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      1 // SPDX-License-Identifier: GPL-2.0+
      2 /*
      3  *  EFI application console interface
      4  *
      5  *  Copyright (c) 2016 Alexander Graf
      6  */
      7 
      8 #include <common.h>
      9 #include <charset.h>
     10 #include <dm/device.h>
     11 #include <efi_loader.h>
     12 #include <stdio_dev.h>
     13 #include <video_console.h>
     14 
     15 #define EFI_COUT_MODE_2 2
     16 #define EFI_MAX_COUT_MODE 3
     17 
     18 struct cout_mode {
     19 	unsigned long columns;
     20 	unsigned long rows;
     21 	int present;
     22 };
     23 
     24 static struct cout_mode efi_cout_modes[] = {
     25 	/* EFI Mode 0 is 80x25 and always present */
     26 	{
     27 		.columns = 80,
     28 		.rows = 25,
     29 		.present = 1,
     30 	},
     31 	/* EFI Mode 1 is always 80x50 */
     32 	{
     33 		.columns = 80,
     34 		.rows = 50,
     35 		.present = 0,
     36 	},
     37 	/* Value are unknown until we query the console */
     38 	{
     39 		.columns = 0,
     40 		.rows = 0,
     41 		.present = 0,
     42 	},
     43 };
     44 
     45 const efi_guid_t efi_guid_text_output_protocol =
     46 			EFI_SIMPLE_TEXT_OUTPUT_PROTOCOL_GUID;
     47 const efi_guid_t efi_guid_text_input_protocol =
     48 			EFI_SIMPLE_TEXT_INPUT_PROTOCOL_GUID;
     49 
     50 #define cESC '\x1b'
     51 #define ESC "\x1b"
     52 
     53 /* Default to mode 0 */
     54 static struct simple_text_output_mode efi_con_mode = {
     55 	.max_mode = 1,
     56 	.mode = 0,
     57 	.attribute = 0,
     58 	.cursor_column = 0,
     59 	.cursor_row = 0,
     60 	.cursor_visible = 1,
     61 };
     62 
     63 /*
     64  * Receive and parse a reply from the terminal.
     65  *
     66  * @n:		array of return values
     67  * @num:	number of return values expected
     68  * @end_char:	character indicating end of terminal message
     69  * @return:	non-zero indicates error
     70  */
     71 static int term_read_reply(int *n, int num, char end_char)
     72 {
     73 	char c;
     74 	int i = 0;
     75 
     76 	c = getc();
     77 	if (c != cESC)
     78 		return -1;
     79 	c = getc();
     80 	if (c != '[')
     81 		return -1;
     82 
     83 	n[0] = 0;
     84 	while (1) {
     85 		c = getc();
     86 		if (c == ';') {
     87 			i++;
     88 			if (i >= num)
     89 				return -1;
     90 			n[i] = 0;
     91 			continue;
     92 		} else if (c == end_char) {
     93 			break;
     94 		} else if (c > '9' || c < '0') {
     95 			return -1;
     96 		}
     97 
     98 		/* Read one more decimal position */
     99 		n[i] *= 10;
    100 		n[i] += c - '0';
    101 	}
    102 	if (i != num - 1)
    103 		return -1;
    104 
    105 	return 0;
    106 }
    107 
    108 static efi_status_t EFIAPI efi_cout_reset(
    109 			struct efi_simple_text_output_protocol *this,
    110 			char extended_verification)
    111 {
    112 	EFI_ENTRY("%p, %d", this, extended_verification);
    113 	return EFI_EXIT(EFI_UNSUPPORTED);
    114 }
    115 
    116 static efi_status_t EFIAPI efi_cout_output_string(
    117 			struct efi_simple_text_output_protocol *this,
    118 			const efi_string_t string)
    119 {
    120 	struct simple_text_output_mode *con = &efi_con_mode;
    121 	struct cout_mode *mode = &efi_cout_modes[con->mode];
    122 
    123 	EFI_ENTRY("%p, %p", this, string);
    124 
    125 	unsigned int n16 = utf16_strlen(string);
    126 	char buf[MAX_UTF8_PER_UTF16 * n16 + 1];
    127 	u16 *p;
    128 
    129 	*utf16_to_utf8((u8 *)buf, string, n16) = '\0';
    130 
    131 	fputs(stdout, buf);
    132 
    133 	/*
    134 	 * Update the cursor position.
    135 	 *
    136 	 * The UEFI spec provides advance rules for U+0000, U+0008, U+000A,
    137 	 * and U000D. All other characters, including control characters
    138 	 * U+0007 (bel) and U+0009 (tab), have to increase the column by one.
    139 	 */
    140 	for (p = string; *p; ++p) {
    141 		switch (*p) {
    142 		case '\b':	/* U+0008, backspace */
    143 			con->cursor_column = max(0, con->cursor_column - 1);
    144 			break;
    145 		case '\n':	/* U+000A, newline */
    146 			con->cursor_column = 0;
    147 			con->cursor_row++;
    148 			break;
    149 		case '\r':	/* U+000D, carriage-return */
    150 			con->cursor_column = 0;
    151 			break;
    152 		case 0xd800 ... 0xdbff:
    153 			/*
    154 			 * Ignore high surrogates, we do not want to count a
    155 			 * Unicode character twice.
    156 			 */
    157 			break;
    158 		default:
    159 			con->cursor_column++;
    160 			break;
    161 		}
    162 		if (con->cursor_column >= mode->columns) {
    163 			con->cursor_column = 0;
    164 			con->cursor_row++;
    165 		}
    166 		con->cursor_row = min(con->cursor_row, (s32)mode->rows - 1);
    167 	}
    168 
    169 	return EFI_EXIT(EFI_SUCCESS);
    170 }
    171 
    172 static efi_status_t EFIAPI efi_cout_test_string(
    173 			struct efi_simple_text_output_protocol *this,
    174 			const efi_string_t string)
    175 {
    176 	EFI_ENTRY("%p, %p", this, string);
    177 	return EFI_EXIT(EFI_SUCCESS);
    178 }
    179 
    180 static bool cout_mode_matches(struct cout_mode *mode, int rows, int cols)
    181 {
    182 	if (!mode->present)
    183 		return false;
    184 
    185 	return (mode->rows == rows) && (mode->columns == cols);
    186 }
    187 
    188 static int query_console_serial(int *rows, int *cols)
    189 {
    190 	/* Ask the terminal about its size */
    191 	int n[3];
    192 	u64 timeout;
    193 
    194 	/* Empty input buffer */
    195 	while (tstc())
    196 		getc();
    197 
    198 	printf(ESC"[18t");
    199 
    200 	/* Check if we have a terminal that understands */
    201 	timeout = timer_get_us() + 1000000;
    202 	while (!tstc())
    203 		if (timer_get_us() > timeout)
    204 			return -1;
    205 
    206 	/* Read {depth,rows,cols} */
    207 	if (term_read_reply(n, 3, 't'))
    208 		return -1;
    209 
    210 	*cols = n[2];
    211 	*rows = n[1];
    212 
    213 	return 0;
    214 }
    215 
    216 /*
    217  * Update the mode table.
    218  *
    219  * By default the only mode available is 80x25. If the console has at least 50
    220  * lines, enable mode 80x50. If we can query the console size and it is neither
    221  * 80x25 nor 80x50, set it as an additional mode.
    222  */
    223 static void query_console_size(void)
    224 {
    225 	const char *stdout_name = env_get("stdout");
    226 	int rows = 25, cols = 80;
    227 
    228 	if (stdout_name && !strcmp(stdout_name, "vidconsole") &&
    229 	    IS_ENABLED(CONFIG_DM_VIDEO)) {
    230 		struct stdio_dev *stdout_dev =
    231 			stdio_get_by_name("vidconsole");
    232 		struct udevice *dev = stdout_dev->priv;
    233 		struct vidconsole_priv *priv =
    234 			dev_get_uclass_priv(dev);
    235 		rows = priv->rows;
    236 		cols = priv->cols;
    237 	} else if (query_console_serial(&rows, &cols)) {
    238 		return;
    239 	}
    240 
    241 	/* Test if we can have Mode 1 */
    242 	if (cols >= 80 && rows >= 50) {
    243 		efi_cout_modes[1].present = 1;
    244 		efi_con_mode.max_mode = 2;
    245 	}
    246 
    247 	/*
    248 	 * Install our mode as mode 2 if it is different
    249 	 * than mode 0 or 1 and set it as the currently selected mode
    250 	 */
    251 	if (!cout_mode_matches(&efi_cout_modes[0], rows, cols) &&
    252 	    !cout_mode_matches(&efi_cout_modes[1], rows, cols)) {
    253 		efi_cout_modes[EFI_COUT_MODE_2].columns = cols;
    254 		efi_cout_modes[EFI_COUT_MODE_2].rows = rows;
    255 		efi_cout_modes[EFI_COUT_MODE_2].present = 1;
    256 		efi_con_mode.max_mode = EFI_MAX_COUT_MODE;
    257 		efi_con_mode.mode = EFI_COUT_MODE_2;
    258 	}
    259 }
    260 
    261 static efi_status_t EFIAPI efi_cout_query_mode(
    262 			struct efi_simple_text_output_protocol *this,
    263 			unsigned long mode_number, unsigned long *columns,
    264 			unsigned long *rows)
    265 {
    266 	EFI_ENTRY("%p, %ld, %p, %p", this, mode_number, columns, rows);
    267 
    268 	if (mode_number >= efi_con_mode.max_mode)
    269 		return EFI_EXIT(EFI_UNSUPPORTED);
    270 
    271 	if (efi_cout_modes[mode_number].present != 1)
    272 		return EFI_EXIT(EFI_UNSUPPORTED);
    273 
    274 	if (columns)
    275 		*columns = efi_cout_modes[mode_number].columns;
    276 	if (rows)
    277 		*rows = efi_cout_modes[mode_number].rows;
    278 
    279 	return EFI_EXIT(EFI_SUCCESS);
    280 }
    281 
    282 static efi_status_t EFIAPI efi_cout_set_mode(
    283 			struct efi_simple_text_output_protocol *this,
    284 			unsigned long mode_number)
    285 {
    286 	EFI_ENTRY("%p, %ld", this, mode_number);
    287 
    288 
    289 	if (mode_number > efi_con_mode.max_mode)
    290 		return EFI_EXIT(EFI_UNSUPPORTED);
    291 
    292 	efi_con_mode.mode = mode_number;
    293 	efi_con_mode.cursor_column = 0;
    294 	efi_con_mode.cursor_row = 0;
    295 
    296 	return EFI_EXIT(EFI_SUCCESS);
    297 }
    298 
    299 static const struct {
    300 	unsigned int fg;
    301 	unsigned int bg;
    302 } color[] = {
    303 	{ 30, 40 },     /* 0: black */
    304 	{ 34, 44 },     /* 1: blue */
    305 	{ 32, 42 },     /* 2: green */
    306 	{ 36, 46 },     /* 3: cyan */
    307 	{ 31, 41 },     /* 4: red */
    308 	{ 35, 45 },     /* 5: magenta */
    309 	{ 33, 43 },     /* 6: brown, map to yellow as edk2 does*/
    310 	{ 37, 47 },     /* 7: light grey, map to white */
    311 };
    312 
    313 /* See EFI_SIMPLE_TEXT_OUTPUT_PROTOCOL.SetAttribute(). */
    314 static efi_status_t EFIAPI efi_cout_set_attribute(
    315 			struct efi_simple_text_output_protocol *this,
    316 			unsigned long attribute)
    317 {
    318 	unsigned int bold = EFI_ATTR_BOLD(attribute);
    319 	unsigned int fg = EFI_ATTR_FG(attribute);
    320 	unsigned int bg = EFI_ATTR_BG(attribute);
    321 
    322 	EFI_ENTRY("%p, %lx", this, attribute);
    323 
    324 	if (attribute)
    325 		printf(ESC"[%u;%u;%um", bold, color[fg].fg, color[bg].bg);
    326 	else
    327 		printf(ESC"[0;37;40m");
    328 
    329 	return EFI_EXIT(EFI_SUCCESS);
    330 }
    331 
    332 static efi_status_t EFIAPI efi_cout_clear_screen(
    333 			struct efi_simple_text_output_protocol *this)
    334 {
    335 	EFI_ENTRY("%p", this);
    336 
    337 	printf(ESC"[2J");
    338 
    339 	return EFI_EXIT(EFI_SUCCESS);
    340 }
    341 
    342 static efi_status_t EFIAPI efi_cout_set_cursor_position(
    343 			struct efi_simple_text_output_protocol *this,
    344 			unsigned long column, unsigned long row)
    345 {
    346 	EFI_ENTRY("%p, %ld, %ld", this, column, row);
    347 
    348 	printf(ESC"[%d;%df", (int)row, (int)column);
    349 	efi_con_mode.cursor_column = column;
    350 	efi_con_mode.cursor_row = row;
    351 
    352 	return EFI_EXIT(EFI_SUCCESS);
    353 }
    354 
    355 static efi_status_t EFIAPI efi_cout_enable_cursor(
    356 			struct efi_simple_text_output_protocol *this,
    357 			bool enable)
    358 {
    359 	EFI_ENTRY("%p, %d", this, enable);
    360 
    361 	printf(ESC"[?25%c", enable ? 'h' : 'l');
    362 
    363 	return EFI_EXIT(EFI_SUCCESS);
    364 }
    365 
    366 struct efi_simple_text_output_protocol efi_con_out = {
    367 	.reset = efi_cout_reset,
    368 	.output_string = efi_cout_output_string,
    369 	.test_string = efi_cout_test_string,
    370 	.query_mode = efi_cout_query_mode,
    371 	.set_mode = efi_cout_set_mode,
    372 	.set_attribute = efi_cout_set_attribute,
    373 	.clear_screen = efi_cout_clear_screen,
    374 	.set_cursor_position = efi_cout_set_cursor_position,
    375 	.enable_cursor = efi_cout_enable_cursor,
    376 	.mode = (void*)&efi_con_mode,
    377 };
    378 
    379 static efi_status_t EFIAPI efi_cin_reset(
    380 			struct efi_simple_input_interface *this,
    381 			bool extended_verification)
    382 {
    383 	EFI_ENTRY("%p, %d", this, extended_verification);
    384 	return EFI_EXIT(EFI_UNSUPPORTED);
    385 }
    386 
    387 /*
    388  * Analyze modifiers (shift, alt, ctrl) for function keys.
    389  * This gets called when we have already parsed CSI.
    390  *
    391  * @modifiers:  bitmask (shift, alt, ctrl)
    392  * @return:	the unmodified code
    393  */
    394 static char skip_modifiers(int *modifiers)
    395 {
    396 	char c, mod = 0, ret = 0;
    397 
    398 	c = getc();
    399 
    400 	if (c != ';') {
    401 		ret = c;
    402 		if (c == '~')
    403 			goto out;
    404 		c = getc();
    405 	}
    406 	for (;;) {
    407 		switch (c) {
    408 		case '0'...'9':
    409 			mod *= 10;
    410 			mod += c - '0';
    411 		/* fall through */
    412 		case ';':
    413 			c = getc();
    414 			break;
    415 		default:
    416 			goto out;
    417 		}
    418 	}
    419 out:
    420 	if (mod)
    421 		--mod;
    422 	if (modifiers)
    423 		*modifiers = mod;
    424 	if (!ret)
    425 		ret = c;
    426 	return ret;
    427 }
    428 
    429 static efi_status_t EFIAPI efi_cin_read_key_stroke(
    430 			struct efi_simple_input_interface *this,
    431 			struct efi_input_key *key)
    432 {
    433 	struct efi_input_key pressed_key = {
    434 		.scan_code = 0,
    435 		.unicode_char = 0,
    436 	};
    437 	char ch;
    438 
    439 	EFI_ENTRY("%p, %p", this, key);
    440 
    441 	/* We don't do interrupts, so check for timers cooperatively */
    442 	efi_timer_check();
    443 
    444 	if (!tstc()) {
    445 		/* No key pressed */
    446 		return EFI_EXIT(EFI_NOT_READY);
    447 	}
    448 
    449 	ch = getc();
    450 	if (ch == cESC) {
    451 		/*
    452 		 * Xterm Control Sequences
    453 		 * https://www.xfree86.org/4.8.0/ctlseqs.html
    454 		 */
    455 		ch = getc();
    456 		switch (ch) {
    457 		case cESC: /* ESC */
    458 			pressed_key.scan_code = 23;
    459 			break;
    460 		case 'O': /* F1 - F4 */
    461 			ch = getc();
    462 			/* skip modifiers */
    463 			if (ch <= '9')
    464 				ch = getc();
    465 			pressed_key.scan_code = ch - 'P' + 11;
    466 			break;
    467 		case 'a'...'z':
    468 			ch = ch - 'a';
    469 			break;
    470 		case '[':
    471 			ch = getc();
    472 			switch (ch) {
    473 			case 'A'...'D': /* up, down right, left */
    474 				pressed_key.scan_code = ch - 'A' + 1;
    475 				break;
    476 			case 'F': /* End */
    477 				pressed_key.scan_code = 6;
    478 				break;
    479 			case 'H': /* Home */
    480 				pressed_key.scan_code = 5;
    481 				break;
    482 			case '1':
    483 				ch = skip_modifiers(NULL);
    484 				switch (ch) {
    485 				case '1'...'5': /* F1 - F5 */
    486 					pressed_key.scan_code = ch - '1' + 11;
    487 					break;
    488 				case '7'...'9': /* F6 - F8 */
    489 					pressed_key.scan_code = ch - '7' + 16;
    490 					break;
    491 				case 'A'...'D': /* up, down right, left */
    492 					pressed_key.scan_code = ch - 'A' + 1;
    493 					break;
    494 				case 'F':
    495 					pressed_key.scan_code = 6; /* End */
    496 					break;
    497 				case 'H':
    498 					pressed_key.scan_code = 5; /* Home */
    499 					break;
    500 				}
    501 				break;
    502 			case '2':
    503 				ch = skip_modifiers(NULL);
    504 				switch (ch) {
    505 				case '0'...'1': /* F9 - F10 */
    506 					pressed_key.scan_code = ch - '0' + 19;
    507 					break;
    508 				case '3'...'4': /* F11 - F12 */
    509 					pressed_key.scan_code = ch - '3' + 21;
    510 					break;
    511 				case '~': /* INS */
    512 					pressed_key.scan_code = 7;
    513 					break;
    514 				}
    515 				break;
    516 			case '3': /* DEL */
    517 				pressed_key.scan_code = 8;
    518 				skip_modifiers(NULL);
    519 				break;
    520 			case '5': /* PG UP */
    521 				pressed_key.scan_code = 9;
    522 				skip_modifiers(NULL);
    523 				break;
    524 			case '6': /* PG DOWN */
    525 				pressed_key.scan_code = 10;
    526 				skip_modifiers(NULL);
    527 				break;
    528 			}
    529 			break;
    530 		}
    531 	} else if (ch == 0x7f) {
    532 		/* Backspace */
    533 		ch = 0x08;
    534 	}
    535 	if (!pressed_key.scan_code)
    536 		pressed_key.unicode_char = ch;
    537 	*key = pressed_key;
    538 
    539 	return EFI_EXIT(EFI_SUCCESS);
    540 }
    541 
    542 struct efi_simple_input_interface efi_con_in = {
    543 	.reset = efi_cin_reset,
    544 	.read_key_stroke = efi_cin_read_key_stroke,
    545 	.wait_for_key = NULL,
    546 };
    547 
    548 static struct efi_event *console_timer_event;
    549 
    550 static void EFIAPI efi_key_notify(struct efi_event *event, void *context)
    551 {
    552 }
    553 
    554 /*
    555  * Notification function of the console timer event.
    556  *
    557  * event:	console timer event
    558  * context:	not used
    559  */
    560 static void EFIAPI efi_console_timer_notify(struct efi_event *event,
    561 					    void *context)
    562 {
    563 	EFI_ENTRY("%p, %p", event, context);
    564 
    565 	/* Check if input is available */
    566 	if (tstc()) {
    567 		/* Queue the wait for key event */
    568 		efi_con_in.wait_for_key->is_signaled = true;
    569 		efi_signal_event(efi_con_in.wait_for_key, true);
    570 	}
    571 	EFI_EXIT(EFI_SUCCESS);
    572 }
    573 
    574 /* This gets called from do_bootefi_exec(). */
    575 int efi_console_register(void)
    576 {
    577 	efi_status_t r;
    578 	struct efi_object *efi_console_output_obj;
    579 	struct efi_object *efi_console_input_obj;
    580 
    581 	/* Set up mode information */
    582 	query_console_size();
    583 
    584 	/* Create handles */
    585 	r = efi_create_handle((efi_handle_t *)&efi_console_output_obj);
    586 	if (r != EFI_SUCCESS)
    587 		goto out_of_memory;
    588 	r = efi_add_protocol(efi_console_output_obj->handle,
    589 			     &efi_guid_text_output_protocol, &efi_con_out);
    590 	if (r != EFI_SUCCESS)
    591 		goto out_of_memory;
    592 	r = efi_create_handle((efi_handle_t *)&efi_console_input_obj);
    593 	if (r != EFI_SUCCESS)
    594 		goto out_of_memory;
    595 	r = efi_add_protocol(efi_console_input_obj->handle,
    596 			     &efi_guid_text_input_protocol, &efi_con_in);
    597 	if (r != EFI_SUCCESS)
    598 		goto out_of_memory;
    599 
    600 	/* Create console events */
    601 	r = efi_create_event(EVT_NOTIFY_WAIT, TPL_CALLBACK, efi_key_notify,
    602 			     NULL, NULL, &efi_con_in.wait_for_key);
    603 	if (r != EFI_SUCCESS) {
    604 		printf("ERROR: Failed to register WaitForKey event\n");
    605 		return r;
    606 	}
    607 	r = efi_create_event(EVT_TIMER | EVT_NOTIFY_SIGNAL, TPL_CALLBACK,
    608 			     efi_console_timer_notify, NULL, NULL,
    609 			     &console_timer_event);
    610 	if (r != EFI_SUCCESS) {
    611 		printf("ERROR: Failed to register console event\n");
    612 		return r;
    613 	}
    614 	/* 5000 ns cycle is sufficient for 2 MBaud */
    615 	r = efi_set_timer(console_timer_event, EFI_TIMER_PERIODIC, 50);
    616 	if (r != EFI_SUCCESS)
    617 		printf("ERROR: Failed to set console timer\n");
    618 	return r;
    619 out_of_memory:
    620 	printf("ERROR: Out of meemory\n");
    621 	return r;
    622 }
    623