19bc590e5SSimon Glass /* 29bc590e5SSimon Glass * Translate key codes into ASCII 39bc590e5SSimon Glass * 49bc590e5SSimon Glass * Copyright (c) 2011 The Chromium OS Authors. 59bc590e5SSimon Glass * (C) Copyright 2004 DENX Software Engineering, Wolfgang Denk, wd@denx.de 69bc590e5SSimon Glass * 71a459660SWolfgang Denk * SPDX-License-Identifier: GPL-2.0+ 89bc590e5SSimon Glass */ 99bc590e5SSimon Glass 109bc590e5SSimon Glass #include <common.h> 1192778b27SSimon Glass #include <errno.h> 129bc590e5SSimon Glass #include <stdio_dev.h> 139bc590e5SSimon Glass #include <input.h> 149bc590e5SSimon Glass #include <linux/input.h> 159bc590e5SSimon Glass 169bc590e5SSimon Glass enum { 179bc590e5SSimon Glass /* These correspond to the lights on the keyboard */ 189bc590e5SSimon Glass FLAG_NUM_LOCK = 1 << 0, 199bc590e5SSimon Glass FLAG_CAPS_LOCK = 1 << 1, 209bc590e5SSimon Glass FLAG_SCROLL_LOCK = 1 << 2, 219bc590e5SSimon Glass 229bc590e5SSimon Glass /* Special flag ORed with key code to indicate release */ 239bc590e5SSimon Glass KEY_RELEASE = 1 << 15, 249bc590e5SSimon Glass KEY_MASK = 0xfff, 259bc590e5SSimon Glass }; 269bc590e5SSimon Glass 279bc590e5SSimon Glass /* 289bc590e5SSimon Glass * These takes map key codes to ASCII. 0xff means no key, or special key. 299bc590e5SSimon Glass * Three tables are provided - one for plain keys, one for when the shift 309bc590e5SSimon Glass * 'modifier' key is pressed and one for when the ctrl modifier key is 319bc590e5SSimon Glass * pressed. 329bc590e5SSimon Glass */ 339bc590e5SSimon Glass static const uchar kbd_plain_xlate[] = { 349bc590e5SSimon Glass 0xff, 0x1b, '1', '2', '3', '4', '5', '6', 359bc590e5SSimon Glass '7', '8', '9', '0', '-', '=', '\b', '\t', /* 0x00 - 0x0f */ 369bc590e5SSimon Glass 'q', 'w', 'e', 'r', 't', 'y', 'u', 'i', 379bc590e5SSimon Glass 'o', 'p', '[', ']', '\r', 0xff, 'a', 's', /* 0x10 - 0x1f */ 389bc590e5SSimon Glass 'd', 'f', 'g', 'h', 'j', 'k', 'l', ';', 399bc590e5SSimon Glass '\'', '`', 0xff, '\\', 'z', 'x', 'c', 'v', /* 0x20 - 0x2f */ 409bc590e5SSimon Glass 'b', 'n', 'm', ',' , '.', '/', 0xff, 0xff, 0xff, 419bc590e5SSimon Glass ' ', 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, /* 0x30 - 0x3f */ 429bc590e5SSimon Glass 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, '7', 439bc590e5SSimon Glass '8', '9', '-', '4', '5', '6', '+', '1', /* 0x40 - 0x4f */ 449bc590e5SSimon Glass '2', '3', '0', '.', 0xff, 0xff, 0xff, 0xff, 459bc590e5SSimon Glass 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, /* 0x50 - 0x5F */ 4677c7f045SSimon Glass '\r', 0xff, '/', '*', 479bc590e5SSimon Glass }; 489bc590e5SSimon Glass 499bc590e5SSimon Glass static unsigned char kbd_shift_xlate[] = { 509bc590e5SSimon Glass 0xff, 0x1b, '!', '@', '#', '$', '%', '^', 519bc590e5SSimon Glass '&', '*', '(', ')', '_', '+', '\b', '\t', /* 0x00 - 0x0f */ 529bc590e5SSimon Glass 'Q', 'W', 'E', 'R', 'T', 'Y', 'U', 'I', 539bc590e5SSimon Glass 'O', 'P', '{', '}', '\r', 0xff, 'A', 'S', /* 0x10 - 0x1f */ 549bc590e5SSimon Glass 'D', 'F', 'G', 'H', 'J', 'K', 'L', ':', 559bc590e5SSimon Glass '"', '~', 0xff, '|', 'Z', 'X', 'C', 'V', /* 0x20 - 0x2f */ 569bc590e5SSimon Glass 'B', 'N', 'M', '<', '>', '?', 0xff, 0xff, 0xff, 579bc590e5SSimon Glass ' ', 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, /* 0x30 - 0x3f */ 589bc590e5SSimon Glass 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, '7', 599bc590e5SSimon Glass '8', '9', '-', '4', '5', '6', '+', '1', /* 0x40 - 0x4f */ 609bc590e5SSimon Glass '2', '3', '0', '.', 0xff, 0xff, 0xff, 0xff, 0xff, 619bc590e5SSimon Glass 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, /* 0x50 - 0x5F */ 6277c7f045SSimon Glass '\r', 0xff, '/', '*', 639bc590e5SSimon Glass }; 649bc590e5SSimon Glass 659bc590e5SSimon Glass static unsigned char kbd_ctrl_xlate[] = { 669bc590e5SSimon Glass 0xff, 0x1b, '1', 0x00, '3', '4', '5', 0x1E, 679bc590e5SSimon Glass '7', '8', '9', '0', 0x1F, '=', '\b', '\t', /* 0x00 - 0x0f */ 682e5513bdSSimon Glass 0x11, 0x17, 0x05, 0x12, 0x14, 0x19, 0x15, 0x09, 699bc590e5SSimon Glass 0x0f, 0x10, 0x1b, 0x1d, '\n', 0xff, 0x01, 0x13, /* 0x10 - 0x1f */ 709bc590e5SSimon Glass 0x04, 0x06, 0x08, 0x09, 0x0a, 0x0b, 0x0c, ';', 719bc590e5SSimon Glass '\'', '~', 0x00, 0x1c, 0x1a, 0x18, 0x03, 0x16, /* 0x20 - 0x2f */ 729bc590e5SSimon Glass 0x02, 0x0e, 0x0d, '<', '>', '?', 0xff, 0xff, 739bc590e5SSimon Glass 0xff, 0x00, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, /* 0x30 - 0x3f */ 749bc590e5SSimon Glass 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, '7', 759bc590e5SSimon Glass '8', '9', '-', '4', '5', '6', '+', '1', /* 0x40 - 0x4f */ 769bc590e5SSimon Glass '2', '3', '0', '.', 0xff, 0xff, 0xff, 0xff, 779bc590e5SSimon Glass 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, /* 0x50 - 0x5F */ 7877c7f045SSimon Glass '\r', 0xff, '/', '*', 799bc590e5SSimon Glass }; 809bc590e5SSimon Glass 81*b1d7a187SSimon Glass static const uchar kbd_plain_xlate_german[] = { 82*b1d7a187SSimon Glass 0xff, 0x1b, '1', '2', '3', '4', '5', '6', /* scan 00-07 */ 83*b1d7a187SSimon Glass '7', '8', '9', '0', 0xe1, '\'', 0x08, '\t', /* scan 08-0F */ 84*b1d7a187SSimon Glass 'q', 'w', 'e', 'r', 't', 'z', 'u', 'i', /* scan 10-17 */ 85*b1d7a187SSimon Glass 'o', 'p', 0x81, '+', '\r', 0xff, 'a', 's', /* scan 18-1F */ 86*b1d7a187SSimon Glass 'd', 'f', 'g', 'h', 'j', 'k', 'l', 0x94, /* scan 20-27 */ 87*b1d7a187SSimon Glass 0x84, '^', 0xff, '#', 'y', 'x', 'c', 'v', /* scan 28-2F */ 88*b1d7a187SSimon Glass 'b', 'n', 'm', ',', '.', '-', 0xff, '*', /* scan 30-37 */ 89*b1d7a187SSimon Glass ' ', ' ', 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, /* scan 38-3F */ 90*b1d7a187SSimon Glass 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, '7', /* scan 40-47 */ 91*b1d7a187SSimon Glass '8', '9', '-', '4', '5', '6', '+', '1', /* scan 48-4F */ 92*b1d7a187SSimon Glass '2', '3', '0', ',', 0xff, 0xff, '<', 0xff, /* scan 50-57 */ 93*b1d7a187SSimon Glass 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, /* scan 58-5F */ 94*b1d7a187SSimon Glass 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, /* scan 60-67 */ 95*b1d7a187SSimon Glass 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, /* scan 68-6F */ 96*b1d7a187SSimon Glass 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, /* scan 70-77 */ 97*b1d7a187SSimon Glass 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, /* scan 78-7F */ 98*b1d7a187SSimon Glass '\r', 0xff, '/', '*', 99*b1d7a187SSimon Glass }; 100*b1d7a187SSimon Glass 101*b1d7a187SSimon Glass static unsigned char kbd_shift_xlate_german[] = { 102*b1d7a187SSimon Glass 0xff, 0x1b, '!', '"', 0x15, '$', '%', '&', /* scan 00-07 */ 103*b1d7a187SSimon Glass '/', '(', ')', '=', '?', '`', 0x08, '\t', /* scan 08-0F */ 104*b1d7a187SSimon Glass 'Q', 'W', 'E', 'R', 'T', 'Z', 'U', 'I', /* scan 10-17 */ 105*b1d7a187SSimon Glass 'O', 'P', 0x9a, '*', '\r', 0xff, 'A', 'S', /* scan 18-1F */ 106*b1d7a187SSimon Glass 'D', 'F', 'G', 'H', 'J', 'K', 'L', 0x99, /* scan 20-27 */ 107*b1d7a187SSimon Glass 0x8e, 0xf8, 0xff, '\'', 'Y', 'X', 'C', 'V', /* scan 28-2F */ 108*b1d7a187SSimon Glass 'B', 'N', 'M', ';', ':', '_', 0xff, '*', /* scan 30-37 */ 109*b1d7a187SSimon Glass ' ', ' ', 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, /* scan 38-3F */ 110*b1d7a187SSimon Glass 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, '7', /* scan 40-47 */ 111*b1d7a187SSimon Glass '8', '9', '-', '4', '5', '6', '+', '1', /* scan 48-4F */ 112*b1d7a187SSimon Glass '2', '3', '0', ',', 0xff, 0xff, '>', 0xff, /* scan 50-57 */ 113*b1d7a187SSimon Glass 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, /* scan 58-5F */ 114*b1d7a187SSimon Glass 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, /* scan 60-67 */ 115*b1d7a187SSimon Glass 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, /* scan 68-6F */ 116*b1d7a187SSimon Glass 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, /* scan 70-77 */ 117*b1d7a187SSimon Glass 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, /* scan 78-7F */ 118*b1d7a187SSimon Glass '\r', 0xff, '/', '*', 119*b1d7a187SSimon Glass }; 120*b1d7a187SSimon Glass 121*b1d7a187SSimon Glass static unsigned char kbd_right_alt_xlate_german[] = { 122*b1d7a187SSimon Glass 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, /* scan 00-07 */ 123*b1d7a187SSimon Glass '{', '[', ']', '}', '\\', 0xff, 0xff, 0xff, /* scan 08-0F */ 124*b1d7a187SSimon Glass '@', 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, /* scan 10-17 */ 125*b1d7a187SSimon Glass 0xff, 0xff, 0xff, '~', 0xff, 0xff, 0xff, 0xff, /* scan 18-1F */ 126*b1d7a187SSimon Glass 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, /* scan 20-27 */ 127*b1d7a187SSimon Glass 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, /* scan 28-2F */ 128*b1d7a187SSimon Glass 0xff, 0xff, 0xe6, 0xff, 0xff, 0xff, 0xff, 0xff, /* scan 30-37 */ 129*b1d7a187SSimon Glass 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, /* scan 38-3F */ 130*b1d7a187SSimon Glass 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, /* scan 40-47 */ 131*b1d7a187SSimon Glass 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, /* scan 48-4F */ 132*b1d7a187SSimon Glass 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, '|', 0xff, /* scan 50-57 */ 133*b1d7a187SSimon Glass }; 134*b1d7a187SSimon Glass 135*b1d7a187SSimon Glass enum kbd_mask { 136*b1d7a187SSimon Glass KBD_ENGLISH = 1 << 0, 137*b1d7a187SSimon Glass KBD_GERMAN = 1 << 1, 138*b1d7a187SSimon Glass }; 139*b1d7a187SSimon Glass 140*b1d7a187SSimon Glass static struct kbd_entry { 141*b1d7a187SSimon Glass int kbd_mask; /* Which languages this is for */ 142*b1d7a187SSimon Glass int left_keycode; /* Left keycode to select this map */ 143*b1d7a187SSimon Glass int right_keycode; /* Right keycode to select this map */ 144*b1d7a187SSimon Glass const uchar *xlate; /* Ascii code for each keycode */ 145*b1d7a187SSimon Glass int num_entries; /* Number of entries in xlate */ 146*b1d7a187SSimon Glass } kbd_entry[] = { 147*b1d7a187SSimon Glass { KBD_ENGLISH, -1, -1, 148*b1d7a187SSimon Glass kbd_plain_xlate, ARRAY_SIZE(kbd_plain_xlate) }, 149*b1d7a187SSimon Glass { KBD_GERMAN, -1, -1, 150*b1d7a187SSimon Glass kbd_plain_xlate_german, ARRAY_SIZE(kbd_plain_xlate_german) }, 151*b1d7a187SSimon Glass { KBD_ENGLISH, KEY_LEFTSHIFT, KEY_RIGHTSHIFT, 152*b1d7a187SSimon Glass kbd_shift_xlate, ARRAY_SIZE(kbd_shift_xlate) }, 153*b1d7a187SSimon Glass { KBD_GERMAN, KEY_LEFTSHIFT, KEY_RIGHTSHIFT, 154*b1d7a187SSimon Glass kbd_shift_xlate_german, ARRAY_SIZE(kbd_shift_xlate_german) }, 155*b1d7a187SSimon Glass { KBD_ENGLISH | KBD_GERMAN, KEY_LEFTCTRL, KEY_RIGHTCTRL, 156*b1d7a187SSimon Glass kbd_ctrl_xlate, ARRAY_SIZE(kbd_ctrl_xlate) }, 157*b1d7a187SSimon Glass { KBD_GERMAN, -1, KEY_RIGHTALT, 158*b1d7a187SSimon Glass kbd_right_alt_xlate_german, 159*b1d7a187SSimon Glass ARRAY_SIZE(kbd_right_alt_xlate_german) }, 160*b1d7a187SSimon Glass {}, 161*b1d7a187SSimon Glass }; 162*b1d7a187SSimon Glass 16344abe47dSHung-Te Lin /* 16444abe47dSHung-Te Lin * Scan key code to ANSI 3.64 escape sequence table. This table is 16544abe47dSHung-Te Lin * incomplete in that it does not include all possible extra keys. 16644abe47dSHung-Te Lin */ 16744abe47dSHung-Te Lin static struct { 16844abe47dSHung-Te Lin int kbd_scan_code; 16944abe47dSHung-Te Lin char *escape; 17044abe47dSHung-Te Lin } kbd_to_ansi364[] = { 17144abe47dSHung-Te Lin { KEY_UP, "\033[A"}, 17244abe47dSHung-Te Lin { KEY_DOWN, "\033[B"}, 17344abe47dSHung-Te Lin { KEY_RIGHT, "\033[C"}, 17444abe47dSHung-Te Lin { KEY_LEFT, "\033[D"}, 17544abe47dSHung-Te Lin }; 17644abe47dSHung-Te Lin 17744abe47dSHung-Te Lin /* Maximum number of output characters that an ANSI sequence expands to */ 17844abe47dSHung-Te Lin #define ANSI_CHAR_MAX 3 1799bc590e5SSimon Glass 180c14e94e5SKim Phillips static int input_queue_ascii(struct input_config *config, int ch) 1819bc590e5SSimon Glass { 1829bc590e5SSimon Glass if (config->fifo_in + 1 == INPUT_BUFFER_LEN) { 1839bc590e5SSimon Glass if (!config->fifo_out) 1849bc590e5SSimon Glass return -1; /* buffer full */ 1859bc590e5SSimon Glass else 1869bc590e5SSimon Glass config->fifo_in = 0; 1879bc590e5SSimon Glass } else { 1889bc590e5SSimon Glass if (config->fifo_in + 1 == config->fifo_out) 1899bc590e5SSimon Glass return -1; /* buffer full */ 1909bc590e5SSimon Glass config->fifo_in++; 1919bc590e5SSimon Glass } 1923a85e436SSimon Glass debug(" {%02x} ", ch); 1939bc590e5SSimon Glass config->fifo[config->fifo_in] = (uchar)ch; 1949bc590e5SSimon Glass 1959bc590e5SSimon Glass return 0; 1969bc590e5SSimon Glass } 1979bc590e5SSimon Glass 1989bc590e5SSimon Glass int input_tstc(struct input_config *config) 1999bc590e5SSimon Glass { 2009bc590e5SSimon Glass if (config->fifo_in == config->fifo_out && config->read_keys) { 2019bc590e5SSimon Glass if (!(*config->read_keys)(config)) 2029bc590e5SSimon Glass return 0; 2039bc590e5SSimon Glass } 2049bc590e5SSimon Glass return config->fifo_in != config->fifo_out; 2059bc590e5SSimon Glass } 2069bc590e5SSimon Glass 2079bc590e5SSimon Glass int input_getc(struct input_config *config) 2089bc590e5SSimon Glass { 2099bc590e5SSimon Glass int err = 0; 2109bc590e5SSimon Glass 2119bc590e5SSimon Glass while (config->fifo_in == config->fifo_out) { 2129bc590e5SSimon Glass if (config->read_keys) 2139bc590e5SSimon Glass err = (*config->read_keys)(config); 2149bc590e5SSimon Glass if (err) 2159bc590e5SSimon Glass return -1; 2169bc590e5SSimon Glass } 2179bc590e5SSimon Glass 2189bc590e5SSimon Glass if (++config->fifo_out == INPUT_BUFFER_LEN) 2199bc590e5SSimon Glass config->fifo_out = 0; 2209bc590e5SSimon Glass 2219bc590e5SSimon Glass return config->fifo[config->fifo_out]; 2229bc590e5SSimon Glass } 2239bc590e5SSimon Glass 2249bc590e5SSimon Glass /** 2259bc590e5SSimon Glass * Process a modifier/special key press or release and decide which key 2269bc590e5SSimon Glass * translation array should be used as a result. 2279bc590e5SSimon Glass * 2289bc590e5SSimon Glass * TODO: Should keep track of modifier press/release 2299bc590e5SSimon Glass * 2309bc590e5SSimon Glass * @param config Input state 2319bc590e5SSimon Glass * @param key Key code to process 2329bc590e5SSimon Glass * @param release 0 if a press, 1 if a release 2339bc590e5SSimon Glass * @return pointer to keycode->ascii translation table that should be used 2349bc590e5SSimon Glass */ 2359bc590e5SSimon Glass static struct input_key_xlate *process_modifier(struct input_config *config, 2369bc590e5SSimon Glass int key, int release) 2379bc590e5SSimon Glass { 2389bc590e5SSimon Glass struct input_key_xlate *table; 2399bc590e5SSimon Glass int flip = -1; 2409bc590e5SSimon Glass int i; 2419bc590e5SSimon Glass 2429bc590e5SSimon Glass /* Start with the main table, and see what modifiers change it */ 2439bc590e5SSimon Glass assert(config->num_tables > 0); 2449bc590e5SSimon Glass table = &config->table[0]; 2459bc590e5SSimon Glass for (i = 1; i < config->num_tables; i++) { 2469bc590e5SSimon Glass struct input_key_xlate *tab = &config->table[i]; 2479bc590e5SSimon Glass 2489bc590e5SSimon Glass if (key == tab->left_keycode || key == tab->right_keycode) 2499bc590e5SSimon Glass table = tab; 2509bc590e5SSimon Glass } 2519bc590e5SSimon Glass 2529bc590e5SSimon Glass /* Handle the lighted keys */ 2539bc590e5SSimon Glass if (!release) { 2549bc590e5SSimon Glass switch (key) { 2559bc590e5SSimon Glass case KEY_SCROLLLOCK: 2569bc590e5SSimon Glass flip = FLAG_SCROLL_LOCK; 2579bc590e5SSimon Glass break; 2589bc590e5SSimon Glass case KEY_NUMLOCK: 2599bc590e5SSimon Glass flip = FLAG_NUM_LOCK; 2609bc590e5SSimon Glass break; 2619bc590e5SSimon Glass case KEY_CAPSLOCK: 2629bc590e5SSimon Glass flip = FLAG_CAPS_LOCK; 2639bc590e5SSimon Glass break; 2649bc590e5SSimon Glass } 2659bc590e5SSimon Glass } 2669bc590e5SSimon Glass 2679bc590e5SSimon Glass if (flip != -1) { 2689bc590e5SSimon Glass int leds = 0; 2699bc590e5SSimon Glass 2709bc590e5SSimon Glass config->leds ^= flip; 2719bc590e5SSimon Glass if (config->flags & FLAG_NUM_LOCK) 2729bc590e5SSimon Glass leds |= INPUT_LED_NUM; 2739bc590e5SSimon Glass if (config->flags & FLAG_CAPS_LOCK) 2749bc590e5SSimon Glass leds |= INPUT_LED_CAPS; 2759bc590e5SSimon Glass if (config->flags & FLAG_SCROLL_LOCK) 2769bc590e5SSimon Glass leds |= INPUT_LED_SCROLL; 2779bc590e5SSimon Glass config->leds = leds; 2789bc590e5SSimon Glass } 2799bc590e5SSimon Glass 2809bc590e5SSimon Glass return table; 2819bc590e5SSimon Glass } 2829bc590e5SSimon Glass 2839bc590e5SSimon Glass /** 2849bc590e5SSimon Glass * Search an int array for a key value 2859bc590e5SSimon Glass * 2869bc590e5SSimon Glass * @param array Array to search 2879bc590e5SSimon Glass * @param count Number of elements in array 2889bc590e5SSimon Glass * @param key Key value to find 2899bc590e5SSimon Glass * @return element where value was first found, -1 if none 2909bc590e5SSimon Glass */ 2919bc590e5SSimon Glass static int array_search(int *array, int count, int key) 2929bc590e5SSimon Glass { 2939bc590e5SSimon Glass int i; 2949bc590e5SSimon Glass 2959bc590e5SSimon Glass for (i = 0; i < count; i++) { 2969bc590e5SSimon Glass if (array[i] == key) 2979bc590e5SSimon Glass return i; 2989bc590e5SSimon Glass } 2999bc590e5SSimon Glass 3009bc590e5SSimon Glass return -1; 3019bc590e5SSimon Glass } 3029bc590e5SSimon Glass 3039bc590e5SSimon Glass /** 3049bc590e5SSimon Glass * Sort an array so that those elements that exist in the ordering are 3059bc590e5SSimon Glass * first in the array, and in the same order as the ordering. The algorithm 3069bc590e5SSimon Glass * is O(count * ocount) and designed for small arrays. 3079bc590e5SSimon Glass * 3089bc590e5SSimon Glass * TODO: Move this to common / lib? 3099bc590e5SSimon Glass * 3109bc590e5SSimon Glass * @param dest Array with elements to sort, also destination array 3119bc590e5SSimon Glass * @param count Number of elements to sort 3129bc590e5SSimon Glass * @param order Array containing ordering elements 3139bc590e5SSimon Glass * @param ocount Number of ordering elements 3149bc590e5SSimon Glass * @return number of elements in dest that are in order (these will be at the 3159bc590e5SSimon Glass * start of dest). 3169bc590e5SSimon Glass */ 3179bc590e5SSimon Glass static int sort_array_by_ordering(int *dest, int count, int *order, 3189bc590e5SSimon Glass int ocount) 3199bc590e5SSimon Glass { 3209bc590e5SSimon Glass int temp[count]; 3219bc590e5SSimon Glass int dest_count; 3229bc590e5SSimon Glass int same; /* number of elements which are the same */ 3239bc590e5SSimon Glass int i; 3249bc590e5SSimon Glass 3259bc590e5SSimon Glass /* setup output items, copy items to be sorted into our temp area */ 3269bc590e5SSimon Glass memcpy(temp, dest, count * sizeof(*dest)); 3279bc590e5SSimon Glass dest_count = 0; 3289bc590e5SSimon Glass 3299bc590e5SSimon Glass /* work through the ordering, move over the elements we agree on */ 3309bc590e5SSimon Glass for (i = 0; i < ocount; i++) { 3319bc590e5SSimon Glass if (array_search(temp, count, order[i]) != -1) 3329bc590e5SSimon Glass dest[dest_count++] = order[i]; 3339bc590e5SSimon Glass } 3349bc590e5SSimon Glass same = dest_count; 3359bc590e5SSimon Glass 3369bc590e5SSimon Glass /* now move over the elements that are not in the ordering */ 3379bc590e5SSimon Glass for (i = 0; i < count; i++) { 3389bc590e5SSimon Glass if (array_search(order, ocount, temp[i]) == -1) 3399bc590e5SSimon Glass dest[dest_count++] = temp[i]; 3409bc590e5SSimon Glass } 3419bc590e5SSimon Glass assert(dest_count == count); 3429bc590e5SSimon Glass return same; 3439bc590e5SSimon Glass } 3449bc590e5SSimon Glass 3459bc590e5SSimon Glass /** 3469bc590e5SSimon Glass * Check a list of key codes against the previous key scan 3479bc590e5SSimon Glass * 3489bc590e5SSimon Glass * Given a list of new key codes, we check how many of these are the same 3499bc590e5SSimon Glass * as last time. 3509bc590e5SSimon Glass * 3519bc590e5SSimon Glass * @param config Input state 3529bc590e5SSimon Glass * @param keycode List of key codes to examine 3539bc590e5SSimon Glass * @param num_keycodes Number of key codes 3549bc590e5SSimon Glass * @param same Returns number of key codes which are the same 3559bc590e5SSimon Glass */ 3569bc590e5SSimon Glass static int input_check_keycodes(struct input_config *config, 3579bc590e5SSimon Glass int keycode[], int num_keycodes, int *same) 3589bc590e5SSimon Glass { 3599bc590e5SSimon Glass /* Select the 'plain' xlate table to start with */ 3609bc590e5SSimon Glass if (!config->num_tables) { 3619bc590e5SSimon Glass debug("%s: No xlate tables: cannot decode keys\n", __func__); 3629bc590e5SSimon Glass return -1; 3639bc590e5SSimon Glass } 3649bc590e5SSimon Glass 3659bc590e5SSimon Glass /* sort the keycodes into the same order as the previous ones */ 3669bc590e5SSimon Glass *same = sort_array_by_ordering(keycode, num_keycodes, 3679bc590e5SSimon Glass config->prev_keycodes, config->num_prev_keycodes); 3689bc590e5SSimon Glass 3699bc590e5SSimon Glass memcpy(config->prev_keycodes, keycode, num_keycodes * sizeof(int)); 3709bc590e5SSimon Glass config->num_prev_keycodes = num_keycodes; 3719bc590e5SSimon Glass 3729bc590e5SSimon Glass return *same != num_keycodes; 3739bc590e5SSimon Glass } 3749bc590e5SSimon Glass 3759bc590e5SSimon Glass /** 37644abe47dSHung-Te Lin * Checks and converts a special key code into ANSI 3.64 escape sequence. 37744abe47dSHung-Te Lin * 37844abe47dSHung-Te Lin * @param config Input state 37944abe47dSHung-Te Lin * @param keycode Key code to examine 38044abe47dSHung-Te Lin * @param output_ch Buffer to place output characters into. It should 38144abe47dSHung-Te Lin * be at least ANSI_CHAR_MAX bytes long, to allow for 38244abe47dSHung-Te Lin * an ANSI sequence. 38344abe47dSHung-Te Lin * @param max_chars Maximum number of characters to add to output_ch 38444abe47dSHung-Te Lin * @return number of characters output, if the key was converted, otherwise 0. 38544abe47dSHung-Te Lin * This may be larger than max_chars, in which case the overflow 38644abe47dSHung-Te Lin * characters are not output. 38744abe47dSHung-Te Lin */ 38844abe47dSHung-Te Lin static int input_keycode_to_ansi364(struct input_config *config, 38944abe47dSHung-Te Lin int keycode, char output_ch[], int max_chars) 39044abe47dSHung-Te Lin { 39144abe47dSHung-Te Lin const char *escape; 39244abe47dSHung-Te Lin int ch_count; 39344abe47dSHung-Te Lin int i; 39444abe47dSHung-Te Lin 39544abe47dSHung-Te Lin for (i = ch_count = 0; i < ARRAY_SIZE(kbd_to_ansi364); i++) { 39644abe47dSHung-Te Lin if (keycode != kbd_to_ansi364[i].kbd_scan_code) 39744abe47dSHung-Te Lin continue; 39844abe47dSHung-Te Lin for (escape = kbd_to_ansi364[i].escape; *escape; escape++) { 39944abe47dSHung-Te Lin if (ch_count < max_chars) 40044abe47dSHung-Te Lin output_ch[ch_count] = *escape; 40144abe47dSHung-Te Lin ch_count++; 40244abe47dSHung-Te Lin } 40344abe47dSHung-Te Lin return ch_count; 40444abe47dSHung-Te Lin } 40544abe47dSHung-Te Lin 40644abe47dSHung-Te Lin return 0; 40744abe47dSHung-Te Lin } 40844abe47dSHung-Te Lin 40944abe47dSHung-Te Lin /** 41044abe47dSHung-Te Lin * Converts and queues a list of key codes in escaped ASCII string form 4119bc590e5SSimon Glass * Convert a list of key codes into ASCII 4129bc590e5SSimon Glass * 4139bc590e5SSimon Glass * You must call input_check_keycodes() before this. It turns the keycode 41444abe47dSHung-Te Lin * list into a list of ASCII characters and sends them to the input layer. 4159bc590e5SSimon Glass * 4169bc590e5SSimon Glass * Characters which were seen last time do not generate fresh ASCII output. 41744abe47dSHung-Te Lin * The output (calls to queue_ascii) may be longer than num_keycodes, if the 41844abe47dSHung-Te Lin * keycode contains special keys that was encoded to longer escaped sequence. 4199bc590e5SSimon Glass * 4209bc590e5SSimon Glass * @param config Input state 4219bc590e5SSimon Glass * @param keycode List of key codes to examine 4229bc590e5SSimon Glass * @param num_keycodes Number of key codes 42344abe47dSHung-Te Lin * @param output_ch Buffer to place output characters into. It should 42444abe47dSHung-Te Lin * be at last ANSI_CHAR_MAX * num_keycodes, to allow for 42544abe47dSHung-Te Lin * ANSI sequences. 42644abe47dSHung-Te Lin * @param max_chars Maximum number of characters to add to output_ch 4279bc590e5SSimon Glass * @param same Number of key codes which are the same 42844abe47dSHung-Te Lin * @return number of characters written into output_ch, or -1 if we would 42944abe47dSHung-Te Lin * exceed max_chars chars. 4309bc590e5SSimon Glass */ 4319bc590e5SSimon Glass static int input_keycodes_to_ascii(struct input_config *config, 43244abe47dSHung-Te Lin int keycode[], int num_keycodes, char output_ch[], 43344abe47dSHung-Te Lin int max_chars, int same) 4349bc590e5SSimon Glass { 4359bc590e5SSimon Glass struct input_key_xlate *table; 43644abe47dSHung-Te Lin int ch_count = 0; 4379bc590e5SSimon Glass int i; 4389bc590e5SSimon Glass 4399bc590e5SSimon Glass table = &config->table[0]; 4409bc590e5SSimon Glass 4419bc590e5SSimon Glass /* deal with modifiers first */ 4429bc590e5SSimon Glass for (i = 0; i < num_keycodes; i++) { 4439bc590e5SSimon Glass int key = keycode[i] & KEY_MASK; 4449bc590e5SSimon Glass 4459bc590e5SSimon Glass if (key >= table->num_entries || table->xlate[key] == 0xff) { 4469bc590e5SSimon Glass table = process_modifier(config, key, 4479bc590e5SSimon Glass keycode[i] & KEY_RELEASE); 4489bc590e5SSimon Glass } 4499bc590e5SSimon Glass } 4509bc590e5SSimon Glass 45144abe47dSHung-Te Lin /* Start conversion by looking for the first new keycode (by same). */ 45244abe47dSHung-Te Lin for (i = same; i < num_keycodes; i++) { 4539bc590e5SSimon Glass int key = keycode[i]; 45444abe47dSHung-Te Lin int ch = (key < table->num_entries) ? table->xlate[key] : 0xff; 4559bc590e5SSimon Glass 45644abe47dSHung-Te Lin /* 45744abe47dSHung-Te Lin * For a normal key (with an ASCII value), add it; otherwise 45844abe47dSHung-Te Lin * translate special key to escape sequence if possible. 45944abe47dSHung-Te Lin */ 46044abe47dSHung-Te Lin if (ch != 0xff) { 46144abe47dSHung-Te Lin if (ch_count < max_chars) 46244abe47dSHung-Te Lin output_ch[ch_count] = (uchar)ch; 46344abe47dSHung-Te Lin ch_count++; 46444abe47dSHung-Te Lin } else { 46544abe47dSHung-Te Lin ch_count += input_keycode_to_ansi364(config, key, 46644abe47dSHung-Te Lin output_ch, max_chars); 4679bc590e5SSimon Glass } 4689bc590e5SSimon Glass } 4699bc590e5SSimon Glass 47044abe47dSHung-Te Lin if (ch_count > max_chars) { 47144abe47dSHung-Te Lin debug("%s: Output char buffer overflow size=%d, need=%d\n", 47244abe47dSHung-Te Lin __func__, max_chars, ch_count); 47344abe47dSHung-Te Lin return -1; 47444abe47dSHung-Te Lin } 47544abe47dSHung-Te Lin 4769bc590e5SSimon Glass /* ok, so return keys */ 4779bc590e5SSimon Glass return ch_count; 4789bc590e5SSimon Glass } 4799bc590e5SSimon Glass 4803a85e436SSimon Glass static int _input_send_keycodes(struct input_config *config, int keycode[], 4813a85e436SSimon Glass int num_keycodes, bool do_send) 4829bc590e5SSimon Glass { 48344abe47dSHung-Te Lin char ch[num_keycodes * ANSI_CHAR_MAX]; 4849bc590e5SSimon Glass int count, i, same = 0; 4859bc590e5SSimon Glass int is_repeat = 0; 4869bc590e5SSimon Glass unsigned delay_ms; 4879bc590e5SSimon Glass 4889bc590e5SSimon Glass config->modifiers = 0; 4899bc590e5SSimon Glass if (!input_check_keycodes(config, keycode, num_keycodes, &same)) { 4909bc590e5SSimon Glass /* 4919bc590e5SSimon Glass * Same as last time - is it time for another repeat? 4929bc590e5SSimon Glass * TODO(sjg@chromium.org) We drop repeats here and since 4939bc590e5SSimon Glass * the caller may not call in again for a while, our 4949bc590e5SSimon Glass * auto-repeat speed is not quite correct. We should 4959bc590e5SSimon Glass * insert another character if we later realise that we 4969bc590e5SSimon Glass * have missed a repeat slot. 4979bc590e5SSimon Glass */ 4980b186c08SSimon Glass is_repeat = config->allow_repeats || (config->repeat_rate_ms && 4990b186c08SSimon Glass (int)get_timer(config->next_repeat_ms) >= 0); 5009bc590e5SSimon Glass if (!is_repeat) 5019bc590e5SSimon Glass return 0; 5029bc590e5SSimon Glass } 5039bc590e5SSimon Glass 5049bc590e5SSimon Glass count = input_keycodes_to_ascii(config, keycode, num_keycodes, 50544abe47dSHung-Te Lin ch, sizeof(ch), is_repeat ? 0 : same); 5063a85e436SSimon Glass if (do_send) { 5079bc590e5SSimon Glass for (i = 0; i < count; i++) 5089bc590e5SSimon Glass input_queue_ascii(config, ch[i]); 5093a85e436SSimon Glass } 5109bc590e5SSimon Glass delay_ms = is_repeat ? 5119bc590e5SSimon Glass config->repeat_rate_ms : 5129bc590e5SSimon Glass config->repeat_delay_ms; 5139bc590e5SSimon Glass 5149bc590e5SSimon Glass config->next_repeat_ms = get_timer(0) + delay_ms; 51544abe47dSHung-Te Lin 51644abe47dSHung-Te Lin return count; 5179bc590e5SSimon Glass } 5189bc590e5SSimon Glass 5193a85e436SSimon Glass int input_send_keycodes(struct input_config *config, int keycode[], 5203a85e436SSimon Glass int num_keycodes) 5213a85e436SSimon Glass { 5223a85e436SSimon Glass return _input_send_keycodes(config, keycode, num_keycodes, true); 5233a85e436SSimon Glass } 5243a85e436SSimon Glass 5253a85e436SSimon Glass int input_add_keycode(struct input_config *config, int new_keycode, 5263a85e436SSimon Glass bool release) 5273a85e436SSimon Glass { 5283a85e436SSimon Glass int keycode[INPUT_MAX_MODIFIERS + 1]; 5293a85e436SSimon Glass int count, i; 5303a85e436SSimon Glass 5313a85e436SSimon Glass /* Add the old keycodes which are not removed by this new one */ 5323a85e436SSimon Glass for (i = 0, count = 0; i < config->num_prev_keycodes; i++) { 5333a85e436SSimon Glass int code = config->prev_keycodes[i]; 5343a85e436SSimon Glass 5353a85e436SSimon Glass if (new_keycode == code) { 5363a85e436SSimon Glass if (release) 5373a85e436SSimon Glass continue; 5383a85e436SSimon Glass new_keycode = -1; 5393a85e436SSimon Glass } 5403a85e436SSimon Glass keycode[count++] = code; 5413a85e436SSimon Glass } 5423a85e436SSimon Glass 5433a85e436SSimon Glass if (!release && new_keycode != -1) 5443a85e436SSimon Glass keycode[count++] = new_keycode; 5453a85e436SSimon Glass debug("\ncodes for %02x/%d: ", new_keycode, release); 5463a85e436SSimon Glass for (i = 0; i < count; i++) 5473a85e436SSimon Glass debug("%02x ", keycode[i]); 5483a85e436SSimon Glass debug("\n"); 5493a85e436SSimon Glass 5503a85e436SSimon Glass /* Don't output any ASCII characters if this is a key release */ 5513a85e436SSimon Glass return _input_send_keycodes(config, keycode, count, !release); 5523a85e436SSimon Glass } 5533a85e436SSimon Glass 5549bc590e5SSimon Glass int input_add_table(struct input_config *config, int left_keycode, 5559bc590e5SSimon Glass int right_keycode, const uchar *xlate, int num_entries) 5569bc590e5SSimon Glass { 5579bc590e5SSimon Glass struct input_key_xlate *table; 5589bc590e5SSimon Glass 5599bc590e5SSimon Glass if (config->num_tables == INPUT_MAX_MODIFIERS) { 5609bc590e5SSimon Glass debug("%s: Too many modifier tables\n", __func__); 5619bc590e5SSimon Glass return -1; 5629bc590e5SSimon Glass } 5639bc590e5SSimon Glass 5649bc590e5SSimon Glass table = &config->table[config->num_tables++]; 5659bc590e5SSimon Glass table->left_keycode = left_keycode; 5669bc590e5SSimon Glass table->right_keycode = right_keycode; 5679bc590e5SSimon Glass table->xlate = xlate; 5689bc590e5SSimon Glass table->num_entries = num_entries; 5699bc590e5SSimon Glass 5709bc590e5SSimon Glass return 0; 5719bc590e5SSimon Glass } 5729bc590e5SSimon Glass 5731b1d3e64SSimon Glass void input_set_delays(struct input_config *config, int repeat_delay_ms, 5749bc590e5SSimon Glass int repeat_rate_ms) 5759bc590e5SSimon Glass { 5761b1d3e64SSimon Glass config->repeat_delay_ms = repeat_delay_ms; 5771b1d3e64SSimon Glass config->repeat_rate_ms = repeat_rate_ms; 5781b1d3e64SSimon Glass } 5791b1d3e64SSimon Glass 5800b186c08SSimon Glass void input_allow_repeats(struct input_config *config, bool allow_repeats) 5810b186c08SSimon Glass { 5820b186c08SSimon Glass config->allow_repeats = allow_repeats; 5830b186c08SSimon Glass } 5840b186c08SSimon Glass 585*b1d7a187SSimon Glass int input_add_tables(struct input_config *config, bool german) 58666877b0fSSimon Glass { 587*b1d7a187SSimon Glass struct kbd_entry *entry; 588*b1d7a187SSimon Glass int mask; 58966877b0fSSimon Glass int ret; 59066877b0fSSimon Glass 591*b1d7a187SSimon Glass mask = german ? KBD_GERMAN : KBD_ENGLISH; 592*b1d7a187SSimon Glass for (entry = kbd_entry; entry->kbd_mask; entry++) { 593*b1d7a187SSimon Glass if (!(mask & entry->kbd_mask)) 594*b1d7a187SSimon Glass continue; 595*b1d7a187SSimon Glass ret = input_add_table(config, entry->left_keycode, 596*b1d7a187SSimon Glass entry->right_keycode, entry->xlate, 597*b1d7a187SSimon Glass entry->num_entries); 59866877b0fSSimon Glass if (ret) 59966877b0fSSimon Glass return ret; 600*b1d7a187SSimon Glass } 60166877b0fSSimon Glass 602*b1d7a187SSimon Glass return 0; 60366877b0fSSimon Glass } 60466877b0fSSimon Glass 6051b1d3e64SSimon Glass int input_init(struct input_config *config, int leds) 6061b1d3e64SSimon Glass { 6079bc590e5SSimon Glass memset(config, '\0', sizeof(*config)); 6089bc590e5SSimon Glass config->leds = leds; 6099bc590e5SSimon Glass 6109bc590e5SSimon Glass return 0; 6119bc590e5SSimon Glass } 6129bc590e5SSimon Glass 6139bc590e5SSimon Glass int input_stdio_register(struct stdio_dev *dev) 6149bc590e5SSimon Glass { 6159bc590e5SSimon Glass int error; 6169bc590e5SSimon Glass 6179bc590e5SSimon Glass error = stdio_register(dev); 6189bc590e5SSimon Glass 6199bc590e5SSimon Glass /* check if this is the standard input device */ 6209bc590e5SSimon Glass if (!error && strcmp(getenv("stdin"), dev->name) == 0) { 6219bc590e5SSimon Glass /* reassign the console */ 6229bc590e5SSimon Glass if (OVERWRITE_CONSOLE || 6239bc590e5SSimon Glass console_assign(stdin, dev->name)) 6249bc590e5SSimon Glass return -1; 6259bc590e5SSimon Glass } 6269bc590e5SSimon Glass 6279bc590e5SSimon Glass return 0; 6289bc590e5SSimon Glass } 629