GCC Code Coverage Report
Directory: ./ Exec Total Coverage
File: usr.bin/tmux/screen-write.c Lines: 0 791 0.0 %
Date: 2017-11-07 Branches: 0 440 0.0 %

Line Branch Exec Source
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/* $OpenBSD: screen-write.c,v 1.130 2017/08/09 11:43:45 nicm Exp $ */
2
3
/*
4
 * Copyright (c) 2007 Nicholas Marriott <nicholas.marriott@gmail.com>
5
 *
6
 * Permission to use, copy, modify, and distribute this software for any
7
 * purpose with or without fee is hereby granted, provided that the above
8
 * copyright notice and this permission notice appear in all copies.
9
 *
10
 * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
11
 * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
12
 * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
13
 * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
14
 * WHATSOEVER RESULTING FROM LOSS OF MIND, USE, DATA OR PROFITS, WHETHER
15
 * IN AN ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING
16
 * OUT OF OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
17
 */
18
19
#include <sys/types.h>
20
21
#include <stdlib.h>
22
#include <string.h>
23
24
#include "tmux.h"
25
26
static void	screen_write_initctx(struct screen_write_ctx *,
27
		    struct tty_ctx *);
28
static void	screen_write_collect_clear(struct screen_write_ctx *, u_int,
29
		    u_int);
30
static void	screen_write_collect_scroll(struct screen_write_ctx *);
31
static void	screen_write_collect_flush(struct screen_write_ctx *, int);
32
33
static int	screen_write_overwrite(struct screen_write_ctx *,
34
		    struct grid_cell *, u_int);
35
static const struct grid_cell *screen_write_combine(struct screen_write_ctx *,
36
		    const struct utf8_data *, u_int *);
37
38
static const struct grid_cell screen_write_pad_cell = {
39
	GRID_FLAG_PADDING, 0, 8, 8, { { 0 }, 0, 0, 0 }
40
};
41
42
struct screen_write_collect_item {
43
	u_int			 x;
44
	int			 wrapped;
45
46
	u_int			 used;
47
	char			 data[256];
48
49
	struct grid_cell	 gc;
50
51
	TAILQ_ENTRY(screen_write_collect_item) entry;
52
};
53
struct screen_write_collect_line {
54
	TAILQ_HEAD(, screen_write_collect_item) items;
55
};
56
57
/* Initialize writing with a window. */
58
void
59
screen_write_start(struct screen_write_ctx *ctx, struct window_pane *wp,
60
    struct screen *s)
61
{
62
	char	tmp[16];
63
	u_int	y;
64
65
	memset(ctx, 0, sizeof *ctx);
66
67
	ctx->wp = wp;
68
	if (wp != NULL && s == NULL)
69
		ctx->s = wp->screen;
70
	else
71
		ctx->s = s;
72
73
	ctx->list = xcalloc(screen_size_y(ctx->s), sizeof *ctx->list);
74
	for (y = 0; y < screen_size_y(ctx->s); y++)
75
		TAILQ_INIT(&ctx->list[y].items);
76
	ctx->item = xcalloc(1, sizeof *ctx->item);
77
78
	ctx->scrolled = 0;
79
	ctx->bg = 8;
80
81
	if (wp != NULL)
82
		snprintf(tmp, sizeof tmp, "pane %%%u", wp->id);
83
	log_debug("%s: size %ux%u, %s", __func__, screen_size_x(ctx->s),
84
	    screen_size_y(ctx->s), wp == NULL ? "no pane" : tmp);
85
}
86
87
/* Finish writing. */
88
void
89
screen_write_stop(struct screen_write_ctx *ctx)
90
{
91
	screen_write_collect_end(ctx);
92
	screen_write_collect_flush(ctx, 0);
93
94
	log_debug("%s: %u cells (%u written, %u skipped)", __func__,
95
	    ctx->cells, ctx->written, ctx->skipped);
96
97
	free(ctx->item);
98
	free(ctx->list); /* flush will have emptied */
99
}
100
101
/* Reset screen state. */
102
void
103
screen_write_reset(struct screen_write_ctx *ctx)
104
{
105
	struct screen	*s = ctx->s;
106
107
	screen_reset_tabs(s);
108
	screen_write_scrollregion(ctx, 0, screen_size_y(s) - 1);
109
110
	s->mode &= ~(MODE_INSERT|MODE_KCURSOR|MODE_KKEYPAD|MODE_FOCUSON);
111
	s->mode &= ~(ALL_MOUSE_MODES|MODE_MOUSE_UTF8|MODE_MOUSE_SGR);
112
113
	screen_write_clearscreen(ctx, 8);
114
	screen_write_cursormove(ctx, 0, 0);
115
}
116
117
/* Write character. */
118
void
119
screen_write_putc(struct screen_write_ctx *ctx, const struct grid_cell *gcp,
120
    u_char ch)
121
{
122
	struct grid_cell	gc;
123
124
	memcpy(&gc, gcp, sizeof gc);
125
126
	utf8_set(&gc.data, ch);
127
	screen_write_cell(ctx, &gc);
128
}
129
130
/* Calculate string length, with embedded formatting. */
131
size_t
132
screen_write_cstrlen(const char *fmt, ...)
133
{
134
	va_list	ap;
135
	char   *msg, *msg2, *ptr, *ptr2;
136
	size_t	size;
137
138
	va_start(ap, fmt);
139
	xvasprintf(&msg, fmt, ap);
140
	va_end(ap);
141
	msg2 = xmalloc(strlen(msg) + 1);
142
143
	ptr = msg;
144
	ptr2 = msg2;
145
	while (*ptr != '\0') {
146
		if (ptr[0] == '#' && ptr[1] == '[') {
147
			while (*ptr != ']' && *ptr != '\0')
148
				ptr++;
149
			if (*ptr == ']')
150
				ptr++;
151
			continue;
152
		}
153
		*ptr2++ = *ptr++;
154
	}
155
	*ptr2 = '\0';
156
157
	size = screen_write_strlen("%s", msg2);
158
159
	free(msg);
160
	free(msg2);
161
162
	return (size);
163
}
164
165
/* Calculate string length. */
166
size_t
167
screen_write_strlen(const char *fmt, ...)
168
{
169
	va_list			ap;
170
	char   	       	       *msg;
171
	struct utf8_data	ud;
172
	u_char 	      	       *ptr;
173
	size_t			left, size = 0;
174
	enum utf8_state		more;
175
176
	va_start(ap, fmt);
177
	xvasprintf(&msg, fmt, ap);
178
	va_end(ap);
179
180
	ptr = msg;
181
	while (*ptr != '\0') {
182
		if (*ptr > 0x7f && utf8_open(&ud, *ptr) == UTF8_MORE) {
183
			ptr++;
184
185
			left = strlen(ptr);
186
			if (left < (size_t)ud.size - 1)
187
				break;
188
			while ((more = utf8_append(&ud, *ptr)) == UTF8_MORE)
189
				ptr++;
190
			ptr++;
191
192
			if (more == UTF8_DONE)
193
				size += ud.width;
194
		} else {
195
			if (*ptr > 0x1f && *ptr < 0x7f)
196
				size++;
197
			ptr++;
198
		}
199
	}
200
201
	free(msg);
202
	return (size);
203
}
204
205
/* Write simple string (no UTF-8 or maximum length). */
206
void
207
screen_write_puts(struct screen_write_ctx *ctx, const struct grid_cell *gcp,
208
    const char *fmt, ...)
209
{
210
	va_list	ap;
211
212
	va_start(ap, fmt);
213
	screen_write_vnputs(ctx, -1, gcp, fmt, ap);
214
	va_end(ap);
215
}
216
217
/* Write string with length limit (-1 for unlimited). */
218
void
219
screen_write_nputs(struct screen_write_ctx *ctx, ssize_t maxlen,
220
    const struct grid_cell *gcp, const char *fmt, ...)
221
{
222
	va_list	ap;
223
224
	va_start(ap, fmt);
225
	screen_write_vnputs(ctx, maxlen, gcp, fmt, ap);
226
	va_end(ap);
227
}
228
229
void
230
screen_write_vnputs(struct screen_write_ctx *ctx, ssize_t maxlen,
231
    const struct grid_cell *gcp, const char *fmt, va_list ap)
232
{
233
	struct grid_cell	gc;
234
	struct utf8_data       *ud = &gc.data;
235
	char   		       *msg;
236
	u_char 		       *ptr;
237
	size_t		 	left, size = 0;
238
	enum utf8_state		more;
239
240
	memcpy(&gc, gcp, sizeof gc);
241
	xvasprintf(&msg, fmt, ap);
242
243
	ptr = msg;
244
	while (*ptr != '\0') {
245
		if (*ptr > 0x7f && utf8_open(ud, *ptr) == UTF8_MORE) {
246
			ptr++;
247
248
			left = strlen(ptr);
249
			if (left < (size_t)ud->size - 1)
250
				break;
251
			while ((more = utf8_append(ud, *ptr)) == UTF8_MORE)
252
				ptr++;
253
			ptr++;
254
255
			if (more != UTF8_DONE)
256
				continue;
257
			if (maxlen > 0 && size + ud->width > (size_t)maxlen) {
258
				while (size < (size_t)maxlen) {
259
					screen_write_putc(ctx, &gc, ' ');
260
					size++;
261
				}
262
				break;
263
			}
264
			size += ud->width;
265
			screen_write_cell(ctx, &gc);
266
		} else {
267
			if (maxlen > 0 && size + 1 > (size_t)maxlen)
268
				break;
269
270
			if (*ptr == '\001')
271
				gc.attr ^= GRID_ATTR_CHARSET;
272
			else if (*ptr > 0x1f && *ptr < 0x7f) {
273
				size++;
274
				screen_write_putc(ctx, &gc, *ptr);
275
			}
276
			ptr++;
277
		}
278
	}
279
280
	free(msg);
281
}
282
283
/* Write string, similar to nputs, but with embedded formatting (#[]). */
284
void
285
screen_write_cnputs(struct screen_write_ctx *ctx, ssize_t maxlen,
286
    const struct grid_cell *gcp, const char *fmt, ...)
287
{
288
	struct grid_cell	 gc;
289
	struct utf8_data	*ud = &gc.data;
290
	va_list			 ap;
291
	char			*msg;
292
	u_char 			*ptr, *last;
293
	size_t			 left, size = 0;
294
	enum utf8_state		 more;
295
296
	memcpy(&gc, gcp, sizeof gc);
297
298
	va_start(ap, fmt);
299
	xvasprintf(&msg, fmt, ap);
300
	va_end(ap);
301
302
	ptr = msg;
303
	while (*ptr != '\0') {
304
		if (ptr[0] == '#' && ptr[1] == '[') {
305
			ptr += 2;
306
			last = ptr + strcspn(ptr, "]");
307
			if (*last == '\0') {
308
				/* No ]. Not much point in doing anything. */
309
				break;
310
			}
311
			*last = '\0';
312
313
			style_parse(gcp, &gc, ptr);
314
			ptr = last + 1;
315
			continue;
316
		}
317
318
		if (*ptr > 0x7f && utf8_open(ud, *ptr) == UTF8_MORE) {
319
			ptr++;
320
321
			left = strlen(ptr);
322
			if (left < (size_t)ud->size - 1)
323
				break;
324
			while ((more = utf8_append(ud, *ptr)) == UTF8_MORE)
325
				ptr++;
326
			ptr++;
327
328
			if (more != UTF8_DONE)
329
				continue;
330
			if (maxlen > 0 && size + ud->width > (size_t)maxlen) {
331
				while (size < (size_t)maxlen) {
332
					screen_write_putc(ctx, &gc, ' ');
333
					size++;
334
				}
335
				break;
336
			}
337
			size += ud->width;
338
			screen_write_cell(ctx, &gc);
339
		} else {
340
			if (maxlen > 0 && size + 1 > (size_t)maxlen)
341
				break;
342
343
			if (*ptr > 0x1f && *ptr < 0x7f) {
344
				size++;
345
				screen_write_putc(ctx, &gc, *ptr);
346
			}
347
			ptr++;
348
		}
349
	}
350
351
	free(msg);
352
}
353
354
/* Copy from another screen. */
355
void
356
screen_write_copy(struct screen_write_ctx *ctx, struct screen *src, u_int px,
357
    u_int py, u_int nx, u_int ny, bitstr_t *markbs,
358
    const struct grid_cell *markgc)
359
{
360
	struct screen		*s = ctx->s;
361
	struct grid		*gd = src->grid;
362
	struct grid_cell	 gc;
363
	u_int		 	 xx, yy, cx, cy, b;
364
365
	if (nx == 0 || ny == 0)
366
		return;
367
368
	cx = s->cx;
369
	cy = s->cy;
370
371
	for (yy = py; yy < py + ny; yy++) {
372
		for (xx = px; xx < px + nx; xx++) {
373
			grid_get_cell(gd, xx, yy, &gc);
374
			if (markbs != NULL) {
375
				b = (yy * screen_size_x(src)) + xx;
376
				if (bit_test(markbs, b)) {
377
					gc.attr = markgc->attr;
378
					gc.fg = markgc->fg;
379
					gc.bg = markgc->bg;
380
				}
381
			}
382
			screen_write_cell(ctx, &gc);
383
		}
384
385
		cy++;
386
		screen_write_cursormove(ctx, cx, cy);
387
	}
388
}
389
390
/* Draw a horizontal line on screen. */
391
void
392
screen_write_hline(struct screen_write_ctx *ctx, u_int nx, int left, int right)
393
{
394
	struct screen		*s = ctx->s;
395
	struct grid_cell	 gc;
396
	u_int			 cx, cy, i;
397
398
	cx = s->cx;
399
	cy = s->cy;
400
401
	memcpy(&gc, &grid_default_cell, sizeof gc);
402
	gc.attr |= GRID_ATTR_CHARSET;
403
404
	screen_write_putc(ctx, &gc, left ? 't' : 'q');
405
	for (i = 1; i < nx - 1; i++)
406
		screen_write_putc(ctx, &gc, 'q');
407
	screen_write_putc(ctx, &gc, right ? 'u' : 'q');
408
409
	screen_write_cursormove(ctx, cx, cy);
410
}
411
412
/* Draw a horizontal line on screen. */
413
void
414
screen_write_vline(struct screen_write_ctx *ctx, u_int ny, int top, int bottom)
415
{
416
	struct screen		*s = ctx->s;
417
	struct grid_cell	 gc;
418
	u_int			 cx, cy, i;
419
420
	cx = s->cx;
421
	cy = s->cy;
422
423
	memcpy(&gc, &grid_default_cell, sizeof gc);
424
	gc.attr |= GRID_ATTR_CHARSET;
425
426
	screen_write_putc(ctx, &gc, top ? 'w' : 'x');
427
	for (i = 1; i < ny - 1; i++) {
428
		screen_write_cursormove(ctx, cx, cy + i);
429
		screen_write_putc(ctx, &gc, 'x');
430
	}
431
	screen_write_cursormove(ctx, cx, cy + ny);
432
	screen_write_putc(ctx, &gc, bottom ? 'v' : 'x');
433
434
	screen_write_cursormove(ctx, cx, cy);
435
}
436
437
/* Draw a box on screen. */
438
void
439
screen_write_box(struct screen_write_ctx *ctx, u_int nx, u_int ny)
440
{
441
	struct screen		*s = ctx->s;
442
	struct grid_cell	 gc;
443
	u_int			 cx, cy, i;
444
445
	cx = s->cx;
446
	cy = s->cy;
447
448
	memcpy(&gc, &grid_default_cell, sizeof gc);
449
	gc.attr |= GRID_ATTR_CHARSET;
450
451
	screen_write_putc(ctx, &gc, 'l');
452
	for (i = 1; i < nx - 1; i++)
453
		screen_write_putc(ctx, &gc, 'q');
454
	screen_write_putc(ctx, &gc, 'k');
455
456
	screen_write_cursormove(ctx, cx, cy + ny - 1);
457
	screen_write_putc(ctx, &gc, 'm');
458
	for (i = 1; i < nx - 1; i++)
459
		screen_write_putc(ctx, &gc, 'q');
460
	screen_write_putc(ctx, &gc, 'j');
461
462
	for (i = 1; i < ny - 1; i++) {
463
		screen_write_cursormove(ctx, cx, cy + i);
464
		screen_write_putc(ctx, &gc, 'x');
465
	}
466
	for (i = 1; i < ny - 1; i++) {
467
		screen_write_cursormove(ctx, cx + nx - 1, cy + i);
468
		screen_write_putc(ctx, &gc, 'x');
469
	}
470
471
	screen_write_cursormove(ctx, cx, cy);
472
}
473
474
/* Write a preview version of a window. */
475
void
476
screen_write_preview(struct screen_write_ctx *ctx, struct screen *src, u_int nx,
477
    u_int ny)
478
{
479
	struct screen		*s = ctx->s;
480
	struct grid_cell	 gc;
481
	u_int			 cx, cy, px, py;
482
483
	cx = s->cx;
484
	cy = s->cy;
485
486
	/*
487
	 * If the cursor is on, pick the area around the cursor, otherwise use
488
	 * the top left.
489
	 */
490
	if (src->mode & MODE_CURSOR) {
491
		px = src->cx;
492
		if (px < nx / 3)
493
			px = 0;
494
		else
495
			px = px - nx / 3;
496
		if (px + nx > screen_size_x(src)) {
497
			if (nx > screen_size_x(src))
498
				px = 0;
499
			else
500
				px = screen_size_x(src) - nx;
501
		}
502
		py = src->cy;
503
		if (py < ny / 3)
504
			py = 0;
505
		else
506
			py = py - ny / 3;
507
		if (py + ny > screen_size_y(src)) {
508
			if (ny > screen_size_y(src))
509
				py = 0;
510
			else
511
				py = screen_size_y(src) - ny;
512
		}
513
	} else {
514
		px = 0;
515
		py = 0;
516
	}
517
518
	screen_write_copy(ctx, src, px, src->grid->hsize + py, nx, ny, NULL,
519
	    NULL);
520
521
	if (src->mode & MODE_CURSOR) {
522
		grid_view_get_cell(src->grid, src->cx, src->cy, &gc);
523
		gc.attr |= GRID_ATTR_REVERSE;
524
		screen_write_cursormove(ctx, cx + (src->cx - px),
525
		    cy + (src->cy - py));
526
		screen_write_cell(ctx, &gc);
527
	}
528
}
529
530
/* Set up context for TTY command. */
531
static void
532
screen_write_initctx(struct screen_write_ctx *ctx, struct tty_ctx *ttyctx)
533
{
534
	struct screen	*s = ctx->s;
535
536
	memset(ttyctx, 0, sizeof *ttyctx);
537
538
	ttyctx->wp = ctx->wp;
539
540
	ttyctx->ocx = s->cx;
541
	ttyctx->ocy = s->cy;
542
543
	ttyctx->orlower = s->rlower;
544
	ttyctx->orupper = s->rupper;
545
}
546
547
/* Set a mode. */
548
void
549
screen_write_mode_set(struct screen_write_ctx *ctx, int mode)
550
{
551
	struct screen	*s = ctx->s;
552
553
	s->mode |= mode;
554
}
555
556
/* Clear a mode. */
557
void
558
screen_write_mode_clear(struct screen_write_ctx *ctx, int mode)
559
{
560
	struct screen	*s = ctx->s;
561
562
	s->mode &= ~mode;
563
}
564
565
/* Cursor up by ny. */
566
void
567
screen_write_cursorup(struct screen_write_ctx *ctx, u_int ny)
568
{
569
	struct screen	*s = ctx->s;
570
571
	if (ny == 0)
572
		ny = 1;
573
574
	if (s->cy < s->rupper) {
575
		/* Above region. */
576
		if (ny > s->cy)
577
			ny = s->cy;
578
	} else {
579
		/* Below region. */
580
		if (ny > s->cy - s->rupper)
581
			ny = s->cy - s->rupper;
582
	}
583
	if (s->cx == screen_size_x(s))
584
	    s->cx--;
585
	if (ny == 0)
586
		return;
587
588
	s->cy -= ny;
589
}
590
591
/* Cursor down by ny. */
592
void
593
screen_write_cursordown(struct screen_write_ctx *ctx, u_int ny)
594
{
595
	struct screen	*s = ctx->s;
596
597
	if (ny == 0)
598
		ny = 1;
599
600
	if (s->cy > s->rlower) {
601
		/* Below region. */
602
		if (ny > screen_size_y(s) - 1 - s->cy)
603
			ny = screen_size_y(s) - 1 - s->cy;
604
	} else {
605
		/* Above region. */
606
		if (ny > s->rlower - s->cy)
607
			ny = s->rlower - s->cy;
608
	}
609
	if (s->cx == screen_size_x(s))
610
	    s->cx--;
611
	if (ny == 0)
612
		return;
613
614
	s->cy += ny;
615
}
616
617
/* Cursor right by nx. */
618
void
619
screen_write_cursorright(struct screen_write_ctx *ctx, u_int nx)
620
{
621
	struct screen	*s = ctx->s;
622
623
	if (nx == 0)
624
		nx = 1;
625
626
	if (nx > screen_size_x(s) - 1 - s->cx)
627
		nx = screen_size_x(s) - 1 - s->cx;
628
	if (nx == 0)
629
		return;
630
631
	s->cx += nx;
632
}
633
634
/* Cursor left by nx. */
635
void
636
screen_write_cursorleft(struct screen_write_ctx *ctx, u_int nx)
637
{
638
	struct screen	*s = ctx->s;
639
640
	if (nx == 0)
641
		nx = 1;
642
643
	if (nx > s->cx)
644
		nx = s->cx;
645
	if (nx == 0)
646
		return;
647
648
	s->cx -= nx;
649
}
650
651
/* Backspace; cursor left unless at start of wrapped line when can move up. */
652
void
653
screen_write_backspace(struct screen_write_ctx *ctx)
654
{
655
	struct screen		*s = ctx->s;
656
	struct grid_line	*gl;
657
658
	if (s->cx == 0) {
659
		if (s->cy == 0)
660
			return;
661
		gl = &s->grid->linedata[s->grid->hsize + s->cy - 1];
662
		if (gl->flags & GRID_LINE_WRAPPED) {
663
			s->cy--;
664
			s->cx = screen_size_x(s) - 1;
665
		}
666
	} else
667
		s->cx--;
668
}
669
670
/* VT100 alignment test. */
671
void
672
screen_write_alignmenttest(struct screen_write_ctx *ctx)
673
{
674
	struct screen		*s = ctx->s;
675
	struct tty_ctx	 	 ttyctx;
676
	struct grid_cell       	 gc;
677
	u_int			 xx, yy;
678
679
	screen_write_initctx(ctx, &ttyctx);
680
681
	memcpy(&gc, &grid_default_cell, sizeof gc);
682
	utf8_set(&gc.data, 'E');
683
684
	for (yy = 0; yy < screen_size_y(s); yy++) {
685
		for (xx = 0; xx < screen_size_x(s); xx++)
686
			grid_view_set_cell(s->grid, xx, yy, &gc);
687
	}
688
689
	s->cx = 0;
690
	s->cy = 0;
691
692
	s->rupper = 0;
693
	s->rlower = screen_size_y(s) - 1;
694
695
	screen_write_collect_clear(ctx, 0, screen_size_y(s) - 1);
696
	tty_write(tty_cmd_alignmenttest, &ttyctx);
697
}
698
699
/* Insert nx characters. */
700
void
701
screen_write_insertcharacter(struct screen_write_ctx *ctx, u_int nx, u_int bg)
702
{
703
	struct screen	*s = ctx->s;
704
	struct tty_ctx	 ttyctx;
705
706
	if (nx == 0)
707
		nx = 1;
708
709
	if (nx > screen_size_x(s) - s->cx)
710
		nx = screen_size_x(s) - s->cx;
711
	if (nx == 0)
712
		return;
713
714
	if (s->cx > screen_size_x(s) - 1)
715
		return;
716
717
	screen_write_initctx(ctx, &ttyctx);
718
	ttyctx.bg = bg;
719
720
	grid_view_insert_cells(s->grid, s->cx, s->cy, nx, bg);
721
722
	screen_write_collect_flush(ctx, 0);
723
	ttyctx.num = nx;
724
	tty_write(tty_cmd_insertcharacter, &ttyctx);
725
}
726
727
/* Delete nx characters. */
728
void
729
screen_write_deletecharacter(struct screen_write_ctx *ctx, u_int nx, u_int bg)
730
{
731
	struct screen	*s = ctx->s;
732
	struct tty_ctx	 ttyctx;
733
734
	if (nx == 0)
735
		nx = 1;
736
737
	if (nx > screen_size_x(s) - s->cx)
738
		nx = screen_size_x(s) - s->cx;
739
	if (nx == 0)
740
		return;
741
742
	if (s->cx > screen_size_x(s) - 1)
743
		return;
744
745
	screen_write_initctx(ctx, &ttyctx);
746
	ttyctx.bg = bg;
747
748
	grid_view_delete_cells(s->grid, s->cx, s->cy, nx, bg);
749
750
	screen_write_collect_flush(ctx, 0);
751
	ttyctx.num = nx;
752
	tty_write(tty_cmd_deletecharacter, &ttyctx);
753
}
754
755
/* Clear nx characters. */
756
void
757
screen_write_clearcharacter(struct screen_write_ctx *ctx, u_int nx, u_int bg)
758
{
759
	struct screen	*s = ctx->s;
760
	struct tty_ctx	 ttyctx;
761
762
	if (nx == 0)
763
		nx = 1;
764
765
	if (nx > screen_size_x(s) - s->cx)
766
		nx = screen_size_x(s) - s->cx;
767
	if (nx == 0)
768
		return;
769
770
	if (s->cx > screen_size_x(s) - 1)
771
		return;
772
773
	screen_write_initctx(ctx, &ttyctx);
774
	ttyctx.bg = bg;
775
776
	grid_view_clear(s->grid, s->cx, s->cy, nx, 1, bg);
777
778
	screen_write_collect_flush(ctx, 0);
779
	ttyctx.num = nx;
780
	tty_write(tty_cmd_clearcharacter, &ttyctx);
781
}
782
783
/* Insert ny lines. */
784
void
785
screen_write_insertline(struct screen_write_ctx *ctx, u_int ny, u_int bg)
786
{
787
	struct screen	*s = ctx->s;
788
	struct grid	*gd = s->grid;
789
	struct tty_ctx	 ttyctx;
790
791
	if (ny == 0)
792
		ny = 1;
793
794
	if (s->cy < s->rupper || s->cy > s->rlower) {
795
		if (ny > screen_size_y(s) - s->cy)
796
			ny = screen_size_y(s) - s->cy;
797
		if (ny == 0)
798
			return;
799
800
		screen_write_initctx(ctx, &ttyctx);
801
		ttyctx.bg = bg;
802
803
		grid_view_insert_lines(gd, s->cy, ny, bg);
804
805
		screen_write_collect_flush(ctx, 0);
806
		ttyctx.num = ny;
807
		tty_write(tty_cmd_insertline, &ttyctx);
808
		return;
809
	}
810
811
	if (ny > s->rlower + 1 - s->cy)
812
		ny = s->rlower + 1 - s->cy;
813
	if (ny == 0)
814
		return;
815
816
	screen_write_initctx(ctx, &ttyctx);
817
	ttyctx.bg = bg;
818
819
	if (s->cy < s->rupper || s->cy > s->rlower)
820
		grid_view_insert_lines(gd, s->cy, ny, bg);
821
	else
822
		grid_view_insert_lines_region(gd, s->rlower, s->cy, ny, bg);
823
824
	screen_write_collect_flush(ctx, 0);
825
	ttyctx.num = ny;
826
	tty_write(tty_cmd_insertline, &ttyctx);
827
}
828
829
/* Delete ny lines. */
830
void
831
screen_write_deleteline(struct screen_write_ctx *ctx, u_int ny, u_int bg)
832
{
833
	struct screen	*s = ctx->s;
834
	struct grid	*gd = s->grid;
835
	struct tty_ctx	 ttyctx;
836
837
	if (ny == 0)
838
		ny = 1;
839
840
	if (s->cy < s->rupper || s->cy > s->rlower) {
841
		if (ny > screen_size_y(s) - s->cy)
842
			ny = screen_size_y(s) - s->cy;
843
		if (ny == 0)
844
			return;
845
846
		screen_write_initctx(ctx, &ttyctx);
847
		ttyctx.bg = bg;
848
849
		grid_view_delete_lines(gd, s->cy, ny, bg);
850
851
		screen_write_collect_flush(ctx, 0);
852
		ttyctx.num = ny;
853
		tty_write(tty_cmd_deleteline, &ttyctx);
854
		return;
855
	}
856
857
	if (ny > s->rlower + 1 - s->cy)
858
		ny = s->rlower + 1 - s->cy;
859
	if (ny == 0)
860
		return;
861
862
	screen_write_initctx(ctx, &ttyctx);
863
	ttyctx.bg = bg;
864
865
	if (s->cy < s->rupper || s->cy > s->rlower)
866
		grid_view_delete_lines(gd, s->cy, ny, bg);
867
	else
868
		grid_view_delete_lines_region(gd, s->rlower, s->cy, ny, bg);
869
870
	screen_write_collect_flush(ctx, 0);
871
	ttyctx.num = ny;
872
	tty_write(tty_cmd_deleteline, &ttyctx);
873
}
874
875
/* Clear line at cursor. */
876
void
877
screen_write_clearline(struct screen_write_ctx *ctx, u_int bg)
878
{
879
	struct screen		*s = ctx->s;
880
	struct grid_line	*gl;
881
	struct tty_ctx		 ttyctx;
882
	u_int			 sx = screen_size_x(s);
883
884
	gl = &s->grid->linedata[s->grid->hsize + s->cy];
885
	if (gl->cellsize == 0 && bg == 8)
886
		return;
887
888
	screen_write_initctx(ctx, &ttyctx);
889
	ttyctx.bg = bg;
890
891
	grid_view_clear(s->grid, 0, s->cy, sx, 1, bg);
892
893
	screen_write_collect_clear(ctx, s->cy, 1);
894
	screen_write_collect_flush(ctx, 0);
895
	tty_write(tty_cmd_clearline, &ttyctx);
896
}
897
898
/* Clear to end of line from cursor. */
899
void
900
screen_write_clearendofline(struct screen_write_ctx *ctx, u_int bg)
901
{
902
	struct screen		*s = ctx->s;
903
	struct grid_line	*gl;
904
	struct tty_ctx		 ttyctx;
905
	u_int			 sx = screen_size_x(s);
906
907
	gl = &s->grid->linedata[s->grid->hsize + s->cy];
908
	if (s->cx > sx - 1 || (s->cx >= gl->cellsize && bg == 8))
909
		return;
910
911
	screen_write_initctx(ctx, &ttyctx);
912
	ttyctx.bg = bg;
913
914
	grid_view_clear(s->grid, s->cx, s->cy, sx - s->cx, 1, bg);
915
916
	if (s->cx == 0)
917
		screen_write_collect_clear(ctx, s->cy, 1);
918
	screen_write_collect_flush(ctx, 0);
919
	tty_write(tty_cmd_clearendofline, &ttyctx);
920
}
921
922
/* Clear to start of line from cursor. */
923
void
924
screen_write_clearstartofline(struct screen_write_ctx *ctx, u_int bg)
925
{
926
	struct screen	*s = ctx->s;
927
	struct tty_ctx	 ttyctx;
928
	u_int		 sx = screen_size_x(s);
929
930
	screen_write_initctx(ctx, &ttyctx);
931
	ttyctx.bg = bg;
932
933
	if (s->cx > sx - 1)
934
		grid_view_clear(s->grid, 0, s->cy, sx, 1, bg);
935
	else
936
		grid_view_clear(s->grid, 0, s->cy, s->cx + 1, 1, bg);
937
938
	if (s->cx > sx - 1)
939
		screen_write_collect_clear(ctx, s->cy, 1);
940
	screen_write_collect_flush(ctx, 0);
941
	tty_write(tty_cmd_clearstartofline, &ttyctx);
942
}
943
944
/* Move cursor to px,py. */
945
void
946
screen_write_cursormove(struct screen_write_ctx *ctx, u_int px, u_int py)
947
{
948
	struct screen	*s = ctx->s;
949
950
	if (px > screen_size_x(s) - 1)
951
		px = screen_size_x(s) - 1;
952
	if (py > screen_size_y(s) - 1)
953
		py = screen_size_y(s) - 1;
954
955
	s->cx = px;
956
	s->cy = py;
957
}
958
959
/* Reverse index (up with scroll). */
960
void
961
screen_write_reverseindex(struct screen_write_ctx *ctx, u_int bg)
962
{
963
	struct screen	*s = ctx->s;
964
	struct tty_ctx	 ttyctx;
965
966
	screen_write_initctx(ctx, &ttyctx);
967
	ttyctx.bg = bg;
968
969
	if (s->cy == s->rupper)
970
		grid_view_scroll_region_down(s->grid, s->rupper, s->rlower, bg);
971
	else if (s->cy > 0)
972
		s->cy--;
973
974
	screen_write_collect_flush(ctx, 0);
975
	tty_write(tty_cmd_reverseindex, &ttyctx);
976
}
977
978
/* Set scroll region. */
979
void
980
screen_write_scrollregion(struct screen_write_ctx *ctx, u_int rupper,
981
    u_int rlower)
982
{
983
	struct screen	*s = ctx->s;
984
985
	if (rupper > screen_size_y(s) - 1)
986
		rupper = screen_size_y(s) - 1;
987
	if (rlower > screen_size_y(s) - 1)
988
		rlower = screen_size_y(s) - 1;
989
	if (rupper >= rlower)	/* cannot be one line */
990
		return;
991
992
	screen_write_collect_flush(ctx, 0);
993
994
	/* Cursor moves to top-left. */
995
	s->cx = 0;
996
	s->cy = 0;
997
998
	s->rupper = rupper;
999
	s->rlower = rlower;
1000
}
1001
1002
/* Line feed. */
1003
void
1004
screen_write_linefeed(struct screen_write_ctx *ctx, int wrapped, u_int bg)
1005
{
1006
	struct screen		*s = ctx->s;
1007
	struct grid		*gd = s->grid;
1008
	struct grid_line	*gl;
1009
1010
	gl = &gd->linedata[gd->hsize + s->cy];
1011
	if (wrapped)
1012
		gl->flags |= GRID_LINE_WRAPPED;
1013
	else
1014
		gl->flags &= ~GRID_LINE_WRAPPED;
1015
1016
	log_debug("%s: at %u,%u (region %u-%u)", __func__, s->cx, s->cy,
1017
	    s->rupper, s->rlower);
1018
1019
	if (bg != ctx->bg) {
1020
		screen_write_collect_flush(ctx, 1);
1021
		ctx->bg = bg;
1022
	}
1023
1024
	if (s->cy == s->rlower) {
1025
		grid_view_scroll_region_up(gd, s->rupper, s->rlower, bg);
1026
		screen_write_collect_scroll(ctx);
1027
		ctx->scrolled++;
1028
	} else if (s->cy < screen_size_y(s) - 1)
1029
		s->cy++;
1030
}
1031
1032
/* Scroll up. */
1033
void
1034
screen_write_scrollup(struct screen_write_ctx *ctx, u_int lines, u_int bg)
1035
{
1036
	struct screen	*s = ctx->s;
1037
	struct grid	*gd = s->grid;
1038
	u_int		 i;
1039
1040
	if (lines == 0)
1041
		lines = 1;
1042
	else if (lines > s->rlower - s->rupper + 1)
1043
		lines = s->rlower - s->rupper + 1;
1044
1045
	if (bg != ctx->bg) {
1046
		screen_write_collect_flush(ctx, 1);
1047
		ctx->bg = bg;
1048
	}
1049
1050
	for (i = 0; i < lines; i++) {
1051
		grid_view_scroll_region_up(gd, s->rupper, s->rlower, bg);
1052
		screen_write_collect_scroll(ctx);
1053
	}
1054
	ctx->scrolled += lines;
1055
}
1056
1057
/* Carriage return (cursor to start of line). */
1058
void
1059
screen_write_carriagereturn(struct screen_write_ctx *ctx)
1060
{
1061
	struct screen	*s = ctx->s;
1062
1063
	s->cx = 0;
1064
}
1065
1066
/* Clear to end of screen from cursor. */
1067
void
1068
screen_write_clearendofscreen(struct screen_write_ctx *ctx, u_int bg)
1069
{
1070
	struct screen	*s = ctx->s;
1071
	struct grid	*gd = s->grid;
1072
	struct tty_ctx	 ttyctx;
1073
	u_int		 sx = screen_size_x(s), sy = screen_size_y(s);
1074
1075
	screen_write_initctx(ctx, &ttyctx);
1076
	ttyctx.bg = bg;
1077
1078
	/* Scroll into history if it is enabled and clearing entire screen. */
1079
	if (s->cx == 0 && s->cy == 0 && (gd->flags & GRID_HISTORY))
1080
		grid_view_clear_history(gd, bg);
1081
	else {
1082
		if (s->cx <= sx - 1)
1083
			grid_view_clear(gd, s->cx, s->cy, sx - s->cx, 1, bg);
1084
		grid_view_clear(gd, 0, s->cy + 1, sx, sy - (s->cy + 1), bg);
1085
	}
1086
1087
	screen_write_collect_clear(ctx, s->cy + 1, sy - (s->cy + 1));
1088
	screen_write_collect_flush(ctx, 0);
1089
	tty_write(tty_cmd_clearendofscreen, &ttyctx);
1090
}
1091
1092
/* Clear to start of screen. */
1093
void
1094
screen_write_clearstartofscreen(struct screen_write_ctx *ctx, u_int bg)
1095
{
1096
	struct screen	*s = ctx->s;
1097
	struct tty_ctx	 ttyctx;
1098
	u_int		 sx = screen_size_x(s);
1099
1100
	screen_write_initctx(ctx, &ttyctx);
1101
	ttyctx.bg = bg;
1102
1103
	if (s->cy > 0)
1104
		grid_view_clear(s->grid, 0, 0, sx, s->cy, bg);
1105
	if (s->cx > sx - 1)
1106
		grid_view_clear(s->grid, 0, s->cy, sx, 1, bg);
1107
	else
1108
		grid_view_clear(s->grid, 0, s->cy, s->cx + 1, 1, bg);
1109
1110
	screen_write_collect_clear(ctx, 0, s->cy);
1111
	screen_write_collect_flush(ctx, 0);
1112
	tty_write(tty_cmd_clearstartofscreen, &ttyctx);
1113
}
1114
1115
/* Clear entire screen. */
1116
void
1117
screen_write_clearscreen(struct screen_write_ctx *ctx, u_int bg)
1118
{
1119
	struct screen	*s = ctx->s;
1120
	struct tty_ctx	 ttyctx;
1121
	u_int		 sx = screen_size_x(s), sy = screen_size_y(s);
1122
1123
	screen_write_initctx(ctx, &ttyctx);
1124
	ttyctx.bg = bg;
1125
1126
	/* Scroll into history if it is enabled. */
1127
	if (s->grid->flags & GRID_HISTORY)
1128
		grid_view_clear_history(s->grid, bg);
1129
	else
1130
		grid_view_clear(s->grid, 0, 0, sx, sy, bg);
1131
1132
	screen_write_collect_clear(ctx, 0, sy);
1133
	tty_write(tty_cmd_clearscreen, &ttyctx);
1134
}
1135
1136
/* Clear entire history. */
1137
void
1138
screen_write_clearhistory(struct screen_write_ctx *ctx)
1139
{
1140
	struct screen	*s = ctx->s;
1141
	struct grid	*gd = s->grid;
1142
1143
	grid_move_lines(gd, 0, gd->hsize, gd->sy, 8);
1144
	gd->hscrolled = gd->hsize = 0;
1145
}
1146
1147
/* Clear a collected line. */
1148
static void
1149
screen_write_collect_clear(struct screen_write_ctx *ctx, u_int y, u_int n)
1150
{
1151
	struct screen_write_collect_item	*ci, *tmp;
1152
	u_int					 i;
1153
	size_t					 size;
1154
1155
	for (i = y ; i < y + n; i++) {
1156
		if (TAILQ_EMPTY(&ctx->list[i].items))
1157
			continue;
1158
		size = 0;
1159
		TAILQ_FOREACH_SAFE(ci, &ctx->list[i].items, entry, tmp) {
1160
			size += ci->used;
1161
			TAILQ_REMOVE(&ctx->list[i].items, ci, entry);
1162
			free(ci);
1163
		}
1164
		ctx->skipped += size;
1165
		log_debug("%s: dropped %zu bytes (line %u)", __func__, size, i);
1166
	}
1167
}
1168
1169
/* Scroll collected lines up. */
1170
static void
1171
screen_write_collect_scroll(struct screen_write_ctx *ctx)
1172
{
1173
	struct screen				*s = ctx->s;
1174
	struct screen_write_collect_line	*cl;
1175
	u_int					 y;
1176
1177
	log_debug("%s: at %u,%u (region %u-%u)", __func__, s->cx, s->cy,
1178
	    s->rupper, s->rlower);
1179
1180
	screen_write_collect_clear(ctx, s->rupper, 1);
1181
	for (y = s->rupper; y < s->rlower; y++) {
1182
		cl = &ctx->list[y + 1];
1183
		TAILQ_CONCAT(&ctx->list[y].items, &cl->items, entry);
1184
		TAILQ_INIT(&cl->items);
1185
	}
1186
}
1187
1188
/* Flush collected lines. */
1189
static void
1190
screen_write_collect_flush(struct screen_write_ctx *ctx, int scroll_only)
1191
{
1192
	struct screen				*s = ctx->s;
1193
	struct screen_write_collect_item	*ci, *tmp;
1194
	u_int					 y, cx, cy, items = 0;
1195
	struct tty_ctx				 ttyctx;
1196
	size_t					 written = 0;
1197
1198
	if (ctx->scrolled != 0) {
1199
		log_debug("%s: scrolled %u (region %u-%u)", __func__,
1200
		    ctx->scrolled, s->rupper, s->rlower);
1201
		if (ctx->scrolled > s->rlower - s->rupper + 1)
1202
			ctx->scrolled = s->rlower - s->rupper + 1;
1203
1204
		screen_write_initctx(ctx, &ttyctx);
1205
		ttyctx.num = ctx->scrolled;
1206
		ttyctx.bg = ctx->bg;
1207
		tty_write(tty_cmd_scrollup, &ttyctx);
1208
	}
1209
	ctx->scrolled = 0;
1210
	ctx->bg = 8;
1211
1212
	if (scroll_only)
1213
		return;
1214
1215
	cx = s->cx; cy = s->cy;
1216
	for (y = 0; y < screen_size_y(s); y++) {
1217
		TAILQ_FOREACH_SAFE(ci, &ctx->list[y].items, entry, tmp) {
1218
			screen_write_cursormove(ctx, ci->x, y);
1219
			screen_write_initctx(ctx, &ttyctx);
1220
			ttyctx.cell = &ci->gc;
1221
			ttyctx.wrapped = ci->wrapped;
1222
			ttyctx.ptr = ci->data;
1223
			ttyctx.num = ci->used;
1224
			tty_write(tty_cmd_cells, &ttyctx);
1225
1226
			items++;
1227
			written += ci->used;
1228
1229
			TAILQ_REMOVE(&ctx->list[y].items, ci, entry);
1230
			free(ci);
1231
		}
1232
	}
1233
	s->cx = cx; s->cy = cy;
1234
1235
	log_debug("%s: flushed %u items (%zu bytes)", __func__, items, written);
1236
	ctx->written += written;
1237
}
1238
1239
/* Finish and store collected cells. */
1240
void
1241
screen_write_collect_end(struct screen_write_ctx *ctx)
1242
{
1243
	struct screen				*s = ctx->s;
1244
	struct screen_write_collect_item	*ci = ctx->item;
1245
	struct grid_cell			 gc;
1246
1247
	if (ci->used == 0)
1248
		return;
1249
	ci->data[ci->used] = '\0';
1250
1251
	ci->x = s->cx;
1252
	TAILQ_INSERT_TAIL(&ctx->list[s->cy].items, ci, entry);
1253
	ctx->item = xcalloc(1, sizeof *ctx->item);
1254
1255
	log_debug("%s: %u %s (at %u,%u)", __func__, ci->used, ci->data, s->cx,
1256
	    s->cy);
1257
1258
	memcpy(&gc, &ci->gc, sizeof gc);
1259
	grid_view_set_cells(s->grid, s->cx, s->cy, &gc, ci->data, ci->used);
1260
	s->cx += ci->used;
1261
}
1262
1263
/* Write cell data, collecting if necessary. */
1264
void
1265
screen_write_collect_add(struct screen_write_ctx *ctx,
1266
    const struct grid_cell *gc)
1267
{
1268
	struct screen				*s = ctx->s;
1269
	struct screen_write_collect_item	*ci;
1270
	u_int					 sx = screen_size_x(s);
1271
	int					 collect;
1272
1273
	/*
1274
	 * Don't need to check that the attributes and whatnot are still the
1275
	 * same - input_parse will end the collection when anything that isn't
1276
	 * a plain character is encountered. Also nothing should make it here
1277
	 * that isn't a single ASCII character.
1278
	 */
1279
1280
	collect = 1;
1281
	if (gc->data.width != 1 || gc->data.size != 1)
1282
		collect = 0;
1283
	else if (gc->attr & GRID_ATTR_CHARSET)
1284
		collect = 0;
1285
	else if (~s->mode & MODE_WRAP)
1286
		collect = 0;
1287
	else if (s->mode & MODE_INSERT)
1288
		collect = 0;
1289
	else if (s->sel.flag)
1290
		collect = 0;
1291
	if (!collect) {
1292
		screen_write_collect_end(ctx);
1293
		screen_write_collect_flush(ctx, 0);
1294
		screen_write_cell(ctx, gc);
1295
		return;
1296
	}
1297
	ctx->cells++;
1298
1299
	if (s->cx > sx - 1 || ctx->item->used > sx - 1 - s->cx)
1300
		screen_write_collect_end(ctx);
1301
	ci = ctx->item; /* may have changed */
1302
1303
	if (s->cx > sx - 1) {
1304
		log_debug("%s: wrapped at %u,%u", __func__, s->cx, s->cy);
1305
		ci->wrapped = 1;
1306
		screen_write_linefeed(ctx, 1, 8);
1307
		s->cx = 0;
1308
	}
1309
1310
	if (ci->used == 0)
1311
		memcpy(&ci->gc, gc, sizeof ci->gc);
1312
	ci->data[ci->used++] = gc->data.data[0];
1313
	if (ci->used == (sizeof ci->data) - 1)
1314
		screen_write_collect_end(ctx);
1315
}
1316
1317
/* Write cell data. */
1318
void
1319
screen_write_cell(struct screen_write_ctx *ctx, const struct grid_cell *gc)
1320
{
1321
	struct screen		*s = ctx->s;
1322
	struct grid		*gd = s->grid;
1323
	struct grid_line	*gl;
1324
	struct grid_cell_entry	*gce;
1325
	struct grid_cell 	 tmp_gc, now_gc;
1326
	struct tty_ctx		 ttyctx;
1327
	u_int			 sx = screen_size_x(s), sy = screen_size_y(s);
1328
	u_int		 	 width = gc->data.width, xx, last, cx, cy;
1329
	int			 selected, skip = 1;
1330
1331
	/* Ignore padding cells. */
1332
	if (gc->flags & GRID_FLAG_PADDING)
1333
		return;
1334
	ctx->cells++;
1335
1336
	/* If the width is zero, combine onto the previous character. */
1337
	if (width == 0) {
1338
		screen_write_collect_flush(ctx, 0);
1339
		if ((gc = screen_write_combine(ctx, &gc->data, &xx)) != 0) {
1340
			cx = s->cx; cy = s->cy;
1341
			screen_write_cursormove(ctx, xx, s->cy);
1342
			screen_write_initctx(ctx, &ttyctx);
1343
			ttyctx.cell = gc;
1344
			tty_write(tty_cmd_cell, &ttyctx);
1345
			s->cx = cx; s->cy = cy;
1346
		}
1347
		return;
1348
	}
1349
1350
	/* Flush any existing scrolling. */
1351
	screen_write_collect_flush(ctx, 1);
1352
1353
	/* If this character doesn't fit, ignore it. */
1354
	if ((~s->mode & MODE_WRAP) &&
1355
	    width > 1 &&
1356
	    (width > sx || (s->cx != sx && s->cx > sx - width)))
1357
		return;
1358
1359
	/* If in insert mode, make space for the cells. */
1360
	if (s->mode & MODE_INSERT) {
1361
		grid_view_insert_cells(s->grid, s->cx, s->cy, width, 8);
1362
		skip = 0;
1363
	}
1364
1365
	/* Check this will fit on the current line and wrap if not. */
1366
	if ((s->mode & MODE_WRAP) && s->cx > sx - width) {
1367
		log_debug("%s: wrapped at %u,%u", __func__, s->cx, s->cy);
1368
		screen_write_linefeed(ctx, 1, 8);
1369
		s->cx = 0;
1370
		screen_write_collect_flush(ctx, 1);
1371
	}
1372
1373
	/* Sanity check cursor position. */
1374
	if (s->cx > sx - width || s->cy > sy - 1)
1375
		return;
1376
	screen_write_initctx(ctx, &ttyctx);
1377
1378
	/* Handle overwriting of UTF-8 characters. */
1379
	gl = &s->grid->linedata[s->grid->hsize + s->cy];
1380
	if (gl->flags & GRID_LINE_EXTENDED) {
1381
		grid_view_get_cell(gd, s->cx, s->cy, &now_gc);
1382
		if (screen_write_overwrite(ctx, &now_gc, width))
1383
			skip = 0;
1384
	}
1385
1386
	/*
1387
	 * If the new character is UTF-8 wide, fill in padding cells. Have
1388
	 * already ensured there is enough room.
1389
	 */
1390
	for (xx = s->cx + 1; xx < s->cx + width; xx++) {
1391
		grid_view_set_cell(gd, xx, s->cy, &screen_write_pad_cell);
1392
		skip = 0;
1393
	}
1394
1395
	/* If no change, do not draw. */
1396
	if (skip) {
1397
		if (s->cx >= gl->cellsize)
1398
			skip = grid_cells_equal(gc, &grid_default_cell);
1399
		else {
1400
			gce = &gl->celldata[s->cx];
1401
			if (gce->flags & GRID_FLAG_EXTENDED)
1402
				skip = 0;
1403
			else if (gc->flags != gce->flags)
1404
				skip = 0;
1405
			else if (gc->attr != gce->data.attr)
1406
				skip = 0;
1407
			else if (gc->fg != gce->data.fg)
1408
				skip = 0;
1409
			else if (gc->bg != gce->data.bg)
1410
				skip = 0;
1411
			else if (gc->data.width != 1)
1412
				skip = 0;
1413
			else if (gc->data.size != 1)
1414
				skip = 0;
1415
			else if (gce->data.data != gc->data.data[0])
1416
				skip = 0;
1417
		}
1418
	}
1419
1420
	/* Update the selected flag and set the cell. */
1421
	selected = screen_check_selection(s, s->cx, s->cy);
1422
	if (selected && (~gc->flags & GRID_FLAG_SELECTED)) {
1423
		memcpy(&tmp_gc, gc, sizeof tmp_gc);
1424
		tmp_gc.flags |= GRID_FLAG_SELECTED;
1425
		grid_view_set_cell(gd, s->cx, s->cy, &tmp_gc);
1426
	} else if (!selected && (gc->flags & GRID_FLAG_SELECTED)) {
1427
		memcpy(&tmp_gc, gc, sizeof tmp_gc);
1428
		tmp_gc.flags &= ~GRID_FLAG_SELECTED;
1429
		grid_view_set_cell(gd, s->cx, s->cy, &tmp_gc);
1430
	} else if (!skip)
1431
		grid_view_set_cell(gd, s->cx, s->cy, gc);
1432
	if (selected)
1433
		skip = 0;
1434
1435
	/*
1436
	 * Move the cursor. If not wrapping, stick at the last character and
1437
	 * replace it.
1438
	 */
1439
	last = !(s->mode & MODE_WRAP);
1440
	if (s->cx <= sx - last - width)
1441
		s->cx += width;
1442
	else
1443
		s->cx = sx - last;
1444
1445
	/* Create space for character in insert mode. */
1446
	if (s->mode & MODE_INSERT) {
1447
		screen_write_collect_flush(ctx, 0);
1448
		ttyctx.num = width;
1449
		tty_write(tty_cmd_insertcharacter, &ttyctx);
1450
	}
1451
1452
	/* Write to the screen. */
1453
	if (!skip) {
1454
		if (selected) {
1455
			screen_select_cell(s, &tmp_gc, gc);
1456
			ttyctx.cell = &tmp_gc;
1457
		} else
1458
			ttyctx.cell = gc;
1459
		tty_write(tty_cmd_cell, &ttyctx);
1460
		ctx->written++;
1461
	} else
1462
		ctx->skipped++;
1463
}
1464
1465
/* Combine a UTF-8 zero-width character onto the previous. */
1466
static const struct grid_cell *
1467
screen_write_combine(struct screen_write_ctx *ctx, const struct utf8_data *ud,
1468
    u_int *xx)
1469
{
1470
	struct screen		*s = ctx->s;
1471
	struct grid		*gd = s->grid;
1472
	static struct grid_cell	 gc;
1473
	u_int			 n;
1474
1475
	/* Can't combine if at 0. */
1476
	if (s->cx == 0)
1477
		return (NULL);
1478
1479
	/* Empty data is out. */
1480
	if (ud->size == 0)
1481
		fatalx("UTF-8 data empty");
1482
1483
	/* Retrieve the previous cell. */
1484
	for (n = 1; n <= s->cx; n++) {
1485
		grid_view_get_cell(gd, s->cx - n, s->cy, &gc);
1486
		if (~gc.flags & GRID_FLAG_PADDING)
1487
			break;
1488
	}
1489
	if (n > s->cx)
1490
		return (NULL);
1491
	*xx = s->cx - n;
1492
1493
	/* Check there is enough space. */
1494
	if (gc.data.size + ud->size > sizeof gc.data.data)
1495
		return (NULL);
1496
1497
	log_debug("%s: %.*s onto %.*s at %u,%u", __func__, (int)ud->size,
1498
	    ud->data, (int)gc.data.size, gc.data.data, *xx, s->cy);
1499
1500
	/* Append the data. */
1501
	memcpy(gc.data.data + gc.data.size, ud->data, ud->size);
1502
	gc.data.size += ud->size;
1503
1504
	/* Set the new cell. */
1505
	grid_view_set_cell(gd, *xx, s->cy, &gc);
1506
1507
	return (&gc);
1508
}
1509
1510
/*
1511
 * UTF-8 wide characters are a bit of an annoyance. They take up more than one
1512
 * cell on the screen, so following cells must not be drawn by marking them as
1513
 * padding.
1514
 *
1515
 * So far, so good. The problem is, when overwriting a padding cell, or a UTF-8
1516
 * character, it is necessary to also overwrite any other cells which covered
1517
 * by the same character.
1518
 */
1519
static int
1520
screen_write_overwrite(struct screen_write_ctx *ctx, struct grid_cell *gc,
1521
    u_int width)
1522
{
1523
	struct screen		*s = ctx->s;
1524
	struct grid		*gd = s->grid;
1525
	struct grid_cell	 tmp_gc;
1526
	u_int			 xx;
1527
	int			 done = 0;
1528
1529
	if (gc->flags & GRID_FLAG_PADDING) {
1530
		/*
1531
		 * A padding cell, so clear any following and leading padding
1532
		 * cells back to the character. Don't overwrite the current
1533
		 * cell as that happens later anyway.
1534
		 */
1535
		xx = s->cx + 1;
1536
		while (--xx > 0) {
1537
			grid_view_get_cell(gd, xx, s->cy, &tmp_gc);
1538
			if (~tmp_gc.flags & GRID_FLAG_PADDING)
1539
				break;
1540
			grid_view_set_cell(gd, xx, s->cy, &grid_default_cell);
1541
		}
1542
1543
		/* Overwrite the character at the start of this padding. */
1544
		grid_view_set_cell(gd, xx, s->cy, &grid_default_cell);
1545
		done = 1;
1546
	}
1547
1548
	/*
1549
	 * Overwrite any padding cells that belong to any UTF-8 characters
1550
	 * we'll be overwriting with the current character.
1551
	 */
1552
	if (width != 1 ||
1553
	    gc->data.width != 1 ||
1554
	    gc->flags & GRID_FLAG_PADDING) {
1555
		xx = s->cx + width - 1;
1556
		while (++xx < screen_size_x(s)) {
1557
			grid_view_get_cell(gd, xx, s->cy, &tmp_gc);
1558
			if (~tmp_gc.flags & GRID_FLAG_PADDING)
1559
				break;
1560
			grid_view_set_cell(gd, xx, s->cy, &grid_default_cell);
1561
			done = 1;
1562
		}
1563
	}
1564
1565
	return (done);
1566
}
1567
1568
/* Set external clipboard. */
1569
void
1570
screen_write_setselection(struct screen_write_ctx *ctx, u_char *str, u_int len)
1571
{
1572
	struct tty_ctx	ttyctx;
1573
1574
	screen_write_initctx(ctx, &ttyctx);
1575
	ttyctx.ptr = str;
1576
	ttyctx.num = len;
1577
1578
	tty_write(tty_cmd_setselection, &ttyctx);
1579
}
1580
1581
/* Write unmodified string. */
1582
void
1583
screen_write_rawstring(struct screen_write_ctx *ctx, u_char *str, u_int len)
1584
{
1585
	struct tty_ctx	ttyctx;
1586
1587
	screen_write_initctx(ctx, &ttyctx);
1588
	ttyctx.ptr = str;
1589
	ttyctx.num = len;
1590
1591
	tty_write(tty_cmd_rawstring, &ttyctx);
1592
}