(x_make_frame_visible): Test and set asked_for_visible.
[bpt/emacs.git] / src / dispnew.c
1 /* Updating of data structures for redisplay.
2 Copyright (C) 1985, 86, 87, 88, 93, 94, 95 Free Software Foundation, Inc.
3
4 This file is part of GNU Emacs.
5
6 GNU Emacs is free software; you can redistribute it and/or modify
7 it under the terms of the GNU General Public License as published by
8 the Free Software Foundation; either version 2, or (at your option)
9 any later version.
10
11 GNU Emacs is distributed in the hope that it will be useful,
12 but WITHOUT ANY WARRANTY; without even the implied warranty of
13 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 GNU General Public License for more details.
15
16 You should have received a copy of the GNU General Public License
17 along with GNU Emacs; see the file COPYING. If not, write to
18 the Free Software Foundation, 675 Mass Ave, Cambridge, MA 02139, USA. */
19
20
21 #include <signal.h>
22
23 #include <config.h>
24
25 #include <stdio.h>
26 #include <ctype.h>
27
28 #include "lisp.h"
29 #include "termchar.h"
30 #include "termopts.h"
31 #include "termhooks.h"
32 #include "cm.h"
33 #include "dispextern.h"
34 #include "buffer.h"
35 #include "frame.h"
36 #include "window.h"
37 #include "commands.h"
38 #include "disptab.h"
39 #include "indent.h"
40 #include "intervals.h"
41
42 #include "systty.h"
43
44 #ifdef HAVE_X_WINDOWS
45 #include "xterm.h"
46 #endif /* HAVE_X_WINDOWS */
47
48 /* Include systime.h after xterm.h to avoid double inclusion of time.h. */
49 #include "systime.h"
50
51 #include <errno.h>
52
53 #define max(a, b) ((a) > (b) ? (a) : (b))
54 #define min(a, b) ((a) < (b) ? (a) : (b))
55
56 /* Get number of chars of output now in the buffer of a stdio stream.
57 This ought to be built in in stdio, but it isn't.
58 Some s- files override this because their stdio internals differ. */
59 #ifdef __GNU_LIBRARY__
60 /* The s- file might have overridden the definition with one that works for
61 the system's C library. But we are using the GNU C library, so this is
62 the right definition for every system. */
63 #ifdef GNU_LIBRARY_PENDING_OUTPUT_COUNT
64 #define PENDING_OUTPUT_COUNT GNU_LIBRARY_PENDING_OUTPUT_COUNT
65 #else
66 #undef PENDING_OUTPUT_COUNT
67 #define PENDING_OUTPUT_COUNT(FILE) ((FILE)->__bufp - (FILE)->__buffer)
68 #endif
69 #else /* not __GNU_LIBRARY__ */
70 #ifndef PENDING_OUTPUT_COUNT
71 #define PENDING_OUTPUT_COUNT(FILE) ((FILE)->_ptr - (FILE)->_base)
72 #endif
73 #endif
74
75 static void change_frame_size_1 ();
76
77 /* Nonzero upon entry to redisplay means do not assume anything about
78 current contents of actual terminal frame; clear and redraw it. */
79
80 int frame_garbaged;
81
82 /* Nonzero means last display completed. Zero means it was preempted. */
83
84 int display_completed;
85
86 /* Lisp variable visible-bell; enables use of screen-flash
87 instead of audible bell. */
88
89 int visible_bell;
90
91 /* Invert the color of the whole frame, at a low level. */
92
93 int inverse_video;
94
95 /* Line speed of the terminal. */
96
97 int baud_rate;
98
99 /* nil or a symbol naming the window system under which emacs is
100 running ('x is the only current possibility). */
101
102 Lisp_Object Vwindow_system;
103
104 /* Version number of X windows: 10, 11 or nil. */
105 Lisp_Object Vwindow_system_version;
106
107 /* Vector of glyph definitions. Indexed by glyph number,
108 the contents are a string which is how to output the glyph.
109
110 If Vglyph_table is nil, a glyph is output by using its low 8 bits
111 as a character code. */
112
113 Lisp_Object Vglyph_table;
114
115 /* Display table to use for vectors that don't specify their own. */
116
117 Lisp_Object Vstandard_display_table;
118
119 /* Nonzero means reading single-character input with prompt
120 so put cursor on minibuffer after the prompt.
121 positive means at end of text in echo area;
122 negative means at beginning of line. */
123 int cursor_in_echo_area;
124 \f
125 /* The currently selected frame.
126 In a single-frame version, this variable always holds the address of
127 the_only_frame. */
128
129 FRAME_PTR selected_frame;
130
131 /* A frame which is not just a minibuffer, or 0 if there are no such
132 frames. This is usually the most recent such frame that was
133 selected. In a single-frame version, this variable always holds
134 the address of the_only_frame. */
135 FRAME_PTR last_nonminibuf_frame;
136
137 /* In a single-frame version, the information that would otherwise
138 exist inside frame objects lives in the following structure instead.
139
140 NOTE: the_only_frame is not checked for garbage collection; don't
141 store collectible objects in any of its fields!
142
143 You're not/The only frame in town/... */
144
145 #ifndef MULTI_FRAME
146 struct frame the_only_frame;
147 #endif
148
149 /* This is a vector, made larger whenever it isn't large enough,
150 which is used inside `update_frame' to hold the old contents
151 of the FRAME_PHYS_LINES of the frame being updated. */
152 struct frame_glyphs **ophys_lines;
153 /* Length of vector currently allocated. */
154 int ophys_lines_length;
155
156 FILE *termscript; /* Stdio stream being used for copy of all output. */
157
158 struct cm Wcm; /* Structure for info on cursor positioning */
159
160 extern short ospeed; /* Output speed (from sg_ospeed) */
161
162 int delayed_size_change; /* 1 means SIGWINCH happened when not safe. */
163 \f
164 #ifdef MULTI_FRAME
165
166 DEFUN ("redraw-frame", Fredraw_frame, Sredraw_frame, 1, 1, 0,
167 "Clear frame FRAME and output again what is supposed to appear on it.")
168 (frame)
169 Lisp_Object frame;
170 {
171 FRAME_PTR f;
172
173 CHECK_LIVE_FRAME (frame, 0);
174 f = XFRAME (frame);
175 update_begin (f);
176 /* set_terminal_modes (); */
177 clear_frame ();
178 clear_frame_records (f);
179 update_end (f);
180 fflush (stdout);
181 windows_or_buffers_changed++;
182 /* Mark all windows as INaccurate,
183 so that every window will have its redisplay done. */
184 mark_window_display_accurate (FRAME_ROOT_WINDOW (f), 0);
185 f->garbaged = 0;
186 return Qnil;
187 }
188
189 redraw_frame (f)
190 FRAME_PTR f;
191 {
192 Lisp_Object frame;
193 XSETFRAME (frame, f);
194 Fredraw_frame (frame);
195 }
196
197 #else
198
199 DEFUN ("redraw-frame", Fredraw_frame, Sredraw_frame, 1, 1, 0,
200 /* Don't confuse make-docfile by having two doc strings for this function.
201 make-docfile does not pay attention to #if, for good reason! */
202 0)
203 (frame)
204 Lisp_Object frame;
205 {
206 update_begin (0);
207 set_terminal_modes ();
208 clear_frame ();
209 update_end (0);
210 fflush (stdout);
211 clear_frame_records (0);
212 windows_or_buffers_changed++;
213 /* Mark all windows as INaccurate,
214 so that every window will have its redisplay done. */
215 mark_window_display_accurate (FRAME_ROOT_WINDOW (0), 0);
216 return Qnil;
217 }
218
219 #endif
220
221 DEFUN ("redraw-display", Fredraw_display, Sredraw_display, 0, 0, "",
222 "Clear and redisplay all visible frames.")
223 ()
224 {
225 Lisp_Object tail, frame;
226
227 FOR_EACH_FRAME (tail, frame)
228 if (FRAME_VISIBLE_P (XFRAME (frame)))
229 Fredraw_frame (frame);
230
231 return Qnil;
232 }
233
234 /* This is used when frame_garbaged is set.
235 Redraw the individual frames marked as garbaged. */
236
237 void
238 redraw_garbaged_frames ()
239 {
240 Lisp_Object tail, frame;
241
242 FOR_EACH_FRAME (tail, frame)
243 if (FRAME_VISIBLE_P (XFRAME (frame))
244 && FRAME_GARBAGED_P (XFRAME (frame)))
245 Fredraw_frame (frame);
246 }
247
248 \f
249 static struct frame_glyphs *
250 make_frame_glyphs (frame, empty)
251 register FRAME_PTR frame;
252 int empty;
253 {
254 register int i;
255 register width = FRAME_WIDTH (frame);
256 register height = FRAME_HEIGHT (frame);
257 register struct frame_glyphs *new
258 = (struct frame_glyphs *) xmalloc (sizeof (struct frame_glyphs));
259
260 SET_GLYPHS_FRAME (new, frame);
261 new->height = height;
262 new->width = width;
263 new->used = (int *) xmalloc (height * sizeof (int));
264 new->glyphs = (GLYPH **) xmalloc (height * sizeof (GLYPH *));
265 new->charstarts = (int **) xmalloc (height * sizeof (int *));
266 new->highlight = (char *) xmalloc (height * sizeof (char));
267 new->enable = (char *) xmalloc (height * sizeof (char));
268 bzero (new->enable, height * sizeof (char));
269 new->bufp = (int *) xmalloc (height * sizeof (int));
270
271 #ifdef HAVE_X_WINDOWS
272 if (FRAME_X_P (frame))
273 {
274 new->top_left_x = (short *) xmalloc (height * sizeof (short));
275 new->top_left_y = (short *) xmalloc (height * sizeof (short));
276 new->pix_width = (short *) xmalloc (height * sizeof (short));
277 new->pix_height = (short *) xmalloc (height * sizeof (short));
278 new->max_ascent = (short *) xmalloc (height * sizeof (short));
279 }
280 #endif
281
282 if (empty)
283 {
284 /* Make the buffer used by decode_mode_spec. This buffer is also
285 used as temporary storage when updating the frame. See scroll.c. */
286 unsigned int total_glyphs = (width + 2) * sizeof (GLYPH);
287 unsigned int total_charstarts = (width + 2) * sizeof (int);
288
289 new->total_contents = (GLYPH *) xmalloc (total_glyphs);
290 bzero (new->total_contents, total_glyphs);
291
292 new->total_charstarts = (int *) xmalloc (total_charstarts);
293 bzero (new->total_charstarts, total_glyphs);
294 }
295 else
296 {
297 unsigned int total_glyphs = height * (width + 2) * sizeof (GLYPH);
298
299 new->total_contents = (GLYPH *) xmalloc (total_glyphs);
300 bzero (new->total_contents, total_glyphs);
301 for (i = 0; i < height; i++)
302 new->glyphs[i] = new->total_contents + i * (width + 2) + 1;
303
304 if (!FRAME_TERMCAP_P (frame))
305 {
306 unsigned int total_charstarts = height * (width + 2) * sizeof (int);
307
308 new->total_charstarts = (int *) xmalloc (total_charstarts);
309 bzero (new->total_charstarts, total_charstarts);
310 for (i = 0; i < height; i++)
311 new->charstarts[i] = new->total_charstarts + i * (width + 2) + 1;
312 }
313 else
314 {
315 /* Without a window system, we don't really need charstarts.
316 So use a small amount of space to make enough data structure
317 to prevent crashes in display_text_line. */
318 new->total_charstarts = (int *) xmalloc ((width + 2) * sizeof (int));
319 for (i = 0; i < height; i++)
320 new->charstarts[i] = new->total_charstarts;
321 }
322 }
323
324 return new;
325 }
326
327 void
328 free_frame_glyphs (frame, glyphs)
329 FRAME_PTR frame;
330 struct frame_glyphs *glyphs;
331 {
332 if (glyphs->total_contents)
333 xfree (glyphs->total_contents);
334 if (glyphs->total_charstarts)
335 xfree (glyphs->total_charstarts);
336
337 xfree (glyphs->used);
338 xfree (glyphs->glyphs);
339 xfree (glyphs->highlight);
340 xfree (glyphs->enable);
341 xfree (glyphs->bufp);
342 if (glyphs->charstarts)
343 xfree (glyphs->charstarts);
344
345 #ifdef HAVE_X_WINDOWS
346 if (FRAME_X_P (frame))
347 {
348 xfree (glyphs->top_left_x);
349 xfree (glyphs->top_left_y);
350 xfree (glyphs->pix_width);
351 xfree (glyphs->pix_height);
352 xfree (glyphs->max_ascent);
353 }
354 #endif
355
356 xfree (glyphs);
357 }
358
359 void
360 remake_frame_glyphs (frame)
361 FRAME_PTR frame;
362 {
363 if (FRAME_CURRENT_GLYPHS (frame))
364 free_frame_glyphs (frame, FRAME_CURRENT_GLYPHS (frame));
365 if (FRAME_DESIRED_GLYPHS (frame))
366 free_frame_glyphs (frame, FRAME_DESIRED_GLYPHS (frame));
367 if (FRAME_TEMP_GLYPHS (frame))
368 free_frame_glyphs (frame, FRAME_TEMP_GLYPHS (frame));
369
370 if (FRAME_MESSAGE_BUF (frame))
371 {
372 /* Reallocate the frame's message buffer; remember that
373 echo_area_glyphs may be pointing here. */
374 char *old_message_buf = FRAME_MESSAGE_BUF (frame);
375
376 FRAME_MESSAGE_BUF (frame)
377 = (char *) xrealloc (FRAME_MESSAGE_BUF (frame),
378 FRAME_WIDTH (frame) + 1);
379
380 if (echo_area_glyphs == old_message_buf)
381 echo_area_glyphs = FRAME_MESSAGE_BUF (frame);
382 if (previous_echo_glyphs == old_message_buf)
383 previous_echo_glyphs = FRAME_MESSAGE_BUF (frame);
384 }
385 else
386 FRAME_MESSAGE_BUF (frame)
387 = (char *) xmalloc (FRAME_WIDTH (frame) + 1);
388
389 FRAME_CURRENT_GLYPHS (frame) = make_frame_glyphs (frame, 0);
390 FRAME_DESIRED_GLYPHS (frame) = make_frame_glyphs (frame, 0);
391 FRAME_TEMP_GLYPHS (frame) = make_frame_glyphs (frame, 1);
392 if (! FRAME_TERMCAP_P (frame) || frame == selected_frame)
393 SET_FRAME_GARBAGED (frame);
394 }
395 \f
396 /* Return the hash code of contents of line VPOS in frame-matrix M. */
397
398 static int
399 line_hash_code (m, vpos)
400 register struct frame_glyphs *m;
401 int vpos;
402 {
403 register GLYPH *body, *end;
404 register int h = 0;
405
406 if (!m->enable[vpos])
407 return 0;
408
409 /* Give all highlighted lines the same hash code
410 so as to encourage scrolling to leave them in place. */
411 if (m->highlight[vpos])
412 return -1;
413
414 body = m->glyphs[vpos];
415
416 if (must_write_spaces)
417 while (1)
418 {
419 GLYPH g = *body++;
420
421 if (g == 0)
422 break;
423 h = (((h << 4) + (h >> 24)) & 0x0fffffff) + g - SPACEGLYPH;
424 }
425 else
426 while (1)
427 {
428 GLYPH g = *body++;
429
430 if (g == 0)
431 break;
432 h = (((h << 4) + (h >> 24)) & 0x0fffffff) + g;
433 }
434
435 if (h)
436 return h;
437 return 1;
438 }
439
440 /* Return number of characters in line in M at vpos VPOS,
441 except don't count leading and trailing spaces
442 unless the terminal requires those to be explicitly output. */
443
444 static unsigned int
445 line_draw_cost (m, vpos)
446 struct frame_glyphs *m;
447 int vpos;
448 {
449 register GLYPH *beg = m->glyphs[vpos];
450 register GLYPH *end = m->glyphs[vpos] + m->used[vpos];
451 register int i;
452 register int tlen = GLYPH_TABLE_LENGTH;
453 register Lisp_Object *tbase = GLYPH_TABLE_BASE;
454
455 /* Ignore trailing and leading spaces if we can. */
456 if (!must_write_spaces)
457 {
458 while ((end != beg) && (*end == SPACEGLYPH))
459 --end;
460 if (end == beg)
461 return (0); /* All blank line. */
462
463 while (*beg == SPACEGLYPH)
464 ++beg;
465 }
466
467 /* If we don't have a glyph-table, each glyph is one character,
468 so return the number of glyphs. */
469 if (tbase == 0)
470 return end - beg;
471
472 /* Otherwise, scan the glyphs and accumulate their total size in I. */
473 i = 0;
474 while ((beg <= end) && *beg)
475 {
476 register GLYPH g = *beg++;
477
478 if (GLYPH_SIMPLE_P (tbase, tlen, g))
479 i += 1;
480 else
481 i += GLYPH_LENGTH (tbase, g);
482 }
483 return i;
484 }
485 \f
486 /* The functions on this page are the interface from xdisp.c to redisplay.
487
488 The only other interface into redisplay is through setting
489 FRAME_CURSOR_X (frame) and FRAME_CURSOR_Y (frame)
490 and SET_FRAME_GARBAGED (frame). */
491
492 /* cancel_line eliminates any request to display a line at position `vpos' */
493
494 cancel_line (vpos, frame)
495 int vpos;
496 register FRAME_PTR frame;
497 {
498 FRAME_DESIRED_GLYPHS (frame)->enable[vpos] = 0;
499 }
500
501 clear_frame_records (frame)
502 register FRAME_PTR frame;
503 {
504 bzero (FRAME_CURRENT_GLYPHS (frame)->enable, FRAME_HEIGHT (frame));
505 }
506
507 /* Clear out all display lines for a coming redisplay. */
508
509 void
510 init_desired_glyphs (frame)
511 register FRAME_PTR frame;
512 {
513 register struct frame_glyphs *desired_glyphs = FRAME_DESIRED_GLYPHS (frame);
514 int vpos;
515 int height = FRAME_HEIGHT (frame);
516
517 for (vpos = 0; vpos < height; vpos++)
518 desired_glyphs->enable[vpos] = 0;
519 }
520
521 /* Prepare to display on line VPOS starting at HPOS within it. */
522
523 void
524 get_display_line (frame, vpos, hpos)
525 register FRAME_PTR frame;
526 int vpos;
527 register int hpos;
528 {
529 register struct frame_glyphs *glyphs;
530 register struct frame_glyphs *desired_glyphs = FRAME_DESIRED_GLYPHS (frame);
531 register GLYPH *p;
532
533 if (vpos < 0)
534 abort ();
535
536 if ((desired_glyphs->enable[vpos]) && desired_glyphs->used[vpos] > hpos)
537 abort ();
538
539 if (! desired_glyphs->enable[vpos])
540 {
541 desired_glyphs->used[vpos] = 0;
542 desired_glyphs->highlight[vpos] = 0;
543 desired_glyphs->enable[vpos] = 1;
544 }
545
546 if (hpos > desired_glyphs->used[vpos])
547 {
548 GLYPH *g = desired_glyphs->glyphs[vpos] + desired_glyphs->used[vpos];
549 GLYPH *end = desired_glyphs->glyphs[vpos] + hpos;
550
551 desired_glyphs->used[vpos] = hpos;
552 while (g != end)
553 *g++ = SPACEGLYPH;
554 }
555 }
556
557 /* Like bcopy except never gets confused by overlap. */
558
559 void
560 safe_bcopy (from, to, size)
561 char *from, *to;
562 int size;
563 {
564 if (size <= 0 || from == to)
565 return;
566
567 /* If the source and destination don't overlap, then bcopy can
568 handle it. If they do overlap, but the destination is lower in
569 memory than the source, we'll assume bcopy can handle that. */
570 if (to < from || from + size <= to)
571 bcopy (from, to, size);
572
573 /* Otherwise, we'll copy from the end. */
574 else
575 {
576 register char *endf = from + size;
577 register char *endt = to + size;
578
579 /* If TO - FROM is large, then we should break the copy into
580 nonoverlapping chunks of TO - FROM bytes each. However, if
581 TO - FROM is small, then the bcopy function call overhead
582 makes this not worth it. The crossover point could be about
583 anywhere. Since I don't think the obvious copy loop is too
584 bad, I'm trying to err in its favor. */
585 if (to - from < 64)
586 {
587 do
588 *--endt = *--endf;
589 while (endf != from);
590 }
591 else
592 {
593 for (;;)
594 {
595 endt -= (to - from);
596 endf -= (to - from);
597
598 if (endt < to)
599 break;
600
601 bcopy (endf, endt, to - from);
602 }
603
604 /* If SIZE wasn't a multiple of TO - FROM, there will be a
605 little left over. The amount left over is
606 (endt + (to - from)) - to, which is endt - from. */
607 bcopy (from, to, endt - from);
608 }
609 }
610 }
611
612 /* Rotate a vector of SIZE bytes right, by DISTANCE bytes.
613 DISTANCE may be negative. */
614
615 static void
616 rotate_vector (vector, size, distance)
617 char *vector;
618 int size;
619 int distance;
620 {
621 char *temp = (char *) alloca (size);
622
623 if (distance < 0)
624 distance += size;
625
626 bcopy (vector, temp + distance, size - distance);
627 bcopy (vector + size - distance, temp, distance);
628 bcopy (temp, vector, size);
629 }
630
631 /* Scroll lines from vpos FROM up to but not including vpos END
632 down by AMOUNT lines (AMOUNT may be negative).
633 Returns nonzero if done, zero if terminal cannot scroll them. */
634
635 int
636 scroll_frame_lines (frame, from, end, amount, newpos)
637 register FRAME_PTR frame;
638 int from, end, amount, newpos;
639 {
640 register int i;
641 register struct frame_glyphs *current_frame
642 = FRAME_CURRENT_GLYPHS (frame);
643 int pos_adjust;
644 int width = FRAME_WIDTH (frame);
645
646 if (!line_ins_del_ok)
647 return 0;
648
649 if (amount == 0)
650 return 1;
651
652 if (amount > 0)
653 {
654 update_begin (frame);
655 set_terminal_window (end + amount);
656 if (!scroll_region_ok)
657 ins_del_lines (end, -amount);
658 ins_del_lines (from, amount);
659 set_terminal_window (0);
660
661 rotate_vector (current_frame->glyphs + from,
662 sizeof (GLYPH *) * (end + amount - from),
663 amount * sizeof (GLYPH *));
664
665 rotate_vector (current_frame->charstarts + from,
666 sizeof (int *) * (end + amount - from),
667 amount * sizeof (int *));
668
669 safe_bcopy (current_frame->used + from,
670 current_frame->used + from + amount,
671 (end - from) * sizeof current_frame->used[0]);
672
673 safe_bcopy (current_frame->highlight + from,
674 current_frame->highlight + from + amount,
675 (end - from) * sizeof current_frame->highlight[0]);
676
677 safe_bcopy (current_frame->enable + from,
678 current_frame->enable + from + amount,
679 (end - from) * sizeof current_frame->enable[0]);
680
681 /* Adjust the lines by an amount
682 that puts the first of them at NEWPOS. */
683 pos_adjust = newpos - current_frame->charstarts[from + amount][0];
684
685 /* Offset each char position in the charstarts lines we moved
686 by pos_adjust. */
687 for (i = from + amount; i < end + amount; i++)
688 {
689 int *line = current_frame->charstarts[i];
690 int col;
691 for (col = 0; col < width; col++)
692 if (line[col] > 0)
693 line[col] += pos_adjust;
694 }
695 for (i = from; i < from + amount; i++)
696 {
697 int *line = current_frame->charstarts[i];
698 int col;
699 line[0] = -1;
700 for (col = 0; col < width; col++)
701 line[col] = 0;
702 }
703
704 /* Mark the lines made empty by scrolling as enabled, empty and
705 normal video. */
706 bzero (current_frame->used + from,
707 amount * sizeof current_frame->used[0]);
708 bzero (current_frame->highlight + from,
709 amount * sizeof current_frame->highlight[0]);
710 for (i = from; i < from + amount; i++)
711 {
712 current_frame->glyphs[i][0] = '\0';
713 current_frame->charstarts[i][0] = -1;
714 current_frame->enable[i] = 1;
715 }
716
717 safe_bcopy (current_frame->bufp + from,
718 current_frame->bufp + from + amount,
719 (end - from) * sizeof current_frame->bufp[0]);
720
721 #ifdef HAVE_X_WINDOWS
722 if (FRAME_X_P (frame))
723 {
724 safe_bcopy (current_frame->top_left_x + from,
725 current_frame->top_left_x + from + amount,
726 (end - from) * sizeof current_frame->top_left_x[0]);
727
728 safe_bcopy (current_frame->top_left_y + from,
729 current_frame->top_left_y + from + amount,
730 (end - from) * sizeof current_frame->top_left_y[0]);
731
732 safe_bcopy (current_frame->pix_width + from,
733 current_frame->pix_width + from + amount,
734 (end - from) * sizeof current_frame->pix_width[0]);
735
736 safe_bcopy (current_frame->pix_height + from,
737 current_frame->pix_height + from + amount,
738 (end - from) * sizeof current_frame->pix_height[0]);
739
740 safe_bcopy (current_frame->max_ascent + from,
741 current_frame->max_ascent + from + amount,
742 (end - from) * sizeof current_frame->max_ascent[0]);
743 }
744 #endif /* HAVE_X_WINDOWS */
745
746 update_end (frame);
747 }
748 if (amount < 0)
749 {
750 update_begin (frame);
751 set_terminal_window (end);
752 ins_del_lines (from + amount, amount);
753 if (!scroll_region_ok)
754 ins_del_lines (end + amount, -amount);
755 set_terminal_window (0);
756
757 rotate_vector (current_frame->glyphs + from + amount,
758 sizeof (GLYPH *) * (end - from - amount),
759 amount * sizeof (GLYPH *));
760
761 rotate_vector (current_frame->charstarts + from + amount,
762 sizeof (int *) * (end - from - amount),
763 amount * sizeof (int *));
764
765 safe_bcopy (current_frame->used + from,
766 current_frame->used + from + amount,
767 (end - from) * sizeof current_frame->used[0]);
768
769 safe_bcopy (current_frame->highlight + from,
770 current_frame->highlight + from + amount,
771 (end - from) * sizeof current_frame->highlight[0]);
772
773 safe_bcopy (current_frame->enable + from,
774 current_frame->enable + from + amount,
775 (end - from) * sizeof current_frame->enable[0]);
776
777 /* Adjust the lines by an amount
778 that puts the first of them at NEWPOS. */
779 pos_adjust = newpos - current_frame->charstarts[from + amount][0];
780
781 /* Offset each char position in the charstarts lines we moved
782 by pos_adjust. */
783 for (i = from + amount; i < end + amount; i++)
784 {
785 int *line = current_frame->charstarts[i];
786 int col;
787 for (col = 0; col < width; col++)
788 if (line[col] > 0)
789 line[col] += pos_adjust;
790 }
791 for (i = end + amount; i < end; i++)
792 {
793 int *line = current_frame->charstarts[i];
794 int col;
795 line[0] = -1;
796 for (col = 0; col < width; col++)
797 line[col] = 0;
798 }
799
800 /* Mark the lines made empty by scrolling as enabled, empty and
801 normal video. */
802 bzero (current_frame->used + end + amount,
803 - amount * sizeof current_frame->used[0]);
804 bzero (current_frame->highlight + end + amount,
805 - amount * sizeof current_frame->highlight[0]);
806 for (i = end + amount; i < end; i++)
807 {
808 current_frame->glyphs[i][0] = '\0';
809 current_frame->charstarts[i][0] = 0;
810 current_frame->enable[i] = 1;
811 }
812
813 safe_bcopy (current_frame->bufp + from,
814 current_frame->bufp + from + amount,
815 (end - from) * sizeof current_frame->bufp[0]);
816
817 #ifdef HAVE_X_WINDOWS
818 if (FRAME_X_P (frame))
819 {
820 safe_bcopy (current_frame->top_left_x + from,
821 current_frame->top_left_x + from + amount,
822 (end - from) * sizeof current_frame->top_left_x[0]);
823
824 safe_bcopy (current_frame->top_left_y + from,
825 current_frame->top_left_y + from + amount,
826 (end - from) * sizeof current_frame->top_left_y[0]);
827
828 safe_bcopy (current_frame->pix_width + from,
829 current_frame->pix_width + from + amount,
830 (end - from) * sizeof current_frame->pix_width[0]);
831
832 safe_bcopy (current_frame->pix_height + from,
833 current_frame->pix_height + from + amount,
834 (end - from) * sizeof current_frame->pix_height[0]);
835
836 safe_bcopy (current_frame->max_ascent + from,
837 current_frame->max_ascent + from + amount,
838 (end - from) * sizeof current_frame->max_ascent[0]);
839 }
840 #endif /* HAVE_X_WINDOWS */
841
842 update_end (frame);
843 }
844 return 1;
845 }
846 \f
847 /* After updating a window W that isn't the full frame wide,
848 copy all the columns that W does not occupy
849 into the FRAME_DESIRED_GLYPHS (frame) from the FRAME_PHYS_GLYPHS (frame)
850 so that update_frame will not change those columns. */
851
852 preserve_other_columns (w)
853 struct window *w;
854 {
855 register int vpos;
856 register struct frame_glyphs *current_frame, *desired_frame;
857 register FRAME_PTR frame = XFRAME (w->frame);
858 int start = XFASTINT (w->left);
859 int end = XFASTINT (w->left) + XFASTINT (w->width);
860 int bot = XFASTINT (w->top) + XFASTINT (w->height);
861
862 current_frame = FRAME_CURRENT_GLYPHS (frame);
863 desired_frame = FRAME_DESIRED_GLYPHS (frame);
864
865 for (vpos = XFASTINT (w->top); vpos < bot; vpos++)
866 {
867 if (current_frame->enable[vpos] && desired_frame->enable[vpos])
868 {
869 if (start > 0)
870 {
871 int len;
872
873 bcopy (current_frame->glyphs[vpos],
874 desired_frame->glyphs[vpos],
875 start * sizeof (current_frame->glyphs[vpos][0]));
876 bcopy (current_frame->charstarts[vpos],
877 desired_frame->charstarts[vpos],
878 start * sizeof (current_frame->charstarts[vpos][0]));
879 len = min (start, current_frame->used[vpos]);
880 if (desired_frame->used[vpos] < len)
881 desired_frame->used[vpos] = len;
882 }
883 if (current_frame->used[vpos] > end
884 && desired_frame->used[vpos] < current_frame->used[vpos])
885 {
886 while (desired_frame->used[vpos] < end)
887 {
888 int used = desired_frame->used[vpos]++;
889 desired_frame->glyphs[vpos][used] = SPACEGLYPH;
890 desired_frame->glyphs[vpos][used] = 0;
891 }
892 bcopy (current_frame->glyphs[vpos] + end,
893 desired_frame->glyphs[vpos] + end,
894 ((current_frame->used[vpos] - end)
895 * sizeof (current_frame->glyphs[vpos][0])));
896 bcopy (current_frame->charstarts[vpos] + end,
897 desired_frame->charstarts[vpos] + end,
898 ((current_frame->used[vpos] - end)
899 * sizeof (current_frame->charstarts[vpos][0])));
900 desired_frame->used[vpos] = current_frame->used[vpos];
901 }
902 }
903 }
904 }
905 \f
906 #if 0
907
908 /* If window w does not need to be updated and isn't the full frame wide,
909 copy all the columns that w does occupy
910 into the FRAME_DESIRED_LINES (frame) from the FRAME_PHYS_LINES (frame)
911 so that update_frame will not change those columns.
912
913 Have not been able to figure out how to use this correctly. */
914
915 preserve_my_columns (w)
916 struct window *w;
917 {
918 register int vpos, fin;
919 register struct frame_glyphs *l1, *l2;
920 register FRAME_PTR frame = XFRAME (w->frame);
921 int start = XFASTINT (w->left);
922 int end = XFASTINT (w->left) + XFASTINT (w->width);
923 int bot = XFASTINT (w->top) + XFASTINT (w->height);
924
925 for (vpos = XFASTINT (w->top); vpos < bot; vpos++)
926 {
927 if ((l1 = FRAME_DESIRED_GLYPHS (frame)->glyphs[vpos + 1])
928 && (l2 = FRAME_PHYS_GLYPHS (frame)->glyphs[vpos + 1]))
929 {
930 if (l2->length > start && l1->length < l2->length)
931 {
932 fin = l2->length;
933 if (fin > end) fin = end;
934 while (l1->length < start)
935 l1->body[l1->length++] = ' ';
936 bcopy (l2->body + start, l1->body + start, fin - start);
937 l1->length = fin;
938 }
939 }
940 }
941 }
942
943 #endif
944 \f
945 /* Adjust by ADJUST the charstart values in window W
946 after vpos VPOS, which counts relative to the frame
947 (not relative to W itself). */
948
949 void
950 adjust_window_charstarts (w, vpos, adjust)
951 struct window *w;
952 int vpos;
953 int adjust;
954 {
955 int left = XFASTINT (w->left);
956 int top = XFASTINT (w->top);
957 int right = left + window_internal_width (w);
958 int bottom = top + window_internal_height (w);
959 int i;
960
961 for (i = vpos + 1; i < bottom; i++)
962 {
963 int *charstart
964 = FRAME_CURRENT_GLYPHS (XFRAME (WINDOW_FRAME (w)))->charstarts[i];
965 int j;
966 for (j = left; j < right; j++)
967 if (charstart[j] > 0)
968 charstart[j] += adjust;
969 }
970 }
971
972 /* Check the charstarts values in the area of window W
973 for internal consistency. We cannot check that they are "right";
974 we can only look for something nonsensical. */
975
976 verify_charstarts (w)
977 struct window *w;
978 {
979 FRAME_PTR f = XFRAME (WINDOW_FRAME (w));
980 int i;
981 int top = XFASTINT (w->top);
982 int bottom = top + window_internal_height (w);
983 int left = XFASTINT (w->left);
984 int right = left + window_internal_width (w);
985 int next_line;
986 int truncate = (XINT (w->hscroll)
987 || (truncate_partial_width_windows
988 && (XFASTINT (w->width) < FRAME_WIDTH (f)))
989 || !NILP (XBUFFER (w->buffer)->truncate_lines));
990
991 for (i = top; i < bottom; i++)
992 {
993 int j;
994 int last;
995 int *charstart = FRAME_CURRENT_GLYPHS (f)->charstarts[i];
996
997 if (i != top)
998 {
999 if (truncate)
1000 {
1001 /* If we are truncating lines, allow a jump
1002 in charstarts from one line to the next. */
1003 if (charstart[left] < next_line)
1004 abort ();
1005 }
1006 else
1007 {
1008 if (charstart[left] != next_line)
1009 abort ();
1010 }
1011 }
1012
1013 for (j = left; j < right; j++)
1014 if (charstart[j] > 0)
1015 last = charstart[j];
1016 /* Record where the next line should start. */
1017 next_line = last;
1018 if (BUF_ZV (XBUFFER (w->buffer)) != last)
1019 {
1020 /* If there's a newline between the two lines, count that. */
1021 int endchar = *BUF_CHAR_ADDRESS (XBUFFER (w->buffer), last);
1022 if (endchar == '\n')
1023 next_line++;
1024 }
1025 }
1026 }
1027 \f
1028 /* On discovering that the redisplay for a window was no good,
1029 cancel the columns of that window, so that when the window is
1030 displayed over again get_display_line will not complain. */
1031
1032 cancel_my_columns (w)
1033 struct window *w;
1034 {
1035 register int vpos;
1036 register struct frame_glyphs *desired_glyphs
1037 = FRAME_DESIRED_GLYPHS (XFRAME (w->frame));
1038 register int start = XFASTINT (w->left);
1039 register int bot = XFASTINT (w->top) + XFASTINT (w->height);
1040
1041 for (vpos = XFASTINT (w->top); vpos < bot; vpos++)
1042 if (desired_glyphs->enable[vpos]
1043 && desired_glyphs->used[vpos] >= start)
1044 desired_glyphs->used[vpos] = start;
1045 }
1046 \f
1047 /* These functions try to perform directly and immediately on the frame
1048 the necessary output for one change in the buffer.
1049 They may return 0 meaning nothing was done if anything is difficult,
1050 or 1 meaning the output was performed properly.
1051 They assume that the frame was up to date before the buffer
1052 change being displayed. They make various other assumptions too;
1053 see command_loop_1 where these are called. */
1054
1055 int
1056 direct_output_for_insert (g)
1057 int g;
1058 {
1059 register FRAME_PTR frame = selected_frame;
1060 register struct frame_glyphs *current_frame
1061 = FRAME_CURRENT_GLYPHS (frame);
1062
1063 #ifndef COMPILER_REGISTER_BUG
1064 register
1065 #endif /* COMPILER_REGISTER_BUG */
1066 struct window *w = XWINDOW (selected_window);
1067 #ifndef COMPILER_REGISTER_BUG
1068 register
1069 #endif /* COMPILER_REGISTER_BUG */
1070 int hpos = FRAME_CURSOR_X (frame);
1071 #ifndef COMPILER_REGISTER_BUG
1072 register
1073 #endif /* COMPILER_REGISTER_BUG */
1074 int vpos = FRAME_CURSOR_Y (frame);
1075
1076 /* Give up if about to continue line. */
1077 if (hpos >= XFASTINT (w->left) + window_internal_width (w) - 1
1078
1079 /* Avoid losing if cursor is in invisible text off left margin */
1080 || (XINT (w->hscroll) && hpos == XFASTINT (w->left))
1081
1082 /* Give up if cursor outside window (in minibuf, probably) */
1083 || cursor_in_echo_area
1084 || FRAME_CURSOR_Y (frame) < XFASTINT (w->top)
1085 || FRAME_CURSOR_Y (frame) >= XFASTINT (w->top) + XFASTINT (w->height)
1086
1087 /* Give up if cursor not really at FRAME_CURSOR_X, FRAME_CURSOR_Y */
1088 || !display_completed
1089
1090 /* Give up if buffer appears in two places. */
1091 || buffer_shared > 1
1092
1093 #ifdef USE_TEXT_PROPERTIES
1094 /* Intervals have already been adjusted, point is after the
1095 character that was just inserted. */
1096 /* Give up if character is invisible. */
1097 /* Give up if character has a face property.
1098 At the moment we only lose at end of line or end of buffer
1099 and only with faces that have some background */
1100 /* Instead of wasting time, give up if character has any text properties */
1101 || ! NILP (Ftext_properties_at (make_number (point - 1), Qnil))
1102 #endif
1103
1104 /* Give up if w is minibuffer and a message is being displayed there */
1105 || (MINI_WINDOW_P (w) && echo_area_glyphs))
1106 return 0;
1107
1108 {
1109 int face = 0;
1110 #ifdef HAVE_FACES
1111 int dummy;
1112
1113 if (FRAME_X_P (frame))
1114 face = compute_char_face (frame, w, point - 1, -1, -1, &dummy, point, 0);
1115 #endif
1116 current_frame->glyphs[vpos][hpos] = MAKE_GLYPH (frame, g, face);
1117 current_frame->charstarts[vpos][hpos] = point - 1;
1118 /* Record the entry for after the newly inserted character. */
1119 current_frame->charstarts[vpos][hpos + 1] = point;
1120 adjust_window_charstarts (w, vpos, 1);
1121 }
1122 unchanged_modified = MODIFF;
1123 beg_unchanged = GPT - BEG;
1124 XSETFASTINT (w->last_point, point);
1125 XSETFASTINT (w->last_point_x, hpos);
1126 XSETFASTINT (w->last_modified, MODIFF);
1127
1128 reassert_line_highlight (0, vpos);
1129 write_glyphs (&current_frame->glyphs[vpos][hpos], 1);
1130 fflush (stdout);
1131 ++FRAME_CURSOR_X (frame);
1132 if (hpos == current_frame->used[vpos])
1133 {
1134 current_frame->used[vpos] = hpos + 1;
1135 current_frame->glyphs[vpos][hpos + 1] = 0;
1136 }
1137
1138 return 1;
1139 }
1140
1141 int
1142 direct_output_forward_char (n)
1143 int n;
1144 {
1145 register FRAME_PTR frame = selected_frame;
1146 register struct window *w = XWINDOW (selected_window);
1147 Lisp_Object position;
1148 int hpos = FRAME_CURSOR_X (frame);
1149
1150 /* Give up if in truncated text at end of line. */
1151 if (hpos >= XFASTINT (w->left) + window_internal_width (w) - 1)
1152 return 0;
1153
1154 /* Avoid losing if cursor is in invisible text off left margin
1155 or about to go off either side of window. */
1156 if ((FRAME_CURSOR_X (frame) == XFASTINT (w->left)
1157 && (XINT (w->hscroll) || n < 0))
1158 || (n > 0
1159 && (FRAME_CURSOR_X (frame) + 1 >= window_internal_width (w) - 1))
1160 || cursor_in_echo_area)
1161 return 0;
1162
1163 /* Can't use direct output if highlighting a region. */
1164 if (!NILP (Vtransient_mark_mode) && !NILP (current_buffer->mark_active))
1165 return 0;
1166
1167 /* Can't use direct output at an overlay boundary; it might have
1168 before-string or after-string properties. */
1169 if (overlay_touches_p (PT) || overlay_touches_p (PT - n))
1170 return 0;
1171
1172 #ifdef USE_TEXT_PROPERTIES
1173 /* Don't use direct output next to an invisible character
1174 since we might need to do something special. */
1175
1176 XSETFASTINT (position, point);
1177 if (XFASTINT (position) < ZV
1178 && ! NILP (Fget_char_property (position,
1179 Qinvisible,
1180 selected_window)))
1181 return 0;
1182
1183 XSETFASTINT (position, point - 1);
1184 if (XFASTINT (position) >= BEGV
1185 && ! NILP (Fget_char_property (position,
1186 Qinvisible,
1187 selected_window)))
1188 return 0;
1189 #endif
1190
1191 FRAME_CURSOR_X (frame) += n;
1192 XSETFASTINT (w->last_point_x, FRAME_CURSOR_X (frame));
1193 XSETFASTINT (w->last_point, point);
1194 cursor_to (FRAME_CURSOR_Y (frame), FRAME_CURSOR_X (frame));
1195 fflush (stdout);
1196
1197 return 1;
1198 }
1199 \f
1200 static void update_line ();
1201
1202 /* Update frame F based on the data in FRAME_DESIRED_GLYPHS.
1203 Value is nonzero if redisplay stopped due to pending input.
1204 FORCE nonzero means do not stop for pending input. */
1205
1206 int
1207 update_frame (f, force, inhibit_hairy_id)
1208 FRAME_PTR f;
1209 int force;
1210 int inhibit_hairy_id;
1211 {
1212 register struct frame_glyphs *current_frame;
1213 register struct frame_glyphs *desired_frame = 0;
1214 register int i;
1215 int pause;
1216 int preempt_count = baud_rate / 2400 + 1;
1217 extern input_pending;
1218 #ifdef HAVE_X_WINDOWS
1219 register int downto, leftmost;
1220 #endif
1221
1222 if (baud_rate != FRAME_COST_BAUD_RATE (f))
1223 calculate_costs (f);
1224
1225 if (preempt_count <= 0)
1226 preempt_count = 1;
1227
1228 if (FRAME_HEIGHT (f) == 0) abort (); /* Some bug zeros some core */
1229
1230 detect_input_pending ();
1231 if (input_pending && !force)
1232 {
1233 pause = 1;
1234 goto do_pause;
1235 }
1236
1237 update_begin (f);
1238
1239 if (!line_ins_del_ok)
1240 inhibit_hairy_id = 1;
1241
1242 /* These are separate to avoid a possible bug in the AIX C compiler. */
1243 current_frame = FRAME_CURRENT_GLYPHS (f);
1244 desired_frame = FRAME_DESIRED_GLYPHS (f);
1245
1246 /* See if any of the desired lines are enabled; don't compute for
1247 i/d line if just want cursor motion. */
1248 for (i = 0; i < FRAME_HEIGHT (f); i++)
1249 if (desired_frame->enable[i])
1250 break;
1251
1252 /* Try doing i/d line, if not yet inhibited. */
1253 if (!inhibit_hairy_id && i < FRAME_HEIGHT (f))
1254 force |= scrolling (f);
1255
1256 /* Update the individual lines as needed. Do bottom line first. */
1257
1258 if (desired_frame->enable[FRAME_HEIGHT (f) - 1])
1259 update_line (f, FRAME_HEIGHT (f) - 1);
1260
1261 #ifdef HAVE_X_WINDOWS
1262 if (FRAME_X_P (f))
1263 {
1264 leftmost = downto = f->display.x->internal_border_width;
1265 if (desired_frame->enable[0])
1266 {
1267 current_frame->top_left_x[FRAME_HEIGHT (f) - 1] = leftmost;
1268 current_frame->top_left_y[FRAME_HEIGHT (f) - 1]
1269 = PIXEL_HEIGHT (f) - f->display.x->internal_border_width
1270 - current_frame->pix_height[FRAME_HEIGHT (f) - 1];
1271 current_frame->top_left_x[0] = leftmost;
1272 current_frame->top_left_y[0] = downto;
1273 }
1274 }
1275 #endif /* HAVE_X_WINDOWS */
1276
1277 /* Now update the rest of the lines. */
1278 for (i = 0; i < FRAME_HEIGHT (f) - 1 && (force || !input_pending); i++)
1279 {
1280 if (desired_frame->enable[i])
1281 {
1282 if (FRAME_TERMCAP_P (f))
1283 {
1284 /* Flush out every so many lines.
1285 Also flush out if likely to have more than 1k buffered
1286 otherwise. I'm told that some telnet connections get
1287 really screwed by more than 1k output at once. */
1288 int outq = PENDING_OUTPUT_COUNT (stdout);
1289 if (outq > 900
1290 || (outq > 20 && ((i - 1) % preempt_count == 0)))
1291 {
1292 fflush (stdout);
1293 if (preempt_count == 1)
1294 {
1295 #ifdef EMACS_OUTQSIZE
1296 if (EMACS_OUTQSIZE (0, &outq) < 0)
1297 /* Probably not a tty. Ignore the error and reset
1298 * the outq count. */
1299 outq = PENDING_OUTPUT_COUNT (stdout);
1300 #endif
1301 outq *= 10;
1302 if (baud_rate <= outq && baud_rate > 0)
1303 sleep (outq / baud_rate);
1304 }
1305 }
1306 if ((i - 1) % preempt_count == 0)
1307 detect_input_pending ();
1308 }
1309
1310 update_line (f, i);
1311 #ifdef HAVE_X_WINDOWS
1312 if (FRAME_X_P (f))
1313 {
1314 current_frame->top_left_y[i] = downto;
1315 current_frame->top_left_x[i] = leftmost;
1316 }
1317 #endif /* HAVE_X_WINDOWS */
1318 }
1319
1320 #ifdef HAVE_X_WINDOWS
1321 if (FRAME_X_P (f))
1322 downto += current_frame->pix_height[i];
1323 #endif
1324 }
1325 pause = (i < FRAME_HEIGHT (f) - 1) ? i : 0;
1326
1327 /* Now just clean up termcap drivers and set cursor, etc. */
1328 if (!pause)
1329 {
1330 if (cursor_in_echo_area
1331 && FRAME_HAS_MINIBUF_P (f)
1332 && EQ (FRAME_MINIBUF_WINDOW (f), minibuf_window))
1333 {
1334 int top = XINT (XWINDOW (FRAME_MINIBUF_WINDOW (f))->top);
1335 int row, col;
1336
1337 if (cursor_in_echo_area < 0)
1338 {
1339 row = top;
1340 col = 0;
1341 }
1342 else
1343 {
1344 /* If the minibuffer is several lines high, find the last
1345 line that has any text on it. */
1346 row = FRAME_HEIGHT (f);
1347 do
1348 {
1349 row--;
1350 if (current_frame->enable[row])
1351 col = current_frame->used[row];
1352 else
1353 col = 0;
1354 }
1355 while (row > top && col == 0);
1356
1357 if (col >= FRAME_WIDTH (f))
1358 {
1359 col = 0;
1360 if (row < FRAME_HEIGHT (f) - 1)
1361 row++;
1362 }
1363 }
1364
1365 cursor_to (row, col);
1366 }
1367 else
1368 cursor_to (FRAME_CURSOR_Y (f), max (min (FRAME_CURSOR_X (f),
1369 FRAME_WIDTH (f) - 1), 0));
1370 }
1371
1372 update_end (f);
1373
1374 if (termscript)
1375 fflush (termscript);
1376 fflush (stdout);
1377
1378 /* Here if output is preempted because input is detected. */
1379 do_pause:
1380
1381 if (FRAME_HEIGHT (f) == 0) abort (); /* Some bug zeros some core */
1382 display_completed = !pause;
1383
1384 bzero (FRAME_DESIRED_GLYPHS (f)->enable, FRAME_HEIGHT (f));
1385 return pause;
1386 }
1387
1388 /* Called when about to quit, to check for doing so
1389 at an improper time. */
1390
1391 void
1392 quit_error_check ()
1393 {
1394 if (FRAME_DESIRED_GLYPHS (selected_frame) == 0)
1395 return;
1396 if (FRAME_DESIRED_GLYPHS (selected_frame)->enable[0])
1397 abort ();
1398 if (FRAME_DESIRED_GLYPHS (selected_frame)->enable[FRAME_HEIGHT (selected_frame) - 1])
1399 abort ();
1400 }
1401 \f
1402 /* Decide what insert/delete line to do, and do it */
1403
1404 extern void scrolling_1 ();
1405
1406 scrolling (frame)
1407 FRAME_PTR frame;
1408 {
1409 int unchanged_at_top, unchanged_at_bottom;
1410 int window_size;
1411 int changed_lines;
1412 int *old_hash = (int *) alloca (FRAME_HEIGHT (frame) * sizeof (int));
1413 int *new_hash = (int *) alloca (FRAME_HEIGHT (frame) * sizeof (int));
1414 int *draw_cost = (int *) alloca (FRAME_HEIGHT (frame) * sizeof (int));
1415 int *old_draw_cost = (int *) alloca (FRAME_HEIGHT (frame) * sizeof (int));
1416 register int i;
1417 int free_at_end_vpos = FRAME_HEIGHT (frame);
1418 register struct frame_glyphs *current_frame = FRAME_CURRENT_GLYPHS (frame);
1419 register struct frame_glyphs *desired_frame = FRAME_DESIRED_GLYPHS (frame);
1420
1421 /* Compute hash codes of all the lines.
1422 Also calculate number of changed lines,
1423 number of unchanged lines at the beginning,
1424 and number of unchanged lines at the end. */
1425
1426 changed_lines = 0;
1427 unchanged_at_top = 0;
1428 unchanged_at_bottom = FRAME_HEIGHT (frame);
1429 for (i = 0; i < FRAME_HEIGHT (frame); i++)
1430 {
1431 /* Give up on this scrolling if some old lines are not enabled. */
1432 if (!current_frame->enable[i])
1433 return 0;
1434 old_hash[i] = line_hash_code (current_frame, i);
1435 if (! desired_frame->enable[i])
1436 new_hash[i] = old_hash[i];
1437 else
1438 new_hash[i] = line_hash_code (desired_frame, i);
1439
1440 if (old_hash[i] != new_hash[i])
1441 {
1442 changed_lines++;
1443 unchanged_at_bottom = FRAME_HEIGHT (frame) - i - 1;
1444 }
1445 else if (i == unchanged_at_top)
1446 unchanged_at_top++;
1447 draw_cost[i] = line_draw_cost (desired_frame, i);
1448 old_draw_cost[i] = line_draw_cost (current_frame, i);
1449 }
1450
1451 /* If changed lines are few, don't allow preemption, don't scroll. */
1452 if (!scroll_region_ok && changed_lines < baud_rate / 2400
1453 || unchanged_at_bottom == FRAME_HEIGHT (frame))
1454 return 1;
1455
1456 window_size = (FRAME_HEIGHT (frame) - unchanged_at_top
1457 - unchanged_at_bottom);
1458
1459 if (scroll_region_ok)
1460 free_at_end_vpos -= unchanged_at_bottom;
1461 else if (memory_below_frame)
1462 free_at_end_vpos = -1;
1463
1464 /* If large window, fast terminal and few lines in common between
1465 current frame and desired frame, don't bother with i/d calc. */
1466 if (!scroll_region_ok && window_size >= 18 && baud_rate > 2400
1467 && (window_size >=
1468 10 * scrolling_max_lines_saved (unchanged_at_top,
1469 FRAME_HEIGHT (frame) - unchanged_at_bottom,
1470 old_hash, new_hash, draw_cost)))
1471 return 0;
1472
1473 scrolling_1 (frame, window_size, unchanged_at_top, unchanged_at_bottom,
1474 draw_cost + unchanged_at_top - 1,
1475 old_draw_cost + unchanged_at_top - 1,
1476 old_hash + unchanged_at_top - 1,
1477 new_hash + unchanged_at_top - 1,
1478 free_at_end_vpos - unchanged_at_top);
1479
1480 return 0;
1481 }
1482 \f
1483 /* Return the offset in its buffer of the character at location col, line
1484 in the given window. */
1485 int
1486 buffer_posn_from_coords (window, col, line)
1487 struct window *window;
1488 int col, line;
1489 {
1490 int hscroll = XINT (window->hscroll);
1491 int window_left = XFASTINT (window->left);
1492
1493 /* The actual width of the window is window->width less one for the
1494 DISP_CONTINUE_GLYPH, and less one if it's not the rightmost
1495 window. */
1496 int window_width = window_internal_width (window) - 1;
1497
1498 int startp = marker_position (window->start);
1499
1500 /* Since compute_motion will only operate on the current buffer,
1501 we need to save the old one and restore it when we're done. */
1502 struct buffer *old_current_buffer = current_buffer;
1503 struct position *posn;
1504
1505 current_buffer = XBUFFER (window->buffer);
1506
1507 /* We can't get a correct result in this case,
1508 but at least prevent compute_motion from crashing. */
1509 if (startp < BEGV)
1510 startp = BEGV;
1511
1512 /* It would be nice if we could use FRAME_CURRENT_GLYPHS (XFRAME
1513 (window->frame))->bufp to avoid scanning from the very top of
1514 the window, but it isn't maintained correctly, and I'm not even
1515 sure I will keep it. */
1516 posn = compute_motion (startp, 0,
1517 ((window == XWINDOW (minibuf_window) && startp == BEG
1518 ? minibuf_prompt_width : 0)
1519 + (hscroll ? 1 - hscroll : 0)),
1520 0,
1521 ZV, line, col,
1522 window_width, hscroll, 0, window);
1523
1524 current_buffer = old_current_buffer;
1525
1526 /* compute_motion considers frame points past the end of a line
1527 to be *after* the newline, i.e. at the start of the next line.
1528 This is reasonable, but not really what we want. So if the
1529 result is on a line below LINE, back it up one character. */
1530 if (posn->vpos > line)
1531 return posn->bufpos - 1;
1532 else
1533 return posn->bufpos;
1534 }
1535 \f
1536 static int
1537 count_blanks (r)
1538 register GLYPH *r;
1539 {
1540 register GLYPH *p = r;
1541 while (*p++ == SPACEGLYPH);
1542 return p - r - 1;
1543 }
1544
1545 static int
1546 count_match (str1, str2)
1547 GLYPH *str1, *str2;
1548 {
1549 register GLYPH *p1 = str1;
1550 register GLYPH *p2 = str2;
1551 while (*p1++ == *p2++);
1552 return p1 - str1 - 1;
1553 }
1554
1555 /* Char insertion/deletion cost vector, from term.c */
1556 extern int *char_ins_del_vector;
1557
1558 #define char_ins_del_cost(f) (&char_ins_del_vector[FRAME_WIDTH((f))])
1559
1560 static void
1561 update_line (frame, vpos)
1562 register FRAME_PTR frame;
1563 int vpos;
1564 {
1565 register GLYPH *obody, *nbody, *op1, *op2, *np1, *temp;
1566 int *temp1;
1567 int tem;
1568 int osp, nsp, begmatch, endmatch, olen, nlen;
1569 int save;
1570 register struct frame_glyphs *current_frame
1571 = FRAME_CURRENT_GLYPHS (frame);
1572 register struct frame_glyphs *desired_frame
1573 = FRAME_DESIRED_GLYPHS (frame);
1574
1575 if (desired_frame->highlight[vpos]
1576 != (current_frame->enable[vpos] && current_frame->highlight[vpos]))
1577 {
1578 change_line_highlight (desired_frame->highlight[vpos], vpos,
1579 (current_frame->enable[vpos] ?
1580 current_frame->used[vpos] : 0));
1581 current_frame->enable[vpos] = 0;
1582 }
1583 else
1584 reassert_line_highlight (desired_frame->highlight[vpos], vpos);
1585
1586 if (! current_frame->enable[vpos])
1587 {
1588 olen = 0;
1589 }
1590 else
1591 {
1592 obody = current_frame->glyphs[vpos];
1593 olen = current_frame->used[vpos];
1594 if (! current_frame->highlight[vpos])
1595 {
1596 if (!must_write_spaces)
1597 while (obody[olen - 1] == SPACEGLYPH && olen > 0)
1598 olen--;
1599 }
1600 else
1601 {
1602 /* For an inverse-video line, remember we gave it
1603 spaces all the way to the frame edge
1604 so that the reverse video extends all the way across. */
1605
1606 while (olen < FRAME_WIDTH (frame) - 1)
1607 obody[olen++] = SPACEGLYPH;
1608 }
1609 }
1610
1611 /* One way or another, this will enable the line being updated. */
1612 current_frame->enable[vpos] = 1;
1613 current_frame->used[vpos] = desired_frame->used[vpos];
1614 current_frame->highlight[vpos] = desired_frame->highlight[vpos];
1615 current_frame->bufp[vpos] = desired_frame->bufp[vpos];
1616
1617 #ifdef HAVE_X_WINDOWS
1618 if (FRAME_X_P (frame))
1619 {
1620 current_frame->pix_width[vpos]
1621 = current_frame->used[vpos]
1622 * FONT_WIDTH (frame->display.x->font);
1623 current_frame->pix_height[vpos]
1624 = frame->display.x->line_height;
1625 }
1626 #endif /* HAVE_X_WINDOWS */
1627
1628 if (!desired_frame->enable[vpos])
1629 {
1630 nlen = 0;
1631 goto just_erase;
1632 }
1633
1634 nbody = desired_frame->glyphs[vpos];
1635 nlen = desired_frame->used[vpos];
1636
1637 /* Pretend trailing spaces are not there at all,
1638 unless for one reason or another we must write all spaces. */
1639 if (! desired_frame->highlight[vpos])
1640 {
1641 if (!must_write_spaces)
1642 /* We know that the previous character byte contains 0. */
1643 while (nbody[nlen - 1] == SPACEGLYPH)
1644 nlen--;
1645 }
1646 else
1647 {
1648 /* For an inverse-video line, give it extra trailing spaces
1649 all the way to the frame edge
1650 so that the reverse video extends all the way across. */
1651
1652 while (nlen < FRAME_WIDTH (frame) - 1)
1653 nbody[nlen++] = SPACEGLYPH;
1654 }
1655
1656 /* If there's no i/d char, quickly do the best we can without it. */
1657 if (!char_ins_del_ok)
1658 {
1659 int i,j;
1660
1661 #if 0
1662 if (FRAME_X_P (frame))
1663 {
1664 /* Under X, erase everything we are going to rewrite,
1665 and rewrite everything from the first char that's changed.
1666 This is part of supporting fonts like Courier
1667 whose chars can overlap outside the char width. */
1668 for (i = 0; i < nlen; i++)
1669 if (i >= olen || nbody[i] != obody[i])
1670 break;
1671
1672 cursor_to (vpos, i);
1673 if (i != olen)
1674 clear_end_of_line (olen);
1675 write_glyphs (nbody + i, nlen - i);
1676 }
1677 else
1678 {}
1679 #endif /* 0 */
1680 for (i = 0; i < nlen; i++)
1681 {
1682 if (i >= olen || nbody[i] != obody[i]) /* A non-matching char. */
1683 {
1684 cursor_to (vpos, i);
1685 for (j = 1; (i + j < nlen &&
1686 (i + j >= olen || nbody[i+j] != obody[i+j]));
1687 j++);
1688
1689 /* Output this run of non-matching chars. */
1690 write_glyphs (nbody + i, j);
1691 i += j - 1;
1692
1693 /* Now find the next non-match. */
1694 }
1695 }
1696
1697 /* Clear the rest of the line, or the non-clear part of it. */
1698 if (olen > nlen)
1699 {
1700 cursor_to (vpos, nlen);
1701 clear_end_of_line (olen);
1702 }
1703
1704 /* Exchange contents between current_frame and new_frame. */
1705 temp = desired_frame->glyphs[vpos];
1706 desired_frame->glyphs[vpos] = current_frame->glyphs[vpos];
1707 current_frame->glyphs[vpos] = temp;
1708
1709 /* Exchange charstarts between current_frame and new_frame. */
1710 temp1 = desired_frame->charstarts[vpos];
1711 desired_frame->charstarts[vpos] = current_frame->charstarts[vpos];
1712 current_frame->charstarts[vpos] = temp1;
1713
1714 return;
1715 }
1716
1717 if (!olen)
1718 {
1719 nsp = (must_write_spaces || desired_frame->highlight[vpos])
1720 ? 0 : count_blanks (nbody);
1721 if (nlen > nsp)
1722 {
1723 cursor_to (vpos, nsp);
1724 write_glyphs (nbody + nsp, nlen - nsp);
1725 }
1726
1727 /* Exchange contents between current_frame and new_frame. */
1728 temp = desired_frame->glyphs[vpos];
1729 desired_frame->glyphs[vpos] = current_frame->glyphs[vpos];
1730 current_frame->glyphs[vpos] = temp;
1731
1732 /* Exchange charstarts between current_frame and new_frame. */
1733 temp1 = desired_frame->charstarts[vpos];
1734 desired_frame->charstarts[vpos] = current_frame->charstarts[vpos];
1735 current_frame->charstarts[vpos] = temp1;
1736
1737 return;
1738 }
1739
1740 obody[olen] = 1;
1741 save = nbody[nlen];
1742 nbody[nlen] = 0;
1743
1744 /* Compute number of leading blanks in old and new contents. */
1745 osp = count_blanks (obody);
1746 if (!desired_frame->highlight[vpos])
1747 nsp = count_blanks (nbody);
1748 else
1749 nsp = 0;
1750
1751 /* Compute number of matching chars starting with first nonblank. */
1752 begmatch = count_match (obody + osp, nbody + nsp);
1753
1754 /* Spaces in new match implicit space past the end of old. */
1755 /* A bug causing this to be a no-op was fixed in 18.29. */
1756 if (!must_write_spaces && osp + begmatch == olen)
1757 {
1758 np1 = nbody + nsp;
1759 while (np1[begmatch] == SPACEGLYPH)
1760 begmatch++;
1761 }
1762
1763 /* Avoid doing insert/delete char
1764 just cause number of leading spaces differs
1765 when the following text does not match. */
1766 if (begmatch == 0 && osp != nsp)
1767 osp = nsp = min (osp, nsp);
1768
1769 /* Find matching characters at end of line */
1770 op1 = obody + olen;
1771 np1 = nbody + nlen;
1772 op2 = op1 + begmatch - min (olen - osp, nlen - nsp);
1773 while (op1 > op2 && op1[-1] == np1[-1])
1774 {
1775 op1--;
1776 np1--;
1777 }
1778 endmatch = obody + olen - op1;
1779
1780 /* Put correct value back in nbody[nlen].
1781 This is important because direct_output_for_insert
1782 can write into the line at a later point.
1783 If this screws up the zero at the end of the line, re-establish it. */
1784 nbody[nlen] = save;
1785 obody[olen] = 0;
1786
1787 /* tem gets the distance to insert or delete.
1788 endmatch is how many characters we save by doing so.
1789 Is it worth it? */
1790
1791 tem = (nlen - nsp) - (olen - osp);
1792 if (endmatch && tem
1793 && (!char_ins_del_ok || endmatch <= char_ins_del_cost (frame)[tem]))
1794 endmatch = 0;
1795
1796 /* nsp - osp is the distance to insert or delete.
1797 If that is nonzero, begmatch is known to be nonzero also.
1798 begmatch + endmatch is how much we save by doing the ins/del.
1799 Is it worth it? */
1800
1801 if (nsp != osp
1802 && (!char_ins_del_ok
1803 || begmatch + endmatch <= char_ins_del_cost (frame)[nsp - osp]))
1804 {
1805 begmatch = 0;
1806 endmatch = 0;
1807 osp = nsp = min (osp, nsp);
1808 }
1809
1810 /* Now go through the line, inserting, writing and
1811 deleting as appropriate. */
1812
1813 if (osp > nsp)
1814 {
1815 cursor_to (vpos, nsp);
1816 delete_glyphs (osp - nsp);
1817 }
1818 else if (nsp > osp)
1819 {
1820 /* If going to delete chars later in line
1821 and insert earlier in the line,
1822 must delete first to avoid losing data in the insert */
1823 if (endmatch && nlen < olen + nsp - osp)
1824 {
1825 cursor_to (vpos, nlen - endmatch + osp - nsp);
1826 delete_glyphs (olen + nsp - osp - nlen);
1827 olen = nlen - (nsp - osp);
1828 }
1829 cursor_to (vpos, osp);
1830 insert_glyphs ((char *)0, nsp - osp);
1831 }
1832 olen += nsp - osp;
1833
1834 tem = nsp + begmatch + endmatch;
1835 if (nlen != tem || olen != tem)
1836 {
1837 cursor_to (vpos, nsp + begmatch);
1838 if (!endmatch || nlen == olen)
1839 {
1840 /* If new text being written reaches right margin,
1841 there is no need to do clear-to-eol at the end.
1842 (and it would not be safe, since cursor is not
1843 going to be "at the margin" after the text is done) */
1844 if (nlen == FRAME_WIDTH (frame))
1845 olen = 0;
1846 write_glyphs (nbody + nsp + begmatch, nlen - tem);
1847
1848 #ifdef obsolete
1849
1850 /* the following code loses disastrously if tem == nlen.
1851 Rather than trying to fix that case, I am trying the simpler
1852 solution found above. */
1853
1854 /* If the text reaches to the right margin,
1855 it will lose one way or another (depending on AutoWrap)
1856 to clear to end of line after outputting all the text.
1857 So pause with one character to go and clear the line then. */
1858 if (nlen == FRAME_WIDTH (frame) && fast_clear_end_of_line && olen > nlen)
1859 {
1860 /* endmatch must be zero, and tem must equal nsp + begmatch */
1861 write_glyphs (nbody + tem, nlen - tem - 1);
1862 clear_end_of_line (olen);
1863 olen = 0; /* Don't let it be cleared again later */
1864 write_glyphs (nbody + nlen - 1, 1);
1865 }
1866 else
1867 write_glyphs (nbody + nsp + begmatch, nlen - tem);
1868 #endif /* OBSOLETE */
1869
1870 }
1871 else if (nlen > olen)
1872 {
1873 write_glyphs (nbody + nsp + begmatch, olen - tem);
1874 insert_glyphs (nbody + nsp + begmatch + olen - tem, nlen - olen);
1875 olen = nlen;
1876 }
1877 else if (olen > nlen)
1878 {
1879 write_glyphs (nbody + nsp + begmatch, nlen - tem);
1880 delete_glyphs (olen - nlen);
1881 olen = nlen;
1882 }
1883 }
1884
1885 just_erase:
1886 /* If any unerased characters remain after the new line, erase them. */
1887 if (olen > nlen)
1888 {
1889 cursor_to (vpos, nlen);
1890 clear_end_of_line (olen);
1891 }
1892
1893 /* Exchange contents between current_frame and new_frame. */
1894 temp = desired_frame->glyphs[vpos];
1895 desired_frame->glyphs[vpos] = current_frame->glyphs[vpos];
1896 current_frame->glyphs[vpos] = temp;
1897
1898 /* Exchange charstarts between current_frame and new_frame. */
1899 temp1 = desired_frame->charstarts[vpos];
1900 desired_frame->charstarts[vpos] = current_frame->charstarts[vpos];
1901 current_frame->charstarts[vpos] = temp1;
1902 }
1903 \f
1904 /* A vector of size >= NFRAMES + 3 * NBUFFERS + 1, containing the session's
1905 frames, buffers, buffer-read-only flags, and buffer-modified-flags,
1906 and a trailing sentinel (so we don't need to add length checks). */
1907 static Lisp_Object frame_and_buffer_state;
1908
1909 DEFUN ("frame-or-buffer-changed-p", Fframe_or_buffer_changed_p,
1910 Sframe_or_buffer_changed_p, 0, 0, 0,
1911 "Return non-nil if the frame and buffer state appears to have changed.\n\
1912 The state variable is an internal vector containing all frames and buffers,\n\
1913 aside from buffers whose names start with space,\n\
1914 along with the buffers' read-only and modified flags, which allows a fast\n\
1915 check to see whether the menu bars might need to be recomputed.\n\
1916 If this function returns non-nil, it updates the internal vector to reflect\n\
1917 the current state.\n")
1918 ()
1919 {
1920 Lisp_Object tail, frame, buf;
1921 Lisp_Object *vecp;
1922 int n;
1923
1924 vecp = XVECTOR (frame_and_buffer_state)->contents;
1925 FOR_EACH_FRAME (tail, frame)
1926 {
1927 if (!EQ (*vecp++, frame))
1928 goto changed;
1929 if (!EQ (*vecp++, XFRAME (frame)->name))
1930 goto changed;
1931 }
1932 /* Check that the buffer info matches.
1933 No need to test for the end of the vector
1934 because the last element of the vector is lambda
1935 and that will always cause a mismatch. */
1936 for (tail = Vbuffer_alist; CONSP (tail); tail = XCONS (tail)->cdr)
1937 {
1938 buf = XCONS (XCONS (tail)->car)->cdr;
1939 /* Ignore buffers that aren't included in buffer lists. */
1940 if (XSTRING (XBUFFER (buf)->name)->data[0] == ' ')
1941 continue;
1942 if (!EQ (*vecp++, buf))
1943 goto changed;
1944 if (!EQ (*vecp++, XBUFFER (buf)->read_only))
1945 goto changed;
1946 if (!EQ (*vecp++, Fbuffer_modified_p (buf)))
1947 goto changed;
1948 }
1949 /* Detect deletion of a buffer at the end of the list. */
1950 if (*vecp == Qlambda)
1951 return Qnil;
1952 changed:
1953 /* Start with 1 so there is room for at least one lambda at the end. */
1954 n = 1;
1955 FOR_EACH_FRAME (tail, frame)
1956 n += 2;
1957 for (tail = Vbuffer_alist; CONSP (tail); tail = XCONS (tail)->cdr)
1958 n += 3;
1959 /* Reallocate the vector if it's grown, or if it's shrunk a lot. */
1960 if (n > XVECTOR (frame_and_buffer_state)->size
1961 || n + 20 < XVECTOR (frame_and_buffer_state)->size / 2)
1962 /* Add 20 extra so we grow it less often. */
1963 frame_and_buffer_state = Fmake_vector (make_number (n + 20), Qlambda);
1964 vecp = XVECTOR (frame_and_buffer_state)->contents;
1965 FOR_EACH_FRAME (tail, frame)
1966 {
1967 *vecp++ = frame;
1968 *vecp++ = XFRAME (frame)->name;
1969 }
1970 for (tail = Vbuffer_alist; CONSP (tail); tail = XCONS (tail)->cdr)
1971 {
1972 buf = XCONS (XCONS (tail)->car)->cdr;
1973 /* Ignore buffers that aren't included in buffer lists. */
1974 if (XSTRING (XBUFFER (buf)->name)->data[0] == ' ')
1975 continue;
1976 *vecp++ = buf;
1977 *vecp++ = XBUFFER (buf)->read_only;
1978 *vecp++ = Fbuffer_modified_p (buf);
1979 }
1980 /* Fill up the vector with lambdas (always at least one). */
1981 *vecp++ = Qlambda;
1982 while (vecp - XVECTOR (frame_and_buffer_state)->contents
1983 < XVECTOR (frame_and_buffer_state)->size)
1984 *vecp++ = Qlambda;
1985 /* Make sure we didn't overflow the vector. */
1986 if (vecp - XVECTOR (frame_and_buffer_state)->contents
1987 > XVECTOR (frame_and_buffer_state)->size)
1988 abort ();
1989 return Qt;
1990 }
1991 \f
1992 DEFUN ("open-termscript", Fopen_termscript, Sopen_termscript,
1993 1, 1, "FOpen termscript file: ",
1994 "Start writing all terminal output to FILE as well as the terminal.\n\
1995 FILE = nil means just close any termscript file currently open.")
1996 (file)
1997 Lisp_Object file;
1998 {
1999 if (termscript != 0) fclose (termscript);
2000 termscript = 0;
2001
2002 if (! NILP (file))
2003 {
2004 file = Fexpand_file_name (file, Qnil);
2005 termscript = fopen (XSTRING (file)->data, "w");
2006 if (termscript == 0)
2007 report_file_error ("Opening termscript", Fcons (file, Qnil));
2008 }
2009 return Qnil;
2010 }
2011 \f
2012
2013 #ifdef SIGWINCH
2014 SIGTYPE
2015 window_change_signal (signalnum) /* If we don't have an argument, */
2016 int signalnum; /* some compilers complain in signal calls. */
2017 {
2018 int width, height;
2019 extern int errno;
2020 int old_errno = errno;
2021
2022 get_frame_size (&width, &height);
2023
2024 /* The frame size change obviously applies to a termcap-controlled
2025 frame. Find such a frame in the list, and assume it's the only
2026 one (since the redisplay code always writes to stdout, not a
2027 FILE * specified in the frame structure). Record the new size,
2028 but don't reallocate the data structures now. Let that be done
2029 later outside of the signal handler. */
2030
2031 {
2032 Lisp_Object tail, frame;
2033
2034 FOR_EACH_FRAME (tail, frame)
2035 {
2036 if (FRAME_TERMCAP_P (XFRAME (frame)))
2037 {
2038 change_frame_size (XFRAME (frame), height, width, 0, 1);
2039 break;
2040 }
2041 }
2042 }
2043
2044 signal (SIGWINCH, window_change_signal);
2045 errno = old_errno;
2046 }
2047 #endif /* SIGWINCH */
2048
2049
2050 /* Do any change in frame size that was requested by a signal. */
2051
2052 do_pending_window_change ()
2053 {
2054 /* If window_change_signal should have run before, run it now. */
2055 while (delayed_size_change)
2056 {
2057 Lisp_Object tail, frame;
2058
2059 delayed_size_change = 0;
2060
2061 FOR_EACH_FRAME (tail, frame)
2062 {
2063 FRAME_PTR f = XFRAME (frame);
2064
2065 int height = FRAME_NEW_HEIGHT (f);
2066 int width = FRAME_NEW_WIDTH (f);
2067
2068 if (height != 0 || width != 0)
2069 change_frame_size (f, height, width, 0, 0);
2070 }
2071 }
2072 }
2073
2074
2075 /* Change the frame height and/or width. Values may be given as zero to
2076 indicate no change is to take place.
2077
2078 If DELAY is non-zero, then assume we're being called from a signal
2079 handler, and queue the change for later - perhaps the next
2080 redisplay. Since this tries to resize windows, we can't call it
2081 from a signal handler. */
2082
2083 change_frame_size (f, newheight, newwidth, pretend, delay)
2084 register FRAME_PTR f;
2085 int newheight, newwidth, pretend;
2086 {
2087 Lisp_Object tail, frame;
2088 if (FRAME_TERMCAP_P (f))
2089 {
2090 /* When using termcap, all frames use the same screen,
2091 so a change in size affects all termcap frames. */
2092 FOR_EACH_FRAME (tail, frame)
2093 if (FRAME_TERMCAP_P (XFRAME (frame)))
2094 change_frame_size_1 (XFRAME (frame), newheight, newwidth,
2095 pretend, delay);
2096 }
2097 else
2098 change_frame_size_1 (f, newheight, newwidth, pretend, delay);
2099 }
2100
2101 static void
2102 change_frame_size_1 (frame, newheight, newwidth, pretend, delay)
2103 register FRAME_PTR frame;
2104 int newheight, newwidth, pretend, delay;
2105 {
2106 /* If we can't deal with the change now, queue it for later. */
2107 if (delay)
2108 {
2109 FRAME_NEW_HEIGHT (frame) = newheight;
2110 FRAME_NEW_WIDTH (frame) = newwidth;
2111 delayed_size_change = 1;
2112 return;
2113 }
2114
2115 /* This size-change overrides any pending one for this frame. */
2116 FRAME_NEW_HEIGHT (frame) = 0;
2117 FRAME_NEW_WIDTH (frame) = 0;
2118
2119 /* If an argument is zero, set it to the current value. */
2120 newheight || (newheight = FRAME_HEIGHT (frame));
2121 newwidth || (newwidth = FRAME_WIDTH (frame));
2122
2123 /* Round up to the smallest acceptable size. */
2124 check_frame_size (frame, &newheight, &newwidth);
2125
2126 /* If we're not changing the frame size, quit now. */
2127 if (newheight == FRAME_HEIGHT (frame)
2128 && newwidth == FRAME_WIDTH (frame))
2129 return;
2130
2131 if (newheight != FRAME_HEIGHT (frame))
2132 {
2133 if (FRAME_HAS_MINIBUF_P (frame)
2134 && ! FRAME_MINIBUF_ONLY_P (frame))
2135 {
2136 /* Frame has both root and minibuffer. */
2137 set_window_height (FRAME_ROOT_WINDOW (frame),
2138 newheight - 1 - FRAME_MENU_BAR_LINES (frame), 0);
2139 XSETFASTINT (XWINDOW (FRAME_MINIBUF_WINDOW (frame))->top,
2140 newheight - 1);
2141 set_window_height (FRAME_MINIBUF_WINDOW (frame), 1, 0);
2142 }
2143 else
2144 /* Frame has just one top-level window. */
2145 set_window_height (FRAME_ROOT_WINDOW (frame),
2146 newheight - FRAME_MENU_BAR_LINES (frame), 0);
2147
2148 if (FRAME_TERMCAP_P (frame) && !pretend)
2149 FrameRows = newheight;
2150
2151 #if 0
2152 if (frame->output_method == output_termcap)
2153 {
2154 frame_height = newheight;
2155 if (!pretend)
2156 FrameRows = newheight;
2157 }
2158 #endif
2159 }
2160
2161 if (newwidth != FRAME_WIDTH (frame))
2162 {
2163 set_window_width (FRAME_ROOT_WINDOW (frame), newwidth, 0);
2164 if (FRAME_HAS_MINIBUF_P (frame))
2165 set_window_width (FRAME_MINIBUF_WINDOW (frame), newwidth, 0);
2166
2167 if (FRAME_TERMCAP_P (frame) && !pretend)
2168 FrameCols = newwidth;
2169 #if 0
2170 if (frame->output_method == output_termcap)
2171 {
2172 frame_width = newwidth;
2173 if (!pretend)
2174 FrameCols = newwidth;
2175 }
2176 #endif
2177 }
2178
2179 FRAME_HEIGHT (frame) = newheight;
2180 FRAME_WIDTH (frame) = newwidth;
2181
2182 if (FRAME_CURSOR_X (frame) >= FRAME_WIDTH (frame))
2183 FRAME_CURSOR_X (frame) = FRAME_WIDTH (frame) - 1;
2184 if (FRAME_CURSOR_Y (frame) >= FRAME_HEIGHT (frame))
2185 FRAME_CURSOR_Y (frame) = FRAME_HEIGHT (frame) - 1;
2186
2187 remake_frame_glyphs (frame);
2188 calculate_costs (frame);
2189 }
2190 \f
2191 DEFUN ("send-string-to-terminal", Fsend_string_to_terminal,
2192 Ssend_string_to_terminal, 1, 1, 0,
2193 "Send STRING to the terminal without alteration.\n\
2194 Control characters in STRING will have terminal-dependent effects.")
2195 (str)
2196 Lisp_Object str;
2197 {
2198 CHECK_STRING (str, 0);
2199 fwrite (XSTRING (str)->data, 1, XSTRING (str)->size, stdout);
2200 fflush (stdout);
2201 if (termscript)
2202 {
2203 fwrite (XSTRING (str)->data, 1, XSTRING (str)->size, termscript);
2204 fflush (termscript);
2205 }
2206 return Qnil;
2207 }
2208
2209 DEFUN ("ding", Fding, Sding, 0, 1, 0,
2210 "Beep, or flash the screen.\n\
2211 Also, unless an argument is given,\n\
2212 terminate any keyboard macro currently executing.")
2213 (arg)
2214 Lisp_Object arg;
2215 {
2216 if (!NILP (arg))
2217 {
2218 if (noninteractive)
2219 putchar (07);
2220 else
2221 ring_bell ();
2222 fflush (stdout);
2223 }
2224 else
2225 bitch_at_user ();
2226
2227 return Qnil;
2228 }
2229
2230 bitch_at_user ()
2231 {
2232 if (noninteractive)
2233 putchar (07);
2234 else if (!INTERACTIVE) /* Stop executing a keyboard macro. */
2235 error ("Keyboard macro terminated by a command ringing the bell");
2236 else
2237 ring_bell ();
2238 fflush (stdout);
2239 }
2240
2241 DEFUN ("sleep-for", Fsleep_for, Ssleep_for, 1, 2, 0,
2242 "Pause, without updating display, for SECONDS seconds.\n\
2243 SECONDS may be a floating-point value, meaning that you can wait for a\n\
2244 fraction of a second. Optional second arg MILLISECONDS specifies an\n\
2245 additional wait period, in milliseconds; this may be useful if your\n\
2246 Emacs was built without floating point support.\n\
2247 \(Not all operating systems support waiting for a fraction of a second.)")
2248 (seconds, milliseconds)
2249 Lisp_Object seconds, milliseconds;
2250 {
2251 int sec, usec;
2252
2253 if (NILP (milliseconds))
2254 XSETINT (milliseconds, 0);
2255 else
2256 CHECK_NUMBER (milliseconds, 1);
2257 usec = XINT (milliseconds) * 1000;
2258
2259 #ifdef LISP_FLOAT_TYPE
2260 {
2261 double duration = extract_float (seconds);
2262 sec = (int) duration;
2263 usec += (duration - sec) * 1000000;
2264 }
2265 #else
2266 CHECK_NUMBER (seconds, 0);
2267 sec = XINT (seconds);
2268 #endif
2269
2270 #ifndef EMACS_HAS_USECS
2271 if (sec == 0 && usec != 0)
2272 error ("millisecond `sleep-for' not supported on %s", SYSTEM_TYPE);
2273 #endif
2274
2275 /* Assure that 0 <= usec < 1000000. */
2276 if (usec < 0)
2277 {
2278 /* We can't rely on the rounding being correct if user is negative. */
2279 if (-1000000 < usec)
2280 sec--, usec += 1000000;
2281 else
2282 sec -= -usec / 1000000, usec = 1000000 - (-usec % 1000000);
2283 }
2284 else
2285 sec += usec / 1000000, usec %= 1000000;
2286
2287 if (sec <= 0)
2288 return Qnil;
2289
2290 {
2291 Lisp_Object zero;
2292
2293 XSETFASTINT (zero, 0);
2294 wait_reading_process_input (sec, usec, zero, 0);
2295 }
2296
2297 /* We should always have wait_reading_process_input; we have a dummy
2298 implementation for systems which don't support subprocesses. */
2299 #if 0
2300 /* No wait_reading_process_input */
2301 immediate_quit = 1;
2302 QUIT;
2303
2304 #ifdef VMS
2305 sys_sleep (sec);
2306 #else /* not VMS */
2307 /* The reason this is done this way
2308 (rather than defined (H_S) && defined (H_T))
2309 is because the VMS preprocessor doesn't grok `defined' */
2310 #ifdef HAVE_SELECT
2311 EMACS_GET_TIME (end_time);
2312 EMACS_SET_SECS_USECS (timeout, sec, usec);
2313 EMACS_ADD_TIME (end_time, end_time, timeout);
2314
2315 while (1)
2316 {
2317 EMACS_GET_TIME (timeout);
2318 EMACS_SUB_TIME (timeout, end_time, timeout);
2319 if (EMACS_TIME_NEG_P (timeout)
2320 || !select (1, 0, 0, 0, &timeout))
2321 break;
2322 }
2323 #else /* not HAVE_SELECT */
2324 sleep (sec);
2325 #endif /* HAVE_SELECT */
2326 #endif /* not VMS */
2327
2328 immediate_quit = 0;
2329 #endif /* no subprocesses */
2330
2331 return Qnil;
2332 }
2333
2334 /* This is just like wait_reading_process_input, except that
2335 it does the redisplay.
2336
2337 It's also much like Fsit_for, except that it can be used for
2338 waiting for input as well. */
2339
2340 Lisp_Object
2341 sit_for (sec, usec, reading, display)
2342 int sec, usec, reading, display;
2343 {
2344 Lisp_Object read_kbd;
2345
2346 if (detect_input_pending ())
2347 return Qnil;
2348
2349 if (display)
2350 redisplay_preserve_echo_area ();
2351
2352 if (sec == 0 && usec == 0)
2353 return Qt;
2354
2355 #ifdef SIGIO
2356 gobble_input (0);
2357 #endif
2358
2359 XSETINT (read_kbd, reading ? -1 : 1);
2360 wait_reading_process_input (sec, usec, read_kbd, display);
2361
2362
2363 /* wait_reading_process_input should always be available now; it is
2364 simulated in a simple way on systems that don't support
2365 subprocesses. */
2366 #if 0
2367 /* No wait_reading_process_input available. */
2368 immediate_quit = 1;
2369 QUIT;
2370
2371 waitchannels = 1;
2372 #ifdef VMS
2373 input_wait_timeout (XINT (arg));
2374 #else /* not VMS */
2375 #ifndef HAVE_TIMEVAL
2376 timeout_sec = sec;
2377 select (1, &waitchannels, 0, 0, &timeout_sec);
2378 #else /* HAVE_TIMEVAL */
2379 timeout.tv_sec = sec;
2380 timeout.tv_usec = usec;
2381 select (1, &waitchannels, 0, 0, &timeout);
2382 #endif /* HAVE_TIMEVAL */
2383 #endif /* not VMS */
2384
2385 immediate_quit = 0;
2386 #endif
2387
2388 return detect_input_pending () ? Qnil : Qt;
2389 }
2390
2391 DEFUN ("sit-for", Fsit_for, Ssit_for, 1, 3, 0,
2392 "Perform redisplay, then wait for SECONDS seconds or until input is available.\n\
2393 SECONDS may be a floating-point value, meaning that you can wait for a\n\
2394 fraction of a second. Optional second arg MILLISECONDS specifies an\n\
2395 additional wait period, in milliseconds; this may be useful if your\n\
2396 Emacs was built without floating point support.\n\
2397 \(Not all operating systems support waiting for a fraction of a second.)\n\
2398 Optional third arg non-nil means don't redisplay, just wait for input.\n\
2399 Redisplay is preempted as always if input arrives, and does not happen\n\
2400 if input is available before it starts.\n\
2401 Value is t if waited the full time with no input arriving.")
2402 (seconds, milliseconds, nodisp)
2403 Lisp_Object seconds, milliseconds, nodisp;
2404 {
2405 int sec, usec;
2406
2407 if (NILP (milliseconds))
2408 XSETINT (milliseconds, 0);
2409 else
2410 CHECK_NUMBER (milliseconds, 1);
2411 usec = XINT (milliseconds) * 1000;
2412
2413 #ifdef LISP_FLOAT_TYPE
2414 {
2415 double duration = extract_float (seconds);
2416 sec = (int) duration;
2417 usec += (duration - sec) * 1000000;
2418 }
2419 #else
2420 CHECK_NUMBER (seconds, 0);
2421 sec = XINT (seconds);
2422 #endif
2423
2424 #ifndef EMACS_HAS_USECS
2425 if (usec != 0 && sec == 0)
2426 error ("millisecond `sit-for' not supported on %s", SYSTEM_TYPE);
2427 #endif
2428
2429 if (NILP (nodisp))
2430 prepare_menu_bars ();
2431 return sit_for (sec, usec, 0, NILP (nodisp));
2432 }
2433 \f
2434 char *terminal_type;
2435
2436 /* Initialization done when Emacs fork is started, before doing stty. */
2437 /* Determine terminal type and set terminal_driver */
2438 /* Then invoke its decoding routine to set up variables
2439 in the terminal package */
2440
2441 init_display ()
2442 {
2443 #ifdef HAVE_X_WINDOWS
2444 extern int display_arg;
2445 #endif
2446
2447 meta_key = 0;
2448 inverse_video = 0;
2449 cursor_in_echo_area = 0;
2450 terminal_type = (char *) 0;
2451
2452 /* Now is the time to initialize this; it's used by init_sys_modes
2453 during startup. */
2454 Vwindow_system = Qnil;
2455
2456 /* If the user wants to use a window system, we shouldn't bother
2457 initializing the terminal. This is especially important when the
2458 terminal is so dumb that emacs gives up before and doesn't bother
2459 using the window system.
2460
2461 If the DISPLAY environment variable is set, try to use X, and die
2462 with an error message if that doesn't work. */
2463
2464 #ifdef HAVE_X_WINDOWS
2465 if (! display_arg)
2466 {
2467 #ifdef VMS
2468 display_arg = (getenv ("DECW$DISPLAY") != 0);
2469 #else
2470 display_arg = (getenv ("DISPLAY") != 0);
2471 #endif
2472 }
2473
2474 if (!inhibit_window_system && display_arg)
2475 {
2476 Vwindow_system = intern ("x");
2477 #ifdef HAVE_X11
2478 Vwindow_system_version = make_number (11);
2479 #else
2480 Vwindow_system_version = make_number (10);
2481 #endif
2482 return;
2483 }
2484 #endif /* HAVE_X_WINDOWS */
2485
2486 /* If no window system has been specified, try to use the terminal. */
2487 if (! isatty (0))
2488 {
2489 fprintf (stderr, "emacs: standard input is not a tty\n");
2490 exit (1);
2491 }
2492
2493 /* Look at the TERM variable */
2494 terminal_type = (char *) getenv ("TERM");
2495 if (!terminal_type)
2496 {
2497 #ifdef VMS
2498 fprintf (stderr, "Please specify your terminal type.\n\
2499 For types defined in VMS, use set term /device=TYPE.\n\
2500 For types not defined in VMS, use define emacs_term \"TYPE\".\n\
2501 \(The quotation marks are necessary since terminal types are lower case.)\n");
2502 #else
2503 fprintf (stderr, "Please set the environment variable TERM; see tset(1).\n");
2504 #endif
2505 exit (1);
2506 }
2507
2508 #ifdef VMS
2509 /* VMS DCL tends to upcase things, so downcase term type.
2510 Hardly any uppercase letters in terminal types; should be none. */
2511 {
2512 char *new = (char *) xmalloc (strlen (terminal_type) + 1);
2513 char *p;
2514
2515 strcpy (new, terminal_type);
2516
2517 for (p = new; *p; p++)
2518 if (isupper (*p))
2519 *p = tolower (*p);
2520
2521 terminal_type = new;
2522 }
2523 #endif
2524
2525 term_init (terminal_type);
2526
2527 remake_frame_glyphs (selected_frame);
2528 calculate_costs (selected_frame);
2529
2530 /* X and Y coordinates of the cursor between updates. */
2531 FRAME_CURSOR_X (selected_frame) = 0;
2532 FRAME_CURSOR_Y (selected_frame) = 0;
2533
2534 #ifdef SIGWINCH
2535 #ifndef CANNOT_DUMP
2536 if (initialized)
2537 #endif /* CANNOT_DUMP */
2538 signal (SIGWINCH, window_change_signal);
2539 #endif /* SIGWINCH */
2540 }
2541 \f
2542 syms_of_display ()
2543 {
2544 #ifdef MULTI_FRAME
2545 defsubr (&Sredraw_frame);
2546 #endif
2547 defsubr (&Sredraw_display);
2548 defsubr (&Sframe_or_buffer_changed_p);
2549 defsubr (&Sopen_termscript);
2550 defsubr (&Sding);
2551 defsubr (&Ssit_for);
2552 defsubr (&Ssleep_for);
2553 defsubr (&Ssend_string_to_terminal);
2554
2555 frame_and_buffer_state = Fmake_vector (make_number (20), Qlambda);
2556 staticpro (&frame_and_buffer_state);
2557
2558 DEFVAR_INT ("baud-rate", &baud_rate,
2559 "*The output baud rate of the terminal.\n\
2560 On most systems, changing this value will affect the amount of padding\n\
2561 and the other strategic decisions made during redisplay.");
2562 DEFVAR_BOOL ("inverse-video", &inverse_video,
2563 "*Non-nil means invert the entire frame display.\n\
2564 This means everything is in inverse video which otherwise would not be.");
2565 DEFVAR_BOOL ("visible-bell", &visible_bell,
2566 "*Non-nil means try to flash the frame to represent a bell.");
2567 DEFVAR_BOOL ("no-redraw-on-reenter", &no_redraw_on_reenter,
2568 "*Non-nil means no need to redraw entire frame after suspending.\n\
2569 A non-nil value is useful if the terminal can automatically preserve\n\
2570 Emacs's frame display when you reenter Emacs.\n\
2571 It is up to you to set this variable if your terminal can do that.");
2572 DEFVAR_LISP ("window-system", &Vwindow_system,
2573 "A symbol naming the window-system under which Emacs is running\n\
2574 \(such as `x'), or nil if emacs is running on an ordinary terminal.");
2575 DEFVAR_LISP ("window-system-version", &Vwindow_system_version,
2576 "The version number of the window system in use.\n\
2577 For X windows, this is 10 or 11.");
2578 DEFVAR_BOOL ("cursor-in-echo-area", &cursor_in_echo_area,
2579 "Non-nil means put cursor in minibuffer, at end of any message there.");
2580 DEFVAR_LISP ("glyph-table", &Vglyph_table,
2581 "Table defining how to output a glyph code to the frame.\n\
2582 If not nil, this is a vector indexed by glyph code to define the glyph.\n\
2583 Each element can be:\n\
2584 integer: a glyph code which this glyph is an alias for.\n\
2585 string: output this glyph using that string (not impl. in X windows).\n\
2586 nil: this glyph mod 256 is char code to output,\n\
2587 and this glyph / 256 is face code for X windows (see `face-id').");
2588 Vglyph_table = Qnil;
2589
2590 DEFVAR_LISP ("standard-display-table", &Vstandard_display_table,
2591 "Display table to use for buffers that specify none.\n\
2592 See `buffer-display-table' for more information.");
2593 Vstandard_display_table = Qnil;
2594
2595 /* Initialize `window-system', unless init_display already decided it. */
2596 #ifdef CANNOT_DUMP
2597 if (noninteractive)
2598 #endif
2599 {
2600 Vwindow_system = Qnil;
2601 Vwindow_system_version = Qnil;
2602 }
2603 }