Merge from emacs--rel--22
[bpt/emacs.git] / src / window.c
1 /* Window creation, deletion and examination for GNU Emacs.
2 Does not include redisplay.
3 Copyright (C) 1985, 1986, 1987, 1993, 1994, 1995, 1996, 1997, 1998, 2000,
4 2001, 2002, 2003, 2004, 2005, 2006, 2007, 2008
5 Free Software Foundation, Inc.
6
7 This file is part of GNU Emacs.
8
9 GNU Emacs is free software; you can redistribute it and/or modify
10 it under the terms of the GNU General Public License as published by
11 the Free Software Foundation; either version 3, or (at your option)
12 any later version.
13
14 GNU Emacs is distributed in the hope that it will be useful,
15 but WITHOUT ANY WARRANTY; without even the implied warranty of
16 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
17 GNU General Public License for more details.
18
19 You should have received a copy of the GNU General Public License
20 along with GNU Emacs; see the file COPYING. If not, write to
21 the Free Software Foundation, Inc., 51 Franklin Street, Fifth Floor,
22 Boston, MA 02110-1301, USA. */
23
24 #include <config.h>
25 #include <stdio.h>
26
27 #include "lisp.h"
28 #include "buffer.h"
29 #include "keyboard.h"
30 #include "keymap.h"
31 #include "frame.h"
32 #include "window.h"
33 #include "commands.h"
34 #include "indent.h"
35 #include "termchar.h"
36 #include "disptab.h"
37 #include "dispextern.h"
38 #include "blockinput.h"
39 #include "intervals.h"
40 #include "termhooks.h" /* For FRAME_TERMINAL. */
41
42 #ifdef HAVE_X_WINDOWS
43 #include "xterm.h"
44 #endif /* HAVE_X_WINDOWS */
45 #ifdef WINDOWSNT
46 #include "w32term.h"
47 #endif
48 #ifdef MSDOS
49 #include "msdos.h"
50 #endif
51 #ifdef MAC_OS
52 #include "macterm.h"
53 #endif
54
55
56 Lisp_Object Qwindowp, Qwindow_live_p, Qwindow_configuration_p;
57 Lisp_Object Qscroll_up, Qscroll_down;
58 Lisp_Object Qwindow_size_fixed;
59 extern Lisp_Object Qleft_margin, Qright_margin;
60
61 static int displayed_window_lines P_ ((struct window *));
62 static struct window *decode_window P_ ((Lisp_Object));
63 static int count_windows P_ ((struct window *));
64 static int get_leaf_windows P_ ((struct window *, struct window **, int));
65 static void window_scroll P_ ((Lisp_Object, int, int, int));
66 static void window_scroll_pixel_based P_ ((Lisp_Object, int, int, int));
67 static void window_scroll_line_based P_ ((Lisp_Object, int, int, int));
68 static int window_min_size_1 P_ ((struct window *, int));
69 static int window_min_size_2 P_ ((struct window *, int));
70 static int window_min_size P_ ((struct window *, int, int, int *));
71 static void size_window P_ ((Lisp_Object, int, int, int, int, int));
72 static int freeze_window_start P_ ((struct window *, void *));
73 static int window_fixed_size_p P_ ((struct window *, int, int));
74 static void enlarge_window P_ ((Lisp_Object, int, int));
75 static Lisp_Object window_list P_ ((void));
76 static int add_window_to_list P_ ((struct window *, void *));
77 static int candidate_window_p P_ ((Lisp_Object, Lisp_Object, Lisp_Object,
78 Lisp_Object));
79 static Lisp_Object next_window P_ ((Lisp_Object, Lisp_Object,
80 Lisp_Object, int));
81 static void decode_next_window_args P_ ((Lisp_Object *, Lisp_Object *,
82 Lisp_Object *));
83 static int foreach_window_1 P_ ((struct window *,
84 int (* fn) (struct window *, void *),
85 void *));
86 static Lisp_Object window_list_1 P_ ((Lisp_Object, Lisp_Object, Lisp_Object));
87
88 /* This is the window in which the terminal's cursor should
89 be left when nothing is being done with it. This must
90 always be a leaf window, and its buffer is selected by
91 the top level editing loop at the end of each command.
92
93 This value is always the same as
94 FRAME_SELECTED_WINDOW (selected_frame). */
95
96 Lisp_Object selected_window;
97
98 /* A list of all windows for use by next_window and Fwindow_list.
99 Functions creating or deleting windows should invalidate this cache
100 by setting it to nil. */
101
102 Lisp_Object Vwindow_list;
103
104 /* The mini-buffer window of the selected frame.
105 Note that you cannot test for mini-bufferness of an arbitrary window
106 by comparing against this; but you can test for mini-bufferness of
107 the selected window. */
108
109 Lisp_Object minibuf_window;
110
111 /* Non-nil means it is the window whose mode line should be
112 shown as the selected window when the minibuffer is selected. */
113
114 Lisp_Object minibuf_selected_window;
115
116 /* Non-nil means it is the window for C-M-v to scroll
117 when the mini-buffer is selected. */
118
119 Lisp_Object Vminibuf_scroll_window;
120
121 /* Non-nil means this is the buffer whose window C-M-v should scroll. */
122
123 Lisp_Object Vother_window_scroll_buffer;
124
125 /* Non-nil means it's function to call to display temp buffers. */
126
127 Lisp_Object Vtemp_buffer_show_function;
128
129 /* Non-zero means line and page scrolling on tall lines (with images)
130 does partial scrolling by modifying window-vscroll. */
131
132 int auto_window_vscroll_p;
133
134 /* Non-zero means to use mode-line-inactive face in all windows but the
135 selected-window and the minibuffer-scroll-window when the
136 minibuffer is active. */
137 int mode_line_in_non_selected_windows;
138
139 /* If a window gets smaller than either of these, it is removed. */
140
141 EMACS_INT window_min_height;
142 EMACS_INT window_min_width;
143
144 /* Nonzero implies Fdisplay_buffer should create windows. */
145
146 int pop_up_windows;
147
148 /* Nonzero implies make new frames for Fdisplay_buffer. */
149
150 int pop_up_frames;
151
152 /* Nonzero means reuse existing frames for displaying buffers. */
153
154 int display_buffer_reuse_frames;
155
156 /* Non-nil means use this function instead of default */
157
158 Lisp_Object Vpop_up_frame_function;
159
160 /* Function to call to handle Fdisplay_buffer. */
161
162 Lisp_Object Vdisplay_buffer_function;
163
164 /* Non-nil means that Fdisplay_buffer should even the heights of windows. */
165
166 Lisp_Object Veven_window_heights;
167
168 /* List of buffer *names* for buffers that should have their own frames. */
169
170 Lisp_Object Vspecial_display_buffer_names;
171
172 /* List of regexps for buffer names that should have their own frames. */
173
174 Lisp_Object Vspecial_display_regexps;
175
176 /* Function to pop up a special frame. */
177
178 Lisp_Object Vspecial_display_function;
179
180 /* List of buffer *names* for buffers to appear in selected window. */
181
182 Lisp_Object Vsame_window_buffer_names;
183
184 /* List of regexps for buffer names to appear in selected window. */
185
186 Lisp_Object Vsame_window_regexps;
187
188 /* Hook run at end of temp_output_buffer_show. */
189
190 Lisp_Object Qtemp_buffer_show_hook;
191
192 /* Fdisplay_buffer always splits the largest window
193 if that window is more than this high. */
194
195 EMACS_INT split_height_threshold;
196
197 /* How to split windows (horizontally/vertically/hybrid). */
198
199 Lisp_Object Vsplit_window_preferred_function;
200
201 /* Number of lines of continuity in scrolling by screenfuls. */
202
203 EMACS_INT next_screen_context_lines;
204
205 /* Incremented for each window created. */
206
207 static int sequence_number;
208
209 /* Nonzero after init_window_once has finished. */
210
211 static int window_initialized;
212
213 /* Hook to run when window config changes. */
214
215 static Lisp_Object Qwindow_configuration_change_hook;
216 static Lisp_Object Vwindow_configuration_change_hook;
217
218 /* Non-nil means scroll commands try to put point
219 at the same screen height as previously. */
220
221 Lisp_Object Vscroll_preserve_screen_position;
222
223 /* Incremented by 1 whenever a window is deleted. */
224
225 int window_deletion_count;
226
227 /* Used by the function window_scroll_pixel_based */
228
229 static int window_scroll_pixel_based_preserve_y;
230
231 #if 0 /* This isn't used anywhere. */
232 /* Nonzero means we can split a frame even if it is "unsplittable". */
233 static int inhibit_frame_unsplittable;
234 #endif /* 0 */
235
236 extern EMACS_INT scroll_margin;
237
238 extern Lisp_Object Qwindow_scroll_functions, Vwindow_scroll_functions;
239 \f
240 DEFUN ("windowp", Fwindowp, Swindowp, 1, 1, 0,
241 doc: /* Returns t if OBJECT is a window. */)
242 (object)
243 Lisp_Object object;
244 {
245 return WINDOWP (object) ? Qt : Qnil;
246 }
247
248 DEFUN ("window-live-p", Fwindow_live_p, Swindow_live_p, 1, 1, 0,
249 doc: /* Returns t if OBJECT is a window which is currently visible. */)
250 (object)
251 Lisp_Object object;
252 {
253 return WINDOW_LIVE_P (object) ? Qt : Qnil;
254 }
255
256 Lisp_Object
257 make_window ()
258 {
259 Lisp_Object val;
260 register struct window *p;
261
262 p = allocate_window ();
263 ++sequence_number;
264 XSETFASTINT (p->sequence_number, sequence_number);
265 XSETFASTINT (p->left_col, 0);
266 XSETFASTINT (p->top_line, 0);
267 XSETFASTINT (p->total_lines, 0);
268 XSETFASTINT (p->total_cols, 0);
269 XSETFASTINT (p->hscroll, 0);
270 XSETFASTINT (p->min_hscroll, 0);
271 p->orig_top_line = p->orig_total_lines = Qnil;
272 p->start = Fmake_marker ();
273 p->pointm = Fmake_marker ();
274 XSETFASTINT (p->use_time, 0);
275 p->frame = Qnil;
276 p->display_table = Qnil;
277 p->dedicated = Qnil;
278 p->pseudo_window_p = 0;
279 bzero (&p->cursor, sizeof (p->cursor));
280 bzero (&p->last_cursor, sizeof (p->last_cursor));
281 bzero (&p->phys_cursor, sizeof (p->phys_cursor));
282 p->desired_matrix = p->current_matrix = 0;
283 p->nrows_scale_factor = p->ncols_scale_factor = 1;
284 p->phys_cursor_type = -1;
285 p->phys_cursor_width = -1;
286 p->must_be_updated_p = 0;
287 XSETFASTINT (p->window_end_vpos, 0);
288 XSETFASTINT (p->window_end_pos, 0);
289 p->window_end_valid = Qnil;
290 p->vscroll = 0;
291 XSETWINDOW (val, p);
292 XSETFASTINT (p->last_point, 0);
293 p->frozen_window_start_p = 0;
294 p->last_cursor_off_p = p->cursor_off_p = 0;
295 p->left_margin_cols = Qnil;
296 p->right_margin_cols = Qnil;
297 p->left_fringe_width = Qnil;
298 p->right_fringe_width = Qnil;
299 p->fringes_outside_margins = Qnil;
300 p->scroll_bar_width = Qnil;
301 p->vertical_scroll_bar_type = Qt;
302
303 Vwindow_list = Qnil;
304 return val;
305 }
306
307 DEFUN ("selected-window", Fselected_window, Sselected_window, 0, 0, 0,
308 doc: /* Return the window that the cursor now appears in and commands apply to. */)
309 ()
310 {
311 return selected_window;
312 }
313
314 DEFUN ("minibuffer-window", Fminibuffer_window, Sminibuffer_window, 0, 1, 0,
315 doc: /* Return the window used now for minibuffers.
316 If the optional argument FRAME is specified, return the minibuffer window
317 used by that frame. */)
318 (frame)
319 Lisp_Object frame;
320 {
321 if (NILP (frame))
322 frame = selected_frame;
323 CHECK_LIVE_FRAME (frame);
324 return FRAME_MINIBUF_WINDOW (XFRAME (frame));
325 }
326
327 DEFUN ("window-minibuffer-p", Fwindow_minibuffer_p, Swindow_minibuffer_p, 0, 1, 0,
328 doc: /* Returns non-nil if WINDOW is a minibuffer window.
329 WINDOW defaults to the selected window. */)
330 (window)
331 Lisp_Object window;
332 {
333 struct window *w = decode_window (window);
334 return MINI_WINDOW_P (w) ? Qt : Qnil;
335 }
336
337
338 DEFUN ("pos-visible-in-window-p", Fpos_visible_in_window_p,
339 Spos_visible_in_window_p, 0, 3, 0,
340 doc: /* Return non-nil if position POS is currently on the frame in WINDOW.
341 Return nil if that position is scrolled vertically out of view.
342 If a character is only partially visible, nil is returned, unless the
343 optional argument PARTIALLY is non-nil.
344 If POS is only out of view because of horizontal scrolling, return non-nil.
345 If POS is t, it specifies the position of the last visible glyph in WINDOW.
346 POS defaults to point in WINDOW; WINDOW defaults to the selected window.
347
348 If POS is visible, return t if PARTIALLY is nil; if PARTIALLY is non-nil,
349 return value is a list of 2 or 6 elements (X Y [RTOP RBOT ROWH VPOS]),
350 where X and Y are the pixel coordinates relative to the top left corner
351 of the window. The remaining elements are omitted if the character after
352 POS is fully visible; otherwise, RTOP and RBOT are the number of pixels
353 off-window at the top and bottom of the row, ROWH is the height of the
354 display row, and VPOS is the row number (0-based) containing POS. */)
355 (pos, window, partially)
356 Lisp_Object pos, window, partially;
357 {
358 register struct window *w;
359 register int posint;
360 register struct buffer *buf;
361 struct text_pos top;
362 Lisp_Object in_window = Qnil;
363 int rtop, rbot, rowh, vpos, fully_p = 1;
364 int x, y;
365
366 w = decode_window (window);
367 buf = XBUFFER (w->buffer);
368 SET_TEXT_POS_FROM_MARKER (top, w->start);
369
370 if (EQ (pos, Qt))
371 posint = -1;
372 else if (!NILP (pos))
373 {
374 CHECK_NUMBER_COERCE_MARKER (pos);
375 posint = XINT (pos);
376 }
377 else if (w == XWINDOW (selected_window))
378 posint = PT;
379 else
380 posint = XMARKER (w->pointm)->charpos;
381
382 /* If position is above window start or outside buffer boundaries,
383 or if window start is out of range, position is not visible. */
384 if ((EQ (pos, Qt)
385 || (posint >= CHARPOS (top) && posint <= BUF_ZV (buf)))
386 && CHARPOS (top) >= BUF_BEGV (buf)
387 && CHARPOS (top) <= BUF_ZV (buf)
388 && pos_visible_p (w, posint, &x, &y, &rtop, &rbot, &rowh, &vpos)
389 && (fully_p = !rtop && !rbot, (!NILP (partially) || fully_p)))
390 in_window = Qt;
391
392 if (!NILP (in_window) && !NILP (partially))
393 {
394 Lisp_Object part = Qnil;
395 if (!fully_p)
396 part = list4 (make_number (rtop), make_number (rbot),
397 make_number (rowh), make_number (vpos));
398 in_window = Fcons (make_number (x),
399 Fcons (make_number (y), part));
400 }
401
402 return in_window;
403 }
404
405 DEFUN ("window-line-height", Fwindow_line_height,
406 Swindow_line_height, 0, 2, 0,
407 doc: /* Return height in pixels of text line LINE in window WINDOW.
408 If WINDOW is nil or omitted, use selected window.
409
410 Return height of current line if LINE is omitted or nil. Return height of
411 header or mode line if LINE is `header-line' and `mode-line'.
412 Otherwise, LINE is a text line number starting from 0. A negative number
413 counts from the end of the window.
414
415 Value is a list (HEIGHT VPOS YPOS OFFBOT), where HEIGHT is the height
416 in pixels of the visible part of the line, VPOS and YPOS are the
417 vertical position in lines and pixels of the line, relative to the top
418 of the first text line, and OFFBOT is the number of off-window pixels at
419 the bottom of the text line. If there are off-window pixels at the top
420 of the (first) text line, YPOS is negative.
421
422 Return nil if window display is not up-to-date. In that case, use
423 `pos-visible-in-window-p' to obtain the information. */)
424 (line, window)
425 Lisp_Object line, window;
426 {
427 register struct window *w;
428 register struct buffer *b;
429 struct glyph_row *row, *end_row;
430 int max_y, crop, i, n;
431
432 w = decode_window (window);
433
434 if (noninteractive
435 || w->pseudo_window_p)
436 return Qnil;
437
438 CHECK_BUFFER (w->buffer);
439 b = XBUFFER (w->buffer);
440
441 /* Fail if current matrix is not up-to-date. */
442 if (NILP (w->window_end_valid)
443 || current_buffer->clip_changed
444 || current_buffer->prevent_redisplay_optimizations_p
445 || XFASTINT (w->last_modified) < BUF_MODIFF (b)
446 || XFASTINT (w->last_overlay_modified) < BUF_OVERLAY_MODIFF (b))
447 return Qnil;
448
449 if (NILP (line))
450 {
451 i = w->cursor.vpos;
452 if (i < 0 || i >= w->current_matrix->nrows
453 || (row = MATRIX_ROW (w->current_matrix, i), !row->enabled_p))
454 return Qnil;
455 max_y = window_text_bottom_y (w);
456 goto found_row;
457 }
458
459 if (EQ (line, Qheader_line))
460 {
461 if (!WINDOW_WANTS_HEADER_LINE_P (w))
462 return Qnil;
463 row = MATRIX_HEADER_LINE_ROW (w->current_matrix);
464 if (!row->enabled_p)
465 return Qnil;
466 return list4 (make_number (row->height),
467 make_number (0), make_number (0),
468 make_number (0));
469 }
470
471 if (EQ (line, Qmode_line))
472 {
473 row = MATRIX_MODE_LINE_ROW (w->current_matrix);
474 if (!row->enabled_p)
475 return Qnil;
476 return list4 (make_number (row->height),
477 make_number (0), /* not accurate */
478 make_number (WINDOW_HEADER_LINE_HEIGHT (w)
479 + window_text_bottom_y (w)),
480 make_number (0));
481 }
482
483 CHECK_NUMBER (line);
484 n = XINT (line);
485
486 row = MATRIX_FIRST_TEXT_ROW (w->current_matrix);
487 end_row = MATRIX_BOTTOM_TEXT_ROW (w->current_matrix, w);
488 max_y = window_text_bottom_y (w);
489 i = 0;
490
491 while ((n < 0 || i < n)
492 && row <= end_row && row->enabled_p
493 && row->y + row->height < max_y)
494 row++, i++;
495
496 if (row > end_row || !row->enabled_p)
497 return Qnil;
498
499 if (++n < 0)
500 {
501 if (-n > i)
502 return Qnil;
503 row += n;
504 i += n;
505 }
506
507 found_row:
508 crop = max (0, (row->y + row->height) - max_y);
509 return list4 (make_number (row->height + min (0, row->y) - crop),
510 make_number (i),
511 make_number (row->y),
512 make_number (crop));
513 }
514
515
516 \f
517 static struct window *
518 decode_window (window)
519 register Lisp_Object window;
520 {
521 if (NILP (window))
522 return XWINDOW (selected_window);
523
524 CHECK_LIVE_WINDOW (window);
525 return XWINDOW (window);
526 }
527
528 static struct window *
529 decode_any_window (window)
530 register Lisp_Object window;
531 {
532 if (NILP (window))
533 return XWINDOW (selected_window);
534
535 CHECK_WINDOW (window);
536 return XWINDOW (window);
537 }
538
539 DEFUN ("window-buffer", Fwindow_buffer, Swindow_buffer, 0, 1, 0,
540 doc: /* Return the buffer that WINDOW is displaying.
541 WINDOW defaults to the selected window. */)
542 (window)
543 Lisp_Object window;
544 {
545 return decode_window (window)->buffer;
546 }
547
548 DEFUN ("window-height", Fwindow_height, Swindow_height, 0, 1, 0,
549 doc: /* Return the number of lines in WINDOW (including its mode line).
550 WINDOW defaults to the selected window. */)
551 (window)
552 Lisp_Object window;
553 {
554 return decode_any_window (window)->total_lines;
555 }
556
557 DEFUN ("window-width", Fwindow_width, Swindow_width, 0, 1, 0,
558 doc: /* Return the number of display columns in WINDOW.
559 This is the width that is usable columns available for text in WINDOW.
560 If you want to find out how many columns WINDOW takes up,
561 use (let ((edges (window-edges))) (- (nth 2 edges) (nth 0 edges))). */)
562 (window)
563 Lisp_Object window;
564 {
565 return make_number (window_box_text_cols (decode_any_window (window)));
566 }
567
568 DEFUN ("window-full-width-p", Fwindow_full_width_p, Swindow_full_width_p, 0, 1, 0,
569 doc: /* Return t if WINDOW is as wide as its frame.
570 WINDOW defaults to the selected window. */)
571 (window)
572 Lisp_Object window;
573 {
574 return WINDOW_FULL_WIDTH_P (decode_any_window (window)) ? Qt : Qnil;
575 }
576
577 DEFUN ("window-hscroll", Fwindow_hscroll, Swindow_hscroll, 0, 1, 0,
578 doc: /* Return the number of columns by which WINDOW is scrolled from left margin.
579 WINDOW defaults to the selected window. */)
580 (window)
581 Lisp_Object window;
582 {
583 return decode_window (window)->hscroll;
584 }
585
586 DEFUN ("set-window-hscroll", Fset_window_hscroll, Sset_window_hscroll, 2, 2, 0,
587 doc: /* Set number of columns WINDOW is scrolled from left margin to NCOL.
588 Return NCOL. NCOL should be zero or positive.
589
590 Note that if `automatic-hscrolling' is non-nil, you cannot scroll the
591 window so that the location of point moves off-window. */)
592 (window, ncol)
593 Lisp_Object window, ncol;
594 {
595 struct window *w = decode_window (window);
596 int hscroll;
597
598 CHECK_NUMBER (ncol);
599 hscroll = max (0, XINT (ncol));
600
601 /* Prevent redisplay shortcuts when changing the hscroll. */
602 if (XINT (w->hscroll) != hscroll)
603 XBUFFER (w->buffer)->prevent_redisplay_optimizations_p = 1;
604
605 w->hscroll = make_number (hscroll);
606 return ncol;
607 }
608
609 DEFUN ("window-redisplay-end-trigger", Fwindow_redisplay_end_trigger,
610 Swindow_redisplay_end_trigger, 0, 1, 0,
611 doc: /* Return WINDOW's redisplay end trigger value.
612 WINDOW defaults to the selected window.
613 See `set-window-redisplay-end-trigger' for more information. */)
614 (window)
615 Lisp_Object window;
616 {
617 return decode_window (window)->redisplay_end_trigger;
618 }
619
620 DEFUN ("set-window-redisplay-end-trigger", Fset_window_redisplay_end_trigger,
621 Sset_window_redisplay_end_trigger, 2, 2, 0,
622 doc: /* Set WINDOW's redisplay end trigger value to VALUE.
623 VALUE should be a buffer position (typically a marker) or nil.
624 If it is a buffer position, then if redisplay in WINDOW reaches a position
625 beyond VALUE, the functions in `redisplay-end-trigger-functions' are called
626 with two arguments: WINDOW, and the end trigger value.
627 Afterwards the end-trigger value is reset to nil. */)
628 (window, value)
629 register Lisp_Object window, value;
630 {
631 register struct window *w;
632
633 w = decode_window (window);
634 w->redisplay_end_trigger = value;
635 return value;
636 }
637
638 DEFUN ("window-edges", Fwindow_edges, Swindow_edges, 0, 1, 0,
639 doc: /* Return a list of the edge coordinates of WINDOW.
640 \(LEFT TOP RIGHT BOTTOM), all relative to 0, 0 at top left corner of frame.
641 RIGHT is one more than the rightmost column occupied by WINDOW,
642 and BOTTOM is one more than the bottommost row occupied by WINDOW.
643 The edges include the space used by the window's scroll bar,
644 display margins, fringes, header line, and mode line, if it has them.
645 To get the edges of the actual text area, use `window-inside-edges'. */)
646 (window)
647 Lisp_Object window;
648 {
649 register struct window *w = decode_any_window (window);
650
651 return Fcons (make_number (WINDOW_LEFT_EDGE_COL (w)),
652 Fcons (make_number (WINDOW_TOP_EDGE_LINE (w)),
653 Fcons (make_number (WINDOW_RIGHT_EDGE_COL (w)),
654 Fcons (make_number (WINDOW_BOTTOM_EDGE_LINE (w)),
655 Qnil))));
656 }
657
658 DEFUN ("window-pixel-edges", Fwindow_pixel_edges, Swindow_pixel_edges, 0, 1, 0,
659 doc: /* Return a list of the edge pixel coordinates of WINDOW.
660 \(LEFT TOP RIGHT BOTTOM), all relative to 0, 0 at top left corner of frame.
661 RIGHT is one more than the rightmost x position occupied by WINDOW,
662 and BOTTOM is one more than the bottommost y position occupied by WINDOW.
663 The pixel edges include the space used by the window's scroll bar,
664 display margins, fringes, header line, and mode line, if it has them.
665 To get the edges of the actual text area, use `window-inside-pixel-edges'. */)
666 (window)
667 Lisp_Object window;
668 {
669 register struct window *w = decode_any_window (window);
670
671 return Fcons (make_number (WINDOW_LEFT_EDGE_X (w)),
672 Fcons (make_number (WINDOW_TOP_EDGE_Y (w)),
673 Fcons (make_number (WINDOW_RIGHT_EDGE_X (w)),
674 Fcons (make_number (WINDOW_BOTTOM_EDGE_Y (w)),
675 Qnil))));
676 }
677
678 DEFUN ("window-inside-edges", Fwindow_inside_edges, Swindow_inside_edges, 0, 1, 0,
679 doc: /* Return a list of the edge coordinates of WINDOW.
680 \(LEFT TOP RIGHT BOTTOM), all relative to 0, 0 at top left corner of frame.
681 RIGHT is one more than the rightmost column used by text in WINDOW,
682 and BOTTOM is one more than the bottommost row used by text in WINDOW.
683 The inside edges do not include the space used by the window's scroll bar,
684 display margins, fringes, header line, and/or mode line. */)
685 (window)
686 Lisp_Object window;
687 {
688 register struct window *w = decode_any_window (window);
689
690 return list4 (make_number (WINDOW_BOX_LEFT_EDGE_COL (w)
691 + WINDOW_LEFT_MARGIN_COLS (w)
692 + WINDOW_LEFT_FRINGE_COLS (w)),
693 make_number (WINDOW_TOP_EDGE_LINE (w)
694 + WINDOW_HEADER_LINE_LINES (w)),
695 make_number (WINDOW_BOX_RIGHT_EDGE_COL (w)
696 - WINDOW_RIGHT_MARGIN_COLS (w)
697 - WINDOW_RIGHT_FRINGE_COLS (w)),
698 make_number (WINDOW_BOTTOM_EDGE_LINE (w)
699 - WINDOW_MODE_LINE_LINES (w)));
700 }
701
702 DEFUN ("window-inside-pixel-edges", Fwindow_inside_pixel_edges, Swindow_inside_pixel_edges, 0, 1, 0,
703 doc: /* Return a list of the edge pixel coordinates of WINDOW.
704 \(LEFT TOP RIGHT BOTTOM), all relative to 0, 0 at top left corner of frame.
705 RIGHT is one more than the rightmost x position used by text in WINDOW,
706 and BOTTOM is one more than the bottommost y position used by text in WINDOW.
707 The inside edges do not include the space used by the window's scroll bar,
708 display margins, fringes, header line, and/or mode line. */)
709 (window)
710 Lisp_Object window;
711 {
712 register struct window *w = decode_any_window (window);
713
714 return list4 (make_number (WINDOW_BOX_LEFT_EDGE_X (w)
715 + WINDOW_LEFT_MARGIN_WIDTH (w)
716 + WINDOW_LEFT_FRINGE_WIDTH (w)),
717 make_number (WINDOW_TOP_EDGE_Y (w)
718 + WINDOW_HEADER_LINE_HEIGHT (w)),
719 make_number (WINDOW_BOX_RIGHT_EDGE_X (w)
720 - WINDOW_RIGHT_MARGIN_WIDTH (w)
721 - WINDOW_RIGHT_FRINGE_WIDTH (w)),
722 make_number (WINDOW_BOTTOM_EDGE_Y (w)
723 - WINDOW_MODE_LINE_HEIGHT (w)));
724 }
725
726 /* Test if the character at column *X, row *Y is within window W.
727 If it is not, return ON_NOTHING;
728 if it is in the window's text area,
729 set *x and *y to its location relative to the upper left corner
730 of the window, and
731 return ON_TEXT;
732 if it is on the window's modeline, return ON_MODE_LINE;
733 if it is on the border between the window and its right sibling,
734 return ON_VERTICAL_BORDER.
735 if it is on a scroll bar,
736 return ON_SCROLL_BAR.
737 if it is on the window's top line, return ON_HEADER_LINE;
738 if it is in left or right fringe of the window,
739 return ON_LEFT_FRINGE or ON_RIGHT_FRINGE, and convert *X and *Y
740 to window-relative coordinates;
741 if it is in the marginal area to the left/right of the window,
742 return ON_LEFT_MARGIN or ON_RIGHT_MARGIN, and convert *X and *Y
743 to window-relative coordinates.
744
745 X and Y are frame relative pixel coordinates. */
746
747 static enum window_part
748 coordinates_in_window (w, x, y)
749 register struct window *w;
750 register int *x, *y;
751 {
752 struct frame *f = XFRAME (WINDOW_FRAME (w));
753 int left_x, right_x, top_y, bottom_y;
754 enum window_part part;
755 int ux = FRAME_COLUMN_WIDTH (f);
756 int x0 = WINDOW_LEFT_EDGE_X (w);
757 int x1 = WINDOW_RIGHT_EDGE_X (w);
758 /* The width of the area where the vertical line can be dragged.
759 (Between mode lines for instance. */
760 int grabbable_width = ux;
761 int lmargin_width, rmargin_width, text_left, text_right;
762
763 /* In what's below, we subtract 1 when computing right_x because we
764 want the rightmost pixel, which is given by left_pixel+width-1. */
765 if (w->pseudo_window_p)
766 {
767 left_x = 0;
768 right_x = WINDOW_TOTAL_WIDTH (w) - 1;
769 top_y = WINDOW_TOP_EDGE_Y (w);
770 bottom_y = WINDOW_BOTTOM_EDGE_Y (w);
771 }
772 else
773 {
774 left_x = WINDOW_BOX_LEFT_EDGE_X (w);
775 right_x = WINDOW_BOX_RIGHT_EDGE_X (w) - 1;
776 top_y = WINDOW_TOP_EDGE_Y (w);
777 bottom_y = WINDOW_BOTTOM_EDGE_Y (w);
778 }
779
780 /* Outside any interesting row? */
781 if (*y < top_y || *y >= bottom_y)
782 return ON_NOTHING;
783
784 /* On the mode line or header line? If it's near the start of
785 the mode or header line of window that's has a horizontal
786 sibling, say it's on the vertical line. That's to be able
787 to resize windows horizontally in case we're using toolkit
788 scroll bars. */
789
790 if (WINDOW_WANTS_MODELINE_P (w)
791 && *y >= bottom_y - CURRENT_MODE_LINE_HEIGHT (w))
792 {
793 part = ON_MODE_LINE;
794
795 header_vertical_border_check:
796 /* We're somewhere on the mode line. We consider the place
797 between mode lines of horizontally adjacent mode lines
798 as the vertical border. If scroll bars on the left,
799 return the right window. */
800 if (WINDOW_HAS_VERTICAL_SCROLL_BAR_ON_LEFT (w)
801 || WINDOW_RIGHTMOST_P (w))
802 {
803 if (!WINDOW_LEFTMOST_P (w) && eabs (*x - x0) < grabbable_width)
804 {
805 /* Convert X and Y to window relative coordinates.
806 Vertical border is at the left edge of window. */
807 *x = max (0, *x - x0);
808 *y -= top_y;
809 return ON_VERTICAL_BORDER;
810 }
811 }
812 else
813 {
814 if (eabs (*x - x1) < grabbable_width)
815 {
816 /* Convert X and Y to window relative coordinates.
817 Vertical border is at the right edge of window. */
818 *x = min (x1, *x) - x0;
819 *y -= top_y;
820 return ON_VERTICAL_BORDER;
821 }
822 }
823
824 if (*x < x0 || *x >= x1)
825 return ON_NOTHING;
826
827 /* Convert X and Y to window relative coordinates.
828 Mode line starts at left edge of window. */
829 *x -= x0;
830 *y -= top_y;
831 return part;
832 }
833
834 if (WINDOW_WANTS_HEADER_LINE_P (w)
835 && *y < top_y + CURRENT_HEADER_LINE_HEIGHT (w))
836 {
837 part = ON_HEADER_LINE;
838 goto header_vertical_border_check;
839 }
840
841 if (*x < x0 || *x >= x1)
842 return ON_NOTHING;
843
844 /* Outside any interesting column? */
845 if (*x < left_x || *x > right_x)
846 {
847 *y -= top_y;
848 return ON_SCROLL_BAR;
849 }
850
851 lmargin_width = window_box_width (w, LEFT_MARGIN_AREA);
852 rmargin_width = window_box_width (w, RIGHT_MARGIN_AREA);
853
854 text_left = window_box_left (w, TEXT_AREA);
855 text_right = text_left + window_box_width (w, TEXT_AREA);
856
857 if (FRAME_WINDOW_P (f))
858 {
859 if (!w->pseudo_window_p
860 && !WINDOW_HAS_VERTICAL_SCROLL_BAR (w)
861 && !WINDOW_RIGHTMOST_P (w)
862 && (eabs (*x - right_x) < grabbable_width))
863 {
864 /* Convert X and Y to window relative coordinates.
865 Vertical border is at the right edge of window. */
866 *x = min (right_x, *x) - left_x;
867 *y -= top_y;
868 return ON_VERTICAL_BORDER;
869 }
870 }
871 else
872 {
873 /* Need to say "*x > right_x" rather than >=, since on character
874 terminals, the vertical line's x coordinate is right_x. */
875 if (!w->pseudo_window_p
876 && !WINDOW_RIGHTMOST_P (w)
877 && *x > right_x - ux)
878 {
879 /* On the border on the right side of the window? Assume that
880 this area begins at RIGHT_X minus a canonical char width. */
881 *x = min (right_x, *x) - left_x;
882 *y -= top_y;
883 return ON_VERTICAL_BORDER;
884 }
885 }
886
887 if (*x < text_left)
888 {
889 if (lmargin_width > 0
890 && (WINDOW_HAS_FRINGES_OUTSIDE_MARGINS (w)
891 ? (*x >= left_x + WINDOW_LEFT_FRINGE_WIDTH (w))
892 : (*x < left_x + lmargin_width)))
893 {
894 *x -= left_x;
895 if (WINDOW_HAS_FRINGES_OUTSIDE_MARGINS (w))
896 *x -= WINDOW_LEFT_FRINGE_WIDTH (w);
897 *y -= top_y;
898 return ON_LEFT_MARGIN;
899 }
900
901 /* Convert X and Y to window-relative pixel coordinates. */
902 *x -= left_x;
903 *y -= top_y;
904 return ON_LEFT_FRINGE;
905 }
906
907 if (*x >= text_right)
908 {
909 if (rmargin_width > 0
910 && (WINDOW_HAS_FRINGES_OUTSIDE_MARGINS (w)
911 ? (*x < right_x - WINDOW_RIGHT_FRINGE_WIDTH (w))
912 : (*x >= right_x - rmargin_width)))
913 {
914 *x -= right_x - rmargin_width;
915 if (WINDOW_HAS_FRINGES_OUTSIDE_MARGINS (w))
916 *x += WINDOW_RIGHT_FRINGE_WIDTH (w);
917 *y -= top_y;
918 return ON_RIGHT_MARGIN;
919 }
920
921 /* Convert X and Y to window-relative pixel coordinates. */
922 *x -= left_x + WINDOW_LEFT_FRINGE_WIDTH (w);
923 *y -= top_y;
924 return ON_RIGHT_FRINGE;
925 }
926
927 /* Everything special ruled out - must be on text area */
928 *x -= text_left;
929 *y -= top_y;
930 return ON_TEXT;
931 }
932
933
934 DEFUN ("coordinates-in-window-p", Fcoordinates_in_window_p,
935 Scoordinates_in_window_p, 2, 2, 0,
936 doc: /* Return non-nil if COORDINATES are in WINDOW.
937 COORDINATES is a cons of the form (X . Y), X and Y being distances
938 measured in characters from the upper-left corner of the frame.
939 \(0 . 0) denotes the character in the upper left corner of the
940 frame.
941 If COORDINATES are in the text portion of WINDOW,
942 the coordinates relative to the window are returned.
943 If they are in the mode line of WINDOW, `mode-line' is returned.
944 If they are in the top mode line of WINDOW, `header-line' is returned.
945 If they are in the left fringe of WINDOW, `left-fringe' is returned.
946 If they are in the right fringe of WINDOW, `right-fringe' is returned.
947 If they are on the border between WINDOW and its right sibling,
948 `vertical-line' is returned.
949 If they are in the windows's left or right marginal areas, `left-margin'\n\
950 or `right-margin' is returned. */)
951 (coordinates, window)
952 register Lisp_Object coordinates, window;
953 {
954 struct window *w;
955 struct frame *f;
956 int x, y;
957 Lisp_Object lx, ly;
958
959 CHECK_WINDOW (window);
960 w = XWINDOW (window);
961 f = XFRAME (w->frame);
962 CHECK_CONS (coordinates);
963 lx = Fcar (coordinates);
964 ly = Fcdr (coordinates);
965 CHECK_NUMBER_OR_FLOAT (lx);
966 CHECK_NUMBER_OR_FLOAT (ly);
967 x = FRAME_PIXEL_X_FROM_CANON_X (f, lx) + FRAME_INTERNAL_BORDER_WIDTH (f);
968 y = FRAME_PIXEL_Y_FROM_CANON_Y (f, ly) + FRAME_INTERNAL_BORDER_WIDTH (f);
969
970 switch (coordinates_in_window (w, &x, &y))
971 {
972 case ON_NOTHING:
973 return Qnil;
974
975 case ON_TEXT:
976 /* X and Y are now window relative pixel coordinates. Convert
977 them to canonical char units before returning them. */
978 return Fcons (FRAME_CANON_X_FROM_PIXEL_X (f, x),
979 FRAME_CANON_Y_FROM_PIXEL_Y (f, y));
980
981 case ON_MODE_LINE:
982 return Qmode_line;
983
984 case ON_VERTICAL_BORDER:
985 return Qvertical_line;
986
987 case ON_HEADER_LINE:
988 return Qheader_line;
989
990 case ON_LEFT_FRINGE:
991 return Qleft_fringe;
992
993 case ON_RIGHT_FRINGE:
994 return Qright_fringe;
995
996 case ON_LEFT_MARGIN:
997 return Qleft_margin;
998
999 case ON_RIGHT_MARGIN:
1000 return Qright_margin;
1001
1002 case ON_SCROLL_BAR:
1003 /* Historically we are supposed to return nil in this case. */
1004 return Qnil;
1005
1006 default:
1007 abort ();
1008 }
1009 }
1010
1011
1012 /* Callback for foreach_window, used in window_from_coordinates.
1013 Check if window W contains coordinates specified by USER_DATA which
1014 is actually a pointer to a struct check_window_data CW.
1015
1016 Check if window W contains coordinates *CW->x and *CW->y. If it
1017 does, return W in *CW->window, as Lisp_Object, and return in
1018 *CW->part the part of the window under coordinates *X,*Y. Return
1019 zero from this function to stop iterating over windows. */
1020
1021 struct check_window_data
1022 {
1023 Lisp_Object *window;
1024 int *x, *y;
1025 enum window_part *part;
1026 };
1027
1028 static int
1029 check_window_containing (w, user_data)
1030 struct window *w;
1031 void *user_data;
1032 {
1033 struct check_window_data *cw = (struct check_window_data *) user_data;
1034 enum window_part found;
1035 int continue_p = 1;
1036
1037 found = coordinates_in_window (w, cw->x, cw->y);
1038 if (found != ON_NOTHING)
1039 {
1040 *cw->part = found;
1041 XSETWINDOW (*cw->window, w);
1042 continue_p = 0;
1043 }
1044
1045 return continue_p;
1046 }
1047
1048
1049 /* Find the window containing frame-relative pixel position X/Y and
1050 return it as a Lisp_Object.
1051
1052 If X, Y is on one of the window's special `window_part' elements,
1053 set *PART to the id of that element, and return X and Y converted
1054 to window relative coordinates in WX and WY.
1055
1056 If there is no window under X, Y return nil and leave *PART
1057 unmodified. TOOL_BAR_P non-zero means detect tool-bar windows.
1058
1059 This function was previously implemented with a loop cycling over
1060 windows with Fnext_window, and starting with the frame's selected
1061 window. It turned out that this doesn't work with an
1062 implementation of next_window using Vwindow_list, because
1063 FRAME_SELECTED_WINDOW (F) is not always contained in the window
1064 tree of F when this function is called asynchronously from
1065 note_mouse_highlight. The original loop didn't terminate in this
1066 case. */
1067
1068 Lisp_Object
1069 window_from_coordinates (f, x, y, part, wx, wy, tool_bar_p)
1070 struct frame *f;
1071 int x, y;
1072 enum window_part *part;
1073 int *wx, *wy;
1074 int tool_bar_p;
1075 {
1076 Lisp_Object window;
1077 struct check_window_data cw;
1078 enum window_part dummy;
1079
1080 if (part == 0)
1081 part = &dummy;
1082
1083 window = Qnil;
1084 cw.window = &window, cw.x = &x, cw.y = &y; cw.part = part;
1085 foreach_window (f, check_window_containing, &cw);
1086
1087 /* If not found above, see if it's in the tool bar window, if a tool
1088 bar exists. */
1089 if (NILP (window)
1090 && tool_bar_p
1091 && WINDOWP (f->tool_bar_window)
1092 && WINDOW_TOTAL_LINES (XWINDOW (f->tool_bar_window)) > 0
1093 && (coordinates_in_window (XWINDOW (f->tool_bar_window), &x, &y)
1094 != ON_NOTHING))
1095 {
1096 *part = ON_TEXT;
1097 window = f->tool_bar_window;
1098 }
1099
1100 if (wx) *wx = x;
1101 if (wy) *wy = y;
1102
1103 return window;
1104 }
1105
1106 DEFUN ("window-at", Fwindow_at, Swindow_at, 2, 3, 0,
1107 doc: /* Return window containing coordinates X and Y on FRAME.
1108 If omitted, FRAME defaults to the currently selected frame.
1109 The top left corner of the frame is considered to be row 0,
1110 column 0. */)
1111 (x, y, frame)
1112 Lisp_Object x, y, frame;
1113 {
1114 struct frame *f;
1115
1116 if (NILP (frame))
1117 frame = selected_frame;
1118 CHECK_LIVE_FRAME (frame);
1119 f = XFRAME (frame);
1120
1121 /* Check that arguments are integers or floats. */
1122 CHECK_NUMBER_OR_FLOAT (x);
1123 CHECK_NUMBER_OR_FLOAT (y);
1124
1125 return window_from_coordinates (f,
1126 (FRAME_PIXEL_X_FROM_CANON_X (f, x)
1127 + FRAME_INTERNAL_BORDER_WIDTH (f)),
1128 (FRAME_PIXEL_Y_FROM_CANON_Y (f, y)
1129 + FRAME_INTERNAL_BORDER_WIDTH (f)),
1130 0, 0, 0, 0);
1131 }
1132
1133 DEFUN ("window-point", Fwindow_point, Swindow_point, 0, 1, 0,
1134 doc: /* Return current value of point in WINDOW.
1135 WINDOW defaults to the selected window.
1136
1137 For a nonselected window, this is the value point would have
1138 if that window were selected.
1139
1140 Note that, when WINDOW is the selected window and its buffer
1141 is also currently selected, the value returned is the same as (point).
1142 It would be more strictly correct to return the `top-level' value
1143 of point, outside of any save-excursion forms.
1144 But that is hard to define. */)
1145 (window)
1146 Lisp_Object window;
1147 {
1148 register struct window *w = decode_window (window);
1149
1150 if (w == XWINDOW (selected_window)
1151 && current_buffer == XBUFFER (w->buffer))
1152 return Fpoint ();
1153 return Fmarker_position (w->pointm);
1154 }
1155
1156 DEFUN ("window-start", Fwindow_start, Swindow_start, 0, 1, 0,
1157 doc: /* Return position at which display currently starts in WINDOW.
1158 WINDOW defaults to the selected window.
1159 This is updated by redisplay or by calling `set-window-start'. */)
1160 (window)
1161 Lisp_Object window;
1162 {
1163 return Fmarker_position (decode_window (window)->start);
1164 }
1165
1166 /* This is text temporarily removed from the doc string below.
1167
1168 This function returns nil if the position is not currently known.
1169 That happens when redisplay is preempted and doesn't finish.
1170 If in that case you want to compute where the end of the window would
1171 have been if redisplay had finished, do this:
1172 (save-excursion
1173 (goto-char (window-start window))
1174 (vertical-motion (1- (window-height window)) window)
1175 (point))") */
1176
1177 DEFUN ("window-end", Fwindow_end, Swindow_end, 0, 2, 0,
1178 doc: /* Return position at which display currently ends in WINDOW.
1179 WINDOW defaults to the selected window.
1180 This is updated by redisplay, when it runs to completion.
1181 Simply changing the buffer text or setting `window-start'
1182 does not update this value.
1183 Return nil if there is no recorded value. \(This can happen if the
1184 last redisplay of WINDOW was preempted, and did not finish.)
1185 If UPDATE is non-nil, compute the up-to-date position
1186 if it isn't already recorded. */)
1187 (window, update)
1188 Lisp_Object window, update;
1189 {
1190 Lisp_Object value;
1191 struct window *w = decode_window (window);
1192 Lisp_Object buf;
1193 struct buffer *b;
1194
1195 buf = w->buffer;
1196 CHECK_BUFFER (buf);
1197 b = XBUFFER (buf);
1198
1199 #if 0 /* This change broke some things. We should make it later. */
1200 /* If we don't know the end position, return nil.
1201 The user can compute it with vertical-motion if he wants to.
1202 It would be nicer to do it automatically,
1203 but that's so slow that it would probably bother people. */
1204 if (NILP (w->window_end_valid))
1205 return Qnil;
1206 #endif
1207
1208 if (! NILP (update)
1209 && ! (! NILP (w->window_end_valid)
1210 && XFASTINT (w->last_modified) >= BUF_MODIFF (b)
1211 && XFASTINT (w->last_overlay_modified) >= BUF_OVERLAY_MODIFF (b))
1212 && !noninteractive)
1213 {
1214 struct text_pos startp;
1215 struct it it;
1216 struct buffer *old_buffer = NULL;
1217
1218 /* Cannot use Fvertical_motion because that function doesn't
1219 cope with variable-height lines. */
1220 if (b != current_buffer)
1221 {
1222 old_buffer = current_buffer;
1223 set_buffer_internal (b);
1224 }
1225
1226 /* In case W->start is out of the range, use something
1227 reasonable. This situation occurred when loading a file with
1228 `-l' containing a call to `rmail' with subsequent other
1229 commands. At the end, W->start happened to be BEG, while
1230 rmail had already narrowed the buffer. */
1231 if (XMARKER (w->start)->charpos < BEGV)
1232 SET_TEXT_POS (startp, BEGV, BEGV_BYTE);
1233 else if (XMARKER (w->start)->charpos > ZV)
1234 SET_TEXT_POS (startp, ZV, ZV_BYTE);
1235 else
1236 SET_TEXT_POS_FROM_MARKER (startp, w->start);
1237
1238 start_display (&it, w, startp);
1239 move_it_vertically (&it, window_box_height (w));
1240 if (it.current_y < it.last_visible_y)
1241 move_it_past_eol (&it);
1242 value = make_number (IT_CHARPOS (it));
1243
1244 if (old_buffer)
1245 set_buffer_internal (old_buffer);
1246 }
1247 else
1248 XSETINT (value, BUF_Z (b) - XFASTINT (w->window_end_pos));
1249
1250 return value;
1251 }
1252
1253 DEFUN ("set-window-point", Fset_window_point, Sset_window_point, 2, 2, 0,
1254 doc: /* Make point value in WINDOW be at position POS in WINDOW's buffer.
1255 Return POS. */)
1256 (window, pos)
1257 Lisp_Object window, pos;
1258 {
1259 register struct window *w = decode_window (window);
1260
1261 CHECK_NUMBER_COERCE_MARKER (pos);
1262 if (w == XWINDOW (selected_window)
1263 && XBUFFER (w->buffer) == current_buffer)
1264 Fgoto_char (pos);
1265 else
1266 set_marker_restricted (w->pointm, pos, w->buffer);
1267
1268 /* We have to make sure that redisplay updates the window to show
1269 the new value of point. */
1270 if (!EQ (window, selected_window))
1271 ++windows_or_buffers_changed;
1272
1273 return pos;
1274 }
1275
1276 DEFUN ("set-window-start", Fset_window_start, Sset_window_start, 2, 3, 0,
1277 doc: /* Make display in WINDOW start at position POS in WINDOW's buffer.
1278 Return POS.
1279 Optional third arg NOFORCE non-nil inhibits next redisplay
1280 from overriding motion of point in order to display at this exact start. */)
1281 (window, pos, noforce)
1282 Lisp_Object window, pos, noforce;
1283 {
1284 register struct window *w = decode_window (window);
1285
1286 CHECK_NUMBER_COERCE_MARKER (pos);
1287 set_marker_restricted (w->start, pos, w->buffer);
1288 /* this is not right, but much easier than doing what is right. */
1289 w->start_at_line_beg = Qnil;
1290 if (NILP (noforce))
1291 w->force_start = Qt;
1292 w->update_mode_line = Qt;
1293 XSETFASTINT (w->last_modified, 0);
1294 XSETFASTINT (w->last_overlay_modified, 0);
1295 if (!EQ (window, selected_window))
1296 windows_or_buffers_changed++;
1297
1298 return pos;
1299 }
1300
1301 DEFUN ("window-dedicated-p", Fwindow_dedicated_p, Swindow_dedicated_p,
1302 1, 1, 0,
1303 doc: /* Return WINDOW's dedicated object, usually t or nil.
1304 See also `set-window-dedicated-p'. */)
1305 (window)
1306 Lisp_Object window;
1307 {
1308 return decode_window (window)->dedicated;
1309 }
1310
1311 DEFUN ("set-window-dedicated-p", Fset_window_dedicated_p,
1312 Sset_window_dedicated_p, 2, 2, 0,
1313 doc: /* Control whether WINDOW is dedicated to the buffer it displays.
1314 If it is dedicated, Emacs will not automatically change
1315 which buffer appears in it.
1316 The second argument is the new value for the dedication flag;
1317 non-nil means yes. */)
1318 (window, arg)
1319 Lisp_Object window, arg;
1320 {
1321 register struct window *w = decode_window (window);
1322
1323 w->dedicated = arg;
1324
1325 return w->dedicated;
1326 }
1327
1328 DEFUN ("window-display-table", Fwindow_display_table, Swindow_display_table,
1329 0, 1, 0,
1330 doc: /* Return the display-table that WINDOW is using.
1331 WINDOW defaults to the selected window. */)
1332 (window)
1333 Lisp_Object window;
1334 {
1335 return decode_window (window)->display_table;
1336 }
1337
1338 /* Get the display table for use on window W. This is either W's
1339 display table or W's buffer's display table. Ignore the specified
1340 tables if they are not valid; if no valid table is specified,
1341 return 0. */
1342
1343 struct Lisp_Char_Table *
1344 window_display_table (w)
1345 struct window *w;
1346 {
1347 struct Lisp_Char_Table *dp = NULL;
1348
1349 if (DISP_TABLE_P (w->display_table))
1350 dp = XCHAR_TABLE (w->display_table);
1351 else if (BUFFERP (w->buffer))
1352 {
1353 struct buffer *b = XBUFFER (w->buffer);
1354
1355 if (DISP_TABLE_P (b->display_table))
1356 dp = XCHAR_TABLE (b->display_table);
1357 else if (DISP_TABLE_P (Vstandard_display_table))
1358 dp = XCHAR_TABLE (Vstandard_display_table);
1359 }
1360
1361 return dp;
1362 }
1363
1364 DEFUN ("set-window-display-table", Fset_window_display_table, Sset_window_display_table, 2, 2, 0,
1365 doc: /* Set WINDOW's display-table to TABLE. */)
1366 (window, table)
1367 register Lisp_Object window, table;
1368 {
1369 register struct window *w;
1370
1371 w = decode_window (window);
1372 w->display_table = table;
1373 return table;
1374 }
1375 \f
1376 /* Record info on buffer window w is displaying
1377 when it is about to cease to display that buffer. */
1378 static void
1379 unshow_buffer (w)
1380 register struct window *w;
1381 {
1382 Lisp_Object buf;
1383 struct buffer *b;
1384
1385 buf = w->buffer;
1386 b = XBUFFER (buf);
1387 if (b != XMARKER (w->pointm)->buffer)
1388 abort ();
1389
1390 #if 0
1391 if (w == XWINDOW (selected_window)
1392 || ! EQ (buf, XWINDOW (selected_window)->buffer))
1393 /* Do this except when the selected window's buffer
1394 is being removed from some other window. */
1395 #endif
1396 /* last_window_start records the start position that this buffer
1397 had in the last window to be disconnected from it.
1398 Now that this statement is unconditional,
1399 it is possible for the buffer to be displayed in the
1400 selected window, while last_window_start reflects another
1401 window which was recently showing the same buffer.
1402 Some people might say that might be a good thing. Let's see. */
1403 b->last_window_start = marker_position (w->start);
1404
1405 /* Point in the selected window's buffer
1406 is actually stored in that buffer, and the window's pointm isn't used.
1407 So don't clobber point in that buffer. */
1408 if (! EQ (buf, XWINDOW (selected_window)->buffer)
1409 /* This line helps to fix Horsley's testbug.el bug. */
1410 && !(WINDOWP (b->last_selected_window)
1411 && w != XWINDOW (b->last_selected_window)
1412 && EQ (buf, XWINDOW (b->last_selected_window)->buffer)))
1413 temp_set_point_both (b,
1414 clip_to_bounds (BUF_BEGV (b),
1415 XMARKER (w->pointm)->charpos,
1416 BUF_ZV (b)),
1417 clip_to_bounds (BUF_BEGV_BYTE (b),
1418 marker_byte_position (w->pointm),
1419 BUF_ZV_BYTE (b)));
1420
1421 if (WINDOWP (b->last_selected_window)
1422 && w == XWINDOW (b->last_selected_window))
1423 b->last_selected_window = Qnil;
1424 }
1425
1426 /* Put replacement into the window structure in place of old. */
1427 static void
1428 replace_window (old, replacement)
1429 Lisp_Object old, replacement;
1430 {
1431 register Lisp_Object tem;
1432 register struct window *o = XWINDOW (old), *p = XWINDOW (replacement);
1433
1434 /* If OLD is its frame's root_window, then replacement is the new
1435 root_window for that frame. */
1436
1437 if (EQ (old, FRAME_ROOT_WINDOW (XFRAME (o->frame))))
1438 FRAME_ROOT_WINDOW (XFRAME (o->frame)) = replacement;
1439
1440 p->left_col = o->left_col;
1441 p->top_line = o->top_line;
1442 p->total_cols = o->total_cols;
1443 p->total_lines = o->total_lines;
1444 p->desired_matrix = p->current_matrix = 0;
1445 p->vscroll = 0;
1446 bzero (&p->cursor, sizeof (p->cursor));
1447 bzero (&p->last_cursor, sizeof (p->last_cursor));
1448 bzero (&p->phys_cursor, sizeof (p->phys_cursor));
1449 p->phys_cursor_type = -1;
1450 p->phys_cursor_width = -1;
1451 p->must_be_updated_p = 0;
1452 p->pseudo_window_p = 0;
1453 XSETFASTINT (p->window_end_vpos, 0);
1454 XSETFASTINT (p->window_end_pos, 0);
1455 p->window_end_valid = Qnil;
1456 p->frozen_window_start_p = 0;
1457 p->orig_top_line = p->orig_total_lines = Qnil;
1458
1459 p->next = tem = o->next;
1460 if (!NILP (tem))
1461 XWINDOW (tem)->prev = replacement;
1462
1463 p->prev = tem = o->prev;
1464 if (!NILP (tem))
1465 XWINDOW (tem)->next = replacement;
1466
1467 p->parent = tem = o->parent;
1468 if (!NILP (tem))
1469 {
1470 if (EQ (XWINDOW (tem)->vchild, old))
1471 XWINDOW (tem)->vchild = replacement;
1472 if (EQ (XWINDOW (tem)->hchild, old))
1473 XWINDOW (tem)->hchild = replacement;
1474 }
1475
1476 /*** Here, if replacement is a vertical combination
1477 and so is its new parent, we should make replacement's
1478 children be children of that parent instead. ***/
1479 }
1480
1481 DEFUN ("delete-window", Fdelete_window, Sdelete_window, 0, 1, "",
1482 doc: /* Remove WINDOW from the display. Default is selected window. */)
1483 (window)
1484 register Lisp_Object window;
1485 {
1486 struct frame *f;
1487 if (NILP (window))
1488 window = selected_window;
1489 f = XFRAME (WINDOW_FRAME (XWINDOW (window)));
1490 delete_window (window);
1491
1492 run_window_configuration_change_hook (f);
1493
1494 return Qnil;
1495 }
1496
1497 void
1498 delete_window (window)
1499 register Lisp_Object window;
1500 {
1501 register Lisp_Object tem, parent, sib;
1502 register struct window *p;
1503 register struct window *par;
1504 struct frame *f;
1505
1506 /* Because this function is called by other C code on non-leaf
1507 windows, the CHECK_LIVE_WINDOW macro would choke inappropriately,
1508 so we can't decode_window here. */
1509 CHECK_WINDOW (window);
1510 p = XWINDOW (window);
1511
1512 /* It's a no-op to delete an already-deleted window. */
1513 if (NILP (p->buffer)
1514 && NILP (p->hchild)
1515 && NILP (p->vchild))
1516 return;
1517
1518 parent = p->parent;
1519 if (NILP (parent))
1520 error ("Attempt to delete minibuffer or sole ordinary window");
1521 par = XWINDOW (parent);
1522
1523 windows_or_buffers_changed++;
1524 Vwindow_list = Qnil;
1525 f = XFRAME (WINDOW_FRAME (p));
1526 FRAME_WINDOW_SIZES_CHANGED (f) = 1;
1527
1528 /* Are we trying to delete any frame's selected window? */
1529 {
1530 Lisp_Object swindow, pwindow;
1531
1532 /* See if the frame's selected window is either WINDOW
1533 or any subwindow of it, by finding all that window's parents
1534 and comparing each one with WINDOW. */
1535 swindow = FRAME_SELECTED_WINDOW (f);
1536
1537 while (1)
1538 {
1539 pwindow = swindow;
1540 while (!NILP (pwindow))
1541 {
1542 if (EQ (window, pwindow))
1543 break;
1544 pwindow = XWINDOW (pwindow)->parent;
1545 }
1546
1547 /* If the window being deleted is not a parent of SWINDOW,
1548 then SWINDOW is ok as the new selected window. */
1549 if (!EQ (window, pwindow))
1550 break;
1551 /* Otherwise, try another window for SWINDOW. */
1552 swindow = Fnext_window (swindow, Qlambda, Qnil);
1553
1554 /* If we get back to the frame's selected window,
1555 it means there was no acceptable alternative,
1556 so we cannot delete. */
1557 if (EQ (swindow, FRAME_SELECTED_WINDOW (f)))
1558 error ("Cannot delete window");
1559 }
1560
1561 /* If we need to change SWINDOW, do it. */
1562 if (! EQ (swindow, FRAME_SELECTED_WINDOW (f)))
1563 {
1564 /* If we're about to delete the selected window on the
1565 selected frame, then we should use Fselect_window to select
1566 the new window. On the other hand, if we're about to
1567 delete the selected window on any other frame, we shouldn't do
1568 anything but set the frame's selected_window slot. */
1569 if (EQ (FRAME_SELECTED_WINDOW (f), selected_window))
1570 Fselect_window (swindow, Qnil);
1571 else
1572 FRAME_SELECTED_WINDOW (f) = swindow;
1573 }
1574 }
1575
1576 /* Now we know we can delete this one. */
1577 window_deletion_count++;
1578
1579 tem = p->buffer;
1580 /* tem is null for dummy parent windows
1581 (which have inferiors but not any contents themselves) */
1582 if (!NILP (tem))
1583 {
1584 unshow_buffer (p);
1585 unchain_marker (XMARKER (p->pointm));
1586 unchain_marker (XMARKER (p->start));
1587 }
1588
1589 /* Free window glyph matrices. It is sure that they are allocated
1590 again when ADJUST_GLYPHS is called. Block input so that expose
1591 events and other events that access glyph matrices are not
1592 processed while we are changing them. */
1593 BLOCK_INPUT;
1594 free_window_matrices (XWINDOW (FRAME_ROOT_WINDOW (f)));
1595
1596 tem = p->next;
1597 if (!NILP (tem))
1598 XWINDOW (tem)->prev = p->prev;
1599
1600 tem = p->prev;
1601 if (!NILP (tem))
1602 XWINDOW (tem)->next = p->next;
1603
1604 if (EQ (window, par->hchild))
1605 par->hchild = p->next;
1606 if (EQ (window, par->vchild))
1607 par->vchild = p->next;
1608
1609 /* Find one of our siblings to give our space to. */
1610 sib = p->prev;
1611 if (NILP (sib))
1612 {
1613 /* If p gives its space to its next sibling, that sibling needs
1614 to have its top/left side pulled back to where p's is.
1615 set_window_{height,width} will re-position the sibling's
1616 children. */
1617 sib = p->next;
1618 XWINDOW (sib)->top_line = p->top_line;
1619 XWINDOW (sib)->left_col = p->left_col;
1620 }
1621
1622 /* Stretch that sibling. */
1623 if (!NILP (par->vchild))
1624 set_window_height (sib,
1625 XFASTINT (XWINDOW (sib)->total_lines) + XFASTINT (p->total_lines),
1626 1);
1627 if (!NILP (par->hchild))
1628 set_window_width (sib,
1629 XFASTINT (XWINDOW (sib)->total_cols) + XFASTINT (p->total_cols),
1630 1);
1631
1632 /* If parent now has only one child,
1633 put the child into the parent's place. */
1634 tem = par->hchild;
1635 if (NILP (tem))
1636 tem = par->vchild;
1637 if (NILP (XWINDOW (tem)->next)) {
1638 replace_window (parent, tem);
1639 par = XWINDOW (tem);
1640 }
1641
1642 /* Since we may be deleting combination windows, we must make sure that
1643 not only p but all its children have been marked as deleted. */
1644 if (! NILP (p->hchild))
1645 delete_all_subwindows (XWINDOW (p->hchild));
1646 else if (! NILP (p->vchild))
1647 delete_all_subwindows (XWINDOW (p->vchild));
1648
1649 /* Mark this window as deleted. */
1650 p->buffer = p->hchild = p->vchild = Qnil;
1651
1652 if (! NILP (par->parent))
1653 par = XWINDOW (par->parent);
1654
1655 /* Check if we have a v/hchild with a v/hchild. In that case remove
1656 one of them. */
1657
1658 if (! NILP (par->vchild) && ! NILP (XWINDOW (par->vchild)->vchild))
1659 {
1660 p = XWINDOW (par->vchild);
1661 par->vchild = p->vchild;
1662 tem = p->vchild;
1663 }
1664 else if (! NILP (par->hchild) && ! NILP (XWINDOW (par->hchild)->hchild))
1665 {
1666 p = XWINDOW (par->hchild);
1667 par->hchild = p->hchild;
1668 tem = p->hchild;
1669 }
1670 else
1671 p = 0;
1672
1673 if (p)
1674 {
1675 while (! NILP (tem)) {
1676 XWINDOW (tem)->parent = p->parent;
1677 if (NILP (XWINDOW (tem)->next))
1678 break;
1679 tem = XWINDOW (tem)->next;
1680 }
1681 if (! NILP (tem)) {
1682 /* The next of the v/hchild we are removing is now the next of the
1683 last child for the v/hchild:
1684 Before v/hchild -> v/hchild -> next1 -> next2
1685 |
1686 -> next3
1687 After: v/hchild -> next1 -> next2 -> next3
1688 */
1689 XWINDOW (tem)->next = p->next;
1690 if (! NILP (p->next))
1691 XWINDOW (p->next)->prev = tem;
1692 }
1693 p->next = p->prev = p->vchild = p->hchild = p->buffer = Qnil;
1694 }
1695
1696
1697 /* Adjust glyph matrices. */
1698 adjust_glyphs (f);
1699 UNBLOCK_INPUT;
1700 }
1701
1702
1703 \f
1704 /***********************************************************************
1705 Window List
1706 ***********************************************************************/
1707
1708 /* Add window W to *USER_DATA. USER_DATA is actually a Lisp_Object
1709 pointer. This is a callback function for foreach_window, used in
1710 function window_list. */
1711
1712 static int
1713 add_window_to_list (w, user_data)
1714 struct window *w;
1715 void *user_data;
1716 {
1717 Lisp_Object *list = (Lisp_Object *) user_data;
1718 Lisp_Object window;
1719 XSETWINDOW (window, w);
1720 *list = Fcons (window, *list);
1721 return 1;
1722 }
1723
1724
1725 /* Return a list of all windows, for use by next_window. If
1726 Vwindow_list is a list, return that list. Otherwise, build a new
1727 list, cache it in Vwindow_list, and return that. */
1728
1729 static Lisp_Object
1730 window_list ()
1731 {
1732 if (!CONSP (Vwindow_list))
1733 {
1734 Lisp_Object tail;
1735
1736 Vwindow_list = Qnil;
1737 for (tail = Vframe_list; CONSP (tail); tail = XCDR (tail))
1738 {
1739 Lisp_Object args[2];
1740
1741 /* We are visiting windows in canonical order, and add
1742 new windows at the front of args[1], which means we
1743 have to reverse this list at the end. */
1744 args[1] = Qnil;
1745 foreach_window (XFRAME (XCAR (tail)), add_window_to_list, &args[1]);
1746 args[0] = Vwindow_list;
1747 args[1] = Fnreverse (args[1]);
1748 Vwindow_list = Fnconc (2, args);
1749 }
1750 }
1751
1752 return Vwindow_list;
1753 }
1754
1755
1756 /* Value is non-zero if WINDOW satisfies the constraints given by
1757 OWINDOW, MINIBUF and ALL_FRAMES.
1758
1759 MINIBUF t means WINDOW may be minibuffer windows.
1760 `lambda' means WINDOW may not be a minibuffer window.
1761 a window means a specific minibuffer window
1762
1763 ALL_FRAMES t means search all frames,
1764 nil means search just current frame,
1765 `visible' means search just visible frames,
1766 0 means search visible and iconified frames,
1767 a window means search the frame that window belongs to,
1768 a frame means consider windows on that frame, only. */
1769
1770 static int
1771 candidate_window_p (window, owindow, minibuf, all_frames)
1772 Lisp_Object window, owindow, minibuf, all_frames;
1773 {
1774 struct window *w = XWINDOW (window);
1775 struct frame *f = XFRAME (w->frame);
1776 int candidate_p = 1;
1777
1778 if (!BUFFERP (w->buffer))
1779 candidate_p = 0;
1780 else if (MINI_WINDOW_P (w)
1781 && (EQ (minibuf, Qlambda)
1782 || (WINDOWP (minibuf) && !EQ (minibuf, window))))
1783 {
1784 /* If MINIBUF is `lambda' don't consider any mini-windows.
1785 If it is a window, consider only that one. */
1786 candidate_p = 0;
1787 }
1788 else if (EQ (all_frames, Qt))
1789 candidate_p = 1;
1790 else if (NILP (all_frames))
1791 {
1792 xassert (WINDOWP (owindow));
1793 candidate_p = EQ (w->frame, XWINDOW (owindow)->frame);
1794 }
1795 else if (EQ (all_frames, Qvisible))
1796 {
1797 FRAME_SAMPLE_VISIBILITY (f);
1798 candidate_p = FRAME_VISIBLE_P (f)
1799 && (FRAME_TERMINAL (XFRAME (w->frame))
1800 == FRAME_TERMINAL (XFRAME (selected_frame)));
1801
1802 }
1803 else if (INTEGERP (all_frames) && XINT (all_frames) == 0)
1804 {
1805 FRAME_SAMPLE_VISIBILITY (f);
1806 candidate_p = (FRAME_VISIBLE_P (f) || FRAME_ICONIFIED_P (f)
1807 #ifdef HAVE_X_WINDOWS
1808 /* Yuck!! If we've just created the frame and the
1809 window-manager requested the user to place it
1810 manually, the window may still not be considered
1811 `visible'. I'd argue it should be at least
1812 something like `iconified', but don't know how to do
1813 that yet. --Stef */
1814 || (FRAME_X_P (f) && f->output_data.x->asked_for_visible
1815 && !f->output_data.x->has_been_visible)
1816 #endif
1817 )
1818 && (FRAME_TERMINAL (XFRAME (w->frame))
1819 == FRAME_TERMINAL (XFRAME (selected_frame)));
1820 }
1821 else if (WINDOWP (all_frames))
1822 candidate_p = (EQ (FRAME_MINIBUF_WINDOW (f), all_frames)
1823 || EQ (XWINDOW (all_frames)->frame, w->frame)
1824 || EQ (XWINDOW (all_frames)->frame, FRAME_FOCUS_FRAME (f)));
1825 else if (FRAMEP (all_frames))
1826 candidate_p = EQ (all_frames, w->frame);
1827
1828 return candidate_p;
1829 }
1830
1831
1832 /* Decode arguments as allowed by Fnext_window, Fprevious_window, and
1833 Fwindow_list. See there for the meaning of WINDOW, MINIBUF, and
1834 ALL_FRAMES. */
1835
1836 static void
1837 decode_next_window_args (window, minibuf, all_frames)
1838 Lisp_Object *window, *minibuf, *all_frames;
1839 {
1840 if (NILP (*window))
1841 *window = selected_window;
1842 else
1843 CHECK_LIVE_WINDOW (*window);
1844
1845 /* MINIBUF nil may or may not include minibuffers. Decide if it
1846 does. */
1847 if (NILP (*minibuf))
1848 *minibuf = minibuf_level ? minibuf_window : Qlambda;
1849 else if (!EQ (*minibuf, Qt))
1850 *minibuf = Qlambda;
1851
1852 /* Now *MINIBUF can be t => count all minibuffer windows, `lambda'
1853 => count none of them, or a specific minibuffer window (the
1854 active one) to count. */
1855
1856 /* ALL_FRAMES nil doesn't specify which frames to include. */
1857 if (NILP (*all_frames))
1858 *all_frames = (!EQ (*minibuf, Qlambda)
1859 ? FRAME_MINIBUF_WINDOW (XFRAME (XWINDOW (*window)->frame))
1860 : Qnil);
1861 else if (EQ (*all_frames, Qvisible))
1862 ;
1863 else if (EQ (*all_frames, make_number (0)))
1864 ;
1865 else if (FRAMEP (*all_frames))
1866 ;
1867 else if (!EQ (*all_frames, Qt))
1868 *all_frames = Qnil;
1869
1870 /* Now *ALL_FRAMES is t meaning search all frames, nil meaning
1871 search just current frame, `visible' meaning search just visible
1872 frames, 0 meaning search visible and iconified frames, or a
1873 window, meaning search the frame that window belongs to, or a
1874 frame, meaning consider windows on that frame, only. */
1875 }
1876
1877
1878 /* Return the next or previous window of WINDOW in canonical ordering
1879 of windows. NEXT_P non-zero means return the next window. See the
1880 documentation string of next-window for the meaning of MINIBUF and
1881 ALL_FRAMES. */
1882
1883 static Lisp_Object
1884 next_window (window, minibuf, all_frames, next_p)
1885 Lisp_Object window, minibuf, all_frames;
1886 int next_p;
1887 {
1888 decode_next_window_args (&window, &minibuf, &all_frames);
1889
1890 /* If ALL_FRAMES is a frame, and WINDOW isn't on that frame, just
1891 return the first window on the frame. */
1892 if (FRAMEP (all_frames)
1893 && !EQ (all_frames, XWINDOW (window)->frame))
1894 return Fframe_first_window (all_frames);
1895
1896 if (next_p)
1897 {
1898 Lisp_Object list;
1899
1900 /* Find WINDOW in the list of all windows. */
1901 list = Fmemq (window, window_list ());
1902
1903 /* Scan forward from WINDOW to the end of the window list. */
1904 if (CONSP (list))
1905 for (list = XCDR (list); CONSP (list); list = XCDR (list))
1906 if (candidate_window_p (XCAR (list), window, minibuf, all_frames))
1907 break;
1908
1909 /* Scan from the start of the window list up to WINDOW. */
1910 if (!CONSP (list))
1911 for (list = Vwindow_list;
1912 CONSP (list) && !EQ (XCAR (list), window);
1913 list = XCDR (list))
1914 if (candidate_window_p (XCAR (list), window, minibuf, all_frames))
1915 break;
1916
1917 if (CONSP (list))
1918 window = XCAR (list);
1919 }
1920 else
1921 {
1922 Lisp_Object candidate, list;
1923
1924 /* Scan through the list of windows for candidates. If there are
1925 candidate windows in front of WINDOW, the last one of these
1926 is the one we want. If there are candidates following WINDOW
1927 in the list, again the last one of these is the one we want. */
1928 candidate = Qnil;
1929 for (list = window_list (); CONSP (list); list = XCDR (list))
1930 {
1931 if (EQ (XCAR (list), window))
1932 {
1933 if (WINDOWP (candidate))
1934 break;
1935 }
1936 else if (candidate_window_p (XCAR (list), window, minibuf,
1937 all_frames))
1938 candidate = XCAR (list);
1939 }
1940
1941 if (WINDOWP (candidate))
1942 window = candidate;
1943 }
1944
1945 return window;
1946 }
1947
1948
1949 DEFUN ("next-window", Fnext_window, Snext_window, 0, 3, 0,
1950 doc: /* Return next window after WINDOW in canonical ordering of windows.
1951 If omitted, WINDOW defaults to the selected window.
1952
1953 Optional second arg MINIBUF t means count the minibuffer window even
1954 if not active. MINIBUF nil or omitted means count the minibuffer iff
1955 it is active. MINIBUF neither t nor nil means not to count the
1956 minibuffer even if it is active.
1957
1958 Several frames may share a single minibuffer; if the minibuffer
1959 counts, all windows on all frames that share that minibuffer count
1960 too. Therefore, `next-window' can be used to iterate through the
1961 set of windows even when the minibuffer is on another frame. If the
1962 minibuffer does not count, only windows from WINDOW's frame count.
1963
1964 Optional third arg ALL-FRAMES t means include windows on all frames.
1965 ALL-FRAMES nil or omitted means cycle within the frames as specified
1966 above. ALL-FRAMES = `visible' means include windows on all visible frames.
1967 ALL-FRAMES = 0 means include windows on all visible and iconified frames.
1968 If ALL-FRAMES is a frame, restrict search to windows on that frame.
1969 Anything else means restrict to WINDOW's frame.
1970
1971 If you use consistent values for MINIBUF and ALL-FRAMES, you can use
1972 `next-window' to iterate through the entire cycle of acceptable
1973 windows, eventually ending up back at the window you started with.
1974 `previous-window' traverses the same cycle, in the reverse order. */)
1975 (window, minibuf, all_frames)
1976 Lisp_Object window, minibuf, all_frames;
1977 {
1978 return next_window (window, minibuf, all_frames, 1);
1979 }
1980
1981
1982 DEFUN ("previous-window", Fprevious_window, Sprevious_window, 0, 3, 0,
1983 doc: /* Return the window preceding WINDOW in canonical ordering of windows.
1984 If omitted, WINDOW defaults to the selected window.
1985
1986 Optional second arg MINIBUF t means count the minibuffer window even
1987 if not active. MINIBUF nil or omitted means count the minibuffer iff
1988 it is active. MINIBUF neither t nor nil means not to count the
1989 minibuffer even if it is active.
1990
1991 Several frames may share a single minibuffer; if the minibuffer
1992 counts, all windows on all frames that share that minibuffer count
1993 too. Therefore, `previous-window' can be used to iterate through
1994 the set of windows even when the minibuffer is on another frame. If
1995 the minibuffer does not count, only windows from WINDOW's frame count
1996
1997 Optional third arg ALL-FRAMES t means include windows on all frames.
1998 ALL-FRAMES nil or omitted means cycle within the frames as specified
1999 above. ALL-FRAMES = `visible' means include windows on all visible frames.
2000 ALL-FRAMES = 0 means include windows on all visible and iconified frames.
2001 If ALL-FRAMES is a frame, restrict search to windows on that frame.
2002 Anything else means restrict to WINDOW's frame.
2003
2004 If you use consistent values for MINIBUF and ALL-FRAMES, you can use
2005 `previous-window' to iterate through the entire cycle of acceptable
2006 windows, eventually ending up back at the window you started with.
2007 `next-window' traverses the same cycle, in the reverse order. */)
2008 (window, minibuf, all_frames)
2009 Lisp_Object window, minibuf, all_frames;
2010 {
2011 return next_window (window, minibuf, all_frames, 0);
2012 }
2013
2014
2015 DEFUN ("other-window", Fother_window, Sother_window, 1, 2, "p",
2016 doc: /* Select the ARG'th different window on this frame.
2017 All windows on current frame are arranged in a cyclic order.
2018 This command selects the window ARG steps away in that order.
2019 A negative ARG moves in the opposite order. The optional second
2020 argument ALL-FRAMES has the same meaning as in `next-window', which see. */)
2021 (arg, all_frames)
2022 Lisp_Object arg, all_frames;
2023 {
2024 Lisp_Object window;
2025 int i;
2026
2027 CHECK_NUMBER (arg);
2028 window = selected_window;
2029
2030 for (i = XINT (arg); i > 0; --i)
2031 window = Fnext_window (window, Qnil, all_frames);
2032 for (; i < 0; ++i)
2033 window = Fprevious_window (window, Qnil, all_frames);
2034
2035 Fselect_window (window, Qnil);
2036 return Qnil;
2037 }
2038
2039
2040 DEFUN ("window-list", Fwindow_list, Swindow_list, 0, 3, 0,
2041 doc: /* Return a list of windows on FRAME, starting with WINDOW.
2042 FRAME nil or omitted means use the selected frame.
2043 WINDOW nil or omitted means use the selected window.
2044 MINIBUF t means include the minibuffer window, even if it isn't active.
2045 MINIBUF nil or omitted means include the minibuffer window only
2046 if it's active.
2047 MINIBUF neither nil nor t means never include the minibuffer window. */)
2048 (frame, minibuf, window)
2049 Lisp_Object frame, minibuf, window;
2050 {
2051 if (NILP (window))
2052 window = FRAMEP (frame) ? XFRAME (frame)->selected_window : selected_window;
2053 CHECK_WINDOW (window);
2054 if (NILP (frame))
2055 frame = selected_frame;
2056
2057 if (!EQ (frame, XWINDOW (window)->frame))
2058 error ("Window is on a different frame");
2059
2060 return window_list_1 (window, minibuf, frame);
2061 }
2062
2063
2064 /* Return a list of windows in canonical ordering. Arguments are like
2065 for `next-window'. */
2066
2067 static Lisp_Object
2068 window_list_1 (window, minibuf, all_frames)
2069 Lisp_Object window, minibuf, all_frames;
2070 {
2071 Lisp_Object tail, list, rest;
2072
2073 decode_next_window_args (&window, &minibuf, &all_frames);
2074 list = Qnil;
2075
2076 for (tail = window_list (); CONSP (tail); tail = XCDR (tail))
2077 if (candidate_window_p (XCAR (tail), window, minibuf, all_frames))
2078 list = Fcons (XCAR (tail), list);
2079
2080 /* Rotate the list to start with WINDOW. */
2081 list = Fnreverse (list);
2082 rest = Fmemq (window, list);
2083 if (!NILP (rest) && !EQ (rest, list))
2084 {
2085 for (tail = list; !EQ (XCDR (tail), rest); tail = XCDR (tail))
2086 ;
2087 XSETCDR (tail, Qnil);
2088 list = nconc2 (rest, list);
2089 }
2090 return list;
2091 }
2092
2093
2094 \f
2095 /* Look at all windows, performing an operation specified by TYPE
2096 with argument OBJ.
2097 If FRAMES is Qt, look at all frames;
2098 Qnil, look at just the selected frame;
2099 Qvisible, look at visible frames;
2100 a frame, just look at windows on that frame.
2101 If MINI is non-zero, perform the operation on minibuffer windows too. */
2102
2103 enum window_loop
2104 {
2105 WINDOW_LOOP_UNUSED,
2106 GET_BUFFER_WINDOW, /* Arg is buffer */
2107 GET_LRU_WINDOW, /* Arg is t for full-width windows only */
2108 DELETE_OTHER_WINDOWS, /* Arg is window not to delete */
2109 DELETE_BUFFER_WINDOWS, /* Arg is buffer */
2110 GET_LARGEST_WINDOW,
2111 UNSHOW_BUFFER, /* Arg is buffer */
2112 REDISPLAY_BUFFER_WINDOWS, /* Arg is buffer */
2113 CHECK_ALL_WINDOWS
2114 };
2115
2116 static Lisp_Object
2117 window_loop (type, obj, mini, frames)
2118 enum window_loop type;
2119 Lisp_Object obj, frames;
2120 int mini;
2121 {
2122 Lisp_Object window, windows, best_window, frame_arg;
2123 struct frame *f;
2124 struct gcpro gcpro1;
2125
2126 /* If we're only looping through windows on a particular frame,
2127 frame points to that frame. If we're looping through windows
2128 on all frames, frame is 0. */
2129 if (FRAMEP (frames))
2130 f = XFRAME (frames);
2131 else if (NILP (frames))
2132 f = SELECTED_FRAME ();
2133 else
2134 f = NULL;
2135
2136 if (f)
2137 frame_arg = Qlambda;
2138 else if (EQ (frames, make_number (0)))
2139 frame_arg = frames;
2140 else if (EQ (frames, Qvisible))
2141 frame_arg = frames;
2142 else
2143 frame_arg = Qt;
2144
2145 /* frame_arg is Qlambda to stick to one frame,
2146 Qvisible to consider all visible frames,
2147 or Qt otherwise. */
2148
2149 /* Pick a window to start with. */
2150 if (WINDOWP (obj))
2151 window = obj;
2152 else if (f)
2153 window = FRAME_SELECTED_WINDOW (f);
2154 else
2155 window = FRAME_SELECTED_WINDOW (SELECTED_FRAME ());
2156
2157 windows = window_list_1 (window, mini ? Qt : Qnil, frame_arg);
2158 GCPRO1 (windows);
2159 best_window = Qnil;
2160
2161 for (; CONSP (windows); windows = XCDR (windows))
2162 {
2163 struct window *w;
2164
2165 window = XCAR (windows);
2166 w = XWINDOW (window);
2167
2168 /* Note that we do not pay attention here to whether the frame
2169 is visible, since Fwindow_list skips non-visible frames if
2170 that is desired, under the control of frame_arg. */
2171 if (!MINI_WINDOW_P (w)
2172 /* For UNSHOW_BUFFER, we must always consider all windows. */
2173 || type == UNSHOW_BUFFER
2174 || (mini && minibuf_level > 0))
2175 switch (type)
2176 {
2177 case GET_BUFFER_WINDOW:
2178 if (EQ (w->buffer, obj)
2179 /* Don't find any minibuffer window
2180 except the one that is currently in use. */
2181 && (MINI_WINDOW_P (w)
2182 ? EQ (window, minibuf_window)
2183 : 1))
2184 {
2185 if (NILP (best_window))
2186 best_window = window;
2187 else if (EQ (window, selected_window))
2188 /* Prefer to return selected-window. */
2189 RETURN_UNGCPRO (window);
2190 else if (EQ (Fwindow_frame (window), selected_frame))
2191 /* Prefer windows on the current frame. */
2192 best_window = window;
2193 }
2194 break;
2195
2196 case GET_LRU_WINDOW:
2197 /* `obj' is an integer encoding a bitvector.
2198 `obj & 1' means consider only full-width windows.
2199 `obj & 2' means consider also dedicated windows. */
2200 if (((XINT (obj) & 1) && !WINDOW_FULL_WIDTH_P (w))
2201 || (!(XINT (obj) & 2) && !NILP (w->dedicated))
2202 /* Minibuffer windows are always ignored. */
2203 || MINI_WINDOW_P (w))
2204 break;
2205 if (NILP (best_window)
2206 || (XFASTINT (XWINDOW (best_window)->use_time)
2207 > XFASTINT (w->use_time)))
2208 best_window = window;
2209 break;
2210
2211 case DELETE_OTHER_WINDOWS:
2212 if (!EQ (window, obj))
2213 Fdelete_window (window);
2214 break;
2215
2216 case DELETE_BUFFER_WINDOWS:
2217 if (EQ (w->buffer, obj))
2218 {
2219 struct frame *f = XFRAME (WINDOW_FRAME (w));
2220
2221 /* If this window is dedicated, and in a frame of its own,
2222 kill the frame. */
2223 if (EQ (window, FRAME_ROOT_WINDOW (f))
2224 && !NILP (w->dedicated)
2225 && other_visible_frames (f))
2226 {
2227 /* Skip the other windows on this frame.
2228 There might be one, the minibuffer! */
2229 while (CONSP (XCDR (windows))
2230 && EQ (XWINDOW (XCAR (windows))->frame,
2231 XWINDOW (XCAR (XCDR (windows)))->frame))
2232 windows = XCDR (windows);
2233
2234 /* Now we can safely delete the frame. */
2235 Fdelete_frame (w->frame, Qnil);
2236 }
2237 else if (NILP (w->parent))
2238 {
2239 /* If we're deleting the buffer displayed in the
2240 only window on the frame, find a new buffer to
2241 display there. */
2242 Lisp_Object buffer;
2243 buffer = Fother_buffer (obj, Qnil, w->frame);
2244 Fset_window_buffer (window, buffer, Qnil);
2245 if (EQ (window, selected_window))
2246 Fset_buffer (w->buffer);
2247 }
2248 else
2249 Fdelete_window (window);
2250 }
2251 break;
2252
2253 case GET_LARGEST_WINDOW:
2254 { /* nil `obj' means to ignore dedicated windows. */
2255 /* Ignore dedicated windows and minibuffers. */
2256 if (MINI_WINDOW_P (w) || (NILP (obj) && !NILP (w->dedicated)))
2257 break;
2258
2259 if (NILP (best_window))
2260 best_window = window;
2261 else
2262 {
2263 struct window *b = XWINDOW (best_window);
2264 if (XFASTINT (w->total_lines) * XFASTINT (w->total_cols)
2265 > XFASTINT (b->total_lines) * XFASTINT (b->total_cols))
2266 best_window = window;
2267 }
2268 }
2269 break;
2270
2271 case UNSHOW_BUFFER:
2272 if (EQ (w->buffer, obj))
2273 {
2274 Lisp_Object buffer;
2275 struct frame *f = XFRAME (w->frame);
2276
2277 /* Find another buffer to show in this window. */
2278 buffer = Fother_buffer (obj, Qnil, w->frame);
2279
2280 /* If this window is dedicated, and in a frame of its own,
2281 kill the frame. */
2282 if (EQ (window, FRAME_ROOT_WINDOW (f))
2283 && !NILP (w->dedicated)
2284 && other_visible_frames (f))
2285 {
2286 /* Skip the other windows on this frame.
2287 There might be one, the minibuffer! */
2288 while (CONSP (XCDR (windows))
2289 && EQ (XWINDOW (XCAR (windows))->frame,
2290 XWINDOW (XCAR (XCDR (windows)))->frame))
2291 windows = XCDR (windows);
2292
2293 /* Now we can safely delete the frame. */
2294 Fdelete_frame (w->frame, Qnil);
2295 }
2296 else if (!NILP (w->dedicated) && !NILP (w->parent))
2297 {
2298 Lisp_Object window;
2299 XSETWINDOW (window, w);
2300 /* If this window is dedicated and not the only window
2301 in its frame, then kill it. */
2302 Fdelete_window (window);
2303 }
2304 else
2305 {
2306 /* Otherwise show a different buffer in the window. */
2307 w->dedicated = Qnil;
2308 Fset_window_buffer (window, buffer, Qnil);
2309 if (EQ (window, selected_window))
2310 Fset_buffer (w->buffer);
2311 }
2312 }
2313 break;
2314
2315 case REDISPLAY_BUFFER_WINDOWS:
2316 if (EQ (w->buffer, obj))
2317 {
2318 mark_window_display_accurate (window, 0);
2319 w->update_mode_line = Qt;
2320 XBUFFER (obj)->prevent_redisplay_optimizations_p = 1;
2321 ++update_mode_lines;
2322 best_window = window;
2323 }
2324 break;
2325
2326 /* Check for a window that has a killed buffer. */
2327 case CHECK_ALL_WINDOWS:
2328 if (! NILP (w->buffer)
2329 && NILP (XBUFFER (w->buffer)->name))
2330 abort ();
2331 break;
2332
2333 case WINDOW_LOOP_UNUSED:
2334 break;
2335 }
2336 }
2337
2338 UNGCPRO;
2339 return best_window;
2340 }
2341
2342 /* Used for debugging. Abort if any window has a dead buffer. */
2343
2344 void
2345 check_all_windows ()
2346 {
2347 window_loop (CHECK_ALL_WINDOWS, Qnil, 1, Qt);
2348 }
2349
2350 DEFUN ("get-lru-window", Fget_lru_window, Sget_lru_window, 0, 2, 0,
2351 doc: /* Return the window least recently selected or used for display.
2352 \(LRU means Least Recently Used.)
2353
2354 Return a full-width window if possible.
2355 A minibuffer window is never a candidate.
2356 A dedicated window is never a candidate, unless DEDICATED is non-nil,
2357 so if all windows are dedicated, the value is nil.
2358 If optional argument FRAME is `visible', search all visible frames.
2359 If FRAME is 0, search all visible and iconified frames.
2360 If FRAME is t, search all frames.
2361 If FRAME is nil, search only the selected frame.
2362 If FRAME is a frame, search only that frame. */)
2363 (frame, dedicated)
2364 Lisp_Object frame, dedicated;
2365 {
2366 register Lisp_Object w;
2367 /* First try for a window that is full-width */
2368 w = window_loop (GET_LRU_WINDOW,
2369 NILP (dedicated) ? make_number (1) : make_number (3),
2370 0, frame);
2371 if (!NILP (w) && !EQ (w, selected_window))
2372 return w;
2373 /* If none of them, try the rest */
2374 return window_loop (GET_LRU_WINDOW,
2375 NILP (dedicated) ? make_number (0) : make_number (2),
2376 0, frame);
2377 }
2378
2379 DEFUN ("get-largest-window", Fget_largest_window, Sget_largest_window, 0, 2, 0,
2380 doc: /* Return the largest window in area.
2381 A minibuffer window is never a candidate.
2382 A dedicated window is never a candidate unless DEDICATED is non-nil,
2383 so if all windows are dedicated, the value is nil.
2384 If optional argument FRAME is `visible', search all visible frames.
2385 If FRAME is 0, search all visible and iconified frames.
2386 If FRAME is t, search all frames.
2387 If FRAME is nil, search only the selected frame.
2388 If FRAME is a frame, search only that frame. */)
2389 (frame, dedicated)
2390 Lisp_Object frame, dedicated;
2391 {
2392 return window_loop (GET_LARGEST_WINDOW, dedicated, 0,
2393 frame);
2394 }
2395
2396 DEFUN ("get-buffer-window", Fget_buffer_window, Sget_buffer_window, 1, 2, 0,
2397 doc: /* Return a window currently displaying BUFFER, or nil if none.
2398 BUFFER can be a buffer or a buffer name.
2399 If optional argument FRAME is `visible', search all visible frames.
2400 If optional argument FRAME is 0, search all visible and iconified frames.
2401 If FRAME is t, search all frames.
2402 If FRAME is nil, search only the selected frame.
2403 If FRAME is a frame, search only that frame. */)
2404 (buffer, frame)
2405 Lisp_Object buffer, frame;
2406 {
2407 buffer = Fget_buffer (buffer);
2408 if (BUFFERP (buffer))
2409 return window_loop (GET_BUFFER_WINDOW, buffer, 1, frame);
2410 else
2411 return Qnil;
2412 }
2413
2414 DEFUN ("delete-other-windows", Fdelete_other_windows, Sdelete_other_windows,
2415 0, 1, "",
2416 doc: /* Make WINDOW (or the selected window) fill its frame.
2417 Only the frame WINDOW is on is affected.
2418 This function tries to reduce display jumps
2419 by keeping the text previously visible in WINDOW
2420 in the same place on the frame. Doing this depends on
2421 the value of (window-start WINDOW), so if calling this function
2422 in a program gives strange scrolling, make sure the window-start
2423 value is reasonable when this function is called. */)
2424 (window)
2425 Lisp_Object window;
2426 {
2427 struct window *w;
2428 int startpos;
2429 int top, new_top;
2430
2431 if (NILP (window))
2432 window = selected_window;
2433 else
2434 CHECK_LIVE_WINDOW (window);
2435 w = XWINDOW (window);
2436
2437 startpos = marker_position (w->start);
2438 top = WINDOW_TOP_EDGE_LINE (w) - FRAME_TOP_MARGIN (XFRAME (WINDOW_FRAME (w)));
2439
2440 if (MINI_WINDOW_P (w) && top > 0)
2441 error ("Can't expand minibuffer to full frame");
2442
2443 window_loop (DELETE_OTHER_WINDOWS, window, 0, WINDOW_FRAME (w));
2444
2445 /* Try to minimize scrolling, by setting the window start to the point
2446 will cause the text at the old window start to be at the same place
2447 on the frame. But don't try to do this if the window start is
2448 outside the visible portion (as might happen when the display is
2449 not current, due to typeahead). */
2450 new_top = WINDOW_TOP_EDGE_LINE (w) - FRAME_TOP_MARGIN (XFRAME (WINDOW_FRAME (w)));
2451 if (new_top != top
2452 && startpos >= BUF_BEGV (XBUFFER (w->buffer))
2453 && startpos <= BUF_ZV (XBUFFER (w->buffer)))
2454 {
2455 struct position pos;
2456 struct buffer *obuf = current_buffer;
2457
2458 Fset_buffer (w->buffer);
2459 /* This computation used to temporarily move point, but that can
2460 have unwanted side effects due to text properties. */
2461 pos = *vmotion (startpos, -top, w);
2462
2463 set_marker_both (w->start, w->buffer, pos.bufpos, pos.bytepos);
2464 w->window_end_valid = Qnil;
2465 w->start_at_line_beg = ((pos.bytepos == BEGV_BYTE
2466 || FETCH_BYTE (pos.bytepos - 1) == '\n') ? Qt
2467 : Qnil);
2468 /* We need to do this, so that the window-scroll-functions
2469 get called. */
2470 w->optional_new_start = Qt;
2471
2472 set_buffer_internal (obuf);
2473 }
2474
2475 return Qnil;
2476 }
2477
2478 DEFUN ("delete-windows-on", Fdelete_windows_on, Sdelete_windows_on,
2479 1, 2, "bDelete windows on (buffer): ",
2480 doc: /* Delete all windows showing BUFFER.
2481 BUFFER must be a buffer or the name of an existing buffer.
2482 Optional second argument FRAME controls which frames are affected.
2483 If optional argument FRAME is `visible', search all visible frames.
2484 If FRAME is 0, search all visible and iconified frames.
2485 If FRAME is nil, search all frames.
2486 If FRAME is t, search only the selected frame.
2487 If FRAME is a frame, search only that frame. */)
2488 (buffer, frame)
2489 Lisp_Object buffer, frame;
2490 {
2491 /* FRAME uses t and nil to mean the opposite of what window_loop
2492 expects. */
2493 if (NILP (frame))
2494 frame = Qt;
2495 else if (EQ (frame, Qt))
2496 frame = Qnil;
2497
2498 if (!NILP (buffer))
2499 {
2500 buffer = Fget_buffer (buffer);
2501 CHECK_BUFFER (buffer);
2502 window_loop (DELETE_BUFFER_WINDOWS, buffer, 0, frame);
2503 }
2504
2505 return Qnil;
2506 }
2507
2508 DEFUN ("replace-buffer-in-windows", Freplace_buffer_in_windows,
2509 Sreplace_buffer_in_windows,
2510 1, 1, "bReplace buffer in windows: ",
2511 doc: /* Replace BUFFER with some other buffer in all windows showing it.
2512 BUFFER may be a buffer or the name of an existing buffer. */)
2513 (buffer)
2514 Lisp_Object buffer;
2515 {
2516 if (!NILP (buffer))
2517 {
2518 buffer = Fget_buffer (buffer);
2519 CHECK_BUFFER (buffer);
2520 window_loop (UNSHOW_BUFFER, buffer, 0, Qt);
2521 }
2522 return Qnil;
2523 }
2524
2525 /* Replace BUFFER with some other buffer in all windows
2526 of all frames, even those on other keyboards. */
2527
2528 void
2529 replace_buffer_in_all_windows (buffer)
2530 Lisp_Object buffer;
2531 {
2532 #ifdef MULTI_KBOARD
2533 Lisp_Object tail, frame;
2534
2535 /* A single call to window_loop won't do the job
2536 because it only considers frames on the current keyboard.
2537 So loop manually over frames, and handle each one. */
2538 FOR_EACH_FRAME (tail, frame)
2539 window_loop (UNSHOW_BUFFER, buffer, 1, frame);
2540 #else
2541 window_loop (UNSHOW_BUFFER, buffer, 1, Qt);
2542 #endif
2543 }
2544 \f
2545 /* Set the height of WINDOW and all its inferiors. */
2546
2547 /* The smallest acceptable dimensions for a window. Anything smaller
2548 might crash Emacs. */
2549
2550 #define MIN_SAFE_WINDOW_WIDTH (2)
2551 #define MIN_SAFE_WINDOW_HEIGHT (1)
2552
2553 /* Make sure that window_min_height and window_min_width are
2554 not too small; if they are, set them to safe minima. */
2555
2556 static void
2557 check_min_window_sizes ()
2558 {
2559 /* Smaller values might permit a crash. */
2560 if (window_min_width < MIN_SAFE_WINDOW_WIDTH)
2561 window_min_width = MIN_SAFE_WINDOW_WIDTH;
2562 if (window_min_height < MIN_SAFE_WINDOW_HEIGHT)
2563 window_min_height = MIN_SAFE_WINDOW_HEIGHT;
2564 }
2565
2566 /* If *ROWS or *COLS are too small a size for FRAME, set them to the
2567 minimum allowable size. */
2568
2569 void
2570 check_frame_size (frame, rows, cols)
2571 FRAME_PTR frame;
2572 int *rows, *cols;
2573 {
2574 /* For height, we have to see:
2575 how many windows the frame has at minimum (one or two),
2576 and whether it has a menu bar or other special stuff at the top. */
2577 int min_height
2578 = ((FRAME_MINIBUF_ONLY_P (frame) || ! FRAME_HAS_MINIBUF_P (frame))
2579 ? MIN_SAFE_WINDOW_HEIGHT
2580 : 2 * MIN_SAFE_WINDOW_HEIGHT);
2581
2582 if (FRAME_TOP_MARGIN (frame) > 0)
2583 min_height += FRAME_TOP_MARGIN (frame);
2584
2585 if (*rows < min_height)
2586 *rows = min_height;
2587 if (*cols < MIN_SAFE_WINDOW_WIDTH)
2588 *cols = MIN_SAFE_WINDOW_WIDTH;
2589 }
2590
2591 /* Value is non-zero if window W is fixed-size. WIDTH_P non-zero means
2592 check if W's width can be changed, otherwise check W's height.
2593 CHECK_SIBLINGS_P non-zero means check resizablity of WINDOW's
2594 siblings, too. If none of the siblings is resizable, WINDOW isn't
2595 either. */
2596
2597 static int
2598 window_fixed_size_p (w, width_p, check_siblings_p)
2599 struct window *w;
2600 int width_p, check_siblings_p;
2601 {
2602 int fixed_p;
2603 struct window *c;
2604
2605 if (!NILP (w->hchild))
2606 {
2607 c = XWINDOW (w->hchild);
2608
2609 if (width_p)
2610 {
2611 /* A horiz. combination is fixed-width if all of if its
2612 children are. */
2613 while (c && window_fixed_size_p (c, width_p, 0))
2614 c = WINDOWP (c->next) ? XWINDOW (c->next) : NULL;
2615 fixed_p = c == NULL;
2616 }
2617 else
2618 {
2619 /* A horiz. combination is fixed-height if one of if its
2620 children is. */
2621 while (c && !window_fixed_size_p (c, width_p, 0))
2622 c = WINDOWP (c->next) ? XWINDOW (c->next) : NULL;
2623 fixed_p = c != NULL;
2624 }
2625 }
2626 else if (!NILP (w->vchild))
2627 {
2628 c = XWINDOW (w->vchild);
2629
2630 if (width_p)
2631 {
2632 /* A vert. combination is fixed-width if one of if its
2633 children is. */
2634 while (c && !window_fixed_size_p (c, width_p, 0))
2635 c = WINDOWP (c->next) ? XWINDOW (c->next) : NULL;
2636 fixed_p = c != NULL;
2637 }
2638 else
2639 {
2640 /* A vert. combination is fixed-height if all of if its
2641 children are. */
2642 while (c && window_fixed_size_p (c, width_p, 0))
2643 c = WINDOWP (c->next) ? XWINDOW (c->next) : NULL;
2644 fixed_p = c == NULL;
2645 }
2646 }
2647 else if (BUFFERP (w->buffer))
2648 {
2649 struct buffer *old = current_buffer;
2650 Lisp_Object val;
2651
2652 current_buffer = XBUFFER (w->buffer);
2653 val = find_symbol_value (Qwindow_size_fixed);
2654 current_buffer = old;
2655
2656 fixed_p = 0;
2657 if (!EQ (val, Qunbound))
2658 {
2659 fixed_p = !NILP (val);
2660
2661 if (fixed_p
2662 && ((EQ (val, Qheight) && width_p)
2663 || (EQ (val, Qwidth) && !width_p)))
2664 fixed_p = 0;
2665 }
2666
2667 /* Can't tell if this one is resizable without looking at
2668 siblings. If all siblings are fixed-size this one is too. */
2669 if (!fixed_p && check_siblings_p && WINDOWP (w->parent))
2670 {
2671 Lisp_Object child;
2672
2673 for (child = w->prev; WINDOWP (child); child = XWINDOW (child)->prev)
2674 if (!window_fixed_size_p (XWINDOW (child), width_p, 0))
2675 break;
2676
2677 if (NILP (child))
2678 for (child = w->next; WINDOWP (child); child = XWINDOW (child)->next)
2679 if (!window_fixed_size_p (XWINDOW (child), width_p, 0))
2680 break;
2681
2682 if (NILP (child))
2683 fixed_p = 1;
2684 }
2685 }
2686 else
2687 fixed_p = 1;
2688
2689 return fixed_p;
2690 }
2691
2692 /* Return the minimum size for leaf window W. WIDTH_P non-zero means
2693 take into account fringes and the scrollbar of W. WIDTH_P zero means
2694 take into account mode-line of W. Return 1 for the minibuffer. */
2695
2696 static int
2697 window_min_size_2 (w, width_p)
2698 struct window *w;
2699 int width_p;
2700 {
2701 int size;
2702
2703 if (width_p)
2704 size = max (window_min_width,
2705 (MIN_SAFE_WINDOW_WIDTH
2706 + WINDOW_FRINGE_COLS (w)
2707 + WINDOW_SCROLL_BAR_COLS (w)));
2708 else if (MINI_WINDOW_P (w))
2709 size = 1;
2710 else
2711 size = max (window_min_height,
2712 (MIN_SAFE_WINDOW_HEIGHT
2713 /* Don't count the header-line here. It would break
2714 splitting a window with a header-line when the new
2715 window shall have a height of two (calculator does
2716 that). */
2717 + (WINDOW_WANTS_MODELINE_P (w) ? 1 : 0)));
2718
2719 return size;
2720 }
2721
2722 /* Return the minimum size of window W, not taking fixed-width windows
2723 into account. WIDTH_P non-zero means return the minimum width,
2724 otherwise return the minimum height. If W is a combination window,
2725 compute the minimum size from the minimum sizes of W's children. */
2726
2727 static int
2728 window_min_size_1 (w, width_p)
2729 struct window *w;
2730 int width_p;
2731 {
2732 struct window *c;
2733 int size;
2734
2735 if (!NILP (w->hchild))
2736 {
2737 c = XWINDOW (w->hchild);
2738 size = 0;
2739
2740 if (width_p)
2741 {
2742 /* The min width of a horizontal combination is
2743 the sum of the min widths of its children. */
2744 while (c)
2745 {
2746 size += window_min_size_1 (c, width_p);
2747 c = WINDOWP (c->next) ? XWINDOW (c->next) : NULL;
2748 }
2749 }
2750 else
2751 {
2752 /* The min height a horizontal combination equals
2753 the maximum of all min height of its children. */
2754 while (c)
2755 {
2756 int min_size = window_min_size_1 (c, width_p);
2757 size = max (min_size, size);
2758 c = WINDOWP (c->next) ? XWINDOW (c->next) : NULL;
2759 }
2760 }
2761 }
2762 else if (!NILP (w->vchild))
2763 {
2764 c = XWINDOW (w->vchild);
2765 size = 0;
2766
2767 if (width_p)
2768 {
2769 /* The min width of a vertical combination is
2770 the maximum of the min widths of its children. */
2771 while (c)
2772 {
2773 int min_size = window_min_size_1 (c, width_p);
2774 size = max (min_size, size);
2775 c = WINDOWP (c->next) ? XWINDOW (c->next) : NULL;
2776 }
2777 }
2778 else
2779 {
2780 /* The min height of a vertical combination equals
2781 the sum of the min height of its children. */
2782 while (c)
2783 {
2784 size += window_min_size_1 (c, width_p);
2785 c = WINDOWP (c->next) ? XWINDOW (c->next) : NULL;
2786 }
2787 }
2788 }
2789 else
2790 size = window_min_size_2 (w, width_p);
2791
2792 return size;
2793 }
2794
2795
2796 /* Return the minimum size of window W, taking fixed-size windows into
2797 account. WIDTH_P non-zero means return the minimum width,
2798 otherwise return the minimum height. IGNORE_FIXED_P non-zero means
2799 ignore if W is fixed-size. Set *FIXED to 1 if W is fixed-size
2800 unless FIXED is null. */
2801
2802 static int
2803 window_min_size (w, width_p, ignore_fixed_p, fixed)
2804 struct window *w;
2805 int width_p, ignore_fixed_p, *fixed;
2806 {
2807 int size, fixed_p;
2808
2809 if (ignore_fixed_p)
2810 fixed_p = 0;
2811 else
2812 fixed_p = window_fixed_size_p (w, width_p, 1);
2813
2814 if (fixed)
2815 *fixed = fixed_p;
2816
2817 if (fixed_p)
2818 size = width_p ? XFASTINT (w->total_cols) : XFASTINT (w->total_lines);
2819 else
2820 size = window_min_size_1 (w, width_p);
2821
2822 return size;
2823 }
2824
2825
2826 /* Adjust the margins of window W if text area is too small.
2827 Return 1 if window width is ok after adjustment; 0 if window
2828 is still too narrow. */
2829
2830 static int
2831 adjust_window_margins (w)
2832 struct window *w;
2833 {
2834 int box_cols = (WINDOW_TOTAL_COLS (w)
2835 - WINDOW_FRINGE_COLS (w)
2836 - WINDOW_SCROLL_BAR_COLS (w));
2837 int margin_cols = (WINDOW_LEFT_MARGIN_COLS (w)
2838 + WINDOW_RIGHT_MARGIN_COLS (w));
2839
2840 if (box_cols - margin_cols >= MIN_SAFE_WINDOW_WIDTH)
2841 return 1;
2842
2843 if (margin_cols < 0 || box_cols < MIN_SAFE_WINDOW_WIDTH)
2844 return 0;
2845
2846 /* Window's text area is too narrow, but reducing the window
2847 margins will fix that. */
2848 margin_cols = box_cols - MIN_SAFE_WINDOW_WIDTH;
2849 if (WINDOW_RIGHT_MARGIN_COLS (w) > 0)
2850 {
2851 if (WINDOW_LEFT_MARGIN_COLS (w) > 0)
2852 w->left_margin_cols = w->right_margin_cols
2853 = make_number (margin_cols/2);
2854 else
2855 w->right_margin_cols = make_number (margin_cols);
2856 }
2857 else
2858 w->left_margin_cols = make_number (margin_cols);
2859 return 1;
2860 }
2861
2862 /* Calculate new sizes for windows in the list FORWARD when the window size
2863 goes from TOTAL to SIZE. TOTAL must be greater than SIZE.
2864 The number of windows in FORWARD is NCHILDREN, and the number that
2865 can shrink is SHRINKABLE.
2866 The minimum size a window can have is MIN_SIZE.
2867 If we are shrinking fixed windows, RESIZE_FIXED_P is non-zero.
2868 If we are shrinking columns, WIDTH_P is non-zero, otherwise we are
2869 shrinking rows.
2870
2871 This function returns an allocated array of new sizes that the caller
2872 must free. The size -1 means the window is fixed and RESIZE_FIXED_P
2873 is zero. Array index 0 refers to the first window in FORWARD, 1 to
2874 the second, and so on.
2875
2876 This function tries to keep windows at least at the minimum size
2877 and resize other windows before it resizes any window to zero (i.e.
2878 delete that window).
2879
2880 Windows are resized proportional to their size, so bigger windows
2881 shrink more than smaller windows. */
2882 static int *
2883 shrink_windows (total, size, nchildren, shrinkable,
2884 min_size, resize_fixed_p, forward, width_p)
2885 int total, size, nchildren, shrinkable, min_size;
2886 int resize_fixed_p, width_p;
2887 Lisp_Object forward;
2888 {
2889 int available_resize = 0;
2890 int *new_sizes;
2891 struct window *c;
2892 Lisp_Object child;
2893 int smallest = total;
2894 int total_removed = 0;
2895 int total_shrink = total - size;
2896 int i;
2897
2898 new_sizes = xmalloc (sizeof (*new_sizes) * nchildren);
2899
2900 for (i = 0, child = forward; !NILP (child); child = c->next, ++i)
2901 {
2902 int child_size;
2903
2904 c = XWINDOW (child);
2905 child_size = width_p ? XINT (c->total_cols) : XINT (c->total_lines);
2906
2907 if (! resize_fixed_p && window_fixed_size_p (c, width_p, 0))
2908 new_sizes[i] = -1;
2909 else
2910 {
2911 new_sizes[i] = child_size;
2912 if (child_size > min_size)
2913 available_resize += child_size - min_size;
2914 }
2915 }
2916 /* We might need to shrink some windows to zero. Find the smallest
2917 windows and set them to 0 until we can fulfil the new size. */
2918
2919 while (shrinkable > 1 && size + available_resize < total)
2920 {
2921 for (i = 0; i < nchildren; ++i)
2922 if (new_sizes[i] > 0 && smallest > new_sizes[i])
2923 smallest = new_sizes[i];
2924
2925 for (i = 0; i < nchildren; ++i)
2926 if (new_sizes[i] == smallest)
2927 {
2928 /* Resize this window down to zero. */
2929 new_sizes[i] = 0;
2930 if (smallest > min_size)
2931 available_resize -= smallest - min_size;
2932 available_resize += smallest;
2933 --shrinkable;
2934 total_removed += smallest;
2935
2936 /* We don't know what the smallest is now. */
2937 smallest = total;
2938
2939 /* Out of for, just remove one window at the time and
2940 check again if we have enough space. */
2941 break;
2942 }
2943 }
2944
2945 /* Now, calculate the new sizes. Try to shrink each window
2946 proportional to its size. */
2947 for (i = 0; i < nchildren; ++i)
2948 {
2949 if (new_sizes[i] > min_size)
2950 {
2951 int to_shrink = total_shrink*new_sizes[i]/total;
2952 if (new_sizes[i] - to_shrink < min_size)
2953 to_shrink = new_sizes[i] - min_size;
2954 new_sizes[i] -= to_shrink;
2955 total_removed += to_shrink;
2956 }
2957 }
2958
2959 /* Any reminder due to rounding, we just subtract from windows
2960 that are left and still can be shrunk. */
2961 while (total_shrink > total_removed)
2962 {
2963 int nonzero_sizes = 0;
2964 int nonzero_idx = -1;
2965
2966 for (i = 0; i < nchildren; ++i)
2967 if (new_sizes[i] > 0)
2968 {
2969 ++nonzero_sizes;
2970 nonzero_idx = i;
2971 }
2972
2973 for (i = 0; i < nchildren; ++i)
2974 if (new_sizes[i] > min_size)
2975 {
2976 --new_sizes[i];
2977 ++total_removed;
2978
2979 /* Out of for, just shrink one window at the time and
2980 check again if we have enough space. */
2981 break;
2982 }
2983
2984
2985 /* Special case, only one window left. */
2986 if (nonzero_sizes == 1)
2987 break;
2988 }
2989
2990 /* Any surplus due to rounding, we add to windows that are left. */
2991 while (total_shrink < total_removed)
2992 {
2993 for (i = 0; i < nchildren; ++i)
2994 {
2995 if (new_sizes[i] != 0 && total_shrink < total_removed)
2996 {
2997 ++new_sizes[i];
2998 --total_removed;
2999 break;
3000 }
3001 }
3002 }
3003
3004 return new_sizes;
3005 }
3006
3007 /* Set WINDOW's height or width to SIZE. WIDTH_P non-zero means set
3008 WINDOW's width. Resize WINDOW's children, if any, so that they
3009 keep their proportionate size relative to WINDOW.
3010
3011 If FIRST_ONLY is 1, change only the first of WINDOW's children when
3012 they are in series. If LAST_ONLY is 1, change only the last of
3013 WINDOW's children when they are in series.
3014
3015 Propagate WINDOW's top or left edge position to children. Delete
3016 windows that become too small unless NODELETE_P is non-zero.
3017
3018 If NODELETE_P is 2, that means we do delete windows that are
3019 too small, even if they were too small before! */
3020
3021 static void
3022 size_window (window, size, width_p, nodelete_p, first_only, last_only)
3023 Lisp_Object window;
3024 int size, width_p, nodelete_p;
3025 int first_only, last_only;
3026 {
3027 struct window *w = XWINDOW (window);
3028 struct window *c;
3029 Lisp_Object child, *forward, *sideward;
3030 int old_size, min_size, safe_min_size;
3031
3032 check_min_window_sizes ();
3033 size = max (0, size);
3034
3035 /* If the window has been "too small" at one point,
3036 don't delete it for being "too small" in the future.
3037 Preserve it as long as that is at all possible. */
3038 if (width_p)
3039 {
3040 old_size = WINDOW_TOTAL_COLS (w);
3041 min_size = window_min_width;
3042 safe_min_size = window_min_size_2 (w, 1);
3043 }
3044 else
3045 {
3046 old_size = XINT (w->total_lines);
3047 min_size = window_min_height;
3048 safe_min_size = window_min_size_2 (w, 0);
3049 }
3050
3051 if (old_size < min_size && nodelete_p != 2)
3052 w->too_small_ok = Qt;
3053
3054 /* Move the following test here since otherwise the
3055 preceding test doesn't make sense. martin. */
3056 if (nodelete_p == 2)
3057 nodelete_p = 0;
3058
3059 /* Maybe delete WINDOW if it's too small. */
3060 if (nodelete_p != 1 && !NILP (w->parent))
3061 {
3062 if (!MINI_WINDOW_P (w) && !NILP (w->too_small_ok))
3063 min_size = width_p ? MIN_SAFE_WINDOW_WIDTH : MIN_SAFE_WINDOW_HEIGHT;
3064 if (min_size < safe_min_size)
3065 min_size = safe_min_size;
3066 if (size < min_size)
3067 {
3068 delete_window (window);
3069 return;
3070 }
3071 }
3072
3073 /* Set redisplay hints. */
3074 w->last_modified = make_number (0);
3075 w->last_overlay_modified = make_number (0);
3076 windows_or_buffers_changed++;
3077 FRAME_WINDOW_SIZES_CHANGED (XFRAME (w->frame)) = 1;
3078
3079 if (width_p)
3080 {
3081 sideward = &w->vchild;
3082 forward = &w->hchild;
3083 w->total_cols = make_number (size);
3084 adjust_window_margins (w);
3085 }
3086 else
3087 {
3088 sideward = &w->hchild;
3089 forward = &w->vchild;
3090 w->total_lines = make_number (size);
3091 w->orig_total_lines = Qnil;
3092 }
3093
3094 if (!NILP (*sideward))
3095 {
3096 /* We have a chain of parallel siblings whose size should all change. */
3097 for (child = *sideward; !NILP (child); child = c->next)
3098 {
3099 c = XWINDOW (child);
3100 if (width_p)
3101 c->left_col = w->left_col;
3102 else
3103 c->top_line = w->top_line;
3104 size_window (child, size, width_p, nodelete_p,
3105 first_only, last_only);
3106 }
3107 }
3108 else if (!NILP (*forward) && last_only)
3109 {
3110 /* Change the last in a series of siblings. */
3111 Lisp_Object last_child;
3112 int child_size;
3113
3114 for (child = *forward; !NILP (child); child = c->next)
3115 {
3116 c = XWINDOW (child);
3117 last_child = child;
3118 }
3119
3120 child_size = XINT (width_p ? c->total_cols : c->total_lines);
3121 size_window (last_child,
3122 size - old_size + child_size,
3123 width_p, nodelete_p, first_only, last_only);
3124 }
3125 else if (!NILP (*forward) && first_only)
3126 {
3127 /* Change the first in a series of siblings. */
3128 int child_size;
3129
3130 child = *forward;
3131 c = XWINDOW (child);
3132
3133 if (width_p)
3134 c->left_col = w->left_col;
3135 else
3136 c->top_line = w->top_line;
3137
3138 child_size = XINT (width_p ? c->total_cols : c->total_lines);
3139 size_window (child,
3140 size - old_size + child_size,
3141 width_p, nodelete_p, first_only, last_only);
3142 }
3143 else if (!NILP (*forward))
3144 {
3145 int fixed_size, each, extra, n;
3146 int resize_fixed_p, nfixed;
3147 int last_pos, first_pos, nchildren, total;
3148 int *new_sizes = NULL;
3149
3150 /* Determine the fixed-size portion of this window, and the
3151 number of child windows. */
3152 fixed_size = nchildren = nfixed = total = 0;
3153 for (child = *forward; !NILP (child); child = c->next, ++nchildren)
3154 {
3155 int child_size;
3156
3157 c = XWINDOW (child);
3158 child_size = width_p ? XINT (c->total_cols) : XINT (c->total_lines);
3159 total += child_size;
3160
3161 if (window_fixed_size_p (c, width_p, 0))
3162 {
3163 fixed_size += child_size;
3164 ++nfixed;
3165 }
3166 }
3167
3168 /* If the new size is smaller than fixed_size, or if there
3169 aren't any resizable windows, allow resizing fixed-size
3170 windows. */
3171 resize_fixed_p = nfixed == nchildren || size < fixed_size;
3172
3173 /* Compute how many lines/columns to add/remove to each child. The
3174 value of extra takes care of rounding errors. */
3175 n = resize_fixed_p ? nchildren : nchildren - nfixed;
3176 if (size < total && n > 1)
3177 new_sizes = shrink_windows (total, size, nchildren, n, min_size,
3178 resize_fixed_p, *forward, width_p);
3179 else
3180 {
3181 each = (size - total) / n;
3182 extra = (size - total) - n * each;
3183 }
3184
3185 /* Compute new children heights and edge positions. */
3186 first_pos = width_p ? XINT (w->left_col) : XINT (w->top_line);
3187 last_pos = first_pos;
3188 for (n = 0, child = *forward; !NILP (child); child = c->next, ++n)
3189 {
3190 int new_size, old_size;
3191
3192 c = XWINDOW (child);
3193 old_size = width_p ? XFASTINT (c->total_cols) : XFASTINT (c->total_lines);
3194 new_size = old_size;
3195
3196 /* The top or left edge position of this child equals the
3197 bottom or right edge of its predecessor. */
3198 if (width_p)
3199 c->left_col = make_number (last_pos);
3200 else
3201 c->top_line = make_number (last_pos);
3202
3203 /* If this child can be resized, do it. */
3204 if (resize_fixed_p || !window_fixed_size_p (c, width_p, 0))
3205 {
3206 new_size = new_sizes ? new_sizes[n] : old_size + each + extra;
3207 extra = 0;
3208 }
3209
3210 /* Set new height. Note that size_window also propagates
3211 edge positions to children, so it's not a no-op if we
3212 didn't change the child's size. */
3213 size_window (child, new_size, width_p, 1, first_only, last_only);
3214
3215 /* Remember the bottom/right edge position of this child; it
3216 will be used to set the top/left edge of the next child. */
3217 last_pos += new_size;
3218 }
3219
3220 if (new_sizes) xfree (new_sizes);
3221
3222 /* We should have covered the parent exactly with child windows. */
3223 xassert (size == last_pos - first_pos);
3224
3225 /* Now delete any children that became too small. */
3226 if (!nodelete_p)
3227 for (child = *forward; !NILP (child); child = c->next)
3228 {
3229 int child_size;
3230 c = XWINDOW (child);
3231 child_size = width_p ? XINT (c->total_cols) : XINT (c->total_lines);
3232 size_window (child, child_size, width_p, 2, first_only, last_only);
3233 }
3234 }
3235 }
3236
3237 /* Set WINDOW's height to HEIGHT, and recursively change the height of
3238 WINDOW's children. NODELETE non-zero means don't delete windows
3239 that become too small in the process. (The caller should check
3240 later and do so if appropriate.) */
3241
3242 void
3243 set_window_height (window, height, nodelete)
3244 Lisp_Object window;
3245 int height;
3246 int nodelete;
3247 {
3248 size_window (window, height, 0, nodelete, 0, 0);
3249 }
3250
3251
3252 /* Set WINDOW's width to WIDTH, and recursively change the width of
3253 WINDOW's children. NODELETE non-zero means don't delete windows
3254 that become too small in the process. (The caller should check
3255 later and do so if appropriate.) */
3256
3257 void
3258 set_window_width (window, width, nodelete)
3259 Lisp_Object window;
3260 int width;
3261 int nodelete;
3262 {
3263 size_window (window, width, 1, nodelete, 0, 0);
3264 }
3265
3266 /* Change window heights in windows rooted in WINDOW by N lines. */
3267
3268 void
3269 change_window_heights (window, n)
3270 Lisp_Object window;
3271 int n;
3272 {
3273 struct window *w = XWINDOW (window);
3274
3275 XSETFASTINT (w->top_line, XFASTINT (w->top_line) + n);
3276 XSETFASTINT (w->total_lines, XFASTINT (w->total_lines) - n);
3277
3278 if (INTEGERP (w->orig_top_line))
3279 XSETFASTINT (w->orig_top_line, XFASTINT (w->orig_top_line) + n);
3280 if (INTEGERP (w->orig_total_lines))
3281 XSETFASTINT (w->orig_total_lines, XFASTINT (w->orig_total_lines) - n);
3282
3283 /* Handle just the top child in a vertical split. */
3284 if (!NILP (w->vchild))
3285 change_window_heights (w->vchild, n);
3286
3287 /* Adjust all children in a horizontal split. */
3288 for (window = w->hchild; !NILP (window); window = w->next)
3289 {
3290 w = XWINDOW (window);
3291 change_window_heights (window, n);
3292 }
3293 }
3294
3295 \f
3296 int window_select_count;
3297
3298 Lisp_Object
3299 Fset_window_buffer_unwind (obuf)
3300 Lisp_Object obuf;
3301 {
3302 Fset_buffer (obuf);
3303 return Qnil;
3304 }
3305
3306 EXFUN (Fset_window_fringes, 4);
3307 EXFUN (Fset_window_scroll_bars, 4);
3308
3309 static void
3310 run_funs (Lisp_Object funs)
3311 {
3312 for (; CONSP (funs); funs = XCDR (funs))
3313 if (!EQ (XCAR (funs), Qt))
3314 call0 (XCAR (funs));
3315 }
3316
3317 static Lisp_Object select_window_norecord (Lisp_Object window);
3318
3319 void
3320 run_window_configuration_change_hook (struct frame *f)
3321 {
3322 int count = SPECPDL_INDEX ();
3323 Lisp_Object frame, global_wcch
3324 = Fdefault_value (Qwindow_configuration_change_hook);
3325 XSETFRAME (frame, f);
3326
3327 if (NILP (Vrun_hooks))
3328 return;
3329
3330 if (SELECTED_FRAME () != f)
3331 {
3332 record_unwind_protect (Fselect_frame, Fselected_frame ());
3333 Fselect_frame (frame);
3334 }
3335
3336 /* Use the right buffer. Matters when running the local hooks. */
3337 if (current_buffer != XBUFFER (Fwindow_buffer (Qnil)))
3338 {
3339 record_unwind_protect (Fset_buffer, Fcurrent_buffer ());
3340 Fset_buffer (Fwindow_buffer (Qnil));
3341 }
3342
3343 /* Look for buffer-local values. */
3344 {
3345 Lisp_Object windows = Fwindow_list (frame, Qlambda, Qnil);
3346 for (; CONSP (windows); windows = XCDR (windows))
3347 {
3348 Lisp_Object window = XCAR (windows);
3349 Lisp_Object buffer = Fwindow_buffer (window);
3350 if (!NILP (Flocal_variable_p (Qwindow_configuration_change_hook,
3351 buffer)))
3352 {
3353 int count = SPECPDL_INDEX ();
3354 record_unwind_protect (select_window_norecord, Fselected_window ());
3355 select_window_norecord (window);
3356 run_funs (Fbuffer_local_value (Qwindow_configuration_change_hook,
3357 buffer));
3358 unbind_to (count, Qnil);
3359 }
3360 }
3361 }
3362
3363 run_funs (global_wcch);
3364 unbind_to (count, Qnil);
3365 }
3366
3367 /* Make WINDOW display BUFFER as its contents. RUN_HOOKS_P non-zero
3368 means it's allowed to run hooks. See make_frame for a case where
3369 it's not allowed. KEEP_MARGINS_P non-zero means that the current
3370 margins, fringes, and scroll-bar settings of the window are not
3371 reset from the buffer's local settings. */
3372
3373 void
3374 set_window_buffer (window, buffer, run_hooks_p, keep_margins_p)
3375 Lisp_Object window, buffer;
3376 int run_hooks_p, keep_margins_p;
3377 {
3378 struct window *w = XWINDOW (window);
3379 struct buffer *b = XBUFFER (buffer);
3380 int count = SPECPDL_INDEX ();
3381 int samebuf = EQ (buffer, w->buffer);
3382
3383 w->buffer = buffer;
3384
3385 if (EQ (window, selected_window))
3386 b->last_selected_window = window;
3387
3388 /* Let redisplay errors through. */
3389 b->display_error_modiff = 0;
3390
3391 /* Update time stamps of buffer display. */
3392 if (INTEGERP (b->display_count))
3393 XSETINT (b->display_count, XINT (b->display_count) + 1);
3394 b->display_time = Fcurrent_time ();
3395
3396 XSETFASTINT (w->window_end_pos, 0);
3397 XSETFASTINT (w->window_end_vpos, 0);
3398 bzero (&w->last_cursor, sizeof w->last_cursor);
3399 w->window_end_valid = Qnil;
3400 if (!(keep_margins_p && samebuf))
3401 { /* If we're not actually changing the buffer, Don't reset hscroll and
3402 vscroll. This case happens for example when called from
3403 change_frame_size_1, where we use a dummy call to
3404 Fset_window_buffer on the frame's selected window (and no other)
3405 just in order to run window-configuration-change-hook.
3406 Resetting hscroll and vscroll here is problematic for things like
3407 image-mode and doc-view-mode since it resets the image's position
3408 whenever we resize the frame. */
3409 w->hscroll = w->min_hscroll = make_number (0);
3410 w->vscroll = 0;
3411 set_marker_both (w->pointm, buffer, BUF_PT (b), BUF_PT_BYTE (b));
3412 set_marker_restricted (w->start,
3413 make_number (b->last_window_start),
3414 buffer);
3415 w->start_at_line_beg = Qnil;
3416 w->force_start = Qnil;
3417 XSETFASTINT (w->last_modified, 0);
3418 XSETFASTINT (w->last_overlay_modified, 0);
3419 }
3420 /* Maybe we could move this into the `if' but it's not obviously safe and
3421 I doubt it's worth the trouble. */
3422 windows_or_buffers_changed++;
3423
3424 /* We must select BUFFER for running the window-scroll-functions.
3425 If WINDOW is selected, switch permanently.
3426 Otherwise, switch but go back to the ambient buffer afterward. */
3427 if (EQ (window, selected_window))
3428 Fset_buffer (buffer);
3429 /* We can't check ! NILP (Vwindow_scroll_functions) here
3430 because that might itself be a local variable. */
3431 else if (window_initialized)
3432 {
3433 record_unwind_protect (Fset_window_buffer_unwind, Fcurrent_buffer ());
3434 Fset_buffer (buffer);
3435 }
3436
3437 if (!keep_margins_p)
3438 {
3439 /* Set left and right marginal area width etc. from buffer. */
3440
3441 /* This may call adjust_window_margins three times, so
3442 temporarily disable window margins. */
3443 Lisp_Object save_left = w->left_margin_cols;
3444 Lisp_Object save_right = w->right_margin_cols;
3445
3446 w->left_margin_cols = w->right_margin_cols = Qnil;
3447
3448 Fset_window_fringes (window,
3449 b->left_fringe_width, b->right_fringe_width,
3450 b->fringes_outside_margins);
3451
3452 Fset_window_scroll_bars (window,
3453 b->scroll_bar_width,
3454 b->vertical_scroll_bar_type, Qnil);
3455
3456 w->left_margin_cols = save_left;
3457 w->right_margin_cols = save_right;
3458
3459 Fset_window_margins (window,
3460 b->left_margin_cols, b->right_margin_cols);
3461 }
3462
3463 if (run_hooks_p)
3464 {
3465 if (! NILP (Vwindow_scroll_functions))
3466 run_hook_with_args_2 (Qwindow_scroll_functions, window,
3467 Fmarker_position (w->start));
3468 run_window_configuration_change_hook (XFRAME (WINDOW_FRAME (w)));
3469 }
3470
3471 unbind_to (count, Qnil);
3472 }
3473
3474
3475 DEFUN ("set-window-buffer", Fset_window_buffer, Sset_window_buffer, 2, 3, 0,
3476 doc: /* Make WINDOW display BUFFER as its contents.
3477 BUFFER can be a buffer or the name of an existing buffer.
3478 Optional third arg KEEP-MARGINS non-nil means that WINDOW's current
3479 display margins, fringe widths, and scroll bar settings are maintained;
3480 the default is to reset these from BUFFER's local settings or the frame
3481 defaults.
3482
3483 This function runs the hook `window-scroll-functions'. */)
3484 (window, buffer, keep_margins)
3485 register Lisp_Object window, buffer, keep_margins;
3486 {
3487 register Lisp_Object tem;
3488 register struct window *w = decode_window (window);
3489
3490 XSETWINDOW (window, w);
3491 buffer = Fget_buffer (buffer);
3492 CHECK_BUFFER (buffer);
3493
3494 if (NILP (XBUFFER (buffer)->name))
3495 error ("Attempt to display deleted buffer");
3496
3497 tem = w->buffer;
3498 if (NILP (tem))
3499 error ("Window is deleted");
3500 else if (! EQ (tem, Qt)) /* w->buffer is t when the window
3501 is first being set up. */
3502 {
3503 if (!NILP (w->dedicated) && !EQ (tem, buffer))
3504 error ("Window is dedicated to `%s'",
3505 SDATA (XBUFFER (tem)->name));
3506
3507 unshow_buffer (w);
3508 }
3509
3510 set_window_buffer (window, buffer, 1, !NILP (keep_margins));
3511 return Qnil;
3512 }
3513
3514 /* Note that selected_window can be nil
3515 when this is called from Fset_window_configuration. */
3516
3517 DEFUN ("select-window", Fselect_window, Sselect_window, 1, 2, 0,
3518 doc: /* Select WINDOW. Most editing will apply to WINDOW's buffer.
3519 If WINDOW is not already selected, make WINDOW's buffer current
3520 and make WINDOW the frame's selected window. Return WINDOW.
3521 Optional second arg NORECORD non-nil means
3522 do not put this buffer at the front of the list of recently selected ones.
3523
3524 Note that the main editor command loop
3525 selects the buffer of the selected window before each command. */)
3526 (window, norecord)
3527 register Lisp_Object window, norecord;
3528 {
3529 register struct window *w;
3530 register struct window *ow;
3531 struct frame *sf;
3532
3533 CHECK_LIVE_WINDOW (window);
3534
3535 w = XWINDOW (window);
3536 w->frozen_window_start_p = 0;
3537
3538 ++window_select_count;
3539 XSETFASTINT (w->use_time, window_select_count);
3540 if (EQ (window, selected_window))
3541 return window;
3542
3543 sf = SELECTED_FRAME ();
3544 if (XFRAME (WINDOW_FRAME (w)) != sf)
3545 {
3546 XFRAME (WINDOW_FRAME (w))->selected_window = window;
3547 /* Use this rather than Fhandle_switch_frame
3548 so that FRAME_FOCUS_FRAME is moved appropriately as we
3549 move around in the state where a minibuffer in a separate
3550 frame is active. */
3551 Fselect_frame (WINDOW_FRAME (w));
3552 /* Fselect_frame called us back so we've done all the work already. */
3553 eassert (EQ (window, selected_window));
3554 return window;
3555 }
3556 else
3557 sf->selected_window = window;
3558
3559 /* Store the current buffer's actual point into the
3560 old selected window. It belongs to that window,
3561 and when the window is not selected, must be in the window. */
3562 if (!NILP (selected_window))
3563 {
3564 ow = XWINDOW (selected_window);
3565 if (! NILP (ow->buffer))
3566 set_marker_both (ow->pointm, ow->buffer,
3567 BUF_PT (XBUFFER (ow->buffer)),
3568 BUF_PT_BYTE (XBUFFER (ow->buffer)));
3569 }
3570
3571 selected_window = window;
3572
3573 if (NILP (norecord))
3574 record_buffer (w->buffer);
3575 Fset_buffer (w->buffer);
3576
3577 XBUFFER (w->buffer)->last_selected_window = window;
3578
3579 /* Go to the point recorded in the window.
3580 This is important when the buffer is in more
3581 than one window. It also matters when
3582 redisplay_window has altered point after scrolling,
3583 because it makes the change only in the window. */
3584 {
3585 register int new_point = marker_position (w->pointm);
3586 if (new_point < BEGV)
3587 SET_PT (BEGV);
3588 else if (new_point > ZV)
3589 SET_PT (ZV);
3590 else
3591 SET_PT (new_point);
3592 }
3593
3594 windows_or_buffers_changed++;
3595 return window;
3596 }
3597
3598 static Lisp_Object
3599 select_window_norecord (window)
3600 Lisp_Object window;
3601 {
3602 return Fselect_window (window, Qt);
3603 }
3604 \f
3605 /* Deiconify the frame containing the window WINDOW,
3606 unless it is the selected frame;
3607 then return WINDOW.
3608
3609 The reason for the exception for the selected frame
3610 is that it seems better not to change the selected frames visibility
3611 merely because of displaying a different buffer in it.
3612 The deiconification is useful when a buffer gets shown in
3613 another frame that you were not using lately. */
3614
3615 static Lisp_Object
3616 display_buffer_1 (window)
3617 Lisp_Object window;
3618 {
3619 Lisp_Object frame = XWINDOW (window)->frame;
3620 FRAME_PTR f = XFRAME (frame);
3621
3622 FRAME_SAMPLE_VISIBILITY (f);
3623
3624 if (EQ (frame, selected_frame))
3625 ; /* Assume the selected frame is already visible enough. */
3626 else if (minibuf_level > 0
3627 && MINI_WINDOW_P (XWINDOW (selected_window))
3628 && WINDOW_LIVE_P (minibuf_selected_window)
3629 && EQ (frame, WINDOW_FRAME (XWINDOW (minibuf_selected_window))))
3630 ; /* Assume the frame from which we invoked the minibuffer is visible. */
3631 else
3632 {
3633 if (FRAME_ICONIFIED_P (f))
3634 Fmake_frame_visible (frame);
3635 else if (FRAME_VISIBLE_P (f))
3636 Fraise_frame (frame);
3637 }
3638
3639 return window;
3640 }
3641
3642 DEFUN ("special-display-p", Fspecial_display_p, Sspecial_display_p, 1, 1, 0,
3643 doc: /* Returns non-nil if a buffer named BUFFER-NAME gets a special frame.
3644 If the value is t, `display-buffer' or `pop-to-buffer' would create a
3645 special frame for that buffer using the default frame parameters.
3646
3647 If the value is a list, it is a list of frame parameters that would be used
3648 to make a frame for that buffer.
3649 The variables `special-display-buffer-names'
3650 and `special-display-regexps' control this. */)
3651 (buffer_name)
3652 Lisp_Object buffer_name;
3653 {
3654 Lisp_Object tem;
3655
3656 CHECK_STRING (buffer_name);
3657
3658 tem = Fmember (buffer_name, Vspecial_display_buffer_names);
3659 if (!NILP (tem))
3660 return Qt;
3661
3662 tem = Fassoc (buffer_name, Vspecial_display_buffer_names);
3663 if (!NILP (tem))
3664 return XCDR (tem);
3665
3666 for (tem = Vspecial_display_regexps; CONSP (tem); tem = XCDR (tem))
3667 {
3668 Lisp_Object car = XCAR (tem);
3669 if (STRINGP (car)
3670 && fast_string_match (car, buffer_name) >= 0)
3671 return Qt;
3672 else if (CONSP (car)
3673 && STRINGP (XCAR (car))
3674 && fast_string_match (XCAR (car), buffer_name) >= 0)
3675 return XCDR (car);
3676 }
3677 return Qnil;
3678 }
3679
3680 DEFUN ("same-window-p", Fsame_window_p, Ssame_window_p, 1, 1, 0,
3681 doc: /* Returns non-nil if a buffer named BUFFER-NAME would use the same window.
3682 More precisely, if `display-buffer' or `pop-to-buffer' would display
3683 that buffer in the selected window rather than (as usual) in some other window.
3684 See `same-window-buffer-names' and `same-window-regexps'. */)
3685 (buffer_name)
3686 Lisp_Object buffer_name;
3687 {
3688 Lisp_Object tem;
3689
3690 CHECK_STRING (buffer_name);
3691
3692 tem = Fmember (buffer_name, Vsame_window_buffer_names);
3693 if (!NILP (tem))
3694 return Qt;
3695
3696 tem = Fassoc (buffer_name, Vsame_window_buffer_names);
3697 if (!NILP (tem))
3698 return Qt;
3699
3700 for (tem = Vsame_window_regexps; CONSP (tem); tem = XCDR (tem))
3701 {
3702 Lisp_Object car = XCAR (tem);
3703 if (STRINGP (car)
3704 && fast_string_match (car, buffer_name) >= 0)
3705 return Qt;
3706 else if (CONSP (car)
3707 && STRINGP (XCAR (car))
3708 && fast_string_match (XCAR (car), buffer_name) >= 0)
3709 return Qt;
3710 }
3711 return Qnil;
3712 }
3713
3714 /* Use B so the default is (other-buffer). */
3715 DEFUN ("display-buffer", Fdisplay_buffer, Sdisplay_buffer, 1, 3,
3716 "BDisplay buffer: \nP",
3717 doc: /* Make BUFFER appear in some window but don't select it.
3718 BUFFER must be the name of an existing buffer, or, when called from Lisp,
3719 a buffer.
3720 If BUFFER is shown already in some window, just use that one,
3721 unless the window is the selected window and the optional second
3722 argument NOT-THIS-WINDOW is non-nil (interactively, with prefix arg).
3723 If `pop-up-frames' is non-nil, make a new frame if no window shows BUFFER.
3724 Returns the window displaying BUFFER.
3725 If `display-buffer-reuse-frames' is non-nil, and another frame is currently
3726 displaying BUFFER, then simply raise that frame.
3727
3728 The variables `special-display-buffer-names',
3729 `special-display-regexps', `same-window-buffer-names', and
3730 `same-window-regexps' customize how certain buffer names are handled.
3731 The latter two take effect only if NOT-THIS-WINDOW is nil.
3732
3733 If optional argument FRAME is `visible', check all visible frames
3734 for a window to use.
3735 If FRAME is 0, check all visible and iconified frames.
3736 If FRAME is t, check all frames.
3737 If FRAME is a frame, check only that frame.
3738 If FRAME is nil, check only the selected frame
3739 (actually the last nonminibuffer frame),
3740 unless `pop-up-frames' or `display-buffer-reuse-frames' is non-nil,
3741 which means search visible and iconified frames.
3742
3743 If a full-width window on a splittable frame is available to display
3744 the buffer, it may be split, subject to the value of the variable
3745 `split-height-threshold'.
3746
3747 If `even-window-heights' is non-nil, window heights will be evened out
3748 if displaying the buffer causes two vertically adjacent windows to be
3749 displayed. */)
3750 (buffer, not_this_window, frame)
3751 Lisp_Object buffer, not_this_window, frame;
3752 {
3753 register Lisp_Object window, tem, swp;
3754 struct frame *f;
3755
3756 swp = Qnil;
3757 buffer = Fget_buffer (buffer);
3758 CHECK_BUFFER (buffer);
3759
3760 if (!NILP (Vdisplay_buffer_function))
3761 return call2 (Vdisplay_buffer_function, buffer, not_this_window);
3762
3763 if (NILP (not_this_window)
3764 && XBUFFER (XWINDOW (selected_window)->buffer) == XBUFFER (buffer))
3765 return display_buffer_1 (selected_window);
3766
3767 /* See if the user has specified this buffer should appear
3768 in the selected window. */
3769 if (NILP (not_this_window))
3770 {
3771 swp = Fsame_window_p (XBUFFER (buffer)->name);
3772 if (!NILP (swp) && !no_switch_window (selected_window))
3773 {
3774 Fswitch_to_buffer (buffer, Qnil);
3775 return display_buffer_1 (selected_window);
3776 }
3777 }
3778
3779 /* If the user wants pop-up-frames or display-buffer-reuse-frames,
3780 look for a window showing BUFFER on any visible or iconified frame.
3781 Otherwise search only the current frame. */
3782 if (! NILP (frame))
3783 tem = frame;
3784 else if (pop_up_frames
3785 || display_buffer_reuse_frames
3786 || last_nonminibuf_frame == 0)
3787 XSETFASTINT (tem, 0);
3788 else
3789 XSETFRAME (tem, last_nonminibuf_frame);
3790
3791 window = Fget_buffer_window (buffer, tem);
3792 if (!NILP (window)
3793 && (NILP (not_this_window) || !EQ (window, selected_window)))
3794 return display_buffer_1 (window);
3795
3796 /* Certain buffer names get special handling. */
3797 if (!NILP (Vspecial_display_function) && NILP (swp))
3798 {
3799 tem = Fspecial_display_p (XBUFFER (buffer)->name);
3800 if (EQ (tem, Qt))
3801 return call1 (Vspecial_display_function, buffer);
3802 if (CONSP (tem))
3803 return call2 (Vspecial_display_function, buffer, tem);
3804 }
3805
3806 /* If there are no frames open that have more than a minibuffer,
3807 we need to create a new frame. */
3808 if (pop_up_frames || last_nonminibuf_frame == 0)
3809 {
3810 window = Fframe_selected_window (call0 (Vpop_up_frame_function));
3811 Fset_window_buffer (window, buffer, Qnil);
3812 return display_buffer_1 (window);
3813 }
3814
3815 f = SELECTED_FRAME ();
3816 if (pop_up_windows
3817 || FRAME_MINIBUF_ONLY_P (f)
3818 /* If the current frame is a special display frame,
3819 don't try to reuse its windows. */
3820 || !NILP (XWINDOW (FRAME_ROOT_WINDOW (f))->dedicated))
3821 {
3822 Lisp_Object frames;
3823 struct gcpro gcpro1;
3824 GCPRO1 (buffer);
3825
3826 frames = Qnil;
3827 if (FRAME_MINIBUF_ONLY_P (f))
3828 XSETFRAME (frames, last_nonminibuf_frame);
3829
3830 /* Note that both Fget_largest_window and Fget_lru_window
3831 ignore minibuffers and dedicated windows.
3832 This means they can return nil. */
3833
3834 /* If the frame we would try to split cannot be split,
3835 try other frames. */
3836 if (FRAME_NO_SPLIT_P (NILP (frames) ? f : last_nonminibuf_frame))
3837 {
3838 /* Try visible frames first. */
3839 window = Fget_largest_window (Qvisible, Qt);
3840 /* If that didn't work, try iconified frames. */
3841 if (NILP (window))
3842 window = Fget_largest_window (make_number (0), Qt);
3843 #if 0 /* Don't try windows on other displays. */
3844 if (NILP (window))
3845 window = Fget_largest_window (Qt, Qt);
3846 #endif
3847 }
3848 else
3849 window = Fget_largest_window (frames, Qt);
3850
3851 tem = Qnil;
3852 if (!NILP (Vsplit_window_preferred_function))
3853 tem = call1 (Vsplit_window_preferred_function, window);
3854
3855 if (!NILP (tem))
3856 window = tem;
3857 else
3858 /* If the largest window is tall enough, full-width, and either eligible
3859 for splitting or the only window, split it. */
3860 if (!NILP (window)
3861 && ! FRAME_NO_SPLIT_P (XFRAME (XWINDOW (window)->frame))
3862 && WINDOW_FULL_WIDTH_P (XWINDOW (window))
3863 && (window_height (window) >= split_height_threshold
3864 || (NILP (XWINDOW (window)->parent)))
3865 && (window_height (window)
3866 >= (2 * window_min_size_2 (XWINDOW (window), 0))))
3867 window = Fsplit_window (window, Qnil, Qnil);
3868 else
3869 {
3870 Lisp_Object upper, other;
3871
3872 window = Fget_lru_window (frames, Qt);
3873 /* If the LRU window is tall enough, and either eligible for
3874 splitting and selected or the only window, split it. */
3875 if (!NILP (window)
3876 && ! FRAME_NO_SPLIT_P (XFRAME (XWINDOW (window)->frame))
3877 && ((EQ (window, selected_window)
3878 && window_height (window) >= split_height_threshold)
3879 || (NILP (XWINDOW (window)->parent)))
3880 && (window_height (window)
3881 >= (2 * window_min_size_2 (XWINDOW (window), 0))))
3882 window = Fsplit_window (window, Qnil, Qnil);
3883 else
3884 window = Fget_lru_window (frames, Qnil);
3885 /* If Fget_lru_window returned nil, try other approaches. */
3886
3887 /* Try visible frames first. */
3888 if (NILP (window))
3889 window = Fget_buffer_window (buffer, Qvisible);
3890 if (NILP (window))
3891 window = Fget_largest_window (Qvisible, Qnil);
3892 /* If that didn't work, try iconified frames. */
3893 if (NILP (window))
3894 window = Fget_buffer_window (buffer, make_number (0));
3895 if (NILP (window))
3896 window = Fget_largest_window (make_number (0), Qnil);
3897
3898 #if 0 /* Don't try frames on other displays. */
3899 if (NILP (window))
3900 window = Fget_buffer_window (buffer, Qt);
3901 if (NILP (window))
3902 window = Fget_largest_window (Qt, Qnil);
3903 #endif
3904 /* As a last resort, make a new frame. */
3905 if (NILP (window))
3906 window = Fframe_selected_window (call0 (Vpop_up_frame_function));
3907 /* If window appears above or below another,
3908 even out their heights. */
3909 other = upper = Qnil;
3910 if (!NILP (XWINDOW (window)->prev))
3911 other = upper = XWINDOW (window)->prev;
3912 if (!NILP (XWINDOW (window)->next))
3913 other = XWINDOW (window)->next, upper = window;
3914 if (!NILP (other)
3915 && !NILP (Veven_window_heights)
3916 /* Check that OTHER and WINDOW are vertically arrayed. */
3917 && !EQ (XWINDOW (other)->top_line, XWINDOW (window)->top_line)
3918 && (XFASTINT (XWINDOW (other)->total_lines)
3919 > XFASTINT (XWINDOW (window)->total_lines)))
3920 {
3921 int total = (XFASTINT (XWINDOW (other)->total_lines)
3922 + XFASTINT (XWINDOW (window)->total_lines));
3923 enlarge_window (upper,
3924 total / 2 - XFASTINT (XWINDOW (upper)->total_lines),
3925 0);
3926 }
3927 }
3928 UNGCPRO;
3929 }
3930 else
3931 window = Fget_lru_window (Qnil, Qnil);
3932
3933 Fset_window_buffer (window, buffer, Qnil);
3934 return display_buffer_1 (window);
3935 }
3936
3937
3938 DEFUN ("force-window-update", Fforce_window_update, Sforce_window_update,
3939 0, 1, 0,
3940 doc: /* Force all windows to be updated on next redisplay.
3941 If optional arg OBJECT is a window, force redisplay of that window only.
3942 If OBJECT is a buffer or buffer name, force redisplay of all windows
3943 displaying that buffer. */)
3944 (object)
3945 Lisp_Object object;
3946 {
3947 if (NILP (object))
3948 {
3949 windows_or_buffers_changed++;
3950 update_mode_lines++;
3951 return Qt;
3952 }
3953
3954 if (WINDOWP (object))
3955 {
3956 struct window *w = XWINDOW (object);
3957 mark_window_display_accurate (object, 0);
3958 w->update_mode_line = Qt;
3959 if (BUFFERP (w->buffer))
3960 XBUFFER (w->buffer)->prevent_redisplay_optimizations_p = 1;
3961 ++update_mode_lines;
3962 return Qt;
3963 }
3964
3965 if (STRINGP (object))
3966 object = Fget_buffer (object);
3967 if (BUFFERP (object) && !NILP (XBUFFER (object)->name))
3968 {
3969 /* Walk all windows looking for buffer, and force update
3970 of each of those windows. */
3971
3972 object = window_loop (REDISPLAY_BUFFER_WINDOWS, object, 0, Qvisible);
3973 return NILP (object) ? Qnil : Qt;
3974 }
3975
3976 /* If nothing suitable was found, just return.
3977 We could signal an error, but this feature will typically be used
3978 asynchronously in timers or process sentinels, so we don't. */
3979 return Qnil;
3980 }
3981
3982
3983 void
3984 temp_output_buffer_show (buf)
3985 register Lisp_Object buf;
3986 {
3987 register struct buffer *old = current_buffer;
3988 register Lisp_Object window;
3989 register struct window *w;
3990
3991 XBUFFER (buf)->directory = current_buffer->directory;
3992
3993 Fset_buffer (buf);
3994 BUF_SAVE_MODIFF (XBUFFER (buf)) = MODIFF;
3995 BEGV = BEG;
3996 ZV = Z;
3997 SET_PT (BEG);
3998 #if 0 /* rms: there should be no reason for this. */
3999 XBUFFER (buf)->prevent_redisplay_optimizations_p = 1;
4000 #endif
4001 set_buffer_internal (old);
4002
4003 if (!NILP (Vtemp_buffer_show_function))
4004 call1 (Vtemp_buffer_show_function, buf);
4005 else
4006 {
4007 window = Fdisplay_buffer (buf, Qnil, Qnil);
4008
4009 if (!EQ (XWINDOW (window)->frame, selected_frame))
4010 Fmake_frame_visible (WINDOW_FRAME (XWINDOW (window)));
4011 Vminibuf_scroll_window = window;
4012 w = XWINDOW (window);
4013 XSETFASTINT (w->hscroll, 0);
4014 XSETFASTINT (w->min_hscroll, 0);
4015 set_marker_restricted_both (w->start, buf, BEG, BEG);
4016 set_marker_restricted_both (w->pointm, buf, BEG, BEG);
4017
4018 /* Run temp-buffer-show-hook, with the chosen window selected
4019 and its buffer current. */
4020
4021 if (!NILP (Vrun_hooks)
4022 && !NILP (Fboundp (Qtemp_buffer_show_hook))
4023 && !NILP (Fsymbol_value (Qtemp_buffer_show_hook)))
4024 {
4025 int count = SPECPDL_INDEX ();
4026 Lisp_Object prev_window, prev_buffer;
4027 prev_window = selected_window;
4028 XSETBUFFER (prev_buffer, old);
4029
4030 /* Select the window that was chosen, for running the hook.
4031 Note: Both Fselect_window and select_window_norecord may
4032 set-buffer to the buffer displayed in the window,
4033 so we need to save the current buffer. --stef */
4034 record_unwind_protect (Fset_buffer, prev_buffer);
4035 record_unwind_protect (select_window_norecord, prev_window);
4036 Fselect_window (window, Qt);
4037 Fset_buffer (w->buffer);
4038 call1 (Vrun_hooks, Qtemp_buffer_show_hook);
4039 unbind_to (count, Qnil);
4040 }
4041 }
4042 }
4043 \f
4044 static void
4045 make_dummy_parent (window)
4046 Lisp_Object window;
4047 {
4048 Lisp_Object new;
4049 register struct window *o, *p;
4050 int i;
4051
4052 o = XWINDOW (window);
4053 p = allocate_window ();
4054 for (i = 0; i < VECSIZE (struct window); ++i)
4055 ((struct Lisp_Vector *) p)->contents[i]
4056 = ((struct Lisp_Vector *)o)->contents[i];
4057 XSETWINDOW (new, p);
4058
4059 ++sequence_number;
4060 XSETFASTINT (p->sequence_number, sequence_number);
4061
4062 /* Put new into window structure in place of window */
4063 replace_window (window, new);
4064
4065 o->next = Qnil;
4066 o->prev = Qnil;
4067 o->vchild = Qnil;
4068 o->hchild = Qnil;
4069 o->parent = new;
4070
4071 p->start = Qnil;
4072 p->pointm = Qnil;
4073 p->buffer = Qnil;
4074 }
4075
4076 DEFUN ("split-window", Fsplit_window, Ssplit_window, 0, 3, "",
4077 doc: /* Split WINDOW, putting SIZE lines in the first of the pair.
4078 WINDOW defaults to selected one and SIZE to half its size.
4079 If optional third arg HORFLAG is non-nil, split side by side
4080 and put SIZE columns in the first of the pair. In that case,
4081 SIZE includes that window's scroll bar, or the divider column to its right.
4082 Interactively, all arguments are nil.
4083
4084 Returns the newly created window (which is the lower or rightmost one).
4085 The upper or leftmost window is the original one, and remains selected
4086 if it was selected before.
4087
4088 See Info node `(elisp)Splitting Windows' for more details and examples.*/)
4089 (window, size, horflag)
4090 Lisp_Object window, size, horflag;
4091 {
4092 register Lisp_Object new;
4093 register struct window *o, *p;
4094 FRAME_PTR fo;
4095 register int size_int;
4096
4097 if (NILP (window))
4098 window = selected_window;
4099 else
4100 CHECK_LIVE_WINDOW (window);
4101
4102 o = XWINDOW (window);
4103 fo = XFRAME (WINDOW_FRAME (o));
4104
4105 if (NILP (size))
4106 {
4107 if (!NILP (horflag))
4108 /* Calculate the size of the left-hand window, by dividing
4109 the usable space in columns by two.
4110 We round up, since the left-hand window may include
4111 a dividing line, while the right-hand may not. */
4112 size_int = (XFASTINT (o->total_cols) + 1) >> 1;
4113 else
4114 size_int = XFASTINT (o->total_lines) >> 1;
4115 }
4116 else
4117 {
4118 CHECK_NUMBER (size);
4119 size_int = XINT (size);
4120 }
4121
4122 if (MINI_WINDOW_P (o))
4123 error ("Attempt to split minibuffer window");
4124 else if (window_fixed_size_p (o, !NILP (horflag), 0))
4125 error ("Attempt to split fixed-size window");
4126
4127 check_min_window_sizes ();
4128
4129 if (NILP (horflag))
4130 {
4131 int window_safe_height = window_min_size_2 (o, 0);
4132
4133 if (size_int < window_safe_height)
4134 error ("Window height %d too small (after splitting)", size_int);
4135 if (size_int + window_safe_height > XFASTINT (o->total_lines))
4136 error ("Window height %d too small (after splitting)",
4137 XFASTINT (o->total_lines) - size_int);
4138 if (NILP (o->parent)
4139 || NILP (XWINDOW (o->parent)->vchild))
4140 {
4141 make_dummy_parent (window);
4142 new = o->parent;
4143 XWINDOW (new)->vchild = window;
4144 }
4145 }
4146 else
4147 {
4148 int window_safe_width = window_min_size_2 (o, 1);
4149
4150 if (size_int < window_safe_width)
4151 error ("Window width %d too small (after splitting)", size_int);
4152 if (size_int + window_safe_width > XFASTINT (o->total_cols))
4153 error ("Window width %d too small (after splitting)",
4154 XFASTINT (o->total_cols) - size_int);
4155 if (NILP (o->parent)
4156 || NILP (XWINDOW (o->parent)->hchild))
4157 {
4158 make_dummy_parent (window);
4159 new = o->parent;
4160 XWINDOW (new)->hchild = window;
4161 }
4162 }
4163
4164 /* Now we know that window's parent is a vertical combination
4165 if we are dividing vertically, or a horizontal combination
4166 if we are making side-by-side windows */
4167
4168 windows_or_buffers_changed++;
4169 FRAME_WINDOW_SIZES_CHANGED (fo) = 1;
4170 new = make_window ();
4171 p = XWINDOW (new);
4172
4173 p->frame = o->frame;
4174 p->next = o->next;
4175 if (!NILP (p->next))
4176 XWINDOW (p->next)->prev = new;
4177 p->prev = window;
4178 o->next = new;
4179 p->parent = o->parent;
4180 p->buffer = Qt;
4181 p->window_end_valid = Qnil;
4182 bzero (&p->last_cursor, sizeof p->last_cursor);
4183
4184 /* Duplicate special geometry settings. */
4185
4186 p->left_margin_cols = o->left_margin_cols;
4187 p->right_margin_cols = o->right_margin_cols;
4188 p->left_fringe_width = o->left_fringe_width;
4189 p->right_fringe_width = o->right_fringe_width;
4190 p->fringes_outside_margins = o->fringes_outside_margins;
4191 p->scroll_bar_width = o->scroll_bar_width;
4192 p->vertical_scroll_bar_type = o->vertical_scroll_bar_type;
4193
4194 /* Apportion the available frame space among the two new windows */
4195
4196 if (!NILP (horflag))
4197 {
4198 p->total_lines = o->total_lines;
4199 p->top_line = o->top_line;
4200 XSETFASTINT (p->total_cols, XFASTINT (o->total_cols) - size_int);
4201 XSETFASTINT (o->total_cols, size_int);
4202 XSETFASTINT (p->left_col, XFASTINT (o->left_col) + size_int);
4203 adjust_window_margins (p);
4204 adjust_window_margins (o);
4205 }
4206 else
4207 {
4208 p->left_col = o->left_col;
4209 p->total_cols = o->total_cols;
4210 XSETFASTINT (p->total_lines, XFASTINT (o->total_lines) - size_int);
4211 XSETFASTINT (o->total_lines, size_int);
4212 XSETFASTINT (p->top_line, XFASTINT (o->top_line) + size_int);
4213 }
4214
4215 /* Adjust glyph matrices. */
4216 adjust_glyphs (fo);
4217
4218 Fset_window_buffer (new, o->buffer, Qt);
4219 return new;
4220 }
4221 \f
4222 DEFUN ("enlarge-window", Fenlarge_window, Senlarge_window, 1, 2, "p",
4223 doc: /* Make current window ARG lines bigger.
4224 From program, optional second arg non-nil means grow sideways ARG columns.
4225 Interactively, if an argument is not given, make the window one line bigger.
4226 If HORIZONTAL is non-nil, enlarge horizontally instead of vertically.
4227 This function can delete windows, even the second window, if they get
4228 too small. */)
4229 (arg, horizontal)
4230 Lisp_Object arg, horizontal;
4231 {
4232 CHECK_NUMBER (arg);
4233 enlarge_window (selected_window, XINT (arg), !NILP (horizontal));
4234
4235 run_window_configuration_change_hook (SELECTED_FRAME ());
4236
4237 return Qnil;
4238 }
4239
4240 DEFUN ("shrink-window", Fshrink_window, Sshrink_window, 1, 2, "p",
4241 doc: /* Make current window ARG lines smaller.
4242 From program, optional second arg non-nil means shrink sideways arg columns.
4243 Interactively, if an argument is not given, make the window one line smaller.
4244 Only siblings to the right or below are changed. */)
4245 (arg, side)
4246 Lisp_Object arg, side;
4247 {
4248 CHECK_NUMBER (arg);
4249 enlarge_window (selected_window, -XINT (arg), !NILP (side));
4250
4251 run_window_configuration_change_hook (SELECTED_FRAME ());
4252
4253 return Qnil;
4254 }
4255
4256 int
4257 window_height (window)
4258 Lisp_Object window;
4259 {
4260 register struct window *p = XWINDOW (window);
4261 return WINDOW_TOTAL_LINES (p);
4262 }
4263
4264 int
4265 window_width (window)
4266 Lisp_Object window;
4267 {
4268 register struct window *p = XWINDOW (window);
4269 return WINDOW_TOTAL_COLS (p);
4270 }
4271
4272
4273 #define CURBEG(w) \
4274 *(horiz_flag ? &(XWINDOW (w)->left_col) : &(XWINDOW (w)->top_line))
4275
4276 #define CURSIZE(w) \
4277 *(horiz_flag ? &(XWINDOW (w)->total_cols) : &(XWINDOW (w)->total_lines))
4278
4279
4280 /* Enlarge WINDOW by DELTA.
4281 HORIZ_FLAG nonzero means enlarge it horizontally;
4282 zero means do it vertically.
4283
4284 Siblings of the selected window are resized to fulfill the size
4285 request. If they become too small in the process, they will be
4286 deleted. */
4287
4288 static void
4289 enlarge_window (window, delta, horiz_flag)
4290 Lisp_Object window;
4291 int delta, horiz_flag;
4292 {
4293 Lisp_Object parent, next, prev;
4294 struct window *p;
4295 Lisp_Object *sizep;
4296 int maximum;
4297 int (*sizefun) P_ ((Lisp_Object))
4298 = horiz_flag ? window_width : window_height;
4299 void (*setsizefun) P_ ((Lisp_Object, int, int))
4300 = (horiz_flag ? set_window_width : set_window_height);
4301
4302 /* Check values of window_min_width and window_min_height for
4303 validity. */
4304 check_min_window_sizes ();
4305
4306 /* Give up if this window cannot be resized. */
4307 if (window_fixed_size_p (XWINDOW (window), horiz_flag, 1))
4308 error ("Window is not resizable");
4309
4310 /* Find the parent of the selected window. */
4311 while (1)
4312 {
4313 p = XWINDOW (window);
4314 parent = p->parent;
4315
4316 if (NILP (parent))
4317 {
4318 if (horiz_flag)
4319 error ("No other window to side of this one");
4320 break;
4321 }
4322
4323 if (horiz_flag
4324 ? !NILP (XWINDOW (parent)->hchild)
4325 : !NILP (XWINDOW (parent)->vchild))
4326 break;
4327
4328 window = parent;
4329 }
4330
4331 sizep = &CURSIZE (window);
4332
4333 {
4334 register int maxdelta;
4335
4336 /* Compute the maximum size increment this window can have. */
4337
4338 maxdelta = (!NILP (parent) ? (*sizefun) (parent) - XINT (*sizep)
4339 /* This is a main window followed by a minibuffer. */
4340 : !NILP (p->next) ? ((*sizefun) (p->next)
4341 - window_min_size (XWINDOW (p->next),
4342 horiz_flag, 0, 0))
4343 /* This is a minibuffer following a main window. */
4344 : !NILP (p->prev) ? ((*sizefun) (p->prev)
4345 - window_min_size (XWINDOW (p->prev),
4346 horiz_flag, 0, 0))
4347 /* This is a frame with only one window, a minibuffer-only
4348 or a minibufferless frame. */
4349 : (delta = 0));
4350
4351 if (delta > maxdelta)
4352 /* This case traps trying to make the minibuffer
4353 the full frame, or make the only window aside from the
4354 minibuffer the full frame. */
4355 delta = maxdelta;
4356 }
4357
4358 if (XINT (*sizep) + delta < window_min_size (XWINDOW (window), horiz_flag, 0, 0))
4359 {
4360 delete_window (window);
4361 return;
4362 }
4363
4364 if (delta == 0)
4365 return;
4366
4367 /* Find the total we can get from other siblings without deleting them. */
4368 maximum = 0;
4369 for (next = p->next; WINDOWP (next); next = XWINDOW (next)->next)
4370 maximum += (*sizefun) (next) - window_min_size (XWINDOW (next),
4371 horiz_flag, 0, 0);
4372 for (prev = p->prev; WINDOWP (prev); prev = XWINDOW (prev)->prev)
4373 maximum += (*sizefun) (prev) - window_min_size (XWINDOW (prev),
4374 horiz_flag, 0, 0);
4375
4376 /* If we can get it all from them without deleting them, do so. */
4377 if (delta <= maximum)
4378 {
4379 Lisp_Object first_unaffected;
4380 Lisp_Object first_affected;
4381 int fixed_p;
4382
4383 next = p->next;
4384 prev = p->prev;
4385 first_affected = window;
4386 /* Look at one sibling at a time,
4387 moving away from this window in both directions alternately,
4388 and take as much as we can get without deleting that sibling. */
4389 while (delta != 0
4390 && (!NILP (next) || !NILP (prev)))
4391 {
4392 if (! NILP (next))
4393 {
4394 int this_one = ((*sizefun) (next)
4395 - window_min_size (XWINDOW (next),
4396 horiz_flag, 0, &fixed_p));
4397 if (!fixed_p)
4398 {
4399 if (this_one > delta)
4400 this_one = delta;
4401
4402 (*setsizefun) (next, (*sizefun) (next) - this_one, 0);
4403 (*setsizefun) (window, XINT (*sizep) + this_one, 0);
4404
4405 delta -= this_one;
4406 }
4407
4408 next = XWINDOW (next)->next;
4409 }
4410
4411 if (delta == 0)
4412 break;
4413
4414 if (! NILP (prev))
4415 {
4416 int this_one = ((*sizefun) (prev)
4417 - window_min_size (XWINDOW (prev),
4418 horiz_flag, 0, &fixed_p));
4419 if (!fixed_p)
4420 {
4421 if (this_one > delta)
4422 this_one = delta;
4423
4424 first_affected = prev;
4425
4426 (*setsizefun) (prev, (*sizefun) (prev) - this_one, 0);
4427 (*setsizefun) (window, XINT (*sizep) + this_one, 0);
4428
4429 delta -= this_one;
4430 }
4431
4432 prev = XWINDOW (prev)->prev;
4433 }
4434 }
4435
4436 xassert (delta == 0);
4437
4438 /* Now recalculate the edge positions of all the windows affected,
4439 based on the new sizes. */
4440 first_unaffected = next;
4441 prev = first_affected;
4442 for (next = XWINDOW (prev)->next; ! EQ (next, first_unaffected);
4443 prev = next, next = XWINDOW (next)->next)
4444 {
4445 XSETINT (CURBEG (next), XINT (CURBEG (prev)) + (*sizefun) (prev));
4446 /* This does not change size of NEXT,
4447 but it propagates the new top edge to its children */
4448 (*setsizefun) (next, (*sizefun) (next), 0);
4449 }
4450 }
4451 else
4452 {
4453 register int delta1;
4454 register int opht = (*sizefun) (parent);
4455
4456 if (opht <= XINT (*sizep) + delta)
4457 {
4458 /* If trying to grow this window to or beyond size of the parent,
4459 just delete all the sibling windows. */
4460 Lisp_Object start, tem, next;
4461
4462 start = XWINDOW (parent)->vchild;
4463 if (NILP (start))
4464 start = XWINDOW (parent)->hchild;
4465
4466 /* Delete any siblings that come after WINDOW. */
4467 tem = XWINDOW (window)->next;
4468 while (! NILP (tem))
4469 {
4470 next = XWINDOW (tem)->next;
4471 delete_window (tem);
4472 tem = next;
4473 }
4474
4475 /* Delete any siblings that come after WINDOW.
4476 Note that if START is not WINDOW, then WINDOW still
4477 Fhas siblings, so WINDOW has not yet replaced its parent. */
4478 tem = start;
4479 while (! EQ (tem, window))
4480 {
4481 next = XWINDOW (tem)->next;
4482 delete_window (tem);
4483 tem = next;
4484 }
4485 }
4486 else
4487 {
4488 /* Otherwise, make delta1 just right so that if we add
4489 delta1 lines to this window and to the parent, and then
4490 shrink the parent back to its original size, the new
4491 proportional size of this window will increase by delta.
4492
4493 The function size_window will compute the new height h'
4494 of the window from delta1 as:
4495
4496 e = delta1/n
4497 x = delta1 - delta1/n * n for the 1st resizable child
4498 h' = h + e + x
4499
4500 where n is the number of children that can be resized.
4501 We can ignore x by choosing a delta1 that is a multiple of
4502 n. We want the height of this window to come out as
4503
4504 h' = h + delta
4505
4506 So, delta1 must be
4507
4508 h + e = h + delta
4509 delta1/n = delta
4510 delta1 = n * delta.
4511
4512 The number of children n equals the number of resizable
4513 children of this window + 1 because we know window itself
4514 is resizable (otherwise we would have signalled an error). */
4515
4516 struct window *w = XWINDOW (window);
4517 Lisp_Object s;
4518 int n = 1;
4519
4520 for (s = w->next; WINDOWP (s); s = XWINDOW (s)->next)
4521 if (!window_fixed_size_p (XWINDOW (s), horiz_flag, 0))
4522 ++n;
4523 for (s = w->prev; WINDOWP (s); s = XWINDOW (s)->prev)
4524 if (!window_fixed_size_p (XWINDOW (s), horiz_flag, 0))
4525 ++n;
4526
4527 delta1 = n * delta;
4528
4529 /* Add delta1 lines or columns to this window, and to the parent,
4530 keeping things consistent while not affecting siblings. */
4531 XSETINT (CURSIZE (parent), opht + delta1);
4532 (*setsizefun) (window, XINT (*sizep) + delta1, 0);
4533
4534 /* Squeeze out delta1 lines or columns from our parent,
4535 shriking this window and siblings proportionately.
4536 This brings parent back to correct size.
4537 Delta1 was calculated so this makes this window the desired size,
4538 taking it all out of the siblings. */
4539 (*setsizefun) (parent, opht, 0);
4540
4541 }
4542 }
4543
4544 XSETFASTINT (p->last_modified, 0);
4545 XSETFASTINT (p->last_overlay_modified, 0);
4546
4547 /* Adjust glyph matrices. */
4548 adjust_glyphs (XFRAME (WINDOW_FRAME (XWINDOW (window))));
4549 }
4550
4551
4552 /* Adjust the size of WINDOW by DELTA, moving only its trailing edge.
4553 HORIZ_FLAG nonzero means adjust the width, moving the right edge.
4554 zero means adjust the height, moving the bottom edge.
4555
4556 Following siblings of the selected window are resized to fulfill
4557 the size request. If they become too small in the process, they
4558 are not deleted; instead, we signal an error. */
4559
4560 static void
4561 adjust_window_trailing_edge (window, delta, horiz_flag)
4562 Lisp_Object window;
4563 int delta, horiz_flag;
4564 {
4565 Lisp_Object parent, child;
4566 struct window *p;
4567 Lisp_Object old_config = Fcurrent_window_configuration (Qnil);
4568 int delcount = window_deletion_count;
4569
4570 /* Check values of window_min_width and window_min_height for
4571 validity. */
4572 check_min_window_sizes ();
4573
4574 CHECK_WINDOW (window);
4575
4576 /* Give up if this window cannot be resized. */
4577 if (window_fixed_size_p (XWINDOW (window), horiz_flag, 1))
4578 error ("Window is not resizable");
4579
4580 while (1)
4581 {
4582 Lisp_Object first_parallel = Qnil;
4583
4584 if (NILP (window))
4585 {
4586 /* This happens if WINDOW on the previous iteration was
4587 at top level of the window tree. */
4588 Fset_window_configuration (old_config);
4589 error ("Specified window edge is fixed");
4590 }
4591
4592 p = XWINDOW (window);
4593 parent = p->parent;
4594
4595 /* See if this level has windows in parallel in the specified
4596 direction. If so, set FIRST_PARALLEL to the first one. */
4597 if (horiz_flag)
4598 {
4599 if (! NILP (parent) && !NILP (XWINDOW (parent)->vchild))
4600 first_parallel = XWINDOW (parent)->vchild;
4601 else if (NILP (parent) && !NILP (p->next))
4602 {
4603 /* Handle the vertical chain of main window and minibuffer
4604 which has no parent. */
4605 first_parallel = window;
4606 while (! NILP (XWINDOW (first_parallel)->prev))
4607 first_parallel = XWINDOW (first_parallel)->prev;
4608 }
4609 }
4610 else
4611 {
4612 if (! NILP (parent) && !NILP (XWINDOW (parent)->hchild))
4613 first_parallel = XWINDOW (parent)->hchild;
4614 }
4615
4616 /* If this level's succession is in the desired dimension,
4617 and this window is the last one, and there is no higher level,
4618 its trailing edge is fixed. */
4619 if (NILP (XWINDOW (window)->next) && NILP (first_parallel)
4620 && NILP (parent))
4621 {
4622 Fset_window_configuration (old_config);
4623 error ("Specified window edge is fixed");
4624 }
4625
4626 /* Don't make this window too small. */
4627 if (XINT (CURSIZE (window)) + delta
4628 < window_min_size_2 (XWINDOW (window), horiz_flag))
4629 {
4630 Fset_window_configuration (old_config);
4631 error ("Cannot adjust window size as specified");
4632 }
4633
4634 /* Clear out some redisplay caches. */
4635 XSETFASTINT (p->last_modified, 0);
4636 XSETFASTINT (p->last_overlay_modified, 0);
4637
4638 /* Adjust this window's edge. */
4639 XSETINT (CURSIZE (window),
4640 XINT (CURSIZE (window)) + delta);
4641
4642 /* If this window has following siblings in the desired dimension,
4643 make them smaller, and exit the loop.
4644
4645 (If we reach the top of the tree and can never do this,
4646 we will fail and report an error, above.) */
4647 if (NILP (first_parallel))
4648 {
4649 if (!NILP (p->next))
4650 {
4651 /* This may happen for the minibuffer. In that case
4652 the window_deletion_count check below does not work. */
4653 if (XINT (CURSIZE (p->next)) - delta <= 0)
4654 {
4655 Fset_window_configuration (old_config);
4656 error ("Cannot adjust window size as specified");
4657 }
4658
4659 XSETINT (CURBEG (p->next),
4660 XINT (CURBEG (p->next)) + delta);
4661 size_window (p->next, XINT (CURSIZE (p->next)) - delta,
4662 horiz_flag, 0, 1, 0);
4663 break;
4664 }
4665 }
4666 else
4667 /* Here we have a chain of parallel siblings, in the other dimension.
4668 Change the size of the other siblings. */
4669 for (child = first_parallel;
4670 ! NILP (child);
4671 child = XWINDOW (child)->next)
4672 if (! EQ (child, window))
4673 size_window (child, XINT (CURSIZE (child)) + delta,
4674 horiz_flag, 0, 0, 1);
4675
4676 window = parent;
4677 }
4678
4679 /* If we made a window so small it got deleted,
4680 we failed. Report failure. */
4681 if (delcount != window_deletion_count)
4682 {
4683 Fset_window_configuration (old_config);
4684 error ("Cannot adjust window size as specified");
4685 }
4686
4687 /* Adjust glyph matrices. */
4688 adjust_glyphs (XFRAME (WINDOW_FRAME (XWINDOW (window))));
4689 }
4690
4691 #undef CURBEG
4692 #undef CURSIZE
4693
4694 DEFUN ("adjust-window-trailing-edge", Fadjust_window_trailing_edge,
4695 Sadjust_window_trailing_edge, 3, 3, 0,
4696 doc: /* Adjust the bottom or right edge of WINDOW by DELTA.
4697 If HORIZONTAL is non-nil, that means adjust the width, moving the right edge.
4698 Otherwise, adjust the height, moving the bottom edge.
4699
4700 Following siblings of the selected window are resized to fulfill
4701 the size request. If they become too small in the process, they
4702 are not deleted; instead, we signal an error. */)
4703 (window, delta, horizontal)
4704 Lisp_Object window, delta, horizontal;
4705 {
4706 CHECK_NUMBER (delta);
4707 if (NILP (window))
4708 window = selected_window;
4709 adjust_window_trailing_edge (window, XINT (delta), !NILP (horizontal));
4710
4711 run_window_configuration_change_hook
4712 (XFRAME (WINDOW_FRAME (XWINDOW (window))));
4713
4714 return Qnil;
4715 }
4716
4717
4718 \f
4719 /***********************************************************************
4720 Resizing Mini-Windows
4721 ***********************************************************************/
4722
4723 static void shrink_window_lowest_first P_ ((struct window *, int));
4724
4725 enum save_restore_action
4726 {
4727 CHECK_ORIG_SIZES,
4728 SAVE_ORIG_SIZES,
4729 RESTORE_ORIG_SIZES
4730 };
4731
4732 static int save_restore_orig_size P_ ((struct window *,
4733 enum save_restore_action));
4734
4735 /* Shrink windows rooted in window W to HEIGHT. Take the space needed
4736 from lowest windows first. */
4737
4738 static void
4739 shrink_window_lowest_first (w, height)
4740 struct window *w;
4741 int height;
4742 {
4743 struct window *c;
4744 Lisp_Object child;
4745 int old_height;
4746
4747 xassert (!MINI_WINDOW_P (w));
4748
4749 /* Set redisplay hints. */
4750 XSETFASTINT (w->last_modified, 0);
4751 XSETFASTINT (w->last_overlay_modified, 0);
4752 windows_or_buffers_changed++;
4753 FRAME_WINDOW_SIZES_CHANGED (XFRAME (WINDOW_FRAME (w))) = 1;
4754
4755 old_height = XFASTINT (w->total_lines);
4756 XSETFASTINT (w->total_lines, height);
4757
4758 if (!NILP (w->hchild))
4759 {
4760 for (child = w->hchild; !NILP (child); child = c->next)
4761 {
4762 c = XWINDOW (child);
4763 c->top_line = w->top_line;
4764 shrink_window_lowest_first (c, height);
4765 }
4766 }
4767 else if (!NILP (w->vchild))
4768 {
4769 Lisp_Object last_child;
4770 int delta = old_height - height;
4771 int last_top;
4772
4773 last_child = Qnil;
4774
4775 /* Find the last child. We are taking space from lowest windows
4776 first, so we iterate over children from the last child
4777 backwards. */
4778 for (child = w->vchild; WINDOWP (child); child = XWINDOW (child)->next)
4779 last_child = child;
4780
4781 /* Assign new heights. We leave only MIN_SAFE_WINDOW_HEIGHT. */
4782 for (child = last_child; delta && !NILP (child); child = c->prev)
4783 {
4784 int this_one;
4785
4786 c = XWINDOW (child);
4787 this_one = XFASTINT (c->total_lines) - MIN_SAFE_WINDOW_HEIGHT;
4788
4789 if (this_one > delta)
4790 this_one = delta;
4791
4792 shrink_window_lowest_first (c, XFASTINT (c->total_lines) - this_one);
4793 delta -= this_one;
4794 }
4795
4796 /* Compute new positions. */
4797 last_top = XINT (w->top_line);
4798 for (child = w->vchild; !NILP (child); child = c->next)
4799 {
4800 c = XWINDOW (child);
4801 c->top_line = make_number (last_top);
4802 shrink_window_lowest_first (c, XFASTINT (c->total_lines));
4803 last_top += XFASTINT (c->total_lines);
4804 }
4805 }
4806 }
4807
4808
4809 /* Save, restore, or check positions and sizes in the window tree
4810 rooted at W. ACTION says what to do.
4811
4812 If ACTION is CHECK_ORIG_SIZES, check if orig_top_line and
4813 orig_total_lines members are valid for all windows in the window
4814 tree. Value is non-zero if they are valid.
4815
4816 If ACTION is SAVE_ORIG_SIZES, save members top and height in
4817 orig_top_line and orig_total_lines for all windows in the tree.
4818
4819 If ACTION is RESTORE_ORIG_SIZES, restore top and height from values
4820 stored in orig_top_line and orig_total_lines for all windows. */
4821
4822 static int
4823 save_restore_orig_size (w, action)
4824 struct window *w;
4825 enum save_restore_action action;
4826 {
4827 int success_p = 1;
4828
4829 while (w)
4830 {
4831 if (!NILP (w->hchild))
4832 {
4833 if (!save_restore_orig_size (XWINDOW (w->hchild), action))
4834 success_p = 0;
4835 }
4836 else if (!NILP (w->vchild))
4837 {
4838 if (!save_restore_orig_size (XWINDOW (w->vchild), action))
4839 success_p = 0;
4840 }
4841
4842 switch (action)
4843 {
4844 case CHECK_ORIG_SIZES:
4845 if (!INTEGERP (w->orig_top_line) || !INTEGERP (w->orig_total_lines))
4846 return 0;
4847 break;
4848
4849 case SAVE_ORIG_SIZES:
4850 w->orig_top_line = w->top_line;
4851 w->orig_total_lines = w->total_lines;
4852 XSETFASTINT (w->last_modified, 0);
4853 XSETFASTINT (w->last_overlay_modified, 0);
4854 break;
4855
4856 case RESTORE_ORIG_SIZES:
4857 xassert (INTEGERP (w->orig_top_line) && INTEGERP (w->orig_total_lines));
4858 w->top_line = w->orig_top_line;
4859 w->total_lines = w->orig_total_lines;
4860 w->orig_total_lines = w->orig_top_line = Qnil;
4861 XSETFASTINT (w->last_modified, 0);
4862 XSETFASTINT (w->last_overlay_modified, 0);
4863 break;
4864
4865 default:
4866 abort ();
4867 }
4868
4869 w = NILP (w->next) ? NULL : XWINDOW (w->next);
4870 }
4871
4872 return success_p;
4873 }
4874
4875
4876 /* Grow mini-window W by DELTA lines, DELTA >= 0, or as much as we can
4877 without deleting other windows. */
4878
4879 void
4880 grow_mini_window (w, delta)
4881 struct window *w;
4882 int delta;
4883 {
4884 struct frame *f = XFRAME (w->frame);
4885 struct window *root;
4886
4887 xassert (MINI_WINDOW_P (w));
4888 xassert (delta >= 0);
4889
4890 /* Check values of window_min_width and window_min_height for
4891 validity. */
4892 check_min_window_sizes ();
4893
4894 /* Compute how much we can enlarge the mini-window without deleting
4895 other windows. */
4896 root = XWINDOW (FRAME_ROOT_WINDOW (f));
4897 if (delta)
4898 {
4899 int min_height = window_min_size (root, 0, 0, 0);
4900 if (XFASTINT (root->total_lines) - delta < min_height)
4901 /* Note that the root window may already be smaller than
4902 min_height. */
4903 delta = max (0, XFASTINT (root->total_lines) - min_height);
4904 }
4905
4906 if (delta)
4907 {
4908 /* Save original window sizes and positions, if not already done. */
4909 if (!save_restore_orig_size (root, CHECK_ORIG_SIZES))
4910 save_restore_orig_size (root, SAVE_ORIG_SIZES);
4911
4912 /* Shrink other windows. */
4913 shrink_window_lowest_first (root, XFASTINT (root->total_lines) - delta);
4914
4915 /* Grow the mini-window. */
4916 w->top_line = make_number (XFASTINT (root->top_line) + XFASTINT (root->total_lines));
4917 w->total_lines = make_number (XFASTINT (w->total_lines) + delta);
4918 XSETFASTINT (w->last_modified, 0);
4919 XSETFASTINT (w->last_overlay_modified, 0);
4920
4921 adjust_glyphs (f);
4922 }
4923 }
4924
4925
4926 /* Shrink mini-window W. If there is recorded info about window sizes
4927 before a call to grow_mini_window, restore recorded window sizes.
4928 Otherwise, if the mini-window is higher than 1 line, resize it to 1
4929 line. */
4930
4931 void
4932 shrink_mini_window (w)
4933 struct window *w;
4934 {
4935 struct frame *f = XFRAME (w->frame);
4936 struct window *root = XWINDOW (FRAME_ROOT_WINDOW (f));
4937
4938 if (save_restore_orig_size (root, CHECK_ORIG_SIZES))
4939 {
4940 save_restore_orig_size (root, RESTORE_ORIG_SIZES);
4941 adjust_glyphs (f);
4942 FRAME_WINDOW_SIZES_CHANGED (f) = 1;
4943 windows_or_buffers_changed = 1;
4944 }
4945 else if (XFASTINT (w->total_lines) > 1)
4946 {
4947 /* Distribute the additional lines of the mini-window
4948 among the other windows. */
4949 Lisp_Object window;
4950 XSETWINDOW (window, w);
4951 enlarge_window (window, 1 - XFASTINT (w->total_lines), 0);
4952 }
4953 }
4954
4955
4956 \f
4957 /* Mark window cursors off for all windows in the window tree rooted
4958 at W by setting their phys_cursor_on_p flag to zero. Called from
4959 xterm.c, e.g. when a frame is cleared and thereby all cursors on
4960 the frame are cleared. */
4961
4962 void
4963 mark_window_cursors_off (w)
4964 struct window *w;
4965 {
4966 while (w)
4967 {
4968 if (!NILP (w->hchild))
4969 mark_window_cursors_off (XWINDOW (w->hchild));
4970 else if (!NILP (w->vchild))
4971 mark_window_cursors_off (XWINDOW (w->vchild));
4972 else
4973 w->phys_cursor_on_p = 0;
4974
4975 w = NILP (w->next) ? 0 : XWINDOW (w->next);
4976 }
4977 }
4978
4979
4980 /* Return number of lines of text (not counting mode lines) in W. */
4981
4982 int
4983 window_internal_height (w)
4984 struct window *w;
4985 {
4986 int ht = XFASTINT (w->total_lines);
4987
4988 if (!MINI_WINDOW_P (w))
4989 {
4990 if (!NILP (w->parent)
4991 || !NILP (w->vchild)
4992 || !NILP (w->hchild)
4993 || !NILP (w->next)
4994 || !NILP (w->prev)
4995 || WINDOW_WANTS_MODELINE_P (w))
4996 --ht;
4997
4998 if (WINDOW_WANTS_HEADER_LINE_P (w))
4999 --ht;
5000 }
5001
5002 return ht;
5003 }
5004
5005
5006 /* Return the number of columns in W.
5007 Don't count columns occupied by scroll bars or the vertical bar
5008 separating W from the sibling to its right. */
5009
5010 int
5011 window_box_text_cols (w)
5012 struct window *w;
5013 {
5014 struct frame *f = XFRAME (WINDOW_FRAME (w));
5015 int width = XINT (w->total_cols);
5016
5017 if (WINDOW_HAS_VERTICAL_SCROLL_BAR (w))
5018 /* Scroll bars occupy a few columns. */
5019 width -= WINDOW_CONFIG_SCROLL_BAR_COLS (w);
5020 else if (!FRAME_WINDOW_P (f)
5021 && !WINDOW_RIGHTMOST_P (w) && !WINDOW_FULL_WIDTH_P (w))
5022 /* The column of `|' characters separating side-by-side windows
5023 occupies one column only. */
5024 width -= 1;
5025
5026 if (FRAME_WINDOW_P (f))
5027 /* On window-systems, fringes and display margins cannot be
5028 used for normal text. */
5029 width -= (WINDOW_FRINGE_COLS (w)
5030 + WINDOW_LEFT_MARGIN_COLS (w)
5031 + WINDOW_RIGHT_MARGIN_COLS (w));
5032
5033 return width;
5034 }
5035
5036 \f
5037 /************************************************************************
5038 Window Scrolling
5039 ***********************************************************************/
5040
5041 /* Scroll contents of window WINDOW up. If WHOLE is non-zero, scroll
5042 N screen-fulls, which is defined as the height of the window minus
5043 next_screen_context_lines. If WHOLE is zero, scroll up N lines
5044 instead. Negative values of N mean scroll down. NOERROR non-zero
5045 means don't signal an error if we try to move over BEGV or ZV,
5046 respectively. */
5047
5048 static void
5049 window_scroll (window, n, whole, noerror)
5050 Lisp_Object window;
5051 int n;
5052 int whole;
5053 int noerror;
5054 {
5055 immediate_quit = 1;
5056
5057 /* If we must, use the pixel-based version which is much slower than
5058 the line-based one but can handle varying line heights. */
5059 if (FRAME_WINDOW_P (XFRAME (XWINDOW (window)->frame)))
5060 window_scroll_pixel_based (window, n, whole, noerror);
5061 else
5062 window_scroll_line_based (window, n, whole, noerror);
5063
5064 immediate_quit = 0;
5065 }
5066
5067
5068 /* Implementation of window_scroll that works based on pixel line
5069 heights. See the comment of window_scroll for parameter
5070 descriptions. */
5071
5072 static void
5073 window_scroll_pixel_based (window, n, whole, noerror)
5074 Lisp_Object window;
5075 int n;
5076 int whole;
5077 int noerror;
5078 {
5079 struct it it;
5080 struct window *w = XWINDOW (window);
5081 struct text_pos start;
5082 int this_scroll_margin;
5083 /* True if we fiddled the window vscroll field without really scrolling. */
5084 int vscrolled = 0;
5085 int x, y, rtop, rbot, rowh, vpos;
5086
5087 SET_TEXT_POS_FROM_MARKER (start, w->start);
5088
5089 /* If PT is not visible in WINDOW, move back one half of
5090 the screen. Allow PT to be partially visible, otherwise
5091 something like (scroll-down 1) with PT in the line before
5092 the partially visible one would recenter. */
5093
5094 if (!pos_visible_p (w, PT, &x, &y, &rtop, &rbot, &rowh, &vpos))
5095 {
5096 /* Move backward half the height of the window. Performance note:
5097 vmotion used here is about 10% faster, but would give wrong
5098 results for variable height lines. */
5099 init_iterator (&it, w, PT, PT_BYTE, NULL, DEFAULT_FACE_ID);
5100 it.current_y = it.last_visible_y;
5101 move_it_vertically_backward (&it, window_box_height (w) / 2);
5102
5103 /* The function move_iterator_vertically may move over more than
5104 the specified y-distance. If it->w is small, e.g. a
5105 mini-buffer window, we may end up in front of the window's
5106 display area. This is the case when Start displaying at the
5107 start of the line containing PT in this case. */
5108 if (it.current_y <= 0)
5109 {
5110 init_iterator (&it, w, PT, PT_BYTE, NULL, DEFAULT_FACE_ID);
5111 move_it_vertically_backward (&it, 0);
5112 it.current_y = 0;
5113 }
5114
5115 start = it.current.pos;
5116 }
5117 else if (auto_window_vscroll_p)
5118 {
5119 if (rtop || rbot) /* partially visible */
5120 {
5121 int px;
5122 int dy = WINDOW_FRAME_LINE_HEIGHT (w);
5123 if (whole)
5124 dy = max ((window_box_height (w)
5125 - next_screen_context_lines * dy),
5126 dy);
5127 dy *= n;
5128
5129 if (n < 0)
5130 {
5131 /* Only vscroll backwards if already vscrolled forwards. */
5132 if (w->vscroll < 0 && rtop > 0)
5133 {
5134 px = max (0, -w->vscroll - min (rtop, -dy));
5135 Fset_window_vscroll (window, make_number (px), Qt);
5136 return;
5137 }
5138 }
5139 if (n > 0)
5140 {
5141 /* Do vscroll if already vscrolled or only display line. */
5142 if (rbot > 0 && (w->vscroll < 0 || vpos == 0))
5143 {
5144 px = max (0, -w->vscroll + min (rbot, dy));
5145 Fset_window_vscroll (window, make_number (px), Qt);
5146 return;
5147 }
5148
5149 /* Maybe modify window start instead of scrolling. */
5150 if (rbot > 0 || w->vscroll < 0)
5151 {
5152 int spos;
5153
5154 Fset_window_vscroll (window, make_number (0), Qt);
5155 /* If there are other text lines above the current row,
5156 move window start to current row. Else to next row. */
5157 if (rbot > 0)
5158 spos = XINT (Fline_beginning_position (Qnil));
5159 else
5160 spos = min (XINT (Fline_end_position (Qnil)) + 1, ZV);
5161 set_marker_restricted (w->start, make_number (spos),
5162 w->buffer);
5163 w->start_at_line_beg = Qt;
5164 w->update_mode_line = Qt;
5165 XSETFASTINT (w->last_modified, 0);
5166 XSETFASTINT (w->last_overlay_modified, 0);
5167 /* Set force_start so that redisplay_window will run the
5168 window-scroll-functions. */
5169 w->force_start = Qt;
5170 return;
5171 }
5172 }
5173 }
5174 /* Cancel previous vscroll. */
5175 Fset_window_vscroll (window, make_number (0), Qt);
5176 }
5177
5178 /* If scroll_preserve_screen_position is non-nil, we try to set
5179 point in the same window line as it is now, so get that line. */
5180 if (!NILP (Vscroll_preserve_screen_position))
5181 {
5182 /* We preserve the goal pixel coordinate across consecutive
5183 calls to scroll-up or scroll-down. This avoids the
5184 possibility of point becoming "stuck" on a tall line when
5185 scrolling by one line. */
5186 if (window_scroll_pixel_based_preserve_y < 0
5187 || (!EQ (current_kboard->Vlast_command, Qscroll_up)
5188 && !EQ (current_kboard->Vlast_command, Qscroll_down)))
5189 {
5190 start_display (&it, w, start);
5191 move_it_to (&it, PT, -1, -1, -1, MOVE_TO_POS);
5192 window_scroll_pixel_based_preserve_y = it.current_y;
5193 }
5194 }
5195 else
5196 window_scroll_pixel_based_preserve_y = -1;
5197
5198 /* Move iterator it from start the specified distance forward or
5199 backward. The result is the new window start. */
5200 start_display (&it, w, start);
5201 if (whole)
5202 {
5203 int start_pos = IT_CHARPOS (it);
5204 int dy = WINDOW_FRAME_LINE_HEIGHT (w);
5205 dy = max ((window_box_height (w)
5206 - next_screen_context_lines * dy),
5207 dy) * n;
5208
5209 /* Note that move_it_vertically always moves the iterator to the
5210 start of a line. So, if the last line doesn't have a newline,
5211 we would end up at the start of the line ending at ZV. */
5212 if (dy <= 0)
5213 {
5214 move_it_vertically_backward (&it, -dy);
5215 /* Ensure we actually do move, e.g. in case we are currently
5216 looking at an image that is taller that the window height. */
5217 while (start_pos == IT_CHARPOS (it)
5218 && start_pos > BEGV)
5219 move_it_by_lines (&it, -1, 1);
5220 }
5221 else if (dy > 0)
5222 {
5223 move_it_to (&it, ZV, -1, it.current_y + dy, -1,
5224 MOVE_TO_POS | MOVE_TO_Y);
5225 /* Ensure we actually do move, e.g. in case we are currently
5226 looking at an image that is taller that the window height. */
5227 while (start_pos == IT_CHARPOS (it)
5228 && start_pos < ZV)
5229 move_it_by_lines (&it, 1, 1);
5230 }
5231 }
5232 else
5233 move_it_by_lines (&it, n, 1);
5234
5235 /* We failed if we find ZV is already on the screen (scrolling up,
5236 means there's nothing past the end), or if we can't start any
5237 earlier (scrolling down, means there's nothing past the top). */
5238 if ((n > 0 && IT_CHARPOS (it) == ZV)
5239 || (n < 0 && IT_CHARPOS (it) == CHARPOS (start)))
5240 {
5241 if (IT_CHARPOS (it) == ZV)
5242 {
5243 if (it.current_y < it.last_visible_y
5244 && (it.current_y + it.max_ascent + it.max_descent
5245 > it.last_visible_y))
5246 {
5247 /* The last line was only partially visible, make it fully
5248 visible. */
5249 w->vscroll = (it.last_visible_y
5250 - it.current_y + it.max_ascent + it.max_descent);
5251 adjust_glyphs (it.f);
5252 }
5253 else if (noerror)
5254 return;
5255 else if (n < 0) /* could happen with empty buffers */
5256 xsignal0 (Qbeginning_of_buffer);
5257 else
5258 xsignal0 (Qend_of_buffer);
5259 }
5260 else
5261 {
5262 if (w->vscroll != 0)
5263 /* The first line was only partially visible, make it fully
5264 visible. */
5265 w->vscroll = 0;
5266 else if (noerror)
5267 return;
5268 else
5269 xsignal0 (Qbeginning_of_buffer);
5270 }
5271
5272 /* If control gets here, then we vscrolled. */
5273
5274 XBUFFER (w->buffer)->prevent_redisplay_optimizations_p = 1;
5275
5276 /* Don't try to change the window start below. */
5277 vscrolled = 1;
5278 }
5279
5280 if (! vscrolled)
5281 {
5282 int pos = IT_CHARPOS (it);
5283 int bytepos;
5284
5285 /* If in the middle of a multi-glyph character move forward to
5286 the next character. */
5287 if (in_display_vector_p (&it))
5288 {
5289 ++pos;
5290 move_it_to (&it, pos, -1, -1, -1, MOVE_TO_POS);
5291 }
5292
5293 /* Set the window start, and set up the window for redisplay. */
5294 set_marker_restricted (w->start, make_number (pos),
5295 w->buffer);
5296 bytepos = XMARKER (w->start)->bytepos;
5297 w->start_at_line_beg = ((pos == BEGV || FETCH_BYTE (bytepos - 1) == '\n')
5298 ? Qt : Qnil);
5299 w->update_mode_line = Qt;
5300 XSETFASTINT (w->last_modified, 0);
5301 XSETFASTINT (w->last_overlay_modified, 0);
5302 /* Set force_start so that redisplay_window will run the
5303 window-scroll-functions. */
5304 w->force_start = Qt;
5305 }
5306
5307 /* The rest of this function uses current_y in a nonstandard way,
5308 not including the height of the header line if any. */
5309 it.current_y = it.vpos = 0;
5310
5311 /* Move PT out of scroll margins.
5312 This code wants current_y to be zero at the window start position
5313 even if there is a header line. */
5314 this_scroll_margin = max (0, scroll_margin);
5315 this_scroll_margin = min (this_scroll_margin, XFASTINT (w->total_lines) / 4);
5316 this_scroll_margin *= FRAME_LINE_HEIGHT (it.f);
5317
5318 if (n > 0)
5319 {
5320 /* We moved the window start towards ZV, so PT may be now
5321 in the scroll margin at the top. */
5322 move_it_to (&it, PT, -1, -1, -1, MOVE_TO_POS);
5323 if (IT_CHARPOS (it) == PT && it.current_y >= this_scroll_margin
5324 && (NILP (Vscroll_preserve_screen_position)
5325 || EQ (Vscroll_preserve_screen_position, Qt)))
5326 /* We found PT at a legitimate height. Leave it alone. */
5327 ;
5328 else if (window_scroll_pixel_based_preserve_y >= 0)
5329 {
5330 /* If we have a header line, take account of it.
5331 This is necessary because we set it.current_y to 0, above. */
5332 move_it_to (&it, -1, -1,
5333 window_scroll_pixel_based_preserve_y
5334 - (WINDOW_WANTS_HEADER_LINE_P (w) ? 1 : 0 ),
5335 -1, MOVE_TO_Y);
5336 SET_PT_BOTH (IT_CHARPOS (it), IT_BYTEPOS (it));
5337 }
5338 else
5339 {
5340 while (it.current_y < this_scroll_margin)
5341 {
5342 int prev = it.current_y;
5343 move_it_by_lines (&it, 1, 1);
5344 if (prev == it.current_y)
5345 break;
5346 }
5347 SET_PT_BOTH (IT_CHARPOS (it), IT_BYTEPOS (it));
5348 }
5349 }
5350 else if (n < 0)
5351 {
5352 int charpos, bytepos;
5353 int partial_p;
5354
5355 /* Save our position, for the
5356 window_scroll_pixel_based_preserve_y case. */
5357 charpos = IT_CHARPOS (it);
5358 bytepos = IT_BYTEPOS (it);
5359
5360 /* We moved the window start towards BEGV, so PT may be now
5361 in the scroll margin at the bottom. */
5362 move_it_to (&it, PT, -1,
5363 (it.last_visible_y - CURRENT_HEADER_LINE_HEIGHT (w)
5364 - this_scroll_margin - 1),
5365 -1,
5366 MOVE_TO_POS | MOVE_TO_Y);
5367
5368 /* Save our position, in case it's correct. */
5369 charpos = IT_CHARPOS (it);
5370 bytepos = IT_BYTEPOS (it);
5371
5372 /* See if point is on a partially visible line at the end. */
5373 if (it.what == IT_EOB)
5374 partial_p = it.current_y + it.ascent + it.descent > it.last_visible_y;
5375 else
5376 {
5377 move_it_by_lines (&it, 1, 1);
5378 partial_p = it.current_y > it.last_visible_y;
5379 }
5380
5381 if (charpos == PT && !partial_p
5382 && (NILP (Vscroll_preserve_screen_position)
5383 || EQ (Vscroll_preserve_screen_position, Qt)))
5384 /* We found PT before we found the display margin, so PT is ok. */
5385 ;
5386 else if (window_scroll_pixel_based_preserve_y >= 0)
5387 {
5388 SET_TEXT_POS_FROM_MARKER (start, w->start);
5389 start_display (&it, w, start);
5390 /* It would be wrong to subtract CURRENT_HEADER_LINE_HEIGHT
5391 here because we called start_display again and did not
5392 alter it.current_y this time. */
5393 move_it_to (&it, -1, -1, window_scroll_pixel_based_preserve_y, -1,
5394 MOVE_TO_Y);
5395 SET_PT_BOTH (IT_CHARPOS (it), IT_BYTEPOS (it));
5396 }
5397 else
5398 {
5399 if (partial_p)
5400 /* The last line was only partially visible, so back up two
5401 lines to make sure we're on a fully visible line. */
5402 {
5403 move_it_by_lines (&it, -2, 0);
5404 SET_PT_BOTH (IT_CHARPOS (it), IT_BYTEPOS (it));
5405 }
5406 else
5407 /* No, the position we saved is OK, so use it. */
5408 SET_PT_BOTH (charpos, bytepos);
5409 }
5410 }
5411 }
5412
5413
5414 /* Implementation of window_scroll that works based on screen lines.
5415 See the comment of window_scroll for parameter descriptions. */
5416
5417 static void
5418 window_scroll_line_based (window, n, whole, noerror)
5419 Lisp_Object window;
5420 int n;
5421 int whole;
5422 int noerror;
5423 {
5424 register struct window *w = XWINDOW (window);
5425 register int opoint = PT, opoint_byte = PT_BYTE;
5426 register int pos, pos_byte;
5427 register int ht = window_internal_height (w);
5428 register Lisp_Object tem;
5429 int lose;
5430 Lisp_Object bolp;
5431 int startpos;
5432 struct position posit;
5433 int original_vpos;
5434
5435 /* If scrolling screen-fulls, compute the number of lines to
5436 scroll from the window's height. */
5437 if (whole)
5438 n *= max (1, ht - next_screen_context_lines);
5439
5440 startpos = marker_position (w->start);
5441
5442 posit = *compute_motion (startpos, 0, 0, 0,
5443 PT, ht, 0,
5444 -1, XINT (w->hscroll),
5445 0, w);
5446 original_vpos = posit.vpos;
5447
5448 XSETFASTINT (tem, PT);
5449 tem = Fpos_visible_in_window_p (tem, window, Qnil);
5450
5451 if (NILP (tem))
5452 {
5453 Fvertical_motion (make_number (- (ht / 2)), window);
5454 startpos = PT;
5455 }
5456
5457 SET_PT (startpos);
5458 lose = n < 0 && PT == BEGV;
5459 Fvertical_motion (make_number (n), window);
5460 pos = PT;
5461 pos_byte = PT_BYTE;
5462 bolp = Fbolp ();
5463 SET_PT_BOTH (opoint, opoint_byte);
5464
5465 if (lose)
5466 {
5467 if (noerror)
5468 return;
5469 else
5470 xsignal0 (Qbeginning_of_buffer);
5471 }
5472
5473 if (pos < ZV)
5474 {
5475 int this_scroll_margin = scroll_margin;
5476
5477 /* Don't use a scroll margin that is negative or too large. */
5478 if (this_scroll_margin < 0)
5479 this_scroll_margin = 0;
5480
5481 if (XINT (w->total_lines) < 4 * scroll_margin)
5482 this_scroll_margin = XINT (w->total_lines) / 4;
5483
5484 set_marker_restricted_both (w->start, w->buffer, pos, pos_byte);
5485 w->start_at_line_beg = bolp;
5486 w->update_mode_line = Qt;
5487 XSETFASTINT (w->last_modified, 0);
5488 XSETFASTINT (w->last_overlay_modified, 0);
5489 /* Set force_start so that redisplay_window will run
5490 the window-scroll-functions. */
5491 w->force_start = Qt;
5492
5493 if (!NILP (Vscroll_preserve_screen_position)
5494 && (whole || !EQ (Vscroll_preserve_screen_position, Qt)))
5495 {
5496 SET_PT_BOTH (pos, pos_byte);
5497 Fvertical_motion (make_number (original_vpos), window);
5498 }
5499 /* If we scrolled forward, put point enough lines down
5500 that it is outside the scroll margin. */
5501 else if (n > 0)
5502 {
5503 int top_margin;
5504
5505 if (this_scroll_margin > 0)
5506 {
5507 SET_PT_BOTH (pos, pos_byte);
5508 Fvertical_motion (make_number (this_scroll_margin), window);
5509 top_margin = PT;
5510 }
5511 else
5512 top_margin = pos;
5513
5514 if (top_margin <= opoint)
5515 SET_PT_BOTH (opoint, opoint_byte);
5516 else if (!NILP (Vscroll_preserve_screen_position))
5517 {
5518 SET_PT_BOTH (pos, pos_byte);
5519 Fvertical_motion (make_number (original_vpos), window);
5520 }
5521 else
5522 SET_PT (top_margin);
5523 }
5524 else if (n < 0)
5525 {
5526 int bottom_margin;
5527
5528 /* If we scrolled backward, put point near the end of the window
5529 but not within the scroll margin. */
5530 SET_PT_BOTH (pos, pos_byte);
5531 tem = Fvertical_motion (make_number (ht - this_scroll_margin), window);
5532 if (XFASTINT (tem) == ht - this_scroll_margin)
5533 bottom_margin = PT;
5534 else
5535 bottom_margin = PT + 1;
5536
5537 if (bottom_margin > opoint)
5538 SET_PT_BOTH (opoint, opoint_byte);
5539 else
5540 {
5541 if (!NILP (Vscroll_preserve_screen_position))
5542 {
5543 SET_PT_BOTH (pos, pos_byte);
5544 Fvertical_motion (make_number (original_vpos), window);
5545 }
5546 else
5547 Fvertical_motion (make_number (-1), window);
5548 }
5549 }
5550 }
5551 else
5552 {
5553 if (noerror)
5554 return;
5555 else
5556 xsignal0 (Qend_of_buffer);
5557 }
5558 }
5559
5560
5561 /* Scroll selected_window up or down. If N is nil, scroll a
5562 screen-full which is defined as the height of the window minus
5563 next_screen_context_lines. If N is the symbol `-', scroll.
5564 DIRECTION may be 1 meaning to scroll down, or -1 meaning to scroll
5565 up. This is the guts of Fscroll_up and Fscroll_down. */
5566
5567 static void
5568 scroll_command (n, direction)
5569 Lisp_Object n;
5570 int direction;
5571 {
5572 int count = SPECPDL_INDEX ();
5573
5574 xassert (eabs (direction) == 1);
5575
5576 /* If selected window's buffer isn't current, make it current for
5577 the moment. But don't screw up if window_scroll gets an error. */
5578 if (XBUFFER (XWINDOW (selected_window)->buffer) != current_buffer)
5579 {
5580 record_unwind_protect (save_excursion_restore, save_excursion_save ());
5581 Fset_buffer (XWINDOW (selected_window)->buffer);
5582
5583 /* Make redisplay consider other windows than just selected_window. */
5584 ++windows_or_buffers_changed;
5585 }
5586
5587 if (NILP (n))
5588 window_scroll (selected_window, direction, 1, 0);
5589 else if (EQ (n, Qminus))
5590 window_scroll (selected_window, -direction, 1, 0);
5591 else
5592 {
5593 n = Fprefix_numeric_value (n);
5594 window_scroll (selected_window, XINT (n) * direction, 0, 0);
5595 }
5596
5597 unbind_to (count, Qnil);
5598 }
5599
5600 DEFUN ("scroll-up", Fscroll_up, Sscroll_up, 0, 1, "^P",
5601 doc: /* Scroll text of current window upward ARG lines.
5602 If ARG is omitted or nil, scroll upward by a near full screen.
5603 A near full screen is `next-screen-context-lines' less than a full screen.
5604 Negative ARG means scroll downward.
5605 If ARG is the atom `-', scroll downward by nearly full screen.
5606 When calling from a program, supply as argument a number, nil, or `-'. */)
5607 (arg)
5608 Lisp_Object arg;
5609 {
5610 scroll_command (arg, 1);
5611 return Qnil;
5612 }
5613
5614 DEFUN ("scroll-down", Fscroll_down, Sscroll_down, 0, 1, "^P",
5615 doc: /* Scroll text of current window down ARG lines.
5616 If ARG is omitted or nil, scroll down by a near full screen.
5617 A near full screen is `next-screen-context-lines' less than a full screen.
5618 Negative ARG means scroll upward.
5619 If ARG is the atom `-', scroll upward by nearly full screen.
5620 When calling from a program, supply as argument a number, nil, or `-'. */)
5621 (arg)
5622 Lisp_Object arg;
5623 {
5624 scroll_command (arg, -1);
5625 return Qnil;
5626 }
5627 \f
5628 DEFUN ("other-window-for-scrolling", Fother_window_for_scrolling, Sother_window_for_scrolling, 0, 0, 0,
5629 doc: /* Return the other window for \"other window scroll\" commands.
5630 If `other-window-scroll-buffer' is non-nil, a window
5631 showing that buffer is used.
5632 If in the minibuffer, `minibuffer-scroll-window' if non-nil
5633 specifies the window. This takes precedence over
5634 `other-window-scroll-buffer'. */)
5635 ()
5636 {
5637 Lisp_Object window;
5638
5639 if (MINI_WINDOW_P (XWINDOW (selected_window))
5640 && !NILP (Vminibuf_scroll_window))
5641 window = Vminibuf_scroll_window;
5642 /* If buffer is specified, scroll that buffer. */
5643 else if (!NILP (Vother_window_scroll_buffer))
5644 {
5645 window = Fget_buffer_window (Vother_window_scroll_buffer, Qnil);
5646 if (NILP (window))
5647 window = Fdisplay_buffer (Vother_window_scroll_buffer, Qt, Qnil);
5648 }
5649 else
5650 {
5651 /* Nothing specified; look for a neighboring window on the same
5652 frame. */
5653 window = Fnext_window (selected_window, Qnil, Qnil);
5654
5655 if (EQ (window, selected_window))
5656 /* That didn't get us anywhere; look for a window on another
5657 visible frame. */
5658 do
5659 window = Fnext_window (window, Qnil, Qt);
5660 while (! FRAME_VISIBLE_P (XFRAME (WINDOW_FRAME (XWINDOW (window))))
5661 && ! EQ (window, selected_window));
5662 }
5663
5664 CHECK_LIVE_WINDOW (window);
5665
5666 if (EQ (window, selected_window))
5667 error ("There is no other window");
5668
5669 return window;
5670 }
5671
5672 DEFUN ("scroll-other-window", Fscroll_other_window, Sscroll_other_window, 0, 1, "P",
5673 doc: /* Scroll next window upward ARG lines; or near full screen if no ARG.
5674 A near full screen is `next-screen-context-lines' less than a full screen.
5675 The next window is the one below the current one; or the one at the top
5676 if the current one is at the bottom. Negative ARG means scroll downward.
5677 If ARG is the atom `-', scroll downward by nearly full screen.
5678 When calling from a program, supply as argument a number, nil, or `-'.
5679
5680 If `other-window-scroll-buffer' is non-nil, scroll the window
5681 showing that buffer, popping the buffer up if necessary.
5682 If in the minibuffer, `minibuffer-scroll-window' if non-nil
5683 specifies the window to scroll. This takes precedence over
5684 `other-window-scroll-buffer'. */)
5685 (arg)
5686 Lisp_Object arg;
5687 {
5688 Lisp_Object window;
5689 struct window *w;
5690 int count = SPECPDL_INDEX ();
5691
5692 window = Fother_window_for_scrolling ();
5693 w = XWINDOW (window);
5694
5695 /* Don't screw up if window_scroll gets an error. */
5696 record_unwind_protect (save_excursion_restore, save_excursion_save ());
5697 ++windows_or_buffers_changed;
5698
5699 Fset_buffer (w->buffer);
5700 SET_PT (marker_position (w->pointm));
5701
5702 if (NILP (arg))
5703 window_scroll (window, 1, 1, 1);
5704 else if (EQ (arg, Qminus))
5705 window_scroll (window, -1, 1, 1);
5706 else
5707 {
5708 if (CONSP (arg))
5709 arg = Fcar (arg);
5710 CHECK_NUMBER (arg);
5711 window_scroll (window, XINT (arg), 0, 1);
5712 }
5713
5714 set_marker_both (w->pointm, Qnil, PT, PT_BYTE);
5715 unbind_to (count, Qnil);
5716
5717 return Qnil;
5718 }
5719 \f
5720 DEFUN ("scroll-left", Fscroll_left, Sscroll_left, 0, 2, "^P\np",
5721 doc: /* Scroll selected window display ARG columns left.
5722 Default for ARG is window width minus 2.
5723 Value is the total amount of leftward horizontal scrolling in
5724 effect after the change.
5725 If SET_MINIMUM is non-nil, the new scroll amount becomes the
5726 lower bound for automatic scrolling, i.e. automatic scrolling
5727 will not scroll a window to a column less than the value returned
5728 by this function. This happens in an interactive call. */)
5729 (arg, set_minimum)
5730 register Lisp_Object arg, set_minimum;
5731 {
5732 Lisp_Object result;
5733 int hscroll;
5734 struct window *w = XWINDOW (selected_window);
5735
5736 if (NILP (arg))
5737 XSETFASTINT (arg, window_box_text_cols (w) - 2);
5738 else
5739 arg = Fprefix_numeric_value (arg);
5740
5741 hscroll = XINT (w->hscroll) + XINT (arg);
5742 result = Fset_window_hscroll (selected_window, make_number (hscroll));
5743
5744 if (!NILP (set_minimum))
5745 w->min_hscroll = w->hscroll;
5746
5747 return result;
5748 }
5749
5750 DEFUN ("scroll-right", Fscroll_right, Sscroll_right, 0, 2, "^P\np",
5751 doc: /* Scroll selected window display ARG columns right.
5752 Default for ARG is window width minus 2.
5753 Value is the total amount of leftward horizontal scrolling in
5754 effect after the change.
5755 If SET_MINIMUM is non-nil, the new scroll amount becomes the
5756 lower bound for automatic scrolling, i.e. automatic scrolling
5757 will not scroll a window to a column less than the value returned
5758 by this function. This happens in an interactive call. */)
5759 (arg, set_minimum)
5760 register Lisp_Object arg, set_minimum;
5761 {
5762 Lisp_Object result;
5763 int hscroll;
5764 struct window *w = XWINDOW (selected_window);
5765
5766 if (NILP (arg))
5767 XSETFASTINT (arg, window_box_text_cols (w) - 2);
5768 else
5769 arg = Fprefix_numeric_value (arg);
5770
5771 hscroll = XINT (w->hscroll) - XINT (arg);
5772 result = Fset_window_hscroll (selected_window, make_number (hscroll));
5773
5774 if (!NILP (set_minimum))
5775 w->min_hscroll = w->hscroll;
5776
5777 return result;
5778 }
5779
5780 DEFUN ("minibuffer-selected-window", Fminibuffer_selected_window, Sminibuffer_selected_window, 0, 0, 0,
5781 doc: /* Return the window which was selected when entering the minibuffer.
5782 Returns nil, if current window is not a minibuffer window. */)
5783 ()
5784 {
5785 if (minibuf_level > 0
5786 && MINI_WINDOW_P (XWINDOW (selected_window))
5787 && WINDOW_LIVE_P (minibuf_selected_window))
5788 return minibuf_selected_window;
5789
5790 return Qnil;
5791 }
5792
5793 /* Value is the number of lines actually displayed in window W,
5794 as opposed to its height. */
5795
5796 static int
5797 displayed_window_lines (w)
5798 struct window *w;
5799 {
5800 struct it it;
5801 struct text_pos start;
5802 int height = window_box_height (w);
5803 struct buffer *old_buffer;
5804 int bottom_y;
5805
5806 if (XBUFFER (w->buffer) != current_buffer)
5807 {
5808 old_buffer = current_buffer;
5809 set_buffer_internal (XBUFFER (w->buffer));
5810 }
5811 else
5812 old_buffer = NULL;
5813
5814 /* In case W->start is out of the accessible range, do something
5815 reasonable. This happens in Info mode when Info-scroll-down
5816 calls (recenter -1) while W->start is 1. */
5817 if (XMARKER (w->start)->charpos < BEGV)
5818 SET_TEXT_POS (start, BEGV, BEGV_BYTE);
5819 else if (XMARKER (w->start)->charpos > ZV)
5820 SET_TEXT_POS (start, ZV, ZV_BYTE);
5821 else
5822 SET_TEXT_POS_FROM_MARKER (start, w->start);
5823
5824 start_display (&it, w, start);
5825 move_it_vertically (&it, height);
5826 bottom_y = line_bottom_y (&it);
5827
5828 /* rms: On a non-window display,
5829 the value of it.vpos at the bottom of the screen
5830 seems to be 1 larger than window_box_height (w).
5831 This kludge fixes a bug whereby (move-to-window-line -1)
5832 when ZV is on the last screen line
5833 moves to the previous screen line instead of the last one. */
5834 if (! FRAME_WINDOW_P (XFRAME (w->frame)))
5835 height++;
5836
5837 /* Add in empty lines at the bottom of the window. */
5838 if (bottom_y < height)
5839 {
5840 int uy = FRAME_LINE_HEIGHT (it.f);
5841 it.vpos += (height - bottom_y + uy - 1) / uy;
5842 }
5843
5844 if (old_buffer)
5845 set_buffer_internal (old_buffer);
5846
5847 return it.vpos;
5848 }
5849
5850
5851 DEFUN ("recenter", Frecenter, Srecenter, 0, 1, "P",
5852 doc: /* Center point in window and redisplay frame.
5853 With prefix argument ARG, recenter putting point on screen line ARG
5854 relative to the current window. If ARG is negative, it counts up from the
5855 bottom of the window. (ARG should be less than the height of the window.)
5856
5857 If ARG is omitted or nil, erase the entire frame and then redraw with point
5858 in the center of the current window. If `auto-resize-tool-bars' is set to
5859 `grow-only', this resets the tool-bar's height to the minimum height needed.
5860
5861 Just C-u as prefix means put point in the center of the window
5862 and redisplay normally--don't erase and redraw the frame. */)
5863 (arg)
5864 register Lisp_Object arg;
5865 {
5866 struct window *w = XWINDOW (selected_window);
5867 struct buffer *buf = XBUFFER (w->buffer);
5868 struct buffer *obuf = current_buffer;
5869 int center_p = 0;
5870 int charpos, bytepos;
5871 int iarg;
5872 int this_scroll_margin;
5873
5874 /* If redisplay is suppressed due to an error, try again. */
5875 obuf->display_error_modiff = 0;
5876
5877 if (NILP (arg))
5878 {
5879 int i;
5880
5881 /* Invalidate pixel data calculated for all compositions. */
5882 for (i = 0; i < n_compositions; i++)
5883 composition_table[i]->font = NULL;
5884
5885 WINDOW_XFRAME (w)->minimize_tool_bar_window_p = 1;
5886
5887 Fredraw_frame (WINDOW_FRAME (w));
5888 SET_FRAME_GARBAGED (WINDOW_XFRAME (w));
5889 center_p = 1;
5890 }
5891 else if (CONSP (arg)) /* Just C-u. */
5892 center_p = 1;
5893 else
5894 {
5895 arg = Fprefix_numeric_value (arg);
5896 CHECK_NUMBER (arg);
5897 iarg = XINT (arg);
5898 }
5899
5900 set_buffer_internal (buf);
5901
5902 /* Do this after making BUF current
5903 in case scroll_margin is buffer-local. */
5904 this_scroll_margin = max (0, scroll_margin);
5905 this_scroll_margin = min (this_scroll_margin,
5906 XFASTINT (w->total_lines) / 4);
5907
5908 /* Handle centering on a graphical frame specially. Such frames can
5909 have variable-height lines and centering point on the basis of
5910 line counts would lead to strange effects. */
5911 if (FRAME_WINDOW_P (XFRAME (w->frame)))
5912 {
5913 if (center_p)
5914 {
5915 struct it it;
5916 struct text_pos pt;
5917
5918 SET_TEXT_POS (pt, PT, PT_BYTE);
5919 start_display (&it, w, pt);
5920 move_it_vertically_backward (&it, window_box_height (w) / 2);
5921 charpos = IT_CHARPOS (it);
5922 bytepos = IT_BYTEPOS (it);
5923 }
5924 else if (iarg < 0)
5925 {
5926 struct it it;
5927 struct text_pos pt;
5928 int nlines = -iarg;
5929 int extra_line_spacing;
5930 int h = window_box_height (w);
5931
5932 iarg = - max (-iarg, this_scroll_margin);
5933
5934 SET_TEXT_POS (pt, PT, PT_BYTE);
5935 start_display (&it, w, pt);
5936
5937 /* Be sure we have the exact height of the full line containing PT. */
5938 move_it_by_lines (&it, 0, 1);
5939
5940 /* The amount of pixels we have to move back is the window
5941 height minus what's displayed in the line containing PT,
5942 and the lines below. */
5943 it.current_y = 0;
5944 it.vpos = 0;
5945 move_it_by_lines (&it, nlines, 1);
5946
5947 if (it.vpos == nlines)
5948 h -= it.current_y;
5949 else
5950 {
5951 /* Last line has no newline */
5952 h -= line_bottom_y (&it);
5953 it.vpos++;
5954 }
5955
5956 /* Don't reserve space for extra line spacing of last line. */
5957 extra_line_spacing = it.max_extra_line_spacing;
5958
5959 /* If we can't move down NLINES lines because we hit
5960 the end of the buffer, count in some empty lines. */
5961 if (it.vpos < nlines)
5962 {
5963 nlines -= it.vpos;
5964 extra_line_spacing = it.extra_line_spacing;
5965 h -= nlines * (FRAME_LINE_HEIGHT (it.f) + extra_line_spacing);
5966 }
5967 if (h <= 0)
5968 return Qnil;
5969
5970 /* Now find the new top line (starting position) of the window. */
5971 start_display (&it, w, pt);
5972 it.current_y = 0;
5973 move_it_vertically_backward (&it, h);
5974
5975 /* If extra line spacing is present, we may move too far
5976 back. This causes the last line to be only partially
5977 visible (which triggers redisplay to recenter that line
5978 in the middle), so move forward.
5979 But ignore extra line spacing on last line, as it is not
5980 considered to be part of the visible height of the line.
5981 */
5982 h += extra_line_spacing;
5983 while (-it.current_y > h)
5984 move_it_by_lines (&it, 1, 1);
5985
5986 charpos = IT_CHARPOS (it);
5987 bytepos = IT_BYTEPOS (it);
5988 }
5989 else
5990 {
5991 struct position pos;
5992
5993 iarg = max (iarg, this_scroll_margin);
5994
5995 pos = *vmotion (PT, -iarg, w);
5996 charpos = pos.bufpos;
5997 bytepos = pos.bytepos;
5998 }
5999 }
6000 else
6001 {
6002 struct position pos;
6003 int ht = window_internal_height (w);
6004
6005 if (center_p)
6006 iarg = ht / 2;
6007 else if (iarg < 0)
6008 iarg += ht;
6009
6010 /* Don't let it get into the margin at either top or bottom. */
6011 iarg = max (iarg, this_scroll_margin);
6012 iarg = min (iarg, ht - this_scroll_margin - 1);
6013
6014 pos = *vmotion (PT, - iarg, w);
6015 charpos = pos.bufpos;
6016 bytepos = pos.bytepos;
6017 }
6018
6019 /* Set the new window start. */
6020 set_marker_both (w->start, w->buffer, charpos, bytepos);
6021 w->window_end_valid = Qnil;
6022
6023 w->optional_new_start = Qt;
6024
6025 if (bytepos == BEGV_BYTE || FETCH_BYTE (bytepos - 1) == '\n')
6026 w->start_at_line_beg = Qt;
6027 else
6028 w->start_at_line_beg = Qnil;
6029
6030 set_buffer_internal (obuf);
6031 return Qnil;
6032 }
6033
6034
6035 DEFUN ("window-text-height", Fwindow_text_height, Swindow_text_height,
6036 0, 1, 0,
6037 doc: /* Return the height in lines of the text display area of WINDOW.
6038 WINDOW defaults to the selected window.
6039 This doesn't include the mode-line (or header-line if any) or any
6040 partial-height lines in the text display area. */)
6041 (window)
6042 Lisp_Object window;
6043 {
6044 struct window *w = decode_window (window);
6045 int pixel_height = window_box_height (w);
6046 int line_height = pixel_height / FRAME_LINE_HEIGHT (XFRAME (w->frame));
6047 return make_number (line_height);
6048 }
6049
6050
6051 \f
6052 DEFUN ("move-to-window-line", Fmove_to_window_line, Smove_to_window_line,
6053 1, 1, "P",
6054 doc: /* Position point relative to window.
6055 With no argument, position point at center of window.
6056 An argument specifies vertical position within the window;
6057 zero means top of window, negative means relative to bottom of window. */)
6058 (arg)
6059 Lisp_Object arg;
6060 {
6061 struct window *w = XWINDOW (selected_window);
6062 int lines, start;
6063 Lisp_Object window;
6064 #if 0
6065 int this_scroll_margin;
6066 #endif
6067
6068 window = selected_window;
6069 start = marker_position (w->start);
6070 if (start < BEGV || start > ZV)
6071 {
6072 int height = window_internal_height (w);
6073 Fvertical_motion (make_number (- (height / 2)), window);
6074 set_marker_both (w->start, w->buffer, PT, PT_BYTE);
6075 w->start_at_line_beg = Fbolp ();
6076 w->force_start = Qt;
6077 }
6078 else
6079 Fgoto_char (w->start);
6080
6081 lines = displayed_window_lines (w);
6082
6083 #if 0
6084 this_scroll_margin = max (0, scroll_margin);
6085 this_scroll_margin = min (this_scroll_margin, lines / 4);
6086 #endif
6087
6088 if (NILP (arg))
6089 XSETFASTINT (arg, lines / 2);
6090 else
6091 {
6092 int iarg = XINT (Fprefix_numeric_value (arg));
6093
6094 if (iarg < 0)
6095 iarg = iarg + lines;
6096
6097 #if 0 /* This code would prevent move-to-window-line from moving point
6098 to a place inside the scroll margins (which would cause the
6099 next redisplay to scroll). I wrote this code, but then concluded
6100 it is probably better not to install it. However, it is here
6101 inside #if 0 so as not to lose it. -- rms. */
6102
6103 /* Don't let it get into the margin at either top or bottom. */
6104 iarg = max (iarg, this_scroll_margin);
6105 iarg = min (iarg, lines - this_scroll_margin - 1);
6106 #endif
6107
6108 arg = make_number (iarg);
6109 }
6110
6111 /* Skip past a partially visible first line. */
6112 if (w->vscroll)
6113 XSETINT (arg, XINT (arg) + 1);
6114
6115 return Fvertical_motion (arg, window);
6116 }
6117
6118
6119 \f
6120 /***********************************************************************
6121 Window Configuration
6122 ***********************************************************************/
6123
6124 struct save_window_data
6125 {
6126 EMACS_UINT size;
6127 struct Lisp_Vector *next_from_Lisp_Vector_struct;
6128 Lisp_Object selected_frame;
6129 Lisp_Object current_window;
6130 Lisp_Object current_buffer;
6131 Lisp_Object minibuf_scroll_window;
6132 Lisp_Object minibuf_selected_window;
6133 Lisp_Object root_window;
6134 Lisp_Object focus_frame;
6135 /* A vector, each of whose elements is a struct saved_window
6136 for one window. */
6137 Lisp_Object saved_windows;
6138
6139 /* All fields above are traced by the GC.
6140 From `fame-cols' down, the fields are ignored by the GC. */
6141
6142 int frame_cols, frame_lines, frame_menu_bar_lines;
6143 int frame_tool_bar_lines;
6144 /* Record the values of window-min-width and window-min-height
6145 so that window sizes remain consistent with them. */
6146 int min_width, min_height;
6147 };
6148
6149 /* This is saved as a Lisp_Vector */
6150 struct saved_window
6151 {
6152 /* these first two must agree with struct Lisp_Vector in lisp.h */
6153 EMACS_UINT size;
6154 struct Lisp_Vector *next_from_Lisp_Vector_struct;
6155
6156 Lisp_Object window;
6157 Lisp_Object buffer, start, pointm, mark;
6158 Lisp_Object left_col, top_line, total_cols, total_lines;
6159 Lisp_Object hscroll, min_hscroll;
6160 Lisp_Object parent, prev;
6161 Lisp_Object start_at_line_beg;
6162 Lisp_Object display_table;
6163 Lisp_Object orig_top_line, orig_total_lines;
6164 Lisp_Object left_margin_cols, right_margin_cols;
6165 Lisp_Object left_fringe_width, right_fringe_width, fringes_outside_margins;
6166 Lisp_Object scroll_bar_width, vertical_scroll_bar_type;
6167 Lisp_Object dedicated;
6168 };
6169
6170 #define SAVED_WINDOW_N(swv,n) \
6171 ((struct saved_window *) (XVECTOR ((swv)->contents[(n)])))
6172
6173 DEFUN ("window-configuration-p", Fwindow_configuration_p, Swindow_configuration_p, 1, 1, 0,
6174 doc: /* Return t if OBJECT is a window-configuration object. */)
6175 (object)
6176 Lisp_Object object;
6177 {
6178 return WINDOW_CONFIGURATIONP (object) ? Qt : Qnil;
6179 }
6180
6181 DEFUN ("window-configuration-frame", Fwindow_configuration_frame, Swindow_configuration_frame, 1, 1, 0,
6182 doc: /* Return the frame that CONFIG, a window-configuration object, is about. */)
6183 (config)
6184 Lisp_Object config;
6185 {
6186 register struct save_window_data *data;
6187 struct Lisp_Vector *saved_windows;
6188
6189 CHECK_WINDOW_CONFIGURATION (config);
6190
6191 data = (struct save_window_data *) XVECTOR (config);
6192 saved_windows = XVECTOR (data->saved_windows);
6193 return XWINDOW (SAVED_WINDOW_N (saved_windows, 0)->window)->frame;
6194 }
6195
6196 DEFUN ("set-window-configuration", Fset_window_configuration,
6197 Sset_window_configuration, 1, 1, 0,
6198 doc: /* Set the configuration of windows and buffers as specified by CONFIGURATION.
6199 CONFIGURATION must be a value previously returned
6200 by `current-window-configuration' (which see).
6201 If CONFIGURATION was made from a frame that is now deleted,
6202 only frame-independent values can be restored. In this case,
6203 the return value is nil. Otherwise the value is t. */)
6204 (configuration)
6205 Lisp_Object configuration;
6206 {
6207 register struct save_window_data *data;
6208 struct Lisp_Vector *saved_windows;
6209 Lisp_Object new_current_buffer;
6210 Lisp_Object frame;
6211 FRAME_PTR f;
6212 int old_point = -1;
6213
6214 CHECK_WINDOW_CONFIGURATION (configuration);
6215
6216 data = (struct save_window_data *) XVECTOR (configuration);
6217 saved_windows = XVECTOR (data->saved_windows);
6218
6219 new_current_buffer = data->current_buffer;
6220 if (NILP (XBUFFER (new_current_buffer)->name))
6221 new_current_buffer = Qnil;
6222 else
6223 {
6224 if (XBUFFER (new_current_buffer) == current_buffer)
6225 /* The code further down "preserves point" by saving here PT in
6226 old_point and then setting it later back into PT. When the
6227 current-selected-window and the final-selected-window both show
6228 the current buffer, this suffers from the problem that the
6229 current PT is the window-point of the current-selected-window,
6230 while the final PT is the point of the final-selected-window, so
6231 this copy from one PT to the other would end up moving the
6232 window-point of the final-selected-window to the window-point of
6233 the current-selected-window. So we have to be careful which
6234 point of the current-buffer we copy into old_point. */
6235 if (EQ (XWINDOW (data->current_window)->buffer, new_current_buffer)
6236 && WINDOWP (selected_window)
6237 && EQ (XWINDOW (selected_window)->buffer, new_current_buffer)
6238 && !EQ (selected_window, data->current_window))
6239 old_point = XMARKER (XWINDOW (data->current_window)->pointm)->charpos;
6240 else
6241 old_point = PT;
6242 else
6243 /* BUF_PT (XBUFFER (new_current_buffer)) gives us the position of
6244 point in new_current_buffer as of the last time this buffer was
6245 used. This can be non-deterministic since it can be changed by
6246 things like jit-lock by mere temporary selection of some random
6247 window that happens to show this buffer.
6248 So if possible we want this arbitrary choice of "which point" to
6249 be the one from the to-be-selected-window so as to prevent this
6250 window's cursor from being copied from another window. */
6251 if (EQ (XWINDOW (data->current_window)->buffer, new_current_buffer)
6252 /* If current_window = selected_window, its point is in BUF_PT. */
6253 && !EQ (selected_window, data->current_window))
6254 old_point = XMARKER (XWINDOW (data->current_window)->pointm)->charpos;
6255 else
6256 old_point = BUF_PT (XBUFFER (new_current_buffer));
6257 }
6258
6259 frame = XWINDOW (SAVED_WINDOW_N (saved_windows, 0)->window)->frame;
6260 f = XFRAME (frame);
6261
6262 /* If f is a dead frame, don't bother rebuilding its window tree.
6263 However, there is other stuff we should still try to do below. */
6264 if (FRAME_LIVE_P (f))
6265 {
6266 register struct window *w;
6267 register struct saved_window *p;
6268 struct window *root_window;
6269 struct window **leaf_windows;
6270 int n_leaf_windows;
6271 int k, i, n;
6272
6273 /* If the frame has been resized since this window configuration was
6274 made, we change the frame to the size specified in the
6275 configuration, restore the configuration, and then resize it
6276 back. We keep track of the prevailing height in these variables. */
6277 int previous_frame_lines = FRAME_LINES (f);
6278 int previous_frame_cols = FRAME_COLS (f);
6279 int previous_frame_menu_bar_lines = FRAME_MENU_BAR_LINES (f);
6280 int previous_frame_tool_bar_lines = FRAME_TOOL_BAR_LINES (f);
6281
6282 /* The mouse highlighting code could get screwed up
6283 if it runs during this. */
6284 BLOCK_INPUT;
6285
6286 if (data->frame_lines != previous_frame_lines
6287 || data->frame_cols != previous_frame_cols)
6288 change_frame_size (f, data->frame_lines,
6289 data->frame_cols, 0, 0, 0);
6290 #if defined (HAVE_WINDOW_SYSTEM) || defined (MSDOS)
6291 if (data->frame_menu_bar_lines
6292 != previous_frame_menu_bar_lines)
6293 x_set_menu_bar_lines (f, make_number (data->frame_menu_bar_lines),
6294 make_number (0));
6295 #ifdef HAVE_WINDOW_SYSTEM
6296 if (data->frame_tool_bar_lines
6297 != previous_frame_tool_bar_lines)
6298 x_set_tool_bar_lines (f, make_number (data->frame_tool_bar_lines),
6299 make_number (0));
6300 #endif
6301 #endif
6302
6303 /* "Swap out" point from the selected window's buffer
6304 into the window itself. (Normally the pointm of the selected
6305 window holds garbage.) We do this now, before
6306 restoring the window contents, and prevent it from
6307 being done later on when we select a new window. */
6308 if (! NILP (XWINDOW (selected_window)->buffer))
6309 {
6310 w = XWINDOW (selected_window);
6311 set_marker_both (w->pointm,
6312 w->buffer,
6313 BUF_PT (XBUFFER (w->buffer)),
6314 BUF_PT_BYTE (XBUFFER (w->buffer)));
6315 }
6316
6317 windows_or_buffers_changed++;
6318 FRAME_WINDOW_SIZES_CHANGED (f) = 1;
6319
6320 /* Problem: Freeing all matrices and later allocating them again
6321 is a serious redisplay flickering problem. What we would
6322 really like to do is to free only those matrices not reused
6323 below. */
6324 root_window = XWINDOW (FRAME_ROOT_WINDOW (f));
6325 leaf_windows
6326 = (struct window **) alloca (count_windows (root_window)
6327 * sizeof (struct window *));
6328 n_leaf_windows = get_leaf_windows (root_window, leaf_windows, 0);
6329
6330 /* Temporarily avoid any problems with windows that are smaller
6331 than they are supposed to be. */
6332 window_min_height = 1;
6333 window_min_width = 1;
6334
6335 /* Kludge Alert!
6336 Mark all windows now on frame as "deleted".
6337 Restoring the new configuration "undeletes" any that are in it.
6338
6339 Save their current buffers in their height fields, since we may
6340 need it later, if a buffer saved in the configuration is now
6341 dead. */
6342 delete_all_subwindows (XWINDOW (FRAME_ROOT_WINDOW (f)));
6343
6344 for (k = 0; k < saved_windows->size; k++)
6345 {
6346 p = SAVED_WINDOW_N (saved_windows, k);
6347 w = XWINDOW (p->window);
6348 w->next = Qnil;
6349
6350 if (!NILP (p->parent))
6351 w->parent = SAVED_WINDOW_N (saved_windows,
6352 XFASTINT (p->parent))->window;
6353 else
6354 w->parent = Qnil;
6355
6356 if (!NILP (p->prev))
6357 {
6358 w->prev = SAVED_WINDOW_N (saved_windows,
6359 XFASTINT (p->prev))->window;
6360 XWINDOW (w->prev)->next = p->window;
6361 }
6362 else
6363 {
6364 w->prev = Qnil;
6365 if (!NILP (w->parent))
6366 {
6367 if (EQ (p->total_cols, XWINDOW (w->parent)->total_cols))
6368 {
6369 XWINDOW (w->parent)->vchild = p->window;
6370 XWINDOW (w->parent)->hchild = Qnil;
6371 }
6372 else
6373 {
6374 XWINDOW (w->parent)->hchild = p->window;
6375 XWINDOW (w->parent)->vchild = Qnil;
6376 }
6377 }
6378 }
6379
6380 /* If we squirreled away the buffer in the window's height,
6381 restore it now. */
6382 if (BUFFERP (w->total_lines))
6383 w->buffer = w->total_lines;
6384 w->left_col = p->left_col;
6385 w->top_line = p->top_line;
6386 w->total_cols = p->total_cols;
6387 w->total_lines = p->total_lines;
6388 w->hscroll = p->hscroll;
6389 w->min_hscroll = p->min_hscroll;
6390 w->display_table = p->display_table;
6391 w->orig_top_line = p->orig_top_line;
6392 w->orig_total_lines = p->orig_total_lines;
6393 w->left_margin_cols = p->left_margin_cols;
6394 w->right_margin_cols = p->right_margin_cols;
6395 w->left_fringe_width = p->left_fringe_width;
6396 w->right_fringe_width = p->right_fringe_width;
6397 w->fringes_outside_margins = p->fringes_outside_margins;
6398 w->scroll_bar_width = p->scroll_bar_width;
6399 w->vertical_scroll_bar_type = p->vertical_scroll_bar_type;
6400 w->dedicated = p->dedicated;
6401 XSETFASTINT (w->last_modified, 0);
6402 XSETFASTINT (w->last_overlay_modified, 0);
6403
6404 /* Reinstall the saved buffer and pointers into it. */
6405 if (NILP (p->buffer))
6406 w->buffer = p->buffer;
6407 else
6408 {
6409 if (!NILP (XBUFFER (p->buffer)->name))
6410 /* If saved buffer is alive, install it. */
6411 {
6412 w->buffer = p->buffer;
6413 w->start_at_line_beg = p->start_at_line_beg;
6414 set_marker_restricted (w->start, p->start, w->buffer);
6415 set_marker_restricted (w->pointm, p->pointm, w->buffer);
6416 Fset_marker (XBUFFER (w->buffer)->mark,
6417 p->mark, w->buffer);
6418
6419 /* As documented in Fcurrent_window_configuration, don't
6420 restore the location of point in the buffer which was
6421 current when the window configuration was recorded. */
6422 if (!EQ (p->buffer, new_current_buffer)
6423 && XBUFFER (p->buffer) == current_buffer)
6424 Fgoto_char (w->pointm);
6425 }
6426 else if (NILP (w->buffer) || NILP (XBUFFER (w->buffer)->name))
6427 /* Else unless window has a live buffer, get one. */
6428 {
6429 w->buffer = Fcdr (Fcar (Vbuffer_alist));
6430 /* This will set the markers to beginning of visible
6431 range. */
6432 set_marker_restricted (w->start, make_number (0), w->buffer);
6433 set_marker_restricted (w->pointm, make_number (0),w->buffer);
6434 w->start_at_line_beg = Qt;
6435 }
6436 else
6437 /* Keeping window's old buffer; make sure the markers
6438 are real. */
6439 {
6440 /* Set window markers at start of visible range. */
6441 if (XMARKER (w->start)->buffer == 0)
6442 set_marker_restricted (w->start, make_number (0),
6443 w->buffer);
6444 if (XMARKER (w->pointm)->buffer == 0)
6445 set_marker_restricted_both (w->pointm, w->buffer,
6446 BUF_PT (XBUFFER (w->buffer)),
6447 BUF_PT_BYTE (XBUFFER (w->buffer)));
6448 w->start_at_line_beg = Qt;
6449 }
6450 }
6451 }
6452
6453 FRAME_ROOT_WINDOW (f) = data->root_window;
6454 /* Prevent "swapping out point" in the old selected window
6455 using the buffer that has been restored into it.
6456 We already swapped out point that from that window's old buffer. */
6457 selected_window = Qnil;
6458
6459 /* Arrange *not* to restore point in the buffer that was
6460 current when the window configuration was saved. */
6461 if (EQ (XWINDOW (data->current_window)->buffer, new_current_buffer))
6462 set_marker_restricted (XWINDOW (data->current_window)->pointm,
6463 make_number (old_point),
6464 XWINDOW (data->current_window)->buffer);
6465
6466 Fselect_window (data->current_window, Qnil);
6467 XBUFFER (XWINDOW (selected_window)->buffer)->last_selected_window
6468 = selected_window;
6469
6470 if (NILP (data->focus_frame)
6471 || (FRAMEP (data->focus_frame)
6472 && FRAME_LIVE_P (XFRAME (data->focus_frame))))
6473 Fredirect_frame_focus (frame, data->focus_frame);
6474
6475 #if 0 /* I don't understand why this is needed, and it causes problems
6476 when the frame's old selected window has been deleted. */
6477 if (f != selected_frame && FRAME_WINDOW_P (f))
6478 do_switch_frame (WINDOW_FRAME (XWINDOW (data->root_window)),
6479 0, 0);
6480 #endif
6481
6482 /* Set the screen height to the value it had before this function. */
6483 if (previous_frame_lines != FRAME_LINES (f)
6484 || previous_frame_cols != FRAME_COLS (f))
6485 change_frame_size (f, previous_frame_lines, previous_frame_cols,
6486 0, 0, 0);
6487 #if defined (HAVE_WINDOW_SYSTEM) || defined (MSDOS)
6488 if (previous_frame_menu_bar_lines != FRAME_MENU_BAR_LINES (f))
6489 x_set_menu_bar_lines (f, make_number (previous_frame_menu_bar_lines),
6490 make_number (0));
6491 #ifdef HAVE_WINDOW_SYSTEM
6492 if (previous_frame_tool_bar_lines != FRAME_TOOL_BAR_LINES (f))
6493 x_set_tool_bar_lines (f, make_number (previous_frame_tool_bar_lines),
6494 make_number (0));
6495 #endif
6496 #endif
6497
6498 /* Now, free glyph matrices in windows that were not reused. */
6499 for (i = n = 0; i < n_leaf_windows; ++i)
6500 {
6501 if (NILP (leaf_windows[i]->buffer))
6502 {
6503 /* Assert it's not reused as a combination. */
6504 xassert (NILP (leaf_windows[i]->hchild)
6505 && NILP (leaf_windows[i]->vchild));
6506 free_window_matrices (leaf_windows[i]);
6507 }
6508 else if (EQ (leaf_windows[i]->buffer, new_current_buffer))
6509 ++n;
6510 }
6511
6512 adjust_glyphs (f);
6513
6514 UNBLOCK_INPUT;
6515
6516 /* Fselect_window will have made f the selected frame, so we
6517 reselect the proper frame here. Fhandle_switch_frame will change the
6518 selected window too, but that doesn't make the call to
6519 Fselect_window above totally superfluous; it still sets f's
6520 selected window. */
6521 if (FRAME_LIVE_P (XFRAME (data->selected_frame)))
6522 do_switch_frame (data->selected_frame, 0, 0);
6523
6524 run_window_configuration_change_hook (f);
6525 }
6526
6527 if (!NILP (new_current_buffer))
6528 Fset_buffer (new_current_buffer);
6529
6530 /* Restore the minimum heights recorded in the configuration. */
6531 window_min_height = data->min_height;
6532 window_min_width = data->min_width;
6533
6534 Vminibuf_scroll_window = data->minibuf_scroll_window;
6535 minibuf_selected_window = data->minibuf_selected_window;
6536
6537 return (FRAME_LIVE_P (f) ? Qt : Qnil);
6538 }
6539
6540 /* Mark all windows now on frame as deleted
6541 by setting their buffers to nil. */
6542
6543 void
6544 delete_all_subwindows (w)
6545 register struct window *w;
6546 {
6547 if (!NILP (w->next))
6548 delete_all_subwindows (XWINDOW (w->next));
6549 if (!NILP (w->vchild))
6550 delete_all_subwindows (XWINDOW (w->vchild));
6551 if (!NILP (w->hchild))
6552 delete_all_subwindows (XWINDOW (w->hchild));
6553
6554 w->total_lines = w->buffer; /* See Fset_window_configuration for excuse. */
6555
6556 if (!NILP (w->buffer))
6557 unshow_buffer (w);
6558
6559 /* We set all three of these fields to nil, to make sure that we can
6560 distinguish this dead window from any live window. Live leaf
6561 windows will have buffer set, and combination windows will have
6562 vchild or hchild set. */
6563 w->buffer = Qnil;
6564 w->vchild = Qnil;
6565 w->hchild = Qnil;
6566
6567 Vwindow_list = Qnil;
6568 }
6569 \f
6570 static int
6571 count_windows (window)
6572 register struct window *window;
6573 {
6574 register int count = 1;
6575 if (!NILP (window->next))
6576 count += count_windows (XWINDOW (window->next));
6577 if (!NILP (window->vchild))
6578 count += count_windows (XWINDOW (window->vchild));
6579 if (!NILP (window->hchild))
6580 count += count_windows (XWINDOW (window->hchild));
6581 return count;
6582 }
6583
6584
6585 /* Fill vector FLAT with leaf windows under W, starting at index I.
6586 Value is last index + 1. */
6587
6588 static int
6589 get_leaf_windows (w, flat, i)
6590 struct window *w;
6591 struct window **flat;
6592 int i;
6593 {
6594 while (w)
6595 {
6596 if (!NILP (w->hchild))
6597 i = get_leaf_windows (XWINDOW (w->hchild), flat, i);
6598 else if (!NILP (w->vchild))
6599 i = get_leaf_windows (XWINDOW (w->vchild), flat, i);
6600 else
6601 flat[i++] = w;
6602
6603 w = NILP (w->next) ? 0 : XWINDOW (w->next);
6604 }
6605
6606 return i;
6607 }
6608
6609
6610 /* Return a pointer to the glyph W's physical cursor is on. Value is
6611 null if W's current matrix is invalid, so that no meaningfull glyph
6612 can be returned. */
6613
6614 struct glyph *
6615 get_phys_cursor_glyph (w)
6616 struct window *w;
6617 {
6618 struct glyph_row *row;
6619 struct glyph *glyph;
6620
6621 if (w->phys_cursor.vpos >= 0
6622 && w->phys_cursor.vpos < w->current_matrix->nrows
6623 && (row = MATRIX_ROW (w->current_matrix, w->phys_cursor.vpos),
6624 row->enabled_p)
6625 && row->used[TEXT_AREA] > w->phys_cursor.hpos)
6626 glyph = row->glyphs[TEXT_AREA] + w->phys_cursor.hpos;
6627 else
6628 glyph = NULL;
6629
6630 return glyph;
6631 }
6632
6633
6634 static int
6635 save_window_save (window, vector, i)
6636 Lisp_Object window;
6637 struct Lisp_Vector *vector;
6638 int i;
6639 {
6640 register struct saved_window *p;
6641 register struct window *w;
6642 register Lisp_Object tem;
6643
6644 for (;!NILP (window); window = w->next)
6645 {
6646 p = SAVED_WINDOW_N (vector, i);
6647 w = XWINDOW (window);
6648
6649 XSETFASTINT (w->temslot, i); i++;
6650 p->window = window;
6651 p->buffer = w->buffer;
6652 p->left_col = w->left_col;
6653 p->top_line = w->top_line;
6654 p->total_cols = w->total_cols;
6655 p->total_lines = w->total_lines;
6656 p->hscroll = w->hscroll;
6657 p->min_hscroll = w->min_hscroll;
6658 p->display_table = w->display_table;
6659 p->orig_top_line = w->orig_top_line;
6660 p->orig_total_lines = w->orig_total_lines;
6661 p->left_margin_cols = w->left_margin_cols;
6662 p->right_margin_cols = w->right_margin_cols;
6663 p->left_fringe_width = w->left_fringe_width;
6664 p->right_fringe_width = w->right_fringe_width;
6665 p->fringes_outside_margins = w->fringes_outside_margins;
6666 p->scroll_bar_width = w->scroll_bar_width;
6667 p->vertical_scroll_bar_type = w->vertical_scroll_bar_type;
6668 p->dedicated = w->dedicated;
6669 if (!NILP (w->buffer))
6670 {
6671 /* Save w's value of point in the window configuration.
6672 If w is the selected window, then get the value of point
6673 from the buffer; pointm is garbage in the selected window. */
6674 if (EQ (window, selected_window))
6675 {
6676 p->pointm = Fmake_marker ();
6677 set_marker_both (p->pointm, w->buffer,
6678 BUF_PT (XBUFFER (w->buffer)),
6679 BUF_PT_BYTE (XBUFFER (w->buffer)));
6680 }
6681 else
6682 p->pointm = Fcopy_marker (w->pointm, Qnil);
6683
6684 p->start = Fcopy_marker (w->start, Qnil);
6685 p->start_at_line_beg = w->start_at_line_beg;
6686
6687 tem = XBUFFER (w->buffer)->mark;
6688 p->mark = Fcopy_marker (tem, Qnil);
6689 }
6690 else
6691 {
6692 p->pointm = Qnil;
6693 p->start = Qnil;
6694 p->mark = Qnil;
6695 p->start_at_line_beg = Qnil;
6696 }
6697
6698 if (NILP (w->parent))
6699 p->parent = Qnil;
6700 else
6701 p->parent = XWINDOW (w->parent)->temslot;
6702
6703 if (NILP (w->prev))
6704 p->prev = Qnil;
6705 else
6706 p->prev = XWINDOW (w->prev)->temslot;
6707
6708 if (!NILP (w->vchild))
6709 i = save_window_save (w->vchild, vector, i);
6710 if (!NILP (w->hchild))
6711 i = save_window_save (w->hchild, vector, i);
6712 }
6713
6714 return i;
6715 }
6716
6717 DEFUN ("current-window-configuration", Fcurrent_window_configuration,
6718 Scurrent_window_configuration, 0, 1, 0,
6719 doc: /* Return an object representing the current window configuration of FRAME.
6720 If FRAME is nil or omitted, use the selected frame.
6721 This describes the number of windows, their sizes and current buffers,
6722 and for each displayed buffer, where display starts, and the positions of
6723 point and mark. An exception is made for point in the current buffer:
6724 its value is -not- saved.
6725 This also records the currently selected frame, and FRAME's focus
6726 redirection (see `redirect-frame-focus'). */)
6727 (frame)
6728 Lisp_Object frame;
6729 {
6730 register Lisp_Object tem;
6731 register int n_windows;
6732 register struct save_window_data *data;
6733 register int i;
6734 FRAME_PTR f;
6735
6736 if (NILP (frame))
6737 frame = selected_frame;
6738 CHECK_LIVE_FRAME (frame);
6739 f = XFRAME (frame);
6740
6741 n_windows = count_windows (XWINDOW (FRAME_ROOT_WINDOW (f)));
6742 data = ALLOCATE_PSEUDOVECTOR (struct save_window_data, frame_cols,
6743 PVEC_WINDOW_CONFIGURATION);
6744
6745 data->frame_cols = FRAME_COLS (f);
6746 data->frame_lines = FRAME_LINES (f);
6747 data->frame_menu_bar_lines = FRAME_MENU_BAR_LINES (f);
6748 data->frame_tool_bar_lines = FRAME_TOOL_BAR_LINES (f);
6749 data->selected_frame = selected_frame;
6750 data->current_window = FRAME_SELECTED_WINDOW (f);
6751 XSETBUFFER (data->current_buffer, current_buffer);
6752 data->minibuf_scroll_window = minibuf_level > 0 ? Vminibuf_scroll_window : Qnil;
6753 data->minibuf_selected_window = minibuf_level > 0 ? minibuf_selected_window : Qnil;
6754 data->root_window = FRAME_ROOT_WINDOW (f);
6755 data->focus_frame = FRAME_FOCUS_FRAME (f);
6756 data->min_height = window_min_height;
6757 data->min_width = window_min_width;
6758 tem = Fmake_vector (make_number (n_windows), Qnil);
6759 data->saved_windows = tem;
6760 for (i = 0; i < n_windows; i++)
6761 XVECTOR (tem)->contents[i]
6762 = Fmake_vector (make_number (VECSIZE (struct saved_window)), Qnil);
6763 save_window_save (FRAME_ROOT_WINDOW (f), XVECTOR (tem), 0);
6764 XSETWINDOW_CONFIGURATION (tem, data);
6765 return (tem);
6766 }
6767
6768 DEFUN ("save-window-excursion", Fsave_window_excursion, Ssave_window_excursion,
6769 0, UNEVALLED, 0,
6770 doc: /* Execute BODY, preserving window sizes and contents.
6771 Return the value of the last form in BODY.
6772 Restore which buffer appears in which window, where display starts,
6773 and the value of point and mark for each window.
6774 Also restore the choice of selected window.
6775 Also restore which buffer is current.
6776 Does not restore the value of point in current buffer.
6777 usage: (save-window-excursion BODY...) */)
6778 (args)
6779 Lisp_Object args;
6780 {
6781 register Lisp_Object val;
6782 register int count = SPECPDL_INDEX ();
6783
6784 record_unwind_protect (Fset_window_configuration,
6785 Fcurrent_window_configuration (Qnil));
6786 val = Fprogn (args);
6787 return unbind_to (count, val);
6788 }
6789
6790
6791 \f
6792 /***********************************************************************
6793 Window Split Tree
6794 ***********************************************************************/
6795
6796 static Lisp_Object
6797 window_tree (w)
6798 struct window *w;
6799 {
6800 Lisp_Object tail = Qnil;
6801 Lisp_Object result = Qnil;
6802
6803 while (w)
6804 {
6805 Lisp_Object wn;
6806
6807 XSETWINDOW (wn, w);
6808 if (!NILP (w->hchild))
6809 wn = Fcons (Qnil, Fcons (Fwindow_edges (wn),
6810 window_tree (XWINDOW (w->hchild))));
6811 else if (!NILP (w->vchild))
6812 wn = Fcons (Qt, Fcons (Fwindow_edges (wn),
6813 window_tree (XWINDOW (w->vchild))));
6814
6815 if (NILP (result))
6816 {
6817 result = tail = Fcons (wn, Qnil);
6818 }
6819 else
6820 {
6821 XSETCDR (tail, Fcons (wn, Qnil));
6822 tail = XCDR (tail);
6823 }
6824
6825 w = NILP (w->next) ? 0 : XWINDOW (w->next);
6826 }
6827
6828 return result;
6829 }
6830
6831
6832
6833 DEFUN ("window-tree", Fwindow_tree, Swindow_tree,
6834 0, 1, 0,
6835 doc: /* Return the window tree for frame FRAME.
6836
6837 The return value is a list of the form (ROOT MINI), where ROOT
6838 represents the window tree of the frame's root window, and MINI
6839 is the frame's minibuffer window.
6840
6841 If the root window is not split, ROOT is the root window itself.
6842 Otherwise, ROOT is a list (DIR EDGES W1 W2 ...) where DIR is nil for a
6843 horizontal split, and t for a vertical split, EDGES gives the combined
6844 size and position of the subwindows in the split, and the rest of the
6845 elements are the subwindows in the split. Each of the subwindows may
6846 again be a window or a list representing a window split, and so on.
6847 EDGES is a list \(LEFT TOP RIGHT BOTTOM) as returned by `window-edges'.
6848
6849 If FRAME is nil or omitted, return information on the currently
6850 selected frame. */)
6851 (frame)
6852 Lisp_Object frame;
6853 {
6854 FRAME_PTR f;
6855
6856 if (NILP (frame))
6857 frame = selected_frame;
6858
6859 CHECK_FRAME (frame);
6860 f = XFRAME (frame);
6861
6862 if (!FRAME_LIVE_P (f))
6863 return Qnil;
6864
6865 return window_tree (XWINDOW (FRAME_ROOT_WINDOW (f)));
6866 }
6867
6868 \f
6869 /***********************************************************************
6870 Marginal Areas
6871 ***********************************************************************/
6872
6873 DEFUN ("set-window-margins", Fset_window_margins, Sset_window_margins,
6874 2, 3, 0,
6875 doc: /* Set width of marginal areas of window WINDOW.
6876 If WINDOW is nil, set margins of the currently selected window.
6877 Second arg LEFT-WIDTH specifies the number of character cells to
6878 reserve for the left marginal area. Optional third arg RIGHT-WIDTH
6879 does the same for the right marginal area. A nil width parameter
6880 means no margin. */)
6881 (window, left_width, right_width)
6882 Lisp_Object window, left_width, right_width;
6883 {
6884 struct window *w = decode_window (window);
6885
6886 /* Translate negative or zero widths to nil.
6887 Margins that are too wide have to be checked elsewhere. */
6888
6889 if (!NILP (left_width))
6890 {
6891 CHECK_NUMBER (left_width);
6892 if (XINT (left_width) <= 0)
6893 left_width = Qnil;
6894 }
6895
6896 if (!NILP (right_width))
6897 {
6898 CHECK_NUMBER (right_width);
6899 if (XINT (right_width) <= 0)
6900 right_width = Qnil;
6901 }
6902
6903 if (!EQ (w->left_margin_cols, left_width)
6904 || !EQ (w->right_margin_cols, right_width))
6905 {
6906 w->left_margin_cols = left_width;
6907 w->right_margin_cols = right_width;
6908
6909 adjust_window_margins (w);
6910
6911 ++windows_or_buffers_changed;
6912 adjust_glyphs (XFRAME (WINDOW_FRAME (w)));
6913 }
6914
6915 return Qnil;
6916 }
6917
6918
6919 DEFUN ("window-margins", Fwindow_margins, Swindow_margins,
6920 0, 1, 0,
6921 doc: /* Get width of marginal areas of window WINDOW.
6922 If WINDOW is omitted or nil, use the currently selected window.
6923 Value is a cons of the form (LEFT-WIDTH . RIGHT-WIDTH).
6924 If a marginal area does not exist, its width will be returned
6925 as nil. */)
6926 (window)
6927 Lisp_Object window;
6928 {
6929 struct window *w = decode_window (window);
6930 return Fcons (w->left_margin_cols, w->right_margin_cols);
6931 }
6932
6933
6934 \f
6935 /***********************************************************************
6936 Fringes
6937 ***********************************************************************/
6938
6939 DEFUN ("set-window-fringes", Fset_window_fringes, Sset_window_fringes,
6940 2, 4, 0,
6941 doc: /* Set the fringe widths of window WINDOW.
6942 If WINDOW is nil, set the fringe widths of the currently selected
6943 window.
6944 Second arg LEFT-WIDTH specifies the number of pixels to reserve for
6945 the left fringe. Optional third arg RIGHT-WIDTH specifies the right
6946 fringe width. If a fringe width arg is nil, that means to use the
6947 frame's default fringe width. Default fringe widths can be set with
6948 the command `set-fringe-style'.
6949 If optional fourth arg OUTSIDE-MARGINS is non-nil, draw the fringes
6950 outside of the display margins. By default, fringes are drawn between
6951 display marginal areas and the text area. */)
6952 (window, left_width, right_width, outside_margins)
6953 Lisp_Object window, left_width, right_width, outside_margins;
6954 {
6955 struct window *w = decode_window (window);
6956
6957 if (!NILP (left_width))
6958 CHECK_NATNUM (left_width);
6959 if (!NILP (right_width))
6960 CHECK_NATNUM (right_width);
6961
6962 /* Do nothing on a tty. */
6963 if (FRAME_WINDOW_P (WINDOW_XFRAME (w))
6964 && (!EQ (w->left_fringe_width, left_width)
6965 || !EQ (w->right_fringe_width, right_width)
6966 || !EQ (w->fringes_outside_margins, outside_margins)))
6967 {
6968 w->left_fringe_width = left_width;
6969 w->right_fringe_width = right_width;
6970 w->fringes_outside_margins = outside_margins;
6971
6972 adjust_window_margins (w);
6973
6974 clear_glyph_matrix (w->current_matrix);
6975 w->window_end_valid = Qnil;
6976
6977 ++windows_or_buffers_changed;
6978 adjust_glyphs (XFRAME (WINDOW_FRAME (w)));
6979 }
6980
6981 return Qnil;
6982 }
6983
6984
6985 DEFUN ("window-fringes", Fwindow_fringes, Swindow_fringes,
6986 0, 1, 0,
6987 doc: /* Get width of fringes of window WINDOW.
6988 If WINDOW is omitted or nil, use the currently selected window.
6989 Value is a list of the form (LEFT-WIDTH RIGHT-WIDTH OUTSIDE-MARGINS). */)
6990 (window)
6991 Lisp_Object window;
6992 {
6993 struct window *w = decode_window (window);
6994
6995 return Fcons (make_number (WINDOW_LEFT_FRINGE_WIDTH (w)),
6996 Fcons (make_number (WINDOW_RIGHT_FRINGE_WIDTH (w)),
6997 Fcons ((WINDOW_HAS_FRINGES_OUTSIDE_MARGINS (w)
6998 ? Qt : Qnil), Qnil)));
6999 }
7000
7001
7002 \f
7003 /***********************************************************************
7004 Scroll bars
7005 ***********************************************************************/
7006
7007 DEFUN ("set-window-scroll-bars", Fset_window_scroll_bars, Sset_window_scroll_bars,
7008 2, 4, 0,
7009 doc: /* Set width and type of scroll bars of window WINDOW.
7010 If window is nil, set scroll bars of the currently selected window.
7011 Second parameter WIDTH specifies the pixel width for the scroll bar;
7012 this is automatically adjusted to a multiple of the frame column width.
7013 Third parameter VERTICAL-TYPE specifies the type of the vertical scroll
7014 bar: left, right, or nil.
7015 If WIDTH is nil, use the frame's scroll-bar width.
7016 If VERTICAL-TYPE is t, use the frame's scroll-bar type.
7017 Fourth parameter HORIZONTAL-TYPE is currently unused. */)
7018 (window, width, vertical_type, horizontal_type)
7019 Lisp_Object window, width, vertical_type, horizontal_type;
7020 {
7021 struct window *w = decode_window (window);
7022
7023 if (!NILP (width))
7024 {
7025 CHECK_NATNUM (width);
7026
7027 if (XINT (width) == 0)
7028 vertical_type = Qnil;
7029 }
7030
7031 if (!(NILP (vertical_type)
7032 || EQ (vertical_type, Qleft)
7033 || EQ (vertical_type, Qright)
7034 || EQ (vertical_type, Qt)))
7035 error ("Invalid type of vertical scroll bar");
7036
7037 if (!EQ (w->scroll_bar_width, width)
7038 || !EQ (w->vertical_scroll_bar_type, vertical_type))
7039 {
7040 w->scroll_bar_width = width;
7041 w->vertical_scroll_bar_type = vertical_type;
7042
7043 adjust_window_margins (w);
7044
7045 clear_glyph_matrix (w->current_matrix);
7046 w->window_end_valid = Qnil;
7047
7048 ++windows_or_buffers_changed;
7049 adjust_glyphs (XFRAME (WINDOW_FRAME (w)));
7050 }
7051
7052 return Qnil;
7053 }
7054
7055
7056 DEFUN ("window-scroll-bars", Fwindow_scroll_bars, Swindow_scroll_bars,
7057 0, 1, 0,
7058 doc: /* Get width and type of scroll bars of window WINDOW.
7059 If WINDOW is omitted or nil, use the currently selected window.
7060 Value is a list of the form (WIDTH COLS VERTICAL-TYPE HORIZONTAL-TYPE).
7061 If WIDTH is nil or TYPE is t, the window is using the frame's corresponding
7062 value. */)
7063 (window)
7064 Lisp_Object window;
7065 {
7066 struct window *w = decode_window (window);
7067 return Fcons (make_number ((WINDOW_CONFIG_SCROLL_BAR_WIDTH (w)
7068 ? WINDOW_CONFIG_SCROLL_BAR_WIDTH (w)
7069 : WINDOW_SCROLL_BAR_AREA_WIDTH (w))),
7070 Fcons (make_number (WINDOW_SCROLL_BAR_COLS (w)),
7071 Fcons (w->vertical_scroll_bar_type,
7072 Fcons (Qnil, Qnil))));
7073 }
7074
7075
7076 \f
7077 /***********************************************************************
7078 Smooth scrolling
7079 ***********************************************************************/
7080
7081 DEFUN ("window-vscroll", Fwindow_vscroll, Swindow_vscroll, 0, 2, 0,
7082 doc: /* Return the amount by which WINDOW is scrolled vertically.
7083 Use the selected window if WINDOW is nil or omitted.
7084 Normally, value is a multiple of the canonical character height of WINDOW;
7085 optional second arg PIXELS-P means value is measured in pixels. */)
7086 (window, pixels_p)
7087 Lisp_Object window, pixels_p;
7088 {
7089 Lisp_Object result;
7090 struct frame *f;
7091 struct window *w;
7092
7093 if (NILP (window))
7094 window = selected_window;
7095 else
7096 CHECK_WINDOW (window);
7097 w = XWINDOW (window);
7098 f = XFRAME (w->frame);
7099
7100 if (FRAME_WINDOW_P (f))
7101 result = (NILP (pixels_p)
7102 ? FRAME_CANON_Y_FROM_PIXEL_Y (f, -w->vscroll)
7103 : make_number (-w->vscroll));
7104 else
7105 result = make_number (0);
7106 return result;
7107 }
7108
7109
7110 DEFUN ("set-window-vscroll", Fset_window_vscroll, Sset_window_vscroll,
7111 2, 3, 0,
7112 doc: /* Set amount by which WINDOW should be scrolled vertically to VSCROLL.
7113 WINDOW nil means use the selected window. Normally, VSCROLL is a
7114 non-negative multiple of the canonical character height of WINDOW;
7115 optional third arg PIXELS-P non-nil means that VSCROLL is in pixels.
7116 If PIXELS-P is nil, VSCROLL may have to be rounded so that it
7117 corresponds to an integral number of pixels. The return value is the
7118 result of this rounding.
7119 If PIXELS-P is non-nil, the return value is VSCROLL. */)
7120 (window, vscroll, pixels_p)
7121 Lisp_Object window, vscroll, pixels_p;
7122 {
7123 struct window *w;
7124 struct frame *f;
7125
7126 if (NILP (window))
7127 window = selected_window;
7128 else
7129 CHECK_WINDOW (window);
7130 CHECK_NUMBER_OR_FLOAT (vscroll);
7131
7132 w = XWINDOW (window);
7133 f = XFRAME (w->frame);
7134
7135 if (FRAME_WINDOW_P (f))
7136 {
7137 int old_dy = w->vscroll;
7138
7139 w->vscroll = - (NILP (pixels_p)
7140 ? FRAME_LINE_HEIGHT (f) * XFLOATINT (vscroll)
7141 : XFLOATINT (vscroll));
7142 w->vscroll = min (w->vscroll, 0);
7143
7144 if (w->vscroll != old_dy)
7145 {
7146 /* Adjust glyph matrix of the frame if the virtual display
7147 area becomes larger than before. */
7148 if (w->vscroll < 0 && w->vscroll < old_dy)
7149 adjust_glyphs (f);
7150
7151 /* Prevent redisplay shortcuts. */
7152 XBUFFER (w->buffer)->prevent_redisplay_optimizations_p = 1;
7153 }
7154 }
7155
7156 return Fwindow_vscroll (window, pixels_p);
7157 }
7158
7159 \f
7160 /* Call FN for all leaf windows on frame F. FN is called with the
7161 first argument being a pointer to the leaf window, and with
7162 additional argument USER_DATA. Stops when FN returns 0. */
7163
7164 void
7165 foreach_window (f, fn, user_data)
7166 struct frame *f;
7167 int (* fn) P_ ((struct window *, void *));
7168 void *user_data;
7169 {
7170 /* Fdelete_frame may set FRAME_ROOT_WINDOW (f) to Qnil. */
7171 if (WINDOWP (FRAME_ROOT_WINDOW (f)))
7172 foreach_window_1 (XWINDOW (FRAME_ROOT_WINDOW (f)), fn, user_data);
7173 }
7174
7175
7176 /* Helper function for foreach_window. Call FN for all leaf windows
7177 reachable from W. FN is called with the first argument being a
7178 pointer to the leaf window, and with additional argument USER_DATA.
7179 Stop when FN returns 0. Value is 0 if stopped by FN. */
7180
7181 static int
7182 foreach_window_1 (w, fn, user_data)
7183 struct window *w;
7184 int (* fn) P_ ((struct window *, void *));
7185 void *user_data;
7186 {
7187 int cont;
7188
7189 for (cont = 1; w && cont;)
7190 {
7191 if (!NILP (w->hchild))
7192 cont = foreach_window_1 (XWINDOW (w->hchild), fn, user_data);
7193 else if (!NILP (w->vchild))
7194 cont = foreach_window_1 (XWINDOW (w->vchild), fn, user_data);
7195 else
7196 cont = fn (w, user_data);
7197
7198 w = NILP (w->next) ? 0 : XWINDOW (w->next);
7199 }
7200
7201 return cont;
7202 }
7203
7204
7205 /* Freeze or unfreeze the window start of W unless it is a
7206 mini-window or the selected window. FREEZE_P non-null means freeze
7207 the window start. */
7208
7209 static int
7210 freeze_window_start (w, freeze_p)
7211 struct window *w;
7212 void *freeze_p;
7213 {
7214 if (MINI_WINDOW_P (w)
7215 || (WINDOWP (selected_window) /* Can be nil in corner cases. */
7216 && (w == XWINDOW (selected_window)
7217 || (MINI_WINDOW_P (XWINDOW (selected_window))
7218 && ! NILP (Vminibuf_scroll_window)
7219 && w == XWINDOW (Vminibuf_scroll_window)))))
7220 freeze_p = NULL;
7221
7222 w->frozen_window_start_p = freeze_p != NULL;
7223 return 1;
7224 }
7225
7226
7227 /* Freeze or unfreeze the window starts of all leaf windows on frame
7228 F, except the selected window and a mini-window. FREEZE_P non-zero
7229 means freeze the window start. */
7230
7231 void
7232 freeze_window_starts (f, freeze_p)
7233 struct frame *f;
7234 int freeze_p;
7235 {
7236 foreach_window (f, freeze_window_start, (void *) (freeze_p ? f : 0));
7237 }
7238
7239 \f
7240 /***********************************************************************
7241 Initialization
7242 ***********************************************************************/
7243
7244 /* Return 1 if window configurations C1 and C2
7245 describe the same state of affairs. This is used by Fequal. */
7246
7247 int
7248 compare_window_configurations (c1, c2, ignore_positions)
7249 Lisp_Object c1, c2;
7250 int ignore_positions;
7251 {
7252 register struct save_window_data *d1, *d2;
7253 struct Lisp_Vector *sw1, *sw2;
7254 int i;
7255
7256 CHECK_WINDOW_CONFIGURATION (c1);
7257 CHECK_WINDOW_CONFIGURATION (c2);
7258
7259 d1 = (struct save_window_data *) XVECTOR (c1);
7260 d2 = (struct save_window_data *) XVECTOR (c2);
7261 sw1 = XVECTOR (d1->saved_windows);
7262 sw2 = XVECTOR (d2->saved_windows);
7263
7264 if (d1->frame_cols != d2->frame_cols)
7265 return 0;
7266 if (d1->frame_lines != d2->frame_lines)
7267 return 0;
7268 if (d1->frame_menu_bar_lines != d2->frame_menu_bar_lines)
7269 return 0;
7270 if (! EQ (d1->selected_frame, d2->selected_frame))
7271 return 0;
7272 /* Don't compare the current_window field directly.
7273 Instead see w1_is_current and w2_is_current, below. */
7274 if (! EQ (d1->current_buffer, d2->current_buffer))
7275 return 0;
7276 if (! ignore_positions)
7277 {
7278 if (! EQ (d1->minibuf_scroll_window, d2->minibuf_scroll_window))
7279 return 0;
7280 if (! EQ (d1->minibuf_selected_window, d2->minibuf_selected_window))
7281 return 0;
7282 }
7283 /* Don't compare the root_window field.
7284 We don't require the two configurations
7285 to use the same window object,
7286 and the two root windows must be equivalent
7287 if everything else compares equal. */
7288 if (! EQ (d1->focus_frame, d2->focus_frame))
7289 return 0;
7290 if (d1->min_width != d2->min_width)
7291 return 0;
7292 if (d1->min_height != d2->min_height)
7293 return 0;
7294
7295 /* Verify that the two confis have the same number of windows. */
7296 if (sw1->size != sw2->size)
7297 return 0;
7298
7299 for (i = 0; i < sw1->size; i++)
7300 {
7301 struct saved_window *p1, *p2;
7302 int w1_is_current, w2_is_current;
7303
7304 p1 = SAVED_WINDOW_N (sw1, i);
7305 p2 = SAVED_WINDOW_N (sw2, i);
7306
7307 /* Verify that the current windows in the two
7308 configurations correspond to each other. */
7309 w1_is_current = EQ (d1->current_window, p1->window);
7310 w2_is_current = EQ (d2->current_window, p2->window);
7311
7312 if (w1_is_current != w2_is_current)
7313 return 0;
7314
7315 /* Verify that the corresponding windows do match. */
7316 if (! EQ (p1->buffer, p2->buffer))
7317 return 0;
7318 if (! EQ (p1->left_col, p2->left_col))
7319 return 0;
7320 if (! EQ (p1->top_line, p2->top_line))
7321 return 0;
7322 if (! EQ (p1->total_cols, p2->total_cols))
7323 return 0;
7324 if (! EQ (p1->total_lines, p2->total_lines))
7325 return 0;
7326 if (! EQ (p1->display_table, p2->display_table))
7327 return 0;
7328 if (! EQ (p1->parent, p2->parent))
7329 return 0;
7330 if (! EQ (p1->prev, p2->prev))
7331 return 0;
7332 if (! ignore_positions)
7333 {
7334 if (! EQ (p1->hscroll, p2->hscroll))
7335 return 0;
7336 if (!EQ (p1->min_hscroll, p2->min_hscroll))
7337 return 0;
7338 if (! EQ (p1->start_at_line_beg, p2->start_at_line_beg))
7339 return 0;
7340 if (NILP (Fequal (p1->start, p2->start)))
7341 return 0;
7342 if (NILP (Fequal (p1->pointm, p2->pointm)))
7343 return 0;
7344 if (NILP (Fequal (p1->mark, p2->mark)))
7345 return 0;
7346 }
7347 if (! EQ (p1->left_margin_cols, p2->left_margin_cols))
7348 return 0;
7349 if (! EQ (p1->right_margin_cols, p2->right_margin_cols))
7350 return 0;
7351 if (! EQ (p1->left_fringe_width, p2->left_fringe_width))
7352 return 0;
7353 if (! EQ (p1->right_fringe_width, p2->right_fringe_width))
7354 return 0;
7355 if (! EQ (p1->fringes_outside_margins, p2->fringes_outside_margins))
7356 return 0;
7357 if (! EQ (p1->scroll_bar_width, p2->scroll_bar_width))
7358 return 0;
7359 if (! EQ (p1->vertical_scroll_bar_type, p2->vertical_scroll_bar_type))
7360 return 0;
7361 }
7362
7363 return 1;
7364 }
7365
7366 DEFUN ("compare-window-configurations", Fcompare_window_configurations,
7367 Scompare_window_configurations, 2, 2, 0,
7368 doc: /* Compare two window configurations as regards the structure of windows.
7369 This function ignores details such as the values of point and mark
7370 and scrolling positions. */)
7371 (x, y)
7372 Lisp_Object x, y;
7373 {
7374 if (compare_window_configurations (x, y, 1))
7375 return Qt;
7376 return Qnil;
7377 }
7378 \f
7379 void
7380 init_window_once ()
7381 {
7382 struct frame *f = make_initial_frame ();
7383 XSETFRAME (selected_frame, f);
7384 Vterminal_frame = selected_frame;
7385 minibuf_window = f->minibuffer_window;
7386 selected_window = f->selected_window;
7387 last_nonminibuf_frame = f;
7388
7389 window_initialized = 1;
7390 }
7391
7392 void
7393 init_window ()
7394 {
7395 Vwindow_list = Qnil;
7396 }
7397
7398 void
7399 syms_of_window ()
7400 {
7401 Qscroll_up = intern ("scroll-up");
7402 staticpro (&Qscroll_up);
7403
7404 Qscroll_down = intern ("scroll-down");
7405 staticpro (&Qscroll_down);
7406
7407 Qwindow_size_fixed = intern ("window-size-fixed");
7408 staticpro (&Qwindow_size_fixed);
7409 Fset (Qwindow_size_fixed, Qnil);
7410
7411 staticpro (&Qwindow_configuration_change_hook);
7412 Qwindow_configuration_change_hook
7413 = intern ("window-configuration-change-hook");
7414
7415 Qwindowp = intern ("windowp");
7416 staticpro (&Qwindowp);
7417
7418 Qwindow_configuration_p = intern ("window-configuration-p");
7419 staticpro (&Qwindow_configuration_p);
7420
7421 Qwindow_live_p = intern ("window-live-p");
7422 staticpro (&Qwindow_live_p);
7423
7424 Qtemp_buffer_show_hook = intern ("temp-buffer-show-hook");
7425 staticpro (&Qtemp_buffer_show_hook);
7426
7427 staticpro (&Vwindow_list);
7428
7429 minibuf_selected_window = Qnil;
7430 staticpro (&minibuf_selected_window);
7431
7432 window_scroll_pixel_based_preserve_y = -1;
7433
7434 DEFVAR_LISP ("temp-buffer-show-function", &Vtemp_buffer_show_function,
7435 doc: /* Non-nil means call as function to display a help buffer.
7436 The function is called with one argument, the buffer to be displayed.
7437 Used by `with-output-to-temp-buffer'.
7438 If this function is used, then it must do the entire job of showing
7439 the buffer; `temp-buffer-show-hook' is not run unless this function runs it. */);
7440 Vtemp_buffer_show_function = Qnil;
7441
7442 DEFVAR_LISP ("display-buffer-function", &Vdisplay_buffer_function,
7443 doc: /* If non-nil, function to call to handle `display-buffer'.
7444 It will receive two args, the buffer and a flag which if non-nil means
7445 that the currently selected window is not acceptable.
7446 It should choose or create a window, display the specified buffer in it,
7447 and return the window.
7448 Commands such as `switch-to-buffer-other-window' and `find-file-other-window'
7449 work using this function. */);
7450 Vdisplay_buffer_function = Qnil;
7451
7452 DEFVAR_LISP ("even-window-heights", &Veven_window_heights,
7453 doc: /* *If non-nil, `display-buffer' should even the window heights.
7454 If nil, `display-buffer' will leave the window configuration alone. */);
7455 Veven_window_heights = Qt;
7456
7457 DEFVAR_LISP ("minibuffer-scroll-window", &Vminibuf_scroll_window,
7458 doc: /* Non-nil means it is the window that C-M-v in minibuffer should scroll. */);
7459 Vminibuf_scroll_window = Qnil;
7460
7461 DEFVAR_BOOL ("mode-line-in-non-selected-windows", &mode_line_in_non_selected_windows,
7462 doc: /* Non-nil means to use `mode-line-inactive' face in non-selected windows.
7463 If the minibuffer is active, the `minibuffer-scroll-window' mode line
7464 is displayed in the `mode-line' face. */);
7465 mode_line_in_non_selected_windows = 1;
7466
7467 DEFVAR_LISP ("other-window-scroll-buffer", &Vother_window_scroll_buffer,
7468 doc: /* If non-nil, this is a buffer and \\[scroll-other-window] should scroll its window. */);
7469 Vother_window_scroll_buffer = Qnil;
7470
7471 DEFVAR_BOOL ("pop-up-frames", &pop_up_frames,
7472 doc: /* *Non-nil means `display-buffer' should make a separate frame. */);
7473 pop_up_frames = 0;
7474
7475 DEFVAR_BOOL ("auto-window-vscroll", &auto_window_vscroll_p,
7476 doc: /* *Non-nil means to automatically adjust `window-vscroll' to view tall lines. */);
7477 auto_window_vscroll_p = 1;
7478
7479 DEFVAR_BOOL ("display-buffer-reuse-frames", &display_buffer_reuse_frames,
7480 doc: /* *Non-nil means `display-buffer' should reuse frames.
7481 If the buffer in question is already displayed in a frame, raise that frame. */);
7482 display_buffer_reuse_frames = 0;
7483
7484 DEFVAR_LISP ("pop-up-frame-function", &Vpop_up_frame_function,
7485 doc: /* Function to call to handle automatic new frame creation.
7486 It is called with no arguments and should return a newly created frame.
7487
7488 A typical value might be `(lambda () (new-frame pop-up-frame-alist))'
7489 where `pop-up-frame-alist' would hold the default frame parameters. */);
7490 Vpop_up_frame_function = Qnil;
7491
7492 DEFVAR_LISP ("special-display-buffer-names", &Vspecial_display_buffer_names,
7493 doc: /* *List of buffer names that should have their own special frames.
7494 Displaying a buffer with `display-buffer' or `pop-to-buffer',
7495 if its name is in this list, makes a special frame for it
7496 using `special-display-function'. See also `special-display-regexps'.
7497
7498 An element of the list can be a list instead of just a string.
7499 There are two ways to use a list as an element:
7500 (BUFFER FRAME-PARAMETERS...) (BUFFER FUNCTION OTHER-ARGS...)
7501 In the first case, the FRAME-PARAMETERS are pairs of the form
7502 \(PARAMETER . VALUE); these parameter values are used to create the frame.
7503 In the second case, FUNCTION is called with BUFFER as the first argument,
7504 followed by the OTHER-ARGS--it can display BUFFER in any way it likes.
7505 All this is done by the function found in `special-display-function'.
7506
7507 If the specified frame parameters include (same-buffer . t), the
7508 buffer is displayed in the currently selected window. Otherwise, if
7509 they include (same-frame . t), the buffer is displayed in a new window
7510 in the currently selected frame.
7511
7512 If this variable appears \"not to work\", because you add a name to it
7513 but that buffer still appears in the selected window, look at the
7514 values of `same-window-buffer-names' and `same-window-regexps'.
7515 Those variables take precedence over this one. */);
7516 Vspecial_display_buffer_names = Qnil;
7517
7518 DEFVAR_LISP ("special-display-regexps", &Vspecial_display_regexps,
7519 doc: /* *List of regexps saying which buffers should have their own special frames.
7520 When displaying a buffer with `display-buffer' or `pop-to-buffer',
7521 if any regexp in this list matches the buffer name, it makes a
7522 special frame for the buffer by calling `special-display-function'.
7523
7524 An element of the list can be a list instead of just a string.
7525 There are two ways to use a list as an element:
7526 (REGEXP FRAME-PARAMETERS...) (REGEXP FUNCTION OTHER-ARGS...)
7527 In the first case, the FRAME-PARAMETERS are pairs of the form
7528 \(PARAMETER . VALUE); these parameter values are used to create the frame.
7529 In the second case, FUNCTION is called with BUFFER as the first argument,
7530 followed by the OTHER-ARGS--it can display the buffer in any way it likes.
7531 All this is done by the function found in `special-display-function'.
7532
7533 If the specified frame parameters include (same-buffer . t), the
7534 buffer is displayed in the currently selected window. Otherwise, if
7535 they include (same-frame . t), the buffer is displayed in a new window
7536 in the currently selected frame.
7537
7538 If this variable appears \"not to work\", because you add a regexp to it
7539 but the matching buffers still appear in the selected window, look at the
7540 values of `same-window-buffer-names' and `same-window-regexps'.
7541 Those variables take precedence over this one. */);
7542 Vspecial_display_regexps = Qnil;
7543
7544 DEFVAR_LISP ("special-display-function", &Vspecial_display_function,
7545 doc: /* Function to call to make a new frame for a special buffer.
7546 It is called with two arguments, the buffer and optional buffer specific
7547 data, and should return a window displaying that buffer.
7548 The default value normally makes a separate frame for the buffer,
7549 using `special-display-frame-alist' to specify the frame parameters.
7550 But if the buffer specific data includes (same-buffer . t) then the
7551 buffer is displayed in the current selected window.
7552 Otherwise if it includes (same-frame . t) then the buffer is displayed in
7553 a new window in the currently selected frame.
7554
7555 A buffer is special if it is listed in `special-display-buffer-names'
7556 or matches a regexp in `special-display-regexps'. */);
7557 Vspecial_display_function = Qnil;
7558
7559 DEFVAR_LISP ("same-window-buffer-names", &Vsame_window_buffer_names,
7560 doc: /* *List of buffer names that should appear in the selected window.
7561 Displaying one of these buffers using `display-buffer' or `pop-to-buffer'
7562 switches to it in the selected window, rather than making it appear
7563 in some other window.
7564
7565 An element of the list can be a cons cell instead of just a string.
7566 Then the car must be a string, which specifies the buffer name.
7567 This is for compatibility with `special-display-buffer-names';
7568 the cdr of the cons cell is ignored.
7569
7570 See also `same-window-regexps'. */);
7571 Vsame_window_buffer_names = Qnil;
7572
7573 DEFVAR_LISP ("same-window-regexps", &Vsame_window_regexps,
7574 doc: /* *List of regexps saying which buffers should appear in the selected window.
7575 If a buffer name matches one of these regexps, then displaying it
7576 using `display-buffer' or `pop-to-buffer' switches to it
7577 in the selected window, rather than making it appear in some other window.
7578
7579 An element of the list can be a cons cell instead of just a string.
7580 Then the car must be a string, which specifies the buffer name.
7581 This is for compatibility with `special-display-buffer-names';
7582 the cdr of the cons cell is ignored.
7583
7584 See also `same-window-buffer-names'. */);
7585 Vsame_window_regexps = Qnil;
7586
7587 DEFVAR_BOOL ("pop-up-windows", &pop_up_windows,
7588 doc: /* *Non-nil means display-buffer should make new windows. */);
7589 pop_up_windows = 1;
7590
7591 DEFVAR_INT ("next-screen-context-lines", &next_screen_context_lines,
7592 doc: /* *Number of lines of continuity when scrolling by screenfuls. */);
7593 next_screen_context_lines = 2;
7594
7595 DEFVAR_INT ("split-height-threshold", &split_height_threshold,
7596 doc: /* *A window must be at least this tall to be eligible for splitting
7597 by `display-buffer'. The value is in line units.
7598 If there is only one window, it is split regardless of this value. */);
7599 split_height_threshold = 500;
7600
7601 DEFVAR_LISP ("split-window-preferred-function",
7602 &Vsplit_window_preferred_function,
7603 doc: /* Function to use to split a window.
7604 This is used by `display-buffer' to allow the user to choose whether
7605 to split windows horizontally or vertically or some mix of the two.
7606 When this variable is nil, `display-buffer' splits windows vertically.
7607 Otherwise, `display-buffer' calls this function to split a window.
7608 It is called with a window as single argument and should split it in two
7609 and return the new window, or return an appropriate existing window
7610 if splitting is not eligible. */);
7611 Vsplit_window_preferred_function = Qnil;
7612
7613 DEFVAR_INT ("window-min-height", &window_min_height,
7614 doc: /* *Delete any window less than this tall (including its mode line).
7615 The value is in line units. */);
7616 window_min_height = 4;
7617
7618 DEFVAR_INT ("window-min-width", &window_min_width,
7619 doc: /* *Delete any window less than this wide (measured in characters). */);
7620 window_min_width = 10;
7621
7622 DEFVAR_LISP ("scroll-preserve-screen-position",
7623 &Vscroll_preserve_screen_position,
7624 doc: /* *Controls if scroll commands move point to keep its screen line unchanged.
7625 A value of nil means point does not keep its screen position except
7626 at the scroll margin or window boundary respectively.
7627 A value of t means point keeps its screen position if the scroll
7628 command moved it vertically out of the window, e.g. when scrolling
7629 by full screens.
7630 Any other value means point always keeps its screen position. */);
7631 Vscroll_preserve_screen_position = Qnil;
7632
7633 DEFVAR_LISP ("window-configuration-change-hook",
7634 &Vwindow_configuration_change_hook,
7635 doc: /* Functions to call when window configuration changes.
7636 The buffer-local part is run once per window, with the relevant window
7637 selected; while the global part is run only once for the modified frame,
7638 with the relevant frame selected. */);
7639 Vwindow_configuration_change_hook = Qnil;
7640
7641 defsubr (&Sselected_window);
7642 defsubr (&Sminibuffer_window);
7643 defsubr (&Swindow_minibuffer_p);
7644 defsubr (&Swindowp);
7645 defsubr (&Swindow_live_p);
7646 defsubr (&Spos_visible_in_window_p);
7647 defsubr (&Swindow_line_height);
7648 defsubr (&Swindow_buffer);
7649 defsubr (&Swindow_height);
7650 defsubr (&Swindow_width);
7651 defsubr (&Swindow_full_width_p);
7652 defsubr (&Swindow_hscroll);
7653 defsubr (&Sset_window_hscroll);
7654 defsubr (&Swindow_redisplay_end_trigger);
7655 defsubr (&Sset_window_redisplay_end_trigger);
7656 defsubr (&Swindow_edges);
7657 defsubr (&Swindow_pixel_edges);
7658 defsubr (&Swindow_inside_edges);
7659 defsubr (&Swindow_inside_pixel_edges);
7660 defsubr (&Scoordinates_in_window_p);
7661 defsubr (&Swindow_at);
7662 defsubr (&Swindow_point);
7663 defsubr (&Swindow_start);
7664 defsubr (&Swindow_end);
7665 defsubr (&Sset_window_point);
7666 defsubr (&Sset_window_start);
7667 defsubr (&Swindow_dedicated_p);
7668 defsubr (&Sset_window_dedicated_p);
7669 defsubr (&Swindow_display_table);
7670 defsubr (&Sset_window_display_table);
7671 defsubr (&Snext_window);
7672 defsubr (&Sprevious_window);
7673 defsubr (&Sother_window);
7674 defsubr (&Sget_lru_window);
7675 defsubr (&Sget_largest_window);
7676 defsubr (&Sget_buffer_window);
7677 defsubr (&Sdelete_other_windows);
7678 defsubr (&Sdelete_windows_on);
7679 defsubr (&Sreplace_buffer_in_windows);
7680 defsubr (&Sdelete_window);
7681 defsubr (&Sset_window_buffer);
7682 defsubr (&Sselect_window);
7683 defsubr (&Sspecial_display_p);
7684 defsubr (&Ssame_window_p);
7685 defsubr (&Sdisplay_buffer);
7686 defsubr (&Sforce_window_update);
7687 defsubr (&Ssplit_window);
7688 defsubr (&Senlarge_window);
7689 defsubr (&Sshrink_window);
7690 defsubr (&Sadjust_window_trailing_edge);
7691 defsubr (&Sscroll_up);
7692 defsubr (&Sscroll_down);
7693 defsubr (&Sscroll_left);
7694 defsubr (&Sscroll_right);
7695 defsubr (&Sother_window_for_scrolling);
7696 defsubr (&Sscroll_other_window);
7697 defsubr (&Sminibuffer_selected_window);
7698 defsubr (&Srecenter);
7699 defsubr (&Swindow_text_height);
7700 defsubr (&Smove_to_window_line);
7701 defsubr (&Swindow_configuration_p);
7702 defsubr (&Swindow_configuration_frame);
7703 defsubr (&Sset_window_configuration);
7704 defsubr (&Scurrent_window_configuration);
7705 defsubr (&Ssave_window_excursion);
7706 defsubr (&Swindow_tree);
7707 defsubr (&Sset_window_margins);
7708 defsubr (&Swindow_margins);
7709 defsubr (&Sset_window_fringes);
7710 defsubr (&Swindow_fringes);
7711 defsubr (&Sset_window_scroll_bars);
7712 defsubr (&Swindow_scroll_bars);
7713 defsubr (&Swindow_vscroll);
7714 defsubr (&Sset_window_vscroll);
7715 defsubr (&Scompare_window_configurations);
7716 defsubr (&Swindow_list);
7717 }
7718
7719 void
7720 keys_of_window ()
7721 {
7722 initial_define_key (control_x_map, '1', "delete-other-windows");
7723 initial_define_key (control_x_map, '2', "split-window");
7724 initial_define_key (control_x_map, '0', "delete-window");
7725 initial_define_key (control_x_map, 'o', "other-window");
7726 initial_define_key (control_x_map, '^', "enlarge-window");
7727 initial_define_key (control_x_map, '<', "scroll-left");
7728 initial_define_key (control_x_map, '>', "scroll-right");
7729
7730 initial_define_key (global_map, Ctl ('V'), "scroll-up");
7731 initial_define_key (meta_map, Ctl ('V'), "scroll-other-window");
7732 initial_define_key (meta_map, 'v', "scroll-down");
7733
7734 initial_define_key (global_map, Ctl('L'), "recenter");
7735 initial_define_key (meta_map, 'r', "move-to-window-line");
7736 }
7737
7738 /* arch-tag: 90a9c576-0590-48f1-a5f1-6c96a0452d9f
7739 (do not change this comment) */