totsize, used when we spell-check a marked
	 * selection. */
1891

1892
1893
1894
1895
1896
1897
    if (old_mark_set) {
	/* If the mark is on, save the number of the line it starts on,
	 * and then turn the mark off. */
	mb_lineno_save = openfile->mark_begin->lineno;
	openfile->mark_set = FALSE;
    }
1898
1899
#endif

1900
    endwin();
1901

1902
1903
1904
    /* Set up an argument list to pass execvp(). */
    if (spellargs == NULL) {
	spellargs = (char **)nmalloc(arglen * sizeof(char *));
1905

1906
1907
1908
1909
1910
1911
1912
1913
	spellargs[0] = strtok(alt_speller, " ");
	while ((ptr = strtok(NULL, " ")) != NULL) {
	    arglen++;
	    spellargs = (char **)nrealloc(spellargs, arglen *
		sizeof(char *));
	    spellargs[arglen - 3] = ptr;
	}
	spellargs[arglen - 1] = NULL;
1914
    }
1915
    spellargs[arglen - 2] = tempfile_name;
1916

1917
1918
1919
1920
1921
1922
1923
    /* Start a new process for the alternate speller. */
    if ((pid_spell = fork()) == 0) {
	/* Start alternate spell program; we are using PATH. */
	execvp(spellargs[0], spellargs);

	/* Should not be reached, if alternate speller is found!!! */
	exit(1);
1924
1925
    }

1926
1927
1928
    /* If we couldn't fork, get out. */
    if (pid_spell < 0)
	return _("Could not fork");
1929

1930
1931
#ifndef NANO_SMALL
    /* Don't handle a pending SIGWINCH until the alternate spell checker
1932
     * is finished and we've loaded the spell-checked file back in. */
1933
1934
1935
1936
    allow_pending_sigwinch(FALSE);
#endif

    /* Wait for the alternate spell checker to finish. */
1937
    wait(&alt_spell_status);
1938

1939
1940
    /* Reenter curses mode. */
    doupdate();
1941

1942
1943
    /* Restore the terminal to its previous state. */
    terminal_init();
1944

1945
1946
    /* Turn the cursor back on for sure. */
    curs_set(1);
1947

1948
1949
1950
1951
    /* The screen might have been resized.  If it has, reinitialize all
     * the windows based on the new screen dimensions. */
    window_init();

1952
1953
1954
1955
    if (!WIFEXITED(alt_spell_status) ||
		WEXITSTATUS(alt_spell_status) != 0) {
	char *altspell_error;
	char *invoke_error = _("Error invoking \"%s\"");
1956

1957
1958
1959
1960
#ifndef NANO_SMALL
	/* Turn the mark back on if it was on before. */
	openfile->mark_set = old_mark_set;
#endif
1961

1962
1963
1964
1965
1966
1967
	altspell_error =
		charalloc(strlen(invoke_error) +
		strlen(alt_speller) + 1);
	sprintf(altspell_error, invoke_error, alt_speller);
	return altspell_error;
    }
1968

1969
1970
#ifndef NANO_SMALL
    if (old_mark_set) {
1971
1972
1973
1974
1975
	/* If the mark is on, partition the filestruct so that it
	 * contains only the marked text; if the NO_NEWLINES flag isn't
	 * set, keep track of whether the text will have a magicline
	 * added when we're done correcting misspelled words; and
	 * turn the mark off. */
1976
1977
1978
	mark_order((const filestruct **)&top, &top_x,
		(const filestruct **)&bot, &bot_x, &right_side_up);
	filepart = partition_filestruct(top, top_x, bot, bot_x);
1979
1980
	if (!ISSET(NO_NEWLINES))
	    added_magicline = (openfile->filebot->data[0] != '\0');
1981

1982
1983
1984
1985
1986
	/* Get the number of characters in the marked text, and subtract
	 * it from the saved value of totsize. */
	totsize_save -= get_totsize(top, bot);
    }
#endif
1987

1988
1989
1990
    /* Replace the text of the current buffer with the spell-checked
     * text. */
    replace_buffer(tempfile_name);
1991
1992

#ifndef NANO_SMALL
1993
1994
    if (old_mark_set) {
	filestruct *top_save = openfile->fileage;
1995

1996
1997
1998
	/* If the mark was on, the NO_NEWLINES flag isn't set, and we
	 * added a magicline, remove it now. */
	if (!ISSET(NO_NEWLINES) && added_magicline)
1999
	    remove_magicline();
2000

2001
2002
2003
2004
2005
2006
2007
2008
2009
2010
	/* Put the beginning and the end of the mark at the beginning
	 * and the end of the spell-checked text. */
	if (openfile->fileage == openfile->filebot)
	    bot_x += top_x;
	if (right_side_up) {
	    openfile->mark_begin_x = top_x;
	    current_x_save = bot_x;
	} else {
	    current_x_save = top_x;
	    openfile->mark_begin_x = bot_x;
2011
2012
	}

2013
2014
2015
2016
2017
2018
2019
	/* Unpartition the filestruct so that it contains all the text
	 * again.  Note that we've replaced the marked text originally
	 * in the partition with the spell-checked marked text in the
	 * temp file. */
	unpartition_filestruct(&filepart);

	/* Renumber starting with the beginning line of the old
2020
2021
2022
	 * partition.  Also add the number of characters in the
	 * spell-checked marked text to the saved value of totsize, and
	 * then make that saved value the actual value. */
2023
2024
2025
2026
2027
2028
2029
2030
2031
2032
2033
2034
2035
2036
2037
2038
	renumber(top_save);
	totsize_save += openfile->totsize;
	openfile->totsize = totsize_save;

	/* Assign mark_begin to the line where the mark began before. */
	do_gotopos(mb_lineno_save, openfile->mark_begin_x,
		current_y_save, 0);
	openfile->mark_begin = openfile->current;

	/* Assign mark_begin_x to the location in mark_begin where the
	 * mark began before, adjusted for any shortening of the
	 * line. */
	openfile->mark_begin_x = openfile->current_x;

	/* Turn the mark back on. */
	openfile->mark_set = TRUE;
2039
    }
2040
#endif
2041

2042
2043
2044
    /* Go back to the old position, and mark the file as modified. */
    do_gotopos(lineno_save, current_x_save, current_y_save, pww_save);
    set_modified();
2045

2046
2047
2048
2049
2050
#ifndef NANO_SMALL
    /* Handle a pending SIGWINCH again. */
    allow_pending_sigwinch(TRUE);
#endif

2051
    return NULL;
2052
2053
}

2054
void do_spell(void)
2055
{
2056
2057
2058
2059
    int i;
    FILE *temp_file;
    char *temp = safe_tempfile(&temp_file);
    const char *spell_msg;
2060

2061
2062
2063
2064
2065
2066
2067
    if (temp == NULL) {
	statusbar(_("Could not create temp file: %s"), strerror(errno));
	return;
    }

#ifndef NANO_SMALL
    if (openfile->mark_set)
2068
	i = write_marked_file(temp, temp_file, TRUE, OVERWRITE);
2069
2070
    else
#endif
2071
	i = write_file(temp, temp_file, TRUE, OVERWRITE, FALSE);
2072
2073
2074
2075
2076
2077
2078
2079
2080
2081
2082
2083
2084
2085
2086
2087
2088
2089
2090
2091
2092
2093
2094
2095
2096

    if (i == -1) {
	statusbar(_("Error writing temp file: %s"), strerror(errno));
	free(temp);
	return;
    }

    spell_msg = (alt_speller != NULL) ? do_alt_speller(temp) :
	do_int_speller(temp);
    unlink(temp);
    free(temp);

    /* If the spell-checker printed any error messages onscreen, make
     * sure that they're cleared off. */
    total_refresh();

    if (spell_msg != NULL) {
	if (errno == 0)
	    /* Don't display an error message of "Success". */
	    statusbar(_("Spell checking failed: %s"), spell_msg);
	else
	    statusbar(_("Spell checking failed: %s: %s"), spell_msg,
		strerror(errno));
    } else
	statusbar(_("Finished checking spelling"));
2097
}
2098
#endif /* !DISABLE_SPELLER */
2099
2100

#ifndef NANO_SMALL
2101
2102
/* Our own version of "wc".  Note that its character counts are in
 * multibyte characters instead of single-byte characters. */
2103
void do_wordlinechar_count(void)
2104
{
2105
2106
    size_t words = 0, chars = 0;
    ssize_t lines = 0;
2107
    size_t current_x_save = openfile->current_x;
2108
2109
2110
2111
2112
2113
2114
2115
    size_t pww_save = openfile->placewewant;
    filestruct *current_save = openfile->current;
    bool old_mark_set = openfile->mark_set;
    filestruct *top, *bot;
    size_t top_x, bot_x;

    if (old_mark_set) {
	/* If the mark is on, partition the filestruct so that it
2116
	 * contains only the marked text, and turn the mark off. */
2117
2118
2119
2120
2121
2122
2123
2124
2125
2126
2127
2128
	mark_order((const filestruct **)&top, &top_x,
	    (const filestruct **)&bot, &bot_x, NULL);
	filepart = partition_filestruct(top, top_x, bot, bot_x);
	openfile->mark_set = FALSE;
    }

    /* Start at the top of the file. */
    openfile->current = openfile->fileage;
    openfile->current_x = 0;
    openfile->placewewant = 0;

    /* Keep moving to the next word (counting punctuation characters as
2129
2130
2131
     * part of a word, as "wc -w" does), without updating the screen,
     * until we reach the end of the file, incrementing the total word
     * count whenever we're on a word just before moving. */
2132
    while (openfile->current != openfile->filebot ||
2133
	openfile->current->data[openfile->current_x] != '\0') {
2134
2135
2136
2137
	if (do_next_word(TRUE, FALSE))
	    words++;
    }

2138
2139
    /* Get the total line and character counts, as "wc -l"  and "wc -c"
     * do, but get the latter in multibyte characters. */
2140
    if (old_mark_set) {
David Lawrence Ramsey's avatar
David Lawrence Ramsey committed
2141
2142
	lines = openfile->filebot->lineno -
		openfile->fileage->lineno + 1;
2143
2144
	chars = get_totsize(openfile->fileage, openfile->filebot);

2145
2146
2147
2148
	/* Unpartition the filestruct so that it contains all the text
	 * again, and turn the mark back on. */
	unpartition_filestruct(&filepart);
	openfile->mark_set = TRUE;
2149
    } else {
2150
	lines = openfile->filebot->lineno;
2151
	chars = openfile->totsize;
2152
2153
2154
2155
2156
2157
2158
    }

    /* Restore where we were. */
    openfile->current = current_save;
    openfile->current_x = current_x_save;
    openfile->placewewant = pww_save;

2159
2160
    /* Display the total word, line, and character counts on the
     * statusbar. */
2161
    statusbar(_("%sWords: %lu  Lines: %ld  Chars: %lu"), old_mark_set ?
David Lawrence Ramsey's avatar
David Lawrence Ramsey committed
2162
	_("In Selection:  ") : "", (unsigned long)words, (long)lines,
2163
	(unsigned long)chars);
2164
2165
}
#endif /* !NANO_SMALL */
2166
2167
2168
2169
2170
2171
2172
2173
2174
2175
2176
2177
2178
2179
2180
2181
2182
2183
2184
2185
2186
2187
2188
2189
2190
2191
2192
2193
2194

void do_verbatim_input(void)
{
    int *kbinput;
    size_t kbinput_len, i;
    char *output;

    statusbar(_("Verbatim Input"));

    /* If constant cursor position display is on, make sure the current
     * cursor position will be properly displayed on the statusbar. */
    if (ISSET(CONST_UPDATE))
	do_cursorpos(TRUE);

    /* Read in all the verbatim characters. */
    kbinput = get_verbatim_kbinput(edit, &kbinput_len);

    /* Display all the verbatim characters at once, not filtering out
     * control characters. */
    output = charalloc(kbinput_len + 1);

    for (i = 0; i < kbinput_len; i++)
	output[i] = (char)kbinput[i];
    output[i] = '\0';

    do_output(output, kbinput_len, TRUE);

    free(output);
}