(Fdump_emacs): Fix format string.
[bpt/emacs.git] / src / fringe.c
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1/* Fringe handling (split from xdisp.c).
2 Copyright (C) 1985,86,87,88,93,94,95,97,98,99,2000,01,02,03,04
3 Free Software Foundation, Inc.
4
5This file is part of GNU Emacs.
6
7GNU Emacs is free software; you can redistribute it and/or modify
8it under the terms of the GNU General Public License as published by
9the Free Software Foundation; either version 2, or (at your option)
10any later version.
11
12GNU Emacs is distributed in the hope that it will be useful,
13but WITHOUT ANY WARRANTY; without even the implied warranty of
14MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15GNU General Public License for more details.
16
17You should have received a copy of the GNU General Public License
18along with GNU Emacs; see the file COPYING. If not, write to
19the Free Software Foundation, Inc., 59 Temple Place - Suite 330,
20Boston, MA 02111-1307, USA. */
21
22#include <config.h>
23#include <stdio.h>
24
25#include "lisp.h"
26#include "frame.h"
27#include "window.h"
28#include "dispextern.h"
29#include "buffer.h"
30#include "blockinput.h"
31
32#ifdef HAVE_WINDOW_SYSTEM
33
7a2a85be 34extern Lisp_Object Qfringe;
2d05deef 35extern Lisp_Object Qtop, Qbottom, Qcenter;
5797a7a0 36extern Lisp_Object Qup, Qdown, Qleft, Qright;
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37
38/* Non-nil means that newline may flow into the right fringe. */
39
40Lisp_Object Voverflow_newline_into_fringe;
41
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42/* List of known fringe bitmap symbols.
43
44 The fringe bitmap number is stored in the `fringe' property on
45 those symbols. Names for the built-in bitmaps are installed by
46 loading fringe.el.
47 */
48
49Lisp_Object Vfringe_bitmaps;
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50
51enum fringe_bitmap_type
52{
53 NO_FRINGE_BITMAP = 0,
54 UNDEF_FRINGE_BITMAP,
55 LEFT_TRUNCATION_BITMAP,
56 RIGHT_TRUNCATION_BITMAP,
57 UP_ARROW_BITMAP,
58 DOWN_ARROW_BITMAP,
59 CONTINUED_LINE_BITMAP,
60 CONTINUATION_LINE_BITMAP,
61 OVERLAY_ARROW_BITMAP,
62 TOP_LEFT_ANGLE_BITMAP,
63 TOP_RIGHT_ANGLE_BITMAP,
64 BOTTOM_LEFT_ANGLE_BITMAP,
65 BOTTOM_RIGHT_ANGLE_BITMAP,
66 LEFT_BRACKET_BITMAP,
67 RIGHT_BRACKET_BITMAP,
68 FILLED_BOX_CURSOR_BITMAP,
69 HOLLOW_BOX_CURSOR_BITMAP,
70 HOLLOW_SQUARE_BITMAP,
71 BAR_CURSOR_BITMAP,
72 HBAR_CURSOR_BITMAP,
73 ZV_LINE_BITMAP,
74 MAX_STANDARD_FRINGE_BITMAPS
75};
76
77enum fringe_bitmap_align
78{
79 ALIGN_BITMAP_CENTER = 0,
80 ALIGN_BITMAP_TOP,
81 ALIGN_BITMAP_BOTTOM
82};
83
84struct fringe_bitmap
85{
0881a0fd 86 unsigned short *bits;
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87 unsigned height : 8;
88 unsigned width : 8;
89 unsigned period : 8;
90 unsigned align : 2;
91 unsigned dynamic : 1;
92};
93
94\f
95/***********************************************************************
96 Fringe bitmaps
97 ***********************************************************************/
98
99/* Undefined bitmap. A question mark. */
100/*
101 ..xxxx..
102 .xxxxxx.
103 xx....xx
104 xx....xx
105 ....xx..
106 ...xx...
107 ...xx...
108 ........
109 ...xx...
110 ...xx...
111*/
0881a0fd 112static unsigned short unknown_bits[] = {
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113 0x3c, 0x7e, 0x7e, 0x0c, 0x18, 0x18, 0x00, 0x18, 0x18};
114
115/* An arrow like this: `<-'. */
116/*
117 ...xx...
118 ..xx....
119 .xx.....
120 xxxxxx..
121 xxxxxx..
122 .xx.....
123 ..xx....
124 ...xx...
125*/
0881a0fd 126static unsigned short left_arrow_bits[] = {
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127 0x18, 0x30, 0x60, 0xfc, 0xfc, 0x60, 0x30, 0x18};
128
129
130/* Right truncation arrow bitmap `->'. */
131/*
132 ...xx...
133 ....xx..
134 .....xx.
135 ..xxxxxx
136 ..xxxxxx
137 .....xx.
138 ....xx..
139 ...xx...
140*/
0881a0fd 141static unsigned short right_arrow_bits[] = {
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142 0x18, 0x0c, 0x06, 0x3f, 0x3f, 0x06, 0x0c, 0x18};
143
144
145/* Up arrow bitmap. */
146/*
147 ...xx...
148 ..xxxx..
149 .xxxxxx.
150 xxxxxxxx
151 ...xx...
152 ...xx...
153 ...xx...
154 ...xx...
155*/
0881a0fd 156static unsigned short up_arrow_bits[] = {
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157 0x18, 0x3c, 0x7e, 0xff, 0x18, 0x18, 0x18, 0x18};
158
159
160/* Down arrow bitmap. */
161/*
162 ...xx...
163 ...xx...
164 ...xx...
165 ...xx...
166 xxxxxxxx
167 .xxxxxx.
168 ..xxxx..
169 ...xx...
170*/
0881a0fd 171static unsigned short down_arrow_bits[] = {
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172 0x18, 0x18, 0x18, 0x18, 0xff, 0x7e, 0x3c, 0x18};
173
174/* Marker for continued lines. */
175/*
176 ..xxxx..
177 ..xxxxx.
178 ......xx
179 ..x..xxx
180 ..xxxxxx
181 ..xxxxx.
182 ..xxxx..
183 ..xxxxx.
184*/
0881a0fd 185static unsigned short continued_bits[] = {
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186 0x3c, 0x3e, 0x03, 0x27, 0x3f, 0x3e, 0x3c, 0x3e};
187
188/* Marker for continuation lines. */
189/*
190 ..xxxx..
191 .xxxxx..
192 xx......
193 xxx..x..
194 xxxxxx..
195 .xxxxx..
196 ..xxxx..
197 .xxxxx..
198*/
0881a0fd 199static unsigned short continuation_bits[] = {
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200 0x3c, 0x7c, 0xc0, 0xe4, 0xfc, 0x7c, 0x3c, 0x7c};
201
202/* Overlay arrow bitmap. A triangular arrow. */
203/*
204 xx......
205 xxxx....
206 xxxxx...
207 xxxxxx..
208 xxxxxx..
209 xxxxx...
210 xxxx....
211 xx......
212*/
0881a0fd 213static unsigned short ov_bits[] = {
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214 0xc0, 0xf0, 0xf8, 0xfc, 0xfc, 0xf8, 0xf0, 0xc0};
215
216#if 0
217/* Reverse Overlay arrow bitmap. A triangular arrow. */
218/*
219 ......xx
220 ....xxxx
221 ...xxxxx
222 ..xxxxxx
223 ..xxxxxx
224 ...xxxxx
225 ....xxxx
226 ......xx
227*/
0881a0fd 228static unsigned short rev_ov_bits[] = {
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229 0x03, 0x0f, 0x1f, 0x3f, 0x3f, 0x1f, 0x0f, 0x03};
230#endif
231
232/* First line bitmap. An top-left angle. */
233/*
234 xxxxxx..
235 xxxxxx..
236 xx......
237 xx......
238 xx......
239 xx......
240 xx......
241 ........
242*/
0881a0fd 243static unsigned short top_left_angle_bits[] = {
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244 0xfc, 0xfc, 0xc0, 0xc0, 0xc0, 0xc0, 0xc0, 0x00};
245
246/* First line bitmap. An right-up angle. */
247/*
248 ..xxxxxx
249 ..xxxxxx
250 ......xx
251 ......xx
252 ......xx
253 ......xx
254 ......xx
255 ........
256*/
0881a0fd 257static unsigned short top_right_angle_bits[] = {
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258 0x3f, 0x3f, 0x03, 0x03, 0x03, 0x03, 0x03, 0x00};
259
260/* Last line bitmap. An left-down angle. */
261/*
262 ........
263 xx......
264 xx......
265 xx......
266 xx......
267 xx......
268 xxxxxx..
269 xxxxxx..
270*/
0881a0fd 271static unsigned short bottom_left_angle_bits[] = {
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272 0x00, 0xc0, 0xc0, 0xc0, 0xc0, 0xc0, 0xfc, 0xfc};
273
274/* Last line bitmap. An right-down angle. */
275/*
276 ........
277 ......xx
278 ......xx
279 ......xx
280 ......xx
281 ......xx
282 ..xxxxxx
283 ..xxxxxx
284*/
0881a0fd 285static unsigned short bottom_right_angle_bits[] = {
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286 0x00, 0x03, 0x03, 0x03, 0x03, 0x03, 0x3f, 0x3f};
287
288/* First/last line bitmap. An left bracket. */
289/*
290 xxxxxx..
291 xxxxxx..
292 xx......
293 xx......
294 xx......
295 xx......
296 xx......
297 xx......
298 xxxxxx..
299 xxxxxx..
300*/
0881a0fd 301static unsigned short left_bracket_bits[] = {
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302 0xfc, 0xfc, 0xc0, 0xc0, 0xc0, 0xc0, 0xc0, 0xc0, 0xfc, 0xfc};
303
304/* First/last line bitmap. An right bracket. */
305/*
306 ..xxxxxx
307 ..xxxxxx
308 ......xx
309 ......xx
310 ......xx
311 ......xx
312 ......xx
313 ......xx
314 ..xxxxxx
315 ..xxxxxx
316*/
0881a0fd 317static unsigned short right_bracket_bits[] = {
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318 0x3f, 0x3f, 0x03, 0x03, 0x03, 0x03, 0x03, 0x03, 0x3f, 0x3f};
319
320/* Filled box cursor bitmap. A filled box; max 13 pixels high. */
321/*
322 xxxxxxx.
323 xxxxxxx.
324 xxxxxxx.
325 xxxxxxx.
326 xxxxxxx.
327 xxxxxxx.
328 xxxxxxx.
329 xxxxxxx.
330 xxxxxxx.
331 xxxxxxx.
332 xxxxxxx.
333 xxxxxxx.
334 xxxxxxx.
335*/
0881a0fd 336static unsigned short filled_box_cursor_bits[] = {
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337 0xfe, 0xfe, 0xfe, 0xfe, 0xfe, 0xfe, 0xfe, 0xfe, 0xfe, 0xfe, 0xfe, 0xfe, 0xfe};
338
339/* Hollow box cursor bitmap. A hollow box; max 13 pixels high. */
340/*
341 xxxxxxx.
342 x.....x.
343 x.....x.
344 x.....x.
345 x.....x.
346 x.....x.
347 x.....x.
348 x.....x.
349 x.....x.
350 x.....x.
351 x.....x.
352 x.....x.
353 xxxxxxx.
354*/
0881a0fd 355static unsigned short hollow_box_cursor_bits[] = {
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356 0xfe, 0x82, 0x82, 0x82, 0x82, 0x82, 0x82, 0x82, 0x82, 0x82, 0x82, 0x82, 0xfe};
357
358/* Bar cursor bitmap. A vertical bar; max 13 pixels high. */
359/*
360 xx......
361 xx......
362 xx......
363 xx......
364 xx......
365 xx......
366 xx......
367 xx......
368 xx......
369 xx......
370 xx......
371 xx......
372 xx......
373*/
0881a0fd 374static unsigned short bar_cursor_bits[] = {
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375 0xc0, 0xc0, 0xc0, 0xc0, 0xc0, 0xc0, 0xc0, 0xc0, 0xc0, 0xc0, 0xc0, 0xc0, 0xc0};
376
377/* HBar cursor bitmap. A horisontal bar; 2 pixels high. */
378/*
379 xxxxxxx.
380 xxxxxxx.
381*/
0881a0fd 382static unsigned short hbar_cursor_bits[] = {
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383 0xfe, 0xfe};
384
385
386/* Bitmap drawn to indicate lines not displaying text if
387 `indicate-empty-lines' is non-nil. */
388/*
389 ........
390 ..xxxx..
391 ........
392 ........
393 ..xxxx..
394 ........
395*/
0881a0fd 396static unsigned short zv_bits[] = {
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397 0x00, 0x3c, 0x00, 0x00, 0x3c, 0x00, 0x00, 0x3c, 0x00,
398 0x00, 0x3c, 0x00, 0x00, 0x3c, 0x00, 0x00, 0x3c, 0x00,
399 0x00, 0x3c, 0x00, 0x00, 0x3c, 0x00, 0x00, 0x3c, 0x00,
400 0x00, 0x3c, 0x00, 0x00, 0x3c, 0x00, 0x00, 0x3c, 0x00,
401 0x00, 0x3c, 0x00, 0x00, 0x3c, 0x00, 0x00, 0x3c, 0x00,
402 0x00, 0x3c, 0x00, 0x00, 0x3c, 0x00, 0x00, 0x3c, 0x00,
403 0x00, 0x3c, 0x00, 0x00, 0x3c, 0x00, 0x00, 0x3c, 0x00,
404 0x00, 0x3c, 0x00, 0x00, 0x3c, 0x00, 0x00, 0x3c, 0x00};
405
406/* Hollow square bitmap. */
407/*
408 .xxxxxx.
409 .x....x.
410 .x....x.
411 .x....x.
412 .x....x.
413 .xxxxxx.
414*/
0881a0fd 415static unsigned short hollow_square_bits[] = {
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416 0x7e, 0x42, 0x42, 0x42, 0x42, 0x7e};
417
418
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419#define BYTES_PER_BITMAP_ROW (sizeof (unsigned short))
420#define STANDARD_BITMAP_HEIGHT(bits) (sizeof (bits)/BYTES_PER_BITMAP_ROW)
421#define FRBITS(bits) bits, STANDARD_BITMAP_HEIGHT (bits)
2d05deef 422
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423struct fringe_bitmap standard_bitmaps[MAX_STANDARD_FRINGE_BITMAPS] =
424{
425 { NULL, 0, 0, 0, 0, 0 }, /* NO_FRINGE_BITMAP */
426 { FRBITS (unknown_bits), 8, 0, ALIGN_BITMAP_CENTER, 0 },
427 { FRBITS (left_arrow_bits), 8, 0, ALIGN_BITMAP_CENTER, 0 },
428 { FRBITS (right_arrow_bits), 8, 0, ALIGN_BITMAP_CENTER, 0 },
429 { FRBITS (up_arrow_bits), 8, 0, ALIGN_BITMAP_TOP, 0 },
430 { FRBITS (down_arrow_bits), 8, 0, ALIGN_BITMAP_BOTTOM, 0 },
431 { FRBITS (continued_bits), 8, 0, ALIGN_BITMAP_CENTER, 0 },
432 { FRBITS (continuation_bits), 8, 0, ALIGN_BITMAP_CENTER, 0 },
433 { FRBITS (ov_bits), 8, 0, ALIGN_BITMAP_CENTER, 0 },
434 { FRBITS (top_left_angle_bits), 8, 0, ALIGN_BITMAP_TOP, 0 },
435 { FRBITS (top_right_angle_bits), 8, 0, ALIGN_BITMAP_TOP, 0 },
436 { FRBITS (bottom_left_angle_bits), 8, 0, ALIGN_BITMAP_BOTTOM, 0 },
437 { FRBITS (bottom_right_angle_bits), 8, 0, ALIGN_BITMAP_BOTTOM, 0 },
438 { FRBITS (left_bracket_bits), 8, 0, ALIGN_BITMAP_CENTER, 0 },
439 { FRBITS (right_bracket_bits), 8, 0, ALIGN_BITMAP_CENTER, 0 },
440 { FRBITS (filled_box_cursor_bits), 8, 0, ALIGN_BITMAP_CENTER, 0 },
441 { FRBITS (hollow_box_cursor_bits), 8, 0, ALIGN_BITMAP_CENTER, 0 },
442 { FRBITS (hollow_square_bits), 8, 0, ALIGN_BITMAP_CENTER, 0 },
443 { FRBITS (bar_cursor_bits), 8, 0, ALIGN_BITMAP_CENTER, 0 },
444 { FRBITS (hbar_cursor_bits), 8, 0, ALIGN_BITMAP_BOTTOM, 0 },
445 { FRBITS (zv_bits), 8, 3, ALIGN_BITMAP_TOP, 0 },
446};
447
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448static struct fringe_bitmap **fringe_bitmaps;
449static unsigned *fringe_faces;
450static int max_fringe_bitmaps;
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451
452static int max_used_fringe_bitmap = MAX_STANDARD_FRINGE_BITMAPS;
453
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454
455/* Lookup bitmap number for symbol BITMAP.
456 Return 0 if not a bitmap. */
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457
458int
4cce0ab7 459lookup_fringe_bitmap (bitmap)
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460 Lisp_Object bitmap;
461{
462 int bn;
463
4cce0ab7 464 bitmap = Fget (bitmap, Qfringe);
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465 if (!INTEGERP (bitmap))
466 return 0;
467
468 bn = XINT (bitmap);
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469 if (bn > NO_FRINGE_BITMAP
470 && bn < max_used_fringe_bitmap
471 && (bn < MAX_STANDARD_FRINGE_BITMAPS
472 || fringe_bitmaps[bn] != NULL))
473 return bn;
474
475 return 0;
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476}
477
478/* Get fringe bitmap name for bitmap number BN.
479
480 Found by traversing Vfringe_bitmaps comparing BN to the
481 fringe property for each symbol.
482
483 Return BN if not found in Vfringe_bitmaps. */
484
485static Lisp_Object
486get_fringe_bitmap_name (bn)
487 int bn;
488{
489 Lisp_Object bitmaps;
490 Lisp_Object num;
491
492 /* Zero means no bitmap -- return nil. */
493 if (bn <= 0)
494 return Qnil;
495
496 bitmaps = Vfringe_bitmaps;
497 num = make_number (bn);
498
499 while (CONSP (bitmaps))
500 {
501 Lisp_Object bitmap = XCAR (bitmaps);
502 if (EQ (num, Fget (bitmap, Qfringe)))
503 return bitmap;
504 bitmaps = XCDR (bitmaps);
505 }
506
507 return num;
508}
509
510
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511/* Draw the bitmap WHICH in one of the left or right fringes of
512 window W. ROW is the glyph row for which to display the bitmap; it
513 determines the vertical position at which the bitmap has to be
514 drawn.
515 LEFT_P is 1 for left fringe, 0 for right fringe.
516*/
517
518void
519draw_fringe_bitmap_1 (w, row, left_p, overlay, which)
520 struct window *w;
521 struct glyph_row *row;
522 int left_p, overlay;
523 enum fringe_bitmap_type which;
524{
525 struct frame *f = XFRAME (WINDOW_FRAME (w));
526 struct draw_fringe_bitmap_params p;
527 struct fringe_bitmap *fb;
528 int period;
529 int face_id = DEFAULT_FACE_ID;
530
531 p.cursor_p = 0;
532 p.overlay_p = (overlay & 1) == 1;
533 p.cursor_p = (overlay & 2) == 2;
534
535 if (which != NO_FRINGE_BITMAP)
536 {
537 }
538 else if (left_p)
539 {
540 which = row->left_fringe_bitmap;
541 face_id = row->left_fringe_face_id;
542 }
543 else
544 {
545 which = row->right_fringe_bitmap;
546 face_id = row->right_fringe_face_id;
547 }
548
549 if (face_id == DEFAULT_FACE_ID)
550 face_id = fringe_faces[which];
551
552 fb = fringe_bitmaps[which];
553 if (fb == NULL)
554 fb = &standard_bitmaps[which < MAX_STANDARD_FRINGE_BITMAPS
555 ? which : UNDEF_FRINGE_BITMAP];
556
557 period = fb->period;
558
559 /* Convert row to frame coordinates. */
560 p.y = WINDOW_TO_FRAME_PIXEL_Y (w, row->y);
561
562 p.which = which;
563 p.bits = fb->bits;
564 p.wd = fb->width;
565
566 p.h = fb->height;
567 p.dh = (period > 0 ? (p.y % period) : 0);
568 p.h -= p.dh;
569 /* Clip bitmap if too high. */
570 if (p.h > row->height)
571 p.h = row->height;
572
573 p.face = FACE_FROM_ID (f, face_id);
574
575 if (p.face == NULL)
576 {
577 /* Why does this happen? ++kfs */
578 return;
579 }
580
581 PREPARE_FACE_FOR_DISPLAY (f, p.face);
582
583 /* Clear left fringe if no bitmap to draw or if bitmap doesn't fill
584 the fringe. */
585 p.bx = -1;
586 if (left_p)
587 {
588 int wd = WINDOW_LEFT_FRINGE_WIDTH (w);
589 int x = window_box_left (w, (WINDOW_HAS_FRINGES_OUTSIDE_MARGINS (w)
590 ? LEFT_MARGIN_AREA
591 : TEXT_AREA));
592 if (p.wd > wd)
593 p.wd = wd;
594 p.x = x - p.wd - (wd - p.wd) / 2;
595
596 if (p.wd < wd || row->height > p.h)
597 {
598 /* If W has a vertical border to its left, don't draw over it. */
599 wd -= ((!WINDOW_LEFTMOST_P (w)
600 && !WINDOW_HAS_VERTICAL_SCROLL_BAR (w))
601 ? 1 : 0);
602 p.bx = x - wd;
603 p.nx = wd;
604 }
605 }
606 else
607 {
608 int x = window_box_right (w,
609 (WINDOW_HAS_FRINGES_OUTSIDE_MARGINS (w)
610 ? RIGHT_MARGIN_AREA
611 : TEXT_AREA));
612 int wd = WINDOW_RIGHT_FRINGE_WIDTH (w);
613 if (p.wd > wd)
614 p.wd = wd;
615 p.x = x + (wd - p.wd) / 2;
616 /* Clear right fringe if no bitmap to draw of if bitmap doesn't fill
617 the fringe. */
618 if (p.wd < wd || row->height > p.h)
619 {
620 p.bx = x;
621 p.nx = wd;
622 }
623 }
624
625 if (p.bx >= 0)
626 {
627 int header_line_height = WINDOW_HEADER_LINE_HEIGHT (w);
628
629 p.by = WINDOW_TO_FRAME_PIXEL_Y (w, max (header_line_height, row->y));
630 p.ny = row->visible_height;
631 }
632
633 /* Adjust y to the offset in the row to start drawing the bitmap. */
634 switch (fb->align)
635 {
636 case ALIGN_BITMAP_CENTER:
637 p.y += (row->height - p.h) / 2;
638 break;
639 case ALIGN_BITMAP_BOTTOM:
640 p.h = fb->height;
641 p.y += (row->visible_height - p.h);
642 break;
643 case ALIGN_BITMAP_TOP:
644 break;
645 }
646
647 rif->draw_fringe_bitmap (w, row, &p);
648}
649
650void
651draw_fringe_bitmap (w, row, left_p)
652 struct window *w;
653 struct glyph_row *row;
654 int left_p;
655{
656 int overlay = 0;
657
658 if (!left_p && row->cursor_in_fringe_p)
659 {
660 int cursor = NO_FRINGE_BITMAP;
661
662 switch (w->phys_cursor_type)
663 {
664 case HOLLOW_BOX_CURSOR:
0881a0fd 665 if (row->visible_height >= STANDARD_BITMAP_HEIGHT (hollow_box_cursor_bits))
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666 cursor = HOLLOW_BOX_CURSOR_BITMAP;
667 else
668 cursor = HOLLOW_SQUARE_BITMAP;
669 break;
670 case FILLED_BOX_CURSOR:
671 cursor = FILLED_BOX_CURSOR_BITMAP;
672 break;
673 case BAR_CURSOR:
674 cursor = BAR_CURSOR_BITMAP;
675 break;
676 case HBAR_CURSOR:
677 cursor = HBAR_CURSOR_BITMAP;
678 break;
679 case NO_CURSOR:
680 default:
681 w->phys_cursor_on_p = 0;
682 row->cursor_in_fringe_p = 0;
683 break;
684 }
685 if (cursor != NO_FRINGE_BITMAP)
686 {
687 draw_fringe_bitmap_1 (w, row, 0, 2, cursor);
688 overlay = cursor == FILLED_BOX_CURSOR_BITMAP ? 3 : 1;
689 }
690 }
691
692 draw_fringe_bitmap_1 (w, row, left_p, overlay, NO_FRINGE_BITMAP);
693
694 if (left_p && row->overlay_arrow_p)
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695 draw_fringe_bitmap_1 (w, row, 1, 1,
696 (w->overlay_arrow_bitmap
697 ? w->overlay_arrow_bitmap
698 : OVERLAY_ARROW_BITMAP));
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699}
700
701
702/* Draw fringe bitmaps for glyph row ROW on window W. Call this
703 function with input blocked. */
704
705void
706draw_row_fringe_bitmaps (w, row)
707 struct window *w;
708 struct glyph_row *row;
709{
710 xassert (interrupt_input_blocked);
711
712 /* If row is completely invisible, because of vscrolling, we
713 don't have to draw anything. */
714 if (row->visible_height <= 0)
715 return;
716
717 if (WINDOW_LEFT_FRINGE_WIDTH (w) != 0)
718 draw_fringe_bitmap (w, row, 1);
719
720 if (WINDOW_RIGHT_FRINGE_WIDTH (w) != 0)
721 draw_fringe_bitmap (w, row, 0);
722}
723
724/* Draw the fringes of window W. Only fringes for rows marked for
11491cbb 725 update in redraw_fringe_bitmaps_p are drawn.
2d05deef 726
11491cbb
KS
727 Return >0 if left or right fringe was redrawn in any way.
728
729 If NO_FRINGE is non-zero, also return >0 if either fringe has zero width.
730
731 A return value >0 indicates that the vertical line between windows
732 needs update (as it may be drawn in the fringe).
733*/
734
735int
736draw_window_fringes (w, no_fringe)
2d05deef 737 struct window *w;
11491cbb 738 int no_fringe;
2d05deef
KS
739{
740 struct glyph_row *row;
741 int yb = window_text_bottom_y (w);
742 int nrows = w->current_matrix->nrows;
743 int y = 0, rn;
11491cbb 744 int updated = 0;
2d05deef
KS
745
746 if (w->pseudo_window_p)
11491cbb
KS
747 return 0;
748
749 /* Must draw line if no fringe */
750 if (no_fringe
751 && (WINDOW_LEFT_FRINGE_WIDTH (w) == 0
752 || WINDOW_RIGHT_FRINGE_WIDTH (w) == 0))
753 updated++;
2d05deef
KS
754
755 for (y = 0, rn = 0, row = w->current_matrix->rows;
756 y < yb && rn < nrows;
757 y += row->height, ++row, ++rn)
758 {
759 if (!row->redraw_fringe_bitmaps_p)
760 continue;
761 draw_row_fringe_bitmaps (w, row);
762 row->redraw_fringe_bitmaps_p = 0;
11491cbb 763 updated++;
2d05deef 764 }
11491cbb
KS
765
766 return updated;
2d05deef
KS
767}
768
769
770/* Recalculate the bitmaps to show in the fringes of window W.
771 If FORCE_P is 0, only mark rows with modified bitmaps for update in
772 redraw_fringe_bitmaps_p; else mark all rows for update. */
773
774int
775update_window_fringes (w, force_p)
776 struct window *w;
777 int force_p;
778{
779 struct glyph_row *row, *cur = 0;
780 int yb = window_text_bottom_y (w);
781 int rn, nrows = w->current_matrix->nrows;
782 int y;
783 int redraw_p = 0;
5797a7a0
KS
784 Lisp_Object boundary_top = Qnil, boundary_bot = Qnil;
785 Lisp_Object arrow_top = Qnil, arrow_bot = Qnil;
786 Lisp_Object empty_pos;
787 Lisp_Object ind = Qnil;
2d05deef
KS
788
789 if (w->pseudo_window_p)
790 return 0;
791
792 if (!MINI_WINDOW_P (w)
793 && (ind = XBUFFER (w->buffer)->indicate_buffer_boundaries, !NILP (ind)))
794 {
5797a7a0
KS
795 if (EQ (ind, Qleft) || EQ (ind, Qright))
796 boundary_top = boundary_bot = arrow_top = arrow_bot = ind;
797 else if (CONSP (ind) && CONSP (XCAR (ind)))
798 {
799 Lisp_Object pos;
800 if (pos = Fassq (Qt, ind), !NILP (pos))
801 boundary_top = boundary_bot = arrow_top = arrow_bot = XCDR (pos);
802 if (pos = Fassq (Qtop, ind), !NILP (pos))
803 boundary_top = XCDR (pos);
804 if (pos = Fassq (Qbottom, ind), !NILP (pos))
805 boundary_bot = XCDR (pos);
806 if (pos = Fassq (Qup, ind), !NILP (pos))
807 arrow_top = XCDR (pos);
808 if (pos = Fassq (Qdown, ind), !NILP (pos))
809 arrow_bot = XCDR (pos);
810 }
2d05deef 811 else
5797a7a0
KS
812 ind = Qnil;
813 }
2d05deef 814
5797a7a0
KS
815 if (!NILP (ind))
816 {
817 int do_eob = 1, do_bob = 1;
2d05deef
KS
818
819 for (y = 0, rn = 0;
820 y < yb && rn < nrows;
821 y += row->height, ++rn)
822 {
823 unsigned indicate_bob_p, indicate_top_line_p;
824 unsigned indicate_eob_p, indicate_bottom_line_p;
bffe8c26 825
2d05deef
KS
826 row = w->desired_matrix->rows + rn;
827 if (!row->enabled_p)
828 row = w->current_matrix->rows + rn;
829
830 indicate_bob_p = row->indicate_bob_p;
831 indicate_top_line_p = row->indicate_top_line_p;
832 indicate_eob_p = row->indicate_eob_p;
833 indicate_bottom_line_p = row->indicate_bottom_line_p;
bffe8c26 834
2d05deef
KS
835 row->indicate_bob_p = row->indicate_top_line_p = 0;
836 row->indicate_eob_p = row->indicate_bottom_line_p = 0;
837
5797a7a0 838 if (!NILP (boundary_top)
2d05deef
KS
839 && MATRIX_ROW_START_CHARPOS (row) <= BUF_BEGV (XBUFFER (w->buffer)))
840 row->indicate_bob_p = do_bob, do_bob = 0;
5797a7a0 841 else if (!NILP (arrow_top)
2d05deef
KS
842 && (WINDOW_WANTS_HEADER_LINE_P (w) ? 1 : 0) == rn)
843 row->indicate_top_line_p = 1;
844
5797a7a0 845 if (!NILP (boundary_bot)
2d05deef
KS
846 && MATRIX_ROW_END_CHARPOS (row) >= BUF_ZV (XBUFFER (w->buffer)))
847 row->indicate_eob_p = do_eob, do_eob = 0;
5797a7a0 848 else if (!NILP (arrow_bot)
2d05deef
KS
849 && y + row->height >= yb)
850 row->indicate_bottom_line_p = 1;
851
852 if (indicate_bob_p != row->indicate_bob_p
853 || indicate_top_line_p != row->indicate_top_line_p
854 || indicate_eob_p != row->indicate_eob_p
855 || indicate_bottom_line_p != row->indicate_bottom_line_p)
856 row->redraw_fringe_bitmaps_p = 1;
857 }
858 }
859
5797a7a0
KS
860 empty_pos = XBUFFER (w->buffer)->indicate_empty_lines;
861 if (!NILP (empty_pos) && !EQ (empty_pos, Qright))
862 empty_pos = WINDOW_LEFT_FRINGE_WIDTH (w) == 0 ? Qright : Qleft;
2d05deef
KS
863
864 for (y = 0, rn = 0;
865 y < yb && rn < nrows;
866 y += row->height, rn++)
867 {
868 enum fringe_bitmap_type left, right;
869 unsigned left_face_id, right_face_id;
870
871 row = w->desired_matrix->rows + rn;
872 cur = w->current_matrix->rows + rn;
873 if (!row->enabled_p)
874 row = cur;
875
876 left_face_id = right_face_id = DEFAULT_FACE_ID;
877
878 /* Decide which bitmap to draw in the left fringe. */
879 if (WINDOW_LEFT_FRINGE_WIDTH (w) == 0)
880 left = NO_FRINGE_BITMAP;
881 else if (row->left_user_fringe_bitmap != NO_FRINGE_BITMAP)
882 {
883 left = row->left_user_fringe_bitmap;
884 left_face_id = row->left_user_fringe_face_id;
885 }
5797a7a0
KS
886 else if (row->indicate_bob_p && EQ (boundary_top, Qleft))
887 left = ((row->indicate_eob_p && EQ (boundary_bot, Qleft))
2d05deef 888 ? LEFT_BRACKET_BITMAP : TOP_LEFT_ANGLE_BITMAP);
5797a7a0 889 else if (row->indicate_eob_p && EQ (boundary_bot, Qleft))
2d05deef
KS
890 left = BOTTOM_LEFT_ANGLE_BITMAP;
891 else if (row->truncated_on_left_p)
892 left = LEFT_TRUNCATION_BITMAP;
893 else if (MATRIX_ROW_CONTINUATION_LINE_P (row))
894 left = CONTINUATION_LINE_BITMAP;
5797a7a0 895 else if (row->indicate_empty_line_p && EQ (empty_pos, Qleft))
2d05deef 896 left = ZV_LINE_BITMAP;
5797a7a0 897 else if (row->indicate_top_line_p && EQ (arrow_top, Qleft))
2d05deef 898 left = UP_ARROW_BITMAP;
5797a7a0 899 else if (row->indicate_bottom_line_p && EQ (arrow_bot, Qleft))
2d05deef
KS
900 left = DOWN_ARROW_BITMAP;
901 else
902 left = NO_FRINGE_BITMAP;
903
904 /* Decide which bitmap to draw in the right fringe. */
905 if (WINDOW_RIGHT_FRINGE_WIDTH (w) == 0)
906 right = NO_FRINGE_BITMAP;
907 else if (row->right_user_fringe_bitmap != NO_FRINGE_BITMAP)
908 {
909 right = row->right_user_fringe_bitmap;
910 right_face_id = row->right_user_fringe_face_id;
911 }
5797a7a0
KS
912 else if (row->indicate_bob_p && EQ (boundary_top, Qright))
913 right = ((row->indicate_eob_p && EQ (boundary_bot, Qright))
2d05deef 914 ? RIGHT_BRACKET_BITMAP : TOP_RIGHT_ANGLE_BITMAP);
5797a7a0 915 else if (row->indicate_eob_p && EQ (boundary_bot, Qright))
2d05deef
KS
916 right = BOTTOM_RIGHT_ANGLE_BITMAP;
917 else if (row->truncated_on_right_p)
918 right = RIGHT_TRUNCATION_BITMAP;
919 else if (row->continued_p)
920 right = CONTINUED_LINE_BITMAP;
5797a7a0 921 else if (row->indicate_top_line_p && EQ (arrow_top, Qright))
2d05deef 922 right = UP_ARROW_BITMAP;
5797a7a0 923 else if (row->indicate_bottom_line_p && EQ (arrow_bot, Qright))
2d05deef 924 right = DOWN_ARROW_BITMAP;
5797a7a0 925 else if (row->indicate_empty_line_p && EQ (empty_pos, Qright))
2d05deef
KS
926 right = ZV_LINE_BITMAP;
927 else
928 right = NO_FRINGE_BITMAP;
929
930 if (force_p
931 || row->y != cur->y
932 || row->visible_height != cur->visible_height
81544a1d 933 || row->ends_at_zv_p != cur->ends_at_zv_p
2d05deef
KS
934 || left != cur->left_fringe_bitmap
935 || right != cur->right_fringe_bitmap
936 || left_face_id != cur->left_fringe_face_id
937 || right_face_id != cur->right_fringe_face_id
938 || cur->redraw_fringe_bitmaps_p)
939 {
940 redraw_p = row->redraw_fringe_bitmaps_p = cur->redraw_fringe_bitmaps_p = 1;
941 cur->left_fringe_bitmap = left;
942 cur->right_fringe_bitmap = right;
943 cur->left_fringe_face_id = left_face_id;
944 cur->right_fringe_face_id = right_face_id;
945 }
946
947 if (row->overlay_arrow_p != cur->overlay_arrow_p)
948 {
949 redraw_p = row->redraw_fringe_bitmaps_p = cur->redraw_fringe_bitmaps_p = 1;
950 cur->overlay_arrow_p = row->overlay_arrow_p;
951 }
952
953 row->left_fringe_bitmap = left;
954 row->right_fringe_bitmap = right;
955 row->left_fringe_face_id = left_face_id;
956 row->right_fringe_face_id = right_face_id;
81544a1d
KS
957
958 if (rn > 0 && row->redraw_fringe_bitmaps_p)
959 row[-1].redraw_fringe_bitmaps_p = cur[-1].redraw_fringe_bitmaps_p = 1;
2d05deef
KS
960 }
961
962 return redraw_p;
963}
964
965
bffe8c26 966/* Compute actual fringe widths for frame F.
2d05deef
KS
967
968 If REDRAW is 1, redraw F if the fringe settings was actually
969 modified and F is visible.
970
971 Since the combined left and right fringe must occupy an integral
972 number of columns, we may need to add some pixels to each fringe.
973 Typically, we add an equal amount (+/- 1 pixel) to each fringe,
974 but a negative width value is taken literally (after negating it).
975
11491cbb 976 We never make the fringes narrower than specified.
2d05deef
KS
977*/
978
979void
980compute_fringe_widths (f, redraw)
981 struct frame *f;
982 int redraw;
983{
984 int o_left = FRAME_LEFT_FRINGE_WIDTH (f);
985 int o_right = FRAME_RIGHT_FRINGE_WIDTH (f);
986 int o_cols = FRAME_FRINGE_COLS (f);
987
988 Lisp_Object left_fringe = Fassq (Qleft_fringe, f->param_alist);
989 Lisp_Object right_fringe = Fassq (Qright_fringe, f->param_alist);
990 int left_fringe_width, right_fringe_width;
991
992 if (!NILP (left_fringe))
993 left_fringe = Fcdr (left_fringe);
994 if (!NILP (right_fringe))
995 right_fringe = Fcdr (right_fringe);
996
997 left_fringe_width = ((NILP (left_fringe) || !INTEGERP (left_fringe)) ? 8 :
998 XINT (left_fringe));
999 right_fringe_width = ((NILP (right_fringe) || !INTEGERP (right_fringe)) ? 8 :
1000 XINT (right_fringe));
1001
1002 if (left_fringe_width || right_fringe_width)
1003 {
1004 int left_wid = left_fringe_width >= 0 ? left_fringe_width : -left_fringe_width;
1005 int right_wid = right_fringe_width >= 0 ? right_fringe_width : -right_fringe_width;
1006 int conf_wid = left_wid + right_wid;
1007 int font_wid = FRAME_COLUMN_WIDTH (f);
1008 int cols = (left_wid + right_wid + font_wid-1) / font_wid;
1009 int real_wid = cols * font_wid;
1010 if (left_wid && right_wid)
1011 {
1012 if (left_fringe_width < 0)
1013 {
1014 /* Left fringe width is fixed, adjust right fringe if necessary */
1015 FRAME_LEFT_FRINGE_WIDTH (f) = left_wid;
1016 FRAME_RIGHT_FRINGE_WIDTH (f) = real_wid - left_wid;
1017 }
1018 else if (right_fringe_width < 0)
1019 {
1020 /* Right fringe width is fixed, adjust left fringe if necessary */
1021 FRAME_LEFT_FRINGE_WIDTH (f) = real_wid - right_wid;
1022 FRAME_RIGHT_FRINGE_WIDTH (f) = right_wid;
1023 }
1024 else
1025 {
1026 /* Adjust both fringes with an equal amount.
1027 Note that we are doing integer arithmetic here, so don't
1028 lose a pixel if the total width is an odd number. */
1029 int fill = real_wid - conf_wid;
1030 FRAME_LEFT_FRINGE_WIDTH (f) = left_wid + fill/2;
1031 FRAME_RIGHT_FRINGE_WIDTH (f) = right_wid + fill - fill/2;
1032 }
1033 }
1034 else if (left_fringe_width)
1035 {
1036 FRAME_LEFT_FRINGE_WIDTH (f) = real_wid;
1037 FRAME_RIGHT_FRINGE_WIDTH (f) = 0;
1038 }
1039 else
1040 {
1041 FRAME_LEFT_FRINGE_WIDTH (f) = 0;
1042 FRAME_RIGHT_FRINGE_WIDTH (f) = real_wid;
1043 }
1044 FRAME_FRINGE_COLS (f) = cols;
1045 }
1046 else
1047 {
1048 FRAME_LEFT_FRINGE_WIDTH (f) = 0;
1049 FRAME_RIGHT_FRINGE_WIDTH (f) = 0;
1050 FRAME_FRINGE_COLS (f) = 0;
1051 }
1052
1053 if (redraw && FRAME_VISIBLE_P (f))
1054 if (o_left != FRAME_LEFT_FRINGE_WIDTH (f) ||
1055 o_right != FRAME_RIGHT_FRINGE_WIDTH (f) ||
1056 o_cols != FRAME_FRINGE_COLS (f))
1057 redraw_frame (f);
1058}
1059
7a2a85be 1060
4cce0ab7
KS
1061/* Free resources used by a user-defined bitmap. */
1062
1063int
7a2a85be
KS
1064destroy_fringe_bitmap (n)
1065 int n;
2d05deef 1066{
2d05deef
KS
1067 struct fringe_bitmap **fbp;
1068
2d05deef
KS
1069 fringe_faces[n] = FRINGE_FACE_ID;
1070
1071 fbp = &fringe_bitmaps[n];
1072 if (*fbp && (*fbp)->dynamic)
1073 {
f2be4fd0 1074 if (rif && rif->destroy_fringe_bitmap)
2d05deef
KS
1075 rif->destroy_fringe_bitmap (n);
1076 xfree (*fbp);
1077 *fbp = NULL;
1078 }
1079
1080 while (max_used_fringe_bitmap > MAX_STANDARD_FRINGE_BITMAPS
1081 && fringe_bitmaps[max_used_fringe_bitmap - 1] == NULL)
1082 max_used_fringe_bitmap--;
7a2a85be
KS
1083}
1084
1085
1086DEFUN ("destroy-fringe-bitmap", Fdestroy_fringe_bitmap, Sdestroy_fringe_bitmap,
1087 1, 1, 0,
1088 doc: /* Destroy fringe bitmap BITMAP.
1089If BITMAP overrides a standard fringe bitmap, the original bitmap is restored. */)
1090 (bitmap)
1091 Lisp_Object bitmap;
1092{
1093 int n;
7a2a85be 1094
4cce0ab7
KS
1095 CHECK_SYMBOL (bitmap);
1096 n = lookup_fringe_bitmap (bitmap);
1097 if (!n)
7a2a85be
KS
1098 return Qnil;
1099
1100 destroy_fringe_bitmap (n);
2d05deef 1101
4cce0ab7 1102 if (n >= MAX_STANDARD_FRINGE_BITMAPS)
7a2a85be 1103 {
4cce0ab7 1104 Vfringe_bitmaps = Fdelq (bitmap, Vfringe_bitmaps);
7a2a85be 1105 /* It would be better to remove the fringe property. */
4cce0ab7 1106 Fput (bitmap, Qfringe, Qnil);
7a2a85be 1107 }
4cce0ab7 1108
2d05deef
KS
1109 return Qnil;
1110}
1111
1112
1113/* Initialize bitmap bit.
0881a0fd
KS
1114
1115 On X, we bit-swap the built-in bitmaps and reduce bitmap
1116 from short to char array if width is <= 8 bits.
1117
bd231131
KS
1118 On MAC with big-endian CPU, we need to byte-swap each short.
1119
1120 On W32 and MAC (little endian), there's no need to do this.
2d05deef
KS
1121*/
1122
1123void
1124init_fringe_bitmap (which, fb, once_p)
1125 enum fringe_bitmap_type which;
1126 struct fringe_bitmap *fb;
1127 int once_p;
1128{
1129 if (once_p || fb->dynamic)
1130 {
0881a0fd
KS
1131#if defined (HAVE_X_WINDOWS)
1132 static unsigned char swap_nibble[16]
1133 = { 0x0, 0x8, 0x4, 0xc, /* 0000 1000 0100 1100 */
1134 0x2, 0xa, 0x6, 0xe, /* 0010 1010 0110 1110 */
1135 0x1, 0x9, 0x5, 0xd, /* 0001 1001 0101 1101 */
bd231131 1136 0x3, 0xb, 0x7, 0xf }; /* 0011 1011 0111 1111 */
0881a0fd 1137 unsigned short *bits = fb->bits;
2d05deef 1138 int j;
0881a0fd
KS
1139
1140 if (fb->width <= 8)
1141 {
1142 unsigned char *cbits = (unsigned char *)fb->bits;
1143 for (j = 0; j < fb->height; j++)
1144 {
1145 unsigned short b = *bits++;
1146 unsigned char c;
1147 c = (unsigned char)((swap_nibble[b & 0xf] << 4)
1148 | (swap_nibble[(b>>4) & 0xf]));
1149 *cbits++ = (c >> (8 - fb->width));
1150 }
1151 }
1152 else
2d05deef 1153 {
0881a0fd
KS
1154 for (j = 0; j < fb->height; j++)
1155 {
1156 unsigned short b = *bits;
1157 b = (unsigned short)((swap_nibble[b & 0xf] << 12)
1158 | (swap_nibble[(b>>4) & 0xf] << 8)
1159 | (swap_nibble[(b>>8) & 0xf] << 4)
1160 | (swap_nibble[(b>>12) & 0xf]));
1161 *bits++ = (b >> (16 - fb->width));
1162 }
2d05deef 1163 }
bd231131
KS
1164#endif /* HAVE_X_WINDOWS */
1165
1166#if defined (MAC_OS) && defined (WORDS_BIG_ENDIAN)
1167 unsigned short *bits = fb->bits;
159c348e 1168 int j;
bd231131
KS
1169 for (j = 0; j < fb->height; j++)
1170 {
1171 unsigned short b = *bits;
1172 *bits++ = ((b >> 8) & 0xff) | ((b & 0xff) << 8);
1173 }
1174#endif /* MAC_OS && WORDS_BIG_ENDIAN */
2d05deef
KS
1175 }
1176
1177 if (!once_p)
1178 {
7a2a85be 1179 destroy_fringe_bitmap (which);
2d05deef 1180
f2be4fd0 1181 if (rif && rif->define_fringe_bitmap)
2d05deef
KS
1182 rif->define_fringe_bitmap (which, fb->bits, fb->height, fb->width);
1183
1184 fringe_bitmaps[which] = fb;
1185 if (which >= max_used_fringe_bitmap)
1186 max_used_fringe_bitmap = which + 1;
1187 }
1188}
1189
1190
1191DEFUN ("define-fringe-bitmap", Fdefine_fringe_bitmap, Sdefine_fringe_bitmap,
7a2a85be
KS
1192 2, 5, 0,
1193 doc: /* Define fringe bitmap BITMAP from BITS of size HEIGHT x WIDTH.
1194BITMAP is a symbol or string naming the new fringe bitmap.
0881a0fd
KS
1195BITS is either a string or a vector of integers.
1196HEIGHT is height of bitmap. If HEIGHT is nil, use length of BITS.
1197WIDTH must be an integer between 1 and 16, or nil which defaults to 8.
7a2a85be 1198Optional fifth arg ALIGN may be one of `top', `center', or `bottom',
0881a0fd
KS
1199indicating the positioning of the bitmap relative to the rows where it
1200is used; the default is to center the bitmap. Fourth arg may also be a
1201list (ALIGN PERIODIC) where PERIODIC non-nil specifies that the bitmap
1202should be repeated.
7a2a85be
KS
1203If BITMAP already exists, the existing definition is replaced. */)
1204 (bitmap, bits, height, width, align)
1205 Lisp_Object bitmap, bits, height, width, align;
2d05deef
KS
1206{
1207 Lisp_Object len;
1208 int n, h, i, j;
0881a0fd 1209 unsigned short *b;
2d05deef
KS
1210 struct fringe_bitmap fb, *xfb;
1211 int fill1 = 0, fill2 = 0;
7a2a85be 1212
4cce0ab7 1213 CHECK_SYMBOL (bitmap);
7a2a85be 1214
2d05deef
KS
1215 if (!STRINGP (bits) && !VECTORP (bits))
1216 bits = wrong_type_argument (Qstringp, bits);
1217
1218 len = Flength (bits);
1219
1220 if (NILP (height))
1221 h = fb.height = XINT (len);
1222 else
1223 {
1224 CHECK_NUMBER (height);
1225 fb.height = min (XINT (height), 255);
1226 if (fb.height > XINT (len))
1227 {
1228 h = XINT (len);
1229 fill1 = (fb.height - h) / 2;
1230 fill2 = fb.height - h - fill1;
1231 }
1232 }
bffe8c26 1233
2d05deef
KS
1234 if (NILP (width))
1235 fb.width = 8;
1236 else
1237 {
1238 CHECK_NUMBER (width);
1239 fb.width = min (XINT (width), 255);
1240 }
1241
1242 fb.period = 0;
1243 fb.align = ALIGN_BITMAP_CENTER;
1244
1245 if (CONSP (align))
1246 {
1247 Lisp_Object period = XCDR (align);
1248 if (CONSP (period))
1249 {
1250 period = XCAR (period);
1251 if (!NILP (period))
1252 {
1253 fb.period = fb.height;
1254 fb.height = 255;
1255 }
1256 }
1257 align = XCAR (align);
1258 }
1259 if (EQ (align, Qtop))
1260 fb.align = ALIGN_BITMAP_TOP;
1261 else if (EQ (align, Qbottom))
1262 fb.align = ALIGN_BITMAP_BOTTOM;
1263 else if (!NILP (align) && !EQ (align, Qcenter))
1264 error ("Bad align argument");
1265
ad67849e 1266 n = lookup_fringe_bitmap (bitmap);
4cce0ab7 1267 if (!n)
2d05deef 1268 {
ad67849e 1269 if (max_used_fringe_bitmap < max_fringe_bitmaps)
d2f14999 1270 n = max_used_fringe_bitmap++;
2d05deef
KS
1271 else
1272 {
1273 for (n = MAX_STANDARD_FRINGE_BITMAPS;
ad67849e 1274 n < max_fringe_bitmaps;
2d05deef
KS
1275 n++)
1276 if (fringe_bitmaps[n] == NULL)
1277 break;
ad67849e
KS
1278
1279 if (n == max_fringe_bitmaps)
1280 {
1281 if ((max_fringe_bitmaps + 20) > MAX_FRINGE_BITMAPS)
1282 error ("No free fringe bitmap slots");
1283
1284 i = max_fringe_bitmaps;
1285 max_fringe_bitmaps += 20;
1286 fringe_bitmaps
1287 = ((struct fringe_bitmap **)
1288 xrealloc (fringe_bitmaps, max_fringe_bitmaps * sizeof (struct fringe_bitmap *)));
1289 fringe_faces
1290 = (unsigned *) xrealloc (fringe_faces, max_fringe_bitmaps * sizeof (unsigned));
1291
1292 for (; i < max_fringe_bitmaps; i++)
1293 {
1294 fringe_bitmaps[i] = NULL;
1295 fringe_faces[i] = FRINGE_FACE_ID;
1296 }
1297 }
2d05deef 1298 }
7a2a85be 1299
4cce0ab7
KS
1300 Vfringe_bitmaps = Fcons (bitmap, Vfringe_bitmaps);
1301 Fput (bitmap, Qfringe, make_number (n));
2d05deef
KS
1302 }
1303
1304 fb.dynamic = 1;
1305
beaedd56
AS
1306 xfb = (struct fringe_bitmap *) xmalloc (sizeof fb
1307 + fb.height * BYTES_PER_BITMAP_ROW);
1308 fb.bits = b = (unsigned short *) (xfb + 1);
2d05deef
KS
1309 bzero (b, fb.height);
1310
1311 j = 0;
1312 while (j < fb.height)
1313 {
1314 for (i = 0; i < fill1 && j < fb.height; i++)
1315 b[j++] = 0;
beaedd56 1316 for (i = 0; i < h && j < fb.height; i++)
2d05deef
KS
1317 {
1318 Lisp_Object elt = Faref (bits, make_number (i));
1319 b[j++] = NUMBERP (elt) ? XINT (elt) : 0;
1320 }
1321 for (i = 0; i < fill2 && j < fb.height; i++)
1322 b[j++] = 0;
1323 }
1324
1325 *xfb = fb;
1326
1327 init_fringe_bitmap (n, xfb, 0);
1328
4cce0ab7 1329 return bitmap;
2d05deef
KS
1330}
1331
1332DEFUN ("set-fringe-bitmap-face", Fset_fringe_bitmap_face, Sset_fringe_bitmap_face,
1333 1, 2, 0,
7a2a85be 1334 doc: /* Set face for fringe bitmap BITMAP to FACE.
2d05deef 1335If FACE is nil, reset face to default fringe face. */)
7a2a85be
KS
1336 (bitmap, face)
1337 Lisp_Object bitmap, face;
2d05deef 1338{
4cce0ab7 1339 int n;
2d05deef
KS
1340 int face_id;
1341
4cce0ab7
KS
1342 CHECK_SYMBOL (bitmap);
1343 n = lookup_fringe_bitmap (bitmap);
1344 if (!n)
7a2a85be 1345 error ("Undefined fringe bitmap");
2d05deef
KS
1346
1347 if (!NILP (face))
1348 {
1349 face_id = lookup_named_face (SELECTED_FRAME (), face, 'A');
1350 if (face_id < 0)
1351 error ("No such face");
1352 }
1353 else
1354 face_id = FRINGE_FACE_ID;
1355
4cce0ab7 1356 fringe_faces[n] = face_id;
2d05deef
KS
1357
1358 return Qnil;
1359}
1360
1361DEFUN ("fringe-bitmaps-at-pos", Ffringe_bitmaps_at_pos, Sfringe_bitmaps_at_pos,
1362 0, 2, 0,
bffe8c26 1363 doc: /* Return fringe bitmaps of row containing position POS in window WINDOW.
2d05deef 1364If WINDOW is nil, use selected window. If POS is nil, use value of point
d3848fe9
KS
1365in that window. Return value is a list (LEFT RIGHT OV), where LEFT
1366is the symbol for the bitmap in the left fringe (or nil if no bitmap),
1367RIGHT is similar for the right fringe, and OV is non-nil if there is an
1368overlay arrow in the left fringe.
5797a7a0 1369Return nil if POS is not visible in WINDOW. */)
2d05deef 1370 (pos, window)
d30b6b33 1371 Lisp_Object pos, window;
2d05deef
KS
1372{
1373 struct window *w;
1374 struct buffer *old_buffer = NULL;
1375 struct glyph_row *row;
1376 int textpos;
1377
1378 if (NILP (window))
1379 window = selected_window;
1380 CHECK_WINDOW (window);
1381 w = XWINDOW (window);
1382
1383 if (!NILP (pos))
1384 {
1385 CHECK_NUMBER_COERCE_MARKER (pos);
1386 textpos = XINT (pos);
1387 }
1388 else if (w == XWINDOW (selected_window))
1389 textpos = PT;
1390 else
1391 textpos = XMARKER (w->pointm)->charpos;
1392
1393 row = MATRIX_FIRST_TEXT_ROW (w->current_matrix);
1394 row = row_containing_pos (w, textpos, row, NULL, 0);
1395 if (row)
d3848fe9
KS
1396 return list3 (get_fringe_bitmap_name (row->left_fringe_bitmap),
1397 get_fringe_bitmap_name (row->right_fringe_bitmap),
1398 (row->overlay_arrow_p ? Qt : Qnil));
2d05deef
KS
1399 else
1400 return Qnil;
1401}
1402
1403
1404/***********************************************************************
1405 Initialization
1406 ***********************************************************************/
1407
1408void
1409syms_of_fringe ()
1410{
2d05deef
KS
1411 defsubr (&Sdestroy_fringe_bitmap);
1412 defsubr (&Sdefine_fringe_bitmap);
1413 defsubr (&Sfringe_bitmaps_at_pos);
1414 defsubr (&Sset_fringe_bitmap_face);
1415
1416 DEFVAR_LISP ("overflow-newline-into-fringe", &Voverflow_newline_into_fringe,
1417 doc: /* *Non-nil means that newline may flow into the right fringe.
1418This means that display lines which are exactly as wide as the window
1419(not counting the final newline) will only occupy one screen line, by
1420showing (or hiding) the final newline in the right fringe; when point
1421is at the final newline, the cursor is shown in the right fringe.
1422If nil, also continue lines which are exactly as wide as the window. */);
1423 Voverflow_newline_into_fringe = Qt;
1424
7a2a85be
KS
1425 DEFVAR_LISP ("fringe-bitmaps", &Vfringe_bitmaps,
1426 doc: /* List of fringe bitmap symbols.
1427You must (require 'fringe) to use fringe bitmap symbols in your programs." */);
1428 Vfringe_bitmaps = Qnil;
2d05deef
KS
1429}
1430
1431/* Initialize this module when Emacs starts. */
1432
1433void
1434init_fringe_once ()
1435{
1436 enum fringe_bitmap_type bt;
1437
1438 for (bt = NO_FRINGE_BITMAP + 1; bt < MAX_STANDARD_FRINGE_BITMAPS; bt++)
1439 init_fringe_bitmap(bt, &standard_bitmaps[bt], 1);
1440}
1441
1442void
1443init_fringe ()
1444{
1445 int i;
1446
ad67849e
KS
1447 max_fringe_bitmaps = MAX_STANDARD_FRINGE_BITMAPS + 20;
1448
1449 fringe_bitmaps
1450 = (struct fringe_bitmap **) xmalloc (max_fringe_bitmaps * sizeof (struct fringe_bitmap *));
1451 fringe_faces
1452 = (unsigned *) xmalloc (max_fringe_bitmaps * sizeof (unsigned));
1453
1454 for (i = 0; i < max_fringe_bitmaps; i++)
1455 {
1456 fringe_bitmaps[i] = NULL;
1457 fringe_faces[i] = FRINGE_FACE_ID;
1458 }
2d05deef
KS
1459}
1460
1461#ifdef HAVE_NTGUI
1462
1463void
1464w32_init_fringe ()
1465{
1466 enum fringe_bitmap_type bt;
1467
f2be4fd0
KS
1468 if (!rif)
1469 return;
1470
2d05deef
KS
1471 for (bt = NO_FRINGE_BITMAP + 1; bt < MAX_STANDARD_FRINGE_BITMAPS; bt++)
1472 {
1473 struct fringe_bitmap *fb = &standard_bitmaps[bt];
1474 rif->define_fringe_bitmap (bt, fb->bits, fb->height, fb->width);
1475 }
1476}
1477
1478void
1479w32_reset_fringes ()
1480{
1481 /* Destroy row bitmaps. */
1482 int bt;
bffe8c26 1483
f2be4fd0
KS
1484 if (!rif)
1485 return;
1486
2d05deef
KS
1487 for (bt = NO_FRINGE_BITMAP + 1; bt < max_used_fringe_bitmap; bt++)
1488 rif->destroy_fringe_bitmap (bt);
1489}
1490
bd231131 1491#endif /* HAVE_NTGUI */
2d05deef
KS
1492
1493#endif /* HAVE_WINDOW_SYSTEM */
1494
429e7e2d
MB
1495/* arch-tag: 04596920-43eb-473d-b319-82712338162d
1496 (do not change this comment) */