tty-keys.c 21 KB

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  1. /* $OpenBSD$ */
  2. /*
  3. * Copyright (c) 2007 Nicholas Marriott <nicholas.marriott@gmail.com>
  4. *
  5. * Permission to use, copy, modify, and distribute this software for any
  6. * purpose with or without fee is hereby granted, provided that the above
  7. * copyright notice and this permission notice appear in all copies.
  8. *
  9. * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
  10. * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
  11. * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
  12. * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
  13. * WHATSOEVER RESULTING FROM LOSS OF MIND, USE, DATA OR PROFITS, WHETHER
  14. * IN AN ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING
  15. * OUT OF OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
  16. */
  17. #include <sys/types.h>
  18. #include <sys/time.h>
  19. #include <limits.h>
  20. #include <stdlib.h>
  21. #include <string.h>
  22. #include <termios.h>
  23. #include <unistd.h>
  24. #include "tmux.h"
  25. /*
  26. * Handle keys input from the outside terminal. tty_default_*_keys[] are a base
  27. * table of supported keys which are looked up in terminfo(5) and translated
  28. * into a ternary tree.
  29. */
  30. void tty_keys_add1(struct tty_key **, const char *, key_code);
  31. void tty_keys_add(struct tty *, const char *, key_code);
  32. void tty_keys_free1(struct tty_key *);
  33. struct tty_key *tty_keys_find1(struct tty_key *, const char *, size_t,
  34. size_t *);
  35. struct tty_key *tty_keys_find(struct tty *, const char *, size_t, size_t *);
  36. void tty_keys_callback(int, short, void *);
  37. int tty_keys_mouse(struct tty *, const char *, size_t, size_t *);
  38. /* Default raw keys. */
  39. struct tty_default_key_raw {
  40. const char *string;
  41. key_code key;
  42. };
  43. const struct tty_default_key_raw tty_default_raw_keys[] = {
  44. /*
  45. * Numeric keypad. Just use the vt100 escape sequences here and always
  46. * put the terminal into keypad_xmit mode. Translation of numbers
  47. * mode/applications mode is done in input-keys.c.
  48. */
  49. { "\033Oo", KEYC_KP_SLASH },
  50. { "\033Oj", KEYC_KP_STAR },
  51. { "\033Om", KEYC_KP_MINUS },
  52. { "\033Ow", KEYC_KP_SEVEN },
  53. { "\033Ox", KEYC_KP_EIGHT },
  54. { "\033Oy", KEYC_KP_NINE },
  55. { "\033Ok", KEYC_KP_PLUS },
  56. { "\033Ot", KEYC_KP_FOUR },
  57. { "\033Ou", KEYC_KP_FIVE },
  58. { "\033Ov", KEYC_KP_SIX },
  59. { "\033Oq", KEYC_KP_ONE },
  60. { "\033Or", KEYC_KP_TWO },
  61. { "\033Os", KEYC_KP_THREE },
  62. { "\033OM", KEYC_KP_ENTER },
  63. { "\033Op", KEYC_KP_ZERO },
  64. { "\033On", KEYC_KP_PERIOD },
  65. /* Arrow keys. */
  66. { "\033OA", KEYC_UP },
  67. { "\033OB", KEYC_DOWN },
  68. { "\033OC", KEYC_RIGHT },
  69. { "\033OD", KEYC_LEFT },
  70. { "\033[A", KEYC_UP },
  71. { "\033[B", KEYC_DOWN },
  72. { "\033[C", KEYC_RIGHT },
  73. { "\033[D", KEYC_LEFT },
  74. /* Other (xterm) "cursor" keys. */
  75. { "\033OH", KEYC_HOME },
  76. { "\033OF", KEYC_END },
  77. { "\033[H", KEYC_HOME },
  78. { "\033[F", KEYC_END },
  79. /* rxvt-style arrow + modifier keys. */
  80. { "\033Oa", KEYC_UP|KEYC_CTRL },
  81. { "\033Ob", KEYC_DOWN|KEYC_CTRL },
  82. { "\033Oc", KEYC_RIGHT|KEYC_CTRL },
  83. { "\033Od", KEYC_LEFT|KEYC_CTRL },
  84. { "\033[a", KEYC_UP|KEYC_SHIFT },
  85. { "\033[b", KEYC_DOWN|KEYC_SHIFT },
  86. { "\033[c", KEYC_RIGHT|KEYC_SHIFT },
  87. { "\033[d", KEYC_LEFT|KEYC_SHIFT },
  88. /* rxvt-style function + modifier keys (C = ^, S = $, C-S = @). */
  89. { "\033[11^", KEYC_F1|KEYC_CTRL },
  90. { "\033[12^", KEYC_F2|KEYC_CTRL },
  91. { "\033[13^", KEYC_F3|KEYC_CTRL },
  92. { "\033[14^", KEYC_F4|KEYC_CTRL },
  93. { "\033[15^", KEYC_F5|KEYC_CTRL },
  94. { "\033[17^", KEYC_F6|KEYC_CTRL },
  95. { "\033[18^", KEYC_F7|KEYC_CTRL },
  96. { "\033[19^", KEYC_F8|KEYC_CTRL },
  97. { "\033[20^", KEYC_F9|KEYC_CTRL },
  98. { "\033[21^", KEYC_F10|KEYC_CTRL },
  99. { "\033[23^", KEYC_F11|KEYC_CTRL },
  100. { "\033[24^", KEYC_F12|KEYC_CTRL },
  101. { "\033[2^", KEYC_IC|KEYC_CTRL },
  102. { "\033[3^", KEYC_DC|KEYC_CTRL },
  103. { "\033[7^", KEYC_HOME|KEYC_CTRL },
  104. { "\033[8^", KEYC_END|KEYC_CTRL },
  105. { "\033[6^", KEYC_NPAGE|KEYC_CTRL },
  106. { "\033[5^", KEYC_PPAGE|KEYC_CTRL },
  107. { "\033[11$", KEYC_F1|KEYC_SHIFT },
  108. { "\033[12$", KEYC_F2|KEYC_SHIFT },
  109. { "\033[13$", KEYC_F3|KEYC_SHIFT },
  110. { "\033[14$", KEYC_F4|KEYC_SHIFT },
  111. { "\033[15$", KEYC_F5|KEYC_SHIFT },
  112. { "\033[17$", KEYC_F6|KEYC_SHIFT },
  113. { "\033[18$", KEYC_F7|KEYC_SHIFT },
  114. { "\033[19$", KEYC_F8|KEYC_SHIFT },
  115. { "\033[20$", KEYC_F9|KEYC_SHIFT },
  116. { "\033[21$", KEYC_F10|KEYC_SHIFT },
  117. { "\033[23$", KEYC_F11|KEYC_SHIFT },
  118. { "\033[24$", KEYC_F12|KEYC_SHIFT },
  119. { "\033[2$", KEYC_IC|KEYC_SHIFT },
  120. { "\033[3$", KEYC_DC|KEYC_SHIFT },
  121. { "\033[7$", KEYC_HOME|KEYC_SHIFT },
  122. { "\033[8$", KEYC_END|KEYC_SHIFT },
  123. { "\033[6$", KEYC_NPAGE|KEYC_SHIFT },
  124. { "\033[5$", KEYC_PPAGE|KEYC_SHIFT },
  125. { "\033[11@", KEYC_F1|KEYC_CTRL|KEYC_SHIFT },
  126. { "\033[12@", KEYC_F2|KEYC_CTRL|KEYC_SHIFT },
  127. { "\033[13@", KEYC_F3|KEYC_CTRL|KEYC_SHIFT },
  128. { "\033[14@", KEYC_F4|KEYC_CTRL|KEYC_SHIFT },
  129. { "\033[15@", KEYC_F5|KEYC_CTRL|KEYC_SHIFT },
  130. { "\033[17@", KEYC_F6|KEYC_CTRL|KEYC_SHIFT },
  131. { "\033[18@", KEYC_F7|KEYC_CTRL|KEYC_SHIFT },
  132. { "\033[19@", KEYC_F8|KEYC_CTRL|KEYC_SHIFT },
  133. { "\033[20@", KEYC_F9|KEYC_CTRL|KEYC_SHIFT },
  134. { "\033[21@", KEYC_F10|KEYC_CTRL|KEYC_SHIFT },
  135. { "\033[23@", KEYC_F11|KEYC_CTRL|KEYC_SHIFT },
  136. { "\033[24@", KEYC_F12|KEYC_CTRL|KEYC_SHIFT },
  137. { "\033[2@", KEYC_IC|KEYC_CTRL|KEYC_SHIFT },
  138. { "\033[3@", KEYC_DC|KEYC_CTRL|KEYC_SHIFT },
  139. { "\033[7@", KEYC_HOME|KEYC_CTRL|KEYC_SHIFT },
  140. { "\033[8@", KEYC_END|KEYC_CTRL|KEYC_SHIFT },
  141. { "\033[6@", KEYC_NPAGE|KEYC_CTRL|KEYC_SHIFT },
  142. { "\033[5@", KEYC_PPAGE|KEYC_CTRL|KEYC_SHIFT },
  143. /* Focus tracking. */
  144. { "\033[I", KEYC_FOCUS_IN },
  145. { "\033[O", KEYC_FOCUS_OUT },
  146. };
  147. /* Default terminfo(5) keys. */
  148. struct tty_default_key_code {
  149. enum tty_code_code code;
  150. key_code key;
  151. };
  152. const struct tty_default_key_code tty_default_code_keys[] = {
  153. /* Function keys. */
  154. { TTYC_KF1, KEYC_F1 },
  155. { TTYC_KF2, KEYC_F2 },
  156. { TTYC_KF3, KEYC_F3 },
  157. { TTYC_KF4, KEYC_F4 },
  158. { TTYC_KF5, KEYC_F5 },
  159. { TTYC_KF6, KEYC_F6 },
  160. { TTYC_KF7, KEYC_F7 },
  161. { TTYC_KF8, KEYC_F8 },
  162. { TTYC_KF9, KEYC_F9 },
  163. { TTYC_KF10, KEYC_F10 },
  164. { TTYC_KF11, KEYC_F11 },
  165. { TTYC_KF12, KEYC_F12 },
  166. { TTYC_KF13, KEYC_F1|KEYC_SHIFT },
  167. { TTYC_KF14, KEYC_F2|KEYC_SHIFT },
  168. { TTYC_KF15, KEYC_F3|KEYC_SHIFT },
  169. { TTYC_KF16, KEYC_F4|KEYC_SHIFT },
  170. { TTYC_KF17, KEYC_F5|KEYC_SHIFT },
  171. { TTYC_KF18, KEYC_F6|KEYC_SHIFT },
  172. { TTYC_KF19, KEYC_F7|KEYC_SHIFT },
  173. { TTYC_KF20, KEYC_F8|KEYC_SHIFT },
  174. { TTYC_KF21, KEYC_F9|KEYC_SHIFT },
  175. { TTYC_KF22, KEYC_F10|KEYC_SHIFT },
  176. { TTYC_KF23, KEYC_F11|KEYC_SHIFT },
  177. { TTYC_KF24, KEYC_F12|KEYC_SHIFT },
  178. { TTYC_KF25, KEYC_F1|KEYC_CTRL },
  179. { TTYC_KF26, KEYC_F2|KEYC_CTRL },
  180. { TTYC_KF27, KEYC_F3|KEYC_CTRL },
  181. { TTYC_KF28, KEYC_F4|KEYC_CTRL },
  182. { TTYC_KF29, KEYC_F5|KEYC_CTRL },
  183. { TTYC_KF30, KEYC_F6|KEYC_CTRL },
  184. { TTYC_KF31, KEYC_F7|KEYC_CTRL },
  185. { TTYC_KF32, KEYC_F8|KEYC_CTRL },
  186. { TTYC_KF33, KEYC_F9|KEYC_CTRL },
  187. { TTYC_KF34, KEYC_F10|KEYC_CTRL },
  188. { TTYC_KF35, KEYC_F11|KEYC_CTRL },
  189. { TTYC_KF36, KEYC_F12|KEYC_CTRL },
  190. { TTYC_KF37, KEYC_F1|KEYC_SHIFT|KEYC_CTRL },
  191. { TTYC_KF38, KEYC_F2|KEYC_SHIFT|KEYC_CTRL },
  192. { TTYC_KF39, KEYC_F3|KEYC_SHIFT|KEYC_CTRL },
  193. { TTYC_KF40, KEYC_F4|KEYC_SHIFT|KEYC_CTRL },
  194. { TTYC_KF41, KEYC_F5|KEYC_SHIFT|KEYC_CTRL },
  195. { TTYC_KF42, KEYC_F6|KEYC_SHIFT|KEYC_CTRL },
  196. { TTYC_KF43, KEYC_F7|KEYC_SHIFT|KEYC_CTRL },
  197. { TTYC_KF44, KEYC_F8|KEYC_SHIFT|KEYC_CTRL },
  198. { TTYC_KF45, KEYC_F9|KEYC_SHIFT|KEYC_CTRL },
  199. { TTYC_KF46, KEYC_F10|KEYC_SHIFT|KEYC_CTRL },
  200. { TTYC_KF47, KEYC_F11|KEYC_SHIFT|KEYC_CTRL },
  201. { TTYC_KF48, KEYC_F12|KEYC_SHIFT|KEYC_CTRL },
  202. { TTYC_KF49, KEYC_F1|KEYC_ESCAPE },
  203. { TTYC_KF50, KEYC_F2|KEYC_ESCAPE },
  204. { TTYC_KF51, KEYC_F3|KEYC_ESCAPE },
  205. { TTYC_KF52, KEYC_F4|KEYC_ESCAPE },
  206. { TTYC_KF53, KEYC_F5|KEYC_ESCAPE },
  207. { TTYC_KF54, KEYC_F6|KEYC_ESCAPE },
  208. { TTYC_KF55, KEYC_F7|KEYC_ESCAPE },
  209. { TTYC_KF56, KEYC_F8|KEYC_ESCAPE },
  210. { TTYC_KF57, KEYC_F9|KEYC_ESCAPE },
  211. { TTYC_KF58, KEYC_F10|KEYC_ESCAPE },
  212. { TTYC_KF59, KEYC_F11|KEYC_ESCAPE },
  213. { TTYC_KF60, KEYC_F12|KEYC_ESCAPE },
  214. { TTYC_KF61, KEYC_F1|KEYC_ESCAPE|KEYC_SHIFT },
  215. { TTYC_KF62, KEYC_F2|KEYC_ESCAPE|KEYC_SHIFT },
  216. { TTYC_KF63, KEYC_F3|KEYC_ESCAPE|KEYC_SHIFT },
  217. { TTYC_KICH1, KEYC_IC },
  218. { TTYC_KDCH1, KEYC_DC },
  219. { TTYC_KHOME, KEYC_HOME },
  220. { TTYC_KEND, KEYC_END },
  221. { TTYC_KNP, KEYC_NPAGE },
  222. { TTYC_KPP, KEYC_PPAGE },
  223. { TTYC_KCBT, KEYC_BTAB },
  224. /* Arrow keys from terminfo. */
  225. { TTYC_KCUU1, KEYC_UP },
  226. { TTYC_KCUD1, KEYC_DOWN },
  227. { TTYC_KCUB1, KEYC_LEFT },
  228. { TTYC_KCUF1, KEYC_RIGHT },
  229. /* Key and modifier capabilities. */
  230. { TTYC_KDC2, KEYC_DC|KEYC_SHIFT },
  231. { TTYC_KDC3, KEYC_DC|KEYC_ESCAPE },
  232. { TTYC_KDC4, KEYC_DC|KEYC_SHIFT|KEYC_ESCAPE },
  233. { TTYC_KDC5, KEYC_DC|KEYC_CTRL },
  234. { TTYC_KDC6, KEYC_DC|KEYC_SHIFT|KEYC_CTRL },
  235. { TTYC_KDC7, KEYC_DC|KEYC_ESCAPE|KEYC_CTRL },
  236. { TTYC_KDN2, KEYC_DOWN|KEYC_SHIFT },
  237. { TTYC_KDN3, KEYC_DOWN|KEYC_ESCAPE },
  238. { TTYC_KDN4, KEYC_DOWN|KEYC_SHIFT|KEYC_ESCAPE },
  239. { TTYC_KDN5, KEYC_DOWN|KEYC_CTRL },
  240. { TTYC_KDN6, KEYC_DOWN|KEYC_SHIFT|KEYC_CTRL },
  241. { TTYC_KDN7, KEYC_DOWN|KEYC_ESCAPE|KEYC_CTRL },
  242. { TTYC_KEND2, KEYC_END|KEYC_SHIFT },
  243. { TTYC_KEND3, KEYC_END|KEYC_ESCAPE },
  244. { TTYC_KEND4, KEYC_END|KEYC_SHIFT|KEYC_ESCAPE },
  245. { TTYC_KEND5, KEYC_END|KEYC_CTRL },
  246. { TTYC_KEND6, KEYC_END|KEYC_SHIFT|KEYC_CTRL },
  247. { TTYC_KEND7, KEYC_END|KEYC_ESCAPE|KEYC_CTRL },
  248. { TTYC_KHOM2, KEYC_HOME|KEYC_SHIFT },
  249. { TTYC_KHOM3, KEYC_HOME|KEYC_ESCAPE },
  250. { TTYC_KHOM4, KEYC_HOME|KEYC_SHIFT|KEYC_ESCAPE },
  251. { TTYC_KHOM5, KEYC_HOME|KEYC_CTRL },
  252. { TTYC_KHOM6, KEYC_HOME|KEYC_SHIFT|KEYC_CTRL },
  253. { TTYC_KHOM7, KEYC_HOME|KEYC_ESCAPE|KEYC_CTRL },
  254. { TTYC_KIC2, KEYC_IC|KEYC_SHIFT },
  255. { TTYC_KIC3, KEYC_IC|KEYC_ESCAPE },
  256. { TTYC_KIC4, KEYC_IC|KEYC_SHIFT|KEYC_ESCAPE },
  257. { TTYC_KIC5, KEYC_IC|KEYC_CTRL },
  258. { TTYC_KIC6, KEYC_IC|KEYC_SHIFT|KEYC_CTRL },
  259. { TTYC_KIC7, KEYC_IC|KEYC_ESCAPE|KEYC_CTRL },
  260. { TTYC_KLFT2, KEYC_LEFT|KEYC_SHIFT },
  261. { TTYC_KLFT3, KEYC_LEFT|KEYC_ESCAPE },
  262. { TTYC_KLFT4, KEYC_LEFT|KEYC_SHIFT|KEYC_ESCAPE },
  263. { TTYC_KLFT5, KEYC_LEFT|KEYC_CTRL },
  264. { TTYC_KLFT6, KEYC_LEFT|KEYC_SHIFT|KEYC_CTRL },
  265. { TTYC_KLFT7, KEYC_LEFT|KEYC_ESCAPE|KEYC_CTRL },
  266. { TTYC_KNXT2, KEYC_NPAGE|KEYC_SHIFT },
  267. { TTYC_KNXT3, KEYC_NPAGE|KEYC_ESCAPE },
  268. { TTYC_KNXT4, KEYC_NPAGE|KEYC_SHIFT|KEYC_ESCAPE },
  269. { TTYC_KNXT5, KEYC_NPAGE|KEYC_CTRL },
  270. { TTYC_KNXT6, KEYC_NPAGE|KEYC_SHIFT|KEYC_CTRL },
  271. { TTYC_KNXT7, KEYC_NPAGE|KEYC_ESCAPE|KEYC_CTRL },
  272. { TTYC_KPRV2, KEYC_PPAGE|KEYC_SHIFT },
  273. { TTYC_KPRV3, KEYC_PPAGE|KEYC_ESCAPE },
  274. { TTYC_KPRV4, KEYC_PPAGE|KEYC_SHIFT|KEYC_ESCAPE },
  275. { TTYC_KPRV5, KEYC_PPAGE|KEYC_CTRL },
  276. { TTYC_KPRV6, KEYC_PPAGE|KEYC_SHIFT|KEYC_CTRL },
  277. { TTYC_KPRV7, KEYC_PPAGE|KEYC_ESCAPE|KEYC_CTRL },
  278. { TTYC_KRIT2, KEYC_RIGHT|KEYC_SHIFT },
  279. { TTYC_KRIT3, KEYC_RIGHT|KEYC_ESCAPE },
  280. { TTYC_KRIT4, KEYC_RIGHT|KEYC_SHIFT|KEYC_ESCAPE },
  281. { TTYC_KRIT5, KEYC_RIGHT|KEYC_CTRL },
  282. { TTYC_KRIT6, KEYC_RIGHT|KEYC_SHIFT|KEYC_CTRL },
  283. { TTYC_KRIT7, KEYC_RIGHT|KEYC_ESCAPE|KEYC_CTRL },
  284. { TTYC_KUP2, KEYC_UP|KEYC_SHIFT },
  285. { TTYC_KUP3, KEYC_UP|KEYC_ESCAPE },
  286. { TTYC_KUP4, KEYC_UP|KEYC_SHIFT|KEYC_ESCAPE },
  287. { TTYC_KUP5, KEYC_UP|KEYC_CTRL },
  288. { TTYC_KUP6, KEYC_UP|KEYC_SHIFT|KEYC_CTRL },
  289. { TTYC_KUP7, KEYC_UP|KEYC_ESCAPE|KEYC_CTRL },
  290. };
  291. /* Add key to tree. */
  292. void
  293. tty_keys_add(struct tty *tty, const char *s, key_code key)
  294. {
  295. struct tty_key *tk;
  296. size_t size;
  297. const char *keystr;
  298. keystr = key_string_lookup_key(key);
  299. if ((tk = tty_keys_find(tty, s, strlen(s), &size)) == NULL) {
  300. log_debug("new key %s: 0x%llx (%s)", s, key, keystr);
  301. tty_keys_add1(&tty->key_tree, s, key);
  302. } else {
  303. log_debug("replacing key %s: 0x%llx (%s)", s, key, keystr);
  304. tk->key = key;
  305. }
  306. }
  307. /* Add next node to the tree. */
  308. void
  309. tty_keys_add1(struct tty_key **tkp, const char *s, key_code key)
  310. {
  311. struct tty_key *tk;
  312. /* Allocate a tree entry if there isn't one already. */
  313. tk = *tkp;
  314. if (tk == NULL) {
  315. tk = *tkp = xcalloc(1, sizeof *tk);
  316. tk->ch = *s;
  317. tk->key = KEYC_UNKNOWN;
  318. }
  319. /* Find the next entry. */
  320. if (*s == tk->ch) {
  321. /* Move forward in string. */
  322. s++;
  323. /* If this is the end of the string, no more is necessary. */
  324. if (*s == '\0') {
  325. tk->key = key;
  326. return;
  327. }
  328. /* Use the child tree for the next character. */
  329. tkp = &tk->next;
  330. } else {
  331. if (*s < tk->ch)
  332. tkp = &tk->left;
  333. else if (*s > tk->ch)
  334. tkp = &tk->right;
  335. }
  336. /* And recurse to add it. */
  337. tty_keys_add1(tkp, s, key);
  338. }
  339. /* Initialise a key tree from the table. */
  340. void
  341. tty_keys_build(struct tty *tty)
  342. {
  343. const struct tty_default_key_raw *tdkr;
  344. const struct tty_default_key_code *tdkc;
  345. u_int i;
  346. const char *s;
  347. if (tty->key_tree != NULL)
  348. tty_keys_free(tty);
  349. tty->key_tree = NULL;
  350. for (i = 0; i < nitems(tty_default_raw_keys); i++) {
  351. tdkr = &tty_default_raw_keys[i];
  352. s = tdkr->string;
  353. if (*s != '\0')
  354. tty_keys_add(tty, s, tdkr->key);
  355. }
  356. for (i = 0; i < nitems(tty_default_code_keys); i++) {
  357. tdkc = &tty_default_code_keys[i];
  358. s = tty_term_string(tty->term, tdkc->code);
  359. if (*s != '\0')
  360. tty_keys_add(tty, s, tdkc->key);
  361. }
  362. }
  363. /* Free the entire key tree. */
  364. void
  365. tty_keys_free(struct tty *tty)
  366. {
  367. tty_keys_free1(tty->key_tree);
  368. }
  369. /* Free a single key. */
  370. void
  371. tty_keys_free1(struct tty_key *tk)
  372. {
  373. if (tk->next != NULL)
  374. tty_keys_free1(tk->next);
  375. if (tk->left != NULL)
  376. tty_keys_free1(tk->left);
  377. if (tk->right != NULL)
  378. tty_keys_free1(tk->right);
  379. free(tk);
  380. }
  381. /* Lookup a key in the tree. */
  382. struct tty_key *
  383. tty_keys_find(struct tty *tty, const char *buf, size_t len, size_t *size)
  384. {
  385. *size = 0;
  386. return (tty_keys_find1(tty->key_tree, buf, len, size));
  387. }
  388. /* Find the next node. */
  389. struct tty_key *
  390. tty_keys_find1(struct tty_key *tk, const char *buf, size_t len, size_t *size)
  391. {
  392. /* If the node is NULL, this is the end of the tree. No match. */
  393. if (tk == NULL)
  394. return (NULL);
  395. /* Pick the next in the sequence. */
  396. if (tk->ch == *buf) {
  397. /* Move forward in the string. */
  398. buf++; len--;
  399. (*size)++;
  400. /* At the end of the string, return the current node. */
  401. if (len == 0 || (tk->next == NULL && tk->key != KEYC_UNKNOWN))
  402. return (tk);
  403. /* Move into the next tree for the following character. */
  404. tk = tk->next;
  405. } else {
  406. if (*buf < tk->ch)
  407. tk = tk->left;
  408. else if (*buf > tk->ch)
  409. tk = tk->right;
  410. }
  411. /* Move to the next in the tree. */
  412. return (tty_keys_find1(tk, buf, len, size));
  413. }
  414. /*
  415. * Process at least one key in the buffer and invoke tty->key_callback. Return
  416. * 0 if there are no further keys, or 1 if there could be more in the buffer.
  417. */
  418. key_code
  419. tty_keys_next(struct tty *tty)
  420. {
  421. struct tty_key *tk;
  422. struct timeval tv;
  423. const char *buf;
  424. size_t len, size;
  425. cc_t bspace;
  426. int delay, expired = 0;
  427. key_code key;
  428. struct utf8_data ud;
  429. enum utf8_state more;
  430. u_int i;
  431. wchar_t wc;
  432. /* Get key buffer. */
  433. buf = EVBUFFER_DATA(tty->event->input);
  434. len = EVBUFFER_LENGTH(tty->event->input);
  435. if (len == 0)
  436. return (0);
  437. log_debug("keys are %zu (%.*s)", len, (int) len, buf);
  438. /* Is this a mouse key press? */
  439. switch (tty_keys_mouse(tty, buf, len, &size)) {
  440. case 0: /* yes */
  441. key = KEYC_MOUSE;
  442. goto complete_key;
  443. case -1: /* no, or not valid */
  444. break;
  445. case -2: /* yes, but we don't care. */
  446. key = KEYC_MOUSE;
  447. goto discard_key;
  448. case 1: /* partial */
  449. goto partial_key;
  450. }
  451. /* Look for matching key string and return if found. */
  452. tk = tty_keys_find(tty, buf, len, &size);
  453. if (tk != NULL) {
  454. if (tk->next != NULL)
  455. goto partial_key;
  456. key = tk->key;
  457. goto complete_key;
  458. }
  459. /* Try to parse a key with an xterm-style modifier. */
  460. switch (xterm_keys_find(buf, len, &size, &key)) {
  461. case 0: /* found */
  462. goto complete_key;
  463. case -1: /* not found */
  464. break;
  465. case 1:
  466. goto partial_key;
  467. }
  468. first_key:
  469. /* Is this a meta key? */
  470. if (len >= 2 && buf[0] == '\033') {
  471. if (buf[1] != '\033') {
  472. key = buf[1] | KEYC_ESCAPE;
  473. size = 2;
  474. goto complete_key;
  475. }
  476. tk = tty_keys_find(tty, buf + 1, len - 1, &size);
  477. if (tk != NULL && (!expired || tk->next == NULL)) {
  478. size++; /* include escape */
  479. if (tk->next != NULL)
  480. goto partial_key;
  481. key = tk->key;
  482. if (key != KEYC_UNKNOWN)
  483. key |= KEYC_ESCAPE;
  484. goto complete_key;
  485. }
  486. }
  487. /* Is this valid UTF-8? */
  488. if ((more = utf8_open(&ud, (u_char)*buf) == UTF8_MORE)) {
  489. size = ud.size;
  490. if (len < size) {
  491. if (expired)
  492. goto discard_key;
  493. goto partial_key;
  494. }
  495. for (i = 1; i < size; i++)
  496. more = utf8_append(&ud, (u_char)buf[i]);
  497. if (more != UTF8_DONE)
  498. goto discard_key;
  499. if (utf8_combine(&ud, &wc) != UTF8_DONE)
  500. goto discard_key;
  501. key = wc;
  502. log_debug("UTF-8 key %.*s %#llx", (int)size, buf, key);
  503. goto complete_key;
  504. }
  505. /* No key found, take first. */
  506. key = (u_char)*buf;
  507. size = 1;
  508. /*
  509. * Check for backspace key using termios VERASE - the terminfo
  510. * kbs entry is extremely unreliable, so cannot be safely
  511. * used. termios should have a better idea.
  512. */
  513. bspace = tty->tio.c_cc[VERASE];
  514. if (bspace != _POSIX_VDISABLE && key == bspace)
  515. key = KEYC_BSPACE;
  516. goto complete_key;
  517. partial_key:
  518. log_debug("partial key %.*s", (int) len, buf);
  519. /* If timer is going, check for expiration. */
  520. if (tty->flags & TTY_TIMER) {
  521. if (evtimer_initialized(&tty->key_timer) &&
  522. !evtimer_pending(&tty->key_timer, NULL)) {
  523. expired = 1;
  524. goto first_key;
  525. }
  526. return (0);
  527. }
  528. /* Get the time period. */
  529. delay = options_get_number(global_options, "escape-time");
  530. tv.tv_sec = delay / 1000;
  531. tv.tv_usec = (delay % 1000) * 1000L;
  532. /* Start the timer. */
  533. if (event_initialized(&tty->key_timer))
  534. evtimer_del(&tty->key_timer);
  535. evtimer_set(&tty->key_timer, tty_keys_callback, tty);
  536. evtimer_add(&tty->key_timer, &tv);
  537. tty->flags |= TTY_TIMER;
  538. return (0);
  539. complete_key:
  540. log_debug("complete key %.*s %#llx", (int)size, buf, key);
  541. /* Remove data from buffer. */
  542. evbuffer_drain(tty->event->input, size);
  543. /* Remove key timer. */
  544. if (event_initialized(&tty->key_timer))
  545. evtimer_del(&tty->key_timer);
  546. tty->flags &= ~TTY_TIMER;
  547. /* Check for focus events. */
  548. if (key == KEYC_FOCUS_OUT) {
  549. tty->client->flags &= ~CLIENT_FOCUSED;
  550. return (1);
  551. } else if (key == KEYC_FOCUS_IN) {
  552. tty->client->flags |= CLIENT_FOCUSED;
  553. return (1);
  554. }
  555. /* Fire the key. */
  556. if (key != KEYC_UNKNOWN)
  557. server_client_handle_key(tty->client, key);
  558. return (1);
  559. discard_key:
  560. log_debug("discard key %.*s %#llx", (int)size, buf, key);
  561. /* Remove data from buffer. */
  562. evbuffer_drain(tty->event->input, size);
  563. return (1);
  564. }
  565. /* Key timer callback. */
  566. void
  567. tty_keys_callback(__unused int fd, __unused short events, void *data)
  568. {
  569. struct tty *tty = data;
  570. if (tty->flags & TTY_TIMER) {
  571. while (tty_keys_next(tty))
  572. ;
  573. }
  574. }
  575. /*
  576. * Handle mouse key input. Returns 0 for success, -1 for failure, 1 for partial
  577. * (probably a mouse sequence but need more data).
  578. */
  579. int
  580. tty_keys_mouse(struct tty *tty, const char *buf, size_t len, size_t *size)
  581. {
  582. struct mouse_event *m = &tty->mouse;
  583. u_int i, x, y, b, sgr_b;
  584. u_char sgr_type, c;
  585. /*
  586. * Standard mouse sequences are \033[M followed by three characters
  587. * indicating button, X and Y, all based at 32 with 1,1 top-left.
  588. *
  589. * UTF-8 mouse sequences are similar but the three are expressed as
  590. * UTF-8 characters.
  591. *
  592. * SGR extended mouse sequences are \033[< followed by three numbers in
  593. * decimal and separated by semicolons indicating button, X and Y. A
  594. * trailing 'M' is click or scroll and trailing 'm' release. All are
  595. * based at 0 with 1,1 top-left.
  596. */
  597. *size = 0;
  598. x = y = b = sgr_b = 0;
  599. sgr_type = ' ';
  600. /* First two bytes are always \033[. */
  601. if (buf[0] != '\033')
  602. return (-1);
  603. if (len == 1)
  604. return (1);
  605. if (buf[1] != '[')
  606. return (-1);
  607. if (len == 2)
  608. return (1);
  609. /*
  610. * Third byte is M in old standard (and UTF-8 extension which we do not
  611. * support), < in SGR extension.
  612. */
  613. if (buf[2] == 'M') {
  614. /* Read the three inputs. */
  615. *size = 3;
  616. for (i = 0; i < 3; i++) {
  617. if (len <= *size)
  618. return (1);
  619. c = (u_char)buf[(*size)++];
  620. if (i == 0)
  621. b = c;
  622. else if (i == 1)
  623. x = c;
  624. else
  625. y = c;
  626. }
  627. log_debug("mouse input: %.*s", (int)*size, buf);
  628. /* Check and return the mouse input. */
  629. if (b < 32)
  630. return (-1);
  631. b -= 32;
  632. if (x >= 33)
  633. x -= 33;
  634. else
  635. x = 256 - x;
  636. if (y >= 33)
  637. y -= 33;
  638. else
  639. y = 256 - y;
  640. } else if (buf[2] == '<') {
  641. /* Read the three inputs. */
  642. *size = 3;
  643. while (1) {
  644. if (len <= *size)
  645. return (1);
  646. c = (u_char)buf[(*size)++];
  647. if (c == ';')
  648. break;
  649. if (c < '0' || c > '9')
  650. return (-1);
  651. sgr_b = 10 * sgr_b + (c - '0');
  652. }
  653. while (1) {
  654. if (len <= *size)
  655. return (1);
  656. c = (u_char)buf[(*size)++];
  657. if (c == ';')
  658. break;
  659. if (c < '0' || c > '9')
  660. return (-1);
  661. x = 10 * x + (c - '0');
  662. }
  663. while (1) {
  664. if (len <= *size)
  665. return (1);
  666. c = (u_char)buf[(*size)++];
  667. if (c == 'M' || c == 'm')
  668. break;
  669. if (c < '0' || c > '9')
  670. return (-1);
  671. y = 10 * y + (c - '0');
  672. }
  673. log_debug("mouse input (SGR): %.*s", (int)*size, buf);
  674. /* Check and return the mouse input. */
  675. if (x < 1 || y < 1)
  676. return (-1);
  677. x--;
  678. y--;
  679. b = sgr_b;
  680. /* Type is M for press, m for release. */
  681. sgr_type = c;
  682. if (sgr_type == 'm')
  683. b |= 3;
  684. /*
  685. * Some terminals (like PuTTY 0.63) mistakenly send
  686. * button-release events for scroll-wheel button-press event.
  687. * Discard it before it reaches any program running inside
  688. * tmux.
  689. */
  690. if (sgr_type == 'm' && (sgr_b & 64))
  691. return (-2);
  692. } else
  693. return (-1);
  694. /* Fill mouse event. */
  695. m->lx = m->x;
  696. m->x = x;
  697. m->ly = m->y;
  698. m->y = y;
  699. m->lb = m->b;
  700. m->b = b;
  701. m->sgr_type = sgr_type;
  702. m->sgr_b = sgr_b;
  703. return (0);
  704. }