xref: /openbsd-src/usr.bin/tmux/input.c (revision 3374c67d44f9b75b98444cbf63020f777792342e)
1 /* $OpenBSD: input.c,v 1.213 2023/01/03 11:43:24 nicm Exp $ */
2 
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
8  * copyright notice and this permission notice appear in all copies.
9  *
10  * 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
13  * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
14  * WHATSOEVER RESULTING FROM LOSS OF MIND, USE, DATA OR PROFITS, WHETHER
15  * IN AN ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING
16  * OUT OF OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
17  */
18 
19 #include <sys/types.h>
20 
21 #include <netinet/in.h>
22 
23 #include <ctype.h>
24 #include <resolv.h>
25 #include <stdlib.h>
26 #include <string.h>
27 #include <time.h>
28 
29 #include "tmux.h"
30 
31 /*
32  * Based on the description by Paul Williams at:
33  *
34  * https://vt100.net/emu/dec_ansi_parser
35  *
36  * With the following changes:
37  *
38  * - 7-bit only.
39  *
40  * - Support for UTF-8.
41  *
42  * - OSC (but not APC) may be terminated by \007 as well as ST.
43  *
44  * - A state for APC similar to OSC. Some terminals appear to use this to set
45  *   the title.
46  *
47  * - A state for the screen \033k...\033\\ sequence to rename a window. This is
48  *   pretty stupid but not supporting it is more trouble than it is worth.
49  *
50  * - Special handling for ESC inside a DCS to allow arbitrary byte sequences to
51  *   be passed to the underlying terminals.
52  */
53 
54 /* Input parser cell. */
55 struct input_cell {
56 	struct grid_cell	cell;
57 	int			set;
58 	int			g0set;	/* 1 if ACS */
59 	int			g1set;	/* 1 if ACS */
60 };
61 
62 /* Input parser argument. */
63 struct input_param {
64 	enum {
65 		INPUT_MISSING,
66 		INPUT_NUMBER,
67 		INPUT_STRING
68 	}			type;
69 	union {
70 		int		num;
71 		char	       *str;
72 	};
73 };
74 
75 /* Input parser context. */
76 struct input_ctx {
77 	struct window_pane     *wp;
78 	struct bufferevent     *event;
79 	struct screen_write_ctx ctx;
80 	struct colour_palette  *palette;
81 
82 	struct input_cell	cell;
83 
84 	struct input_cell	old_cell;
85 	u_int			old_cx;
86 	u_int			old_cy;
87 	int			old_mode;
88 
89 	u_char			interm_buf[4];
90 	size_t			interm_len;
91 
92 	u_char			param_buf[64];
93 	size_t			param_len;
94 
95 #define INPUT_BUF_START 32
96 #define INPUT_BUF_LIMIT 1048576
97 	u_char		       *input_buf;
98 	size_t			input_len;
99 	size_t			input_space;
100 	enum {
101 		INPUT_END_ST,
102 		INPUT_END_BEL
103 	}			input_end;
104 
105 	struct input_param	param_list[24];
106 	u_int			param_list_len;
107 
108 	struct utf8_data	utf8data;
109 	int			utf8started;
110 
111 	int			ch;
112 	int			last;
113 
114 	int			flags;
115 #define INPUT_DISCARD 0x1
116 
117 	const struct input_state *state;
118 
119 	struct event		timer;
120 
121 	/*
122 	 * All input received since we were last in the ground state. Sent to
123 	 * control clients on connection.
124 	 */
125 	struct evbuffer		*since_ground;
126 };
127 
128 /* Helper functions. */
129 struct input_transition;
130 static int	input_split(struct input_ctx *);
131 static int	input_get(struct input_ctx *, u_int, int, int);
132 static void printflike(2, 3) input_reply(struct input_ctx *, const char *, ...);
133 static void	input_set_state(struct input_ctx *,
134 		    const struct input_transition *);
135 static void	input_reset_cell(struct input_ctx *);
136 
137 static void	input_osc_4(struct input_ctx *, const char *);
138 static void	input_osc_8(struct input_ctx *, const char *);
139 static void	input_osc_10(struct input_ctx *, const char *);
140 static void	input_osc_11(struct input_ctx *, const char *);
141 static void	input_osc_12(struct input_ctx *, const char *);
142 static void	input_osc_52(struct input_ctx *, const char *);
143 static void	input_osc_104(struct input_ctx *, const char *);
144 static void	input_osc_110(struct input_ctx *, const char *);
145 static void	input_osc_111(struct input_ctx *, const char *);
146 static void	input_osc_112(struct input_ctx *, const char *);
147 
148 /* Transition entry/exit handlers. */
149 static void	input_clear(struct input_ctx *);
150 static void	input_ground(struct input_ctx *);
151 static void	input_enter_dcs(struct input_ctx *);
152 static void	input_enter_osc(struct input_ctx *);
153 static void	input_exit_osc(struct input_ctx *);
154 static void	input_enter_apc(struct input_ctx *);
155 static void	input_exit_apc(struct input_ctx *);
156 static void	input_enter_rename(struct input_ctx *);
157 static void	input_exit_rename(struct input_ctx *);
158 
159 /* Input state handlers. */
160 static int	input_print(struct input_ctx *);
161 static int	input_intermediate(struct input_ctx *);
162 static int	input_parameter(struct input_ctx *);
163 static int	input_input(struct input_ctx *);
164 static int	input_c0_dispatch(struct input_ctx *);
165 static int	input_esc_dispatch(struct input_ctx *);
166 static int	input_csi_dispatch(struct input_ctx *);
167 static void	input_csi_dispatch_rm(struct input_ctx *);
168 static void	input_csi_dispatch_rm_private(struct input_ctx *);
169 static void	input_csi_dispatch_sm(struct input_ctx *);
170 static void	input_csi_dispatch_sm_private(struct input_ctx *);
171 static void	input_csi_dispatch_winops(struct input_ctx *);
172 static void	input_csi_dispatch_sgr_256(struct input_ctx *, int, u_int *);
173 static void	input_csi_dispatch_sgr_rgb(struct input_ctx *, int, u_int *);
174 static void	input_csi_dispatch_sgr(struct input_ctx *);
175 static int	input_dcs_dispatch(struct input_ctx *);
176 static int	input_top_bit_set(struct input_ctx *);
177 static int	input_end_bel(struct input_ctx *);
178 
179 /* Command table comparison function. */
180 static int	input_table_compare(const void *, const void *);
181 
182 /* Command table entry. */
183 struct input_table_entry {
184 	int		ch;
185 	const char     *interm;
186 	int		type;
187 };
188 
189 /* Escape commands. */
190 enum input_esc_type {
191 	INPUT_ESC_DECALN,
192 	INPUT_ESC_DECKPAM,
193 	INPUT_ESC_DECKPNM,
194 	INPUT_ESC_DECRC,
195 	INPUT_ESC_DECSC,
196 	INPUT_ESC_HTS,
197 	INPUT_ESC_IND,
198 	INPUT_ESC_NEL,
199 	INPUT_ESC_RI,
200 	INPUT_ESC_RIS,
201 	INPUT_ESC_SCSG0_OFF,
202 	INPUT_ESC_SCSG0_ON,
203 	INPUT_ESC_SCSG1_OFF,
204 	INPUT_ESC_SCSG1_ON,
205 	INPUT_ESC_ST,
206 };
207 
208 /* Escape command table. */
209 static const struct input_table_entry input_esc_table[] = {
210 	{ '0', "(", INPUT_ESC_SCSG0_ON },
211 	{ '0', ")", INPUT_ESC_SCSG1_ON },
212 	{ '7', "",  INPUT_ESC_DECSC },
213 	{ '8', "",  INPUT_ESC_DECRC },
214 	{ '8', "#", INPUT_ESC_DECALN },
215 	{ '=', "",  INPUT_ESC_DECKPAM },
216 	{ '>', "",  INPUT_ESC_DECKPNM },
217 	{ 'B', "(", INPUT_ESC_SCSG0_OFF },
218 	{ 'B', ")", INPUT_ESC_SCSG1_OFF },
219 	{ 'D', "",  INPUT_ESC_IND },
220 	{ 'E', "",  INPUT_ESC_NEL },
221 	{ 'H', "",  INPUT_ESC_HTS },
222 	{ 'M', "",  INPUT_ESC_RI },
223 	{ '\\', "", INPUT_ESC_ST },
224 	{ 'c', "",  INPUT_ESC_RIS },
225 };
226 
227 /* Control (CSI) commands. */
228 enum input_csi_type {
229 	INPUT_CSI_CBT,
230 	INPUT_CSI_CNL,
231 	INPUT_CSI_CPL,
232 	INPUT_CSI_CUB,
233 	INPUT_CSI_CUD,
234 	INPUT_CSI_CUF,
235 	INPUT_CSI_CUP,
236 	INPUT_CSI_CUU,
237 	INPUT_CSI_DA,
238 	INPUT_CSI_DA_TWO,
239 	INPUT_CSI_DCH,
240 	INPUT_CSI_DECSCUSR,
241 	INPUT_CSI_DECSTBM,
242 	INPUT_CSI_DL,
243 	INPUT_CSI_DSR,
244 	INPUT_CSI_ECH,
245 	INPUT_CSI_ED,
246 	INPUT_CSI_EL,
247 	INPUT_CSI_HPA,
248 	INPUT_CSI_ICH,
249 	INPUT_CSI_IL,
250 	INPUT_CSI_MODOFF,
251 	INPUT_CSI_MODSET,
252 	INPUT_CSI_RCP,
253 	INPUT_CSI_REP,
254 	INPUT_CSI_RM,
255 	INPUT_CSI_RM_PRIVATE,
256 	INPUT_CSI_SCP,
257 	INPUT_CSI_SD,
258 	INPUT_CSI_SGR,
259 	INPUT_CSI_SM,
260 	INPUT_CSI_SM_PRIVATE,
261 	INPUT_CSI_SU,
262 	INPUT_CSI_TBC,
263 	INPUT_CSI_VPA,
264 	INPUT_CSI_WINOPS,
265 	INPUT_CSI_XDA,
266 };
267 
268 /* Control (CSI) command table. */
269 static const struct input_table_entry input_csi_table[] = {
270 	{ '@', "",  INPUT_CSI_ICH },
271 	{ 'A', "",  INPUT_CSI_CUU },
272 	{ 'B', "",  INPUT_CSI_CUD },
273 	{ 'C', "",  INPUT_CSI_CUF },
274 	{ 'D', "",  INPUT_CSI_CUB },
275 	{ 'E', "",  INPUT_CSI_CNL },
276 	{ 'F', "",  INPUT_CSI_CPL },
277 	{ 'G', "",  INPUT_CSI_HPA },
278 	{ 'H', "",  INPUT_CSI_CUP },
279 	{ 'J', "",  INPUT_CSI_ED },
280 	{ 'K', "",  INPUT_CSI_EL },
281 	{ 'L', "",  INPUT_CSI_IL },
282 	{ 'M', "",  INPUT_CSI_DL },
283 	{ 'P', "",  INPUT_CSI_DCH },
284 	{ 'S', "",  INPUT_CSI_SU },
285 	{ 'T', "",  INPUT_CSI_SD },
286 	{ 'X', "",  INPUT_CSI_ECH },
287 	{ 'Z', "",  INPUT_CSI_CBT },
288 	{ '`', "",  INPUT_CSI_HPA },
289 	{ 'b', "",  INPUT_CSI_REP },
290 	{ 'c', "",  INPUT_CSI_DA },
291 	{ 'c', ">", INPUT_CSI_DA_TWO },
292 	{ 'd', "",  INPUT_CSI_VPA },
293 	{ 'f', "",  INPUT_CSI_CUP },
294 	{ 'g', "",  INPUT_CSI_TBC },
295 	{ 'h', "",  INPUT_CSI_SM },
296 	{ 'h', "?", INPUT_CSI_SM_PRIVATE },
297 	{ 'l', "",  INPUT_CSI_RM },
298 	{ 'l', "?", INPUT_CSI_RM_PRIVATE },
299 	{ 'm', "",  INPUT_CSI_SGR },
300 	{ 'm', ">", INPUT_CSI_MODSET },
301 	{ 'n', "",  INPUT_CSI_DSR },
302 	{ 'n', ">", INPUT_CSI_MODOFF },
303 	{ 'q', " ", INPUT_CSI_DECSCUSR },
304 	{ 'q', ">", INPUT_CSI_XDA },
305 	{ 'r', "",  INPUT_CSI_DECSTBM },
306 	{ 's', "",  INPUT_CSI_SCP },
307 	{ 't', "",  INPUT_CSI_WINOPS },
308 	{ 'u', "",  INPUT_CSI_RCP },
309 };
310 
311 /* Input transition. */
312 struct input_transition {
313 	int				first;
314 	int				last;
315 
316 	int				(*handler)(struct input_ctx *);
317 	const struct input_state       *state;
318 };
319 
320 /* Input state. */
321 struct input_state {
322 	const char			*name;
323 	void				(*enter)(struct input_ctx *);
324 	void				(*exit)(struct input_ctx *);
325 	const struct input_transition	*transitions;
326 };
327 
328 /* State transitions available from all states. */
329 #define INPUT_STATE_ANYWHERE \
330 	{ 0x18, 0x18, input_c0_dispatch, &input_state_ground }, \
331 	{ 0x1a, 0x1a, input_c0_dispatch, &input_state_ground }, \
332 	{ 0x1b, 0x1b, NULL,		 &input_state_esc_enter }
333 
334 /* Forward declarations of state tables. */
335 static const struct input_transition input_state_ground_table[];
336 static const struct input_transition input_state_esc_enter_table[];
337 static const struct input_transition input_state_esc_intermediate_table[];
338 static const struct input_transition input_state_csi_enter_table[];
339 static const struct input_transition input_state_csi_parameter_table[];
340 static const struct input_transition input_state_csi_intermediate_table[];
341 static const struct input_transition input_state_csi_ignore_table[];
342 static const struct input_transition input_state_dcs_enter_table[];
343 static const struct input_transition input_state_dcs_parameter_table[];
344 static const struct input_transition input_state_dcs_intermediate_table[];
345 static const struct input_transition input_state_dcs_handler_table[];
346 static const struct input_transition input_state_dcs_escape_table[];
347 static const struct input_transition input_state_dcs_ignore_table[];
348 static const struct input_transition input_state_osc_string_table[];
349 static const struct input_transition input_state_apc_string_table[];
350 static const struct input_transition input_state_rename_string_table[];
351 static const struct input_transition input_state_consume_st_table[];
352 
353 /* ground state definition. */
354 static const struct input_state input_state_ground = {
355 	"ground",
356 	input_ground, NULL,
357 	input_state_ground_table
358 };
359 
360 /* esc_enter state definition. */
361 static const struct input_state input_state_esc_enter = {
362 	"esc_enter",
363 	input_clear, NULL,
364 	input_state_esc_enter_table
365 };
366 
367 /* esc_intermediate state definition. */
368 static const struct input_state input_state_esc_intermediate = {
369 	"esc_intermediate",
370 	NULL, NULL,
371 	input_state_esc_intermediate_table
372 };
373 
374 /* csi_enter state definition. */
375 static const struct input_state input_state_csi_enter = {
376 	"csi_enter",
377 	input_clear, NULL,
378 	input_state_csi_enter_table
379 };
380 
381 /* csi_parameter state definition. */
382 static const struct input_state input_state_csi_parameter = {
383 	"csi_parameter",
384 	NULL, NULL,
385 	input_state_csi_parameter_table
386 };
387 
388 /* csi_intermediate state definition. */
389 static const struct input_state input_state_csi_intermediate = {
390 	"csi_intermediate",
391 	NULL, NULL,
392 	input_state_csi_intermediate_table
393 };
394 
395 /* csi_ignore state definition. */
396 static const struct input_state input_state_csi_ignore = {
397 	"csi_ignore",
398 	NULL, NULL,
399 	input_state_csi_ignore_table
400 };
401 
402 /* dcs_enter state definition. */
403 static const struct input_state input_state_dcs_enter = {
404 	"dcs_enter",
405 	input_enter_dcs, NULL,
406 	input_state_dcs_enter_table
407 };
408 
409 /* dcs_parameter state definition. */
410 static const struct input_state input_state_dcs_parameter = {
411 	"dcs_parameter",
412 	NULL, NULL,
413 	input_state_dcs_parameter_table
414 };
415 
416 /* dcs_intermediate state definition. */
417 static const struct input_state input_state_dcs_intermediate = {
418 	"dcs_intermediate",
419 	NULL, NULL,
420 	input_state_dcs_intermediate_table
421 };
422 
423 /* dcs_handler state definition. */
424 static const struct input_state input_state_dcs_handler = {
425 	"dcs_handler",
426 	NULL, NULL,
427 	input_state_dcs_handler_table
428 };
429 
430 /* dcs_escape state definition. */
431 static const struct input_state input_state_dcs_escape = {
432 	"dcs_escape",
433 	NULL, NULL,
434 	input_state_dcs_escape_table
435 };
436 
437 /* dcs_ignore state definition. */
438 static const struct input_state input_state_dcs_ignore = {
439 	"dcs_ignore",
440 	NULL, NULL,
441 	input_state_dcs_ignore_table
442 };
443 
444 /* osc_string state definition. */
445 static const struct input_state input_state_osc_string = {
446 	"osc_string",
447 	input_enter_osc, input_exit_osc,
448 	input_state_osc_string_table
449 };
450 
451 /* apc_string state definition. */
452 static const struct input_state input_state_apc_string = {
453 	"apc_string",
454 	input_enter_apc, input_exit_apc,
455 	input_state_apc_string_table
456 };
457 
458 /* rename_string state definition. */
459 static const struct input_state input_state_rename_string = {
460 	"rename_string",
461 	input_enter_rename, input_exit_rename,
462 	input_state_rename_string_table
463 };
464 
465 /* consume_st state definition. */
466 static const struct input_state input_state_consume_st = {
467 	"consume_st",
468 	input_enter_rename, NULL, /* rename also waits for ST */
469 	input_state_consume_st_table
470 };
471 
472 /* ground state table. */
473 static const struct input_transition input_state_ground_table[] = {
474 	INPUT_STATE_ANYWHERE,
475 
476 	{ 0x00, 0x17, input_c0_dispatch, NULL },
477 	{ 0x19, 0x19, input_c0_dispatch, NULL },
478 	{ 0x1c, 0x1f, input_c0_dispatch, NULL },
479 	{ 0x20, 0x7e, input_print,	 NULL },
480 	{ 0x7f, 0x7f, NULL,		 NULL },
481 	{ 0x80, 0xff, input_top_bit_set, NULL },
482 
483 	{ -1, -1, NULL, NULL }
484 };
485 
486 /* esc_enter state table. */
487 static const struct input_transition input_state_esc_enter_table[] = {
488 	INPUT_STATE_ANYWHERE,
489 
490 	{ 0x00, 0x17, input_c0_dispatch,  NULL },
491 	{ 0x19, 0x19, input_c0_dispatch,  NULL },
492 	{ 0x1c, 0x1f, input_c0_dispatch,  NULL },
493 	{ 0x20, 0x2f, input_intermediate, &input_state_esc_intermediate },
494 	{ 0x30, 0x4f, input_esc_dispatch, &input_state_ground },
495 	{ 0x50, 0x50, NULL,		  &input_state_dcs_enter },
496 	{ 0x51, 0x57, input_esc_dispatch, &input_state_ground },
497 	{ 0x58, 0x58, NULL,		  &input_state_consume_st },
498 	{ 0x59, 0x59, input_esc_dispatch, &input_state_ground },
499 	{ 0x5a, 0x5a, input_esc_dispatch, &input_state_ground },
500 	{ 0x5b, 0x5b, NULL,		  &input_state_csi_enter },
501 	{ 0x5c, 0x5c, input_esc_dispatch, &input_state_ground },
502 	{ 0x5d, 0x5d, NULL,		  &input_state_osc_string },
503 	{ 0x5e, 0x5e, NULL,		  &input_state_consume_st },
504 	{ 0x5f, 0x5f, NULL,		  &input_state_apc_string },
505 	{ 0x60, 0x6a, input_esc_dispatch, &input_state_ground },
506 	{ 0x6b, 0x6b, NULL,		  &input_state_rename_string },
507 	{ 0x6c, 0x7e, input_esc_dispatch, &input_state_ground },
508 	{ 0x7f, 0xff, NULL,		  NULL },
509 
510 	{ -1, -1, NULL, NULL }
511 };
512 
513 /* esc_intermediate state table. */
514 static const struct input_transition input_state_esc_intermediate_table[] = {
515 	INPUT_STATE_ANYWHERE,
516 
517 	{ 0x00, 0x17, input_c0_dispatch,  NULL },
518 	{ 0x19, 0x19, input_c0_dispatch,  NULL },
519 	{ 0x1c, 0x1f, input_c0_dispatch,  NULL },
520 	{ 0x20, 0x2f, input_intermediate, NULL },
521 	{ 0x30, 0x7e, input_esc_dispatch, &input_state_ground },
522 	{ 0x7f, 0xff, NULL,		  NULL },
523 
524 	{ -1, -1, NULL, NULL }
525 };
526 
527 /* csi_enter state table. */
528 static const struct input_transition input_state_csi_enter_table[] = {
529 	INPUT_STATE_ANYWHERE,
530 
531 	{ 0x00, 0x17, input_c0_dispatch,  NULL },
532 	{ 0x19, 0x19, input_c0_dispatch,  NULL },
533 	{ 0x1c, 0x1f, input_c0_dispatch,  NULL },
534 	{ 0x20, 0x2f, input_intermediate, &input_state_csi_intermediate },
535 	{ 0x30, 0x39, input_parameter,	  &input_state_csi_parameter },
536 	{ 0x3a, 0x3a, input_parameter,	  &input_state_csi_parameter },
537 	{ 0x3b, 0x3b, input_parameter,	  &input_state_csi_parameter },
538 	{ 0x3c, 0x3f, input_intermediate, &input_state_csi_parameter },
539 	{ 0x40, 0x7e, input_csi_dispatch, &input_state_ground },
540 	{ 0x7f, 0xff, NULL,		  NULL },
541 
542 	{ -1, -1, NULL, NULL }
543 };
544 
545 /* csi_parameter state table. */
546 static const struct input_transition input_state_csi_parameter_table[] = {
547 	INPUT_STATE_ANYWHERE,
548 
549 	{ 0x00, 0x17, input_c0_dispatch,  NULL },
550 	{ 0x19, 0x19, input_c0_dispatch,  NULL },
551 	{ 0x1c, 0x1f, input_c0_dispatch,  NULL },
552 	{ 0x20, 0x2f, input_intermediate, &input_state_csi_intermediate },
553 	{ 0x30, 0x39, input_parameter,	  NULL },
554 	{ 0x3a, 0x3a, input_parameter,	  NULL },
555 	{ 0x3b, 0x3b, input_parameter,	  NULL },
556 	{ 0x3c, 0x3f, NULL,		  &input_state_csi_ignore },
557 	{ 0x40, 0x7e, input_csi_dispatch, &input_state_ground },
558 	{ 0x7f, 0xff, NULL,		  NULL },
559 
560 	{ -1, -1, NULL, NULL }
561 };
562 
563 /* csi_intermediate state table. */
564 static const struct input_transition input_state_csi_intermediate_table[] = {
565 	INPUT_STATE_ANYWHERE,
566 
567 	{ 0x00, 0x17, input_c0_dispatch,  NULL },
568 	{ 0x19, 0x19, input_c0_dispatch,  NULL },
569 	{ 0x1c, 0x1f, input_c0_dispatch,  NULL },
570 	{ 0x20, 0x2f, input_intermediate, NULL },
571 	{ 0x30, 0x3f, NULL,		  &input_state_csi_ignore },
572 	{ 0x40, 0x7e, input_csi_dispatch, &input_state_ground },
573 	{ 0x7f, 0xff, NULL,		  NULL },
574 
575 	{ -1, -1, NULL, NULL }
576 };
577 
578 /* csi_ignore state table. */
579 static const struct input_transition input_state_csi_ignore_table[] = {
580 	INPUT_STATE_ANYWHERE,
581 
582 	{ 0x00, 0x17, input_c0_dispatch, NULL },
583 	{ 0x19, 0x19, input_c0_dispatch, NULL },
584 	{ 0x1c, 0x1f, input_c0_dispatch, NULL },
585 	{ 0x20, 0x3f, NULL,		 NULL },
586 	{ 0x40, 0x7e, NULL,		 &input_state_ground },
587 	{ 0x7f, 0xff, NULL,		 NULL },
588 
589 	{ -1, -1, NULL, NULL }
590 };
591 
592 /* dcs_enter state table. */
593 static const struct input_transition input_state_dcs_enter_table[] = {
594 	INPUT_STATE_ANYWHERE,
595 
596 	{ 0x00, 0x17, NULL,		  NULL },
597 	{ 0x19, 0x19, NULL,		  NULL },
598 	{ 0x1c, 0x1f, NULL,		  NULL },
599 	{ 0x20, 0x2f, input_intermediate, &input_state_dcs_intermediate },
600 	{ 0x30, 0x39, input_parameter,	  &input_state_dcs_parameter },
601 	{ 0x3a, 0x3a, NULL,		  &input_state_dcs_ignore },
602 	{ 0x3b, 0x3b, input_parameter,	  &input_state_dcs_parameter },
603 	{ 0x3c, 0x3f, input_intermediate, &input_state_dcs_parameter },
604 	{ 0x40, 0x7e, input_input,	  &input_state_dcs_handler },
605 	{ 0x7f, 0xff, NULL,		  NULL },
606 
607 	{ -1, -1, NULL, NULL }
608 };
609 
610 /* dcs_parameter state table. */
611 static const struct input_transition input_state_dcs_parameter_table[] = {
612 	INPUT_STATE_ANYWHERE,
613 
614 	{ 0x00, 0x17, NULL,		  NULL },
615 	{ 0x19, 0x19, NULL,		  NULL },
616 	{ 0x1c, 0x1f, NULL,		  NULL },
617 	{ 0x20, 0x2f, input_intermediate, &input_state_dcs_intermediate },
618 	{ 0x30, 0x39, input_parameter,	  NULL },
619 	{ 0x3a, 0x3a, NULL,		  &input_state_dcs_ignore },
620 	{ 0x3b, 0x3b, input_parameter,	  NULL },
621 	{ 0x3c, 0x3f, NULL,		  &input_state_dcs_ignore },
622 	{ 0x40, 0x7e, input_input,	  &input_state_dcs_handler },
623 	{ 0x7f, 0xff, NULL,		  NULL },
624 
625 	{ -1, -1, NULL, NULL }
626 };
627 
628 /* dcs_intermediate state table. */
629 static const struct input_transition input_state_dcs_intermediate_table[] = {
630 	INPUT_STATE_ANYWHERE,
631 
632 	{ 0x00, 0x17, NULL,		  NULL },
633 	{ 0x19, 0x19, NULL,		  NULL },
634 	{ 0x1c, 0x1f, NULL,		  NULL },
635 	{ 0x20, 0x2f, input_intermediate, NULL },
636 	{ 0x30, 0x3f, NULL,		  &input_state_dcs_ignore },
637 	{ 0x40, 0x7e, input_input,	  &input_state_dcs_handler },
638 	{ 0x7f, 0xff, NULL,		  NULL },
639 
640 	{ -1, -1, NULL, NULL }
641 };
642 
643 /* dcs_handler state table. */
644 static const struct input_transition input_state_dcs_handler_table[] = {
645 	/* No INPUT_STATE_ANYWHERE */
646 
647 	{ 0x00, 0x1a, input_input,  NULL },
648 	{ 0x1b, 0x1b, NULL,	    &input_state_dcs_escape },
649 	{ 0x1c, 0xff, input_input,  NULL },
650 
651 	{ -1, -1, NULL, NULL }
652 };
653 
654 /* dcs_escape state table. */
655 static const struct input_transition input_state_dcs_escape_table[] = {
656 	/* No INPUT_STATE_ANYWHERE */
657 
658 	{ 0x00, 0x5b, input_input,	  &input_state_dcs_handler },
659 	{ 0x5c, 0x5c, input_dcs_dispatch, &input_state_ground },
660 	{ 0x5d, 0xff, input_input,	  &input_state_dcs_handler },
661 
662 	{ -1, -1, NULL, NULL }
663 };
664 
665 /* dcs_ignore state table. */
666 static const struct input_transition input_state_dcs_ignore_table[] = {
667 	INPUT_STATE_ANYWHERE,
668 
669 	{ 0x00, 0x17, NULL,	    NULL },
670 	{ 0x19, 0x19, NULL,	    NULL },
671 	{ 0x1c, 0x1f, NULL,	    NULL },
672 	{ 0x20, 0xff, NULL,	    NULL },
673 
674 	{ -1, -1, NULL, NULL }
675 };
676 
677 /* osc_string state table. */
678 static const struct input_transition input_state_osc_string_table[] = {
679 	INPUT_STATE_ANYWHERE,
680 
681 	{ 0x00, 0x06, NULL,	     NULL },
682 	{ 0x07, 0x07, input_end_bel, &input_state_ground },
683 	{ 0x08, 0x17, NULL,	     NULL },
684 	{ 0x19, 0x19, NULL,	     NULL },
685 	{ 0x1c, 0x1f, NULL,	     NULL },
686 	{ 0x20, 0xff, input_input,   NULL },
687 
688 	{ -1, -1, NULL, NULL }
689 };
690 
691 /* apc_string state table. */
692 static const struct input_transition input_state_apc_string_table[] = {
693 	INPUT_STATE_ANYWHERE,
694 
695 	{ 0x00, 0x17, NULL,	    NULL },
696 	{ 0x19, 0x19, NULL,	    NULL },
697 	{ 0x1c, 0x1f, NULL,	    NULL },
698 	{ 0x20, 0xff, input_input,  NULL },
699 
700 	{ -1, -1, NULL, NULL }
701 };
702 
703 /* rename_string state table. */
704 static const struct input_transition input_state_rename_string_table[] = {
705 	INPUT_STATE_ANYWHERE,
706 
707 	{ 0x00, 0x17, NULL,	    NULL },
708 	{ 0x19, 0x19, NULL,	    NULL },
709 	{ 0x1c, 0x1f, NULL,	    NULL },
710 	{ 0x20, 0xff, input_input,  NULL },
711 
712 	{ -1, -1, NULL, NULL }
713 };
714 
715 /* consume_st state table. */
716 static const struct input_transition input_state_consume_st_table[] = {
717 	INPUT_STATE_ANYWHERE,
718 
719 	{ 0x00, 0x17, NULL,	    NULL },
720 	{ 0x19, 0x19, NULL,	    NULL },
721 	{ 0x1c, 0x1f, NULL,	    NULL },
722 	{ 0x20, 0xff, NULL,	    NULL },
723 
724 	{ -1, -1, NULL, NULL }
725 };
726 
727 /* Input table compare. */
728 static int
729 input_table_compare(const void *key, const void *value)
730 {
731 	const struct input_ctx		*ictx = key;
732 	const struct input_table_entry	*entry = value;
733 
734 	if (ictx->ch != entry->ch)
735 		return (ictx->ch - entry->ch);
736 	return (strcmp(ictx->interm_buf, entry->interm));
737 }
738 
739 /*
740  * Timer - if this expires then have been waiting for a terminator for too
741  * long, so reset to ground.
742  */
743 static void
744 input_timer_callback(__unused int fd, __unused short events, void *arg)
745 {
746 	struct input_ctx	*ictx = arg;
747 
748 	log_debug("%s: %s expired" , __func__, ictx->state->name);
749 	input_reset(ictx, 0);
750 }
751 
752 /* Start the timer. */
753 static void
754 input_start_timer(struct input_ctx *ictx)
755 {
756 	struct timeval	tv = { .tv_sec = 5, .tv_usec = 0 };
757 
758 	event_del(&ictx->timer);
759 	event_add(&ictx->timer, &tv);
760 }
761 
762 /* Reset cell state to default. */
763 static void
764 input_reset_cell(struct input_ctx *ictx)
765 {
766 	memcpy(&ictx->cell.cell, &grid_default_cell, sizeof ictx->cell.cell);
767 	ictx->cell.set = 0;
768 	ictx->cell.g0set = ictx->cell.g1set = 0;
769 
770 	memcpy(&ictx->old_cell, &ictx->cell, sizeof ictx->old_cell);
771 	ictx->old_cx = 0;
772 	ictx->old_cy = 0;
773 }
774 
775 /* Save screen state. */
776 static void
777 input_save_state(struct input_ctx *ictx)
778 {
779 	struct screen_write_ctx	*sctx = &ictx->ctx;
780 	struct screen		*s = sctx->s;
781 
782 	memcpy(&ictx->old_cell, &ictx->cell, sizeof ictx->old_cell);
783 	ictx->old_cx = s->cx;
784 	ictx->old_cy = s->cy;
785 	ictx->old_mode = s->mode;
786 }
787 
788 /* Restore screen state. */
789 static void
790 input_restore_state(struct input_ctx *ictx)
791 {
792 	struct screen_write_ctx	*sctx = &ictx->ctx;
793 
794 	memcpy(&ictx->cell, &ictx->old_cell, sizeof ictx->cell);
795 	if (ictx->old_mode & MODE_ORIGIN)
796 		screen_write_mode_set(sctx, MODE_ORIGIN);
797 	else
798 		screen_write_mode_clear(sctx, MODE_ORIGIN);
799 	screen_write_cursormove(sctx, ictx->old_cx, ictx->old_cy, 0);
800 }
801 
802 /* Initialise input parser. */
803 struct input_ctx *
804 input_init(struct window_pane *wp, struct bufferevent *bev,
805     struct colour_palette *palette)
806 {
807 	struct input_ctx	*ictx;
808 
809 	ictx = xcalloc(1, sizeof *ictx);
810 	ictx->wp = wp;
811 	ictx->event = bev;
812 	ictx->palette = palette;
813 
814 	ictx->input_space = INPUT_BUF_START;
815 	ictx->input_buf = xmalloc(INPUT_BUF_START);
816 
817 	ictx->since_ground = evbuffer_new();
818 	if (ictx->since_ground == NULL)
819 		fatalx("out of memory");
820 
821 	evtimer_set(&ictx->timer, input_timer_callback, ictx);
822 
823 	input_reset(ictx, 0);
824 	return (ictx);
825 }
826 
827 /* Destroy input parser. */
828 void
829 input_free(struct input_ctx *ictx)
830 {
831 	u_int	i;
832 
833 	for (i = 0; i < ictx->param_list_len; i++) {
834 		if (ictx->param_list[i].type == INPUT_STRING)
835 			free(ictx->param_list[i].str);
836 	}
837 
838 	event_del(&ictx->timer);
839 
840 	free(ictx->input_buf);
841 	evbuffer_free(ictx->since_ground);
842 
843 	free(ictx);
844 }
845 
846 /* Reset input state and clear screen. */
847 void
848 input_reset(struct input_ctx *ictx, int clear)
849 {
850 	struct screen_write_ctx	*sctx = &ictx->ctx;
851 	struct window_pane	*wp = ictx->wp;
852 
853 	input_reset_cell(ictx);
854 
855 	if (clear && wp != NULL) {
856 		if (TAILQ_EMPTY(&wp->modes))
857 			screen_write_start_pane(sctx, wp, &wp->base);
858 		else
859 			screen_write_start(sctx, &wp->base);
860 		screen_write_reset(sctx);
861 		screen_write_stop(sctx);
862 	}
863 
864 	input_clear(ictx);
865 
866 	ictx->last = -1;
867 
868 	ictx->state = &input_state_ground;
869 	ictx->flags = 0;
870 }
871 
872 /* Return pending data. */
873 struct evbuffer *
874 input_pending(struct input_ctx *ictx)
875 {
876 	return (ictx->since_ground);
877 }
878 
879 /* Change input state. */
880 static void
881 input_set_state(struct input_ctx *ictx, const struct input_transition *itr)
882 {
883 	if (ictx->state->exit != NULL)
884 		ictx->state->exit(ictx);
885 	ictx->state = itr->state;
886 	if (ictx->state->enter != NULL)
887 		ictx->state->enter(ictx);
888 }
889 
890 /* Parse data. */
891 static void
892 input_parse(struct input_ctx *ictx, u_char *buf, size_t len)
893 {
894 	struct screen_write_ctx		*sctx = &ictx->ctx;
895 	const struct input_state	*state = NULL;
896 	const struct input_transition	*itr = NULL;
897 	size_t				 off = 0;
898 
899 	/* Parse the input. */
900 	while (off < len) {
901 		ictx->ch = buf[off++];
902 
903 		/* Find the transition. */
904 		if (ictx->state != state ||
905 		    itr == NULL ||
906 		    ictx->ch < itr->first ||
907 		    ictx->ch > itr->last) {
908 			itr = ictx->state->transitions;
909 			while (itr->first != -1 && itr->last != -1) {
910 				if (ictx->ch >= itr->first &&
911 				    ictx->ch <= itr->last)
912 					break;
913 				itr++;
914 			}
915 			if (itr->first == -1 || itr->last == -1) {
916 				/* No transition? Eh? */
917 				fatalx("no transition from state");
918 			}
919 		}
920 		state = ictx->state;
921 
922 		/*
923 		 * Any state except print stops the current collection. This is
924 		 * an optimization to avoid checking if the attributes have
925 		 * changed for every character. It will stop unnecessarily for
926 		 * sequences that don't make a terminal change, but they should
927 		 * be the minority.
928 		 */
929 		if (itr->handler != input_print)
930 			screen_write_collect_end(sctx);
931 
932 		/*
933 		 * Execute the handler, if any. Don't switch state if it
934 		 * returns non-zero.
935 		 */
936 		if (itr->handler != NULL && itr->handler(ictx) != 0)
937 			continue;
938 
939 		/* And switch state, if necessary. */
940 		if (itr->state != NULL)
941 			input_set_state(ictx, itr);
942 
943 		/* If not in ground state, save input. */
944 		if (ictx->state != &input_state_ground)
945 			evbuffer_add(ictx->since_ground, &ictx->ch, 1);
946 	}
947 }
948 
949 /* Parse input from pane. */
950 void
951 input_parse_pane(struct window_pane *wp)
952 {
953 	void	*new_data;
954 	size_t	 new_size;
955 
956 	new_data = window_pane_get_new_data(wp, &wp->offset, &new_size);
957 	input_parse_buffer(wp, new_data, new_size);
958 	window_pane_update_used_data(wp, &wp->offset, new_size);
959 }
960 
961 /* Parse given input. */
962 void
963 input_parse_buffer(struct window_pane *wp, u_char *buf, size_t len)
964 {
965 	struct input_ctx	*ictx = wp->ictx;
966 	struct screen_write_ctx	*sctx = &ictx->ctx;
967 
968 	if (len == 0)
969 		return;
970 
971 	window_update_activity(wp->window);
972 	wp->flags |= PANE_CHANGED;
973 
974 	/* NULL wp if there is a mode set as don't want to update the tty. */
975 	if (TAILQ_EMPTY(&wp->modes))
976 		screen_write_start_pane(sctx, wp, &wp->base);
977 	else
978 		screen_write_start(sctx, &wp->base);
979 
980 	log_debug("%s: %%%u %s, %zu bytes: %.*s", __func__, wp->id,
981 	    ictx->state->name, len, (int)len, buf);
982 
983 	input_parse(ictx, buf, len);
984 	screen_write_stop(sctx);
985 }
986 
987 /* Parse given input for screen. */
988 void
989 input_parse_screen(struct input_ctx *ictx, struct screen *s,
990     screen_write_init_ctx_cb cb, void *arg, u_char *buf, size_t len)
991 {
992 	struct screen_write_ctx	*sctx = &ictx->ctx;
993 
994 	if (len == 0)
995 		return;
996 
997 	screen_write_start_callback(sctx, s, cb, arg);
998 	input_parse(ictx, buf, len);
999 	screen_write_stop(sctx);
1000 }
1001 
1002 /* Split the parameter list (if any). */
1003 static int
1004 input_split(struct input_ctx *ictx)
1005 {
1006 	const char		*errstr;
1007 	char			*ptr, *out;
1008 	struct input_param	*ip;
1009 	u_int			 i;
1010 
1011 	for (i = 0; i < ictx->param_list_len; i++) {
1012 		if (ictx->param_list[i].type == INPUT_STRING)
1013 			free(ictx->param_list[i].str);
1014 	}
1015 	ictx->param_list_len = 0;
1016 
1017 	if (ictx->param_len == 0)
1018 		return (0);
1019 	ip = &ictx->param_list[0];
1020 
1021 	ptr = ictx->param_buf;
1022 	while ((out = strsep(&ptr, ";")) != NULL) {
1023 		if (*out == '\0')
1024 			ip->type = INPUT_MISSING;
1025 		else {
1026 			if (strchr(out, ':') != NULL) {
1027 				ip->type = INPUT_STRING;
1028 				ip->str = xstrdup(out);
1029 			} else {
1030 				ip->type = INPUT_NUMBER;
1031 				ip->num = strtonum(out, 0, INT_MAX, &errstr);
1032 				if (errstr != NULL)
1033 					return (-1);
1034 			}
1035 		}
1036 		ip = &ictx->param_list[++ictx->param_list_len];
1037 		if (ictx->param_list_len == nitems(ictx->param_list))
1038 			return (-1);
1039 	}
1040 
1041 	for (i = 0; i < ictx->param_list_len; i++) {
1042 		ip = &ictx->param_list[i];
1043 		if (ip->type == INPUT_MISSING)
1044 			log_debug("parameter %u: missing", i);
1045 		else if (ip->type == INPUT_STRING)
1046 			log_debug("parameter %u: string %s", i, ip->str);
1047 		else if (ip->type == INPUT_NUMBER)
1048 			log_debug("parameter %u: number %d", i, ip->num);
1049 	}
1050 
1051 	return (0);
1052 }
1053 
1054 /* Get an argument or return default value. */
1055 static int
1056 input_get(struct input_ctx *ictx, u_int validx, int minval, int defval)
1057 {
1058 	struct input_param	*ip;
1059 	int			 retval;
1060 
1061 	if (validx >= ictx->param_list_len)
1062 	    return (defval);
1063 	ip = &ictx->param_list[validx];
1064 	if (ip->type == INPUT_MISSING)
1065 		return (defval);
1066 	if (ip->type == INPUT_STRING)
1067 		return (-1);
1068 	retval = ip->num;
1069 	if (retval < minval)
1070 		return (minval);
1071 	return (retval);
1072 }
1073 
1074 /* Reply to terminal query. */
1075 static void
1076 input_reply(struct input_ctx *ictx, const char *fmt, ...)
1077 {
1078 	struct bufferevent	*bev = ictx->event;
1079 	va_list			 ap;
1080 	char			*reply;
1081 
1082 	if (bev == NULL)
1083 		return;
1084 
1085 	va_start(ap, fmt);
1086 	xvasprintf(&reply, fmt, ap);
1087 	va_end(ap);
1088 
1089 	log_debug("%s: %s", __func__, reply);
1090 	bufferevent_write(bev, reply, strlen(reply));
1091 	free(reply);
1092 }
1093 
1094 /* Clear saved state. */
1095 static void
1096 input_clear(struct input_ctx *ictx)
1097 {
1098 	event_del(&ictx->timer);
1099 
1100 	*ictx->interm_buf = '\0';
1101 	ictx->interm_len = 0;
1102 
1103 	*ictx->param_buf = '\0';
1104 	ictx->param_len = 0;
1105 
1106 	*ictx->input_buf = '\0';
1107 	ictx->input_len = 0;
1108 
1109 	ictx->input_end = INPUT_END_ST;
1110 
1111 	ictx->flags &= ~INPUT_DISCARD;
1112 }
1113 
1114 /* Reset for ground state. */
1115 static void
1116 input_ground(struct input_ctx *ictx)
1117 {
1118 	event_del(&ictx->timer);
1119 	evbuffer_drain(ictx->since_ground, EVBUFFER_LENGTH(ictx->since_ground));
1120 
1121 	if (ictx->input_space > INPUT_BUF_START) {
1122 		ictx->input_space = INPUT_BUF_START;
1123 		ictx->input_buf = xrealloc(ictx->input_buf, INPUT_BUF_START);
1124 	}
1125 }
1126 
1127 /* Output this character to the screen. */
1128 static int
1129 input_print(struct input_ctx *ictx)
1130 {
1131 	struct screen_write_ctx	*sctx = &ictx->ctx;
1132 	int			 set;
1133 
1134 	ictx->utf8started = 0; /* can't be valid UTF-8 */
1135 
1136 	set = ictx->cell.set == 0 ? ictx->cell.g0set : ictx->cell.g1set;
1137 	if (set == 1)
1138 		ictx->cell.cell.attr |= GRID_ATTR_CHARSET;
1139 	else
1140 		ictx->cell.cell.attr &= ~GRID_ATTR_CHARSET;
1141 
1142 	utf8_set(&ictx->cell.cell.data, ictx->ch);
1143 	screen_write_collect_add(sctx, &ictx->cell.cell);
1144 	ictx->last = ictx->ch;
1145 
1146 	ictx->cell.cell.attr &= ~GRID_ATTR_CHARSET;
1147 
1148 	return (0);
1149 }
1150 
1151 /* Collect intermediate string. */
1152 static int
1153 input_intermediate(struct input_ctx *ictx)
1154 {
1155 	if (ictx->interm_len == (sizeof ictx->interm_buf) - 1)
1156 		ictx->flags |= INPUT_DISCARD;
1157 	else {
1158 		ictx->interm_buf[ictx->interm_len++] = ictx->ch;
1159 		ictx->interm_buf[ictx->interm_len] = '\0';
1160 	}
1161 
1162 	return (0);
1163 }
1164 
1165 /* Collect parameter string. */
1166 static int
1167 input_parameter(struct input_ctx *ictx)
1168 {
1169 	if (ictx->param_len == (sizeof ictx->param_buf) - 1)
1170 		ictx->flags |= INPUT_DISCARD;
1171 	else {
1172 		ictx->param_buf[ictx->param_len++] = ictx->ch;
1173 		ictx->param_buf[ictx->param_len] = '\0';
1174 	}
1175 
1176 	return (0);
1177 }
1178 
1179 /* Collect input string. */
1180 static int
1181 input_input(struct input_ctx *ictx)
1182 {
1183 	size_t available;
1184 
1185 	available = ictx->input_space;
1186 	while (ictx->input_len + 1 >= available) {
1187 		available *= 2;
1188 		if (available > INPUT_BUF_LIMIT) {
1189 			ictx->flags |= INPUT_DISCARD;
1190 			return (0);
1191 		}
1192 		ictx->input_buf = xrealloc(ictx->input_buf, available);
1193 		ictx->input_space = available;
1194 	}
1195 	ictx->input_buf[ictx->input_len++] = ictx->ch;
1196 	ictx->input_buf[ictx->input_len] = '\0';
1197 
1198 	return (0);
1199 }
1200 
1201 /* Execute C0 control sequence. */
1202 static int
1203 input_c0_dispatch(struct input_ctx *ictx)
1204 {
1205 	struct screen_write_ctx	*sctx = &ictx->ctx;
1206 	struct window_pane	*wp = ictx->wp;
1207 	struct screen		*s = sctx->s;
1208 
1209 	ictx->utf8started = 0; /* can't be valid UTF-8 */
1210 
1211 	log_debug("%s: '%c'", __func__, ictx->ch);
1212 
1213 	switch (ictx->ch) {
1214 	case '\000':	/* NUL */
1215 		break;
1216 	case '\007':	/* BEL */
1217 		if (wp != NULL)
1218 			alerts_queue(wp->window, WINDOW_BELL);
1219 		break;
1220 	case '\010':	/* BS */
1221 		screen_write_backspace(sctx);
1222 		break;
1223 	case '\011':	/* HT */
1224 		/* Don't tab beyond the end of the line. */
1225 		if (s->cx >= screen_size_x(s) - 1)
1226 			break;
1227 
1228 		/* Find the next tab point, or use the last column if none. */
1229 		do {
1230 			s->cx++;
1231 			if (bit_test(s->tabs, s->cx))
1232 				break;
1233 		} while (s->cx < screen_size_x(s) - 1);
1234 		break;
1235 	case '\012':	/* LF */
1236 	case '\013':	/* VT */
1237 	case '\014':	/* FF */
1238 		screen_write_linefeed(sctx, 0, ictx->cell.cell.bg);
1239 		if (s->mode & MODE_CRLF)
1240 			screen_write_carriagereturn(sctx);
1241 		break;
1242 	case '\015':	/* CR */
1243 		screen_write_carriagereturn(sctx);
1244 		break;
1245 	case '\016':	/* SO */
1246 		ictx->cell.set = 1;
1247 		break;
1248 	case '\017':	/* SI */
1249 		ictx->cell.set = 0;
1250 		break;
1251 	default:
1252 		log_debug("%s: unknown '%c'", __func__, ictx->ch);
1253 		break;
1254 	}
1255 
1256 	ictx->last = -1;
1257 	return (0);
1258 }
1259 
1260 /* Execute escape sequence. */
1261 static int
1262 input_esc_dispatch(struct input_ctx *ictx)
1263 {
1264 	struct screen_write_ctx		*sctx = &ictx->ctx;
1265 	struct screen			*s = sctx->s;
1266 	struct input_table_entry	*entry;
1267 
1268 	if (ictx->flags & INPUT_DISCARD)
1269 		return (0);
1270 	log_debug("%s: '%c', %s", __func__, ictx->ch, ictx->interm_buf);
1271 
1272 	entry = bsearch(ictx, input_esc_table, nitems(input_esc_table),
1273 	    sizeof input_esc_table[0], input_table_compare);
1274 	if (entry == NULL) {
1275 		log_debug("%s: unknown '%c'", __func__, ictx->ch);
1276 		return (0);
1277 	}
1278 
1279 	switch (entry->type) {
1280 	case INPUT_ESC_RIS:
1281 		colour_palette_clear(ictx->palette);
1282 		input_reset_cell(ictx);
1283 		screen_write_reset(sctx);
1284 		screen_write_fullredraw(sctx);
1285 		break;
1286 	case INPUT_ESC_IND:
1287 		screen_write_linefeed(sctx, 0, ictx->cell.cell.bg);
1288 		break;
1289 	case INPUT_ESC_NEL:
1290 		screen_write_carriagereturn(sctx);
1291 		screen_write_linefeed(sctx, 0, ictx->cell.cell.bg);
1292 		break;
1293 	case INPUT_ESC_HTS:
1294 		if (s->cx < screen_size_x(s))
1295 			bit_set(s->tabs, s->cx);
1296 		break;
1297 	case INPUT_ESC_RI:
1298 		screen_write_reverseindex(sctx, ictx->cell.cell.bg);
1299 		break;
1300 	case INPUT_ESC_DECKPAM:
1301 		screen_write_mode_set(sctx, MODE_KKEYPAD);
1302 		break;
1303 	case INPUT_ESC_DECKPNM:
1304 		screen_write_mode_clear(sctx, MODE_KKEYPAD);
1305 		break;
1306 	case INPUT_ESC_DECSC:
1307 		input_save_state(ictx);
1308 		break;
1309 	case INPUT_ESC_DECRC:
1310 		input_restore_state(ictx);
1311 		break;
1312 	case INPUT_ESC_DECALN:
1313 		screen_write_alignmenttest(sctx);
1314 		break;
1315 	case INPUT_ESC_SCSG0_ON:
1316 		ictx->cell.g0set = 1;
1317 		break;
1318 	case INPUT_ESC_SCSG0_OFF:
1319 		ictx->cell.g0set = 0;
1320 		break;
1321 	case INPUT_ESC_SCSG1_ON:
1322 		ictx->cell.g1set = 1;
1323 		break;
1324 	case INPUT_ESC_SCSG1_OFF:
1325 		ictx->cell.g1set = 0;
1326 		break;
1327 	case INPUT_ESC_ST:
1328 		/* ST terminates OSC but the state transition already did it. */
1329 		break;
1330 	}
1331 
1332 	ictx->last = -1;
1333 	return (0);
1334 }
1335 
1336 /* Execute control sequence. */
1337 static int
1338 input_csi_dispatch(struct input_ctx *ictx)
1339 {
1340 	struct screen_write_ctx	       *sctx = &ictx->ctx;
1341 	struct screen		       *s = sctx->s;
1342 	struct input_table_entry       *entry;
1343 	int				i, n, m;
1344 	u_int				cx, bg = ictx->cell.cell.bg;
1345 
1346 	if (ictx->flags & INPUT_DISCARD)
1347 		return (0);
1348 
1349 	log_debug("%s: '%c' \"%s\" \"%s\"", __func__, ictx->ch,
1350 	    ictx->interm_buf, ictx->param_buf);
1351 
1352 	if (input_split(ictx) != 0)
1353 		return (0);
1354 
1355 	entry = bsearch(ictx, input_csi_table, nitems(input_csi_table),
1356 	    sizeof input_csi_table[0], input_table_compare);
1357 	if (entry == NULL) {
1358 		log_debug("%s: unknown '%c'", __func__, ictx->ch);
1359 		return (0);
1360 	}
1361 
1362 	switch (entry->type) {
1363 	case INPUT_CSI_CBT:
1364 		/* Find the previous tab point, n times. */
1365 		cx = s->cx;
1366 		if (cx > screen_size_x(s) - 1)
1367 			cx = screen_size_x(s) - 1;
1368 		n = input_get(ictx, 0, 1, 1);
1369 		if (n == -1)
1370 			break;
1371 		while (cx > 0 && n-- > 0) {
1372 			do
1373 				cx--;
1374 			while (cx > 0 && !bit_test(s->tabs, cx));
1375 		}
1376 		s->cx = cx;
1377 		break;
1378 	case INPUT_CSI_CUB:
1379 		n = input_get(ictx, 0, 1, 1);
1380 		if (n != -1)
1381 			screen_write_cursorleft(sctx, n);
1382 		break;
1383 	case INPUT_CSI_CUD:
1384 		n = input_get(ictx, 0, 1, 1);
1385 		if (n != -1)
1386 			screen_write_cursordown(sctx, n);
1387 		break;
1388 	case INPUT_CSI_CUF:
1389 		n = input_get(ictx, 0, 1, 1);
1390 		if (n != -1)
1391 			screen_write_cursorright(sctx, n);
1392 		break;
1393 	case INPUT_CSI_CUP:
1394 		n = input_get(ictx, 0, 1, 1);
1395 		m = input_get(ictx, 1, 1, 1);
1396 		if (n != -1 && m != -1)
1397 			screen_write_cursormove(sctx, m - 1, n - 1, 1);
1398 		break;
1399 	case INPUT_CSI_MODSET:
1400 		n = input_get(ictx, 0, 0, 0);
1401 		m = input_get(ictx, 1, 0, 0);
1402 		if (options_get_number(global_options, "extended-keys") == 2)
1403 			break;
1404 		if (n == 0 || (n == 4 && m == 0))
1405 			screen_write_mode_clear(sctx, MODE_KEXTENDED);
1406 		else if (n == 4 && (m == 1 || m == 2))
1407 			screen_write_mode_set(sctx, MODE_KEXTENDED);
1408 		break;
1409 	case INPUT_CSI_MODOFF:
1410 		n = input_get(ictx, 0, 0, 0);
1411 		if (n == 4)
1412 			screen_write_mode_clear(sctx, MODE_KEXTENDED);
1413 		break;
1414 	case INPUT_CSI_WINOPS:
1415 		input_csi_dispatch_winops(ictx);
1416 		break;
1417 	case INPUT_CSI_CUU:
1418 		n = input_get(ictx, 0, 1, 1);
1419 		if (n != -1)
1420 			screen_write_cursorup(sctx, n);
1421 		break;
1422 	case INPUT_CSI_CNL:
1423 		n = input_get(ictx, 0, 1, 1);
1424 		if (n != -1) {
1425 			screen_write_carriagereturn(sctx);
1426 			screen_write_cursordown(sctx, n);
1427 		}
1428 		break;
1429 	case INPUT_CSI_CPL:
1430 		n = input_get(ictx, 0, 1, 1);
1431 		if (n != -1) {
1432 			screen_write_carriagereturn(sctx);
1433 			screen_write_cursorup(sctx, n);
1434 		}
1435 		break;
1436 	case INPUT_CSI_DA:
1437 		switch (input_get(ictx, 0, 0, 0)) {
1438 		case -1:
1439 			break;
1440 		case 0:
1441 			input_reply(ictx, "\033[?1;2c");
1442 			break;
1443 		default:
1444 			log_debug("%s: unknown '%c'", __func__, ictx->ch);
1445 			break;
1446 		}
1447 		break;
1448 	case INPUT_CSI_DA_TWO:
1449 		switch (input_get(ictx, 0, 0, 0)) {
1450 		case -1:
1451 			break;
1452 		case 0:
1453 			input_reply(ictx, "\033[>84;0;0c");
1454 			break;
1455 		default:
1456 			log_debug("%s: unknown '%c'", __func__, ictx->ch);
1457 			break;
1458 		}
1459 		break;
1460 	case INPUT_CSI_ECH:
1461 		n = input_get(ictx, 0, 1, 1);
1462 		if (n != -1)
1463 			screen_write_clearcharacter(sctx, n, bg);
1464 		break;
1465 	case INPUT_CSI_DCH:
1466 		n = input_get(ictx, 0, 1, 1);
1467 		if (n != -1)
1468 			screen_write_deletecharacter(sctx, n, bg);
1469 		break;
1470 	case INPUT_CSI_DECSTBM:
1471 		n = input_get(ictx, 0, 1, 1);
1472 		m = input_get(ictx, 1, 1, screen_size_y(s));
1473 		if (n != -1 && m != -1)
1474 			screen_write_scrollregion(sctx, n - 1, m - 1);
1475 		break;
1476 	case INPUT_CSI_DL:
1477 		n = input_get(ictx, 0, 1, 1);
1478 		if (n != -1)
1479 			screen_write_deleteline(sctx, n, bg);
1480 		break;
1481 	case INPUT_CSI_DSR:
1482 		switch (input_get(ictx, 0, 0, 0)) {
1483 		case -1:
1484 			break;
1485 		case 5:
1486 			input_reply(ictx, "\033[0n");
1487 			break;
1488 		case 6:
1489 			input_reply(ictx, "\033[%u;%uR", s->cy + 1, s->cx + 1);
1490 			break;
1491 		default:
1492 			log_debug("%s: unknown '%c'", __func__, ictx->ch);
1493 			break;
1494 		}
1495 		break;
1496 	case INPUT_CSI_ED:
1497 		switch (input_get(ictx, 0, 0, 0)) {
1498 		case -1:
1499 			break;
1500 		case 0:
1501 			screen_write_clearendofscreen(sctx, bg);
1502 			break;
1503 		case 1:
1504 			screen_write_clearstartofscreen(sctx, bg);
1505 			break;
1506 		case 2:
1507 			screen_write_clearscreen(sctx, bg);
1508 			break;
1509 		case 3:
1510 			if (input_get(ictx, 1, 0, 0) == 0) {
1511 				/*
1512 				 * Linux console extension to clear history
1513 				 * (for example before locking the screen).
1514 				 */
1515 				screen_write_clearhistory(sctx);
1516 			}
1517 			break;
1518 		default:
1519 			log_debug("%s: unknown '%c'", __func__, ictx->ch);
1520 			break;
1521 		}
1522 		break;
1523 	case INPUT_CSI_EL:
1524 		switch (input_get(ictx, 0, 0, 0)) {
1525 		case -1:
1526 			break;
1527 		case 0:
1528 			screen_write_clearendofline(sctx, bg);
1529 			break;
1530 		case 1:
1531 			screen_write_clearstartofline(sctx, bg);
1532 			break;
1533 		case 2:
1534 			screen_write_clearline(sctx, bg);
1535 			break;
1536 		default:
1537 			log_debug("%s: unknown '%c'", __func__, ictx->ch);
1538 			break;
1539 		}
1540 		break;
1541 	case INPUT_CSI_HPA:
1542 		n = input_get(ictx, 0, 1, 1);
1543 		if (n != -1)
1544 			screen_write_cursormove(sctx, n - 1, -1, 1);
1545 		break;
1546 	case INPUT_CSI_ICH:
1547 		n = input_get(ictx, 0, 1, 1);
1548 		if (n != -1)
1549 			screen_write_insertcharacter(sctx, n, bg);
1550 		break;
1551 	case INPUT_CSI_IL:
1552 		n = input_get(ictx, 0, 1, 1);
1553 		if (n != -1)
1554 			screen_write_insertline(sctx, n, bg);
1555 		break;
1556 	case INPUT_CSI_REP:
1557 		n = input_get(ictx, 0, 1, 1);
1558 		if (n == -1)
1559 			break;
1560 
1561 		m = screen_size_x(s) - s->cx;
1562 		if (n > m)
1563 			n = m;
1564 
1565 		if (ictx->last == -1)
1566 			break;
1567 		ictx->ch = ictx->last;
1568 
1569 		for (i = 0; i < n; i++)
1570 			input_print(ictx);
1571 		break;
1572 	case INPUT_CSI_RCP:
1573 		input_restore_state(ictx);
1574 		break;
1575 	case INPUT_CSI_RM:
1576 		input_csi_dispatch_rm(ictx);
1577 		break;
1578 	case INPUT_CSI_RM_PRIVATE:
1579 		input_csi_dispatch_rm_private(ictx);
1580 		break;
1581 	case INPUT_CSI_SCP:
1582 		input_save_state(ictx);
1583 		break;
1584 	case INPUT_CSI_SGR:
1585 		input_csi_dispatch_sgr(ictx);
1586 		break;
1587 	case INPUT_CSI_SM:
1588 		input_csi_dispatch_sm(ictx);
1589 		break;
1590 	case INPUT_CSI_SM_PRIVATE:
1591 		input_csi_dispatch_sm_private(ictx);
1592 		break;
1593 	case INPUT_CSI_SU:
1594 		n = input_get(ictx, 0, 1, 1);
1595 		if (n != -1)
1596 			screen_write_scrollup(sctx, n, bg);
1597 		break;
1598 	case INPUT_CSI_SD:
1599 		n = input_get(ictx, 0, 1, 1);
1600 		if (n != -1)
1601 			screen_write_scrolldown(sctx, n, bg);
1602 		break;
1603 	case INPUT_CSI_TBC:
1604 		switch (input_get(ictx, 0, 0, 0)) {
1605 		case -1:
1606 			break;
1607 		case 0:
1608 			if (s->cx < screen_size_x(s))
1609 				bit_clear(s->tabs, s->cx);
1610 			break;
1611 		case 3:
1612 			bit_nclear(s->tabs, 0, screen_size_x(s) - 1);
1613 			break;
1614 		default:
1615 			log_debug("%s: unknown '%c'", __func__, ictx->ch);
1616 			break;
1617 		}
1618 		break;
1619 	case INPUT_CSI_VPA:
1620 		n = input_get(ictx, 0, 1, 1);
1621 		if (n != -1)
1622 			screen_write_cursormove(sctx, -1, n - 1, 1);
1623 		break;
1624 	case INPUT_CSI_DECSCUSR:
1625 		n = input_get(ictx, 0, 0, 0);
1626 		if (n != -1)
1627 			screen_set_cursor_style(n, &s->cstyle, &s->mode);
1628 		break;
1629 	case INPUT_CSI_XDA:
1630 		n = input_get(ictx, 0, 0, 0);
1631 		if (n == 0)
1632 			input_reply(ictx, "\033P>|tmux %s\033\\", getversion());
1633 		break;
1634 
1635 	}
1636 
1637 	ictx->last = -1;
1638 	return (0);
1639 }
1640 
1641 /* Handle CSI RM. */
1642 static void
1643 input_csi_dispatch_rm(struct input_ctx *ictx)
1644 {
1645 	struct screen_write_ctx	*sctx = &ictx->ctx;
1646 	u_int			 i;
1647 
1648 	for (i = 0; i < ictx->param_list_len; i++) {
1649 		switch (input_get(ictx, i, 0, -1)) {
1650 		case -1:
1651 			break;
1652 		case 4:		/* IRM */
1653 			screen_write_mode_clear(sctx, MODE_INSERT);
1654 			break;
1655 		case 34:
1656 			screen_write_mode_set(sctx, MODE_CURSOR_VERY_VISIBLE);
1657 			break;
1658 		default:
1659 			log_debug("%s: unknown '%c'", __func__, ictx->ch);
1660 			break;
1661 		}
1662 	}
1663 }
1664 
1665 /* Handle CSI private RM. */
1666 static void
1667 input_csi_dispatch_rm_private(struct input_ctx *ictx)
1668 {
1669 	struct screen_write_ctx	*sctx = &ictx->ctx;
1670 	struct grid_cell	*gc = &ictx->cell.cell;
1671 	u_int			 i;
1672 
1673 	for (i = 0; i < ictx->param_list_len; i++) {
1674 		switch (input_get(ictx, i, 0, -1)) {
1675 		case -1:
1676 			break;
1677 		case 1:		/* DECCKM */
1678 			screen_write_mode_clear(sctx, MODE_KCURSOR);
1679 			break;
1680 		case 3:		/* DECCOLM */
1681 			screen_write_cursormove(sctx, 0, 0, 1);
1682 			screen_write_clearscreen(sctx, gc->bg);
1683 			break;
1684 		case 6:		/* DECOM */
1685 			screen_write_mode_clear(sctx, MODE_ORIGIN);
1686 			screen_write_cursormove(sctx, 0, 0, 1);
1687 			break;
1688 		case 7:		/* DECAWM */
1689 			screen_write_mode_clear(sctx, MODE_WRAP);
1690 			break;
1691 		case 12:
1692 			screen_write_mode_clear(sctx, MODE_CURSOR_BLINKING);
1693 			screen_write_mode_set(sctx, MODE_CURSOR_BLINKING_SET);
1694 			break;
1695 		case 25:	/* TCEM */
1696 			screen_write_mode_clear(sctx, MODE_CURSOR);
1697 			break;
1698 		case 1000:
1699 		case 1001:
1700 		case 1002:
1701 		case 1003:
1702 			screen_write_mode_clear(sctx, ALL_MOUSE_MODES);
1703 			break;
1704 		case 1004:
1705 			screen_write_mode_clear(sctx, MODE_FOCUSON);
1706 			break;
1707 		case 1005:
1708 			screen_write_mode_clear(sctx, MODE_MOUSE_UTF8);
1709 			break;
1710 		case 1006:
1711 			screen_write_mode_clear(sctx, MODE_MOUSE_SGR);
1712 			break;
1713 		case 47:
1714 		case 1047:
1715 			screen_write_alternateoff(sctx, gc, 0);
1716 			break;
1717 		case 1049:
1718 			screen_write_alternateoff(sctx, gc, 1);
1719 			break;
1720 		case 2004:
1721 			screen_write_mode_clear(sctx, MODE_BRACKETPASTE);
1722 			break;
1723 		default:
1724 			log_debug("%s: unknown '%c'", __func__, ictx->ch);
1725 			break;
1726 		}
1727 	}
1728 }
1729 
1730 /* Handle CSI SM. */
1731 static void
1732 input_csi_dispatch_sm(struct input_ctx *ictx)
1733 {
1734 	struct screen_write_ctx	*sctx = &ictx->ctx;
1735 	u_int			 i;
1736 
1737 	for (i = 0; i < ictx->param_list_len; i++) {
1738 		switch (input_get(ictx, i, 0, -1)) {
1739 		case -1:
1740 			break;
1741 		case 4:		/* IRM */
1742 			screen_write_mode_set(sctx, MODE_INSERT);
1743 			break;
1744 		case 34:
1745 			screen_write_mode_clear(sctx, MODE_CURSOR_VERY_VISIBLE);
1746 			break;
1747 		default:
1748 			log_debug("%s: unknown '%c'", __func__, ictx->ch);
1749 			break;
1750 		}
1751 	}
1752 }
1753 
1754 /* Handle CSI private SM. */
1755 static void
1756 input_csi_dispatch_sm_private(struct input_ctx *ictx)
1757 {
1758 	struct screen_write_ctx	*sctx = &ictx->ctx;
1759 	struct grid_cell	*gc = &ictx->cell.cell;
1760 	u_int			 i;
1761 
1762 	for (i = 0; i < ictx->param_list_len; i++) {
1763 		switch (input_get(ictx, i, 0, -1)) {
1764 		case -1:
1765 			break;
1766 		case 1:		/* DECCKM */
1767 			screen_write_mode_set(sctx, MODE_KCURSOR);
1768 			break;
1769 		case 3:		/* DECCOLM */
1770 			screen_write_cursormove(sctx, 0, 0, 1);
1771 			screen_write_clearscreen(sctx, ictx->cell.cell.bg);
1772 			break;
1773 		case 6:		/* DECOM */
1774 			screen_write_mode_set(sctx, MODE_ORIGIN);
1775 			screen_write_cursormove(sctx, 0, 0, 1);
1776 			break;
1777 		case 7:		/* DECAWM */
1778 			screen_write_mode_set(sctx, MODE_WRAP);
1779 			break;
1780 		case 12:
1781 			screen_write_mode_set(sctx, MODE_CURSOR_BLINKING);
1782 			screen_write_mode_set(sctx, MODE_CURSOR_BLINKING_SET);
1783 			break;
1784 		case 25:	/* TCEM */
1785 			screen_write_mode_set(sctx, MODE_CURSOR);
1786 			break;
1787 		case 1000:
1788 			screen_write_mode_clear(sctx, ALL_MOUSE_MODES);
1789 			screen_write_mode_set(sctx, MODE_MOUSE_STANDARD);
1790 			break;
1791 		case 1002:
1792 			screen_write_mode_clear(sctx, ALL_MOUSE_MODES);
1793 			screen_write_mode_set(sctx, MODE_MOUSE_BUTTON);
1794 			break;
1795 		case 1003:
1796 			screen_write_mode_clear(sctx, ALL_MOUSE_MODES);
1797 			screen_write_mode_set(sctx, MODE_MOUSE_ALL);
1798 			break;
1799 		case 1004:
1800 			screen_write_mode_set(sctx, MODE_FOCUSON);
1801 			break;
1802 		case 1005:
1803 			screen_write_mode_set(sctx, MODE_MOUSE_UTF8);
1804 			break;
1805 		case 1006:
1806 			screen_write_mode_set(sctx, MODE_MOUSE_SGR);
1807 			break;
1808 		case 47:
1809 		case 1047:
1810 			screen_write_alternateon(sctx, gc, 0);
1811 			break;
1812 		case 1049:
1813 			screen_write_alternateon(sctx, gc, 1);
1814 			break;
1815 		case 2004:
1816 			screen_write_mode_set(sctx, MODE_BRACKETPASTE);
1817 			break;
1818 		default:
1819 			log_debug("%s: unknown '%c'", __func__, ictx->ch);
1820 			break;
1821 		}
1822 	}
1823 }
1824 
1825 /* Handle CSI window operations. */
1826 static void
1827 input_csi_dispatch_winops(struct input_ctx *ictx)
1828 {
1829 	struct screen_write_ctx	*sctx = &ictx->ctx;
1830 	struct screen		*s = sctx->s;
1831 	struct window_pane	*wp = ictx->wp;
1832 	u_int			 x = screen_size_x(s), y = screen_size_y(s);
1833 	int			 n, m;
1834 
1835 	m = 0;
1836 	while ((n = input_get(ictx, m, 0, -1)) != -1) {
1837 		switch (n) {
1838 		case 1:
1839 		case 2:
1840 		case 5:
1841 		case 6:
1842 		case 7:
1843 		case 11:
1844 		case 13:
1845 		case 14:
1846 		case 19:
1847 		case 20:
1848 		case 21:
1849 		case 24:
1850 			break;
1851 		case 3:
1852 		case 4:
1853 		case 8:
1854 			m++;
1855 			if (input_get(ictx, m, 0, -1) == -1)
1856 				return;
1857 			/* FALLTHROUGH */
1858 		case 9:
1859 		case 10:
1860 			m++;
1861 			if (input_get(ictx, m, 0, -1) == -1)
1862 				return;
1863 			break;
1864 		case 22:
1865 			m++;
1866 			switch (input_get(ictx, m, 0, -1)) {
1867 			case -1:
1868 				return;
1869 			case 0:
1870 			case 2:
1871 				screen_push_title(sctx->s);
1872 				break;
1873 			}
1874 			break;
1875 		case 23:
1876 			m++;
1877 			switch (input_get(ictx, m, 0, -1)) {
1878 			case -1:
1879 				return;
1880 			case 0:
1881 			case 2:
1882 				screen_pop_title(sctx->s);
1883 				if (wp == NULL)
1884 					break;
1885 				notify_pane("pane-title-changed", wp);
1886 				server_redraw_window_borders(wp->window);
1887 				server_status_window(wp->window);
1888 				break;
1889 			}
1890 			break;
1891 		case 18:
1892 			input_reply(ictx, "\033[8;%u;%ut", y, x);
1893 			break;
1894 		default:
1895 			log_debug("%s: unknown '%c'", __func__, ictx->ch);
1896 			break;
1897 		}
1898 		m++;
1899 	}
1900 }
1901 
1902 /* Helper for 256 colour SGR. */
1903 static int
1904 input_csi_dispatch_sgr_256_do(struct input_ctx *ictx, int fgbg, int c)
1905 {
1906 	struct grid_cell	*gc = &ictx->cell.cell;
1907 
1908 	if (c == -1 || c > 255) {
1909 		if (fgbg == 38)
1910 			gc->fg = 8;
1911 		else if (fgbg == 48)
1912 			gc->bg = 8;
1913 	} else {
1914 		if (fgbg == 38)
1915 			gc->fg = c | COLOUR_FLAG_256;
1916 		else if (fgbg == 48)
1917 			gc->bg = c | COLOUR_FLAG_256;
1918 		else if (fgbg == 58)
1919 			gc->us = c | COLOUR_FLAG_256;
1920 	}
1921 	return (1);
1922 }
1923 
1924 /* Handle CSI SGR for 256 colours. */
1925 static void
1926 input_csi_dispatch_sgr_256(struct input_ctx *ictx, int fgbg, u_int *i)
1927 {
1928 	int	c;
1929 
1930 	c = input_get(ictx, (*i) + 1, 0, -1);
1931 	if (input_csi_dispatch_sgr_256_do(ictx, fgbg, c))
1932 		(*i)++;
1933 }
1934 
1935 /* Helper for RGB colour SGR. */
1936 static int
1937 input_csi_dispatch_sgr_rgb_do(struct input_ctx *ictx, int fgbg, int r, int g,
1938     int b)
1939 {
1940 	struct grid_cell	*gc = &ictx->cell.cell;
1941 
1942 	if (r == -1 || r > 255)
1943 		return (0);
1944 	if (g == -1 || g > 255)
1945 		return (0);
1946 	if (b == -1 || b > 255)
1947 		return (0);
1948 
1949 	if (fgbg == 38)
1950 		gc->fg = colour_join_rgb(r, g, b);
1951 	else if (fgbg == 48)
1952 		gc->bg = colour_join_rgb(r, g, b);
1953 	else if (fgbg == 58)
1954 		gc->us = colour_join_rgb(r, g, b);
1955 	return (1);
1956 }
1957 
1958 /* Handle CSI SGR for RGB colours. */
1959 static void
1960 input_csi_dispatch_sgr_rgb(struct input_ctx *ictx, int fgbg, u_int *i)
1961 {
1962 	int	r, g, b;
1963 
1964 	r = input_get(ictx, (*i) + 1, 0, -1);
1965 	g = input_get(ictx, (*i) + 2, 0, -1);
1966 	b = input_get(ictx, (*i) + 3, 0, -1);
1967 	if (input_csi_dispatch_sgr_rgb_do(ictx, fgbg, r, g, b))
1968 		(*i) += 3;
1969 }
1970 
1971 /* Handle CSI SGR with a ISO parameter. */
1972 static void
1973 input_csi_dispatch_sgr_colon(struct input_ctx *ictx, u_int i)
1974 {
1975 	struct grid_cell	*gc = &ictx->cell.cell;
1976 	char			*s = ictx->param_list[i].str, *copy, *ptr, *out;
1977 	int			 p[8];
1978 	u_int			 n;
1979 	const char		*errstr;
1980 
1981 	for (n = 0; n < nitems(p); n++)
1982 		p[n] = -1;
1983 	n = 0;
1984 
1985 	ptr = copy = xstrdup(s);
1986 	while ((out = strsep(&ptr, ":")) != NULL) {
1987 		if (*out != '\0') {
1988 			p[n++] = strtonum(out, 0, INT_MAX, &errstr);
1989 			if (errstr != NULL || n == nitems(p)) {
1990 				free(copy);
1991 				return;
1992 			}
1993 		} else {
1994 			n++;
1995 			if (n == nitems(p)) {
1996 				free(copy);
1997 				return;
1998 			}
1999 		}
2000 		log_debug("%s: %u = %d", __func__, n - 1, p[n - 1]);
2001 	}
2002 	free(copy);
2003 
2004 	if (n == 0)
2005 		return;
2006 	if (p[0] == 4) {
2007 		if (n != 2)
2008 			return;
2009 		switch (p[1]) {
2010 		case 0:
2011 			gc->attr &= ~GRID_ATTR_ALL_UNDERSCORE;
2012 			break;
2013 		case 1:
2014 			gc->attr &= ~GRID_ATTR_ALL_UNDERSCORE;
2015 			gc->attr |= GRID_ATTR_UNDERSCORE;
2016 			break;
2017 		case 2:
2018 			gc->attr &= ~GRID_ATTR_ALL_UNDERSCORE;
2019 			gc->attr |= GRID_ATTR_UNDERSCORE_2;
2020 			break;
2021 		case 3:
2022 			gc->attr &= ~GRID_ATTR_ALL_UNDERSCORE;
2023 			gc->attr |= GRID_ATTR_UNDERSCORE_3;
2024 			break;
2025 		case 4:
2026 			gc->attr &= ~GRID_ATTR_ALL_UNDERSCORE;
2027 			gc->attr |= GRID_ATTR_UNDERSCORE_4;
2028 			break;
2029 		case 5:
2030 			gc->attr &= ~GRID_ATTR_ALL_UNDERSCORE;
2031 			gc->attr |= GRID_ATTR_UNDERSCORE_5;
2032 			break;
2033 		}
2034 		return;
2035 	}
2036 	if (n < 2 || (p[0] != 38 && p[0] != 48 && p[0] != 58))
2037 		return;
2038 	switch (p[1]) {
2039 	case 2:
2040 		if (n < 3)
2041 			break;
2042 		if (n == 5)
2043 			i = 2;
2044 		else
2045 			i = 3;
2046 		if (n < i + 3)
2047 			break;
2048 		input_csi_dispatch_sgr_rgb_do(ictx, p[0], p[i], p[i + 1],
2049 		    p[i + 2]);
2050 		break;
2051 	case 5:
2052 		if (n < 3)
2053 			break;
2054 		input_csi_dispatch_sgr_256_do(ictx, p[0], p[2]);
2055 		break;
2056 	}
2057 }
2058 
2059 /* Handle CSI SGR. */
2060 static void
2061 input_csi_dispatch_sgr(struct input_ctx *ictx)
2062 {
2063 	struct grid_cell	*gc = &ictx->cell.cell;
2064 	u_int			 i;
2065 	int			 n;
2066 
2067 	if (ictx->param_list_len == 0) {
2068 		memcpy(gc, &grid_default_cell, sizeof *gc);
2069 		return;
2070 	}
2071 
2072 	for (i = 0; i < ictx->param_list_len; i++) {
2073 		if (ictx->param_list[i].type == INPUT_STRING) {
2074 			input_csi_dispatch_sgr_colon(ictx, i);
2075 			continue;
2076 		}
2077 		n = input_get(ictx, i, 0, 0);
2078 		if (n == -1)
2079 			continue;
2080 
2081 		if (n == 38 || n == 48 || n == 58) {
2082 			i++;
2083 			switch (input_get(ictx, i, 0, -1)) {
2084 			case 2:
2085 				input_csi_dispatch_sgr_rgb(ictx, n, &i);
2086 				break;
2087 			case 5:
2088 				input_csi_dispatch_sgr_256(ictx, n, &i);
2089 				break;
2090 			}
2091 			continue;
2092 		}
2093 
2094 		switch (n) {
2095 		case 0:
2096 			memcpy(gc, &grid_default_cell, sizeof *gc);
2097 			break;
2098 		case 1:
2099 			gc->attr |= GRID_ATTR_BRIGHT;
2100 			break;
2101 		case 2:
2102 			gc->attr |= GRID_ATTR_DIM;
2103 			break;
2104 		case 3:
2105 			gc->attr |= GRID_ATTR_ITALICS;
2106 			break;
2107 		case 4:
2108 			gc->attr &= ~GRID_ATTR_ALL_UNDERSCORE;
2109 			gc->attr |= GRID_ATTR_UNDERSCORE;
2110 			break;
2111 		case 5:
2112 		case 6:
2113 			gc->attr |= GRID_ATTR_BLINK;
2114 			break;
2115 		case 7:
2116 			gc->attr |= GRID_ATTR_REVERSE;
2117 			break;
2118 		case 8:
2119 			gc->attr |= GRID_ATTR_HIDDEN;
2120 			break;
2121 		case 9:
2122 			gc->attr |= GRID_ATTR_STRIKETHROUGH;
2123 			break;
2124 		case 21:
2125 			gc->attr &= ~GRID_ATTR_ALL_UNDERSCORE;
2126 			gc->attr |= GRID_ATTR_UNDERSCORE_2;
2127 			break;
2128 		case 22:
2129 			gc->attr &= ~(GRID_ATTR_BRIGHT|GRID_ATTR_DIM);
2130 			break;
2131 		case 23:
2132 			gc->attr &= ~GRID_ATTR_ITALICS;
2133 			break;
2134 		case 24:
2135 			gc->attr &= ~GRID_ATTR_ALL_UNDERSCORE;
2136 			break;
2137 		case 25:
2138 			gc->attr &= ~GRID_ATTR_BLINK;
2139 			break;
2140 		case 27:
2141 			gc->attr &= ~GRID_ATTR_REVERSE;
2142 			break;
2143 		case 28:
2144 			gc->attr &= ~GRID_ATTR_HIDDEN;
2145 			break;
2146 		case 29:
2147 			gc->attr &= ~GRID_ATTR_STRIKETHROUGH;
2148 			break;
2149 		case 30:
2150 		case 31:
2151 		case 32:
2152 		case 33:
2153 		case 34:
2154 		case 35:
2155 		case 36:
2156 		case 37:
2157 			gc->fg = n - 30;
2158 			break;
2159 		case 39:
2160 			gc->fg = 8;
2161 			break;
2162 		case 40:
2163 		case 41:
2164 		case 42:
2165 		case 43:
2166 		case 44:
2167 		case 45:
2168 		case 46:
2169 		case 47:
2170 			gc->bg = n - 40;
2171 			break;
2172 		case 49:
2173 			gc->bg = 8;
2174 			break;
2175 		case 53:
2176 			gc->attr |= GRID_ATTR_OVERLINE;
2177 			break;
2178 		case 55:
2179 			gc->attr &= ~GRID_ATTR_OVERLINE;
2180 			break;
2181 		case 59:
2182 			gc->us = 0;
2183 			break;
2184 		case 90:
2185 		case 91:
2186 		case 92:
2187 		case 93:
2188 		case 94:
2189 		case 95:
2190 		case 96:
2191 		case 97:
2192 			gc->fg = n;
2193 			break;
2194 		case 100:
2195 		case 101:
2196 		case 102:
2197 		case 103:
2198 		case 104:
2199 		case 105:
2200 		case 106:
2201 		case 107:
2202 			gc->bg = n - 10;
2203 			break;
2204 		}
2205 	}
2206 }
2207 
2208 /* End of input with BEL. */
2209 static int
2210 input_end_bel(struct input_ctx *ictx)
2211 {
2212 	log_debug("%s", __func__);
2213 
2214 	ictx->input_end = INPUT_END_BEL;
2215 
2216 	return (0);
2217 }
2218 
2219 /* DCS string started. */
2220 static void
2221 input_enter_dcs(struct input_ctx *ictx)
2222 {
2223 	log_debug("%s", __func__);
2224 
2225 	input_clear(ictx);
2226 	input_start_timer(ictx);
2227 	ictx->last = -1;
2228 }
2229 
2230 /* DCS terminator (ST) received. */
2231 static int
2232 input_dcs_dispatch(struct input_ctx *ictx)
2233 {
2234 	struct window_pane	*wp = ictx->wp;
2235 	struct screen_write_ctx	*sctx = &ictx->ctx;
2236 	u_char			*buf = ictx->input_buf;
2237 	size_t			 len = ictx->input_len;
2238 	const char		 prefix[] = "tmux;";
2239 	const u_int		 prefixlen = (sizeof prefix) - 1;
2240 	long long		 allow_passthrough = 0;
2241 
2242 	if (wp == NULL)
2243 		return (0);
2244 	if (ictx->flags & INPUT_DISCARD)
2245 		return (0);
2246 	allow_passthrough = options_get_number(wp->options,
2247 	    "allow-passthrough");
2248 	if (!allow_passthrough)
2249 		return (0);
2250 	log_debug("%s: \"%s\"", __func__, buf);
2251 
2252 	if (len >= prefixlen && strncmp(buf, prefix, prefixlen) == 0) {
2253 		screen_write_rawstring(sctx, buf + prefixlen, len - prefixlen,
2254 		    allow_passthrough == 2);
2255 	}
2256 
2257 	return (0);
2258 }
2259 
2260 /* OSC string started. */
2261 static void
2262 input_enter_osc(struct input_ctx *ictx)
2263 {
2264 	log_debug("%s", __func__);
2265 
2266 	input_clear(ictx);
2267 	input_start_timer(ictx);
2268 	ictx->last = -1;
2269 }
2270 
2271 /* OSC terminator (ST) received. */
2272 static void
2273 input_exit_osc(struct input_ctx *ictx)
2274 {
2275 	struct screen_write_ctx	*sctx = &ictx->ctx;
2276 	struct window_pane	*wp = ictx->wp;
2277 	u_char			*p = ictx->input_buf;
2278 	u_int			 option;
2279 
2280 	if (ictx->flags & INPUT_DISCARD)
2281 		return;
2282 	if (ictx->input_len < 1 || *p < '0' || *p > '9')
2283 		return;
2284 
2285 	log_debug("%s: \"%s\" (end %s)", __func__, p,
2286 	    ictx->input_end == INPUT_END_ST ? "ST" : "BEL");
2287 
2288 	option = 0;
2289 	while (*p >= '0' && *p <= '9')
2290 		option = option * 10 + *p++ - '0';
2291 	if (*p != ';' && *p != '\0')
2292 		return;
2293 	if (*p == ';')
2294 		p++;
2295 
2296 	switch (option) {
2297 	case 0:
2298 	case 2:
2299 		if (screen_set_title(sctx->s, p) && wp != NULL) {
2300 			notify_pane("pane-title-changed", wp);
2301 			server_redraw_window_borders(wp->window);
2302 			server_status_window(wp->window);
2303 		}
2304 		break;
2305 	case 4:
2306 		input_osc_4(ictx, p);
2307 		break;
2308 	case 7:
2309 		if (utf8_isvalid(p)) {
2310 			screen_set_path(sctx->s, p);
2311 			if (wp != NULL) {
2312 				server_redraw_window_borders(wp->window);
2313 				server_status_window(wp->window);
2314 			}
2315 		}
2316 		break;
2317 	case 8:
2318 		input_osc_8(ictx, p);
2319 		break;
2320 	case 10:
2321 		input_osc_10(ictx, p);
2322 		break;
2323 	case 11:
2324 		input_osc_11(ictx, p);
2325 		break;
2326 	case 12:
2327 		input_osc_12(ictx, p);
2328 		break;
2329 	case 52:
2330 		input_osc_52(ictx, p);
2331 		break;
2332 	case 104:
2333 		input_osc_104(ictx, p);
2334 		break;
2335 	case 110:
2336 		input_osc_110(ictx, p);
2337 		break;
2338 	case 111:
2339 		input_osc_111(ictx, p);
2340 		break;
2341 	case 112:
2342 		input_osc_112(ictx, p);
2343 		break;
2344 	default:
2345 		log_debug("%s: unknown '%u'", __func__, option);
2346 		break;
2347 	}
2348 }
2349 
2350 /* APC string started. */
2351 static void
2352 input_enter_apc(struct input_ctx *ictx)
2353 {
2354 	log_debug("%s", __func__);
2355 
2356 	input_clear(ictx);
2357 	input_start_timer(ictx);
2358 	ictx->last = -1;
2359 }
2360 
2361 /* APC terminator (ST) received. */
2362 static void
2363 input_exit_apc(struct input_ctx *ictx)
2364 {
2365 	struct screen_write_ctx	*sctx = &ictx->ctx;
2366 	struct window_pane	*wp = ictx->wp;
2367 
2368 	if (ictx->flags & INPUT_DISCARD)
2369 		return;
2370 	log_debug("%s: \"%s\"", __func__, ictx->input_buf);
2371 
2372 	if (screen_set_title(sctx->s, ictx->input_buf) && wp != NULL) {
2373 		notify_pane("pane-title-changed", wp);
2374 		server_redraw_window_borders(wp->window);
2375 		server_status_window(wp->window);
2376 	}
2377 }
2378 
2379 /* Rename string started. */
2380 static void
2381 input_enter_rename(struct input_ctx *ictx)
2382 {
2383 	log_debug("%s", __func__);
2384 
2385 	input_clear(ictx);
2386 	input_start_timer(ictx);
2387 	ictx->last = -1;
2388 }
2389 
2390 /* Rename terminator (ST) received. */
2391 static void
2392 input_exit_rename(struct input_ctx *ictx)
2393 {
2394 	struct window_pane	*wp = ictx->wp;
2395 	struct window		*w;
2396 	struct options_entry	*o;
2397 
2398 	if (wp == NULL)
2399 		return;
2400 	if (ictx->flags & INPUT_DISCARD)
2401 		return;
2402 	if (!options_get_number(ictx->wp->options, "allow-rename"))
2403 		return;
2404 	log_debug("%s: \"%s\"", __func__, ictx->input_buf);
2405 
2406 	if (!utf8_isvalid(ictx->input_buf))
2407 		return;
2408 	w = wp->window;
2409 
2410 	if (ictx->input_len == 0) {
2411 		o = options_get_only(w->options, "automatic-rename");
2412 		if (o != NULL)
2413 			options_remove_or_default(o, -1, NULL);
2414 		if (!options_get_number(w->options, "automatic-rename"))
2415 			window_set_name(w, "");
2416 	} else {
2417 		options_set_number(w->options, "automatic-rename", 0);
2418 		window_set_name(w, ictx->input_buf);
2419 	}
2420 	server_redraw_window_borders(w);
2421 	server_status_window(w);
2422 }
2423 
2424 /* Open UTF-8 character. */
2425 static int
2426 input_top_bit_set(struct input_ctx *ictx)
2427 {
2428 	struct screen_write_ctx	*sctx = &ictx->ctx;
2429 	struct utf8_data	*ud = &ictx->utf8data;
2430 
2431 	ictx->last = -1;
2432 
2433 	if (!ictx->utf8started) {
2434 		if (utf8_open(ud, ictx->ch) != UTF8_MORE)
2435 			return (0);
2436 		ictx->utf8started = 1;
2437 		return (0);
2438 	}
2439 
2440 	switch (utf8_append(ud, ictx->ch)) {
2441 	case UTF8_MORE:
2442 		return (0);
2443 	case UTF8_ERROR:
2444 		ictx->utf8started = 0;
2445 		return (0);
2446 	case UTF8_DONE:
2447 		break;
2448 	}
2449 	ictx->utf8started = 0;
2450 
2451 	log_debug("%s %hhu '%*s' (width %hhu)", __func__, ud->size,
2452 	    (int)ud->size, ud->data, ud->width);
2453 
2454 	utf8_copy(&ictx->cell.cell.data, ud);
2455 	screen_write_collect_add(sctx, &ictx->cell.cell);
2456 
2457 	return (0);
2458 }
2459 
2460 /* Reply to a colour request. */
2461 static void
2462 input_osc_colour_reply(struct input_ctx *ictx, u_int n, int c)
2463 {
2464     u_char	 r, g, b;
2465     const char	*end;
2466 
2467     if (c != -1)
2468 	    c = colour_force_rgb(c);
2469     if (c == -1)
2470 	    return;
2471     colour_split_rgb(c, &r, &g, &b);
2472 
2473     if (ictx->input_end == INPUT_END_BEL)
2474 	    end = "\007";
2475     else
2476 	    end = "\033\\";
2477     input_reply(ictx, "\033]%u;rgb:%02hhx%02hhx/%02hhx%02hhx/%02hhx%02hhx%s",
2478 	n, r, r, g, g, b, b, end);
2479 }
2480 
2481 /* Handle the OSC 4 sequence for setting (multiple) palette entries. */
2482 static void
2483 input_osc_4(struct input_ctx *ictx, const char *p)
2484 {
2485 	char	*copy, *s, *next = NULL;
2486 	long	 idx;
2487 	int	 c, bad = 0, redraw = 0;
2488 
2489 	copy = s = xstrdup(p);
2490 	while (s != NULL && *s != '\0') {
2491 		idx = strtol(s, &next, 10);
2492 		if (*next++ != ';') {
2493 			bad = 1;
2494 			break;
2495 		}
2496 		if (idx < 0 || idx >= 256) {
2497 			bad = 1;
2498 			break;
2499 		}
2500 
2501 		s = strsep(&next, ";");
2502 		if (strcmp(s, "?") == 0) {
2503 			c = colour_palette_get(ictx->palette, idx);
2504 			if (c != -1)
2505 				input_osc_colour_reply(ictx, 4, c);
2506 			continue;
2507 		}
2508 		if ((c = colour_parseX11(s)) == -1) {
2509 			s = next;
2510 			continue;
2511 		}
2512 		if (colour_palette_set(ictx->palette, idx, c))
2513 			redraw = 1;
2514 		s = next;
2515 	}
2516 	if (bad)
2517 		log_debug("bad OSC 4: %s", p);
2518 	if (redraw)
2519 		screen_write_fullredraw(&ictx->ctx);
2520 	free(copy);
2521 }
2522 
2523 /* Handle the OSC 8 sequence for embedding hyperlinks. */
2524 static void
2525 input_osc_8(struct input_ctx *ictx, const char *p)
2526 {
2527 	struct hyperlinks	*hl = ictx->ctx.s->hyperlinks;
2528 	struct grid_cell	*gc = &ictx->cell.cell;
2529 	const char		*start, *end, *uri;
2530 	char	    		*id = NULL;
2531 
2532 	for (start = p; (end = strpbrk(start, ":;")) != NULL; start = end + 1) {
2533 		if (end - start >= 4 && strncmp(start, "id=", 3) == 0) {
2534 			if (id != NULL)
2535 				goto bad;
2536 			id = xstrndup(start + 3, end - start - 3);
2537 		}
2538 
2539 		/* The first ; is the end of parameters and start of the URI. */
2540 		if (*end == ';')
2541 			break;
2542 	}
2543 	if (end == NULL || *end != ';')
2544 		goto bad;
2545 	uri = end + 1;
2546 	if (*uri == '\0') {
2547 		gc->link = 0;
2548 		free(id);
2549 		return;
2550 	}
2551 	gc->link = hyperlinks_put(hl, uri, id);
2552 	if (id == NULL)
2553 		log_debug("hyperlink (anonymous) %s = %u", uri, gc->link);
2554 	else
2555 		log_debug("hyperlink (id=%s) %s = %u", id, uri, gc->link);
2556 	free(id);
2557 	return;
2558 
2559 bad:
2560 	log_debug("bad OSC 8 %s", p);
2561 	free(id);
2562 }
2563 
2564 /*
2565  * Get a client with a foreground for the pane. There isn't much to choose
2566  * between them so just use the first.
2567  */
2568 static int
2569 input_get_fg_client(struct window_pane *wp)
2570 {
2571 	struct window	*w = wp->window;
2572 	struct client	*loop;
2573 
2574 	TAILQ_FOREACH(loop, &clients, entry) {
2575 		if (loop->flags & CLIENT_UNATTACHEDFLAGS)
2576 			continue;
2577 		if (loop->session == NULL || !session_has(loop->session, w))
2578 			continue;
2579 		if (loop->tty.fg == -1)
2580 			continue;
2581 		return (loop->tty.fg);
2582 	}
2583 	return (-1);
2584 }
2585 
2586 /* Get a client with a background for the pane. */
2587 static int
2588 input_get_bg_client(struct window_pane *wp)
2589 {
2590 	struct window	*w = wp->window;
2591 	struct client	*loop;
2592 
2593 	TAILQ_FOREACH(loop, &clients, entry) {
2594 		if (loop->flags & CLIENT_UNATTACHEDFLAGS)
2595 			continue;
2596 		if (loop->session == NULL || !session_has(loop->session, w))
2597 			continue;
2598 		if (loop->tty.bg == -1)
2599 			continue;
2600 		return (loop->tty.bg);
2601 	}
2602 	return (-1);
2603 }
2604 
2605 /* Handle the OSC 10 sequence for setting and querying foreground colour. */
2606 static void
2607 input_osc_10(struct input_ctx *ictx, const char *p)
2608 {
2609 	struct window_pane	*wp = ictx->wp;
2610 	struct grid_cell	 defaults;
2611 	int			 c;
2612 
2613 	if (strcmp(p, "?") == 0) {
2614 		if (wp == NULL)
2615 			return;
2616 		tty_default_colours(&defaults, wp);
2617 		if (COLOUR_DEFAULT(defaults.fg))
2618 			c = input_get_fg_client(wp);
2619 		else
2620 			c = defaults.fg;
2621 		input_osc_colour_reply(ictx, 10, c);
2622 		return;
2623 	}
2624 
2625 	if ((c = colour_parseX11(p)) == -1) {
2626 		log_debug("bad OSC 10: %s", p);
2627 		return;
2628 	}
2629 	if (ictx->palette != NULL) {
2630 		ictx->palette->fg = c;
2631 		if (wp != NULL)
2632 			wp->flags |= PANE_STYLECHANGED;
2633 		screen_write_fullredraw(&ictx->ctx);
2634 	}
2635 }
2636 
2637 /* Handle the OSC 110 sequence for resetting foreground colour. */
2638 static void
2639 input_osc_110(struct input_ctx *ictx, const char *p)
2640 {
2641 	struct window_pane	*wp = ictx->wp;
2642 
2643 	if (*p != '\0')
2644 		return;
2645 	if (ictx->palette != NULL) {
2646 		ictx->palette->fg = 8;
2647 		if (wp != NULL)
2648 			wp->flags |= PANE_STYLECHANGED;
2649 		screen_write_fullredraw(&ictx->ctx);
2650 	}
2651 }
2652 
2653 /* Handle the OSC 11 sequence for setting and querying background colour. */
2654 static void
2655 input_osc_11(struct input_ctx *ictx, const char *p)
2656 {
2657 	struct window_pane	*wp = ictx->wp;
2658 	struct grid_cell	 defaults;
2659 	int			 c;
2660 
2661 	if (strcmp(p, "?") == 0) {
2662 		if (wp == NULL)
2663 			return;
2664 		tty_default_colours(&defaults, wp);
2665 		if (COLOUR_DEFAULT(defaults.bg))
2666 			c = input_get_bg_client(wp);
2667 		else
2668 			c = defaults.bg;
2669 		input_osc_colour_reply(ictx, 11, c);
2670 		return;
2671 	}
2672 
2673 	if ((c = colour_parseX11(p)) == -1) {
2674 		log_debug("bad OSC 11: %s", p);
2675 		return;
2676 	}
2677 	if (ictx->palette != NULL) {
2678 		ictx->palette->bg = c;
2679 		if (wp != NULL)
2680 			wp->flags |= PANE_STYLECHANGED;
2681 		screen_write_fullredraw(&ictx->ctx);
2682 	}
2683 }
2684 
2685 /* Handle the OSC 111 sequence for resetting background colour. */
2686 static void
2687 input_osc_111(struct input_ctx *ictx, const char *p)
2688 {
2689 	struct window_pane	*wp = ictx->wp;
2690 
2691 	if (*p != '\0')
2692 		return;
2693 	if (ictx->palette != NULL) {
2694 		ictx->palette->bg = 8;
2695 		if (wp != NULL)
2696 			wp->flags |= PANE_STYLECHANGED;
2697 		screen_write_fullredraw(&ictx->ctx);
2698 	}
2699 }
2700 
2701 /* Handle the OSC 12 sequence for setting and querying cursor colour. */
2702 static void
2703 input_osc_12(struct input_ctx *ictx, const char *p)
2704 {
2705 	struct window_pane	*wp = ictx->wp;
2706 	int			 c;
2707 
2708 	if (strcmp(p, "?") == 0) {
2709 		if (wp != NULL) {
2710 			c = ictx->ctx.s->ccolour;
2711 			if (c == -1)
2712 				c = ictx->ctx.s->default_ccolour;
2713 			input_osc_colour_reply(ictx, 12, c);
2714 		}
2715 		return;
2716 	}
2717 
2718 	if ((c = colour_parseX11(p)) == -1) {
2719 		log_debug("bad OSC 12: %s", p);
2720 		return;
2721 	}
2722 	screen_set_cursor_colour(ictx->ctx.s, c);
2723 }
2724 
2725 /* Handle the OSC 112 sequence for resetting cursor colour. */
2726 static void
2727 input_osc_112(struct input_ctx *ictx, const char *p)
2728 {
2729 	if (*p == '\0') /* no arguments allowed */
2730 		screen_set_cursor_colour(ictx->ctx.s, -1);
2731 }
2732 
2733 
2734 /* Handle the OSC 52 sequence for setting the clipboard. */
2735 static void
2736 input_osc_52(struct input_ctx *ictx, const char *p)
2737 {
2738 	struct window_pane	*wp = ictx->wp;
2739 	char			*end;
2740 	const char		*buf = NULL;
2741 	size_t			 len = 0;
2742 	u_char			*out;
2743 	int			 outlen, state;
2744 	struct screen_write_ctx	 ctx;
2745 	struct paste_buffer	*pb;
2746 	const char*              allow = "cpqs01234567";
2747 	char                     flags[sizeof "cpqs01234567"] = "";
2748 	u_int			 i, j = 0;
2749 
2750 	if (wp == NULL)
2751 		return;
2752 	state = options_get_number(global_options, "set-clipboard");
2753 	if (state != 2)
2754 		return;
2755 
2756 	if ((end = strchr(p, ';')) == NULL)
2757 		return;
2758 	end++;
2759 	if (*end == '\0')
2760 		return;
2761 	log_debug("%s: %s", __func__, end);
2762 
2763 	for (i = 0; p + i != end; i++) {
2764 		if (strchr(allow, p[i]) != NULL && strchr(flags, p[i]) == NULL)
2765 			flags[j++] = p[i];
2766 	}
2767 	log_debug("%s: %.*s %s", __func__, (int)(end - p - 1), p, flags);
2768 
2769 	if (strcmp(end, "?") == 0) {
2770 		if ((pb = paste_get_top(NULL)) != NULL)
2771 			buf = paste_buffer_data(pb, &len);
2772 		if (ictx->input_end == INPUT_END_BEL)
2773 			input_reply_clipboard(ictx->event, buf, len, "\007");
2774 		else
2775 			input_reply_clipboard(ictx->event, buf, len, "\033\\");
2776 		return;
2777 	}
2778 
2779 	len = (strlen(end) / 4) * 3;
2780 	if (len == 0)
2781 		return;
2782 
2783 	out = xmalloc(len);
2784 	if ((outlen = b64_pton(end, out, len)) == -1) {
2785 		free(out);
2786 		return;
2787 	}
2788 
2789 	screen_write_start_pane(&ctx, wp, NULL);
2790 	screen_write_setselection(&ctx, flags, out, outlen);
2791 	screen_write_stop(&ctx);
2792 	notify_pane("pane-set-clipboard", wp);
2793 
2794 	paste_add(NULL, out, outlen);
2795 }
2796 
2797 /* Handle the OSC 104 sequence for unsetting (multiple) palette entries. */
2798 static void
2799 input_osc_104(struct input_ctx *ictx, const char *p)
2800 {
2801 	char	*copy, *s;
2802 	long	 idx;
2803 	int	 bad = 0, redraw = 0;
2804 
2805 	if (*p == '\0') {
2806 		colour_palette_clear(ictx->palette);
2807 		screen_write_fullredraw(&ictx->ctx);
2808 		return;
2809 	}
2810 
2811 	copy = s = xstrdup(p);
2812 	while (*s != '\0') {
2813 		idx = strtol(s, &s, 10);
2814 		if (*s != '\0' && *s != ';') {
2815 			bad = 1;
2816 			break;
2817 		}
2818 		if (idx < 0 || idx >= 256) {
2819 			bad = 1;
2820 			break;
2821 		}
2822 		if (colour_palette_set(ictx->palette, idx, -1))
2823 			redraw = 1;
2824 		if (*s == ';')
2825 			s++;
2826 	}
2827 	if (bad)
2828 		log_debug("bad OSC 104: %s", p);
2829 	if (redraw)
2830 		screen_write_fullredraw(&ictx->ctx);
2831 	free(copy);
2832 }
2833 
2834 void
2835 input_reply_clipboard(struct bufferevent *bev, const char *buf, size_t len,
2836     const char *end)
2837 {
2838 	char	*out = NULL;
2839 	size_t	 outlen = 0;
2840 
2841 	if (buf != NULL && len != 0) {
2842 		outlen = 4 * ((len + 2) / 3) + 1;
2843 		out = xmalloc(outlen);
2844 		if ((outlen = b64_ntop(buf, len, out, outlen)) == -1) {
2845 			free(out);
2846 			return;
2847 		}
2848 	}
2849 
2850 	bufferevent_write(bev, "\033]52;;", 6);
2851 	if (outlen != 0)
2852 		bufferevent_write(bev, out, outlen);
2853 	bufferevent_write(bev, end, strlen(end));
2854 	free(out);
2855 }
2856