Coverage Report

Created: 2026-09-13 06:02

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/src/tmux/tty-keys.c
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/* $OpenBSD: tty-keys.c,v 1.214 2026/08/18 09:01:20 nicm Exp $ */
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3
/*
4
 * Copyright (c) 2007 Nicholas Marriott <nicholas.marriott@gmail.com>
5
 *
6
 * Permission to use, copy, modify, and distribute this software for any
7
 * purpose with or without fee is hereby granted, provided that the above
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 * copyright notice and this permission notice appear in all copies.
9
 *
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 * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
11
 * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
12
 * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
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 * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
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 * WHATSOEVER RESULTING FROM LOSS OF MIND, USE, DATA OR PROFITS, WHETHER
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 * IN AN ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING
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 * OUT OF OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
17
 */
18
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#include <sys/types.h>
20
#include <sys/time.h>
21
22
#include <netinet/in.h>
23
24
#include <ctype.h>
25
#include <limits.h>
26
#include <resolv.h>
27
#include <stdlib.h>
28
#include <string.h>
29
#include <termios.h>
30
#include <unistd.h>
31
32
#include "tmux.h"
33
34
/*
35
 * Handle keys input from the outside terminal. tty_default_*_keys[] are a base
36
 * table of supported keys which are looked up in terminfo(5) and translated
37
 * into a ternary tree.
38
 */
39
40
static void tty_keys_add1(struct tty_key **, const char *, key_code);
41
static void tty_keys_add(struct tty *, const char *, key_code);
42
static void tty_keys_free1(struct tty_key *);
43
static struct tty_key *tty_keys_find1(struct tty_key *, const char *, size_t,
44
        size_t *);
45
static struct tty_key *tty_keys_find(struct tty *, const char *, size_t,
46
        size_t *);
47
static int  tty_keys_next1(struct tty *, const char *, size_t, key_code *,
48
        size_t *, int);
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static void tty_keys_callback(int, short, void *);
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static int  tty_keys_extended_key(struct tty *, const char *, size_t,
51
        size_t *, key_code *);
52
static int  tty_keys_mouse(struct tty *, const char *, size_t, size_t *,
53
        struct mouse_event *);
54
static int  tty_keys_clipboard(struct tty *, const char *, size_t,
55
        size_t *);
56
static int  tty_keys_device_attributes(struct tty *, const char *, size_t,
57
        size_t *);
58
static int  tty_keys_device_attributes2(struct tty *, const char *, size_t,
59
        size_t *);
60
static int  tty_keys_extended_device_attributes(struct tty *, const char *,
61
        size_t, size_t *);
62
static int  tty_keys_sync(struct tty *, const char *, size_t, size_t *);
63
static int  tty_keys_palette(struct tty *, const char *, size_t, size_t *);
64
65
/* A key tree entry. */
66
struct tty_key {
67
  char     ch;
68
  key_code   key;
69
70
  struct tty_key  *left;
71
  struct tty_key  *right;
72
73
  struct tty_key  *next;
74
};
75
76
/* Default raw keys. */
77
struct tty_default_key_raw {
78
  const char         *string;
79
  key_code    key;
80
};
81
static const struct tty_default_key_raw tty_default_raw_keys[] = {
82
  /* Application escape. */
83
  { "\033O[", '\033' },
84
85
  /*
86
   * Numeric keypad. Just use the vt100 escape sequences here and always
87
   * put the terminal into keypad_xmit mode. Translation of numbers
88
   * mode/applications mode is done in input-keys.c.
89
   */
90
  { "\033Oo", KEYC_KP_SLASH|KEYC_KEYPAD },
91
  { "\033Oj", KEYC_KP_STAR|KEYC_KEYPAD },
92
  { "\033Om", KEYC_KP_MINUS|KEYC_KEYPAD },
93
  { "\033Ow", KEYC_KP_SEVEN|KEYC_KEYPAD },
94
  { "\033Ox", KEYC_KP_EIGHT|KEYC_KEYPAD },
95
  { "\033Oy", KEYC_KP_NINE|KEYC_KEYPAD },
96
  { "\033Ok", KEYC_KP_PLUS|KEYC_KEYPAD },
97
  { "\033Ot", KEYC_KP_FOUR|KEYC_KEYPAD },
98
  { "\033Ou", KEYC_KP_FIVE|KEYC_KEYPAD },
99
  { "\033Ov", KEYC_KP_SIX|KEYC_KEYPAD },
100
  { "\033Oq", KEYC_KP_ONE|KEYC_KEYPAD },
101
  { "\033Or", KEYC_KP_TWO|KEYC_KEYPAD },
102
  { "\033Os", KEYC_KP_THREE|KEYC_KEYPAD },
103
  { "\033OM", KEYC_KP_ENTER|KEYC_KEYPAD },
104
  { "\033Op", KEYC_KP_ZERO|KEYC_KEYPAD },
105
  { "\033On", KEYC_KP_PERIOD|KEYC_KEYPAD },
106
107
  /* Arrow keys. */
108
  { "\033OA", KEYC_UP|KEYC_CURSOR },
109
  { "\033OB", KEYC_DOWN|KEYC_CURSOR },
110
  { "\033OC", KEYC_RIGHT|KEYC_CURSOR },
111
  { "\033OD", KEYC_LEFT|KEYC_CURSOR },
112
113
  { "\033[A", KEYC_UP|KEYC_CURSOR },
114
  { "\033[B", KEYC_DOWN|KEYC_CURSOR },
115
  { "\033[C", KEYC_RIGHT|KEYC_CURSOR },
116
  { "\033[D", KEYC_LEFT|KEYC_CURSOR },
117
118
  /*
119
   * Meta arrow keys. These do not get the IMPLIED_META flag so they
120
   * don't match the xterm-style meta keys in the output tree - Escape+Up
121
   * should stay as Escape+Up and not become M-Up.
122
   */
123
  { "\033\033OA", KEYC_UP|KEYC_CURSOR|KEYC_META },
124
  { "\033\033OB", KEYC_DOWN|KEYC_CURSOR|KEYC_META },
125
  { "\033\033OC", KEYC_RIGHT|KEYC_CURSOR|KEYC_META },
126
  { "\033\033OD", KEYC_LEFT|KEYC_CURSOR|KEYC_META },
127
128
  { "\033\033[A", KEYC_UP|KEYC_CURSOR|KEYC_META },
129
  { "\033\033[B", KEYC_DOWN|KEYC_CURSOR|KEYC_META },
130
  { "\033\033[C", KEYC_RIGHT|KEYC_CURSOR|KEYC_META },
131
  { "\033\033[D", KEYC_LEFT|KEYC_CURSOR|KEYC_META },
132
133
  /* Other xterm keys. */
134
  { "\033OH", KEYC_HOME },
135
  { "\033OF", KEYC_END },
136
137
  { "\033\033OH", KEYC_HOME|KEYC_META|KEYC_IMPLIED_META },
138
  { "\033\033OF", KEYC_END|KEYC_META|KEYC_IMPLIED_META },
139
140
  { "\033[H", KEYC_HOME },
141
  { "\033[F", KEYC_END },
142
143
  { "\033\033[H", KEYC_HOME|KEYC_META|KEYC_IMPLIED_META },
144
  { "\033\033[F", KEYC_END|KEYC_META|KEYC_IMPLIED_META },
145
146
  /* rxvt arrow keys. */
147
  { "\033Oa", KEYC_UP|KEYC_CTRL },
148
  { "\033Ob", KEYC_DOWN|KEYC_CTRL },
149
  { "\033Oc", KEYC_RIGHT|KEYC_CTRL },
150
  { "\033Od", KEYC_LEFT|KEYC_CTRL },
151
152
  { "\033[a", KEYC_UP|KEYC_SHIFT },
153
  { "\033[b", KEYC_DOWN|KEYC_SHIFT },
154
  { "\033[c", KEYC_RIGHT|KEYC_SHIFT },
155
  { "\033[d", KEYC_LEFT|KEYC_SHIFT },
156
157
  /* rxvt function keys. */
158
  { "\033[11~", KEYC_F1 },
159
  { "\033[12~", KEYC_F2 },
160
  { "\033[13~", KEYC_F3 },
161
  { "\033[14~", KEYC_F4 },
162
  { "\033[15~", KEYC_F5 },
163
  { "\033[17~", KEYC_F6 },
164
  { "\033[18~", KEYC_F7 },
165
  { "\033[19~", KEYC_F8 },
166
  { "\033[20~", KEYC_F9 },
167
  { "\033[21~", KEYC_F10 },
168
169
  { "\033[23~", KEYC_F1|KEYC_SHIFT },
170
  { "\033[24~", KEYC_F2|KEYC_SHIFT },
171
  { "\033[25~", KEYC_F3|KEYC_SHIFT },
172
  { "\033[26~", KEYC_F4|KEYC_SHIFT },
173
  { "\033[28~", KEYC_F5|KEYC_SHIFT },
174
  { "\033[29~", KEYC_F6|KEYC_SHIFT },
175
  { "\033[31~", KEYC_F7|KEYC_SHIFT },
176
  { "\033[32~", KEYC_F8|KEYC_SHIFT },
177
  { "\033[33~", KEYC_F9|KEYC_SHIFT },
178
  { "\033[34~", KEYC_F10|KEYC_SHIFT },
179
  { "\033[23$", KEYC_F11|KEYC_SHIFT },
180
  { "\033[24$", KEYC_F12|KEYC_SHIFT },
181
182
  { "\033[11^", KEYC_F1|KEYC_CTRL },
183
  { "\033[12^", KEYC_F2|KEYC_CTRL },
184
  { "\033[13^", KEYC_F3|KEYC_CTRL },
185
  { "\033[14^", KEYC_F4|KEYC_CTRL },
186
  { "\033[15^", KEYC_F5|KEYC_CTRL },
187
  { "\033[17^", KEYC_F6|KEYC_CTRL },
188
  { "\033[18^", KEYC_F7|KEYC_CTRL },
189
  { "\033[19^", KEYC_F8|KEYC_CTRL },
190
  { "\033[20^", KEYC_F9|KEYC_CTRL },
191
  { "\033[21^", KEYC_F10|KEYC_CTRL },
192
  { "\033[23^", KEYC_F11|KEYC_CTRL },
193
  { "\033[24^", KEYC_F12|KEYC_CTRL },
194
195
  { "\033[11@", KEYC_F1|KEYC_CTRL|KEYC_SHIFT },
196
  { "\033[12@", KEYC_F2|KEYC_CTRL|KEYC_SHIFT },
197
  { "\033[13@", KEYC_F3|KEYC_CTRL|KEYC_SHIFT },
198
  { "\033[14@", KEYC_F4|KEYC_CTRL|KEYC_SHIFT },
199
  { "\033[15@", KEYC_F5|KEYC_CTRL|KEYC_SHIFT },
200
  { "\033[17@", KEYC_F6|KEYC_CTRL|KEYC_SHIFT },
201
  { "\033[18@", KEYC_F7|KEYC_CTRL|KEYC_SHIFT },
202
  { "\033[19@", KEYC_F8|KEYC_CTRL|KEYC_SHIFT },
203
  { "\033[20@", KEYC_F9|KEYC_CTRL|KEYC_SHIFT },
204
  { "\033[21@", KEYC_F10|KEYC_CTRL|KEYC_SHIFT },
205
  { "\033[23@", KEYC_F11|KEYC_CTRL|KEYC_SHIFT },
206
  { "\033[24@", KEYC_F12|KEYC_CTRL|KEYC_SHIFT },
207
208
  /* Focus tracking. */
209
  { "\033[I", KEYC_FOCUS_IN },
210
  { "\033[O", KEYC_FOCUS_OUT },
211
212
  /* Paste keys. */
213
  { "\033[200~", KEYC_PASTE_START|KEYC_IMPLIED_META },
214
  { "\033[201~", KEYC_PASTE_END|KEYC_IMPLIED_META },
215
216
  /* Extended keys. */
217
  { "\033[1;5Z", '\011'|KEYC_CTRL|KEYC_SHIFT },
218
219
  /* Theme reporting. */
220
  { "\033[?997;1n", KEYC_REPORT_DARK_THEME },
221
  { "\033[?997;2n", KEYC_REPORT_LIGHT_THEME },
222
};
223
224
/* Default xterm keys. */
225
struct tty_default_key_xterm {
226
  const char  *template;
227
  key_code   key;
228
};
229
static const struct tty_default_key_xterm tty_default_xterm_keys[] = {
230
  { "\033[1;_P", KEYC_F1 },
231
  { "\033O1;_P", KEYC_F1 },
232
  { "\033O_P", KEYC_F1 },
233
  { "\033[1;_Q", KEYC_F2 },
234
  { "\033O1;_Q", KEYC_F2 },
235
  { "\033O_Q", KEYC_F2 },
236
  { "\033[1;_R", KEYC_F3 },
237
  { "\033O1;_R", KEYC_F3 },
238
  { "\033O_R", KEYC_F3 },
239
  { "\033[1;_S", KEYC_F4 },
240
  { "\033O1;_S", KEYC_F4 },
241
  { "\033O_S", KEYC_F4 },
242
  { "\033[15;_~", KEYC_F5 },
243
  { "\033[17;_~", KEYC_F6 },
244
  { "\033[18;_~", KEYC_F7 },
245
  { "\033[19;_~", KEYC_F8 },
246
  { "\033[20;_~", KEYC_F9 },
247
  { "\033[21;_~", KEYC_F10 },
248
  { "\033[23;_~", KEYC_F11 },
249
  { "\033[24;_~", KEYC_F12 },
250
  { "\033[1;_A", KEYC_UP },
251
  { "\033[1;_B", KEYC_DOWN },
252
  { "\033[1;_C", KEYC_RIGHT },
253
  { "\033[1;_D", KEYC_LEFT },
254
  { "\033[1;_H", KEYC_HOME },
255
  { "\033[1;_F", KEYC_END },
256
  { "\033[5;_~", KEYC_PPAGE },
257
  { "\033[6;_~", KEYC_NPAGE },
258
  { "\033[2;_~", KEYC_IC },
259
  { "\033[3;_~", KEYC_DC },
260
};
261
static const key_code tty_default_xterm_modifiers[] = {
262
  0,
263
  0,
264
  KEYC_SHIFT,
265
  KEYC_META|KEYC_IMPLIED_META,
266
  KEYC_SHIFT|KEYC_META|KEYC_IMPLIED_META,
267
  KEYC_CTRL,
268
  KEYC_SHIFT|KEYC_CTRL,
269
  KEYC_META|KEYC_IMPLIED_META|KEYC_CTRL,
270
  KEYC_SHIFT|KEYC_META|KEYC_IMPLIED_META|KEYC_CTRL,
271
  KEYC_META|KEYC_IMPLIED_META
272
};
273
274
/*
275
 * Default terminfo(5) keys. Any keys that have builtin modifiers (that is,
276
 * where the key itself contains the modifiers) has the KEYC_XTERM flag set so
277
 * a leading escape is not treated as meta (and probably removed).
278
 */
279
struct tty_default_key_code {
280
  enum tty_code_code  code;
281
  key_code    key;
282
};
283
static const struct tty_default_key_code tty_default_code_keys[] = {
284
  /* Function keys. */
285
  { TTYC_KF1, KEYC_F1 },
286
  { TTYC_KF2, KEYC_F2 },
287
  { TTYC_KF3, KEYC_F3 },
288
  { TTYC_KF4, KEYC_F4 },
289
  { TTYC_KF5, KEYC_F5 },
290
  { TTYC_KF6, KEYC_F6 },
291
  { TTYC_KF7, KEYC_F7 },
292
  { TTYC_KF8, KEYC_F8 },
293
  { TTYC_KF9, KEYC_F9 },
294
  { TTYC_KF10, KEYC_F10 },
295
  { TTYC_KF11, KEYC_F11 },
296
  { TTYC_KF12, KEYC_F12 },
297
298
  { TTYC_KF13, KEYC_F1|KEYC_SHIFT },
299
  { TTYC_KF14, KEYC_F2|KEYC_SHIFT },
300
  { TTYC_KF15, KEYC_F3|KEYC_SHIFT },
301
  { TTYC_KF16, KEYC_F4|KEYC_SHIFT },
302
  { TTYC_KF17, KEYC_F5|KEYC_SHIFT },
303
  { TTYC_KF18, KEYC_F6|KEYC_SHIFT },
304
  { TTYC_KF19, KEYC_F7|KEYC_SHIFT },
305
  { TTYC_KF20, KEYC_F8|KEYC_SHIFT },
306
  { TTYC_KF21, KEYC_F9|KEYC_SHIFT },
307
  { TTYC_KF22, KEYC_F10|KEYC_SHIFT },
308
  { TTYC_KF23, KEYC_F11|KEYC_SHIFT },
309
  { TTYC_KF24, KEYC_F12|KEYC_SHIFT },
310
311
  { TTYC_KF25, KEYC_F1|KEYC_CTRL },
312
  { TTYC_KF26, KEYC_F2|KEYC_CTRL },
313
  { TTYC_KF27, KEYC_F3|KEYC_CTRL },
314
  { TTYC_KF28, KEYC_F4|KEYC_CTRL },
315
  { TTYC_KF29, KEYC_F5|KEYC_CTRL },
316
  { TTYC_KF30, KEYC_F6|KEYC_CTRL },
317
  { TTYC_KF31, KEYC_F7|KEYC_CTRL },
318
  { TTYC_KF32, KEYC_F8|KEYC_CTRL },
319
  { TTYC_KF33, KEYC_F9|KEYC_CTRL },
320
  { TTYC_KF34, KEYC_F10|KEYC_CTRL },
321
  { TTYC_KF35, KEYC_F11|KEYC_CTRL },
322
  { TTYC_KF36, KEYC_F12|KEYC_CTRL },
323
324
  { TTYC_KF37, KEYC_F1|KEYC_SHIFT|KEYC_CTRL },
325
  { TTYC_KF38, KEYC_F2|KEYC_SHIFT|KEYC_CTRL },
326
  { TTYC_KF39, KEYC_F3|KEYC_SHIFT|KEYC_CTRL },
327
  { TTYC_KF40, KEYC_F4|KEYC_SHIFT|KEYC_CTRL },
328
  { TTYC_KF41, KEYC_F5|KEYC_SHIFT|KEYC_CTRL },
329
  { TTYC_KF42, KEYC_F6|KEYC_SHIFT|KEYC_CTRL },
330
  { TTYC_KF43, KEYC_F7|KEYC_SHIFT|KEYC_CTRL },
331
  { TTYC_KF44, KEYC_F8|KEYC_SHIFT|KEYC_CTRL },
332
  { TTYC_KF45, KEYC_F9|KEYC_SHIFT|KEYC_CTRL },
333
  { TTYC_KF46, KEYC_F10|KEYC_SHIFT|KEYC_CTRL },
334
  { TTYC_KF47, KEYC_F11|KEYC_SHIFT|KEYC_CTRL },
335
  { TTYC_KF48, KEYC_F12|KEYC_SHIFT|KEYC_CTRL },
336
337
  { TTYC_KF49, KEYC_F1|KEYC_META|KEYC_IMPLIED_META },
338
  { TTYC_KF50, KEYC_F2|KEYC_META|KEYC_IMPLIED_META },
339
  { TTYC_KF51, KEYC_F3|KEYC_META|KEYC_IMPLIED_META },
340
  { TTYC_KF52, KEYC_F4|KEYC_META|KEYC_IMPLIED_META },
341
  { TTYC_KF53, KEYC_F5|KEYC_META|KEYC_IMPLIED_META },
342
  { TTYC_KF54, KEYC_F6|KEYC_META|KEYC_IMPLIED_META },
343
  { TTYC_KF55, KEYC_F7|KEYC_META|KEYC_IMPLIED_META },
344
  { TTYC_KF56, KEYC_F8|KEYC_META|KEYC_IMPLIED_META },
345
  { TTYC_KF57, KEYC_F9|KEYC_META|KEYC_IMPLIED_META },
346
  { TTYC_KF58, KEYC_F10|KEYC_META|KEYC_IMPLIED_META },
347
  { TTYC_KF59, KEYC_F11|KEYC_META|KEYC_IMPLIED_META },
348
  { TTYC_KF60, KEYC_F12|KEYC_META|KEYC_IMPLIED_META },
349
350
  { TTYC_KF61, KEYC_F1|KEYC_META|KEYC_IMPLIED_META|KEYC_SHIFT },
351
  { TTYC_KF62, KEYC_F2|KEYC_META|KEYC_IMPLIED_META|KEYC_SHIFT },
352
  { TTYC_KF63, KEYC_F3|KEYC_META|KEYC_IMPLIED_META|KEYC_SHIFT },
353
354
  { TTYC_KICH1, KEYC_IC },
355
  { TTYC_KDCH1, KEYC_DC },
356
  { TTYC_KHOME, KEYC_HOME },
357
  { TTYC_KEND, KEYC_END },
358
  { TTYC_KNP, KEYC_NPAGE },
359
  { TTYC_KPP, KEYC_PPAGE },
360
  { TTYC_KCBT, KEYC_BTAB },
361
362
  /* Arrow keys from terminfo. */
363
  { TTYC_KCUU1, KEYC_UP|KEYC_CURSOR },
364
  { TTYC_KCUD1, KEYC_DOWN|KEYC_CURSOR },
365
  { TTYC_KCUB1, KEYC_LEFT|KEYC_CURSOR },
366
  { TTYC_KCUF1, KEYC_RIGHT|KEYC_CURSOR },
367
368
  /* Key and modifier capabilities. */
369
  { TTYC_KDC2, KEYC_DC|KEYC_SHIFT },
370
  { TTYC_KDC3, KEYC_DC|KEYC_META|KEYC_IMPLIED_META },
371
  { TTYC_KDC4, KEYC_DC|KEYC_SHIFT|KEYC_META|KEYC_IMPLIED_META },
372
  { TTYC_KDC5, KEYC_DC|KEYC_CTRL },
373
  { TTYC_KDC6, KEYC_DC|KEYC_SHIFT|KEYC_CTRL },
374
  { TTYC_KDC7, KEYC_DC|KEYC_META|KEYC_IMPLIED_META|KEYC_CTRL },
375
  { TTYC_KIND, KEYC_DOWN|KEYC_SHIFT },
376
  { TTYC_KDN2, KEYC_DOWN|KEYC_SHIFT },
377
  { TTYC_KDN3, KEYC_DOWN|KEYC_META|KEYC_IMPLIED_META },
378
  { TTYC_KDN4, KEYC_DOWN|KEYC_SHIFT|KEYC_META|KEYC_IMPLIED_META },
379
  { TTYC_KDN5, KEYC_DOWN|KEYC_CTRL },
380
  { TTYC_KDN6, KEYC_DOWN|KEYC_SHIFT|KEYC_CTRL },
381
  { TTYC_KDN7, KEYC_DOWN|KEYC_META|KEYC_IMPLIED_META|KEYC_CTRL },
382
  { TTYC_KEND2, KEYC_END|KEYC_SHIFT },
383
  { TTYC_KEND3, KEYC_END|KEYC_META|KEYC_IMPLIED_META },
384
  { TTYC_KEND4, KEYC_END|KEYC_SHIFT|KEYC_META|KEYC_IMPLIED_META },
385
  { TTYC_KEND5, KEYC_END|KEYC_CTRL },
386
  { TTYC_KEND6, KEYC_END|KEYC_SHIFT|KEYC_CTRL },
387
  { TTYC_KEND7, KEYC_END|KEYC_META|KEYC_IMPLIED_META|KEYC_CTRL },
388
  { TTYC_KHOM2, KEYC_HOME|KEYC_SHIFT },
389
  { TTYC_KHOM3, KEYC_HOME|KEYC_META|KEYC_IMPLIED_META },
390
  { TTYC_KHOM4, KEYC_HOME|KEYC_SHIFT|KEYC_META|KEYC_IMPLIED_META },
391
  { TTYC_KHOM5, KEYC_HOME|KEYC_CTRL },
392
  { TTYC_KHOM6, KEYC_HOME|KEYC_SHIFT|KEYC_CTRL },
393
  { TTYC_KHOM7, KEYC_HOME|KEYC_META|KEYC_IMPLIED_META|KEYC_CTRL },
394
  { TTYC_KIC2, KEYC_IC|KEYC_SHIFT },
395
  { TTYC_KIC3, KEYC_IC|KEYC_META|KEYC_IMPLIED_META },
396
  { TTYC_KIC4, KEYC_IC|KEYC_SHIFT|KEYC_META|KEYC_IMPLIED_META },
397
  { TTYC_KIC5, KEYC_IC|KEYC_CTRL },
398
  { TTYC_KIC6, KEYC_IC|KEYC_SHIFT|KEYC_CTRL },
399
  { TTYC_KIC7, KEYC_IC|KEYC_META|KEYC_IMPLIED_META|KEYC_CTRL },
400
  { TTYC_KLFT2, KEYC_LEFT|KEYC_SHIFT },
401
  { TTYC_KLFT3, KEYC_LEFT|KEYC_META|KEYC_IMPLIED_META },
402
  { TTYC_KLFT4, KEYC_LEFT|KEYC_SHIFT|KEYC_META|KEYC_IMPLIED_META },
403
  { TTYC_KLFT5, KEYC_LEFT|KEYC_CTRL },
404
  { TTYC_KLFT6, KEYC_LEFT|KEYC_SHIFT|KEYC_CTRL },
405
  { TTYC_KLFT7, KEYC_LEFT|KEYC_META|KEYC_IMPLIED_META|KEYC_CTRL },
406
  { TTYC_KNXT2, KEYC_NPAGE|KEYC_SHIFT },
407
  { TTYC_KNXT3, KEYC_NPAGE|KEYC_META|KEYC_IMPLIED_META },
408
  { TTYC_KNXT4, KEYC_NPAGE|KEYC_SHIFT|KEYC_META|KEYC_IMPLIED_META },
409
  { TTYC_KNXT5, KEYC_NPAGE|KEYC_CTRL },
410
  { TTYC_KNXT6, KEYC_NPAGE|KEYC_SHIFT|KEYC_CTRL },
411
  { TTYC_KNXT7, KEYC_NPAGE|KEYC_META|KEYC_IMPLIED_META|KEYC_CTRL },
412
  { TTYC_KPRV2, KEYC_PPAGE|KEYC_SHIFT },
413
  { TTYC_KPRV3, KEYC_PPAGE|KEYC_META|KEYC_IMPLIED_META },
414
  { TTYC_KPRV4, KEYC_PPAGE|KEYC_SHIFT|KEYC_META|KEYC_IMPLIED_META },
415
  { TTYC_KPRV5, KEYC_PPAGE|KEYC_CTRL },
416
  { TTYC_KPRV6, KEYC_PPAGE|KEYC_SHIFT|KEYC_CTRL },
417
  { TTYC_KPRV7, KEYC_PPAGE|KEYC_META|KEYC_IMPLIED_META|KEYC_CTRL },
418
  { TTYC_KRIT2, KEYC_RIGHT|KEYC_SHIFT },
419
  { TTYC_KRIT3, KEYC_RIGHT|KEYC_META|KEYC_IMPLIED_META },
420
  { TTYC_KRIT4, KEYC_RIGHT|KEYC_SHIFT|KEYC_META|KEYC_IMPLIED_META },
421
  { TTYC_KRIT5, KEYC_RIGHT|KEYC_CTRL },
422
  { TTYC_KRIT6, KEYC_RIGHT|KEYC_SHIFT|KEYC_CTRL },
423
  { TTYC_KRIT7, KEYC_RIGHT|KEYC_META|KEYC_IMPLIED_META|KEYC_CTRL },
424
  { TTYC_KRI, KEYC_UP|KEYC_SHIFT },
425
  { TTYC_KUP2, KEYC_UP|KEYC_SHIFT },
426
  { TTYC_KUP3, KEYC_UP|KEYC_META|KEYC_IMPLIED_META },
427
  { TTYC_KUP4, KEYC_UP|KEYC_SHIFT|KEYC_META|KEYC_IMPLIED_META },
428
  { TTYC_KUP5, KEYC_UP|KEYC_CTRL },
429
  { TTYC_KUP6, KEYC_UP|KEYC_SHIFT|KEYC_CTRL },
430
  { TTYC_KUP7, KEYC_UP|KEYC_META|KEYC_IMPLIED_META|KEYC_CTRL },
431
};
432
433
/* Add key to tree. */
434
static void
435
tty_keys_add(struct tty *tty, const char *s, key_code key)
436
0
{
437
0
  struct tty_key  *tk;
438
0
  size_t     size;
439
0
  const char  *keystr;
440
441
0
  keystr = key_string_lookup_key(key, 1);
442
0
  if ((tk = tty_keys_find(tty, s, strlen(s), &size)) == NULL) {
443
0
    log_debug("new key %s: 0x%llx (%s)", s, key, keystr);
444
0
    tty_keys_add1(&tty->key_tree, s, key);
445
0
  } else {
446
0
    log_debug("replacing key %s: 0x%llx (%s)", s, key, keystr);
447
0
    tk->key = key;
448
0
  }
449
0
}
450
451
/* Add next node to the tree. */
452
static void
453
tty_keys_add1(struct tty_key **tkp, const char *s, key_code key)
454
0
{
455
0
  struct tty_key  *tk;
456
457
  /* Allocate a tree entry if there isn't one already. */
458
0
  tk = *tkp;
459
0
  if (tk == NULL) {
460
0
    tk = *tkp = xcalloc(1, sizeof *tk);
461
0
    tk->ch = *s;
462
0
    tk->key = KEYC_UNKNOWN;
463
0
  }
464
465
  /* Find the next entry. */
466
0
  if (*s == tk->ch) {
467
    /* Move forward in string. */
468
0
    s++;
469
470
    /* If this is the end of the string, no more is necessary. */
471
0
    if (*s == '\0') {
472
0
      tk->key = key;
473
0
      return;
474
0
    }
475
476
    /* Use the child tree for the next character. */
477
0
    tkp = &tk->next;
478
0
  } else {
479
0
    if (*s < tk->ch)
480
0
      tkp = &tk->left;
481
0
    else if (*s > tk->ch)
482
0
      tkp = &tk->right;
483
0
  }
484
485
  /* And recurse to add it. */
486
0
  tty_keys_add1(tkp, s, key);
487
0
}
488
489
/* Initialise a key tree from the table. */
490
void
491
tty_keys_build(struct tty *tty)
492
0
{
493
0
  const struct tty_default_key_raw  *tdkr;
494
0
  const struct tty_default_key_xterm  *tdkx;
495
0
  const struct tty_default_key_code *tdkc;
496
0
  u_int          i, j;
497
0
  const char        *s;
498
0
  struct options_entry      *o;
499
0
  union options_value     *ov;
500
0
  char           copy[16];
501
0
  key_code         key;
502
503
0
  if (tty->key_tree != NULL)
504
0
    tty_keys_free(tty);
505
0
  tty->key_tree = NULL;
506
507
0
  for (i = 0; i < nitems(tty_default_xterm_keys); i++) {
508
0
    tdkx = &tty_default_xterm_keys[i];
509
0
    for (j = 2; j < nitems(tty_default_xterm_modifiers); j++) {
510
0
      strlcpy(copy, tdkx->template, sizeof copy);
511
0
      copy[strcspn(copy, "_")] = '0' + j;
512
513
0
      key = tdkx->key|tty_default_xterm_modifiers[j];
514
0
      tty_keys_add(tty, copy, key);
515
0
    }
516
0
  }
517
0
  for (i = 0; i < nitems(tty_default_raw_keys); i++) {
518
0
    tdkr = &tty_default_raw_keys[i];
519
520
0
    s = tdkr->string;
521
0
    if (*s != '\0')
522
0
      tty_keys_add(tty, s, tdkr->key);
523
0
  }
524
0
  for (i = 0; i < nitems(tty_default_code_keys); i++) {
525
0
    tdkc = &tty_default_code_keys[i];
526
527
0
    s = tty_term_string(tty->term, tdkc->code);
528
0
    if (*s != '\0')
529
0
      tty_keys_add(tty, s, tdkc->key);
530
531
0
  }
532
533
0
  o = options_get(global_options, "user-keys");
534
0
  if (o != NULL) {
535
0
    for (i = 0; i <= KEYC_NUSER; i++) {
536
0
      ov = options_array_getv(o, "%u", i);
537
0
      if (ov != NULL)
538
0
        tty_keys_add(tty, ov->string, KEYC_USER + i);
539
0
    }
540
0
  }
541
0
}
542
543
/* Free the entire key tree. */
544
void
545
tty_keys_free(struct tty *tty)
546
0
{
547
0
  tty_keys_free1(tty->key_tree);
548
0
}
549
550
/* Free a single key. */
551
static void
552
tty_keys_free1(struct tty_key *tk)
553
0
{
554
0
  if (tk->next != NULL)
555
0
    tty_keys_free1(tk->next);
556
0
  if (tk->left != NULL)
557
0
    tty_keys_free1(tk->left);
558
0
  if (tk->right != NULL)
559
0
    tty_keys_free1(tk->right);
560
0
  free(tk);
561
0
}
562
563
/* Lookup a key in the tree. */
564
static struct tty_key *
565
tty_keys_find(struct tty *tty, const char *buf, size_t len, size_t *size)
566
0
{
567
0
  *size = 0;
568
0
  return (tty_keys_find1(tty->key_tree, buf, len, size));
569
0
}
570
571
/* Find the next node. */
572
static struct tty_key *
573
tty_keys_find1(struct tty_key *tk, const char *buf, size_t len, size_t *size)
574
0
{
575
  /* If no data, no match. */
576
0
  if (len == 0)
577
0
    return (NULL);
578
579
  /* If the node is NULL, this is the end of the tree. No match. */
580
0
  if (tk == NULL)
581
0
    return (NULL);
582
583
  /* Pick the next in the sequence. */
584
0
  if (tk->ch == *buf) {
585
    /* Move forward in the string. */
586
0
    buf++; len--;
587
0
    (*size)++;
588
589
    /* At the end of the string, return the current node. */
590
0
    if (len == 0 || (tk->next == NULL && tk->key != KEYC_UNKNOWN))
591
0
      return (tk);
592
593
    /* Move into the next tree for the following character. */
594
0
    tk = tk->next;
595
0
  } else {
596
0
    if (*buf < tk->ch)
597
0
      tk = tk->left;
598
0
    else if (*buf > tk->ch)
599
0
      tk = tk->right;
600
0
  }
601
602
  /* Move to the next in the tree. */
603
0
  return (tty_keys_find1(tk, buf, len, size));
604
0
}
605
606
static int
607
tty_keys_partial_paste_end(const char *buf, size_t len)
608
0
{
609
0
  static const char paste_end[] = "\033[201~";
610
0
  size_t      paste_end_len = (sizeof paste_end) - 1;
611
612
0
  if (len == 0 || len >= paste_end_len)
613
0
    return (0);
614
0
  return (memcmp(buf, paste_end, len) == 0);
615
0
}
616
617
/* Look up part of the next key. */
618
static int
619
tty_keys_next1(struct tty *tty, const char *buf, size_t len, key_code *key,
620
    size_t *size, int expired)
621
0
{
622
0
  struct client   *c = tty->client;
623
0
  struct tty_key    *tk, *tk1;
624
0
  struct utf8_data   ud;
625
0
  enum utf8_state    more;
626
0
  utf8_char    uc;
627
0
  u_int      i;
628
629
0
  log_debug("%s: next key is %zu (%.*s) (expired=%d)", c->name, len,
630
0
      (int)len, buf, expired);
631
632
  /* Is this a known key? */
633
0
  tk = tty_keys_find(tty, buf, len, size);
634
0
  if (tk != NULL && tk->key != KEYC_UNKNOWN) {
635
0
    tk1 = tk;
636
0
    do
637
0
      log_debug("%s: keys in list: %#llx", c->name, tk1->key);
638
0
    while ((tk1 = tk1->next) != NULL);
639
0
    if (tk->next != NULL && !expired)
640
0
      return (1);
641
0
    *key = tk->key;
642
0
    if ((*key & KEYC_MASK_KEY) == KEYC_PASTE_START)
643
0
      tty->flags |= TTY_BRACKETPASTE;
644
0
    else if ((*key & KEYC_MASK_KEY) == KEYC_PASTE_END)
645
0
      tty->flags &= ~TTY_BRACKETPASTE;
646
0
    return (0);
647
0
  }
648
649
  /* Is this valid UTF-8? */
650
0
  more = utf8_open(&ud, (u_char)*buf);
651
0
  if (more == UTF8_MORE) {
652
0
    *size = ud.size;
653
0
    if (len < ud.size) {
654
0
      if (!expired)
655
0
        return (1);
656
0
      return (-1);
657
0
    }
658
0
    for (i = 1; i < ud.size; i++)
659
0
      more = utf8_append(&ud, (u_char)buf[i]);
660
0
    if (more != UTF8_DONE)
661
0
      return (-1);
662
663
0
    if (utf8_from_data(&ud, &uc) != UTF8_DONE)
664
0
      return (-1);
665
0
    *key = uc;
666
667
0
    log_debug("%s: UTF-8 key %.*s %#llx", c->name, (int)ud.size,
668
0
        ud.data, *key);
669
0
    return (0);
670
0
  }
671
672
0
  return (-1);
673
0
}
674
675
/* Process window size change escape sequences. */
676
static int
677
tty_keys_winsz(struct tty *tty, const char *buf, size_t len, size_t *size)
678
0
{
679
0
  struct client *c = tty->client;
680
0
  size_t     end;
681
0
  char     tmp[64];
682
0
  u_int    sx, sy, xpixel, ypixel, char_x, char_y;
683
684
0
  *size = 0;
685
686
  /* If we did not request this, ignore it. */
687
0
  if (!(tty->flags & TTY_WINSIZEQUERY))
688
0
    return (-1);
689
690
  /* First two bytes are always \033[. */
691
0
  if (buf[0] != '\033')
692
0
    return (-1);
693
0
  if (len == 1)
694
0
    return (1);
695
0
  if (buf[1] != '[')
696
0
    return (-1);
697
0
  if (len == 2)
698
0
    return (1);
699
700
  /*
701
   * Stop at either 't' or anything that isn't a
702
   * number or ';'.
703
   */
704
0
  for (end = 2; end < len && end != sizeof tmp; end++) {
705
0
    if (buf[end] == 't')
706
0
      break;
707
0
    if (!isdigit((u_char)buf[end]) && buf[end] != ';')
708
0
      break;
709
0
  }
710
0
  if (end == len)
711
0
    return (1);
712
0
  if (end == sizeof tmp || buf[end] != 't')
713
0
    return (-1);
714
715
  /* Copy to the buffer. */
716
0
  memcpy(tmp, buf + 2, end - 2);
717
0
  tmp[end - 2] = '\0';
718
719
  /* Try to parse the window size sequence. */
720
0
  if (sscanf(tmp, "8;%u;%u", &sy, &sx) == 2) {
721
    /* Window size in characters. */
722
0
    tty_set_size(tty, sx, sy, tty->xpixel, tty->ypixel);
723
724
0
    *size = end + 1;
725
0
    return (0);
726
0
  } else if (sscanf(tmp, "4;%u;%u", &ypixel, &xpixel) == 2) {
727
    /* Window size in pixels. */
728
0
    char_x = (xpixel && tty->sx) ? xpixel / tty->sx : 0;
729
0
    char_y = (ypixel && tty->sy) ? ypixel / tty->sy : 0;
730
0
    tty_set_size(tty, tty->sx, tty->sy, char_x, char_y);
731
0
    tty_invalidate(tty);
732
733
0
    tty->flags &= ~TTY_WINSIZEQUERY;
734
0
    *size = end + 1;
735
0
    return (0);
736
0
  }
737
738
0
  log_debug("%s: unrecognized window size sequence: %s", c->name, tmp);
739
0
  return (-1);
740
0
}
741
742
743
/* Process at least one key in the buffer. Return 0 if no keys present. */
744
int
745
tty_keys_next(struct tty *tty)
746
0
{
747
0
  struct client   *c = tty->client;
748
0
  struct timeval     tv;
749
0
  const char    *buf;
750
0
  size_t       len, size;
751
0
  cc_t       bspace;
752
0
  int      delay, expired = 0, n, bg = tty->bg;
753
0
  key_code     key, onlykey;
754
0
  struct mouse_event   m = { 0 };
755
0
  struct key_event  *event;
756
757
  /* Get key buffer. */
758
0
  buf = EVBUFFER_DATA(tty->in);
759
0
  len = EVBUFFER_LENGTH(tty->in);
760
0
  if (len == 0)
761
0
    return (0);
762
0
  log_debug("%s: keys are %zu (%.*s)", c->name, len, (int)len, buf);
763
764
  /* Is this a clipboard response? */
765
0
  switch (tty_keys_clipboard(tty, buf, len, &size)) {
766
0
  case 0:   /* yes */
767
0
    key = KEYC_UNKNOWN;
768
0
    goto complete_key;
769
0
  case -1:  /* no, or not valid */
770
0
    break;
771
0
  case 1:   /* partial */
772
0
    goto partial_key;
773
0
  }
774
775
  /* Is this a synchronized update mode response? */
776
0
  switch (tty_keys_sync(tty, buf, len, &size)) {
777
0
  case 0:   /* yes */
778
0
    key = KEYC_UNKNOWN;
779
0
    goto complete_key;
780
0
  case -1:  /* no, or not valid */
781
0
    break;
782
0
  case 1:   /* partial */
783
0
    goto partial_key;
784
0
  }
785
786
  /* Is this a primary device attributes response? */
787
0
  switch (tty_keys_device_attributes(tty, buf, len, &size)) {
788
0
  case 0:   /* yes */
789
0
    key = KEYC_UNKNOWN;
790
0
    goto complete_key;
791
0
  case -1:  /* no, or not valid */
792
0
    break;
793
0
  case 1:   /* partial */
794
0
    goto partial_key;
795
0
  }
796
797
  /* Is this a secondary device attributes response? */
798
0
  switch (tty_keys_device_attributes2(tty, buf, len, &size)) {
799
0
  case 0:   /* yes */
800
0
    key = KEYC_UNKNOWN;
801
0
    goto complete_key;
802
0
  case -1:  /* no, or not valid */
803
0
    break;
804
0
  case 1:   /* partial */
805
0
    goto partial_key;
806
0
  }
807
808
  /* Is this an extended device attributes response? */
809
0
  switch (tty_keys_extended_device_attributes(tty, buf, len, &size)) {
810
0
  case 0:   /* yes */
811
0
    key = KEYC_UNKNOWN;
812
0
    goto complete_key;
813
0
  case -1:  /* no, or not valid */
814
0
    break;
815
0
  case 1:   /* partial */
816
0
    goto partial_key;
817
0
  }
818
819
  /* Is this a colours response? */
820
0
  switch (tty_keys_colours(tty, buf, len, &size, &tty->fg, &tty->bg)) {
821
0
  case 0:   /* yes */
822
0
    key = KEYC_UNKNOWN;
823
0
    if (tty->bg != bg)
824
0
      server_client_update_theme_colours(c);
825
0
    session_theme_changed(c->session);
826
0
    goto complete_key;
827
0
  case -1:  /* no, or not valid */
828
0
    break;
829
0
  case 1:   /* partial */
830
0
    if (tty->bg != bg)
831
0
      server_client_update_theme_colours(c);
832
0
    session_theme_changed(c->session);
833
0
    goto partial_key;
834
0
  }
835
836
  /* Is this a palette response? */
837
0
  switch (tty_keys_palette(tty, buf, len, &size)) {
838
0
  case 0:   /* yes */
839
0
    key = KEYC_UNKNOWN;
840
0
    goto complete_key;
841
0
  case -1:  /* no, or not valid */
842
0
    break;
843
0
  case 1:   /* partial */
844
0
    goto partial_key;
845
0
  }
846
847
  /* Is this a mouse key press? */
848
0
  switch (tty_keys_mouse(tty, buf, len, &size, &m)) {
849
0
  case 0:   /* yes */
850
0
    key = KEYC_MOUSE;
851
0
    goto complete_key;
852
0
  case -1:  /* no, or not valid */
853
0
    break;
854
0
  case -2:  /* yes, but we don't care. */
855
0
    key = KEYC_MOUSE;
856
0
    goto discard_key;
857
0
  case 1:   /* partial */
858
0
    goto partial_key;
859
0
  }
860
861
  /* Is this an extended key press? */
862
0
  switch (tty_keys_extended_key(tty, buf, len, &size, &key)) {
863
0
  case 0:   /* yes */
864
0
    goto complete_key;
865
0
  case -1:  /* no, or not valid */
866
0
    break;
867
0
  case 1:   /* partial */
868
0
    goto partial_key;
869
0
  }
870
871
  /* Check for window size query */
872
0
  switch (tty_keys_winsz(tty, buf, len, &size)) {
873
0
  case 0:   /* yes */
874
0
    key = KEYC_UNKNOWN;
875
0
    goto complete_key;
876
0
  case -1:  /* no, or not valid */
877
0
    break;
878
0
  case 1:   /* partial */
879
0
    goto partial_key;
880
0
  }
881
882
0
first_key:
883
  /* Try to lookup complete key. */
884
0
  n = tty_keys_next1(tty, buf, len, &key, &size, expired);
885
0
  if (n == 0) /* found */
886
0
    goto complete_key;
887
0
  if (n == 1)
888
0
    goto partial_key;
889
890
  /*
891
   * If not a complete key, look for key with an escape prefix (meta
892
   * modifier).
893
   */
894
0
  if (*buf == '\033' && len > 1) {
895
    /* Look for a key without the escape. */
896
0
    n = tty_keys_next1(tty, buf + 1, len - 1, &key, &size, expired);
897
0
    if (n == 0) { /* found */
898
0
      if (key & KEYC_IMPLIED_META) {
899
        /*
900
         * We want the escape key as well as the xterm
901
         * key, because the xterm sequence implicitly
902
         * includes the escape (so if we see
903
         * \033\033[1;3D we know it is an Escape
904
         * followed by M-Left, not just M-Left).
905
         */
906
0
        key = '\033';
907
0
        size = 1;
908
0
        goto complete_key;
909
0
      }
910
0
      key |= KEYC_META;
911
0
      size++;
912
0
      goto complete_key;
913
0
    }
914
0
    if (n == 1) /* partial */
915
0
      goto partial_key;
916
0
  }
917
918
  /*
919
   * At this point, we know the key is not partial (with or without
920
   * escape). So pass it through even if the timer has not expired.
921
   */
922
0
  if (*buf == '\033' && len >= 2) {
923
0
    key = (u_char)buf[1] | KEYC_META;
924
0
    size = 2;
925
0
  } else {
926
0
    key = (u_char)buf[0];
927
0
    size = 1;
928
0
  }
929
930
  /* C-Space is special. */
931
0
  if ((key & KEYC_MASK_KEY) == C0_NUL)
932
0
    key = ' ' | KEYC_CTRL | (key & KEYC_META);
933
934
  /*
935
   * Check for backspace key using termios VERASE - the terminfo
936
   * kbs entry is extremely unreliable, so cannot be safely
937
   * used. termios should have a better idea.
938
   */
939
0
  bspace = tty->tio.c_cc[VERASE];
940
0
  if (bspace != _POSIX_VDISABLE) {
941
0
    if (key == bspace) {
942
0
      log_debug("%s: key %#llx is BSpace", c->name, key);
943
0
      key = KEYC_BSPACE;
944
0
    }
945
0
    if (key == (bspace|KEYC_META)) {
946
0
      log_debug("%s: key %#llx is M-BSpace", c->name, key);
947
0
      key = KEYC_BSPACE|KEYC_META;
948
0
    }
949
0
  }
950
951
  /*
952
   * Fix up all C0 control codes that don't have a dedicated key into
953
   * corresponding Ctrl keys. Convert characters in the A-Z range into
954
   * lowercase, so ^A becomes a|CTRL.
955
   */
956
0
  onlykey = key & KEYC_MASK_KEY;
957
0
  if (onlykey < 0x20 &&
958
0
      onlykey != C0_HT &&
959
0
      onlykey != C0_CR &&
960
0
      onlykey != C0_ESC) {
961
0
    onlykey |= 0x40;
962
0
    if (onlykey >= 'A' && onlykey <= 'Z')
963
0
      onlykey |= 0x20;
964
0
    key = onlykey | KEYC_CTRL | (key & KEYC_META);
965
0
  }
966
967
0
  goto complete_key;
968
969
0
partial_key:
970
0
  log_debug("%s: partial key %.*s", c->name, (int)len, buf);
971
972
  /* If timer is going, check for expiration. */
973
0
  if (tty->flags & TTY_TIMER) {
974
0
    if (evtimer_initialized(&tty->key_timer) &&
975
0
        !evtimer_pending(&tty->key_timer, NULL)) {
976
0
      expired = 1;
977
0
      goto first_key;
978
0
    }
979
0
    return (0);
980
0
  }
981
982
  /* Get the time period. */
983
0
  delay = options_get_number(global_options, "escape-time");
984
0
  if (delay == 0)
985
0
    delay = 1;
986
0
  if ((tty->flags & TTY_BRACKETPASTE) &&
987
0
      tty_keys_partial_paste_end(buf, len)) {
988
0
    log_debug("%s: increasing delay (partial paste end)", c->name);
989
0
    if (delay < 500)
990
0
      delay = 500;
991
0
  }
992
0
  if (tty->flags & (TTY_WAITFG|TTY_WAITBG) ||
993
0
      tty->flags & (TTY_OSC52QUERY|TTY_WINSIZEQUERY) ||
994
0
      (tty->flags & TTY_ALL_REQUEST_FLAGS) != TTY_ALL_REQUEST_FLAGS ||
995
0
      !TAILQ_EMPTY(&c->input_requests)) {
996
0
    log_debug("%s: increasing delay (active query)", c->name);
997
0
    if (delay < 500)
998
0
      delay = 500;
999
0
  }
1000
0
  tv.tv_sec = delay / 1000;
1001
0
  tv.tv_usec = (delay % 1000) * 1000L;
1002
1003
  /* Start the timer. */
1004
0
  if (event_initialized(&tty->key_timer))
1005
0
    evtimer_del(&tty->key_timer);
1006
0
  evtimer_set(&tty->key_timer, tty_keys_callback, tty);
1007
0
  evtimer_add(&tty->key_timer, &tv);
1008
1009
0
  tty->flags |= TTY_TIMER;
1010
0
  return (0);
1011
1012
0
complete_key:
1013
0
  log_debug("%s: complete key %.*s %#llx", c->name, (int)size, buf, key);
1014
1015
  /* Remove key timer. */
1016
0
  if (event_initialized(&tty->key_timer))
1017
0
    evtimer_del(&tty->key_timer);
1018
0
  tty->flags &= ~TTY_TIMER;
1019
1020
  /* Check for focus events. */
1021
0
  if (key == KEYC_FOCUS_OUT) {
1022
0
    c->flags &= ~CLIENT_FOCUSED;
1023
0
    window_update_focus(c->session->curw->window);
1024
0
    events_fire_client("client-focus-out", c);
1025
0
  } else if (key == KEYC_FOCUS_IN) {
1026
0
    c->flags |= CLIENT_FOCUSED;
1027
0
    events_fire_client("client-focus-in", c);
1028
0
    window_update_focus(c->session->curw->window);
1029
0
  }
1030
1031
  /* Fire the key. */
1032
0
  if (key != KEYC_UNKNOWN) {
1033
0
    event = xcalloc(1, sizeof *event);
1034
0
    event->key = key;
1035
0
    memcpy(&event->m, &m, sizeof event->m);
1036
1037
0
    event->buf = xmalloc(size);
1038
0
    event->len = size;
1039
0
    memcpy (event->buf, buf, event->len);
1040
1041
0
    if (!server_client_handle_key(c, event)) {
1042
0
      free(event->buf);
1043
0
      free(event);
1044
0
    }
1045
0
  }
1046
1047
  /* Remove data from buffer. */
1048
0
  evbuffer_drain(tty->in, size);
1049
1050
0
  return (1);
1051
1052
0
discard_key:
1053
0
  log_debug("%s: discard key %.*s %#llx", c->name, (int)size, buf, key);
1054
1055
  /* Remove data from buffer. */
1056
0
  evbuffer_drain(tty->in, size);
1057
1058
0
  return (1);
1059
0
}
1060
1061
/* Key timer callback. */
1062
static void
1063
tty_keys_callback(__unused int fd, __unused short events, void *data)
1064
0
{
1065
0
  struct tty  *tty = data;
1066
1067
0
  if (tty->flags & TTY_TIMER) {
1068
0
    while (tty_keys_next(tty))
1069
0
      ;
1070
0
  }
1071
0
}
1072
1073
/*
1074
 * Handle extended key input. This has two forms: \033[27;m;k~ and \033[k;mu,
1075
 * where k is key as a number and m is a modifier. Returns 0 for success, -1
1076
 * for failure, 1 for partial;
1077
 */
1078
static int
1079
tty_keys_extended_key(struct tty *tty, const char *buf, size_t len,
1080
    size_t *size, key_code *key)
1081
0
{
1082
0
  struct client *c = tty->client;
1083
0
  size_t     end;
1084
0
  u_int    number, modifiers;
1085
0
  char     tmp[64];
1086
0
  cc_t     bspace;
1087
0
  key_code   nkey, onlykey;
1088
0
  struct utf8_data ud;
1089
0
  utf8_char  uc;
1090
1091
0
  *size = 0;
1092
1093
  /* First two bytes are always \033[. */
1094
0
  if (buf[0] != '\033')
1095
0
    return (-1);
1096
0
  if (len == 1)
1097
0
    return (1);
1098
0
  if (buf[1] != '[')
1099
0
    return (-1);
1100
0
  if (len == 2)
1101
0
    return (1);
1102
1103
  /*
1104
   * Look for a terminator. Stop at either '~' or anything that isn't a
1105
   * number or ';'.
1106
   */
1107
0
  for (end = 2; end < len && end != sizeof tmp; end++) {
1108
0
    if (buf[end] == '~')
1109
0
      break;
1110
0
    if (!isdigit((u_char)buf[end]) && buf[end] != ';')
1111
0
      break;
1112
0
  }
1113
0
  if (end == len)
1114
0
    return (1);
1115
0
  if (end == sizeof tmp || (buf[end] != '~' && buf[end] != 'u'))
1116
0
    return (-1);
1117
1118
  /* Copy to the buffer. */
1119
0
  memcpy(tmp, buf + 2, end - 2);
1120
0
  tmp[end - 2] = '\0';
1121
1122
  /* Try to parse either form of key. */
1123
0
  if (buf[end] == '~') {
1124
0
    if (sscanf(tmp, "27;%u;%u", &modifiers, &number) != 2)
1125
0
      return (-1);
1126
0
  } else {
1127
0
    if (sscanf(tmp ,"%u;%u", &number, &modifiers) != 2)
1128
0
      return (-1);
1129
0
  }
1130
0
  *size = end + 1;
1131
1132
  /* Store the key. */
1133
0
  bspace = tty->tio.c_cc[VERASE];
1134
0
  if (bspace != _POSIX_VDISABLE && number == bspace)
1135
0
    nkey = KEYC_BSPACE;
1136
0
  else
1137
0
    nkey = number;
1138
1139
  /* Convert UTF-32 codepoint into internal representation. */
1140
0
  if (nkey != KEYC_BSPACE && nkey & ~0x7f) {
1141
0
    if (utf8_fromwc(nkey, &ud) == UTF8_DONE &&
1142
0
        utf8_from_data(&ud, &uc) == UTF8_DONE)
1143
0
      nkey = uc;
1144
0
    else
1145
0
      return (-1);
1146
0
  }
1147
1148
  /* Update the modifiers. */
1149
0
  if (modifiers > 0) {
1150
0
    modifiers--;
1151
0
    if (modifiers & 1)
1152
0
      nkey |= KEYC_SHIFT;
1153
0
    if (modifiers & 2)
1154
0
      nkey |= (KEYC_META|KEYC_IMPLIED_META); /* Alt */
1155
0
    if (modifiers & 4)
1156
0
      nkey |= KEYC_CTRL;
1157
0
    if (modifiers & 8)
1158
0
      nkey |= (KEYC_META|KEYC_IMPLIED_META); /* Meta */
1159
0
  }
1160
1161
  /* Convert S-Tab into Backtab. */
1162
0
  if ((nkey & KEYC_MASK_KEY) == '\011' && (nkey & KEYC_SHIFT))
1163
0
    nkey = KEYC_BTAB | (nkey & ~KEYC_MASK_KEY & ~KEYC_SHIFT);
1164
1165
  /*
1166
   * Deal with the Shift modifier when present alone. The problem is that
1167
   * in mode 2 some terminals would report shifted keys, like S-a, as
1168
   * just A, and some as S-A.
1169
   *
1170
   * Because we need an unambiguous internal representation, and because
1171
   * restoring the Shift modifier when it's missing would require knowing
1172
   * the keyboard layout, and because S-A would cause a lot of issues
1173
   * downstream, we choose to lose the Shift for all printable
1174
   * characters.
1175
   *
1176
   * That still leaves some ambiguity, such as C-S-A vs. C-A, but that's
1177
   * OK, and applications can handle that.
1178
   */
1179
0
  onlykey = nkey & KEYC_MASK_KEY;
1180
0
  if (((onlykey > 0x20 && onlykey < 0x7f) ||
1181
0
      KEYC_IS_UNICODE(nkey)) &&
1182
0
      (nkey & KEYC_MASK_MODIFIERS) == KEYC_SHIFT)
1183
0
    nkey &= ~KEYC_SHIFT;
1184
1185
0
  if (log_get_level() != 0) {
1186
0
    log_debug("%s: extended key %.*s is %llx (%s)", c->name,
1187
0
        (int)*size, buf, nkey, key_string_lookup_key(nkey, 1));
1188
0
  }
1189
1190
0
  *key = nkey;
1191
0
  return (0);
1192
0
}
1193
1194
/*
1195
 * Handle mouse key input. Returns 0 for success, -1 for failure, 1 for partial
1196
 * (probably a mouse sequence but need more data), -2 if an invalid mouse
1197
 * sequence.
1198
 */
1199
static int
1200
tty_keys_mouse(struct tty *tty, const char *buf, size_t len, size_t *size,
1201
    struct mouse_event *m)
1202
0
{
1203
0
  struct client *c = tty->client;
1204
0
  u_int    i, x, y, b, sgr_b;
1205
0
  u_char     sgr_type, ch;
1206
1207
  /*
1208
   * Standard mouse sequences are \033[M followed by three characters
1209
   * indicating button, X and Y, all based at 32 with 1,1 top-left.
1210
   *
1211
   * UTF-8 mouse sequences are similar but the three are expressed as
1212
   * UTF-8 characters.
1213
   *
1214
   * SGR extended mouse sequences are \033[< followed by three numbers in
1215
   * decimal and separated by semicolons indicating button, X and Y. A
1216
   * trailing 'M' is click or scroll and trailing 'm' release. All are
1217
   * based at 0 with 1,1 top-left.
1218
   */
1219
1220
0
  *size = 0;
1221
0
  x = y = b = sgr_b = 0;
1222
0
  sgr_type = ' ';
1223
1224
  /* First two bytes are always \033[. */
1225
0
  if (buf[0] != '\033')
1226
0
    return (-1);
1227
0
  if (len == 1)
1228
0
    return (1);
1229
0
  if (buf[1] != '[')
1230
0
    return (-1);
1231
0
  if (len == 2)
1232
0
    return (1);
1233
1234
  /*
1235
   * Third byte is M in old standard (and UTF-8 extension which we do not
1236
   * support), < in SGR extension.
1237
   */
1238
0
  if (buf[2] == 'M') {
1239
    /* Read the three inputs. */
1240
0
    *size = 3;
1241
0
    for (i = 0; i < 3; i++) {
1242
0
      if (len <= *size)
1243
0
        return (1);
1244
0
      ch = (u_char)buf[(*size)++];
1245
0
      if (i == 0)
1246
0
        b = ch;
1247
0
      else if (i == 1)
1248
0
        x = ch;
1249
0
      else
1250
0
        y = ch;
1251
0
    }
1252
0
    log_debug("%s: mouse input: %.*s", c->name, (int)*size, buf);
1253
1254
    /* Check and return the mouse input. */
1255
0
    if (b < MOUSE_PARAM_BTN_OFF ||
1256
0
        x < MOUSE_PARAM_POS_OFF ||
1257
0
        y < MOUSE_PARAM_POS_OFF)
1258
0
      return (-2);
1259
0
    b -= MOUSE_PARAM_BTN_OFF;
1260
0
    x -= MOUSE_PARAM_POS_OFF;
1261
0
    y -= MOUSE_PARAM_POS_OFF;
1262
0
  } else if (buf[2] == '<') {
1263
    /* Read the three inputs. */
1264
0
    *size = 3;
1265
0
    while (1) {
1266
0
      if (len <= *size)
1267
0
        return (1);
1268
0
      ch = (u_char)buf[(*size)++];
1269
0
      if (ch == ';')
1270
0
        break;
1271
0
      if (ch < '0' || ch > '9')
1272
0
        return (-1);
1273
0
      sgr_b = 10 * sgr_b + (ch - '0');
1274
0
    }
1275
0
    while (1) {
1276
0
      if (len <= *size)
1277
0
        return (1);
1278
0
      ch = (u_char)buf[(*size)++];
1279
0
      if (ch == ';')
1280
0
        break;
1281
0
      if (ch < '0' || ch > '9')
1282
0
        return (-1);
1283
0
      x = 10 * x + (ch - '0');
1284
0
    }
1285
0
    while (1) {
1286
0
      if (len <= *size)
1287
0
        return (1);
1288
0
      ch = (u_char)buf[(*size)++];
1289
0
      if (ch == 'M' || ch == 'm')
1290
0
        break;
1291
0
      if (ch < '0' || ch > '9')
1292
0
        return (-1);
1293
0
      y = 10 * y + (ch - '0');
1294
0
    }
1295
0
    log_debug("%s: mouse input (SGR): %.*s", c->name, (int)*size,
1296
0
        buf);
1297
1298
    /* Check and return the mouse input. */
1299
0
    if (x < 1 || y < 1)
1300
0
      return (-2);
1301
0
    x--;
1302
0
    y--;
1303
0
    b = sgr_b;
1304
1305
    /* Type is M for press, m for release. */
1306
0
    sgr_type = ch;
1307
0
    if (sgr_type == 'm')
1308
0
      b = 3;
1309
1310
    /*
1311
     * Some terminals (like PuTTY 0.63) mistakenly send
1312
     * button-release events for scroll-wheel button-press event.
1313
     * Discard it before it reaches any program running inside
1314
     * tmux.
1315
     */
1316
0
    if (sgr_type == 'm' && MOUSE_WHEEL(sgr_b))
1317
0
        return (-2);
1318
0
  } else
1319
0
    return (-1);
1320
1321
  /* Fill mouse event. */
1322
0
  m->lx = tty->mouse_last_x;
1323
0
  m->x = x;
1324
0
  m->ly = tty->mouse_last_y;
1325
0
  m->y = y;
1326
0
  m->lb = tty->mouse_last_b;
1327
0
  m->b = b;
1328
0
  m->sgr_type = sgr_type;
1329
0
  m->sgr_b = sgr_b;
1330
1331
  /* Update last mouse state. */
1332
0
  tty->mouse_last_x = x;
1333
0
  tty->mouse_last_y = y;
1334
0
  tty->mouse_last_b = b;
1335
1336
0
  return (0);
1337
0
}
1338
1339
/*
1340
 * Handle OSC 52 clipboard input. Returns 0 for success, -1 for failure, 1 for
1341
 * partial.
1342
 */
1343
static int
1344
tty_keys_clipboard(struct tty *tty, const char *buf, size_t len, size_t *size)
1345
0
{
1346
0
  struct client       *c = tty->client;
1347
0
  size_t           end, terminator = 0, needed;
1348
0
  char          *copy, *out, clip = 0;
1349
0
  int          outlen;
1350
0
  struct input_request_clipboard_data  cd;
1351
1352
0
  *size = 0;
1353
1354
  /* First five bytes are always \033]52;. */
1355
0
  if (buf[0] != '\033')
1356
0
    return (-1);
1357
0
  if (len == 1)
1358
0
    return (1);
1359
0
  if (buf[1] != ']')
1360
0
    return (-1);
1361
0
  if (len == 2)
1362
0
    return (1);
1363
0
  if (buf[2] != '5')
1364
0
    return (-1);
1365
0
  if (len == 3)
1366
0
    return (1);
1367
0
  if (buf[3] != '2')
1368
0
    return (-1);
1369
0
  if (len == 4)
1370
0
    return (1);
1371
0
  if (buf[4] != ';')
1372
0
    return (-1);
1373
0
  if (len == 5)
1374
0
    return (1);
1375
1376
  /* Find the terminator if any. */
1377
0
  for (end = 5; end < len; end++) {
1378
0
    if (buf[end] == '\007') {
1379
0
      terminator = 1;
1380
0
      break;
1381
0
    }
1382
0
    if (end > 5 && buf[end - 1] == '\033' && buf[end] == '\\') {
1383
0
      terminator = 2;
1384
0
      break;
1385
0
    }
1386
0
  }
1387
0
  if (end == len)
1388
0
    return (1);
1389
0
  *size = end + 1;
1390
1391
  /* Skip the initial part. */
1392
0
  buf += 5;
1393
0
  end -= 5;
1394
1395
  /* Adjust end so that it points to the start of the terminator. */
1396
0
  end -= terminator - 1;
1397
1398
  /*
1399
   * Save which clipboard was used from the second argument. If more than
1400
   * one is specified (should not happen), ignore the argument.
1401
   */
1402
0
  if (end >= 2 && buf[0] != ';' && buf[1] == ';')
1403
0
    clip = buf[0];
1404
1405
  /* Skip the second argument. */
1406
0
  while (end != 0 && *buf != ';') {
1407
0
    buf++;
1408
0
    end--;
1409
0
  }
1410
0
  if (end == 0 || end == 1)
1411
0
    return (0);
1412
0
  buf++;
1413
0
  end--;
1414
1415
  /* It has to be a string so copy it. */
1416
0
  copy = xmalloc(end + 1);
1417
0
  memcpy(copy, buf, end);
1418
0
  copy[end] = '\0';
1419
1420
  /* Convert from base64. */
1421
0
  needed = ((end + 3) / 4) * 3;
1422
0
  if (needed == 0) {
1423
0
    free(copy);
1424
0
    return (0);
1425
0
  }
1426
0
  out = xmalloc(needed);
1427
0
  if ((outlen = b64_pton(copy, out, needed)) == -1) {
1428
0
    free(out);
1429
0
    free(copy);
1430
0
    return (0);
1431
0
  }
1432
0
  free(copy);
1433
0
  log_debug("%s: %.*s", __func__, outlen, out);
1434
1435
  /* Set reply if any. */
1436
0
  cd.buf = out;
1437
0
  cd.len = outlen;
1438
0
  cd.clip = clip;
1439
0
  input_request_reply(c, INPUT_REQUEST_CLIPBOARD, &cd);
1440
1441
  /* Create a buffer if requested. */
1442
0
  if (tty->flags & TTY_OSC52QUERY) {
1443
0
    paste_add(NULL, out, outlen);
1444
0
    out = NULL;
1445
0
    evtimer_del(&tty->clipboard_timer);
1446
0
    tty->flags &= ~TTY_OSC52QUERY;
1447
0
  }
1448
1449
0
  free(out);
1450
0
  return (0);
1451
0
}
1452
1453
/*
1454
 * Handle primary device attributes input. Returns 0 for success, -1 for
1455
 * failure, 1 for partial.
1456
 */
1457
static int
1458
tty_keys_device_attributes(struct tty *tty, const char *buf, size_t len,
1459
    size_t *size)
1460
0
{
1461
0
  struct client *c = tty->client;
1462
0
  u_int    i, n = 0;
1463
0
  char     tmp[128], *endptr, p[32] = { 0 }, *cp, *next;
1464
1465
0
  *size = 0;
1466
0
  if (tty->flags & TTY_HAVEDA)
1467
0
    return (-1);
1468
1469
  /* First three bytes are always \033[?. */
1470
0
  if (buf[0] != '\033')
1471
0
    return (-1);
1472
0
  if (len == 1)
1473
0
    return (1);
1474
0
  if (buf[1] != '[')
1475
0
    return (-1);
1476
0
  if (len == 2)
1477
0
    return (1);
1478
0
  if (buf[2] != '?')
1479
0
    return (-1);
1480
0
  if (len == 3)
1481
0
    return (1);
1482
1483
  /* Copy the rest up to a c. */
1484
0
  for (i = 0; i < sizeof tmp; i++) {
1485
0
    if (3 + i == len)
1486
0
      return (1);
1487
0
    if (buf[3 + i] >= 'a' && buf[3 + i] <= 'z')
1488
0
      break;
1489
0
    tmp[i] = buf[3 + i];
1490
0
  }
1491
0
  if (i == sizeof tmp)
1492
0
    return (-1);
1493
0
  if (buf[3 + i] != 'c')
1494
0
    return (-1);
1495
0
  tmp[i] = '\0';
1496
0
  *size = 4 + i;
1497
1498
  /* Convert all arguments to numbers. */
1499
0
  cp = tmp;
1500
0
  while ((next = strsep(&cp, ";")) != NULL) {
1501
0
    p[n] = strtoul(next, &endptr, 10);
1502
0
    if (*endptr != '\0')
1503
0
      p[n] = 0;
1504
0
    if (++n == nitems(p))
1505
0
      break;
1506
0
  }
1507
1508
  /* Add terminal features. */
1509
0
  switch (p[0]) {
1510
0
  case 61: /* level 1 */
1511
0
  case 62: /* level 2 */
1512
0
  case 63: /* level 3 */
1513
0
  case 64: /* level 4 */
1514
0
  case 65: /* level 5 */
1515
0
    for (i = 1; i < n; i++) {
1516
0
      log_debug("%s: DA feature: %d", c->name, p[i]);
1517
0
      if (p[i] == 4)
1518
0
        tty_parse_client_features(c, "sixel", ",");
1519
0
      if (p[i] == 21)
1520
0
        tty_parse_client_features(c, "margins", ",");
1521
0
      if (p[i] == 28)
1522
0
        tty_parse_client_features(c, "rectfill", ",");
1523
0
      if (p[i] == 52)
1524
0
        tty_parse_client_features(c, "clipboard", ",");
1525
0
    }
1526
0
    break;
1527
0
  }
1528
0
  log_debug("%s: received primary DA %.*s", c->name, (int)*size, buf);
1529
1530
0
  tty_update_features(tty);
1531
0
  tty->flags |= TTY_HAVEDA;
1532
1533
0
  return (0);
1534
0
}
1535
1536
/*
1537
 * Handle a synchronized update mode response. Returns 0 for success, -1 for
1538
 * failure, 1 for partial.
1539
 */
1540
static int
1541
tty_keys_sync(struct tty *tty, const char *buf, size_t len, size_t *size)
1542
0
{
1543
0
  struct client   *c = tty->client;
1544
0
  static const char  prefix[] = "\033[?2026;";
1545
0
  size_t       i;
1546
0
  int      status;
1547
1548
0
  *size = 0;
1549
0
  if (tty->flags & TTY_HAVESYNC)
1550
0
    return (-1);
1551
1552
  /* The response is always \033[?2026;Ps$y. */
1553
0
  for (i = 0; i < (sizeof prefix) - 1; i++) {
1554
0
    if (i == len)
1555
0
      return (1);
1556
0
    if (buf[i] != prefix[i])
1557
0
      return (-1);
1558
0
  }
1559
0
  if (i == len)
1560
0
    return (1);
1561
0
  if (buf[i] < '0' || buf[i] > '4')
1562
0
    return (-1);
1563
0
  status = buf[i++] - '0';
1564
0
  if (i == len)
1565
0
    return (1);
1566
0
  if (buf[i++] != '$')
1567
0
    return (-1);
1568
0
  if (i == len)
1569
0
    return (1);
1570
0
  if (buf[i++] != 'y')
1571
0
    return (-1);
1572
0
  *size = i;
1573
1574
0
  if (status == 1 || status == 2 || status == 3) {
1575
0
    tty_parse_client_features(c, "sync", ",");
1576
0
    tty_update_features(tty);
1577
0
  }
1578
0
  log_debug("%s: received DECRPM %.*s", c->name, (int)*size, buf);
1579
0
  tty->flags |= TTY_HAVESYNC;
1580
1581
0
  return (0);
1582
0
}
1583
1584
/*
1585
 * Handle secondary device attributes input. Returns 0 for success, -1 for
1586
 * failure, 1 for partial.
1587
 */
1588
static int
1589
tty_keys_device_attributes2(struct tty *tty, const char *buf, size_t len,
1590
    size_t *size)
1591
0
{
1592
0
  struct client *c = tty->client;
1593
0
  u_int    i, n = 0;
1594
0
  char     tmp[128], *endptr, p[32] = { 0 }, *cp, *next;
1595
1596
0
  *size = 0;
1597
0
  if (tty->flags & TTY_HAVEDA2)
1598
0
    return (-1);
1599
1600
  /* First three bytes are always \033[>. */
1601
0
  if (buf[0] != '\033')
1602
0
    return (-1);
1603
0
  if (len == 1)
1604
0
    return (1);
1605
0
  if (buf[1] != '[')
1606
0
    return (-1);
1607
0
  if (len == 2)
1608
0
    return (1);
1609
0
  if (buf[2] != '>')
1610
0
    return (-1);
1611
0
  if (len == 3)
1612
0
    return (1);
1613
1614
  /* Copy the rest up to a c. */
1615
0
  for (i = 0; i < sizeof tmp; i++) {
1616
0
    if (3 + i == len)
1617
0
      return (1);
1618
0
    if (buf[3 + i] >= 'a' && buf[3 + i] <= 'z')
1619
0
      break;
1620
0
    tmp[i] = buf[3 + i];
1621
0
  }
1622
0
  if (i == sizeof tmp)
1623
0
    return (-1);
1624
0
  if (buf[3 + i] != 'c')
1625
0
    return (-1);
1626
0
  tmp[i] = '\0';
1627
0
  *size = 4 + i;
1628
1629
  /* Convert all arguments to numbers. */
1630
0
  cp = tmp;
1631
0
  while ((next = strsep(&cp, ";")) != NULL) {
1632
0
    p[n] = strtoul(next, &endptr, 10);
1633
0
    if (*endptr != '\0')
1634
0
      p[n] = 0;
1635
0
    if (++n == nitems(p))
1636
0
      break;
1637
0
  }
1638
1639
  /*
1640
   * Add terminal features. We add DECSLRM and DECFRA for some
1641
   * identification codes here, notably 64 will catch VT520, even though
1642
   * we can't use level 5 from DA because of VTE.
1643
   */
1644
0
  switch (p[0]) {
1645
0
  case 'M': /* mintty */
1646
0
    tty_default_features(c, "mintty", 0);
1647
0
    break;
1648
0
  case 'T': /* tmux */
1649
0
    tty_default_features(c, "tmux", 0);
1650
0
    break;
1651
0
  case 'U': /* rxvt-unicode */
1652
0
    tty_default_features(c, "rxvt-unicode", 0);
1653
0
    break;
1654
0
  }
1655
0
  log_debug("%s: received secondary DA %.*s", c->name, (int)*size, buf);
1656
1657
0
  tty_update_features(tty);
1658
0
  tty->flags |= TTY_HAVEDA2;
1659
1660
0
  return (0);
1661
0
}
1662
1663
/*
1664
 * Handle extended device attributes input. Returns 0 for success, -1 for
1665
 * failure, 1 for partial.
1666
 */
1667
static int
1668
tty_keys_extended_device_attributes(struct tty *tty, const char *buf,
1669
    size_t len, size_t *size)
1670
0
{
1671
0
  struct client *c = tty->client;
1672
0
  u_int    i;
1673
0
  char     tmp[128];
1674
1675
0
  *size = 0;
1676
0
  if (tty->flags & TTY_HAVEXDA)
1677
0
    return (-1);
1678
1679
  /* First four bytes are always \033P>|. */
1680
0
  if (buf[0] != '\033')
1681
0
    return (-1);
1682
0
  if (len == 1)
1683
0
    return (1);
1684
0
  if (buf[1] != 'P')
1685
0
    return (-1);
1686
0
  if (len == 2)
1687
0
    return (1);
1688
0
  if (buf[2] != '>')
1689
0
    return (-1);
1690
0
  if (len == 3)
1691
0
    return (1);
1692
0
  if (buf[3] != '|')
1693
0
    return (-1);
1694
0
  if (len == 4)
1695
0
    return (1);
1696
1697
  /* Copy the rest up to \033\. */
1698
0
  for (i = 0; i < (sizeof tmp) - 1; i++) {
1699
0
    if (4 + i == len)
1700
0
      return (1);
1701
0
    if (buf[4 + i - 1] == '\033' && buf[4 + i] == '\\')
1702
0
      break;
1703
0
    tmp[i] = buf[4 + i];
1704
0
  }
1705
0
  if (i == (sizeof tmp) - 1)
1706
0
    return (-1);
1707
0
  *size = 5 + i;
1708
0
  if (i == 0)
1709
0
    return (0);
1710
0
  tmp[i - 1] = '\0';
1711
1712
  /* Add terminal features. */
1713
0
  if (strncmp(tmp, "iTerm2 ", 7) == 0)
1714
0
    tty_default_features(c, "iTerm2", 0);
1715
0
  else if (strncmp(tmp, "tmux ", 5) == 0)
1716
0
    tty_default_features(c, "tmux", 0);
1717
0
  else if (strncmp(tmp, "XTerm(", 6) == 0)
1718
0
    tty_default_features(c, "XTerm", 0);
1719
0
  else if (strncmp(tmp, "mintty ", 7) == 0)
1720
0
    tty_default_features(c, "mintty", 0);
1721
0
  else if (strncmp(tmp, "foot(", 5) == 0)
1722
0
    tty_default_features(c, "foot", 0);
1723
0
  else if (strncmp(tmp, "WezTerm ", 7) == 0)
1724
0
    tty_default_features(c, "WezTerm", 0);
1725
0
  else if (strncmp(tmp, "ghostty ", 8) == 0)
1726
0
    tty_default_features(c, "ghostty", 0);
1727
0
  else if (strncmp(tmp, "Rio ", 4) == 0)
1728
0
    tty_default_features(c, "Rio", 0);
1729
0
  log_debug("%s: received extended DA %.*s", c->name, (int)*size, buf);
1730
1731
0
  free(c->term_type);
1732
0
  c->term_type = xstrdup(tmp);
1733
1734
0
  tty_update_features(tty);
1735
0
  tty->flags |= TTY_HAVEXDA;
1736
1737
0
  return (0);
1738
0
}
1739
1740
/*
1741
 * Handle foreground or background input. Returns 0 for success, -1 for
1742
 * failure, 1 for partial.
1743
 */
1744
int
1745
tty_keys_colours(struct tty *tty, const char *buf, size_t len, size_t *size,
1746
    int *fg, int *bg)
1747
0
{
1748
0
  struct client *c = tty->client;
1749
0
  u_int    i;
1750
0
  char     tmp[128];
1751
0
  int    n;
1752
1753
0
  *size = 0;
1754
1755
  /* First four bytes are always \033]1 and 0 or 1 and ;. */
1756
0
  if (buf[0] != '\033')
1757
0
    return (-1);
1758
0
  if (len == 1)
1759
0
    return (1);
1760
0
  if (buf[1] != ']')
1761
0
    return (-1);
1762
0
  if (len == 2)
1763
0
    return (1);
1764
0
  if (buf[2] != '1')
1765
0
    return (-1);
1766
0
  if (len == 3)
1767
0
    return (1);
1768
0
  if (buf[3] != '0' && buf[3] != '1')
1769
0
    return (-1);
1770
0
  if (len == 4)
1771
0
    return (1);
1772
0
  if (buf[4] != ';')
1773
0
    return (-1);
1774
0
  if (len == 5)
1775
0
    return (1);
1776
1777
  /* Copy the rest up to \033\ or \007. */
1778
0
  for (i = 0; i < (sizeof tmp) - 1; i++) {
1779
0
    if (5 + i == len)
1780
0
      return (1);
1781
0
    if (buf[5 + i - 1] == '\033' && buf[5 + i] == '\\')
1782
0
      break;
1783
0
    if (buf[5 + i] == '\007')
1784
0
      break;
1785
0
    tmp[i] = buf[5 + i];
1786
0
  }
1787
0
  if (i == (sizeof tmp) - 1)
1788
0
    return (-1);
1789
0
  *size = 6 + i;
1790
0
  if (i == 0)
1791
0
    return (0);
1792
0
  if (tmp[i - 1] == '\033')
1793
0
    tmp[i - 1] = '\0';
1794
0
  else
1795
0
    tmp[i] = '\0';
1796
1797
  /* Work out the colour. */
1798
0
  n = colour_parseX11(tmp);
1799
0
  if (n != -1 && buf[3] == '0') {
1800
0
    if (c != NULL)
1801
0
      log_debug("%s fg is %s", c->name, colour_tostring(n));
1802
0
    else
1803
0
      log_debug("fg is %s", colour_tostring(n));
1804
0
    *fg = n;
1805
0
    tty->flags &= ~TTY_WAITFG;
1806
0
  } else if (n != -1) {
1807
0
    if (c != NULL)
1808
0
      log_debug("%s bg is %s", c->name, colour_tostring(n));
1809
0
    else
1810
0
      log_debug("bg is %s", colour_tostring(n));
1811
0
    *bg = n;
1812
0
    tty->flags &= ~TTY_WAITBG;
1813
0
  }
1814
1815
0
  return (0);
1816
0
}
1817
1818
/* Handle OSC 4 palette colour responses. */
1819
static int
1820
tty_keys_palette(struct tty *tty, const char *buf, size_t len, size_t *size)
1821
0
{
1822
0
  struct client      *c = tty->client;
1823
0
  u_int         i;
1824
0
  char          tmp[128], *endptr;
1825
0
  int         idx;
1826
0
  struct input_request_palette_data pd;
1827
1828
0
  *size = 0;
1829
1830
  /* First three bytes are always \033]4. */
1831
0
  if (buf[0] != '\033')
1832
0
    return (-1);
1833
0
  if (len == 1)
1834
0
    return (1);
1835
0
  if (buf[1] != ']')
1836
0
    return (-1);
1837
0
  if (len == 2)
1838
0
    return (1);
1839
0
  if (buf[2] != '4')
1840
0
    return (-1);
1841
0
  if (len == 3)
1842
0
    return (1);
1843
0
  if (buf[3] != ';')
1844
0
    return (-1);
1845
0
  if (len == 4)
1846
0
    return (1);
1847
1848
  /* Copy the rest up to \033\ or \007. */
1849
0
  for (i = 0; i < (sizeof tmp) - 1; i++) {
1850
0
    if (4 + i == len)
1851
0
      return (1);
1852
0
    if (buf[4 + i - 1] == '\033' && buf[4 + i] == '\\')
1853
0
      break;
1854
0
    if (buf[4 + i] == '\007')
1855
0
      break;
1856
0
    tmp[i] = buf[4 + i];
1857
0
  }
1858
0
  if (i == (sizeof tmp) - 1)
1859
0
    return (-1);
1860
0
  *size = 5 + i;
1861
0
  if (i == 0)
1862
0
    return (0);
1863
0
  if (tmp[i - 1] == '\033')
1864
0
    tmp[i - 1] = '\0';
1865
0
  else
1866
0
    tmp[i] = '\0';
1867
1868
  /* Parse index. */
1869
0
  idx = strtol(tmp, &endptr, 10);
1870
0
  if (*endptr != ';')
1871
0
    return (-1);
1872
0
  if (idx < 0 || idx > 255)
1873
0
    return (-1);
1874
1875
  /* Work out the colour. */
1876
0
  pd.c = colour_parseX11(endptr + 1);
1877
0
  if (pd.c == -1)
1878
0
    return (0);
1879
0
  pd.idx = idx;
1880
0
  input_request_reply(c, INPUT_REQUEST_PALETTE, &pd);
1881
1882
0
  return (0);
1883
0
}