Merge from emacs-24; up to 2014-04-22T20:19:17Z!eggert@cs.ucla.edu
[bpt/emacs.git] / src / term.c
1 /* Terminal control module for terminals described by TERMCAP
2 Copyright (C) 1985-1987, 1993-1995, 1998, 2000-2014 Free Software
3 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 3 of the License, or
10 (at your option) 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. If not, see <http://www.gnu.org/licenses/>. */
19
20 /* New redisplay, TTY faces by Gerd Moellmann <gerd@gnu.org>. */
21
22 #include <config.h>
23 #include <errno.h>
24 #include <fcntl.h>
25 #include <stdio.h>
26 #include <sys/file.h>
27 #include <sys/time.h>
28 #include <unistd.h>
29
30 #include "lisp.h"
31 #include "termchar.h"
32 #include "tparam.h"
33 #include "character.h"
34 #include "buffer.h"
35 #include "charset.h"
36 #include "coding.h"
37 #include "composite.h"
38 #include "keyboard.h"
39 #include "frame.h"
40 #include "disptab.h"
41 #include "termhooks.h"
42 #include "dispextern.h"
43 #include "window.h"
44 #include "keymap.h"
45 #include "blockinput.h"
46 #include "syssignal.h"
47 #include "systty.h"
48 #include "intervals.h"
49 #ifdef MSDOS
50 #include "msdos.h"
51 static int been_here = -1;
52 #endif
53
54 #ifdef USE_X_TOOLKIT
55 #include "../lwlib/lwlib.h"
56 #endif
57
58 #include "cm.h"
59 #ifdef HAVE_X_WINDOWS
60 #include "xterm.h"
61 #endif
62
63 #include "menu.h"
64
65 /* The name of the default console device. */
66 #ifdef WINDOWSNT
67 #define DEV_TTY "CONOUT$"
68 #include "w32term.h"
69 #else
70 #define DEV_TTY "/dev/tty"
71 #endif
72
73 static void tty_set_scroll_region (struct frame *f, int start, int stop);
74 static void turn_on_face (struct frame *, int face_id);
75 static void turn_off_face (struct frame *, int face_id);
76 static void tty_turn_off_highlight (struct tty_display_info *);
77 static void tty_show_cursor (struct tty_display_info *);
78 static void tty_hide_cursor (struct tty_display_info *);
79 static void tty_background_highlight (struct tty_display_info *tty);
80 static struct terminal *get_tty_terminal (Lisp_Object, bool);
81 static void clear_tty_hooks (struct terminal *terminal);
82 static void set_tty_hooks (struct terminal *terminal);
83 static void dissociate_if_controlling_tty (int fd);
84 static void delete_tty (struct terminal *);
85 static _Noreturn void maybe_fatal (bool, struct terminal *,
86 const char *, const char *, ...)
87 ATTRIBUTE_FORMAT_PRINTF (3, 5) ATTRIBUTE_FORMAT_PRINTF (4, 5);
88 static _Noreturn void vfatal (const char *str, va_list ap)
89 ATTRIBUTE_FORMAT_PRINTF (1, 0);
90
91
92 #define OUTPUT(tty, a) \
93 emacs_tputs ((tty), a, \
94 FRAME_LINES (XFRAME (selected_frame)) - curY (tty), \
95 cmputc)
96
97 #define OUTPUT1(tty, a) emacs_tputs ((tty), a, 1, cmputc)
98 #define OUTPUTL(tty, a, lines) emacs_tputs ((tty), a, lines, cmputc)
99
100 #define OUTPUT_IF(tty, a) \
101 do { \
102 if (a) \
103 OUTPUT (tty, a); \
104 } while (0)
105
106 #define OUTPUT1_IF(tty, a) do { if (a) emacs_tputs ((tty), a, 1, cmputc); } while (0)
107
108 /* Display space properties */
109
110 /* Chain of all tty device parameters. */
111 struct tty_display_info *tty_list;
112
113 /* Meaning of bits in no_color_video. Each bit set means that the
114 corresponding attribute cannot be combined with colors. */
115
116 enum no_color_bit
117 {
118 NC_STANDOUT = 1 << 0,
119 NC_UNDERLINE = 1 << 1,
120 NC_REVERSE = 1 << 2,
121 NC_ITALIC = 1 << 3,
122 NC_DIM = 1 << 4,
123 NC_BOLD = 1 << 5,
124 NC_INVIS = 1 << 6,
125 NC_PROTECT = 1 << 7
126 };
127
128 /* internal state */
129
130 /* The largest frame width in any call to calculate_costs. */
131
132 static int max_frame_cols;
133
134 static Lisp_Object Qtty_mode_set_strings;
135 static Lisp_Object Qtty_mode_reset_strings;
136
137 \f
138
139 #ifdef HAVE_GPM
140 #include <sys/fcntl.h>
141
142 /* The device for which we have enabled gpm support (or NULL). */
143 struct tty_display_info *gpm_tty = NULL;
144
145 /* Last recorded mouse coordinates. */
146 static int last_mouse_x, last_mouse_y;
147 #endif /* HAVE_GPM */
148
149 /* Ring the bell on a tty. */
150
151 static void
152 tty_ring_bell (struct frame *f)
153 {
154 struct tty_display_info *tty = FRAME_TTY (f);
155
156 if (tty->output)
157 {
158 OUTPUT (tty, (tty->TS_visible_bell && visible_bell
159 ? tty->TS_visible_bell
160 : tty->TS_bell));
161 fflush (tty->output);
162 }
163 }
164
165 /* Set up termcap modes for Emacs. */
166
167 static void
168 tty_send_additional_strings (struct terminal *terminal, Lisp_Object sym)
169 {
170 Lisp_Object lisp_terminal;
171 Lisp_Object extra_codes;
172 struct tty_display_info *tty = terminal->display_info.tty;
173
174 XSETTERMINAL (lisp_terminal, terminal);
175 for (extra_codes = Fterminal_parameter (lisp_terminal, sym);
176 CONSP (extra_codes);
177 extra_codes = XCDR (extra_codes))
178 {
179 Lisp_Object string = XCAR (extra_codes);
180 if (STRINGP (string))
181 {
182 fwrite (SDATA (string), 1, SBYTES (string), tty->output);
183 if (tty->termscript)
184 fwrite (SDATA (string), 1, SBYTES (string), tty->termscript);
185 }
186 }
187 }
188
189 static void
190 tty_set_terminal_modes (struct terminal *terminal)
191 {
192 struct tty_display_info *tty = terminal->display_info.tty;
193
194 if (tty->output)
195 {
196 if (tty->TS_termcap_modes)
197 OUTPUT (tty, tty->TS_termcap_modes);
198 else
199 {
200 /* Output enough newlines to scroll all the old screen contents
201 off the screen, so it won't be overwritten and lost. */
202 int i;
203 current_tty = tty;
204 for (i = 0; i < FRAME_LINES (XFRAME (selected_frame)); i++)
205 cmputc ('\n');
206 }
207
208 OUTPUT_IF (tty, visible_cursor ? tty->TS_cursor_visible : tty->TS_cursor_normal);
209 OUTPUT_IF (tty, tty->TS_keypad_mode);
210 losecursor (tty);
211 tty_send_additional_strings (terminal, Qtty_mode_set_strings);
212 fflush (tty->output);
213 }
214 }
215
216 /* Reset termcap modes before exiting Emacs. */
217
218 static void
219 tty_reset_terminal_modes (struct terminal *terminal)
220 {
221 struct tty_display_info *tty = terminal->display_info.tty;
222
223 if (tty->output)
224 {
225 tty_send_additional_strings (terminal, Qtty_mode_reset_strings);
226 tty_turn_off_highlight (tty);
227 tty_turn_off_insert (tty);
228 OUTPUT_IF (tty, tty->TS_end_keypad_mode);
229 OUTPUT_IF (tty, tty->TS_cursor_normal);
230 OUTPUT_IF (tty, tty->TS_end_termcap_modes);
231 OUTPUT_IF (tty, tty->TS_orig_pair);
232 /* Output raw CR so kernel can track the cursor hpos. */
233 current_tty = tty;
234 cmputc ('\r');
235 fflush (tty->output);
236 }
237 }
238
239 /* Flag the end of a display update on a termcap terminal. */
240
241 static void
242 tty_update_end (struct frame *f)
243 {
244 struct tty_display_info *tty = FRAME_TTY (f);
245
246 if (!XWINDOW (selected_window)->cursor_off_p)
247 tty_show_cursor (tty);
248 tty_turn_off_insert (tty);
249 tty_background_highlight (tty);
250 fflush (tty->output);
251 }
252
253 /* The implementation of set_terminal_window for termcap frames. */
254
255 static void
256 tty_set_terminal_window (struct frame *f, int size)
257 {
258 struct tty_display_info *tty = FRAME_TTY (f);
259
260 tty->specified_window = size ? size : FRAME_LINES (f);
261 if (FRAME_SCROLL_REGION_OK (f))
262 tty_set_scroll_region (f, 0, tty->specified_window);
263 }
264
265 static void
266 tty_set_scroll_region (struct frame *f, int start, int stop)
267 {
268 char *buf;
269 struct tty_display_info *tty = FRAME_TTY (f);
270
271 if (tty->TS_set_scroll_region)
272 buf = tparam (tty->TS_set_scroll_region, 0, 0, start, stop - 1, 0, 0);
273 else if (tty->TS_set_scroll_region_1)
274 buf = tparam (tty->TS_set_scroll_region_1, 0, 0,
275 FRAME_LINES (f), start,
276 FRAME_LINES (f) - stop,
277 FRAME_LINES (f));
278 else
279 buf = tparam (tty->TS_set_window, 0, 0, start, 0, stop, FRAME_COLS (f));
280
281 OUTPUT (tty, buf);
282 xfree (buf);
283 losecursor (tty);
284 }
285
286 \f
287 static void
288 tty_turn_on_insert (struct tty_display_info *tty)
289 {
290 if (!tty->insert_mode)
291 OUTPUT (tty, tty->TS_insert_mode);
292 tty->insert_mode = 1;
293 }
294
295 void
296 tty_turn_off_insert (struct tty_display_info *tty)
297 {
298 if (tty->insert_mode)
299 OUTPUT (tty, tty->TS_end_insert_mode);
300 tty->insert_mode = 0;
301 }
302 \f
303 /* Handle highlighting. */
304
305 static void
306 tty_turn_off_highlight (struct tty_display_info *tty)
307 {
308 if (tty->standout_mode)
309 OUTPUT_IF (tty, tty->TS_end_standout_mode);
310 tty->standout_mode = 0;
311 }
312
313 static void
314 tty_turn_on_highlight (struct tty_display_info *tty)
315 {
316 if (!tty->standout_mode)
317 OUTPUT_IF (tty, tty->TS_standout_mode);
318 tty->standout_mode = 1;
319 }
320
321 static void
322 tty_toggle_highlight (struct tty_display_info *tty)
323 {
324 if (tty->standout_mode)
325 tty_turn_off_highlight (tty);
326 else
327 tty_turn_on_highlight (tty);
328 }
329
330
331 /* Make cursor invisible. */
332
333 static void
334 tty_hide_cursor (struct tty_display_info *tty)
335 {
336 if (tty->cursor_hidden == 0)
337 {
338 tty->cursor_hidden = 1;
339 #ifdef WINDOWSNT
340 w32con_hide_cursor ();
341 #else
342 OUTPUT_IF (tty, tty->TS_cursor_invisible);
343 #endif
344 }
345 }
346
347
348 /* Ensure that cursor is visible. */
349
350 static void
351 tty_show_cursor (struct tty_display_info *tty)
352 {
353 if (tty->cursor_hidden)
354 {
355 tty->cursor_hidden = 0;
356 #ifdef WINDOWSNT
357 w32con_show_cursor ();
358 #else
359 OUTPUT_IF (tty, tty->TS_cursor_normal);
360 if (visible_cursor)
361 OUTPUT_IF (tty, tty->TS_cursor_visible);
362 #endif
363 }
364 }
365
366
367 /* Set standout mode to the state it should be in for
368 empty space inside windows. What this is,
369 depends on the user option inverse-video. */
370
371 static void
372 tty_background_highlight (struct tty_display_info *tty)
373 {
374 if (inverse_video)
375 tty_turn_on_highlight (tty);
376 else
377 tty_turn_off_highlight (tty);
378 }
379
380 /* Set standout mode to the mode specified for the text to be output. */
381
382 static void
383 tty_highlight_if_desired (struct tty_display_info *tty)
384 {
385 if (inverse_video)
386 tty_turn_on_highlight (tty);
387 else
388 tty_turn_off_highlight (tty);
389 }
390 \f
391
392 /* Move cursor to row/column position VPOS/HPOS. HPOS/VPOS are
393 frame-relative coordinates. */
394
395 static void
396 tty_cursor_to (struct frame *f, int vpos, int hpos)
397 {
398 struct tty_display_info *tty = FRAME_TTY (f);
399
400 /* Detect the case where we are called from reset_sys_modes
401 and the costs have never been calculated. Do nothing. */
402 if (! tty->costs_set)
403 return;
404
405 if (curY (tty) == vpos
406 && curX (tty) == hpos)
407 return;
408 if (!tty->TF_standout_motion)
409 tty_background_highlight (tty);
410 if (!tty->TF_insmode_motion)
411 tty_turn_off_insert (tty);
412 cmgoto (tty, vpos, hpos);
413 }
414
415 /* Similar but don't take any account of the wasted characters. */
416
417 static void
418 tty_raw_cursor_to (struct frame *f, int row, int col)
419 {
420 struct tty_display_info *tty = FRAME_TTY (f);
421
422 if (curY (tty) == row
423 && curX (tty) == col)
424 return;
425 if (!tty->TF_standout_motion)
426 tty_background_highlight (tty);
427 if (!tty->TF_insmode_motion)
428 tty_turn_off_insert (tty);
429 cmgoto (tty, row, col);
430 }
431 \f
432 /* Erase operations */
433
434 /* Clear from cursor to end of frame on a termcap device. */
435
436 static void
437 tty_clear_to_end (struct frame *f)
438 {
439 register int i;
440 struct tty_display_info *tty = FRAME_TTY (f);
441
442 if (tty->TS_clr_to_bottom)
443 {
444 tty_background_highlight (tty);
445 OUTPUT (tty, tty->TS_clr_to_bottom);
446 }
447 else
448 {
449 for (i = curY (tty); i < FRAME_LINES (f); i++)
450 {
451 cursor_to (f, i, 0);
452 clear_end_of_line (f, FRAME_COLS (f));
453 }
454 }
455 }
456
457 /* Clear an entire termcap frame. */
458
459 static void
460 tty_clear_frame (struct frame *f)
461 {
462 struct tty_display_info *tty = FRAME_TTY (f);
463
464 if (tty->TS_clr_frame)
465 {
466 tty_background_highlight (tty);
467 OUTPUT (tty, tty->TS_clr_frame);
468 cmat (tty, 0, 0);
469 }
470 else
471 {
472 cursor_to (f, 0, 0);
473 clear_to_end (f);
474 }
475 }
476
477 /* An implementation of clear_end_of_line for termcap frames.
478
479 Note that the cursor may be moved, on terminals lacking a `ce' string. */
480
481 static void
482 tty_clear_end_of_line (struct frame *f, int first_unused_hpos)
483 {
484 register int i;
485 struct tty_display_info *tty = FRAME_TTY (f);
486
487 /* Detect the case where we are called from reset_sys_modes
488 and the costs have never been calculated. Do nothing. */
489 if (! tty->costs_set)
490 return;
491
492 if (curX (tty) >= first_unused_hpos)
493 return;
494 tty_background_highlight (tty);
495 if (tty->TS_clr_line)
496 {
497 OUTPUT1 (tty, tty->TS_clr_line);
498 }
499 else
500 { /* have to do it the hard way */
501 tty_turn_off_insert (tty);
502
503 /* Do not write in last row last col with Auto-wrap on. */
504 if (AutoWrap (tty)
505 && curY (tty) == FrameRows (tty) - 1
506 && first_unused_hpos == FrameCols (tty))
507 first_unused_hpos--;
508
509 for (i = curX (tty); i < first_unused_hpos; i++)
510 {
511 if (tty->termscript)
512 fputc (' ', tty->termscript);
513 fputc (' ', tty->output);
514 }
515 cmplus (tty, first_unused_hpos - curX (tty));
516 }
517 }
518 \f
519 /* Buffers to store the source and result of code conversion for terminal. */
520 static unsigned char *encode_terminal_src;
521 static unsigned char *encode_terminal_dst;
522 /* Allocated sizes of the above buffers. */
523 static ptrdiff_t encode_terminal_src_size;
524 static ptrdiff_t encode_terminal_dst_size;
525
526 /* Encode SRC_LEN glyphs starting at SRC to terminal output codes.
527 Set CODING->produced to the byte-length of the resulting byte
528 sequence, and return a pointer to that byte sequence. */
529
530 #ifndef DOS_NT
531 static
532 #endif
533 unsigned char *
534 encode_terminal_code (struct glyph *src, int src_len,
535 struct coding_system *coding)
536 {
537 struct glyph *src_end = src + src_len;
538 unsigned char *buf;
539 ptrdiff_t nchars, nbytes, required;
540 ptrdiff_t tlen = GLYPH_TABLE_LENGTH;
541 register Lisp_Object *tbase = GLYPH_TABLE_BASE;
542 Lisp_Object charset_list;
543
544 /* Allocate sufficient size of buffer to store all characters in
545 multibyte-form. But, it may be enlarged on demand if
546 Vglyph_table contains a string or a composite glyph is
547 encountered. */
548 if (min (PTRDIFF_MAX, SIZE_MAX) / MAX_MULTIBYTE_LENGTH < src_len)
549 memory_full (SIZE_MAX);
550 required = src_len;
551 required *= MAX_MULTIBYTE_LENGTH;
552 if (encode_terminal_src_size < required)
553 {
554 encode_terminal_src = xrealloc (encode_terminal_src, required);
555 encode_terminal_src_size = required;
556 }
557
558 charset_list = coding_charset_list (coding);
559
560 buf = encode_terminal_src;
561 nchars = 0;
562 while (src < src_end)
563 {
564 if (src->type == COMPOSITE_GLYPH)
565 {
566 struct composition *cmp IF_LINT (= NULL);
567 Lisp_Object gstring IF_LINT (= Qnil);
568 int i;
569
570 nbytes = buf - encode_terminal_src;
571 if (src->u.cmp.automatic)
572 {
573 gstring = composition_gstring_from_id (src->u.cmp.id);
574 required = src->slice.cmp.to - src->slice.cmp.from + 1;
575 }
576 else
577 {
578 cmp = composition_table[src->u.cmp.id];
579 required = cmp->glyph_len;
580 required *= MAX_MULTIBYTE_LENGTH;
581 }
582
583 if (encode_terminal_src_size - nbytes < required)
584 {
585 encode_terminal_src =
586 xpalloc (encode_terminal_src, &encode_terminal_src_size,
587 required - (encode_terminal_src_size - nbytes),
588 -1, 1);
589 buf = encode_terminal_src + nbytes;
590 }
591
592 if (src->u.cmp.automatic)
593 for (i = src->slice.cmp.from; i <= src->slice.cmp.to; i++)
594 {
595 Lisp_Object g = LGSTRING_GLYPH (gstring, i);
596 int c = LGLYPH_CHAR (g);
597
598 if (! char_charset (c, charset_list, NULL))
599 c = '?';
600 buf += CHAR_STRING (c, buf);
601 nchars++;
602 }
603 else
604 for (i = 0; i < cmp->glyph_len; i++)
605 {
606 int c = COMPOSITION_GLYPH (cmp, i);
607
608 /* TAB in a composition means display glyphs with
609 padding space on the left or right. */
610 if (c == '\t')
611 continue;
612 if (char_charset (c, charset_list, NULL))
613 {
614 if (CHAR_WIDTH (c) == 0
615 && i > 0 && COMPOSITION_GLYPH (cmp, i - 1) == '\t')
616 /* Should be left-padded */
617 {
618 buf += CHAR_STRING (' ', buf);
619 nchars++;
620 }
621 }
622 else
623 c = '?';
624 buf += CHAR_STRING (c, buf);
625 nchars++;
626 }
627 }
628 /* We must skip glyphs to be padded for a wide character. */
629 else if (! CHAR_GLYPH_PADDING_P (*src))
630 {
631 GLYPH g;
632 int c IF_LINT (= 0);
633 Lisp_Object string;
634
635 string = Qnil;
636 SET_GLYPH_FROM_CHAR_GLYPH (g, src[0]);
637
638 if (GLYPH_INVALID_P (g) || GLYPH_SIMPLE_P (tbase, tlen, g))
639 {
640 /* This glyph doesn't have an entry in Vglyph_table. */
641 c = src->u.ch;
642 }
643 else
644 {
645 /* This glyph has an entry in Vglyph_table,
646 so process any alias before testing for simpleness. */
647 GLYPH_FOLLOW_ALIASES (tbase, tlen, g);
648
649 if (GLYPH_SIMPLE_P (tbase, tlen, g))
650 /* We set the multi-byte form of a character in G
651 (that should be an ASCII character) at WORKBUF. */
652 c = GLYPH_CHAR (g);
653 else
654 /* We have a string in Vglyph_table. */
655 string = tbase[GLYPH_CHAR (g)];
656 }
657
658 if (NILP (string))
659 {
660 nbytes = buf - encode_terminal_src;
661 if (encode_terminal_src_size - nbytes < MAX_MULTIBYTE_LENGTH)
662 {
663 encode_terminal_src =
664 xpalloc (encode_terminal_src, &encode_terminal_src_size,
665 MAX_MULTIBYTE_LENGTH, -1, 1);
666 buf = encode_terminal_src + nbytes;
667 }
668 if (CHAR_BYTE8_P (c)
669 || char_charset (c, charset_list, NULL))
670 {
671 /* Store the multibyte form of C at BUF. */
672 buf += CHAR_STRING (c, buf);
673 nchars++;
674 }
675 else
676 {
677 /* C is not encodable. */
678 *buf++ = '?';
679 nchars++;
680 while (src + 1 < src_end && CHAR_GLYPH_PADDING_P (src[1]))
681 {
682 *buf++ = '?';
683 nchars++;
684 src++;
685 }
686 }
687 }
688 else
689 {
690 if (! STRING_MULTIBYTE (string))
691 string = string_to_multibyte (string);
692 nbytes = buf - encode_terminal_src;
693 if (encode_terminal_src_size - nbytes < SBYTES (string))
694 {
695 encode_terminal_src =
696 xpalloc (encode_terminal_src, &encode_terminal_src_size,
697 (SBYTES (string)
698 - (encode_terminal_src_size - nbytes)),
699 -1, 1);
700 buf = encode_terminal_src + nbytes;
701 }
702 memcpy (buf, SDATA (string), SBYTES (string));
703 buf += SBYTES (string);
704 nchars += SCHARS (string);
705 }
706 }
707 src++;
708 }
709
710 if (nchars == 0)
711 {
712 coding->produced = 0;
713 return NULL;
714 }
715
716 nbytes = buf - encode_terminal_src;
717 coding->source = encode_terminal_src;
718 if (encode_terminal_dst_size == 0)
719 {
720 encode_terminal_dst = xrealloc (encode_terminal_dst,
721 encode_terminal_src_size);
722 encode_terminal_dst_size = encode_terminal_src_size;
723 }
724 coding->destination = encode_terminal_dst;
725 coding->dst_bytes = encode_terminal_dst_size;
726 encode_coding_object (coding, Qnil, 0, 0, nchars, nbytes, Qnil);
727 /* coding->destination may have been reallocated. */
728 encode_terminal_dst = coding->destination;
729 encode_terminal_dst_size = coding->dst_bytes;
730
731 return (encode_terminal_dst);
732 }
733
734
735
736 /* An implementation of write_glyphs for termcap frames. */
737
738 static void
739 tty_write_glyphs (struct frame *f, struct glyph *string, int len)
740 {
741 unsigned char *conversion_buffer;
742 struct coding_system *coding;
743 int n, stringlen;
744
745 struct tty_display_info *tty = FRAME_TTY (f);
746
747 tty_turn_off_insert (tty);
748 tty_hide_cursor (tty);
749
750 /* Don't dare write in last column of bottom line, if Auto-Wrap,
751 since that would scroll the whole frame on some terminals. */
752
753 if (AutoWrap (tty)
754 && curY (tty) + 1 == FRAME_LINES (f)
755 && (curX (tty) + len) == FRAME_COLS (f))
756 len --;
757 if (len <= 0)
758 return;
759
760 cmplus (tty, len);
761
762 /* If terminal_coding does any conversion, use it, otherwise use
763 safe_terminal_coding. We can't use CODING_REQUIRE_ENCODING here
764 because it always return 1 if the member src_multibyte is 1. */
765 coding = (FRAME_TERMINAL_CODING (f)->common_flags & CODING_REQUIRE_ENCODING_MASK
766 ? FRAME_TERMINAL_CODING (f) : &safe_terminal_coding);
767 /* The mode bit CODING_MODE_LAST_BLOCK should be set to 1 only at
768 the tail. */
769 coding->mode &= ~CODING_MODE_LAST_BLOCK;
770
771 for (stringlen = len; stringlen != 0; stringlen -= n)
772 {
773 /* Identify a run of glyphs with the same face. */
774 int face_id = string->face_id;
775
776 for (n = 1; n < stringlen; ++n)
777 if (string[n].face_id != face_id)
778 break;
779
780 /* Turn appearance modes of the face of the run on. */
781 tty_highlight_if_desired (tty);
782 turn_on_face (f, face_id);
783
784 if (n == stringlen)
785 /* This is the last run. */
786 coding->mode |= CODING_MODE_LAST_BLOCK;
787 conversion_buffer = encode_terminal_code (string, n, coding);
788 if (coding->produced > 0)
789 {
790 block_input ();
791 fwrite (conversion_buffer, 1, coding->produced, tty->output);
792 if (ferror (tty->output))
793 clearerr (tty->output);
794 if (tty->termscript)
795 fwrite (conversion_buffer, 1, coding->produced, tty->termscript);
796 unblock_input ();
797 }
798 string += n;
799
800 /* Turn appearance modes off. */
801 turn_off_face (f, face_id);
802 tty_turn_off_highlight (tty);
803 }
804
805 cmcheckmagic (tty);
806 }
807
808 #ifdef HAVE_GPM /* Only used by GPM code. */
809
810 static void
811 tty_write_glyphs_with_face (register struct frame *f, register struct glyph *string,
812 register int len, register int face_id)
813 {
814 unsigned char *conversion_buffer;
815 struct coding_system *coding;
816
817 struct tty_display_info *tty = FRAME_TTY (f);
818
819 tty_turn_off_insert (tty);
820 tty_hide_cursor (tty);
821
822 /* Don't dare write in last column of bottom line, if Auto-Wrap,
823 since that would scroll the whole frame on some terminals. */
824
825 if (AutoWrap (tty)
826 && curY (tty) + 1 == FRAME_LINES (f)
827 && (curX (tty) + len) == FRAME_COLS (f))
828 len --;
829 if (len <= 0)
830 return;
831
832 cmplus (tty, len);
833
834 /* If terminal_coding does any conversion, use it, otherwise use
835 safe_terminal_coding. We can't use CODING_REQUIRE_ENCODING here
836 because it always return 1 if the member src_multibyte is 1. */
837 coding = (FRAME_TERMINAL_CODING (f)->common_flags & CODING_REQUIRE_ENCODING_MASK
838 ? FRAME_TERMINAL_CODING (f) : &safe_terminal_coding);
839 /* The mode bit CODING_MODE_LAST_BLOCK should be set to 1 only at
840 the tail. */
841 coding->mode &= ~CODING_MODE_LAST_BLOCK;
842
843 /* Turn appearance modes of the face. */
844 tty_highlight_if_desired (tty);
845 turn_on_face (f, face_id);
846
847 coding->mode |= CODING_MODE_LAST_BLOCK;
848 conversion_buffer = encode_terminal_code (string, len, coding);
849 if (coding->produced > 0)
850 {
851 block_input ();
852 fwrite (conversion_buffer, 1, coding->produced, tty->output);
853 if (ferror (tty->output))
854 clearerr (tty->output);
855 if (tty->termscript)
856 fwrite (conversion_buffer, 1, coding->produced, tty->termscript);
857 unblock_input ();
858 }
859
860 /* Turn appearance modes off. */
861 turn_off_face (f, face_id);
862 tty_turn_off_highlight (tty);
863
864 cmcheckmagic (tty);
865 }
866 #endif
867
868 /* An implementation of insert_glyphs for termcap frames. */
869
870 static void
871 tty_insert_glyphs (struct frame *f, struct glyph *start, int len)
872 {
873 char *buf;
874 struct glyph *glyph = NULL;
875 unsigned char *conversion_buffer;
876 unsigned char space[1];
877 struct coding_system *coding;
878
879 struct tty_display_info *tty = FRAME_TTY (f);
880
881 if (tty->TS_ins_multi_chars)
882 {
883 buf = tparam (tty->TS_ins_multi_chars, 0, 0, len, 0, 0, 0);
884 OUTPUT1 (tty, buf);
885 xfree (buf);
886 if (start)
887 write_glyphs (f, start, len);
888 return;
889 }
890
891 tty_turn_on_insert (tty);
892 cmplus (tty, len);
893
894 if (! start)
895 space[0] = SPACEGLYPH;
896
897 /* If terminal_coding does any conversion, use it, otherwise use
898 safe_terminal_coding. We can't use CODING_REQUIRE_ENCODING here
899 because it always return 1 if the member src_multibyte is 1. */
900 coding = (FRAME_TERMINAL_CODING (f)->common_flags & CODING_REQUIRE_ENCODING_MASK
901 ? FRAME_TERMINAL_CODING (f) : &safe_terminal_coding);
902 /* The mode bit CODING_MODE_LAST_BLOCK should be set to 1 only at
903 the tail. */
904 coding->mode &= ~CODING_MODE_LAST_BLOCK;
905
906 while (len-- > 0)
907 {
908 OUTPUT1_IF (tty, tty->TS_ins_char);
909 if (!start)
910 {
911 conversion_buffer = space;
912 coding->produced = 1;
913 }
914 else
915 {
916 tty_highlight_if_desired (tty);
917 turn_on_face (f, start->face_id);
918 glyph = start;
919 ++start;
920 /* We must open sufficient space for a character which
921 occupies more than one column. */
922 while (len && CHAR_GLYPH_PADDING_P (*start))
923 {
924 OUTPUT1_IF (tty, tty->TS_ins_char);
925 start++, len--;
926 }
927
928 if (len <= 0)
929 /* This is the last glyph. */
930 coding->mode |= CODING_MODE_LAST_BLOCK;
931
932 conversion_buffer = encode_terminal_code (glyph, 1, coding);
933 }
934
935 if (coding->produced > 0)
936 {
937 block_input ();
938 fwrite (conversion_buffer, 1, coding->produced, tty->output);
939 if (ferror (tty->output))
940 clearerr (tty->output);
941 if (tty->termscript)
942 fwrite (conversion_buffer, 1, coding->produced, tty->termscript);
943 unblock_input ();
944 }
945
946 OUTPUT1_IF (tty, tty->TS_pad_inserted_char);
947 if (start)
948 {
949 turn_off_face (f, glyph->face_id);
950 tty_turn_off_highlight (tty);
951 }
952 }
953
954 cmcheckmagic (tty);
955 }
956
957 /* An implementation of delete_glyphs for termcap frames. */
958
959 static void
960 tty_delete_glyphs (struct frame *f, int n)
961 {
962 char *buf;
963 register int i;
964
965 struct tty_display_info *tty = FRAME_TTY (f);
966
967 if (tty->delete_in_insert_mode)
968 {
969 tty_turn_on_insert (tty);
970 }
971 else
972 {
973 tty_turn_off_insert (tty);
974 OUTPUT_IF (tty, tty->TS_delete_mode);
975 }
976
977 if (tty->TS_del_multi_chars)
978 {
979 buf = tparam (tty->TS_del_multi_chars, 0, 0, n, 0, 0, 0);
980 OUTPUT1 (tty, buf);
981 xfree (buf);
982 }
983 else
984 for (i = 0; i < n; i++)
985 OUTPUT1 (tty, tty->TS_del_char);
986 if (!tty->delete_in_insert_mode)
987 OUTPUT_IF (tty, tty->TS_end_delete_mode);
988 }
989 \f
990 /* An implementation of ins_del_lines for termcap frames. */
991
992 static void
993 tty_ins_del_lines (struct frame *f, int vpos, int n)
994 {
995 struct tty_display_info *tty = FRAME_TTY (f);
996 const char *multi =
997 n > 0 ? tty->TS_ins_multi_lines : tty->TS_del_multi_lines;
998 const char *single = n > 0 ? tty->TS_ins_line : tty->TS_del_line;
999 const char *scroll = n > 0 ? tty->TS_rev_scroll : tty->TS_fwd_scroll;
1000
1001 int i = eabs (n);
1002 char *buf;
1003
1004 /* If the lines below the insertion are being pushed
1005 into the end of the window, this is the same as clearing;
1006 and we know the lines are already clear, since the matching
1007 deletion has already been done. So can ignore this. */
1008 /* If the lines below the deletion are blank lines coming
1009 out of the end of the window, don't bother,
1010 as there will be a matching inslines later that will flush them. */
1011 if (FRAME_SCROLL_REGION_OK (f)
1012 && vpos + i >= tty->specified_window)
1013 return;
1014 if (!FRAME_MEMORY_BELOW_FRAME (f)
1015 && vpos + i >= FRAME_LINES (f))
1016 return;
1017
1018 if (multi)
1019 {
1020 raw_cursor_to (f, vpos, 0);
1021 tty_background_highlight (tty);
1022 buf = tparam (multi, 0, 0, i, 0, 0, 0);
1023 OUTPUT (tty, buf);
1024 xfree (buf);
1025 }
1026 else if (single)
1027 {
1028 raw_cursor_to (f, vpos, 0);
1029 tty_background_highlight (tty);
1030 while (--i >= 0)
1031 OUTPUT (tty, single);
1032 if (tty->TF_teleray)
1033 curX (tty) = 0;
1034 }
1035 else
1036 {
1037 tty_set_scroll_region (f, vpos, tty->specified_window);
1038 if (n < 0)
1039 raw_cursor_to (f, tty->specified_window - 1, 0);
1040 else
1041 raw_cursor_to (f, vpos, 0);
1042 tty_background_highlight (tty);
1043 while (--i >= 0)
1044 OUTPUTL (tty, scroll, tty->specified_window - vpos);
1045 tty_set_scroll_region (f, 0, tty->specified_window);
1046 }
1047
1048 if (!FRAME_SCROLL_REGION_OK (f)
1049 && FRAME_MEMORY_BELOW_FRAME (f)
1050 && n < 0)
1051 {
1052 cursor_to (f, FRAME_LINES (f) + n, 0);
1053 clear_to_end (f);
1054 }
1055 }
1056 \f
1057 /* Compute cost of sending "str", in characters,
1058 not counting any line-dependent padding. */
1059
1060 int
1061 string_cost (const char *str)
1062 {
1063 cost = 0;
1064 if (str)
1065 tputs (str, 0, evalcost);
1066 return cost;
1067 }
1068
1069 /* Compute cost of sending "str", in characters,
1070 counting any line-dependent padding at one line. */
1071
1072 static int
1073 string_cost_one_line (const char *str)
1074 {
1075 cost = 0;
1076 if (str)
1077 tputs (str, 1, evalcost);
1078 return cost;
1079 }
1080
1081 /* Compute per line amount of line-dependent padding,
1082 in tenths of characters. */
1083
1084 int
1085 per_line_cost (const char *str)
1086 {
1087 cost = 0;
1088 if (str)
1089 tputs (str, 0, evalcost);
1090 cost = - cost;
1091 if (str)
1092 tputs (str, 10, evalcost);
1093 return cost;
1094 }
1095
1096 /* char_ins_del_cost[n] is cost of inserting N characters.
1097 char_ins_del_cost[-n] is cost of deleting N characters.
1098 The length of this vector is based on max_frame_cols. */
1099
1100 int *char_ins_del_vector;
1101
1102 #define char_ins_del_cost(f) (&char_ins_del_vector[FRAME_COLS ((f))])
1103
1104 /* ARGSUSED */
1105 static void
1106 calculate_ins_del_char_costs (struct frame *f)
1107 {
1108 struct tty_display_info *tty = FRAME_TTY (f);
1109 int ins_startup_cost, del_startup_cost;
1110 int ins_cost_per_char, del_cost_per_char;
1111 register int i;
1112 register int *p;
1113
1114 if (tty->TS_ins_multi_chars)
1115 {
1116 ins_cost_per_char = 0;
1117 ins_startup_cost = string_cost_one_line (tty->TS_ins_multi_chars);
1118 }
1119 else if (tty->TS_ins_char || tty->TS_pad_inserted_char
1120 || (tty->TS_insert_mode && tty->TS_end_insert_mode))
1121 {
1122 ins_startup_cost = (30 * (string_cost (tty->TS_insert_mode)
1123 + string_cost (tty->TS_end_insert_mode))) / 100;
1124 ins_cost_per_char = (string_cost_one_line (tty->TS_ins_char)
1125 + string_cost_one_line (tty->TS_pad_inserted_char));
1126 }
1127 else
1128 {
1129 ins_startup_cost = 9999;
1130 ins_cost_per_char = 0;
1131 }
1132
1133 if (tty->TS_del_multi_chars)
1134 {
1135 del_cost_per_char = 0;
1136 del_startup_cost = string_cost_one_line (tty->TS_del_multi_chars);
1137 }
1138 else if (tty->TS_del_char)
1139 {
1140 del_startup_cost = (string_cost (tty->TS_delete_mode)
1141 + string_cost (tty->TS_end_delete_mode));
1142 if (tty->delete_in_insert_mode)
1143 del_startup_cost /= 2;
1144 del_cost_per_char = string_cost_one_line (tty->TS_del_char);
1145 }
1146 else
1147 {
1148 del_startup_cost = 9999;
1149 del_cost_per_char = 0;
1150 }
1151
1152 /* Delete costs are at negative offsets */
1153 p = &char_ins_del_cost (f)[0];
1154 for (i = FRAME_COLS (f); --i >= 0;)
1155 *--p = (del_startup_cost += del_cost_per_char);
1156
1157 /* Doing nothing is free */
1158 p = &char_ins_del_cost (f)[0];
1159 *p++ = 0;
1160
1161 /* Insert costs are at positive offsets */
1162 for (i = FRAME_COLS (f); --i >= 0;)
1163 *p++ = (ins_startup_cost += ins_cost_per_char);
1164 }
1165
1166 void
1167 calculate_costs (struct frame *frame)
1168 {
1169 FRAME_COST_BAUD_RATE (frame) = baud_rate;
1170
1171 if (FRAME_TERMCAP_P (frame))
1172 {
1173 struct tty_display_info *tty = FRAME_TTY (frame);
1174 register const char *f = (tty->TS_set_scroll_region
1175 ? tty->TS_set_scroll_region
1176 : tty->TS_set_scroll_region_1);
1177
1178 FRAME_SCROLL_REGION_COST (frame) = string_cost (f);
1179
1180 tty->costs_set = 1;
1181
1182 /* These variables are only used for terminal stuff. They are
1183 allocated once for the terminal frame of X-windows emacs, but not
1184 used afterwards.
1185
1186 char_ins_del_vector (i.e., char_ins_del_cost) isn't used because
1187 X turns off char_ins_del_ok. */
1188
1189 max_frame_cols = max (max_frame_cols, FRAME_COLS (frame));
1190 if ((min (PTRDIFF_MAX, SIZE_MAX) / sizeof (int) - 1) / 2
1191 < max_frame_cols)
1192 memory_full (SIZE_MAX);
1193
1194 char_ins_del_vector =
1195 xrealloc (char_ins_del_vector,
1196 (sizeof (int) + 2 * sizeof (int) * max_frame_cols));
1197
1198 memset (char_ins_del_vector, 0,
1199 (sizeof (int) + 2 * sizeof (int) * max_frame_cols));
1200
1201
1202 if (f && (!tty->TS_ins_line && !tty->TS_del_line))
1203 do_line_insertion_deletion_costs (frame,
1204 tty->TS_rev_scroll, tty->TS_ins_multi_lines,
1205 tty->TS_fwd_scroll, tty->TS_del_multi_lines,
1206 f, f, 1);
1207 else
1208 do_line_insertion_deletion_costs (frame,
1209 tty->TS_ins_line, tty->TS_ins_multi_lines,
1210 tty->TS_del_line, tty->TS_del_multi_lines,
1211 0, 0, 1);
1212
1213 calculate_ins_del_char_costs (frame);
1214
1215 /* Don't use TS_repeat if its padding is worse than sending the chars */
1216 if (tty->TS_repeat && per_line_cost (tty->TS_repeat) * baud_rate < 9000)
1217 tty->RPov = string_cost (tty->TS_repeat);
1218 else
1219 tty->RPov = FRAME_COLS (frame) * 2;
1220
1221 cmcostinit (FRAME_TTY (frame)); /* set up cursor motion costs */
1222 }
1223 }
1224 \f
1225 struct fkey_table {
1226 const char *cap, *name;
1227 };
1228
1229 /* Termcap capability names that correspond directly to X keysyms.
1230 Some of these (marked "terminfo") aren't supplied by old-style
1231 (Berkeley) termcap entries. They're listed in X keysym order;
1232 except we put the keypad keys first, so that if they clash with
1233 other keys (as on the IBM PC keyboard) they get overridden.
1234 */
1235
1236 static const struct fkey_table keys[] =
1237 {
1238 {"kh", "home"}, /* termcap */
1239 {"kl", "left"}, /* termcap */
1240 {"ku", "up"}, /* termcap */
1241 {"kr", "right"}, /* termcap */
1242 {"kd", "down"}, /* termcap */
1243 {"%8", "prior"}, /* terminfo */
1244 {"%5", "next"}, /* terminfo */
1245 {"@7", "end"}, /* terminfo */
1246 {"@1", "begin"}, /* terminfo */
1247 {"*6", "select"}, /* terminfo */
1248 {"%9", "print"}, /* terminfo */
1249 {"@4", "execute"}, /* terminfo --- actually the `command' key */
1250 /*
1251 * "insert" --- see below
1252 */
1253 {"&8", "undo"}, /* terminfo */
1254 {"%0", "redo"}, /* terminfo */
1255 {"%7", "menu"}, /* terminfo --- actually the `options' key */
1256 {"@0", "find"}, /* terminfo */
1257 {"@2", "cancel"}, /* terminfo */
1258 {"%1", "help"}, /* terminfo */
1259 /*
1260 * "break" goes here, but can't be reliably intercepted with termcap
1261 */
1262 {"&4", "reset"}, /* terminfo --- actually `restart' */
1263 /*
1264 * "system" and "user" --- no termcaps
1265 */
1266 {"kE", "clearline"}, /* terminfo */
1267 {"kA", "insertline"}, /* terminfo */
1268 {"kL", "deleteline"}, /* terminfo */
1269 {"kI", "insertchar"}, /* terminfo */
1270 {"kD", "deletechar"}, /* terminfo */
1271 {"kB", "backtab"}, /* terminfo */
1272 /*
1273 * "kp_backtab", "kp-space", "kp-tab" --- no termcaps
1274 */
1275 {"@8", "kp-enter"}, /* terminfo */
1276 /*
1277 * "kp-f1", "kp-f2", "kp-f3" "kp-f4",
1278 * "kp-multiply", "kp-add", "kp-separator",
1279 * "kp-subtract", "kp-decimal", "kp-divide", "kp-0";
1280 * --- no termcaps for any of these.
1281 */
1282 {"K4", "kp-1"}, /* terminfo */
1283 /*
1284 * "kp-2" --- no termcap
1285 */
1286 {"K5", "kp-3"}, /* terminfo */
1287 /*
1288 * "kp-4" --- no termcap
1289 */
1290 {"K2", "kp-5"}, /* terminfo */
1291 /*
1292 * "kp-6" --- no termcap
1293 */
1294 {"K1", "kp-7"}, /* terminfo */
1295 /*
1296 * "kp-8" --- no termcap
1297 */
1298 {"K3", "kp-9"}, /* terminfo */
1299 /*
1300 * "kp-equal" --- no termcap
1301 */
1302 {"k1", "f1"},
1303 {"k2", "f2"},
1304 {"k3", "f3"},
1305 {"k4", "f4"},
1306 {"k5", "f5"},
1307 {"k6", "f6"},
1308 {"k7", "f7"},
1309 {"k8", "f8"},
1310 {"k9", "f9"},
1311
1312 {"&0", "S-cancel"}, /*shifted cancel key*/
1313 {"&9", "S-begin"}, /*shifted begin key*/
1314 {"*0", "S-find"}, /*shifted find key*/
1315 {"*1", "S-execute"}, /*shifted execute? actually shifted command key*/
1316 {"*4", "S-delete"}, /*shifted delete-character key*/
1317 {"*7", "S-end"}, /*shifted end key*/
1318 {"*8", "S-clearline"}, /*shifted clear-to end-of-line key*/
1319 {"#1", "S-help"}, /*shifted help key*/
1320 {"#2", "S-home"}, /*shifted home key*/
1321 {"#3", "S-insert"}, /*shifted insert-character key*/
1322 {"#4", "S-left"}, /*shifted left-arrow key*/
1323 {"%d", "S-menu"}, /*shifted menu? actually shifted options key*/
1324 {"%c", "S-next"}, /*shifted next key*/
1325 {"%e", "S-prior"}, /*shifted previous key*/
1326 {"%f", "S-print"}, /*shifted print key*/
1327 {"%g", "S-redo"}, /*shifted redo key*/
1328 {"%i", "S-right"}, /*shifted right-arrow key*/
1329 {"!3", "S-undo"} /*shifted undo key*/
1330 };
1331
1332 #ifndef DOS_NT
1333 static char **term_get_fkeys_address;
1334 static KBOARD *term_get_fkeys_kboard;
1335 static Lisp_Object term_get_fkeys_1 (void);
1336
1337 /* Find the escape codes sent by the function keys for Vinput_decode_map.
1338 This function scans the termcap function key sequence entries, and
1339 adds entries to Vinput_decode_map for each function key it finds. */
1340
1341 static void
1342 term_get_fkeys (char **address, KBOARD *kboard)
1343 {
1344 /* We run the body of the function (term_get_fkeys_1) and ignore all Lisp
1345 errors during the call. The only errors should be from Fdefine_key
1346 when given a key sequence containing an invalid prefix key. If the
1347 termcap defines function keys which use a prefix that is already bound
1348 to a command by the default bindings, we should silently ignore that
1349 function key specification, rather than giving the user an error and
1350 refusing to run at all on such a terminal. */
1351
1352 term_get_fkeys_address = address;
1353 term_get_fkeys_kboard = kboard;
1354 internal_condition_case (term_get_fkeys_1, Qerror, Fidentity);
1355 }
1356
1357 static Lisp_Object
1358 term_get_fkeys_1 (void)
1359 {
1360 int i;
1361
1362 char **address = term_get_fkeys_address;
1363 KBOARD *kboard = term_get_fkeys_kboard;
1364
1365 /* This can happen if CANNOT_DUMP or with strange options. */
1366 if (!KEYMAPP (KVAR (kboard, Vinput_decode_map)))
1367 kset_input_decode_map (kboard, Fmake_sparse_keymap (Qnil));
1368
1369 for (i = 0; i < ARRAYELTS (keys); i++)
1370 {
1371 char *sequence = tgetstr (keys[i].cap, address);
1372 if (sequence)
1373 Fdefine_key (KVAR (kboard, Vinput_decode_map), build_string (sequence),
1374 Fmake_vector (make_number (1),
1375 intern (keys[i].name)));
1376 }
1377
1378 /* The uses of the "k0" capability are inconsistent; sometimes it
1379 describes F10, whereas othertimes it describes F0 and "k;" describes F10.
1380 We will attempt to politely accommodate both systems by testing for
1381 "k;", and if it is present, assuming that "k0" denotes F0, otherwise F10.
1382 */
1383 {
1384 const char *k_semi = tgetstr ("k;", address);
1385 const char *k0 = tgetstr ("k0", address);
1386 const char *k0_name = "f10";
1387
1388 if (k_semi)
1389 {
1390 if (k0)
1391 /* Define f0 first, so that f10 takes precedence in case the
1392 key sequences happens to be the same. */
1393 Fdefine_key (KVAR (kboard, Vinput_decode_map), build_string (k0),
1394 Fmake_vector (make_number (1), intern ("f0")));
1395 Fdefine_key (KVAR (kboard, Vinput_decode_map), build_string (k_semi),
1396 Fmake_vector (make_number (1), intern ("f10")));
1397 }
1398 else if (k0)
1399 Fdefine_key (KVAR (kboard, Vinput_decode_map), build_string (k0),
1400 Fmake_vector (make_number (1), intern (k0_name)));
1401 }
1402
1403 /* Set up cookies for numbered function keys above f10. */
1404 {
1405 char fcap[3], fkey[4];
1406
1407 fcap[0] = 'F'; fcap[2] = '\0';
1408 for (i = 11; i < 64; i++)
1409 {
1410 if (i <= 19)
1411 fcap[1] = '1' + i - 11;
1412 else if (i <= 45)
1413 fcap[1] = 'A' + i - 20;
1414 else
1415 fcap[1] = 'a' + i - 46;
1416
1417 {
1418 char *sequence = tgetstr (fcap, address);
1419 if (sequence)
1420 {
1421 sprintf (fkey, "f%d", i);
1422 Fdefine_key (KVAR (kboard, Vinput_decode_map), build_string (sequence),
1423 Fmake_vector (make_number (1),
1424 intern (fkey)));
1425 }
1426 }
1427 }
1428 }
1429
1430 /*
1431 * Various mappings to try and get a better fit.
1432 */
1433 {
1434 #define CONDITIONAL_REASSIGN(cap1, cap2, sym) \
1435 if (!tgetstr (cap1, address)) \
1436 { \
1437 char *sequence = tgetstr (cap2, address); \
1438 if (sequence) \
1439 Fdefine_key (KVAR (kboard, Vinput_decode_map), build_string (sequence), \
1440 Fmake_vector (make_number (1), \
1441 intern (sym))); \
1442 }
1443
1444 /* if there's no key_next keycap, map key_npage to `next' keysym */
1445 CONDITIONAL_REASSIGN ("%5", "kN", "next");
1446 /* if there's no key_prev keycap, map key_ppage to `previous' keysym */
1447 CONDITIONAL_REASSIGN ("%8", "kP", "prior");
1448 /* if there's no key_dc keycap, map key_ic to `insert' keysym */
1449 CONDITIONAL_REASSIGN ("kD", "kI", "insert");
1450 /* if there's no key_end keycap, map key_ll to 'end' keysym */
1451 CONDITIONAL_REASSIGN ("@7", "kH", "end");
1452 #undef CONDITIONAL_REASSIGN
1453 }
1454
1455 return Qnil;
1456 }
1457 #endif /* not DOS_NT */
1458
1459 \f
1460 /***********************************************************************
1461 Character Display Information
1462 ***********************************************************************/
1463 static void append_glyph (struct it *);
1464 static void append_composite_glyph (struct it *);
1465 static void produce_composite_glyph (struct it *);
1466 static void append_glyphless_glyph (struct it *, int, const char *);
1467 static void produce_glyphless_glyph (struct it *, Lisp_Object);
1468
1469 /* Append glyphs to IT's glyph_row. Called from produce_glyphs for
1470 terminal frames if IT->glyph_row != NULL. IT->char_to_display is
1471 the character for which to produce glyphs; IT->face_id contains the
1472 character's face. Padding glyphs are appended if IT->c has a
1473 IT->pixel_width > 1. */
1474
1475 static void
1476 append_glyph (struct it *it)
1477 {
1478 struct glyph *glyph, *end;
1479 int i;
1480
1481 eassert (it->glyph_row);
1482 glyph = (it->glyph_row->glyphs[it->area]
1483 + it->glyph_row->used[it->area]);
1484 end = it->glyph_row->glyphs[1 + it->area];
1485
1486 /* If the glyph row is reversed, we need to prepend the glyph rather
1487 than append it. */
1488 if (it->glyph_row->reversed_p && it->area == TEXT_AREA)
1489 {
1490 struct glyph *g;
1491 int move_by = it->pixel_width;
1492
1493 /* Make room for the new glyphs. */
1494 if (move_by > end - glyph) /* don't overstep end of this area */
1495 move_by = end - glyph;
1496 for (g = glyph - 1; g >= it->glyph_row->glyphs[it->area]; g--)
1497 g[move_by] = *g;
1498 glyph = it->glyph_row->glyphs[it->area];
1499 end = glyph + move_by;
1500 }
1501
1502 /* BIDI Note: we put the glyphs of a "multi-pixel" character left to
1503 right, even in the REVERSED_P case, since (a) all of its u.ch are
1504 identical, and (b) the PADDING_P flag needs to be set for the
1505 leftmost one, because we write to the terminal left-to-right. */
1506 for (i = 0;
1507 i < it->pixel_width && glyph < end;
1508 ++i)
1509 {
1510 glyph->type = CHAR_GLYPH;
1511 glyph->pixel_width = 1;
1512 glyph->u.ch = it->char_to_display;
1513 glyph->face_id = it->face_id;
1514 glyph->padding_p = i > 0;
1515 glyph->charpos = CHARPOS (it->position);
1516 glyph->object = it->object;
1517 if (it->bidi_p)
1518 {
1519 glyph->resolved_level = it->bidi_it.resolved_level;
1520 if ((it->bidi_it.type & 7) != it->bidi_it.type)
1521 emacs_abort ();
1522 glyph->bidi_type = it->bidi_it.type;
1523 }
1524 else
1525 {
1526 glyph->resolved_level = 0;
1527 glyph->bidi_type = UNKNOWN_BT;
1528 }
1529
1530 ++it->glyph_row->used[it->area];
1531 ++glyph;
1532 }
1533 }
1534
1535 /* For external use. */
1536 void
1537 tty_append_glyph (struct it *it)
1538 {
1539 append_glyph (it);
1540 }
1541
1542
1543 /* Produce glyphs for the display element described by IT. *IT
1544 specifies what we want to produce a glyph for (character, image, ...),
1545 and where in the glyph matrix we currently are (glyph row and hpos).
1546 produce_glyphs fills in output fields of *IT with information such as the
1547 pixel width and height of a character, and maybe output actual glyphs at
1548 the same time if IT->glyph_row is non-null. For an overview, see
1549 the explanation in dispextern.h, before the definition of the
1550 display_element_type enumeration.
1551
1552 produce_glyphs also stores the result of glyph width, ascent
1553 etc. computations in *IT.
1554
1555 IT->glyph_row may be null, in which case produce_glyphs does not
1556 actually fill in the glyphs. This is used in the move_* functions
1557 in xdisp.c for text width and height computations.
1558
1559 Callers usually don't call produce_glyphs directly;
1560 instead they use the macro PRODUCE_GLYPHS. */
1561
1562 void
1563 produce_glyphs (struct it *it)
1564 {
1565 /* If a hook is installed, let it do the work. */
1566
1567 /* Nothing but characters are supported on terminal frames. */
1568 eassert (it->what == IT_CHARACTER
1569 || it->what == IT_COMPOSITION
1570 || it->what == IT_STRETCH
1571 || it->what == IT_GLYPHLESS);
1572
1573 if (it->what == IT_STRETCH)
1574 {
1575 produce_stretch_glyph (it);
1576 goto done;
1577 }
1578
1579 if (it->what == IT_COMPOSITION)
1580 {
1581 produce_composite_glyph (it);
1582 goto done;
1583 }
1584
1585 if (it->what == IT_GLYPHLESS)
1586 {
1587 produce_glyphless_glyph (it, Qnil);
1588 goto done;
1589 }
1590
1591 if (it->char_to_display >= 040 && it->char_to_display < 0177)
1592 {
1593 it->pixel_width = it->nglyphs = 1;
1594 if (it->glyph_row)
1595 append_glyph (it);
1596 }
1597 else if (it->char_to_display == '\n')
1598 it->pixel_width = it->nglyphs = 0;
1599 else if (it->char_to_display == '\t')
1600 {
1601 int absolute_x = (it->current_x
1602 + it->continuation_lines_width);
1603 int next_tab_x
1604 = (((1 + absolute_x + it->tab_width - 1)
1605 / it->tab_width)
1606 * it->tab_width);
1607 int nspaces;
1608
1609 /* If part of the TAB has been displayed on the previous line
1610 which is continued now, continuation_lines_width will have
1611 been incremented already by the part that fitted on the
1612 continued line. So, we will get the right number of spaces
1613 here. */
1614 nspaces = next_tab_x - absolute_x;
1615
1616 if (it->glyph_row)
1617 {
1618 int n = nspaces;
1619
1620 it->char_to_display = ' ';
1621 it->pixel_width = it->len = 1;
1622
1623 while (n--)
1624 append_glyph (it);
1625 }
1626
1627 it->pixel_width = nspaces;
1628 it->nglyphs = nspaces;
1629 }
1630 else if (CHAR_BYTE8_P (it->char_to_display))
1631 {
1632 /* Coming here means that we must send the raw 8-bit byte as is
1633 to the terminal. Although there's no way to know how many
1634 columns it occupies on a screen, it is a good assumption that
1635 a single byte code has 1-column width. */
1636 it->pixel_width = it->nglyphs = 1;
1637 if (it->glyph_row)
1638 append_glyph (it);
1639 }
1640 else
1641 {
1642 Lisp_Object charset_list = FRAME_TERMINAL (it->f)->charset_list;
1643
1644 if (char_charset (it->char_to_display, charset_list, NULL))
1645 {
1646 it->pixel_width = CHAR_WIDTH (it->char_to_display);
1647 it->nglyphs = it->pixel_width;
1648 if (it->glyph_row)
1649 append_glyph (it);
1650 }
1651 else
1652 {
1653 Lisp_Object acronym = lookup_glyphless_char_display (-1, it);
1654
1655 eassert (it->what == IT_GLYPHLESS);
1656 produce_glyphless_glyph (it, acronym);
1657 }
1658 }
1659
1660 done:
1661 /* Advance current_x by the pixel width as a convenience for
1662 the caller. */
1663 if (it->area == TEXT_AREA)
1664 it->current_x += it->pixel_width;
1665 it->ascent = it->max_ascent = it->phys_ascent = it->max_phys_ascent = 0;
1666 it->descent = it->max_descent = it->phys_descent = it->max_phys_descent = 1;
1667 }
1668
1669 /* Append glyphs to IT's glyph_row for the composition IT->cmp_id.
1670 Called from produce_composite_glyph for terminal frames if
1671 IT->glyph_row != NULL. IT->face_id contains the character's
1672 face. */
1673
1674 static void
1675 append_composite_glyph (struct it *it)
1676 {
1677 struct glyph *glyph;
1678
1679 eassert (it->glyph_row);
1680 glyph = it->glyph_row->glyphs[it->area] + it->glyph_row->used[it->area];
1681 if (glyph < it->glyph_row->glyphs[1 + it->area])
1682 {
1683 /* If the glyph row is reversed, we need to prepend the glyph
1684 rather than append it. */
1685 if (it->glyph_row->reversed_p && it->area == TEXT_AREA)
1686 {
1687 struct glyph *g;
1688
1689 /* Make room for the new glyph. */
1690 for (g = glyph - 1; g >= it->glyph_row->glyphs[it->area]; g--)
1691 g[1] = *g;
1692 glyph = it->glyph_row->glyphs[it->area];
1693 }
1694 glyph->type = COMPOSITE_GLYPH;
1695 glyph->pixel_width = it->pixel_width;
1696 glyph->u.cmp.id = it->cmp_it.id;
1697 if (it->cmp_it.ch < 0)
1698 {
1699 glyph->u.cmp.automatic = 0;
1700 glyph->u.cmp.id = it->cmp_it.id;
1701 }
1702 else
1703 {
1704 glyph->u.cmp.automatic = 1;
1705 glyph->u.cmp.id = it->cmp_it.id;
1706 glyph->slice.cmp.from = it->cmp_it.from;
1707 glyph->slice.cmp.to = it->cmp_it.to - 1;
1708 }
1709
1710 glyph->face_id = it->face_id;
1711 glyph->padding_p = 0;
1712 glyph->charpos = CHARPOS (it->position);
1713 glyph->object = it->object;
1714 if (it->bidi_p)
1715 {
1716 glyph->resolved_level = it->bidi_it.resolved_level;
1717 if ((it->bidi_it.type & 7) != it->bidi_it.type)
1718 emacs_abort ();
1719 glyph->bidi_type = it->bidi_it.type;
1720 }
1721 else
1722 {
1723 glyph->resolved_level = 0;
1724 glyph->bidi_type = UNKNOWN_BT;
1725 }
1726
1727 ++it->glyph_row->used[it->area];
1728 ++glyph;
1729 }
1730 }
1731
1732
1733 /* Produce a composite glyph for iterator IT. IT->cmp_id is the ID of
1734 the composition. We simply produces components of the composition
1735 assuming that the terminal has a capability to layout/render it
1736 correctly. */
1737
1738 static void
1739 produce_composite_glyph (struct it *it)
1740 {
1741 if (it->cmp_it.ch < 0)
1742 {
1743 struct composition *cmp = composition_table[it->cmp_it.id];
1744
1745 it->pixel_width = cmp->width;
1746 }
1747 else
1748 {
1749 Lisp_Object gstring = composition_gstring_from_id (it->cmp_it.id);
1750
1751 it->pixel_width = composition_gstring_width (gstring, it->cmp_it.from,
1752 it->cmp_it.to, NULL);
1753 }
1754 it->nglyphs = 1;
1755 if (it->glyph_row)
1756 append_composite_glyph (it);
1757 }
1758
1759
1760 /* Append a glyph for a glyphless character to IT->glyph_row. FACE_ID
1761 is a face ID to be used for the glyph. What is actually appended
1762 are glyphs of type CHAR_GLYPH whose characters are in STR (which
1763 comes from it->nglyphs bytes). */
1764
1765 static void
1766 append_glyphless_glyph (struct it *it, int face_id, const char *str)
1767 {
1768 struct glyph *glyph, *end;
1769 int i;
1770
1771 eassert (it->glyph_row);
1772 glyph = it->glyph_row->glyphs[it->area] + it->glyph_row->used[it->area];
1773 end = it->glyph_row->glyphs[1 + it->area];
1774
1775 /* If the glyph row is reversed, we need to prepend the glyph rather
1776 than append it. */
1777 if (it->glyph_row->reversed_p && it->area == TEXT_AREA)
1778 {
1779 struct glyph *g;
1780 int move_by = it->pixel_width;
1781
1782 /* Make room for the new glyphs. */
1783 if (move_by > end - glyph) /* don't overstep end of this area */
1784 move_by = end - glyph;
1785 for (g = glyph - 1; g >= it->glyph_row->glyphs[it->area]; g--)
1786 g[move_by] = *g;
1787 glyph = it->glyph_row->glyphs[it->area];
1788 end = glyph + move_by;
1789 }
1790
1791 if (glyph >= end)
1792 return;
1793 glyph->type = CHAR_GLYPH;
1794 glyph->pixel_width = 1;
1795 glyph->face_id = face_id;
1796 glyph->padding_p = 0;
1797 glyph->charpos = CHARPOS (it->position);
1798 glyph->object = it->object;
1799 if (it->bidi_p)
1800 {
1801 glyph->resolved_level = it->bidi_it.resolved_level;
1802 if ((it->bidi_it.type & 7) != it->bidi_it.type)
1803 emacs_abort ();
1804 glyph->bidi_type = it->bidi_it.type;
1805 }
1806 else
1807 {
1808 glyph->resolved_level = 0;
1809 glyph->bidi_type = UNKNOWN_BT;
1810 }
1811
1812 /* BIDI Note: we put the glyphs of characters left to right, even in
1813 the REVERSED_P case because we write to the terminal
1814 left-to-right. */
1815 for (i = 0; i < it->nglyphs && glyph < end; ++i)
1816 {
1817 if (i > 0)
1818 glyph[0] = glyph[-1];
1819 glyph->u.ch = str[i];
1820 ++it->glyph_row->used[it->area];
1821 ++glyph;
1822 }
1823 }
1824
1825 /* Produce glyphs for a glyphless character for iterator IT.
1826 IT->glyphless_method specifies which method to use for displaying
1827 the character. See the description of enum
1828 glyphless_display_method in dispextern.h for the details.
1829
1830 ACRONYM, if non-nil, is an acronym string for the character.
1831
1832 The glyphs actually produced are of type CHAR_GLYPH. */
1833
1834 static void
1835 produce_glyphless_glyph (struct it *it, Lisp_Object acronym)
1836 {
1837 int len, face_id = merge_glyphless_glyph_face (it);
1838 char buf[sizeof "\\x" + max (6, (sizeof it->c * CHAR_BIT + 3) / 4)];
1839 char const *str = " ";
1840
1841 if (it->glyphless_method == GLYPHLESS_DISPLAY_THIN_SPACE)
1842 {
1843 /* As there's no way to produce a thin space, we produce a space
1844 of canonical width. */
1845 len = 1;
1846 }
1847 else if (it->glyphless_method == GLYPHLESS_DISPLAY_EMPTY_BOX)
1848 {
1849 len = CHAR_WIDTH (it->c);
1850 if (len == 0)
1851 len = 1;
1852 else if (len > 4)
1853 len = 4;
1854 len = sprintf (buf, "[%.*s]", len, str);
1855 str = buf;
1856 }
1857 else
1858 {
1859 if (it->glyphless_method == GLYPHLESS_DISPLAY_ACRONYM)
1860 {
1861 if (! STRINGP (acronym) && CHAR_TABLE_P (Vglyphless_char_display))
1862 acronym = CHAR_TABLE_REF (Vglyphless_char_display, it->c);
1863 if (CONSP (acronym))
1864 acronym = XCDR (acronym);
1865 buf[0] = '[';
1866 str = STRINGP (acronym) ? SSDATA (acronym) : "";
1867 for (len = 0; len < 6 && str[len] && ASCII_BYTE_P (str[len]); len++)
1868 buf[1 + len] = str[len];
1869 buf[1 + len] = ']';
1870 len += 2;
1871 }
1872 else
1873 {
1874 eassert (it->glyphless_method == GLYPHLESS_DISPLAY_HEX_CODE);
1875 len = (it->c < 0x10000 ? sprintf (buf, "\\u%04X", it->c)
1876 : it->c <= MAX_UNICODE_CHAR ? sprintf (buf, "\\U%06X", it->c)
1877 : sprintf (buf, "\\x%06X", it->c));
1878 }
1879 str = buf;
1880 }
1881
1882 it->pixel_width = len;
1883 it->nglyphs = len;
1884 if (it->glyph_row)
1885 append_glyphless_glyph (it, face_id, str);
1886 }
1887
1888 \f
1889 /***********************************************************************
1890 Faces
1891 ***********************************************************************/
1892
1893 /* Value is non-zero if attribute ATTR may be used. ATTR should be
1894 one of the enumerators from enum no_color_bit, or a bit set built
1895 from them. Some display attributes may not be used together with
1896 color; the termcap capability `NC' specifies which ones. */
1897
1898 #define MAY_USE_WITH_COLORS_P(tty, ATTR) \
1899 (tty->TN_max_colors > 0 \
1900 ? (tty->TN_no_color_video & (ATTR)) == 0 \
1901 : 1)
1902
1903 /* Turn appearances of face FACE_ID on tty frame F on.
1904 FACE_ID is a realized face ID number, in the face cache. */
1905
1906 static void
1907 turn_on_face (struct frame *f, int face_id)
1908 {
1909 struct face *face = FACE_FROM_ID (f, face_id);
1910 unsigned long fg = face->foreground;
1911 unsigned long bg = face->background;
1912 struct tty_display_info *tty = FRAME_TTY (f);
1913
1914 /* Use reverse video if the face specifies that.
1915 Do this first because TS_end_standout_mode may be the same
1916 as TS_exit_attribute_mode, which turns all appearances off. */
1917 if (MAY_USE_WITH_COLORS_P (tty, NC_REVERSE)
1918 && (inverse_video
1919 ? fg == FACE_TTY_DEFAULT_FG_COLOR || bg == FACE_TTY_DEFAULT_BG_COLOR
1920 : fg == FACE_TTY_DEFAULT_BG_COLOR || bg == FACE_TTY_DEFAULT_FG_COLOR))
1921 tty_toggle_highlight (tty);
1922
1923 if (face->tty_bold_p && MAY_USE_WITH_COLORS_P (tty, NC_BOLD))
1924 OUTPUT1_IF (tty, tty->TS_enter_bold_mode);
1925
1926 if (face->tty_italic_p && MAY_USE_WITH_COLORS_P (tty, NC_ITALIC))
1927 {
1928 if (tty->TS_enter_italic_mode)
1929 OUTPUT1 (tty, tty->TS_enter_italic_mode);
1930 else
1931 /* Italics mode is unavailable on many terminals. In that
1932 case, map slant to dimmed text; we want italic text to
1933 appear different and dimming is not otherwise used. */
1934 OUTPUT1 (tty, tty->TS_enter_dim_mode);
1935 }
1936
1937 if (face->tty_underline_p && MAY_USE_WITH_COLORS_P (tty, NC_UNDERLINE))
1938 OUTPUT1_IF (tty, tty->TS_enter_underline_mode);
1939
1940 if (tty->TN_max_colors > 0)
1941 {
1942 const char *ts;
1943 char *p;
1944
1945 ts = tty->standout_mode ? tty->TS_set_background : tty->TS_set_foreground;
1946 if (face_tty_specified_color (fg) && ts)
1947 {
1948 p = tparam (ts, NULL, 0, fg, 0, 0, 0);
1949 OUTPUT (tty, p);
1950 xfree (p);
1951 }
1952
1953 ts = tty->standout_mode ? tty->TS_set_foreground : tty->TS_set_background;
1954 if (face_tty_specified_color (bg) && ts)
1955 {
1956 p = tparam (ts, NULL, 0, bg, 0, 0, 0);
1957 OUTPUT (tty, p);
1958 xfree (p);
1959 }
1960 }
1961 }
1962
1963
1964 /* Turn off appearances of face FACE_ID on tty frame F. */
1965
1966 static void
1967 turn_off_face (struct frame *f, int face_id)
1968 {
1969 struct face *face = FACE_FROM_ID (f, face_id);
1970 struct tty_display_info *tty = FRAME_TTY (f);
1971
1972 eassert (face != NULL);
1973
1974 if (tty->TS_exit_attribute_mode)
1975 {
1976 /* Capability "me" will turn off appearance modes double-bright,
1977 half-bright, reverse-video, standout, underline. It may or
1978 may not turn off alt-char-mode. */
1979 if (face->tty_bold_p
1980 || face->tty_italic_p
1981 || face->tty_reverse_p
1982 || face->tty_underline_p)
1983 {
1984 OUTPUT1_IF (tty, tty->TS_exit_attribute_mode);
1985 if (strcmp (tty->TS_exit_attribute_mode, tty->TS_end_standout_mode) == 0)
1986 tty->standout_mode = 0;
1987 }
1988 }
1989 else
1990 {
1991 /* If we don't have "me" we can only have those appearances
1992 that have exit sequences defined. */
1993 if (face->tty_underline_p)
1994 OUTPUT_IF (tty, tty->TS_exit_underline_mode);
1995 }
1996
1997 /* Switch back to default colors. */
1998 if (tty->TN_max_colors > 0
1999 && ((face->foreground != FACE_TTY_DEFAULT_COLOR
2000 && face->foreground != FACE_TTY_DEFAULT_FG_COLOR)
2001 || (face->background != FACE_TTY_DEFAULT_COLOR
2002 && face->background != FACE_TTY_DEFAULT_BG_COLOR)))
2003 OUTPUT1_IF (tty, tty->TS_orig_pair);
2004 }
2005
2006
2007 /* Return true if the terminal on frame F supports all of the
2008 capabilities in CAPS simultaneously. */
2009
2010 bool
2011 tty_capable_p (struct tty_display_info *tty, unsigned int caps)
2012 {
2013 #define TTY_CAPABLE_P_TRY(tty, cap, TS, NC_bit) \
2014 if ((caps & (cap)) && (!(TS) || !MAY_USE_WITH_COLORS_P(tty, NC_bit))) \
2015 return 0;
2016
2017 TTY_CAPABLE_P_TRY (tty, TTY_CAP_INVERSE, tty->TS_standout_mode, NC_REVERSE);
2018 TTY_CAPABLE_P_TRY (tty, TTY_CAP_UNDERLINE, tty->TS_enter_underline_mode, NC_UNDERLINE);
2019 TTY_CAPABLE_P_TRY (tty, TTY_CAP_BOLD, tty->TS_enter_bold_mode, NC_BOLD);
2020 TTY_CAPABLE_P_TRY (tty, TTY_CAP_DIM, tty->TS_enter_dim_mode, NC_DIM);
2021 TTY_CAPABLE_P_TRY (tty, TTY_CAP_ITALIC, tty->TS_enter_italic_mode, NC_ITALIC);
2022
2023 /* We can do it! */
2024 return 1;
2025 }
2026
2027 /* Return non-zero if the terminal is capable to display colors. */
2028
2029 DEFUN ("tty-display-color-p", Ftty_display_color_p, Stty_display_color_p,
2030 0, 1, 0,
2031 doc: /* Return non-nil if the tty device TERMINAL can display colors.
2032
2033 TERMINAL can be a terminal object, a frame, or nil (meaning the
2034 selected frame's terminal). This function always returns nil if
2035 TERMINAL does not refer to a text terminal. */)
2036 (Lisp_Object terminal)
2037 {
2038 struct terminal *t = get_tty_terminal (terminal, 0);
2039 if (!t)
2040 return Qnil;
2041 else
2042 return t->display_info.tty->TN_max_colors > 0 ? Qt : Qnil;
2043 }
2044
2045 /* Return the number of supported colors. */
2046 DEFUN ("tty-display-color-cells", Ftty_display_color_cells,
2047 Stty_display_color_cells, 0, 1, 0,
2048 doc: /* Return the number of colors supported by the tty device TERMINAL.
2049
2050 TERMINAL can be a terminal object, a frame, or nil (meaning the
2051 selected frame's terminal). This function always returns 0 if
2052 TERMINAL does not refer to a text terminal. */)
2053 (Lisp_Object terminal)
2054 {
2055 struct terminal *t = get_tty_terminal (terminal, 0);
2056 if (!t)
2057 return make_number (0);
2058 else
2059 return make_number (t->display_info.tty->TN_max_colors);
2060 }
2061
2062 #ifndef DOS_NT
2063
2064 /* Declare here rather than in the function, as in the rest of Emacs,
2065 to work around an HPUX compiler bug (?). See
2066 http://lists.gnu.org/archive/html/emacs-devel/2007-08/msg00410.html */
2067 static int default_max_colors;
2068 static int default_max_pairs;
2069 static int default_no_color_video;
2070 static char *default_orig_pair;
2071 static char *default_set_foreground;
2072 static char *default_set_background;
2073
2074 /* Save or restore the default color-related capabilities of this
2075 terminal. */
2076 static void
2077 tty_default_color_capabilities (struct tty_display_info *tty, bool save)
2078 {
2079
2080 if (save)
2081 {
2082 dupstring (&default_orig_pair, tty->TS_orig_pair);
2083 dupstring (&default_set_foreground, tty->TS_set_foreground);
2084 dupstring (&default_set_background, tty->TS_set_background);
2085 default_max_colors = tty->TN_max_colors;
2086 default_max_pairs = tty->TN_max_pairs;
2087 default_no_color_video = tty->TN_no_color_video;
2088 }
2089 else
2090 {
2091 tty->TS_orig_pair = default_orig_pair;
2092 tty->TS_set_foreground = default_set_foreground;
2093 tty->TS_set_background = default_set_background;
2094 tty->TN_max_colors = default_max_colors;
2095 tty->TN_max_pairs = default_max_pairs;
2096 tty->TN_no_color_video = default_no_color_video;
2097 }
2098 }
2099
2100 /* Setup one of the standard tty color schemes according to MODE.
2101 MODE's value is generally the number of colors which we want to
2102 support; zero means set up for the default capabilities, the ones
2103 we saw at init_tty time; -1 means turn off color support. */
2104 static void
2105 tty_setup_colors (struct tty_display_info *tty, int mode)
2106 {
2107 /* Canonicalize all negative values of MODE. */
2108 if (mode < -1)
2109 mode = -1;
2110
2111 switch (mode)
2112 {
2113 case -1: /* no colors at all */
2114 tty->TN_max_colors = 0;
2115 tty->TN_max_pairs = 0;
2116 tty->TN_no_color_video = 0;
2117 tty->TS_set_foreground = tty->TS_set_background = tty->TS_orig_pair = NULL;
2118 break;
2119 case 0: /* default colors, if any */
2120 default:
2121 tty_default_color_capabilities (tty, 0);
2122 break;
2123 case 8: /* 8 standard ANSI colors */
2124 tty->TS_orig_pair = "\033[0m";
2125 #ifdef TERMINFO
2126 tty->TS_set_foreground = "\033[3%p1%dm";
2127 tty->TS_set_background = "\033[4%p1%dm";
2128 #else
2129 tty->TS_set_foreground = "\033[3%dm";
2130 tty->TS_set_background = "\033[4%dm";
2131 #endif
2132 tty->TN_max_colors = 8;
2133 tty->TN_max_pairs = 64;
2134 tty->TN_no_color_video = 0;
2135 break;
2136 }
2137 }
2138
2139 void
2140 set_tty_color_mode (struct tty_display_info *tty, struct frame *f)
2141 {
2142 Lisp_Object tem, val;
2143 Lisp_Object color_mode;
2144 int mode;
2145 Lisp_Object tty_color_mode_alist
2146 = Fintern_soft (build_string ("tty-color-mode-alist"), Qnil);
2147
2148 tem = assq_no_quit (Qtty_color_mode, f->param_alist);
2149 val = CONSP (tem) ? XCDR (tem) : Qnil;
2150
2151 if (INTEGERP (val))
2152 color_mode = val;
2153 else if (SYMBOLP (tty_color_mode_alist))
2154 {
2155 tem = Fassq (val, Fsymbol_value (tty_color_mode_alist));
2156 color_mode = CONSP (tem) ? XCDR (tem) : Qnil;
2157 }
2158 else
2159 color_mode = Qnil;
2160
2161 mode = TYPE_RANGED_INTEGERP (int, color_mode) ? XINT (color_mode) : 0;
2162
2163 if (mode != tty->previous_color_mode)
2164 {
2165 tty->previous_color_mode = mode;
2166 tty_setup_colors (tty , mode);
2167 /* This recomputes all the faces given the new color definitions. */
2168 safe_call (1, intern ("tty-set-up-initial-frame-faces"));
2169 }
2170 }
2171
2172 #endif /* !DOS_NT */
2173
2174 \f
2175
2176 /* Return the tty display object specified by TERMINAL. */
2177
2178 static struct terminal *
2179 get_tty_terminal (Lisp_Object terminal, bool throw)
2180 {
2181 struct terminal *t = get_terminal (terminal, throw);
2182
2183 if (t && t->type != output_termcap && t->type != output_msdos_raw)
2184 {
2185 if (throw)
2186 error ("Device %d is not a termcap terminal device", t->id);
2187 else
2188 return NULL;
2189 }
2190
2191 return t;
2192 }
2193
2194 /* Return an active termcap device that uses the tty device with the
2195 given name.
2196
2197 This function ignores suspended devices.
2198
2199 Returns NULL if the named terminal device is not opened. */
2200
2201 struct terminal *
2202 get_named_tty (const char *name)
2203 {
2204 struct terminal *t;
2205
2206 eassert (name);
2207
2208 for (t = terminal_list; t; t = t->next_terminal)
2209 {
2210 if ((t->type == output_termcap || t->type == output_msdos_raw)
2211 && !strcmp (t->display_info.tty->name, name)
2212 && TERMINAL_ACTIVE_P (t))
2213 return t;
2214 }
2215
2216 return 0;
2217 }
2218
2219 \f
2220 DEFUN ("tty-type", Ftty_type, Stty_type, 0, 1, 0,
2221 doc: /* Return the type of the tty device that TERMINAL uses.
2222 Returns nil if TERMINAL is not on a tty device.
2223
2224 TERMINAL can be a terminal object, a frame, or nil (meaning the
2225 selected frame's terminal). */)
2226 (Lisp_Object terminal)
2227 {
2228 struct terminal *t = get_terminal (terminal, 1);
2229
2230 if (t->type != output_termcap && t->type != output_msdos_raw)
2231 return Qnil;
2232
2233 if (t->display_info.tty->type)
2234 return build_string (t->display_info.tty->type);
2235 else
2236 return Qnil;
2237 }
2238
2239 DEFUN ("controlling-tty-p", Fcontrolling_tty_p, Scontrolling_tty_p, 0, 1, 0,
2240 doc: /* Return non-nil if TERMINAL is the controlling tty of the Emacs process.
2241
2242 TERMINAL can be a terminal object, a frame, or nil (meaning the
2243 selected frame's terminal). This function always returns nil if
2244 TERMINAL is not on a tty device. */)
2245 (Lisp_Object terminal)
2246 {
2247 struct terminal *t = get_terminal (terminal, 1);
2248
2249 if ((t->type != output_termcap && t->type != output_msdos_raw)
2250 || strcmp (t->display_info.tty->name, DEV_TTY) != 0)
2251 return Qnil;
2252 else
2253 return Qt;
2254 }
2255
2256 DEFUN ("tty-no-underline", Ftty_no_underline, Stty_no_underline, 0, 1, 0,
2257 doc: /* Declare that the tty used by TERMINAL does not handle underlining.
2258 This is used to override the terminfo data, for certain terminals that
2259 do not really do underlining, but say that they do. This function has
2260 no effect if used on a non-tty terminal.
2261
2262 TERMINAL can be a terminal object, a frame or nil (meaning the
2263 selected frame's terminal). This function always returns nil if
2264 TERMINAL does not refer to a text terminal. */)
2265 (Lisp_Object terminal)
2266 {
2267 struct terminal *t = get_terminal (terminal, 1);
2268
2269 if (t->type == output_termcap)
2270 t->display_info.tty->TS_enter_underline_mode = 0;
2271 return Qnil;
2272 }
2273
2274 DEFUN ("tty-top-frame", Ftty_top_frame, Stty_top_frame, 0, 1, 0,
2275 doc: /* Return the topmost terminal frame on TERMINAL.
2276 TERMINAL can be a terminal object, a frame or nil (meaning the
2277 selected frame's terminal). This function returns nil if TERMINAL
2278 does not refer to a text terminal. Otherwise, it returns the
2279 top-most frame on the text terminal. */)
2280 (Lisp_Object terminal)
2281 {
2282 struct terminal *t = get_terminal (terminal, 1);
2283
2284 if (t->type == output_termcap)
2285 return t->display_info.tty->top_frame;
2286 return Qnil;
2287 }
2288
2289 \f
2290
2291 DEFUN ("suspend-tty", Fsuspend_tty, Ssuspend_tty, 0, 1, 0,
2292 doc: /* Suspend the terminal device TTY.
2293
2294 The device is restored to its default state, and Emacs ceases all
2295 access to the tty device. Frames that use the device are not deleted,
2296 but input is not read from them and if they change, their display is
2297 not updated.
2298
2299 TTY may be a terminal object, a frame, or nil for the terminal device
2300 of the currently selected frame.
2301
2302 This function runs `suspend-tty-functions' after suspending the
2303 device. The functions are run with one arg, the id of the suspended
2304 terminal device.
2305
2306 `suspend-tty' does nothing if it is called on a device that is already
2307 suspended.
2308
2309 A suspended tty may be resumed by calling `resume-tty' on it. */)
2310 (Lisp_Object tty)
2311 {
2312 struct terminal *t = get_tty_terminal (tty, 1);
2313 FILE *f;
2314
2315 if (!t)
2316 error ("Unknown tty device");
2317
2318 f = t->display_info.tty->input;
2319
2320 if (f)
2321 {
2322 /* First run `suspend-tty-functions' and then clean up the tty
2323 state because `suspend-tty-functions' might need to change
2324 the tty state. */
2325 Lisp_Object args[2];
2326 args[0] = intern ("suspend-tty-functions");
2327 XSETTERMINAL (args[1], t);
2328 Frun_hook_with_args (2, args);
2329
2330 reset_sys_modes (t->display_info.tty);
2331 delete_keyboard_wait_descriptor (fileno (f));
2332
2333 #ifndef MSDOS
2334 fclose (f);
2335 if (f != t->display_info.tty->output)
2336 fclose (t->display_info.tty->output);
2337 #endif
2338
2339 t->display_info.tty->input = 0;
2340 t->display_info.tty->output = 0;
2341
2342 if (FRAMEP (t->display_info.tty->top_frame))
2343 SET_FRAME_VISIBLE (XFRAME (t->display_info.tty->top_frame), 0);
2344
2345 }
2346
2347 /* Clear display hooks to prevent further output. */
2348 clear_tty_hooks (t);
2349
2350 return Qnil;
2351 }
2352
2353 DEFUN ("resume-tty", Fresume_tty, Sresume_tty, 0, 1, 0,
2354 doc: /* Resume the previously suspended terminal device TTY.
2355 The terminal is opened and reinitialized. Frames that are on the
2356 suspended terminal are revived.
2357
2358 It is an error to resume a terminal while another terminal is active
2359 on the same device.
2360
2361 This function runs `resume-tty-functions' after resuming the terminal.
2362 The functions are run with one arg, the id of the resumed terminal
2363 device.
2364
2365 `resume-tty' does nothing if it is called on a device that is not
2366 suspended.
2367
2368 TTY may be a terminal object, a frame, or nil (meaning the selected
2369 frame's terminal). */)
2370 (Lisp_Object tty)
2371 {
2372 struct terminal *t = get_tty_terminal (tty, 1);
2373 int fd;
2374
2375 if (!t)
2376 error ("Unknown tty device");
2377
2378 if (!t->display_info.tty->input)
2379 {
2380 if (get_named_tty (t->display_info.tty->name))
2381 error ("Cannot resume display while another display is active on the same device");
2382
2383 #ifdef MSDOS
2384 t->display_info.tty->output = stdout;
2385 t->display_info.tty->input = stdin;
2386 #else /* !MSDOS */
2387 fd = emacs_open (t->display_info.tty->name, O_RDWR | O_NOCTTY, 0);
2388 t->display_info.tty->input = t->display_info.tty->output
2389 = fd < 0 ? 0 : fdopen (fd, "w+");
2390
2391 if (! t->display_info.tty->input)
2392 {
2393 int open_errno = errno;
2394 emacs_close (fd);
2395 report_file_errno ("Cannot reopen tty device",
2396 build_string (t->display_info.tty->name),
2397 open_errno);
2398 }
2399
2400 if (!O_IGNORE_CTTY && strcmp (t->display_info.tty->name, DEV_TTY) != 0)
2401 dissociate_if_controlling_tty (fd);
2402 #endif
2403
2404 add_keyboard_wait_descriptor (fd);
2405
2406 if (FRAMEP (t->display_info.tty->top_frame))
2407 {
2408 struct frame *f = XFRAME (t->display_info.tty->top_frame);
2409 int width, height;
2410 int old_height = FRAME_COLS (f);
2411 int old_width = FRAME_LINES (f);
2412
2413 /* Check if terminal/window size has changed while the frame
2414 was suspended. */
2415 get_tty_size (fileno (t->display_info.tty->input), &width, &height);
2416 if (width != old_width || height != old_height)
2417 change_frame_size (f, width, height, 0, 0, 0, 0);
2418 SET_FRAME_VISIBLE (XFRAME (t->display_info.tty->top_frame), 1);
2419 }
2420
2421 set_tty_hooks (t);
2422 init_sys_modes (t->display_info.tty);
2423
2424 {
2425 /* Run `resume-tty-functions'. */
2426 Lisp_Object args[2];
2427 args[0] = intern ("resume-tty-functions");
2428 XSETTERMINAL (args[1], t);
2429 Frun_hook_with_args (2, args);
2430 }
2431 }
2432
2433 set_tty_hooks (t);
2434
2435 return Qnil;
2436 }
2437
2438 \f
2439 /***********************************************************************
2440 Mouse
2441 ***********************************************************************/
2442
2443 #ifdef HAVE_GPM
2444
2445 #ifndef HAVE_WINDOW_SYSTEM
2446 void
2447 term_mouse_moveto (int x, int y)
2448 {
2449 /* TODO: how to set mouse position?
2450 const char *name;
2451 int fd;
2452 name = (const char *) ttyname (0);
2453 fd = emacs_open (name, O_WRONLY, 0);
2454 SOME_FUNCTION (x, y, fd);
2455 emacs_close (fd);
2456 last_mouse_x = x;
2457 last_mouse_y = y; */
2458 }
2459 #endif /* HAVE_WINDOW_SYSTEM */
2460
2461 /* Implementation of draw_row_with_mouse_face for TTY/GPM. */
2462 void
2463 tty_draw_row_with_mouse_face (struct window *w, struct glyph_row *row,
2464 int start_hpos, int end_hpos,
2465 enum draw_glyphs_face draw)
2466 {
2467 int nglyphs = end_hpos - start_hpos;
2468 struct frame *f = XFRAME (WINDOW_FRAME (w));
2469 struct tty_display_info *tty = FRAME_TTY (f);
2470 int face_id = tty->mouse_highlight.mouse_face_face_id;
2471 int save_x, save_y, pos_x, pos_y;
2472
2473 if (end_hpos >= row->used[TEXT_AREA])
2474 nglyphs = row->used[TEXT_AREA] - start_hpos;
2475
2476 pos_y = row->y + WINDOW_TOP_EDGE_Y (w);
2477 pos_x = row->used[LEFT_MARGIN_AREA] + start_hpos + WINDOW_LEFT_EDGE_X (w);
2478
2479 /* Save current cursor co-ordinates. */
2480 save_y = curY (tty);
2481 save_x = curX (tty);
2482 cursor_to (f, pos_y, pos_x);
2483
2484 if (draw == DRAW_MOUSE_FACE)
2485 tty_write_glyphs_with_face (f, row->glyphs[TEXT_AREA] + start_hpos,
2486 nglyphs, face_id);
2487 else if (draw == DRAW_NORMAL_TEXT)
2488 write_glyphs (f, row->glyphs[TEXT_AREA] + start_hpos, nglyphs);
2489
2490 cursor_to (f, save_y, save_x);
2491 }
2492
2493 static bool
2494 term_mouse_movement (struct frame *frame, Gpm_Event *event)
2495 {
2496 /* Has the mouse moved off the glyph it was on at the last sighting? */
2497 if (event->x != last_mouse_x || event->y != last_mouse_y)
2498 {
2499 frame->mouse_moved = 1;
2500 note_mouse_highlight (frame, event->x, event->y);
2501 /* Remember which glyph we're now on. */
2502 last_mouse_x = event->x;
2503 last_mouse_y = event->y;
2504 return 1;
2505 }
2506 return 0;
2507 }
2508
2509 /* Return the Time that corresponds to T. Wrap around on overflow. */
2510 static Time
2511 timeval_to_Time (struct timeval const *t)
2512 {
2513 Time s_1000, ms;
2514
2515 s_1000 = t->tv_sec;
2516 s_1000 *= 1000;
2517 ms = t->tv_usec / 1000;
2518 return s_1000 + ms;
2519 }
2520
2521 /* Return the current position of the mouse.
2522
2523 Set *f to the frame the mouse is in, or zero if the mouse is in no
2524 Emacs frame. If it is set to zero, all the other arguments are
2525 garbage.
2526
2527 Set *bar_window to Qnil, and *x and *y to the column and
2528 row of the character cell the mouse is over.
2529
2530 Set *timeptr to the time the mouse was at the returned position.
2531
2532 This clears mouse_moved until the next motion
2533 event arrives. */
2534 static void
2535 term_mouse_position (struct frame **fp, int insist, Lisp_Object *bar_window,
2536 enum scroll_bar_part *part, Lisp_Object *x,
2537 Lisp_Object *y, Time *timeptr)
2538 {
2539 struct timeval now;
2540
2541 *fp = SELECTED_FRAME ();
2542 (*fp)->mouse_moved = 0;
2543
2544 *bar_window = Qnil;
2545 *part = 0;
2546
2547 XSETINT (*x, last_mouse_x);
2548 XSETINT (*y, last_mouse_y);
2549 gettimeofday(&now, 0);
2550 *timeptr = timeval_to_Time (&now);
2551 }
2552
2553 /* Prepare a mouse-event in *RESULT for placement in the input queue.
2554
2555 If the event is a button press, then note that we have grabbed
2556 the mouse. */
2557
2558 static Lisp_Object
2559 term_mouse_click (struct input_event *result, Gpm_Event *event,
2560 struct frame *f)
2561 {
2562 struct timeval now;
2563 int i, j;
2564
2565 result->kind = GPM_CLICK_EVENT;
2566 for (i = 0, j = GPM_B_LEFT; i < 3; i++, j >>= 1 )
2567 {
2568 if (event->buttons & j) {
2569 result->code = i; /* button number */
2570 break;
2571 }
2572 }
2573 gettimeofday(&now, 0);
2574 result->timestamp = timeval_to_Time (&now);
2575
2576 if (event->type & GPM_UP)
2577 result->modifiers = up_modifier;
2578 else if (event->type & GPM_DOWN)
2579 result->modifiers = down_modifier;
2580 else
2581 result->modifiers = 0;
2582
2583 if (event->type & GPM_SINGLE)
2584 result->modifiers |= click_modifier;
2585
2586 if (event->type & GPM_DOUBLE)
2587 result->modifiers |= double_modifier;
2588
2589 if (event->type & GPM_TRIPLE)
2590 result->modifiers |= triple_modifier;
2591
2592 if (event->type & GPM_DRAG)
2593 result->modifiers |= drag_modifier;
2594
2595 if (!(event->type & (GPM_MOVE | GPM_DRAG))) {
2596
2597 /* 1 << KG_SHIFT */
2598 if (event->modifiers & (1 << 0))
2599 result->modifiers |= shift_modifier;
2600
2601 /* 1 << KG_CTRL */
2602 if (event->modifiers & (1 << 2))
2603 result->modifiers |= ctrl_modifier;
2604
2605 /* 1 << KG_ALT || KG_ALTGR */
2606 if (event->modifiers & (1 << 3)
2607 || event->modifiers & (1 << 1))
2608 result->modifiers |= meta_modifier;
2609 }
2610
2611 XSETINT (result->x, event->x);
2612 XSETINT (result->y, event->y);
2613 XSETFRAME (result->frame_or_window, f);
2614 result->arg = Qnil;
2615 return Qnil;
2616 }
2617
2618 int
2619 handle_one_term_event (struct tty_display_info *tty, Gpm_Event *event, struct input_event* hold_quit)
2620 {
2621 struct frame *f = XFRAME (tty->top_frame);
2622 struct input_event ie;
2623 bool do_help = 0;
2624 int count = 0;
2625
2626 EVENT_INIT (ie);
2627 ie.kind = NO_EVENT;
2628 ie.arg = Qnil;
2629
2630 if (event->type & (GPM_MOVE | GPM_DRAG)) {
2631 previous_help_echo_string = help_echo_string;
2632 help_echo_string = Qnil;
2633
2634 Gpm_DrawPointer (event->x, event->y, fileno (tty->output));
2635
2636 if (!term_mouse_movement (f, event))
2637 help_echo_string = previous_help_echo_string;
2638
2639 /* If the contents of the global variable help_echo_string
2640 has changed, generate a HELP_EVENT. */
2641 if (!NILP (help_echo_string)
2642 || !NILP (previous_help_echo_string))
2643 do_help = 1;
2644
2645 goto done;
2646 }
2647 else {
2648 f->mouse_moved = 0;
2649 term_mouse_click (&ie, event, f);
2650 }
2651
2652 done:
2653 if (ie.kind != NO_EVENT)
2654 {
2655 kbd_buffer_store_event_hold (&ie, hold_quit);
2656 count++;
2657 }
2658
2659 if (do_help
2660 && !(hold_quit && hold_quit->kind != NO_EVENT))
2661 {
2662 Lisp_Object frame;
2663
2664 if (f)
2665 XSETFRAME (frame, f);
2666 else
2667 frame = Qnil;
2668
2669 gen_help_event (help_echo_string, frame, help_echo_window,
2670 help_echo_object, help_echo_pos);
2671 count++;
2672 }
2673
2674 return count;
2675 }
2676
2677 DEFUN ("gpm-mouse-start", Fgpm_mouse_start, Sgpm_mouse_start,
2678 0, 0, 0,
2679 doc: /* Open a connection to Gpm.
2680 Gpm-mouse can only be activated for one tty at a time. */)
2681 (void)
2682 {
2683 struct frame *f = SELECTED_FRAME ();
2684 struct tty_display_info *tty
2685 = ((f)->output_method == output_termcap
2686 ? (f)->terminal->display_info.tty : NULL);
2687 Gpm_Connect connection;
2688
2689 if (!tty)
2690 error ("Gpm-mouse only works in the GNU/Linux console");
2691 if (gpm_tty == tty)
2692 return Qnil; /* Already activated, nothing to do. */
2693 if (gpm_tty)
2694 error ("Gpm-mouse can only be activated for one tty at a time");
2695
2696 connection.eventMask = ~0;
2697 connection.defaultMask = ~GPM_HARD;
2698 connection.maxMod = ~0;
2699 connection.minMod = 0;
2700 gpm_zerobased = 1;
2701
2702 if (Gpm_Open (&connection, 0) < 0)
2703 error ("Gpm-mouse failed to connect to the gpm daemon");
2704 else
2705 {
2706 gpm_tty = tty;
2707 /* `init_sys_modes' arranges for mouse movements sent through gpm_fd
2708 to generate SIGIOs. Apparently we need to call reset_sys_modes
2709 before calling init_sys_modes. */
2710 reset_sys_modes (tty);
2711 init_sys_modes (tty);
2712 add_gpm_wait_descriptor (gpm_fd);
2713 return Qnil;
2714 }
2715 }
2716
2717 void
2718 close_gpm (int fd)
2719 {
2720 if (fd >= 0)
2721 delete_gpm_wait_descriptor (fd);
2722 while (Gpm_Close()); /* close all the stack */
2723 gpm_tty = NULL;
2724 }
2725
2726 DEFUN ("gpm-mouse-stop", Fgpm_mouse_stop, Sgpm_mouse_stop,
2727 0, 0, 0,
2728 doc: /* Close a connection to Gpm. */)
2729 (void)
2730 {
2731 struct frame *f = SELECTED_FRAME ();
2732 struct tty_display_info *tty
2733 = ((f)->output_method == output_termcap
2734 ? (f)->terminal->display_info.tty : NULL);
2735
2736 if (!tty || gpm_tty != tty)
2737 return Qnil; /* Not activated on this terminal, nothing to do. */
2738
2739 close_gpm (gpm_fd);
2740 return Qnil;
2741 }
2742 #endif /* HAVE_GPM */
2743
2744 \f
2745 /***********************************************************************
2746 Menus
2747 ***********************************************************************/
2748
2749 #if !defined (MSDOS)
2750
2751 /* TTY menu implementation and main ideas are borrowed from msdos.c.
2752
2753 However, unlike on MSDOS, where the menu text is drawn directly to
2754 the display video memory, on a TTY we use display_string (see
2755 display_tty_menu_item in xdisp.c) to put the glyphs produced from
2756 the menu items into the frame's 'desired_matrix' glyph matrix, and
2757 then call update_frame_with_menu to deliver the results to the
2758 glass. The previous contents of the screen, in the form of the
2759 current_matrix, is stashed away, and used to restore screen
2760 contents when the menu selection changes or when the final
2761 selection is made and the menu should be popped down.
2762
2763 The idea of this implementation was suggested by Gerd Moellmann. */
2764
2765 #define TTYM_FAILURE -1
2766 #define TTYM_SUCCESS 1
2767 #define TTYM_NO_SELECT 2
2768 #define TTYM_IA_SELECT 3
2769 #define TTYM_NEXT 4
2770 #define TTYM_PREV 5
2771
2772 /* These hold text of the current and the previous menu help messages. */
2773 static const char *menu_help_message, *prev_menu_help_message;
2774 /* Pane number and item number of the menu item which generated the
2775 last menu help message. */
2776 static int menu_help_paneno, menu_help_itemno;
2777
2778 static Lisp_Object Qtty_menu_navigation_map, Qtty_menu_exit;
2779 static Lisp_Object Qtty_menu_prev_item, Qtty_menu_next_item;
2780 static Lisp_Object Qtty_menu_next_menu, Qtty_menu_prev_menu;
2781 static Lisp_Object Qtty_menu_select, Qtty_menu_ignore;
2782 static Lisp_Object Qtty_menu_mouse_movement;
2783
2784 typedef struct tty_menu_struct
2785 {
2786 int count;
2787 char **text;
2788 struct tty_menu_struct **submenu;
2789 int *panenumber; /* Also used as enabled flag. */
2790 ptrdiff_t allocated;
2791 int panecount;
2792 int width;
2793 const char **help_text;
2794 } tty_menu;
2795
2796 /* Create a brand new menu structure. */
2797
2798 static tty_menu *
2799 tty_menu_create (void)
2800 {
2801 return xzalloc (sizeof *tty_menu_create ());
2802 }
2803
2804 /* Allocate some (more) memory for MENU ensuring that there is room for one
2805 more item. */
2806
2807 static void
2808 tty_menu_make_room (tty_menu *menu)
2809 {
2810 if (menu->allocated == menu->count)
2811 {
2812 ptrdiff_t allocated = menu->allocated;
2813 menu->text = xpalloc (menu->text, &allocated, 1, -1, sizeof *menu->text);
2814 menu->text = xrealloc (menu->text, allocated * sizeof *menu->text);
2815 menu->submenu = xrealloc (menu->submenu,
2816 allocated * sizeof *menu->submenu);
2817 menu->panenumber = xrealloc (menu->panenumber,
2818 allocated * sizeof *menu->panenumber);
2819 menu->help_text = xrealloc (menu->help_text,
2820 allocated * sizeof *menu->help_text);
2821 menu->allocated = allocated;
2822 }
2823 }
2824
2825 /* Search the given menu structure for a given pane number. */
2826
2827 static tty_menu *
2828 tty_menu_search_pane (tty_menu *menu, int pane)
2829 {
2830 int i;
2831 tty_menu *try;
2832
2833 for (i = 0; i < menu->count; i++)
2834 if (menu->submenu[i])
2835 {
2836 if (pane == menu->panenumber[i])
2837 return menu->submenu[i];
2838 try = tty_menu_search_pane (menu->submenu[i], pane);
2839 if (try)
2840 return try;
2841 }
2842 return (tty_menu *) 0;
2843 }
2844
2845 /* Determine how much screen space a given menu needs. */
2846
2847 static void
2848 tty_menu_calc_size (tty_menu *menu, int *width, int *height)
2849 {
2850 int i, h2, w2, maxsubwidth, maxheight;
2851
2852 maxsubwidth = menu->width;
2853 maxheight = menu->count;
2854 for (i = 0; i < menu->count; i++)
2855 {
2856 if (menu->submenu[i])
2857 {
2858 tty_menu_calc_size (menu->submenu[i], &w2, &h2);
2859 if (w2 > maxsubwidth) maxsubwidth = w2;
2860 if (i + h2 > maxheight) maxheight = i + h2;
2861 }
2862 }
2863 *width = maxsubwidth;
2864 *height = maxheight;
2865 }
2866
2867 static void
2868 mouse_get_xy (int *x, int *y)
2869 {
2870 struct frame *sf = SELECTED_FRAME ();
2871 Lisp_Object lmx = Qnil, lmy = Qnil, lisp_dummy;
2872 enum scroll_bar_part part_dummy;
2873 Time time_dummy;
2874
2875 if (FRAME_TERMINAL (sf)->mouse_position_hook)
2876 (*FRAME_TERMINAL (sf)->mouse_position_hook) (&sf, -1,
2877 &lisp_dummy, &part_dummy,
2878 &lmx, &lmy,
2879 &time_dummy);
2880 if (!NILP (lmx))
2881 {
2882 *x = XINT (lmx);
2883 *y = XINT (lmy);
2884 }
2885 }
2886
2887 /* Display MENU at (X,Y) using FACES, starting with FIRST_ITEM
2888 (zero-based). */
2889
2890 static void
2891 tty_menu_display (tty_menu *menu, int x, int y, int pn, int *faces,
2892 int mx, int my, int first_item, bool disp_help)
2893 {
2894 int i, face, width, enabled, mousehere, row, col;
2895 struct frame *sf = SELECTED_FRAME ();
2896 struct tty_display_info *tty = FRAME_TTY (sf);
2897 /* Don't try to display more menu items than the console can display
2898 using the available screen lines. Exclude the echo area line, as
2899 it will be overwritten by the help-echo anyway. */
2900 int max_items = min (menu->count - first_item, FRAME_LINES (sf) - 1 - y);
2901
2902 menu_help_message = NULL;
2903
2904 width = menu->width;
2905 col = cursorX (tty);
2906 row = cursorY (tty);
2907 for (i = 0; i < max_items; i++)
2908 {
2909 int max_width = width + 2; /* +2 for padding blanks on each side */
2910 int j = i + first_item;
2911
2912 if (menu->submenu[j])
2913 max_width += 2; /* for displaying " >" after the item */
2914 enabled
2915 = (!menu->submenu[j] && menu->panenumber[j]) || (menu->submenu[j]);
2916 mousehere = (y + i == my && x <= mx && mx < x + max_width);
2917 face = faces[enabled + mousehere * 2];
2918 /* Display the menu help string for the i-th menu item even if
2919 the menu item is currently disabled. That's what the GUI
2920 code does. */
2921 if (disp_help && enabled + mousehere * 2 >= 2)
2922 {
2923 menu_help_message = menu->help_text[j];
2924 menu_help_paneno = pn - 1;
2925 menu_help_itemno = j;
2926 }
2927 display_tty_menu_item (menu->text[j], max_width, face, x, y + i,
2928 menu->submenu[j] != NULL);
2929 }
2930 update_frame_with_menu (sf);
2931 cursor_to (sf, row, col);
2932 }
2933
2934 /* --------------------------- X Menu emulation ---------------------- */
2935
2936 /* Create a new pane and place it on the outer-most level. */
2937
2938 static int
2939 tty_menu_add_pane (tty_menu *menu, const char *txt)
2940 {
2941 int len;
2942 const unsigned char *p;
2943
2944 tty_menu_make_room (menu);
2945 menu->submenu[menu->count] = tty_menu_create ();
2946 menu->text[menu->count] = (char *)txt;
2947 menu->panenumber[menu->count] = ++menu->panecount;
2948 menu->help_text[menu->count] = NULL;
2949 menu->count++;
2950
2951 /* Update the menu width, if necessary. */
2952 for (len = 0, p = (unsigned char *) txt; *p; )
2953 {
2954 int ch_len;
2955 int ch = STRING_CHAR_AND_LENGTH (p, ch_len);
2956
2957 len += CHAR_WIDTH (ch);
2958 p += ch_len;
2959 }
2960
2961 if (len > menu->width)
2962 menu->width = len;
2963
2964 return menu->panecount;
2965 }
2966
2967 /* Create a new item in a menu pane. */
2968
2969 static bool
2970 tty_menu_add_selection (tty_menu *menu, int pane,
2971 char *txt, bool enable, char const *help_text)
2972 {
2973 int len;
2974 unsigned char *p;
2975
2976 if (pane)
2977 {
2978 menu = tty_menu_search_pane (menu, pane);
2979 if (! menu)
2980 return 0;
2981 }
2982 tty_menu_make_room (menu);
2983 menu->submenu[menu->count] = (tty_menu *) 0;
2984 menu->text[menu->count] = txt;
2985 menu->panenumber[menu->count] = enable;
2986 menu->help_text[menu->count] = help_text;
2987 menu->count++;
2988
2989 /* Update the menu width, if necessary. */
2990 for (len = 0, p = (unsigned char *) txt; *p; )
2991 {
2992 int ch_len;
2993 int ch = STRING_CHAR_AND_LENGTH (p, ch_len);
2994
2995 len += CHAR_WIDTH (ch);
2996 p += ch_len;
2997 }
2998
2999 if (len > menu->width)
3000 menu->width = len;
3001
3002 return 1;
3003 }
3004
3005 /* Decide where the menu would be placed if requested at (X,Y). */
3006
3007 static void
3008 tty_menu_locate (tty_menu *menu, int x, int y,
3009 int *ulx, int *uly, int *width, int *height)
3010 {
3011 tty_menu_calc_size (menu, width, height);
3012 *ulx = x + 1;
3013 *uly = y;
3014 *width += 2;
3015 }
3016
3017 struct tty_menu_state
3018 {
3019 struct glyph_matrix *screen_behind;
3020 tty_menu *menu;
3021 int pane;
3022 int x, y;
3023 };
3024
3025 /* Save away the contents of frame F's current frame matrix, and
3026 enable all its rows. Value is a glyph matrix holding the contents
3027 of F's current frame matrix with all its glyph rows enabled. */
3028
3029 static struct glyph_matrix *
3030 save_and_enable_current_matrix (struct frame *f)
3031 {
3032 int i;
3033 struct glyph_matrix *saved = xzalloc (sizeof *saved);
3034 saved->nrows = f->current_matrix->nrows;
3035 saved->rows = xzalloc (saved->nrows * sizeof *saved->rows);
3036
3037 for (i = 0; i < saved->nrows; ++i)
3038 {
3039 struct glyph_row *from = f->current_matrix->rows + i;
3040 struct glyph_row *to = saved->rows + i;
3041 ptrdiff_t nbytes = from->used[TEXT_AREA] * sizeof (struct glyph);
3042
3043 to->glyphs[TEXT_AREA] = xmalloc (nbytes);
3044 memcpy (to->glyphs[TEXT_AREA], from->glyphs[TEXT_AREA], nbytes);
3045 to->used[TEXT_AREA] = from->used[TEXT_AREA];
3046 /* Make sure every row is enabled, or else update_frame will not
3047 redraw them. (Rows that are identical to what is already on
3048 screen will not be redrawn anyway.) */
3049 to->enabled_p = true;
3050 to->hash = from->hash;
3051 }
3052
3053 return saved;
3054 }
3055
3056 /* Restore the contents of frame F's desired frame matrix from SAVED,
3057 and free memory associated with SAVED. */
3058
3059 static void
3060 restore_desired_matrix (struct frame *f, struct glyph_matrix *saved)
3061 {
3062 int i;
3063
3064 for (i = 0; i < saved->nrows; ++i)
3065 {
3066 struct glyph_row *from = saved->rows + i;
3067 struct glyph_row *to = f->desired_matrix->rows + i;
3068 ptrdiff_t nbytes = from->used[TEXT_AREA] * sizeof (struct glyph);
3069
3070 eassert (to->glyphs[TEXT_AREA] != from->glyphs[TEXT_AREA]);
3071 memcpy (to->glyphs[TEXT_AREA], from->glyphs[TEXT_AREA], nbytes);
3072 to->used[TEXT_AREA] = from->used[TEXT_AREA];
3073 to->enabled_p = from->enabled_p;
3074 to->hash = from->hash;
3075 }
3076 }
3077
3078 static void
3079 free_saved_screen (struct glyph_matrix *saved)
3080 {
3081 int i;
3082
3083 if (!saved)
3084 return; /* Already freed! */
3085
3086 for (i = 0; i < saved->nrows; ++i)
3087 {
3088 struct glyph_row *from = saved->rows + i;
3089
3090 xfree (from->glyphs[TEXT_AREA]);
3091 }
3092
3093 xfree (saved->rows);
3094 xfree (saved);
3095 }
3096
3097 /* Update the display of frame F from its saved contents. */
3098 static void
3099 screen_update (struct frame *f, struct glyph_matrix *mtx)
3100 {
3101 restore_desired_matrix (f, mtx);
3102 update_frame_with_menu (f);
3103 }
3104
3105 typedef enum {
3106 MI_QUIT_MENU = -1,
3107 MI_CONTINUE = 0,
3108 MI_ITEM_SELECTED = 1,
3109 MI_NEXT_ITEM = 2,
3110 MI_PREV_ITEM = 3,
3111 MI_SCROLL_FORWARD = 4,
3112 MI_SCROLL_BACK = 5
3113 } mi_result;
3114
3115 /* Read user input and return X and Y coordinates where that input
3116 puts us. We only consider mouse movement and click events, and
3117 keyboard movement commands; the rest are ignored. */
3118 static mi_result
3119 read_menu_input (struct frame *sf, int *x, int *y, int min_y, int max_y,
3120 bool *first_time)
3121 {
3122 if (*first_time)
3123 {
3124 *first_time = false;
3125 sf->mouse_moved = 1;
3126 }
3127 else
3128 {
3129 Lisp_Object cmd;
3130 bool usable_input = 1;
3131 mi_result st = MI_CONTINUE;
3132 struct tty_display_info *tty = FRAME_TTY (sf);
3133 Lisp_Object saved_mouse_tracking = do_mouse_tracking;
3134
3135 /* Signal the keyboard reading routines we are displaying a menu
3136 on this terminal. */
3137 tty->showing_menu = 1;
3138 /* We want mouse movements be reported by read_menu_command. */
3139 do_mouse_tracking = Qt;
3140 do {
3141 cmd = read_menu_command ();
3142 } while (NILP (cmd));
3143 tty->showing_menu = 0;
3144 do_mouse_tracking = saved_mouse_tracking;
3145
3146 if (EQ (cmd, Qt) || EQ (cmd, Qtty_menu_exit)
3147 /* If some input switched frames under our feet, exit the
3148 menu, since the menu faces are no longer valid, and the
3149 menu is no longer relevant anyway. */
3150 || sf != SELECTED_FRAME ())
3151 return MI_QUIT_MENU;
3152 if (EQ (cmd, Qtty_menu_mouse_movement))
3153 mouse_get_xy (x, y);
3154 else if (EQ (cmd, Qtty_menu_next_menu))
3155 {
3156 usable_input = 0;
3157 st = MI_NEXT_ITEM;
3158 }
3159 else if (EQ (cmd, Qtty_menu_prev_menu))
3160 {
3161 usable_input = 0;
3162 st = MI_PREV_ITEM;
3163 }
3164 else if (EQ (cmd, Qtty_menu_next_item))
3165 {
3166 if (*y < max_y)
3167 *y += 1;
3168 else
3169 st = MI_SCROLL_FORWARD;
3170 }
3171 else if (EQ (cmd, Qtty_menu_prev_item))
3172 {
3173 if (*y > min_y)
3174 *y -= 1;
3175 else
3176 st = MI_SCROLL_BACK;
3177 }
3178 else if (EQ (cmd, Qtty_menu_select))
3179 st = MI_ITEM_SELECTED;
3180 else if (!EQ (cmd, Qtty_menu_ignore))
3181 usable_input = 0;
3182 if (usable_input)
3183 sf->mouse_moved = 1;
3184 return st;
3185 }
3186 return MI_CONTINUE;
3187 }
3188
3189 /* Display menu, wait for user's response, and return that response. */
3190 static int
3191 tty_menu_activate (tty_menu *menu, int *pane, int *selidx,
3192 int x0, int y0, char **txt,
3193 void (*help_callback)(char const *, int, int),
3194 bool kbd_navigation)
3195 {
3196 struct tty_menu_state *state;
3197 int statecount, x, y, i;
3198 bool leave, onepane;
3199 int result IF_LINT (= 0);
3200 int title_faces[4]; /* Face to display the menu title. */
3201 int faces[4], buffers_num_deleted = 0;
3202 struct frame *sf = SELECTED_FRAME ();
3203 struct tty_display_info *tty = FRAME_TTY (sf);
3204 bool first_time;
3205 Lisp_Object selectface;
3206 int first_item = 0;
3207
3208 /* Don't allow non-positive x0 and y0, lest the menu will wrap
3209 around the display. */
3210 if (x0 <= 0)
3211 x0 = 1;
3212 if (y0 <= 0)
3213 y0 = 1;
3214
3215 state = alloca (menu->panecount * sizeof (struct tty_menu_state));
3216 memset (state, 0, sizeof (*state));
3217 faces[0]
3218 = lookup_derived_face (sf, intern ("tty-menu-disabled-face"),
3219 DEFAULT_FACE_ID, 1);
3220 faces[1]
3221 = lookup_derived_face (sf, intern ("tty-menu-enabled-face"),
3222 DEFAULT_FACE_ID, 1);
3223 selectface = intern ("tty-menu-selected-face");
3224 faces[2] = lookup_derived_face (sf, selectface,
3225 faces[0], 1);
3226 faces[3] = lookup_derived_face (sf, selectface,
3227 faces[1], 1);
3228
3229 /* Make sure the menu title is always displayed with
3230 `tty-menu-selected-face', no matter where the mouse pointer is. */
3231 for (i = 0; i < 4; i++)
3232 title_faces[i] = faces[3];
3233
3234 statecount = 1;
3235
3236 /* Don't let the title for the "Buffers" popup menu include a
3237 digit (which is ugly).
3238
3239 This is a terrible kludge, but I think the "Buffers" case is
3240 the only one where the title includes a number, so it doesn't
3241 seem to be necessary to make this more general. */
3242 if (strncmp (menu->text[0], "Buffers 1", 9) == 0)
3243 {
3244 menu->text[0][7] = '\0';
3245 buffers_num_deleted = 1;
3246 }
3247
3248 /* Force update of the current frame, so that the desired and the
3249 current matrices are identical. */
3250 update_frame_with_menu (sf);
3251 state[0].menu = menu;
3252 state[0].screen_behind = save_and_enable_current_matrix (sf);
3253
3254 /* Display the menu title. We subtract 1 from x0 and y0 because we
3255 want to interpret them as zero-based column and row coordinates,
3256 and also because we want the first item of the menu, not its
3257 title, to appear at x0,y0. */
3258 tty_menu_display (menu, x0 - 1, y0 - 1, 1, title_faces, x0 - 1, y0 - 1, 0, 0);
3259
3260 /* Turn off the cursor. Otherwise it shows through the menu
3261 panes, which is ugly. */
3262 tty_hide_cursor (tty);
3263 if (buffers_num_deleted)
3264 menu->text[0][7] = ' ';
3265 onepane = menu->count == 1 && menu->submenu[0];
3266 if (onepane)
3267 {
3268 menu->width = menu->submenu[0]->width;
3269 state[0].menu = menu->submenu[0];
3270 }
3271 else
3272 {
3273 state[0].menu = menu;
3274 }
3275 state[0].x = x0 - 1;
3276 state[0].y = y0;
3277 state[0].pane = onepane;
3278
3279 x = state[0].x;
3280 y = state[0].y;
3281 first_time = true;
3282
3283 leave = 0;
3284 while (!leave)
3285 {
3286 mi_result input_status;
3287 int min_y = state[0].y;
3288 int max_y = min (min_y + state[0].menu->count, FRAME_LINES (sf) - 1) - 1;
3289
3290 input_status = read_menu_input (sf, &x, &y, min_y, max_y, &first_time);
3291 if (input_status)
3292 {
3293 leave = 1;
3294 switch (input_status)
3295 {
3296 case MI_QUIT_MENU:
3297 /* Remove the last help-echo, so that it doesn't
3298 re-appear after "Quit". */
3299 show_help_echo (Qnil, Qnil, Qnil, Qnil);
3300 result = TTYM_NO_SELECT;
3301 break;
3302 case MI_NEXT_ITEM:
3303 if (kbd_navigation)
3304 result = TTYM_NEXT;
3305 else
3306 leave = 0;
3307 break;
3308 case MI_PREV_ITEM:
3309 if (kbd_navigation)
3310 result = TTYM_PREV;
3311 else
3312 leave = 0;
3313 break;
3314 case MI_SCROLL_FORWARD:
3315 if (y - min_y == state[0].menu->count - 1 - first_item)
3316 {
3317 y = min_y;
3318 first_item = 0;
3319 }
3320 else
3321 first_item++;
3322 leave = 0;
3323 break;
3324 case MI_SCROLL_BACK:
3325 if (first_item == 0)
3326 {
3327 y = max_y;
3328 first_item = state[0].menu->count - 1 - (y - min_y);
3329 }
3330 else
3331 first_item--;
3332 leave = 0;
3333 break;
3334 default:
3335 /* MI_ITEM_SELECTED is handled below, so nothing to do. */
3336 break;
3337 }
3338 }
3339 if (sf->mouse_moved && input_status != MI_QUIT_MENU)
3340 {
3341 sf->mouse_moved = 0;
3342 result = TTYM_IA_SELECT;
3343 for (i = 0; i < statecount; i++)
3344 if (state[i].x <= x && x < state[i].x + state[i].menu->width + 2)
3345 {
3346 int dy = y - state[i].y + first_item;
3347 if (0 <= dy && dy < state[i].menu->count)
3348 {
3349 if (!state[i].menu->submenu[dy])
3350 {
3351 if (state[i].menu->panenumber[dy])
3352 result = TTYM_SUCCESS;
3353 else
3354 result = TTYM_IA_SELECT;
3355 }
3356 *pane = state[i].pane - 1;
3357 *selidx = dy;
3358 /* We hit some part of a menu, so drop extra menus that
3359 have been opened. That does not include an open and
3360 active submenu. */
3361 if (i != statecount - 2
3362 || state[i].menu->submenu[dy] != state[i + 1].menu)
3363 while (i != statecount - 1)
3364 {
3365 statecount--;
3366 screen_update (sf, state[statecount].screen_behind);
3367 state[statecount].screen_behind = NULL;
3368 }
3369 if (i == statecount - 1 && state[i].menu->submenu[dy])
3370 {
3371 tty_menu_display (state[i].menu,
3372 state[i].x,
3373 state[i].y,
3374 state[i].pane,
3375 faces, x, y, first_item, 1);
3376 state[statecount].menu = state[i].menu->submenu[dy];
3377 state[statecount].pane = state[i].menu->panenumber[dy];
3378 state[statecount].screen_behind
3379 = save_and_enable_current_matrix (sf);
3380 state[statecount].x
3381 = state[i].x + state[i].menu->width + 2;
3382 state[statecount].y = y;
3383 statecount++;
3384 }
3385 }
3386 }
3387 tty_menu_display (state[statecount - 1].menu,
3388 state[statecount - 1].x,
3389 state[statecount - 1].y,
3390 state[statecount - 1].pane,
3391 faces, x, y, first_item, 1);
3392 tty_hide_cursor (tty);
3393 fflush (tty->output);
3394 }
3395
3396 /* Display the help-echo message for the currently-selected menu
3397 item. */
3398 if ((menu_help_message || prev_menu_help_message)
3399 && menu_help_message != prev_menu_help_message)
3400 {
3401 help_callback (menu_help_message,
3402 menu_help_paneno, menu_help_itemno);
3403 tty_hide_cursor (tty);
3404 fflush (tty->output);
3405 prev_menu_help_message = menu_help_message;
3406 }
3407 }
3408
3409 sf->mouse_moved = 0;
3410 screen_update (sf, state[0].screen_behind);
3411 while (statecount--)
3412 free_saved_screen (state[statecount].screen_behind);
3413 tty_show_cursor (tty); /* Turn cursor back on. */
3414 fflush (tty->output);
3415
3416 /* Clean up any mouse events that are waiting inside Emacs event queue.
3417 These events are likely to be generated before the menu was even
3418 displayed, probably because the user pressed and released the button
3419 (which invoked the menu) too quickly. If we don't remove these events,
3420 Emacs will process them after we return and surprise the user. */
3421 discard_mouse_events ();
3422 if (!kbd_buffer_events_waiting ())
3423 clear_input_pending ();
3424 return result;
3425 }
3426
3427 /* Dispose of a menu. */
3428
3429 static void
3430 tty_menu_destroy (tty_menu *menu)
3431 {
3432 int i;
3433 if (menu->allocated)
3434 {
3435 for (i = 0; i < menu->count; i++)
3436 if (menu->submenu[i])
3437 tty_menu_destroy (menu->submenu[i]);
3438 xfree (menu->text);
3439 xfree (menu->submenu);
3440 xfree (menu->panenumber);
3441 xfree (menu->help_text);
3442 }
3443 xfree (menu);
3444 menu_help_message = prev_menu_help_message = NULL;
3445 }
3446
3447 /* Show help HELP_STRING, or clear help if HELP_STRING is null.
3448
3449 PANE is the pane number, and ITEM is the menu item number in
3450 the menu (currently not used). */
3451
3452 static void
3453 tty_menu_help_callback (char const *help_string, int pane, int item)
3454 {
3455 Lisp_Object *first_item;
3456 Lisp_Object pane_name;
3457 Lisp_Object menu_object;
3458
3459 first_item = XVECTOR (menu_items)->contents;
3460 if (EQ (first_item[0], Qt))
3461 pane_name = first_item[MENU_ITEMS_PANE_NAME];
3462 else if (EQ (first_item[0], Qquote))
3463 /* This shouldn't happen, see xmenu_show. */
3464 pane_name = empty_unibyte_string;
3465 else
3466 pane_name = first_item[MENU_ITEMS_ITEM_NAME];
3467
3468 /* (menu-item MENU-NAME PANE-NUMBER) */
3469 menu_object = list3 (Qmenu_item, pane_name, make_number (pane));
3470 show_help_echo (help_string ? build_string (help_string) : Qnil,
3471 Qnil, menu_object, make_number (item));
3472 }
3473
3474 static void
3475 tty_pop_down_menu (Lisp_Object arg)
3476 {
3477 tty_menu *menu = XSAVE_POINTER (arg, 0);
3478
3479 block_input ();
3480 tty_menu_destroy (menu);
3481 unblock_input ();
3482 }
3483
3484 /* Return the zero-based index of the last menu-bar item on frame F. */
3485 static int
3486 tty_menu_last_menubar_item (struct frame *f)
3487 {
3488 int i = 0;
3489
3490 eassert (FRAME_TERMCAP_P (f) && FRAME_LIVE_P (f));
3491 if (FRAME_TERMCAP_P (f) && FRAME_LIVE_P (f))
3492 {
3493 Lisp_Object items = FRAME_MENU_BAR_ITEMS (f);
3494
3495 while (i < ASIZE (items))
3496 {
3497 Lisp_Object str;
3498
3499 str = AREF (items, i + 1);
3500 if (NILP (str))
3501 break;
3502 i += 4;
3503 }
3504 i -= 4; /* Went one too far! */
3505 }
3506 return i;
3507 }
3508
3509 /* Find in frame F's menu bar the menu item that is next or previous
3510 to the item at X/Y, and return that item's position in X/Y. WHICH
3511 says which one--next or previous--item to look for. X and Y are
3512 measured in character cells. This should only be called on TTY
3513 frames. */
3514 static void
3515 tty_menu_new_item_coords (struct frame *f, int which, int *x, int *y)
3516 {
3517 eassert (FRAME_TERMCAP_P (f) && FRAME_LIVE_P (f));
3518 if (FRAME_TERMCAP_P (f) && FRAME_LIVE_P (f))
3519 {
3520 Lisp_Object items = FRAME_MENU_BAR_ITEMS (f);
3521 int last_i = tty_menu_last_menubar_item (f);
3522 int i, prev_x;
3523
3524 /* This loop assumes a single menu-bar line, and will fail to
3525 find an item if it is not in the first line. Note that
3526 make_lispy_event in keyboard.c makes the same assumption. */
3527 for (i = 0, prev_x = -1; i < ASIZE (items); i += 4)
3528 {
3529 Lisp_Object pos, str;
3530 int ix;
3531
3532 str = AREF (items, i + 1);
3533 pos = AREF (items, i + 3);
3534 if (NILP (str))
3535 return;
3536 ix = XINT (pos);
3537 if (ix <= *x
3538 /* We use <= so the blank between 2 items on a TTY is
3539 considered part of the previous item. */
3540 && *x <= ix + menu_item_width (SDATA (str)))
3541 {
3542 /* Found current item. Now compute the X coordinate of
3543 the previous or next item. */
3544 if (which == TTYM_NEXT)
3545 {
3546 if (i < last_i)
3547 *x = XINT (AREF (items, i + 4 + 3));
3548 else
3549 *x = 0; /* Wrap around to the first item. */
3550 }
3551 else if (prev_x < 0)
3552 {
3553 /* Wrap around to the last item. */
3554 *x = XINT (AREF (items, last_i + 3));
3555 }
3556 else
3557 *x = prev_x;
3558 return;
3559 }
3560 prev_x = ix;
3561 }
3562 }
3563 }
3564
3565 Lisp_Object
3566 tty_menu_show (struct frame *f, int x, int y, bool for_click, bool keymaps,
3567 Lisp_Object title, bool kbd_navigation, const char **error_name)
3568 {
3569 tty_menu *menu;
3570 int pane, selidx, lpane, status;
3571 Lisp_Object entry, pane_prefix;
3572 char *datap;
3573 int ulx, uly, width, height;
3574 int item_x, item_y;
3575 int dispwidth, dispheight;
3576 int i, j, lines, maxlines;
3577 int maxwidth;
3578 ptrdiff_t specpdl_count;
3579
3580 eassert (FRAME_TERMCAP_P (f));
3581
3582 *error_name = 0;
3583 if (menu_items_n_panes == 0)
3584 return Qnil;
3585
3586 if (menu_items_used <= MENU_ITEMS_PANE_LENGTH)
3587 {
3588 *error_name = "Empty menu";
3589 return Qnil;
3590 }
3591
3592 /* Make the menu on that window. */
3593 menu = tty_menu_create ();
3594 if (menu == NULL)
3595 {
3596 *error_name = "Can't create menu";
3597 return Qnil;
3598 }
3599
3600 /* Don't GC while we prepare and show the menu, because we give the
3601 menu functions pointers to the contents of strings. */
3602 specpdl_count = inhibit_garbage_collection ();
3603
3604 /* Adjust coordinates to be root-window-relative. */
3605 item_x = x += f->left_pos;
3606 item_y = y += f->top_pos;
3607
3608 /* Create all the necessary panes and their items. */
3609 maxwidth = maxlines = lines = i = 0;
3610 lpane = TTYM_FAILURE;
3611 while (i < menu_items_used)
3612 {
3613 if (EQ (AREF (menu_items, i), Qt))
3614 {
3615 /* Create a new pane. */
3616 Lisp_Object pane_name, prefix;
3617 const char *pane_string;
3618
3619 maxlines = max (maxlines, lines);
3620 lines = 0;
3621 pane_name = AREF (menu_items, i + MENU_ITEMS_PANE_NAME);
3622 prefix = AREF (menu_items, i + MENU_ITEMS_PANE_PREFIX);
3623 pane_string = (NILP (pane_name)
3624 ? "" : SSDATA (pane_name));
3625 if (keymaps && !NILP (prefix))
3626 pane_string++;
3627
3628 lpane = tty_menu_add_pane (menu, pane_string);
3629 if (lpane == TTYM_FAILURE)
3630 {
3631 tty_menu_destroy (menu);
3632 *error_name = "Can't create pane";
3633 entry = Qnil;
3634 goto tty_menu_end;
3635 }
3636 i += MENU_ITEMS_PANE_LENGTH;
3637
3638 /* Find the width of the widest item in this pane. */
3639 j = i;
3640 while (j < menu_items_used)
3641 {
3642 Lisp_Object item;
3643 item = AREF (menu_items, j);
3644 if (EQ (item, Qt))
3645 break;
3646 if (NILP (item))
3647 {
3648 j++;
3649 continue;
3650 }
3651 width = SBYTES (item);
3652 if (width > maxwidth)
3653 maxwidth = width;
3654
3655 j += MENU_ITEMS_ITEM_LENGTH;
3656 }
3657 }
3658 /* Ignore a nil in the item list.
3659 It's meaningful only for dialog boxes. */
3660 else if (EQ (AREF (menu_items, i), Qquote))
3661 i += 1;
3662 else
3663 {
3664 /* Create a new item within current pane. */
3665 Lisp_Object item_name, enable, descrip, help;
3666 char *item_data;
3667 char const *help_string;
3668
3669 item_name = AREF (menu_items, i + MENU_ITEMS_ITEM_NAME);
3670 enable = AREF (menu_items, i + MENU_ITEMS_ITEM_ENABLE);
3671 descrip = AREF (menu_items, i + MENU_ITEMS_ITEM_EQUIV_KEY);
3672 help = AREF (menu_items, i + MENU_ITEMS_ITEM_HELP);
3673 help_string = STRINGP (help) ? SSDATA (help) : NULL;
3674
3675 if (!NILP (descrip))
3676 {
3677 /* If alloca is fast, use that to make the space,
3678 to reduce gc needs. */
3679 item_data = (char *) alloca (maxwidth + SBYTES (descrip) + 1);
3680 memcpy (item_data, SSDATA (item_name), SBYTES (item_name));
3681 for (j = SCHARS (item_name); j < maxwidth; j++)
3682 item_data[j] = ' ';
3683 memcpy (item_data + j, SSDATA (descrip), SBYTES (descrip));
3684 item_data[j + SBYTES (descrip)] = 0;
3685 }
3686 else
3687 item_data = SSDATA (item_name);
3688
3689 if (lpane == TTYM_FAILURE
3690 || (! tty_menu_add_selection (menu, lpane, item_data,
3691 !NILP (enable), help_string)))
3692 {
3693 tty_menu_destroy (menu);
3694 *error_name = "Can't add selection to menu";
3695 entry = Qnil;
3696 goto tty_menu_end;
3697 }
3698 i += MENU_ITEMS_ITEM_LENGTH;
3699 lines++;
3700 }
3701 }
3702
3703 maxlines = max (maxlines, lines);
3704
3705 /* All set and ready to fly. */
3706 dispwidth = f->text_cols;
3707 dispheight = f->text_lines;
3708 x = min (x, dispwidth);
3709 y = min (y, dispheight);
3710 x = max (x, 1);
3711 y = max (y, 1);
3712 tty_menu_locate (menu, x, y, &ulx, &uly, &width, &height);
3713 if (ulx + width > dispwidth)
3714 {
3715 x -= (ulx + width) - dispwidth;
3716 ulx = dispwidth - width;
3717 }
3718 if (uly + height > dispheight)
3719 {
3720 y -= (uly + height) - dispheight;
3721 uly = dispheight - height;
3722 }
3723
3724 if (FRAME_HAS_MINIBUF_P (f) && uly + height > dispheight - 2)
3725 {
3726 /* Move the menu away of the echo area, to avoid overwriting the
3727 menu with help echo messages or vice versa. */
3728 if (BUFFERP (echo_area_buffer[0]) && WINDOWP (echo_area_window))
3729 {
3730 y -= WINDOW_TOTAL_LINES (XWINDOW (echo_area_window)) + 1;
3731 uly -= WINDOW_TOTAL_LINES (XWINDOW (echo_area_window)) + 1;
3732 }
3733 else
3734 {
3735 y -= 2;
3736 uly -= 2;
3737 }
3738 }
3739
3740 if (ulx < 0) x -= ulx;
3741 if (uly < 0) y -= uly;
3742
3743 #if 0
3744 /* This code doesn't make sense on a TTY, since it can easily annul
3745 the adjustments above that carefully avoid truncation of the menu
3746 items. I think it was written to fix some problem that only
3747 happens on X11. */
3748 if (! for_click)
3749 {
3750 /* If position was not given by a mouse click, adjust so upper left
3751 corner of the menu as a whole ends up at given coordinates. This
3752 is what x-popup-menu says in its documentation. */
3753 x += width / 2;
3754 y += 1.5 * height / (maxlines + 2);
3755 }
3756 #endif
3757
3758 pane = selidx = 0;
3759
3760 record_unwind_protect (tty_pop_down_menu, make_save_ptr (menu));
3761
3762 specbind (Qoverriding_terminal_local_map,
3763 Fsymbol_value (Qtty_menu_navigation_map));
3764 status = tty_menu_activate (menu, &pane, &selidx, x, y, &datap,
3765 tty_menu_help_callback, kbd_navigation);
3766 entry = pane_prefix = Qnil;
3767
3768 switch (status)
3769 {
3770 case TTYM_SUCCESS:
3771 /* Find the item number SELIDX in pane number PANE. */
3772 i = 0;
3773 while (i < menu_items_used)
3774 {
3775 if (EQ (AREF (menu_items, i), Qt))
3776 {
3777 if (pane == 0)
3778 pane_prefix
3779 = AREF (menu_items, i + MENU_ITEMS_PANE_PREFIX);
3780 pane--;
3781 i += MENU_ITEMS_PANE_LENGTH;
3782 }
3783 else
3784 {
3785 if (pane == -1)
3786 {
3787 if (selidx == 0)
3788 {
3789 entry
3790 = AREF (menu_items, i + MENU_ITEMS_ITEM_VALUE);
3791 if (keymaps != 0)
3792 {
3793 entry = Fcons (entry, Qnil);
3794 if (!NILP (pane_prefix))
3795 entry = Fcons (pane_prefix, entry);
3796 }
3797 break;
3798 }
3799 selidx--;
3800 }
3801 i += MENU_ITEMS_ITEM_LENGTH;
3802 }
3803 }
3804 break;
3805
3806 case TTYM_NEXT:
3807 case TTYM_PREV:
3808 tty_menu_new_item_coords (f, status, &item_x, &item_y);
3809 entry = Fcons (make_number (item_x), make_number (item_y));
3810 break;
3811
3812 case TTYM_FAILURE:
3813 *error_name = "Can't activate menu";
3814 case TTYM_IA_SELECT:
3815 break;
3816 case TTYM_NO_SELECT:
3817 /* If the selected frame was changed while we displayed a menu,
3818 throw to top level in order to undo any temporary settings
3819 made by TTY menu code. */
3820 if (f != SELECTED_FRAME ())
3821 Ftop_level ();
3822 /* Make "Cancel" equivalent to C-g unless FOR_CLICK (which means
3823 the menu was invoked with a mouse event as POSITION). */
3824 if (! for_click)
3825 Fsignal (Qquit, Qnil);
3826 break;
3827 }
3828
3829 tty_menu_end:
3830
3831 unbind_to (specpdl_count, Qnil);
3832 return entry;
3833 }
3834
3835 #endif /* !MSDOS */
3836
3837 \f
3838 #ifndef MSDOS
3839 /***********************************************************************
3840 Initialization
3841 ***********************************************************************/
3842
3843 /* Initialize the tty-dependent part of frame F. The frame must
3844 already have its device initialized. */
3845
3846 void
3847 create_tty_output (struct frame *f)
3848 {
3849 struct tty_output *t = xzalloc (sizeof *t);
3850
3851 eassert (FRAME_TERMCAP_P (f));
3852
3853 t->display_info = FRAME_TERMINAL (f)->display_info.tty;
3854
3855 f->output_data.tty = t;
3856 }
3857
3858 /* Delete frame F's face cache, and its tty-dependent part. */
3859
3860 static void
3861 tty_free_frame_resources (struct frame *f)
3862 {
3863 eassert (FRAME_TERMCAP_P (f));
3864 free_frame_faces (f);
3865 xfree (f->output_data.tty);
3866 }
3867
3868 #else /* MSDOS */
3869
3870 /* Delete frame F's face cache. */
3871
3872 static void
3873 tty_free_frame_resources (struct frame *f)
3874 {
3875 eassert (FRAME_TERMCAP_P (f) || FRAME_MSDOS_P (f));
3876 free_frame_faces (f);
3877 }
3878 #endif /* MSDOS */
3879 \f
3880 /* Reset the hooks in TERMINAL. */
3881
3882 static void
3883 clear_tty_hooks (struct terminal *terminal)
3884 {
3885 terminal->rif = 0;
3886 terminal->cursor_to_hook = 0;
3887 terminal->raw_cursor_to_hook = 0;
3888 terminal->clear_to_end_hook = 0;
3889 terminal->clear_frame_hook = 0;
3890 terminal->clear_end_of_line_hook = 0;
3891 terminal->ins_del_lines_hook = 0;
3892 terminal->insert_glyphs_hook = 0;
3893 terminal->write_glyphs_hook = 0;
3894 terminal->delete_glyphs_hook = 0;
3895 terminal->ring_bell_hook = 0;
3896 terminal->reset_terminal_modes_hook = 0;
3897 terminal->set_terminal_modes_hook = 0;
3898 terminal->update_begin_hook = 0;
3899 terminal->update_end_hook = 0;
3900 terminal->set_terminal_window_hook = 0;
3901 terminal->mouse_position_hook = 0;
3902 terminal->frame_rehighlight_hook = 0;
3903 terminal->frame_raise_lower_hook = 0;
3904 terminal->fullscreen_hook = 0;
3905 terminal->set_vertical_scroll_bar_hook = 0;
3906 terminal->condemn_scroll_bars_hook = 0;
3907 terminal->redeem_scroll_bar_hook = 0;
3908 terminal->judge_scroll_bars_hook = 0;
3909 terminal->read_socket_hook = 0;
3910 terminal->frame_up_to_date_hook = 0;
3911
3912 /* Leave these two set, or suspended frames are not deleted
3913 correctly. */
3914 terminal->delete_frame_hook = &tty_free_frame_resources;
3915 terminal->delete_terminal_hook = &delete_tty;
3916 }
3917
3918 /* Initialize hooks in TERMINAL with the values needed for a tty. */
3919
3920 static void
3921 set_tty_hooks (struct terminal *terminal)
3922 {
3923 terminal->rif = 0; /* ttys don't support window-based redisplay. */
3924
3925 terminal->cursor_to_hook = &tty_cursor_to;
3926 terminal->raw_cursor_to_hook = &tty_raw_cursor_to;
3927
3928 terminal->clear_to_end_hook = &tty_clear_to_end;
3929 terminal->clear_frame_hook = &tty_clear_frame;
3930 terminal->clear_end_of_line_hook = &tty_clear_end_of_line;
3931
3932 terminal->ins_del_lines_hook = &tty_ins_del_lines;
3933
3934 terminal->insert_glyphs_hook = &tty_insert_glyphs;
3935 terminal->write_glyphs_hook = &tty_write_glyphs;
3936 terminal->delete_glyphs_hook = &tty_delete_glyphs;
3937
3938 terminal->ring_bell_hook = &tty_ring_bell;
3939
3940 terminal->reset_terminal_modes_hook = &tty_reset_terminal_modes;
3941 terminal->set_terminal_modes_hook = &tty_set_terminal_modes;
3942 terminal->update_begin_hook = 0; /* Not needed. */
3943 terminal->update_end_hook = &tty_update_end;
3944 terminal->set_terminal_window_hook = &tty_set_terminal_window;
3945
3946 terminal->mouse_position_hook = 0; /* Not needed. */
3947 terminal->frame_rehighlight_hook = 0; /* Not needed. */
3948 terminal->frame_raise_lower_hook = 0; /* Not needed. */
3949
3950 terminal->set_vertical_scroll_bar_hook = 0; /* Not needed. */
3951 terminal->condemn_scroll_bars_hook = 0; /* Not needed. */
3952 terminal->redeem_scroll_bar_hook = 0; /* Not needed. */
3953 terminal->judge_scroll_bars_hook = 0; /* Not needed. */
3954
3955 terminal->read_socket_hook = &tty_read_avail_input; /* keyboard.c */
3956 terminal->frame_up_to_date_hook = 0; /* Not needed. */
3957
3958 terminal->delete_frame_hook = &tty_free_frame_resources;
3959 terminal->delete_terminal_hook = &delete_tty;
3960 }
3961
3962 /* If FD is the controlling terminal, drop it. */
3963 static void
3964 dissociate_if_controlling_tty (int fd)
3965 {
3966 /* If tcgetpgrp succeeds, fd is the controlling terminal,
3967 so dissociate it by invoking setsid. */
3968 if (tcgetpgrp (fd) >= 0 && setsid () < 0)
3969 {
3970 #ifdef TIOCNOTTY
3971 /* setsid failed, presumably because Emacs is already a process
3972 group leader. Fall back on the obsolescent way to dissociate
3973 a controlling tty. */
3974 sigset_t oldset;
3975 block_tty_out_signal (&oldset);
3976 ioctl (fd, TIOCNOTTY, 0);
3977 unblock_tty_out_signal (&oldset);
3978 #endif
3979 }
3980 }
3981
3982 /* Create a termcap display on the tty device with the given name and
3983 type.
3984
3985 If NAME is NULL, then use the controlling tty, i.e., "/dev/tty".
3986 Otherwise NAME should be a path to the tty device file,
3987 e.g. "/dev/pts/7".
3988
3989 TERMINAL_TYPE is the termcap type of the device, e.g. "vt100".
3990
3991 If MUST_SUCCEED is true, then all errors are fatal. */
3992
3993 struct terminal *
3994 init_tty (const char *name, const char *terminal_type, bool must_succeed)
3995 {
3996 char *area;
3997 char **address = &area;
3998 int status;
3999 struct tty_display_info *tty = NULL;
4000 struct terminal *terminal = NULL;
4001 sigset_t oldset;
4002 bool ctty = false; /* True if asked to open controlling tty. */
4003
4004 if (!terminal_type)
4005 maybe_fatal (must_succeed, 0,
4006 "Unknown terminal type",
4007 "Unknown terminal type");
4008
4009 if (name == NULL)
4010 name = DEV_TTY;
4011 if (!strcmp (name, DEV_TTY))
4012 ctty = 1;
4013
4014 /* If we already have a terminal on the given device, use that. If
4015 all such terminals are suspended, create a new one instead. */
4016 /* XXX Perhaps this should be made explicit by having init_tty
4017 always create a new terminal and separating terminal and frame
4018 creation on Lisp level. */
4019 terminal = get_named_tty (name);
4020 if (terminal)
4021 return terminal;
4022
4023 terminal = create_terminal ();
4024 #ifdef MSDOS
4025 if (been_here > 0)
4026 maybe_fatal (0, 0, "Attempt to create another terminal %s", "",
4027 name, "");
4028 been_here = 1;
4029 tty = &the_only_display_info;
4030 #else
4031 tty = xzalloc (sizeof *tty);
4032 #endif
4033 tty->top_frame = Qnil;
4034 tty->next = tty_list;
4035 tty_list = tty;
4036
4037 terminal->type = output_termcap;
4038 terminal->display_info.tty = tty;
4039 tty->terminal = terminal;
4040
4041 tty->Wcm = xmalloc (sizeof *tty->Wcm);
4042 Wcm_clear (tty);
4043
4044 encode_terminal_src_size = 0;
4045 encode_terminal_dst_size = 0;
4046
4047
4048 #ifndef DOS_NT
4049 set_tty_hooks (terminal);
4050
4051 {
4052 /* Open the terminal device. */
4053
4054 /* If !ctty, don't recognize it as our controlling terminal, and
4055 don't make it the controlling tty if we don't have one now.
4056
4057 Alas, O_IGNORE_CTTY is a GNU extension that seems to be only
4058 defined on Hurd. On other systems, we need to explicitly
4059 dissociate ourselves from the controlling tty when we want to
4060 open a frame on the same terminal. */
4061 int flags = O_RDWR | O_NOCTTY | (ctty ? 0 : O_IGNORE_CTTY);
4062 int fd = emacs_open (name, flags, 0);
4063 tty->input = tty->output =
4064 ((fd < 0 || ! isatty (fd))
4065 ? NULL
4066 : fdopen (fd, "w+"));
4067
4068 if (! tty->input)
4069 {
4070 char const *diagnostic
4071 = (fd < 0) ? "Could not open file: %s" : "Not a tty device: %s";
4072 emacs_close (fd);
4073 maybe_fatal (must_succeed, terminal, diagnostic, diagnostic, name);
4074 }
4075
4076 tty->name = xstrdup (name);
4077 terminal->name = xstrdup (name);
4078
4079 if (!O_IGNORE_CTTY && !ctty)
4080 dissociate_if_controlling_tty (fd);
4081 }
4082
4083 tty->type = xstrdup (terminal_type);
4084
4085 add_keyboard_wait_descriptor (fileno (tty->input));
4086
4087 Wcm_clear (tty);
4088
4089 /* On some systems, tgetent tries to access the controlling
4090 terminal. */
4091 block_tty_out_signal (&oldset);
4092 status = tgetent (tty->termcap_term_buffer, terminal_type);
4093 if (tty->termcap_term_buffer[TERMCAP_BUFFER_SIZE - 1])
4094 emacs_abort ();
4095 unblock_tty_out_signal (&oldset);
4096
4097 if (status < 0)
4098 {
4099 #ifdef TERMINFO
4100 maybe_fatal (must_succeed, terminal,
4101 "Cannot open terminfo database file",
4102 "Cannot open terminfo database file");
4103 #else
4104 maybe_fatal (must_succeed, terminal,
4105 "Cannot open termcap database file",
4106 "Cannot open termcap database file");
4107 #endif
4108 }
4109 if (status == 0)
4110 {
4111 maybe_fatal (must_succeed, terminal,
4112 "Terminal type %s is not defined",
4113 "Terminal type %s is not defined.\n\
4114 If that is not the actual type of terminal you have,\n\
4115 use the Bourne shell command `TERM=... export TERM' (C-shell:\n\
4116 `setenv TERM ...') to specify the correct type. It may be necessary\n"
4117 #ifdef TERMINFO
4118 "to do `unset TERMINFO' (C-shell: `unsetenv TERMINFO') as well.",
4119 #else
4120 "to do `unset TERMCAP' (C-shell: `unsetenv TERMCAP') as well.",
4121 #endif
4122 terminal_type);
4123 }
4124
4125 area = tty->termcap_strings_buffer;
4126 tty->TS_ins_line = tgetstr ("al", address);
4127 tty->TS_ins_multi_lines = tgetstr ("AL", address);
4128 tty->TS_bell = tgetstr ("bl", address);
4129 BackTab (tty) = tgetstr ("bt", address);
4130 tty->TS_clr_to_bottom = tgetstr ("cd", address);
4131 tty->TS_clr_line = tgetstr ("ce", address);
4132 tty->TS_clr_frame = tgetstr ("cl", address);
4133 ColPosition (tty) = NULL; /* tgetstr ("ch", address); */
4134 AbsPosition (tty) = tgetstr ("cm", address);
4135 CR (tty) = tgetstr ("cr", address);
4136 tty->TS_set_scroll_region = tgetstr ("cs", address);
4137 tty->TS_set_scroll_region_1 = tgetstr ("cS", address);
4138 RowPosition (tty) = tgetstr ("cv", address);
4139 tty->TS_del_char = tgetstr ("dc", address);
4140 tty->TS_del_multi_chars = tgetstr ("DC", address);
4141 tty->TS_del_line = tgetstr ("dl", address);
4142 tty->TS_del_multi_lines = tgetstr ("DL", address);
4143 tty->TS_delete_mode = tgetstr ("dm", address);
4144 tty->TS_end_delete_mode = tgetstr ("ed", address);
4145 tty->TS_end_insert_mode = tgetstr ("ei", address);
4146 Home (tty) = tgetstr ("ho", address);
4147 tty->TS_ins_char = tgetstr ("ic", address);
4148 tty->TS_ins_multi_chars = tgetstr ("IC", address);
4149 tty->TS_insert_mode = tgetstr ("im", address);
4150 tty->TS_pad_inserted_char = tgetstr ("ip", address);
4151 tty->TS_end_keypad_mode = tgetstr ("ke", address);
4152 tty->TS_keypad_mode = tgetstr ("ks", address);
4153 LastLine (tty) = tgetstr ("ll", address);
4154 Right (tty) = tgetstr ("nd", address);
4155 Down (tty) = tgetstr ("do", address);
4156 if (!Down (tty))
4157 Down (tty) = tgetstr ("nl", address); /* Obsolete name for "do". */
4158 if (tgetflag ("bs"))
4159 Left (tty) = "\b"; /* Can't possibly be longer! */
4160 else /* (Actually, "bs" is obsolete...) */
4161 Left (tty) = tgetstr ("le", address);
4162 if (!Left (tty))
4163 Left (tty) = tgetstr ("bc", address); /* Obsolete name for "le". */
4164 tty->TS_pad_char = tgetstr ("pc", address);
4165 tty->TS_repeat = tgetstr ("rp", address);
4166 tty->TS_end_standout_mode = tgetstr ("se", address);
4167 tty->TS_fwd_scroll = tgetstr ("sf", address);
4168 tty->TS_standout_mode = tgetstr ("so", address);
4169 tty->TS_rev_scroll = tgetstr ("sr", address);
4170 tty->Wcm->cm_tab = tgetstr ("ta", address);
4171 tty->TS_end_termcap_modes = tgetstr ("te", address);
4172 tty->TS_termcap_modes = tgetstr ("ti", address);
4173 Up (tty) = tgetstr ("up", address);
4174 tty->TS_visible_bell = tgetstr ("vb", address);
4175 tty->TS_cursor_normal = tgetstr ("ve", address);
4176 tty->TS_cursor_visible = tgetstr ("vs", address);
4177 tty->TS_cursor_invisible = tgetstr ("vi", address);
4178 tty->TS_set_window = tgetstr ("wi", address);
4179
4180 tty->TS_enter_underline_mode = tgetstr ("us", address);
4181 tty->TS_exit_underline_mode = tgetstr ("ue", address);
4182 tty->TS_enter_bold_mode = tgetstr ("md", address);
4183 tty->TS_enter_italic_mode = tgetstr ("ZH", address);
4184 tty->TS_enter_dim_mode = tgetstr ("mh", address);
4185 tty->TS_enter_reverse_mode = tgetstr ("mr", address);
4186 tty->TS_enter_alt_charset_mode = tgetstr ("as", address);
4187 tty->TS_exit_alt_charset_mode = tgetstr ("ae", address);
4188 tty->TS_exit_attribute_mode = tgetstr ("me", address);
4189
4190 MultiUp (tty) = tgetstr ("UP", address);
4191 MultiDown (tty) = tgetstr ("DO", address);
4192 MultiLeft (tty) = tgetstr ("LE", address);
4193 MultiRight (tty) = tgetstr ("RI", address);
4194
4195 /* SVr4/ANSI color support. If "op" isn't available, don't support
4196 color because we can't switch back to the default foreground and
4197 background. */
4198 tty->TS_orig_pair = tgetstr ("op", address);
4199 if (tty->TS_orig_pair)
4200 {
4201 tty->TS_set_foreground = tgetstr ("AF", address);
4202 tty->TS_set_background = tgetstr ("AB", address);
4203 if (!tty->TS_set_foreground)
4204 {
4205 /* SVr4. */
4206 tty->TS_set_foreground = tgetstr ("Sf", address);
4207 tty->TS_set_background = tgetstr ("Sb", address);
4208 }
4209
4210 tty->TN_max_colors = tgetnum ("Co");
4211 tty->TN_max_pairs = tgetnum ("pa");
4212
4213 tty->TN_no_color_video = tgetnum ("NC");
4214 if (tty->TN_no_color_video == -1)
4215 tty->TN_no_color_video = 0;
4216 }
4217
4218 tty_default_color_capabilities (tty, 1);
4219
4220 MagicWrap (tty) = tgetflag ("xn");
4221 /* Since we make MagicWrap terminals look like AutoWrap, we need to have
4222 the former flag imply the latter. */
4223 AutoWrap (tty) = MagicWrap (tty) || tgetflag ("am");
4224 tty->memory_below_frame = tgetflag ("db");
4225 tty->TF_hazeltine = tgetflag ("hz");
4226 tty->must_write_spaces = tgetflag ("in");
4227 tty->meta_key = tgetflag ("km") || tgetflag ("MT");
4228 tty->TF_insmode_motion = tgetflag ("mi");
4229 tty->TF_standout_motion = tgetflag ("ms");
4230 tty->TF_underscore = tgetflag ("ul");
4231 tty->TF_teleray = tgetflag ("xt");
4232
4233 #else /* DOS_NT */
4234 #ifdef WINDOWSNT
4235 {
4236 struct frame *f = XFRAME (selected_frame);
4237 int height, width;
4238
4239 initialize_w32_display (terminal, &width, &height);
4240
4241 FrameRows (tty) = height;
4242 FrameCols (tty) = width;
4243 tty->specified_window = height;
4244
4245 FRAME_VERTICAL_SCROLL_BAR_TYPE (f) = vertical_scroll_bar_none;
4246 tty->char_ins_del_ok = 1;
4247 baud_rate = 19200;
4248 }
4249 #else /* MSDOS */
4250 {
4251 int height, width;
4252 if (strcmp (terminal_type, "internal") == 0)
4253 terminal->type = output_msdos_raw;
4254 initialize_msdos_display (terminal);
4255
4256 get_tty_size (fileno (tty->input), &width, &height);
4257 FrameCols (tty) = width;
4258 FrameRows (tty) = height;
4259 tty->char_ins_del_ok = 0;
4260 init_baud_rate (fileno (tty->input));
4261 }
4262 #endif /* MSDOS */
4263 tty->output = stdout;
4264 tty->input = stdin;
4265 /* The following two are inaccessible from w32console.c. */
4266 terminal->delete_frame_hook = &tty_free_frame_resources;
4267 terminal->delete_terminal_hook = &delete_tty;
4268
4269 tty->name = xstrdup (name);
4270 terminal->name = xstrdup (name);
4271 tty->type = xstrdup (terminal_type);
4272
4273 add_keyboard_wait_descriptor (0);
4274
4275 tty->delete_in_insert_mode = 1;
4276
4277 UseTabs (tty) = 0;
4278 tty->scroll_region_ok = 0;
4279
4280 /* Seems to insert lines when it's not supposed to, messing up the
4281 display. In doing a trace, it didn't seem to be called much, so I
4282 don't think we're losing anything by turning it off. */
4283 tty->line_ins_del_ok = 0;
4284
4285 tty->TN_max_colors = 16; /* Must be non-zero for tty-display-color-p. */
4286 #endif /* DOS_NT */
4287
4288 #ifdef HAVE_GPM
4289 terminal->mouse_position_hook = term_mouse_position;
4290 tty->mouse_highlight.mouse_face_window = Qnil;
4291 #endif
4292
4293 terminal->kboard = allocate_kboard (Qnil);
4294 terminal->kboard->reference_count++;
4295 /* Don't let the initial kboard remain current longer than necessary.
4296 That would cause problems if a file loaded on startup tries to
4297 prompt in the mini-buffer. */
4298 if (current_kboard == initial_kboard)
4299 current_kboard = terminal->kboard;
4300 #ifndef DOS_NT
4301 term_get_fkeys (address, terminal->kboard);
4302
4303 /* Get frame size from system, or else from termcap. */
4304 {
4305 int height, width;
4306 get_tty_size (fileno (tty->input), &width, &height);
4307 FrameCols (tty) = width;
4308 FrameRows (tty) = height;
4309 }
4310
4311 if (FrameCols (tty) <= 0)
4312 FrameCols (tty) = tgetnum ("co");
4313 if (FrameRows (tty) <= 0)
4314 FrameRows (tty) = tgetnum ("li");
4315
4316 if (FrameRows (tty) < 3 || FrameCols (tty) < 3)
4317 maybe_fatal (must_succeed, terminal,
4318 "Screen size %dx%d is too small",
4319 "Screen size %dx%d is too small",
4320 FrameCols (tty), FrameRows (tty));
4321
4322 TabWidth (tty) = tgetnum ("tw");
4323
4324 if (!tty->TS_bell)
4325 tty->TS_bell = "\07";
4326
4327 if (!tty->TS_fwd_scroll)
4328 tty->TS_fwd_scroll = Down (tty);
4329
4330 PC = tty->TS_pad_char ? *tty->TS_pad_char : 0;
4331
4332 if (TabWidth (tty) < 0)
4333 TabWidth (tty) = 8;
4334
4335 /* Turned off since /etc/termcap seems to have :ta= for most terminals
4336 and newer termcap doc does not seem to say there is a default.
4337 if (!tty->Wcm->cm_tab)
4338 tty->Wcm->cm_tab = "\t";
4339 */
4340
4341 /* We don't support standout modes that use `magic cookies', so
4342 turn off any that do. */
4343 if (tty->TS_standout_mode && tgetnum ("sg") >= 0)
4344 {
4345 tty->TS_standout_mode = 0;
4346 tty->TS_end_standout_mode = 0;
4347 }
4348 if (tty->TS_enter_underline_mode && tgetnum ("ug") >= 0)
4349 {
4350 tty->TS_enter_underline_mode = 0;
4351 tty->TS_exit_underline_mode = 0;
4352 }
4353
4354 /* If there's no standout mode, try to use underlining instead. */
4355 if (tty->TS_standout_mode == 0)
4356 {
4357 tty->TS_standout_mode = tty->TS_enter_underline_mode;
4358 tty->TS_end_standout_mode = tty->TS_exit_underline_mode;
4359 }
4360
4361 /* If no `se' string, try using a `me' string instead.
4362 If that fails, we can't use standout mode at all. */
4363 if (tty->TS_end_standout_mode == 0)
4364 {
4365 char *s = tgetstr ("me", address);
4366 if (s != 0)
4367 tty->TS_end_standout_mode = s;
4368 else
4369 tty->TS_standout_mode = 0;
4370 }
4371
4372 if (tty->TF_teleray)
4373 {
4374 tty->Wcm->cm_tab = 0;
4375 /* We can't support standout mode, because it uses magic cookies. */
4376 tty->TS_standout_mode = 0;
4377 /* But that means we cannot rely on ^M to go to column zero! */
4378 CR (tty) = 0;
4379 /* LF can't be trusted either -- can alter hpos. */
4380 /* If move at column 0 thru a line with TS_standout_mode. */
4381 Down (tty) = 0;
4382 }
4383
4384 tty->specified_window = FrameRows (tty);
4385
4386 if (Wcm_init (tty) == -1) /* Can't do cursor motion. */
4387 {
4388 maybe_fatal (must_succeed, terminal,
4389 "Terminal type \"%s\" is not powerful enough to run Emacs",
4390 "Terminal type \"%s\" is not powerful enough to run Emacs.\n\
4391 It lacks the ability to position the cursor.\n\
4392 If that is not the actual type of terminal you have,\n\
4393 use the Bourne shell command `TERM=... export TERM' (C-shell:\n\
4394 `setenv TERM ...') to specify the correct type. It may be necessary\n"
4395 # ifdef TERMINFO
4396 "to do `unset TERMINFO' (C-shell: `unsetenv TERMINFO') as well.",
4397 # else /* TERMCAP */
4398 "to do `unset TERMCAP' (C-shell: `unsetenv TERMCAP') as well.",
4399 # endif /* TERMINFO */
4400 terminal_type);
4401 }
4402
4403 if (FrameRows (tty) <= 0 || FrameCols (tty) <= 0)
4404 maybe_fatal (must_succeed, terminal,
4405 "Could not determine the frame size",
4406 "Could not determine the frame size");
4407
4408 tty->delete_in_insert_mode
4409 = tty->TS_delete_mode && tty->TS_insert_mode
4410 && !strcmp (tty->TS_delete_mode, tty->TS_insert_mode);
4411
4412 UseTabs (tty) = tabs_safe_p (fileno (tty->input)) && TabWidth (tty) == 8;
4413
4414 tty->scroll_region_ok
4415 = (tty->Wcm->cm_abs
4416 && (tty->TS_set_window || tty->TS_set_scroll_region || tty->TS_set_scroll_region_1));
4417
4418 tty->line_ins_del_ok
4419 = (((tty->TS_ins_line || tty->TS_ins_multi_lines)
4420 && (tty->TS_del_line || tty->TS_del_multi_lines))
4421 || (tty->scroll_region_ok
4422 && tty->TS_fwd_scroll && tty->TS_rev_scroll));
4423
4424 tty->char_ins_del_ok
4425 = ((tty->TS_ins_char || tty->TS_insert_mode
4426 || tty->TS_pad_inserted_char || tty->TS_ins_multi_chars)
4427 && (tty->TS_del_char || tty->TS_del_multi_chars));
4428
4429 init_baud_rate (fileno (tty->input));
4430
4431 #endif /* not DOS_NT */
4432
4433 /* Init system terminal modes (RAW or CBREAK, etc.). */
4434 init_sys_modes (tty);
4435
4436 return terminal;
4437 }
4438
4439
4440 static void
4441 vfatal (const char *str, va_list ap)
4442 {
4443 fprintf (stderr, "emacs: ");
4444 vfprintf (stderr, str, ap);
4445 if (!(strlen (str) > 0 && str[strlen (str) - 1] == '\n'))
4446 fprintf (stderr, "\n");
4447 fflush (stderr);
4448 exit (1);
4449 }
4450
4451
4452 /* Auxiliary error-handling function for init_tty.
4453 Delete TERMINAL, then call error or fatal with str1 or str2,
4454 respectively, according to whether MUST_SUCCEED is true. */
4455
4456 static void
4457 maybe_fatal (bool must_succeed, struct terminal *terminal,
4458 const char *str1, const char *str2, ...)
4459 {
4460 va_list ap;
4461 va_start (ap, str2);
4462 if (terminal)
4463 delete_tty (terminal);
4464
4465 if (must_succeed)
4466 vfatal (str2, ap);
4467 else
4468 verror (str1, ap);
4469 }
4470
4471 void
4472 fatal (const char *str, ...)
4473 {
4474 va_list ap;
4475 va_start (ap, str);
4476 vfatal (str, ap);
4477 }
4478
4479 \f
4480
4481 /* Delete the given tty terminal, closing all frames on it. */
4482
4483 static void
4484 delete_tty (struct terminal *terminal)
4485 {
4486 struct tty_display_info *tty;
4487
4488 /* Protect against recursive calls. delete_frame in
4489 delete_terminal calls us back when it deletes our last frame. */
4490 if (!terminal->name)
4491 return;
4492
4493 eassert (terminal->type == output_termcap);
4494
4495 tty = terminal->display_info.tty;
4496
4497 if (tty == tty_list)
4498 tty_list = tty->next;
4499 else
4500 {
4501 struct tty_display_info *p;
4502 for (p = tty_list; p && p->next != tty; p = p->next)
4503 ;
4504
4505 if (! p)
4506 /* This should not happen. */
4507 emacs_abort ();
4508
4509 p->next = tty->next;
4510 tty->next = 0;
4511 }
4512
4513 /* reset_sys_modes needs a valid device, so this call needs to be
4514 before delete_terminal. */
4515 reset_sys_modes (tty);
4516
4517 delete_terminal (terminal);
4518
4519 xfree (tty->name);
4520 xfree (tty->type);
4521
4522 if (tty->input)
4523 {
4524 delete_keyboard_wait_descriptor (fileno (tty->input));
4525 if (tty->input != stdin)
4526 fclose (tty->input);
4527 }
4528 if (tty->output && tty->output != stdout && tty->output != tty->input)
4529 fclose (tty->output);
4530 if (tty->termscript)
4531 fclose (tty->termscript);
4532
4533 xfree (tty->old_tty);
4534 xfree (tty->Wcm);
4535 xfree (tty);
4536 }
4537
4538 void
4539 syms_of_term (void)
4540 {
4541 DEFVAR_BOOL ("system-uses-terminfo", system_uses_terminfo,
4542 doc: /* Non-nil means the system uses terminfo rather than termcap.
4543 This variable can be used by terminal emulator packages. */);
4544 #ifdef TERMINFO
4545 system_uses_terminfo = 1;
4546 #else
4547 system_uses_terminfo = 0;
4548 #endif
4549
4550 DEFVAR_LISP ("suspend-tty-functions", Vsuspend_tty_functions,
4551 doc: /* Functions run after suspending a tty.
4552 The functions are run with one argument, the terminal object to be suspended.
4553 See `suspend-tty'. */);
4554 Vsuspend_tty_functions = Qnil;
4555
4556
4557 DEFVAR_LISP ("resume-tty-functions", Vresume_tty_functions,
4558 doc: /* Functions run after resuming a tty.
4559 The functions are run with one argument, the terminal object that was revived.
4560 See `resume-tty'. */);
4561 Vresume_tty_functions = Qnil;
4562
4563 DEFVAR_BOOL ("visible-cursor", visible_cursor,
4564 doc: /* Non-nil means to make the cursor very visible.
4565 This only has an effect when running in a text terminal.
4566 What means \"very visible\" is up to your terminal. It may make the cursor
4567 bigger, or it may make it blink, or it may do nothing at all. */);
4568 visible_cursor = 1;
4569
4570 defsubr (&Stty_display_color_p);
4571 defsubr (&Stty_display_color_cells);
4572 defsubr (&Stty_no_underline);
4573 defsubr (&Stty_type);
4574 defsubr (&Scontrolling_tty_p);
4575 defsubr (&Stty_top_frame);
4576 defsubr (&Ssuspend_tty);
4577 defsubr (&Sresume_tty);
4578 #ifdef HAVE_GPM
4579 defsubr (&Sgpm_mouse_start);
4580 defsubr (&Sgpm_mouse_stop);
4581 #endif /* HAVE_GPM */
4582
4583 #ifndef DOS_NT
4584 default_orig_pair = NULL;
4585 default_set_foreground = NULL;
4586 default_set_background = NULL;
4587 #endif /* !DOS_NT */
4588
4589 encode_terminal_src = NULL;
4590 encode_terminal_dst = NULL;
4591
4592 DEFSYM (Qtty_mode_set_strings, "tty-mode-set-strings");
4593 DEFSYM (Qtty_mode_reset_strings, "tty-mode-reset-strings");
4594
4595 #ifndef MSDOS
4596 DEFSYM (Qtty_menu_next_item, "tty-menu-next-item");
4597 DEFSYM (Qtty_menu_prev_item, "tty-menu-prev-item");
4598 DEFSYM (Qtty_menu_next_menu, "tty-menu-next-menu");
4599 DEFSYM (Qtty_menu_prev_menu, "tty-menu-prev-menu");
4600 DEFSYM (Qtty_menu_select, "tty-menu-select");
4601 DEFSYM (Qtty_menu_ignore, "tty-menu-ignore");
4602 DEFSYM (Qtty_menu_exit, "tty-menu-exit");
4603 DEFSYM (Qtty_menu_mouse_movement, "tty-menu-mouse-movement");
4604 DEFSYM (Qtty_menu_navigation_map, "tty-menu-navigation-map");
4605 #endif
4606 }