xref: /rk3399_rockchip-uboot/drivers/input/input.c (revision b1d7a1875e2f96417a2ecd7ebe1680f650c2be22)
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