(calculate_costs): Remove code dealing with X frames.
[bpt/emacs.git] / src / term.c
1 /* terminal control module for terminals described by TERMCAP
2 Copyright (C) 1985, 86, 87, 93, 94, 95, 98
3 Free Software Foundation, Inc.
4
5 This file is part of GNU Emacs.
6
7 GNU Emacs is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 2, or (at your option)
10 any later version.
11
12 GNU Emacs is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
16
17 You should have received a copy of the GNU General Public License
18 along with GNU Emacs; see the file COPYING. If not, write to
19 the Free Software Foundation, Inc., 59 Temple Place - Suite 330,
20 Boston, MA 02111-1307, USA. */
21
22 /* New redisplay, TTY faces by Gerd Moellmann <gerd@acm.org>. */
23
24
25 #include <config.h>
26 #include <stdio.h>
27 #include <ctype.h>
28 #include <string.h>
29 #include "termchar.h"
30 #include "termopts.h"
31 #include "lisp.h"
32 #include "charset.h"
33 #include "coding.h"
34 #include "frame.h"
35 #include "disptab.h"
36 #include "termhooks.h"
37 #include "keyboard.h"
38 #include "dispextern.h"
39 #include "window.h"
40
41 #ifdef HAVE_TERMCAP_H
42 #include <termcap.h>
43 #endif
44
45 #include "cm.h"
46 #ifdef HAVE_X_WINDOWS
47 #include "xterm.h"
48 #endif
49
50 static void turn_on_face P_ ((struct frame *, int face_id));
51 static void turn_off_face P_ ((struct frame *, int face_id));
52 static void tty_show_cursor P_ ((void));
53 static void tty_hide_cursor P_ ((void));
54
55 #define max(a, b) ((a) > (b) ? (a) : (b))
56 #define min(a, b) ((a) < (b) ? (a) : (b))
57
58 #define OUTPUT(a) \
59 tputs (a, (int) (FRAME_HEIGHT (XFRAME (selected_frame)) - curY), cmputc)
60 #define OUTPUT1(a) tputs (a, 1, cmputc)
61 #define OUTPUTL(a, lines) tputs (a, lines, cmputc)
62
63 #define OUTPUT_IF(a) \
64 do { \
65 if (a) \
66 tputs (a, (int) (FRAME_HEIGHT (XFRAME (selected_frame)) \
67 - curY), cmputc); \
68 } while (0)
69
70 #define OUTPUT1_IF(a) do { if (a) tputs (a, 1, cmputc); } while (0)
71
72 /* Function to use to ring the bell. */
73
74 Lisp_Object Vring_bell_function;
75
76 /* Terminal characteristics that higher levels want to look at.
77 These are all extern'd in termchar.h */
78
79 int must_write_spaces; /* Nonzero means spaces in the text
80 must actually be output; can't just skip
81 over some columns to leave them blank. */
82 int min_padding_speed; /* Speed below which no padding necessary */
83
84 int line_ins_del_ok; /* Terminal can insert and delete lines */
85 int char_ins_del_ok; /* Terminal can insert and delete chars */
86 int scroll_region_ok; /* Terminal supports setting the
87 scroll window */
88 int scroll_region_cost; /* Cost of setting a scroll window,
89 measured in characters */
90 int memory_below_frame; /* Terminal remembers lines
91 scrolled off bottom */
92 int fast_clear_end_of_line; /* Terminal has a `ce' string */
93
94 /* Nonzero means no need to redraw the entire frame on resuming
95 a suspended Emacs. This is useful on terminals with multiple pages,
96 where one page is used for Emacs and another for all else. */
97
98 int no_redraw_on_reenter;
99
100 /* Hook functions that you can set to snap out the functions in this file.
101 These are all extern'd in termhooks.h */
102
103 void (*cursor_to_hook) P_ ((int, int));
104 void (*raw_cursor_to_hook) P_ ((int, int));
105 void (*clear_to_end_hook) P_ ((void));
106 void (*clear_frame_hook) P_ ((void));
107 void (*clear_end_of_line_hook) P_ ((int));
108
109 void (*ins_del_lines_hook) P_ ((int, int));
110
111 void (*change_line_highlight_hook) P_ ((int, int, int, int));
112 void (*reassert_line_highlight_hook) P_ ((int, int));
113
114 void (*delete_glyphs_hook) P_ ((int));
115
116 void (*ring_bell_hook) P_ ((void));
117
118 void (*reset_terminal_modes_hook) P_ ((void));
119 void (*set_terminal_modes_hook) P_ ((void));
120 void (*update_begin_hook) P_ ((struct frame *));
121 void (*update_end_hook) P_ ((struct frame *));
122 void (*set_terminal_window_hook) P_ ((int));
123 void (*insert_glyphs_hook) P_ ((struct glyph *, int));
124 void (*write_glyphs_hook) P_ ((struct glyph *, int));
125 void (*delete_glyphs_hook) P_ ((int));
126
127 int (*read_socket_hook) P_ ((int, struct input_event *, int, int));
128
129 void (*frame_up_to_date_hook) P_ ((struct frame *));
130
131 /* Return the current position of the mouse.
132
133 Set *f to the frame the mouse is in, or zero if the mouse is in no
134 Emacs frame. If it is set to zero, all the other arguments are
135 garbage.
136
137 If the motion started in a scroll bar, set *bar_window to the
138 scroll bar's window, *part to the part the mouse is currently over,
139 *x to the position of the mouse along the scroll bar, and *y to the
140 overall length of the scroll bar.
141
142 Otherwise, set *bar_window to Qnil, and *x and *y to the column and
143 row of the character cell the mouse is over.
144
145 Set *time to the time the mouse was at the returned position.
146
147 This should clear mouse_moved until the next motion
148 event arrives. */
149 void (*mouse_position_hook) P_ ((FRAME_PTR *f, int insist,
150 Lisp_Object *bar_window,
151 enum scroll_bar_part *part,
152 Lisp_Object *x,
153 Lisp_Object *y,
154 unsigned long *time));
155
156 /* When reading from a minibuffer in a different frame, Emacs wants
157 to shift the highlight from the selected frame to the mini-buffer's
158 frame; under X, this means it lies about where the focus is.
159 This hook tells the window system code to re-decide where to put
160 the highlight. */
161 void (*frame_rehighlight_hook) P_ ((FRAME_PTR f));
162
163 /* If we're displaying frames using a window system that can stack
164 frames on top of each other, this hook allows you to bring a frame
165 to the front, or bury it behind all the other windows. If this
166 hook is zero, that means the device we're displaying on doesn't
167 support overlapping frames, so there's no need to raise or lower
168 anything.
169
170 If RAISE is non-zero, F is brought to the front, before all other
171 windows. If RAISE is zero, F is sent to the back, behind all other
172 windows. */
173 void (*frame_raise_lower_hook) P_ ((FRAME_PTR f, int raise));
174
175 /* Set the vertical scroll bar for WINDOW to have its upper left corner
176 at (TOP, LEFT), and be LENGTH rows high. Set its handle to
177 indicate that we are displaying PORTION characters out of a total
178 of WHOLE characters, starting at POSITION. If WINDOW doesn't yet
179 have a scroll bar, create one for it. */
180
181 void (*set_vertical_scroll_bar_hook)
182 P_ ((struct window *window,
183 int portion, int whole, int position));
184
185
186 /* The following three hooks are used when we're doing a thorough
187 redisplay of the frame. We don't explicitly know which scroll bars
188 are going to be deleted, because keeping track of when windows go
189 away is a real pain - can you say set-window-configuration?
190 Instead, we just assert at the beginning of redisplay that *all*
191 scroll bars are to be removed, and then save scroll bars from the
192 fiery pit when we actually redisplay their window. */
193
194 /* Arrange for all scroll bars on FRAME to be removed at the next call
195 to `*judge_scroll_bars_hook'. A scroll bar may be spared if
196 `*redeem_scroll_bar_hook' is applied to its window before the judgment.
197
198 This should be applied to each frame each time its window tree is
199 redisplayed, even if it is not displaying scroll bars at the moment;
200 if the HAS_SCROLL_BARS flag has just been turned off, only calling
201 this and the judge_scroll_bars_hook will get rid of them.
202
203 If non-zero, this hook should be safe to apply to any frame,
204 whether or not it can support scroll bars, and whether or not it is
205 currently displaying them. */
206 void (*condemn_scroll_bars_hook) P_ ((FRAME_PTR frame));
207
208 /* Unmark WINDOW's scroll bar for deletion in this judgement cycle.
209 Note that it's okay to redeem a scroll bar that is not condemned. */
210 void (*redeem_scroll_bar_hook) P_ ((struct window *window));
211
212 /* Remove all scroll bars on FRAME that haven't been saved since the
213 last call to `*condemn_scroll_bars_hook'.
214
215 This should be applied to each frame after each time its window
216 tree is redisplayed, even if it is not displaying scroll bars at the
217 moment; if the HAS_SCROLL_BARS flag has just been turned off, only
218 calling this and condemn_scroll_bars_hook will get rid of them.
219
220 If non-zero, this hook should be safe to apply to any frame,
221 whether or not it can support scroll bars, and whether or not it is
222 currently displaying them. */
223 void (*judge_scroll_bars_hook) P_ ((FRAME_PTR FRAME));
224
225 /* Hook to call in estimate_mode_line_height, if any. */
226
227 int (* estimate_mode_line_height_hook) P_ ((struct frame *f, enum face_id));
228
229
230 /* Strings, numbers and flags taken from the termcap entry. */
231
232 char *TS_ins_line; /* "al" */
233 char *TS_ins_multi_lines; /* "AL" (one parameter, # lines to insert) */
234 char *TS_bell; /* "bl" */
235 char *TS_clr_to_bottom; /* "cd" */
236 char *TS_clr_line; /* "ce", clear to end of line */
237 char *TS_clr_frame; /* "cl" */
238 char *TS_set_scroll_region; /* "cs" (2 params, first line and last line) */
239 char *TS_set_scroll_region_1; /* "cS" (4 params: total lines,
240 lines above scroll region, lines below it,
241 total lines again) */
242 char *TS_del_char; /* "dc" */
243 char *TS_del_multi_chars; /* "DC" (one parameter, # chars to delete) */
244 char *TS_del_line; /* "dl" */
245 char *TS_del_multi_lines; /* "DL" (one parameter, # lines to delete) */
246 char *TS_delete_mode; /* "dm", enter character-delete mode */
247 char *TS_end_delete_mode; /* "ed", leave character-delete mode */
248 char *TS_end_insert_mode; /* "ei", leave character-insert mode */
249 char *TS_ins_char; /* "ic" */
250 char *TS_ins_multi_chars; /* "IC" (one parameter, # chars to insert) */
251 char *TS_insert_mode; /* "im", enter character-insert mode */
252 char *TS_pad_inserted_char; /* "ip". Just padding, no commands. */
253 char *TS_end_keypad_mode; /* "ke" */
254 char *TS_keypad_mode; /* "ks" */
255 char *TS_pad_char; /* "pc", char to use as padding */
256 char *TS_repeat; /* "rp" (2 params, # times to repeat
257 and character to be repeated) */
258 char *TS_end_standout_mode; /* "se" */
259 char *TS_fwd_scroll; /* "sf" */
260 char *TS_standout_mode; /* "so" */
261 char *TS_rev_scroll; /* "sr" */
262 char *TS_end_termcap_modes; /* "te" */
263 char *TS_termcap_modes; /* "ti" */
264 char *TS_visible_bell; /* "vb" */
265 char *TS_cursor_normal; /* "ve" */
266 char *TS_cursor_visible; /* "vs" */
267 char *TS_cursor_invisible; /* "vi" */
268 char *TS_set_window; /* "wi" (4 params, start and end of window,
269 each as vpos and hpos) */
270
271 /* "md" -- turn on bold (extra bright mode). */
272
273 char *TS_enter_bold_mode;
274
275 /* "mh" -- turn on half-bright mode. */
276
277 char *TS_enter_dim_mode;
278
279 /* "mb" -- enter blinking mode. */
280
281 char *TS_enter_blink_mode;
282
283 /* "mr" -- enter reverse video mode. */
284
285 char *TS_enter_reverse_mode;
286
287 /* "us"/"ue" -- start/end underlining. */
288
289 char *TS_exit_underline_mode, *TS_enter_underline_mode;
290
291 /* "ug" -- number of blanks left by underline. */
292
293 int TN_magic_cookie_glitch_ul;
294
295 /* "as"/"ae" -- start/end alternate character set. Not really
296 supported, yet. */
297
298 char *TS_enter_alt_charset_mode, *TS_exit_alt_charset_mode;
299
300 /* "me" -- switch appearances off. */
301
302 char *TS_exit_attribute_mode;
303
304 /* "Co" -- number of colors. */
305
306 int TN_max_colors;
307
308 /* "pa" -- max. number of color pairs on screen. Not handled yet.
309 Could be a problem if not equal to TN_max_colors * TN_max_colors. */
310
311 int TN_max_pairs;
312
313 /* "op" -- SVr4 set default pair to its original value. */
314
315 char *TS_orig_pair;
316
317 /* "AF"/"AB" or "Sf"/"Sb"-- set ANSI or SVr4 foreground/background color.
318 1 param, the color index. */
319
320 char *TS_set_foreground, *TS_set_background;
321
322 int TF_hazeltine; /* termcap hz flag. */
323 int TF_insmode_motion; /* termcap mi flag: can move while in insert mode. */
324 int TF_standout_motion; /* termcap mi flag: can move while in standout mode. */
325 int TF_underscore; /* termcap ul flag: _ underlines if over-struck on
326 non-blank position. Must clear before writing _. */
327 int TF_teleray; /* termcap xt flag: many weird consequences.
328 For t1061. */
329
330 int TF_xs; /* Nonzero for "xs". If set together with
331 TN_standout_width == 0, it means don't bother
332 to write any end-standout cookies. */
333
334 int TN_standout_width; /* termcap sg number: width occupied by standout
335 markers */
336
337 static int RPov; /* # chars to start a TS_repeat */
338
339 static int delete_in_insert_mode; /* delete mode == insert mode */
340
341 static int se_is_so; /* 1 if same string both enters and leaves
342 standout mode */
343
344 /* internal state */
345
346 /* The largest frame width in any call to calculate_costs. */
347
348 int max_frame_width;
349
350 /* The largest frame height in any call to calculate_costs. */
351
352 int max_frame_height;
353
354 /* Number of chars of space used for standout marker at beginning of line,
355 or'd with 0100. Zero if no standout marker at all.
356 The length of these vectors is max_frame_height.
357
358 Used IFF TN_standout_width >= 0. */
359
360 static char *chars_wasted;
361 static char *copybuf;
362
363 /* nonzero means supposed to write text in standout mode. */
364
365 int standout_requested;
366
367 int insert_mode; /* Nonzero when in insert mode. */
368 int standout_mode; /* Nonzero when in standout mode. */
369
370 /* Size of window specified by higher levels.
371 This is the number of lines, from the top of frame downwards,
372 which can participate in insert-line/delete-line operations.
373
374 Effectively it excludes the bottom frame_height - specified_window_size
375 lines from those operations. */
376
377 int specified_window;
378
379 /* Frame currently being redisplayed; 0 if not currently redisplaying.
380 (Direct output does not count). */
381
382 FRAME_PTR updating_frame;
383
384 /* Provided for lisp packages. */
385
386 static int system_uses_terminfo;
387
388 char *tparam ();
389
390 extern char *tgetstr ();
391 \f
392
393 #ifdef WINDOWSNT
394
395 /* We aren't X windows, but we aren't termcap either. This makes me
396 uncertain as to what value to use for frame.output_method. For
397 this file, we'll define FRAME_TERMCAP_P to be zero so that our
398 output hooks get called instead of the termcap functions. Probably
399 the best long-term solution is to define an output_windows_nt... */
400
401 #undef FRAME_TERMCAP_P
402 #define FRAME_TERMCAP_P(_f_) 0
403 #endif /* WINDOWSNT */
404
405 void
406 ring_bell ()
407 {
408 if (! NILP (Vring_bell_function))
409 {
410 Lisp_Object function;
411
412 /* Temporarily set the global variable to nil
413 so that if we get an error, it stays nil
414 and we don't call it over and over.
415
416 We don't specbind it, because that would carefully
417 restore the bad value if there's an error
418 and make the loop of errors happen anyway. */
419 function = Vring_bell_function;
420 Vring_bell_function = Qnil;
421
422 call0 (function);
423
424 Vring_bell_function = function;
425 return;
426 }
427
428 if (! FRAME_TERMCAP_P (XFRAME (selected_frame)))
429 {
430 (*ring_bell_hook) ();
431 return;
432 }
433 OUTPUT (TS_visible_bell && visible_bell ? TS_visible_bell : TS_bell);
434 }
435
436 void
437 set_terminal_modes ()
438 {
439 if (! FRAME_TERMCAP_P (XFRAME (selected_frame)))
440 {
441 (*set_terminal_modes_hook) ();
442 return;
443 }
444 OUTPUT_IF (TS_termcap_modes);
445 OUTPUT_IF (TS_cursor_visible);
446 OUTPUT_IF (TS_keypad_mode);
447 losecursor ();
448 }
449
450 void
451 reset_terminal_modes ()
452 {
453 if (! FRAME_TERMCAP_P (XFRAME (selected_frame)))
454 {
455 if (reset_terminal_modes_hook)
456 (*reset_terminal_modes_hook) ();
457 return;
458 }
459 if (TN_standout_width < 0)
460 turn_off_highlight ();
461 turn_off_insert ();
462 OUTPUT_IF (TS_end_keypad_mode);
463 OUTPUT_IF (TS_cursor_normal);
464 OUTPUT_IF (TS_end_termcap_modes);
465 OUTPUT_IF (TS_orig_pair);
466 /* Output raw CR so kernel can track the cursor hpos. */
467 /* But on magic-cookie terminals this can erase an end-standout marker and
468 cause the rest of the frame to be in standout, so move down first. */
469 if (TN_standout_width >= 0)
470 cmputc ('\n');
471 cmputc ('\r');
472 }
473
474 void
475 update_begin (f)
476 FRAME_PTR f;
477 {
478 updating_frame = f;
479 if (! FRAME_TERMCAP_P (updating_frame))
480 (*update_begin_hook) (f);
481 else
482 tty_hide_cursor ();
483 }
484
485 void
486 update_end (f)
487 FRAME_PTR f;
488 {
489 if (! FRAME_TERMCAP_P (updating_frame))
490 {
491 (*update_end_hook) (f);
492 updating_frame = 0;
493 return;
494 }
495
496 if (!XWINDOW (selected_window)->cursor_off_p)
497 tty_show_cursor ();
498
499 turn_off_insert ();
500 background_highlight ();
501 standout_requested = 0;
502 updating_frame = 0;
503 }
504
505 void
506 set_terminal_window (size)
507 int size;
508 {
509 if (! FRAME_TERMCAP_P (updating_frame))
510 {
511 (*set_terminal_window_hook) (size);
512 return;
513 }
514 specified_window = size ? size : FRAME_HEIGHT (XFRAME (selected_frame));
515 if (!scroll_region_ok)
516 return;
517 set_scroll_region (0, specified_window);
518 }
519
520 void
521 set_scroll_region (start, stop)
522 int start, stop;
523 {
524 char *buf;
525 struct frame *sf = XFRAME (selected_frame);
526
527 if (TS_set_scroll_region)
528 {
529 buf = tparam (TS_set_scroll_region, 0, 0, start, stop - 1);
530 }
531 else if (TS_set_scroll_region_1)
532 {
533 buf = tparam (TS_set_scroll_region_1, 0, 0,
534 FRAME_HEIGHT (sf), start,
535 FRAME_HEIGHT (sf) - stop,
536 FRAME_HEIGHT (sf));
537 }
538 else
539 {
540 buf = tparam (TS_set_window, 0, 0, start, 0, stop, FRAME_WIDTH (sf));
541 }
542 OUTPUT (buf);
543 xfree (buf);
544 losecursor ();
545 }
546 \f
547 void
548 turn_on_insert ()
549 {
550 if (!insert_mode)
551 OUTPUT (TS_insert_mode);
552 insert_mode = 1;
553 }
554
555 void
556 turn_off_insert ()
557 {
558 if (insert_mode)
559 OUTPUT (TS_end_insert_mode);
560 insert_mode = 0;
561 }
562 \f
563 /* Handle highlighting when TN_standout_width (termcap sg) is not specified.
564 In these terminals, output is affected by the value of standout
565 mode when the output is written.
566
567 These functions are called on all terminals, but do nothing
568 on terminals whose standout mode does not work that way. */
569
570 void
571 turn_off_highlight ()
572 {
573 if (TN_standout_width < 0)
574 {
575 if (standout_mode)
576 OUTPUT_IF (TS_end_standout_mode);
577 standout_mode = 0;
578 }
579 }
580
581 void
582 turn_on_highlight ()
583 {
584 if (TN_standout_width < 0)
585 {
586 if (!standout_mode)
587 OUTPUT_IF (TS_standout_mode);
588 standout_mode = 1;
589 }
590 }
591
592
593 /* Make cursor invisible. */
594
595 static void
596 tty_hide_cursor ()
597 {
598 OUTPUT_IF (TS_cursor_invisible);
599 }
600
601
602 /* Ensure that cursor is visible. */
603
604 static void
605 tty_show_cursor ()
606 {
607 OUTPUT_IF (TS_cursor_normal);
608 OUTPUT_IF (TS_cursor_visible);
609 }
610
611
612 /* Set standout mode to the state it should be in for
613 empty space inside windows. What this is,
614 depends on the user option inverse-video. */
615
616 void
617 background_highlight ()
618 {
619 if (TN_standout_width >= 0)
620 return;
621 if (inverse_video)
622 turn_on_highlight ();
623 else
624 turn_off_highlight ();
625 }
626
627 /* Set standout mode to the mode specified for the text to be output. */
628
629 static void
630 highlight_if_desired ()
631 {
632 if (TN_standout_width >= 0)
633 return;
634 if (!inverse_video == !standout_requested)
635 turn_off_highlight ();
636 else
637 turn_on_highlight ();
638 }
639 \f
640 /* Handle standout mode for terminals in which TN_standout_width >= 0.
641 On these terminals, standout is controlled by markers that
642 live inside the terminal's memory. TN_standout_width is the width
643 that the marker occupies in memory. Standout runs from the marker
644 to the end of the line on some terminals, or to the next
645 turn-off-standout marker (TS_end_standout_mode) string
646 on other terminals. */
647
648 /* Write a standout marker or end-standout marker at the front of the line
649 at vertical position vpos. */
650
651 void
652 write_standout_marker (flag, vpos)
653 int flag, vpos;
654 {
655 if (flag || (TS_end_standout_mode && !TF_teleray && !se_is_so
656 && !(TF_xs && TN_standout_width == 0)))
657 {
658 cmgoto (vpos, 0);
659 cmplus (TN_standout_width);
660 OUTPUT (flag ? TS_standout_mode : TS_end_standout_mode);
661 chars_wasted[curY] = TN_standout_width | 0100;
662 }
663 }
664 \f
665 /* External interface to control of standout mode.
666 Call this when about to modify line at position VPOS
667 and not change whether it is highlighted. */
668
669 void
670 reassert_line_highlight (highlight, vpos)
671 int highlight;
672 int vpos;
673 {
674 struct frame *f = updating_frame ? updating_frame : XFRAME (selected_frame);
675 if (! FRAME_TERMCAP_P (f))
676 {
677 (*reassert_line_highlight_hook) (highlight, vpos);
678 return;
679 }
680 if (TN_standout_width < 0)
681 /* Handle terminals where standout takes affect at output time */
682 standout_requested = highlight;
683 else if (chars_wasted && chars_wasted[vpos] == 0)
684 /* For terminals with standout markers, write one on this line
685 if there isn't one already. */
686 write_standout_marker (highlight, vpos);
687 }
688
689 /* Call this when about to modify line at position VPOS
690 and change whether it is highlighted. */
691
692 void
693 change_line_highlight (new_highlight, vpos, y, first_unused_hpos)
694 int new_highlight, vpos, y, first_unused_hpos;
695 {
696 standout_requested = new_highlight;
697 if (! FRAME_TERMCAP_P (updating_frame))
698 {
699 (*change_line_highlight_hook) (new_highlight, vpos, y, first_unused_hpos);
700 return;
701 }
702
703 cursor_to (vpos, 0);
704
705 if (TN_standout_width < 0)
706 background_highlight ();
707 /* If line starts with a marker, delete the marker */
708 else if (TS_clr_line && chars_wasted[curY])
709 {
710 turn_off_insert ();
711 /* On Teleray, make sure to erase the SO marker. */
712 if (TF_teleray)
713 {
714 cmgoto (curY - 1, FRAME_WIDTH (XFRAME (selected_frame)) - 4);
715 OUTPUT ("\033S");
716 curY++; /* ESC S moves to next line where the TS_standout_mode was */
717 curX = 0;
718 }
719 else
720 cmgoto (curY, 0); /* reposition to kill standout marker */
721 }
722 clear_end_of_line_raw (first_unused_hpos);
723 reassert_line_highlight (new_highlight, curY);
724 }
725 \f
726
727 /* Move cursor to row/column position VPOS/HPOS. HPOS/VPOS are
728 frame-relative coordinates. */
729
730 void
731 cursor_to (vpos, hpos)
732 int vpos, hpos;
733 {
734 struct frame *f = updating_frame ? updating_frame : XFRAME (selected_frame);
735
736 if (! FRAME_TERMCAP_P (f) && cursor_to_hook)
737 {
738 (*cursor_to_hook) (vpos, hpos);
739 return;
740 }
741
742 /* Detect the case where we are called from reset_sys_modes
743 and the costs have never been calculated. Do nothing. */
744 if (chars_wasted == 0)
745 return;
746
747 hpos += chars_wasted[vpos] & 077;
748 if (curY == vpos && curX == hpos)
749 return;
750 if (!TF_standout_motion)
751 background_highlight ();
752 if (!TF_insmode_motion)
753 turn_off_insert ();
754 cmgoto (vpos, hpos);
755 }
756
757 /* Similar but don't take any account of the wasted characters. */
758
759 void
760 raw_cursor_to (row, col)
761 int row, col;
762 {
763 struct frame *f = updating_frame ? updating_frame : XFRAME (selected_frame);
764 if (! FRAME_TERMCAP_P (f))
765 {
766 (*raw_cursor_to_hook) (row, col);
767 return;
768 }
769 if (curY == row && curX == col)
770 return;
771 if (!TF_standout_motion)
772 background_highlight ();
773 if (!TF_insmode_motion)
774 turn_off_insert ();
775 cmgoto (row, col);
776 }
777 \f
778 /* Erase operations */
779
780 /* clear from cursor to end of frame */
781 void
782 clear_to_end ()
783 {
784 register int i;
785
786 if (clear_to_end_hook && ! FRAME_TERMCAP_P (updating_frame))
787 {
788 (*clear_to_end_hook) ();
789 return;
790 }
791 if (TS_clr_to_bottom)
792 {
793 background_highlight ();
794 OUTPUT (TS_clr_to_bottom);
795 bzero (chars_wasted + curY,
796 FRAME_HEIGHT (XFRAME (selected_frame)) - curY);
797 }
798 else
799 {
800 for (i = curY; i < FRAME_HEIGHT (XFRAME (selected_frame)); i++)
801 {
802 cursor_to (i, 0);
803 clear_end_of_line_raw (FRAME_WIDTH (XFRAME (selected_frame)));
804 }
805 }
806 }
807
808 /* Clear entire frame */
809
810 void
811 clear_frame ()
812 {
813 struct frame *sf = XFRAME (selected_frame);
814
815 if (clear_frame_hook
816 && ! FRAME_TERMCAP_P ((updating_frame ? updating_frame : sf)))
817 {
818 (*clear_frame_hook) ();
819 return;
820 }
821 if (TS_clr_frame)
822 {
823 background_highlight ();
824 OUTPUT (TS_clr_frame);
825 bzero (chars_wasted, FRAME_HEIGHT (sf));
826 cmat (0, 0);
827 }
828 else
829 {
830 cursor_to (0, 0);
831 clear_to_end ();
832 }
833 }
834
835 /* Clear to end of line, but do not clear any standout marker.
836 Assumes that the cursor is positioned at a character of real text,
837 which implies it cannot be before a standout marker
838 unless the marker has zero width.
839
840 Note that the cursor may be moved. */
841
842 void
843 clear_end_of_line (first_unused_hpos)
844 int first_unused_hpos;
845 {
846 if (FRAME_TERMCAP_P (XFRAME (selected_frame))
847 && chars_wasted != 0
848 && TN_standout_width == 0 && curX == 0 && chars_wasted[curY] != 0)
849 write_glyphs (&space_glyph, 1);
850 clear_end_of_line_raw (first_unused_hpos);
851 }
852
853 /* Clear from cursor to end of line.
854 Assume that the line is already clear starting at column first_unused_hpos.
855 If the cursor is at a standout marker, erase the marker.
856
857 Note that the cursor may be moved, on terminals lacking a `ce' string. */
858
859 void
860 clear_end_of_line_raw (first_unused_hpos)
861 int first_unused_hpos;
862 {
863 register int i;
864
865 if (clear_end_of_line_hook
866 && ! FRAME_TERMCAP_P ((updating_frame
867 ? updating_frame
868 : XFRAME (selected_frame))))
869 {
870 (*clear_end_of_line_hook) (first_unused_hpos);
871 return;
872 }
873
874 /* Detect the case where we are called from reset_sys_modes
875 and the costs have never been calculated. Do nothing. */
876 if (chars_wasted == 0)
877 return;
878
879 first_unused_hpos += chars_wasted[curY] & 077;
880 if (curX >= first_unused_hpos)
881 return;
882 /* Notice if we are erasing a magic cookie */
883 if (curX == 0)
884 chars_wasted[curY] = 0;
885 background_highlight ();
886 if (TS_clr_line)
887 {
888 OUTPUT1 (TS_clr_line);
889 }
890 else
891 { /* have to do it the hard way */
892 struct frame *sf = XFRAME (selected_frame);
893 turn_off_insert ();
894
895 /* Do not write in last row last col with Auto-wrap on. */
896 if (AutoWrap && curY == FRAME_HEIGHT (sf) - 1
897 && first_unused_hpos == FRAME_WIDTH (sf))
898 first_unused_hpos--;
899
900 for (i = curX; i < first_unused_hpos; i++)
901 {
902 if (termscript)
903 fputc (' ', termscript);
904 putchar (' ');
905 }
906 cmplus (first_unused_hpos - curX);
907 }
908 }
909 \f
910 /* Encode SRC_LEN glyphs starting at SRC to terminal output codes and
911 store them at DST. Do not write more than DST_LEN bytes. That may
912 require stopping before all SRC_LEN input glyphs have been
913 converted.
914
915 We store the number of glyphs actually converted in *CONSUMED. The
916 return value is the number of bytes store in DST. */
917
918 int
919 encode_terminal_code (src, dst, src_len, dst_len, consumed)
920 struct glyph *src;
921 int src_len;
922 unsigned char *dst;
923 int dst_len, *consumed;
924 {
925 struct glyph *src_start = src, *src_end = src + src_len;
926 unsigned char *dst_start = dst, *dst_end = dst + dst_len;
927 register GLYPH g;
928 unsigned int c;
929 unsigned char workbuf[MAX_MULTIBYTE_LENGTH], *buf;
930 int len;
931 register int tlen = GLYPH_TABLE_LENGTH;
932 register Lisp_Object *tbase = GLYPH_TABLE_BASE;
933 int result;
934 struct coding_system *coding;
935
936 coding = (CODING_REQUIRE_ENCODING (&terminal_coding)
937 ? &terminal_coding
938 : &safe_terminal_coding);
939
940 while (src < src_end)
941 {
942 /* We must skip glyphs to be padded for a wide character. */
943 if (! CHAR_GLYPH_PADDING_P (*src))
944 {
945 g = GLYPH_FROM_CHAR_GLYPH (src[0]);
946
947 if (g < 0 || g >= tlen)
948 {
949 /* This glyph doesn't has an entry in Vglyph_table. */
950 if (! CHAR_VALID_P (src->u.ch, 0))
951 {
952 len = 1;
953 buf = " ";
954 }
955 else
956 {
957 len = CHAR_STRING (src->u.ch, workbuf);
958 buf = workbuf;
959 }
960 }
961 else
962 {
963 /* This glyph has an entry in Vglyph_table,
964 so process any alias before testing for simpleness. */
965 GLYPH_FOLLOW_ALIASES (tbase, tlen, g);
966
967 if (GLYPH_SIMPLE_P (tbase, tlen, g))
968 {
969 /* We set the multi-byte form of a character in G
970 (that should be an ASCII character) at
971 WORKBUF. */
972 workbuf[0] = FAST_GLYPH_CHAR (g);
973 len = 1;
974 buf = workbuf;
975 }
976 else
977 {
978 /* We have a string in Vglyph_table. */
979 len = GLYPH_LENGTH (tbase, g);
980 buf = GLYPH_STRING (tbase, g);
981 }
982 }
983
984 result = encode_coding (coding, buf, dst, len, dst_end - dst);
985 len -= coding->consumed;
986 dst += coding->produced;
987 if (result == CODING_FINISH_INSUFFICIENT_DST
988 || (result == CODING_FINISH_INSUFFICIENT_SRC
989 && len > dst_end - dst))
990 /* The remaining output buffer is too short. We must
991 break the loop here without increasing SRC so that the
992 next call of this function starts from the same glyph. */
993 break;
994
995 if (len > 0)
996 {
997 /* This is the case that a code of the range 0200..0237
998 exists in buf. We must just write out such a code. */
999 buf += coding->consumed;
1000 while (len--)
1001 *dst++ = *buf++;
1002 }
1003 }
1004 src++;
1005 }
1006
1007 *consumed = src - src_start;
1008 return (dst - dst_start);
1009 }
1010
1011
1012 void
1013 write_glyphs (string, len)
1014 register struct glyph *string;
1015 register int len;
1016 {
1017 int produced, consumed;
1018 struct frame *sf = XFRAME (selected_frame);
1019 struct frame *f = updating_frame ? updating_frame : sf;
1020
1021 if (write_glyphs_hook
1022 && ! FRAME_TERMCAP_P (f))
1023 {
1024 (*write_glyphs_hook) (string, len);
1025 return;
1026 }
1027
1028 highlight_if_desired ();
1029 turn_off_insert ();
1030
1031 /* Don't dare write in last column of bottom line, if Auto-Wrap,
1032 since that would scroll the whole frame on some terminals. */
1033
1034 if (AutoWrap
1035 && curY + 1 == FRAME_HEIGHT (sf)
1036 && (curX + len - (chars_wasted[curY] & 077) == FRAME_WIDTH (sf)))
1037 len --;
1038 if (len <= 0)
1039 return;
1040
1041 cmplus (len);
1042
1043 /* The mode bit CODING_MODE_LAST_BLOCK should be set to 1 only at
1044 the tail. */
1045 terminal_coding.mode &= ~CODING_MODE_LAST_BLOCK;
1046
1047 while (len > 0)
1048 {
1049 /* Identify a run of glyphs with the same face. */
1050 int face_id = string->face_id;
1051 int n;
1052
1053 for (n = 1; n < len; ++n)
1054 if (string[n].face_id != face_id)
1055 break;
1056
1057 /* Turn appearance modes of the face of the run on. */
1058 turn_on_face (f, face_id);
1059
1060 while (n > 0)
1061 {
1062 /* We use a shared conversion buffer of the current size
1063 (1024 bytes at least). Usually it is sufficient, but if
1064 not, we just repeat the loop. */
1065 produced = encode_terminal_code (string, conversion_buffer,
1066 n, conversion_buffer_size,
1067 &consumed);
1068 if (produced > 0)
1069 {
1070 fwrite (conversion_buffer, 1, produced, stdout);
1071 if (ferror (stdout))
1072 clearerr (stdout);
1073 if (termscript)
1074 fwrite (conversion_buffer, 1, produced, termscript);
1075 }
1076 len -= consumed;
1077 n -= consumed;
1078 string += consumed;
1079 }
1080
1081 /* Turn appearance modes off. */
1082 turn_off_face (f, face_id);
1083 }
1084
1085 /* We may have to output some codes to terminate the writing. */
1086 if (CODING_REQUIRE_FLUSHING (&terminal_coding))
1087 {
1088 terminal_coding.mode |= CODING_MODE_LAST_BLOCK;
1089 encode_coding (&terminal_coding, "", conversion_buffer,
1090 0, conversion_buffer_size);
1091 if (terminal_coding.produced > 0)
1092 {
1093 fwrite (conversion_buffer, 1, terminal_coding.produced, stdout);
1094 if (ferror (stdout))
1095 clearerr (stdout);
1096 if (termscript)
1097 fwrite (conversion_buffer, 1, terminal_coding.produced,
1098 termscript);
1099 }
1100 }
1101
1102 cmcheckmagic ();
1103 }
1104
1105 /* If start is zero, insert blanks instead of a string at start */
1106
1107 void
1108 insert_glyphs (start, len)
1109 register struct glyph *start;
1110 register int len;
1111 {
1112 char *buf;
1113 struct glyph *glyph;
1114 struct frame *f, *sf;
1115
1116 if (len <= 0)
1117 return;
1118
1119 if (insert_glyphs_hook)
1120 {
1121 (*insert_glyphs_hook) (start, len);
1122 return;
1123 }
1124
1125 sf = XFRAME (selected_frame);
1126 f = updating_frame ? updating_frame : sf;
1127 highlight_if_desired ();
1128
1129 if (TS_ins_multi_chars)
1130 {
1131 buf = tparam (TS_ins_multi_chars, 0, 0, len);
1132 OUTPUT1 (buf);
1133 xfree (buf);
1134 if (start)
1135 write_glyphs (start, len);
1136 return;
1137 }
1138
1139 turn_on_insert ();
1140 cmplus (len);
1141 /* The bit CODING_MODE_LAST_BLOCK should be set to 1 only at the tail. */
1142 terminal_coding.mode &= ~CODING_MODE_LAST_BLOCK;
1143 while (len-- > 0)
1144 {
1145 int produced, consumed;
1146
1147 OUTPUT1_IF (TS_ins_char);
1148 if (!start)
1149 {
1150 conversion_buffer[0] = SPACEGLYPH;
1151 produced = 1;
1152 }
1153 else
1154 {
1155 turn_on_face (f, start->face_id);
1156 glyph = start;
1157 ++start;
1158 /* We must open sufficient space for a character which
1159 occupies more than one column. */
1160 while (len && CHAR_GLYPH_PADDING_P (*start))
1161 {
1162 OUTPUT1_IF (TS_ins_char);
1163 start++, len--;
1164 }
1165
1166 if (len <= 0)
1167 /* This is the last glyph. */
1168 terminal_coding.mode |= CODING_MODE_LAST_BLOCK;
1169
1170 /* We use shared conversion buffer of the current size (1024
1171 bytes at least). It is surely sufficient for just one glyph. */
1172 produced = encode_terminal_code (glyph, conversion_buffer, 1,
1173 conversion_buffer_size, &consumed);
1174 }
1175
1176 if (produced > 0)
1177 {
1178 fwrite (conversion_buffer, 1, produced, stdout);
1179 if (ferror (stdout))
1180 clearerr (stdout);
1181 if (termscript)
1182 fwrite (conversion_buffer, 1, produced, termscript);
1183 }
1184
1185 OUTPUT1_IF (TS_pad_inserted_char);
1186 if (start)
1187 turn_off_face (f, glyph->face_id);
1188 }
1189
1190 cmcheckmagic ();
1191 }
1192
1193 void
1194 delete_glyphs (n)
1195 register int n;
1196 {
1197 char *buf;
1198 register int i;
1199
1200 if (delete_glyphs_hook && ! FRAME_TERMCAP_P (updating_frame))
1201 {
1202 (*delete_glyphs_hook) (n);
1203 return;
1204 }
1205
1206 if (delete_in_insert_mode)
1207 {
1208 turn_on_insert ();
1209 }
1210 else
1211 {
1212 turn_off_insert ();
1213 OUTPUT_IF (TS_delete_mode);
1214 }
1215
1216 if (TS_del_multi_chars)
1217 {
1218 buf = tparam (TS_del_multi_chars, 0, 0, n);
1219 OUTPUT1 (buf);
1220 xfree (buf);
1221 }
1222 else
1223 for (i = 0; i < n; i++)
1224 OUTPUT1 (TS_del_char);
1225 if (!delete_in_insert_mode)
1226 OUTPUT_IF (TS_end_delete_mode);
1227 }
1228 \f
1229 /* Insert N lines at vpos VPOS. If N is negative, delete -N lines. */
1230
1231 void
1232 ins_del_lines (vpos, n)
1233 int vpos, n;
1234 {
1235 char *multi = n > 0 ? TS_ins_multi_lines : TS_del_multi_lines;
1236 char *single = n > 0 ? TS_ins_line : TS_del_line;
1237 char *scroll = n > 0 ? TS_rev_scroll : TS_fwd_scroll;
1238 struct frame *sf;
1239
1240 register int i = n > 0 ? n : -n;
1241 register char *buf;
1242
1243 if (ins_del_lines_hook && ! FRAME_TERMCAP_P (updating_frame))
1244 {
1245 (*ins_del_lines_hook) (vpos, n);
1246 return;
1247 }
1248
1249 sf = XFRAME (selected_frame);
1250
1251 /* If the lines below the insertion are being pushed
1252 into the end of the window, this is the same as clearing;
1253 and we know the lines are already clear, since the matching
1254 deletion has already been done. So can ignore this. */
1255 /* If the lines below the deletion are blank lines coming
1256 out of the end of the window, don't bother,
1257 as there will be a matching inslines later that will flush them. */
1258 if (scroll_region_ok && vpos + i >= specified_window)
1259 return;
1260 if (!memory_below_frame && vpos + i >= FRAME_HEIGHT (sf))
1261 return;
1262
1263 if (multi)
1264 {
1265 raw_cursor_to (vpos, 0);
1266 background_highlight ();
1267 buf = tparam (multi, 0, 0, i);
1268 OUTPUT (buf);
1269 xfree (buf);
1270 }
1271 else if (single)
1272 {
1273 raw_cursor_to (vpos, 0);
1274 background_highlight ();
1275 while (--i >= 0)
1276 OUTPUT (single);
1277 if (TF_teleray)
1278 curX = 0;
1279 }
1280 else
1281 {
1282 set_scroll_region (vpos, specified_window);
1283 if (n < 0)
1284 raw_cursor_to (specified_window - 1, 0);
1285 else
1286 raw_cursor_to (vpos, 0);
1287 background_highlight ();
1288 while (--i >= 0)
1289 OUTPUTL (scroll, specified_window - vpos);
1290 set_scroll_region (0, specified_window);
1291 }
1292
1293 if (TN_standout_width >= 0)
1294 {
1295 register int lower_limit
1296 = (scroll_region_ok
1297 ? specified_window
1298 : FRAME_HEIGHT (sf));
1299
1300 if (n < 0)
1301 {
1302 bcopy (&chars_wasted[vpos - n], &chars_wasted[vpos],
1303 lower_limit - vpos + n);
1304 bzero (&chars_wasted[lower_limit + n], - n);
1305 }
1306 else
1307 {
1308 bcopy (&chars_wasted[vpos], &copybuf[vpos], lower_limit - vpos - n);
1309 bcopy (&copybuf[vpos], &chars_wasted[vpos + n],
1310 lower_limit - vpos - n);
1311 bzero (&chars_wasted[vpos], n);
1312 }
1313 }
1314 if (!scroll_region_ok && memory_below_frame && n < 0)
1315 {
1316 cursor_to (FRAME_HEIGHT (sf) + n, 0);
1317 clear_to_end ();
1318 }
1319 }
1320 \f
1321 /* Compute cost of sending "str", in characters,
1322 not counting any line-dependent padding. */
1323
1324 int
1325 string_cost (str)
1326 char *str;
1327 {
1328 cost = 0;
1329 if (str)
1330 tputs (str, 0, evalcost);
1331 return cost;
1332 }
1333
1334 /* Compute cost of sending "str", in characters,
1335 counting any line-dependent padding at one line. */
1336
1337 static int
1338 string_cost_one_line (str)
1339 char *str;
1340 {
1341 cost = 0;
1342 if (str)
1343 tputs (str, 1, evalcost);
1344 return cost;
1345 }
1346
1347 /* Compute per line amount of line-dependent padding,
1348 in tenths of characters. */
1349
1350 int
1351 per_line_cost (str)
1352 register char *str;
1353 {
1354 cost = 0;
1355 if (str)
1356 tputs (str, 0, evalcost);
1357 cost = - cost;
1358 if (str)
1359 tputs (str, 10, evalcost);
1360 return cost;
1361 }
1362
1363 #ifndef old
1364 /* char_ins_del_cost[n] is cost of inserting N characters.
1365 char_ins_del_cost[-n] is cost of deleting N characters.
1366 The length of this vector is based on max_frame_width. */
1367
1368 int *char_ins_del_vector;
1369
1370 #define char_ins_del_cost(f) (&char_ins_del_vector[FRAME_WIDTH ((f))])
1371 #endif
1372
1373 /* ARGSUSED */
1374 static void
1375 calculate_ins_del_char_costs (frame)
1376 FRAME_PTR frame;
1377 {
1378 int ins_startup_cost, del_startup_cost;
1379 int ins_cost_per_char, del_cost_per_char;
1380 register int i;
1381 register int *p;
1382
1383 if (TS_ins_multi_chars)
1384 {
1385 ins_cost_per_char = 0;
1386 ins_startup_cost = string_cost_one_line (TS_ins_multi_chars);
1387 }
1388 else if (TS_ins_char || TS_pad_inserted_char
1389 || (TS_insert_mode && TS_end_insert_mode))
1390 {
1391 ins_startup_cost = (30 * (string_cost (TS_insert_mode)
1392 + string_cost (TS_end_insert_mode))) / 100;
1393 ins_cost_per_char = (string_cost_one_line (TS_ins_char)
1394 + string_cost_one_line (TS_pad_inserted_char));
1395 }
1396 else
1397 {
1398 ins_startup_cost = 9999;
1399 ins_cost_per_char = 0;
1400 }
1401
1402 if (TS_del_multi_chars)
1403 {
1404 del_cost_per_char = 0;
1405 del_startup_cost = string_cost_one_line (TS_del_multi_chars);
1406 }
1407 else if (TS_del_char)
1408 {
1409 del_startup_cost = (string_cost (TS_delete_mode)
1410 + string_cost (TS_end_delete_mode));
1411 if (delete_in_insert_mode)
1412 del_startup_cost /= 2;
1413 del_cost_per_char = string_cost_one_line (TS_del_char);
1414 }
1415 else
1416 {
1417 del_startup_cost = 9999;
1418 del_cost_per_char = 0;
1419 }
1420
1421 /* Delete costs are at negative offsets */
1422 p = &char_ins_del_cost (frame)[0];
1423 for (i = FRAME_WIDTH (frame); --i >= 0;)
1424 *--p = (del_startup_cost += del_cost_per_char);
1425
1426 /* Doing nothing is free */
1427 p = &char_ins_del_cost (frame)[0];
1428 *p++ = 0;
1429
1430 /* Insert costs are at positive offsets */
1431 for (i = FRAME_WIDTH (frame); --i >= 0;)
1432 *p++ = (ins_startup_cost += ins_cost_per_char);
1433 }
1434
1435 void
1436 calculate_costs (frame)
1437 FRAME_PTR frame;
1438 {
1439 register char *f = (TS_set_scroll_region
1440 ? TS_set_scroll_region
1441 : TS_set_scroll_region_1);
1442
1443 FRAME_COST_BAUD_RATE (frame) = baud_rate;
1444
1445 scroll_region_cost = string_cost (f);
1446
1447 /* These variables are only used for terminal stuff. They are allocated
1448 once for the terminal frame of X-windows emacs, but not used afterwards.
1449
1450 char_ins_del_vector (i.e., char_ins_del_cost) isn't used because
1451 X turns off char_ins_del_ok.
1452
1453 chars_wasted and copybuf are only used here in term.c in cases where
1454 the term hook isn't called. */
1455
1456 max_frame_height = max (max_frame_height, FRAME_HEIGHT (frame));
1457 max_frame_width = max (max_frame_width, FRAME_WIDTH (frame));
1458
1459 if (chars_wasted != 0)
1460 chars_wasted = (char *) xrealloc (chars_wasted, max_frame_height);
1461 else
1462 chars_wasted = (char *) xmalloc (max_frame_height);
1463
1464 if (copybuf != 0)
1465 copybuf = (char *) xrealloc (copybuf, max_frame_height);
1466 else
1467 copybuf = (char *) xmalloc (max_frame_height);
1468
1469 if (char_ins_del_vector != 0)
1470 char_ins_del_vector
1471 = (int *) xrealloc (char_ins_del_vector,
1472 (sizeof (int)
1473 + 2 * max_frame_width * sizeof (int)));
1474 else
1475 char_ins_del_vector
1476 = (int *) xmalloc (sizeof (int)
1477 + 2 * max_frame_width * sizeof (int));
1478
1479 bzero (chars_wasted, max_frame_height);
1480 bzero (copybuf, max_frame_height);
1481 bzero (char_ins_del_vector, (sizeof (int)
1482 + 2 * max_frame_width * sizeof (int)));
1483
1484 if (f && (!TS_ins_line && !TS_del_line))
1485 do_line_insertion_deletion_costs (frame,
1486 TS_rev_scroll, TS_ins_multi_lines,
1487 TS_fwd_scroll, TS_del_multi_lines,
1488 f, f, 1);
1489 else
1490 do_line_insertion_deletion_costs (frame,
1491 TS_ins_line, TS_ins_multi_lines,
1492 TS_del_line, TS_del_multi_lines,
1493 0, 0, 1);
1494
1495 calculate_ins_del_char_costs (frame);
1496
1497 /* Don't use TS_repeat if its padding is worse than sending the chars */
1498 if (TS_repeat && per_line_cost (TS_repeat) * baud_rate < 9000)
1499 RPov = string_cost (TS_repeat);
1500 else
1501 RPov = FRAME_WIDTH (frame) * 2;
1502
1503 cmcostinit (); /* set up cursor motion costs */
1504 }
1505 \f
1506 struct fkey_table {
1507 char *cap, *name;
1508 };
1509
1510 /* Termcap capability names that correspond directly to X keysyms.
1511 Some of these (marked "terminfo") aren't supplied by old-style
1512 (Berkeley) termcap entries. They're listed in X keysym order;
1513 except we put the keypad keys first, so that if they clash with
1514 other keys (as on the IBM PC keyboard) they get overridden.
1515 */
1516
1517 static struct fkey_table keys[] =
1518 {
1519 "kh", "home", /* termcap */
1520 "kl", "left", /* termcap */
1521 "ku", "up", /* termcap */
1522 "kr", "right", /* termcap */
1523 "kd", "down", /* termcap */
1524 "%8", "prior", /* terminfo */
1525 "%5", "next", /* terminfo */
1526 "@7", "end", /* terminfo */
1527 "@1", "begin", /* terminfo */
1528 "*6", "select", /* terminfo */
1529 "%9", "print", /* terminfo */
1530 "@4", "execute", /* terminfo --- actually the `command' key */
1531 /*
1532 * "insert" --- see below
1533 */
1534 "&8", "undo", /* terminfo */
1535 "%0", "redo", /* terminfo */
1536 "%7", "menu", /* terminfo --- actually the `options' key */
1537 "@0", "find", /* terminfo */
1538 "@2", "cancel", /* terminfo */
1539 "%1", "help", /* terminfo */
1540 /*
1541 * "break" goes here, but can't be reliably intercepted with termcap
1542 */
1543 "&4", "reset", /* terminfo --- actually `restart' */
1544 /*
1545 * "system" and "user" --- no termcaps
1546 */
1547 "kE", "clearline", /* terminfo */
1548 "kA", "insertline", /* terminfo */
1549 "kL", "deleteline", /* terminfo */
1550 "kI", "insertchar", /* terminfo */
1551 "kD", "deletechar", /* terminfo */
1552 "kB", "backtab", /* terminfo */
1553 /*
1554 * "kp_backtab", "kp-space", "kp-tab" --- no termcaps
1555 */
1556 "@8", "kp-enter", /* terminfo */
1557 /*
1558 * "kp-f1", "kp-f2", "kp-f3" "kp-f4",
1559 * "kp-multiply", "kp-add", "kp-separator",
1560 * "kp-subtract", "kp-decimal", "kp-divide", "kp-0";
1561 * --- no termcaps for any of these.
1562 */
1563 "K4", "kp-1", /* terminfo */
1564 /*
1565 * "kp-2" --- no termcap
1566 */
1567 "K5", "kp-3", /* terminfo */
1568 /*
1569 * "kp-4" --- no termcap
1570 */
1571 "K2", "kp-5", /* terminfo */
1572 /*
1573 * "kp-6" --- no termcap
1574 */
1575 "K1", "kp-7", /* terminfo */
1576 /*
1577 * "kp-8" --- no termcap
1578 */
1579 "K3", "kp-9", /* terminfo */
1580 /*
1581 * "kp-equal" --- no termcap
1582 */
1583 "k1", "f1",
1584 "k2", "f2",
1585 "k3", "f3",
1586 "k4", "f4",
1587 "k5", "f5",
1588 "k6", "f6",
1589 "k7", "f7",
1590 "k8", "f8",
1591 "k9", "f9",
1592 };
1593
1594 static char **term_get_fkeys_arg;
1595 static Lisp_Object term_get_fkeys_1 ();
1596
1597 /* Find the escape codes sent by the function keys for Vfunction_key_map.
1598 This function scans the termcap function key sequence entries, and
1599 adds entries to Vfunction_key_map for each function key it finds. */
1600
1601 void
1602 term_get_fkeys (address)
1603 char **address;
1604 {
1605 /* We run the body of the function (term_get_fkeys_1) and ignore all Lisp
1606 errors during the call. The only errors should be from Fdefine_key
1607 when given a key sequence containing an invalid prefix key. If the
1608 termcap defines function keys which use a prefix that is already bound
1609 to a command by the default bindings, we should silently ignore that
1610 function key specification, rather than giving the user an error and
1611 refusing to run at all on such a terminal. */
1612
1613 extern Lisp_Object Fidentity ();
1614 term_get_fkeys_arg = address;
1615 internal_condition_case (term_get_fkeys_1, Qerror, Fidentity);
1616 }
1617
1618 static Lisp_Object
1619 term_get_fkeys_1 ()
1620 {
1621 int i;
1622
1623 char **address = term_get_fkeys_arg;
1624
1625 /* This can happen if CANNOT_DUMP or with strange options. */
1626 if (!initialized)
1627 Vfunction_key_map = Fmake_sparse_keymap (Qnil);
1628
1629 for (i = 0; i < (sizeof (keys)/sizeof (keys[0])); i++)
1630 {
1631 char *sequence = tgetstr (keys[i].cap, address);
1632 if (sequence)
1633 Fdefine_key (Vfunction_key_map, build_string (sequence),
1634 Fmake_vector (make_number (1),
1635 intern (keys[i].name)));
1636 }
1637
1638 /* The uses of the "k0" capability are inconsistent; sometimes it
1639 describes F10, whereas othertimes it describes F0 and "k;" describes F10.
1640 We will attempt to politely accommodate both systems by testing for
1641 "k;", and if it is present, assuming that "k0" denotes F0, otherwise F10.
1642 */
1643 {
1644 char *k_semi = tgetstr ("k;", address);
1645 char *k0 = tgetstr ("k0", address);
1646 char *k0_name = "f10";
1647
1648 if (k_semi)
1649 {
1650 Fdefine_key (Vfunction_key_map, build_string (k_semi),
1651 Fmake_vector (make_number (1), intern ("f10")));
1652 k0_name = "f0";
1653 }
1654
1655 if (k0)
1656 Fdefine_key (Vfunction_key_map, build_string (k0),
1657 Fmake_vector (make_number (1), intern (k0_name)));
1658 }
1659
1660 /* Set up cookies for numbered function keys above f10. */
1661 {
1662 char fcap[3], fkey[4];
1663
1664 fcap[0] = 'F'; fcap[2] = '\0';
1665 for (i = 11; i < 64; i++)
1666 {
1667 if (i <= 19)
1668 fcap[1] = '1' + i - 11;
1669 else if (i <= 45)
1670 fcap[1] = 'A' + i - 20;
1671 else
1672 fcap[1] = 'a' + i - 46;
1673
1674 {
1675 char *sequence = tgetstr (fcap, address);
1676 if (sequence)
1677 {
1678 sprintf (fkey, "f%d", i);
1679 Fdefine_key (Vfunction_key_map, build_string (sequence),
1680 Fmake_vector (make_number (1),
1681 intern (fkey)));
1682 }
1683 }
1684 }
1685 }
1686
1687 /*
1688 * Various mappings to try and get a better fit.
1689 */
1690 {
1691 #define CONDITIONAL_REASSIGN(cap1, cap2, sym) \
1692 if (!tgetstr (cap1, address)) \
1693 { \
1694 char *sequence = tgetstr (cap2, address); \
1695 if (sequence) \
1696 Fdefine_key (Vfunction_key_map, build_string (sequence), \
1697 Fmake_vector (make_number (1), \
1698 intern (sym))); \
1699 }
1700
1701 /* if there's no key_next keycap, map key_npage to `next' keysym */
1702 CONDITIONAL_REASSIGN ("%5", "kN", "next");
1703 /* if there's no key_prev keycap, map key_ppage to `previous' keysym */
1704 CONDITIONAL_REASSIGN ("%8", "kP", "prior");
1705 /* if there's no key_dc keycap, map key_ic to `insert' keysym */
1706 CONDITIONAL_REASSIGN ("kD", "kI", "insert");
1707 /* if there's no key_end keycap, map key_ll to 'end' keysym */
1708 CONDITIONAL_REASSIGN ("@7", "kH", "end");
1709
1710 /* IBM has their own non-standard dialect of terminfo.
1711 If the standard name isn't found, try the IBM name. */
1712 CONDITIONAL_REASSIGN ("kB", "KO", "backtab");
1713 CONDITIONAL_REASSIGN ("@4", "kJ", "execute"); /* actually "action" */
1714 CONDITIONAL_REASSIGN ("@4", "kc", "execute"); /* actually "command" */
1715 CONDITIONAL_REASSIGN ("%7", "ki", "menu");
1716 CONDITIONAL_REASSIGN ("@7", "kw", "end");
1717 CONDITIONAL_REASSIGN ("F1", "k<", "f11");
1718 CONDITIONAL_REASSIGN ("F2", "k>", "f12");
1719 CONDITIONAL_REASSIGN ("%1", "kq", "help");
1720 CONDITIONAL_REASSIGN ("*6", "kU", "select");
1721 #undef CONDITIONAL_REASSIGN
1722 }
1723
1724 return Qnil;
1725 }
1726
1727 \f
1728 /***********************************************************************
1729 Character Display Information
1730 ***********************************************************************/
1731
1732 static void append_glyph P_ ((struct it *));
1733
1734
1735 /* Append glyphs to IT's glyph_row. Called from produce_glyphs for
1736 terminal frames if IT->glyph_row != NULL. IT->c is the character
1737 for which to produce glyphs; IT->face_id contains the character's
1738 face. Padding glyphs are appended if IT->c has a IT->pixel_width >
1739 1. */
1740
1741 static void
1742 append_glyph (it)
1743 struct it *it;
1744 {
1745 struct glyph *glyph, *end;
1746 int i;
1747
1748 xassert (it->glyph_row);
1749 glyph = (it->glyph_row->glyphs[it->area]
1750 + it->glyph_row->used[it->area]);
1751 end = it->glyph_row->glyphs[1 + it->area];
1752
1753 for (i = 0;
1754 i < it->pixel_width && glyph < end;
1755 ++i)
1756 {
1757 glyph->type = CHAR_GLYPH;
1758 glyph->pixel_width = 1;
1759 glyph->u.ch = it->c;
1760 glyph->face_id = it->face_id;
1761 glyph->padding_p = i > 0;
1762 glyph->charpos = CHARPOS (it->position);
1763 glyph->object = it->object;
1764
1765 ++it->glyph_row->used[it->area];
1766 ++glyph;
1767 }
1768 }
1769
1770
1771 /* Produce glyphs for the display element described by IT. The
1772 function fills output fields of IT with pixel information like the
1773 pixel width and height of a character, and maybe produces glyphs at
1774 the same time if IT->glyph_row is non-null. See the explanation of
1775 struct display_iterator in dispextern.h for an overview. */
1776
1777 void
1778 produce_glyphs (it)
1779 struct it *it;
1780 {
1781 /* If a hook is installed, let it do the work. */
1782 xassert (it->what == IT_CHARACTER
1783 || it->what == IT_COMPOSITION
1784 || it->what == IT_IMAGE
1785 || it->what == IT_STRETCH);
1786
1787 /* Nothing but characters are supported on terminal frames. For a
1788 composition sequence, it->c is the first character of the
1789 sequence. */
1790 xassert (it->what == IT_CHARACTER
1791 || it->what == IT_COMPOSITION);
1792
1793 if (it->c >= 040 && it->c < 0177)
1794 {
1795 it->pixel_width = it->nglyphs = 1;
1796 if (it->glyph_row)
1797 append_glyph (it);
1798 }
1799 else if (it->c == '\n')
1800 it->pixel_width = it->nglyphs = 0;
1801 else if (it->c == '\t')
1802 {
1803 int absolute_x = (it->current_x - it->prompt_width
1804 + it->continuation_lines_width);
1805 int next_tab_x
1806 = (((1 + absolute_x + it->tab_width - 1)
1807 / it->tab_width)
1808 * it->tab_width);
1809 int nspaces;
1810
1811 /* If part of the TAB has been displayed on the previous line
1812 which is continued now, continuation_lines_width will have
1813 been incremented already by the part that fitted on the
1814 continued line. So, we will get the right number of spaces
1815 here. */
1816 nspaces = next_tab_x - absolute_x;
1817
1818 if (it->glyph_row)
1819 {
1820 int n = nspaces;
1821
1822 it->c = ' ';
1823 it->pixel_width = it->len = 1;
1824
1825 while (n--)
1826 append_glyph (it);
1827
1828 it->c = '\t';
1829 }
1830
1831 it->pixel_width = nspaces;
1832 it->nglyphs = nspaces;
1833 }
1834 else
1835 {
1836 /* A multi-byte character. The display width is fixed for all
1837 characters of the set. Some of the glyphs may have to be
1838 ignored because they are already displayed in a continued
1839 line. */
1840 int charset = CHAR_CHARSET (it->c);
1841
1842 it->pixel_width = CHARSET_WIDTH (charset);
1843 it->nglyphs = it->pixel_width;
1844
1845 if (it->glyph_row)
1846 append_glyph (it);
1847 }
1848
1849 /* Advance current_x by the pixel width as a convenience for
1850 the caller. */
1851 if (it->area == TEXT_AREA)
1852 it->current_x += it->pixel_width;
1853 it->ascent = it->max_ascent = it->phys_ascent = it->max_phys_ascent = 0;
1854 it->descent = it->max_descent = it->phys_descent = it->max_phys_descent = 1;
1855 }
1856
1857
1858 /* Get information about special display element WHAT in an
1859 environment described by IT. WHAT is one of IT_TRUNCATION or
1860 IT_CONTINUATION. Maybe produce glyphs for WHAT if IT has a
1861 non-null glyph_row member. This function ensures that fields like
1862 face_id, c, len of IT are left untouched. */
1863
1864 void
1865 produce_special_glyphs (it, what)
1866 struct it *it;
1867 enum display_element_type what;
1868 {
1869 struct it temp_it;
1870
1871 temp_it = *it;
1872 temp_it.dp = NULL;
1873 temp_it.what = IT_CHARACTER;
1874 temp_it.len = 1;
1875 temp_it.object = 0;
1876 bzero (&temp_it.current, sizeof temp_it.current);
1877
1878 if (what == IT_CONTINUATION)
1879 {
1880 /* Continuation glyph. */
1881 if (it->dp
1882 && INTEGERP (DISP_CONTINUE_GLYPH (it->dp))
1883 && GLYPH_CHAR_VALID_P (XINT (DISP_CONTINUE_GLYPH (it->dp))))
1884 {
1885 temp_it.c = FAST_GLYPH_CHAR (XINT (DISP_CONTINUE_GLYPH (it->dp)));
1886 temp_it.len = CHAR_LEN (temp_it.c);
1887 }
1888 else
1889 temp_it.c = '\\';
1890
1891 produce_glyphs (&temp_it);
1892 it->pixel_width = temp_it.pixel_width;
1893 it->nglyphs = temp_it.pixel_width;
1894 }
1895 else if (what == IT_TRUNCATION)
1896 {
1897 /* Truncation glyph. */
1898 if (it->dp
1899 && INTEGERP (DISP_TRUNC_GLYPH (it->dp))
1900 && GLYPH_CHAR_VALID_P (XINT (DISP_TRUNC_GLYPH (it->dp))))
1901 {
1902 temp_it.c = FAST_GLYPH_CHAR (XINT (DISP_TRUNC_GLYPH (it->dp)));
1903 temp_it.len = CHAR_LEN (temp_it.c);
1904 }
1905 else
1906 temp_it.c = '$';
1907
1908 produce_glyphs (&temp_it);
1909 it->pixel_width = temp_it.pixel_width;
1910 it->nglyphs = temp_it.pixel_width;
1911 }
1912 else
1913 abort ();
1914 }
1915
1916
1917 /* Return an estimation of the pixel height of mode or top lines on
1918 frame F. FACE_ID specifies what line's height to estimate. */
1919
1920 int
1921 estimate_mode_line_height (f, face_id)
1922 struct frame *f;
1923 enum face_id face_id;
1924 {
1925 if (estimate_mode_line_height_hook)
1926 return estimate_mode_line_height_hook (f, face_id);
1927 else
1928 return 1;
1929 }
1930
1931
1932 \f
1933 /***********************************************************************
1934 Faces
1935 ***********************************************************************/
1936
1937
1938 /* Turn appearances of face FACE_ID on tty frame F on. */
1939
1940 static void
1941 turn_on_face (f, face_id)
1942 struct frame *f;
1943 int face_id;
1944 {
1945 struct face *face = FACE_FROM_ID (f, face_id);
1946
1947 xassert (face != NULL);
1948
1949 if (face->tty_bold_p)
1950 OUTPUT1_IF (TS_enter_bold_mode);
1951 else if (face->tty_dim_p)
1952 OUTPUT1_IF (TS_enter_dim_mode);
1953
1954 /* Alternate charset and blinking not yet used. */
1955 if (face->tty_alt_charset_p)
1956 OUTPUT1_IF (TS_enter_alt_charset_mode);
1957
1958 if (face->tty_blinking_p)
1959 OUTPUT1_IF (TS_enter_blink_mode);
1960
1961 if (face->tty_underline_p
1962 /* Don't underline if that's difficult. */
1963 && TN_magic_cookie_glitch_ul <= 0)
1964 OUTPUT1_IF (TS_enter_underline_mode);
1965
1966 if (face->tty_reverse_p
1967 || face->foreground == FACE_TTY_DEFAULT_BG_COLOR
1968 || face->background == FACE_TTY_DEFAULT_FG_COLOR)
1969 OUTPUT1_IF (TS_enter_reverse_mode);
1970
1971 if (TN_max_colors > 0)
1972 {
1973 char *p;
1974
1975 if (face->foreground != FACE_TTY_DEFAULT_COLOR
1976 && face->foreground != FACE_TTY_DEFAULT_FG_COLOR
1977 && face->foreground != FACE_TTY_DEFAULT_BG_COLOR
1978 && TS_set_foreground)
1979 {
1980 p = tparam (TS_set_foreground, NULL, 0, (int) face->foreground);
1981 OUTPUT (p);
1982 xfree (p);
1983 }
1984
1985 if (face->background != FACE_TTY_DEFAULT_COLOR
1986 && face->background != FACE_TTY_DEFAULT_BG_COLOR
1987 && face->background != FACE_TTY_DEFAULT_FG_COLOR
1988 && TS_set_background)
1989 {
1990 p = tparam (TS_set_background, NULL, 0, (int) face->background);
1991 OUTPUT (p);
1992 xfree (p);
1993 }
1994 }
1995 }
1996
1997
1998 /* Turn off appearances of face FACE_ID on tty frame F. */
1999
2000 static void
2001 turn_off_face (f, face_id)
2002 struct frame *f;
2003 int face_id;
2004 {
2005 struct face *face = FACE_FROM_ID (f, face_id);
2006
2007 xassert (face != NULL);
2008
2009 if (TS_exit_attribute_mode)
2010 {
2011 /* Capability "me" will turn off appearance modes double-bright,
2012 half-bright, reverse-video, standout, underline. It may or
2013 may not turn off alt-char-mode. */
2014 if (face->tty_bold_p
2015 || face->tty_dim_p
2016 || face->tty_reverse_p
2017 || face->tty_alt_charset_p
2018 || face->tty_blinking_p
2019 || face->tty_underline_p)
2020 OUTPUT1_IF (TS_exit_attribute_mode);
2021
2022 if (face->tty_alt_charset_p)
2023 OUTPUT_IF (TS_exit_alt_charset_mode);
2024 }
2025 else
2026 {
2027 /* If we don't have "me" we can only have those appearances
2028 that have exit sequences defined. */
2029 if (face->tty_alt_charset_p)
2030 OUTPUT_IF (TS_exit_alt_charset_mode);
2031
2032 if (face->tty_underline_p
2033 /* We don't underline if that's difficult. */
2034 && TN_magic_cookie_glitch_ul <= 0)
2035 OUTPUT_IF (TS_exit_underline_mode);
2036 }
2037
2038 /* Switch back to default colors. */
2039 if (TN_max_colors > 0
2040 && ((face->foreground != FACE_TTY_DEFAULT_COLOR
2041 && face->foreground != FACE_TTY_DEFAULT_FG_COLOR)
2042 || (face->background != FACE_TTY_DEFAULT_COLOR
2043 && face->background != FACE_TTY_DEFAULT_BG_COLOR)))
2044 OUTPUT1_IF (TS_orig_pair);
2045 }
2046
2047
2048 /* Return non-zero if the terminal is capable to display colors. */
2049
2050 DEFUN ("tty-display-color-p", Ftty_display_color_p, Stty_display_color_p,
2051 0, 1, 0,
2052 "Return non-nil if TTY can display colors on FRAME.")
2053 (frame)
2054 Lisp_Object frame;
2055 {
2056 return TN_max_colors > 0 ? Qt : Qnil;
2057 }
2058
2059
2060
2061 \f
2062 /***********************************************************************
2063 Initialization
2064 ***********************************************************************/
2065
2066 void
2067 term_init (terminal_type)
2068 char *terminal_type;
2069 {
2070 char *area;
2071 char **address = &area;
2072 char buffer[2044];
2073 register char *p;
2074 int status;
2075 struct frame *sf = XFRAME (selected_frame);
2076
2077 #ifdef WINDOWSNT
2078 initialize_w32_display ();
2079
2080 Wcm_clear ();
2081
2082 area = (char *) xmalloc (2044);
2083
2084 if (area == 0)
2085 abort ();
2086
2087 FrameRows = FRAME_HEIGHT (sf);
2088 FrameCols = FRAME_WIDTH (sf);
2089 specified_window = FRAME_HEIGHT (sf);
2090
2091 delete_in_insert_mode = 1;
2092
2093 UseTabs = 0;
2094 scroll_region_ok = 0;
2095
2096 /* Seems to insert lines when it's not supposed to, messing
2097 up the display. In doing a trace, it didn't seem to be
2098 called much, so I don't think we're losing anything by
2099 turning it off. */
2100
2101 line_ins_del_ok = 0;
2102 char_ins_del_ok = 1;
2103
2104 baud_rate = 19200;
2105
2106 FRAME_CAN_HAVE_SCROLL_BARS (sf) = 0;
2107 FRAME_VERTICAL_SCROLL_BAR_TYPE (sf) = vertical_scroll_bar_none;
2108 TN_max_colors = 16; /* Required to be non-zero for tty-display-color-p */
2109
2110 return;
2111 #else /* not WINDOWSNT */
2112
2113 Wcm_clear ();
2114
2115 status = tgetent (buffer, terminal_type);
2116 if (status < 0)
2117 {
2118 #ifdef TERMINFO
2119 fatal ("Cannot open terminfo database file");
2120 #else
2121 fatal ("Cannot open termcap database file");
2122 #endif
2123 }
2124 if (status == 0)
2125 {
2126 #ifdef TERMINFO
2127 fatal ("Terminal type %s is not defined.\n\
2128 If that is not the actual type of terminal you have,\n\
2129 use the Bourne shell command `TERM=... export TERM' (C-shell:\n\
2130 `setenv TERM ...') to specify the correct type. It may be necessary\n\
2131 to do `unset TERMINFO' (C-shell: `unsetenv TERMINFO') as well.",
2132 terminal_type);
2133 #else
2134 fatal ("Terminal type %s is not defined.\n\
2135 If that is not the actual type of terminal you have,\n\
2136 use the Bourne shell command `TERM=... export TERM' (C-shell:\n\
2137 `setenv TERM ...') to specify the correct type. It may be necessary\n\
2138 to do `unset TERMCAP' (C-shell: `unsetenv TERMCAP') as well.",
2139 terminal_type);
2140 #endif
2141 }
2142 #ifdef TERMINFO
2143 area = (char *) xmalloc (2044);
2144 #else
2145 area = (char *) xmalloc (strlen (buffer));
2146 #endif /* not TERMINFO */
2147 if (area == 0)
2148 abort ();
2149
2150 TS_ins_line = tgetstr ("al", address);
2151 TS_ins_multi_lines = tgetstr ("AL", address);
2152 TS_bell = tgetstr ("bl", address);
2153 BackTab = tgetstr ("bt", address);
2154 TS_clr_to_bottom = tgetstr ("cd", address);
2155 TS_clr_line = tgetstr ("ce", address);
2156 TS_clr_frame = tgetstr ("cl", address);
2157 ColPosition = tgetstr ("ch", address);
2158 AbsPosition = tgetstr ("cm", address);
2159 CR = tgetstr ("cr", address);
2160 TS_set_scroll_region = tgetstr ("cs", address);
2161 TS_set_scroll_region_1 = tgetstr ("cS", address);
2162 RowPosition = tgetstr ("cv", address);
2163 TS_del_char = tgetstr ("dc", address);
2164 TS_del_multi_chars = tgetstr ("DC", address);
2165 TS_del_line = tgetstr ("dl", address);
2166 TS_del_multi_lines = tgetstr ("DL", address);
2167 TS_delete_mode = tgetstr ("dm", address);
2168 TS_end_delete_mode = tgetstr ("ed", address);
2169 TS_end_insert_mode = tgetstr ("ei", address);
2170 Home = tgetstr ("ho", address);
2171 TS_ins_char = tgetstr ("ic", address);
2172 TS_ins_multi_chars = tgetstr ("IC", address);
2173 TS_insert_mode = tgetstr ("im", address);
2174 TS_pad_inserted_char = tgetstr ("ip", address);
2175 TS_end_keypad_mode = tgetstr ("ke", address);
2176 TS_keypad_mode = tgetstr ("ks", address);
2177 LastLine = tgetstr ("ll", address);
2178 Right = tgetstr ("nd", address);
2179 Down = tgetstr ("do", address);
2180 if (!Down)
2181 Down = tgetstr ("nl", address); /* Obsolete name for "do" */
2182 #ifdef VMS
2183 /* VMS puts a carriage return before each linefeed,
2184 so it is not safe to use linefeeds. */
2185 if (Down && Down[0] == '\n' && Down[1] == '\0')
2186 Down = 0;
2187 #endif /* VMS */
2188 if (tgetflag ("bs"))
2189 Left = "\b"; /* can't possibly be longer! */
2190 else /* (Actually, "bs" is obsolete...) */
2191 Left = tgetstr ("le", address);
2192 if (!Left)
2193 Left = tgetstr ("bc", address); /* Obsolete name for "le" */
2194 TS_pad_char = tgetstr ("pc", address);
2195 TS_repeat = tgetstr ("rp", address);
2196 TS_end_standout_mode = tgetstr ("se", address);
2197 TS_fwd_scroll = tgetstr ("sf", address);
2198 TS_standout_mode = tgetstr ("so", address);
2199 TS_rev_scroll = tgetstr ("sr", address);
2200 Wcm.cm_tab = tgetstr ("ta", address);
2201 TS_end_termcap_modes = tgetstr ("te", address);
2202 TS_termcap_modes = tgetstr ("ti", address);
2203 Up = tgetstr ("up", address);
2204 TS_visible_bell = tgetstr ("vb", address);
2205 TS_cursor_normal = tgetstr ("ve", address);
2206 TS_cursor_visible = tgetstr ("vs", address);
2207 TS_cursor_invisible = tgetstr ("vi", address);
2208 TS_set_window = tgetstr ("wi", address);
2209
2210 TS_enter_underline_mode = tgetstr ("us", address);
2211 TS_exit_underline_mode = tgetstr ("ue", address);
2212 TN_magic_cookie_glitch_ul = tgetnum ("ug");
2213 TS_enter_bold_mode = tgetstr ("md", address);
2214 TS_enter_dim_mode = tgetstr ("mh", address);
2215 TS_enter_blink_mode = tgetstr ("mb", address);
2216 TS_enter_reverse_mode = tgetstr ("mr", address);
2217 TS_enter_alt_charset_mode = tgetstr ("as", address);
2218 TS_exit_alt_charset_mode = tgetstr ("ae", address);
2219 TS_exit_attribute_mode = tgetstr ("me", address);
2220
2221 MultiUp = tgetstr ("UP", address);
2222 MultiDown = tgetstr ("DO", address);
2223 MultiLeft = tgetstr ("LE", address);
2224 MultiRight = tgetstr ("RI", address);
2225
2226 /* SVr4/ANSI color suppert. If "op" isn't available, don't support
2227 color because we can't switch back to the default foreground and
2228 background. */
2229 TS_orig_pair = tgetstr ("op", address);
2230 if (TS_orig_pair)
2231 {
2232 TS_set_foreground = tgetstr ("AF", address);
2233 TS_set_background = tgetstr ("AB", address);
2234 if (!TS_set_foreground)
2235 {
2236 /* SVr4. */
2237 TS_set_foreground = tgetstr ("Sf", address);
2238 TS_set_background = tgetstr ("Sb", address);
2239 }
2240 TN_max_colors = tgetnum ("Co");
2241 TN_max_pairs = tgetnum ("pa");
2242 }
2243
2244 MagicWrap = tgetflag ("xn");
2245 /* Since we make MagicWrap terminals look like AutoWrap, we need to have
2246 the former flag imply the latter. */
2247 AutoWrap = MagicWrap || tgetflag ("am");
2248 memory_below_frame = tgetflag ("db");
2249 TF_hazeltine = tgetflag ("hz");
2250 must_write_spaces = tgetflag ("in");
2251 meta_key = tgetflag ("km") || tgetflag ("MT");
2252 TF_insmode_motion = tgetflag ("mi");
2253 TF_standout_motion = tgetflag ("ms");
2254 TF_underscore = tgetflag ("ul");
2255 TF_xs = tgetflag ("xs");
2256 TF_teleray = tgetflag ("xt");
2257
2258 term_get_fkeys (address);
2259
2260 /* Get frame size from system, or else from termcap. */
2261 {
2262 int height, width;
2263 get_frame_size (&width, &height);
2264 FRAME_WIDTH (sf) = width;
2265 FRAME_HEIGHT (sf) = height;
2266 }
2267
2268 if (FRAME_WIDTH (sf) <= 0)
2269 SET_FRAME_WIDTH (sf, tgetnum ("co"));
2270 else
2271 /* Keep width and external_width consistent */
2272 SET_FRAME_WIDTH (sf, FRAME_WIDTH (sf));
2273 if (FRAME_HEIGHT (sf) <= 0)
2274 FRAME_HEIGHT (sf) = tgetnum ("li");
2275
2276 if (FRAME_HEIGHT (sf) < 3 || FRAME_WIDTH (sf) < 3)
2277 fatal ("Screen size %dx%d is too small",
2278 FRAME_HEIGHT (sf), FRAME_WIDTH (sf));
2279
2280 min_padding_speed = tgetnum ("pb");
2281 TN_standout_width = tgetnum ("sg");
2282 TabWidth = tgetnum ("tw");
2283
2284 #ifdef VMS
2285 /* These capabilities commonly use ^J.
2286 I don't know why, but sending them on VMS does not work;
2287 it causes following spaces to be lost, sometimes.
2288 For now, the simplest fix is to avoid using these capabilities ever. */
2289 if (Down && Down[0] == '\n')
2290 Down = 0;
2291 #endif /* VMS */
2292
2293 if (!TS_bell)
2294 TS_bell = "\07";
2295
2296 if (!TS_fwd_scroll)
2297 TS_fwd_scroll = Down;
2298
2299 PC = TS_pad_char ? *TS_pad_char : 0;
2300
2301 if (TabWidth < 0)
2302 TabWidth = 8;
2303
2304 /* Turned off since /etc/termcap seems to have :ta= for most terminals
2305 and newer termcap doc does not seem to say there is a default.
2306 if (!Wcm.cm_tab)
2307 Wcm.cm_tab = "\t";
2308 */
2309
2310 if (TS_standout_mode == 0)
2311 {
2312 TN_standout_width = tgetnum ("ug");
2313 TS_end_standout_mode = tgetstr ("ue", address);
2314 TS_standout_mode = tgetstr ("us", address);
2315 }
2316
2317 /* If no `se' string, try using a `me' string instead.
2318 If that fails, we can't use standout mode at all. */
2319 if (TS_end_standout_mode == 0)
2320 {
2321 char *s = tgetstr ("me", address);
2322 if (s != 0)
2323 TS_end_standout_mode = s;
2324 else
2325 TS_standout_mode = 0;
2326 }
2327
2328 if (TF_teleray)
2329 {
2330 Wcm.cm_tab = 0;
2331 /* Teleray: most programs want a space in front of TS_standout_mode,
2332 but Emacs can do without it (and give one extra column). */
2333 TS_standout_mode = "\033RD";
2334 TN_standout_width = 1;
2335 /* But that means we cannot rely on ^M to go to column zero! */
2336 CR = 0;
2337 /* LF can't be trusted either -- can alter hpos */
2338 /* if move at column 0 thru a line with TS_standout_mode */
2339 Down = 0;
2340 }
2341
2342 /* Special handling for certain terminal types known to need it */
2343
2344 if (!strcmp (terminal_type, "supdup"))
2345 {
2346 memory_below_frame = 1;
2347 Wcm.cm_losewrap = 1;
2348 }
2349 if (!strncmp (terminal_type, "c10", 3)
2350 || !strcmp (terminal_type, "perq"))
2351 {
2352 /* Supply a makeshift :wi string.
2353 This string is not valid in general since it works only
2354 for windows starting at the upper left corner;
2355 but that is all Emacs uses.
2356
2357 This string works only if the frame is using
2358 the top of the video memory, because addressing is memory-relative.
2359 So first check the :ti string to see if that is true.
2360
2361 It would be simpler if the :wi string could go in the termcap
2362 entry, but it can't because it is not fully valid.
2363 If it were in the termcap entry, it would confuse other programs. */
2364 if (!TS_set_window)
2365 {
2366 p = TS_termcap_modes;
2367 while (*p && strcmp (p, "\033v "))
2368 p++;
2369 if (*p)
2370 TS_set_window = "\033v%C %C %C %C ";
2371 }
2372 /* Termcap entry often fails to have :in: flag */
2373 must_write_spaces = 1;
2374 /* :ti string typically fails to have \E^G! in it */
2375 /* This limits scope of insert-char to one line. */
2376 strcpy (area, TS_termcap_modes);
2377 strcat (area, "\033\007!");
2378 TS_termcap_modes = area;
2379 area += strlen (area) + 1;
2380 p = AbsPosition;
2381 /* Change all %+ parameters to %C, to handle
2382 values above 96 correctly for the C100. */
2383 while (*p)
2384 {
2385 if (p[0] == '%' && p[1] == '+')
2386 p[1] = 'C';
2387 p++;
2388 }
2389 }
2390
2391 FrameRows = FRAME_HEIGHT (sf);
2392 FrameCols = FRAME_WIDTH (sf);
2393 specified_window = FRAME_HEIGHT (sf);
2394
2395 if (Wcm_init () == -1) /* can't do cursor motion */
2396 #ifdef VMS
2397 fatal ("Terminal type \"%s\" is not powerful enough to run Emacs.\n\
2398 It lacks the ability to position the cursor.\n\
2399 If that is not the actual type of terminal you have, use either the\n\
2400 DCL command `SET TERMINAL/DEVICE= ...' for DEC-compatible terminals,\n\
2401 or `define EMACS_TERM \"terminal type\"' for non-DEC terminals.",
2402 terminal_type);
2403 #else /* not VMS */
2404 # ifdef TERMINFO
2405 fatal ("Terminal type \"%s\" is not powerful enough to run Emacs.\n\
2406 It lacks the ability to position the cursor.\n\
2407 If that is not the actual type of terminal you have,\n\
2408 use the Bourne shell command `TERM=... export TERM' (C-shell:\n\
2409 `setenv TERM ...') to specify the correct type. It may be necessary\n\
2410 to do `unset TERMINFO' (C-shell: `unsetenv TERMINFO') as well.",
2411 terminal_type);
2412 # else /* TERMCAP */
2413 fatal ("Terminal type \"%s\" is not powerful enough to run Emacs.\n\
2414 It lacks the ability to position the cursor.\n\
2415 If that is not the actual type of terminal you have,\n\
2416 use the Bourne shell command `TERM=... export TERM' (C-shell:\n\
2417 `setenv TERM ...') to specify the correct type. It may be necessary\n\
2418 to do `unset TERMCAP' (C-shell: `unsetenv TERMCAP') as well.",
2419 terminal_type);
2420 # endif /* TERMINFO */
2421 #endif /*VMS */
2422 if (FRAME_HEIGHT (sf) <= 0
2423 || FRAME_WIDTH (sf) <= 0)
2424 fatal ("The frame size has not been specified");
2425
2426 delete_in_insert_mode
2427 = TS_delete_mode && TS_insert_mode
2428 && !strcmp (TS_delete_mode, TS_insert_mode);
2429
2430 se_is_so = (TS_standout_mode
2431 && TS_end_standout_mode
2432 && !strcmp (TS_standout_mode, TS_end_standout_mode));
2433
2434 /* Remove width of standout marker from usable width of line */
2435 if (TN_standout_width > 0)
2436 SET_FRAME_WIDTH (sf, FRAME_WIDTH (sf) - TN_standout_width);
2437
2438 UseTabs = tabs_safe_p () && TabWidth == 8;
2439
2440 scroll_region_ok
2441 = (Wcm.cm_abs
2442 && (TS_set_window || TS_set_scroll_region || TS_set_scroll_region_1));
2443
2444 line_ins_del_ok = (((TS_ins_line || TS_ins_multi_lines)
2445 && (TS_del_line || TS_del_multi_lines))
2446 || (scroll_region_ok && TS_fwd_scroll && TS_rev_scroll));
2447
2448 char_ins_del_ok = ((TS_ins_char || TS_insert_mode
2449 || TS_pad_inserted_char || TS_ins_multi_chars)
2450 && (TS_del_char || TS_del_multi_chars));
2451
2452 fast_clear_end_of_line = TS_clr_line != 0;
2453
2454 init_baud_rate ();
2455 if (read_socket_hook) /* Baudrate is somewhat */
2456 /* meaningless in this case */
2457 baud_rate = 9600;
2458
2459 FRAME_CAN_HAVE_SCROLL_BARS (sf) = 0;
2460 FRAME_VERTICAL_SCROLL_BAR_TYPE (sf) = vertical_scroll_bar_none;
2461 #endif /* WINDOWSNT */
2462 }
2463
2464 /* VARARGS 1 */
2465 void
2466 fatal (str, arg1, arg2)
2467 char *str, *arg1, *arg2;
2468 {
2469 fprintf (stderr, "emacs: ");
2470 fprintf (stderr, str, arg1, arg2);
2471 fprintf (stderr, "\n");
2472 fflush (stderr);
2473 exit (1);
2474 }
2475
2476 void
2477 syms_of_term ()
2478 {
2479 DEFVAR_BOOL ("system-uses-terminfo", &system_uses_terminfo,
2480 "Non-nil means the system uses terminfo rather than termcap.\n\
2481 This variable can be used by terminal emulator packages.");
2482 #ifdef TERMINFO
2483 system_uses_terminfo = 1;
2484 #else
2485 system_uses_terminfo = 0;
2486 #endif
2487
2488 DEFVAR_LISP ("ring-bell-function", &Vring_bell_function,
2489 "Non-nil means call this function to ring the bell.\n\
2490 The function should accept no arguments.");
2491 Vring_bell_function = Qnil;
2492
2493 defsubr (&Stty_display_color_p);
2494 }
2495