line.c revision 189139
1/* $FreeBSD: head/contrib/less/line.c 189139 2009-02-28 06:27:23Z das $ */
2/*
3 * Copyright (C) 1984-2007  Mark Nudelman
4 *
5 * You may distribute under the terms of either the GNU General Public
6 * License or the Less License, as specified in the README file.
7 *
8 * For more information about less, or for information on how to
9 * contact the author, see the README file.
10 */
11
12
13/*
14 * Routines to manipulate the "line buffer".
15 * The line buffer holds a line of output as it is being built
16 * in preparation for output to the screen.
17 */
18
19#include "less.h"
20#include "charset.h"
21
22static char *linebuf = NULL;	/* Buffer which holds the current output line */
23static char *attr = NULL;	/* Extension of linebuf to hold attributes */
24public int size_linebuf = 0;	/* Size of line buffer (and attr buffer) */
25
26static int cshift;		/* Current left-shift of output line buffer */
27public int hshift;		/* Desired left-shift of output line buffer */
28public int tabstops[TABSTOP_MAX] = { 0 }; /* Custom tabstops */
29public int ntabstops = 1;	/* Number of tabstops */
30public int tabdefault = 8;	/* Default repeated tabstops */
31
32static int curr;		/* Index into linebuf */
33static int column;		/* Printable length, accounting for
34				   backspaces, etc. */
35static int overstrike;		/* Next char should overstrike previous char */
36static int last_overstrike = AT_NORMAL;
37static int is_null_line;	/* There is no current line */
38static int lmargin;		/* Left margin */
39static int line_matches;	/* Number of search matches in this line */
40static char pendc;
41static POSITION pendpos;
42static char *end_ansi_chars;
43static char *mid_ansi_chars;
44
45static int attr_swidth();
46static int attr_ewidth();
47static int do_append();
48
49extern int sigs;
50extern int bs_mode;
51extern int linenums;
52extern int ctldisp;
53extern int twiddle;
54extern int binattr;
55extern int status_col;
56extern int auto_wrap, ignaw;
57extern int bo_s_width, bo_e_width;
58extern int ul_s_width, ul_e_width;
59extern int bl_s_width, bl_e_width;
60extern int so_s_width, so_e_width;
61extern int sc_width, sc_height;
62extern int utf_mode;
63extern int oldbot;
64extern POSITION start_attnpos;
65extern POSITION end_attnpos;
66
67static char mbc_buf[MAX_UTF_CHAR_LEN];
68static int mbc_buf_len = 0;
69static int mbc_buf_index = 0;
70static POSITION mbc_pos;
71
72/*
73 * Initialize from environment variables.
74 */
75	public void
76init_line()
77{
78	end_ansi_chars = lgetenv("LESSANSIENDCHARS");
79	if (end_ansi_chars == NULL || *end_ansi_chars == '\0')
80		end_ansi_chars = "m";
81
82	mid_ansi_chars = lgetenv("LESSANSIMIDCHARS");
83	if (mid_ansi_chars == NULL || *mid_ansi_chars == '\0')
84		mid_ansi_chars = "0123456789;[?!\"'#%()*+ ";
85
86	linebuf = (char *) ecalloc(LINEBUF_SIZE, sizeof(char));
87	attr = (char *) ecalloc(LINEBUF_SIZE, sizeof(char));
88	size_linebuf = LINEBUF_SIZE;
89}
90
91/*
92 * Expand the line buffer.
93 */
94	static int
95expand_linebuf()
96{
97	/* Double the size of the line buffer. */
98	int new_size = size_linebuf * 2;
99
100	/* Just realloc to expand the buffer, if we can. */
101#if HAVE_REALLOC
102	char *new_buf = (char *) realloc(linebuf, new_size);
103	char *new_attr = (char *) realloc(attr, new_size);
104#else
105	char *new_buf = (char *) calloc(new_size, sizeof(char));
106	char *new_attr = (char *) calloc(new_size, sizeof(char));
107#endif
108	if (new_buf == NULL || new_attr == NULL)
109	{
110		if (new_attr != NULL)
111			free(new_attr);
112		if (new_buf != NULL)
113			free(new_buf);
114		return 1;
115	}
116#if HAVE_REALLOC
117	/*
118	 * We realloc'd the buffers; they already have the old contents.
119	 */
120	#if 0
121	memset(new_buf + size_linebuf, 0, new_size - size_linebuf);
122	memset(new_attr + size_linebuf, 0, new_size - size_linebuf);
123	#endif
124#else
125	/*
126	 * We just calloc'd the buffers; copy the old contents.
127	 */
128	memcpy(new_buf, linebuf, size_linebuf * sizeof(char));
129	memcpy(new_attr, attr, size_linebuf * sizeof(char));
130	free(attr);
131	free(linebuf);
132#endif
133	linebuf = new_buf;
134	attr = new_attr;
135	size_linebuf = new_size;
136	return 0;
137}
138
139/*
140 * Is a character ASCII?
141 */
142	public int
143is_ascii_char(ch)
144	LWCHAR ch;
145{
146	return (ch <= 0x7F);
147}
148
149/*
150 * Rewind the line buffer.
151 */
152	public void
153prewind()
154{
155	curr = 0;
156	column = 0;
157	cshift = 0;
158	overstrike = 0;
159	last_overstrike = AT_NORMAL;
160	mbc_buf_len = 0;
161	is_null_line = 0;
162	pendc = '\0';
163	lmargin = 0;
164	if (status_col)
165		lmargin += 1;
166#if HILITE_SEARCH
167	line_matches = 0;
168#endif
169}
170
171/*
172 * Insert the line number (of the given position) into the line buffer.
173 */
174	public void
175plinenum(pos)
176	POSITION pos;
177{
178	register LINENUM linenum = 0;
179	register int i;
180
181	if (linenums == OPT_ONPLUS)
182	{
183		/*
184		 * Get the line number and put it in the current line.
185		 * {{ Note: since find_linenum calls forw_raw_line,
186		 *    it may seek in the input file, requiring the caller
187		 *    of plinenum to re-seek if necessary. }}
188		 * {{ Since forw_raw_line modifies linebuf, we must
189		 *    do this first, before storing anything in linebuf. }}
190		 */
191		linenum = find_linenum(pos);
192	}
193
194	/*
195	 * Display a status column if the -J option is set.
196	 */
197	if (status_col)
198	{
199		linebuf[curr] = ' ';
200		if (start_attnpos != NULL_POSITION &&
201		    pos >= start_attnpos && pos < end_attnpos)
202			attr[curr] = AT_NORMAL|AT_HILITE;
203		else
204			attr[curr] = AT_NORMAL;
205		curr++;
206		column++;
207	}
208	/*
209	 * Display the line number at the start of each line
210	 * if the -N option is set.
211	 */
212	if (linenums == OPT_ONPLUS)
213	{
214		char buf[INT_STRLEN_BOUND(pos) + 2];
215		int n;
216
217		linenumtoa(linenum, buf);
218		n = strlen(buf);
219		if (n < MIN_LINENUM_WIDTH)
220			n = MIN_LINENUM_WIDTH;
221		sprintf(linebuf+curr, "%*s ", n, buf);
222		n++;  /* One space after the line number. */
223		for (i = 0; i < n; i++)
224			attr[curr+i] = AT_NORMAL;
225		curr += n;
226		column += n;
227		lmargin += n;
228	}
229
230	/*
231	 * Append enough spaces to bring us to the lmargin.
232	 */
233	while (column < lmargin)
234	{
235		linebuf[curr] = ' ';
236		attr[curr++] = AT_NORMAL;
237		column++;
238	}
239}
240
241/*
242 * Shift the input line left.
243 * This means discarding N printable chars at the start of the buffer.
244 */
245	static void
246pshift(shift)
247	int shift;
248{
249	LWCHAR prev_ch = 0;
250	unsigned char c;
251	int shifted = 0;
252	int to;
253	int from;
254	int len;
255	int width;
256	int prev_attr;
257	int next_attr;
258
259	if (shift > column - lmargin)
260		shift = column - lmargin;
261	if (shift > curr - lmargin)
262		shift = curr - lmargin;
263
264	to = from = lmargin;
265	/*
266	 * We keep on going when shifted == shift
267	 * to get all combining chars.
268	 */
269	while (shifted <= shift && from < curr)
270	{
271		c = linebuf[from];
272		if (ctldisp == OPT_ONPLUS && IS_CSI_START(c))
273		{
274			/* Keep cumulative effect.  */
275			linebuf[to] = c;
276			attr[to++] = attr[from++];
277			while (from < curr && linebuf[from])
278			{
279				linebuf[to] = linebuf[from];
280				attr[to++] = attr[from];
281				if (!is_ansi_middle(linebuf[from++]))
282					break;
283			}
284			continue;
285		}
286
287		width = 0;
288
289		if (!IS_ASCII_OCTET(c) && utf_mode)
290		{
291			/* Assumes well-formedness validation already done.  */
292			LWCHAR ch;
293
294			len = utf_len(c);
295			if (from + len > curr)
296				break;
297			ch = get_wchar(linebuf + from);
298			if (!is_composing_char(ch) && !is_combining_char(prev_ch, ch))
299				width = is_wide_char(ch) ? 2 : 1;
300			prev_ch = ch;
301		} else
302		{
303			len = 1;
304			if (c == '\b')
305				/* XXX - Incorrect if several '\b' in a row.  */
306				width = (utf_mode && is_wide_char(prev_ch)) ? -2 : -1;
307			else if (!control_char(c))
308				width = 1;
309			prev_ch = 0;
310		}
311
312		if (width == 2 && shift - shifted == 1) {
313			/* Should never happen when called by pshift_all().  */
314			attr[to] = attr[from];
315			/*
316			 * Assume a wide_char will never be the first half of a
317			 * combining_char pair, so reset prev_ch in case we're
318			 * followed by a '\b'.
319			 */
320			prev_ch = linebuf[to++] = ' ';
321			from += len;
322			shifted++;
323			continue;
324		}
325
326		/* Adjust width for magic cookies. */
327		prev_attr = (to > 0) ? attr[to-1] : AT_NORMAL;
328		next_attr = (from + len < curr) ? attr[from + len] : prev_attr;
329		if (!is_at_equiv(attr[from], prev_attr) &&
330			!is_at_equiv(attr[from], next_attr))
331		{
332			width += attr_swidth(attr[from]);
333			if (from + len < curr)
334				width += attr_ewidth(attr[from]);
335			if (is_at_equiv(prev_attr, next_attr))
336			{
337				width += attr_ewidth(prev_attr);
338				if (from + len < curr)
339					width += attr_swidth(next_attr);
340			}
341		}
342
343		if (shift - shifted < width)
344			break;
345		from += len;
346		shifted += width;
347		if (shifted < 0)
348			shifted = 0;
349	}
350	while (from < curr)
351	{
352		linebuf[to] = linebuf[from];
353		attr[to++] = attr[from++];
354	}
355	curr = to;
356	column -= shifted;
357	cshift += shifted;
358}
359
360/*
361 *
362 */
363	public void
364pshift_all()
365{
366	pshift(column);
367}
368
369/*
370 * Return the printing width of the start (enter) sequence
371 * for a given character attribute.
372 */
373	static int
374attr_swidth(a)
375	int a;
376{
377	int w = 0;
378
379	a = apply_at_specials(a);
380
381	if (a & AT_UNDERLINE)
382		w += ul_s_width;
383	if (a & AT_BOLD)
384		w += bo_s_width;
385	if (a & AT_BLINK)
386		w += bl_s_width;
387	if (a & AT_STANDOUT)
388		w += so_s_width;
389
390	return w;
391}
392
393/*
394 * Return the printing width of the end (exit) sequence
395 * for a given character attribute.
396 */
397	static int
398attr_ewidth(a)
399	int a;
400{
401	int w = 0;
402
403	a = apply_at_specials(a);
404
405	if (a & AT_UNDERLINE)
406		w += ul_e_width;
407	if (a & AT_BOLD)
408		w += bo_e_width;
409	if (a & AT_BLINK)
410		w += bl_e_width;
411	if (a & AT_STANDOUT)
412		w += so_e_width;
413
414	return w;
415}
416
417/*
418 * Return the printing width of a given character and attribute,
419 * if the character were added to the current position in the line buffer.
420 * Adding a character with a given attribute may cause an enter or exit
421 * attribute sequence to be inserted, so this must be taken into account.
422 */
423	static int
424pwidth(ch, a, prev_ch)
425	LWCHAR ch;
426	int a;
427	LWCHAR prev_ch;
428{
429	int w;
430
431	if (ch == '\b')
432		/*
433		 * Backspace moves backwards one or two positions.
434		 * XXX - Incorrect if several '\b' in a row.
435		 */
436		return (utf_mode && is_wide_char(prev_ch)) ? -2 : -1;
437
438	if (!utf_mode || is_ascii_char(ch))
439	{
440		if (control_char((char)ch))
441		{
442			/*
443			 * Control characters do unpredictable things,
444			 * so we don't even try to guess; say it doesn't move.
445			 * This can only happen if the -r flag is in effect.
446			 */
447			return (0);
448		}
449	} else
450	{
451		if (is_composing_char(ch) || is_combining_char(prev_ch, ch))
452		{
453			/*
454			 * Composing and combining chars take up no space.
455			 *
456			 * Some terminals, upon failure to compose a
457			 * composing character with the character(s) that
458			 * precede(s) it will actually take up one column
459			 * for the composing character; there isn't much
460			 * we could do short of testing the (complex)
461			 * composition process ourselves and printing
462			 * a binary representation when it fails.
463			 */
464			return (0);
465		}
466	}
467
468	/*
469	 * Other characters take one or two columns,
470	 * plus the width of any attribute enter/exit sequence.
471	 */
472	w = 1;
473	if (is_wide_char(ch))
474		w++;
475	if (curr > 0 && !is_at_equiv(attr[curr-1], a))
476		w += attr_ewidth(attr[curr-1]);
477	if ((apply_at_specials(a) != AT_NORMAL) &&
478	    (curr == 0 || !is_at_equiv(attr[curr-1], a)))
479		w += attr_swidth(a);
480	return (w);
481}
482
483/*
484 * Delete to the previous base character in the line buffer.
485 * Return 1 if one is found.
486 */
487	static int
488backc()
489{
490	LWCHAR prev_ch;
491	char *p = linebuf + curr;
492	LWCHAR ch = step_char(&p, -1, linebuf + lmargin);
493	int width;
494
495	/* This assumes that there is no '\b' in linebuf.  */
496	while (   curr > lmargin
497	       && column > lmargin
498	       && (!(attr[curr - 1] & (AT_ANSI|AT_BINARY))))
499	{
500		curr = p - linebuf;
501		prev_ch = step_char(&p, -1, linebuf + lmargin);
502		width = pwidth(ch, attr[curr], prev_ch);
503		column -= width;
504		if (width > 0)
505			return 1;
506		ch = prev_ch;
507	}
508
509	return 0;
510}
511
512/*
513 * Are we currently within a recognized ANSI escape sequence?
514 */
515	static int
516in_ansi_esc_seq()
517{
518	char *p;
519
520	/*
521	 * Search backwards for either an ESC (which means we ARE in a seq);
522	 * or an end char (which means we're NOT in a seq).
523	 */
524	for (p = &linebuf[curr];  p > linebuf; )
525	{
526		LWCHAR ch = step_char(&p, -1, linebuf);
527		if (IS_CSI_START(ch))
528			return (1);
529		if (!is_ansi_middle(ch))
530			return (0);
531	}
532	return (0);
533}
534
535/*
536 * Is a character the end of an ANSI escape sequence?
537 */
538	public int
539is_ansi_end(ch)
540	LWCHAR ch;
541{
542	if (!is_ascii_char(ch))
543		return (0);
544	return (strchr(end_ansi_chars, (char) ch) != NULL);
545}
546
547/*
548 *
549 */
550	public int
551is_ansi_middle(ch)
552	LWCHAR ch;
553{
554	if (!is_ascii_char(ch))
555		return (0);
556	if (is_ansi_end(ch))
557		return (0);
558	return (strchr(mid_ansi_chars, (char) ch) != NULL);
559}
560
561/*
562 * Append a character and attribute to the line buffer.
563 */
564#define	STORE_CHAR(ch,a,rep,pos) \
565	do { \
566		if (store_char((ch),(a),(rep),(pos))) return (1); \
567	} while (0)
568
569	static int
570store_char(ch, a, rep, pos)
571	LWCHAR ch;
572	int a;
573	char *rep;
574	POSITION pos;
575{
576	int w;
577	int replen;
578	char cs;
579
580	w = (a & (AT_UNDERLINE|AT_BOLD));	/* Pre-use w.  */
581	if (w != AT_NORMAL)
582		last_overstrike = w;
583
584#if HILITE_SEARCH
585	{
586		int matches;
587		if (is_hilited(pos, pos+1, 0, &matches))
588		{
589			/*
590			 * This character should be highlighted.
591			 * Override the attribute passed in.
592			 */
593			if (a != AT_ANSI)
594				a |= AT_HILITE;
595		}
596		line_matches += matches;
597	}
598#endif
599
600	if (ctldisp == OPT_ONPLUS && in_ansi_esc_seq())
601	{
602		if (!is_ansi_end(ch) && !is_ansi_middle(ch)) {
603			/* Remove whole unrecognized sequence.  */
604			while (curr) {
605				--curr;
606				if (IS_CSI_START(linebuf[curr]))
607					break;
608			}
609			return 0;
610		}
611		a = AT_ANSI;	/* Will force re-AT_'ing around it.  */
612		w = 0;
613	}
614	else if (ctldisp == OPT_ONPLUS && IS_CSI_START(ch))
615	{
616		a = AT_ANSI;	/* Will force re-AT_'ing around it.  */
617		w = 0;
618	}
619	else
620	{
621		char *p = &linebuf[curr];
622		LWCHAR prev_ch = step_char(&p, -1, linebuf);
623		w = pwidth(ch, a, prev_ch);
624	}
625
626	if (ctldisp != OPT_ON && column + w + attr_ewidth(a) > sc_width)
627		/*
628		 * Won't fit on screen.
629		 */
630		return (1);
631
632	if (rep == NULL)
633	{
634		cs = (char) ch;
635		rep = &cs;
636		replen = 1;
637	} else
638	{
639		replen = utf_len(rep[0]);
640	}
641	if (curr + replen >= size_linebuf-6)
642	{
643		/*
644		 * Won't fit in line buffer.
645		 * Try to expand it.
646		 */
647		if (expand_linebuf())
648			return (1);
649	}
650
651	while (replen-- > 0)
652	{
653		linebuf[curr] = *rep++;
654		attr[curr] = a;
655		curr++;
656	}
657	column += w;
658	return (0);
659}
660
661/*
662 * Append a tab to the line buffer.
663 * Store spaces to represent the tab.
664 */
665#define	STORE_TAB(a,pos) \
666	do { if (store_tab((a),(pos))) return (1); } while (0)
667
668	static int
669store_tab(attr, pos)
670	int attr;
671	POSITION pos;
672{
673	int to_tab = column + cshift - lmargin;
674	int i;
675
676	if (ntabstops < 2 || to_tab >= tabstops[ntabstops-1])
677		to_tab = tabdefault -
678		     ((to_tab - tabstops[ntabstops-1]) % tabdefault);
679	else
680	{
681		for (i = ntabstops - 2;  i >= 0;  i--)
682			if (to_tab >= tabstops[i])
683				break;
684		to_tab = tabstops[i+1] - to_tab;
685	}
686
687	if (column + to_tab - 1 + pwidth(' ', attr, 0) + attr_ewidth(attr) > sc_width)
688		return 1;
689
690	do {
691		STORE_CHAR(' ', attr, " ", pos);
692	} while (--to_tab > 0);
693	return 0;
694}
695
696#define STORE_PRCHAR(c, pos) \
697	do { if (store_prchar((c), (pos))) return 1; } while (0)
698
699	static int
700store_prchar(c, pos)
701	char c;
702	POSITION pos;
703{
704	char *s;
705
706	/*
707	 * Convert to printable representation.
708	 */
709	s = prchar(c);
710
711	/*
712	 * Make sure we can get the entire representation
713	 * of the character on this line.
714	 */
715	if (column + (int) strlen(s) - 1 +
716            pwidth(' ', binattr, 0) + attr_ewidth(binattr) > sc_width)
717		return 1;
718
719	for ( ;  *s != 0;  s++)
720		STORE_CHAR(*s, AT_BINARY, NULL, pos);
721
722	return 0;
723}
724
725	static int
726flush_mbc_buf(pos)
727	POSITION pos;
728{
729	int i;
730
731	for (i = 0; i < mbc_buf_index; i++)
732		if (store_prchar(mbc_buf[i], pos))
733			return mbc_buf_index - i;
734
735	return 0;
736}
737
738/*
739 * Append a character to the line buffer.
740 * Expand tabs into spaces, handle underlining, boldfacing, etc.
741 * Returns 0 if ok, 1 if couldn't fit in buffer.
742 */
743	public int
744pappend(c, pos)
745	char c;
746	POSITION pos;
747{
748	int r;
749
750	if (pendc)
751	{
752		if (do_append(pendc, NULL, pendpos))
753			/*
754			 * Oops.  We've probably lost the char which
755			 * was in pendc, since caller won't back up.
756			 */
757			return (1);
758		pendc = '\0';
759	}
760
761	if (c == '\r' && bs_mode == BS_SPECIAL)
762	{
763		if (mbc_buf_len > 0)  /* utf_mode must be on. */
764		{
765			/* Flush incomplete (truncated) sequence. */
766			r = flush_mbc_buf(mbc_pos);
767			mbc_buf_index = r + 1;
768			mbc_buf_len = 0;
769			if (r)
770				return (mbc_buf_index);
771		}
772
773		/*
774		 * Don't put the CR into the buffer until we see
775		 * the next char.  If the next char is a newline,
776		 * discard the CR.
777		 */
778		pendc = c;
779		pendpos = pos;
780		return (0);
781	}
782
783	if (!utf_mode)
784	{
785		r = do_append((LWCHAR) c, NULL, pos);
786	} else
787	{
788		/* Perform strict validation in all possible cases. */
789		if (mbc_buf_len == 0)
790		{
791		retry:
792			mbc_buf_index = 1;
793			*mbc_buf = c;
794			if (IS_ASCII_OCTET(c))
795				r = do_append((LWCHAR) c, NULL, pos);
796			else if (IS_UTF8_LEAD(c))
797			{
798				mbc_buf_len = utf_len(c);
799				mbc_pos = pos;
800				return (0);
801			} else
802				/* UTF8_INVALID or stray UTF8_TRAIL */
803				r = flush_mbc_buf(pos);
804		} else if (IS_UTF8_TRAIL(c))
805		{
806			mbc_buf[mbc_buf_index++] = c;
807			if (mbc_buf_index < mbc_buf_len)
808				return (0);
809			if (is_utf8_well_formed(mbc_buf))
810				r = do_append(get_wchar(mbc_buf), mbc_buf, mbc_pos);
811			else
812				/* Complete, but not shortest form, sequence. */
813				mbc_buf_index = r = flush_mbc_buf(mbc_pos);
814			mbc_buf_len = 0;
815		} else
816		{
817			/* Flush incomplete (truncated) sequence.  */
818			r = flush_mbc_buf(mbc_pos);
819			mbc_buf_index = r + 1;
820			mbc_buf_len = 0;
821			/* Handle new char.  */
822			if (!r)
823				goto retry;
824 		}
825	}
826
827	/*
828	 * If we need to shift the line, do it.
829	 * But wait until we get to at least the middle of the screen,
830	 * so shifting it doesn't affect the chars we're currently
831	 * pappending.  (Bold & underline can get messed up otherwise.)
832	 */
833	if (cshift < hshift && column > sc_width / 2)
834	{
835		linebuf[curr] = '\0';
836		pshift(hshift - cshift);
837	}
838	if (r)
839	{
840		/* How many chars should caller back up? */
841		r = (!utf_mode) ? 1 : mbc_buf_index;
842	}
843	return (r);
844}
845
846	static int
847do_append(ch, rep, pos)
848	LWCHAR ch;
849	char *rep;
850	POSITION pos;
851{
852	register int a;
853	LWCHAR prev_ch;
854
855	a = AT_NORMAL;
856
857	if (ch == '\b')
858	{
859		if (bs_mode == BS_CONTROL)
860			goto do_control_char;
861
862		/*
863		 * A better test is needed here so we don't
864		 * backspace over part of the printed
865		 * representation of a binary character.
866		 */
867		if (   curr <= lmargin
868		    || column <= lmargin
869		    || (attr[curr - 1] & (AT_ANSI|AT_BINARY)))
870			STORE_PRCHAR('\b', pos);
871		else if (bs_mode == BS_NORMAL)
872			STORE_CHAR(ch, AT_NORMAL, NULL, pos);
873		else if (bs_mode == BS_SPECIAL)
874			overstrike = backc();
875
876		return 0;
877	}
878
879	if (overstrike > 0)
880	{
881		/*
882		 * Overstrike the character at the current position
883		 * in the line buffer.  This will cause either
884		 * underline (if a "_" is overstruck),
885		 * bold (if an identical character is overstruck),
886		 * or just deletion of the character in the buffer.
887		 */
888		overstrike = utf_mode ? -1 : 0;
889		/* To be correct, this must be a base character.  */
890		prev_ch = get_wchar(linebuf + curr);
891		a = attr[curr];
892		if (ch == prev_ch)
893		{
894			/*
895			 * Overstriking a char with itself means make it bold.
896			 * But overstriking an underscore with itself is
897			 * ambiguous.  It could mean make it bold, or
898			 * it could mean make it underlined.
899			 * Use the previous overstrike to resolve it.
900			 */
901			if (ch == '_')
902			{
903				if ((a & (AT_BOLD|AT_UNDERLINE)) != AT_NORMAL)
904					a |= (AT_BOLD|AT_UNDERLINE);
905				else if (last_overstrike != AT_NORMAL)
906					a |= last_overstrike;
907				else
908					a |= AT_BOLD;
909			} else
910				a |= AT_BOLD;
911		} else if (ch == '_')
912		{
913			a |= AT_UNDERLINE;
914			ch = prev_ch;
915			rep = linebuf + curr;
916		} else if (prev_ch == '_')
917		{
918			a |= AT_UNDERLINE;
919		}
920		/* Else we replace prev_ch, but we keep its attributes.  */
921	} else if (overstrike < 0)
922	{
923		if (   is_composing_char(ch)
924		    || is_combining_char(get_wchar(linebuf + curr), ch))
925			/* Continuation of the same overstrike.  */
926			a = last_overstrike;
927		else
928			overstrike = 0;
929	}
930
931	if (ch == '\t')
932	{
933		/*
934		 * Expand a tab into spaces.
935		 */
936		switch (bs_mode)
937		{
938		case BS_CONTROL:
939			goto do_control_char;
940		case BS_NORMAL:
941		case BS_SPECIAL:
942			STORE_TAB(a, pos);
943			break;
944		}
945	} else if ((!utf_mode || is_ascii_char(ch)) && control_char((char)ch))
946	{
947	do_control_char:
948		if (ctldisp == OPT_ON || (ctldisp == OPT_ONPLUS && IS_CSI_START(ch)))
949		{
950			/*
951			 * Output as a normal character.
952			 */
953			STORE_CHAR(ch, AT_NORMAL, rep, pos);
954		} else
955		{
956			STORE_PRCHAR((char) ch, pos);
957		}
958	} else if (utf_mode && ctldisp != OPT_ON && is_ubin_char(ch))
959	{
960		char *s;
961
962		s = prutfchar(ch);
963
964		if (column + (int) strlen(s) - 1 +
965		    pwidth(' ', binattr, 0) + attr_ewidth(binattr) > sc_width)
966			return (1);
967
968		for ( ;  *s != 0;  s++)
969			STORE_CHAR(*s, AT_BINARY, NULL, pos);
970 	} else
971	{
972		STORE_CHAR(ch, a, rep, pos);
973	}
974 	return (0);
975}
976
977/*
978 *
979 */
980	public int
981pflushmbc()
982{
983	int r = 0;
984
985	if (mbc_buf_len > 0)
986	{
987		/* Flush incomplete (truncated) sequence.  */
988		r = flush_mbc_buf(mbc_pos);
989		mbc_buf_len = 0;
990	}
991	return r;
992}
993
994/*
995 * Terminate the line in the line buffer.
996 */
997	public void
998pdone(endline)
999	int endline;
1000{
1001	int nl;
1002
1003	(void) pflushmbc();
1004
1005	if (pendc && (pendc != '\r' || !endline))
1006		/*
1007		 * If we had a pending character, put it in the buffer.
1008		 * But discard a pending CR if we are at end of line
1009		 * (that is, discard the CR in a CR/LF sequence).
1010		 */
1011		(void) do_append(pendc, NULL, pendpos);
1012
1013	/*
1014	 * Make sure we've shifted the line, if we need to.
1015	 */
1016	if (cshift < hshift)
1017		pshift(hshift - cshift);
1018
1019	if (ctldisp == OPT_ONPLUS && is_ansi_end('m'))
1020	{
1021		/* Switch to normal attribute at end of line. */
1022		char *p = "\033[m";
1023		for ( ;  *p != '\0';  p++)
1024		{
1025			linebuf[curr] = *p;
1026			attr[curr++] = AT_ANSI;
1027		}
1028	}
1029
1030	/*
1031	 * Add a newline if necessary,
1032	 * and append a '\0' to the end of the line.
1033	 * We output a newline if we're not at the right edge of the screen,
1034	 * or if the terminal doesn't auto wrap,
1035	 * or if this is really the end of the line AND the terminal ignores
1036	 * a newline at the right edge.
1037	 * (In the last case we don't want to output a newline if the terminal
1038	 * doesn't ignore it since that would produce an extra blank line.
1039	 * But we do want to output a newline if the terminal ignores it in case
1040	 * the next line is blank.  In that case the single newline output for
1041	 * that blank line would be ignored!)
1042	 */
1043	if (!oldbot)
1044		nl = (column < sc_width || !auto_wrap || (endline && ignaw) || ctldisp == OPT_ON);
1045	else
1046		nl = (column < sc_width || !auto_wrap || ignaw || ctldisp == OPT_ON);
1047	if (nl)
1048	{
1049		linebuf[curr] = '\n';
1050		attr[curr] = AT_NORMAL;
1051		curr++;
1052	}
1053	else if (ignaw && !auto_wrap && column >= sc_width)
1054	{
1055		/*
1056		 * Big horrible kludge.
1057		 * No-wrap terminals are too hard to deal with when they get in
1058		 * the state where a full screen width of characters have been
1059		 * output but the cursor is sitting on the right edge instead
1060		 * of at the start of the next line.
1061		 * So after we output a full line, we output an extra
1062		 * space and backspace to force the cursor to the
1063		 * beginning of the next line, like a sane terminal.
1064		 */
1065		linebuf[curr] = ' ';
1066		attr[curr++] = AT_NORMAL;
1067		linebuf[curr] = '\b';
1068		attr[curr++] = AT_NORMAL;
1069	}
1070	linebuf[curr] = '\0';
1071	attr[curr] = AT_NORMAL;
1072
1073#if HILITE_SEARCH
1074	if (status_col && line_matches > 0)
1075	{
1076		linebuf[0] = '*';
1077		attr[0] = AT_NORMAL|AT_HILITE;
1078	}
1079#endif
1080}
1081
1082/*
1083 * Get a character from the current line.
1084 * Return the character as the function return value,
1085 * and the character attribute in *ap.
1086 */
1087	public int
1088gline(i, ap)
1089	register int i;
1090	register int *ap;
1091{
1092	if (is_null_line)
1093	{
1094		/*
1095		 * If there is no current line, we pretend the line is
1096		 * either "~" or "", depending on the "twiddle" flag.
1097		 */
1098		if (twiddle)
1099		{
1100			if (i == 0)
1101			{
1102				*ap = AT_BOLD;
1103				return '~';
1104			}
1105			--i;
1106		}
1107		/* Make sure we're back to AT_NORMAL before the '\n'.  */
1108		*ap = AT_NORMAL;
1109		return i ? '\0' : '\n';
1110	}
1111
1112	*ap = attr[i];
1113	return (linebuf[i] & 0xFF);
1114}
1115
1116/*
1117 * Indicate that there is no current line.
1118 */
1119	public void
1120null_line()
1121{
1122	is_null_line = 1;
1123	cshift = 0;
1124}
1125
1126/*
1127 * Analogous to forw_line(), but deals with "raw lines":
1128 * lines which are not split for screen width.
1129 * {{ This is supposed to be more efficient than forw_line(). }}
1130 */
1131	public POSITION
1132forw_raw_line(curr_pos, linep, line_lenp)
1133	POSITION curr_pos;
1134	char **linep;
1135	int *line_lenp;
1136{
1137	register int n;
1138	register int c;
1139	POSITION new_pos;
1140
1141	if (curr_pos == NULL_POSITION || ch_seek(curr_pos) ||
1142		(c = ch_forw_get()) == EOI)
1143		return (NULL_POSITION);
1144
1145	n = 0;
1146	for (;;)
1147	{
1148		if (c == '\n' || c == EOI || ABORT_SIGS())
1149		{
1150			new_pos = ch_tell();
1151			break;
1152		}
1153		if (n >= size_linebuf-1)
1154		{
1155			if (expand_linebuf())
1156			{
1157				/*
1158				 * Overflowed the input buffer.
1159				 * Pretend the line ended here.
1160				 */
1161				new_pos = ch_tell() - 1;
1162				break;
1163			}
1164		}
1165		linebuf[n++] = c;
1166		c = ch_forw_get();
1167	}
1168	linebuf[n] = '\0';
1169	if (linep != NULL)
1170		*linep = linebuf;
1171	if (line_lenp != NULL)
1172		*line_lenp = n;
1173	return (new_pos);
1174}
1175
1176/*
1177 * Analogous to back_line(), but deals with "raw lines".
1178 * {{ This is supposed to be more efficient than back_line(). }}
1179 */
1180	public POSITION
1181back_raw_line(curr_pos, linep, line_lenp)
1182	POSITION curr_pos;
1183	char **linep;
1184	int *line_lenp;
1185{
1186	register int n;
1187	register int c;
1188	POSITION new_pos;
1189
1190	if (curr_pos == NULL_POSITION || curr_pos <= ch_zero() ||
1191		ch_seek(curr_pos-1))
1192		return (NULL_POSITION);
1193
1194	n = size_linebuf;
1195	linebuf[--n] = '\0';
1196	for (;;)
1197	{
1198		c = ch_back_get();
1199		if (c == '\n' || ABORT_SIGS())
1200		{
1201			/*
1202			 * This is the newline ending the previous line.
1203			 * We have hit the beginning of the line.
1204			 */
1205			new_pos = ch_tell() + 1;
1206			break;
1207		}
1208		if (c == EOI)
1209		{
1210			/*
1211			 * We have hit the beginning of the file.
1212			 * This must be the first line in the file.
1213			 * This must, of course, be the beginning of the line.
1214			 */
1215			new_pos = ch_zero();
1216			break;
1217		}
1218		if (n <= 0)
1219		{
1220			int old_size_linebuf = size_linebuf;
1221			char *fm;
1222			char *to;
1223			if (expand_linebuf())
1224			{
1225				/*
1226				 * Overflowed the input buffer.
1227				 * Pretend the line ended here.
1228				 */
1229				new_pos = ch_tell() + 1;
1230				break;
1231			}
1232			/*
1233			 * Shift the data to the end of the new linebuf.
1234			 */
1235			for (fm = linebuf + old_size_linebuf - 1,
1236			      to = linebuf + size_linebuf - 1;
1237			     fm >= linebuf;  fm--, to--)
1238				*to = *fm;
1239			n = size_linebuf - old_size_linebuf;
1240		}
1241		linebuf[--n] = c;
1242	}
1243	if (linep != NULL)
1244		*linep = &linebuf[n];
1245	if (line_lenp != NULL)
1246		*line_lenp = size_linebuf - 1 - n;
1247	return (new_pos);
1248}
1249