1 /* $OpenBSD: input-keys.c,v 1.13 2009/10/26 17:59:46 nicm Exp $ */ 2 3 /* 4 * Copyright (c) 2007 Nicholas Marriott <nicm@users.sourceforge.net> 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 <stdint.h> 22 #include <stdlib.h> 23 #include <string.h> 24 25 #include "tmux.h" 26 27 /* 28 * This file is rather misleadingly named, it contains the code which takes a 29 * key code and translates it into something suitable to be sent to the 30 * application running in a pane (similar to input.c does in the other 31 * direction with output). 32 */ 33 34 struct input_key_ent { 35 int key; 36 const char *data; 37 38 int flags; 39 #define INPUTKEY_KEYPAD 0x1 /* keypad key */ 40 #define INPUTKEY_CURSOR 0x2 /* cursor key */ 41 }; 42 43 struct input_key_ent input_keys[] = { 44 /* Backspace key. */ 45 { KEYC_BSPACE, "\177", 0 }, 46 47 /* Function keys. */ 48 { KEYC_F1, "\033OP", 0 }, 49 { KEYC_F2, "\033OQ", 0 }, 50 { KEYC_F3, "\033OR", 0 }, 51 { KEYC_F4, "\033OS", 0 }, 52 { KEYC_F5, "\033[15~", 0 }, 53 { KEYC_F5|KEYC_CTRL, "\033[15^", 0 }, 54 { KEYC_F6, "\033[17~", 0 }, 55 { KEYC_F6|KEYC_CTRL, "\033[17^", 0 }, 56 { KEYC_F7, "\033[18~", 0 }, 57 { KEYC_F7|KEYC_CTRL, "\033[18^", 0 }, 58 { KEYC_F8, "\033[19~", 0 }, 59 { KEYC_F8|KEYC_CTRL, "\033[19^", 0 }, 60 { KEYC_F9, "\033[20~", 0 }, 61 { KEYC_F9|KEYC_CTRL, "\033[20^", 0 }, 62 { KEYC_F10, "\033[21~", 0 }, 63 { KEYC_F10|KEYC_CTRL, "\033[21^", 0 }, 64 { KEYC_F11, "\033[23~", 0 }, 65 { KEYC_F1|KEYC_CTRL, "\033[23^", 0 }, 66 { KEYC_F12, "\033[24~", 0 }, 67 { KEYC_F12|KEYC_CTRL, "\033[24^", 0 }, 68 { KEYC_F13, "\033[25~", 0 }, 69 { KEYC_F13|KEYC_CTRL, "\033[25^", 0 }, 70 { KEYC_F14, "\033[26~", 0 }, 71 { KEYC_F14|KEYC_CTRL, "\033[26^", 0 }, 72 { KEYC_F15, "\033[28~", 0 }, 73 { KEYC_F15|KEYC_CTRL, "\033[28^", 0 }, 74 { KEYC_F16, "\033[29~", 0 }, 75 { KEYC_F16|KEYC_CTRL, "\033[29^", 0 }, 76 { KEYC_F17, "\033[31~", 0 }, 77 { KEYC_F17|KEYC_CTRL, "\033[31^", 0 }, 78 { KEYC_F18, "\033[32~", 0 }, 79 { KEYC_F18|KEYC_CTRL, "\033[32^", 0 }, 80 { KEYC_F19, "\033[33~", 0 }, 81 { KEYC_F19|KEYC_CTRL, "\033[33^", 0 }, 82 { KEYC_F20, "\033[34~", 0 }, 83 { KEYC_F20|KEYC_CTRL, "\033[34^", 0 }, 84 { KEYC_IC, "\033[2~", 0 }, 85 { KEYC_IC|KEYC_CTRL, "\033[2^", 0 }, 86 { KEYC_DC, "\033[3~", 0 }, 87 { KEYC_DC|KEYC_CTRL, "\033[3^", 0 }, 88 { KEYC_HOME, "\033[1~", 0 }, 89 { KEYC_HOME|KEYC_CTRL, "\033[1^", 0 }, 90 { KEYC_END, "\033[4~", 0 }, 91 { KEYC_END|KEYC_CTRL, "\033[4^", 0 }, 92 { KEYC_NPAGE, "\033[6~", 0 }, 93 { KEYC_NPAGE|KEYC_CTRL, "\033[6^", 0 }, 94 { KEYC_PPAGE, "\033[5~", 0 }, 95 { KEYC_PPAGE|KEYC_CTRL, "\033[5^", 0 }, 96 { KEYC_BTAB, "\033[Z", 0 }, 97 98 /* 99 * Arrow keys. Cursor versions must come first. The codes are toggled 100 * between CSI and SS3 versions when ctrl is pressed. 101 */ 102 { KEYC_UP|KEYC_CTRL, "\033[A", INPUTKEY_CURSOR }, 103 { KEYC_DOWN|KEYC_CTRL, "\033[B", INPUTKEY_CURSOR }, 104 { KEYC_RIGHT|KEYC_CTRL, "\033[C", INPUTKEY_CURSOR }, 105 { KEYC_LEFT|KEYC_CTRL, "\033[D", INPUTKEY_CURSOR }, 106 107 { KEYC_UP, "\033OA", INPUTKEY_CURSOR }, 108 { KEYC_DOWN, "\033OB", INPUTKEY_CURSOR }, 109 { KEYC_RIGHT, "\033OC", INPUTKEY_CURSOR }, 110 { KEYC_LEFT, "\033OD", INPUTKEY_CURSOR }, 111 112 { KEYC_UP|KEYC_CTRL, "\033OA", 0 }, 113 { KEYC_DOWN|KEYC_CTRL, "\033OB", 0 }, 114 { KEYC_RIGHT|KEYC_CTRL, "\033OC", 0 }, 115 { KEYC_LEFT|KEYC_CTRL, "\033OD", 0 }, 116 117 { KEYC_UP, "\033[A", 0 }, 118 { KEYC_DOWN, "\033[B", 0 }, 119 { KEYC_RIGHT, "\033[C", 0 }, 120 { KEYC_LEFT, "\033[D", 0 }, 121 122 /* Keypad keys. Keypad versions must come first. */ 123 { KEYC_KP_SLASH, "/", INPUTKEY_KEYPAD }, 124 { KEYC_KP_STAR, "*", INPUTKEY_KEYPAD }, 125 { KEYC_KP_MINUS, "-", INPUTKEY_KEYPAD }, 126 { KEYC_KP_SEVEN, "7", INPUTKEY_KEYPAD }, 127 { KEYC_KP_EIGHT, "8", INPUTKEY_KEYPAD }, 128 { KEYC_KP_NINE, "9", INPUTKEY_KEYPAD }, 129 { KEYC_KP_PLUS, "+", INPUTKEY_KEYPAD }, 130 { KEYC_KP_FOUR, "4", INPUTKEY_KEYPAD }, 131 { KEYC_KP_FIVE, "5", INPUTKEY_KEYPAD }, 132 { KEYC_KP_SIX, "6", INPUTKEY_KEYPAD }, 133 { KEYC_KP_ONE, "1", INPUTKEY_KEYPAD }, 134 { KEYC_KP_TWO, "2", INPUTKEY_KEYPAD }, 135 { KEYC_KP_THREE, "3", INPUTKEY_KEYPAD }, 136 { KEYC_KP_ENTER, "\n", INPUTKEY_KEYPAD }, 137 { KEYC_KP_ZERO, "0", INPUTKEY_KEYPAD }, 138 { KEYC_KP_PERIOD, ".", INPUTKEY_KEYPAD }, 139 140 { KEYC_KP_SLASH, "\033Oo", 0 }, 141 { KEYC_KP_STAR, "\033Oj", 0 }, 142 { KEYC_KP_MINUS, "\033Om", 0 }, 143 { KEYC_KP_SEVEN, "\033Ow", 0 }, 144 { KEYC_KP_EIGHT, "\033Ox", 0 }, 145 { KEYC_KP_NINE, "\033Oy", 0 }, 146 { KEYC_KP_PLUS, "\033Ok", 0 }, 147 { KEYC_KP_FOUR, "\033Ot", 0 }, 148 { KEYC_KP_FIVE, "\033Ou", 0 }, 149 { KEYC_KP_SIX, "\033Ov", 0 }, 150 { KEYC_KP_ONE, "\033Oq", 0 }, 151 { KEYC_KP_TWO, "\033Or", 0 }, 152 { KEYC_KP_THREE, "\033Os", 0 }, 153 { KEYC_KP_ENTER, "\033OM", 0 }, 154 { KEYC_KP_ZERO, "\033Op", 0 }, 155 { KEYC_KP_PERIOD, "\033On", 0 }, 156 }; 157 158 /* Translate a key code into an output key sequence. */ 159 void 160 input_key(struct window_pane *wp, int key) 161 { 162 struct input_key_ent *ike; 163 u_int i; 164 size_t dlen; 165 char *out; 166 167 log_debug2("writing key 0x%x", key); 168 169 /* 170 * If this is a normal 7-bit key, just send it, with a leading escape 171 * if necessary. 172 */ 173 if (key != KEYC_NONE && (key & ~KEYC_ESCAPE) < 0x100) { 174 if (key & KEYC_ESCAPE) 175 buffer_write8(wp->out, '\033'); 176 buffer_write8(wp->out, (uint8_t) (key & ~KEYC_ESCAPE)); 177 return; 178 } 179 180 /* 181 * Then try to look this up as an xterm key, if the flag to output them 182 * is set. 183 */ 184 if (options_get_number(&wp->window->options, "xterm-keys")) { 185 if ((out = xterm_keys_lookup(key)) != NULL) { 186 buffer_write(wp->out, out, strlen(out)); 187 xfree(out); 188 return; 189 } 190 } 191 192 /* Otherwise look the key up in the table. */ 193 for (i = 0; i < nitems(input_keys); i++) { 194 ike = &input_keys[i]; 195 196 if ((ike->flags & INPUTKEY_KEYPAD) && 197 !(wp->screen->mode & MODE_KKEYPAD)) 198 continue; 199 if ((ike->flags & INPUTKEY_CURSOR) && 200 !(wp->screen->mode & MODE_KCURSOR)) 201 continue; 202 203 if ((key & KEYC_ESCAPE) && (ike->key | KEYC_ESCAPE) == key) 204 break; 205 if (ike->key == key) 206 break; 207 } 208 if (i == nitems(input_keys)) { 209 log_debug2("key 0x%x missing", key); 210 return; 211 } 212 dlen = strlen(ike->data); 213 log_debug2("found key 0x%x: \"%s\"", key, ike->data); 214 215 /* Prefix a \033 for escape. */ 216 if (key & KEYC_ESCAPE) 217 buffer_write8(wp->out, '\033'); 218 buffer_write(wp->out, ike->data, dlen); 219 } 220 221 /* Translate mouse and output. */ 222 void 223 input_mouse(struct window_pane *wp, struct mouse_event *m) 224 { 225 if (wp->screen->mode & MODE_MOUSE) { 226 buffer_write(wp->out, "\033[M", 3); 227 buffer_write8(wp->out, m->b + 32); 228 buffer_write8(wp->out, m->x + 33); 229 buffer_write8(wp->out, m->y + 33); 230 } 231 } 232