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Heiko Schocherf7264c32011-11-29 02:33:47 +00001/*
2 * (C) Copyright 2011
3 * Heiko Schocher, DENX Software Engineering, hs@denx.de.
4 *
5 * Based on:
6 * Copyright (C) 2010 Texas Instruments Incorporated - http://www.ti.com/
7 *
8 * Based on da830evm.c. Original Copyrights follow:
9 *
10 * Copyright (C) 2009 Nick Thompson, GE Fanuc, Ltd. <nick.thompson@gefanuc.com>
11 * Copyright (C) 2007 Sergey Kubushyn <ksi@koi8.net>
12 *
13 * This program is free software; you can redistribute it and/or modify
14 * it under the terms of the GNU General Public License as published by
15 * the Free Software Foundation; either version 2 of the License, or
16 * (at your option) any later version.
17 *
18 * This program is distributed in the hope that it will be useful,
19 * but WITHOUT ANY WARRANTY; without even the implied warranty of
20 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
21 * GNU General Public License for more details.
22 *
23 * You should have received a copy of the GNU General Public License
24 * along with this program; if not, write to the Free Software
25 * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
26 */
27
28#include <common.h>
29#include <command.h>
30#include <environment.h>
31#include <hwconfig.h>
32#include <i2c.h>
33#include <malloc.h>
34#include <miiphy.h>
35#include <mmc.h>
36#include <net.h>
37#include <netdev.h>
38#include <asm/gpio.h>
39#include <asm/io.h>
40#include <asm/arch/da850_lowlevel.h>
41#include <asm/arch/davinci_misc.h>
42#include <asm/arch/emif_defs.h>
43#include <asm/arch/emac_defs.h>
44#include <asm/arch/gpio.h>
45#include <asm/arch/pinmux_defs.h>
46#include <asm/arch/hardware.h>
47#include <asm/arch/sdmmc_defs.h>
48#include <asm/arch/timer_defs.h>
49
50DECLARE_GLOBAL_DATA_PTR;
51
Sughosh Ganu6b873dc2012-02-02 00:44:41 +000052const struct lpsc_resource lpsc[] = {
Heiko Schocherf7264c32011-11-29 02:33:47 +000053 { DAVINCI_LPSC_AEMIF },
54 { DAVINCI_LPSC_SPI1 },
55 { DAVINCI_LPSC_ARM_RAM_ROM },
56 { DAVINCI_LPSC_UART0 },
57 { DAVINCI_LPSC_EMAC },
58 { DAVINCI_LPSC_UART0 },
59 { DAVINCI_LPSC_GPIO },
60 { DAVINCI_LPSC_DDR_EMIF },
61 { DAVINCI_LPSC_UART1 },
62 { DAVINCI_LPSC_UART2 },
63 { DAVINCI_LPSC_MMC_SD1 },
64 { DAVINCI_LPSC_USB20 },
65 { DAVINCI_LPSC_USB11 },
66};
67
Sughosh Ganu6b873dc2012-02-02 00:44:41 +000068const int lpsc_size = ARRAY_SIZE(lpsc);
69
Heiko Schocherf7264c32011-11-29 02:33:47 +000070static const struct pinmux_config enbw_pins[] = {
71 { pinmux(0), 8, 0 },
72 { pinmux(0), 8, 1 },
73 { pinmux(0), 8, 2 },
74 { pinmux(0), 8, 3 },
75 { pinmux(0), 8, 4 },
76 { pinmux(0), 8, 5 },
77 { pinmux(1), 4, 0 },
78 { pinmux(1), 8, 1 },
79 { pinmux(1), 8, 2 },
80 { pinmux(1), 8, 3 },
81 { pinmux(1), 8, 4 },
82 { pinmux(1), 8, 5 },
83 { pinmux(1), 8, 6 },
84 { pinmux(1), 4, 7 },
85 { pinmux(2), 8, 0 },
86 { pinmux(5), 1, 0 },
87 { pinmux(5), 1, 3 },
88 { pinmux(5), 1, 7 },
89 { pinmux(6), 1, 0 },
90 { pinmux(6), 1, 1 },
91 { pinmux(6), 8, 2 },
92 { pinmux(6), 8, 3 },
93 { pinmux(6), 1, 4 },
94 { pinmux(6), 8, 5 },
95 { pinmux(6), 1, 7 },
96 { pinmux(7), 8, 2 },
97 { pinmux(7), 1, 3 },
98 { pinmux(7), 1, 6 },
99 { pinmux(7), 1, 7 },
100 { pinmux(13), 8, 2 },
101 { pinmux(13), 8, 3 },
102 { pinmux(13), 8, 4 },
103 { pinmux(13), 8, 5 },
104 { pinmux(13), 8, 6 },
105 { pinmux(13), 8, 7 },
106 { pinmux(14), 8, 0 },
107 { pinmux(14), 8, 1 },
108 { pinmux(16), 8, 1 },
109 { pinmux(16), 8, 2 },
110 { pinmux(16), 8, 3 },
111 { pinmux(16), 8, 4 },
112 { pinmux(16), 8, 5 },
113 { pinmux(16), 8, 6 },
114 { pinmux(16), 8, 7 },
115 { pinmux(17), 1, 0 },
116 { pinmux(17), 1, 1 },
117 { pinmux(17), 1, 2 },
118 { pinmux(17), 8, 3 },
119 { pinmux(17), 8, 4 },
120 { pinmux(17), 8, 5 },
121 { pinmux(17), 8, 6 },
122 { pinmux(17), 8, 7 },
123 { pinmux(18), 8, 0 },
124 { pinmux(18), 8, 1 },
125 { pinmux(18), 2, 2 },
126 { pinmux(18), 2, 3 },
127 { pinmux(18), 2, 4 },
128 { pinmux(18), 8, 6 },
129 { pinmux(18), 8, 7 },
130 { pinmux(19), 8, 0 },
131 { pinmux(19), 2, 1 },
132 { pinmux(19), 2, 2 },
133 { pinmux(19), 2, 3 },
134 { pinmux(19), 2, 4 },
135 { pinmux(19), 8, 5 },
136 { pinmux(19), 8, 6 },
137};
138
139const struct pinmux_resource pinmuxes[] = {
140 PINMUX_ITEM(emac_pins_mii),
141 PINMUX_ITEM(emac_pins_mdio),
142 PINMUX_ITEM(i2c0_pins),
143 PINMUX_ITEM(emifa_pins_cs2),
144 PINMUX_ITEM(emifa_pins_cs3),
145 PINMUX_ITEM(emifa_pins_cs4),
146 PINMUX_ITEM(emifa_pins_nand),
147 PINMUX_ITEM(emifa_pins_nor),
148 PINMUX_ITEM(spi1_pins_base),
149 PINMUX_ITEM(spi1_pins_scs0),
150 PINMUX_ITEM(uart1_pins_txrx),
151 PINMUX_ITEM(uart2_pins_txrx),
152 PINMUX_ITEM(uart2_pins_rtscts),
153 PINMUX_ITEM(enbw_pins),
154};
155
156const int pinmuxes_size = ARRAY_SIZE(pinmuxes);
157
158struct gpio_config {
159 char name[GPIO_NAME_SIZE];
160 unsigned char bank;
161 unsigned char gpio;
162 unsigned char out;
163 unsigned char value;
164};
165
166static const struct gpio_config enbw_gpio_config[] = {
167 { "RS485 enable", 8, 11, 1, 0 },
168 { "RS485 iso", 8, 10, 1, 0 },
169 { "W2HUT RS485 Rx ena", 8, 9, 1, 0 },
170 { "W2HUT RS485 iso", 8, 8, 1, 0 },
171 { "LAN reset", 7, 15, 1, 1 },
172 { "ena 11V PLC", 7, 14, 1, 0 },
173 { "ena 1.5V PLC", 7, 13, 1, 0 },
174 { "disable VBUS", 7, 12, 1, 1 },
175 { "PLC reset", 6, 13, 1, 1 },
176 { "LCM RS", 6, 12, 1, 0 },
177 { "LCM R/W", 6, 11, 1, 0 },
178 { "PLC pairing", 6, 10, 1, 1 },
179 { "PLC MDIO CLK", 6, 9, 1, 0 },
180 { "HK218", 6, 8, 1, 0 },
181 { "HK218 Rx", 6, 1, 1, 1 },
182 { "TPM reset", 6, 0, 1, 1 },
183 { "LCM E", 2, 2, 1, 1 },
184 { "PV-IF RxD ena", 0, 15, 1, 1 },
185 { "LED1", 1, 15, 1, 1 },
186 { "LED2", 0, 1, 1, 1 },
187 { "LED3", 0, 2, 1, 1 },
188 { "LED4", 0, 3, 1, 1 },
189 { "LED5", 0, 4, 1, 1 },
190 { "LED6", 0, 5, 1, 0 },
191 { "LED7", 0, 6, 1, 0 },
192 { "LED8", 0, 14, 1, 0 },
193 { "USER1", 0, 12, 0, 0 },
194 { "USER2", 0, 13, 0, 0 },
195};
196
197#define PHY_POWER 0x0800
198
199static void enbw_cmc_switch(int port, int on)
200{
201 const char *devname;
202 unsigned char phyaddr = 3;
203 unsigned char reg = 0;
204 unsigned short data;
205
206 if (port == 1)
207 phyaddr = 2;
208
209 devname = miiphy_get_current_dev();
210 if (!devname) {
211 printf("Error: no mii device\n");
212 return;
213 }
214 if (miiphy_read(devname, phyaddr, reg, &data) != 0) {
215 printf("Error reading from the PHY addr=%02x reg=%02x\n",
216 phyaddr, reg);
217 return;
218 }
219
220 if (on)
221 data &= ~PHY_POWER;
222 else
223 data |= PHY_POWER;
224
225 if (miiphy_write(devname, phyaddr, reg, data) != 0) {
226 printf("Error writing to the PHY addr=%02x reg=%02x\n",
227 phyaddr, reg);
228 return;
229 }
230}
231
232int board_init(void)
233{
234 int i, ret;
235
236#ifndef CONFIG_USE_IRQ
237 irq_init();
238#endif
239 /* address of boot parameters, not used as booting with DTT */
240 gd->bd->bi_boot_params = 0;
241
242 for (i = 0; i < ARRAY_SIZE(enbw_gpio_config); i++) {
243 int gpio = enbw_gpio_config[i].bank * 16 +
244 enbw_gpio_config[i].gpio;
245
246 ret = gpio_request(gpio, enbw_gpio_config[i].name);
247 if (ret) {
248 printf("%s: Could not get %s gpio\n", __func__,
249 enbw_gpio_config[i].name);
250 return -1;
251 }
252
253 if (enbw_gpio_config[i].out)
254 gpio_direction_output(gpio,
255 enbw_gpio_config[i].value);
256 else
257 gpio_direction_input(gpio);
258 }
259
260 /* setup the SUSPSRC for ARM to control emulation suspend */
261 clrbits_le32(&davinci_syscfg_regs->suspsrc,
262 (DAVINCI_SYSCFG_SUSPSRC_EMAC | DAVINCI_SYSCFG_SUSPSRC_I2C |
263 DAVINCI_SYSCFG_SUSPSRC_SPI1 | DAVINCI_SYSCFG_SUSPSRC_TIMER0 |
264 DAVINCI_SYSCFG_SUSPSRC_UART2));
265
266 return 0;
267}
268
269#ifdef CONFIG_DRIVER_TI_EMAC
270/*
271 * Initializes on-board ethernet controllers.
272 */
273int board_eth_init(bd_t *bis)
274{
275#ifdef CONFIG_DRIVER_TI_EMAC
276 davinci_emac_mii_mode_sel(0);
277#endif /* CONFIG_DRIVER_TI_EMAC */
278
279 if (!davinci_emac_initialize()) {
280 printf("Error: Ethernet init failed!\n");
281 return -1;
282 }
283
284 if (hwconfig_subarg_cmp("switch", "lan", "on"))
285 /* Switch port lan on */
286 enbw_cmc_switch(1, 1);
287 else
288 enbw_cmc_switch(1, 0);
289
290 if (hwconfig_subarg_cmp("switch", "pwl", "on"))
291 /* Switch port pwl on */
292 enbw_cmc_switch(2, 1);
293 else
294 enbw_cmc_switch(2, 0);
295
296 return 0;
297}
298#endif /* CONFIG_DRIVER_TI_EMAC */
299
300#ifdef CONFIG_PREBOOT
301static uchar kbd_magic_prefix[] = "key_magic_";
302static uchar kbd_command_prefix[] = "key_cmd_";
303
304struct kbd_data_t {
305 char s1;
306};
307
308struct kbd_data_t *get_keys(struct kbd_data_t *kbd_data)
309{
310 /* read SW1 + SW2 */
311 kbd_data->s1 = gpio_get_value(12) +
312 (gpio_get_value(13) << 1);
313 return kbd_data;
314}
315
316static int compare_magic(const struct kbd_data_t *kbd_data, char *str)
317{
318 char s1 = str[0];
319
320 if (s1 >= '0' && s1 <= '9')
321 s1 -= '0';
322 else if (s1 >= 'a' && s1 <= 'f')
323 s1 = s1 - 'a' + 10;
324 else if (s1 >= 'A' && s1 <= 'F')
325 s1 = s1 - 'A' + 10;
326 else
327 return -1;
328
329 if (s1 != kbd_data->s1)
330 return -1;
331
332 return 0;
333}
334
335static char *key_match(const struct kbd_data_t *kbd_data)
336{
337 char magic[sizeof(kbd_magic_prefix) + 1];
338 char *suffix;
339 char *kbd_magic_keys;
340
341 /*
342 * The following string defines the characters that can be appended
343 * to "key_magic" to form the names of environment variables that
344 * hold "magic" key codes, i. e. such key codes that can cause
345 * pre-boot actions. If the string is empty (""), then only
346 * "key_magic" is checked (old behaviour); the string "125" causes
347 * checks for "key_magic1", "key_magic2" and "key_magic5", etc.
348 */
349 kbd_magic_keys = getenv("magic_keys");
350 if (kbd_magic_keys == NULL)
351 kbd_magic_keys = "";
352
353 /*
354 * loop over all magic keys;
355 * use '\0' suffix in case of empty string
356 */
357 for (suffix = kbd_magic_keys; *suffix ||
358 suffix == kbd_magic_keys; ++suffix) {
359 sprintf(magic, "%s%c", kbd_magic_prefix, *suffix);
360
361 if (compare_magic(kbd_data, getenv(magic)) == 0) {
362 char cmd_name[sizeof(kbd_command_prefix) + 1];
363 char *cmd;
364
365 sprintf(cmd_name, "%s%c", kbd_command_prefix, *suffix);
366 cmd = getenv(cmd_name);
367
368 return cmd;
369 }
370 }
371
372 return NULL;
373}
374#endif /* CONFIG_PREBOOT */
375
376int misc_init_r(void)
377{
378 char *s, buf[32];
379#ifdef CONFIG_PREBOOT
380 struct kbd_data_t kbd_data;
381 /* Decode keys */
382 char *str = strdup(key_match(get_keys(&kbd_data)));
383 /* Set or delete definition */
384 setenv("preboot", str);
385 free(str);
386#endif /* CONFIG_PREBOOT */
387
388 /* count all restarts, and save this in an environment var */
389 s = getenv("restartcount");
390
391 if (s)
392 sprintf(buf, "%ld", simple_strtoul(s, NULL, 10) + 1);
393 else
394 strcpy(buf, "1");
395
396 setenv("restartcount", buf);
397 saveenv();
398
399#ifdef CONFIG_HW_WATCHDOG
400 davinci_hw_watchdog_enable();
401#endif
402
403 return 0;
404}
405
406struct cmc_led {
407 char name[20];
408 unsigned char bank;
409 unsigned char gpio;
410};
411
412struct cmc_led led_table[] = {
413 {"led1", 1, 15},
414 {"led2", 0, 1},
415 {"led3", 0, 2},
416 {"led4", 0, 3},
417 {"led5", 0, 4},
418 {"led6", 0, 5},
419 {"led7", 0, 6},
420 {"led8", 0, 14},
421};
422
423static int cmc_get_led_state(struct cmc_led *led)
424{
425 int value;
426 int gpio = led->bank * 16 + led->gpio;
427
428 value = gpio_get_value(gpio);
429
430 return value;
431}
432
433static int cmc_set_led_state(struct cmc_led *led, int state)
434{
435 int gpio = led->bank * 16 + led->gpio;
436
437 gpio_set_value(gpio, state);
438 return 0;
439}
440
441static int do_led(cmd_tbl_t *cmdtp, int flag, int argc, char *const argv[])
442{
443 struct cmc_led *led;
444 int found = 0;
445 int i = 0;
446 int only_print = 0;
447 int len = ARRAY_SIZE(led_table);
448
449 if (argc < 2)
450 return cmd_usage(cmdtp);
451
452 if (argc < 3)
453 only_print = 1;
454
455 led = led_table;
456 while ((!found) && (i < len)) {
457 if (strcmp(argv[1], led->name) == 0) {
458 found = 1;
459 } else {
460 led++;
461 i++;
462 }
463 }
464 if (!found)
465 return cmd_usage(cmdtp);
466
467 if (only_print) {
468 if (cmc_get_led_state(led))
469 printf("on\n");
470 else
471 printf("off\n");
472
473 return 0;
474 }
475 if (strcmp(argv[2], "on") == 0)
476 cmc_set_led_state(led, 1);
477 else
478 cmc_set_led_state(led, 0);
479
480 return 0;
481}
482
483U_BOOT_CMD(led, 3, 1, do_led,
484 "switch on/off board led",
485 "[name] [on/off]"
486);
487
488#ifdef CONFIG_HW_WATCHDOG
489void hw_watchdog_reset(void)
490{
491 davinci_hw_watchdog_reset();
492}
493#endif
494
495#if defined(CONFIG_POST)
496void arch_memory_failure_handle(void)
497{
498 struct davinci_gpio *gpio = davinci_gpio_bank01;
499 int state = 1;
500
501 /*
502 * if memor< failure blink with the LED 1,2 and 3
503 * as we running from flash, we cannot use the gpio
504 * api here, so access the gpio pin direct through
505 * the gpio register.
506 */
507 while (1) {
508 if (state) {
509 clrbits_le32(&gpio->out_data, 0x80000006);
510 state = 0;
511 } else {
512 setbits_le32(&gpio->out_data, 0x80000006);
513 state = 1;
514 }
515 udelay(500);
516 }
517}
518#endif
519
520#if defined(CONFIG_BOOTCOUNT_LIMIT)
521void bootcount_store(ulong a)
522{
523 struct davinci_rtc *reg =
524 (struct davinci_rtc *)CONFIG_SYS_BOOTCOUNT_ADDR;
525
526 /*
527 * write RTC kick register to enable write
528 * for RTC Scratch registers. Cratch0 and 1 are
529 * used for bootcount values.
530 */
Christian Riescha601bed2011-12-21 04:49:18 +0000531 writel(RTC_KICK0R_WE, &reg->kick0r);
532 writel(RTC_KICK1R_WE, &reg->kick1r);
Heiko Schocherf7264c32011-11-29 02:33:47 +0000533 out_be32(&reg->scratch0, a);
534 out_be32(&reg->scratch1, BOOTCOUNT_MAGIC);
535}
536
537ulong bootcount_load(void)
538{
539 struct davinci_rtc *reg =
540 (struct davinci_rtc *)CONFIG_SYS_BOOTCOUNT_ADDR;
541
542 if (in_be32(&reg->scratch1) != BOOTCOUNT_MAGIC)
543 return 0;
544 else
545 return in_be32(&reg->scratch0);
546}
547#endif
548
549void board_gpio_init(void)
550{
551 struct davinci_gpio *gpio = davinci_gpio_bank01;
552
553 /*
Heiko Schocherf7264c32011-11-29 02:33:47 +0000554 * set LED (gpio Interface not usable here)
555 * set LED pins to output and state 0
556 */
557 clrbits_le32(&gpio->dir, 0x8000407e);
558 clrbits_le32(&gpio->out_data, 0x8000407e);
559 /* set LED 1 - 5 to state on */
560 setbits_le32(&gpio->out_data, 0x8000001e);
561}
562
563int board_late_init(void)
564{
565 cmc_set_led_state(&led_table[4], 0);
566
567 return 0;
568}
569
570void show_boot_progress(int val)
571{
572 switch (val) {
573 case 1:
574 cmc_set_led_state(&led_table[4], 1);
575 break;
576 case 4:
577 cmc_set_led_state(&led_table[4], 0);
578 break;
579 case 15:
580 cmc_set_led_state(&led_table[4], 1);
581 break;
582 }
583}
584
585#ifdef CONFIG_DAVINCI_MMC
586static struct davinci_mmc mmc_sd1 = {
587 .reg_base = (struct davinci_mmc_regs *)DAVINCI_MMC_SD1_BASE,
588 .input_clk = 228000000,
589 .host_caps = MMC_MODE_4BIT,
590 .voltages = MMC_VDD_32_33 | MMC_VDD_33_34,
591 .version = MMC_CTLR_VERSION_2,
592};
593
594int board_mmc_init(bd_t *bis)
595{
596 mmc_sd1.input_clk = clk_get(DAVINCI_MMC_CLKID);
597 /* Add slot-0 to mmc subsystem */
598 return davinci_mmc_init(bis, &mmc_sd1);
599}
600#endif