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Jens Scharsigaeceb502010-02-03 22:48:09 +01001/*
2 * (C) Copyright 2008-2009
3 * BuS Elektronik GmbH & Co. KG <www.bus-elektronik.de>
4 * Jens Scharsig <esw@bus-elektronik.de>
5 *
6 * See file CREDITS for list of people who contributed to this
7 * project.
8 *
9 * This program is free software; you can redistribute it and/or
10 * modify it under the terms of the GNU General Public License as
11 * published by the Free Software Foundation; either version 2 of
12 * the License, or (at your option) any later version.
13 *
14 * This program is distributed in the hope that it will be useful,
15 * but WITHOUT ANY WARRANTY; without even the implied warranty of
16 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
17 * GNU General Public License for more details.
18 *
19 * You should have received a copy of the GNU General Public License
20 * along with this program; if not, write to the Free Software
21 * Foundation, Inc., 59 Temple Place, Suite 330, Boston,
22 * MA 02111-1307 USA
23 */
24
25#include <common.h>
26#include <exports.h>
27#include <net.h>
28#include <netdev.h>
29#include <nand.h>
30
31#include <asm/io.h>
32#include <asm/arch/hardware.h>
33#include <asm/arch/at91_pio.h>
34#include <asm/arch/at91_pmc.h>
35#include <asm/arch/at91_mc.h>
Andreas Bießmann6db59682011-06-12 01:49:15 +000036#include <asm/arch/at91_common.h>
Jens Scharsigaeceb502010-02-03 22:48:09 +010037
38#ifdef CONFIG_STATUS_LED
39#include <status_led.h>
40#endif
41
42#ifdef CONFIG_VIDEO
43#include <bus_vcxk.h>
44
45extern unsigned long display_width;
46extern unsigned long display_height;
47#endif
48
49#ifdef CONFIG_CMD_NAND
50void cpux9k2_nand_hw_init(void);
51#endif
52
53DECLARE_GLOBAL_DATA_PTR;
54
55/*
56 * Miscelaneous platform dependent initialisations
57 */
58
59int board_init(void)
60{
Jens Scharsig58aa5632011-02-19 06:17:02 +000061 at91_pio_t *pio = (at91_pio_t *) ATMEL_BASE_PIO;
Jens Scharsigaeceb502010-02-03 22:48:09 +010062
63 /* Correct IRDA resistor problem / Set PA23_TXD in Output */
Jens Scharsig58aa5632011-02-19 06:17:02 +000064 writel(ATMEL_PMX_AA_TXD2, &pio->pioa.oer);
Jens Scharsigaeceb502010-02-03 22:48:09 +010065
66 gd->bd->bi_arch_number = MACH_TYPE_EB_CPUX9K2;
67 /* adress of boot parameters */
Jens Scharsigb288f562010-10-19 19:37:15 +020068 gd->bd->bi_boot_params = CONFIG_SYS_SDRAM_BASE + 0x100;
Jens Scharsigaeceb502010-02-03 22:48:09 +010069
70#ifdef CONFIG_STATUS_LED
71 status_led_set(STATUS_LED_BOOT, STATUS_LED_ON);
72#endif
73#ifdef CONFIG_CMD_NAND
74 cpux9k2_nand_hw_init();
75#endif
76 return 0;
77}
78
Andreas Bießmann6db59682011-06-12 01:49:15 +000079int board_early_init_f(void)
80{
81 at91_seriald_hw_init();
82 return 0;
83}
84
Jens Scharsigaeceb502010-02-03 22:48:09 +010085#ifdef CONFIG_MISC_INIT_R
86
87int misc_init_r(void)
88{
89 uchar mac[8];
90 uchar tm;
91 uchar midx;
92 uchar macn6, macn7;
93
Jens Scharsigaeceb502010-02-03 22:48:09 +010094 if (getenv("ethaddr") == NULL) {
95 if (i2c_read(CONFIG_SYS_I2C_EEPROM_ADDR, 0x00,
96 CONFIG_SYS_I2C_EEPROM_ADDR_LEN,
97 (uchar *) &mac, sizeof(mac)) != 0) {
98 puts("Error reading MAC from EEPROM\n");
99 } else {
100 tm = 0;
101 macn6 = 0;
102 macn7 = 0xFF;
103 for (midx = 0; midx < 6; midx++) {
104 if ((mac[midx] != 0) && (mac[midx] != 0xFF))
105 tm++;
106 macn6 += mac[midx];
107 macn7 ^= mac[midx];
108 }
109 if ((macn6 != mac[6]) || (macn7 != mac[7]))
110 tm = 0;
111 if (tm)
112 eth_setenv_enetaddr("ethaddr", mac);
113 else
114 puts("Error: invalid MAC at EEPROM\n");
115 }
116 }
Jens Scharsigaeceb502010-02-03 22:48:09 +0100117 gd->jt[XF_do_reset] = (void *) do_reset;
118
119#ifdef CONFIG_STATUS_LED
120 status_led_set(STATUS_LED_BOOT, STATUS_LED_BLINKING);
121#endif
122 return 0;
123}
124#endif
125
126#ifdef CONFIG_RESET_PHY_R
127void reset_phy(void)
128{
129 udelay(10000);
130 eth_init(gd->bd);
131}
132#endif
133
134/*
135 * DRAM initialisations
136 */
137
138int dram_init(void)
139{
Albert ARIBAUDa9606732011-07-03 05:55:33 +0000140 gd->ram_size = get_ram_size((long *)CONFIG_SYS_SDRAM_BASE,
Jens Scharsigb288f562010-10-19 19:37:15 +0200141 CONFIG_SYS_SDRAM_SIZE);
Jens Scharsigaeceb502010-02-03 22:48:09 +0100142 return 0;
143}
144
145/*
146 * Ethernet initialisations
147 */
148
149#ifdef CONFIG_DRIVER_AT91EMAC
150int board_eth_init(bd_t *bis)
151{
152 int rc = 0;
Jens Scharsig58aa5632011-02-19 06:17:02 +0000153 rc = at91emac_register(bis, (u32) ATMEL_BASE_EMAC);
Jens Scharsigaeceb502010-02-03 22:48:09 +0100154 return rc;
155}
156#endif
157
158/*
159 * Disk On Chip (NAND) Millenium initialization.
160 * The NAND lives in the CS2* space
161 */
162#if defined(CONFIG_CMD_NAND)
163
164#define MASK_ALE (1 << 22) /* our ALE is AD22 */
165#define MASK_CLE (1 << 21) /* our CLE is AD21 */
166
167void cpux9k2_nand_hw_init(void)
168{
169 unsigned long csr;
Jens Scharsig58aa5632011-02-19 06:17:02 +0000170 at91_pio_t *pio = (at91_pio_t *) ATMEL_BASE_PIO;
171 at91_pmc_t *pmc = (at91_pmc_t *) ATMEL_BASE_PMC;
172 at91_mc_t *mc = (at91_mc_t *) ATMEL_BASE_MC;
Jens Scharsigaeceb502010-02-03 22:48:09 +0100173
174 /* Setup Smart Media, fitst enable the address range of CS3 */
175 writel(readl(&mc->ebi.csa) | AT91_EBI_CSA_CS3A, &mc->ebi.csa);
176
177 /* RWH = 1 | RWS = 0 | TDF = 1 | NWS = 3 */
178 csr = AT91_SMC_CSR_RWHOLD(1) | AT91_SMC_CSR_TDF(1) |
179 AT91_SMC_CSR_NWS(3) |
180 AT91_SMC_CSR_ACSS_STANDARD | AT91_SMC_CSR_DBW_8 |
181 AT91_SMC_CSR_WSEN;
182 writel(csr, &mc->smc.csr[3]);
183
Jens Scharsig58aa5632011-02-19 06:17:02 +0000184 writel(ATMEL_PMX_CA_SMOE | ATMEL_PMX_CA_SMWE, &pio->pioc.asr);
185 writel(ATMEL_PMX_CA_BFCK | ATMEL_PMX_CA_SMOE | ATMEL_PMX_CA_SMWE,
Jens Scharsigaeceb502010-02-03 22:48:09 +0100186 &pio->pioc.pdr);
187
188 /* Configure PC2 as input (signal Nand READY ) */
Jens Scharsig58aa5632011-02-19 06:17:02 +0000189 writel(ATMEL_PMX_CA_BFAVD, &pio->pioc.per);
190 writel(ATMEL_PMX_CA_BFAVD, &pio->pioc.odr); /* disable output */
191 writel(ATMEL_PMX_CA_BFCK, &pio->pioc.codr);
Jens Scharsigaeceb502010-02-03 22:48:09 +0100192
193 /* PIOC clock enabling */
Jens Scharsig58aa5632011-02-19 06:17:02 +0000194 writel(1 << ATMEL_ID_PIOC, &pmc->pcer);
Jens Scharsigaeceb502010-02-03 22:48:09 +0100195}
196
197static void board_nand_hwcontrol(struct mtd_info *mtd,
198 int cmd, unsigned int ctrl)
199{
Jens Scharsig58aa5632011-02-19 06:17:02 +0000200 at91_pio_t *pio = (at91_pio_t *) ATMEL_BASE_PIO;
Jens Scharsigaeceb502010-02-03 22:48:09 +0100201 struct nand_chip *this = mtd->priv;
202 ulong IO_ADDR_W = (ulong) this->IO_ADDR_W;
203
204 if (ctrl & NAND_CTRL_CHANGE) {
205 IO_ADDR_W &= ~(MASK_ALE | MASK_CLE);
206
207 if (ctrl & NAND_CLE)
208 IO_ADDR_W |= MASK_CLE;
209 if (ctrl & NAND_ALE)
210 IO_ADDR_W |= MASK_ALE;
211
212 if ((ctrl & NAND_NCE))
213 writel(1, &pio->pioc.codr);
214 else
215 writel(1, &pio->pioc.sodr);
216
217 this->IO_ADDR_W = (void *) IO_ADDR_W;
218 }
219 if (cmd != NAND_CMD_NONE)
220 writeb(cmd, this->IO_ADDR_W);
221}
222
223static int board_nand_dev_ready(struct mtd_info *mtd)
224{
Jens Scharsig58aa5632011-02-19 06:17:02 +0000225 at91_pio_t *pio = (at91_pio_t *) ATMEL_BASE_PIO;
Jens Scharsigaeceb502010-02-03 22:48:09 +0100226 return ((readl(&pio->pioc.pdsr) & (1 << 2)) != 0);
227}
228
229int board_nand_init(struct nand_chip *nand)
230{
231 cpux9k2_nand_hw_init();
232 nand->ecc.mode = NAND_ECC_SOFT;
233 nand->cmd_ctrl = board_nand_hwcontrol;
234 nand->dev_ready = board_nand_dev_ready;
235 nand->chip_delay = 20;
236 return 0;
237}
238
239#endif
240
241#if defined(CONFIG_VIDEO)
242/*
243 * drv_video_init
244 * FUNCTION: initialize VCxK device
245 */
246
247int drv_video_init(void)
248{
249#ifdef CONFIG_SPLASH_SCREEN
250 unsigned long splash;
251#endif
252 char *s;
253 unsigned long csr;
Jens Scharsig58aa5632011-02-19 06:17:02 +0000254 at91_pmc_t *pmc = (at91_pmc_t *) ATMEL_BASE_PMC;
255 at91_mc_t *mc = (at91_mc_t *) ATMEL_BASE_MC;
Jens Scharsigaeceb502010-02-03 22:48:09 +0100256
257 printf("Init Video as ");
258 s = getenv("displaywidth");
259 if (s != NULL)
260 display_width = simple_strtoul(s, NULL, 10);
261 else
262 display_width = 256;
263 s = getenv("displayheight");
264 if (s != NULL)
265 display_height = simple_strtoul(s, NULL, 10);
266 else
267 display_height = 256;
268 printf("%ld x %ld pixel matrix\n", display_width, display_height);
269
270 /* RWH = 7 | RWS =7 | TDF = 15 | NWS = 0x7F */
271 csr = AT91_SMC_CSR_RWHOLD(7) | AT91_SMC_CSR_RWSETUP(7) |
272 AT91_SMC_CSR_TDF(15) | AT91_SMC_CSR_NWS(127) |
273 AT91_SMC_CSR_ACSS_STANDARD | AT91_SMC_CSR_DBW_16 |
274 AT91_SMC_CSR_BAT_16 | AT91_SMC_CSR_WSEN;
275 writel(csr, &mc->smc.csr[2]);
Jens Scharsig58aa5632011-02-19 06:17:02 +0000276 writel(1 << ATMEL_ID_PIOB, &pmc->pcer);
Jens Scharsigaeceb502010-02-03 22:48:09 +0100277
278 vcxk_init(display_width, display_height);
279#ifdef CONFIG_SPLASH_SCREEN
280 s = getenv("splashimage");
281 if (s != NULL) {
282 splash = simple_strtoul(s, NULL, 16);
283 printf("use splashimage: %lx\n", splash);
284 video_display_bitmap(splash, 0, 0);
285 }
286#endif
287 return 0;
288}
289#endif
290
291#ifdef CONFIG_SOFT_I2C
292
293void i2c_init_board(void)
294{
295 u32 pin;
Jens Scharsig58aa5632011-02-19 06:17:02 +0000296 at91_pmc_t *pmc = (at91_pmc_t *) ATMEL_BASE_PMC;
297 at91_pio_t *pio = (at91_pio_t *) ATMEL_BASE_PIO;
Jens Scharsigaeceb502010-02-03 22:48:09 +0100298
Jens Scharsig58aa5632011-02-19 06:17:02 +0000299 writel(1 << ATMEL_ID_PIOA, &pmc->pcer);
300 pin = ATMEL_PMX_AA_TWD | ATMEL_PMX_AA_TWCK;
Jens Scharsigaeceb502010-02-03 22:48:09 +0100301 writel(pin, &pio->pioa.idr);
302 writel(pin, &pio->pioa.pudr);
303 writel(pin, &pio->pioa.per);
304 writel(pin, &pio->pioa.oer);
305 writel(pin, &pio->pioa.sodr);
306}
307
308#endif
309
310/*--------------------------------------------------------------------------*/
311
312#ifdef CONFIG_STATUS_LED
313
314void __led_toggle(led_id_t mask)
315{
Jens Scharsig58aa5632011-02-19 06:17:02 +0000316 at91_pio_t *pio = (at91_pio_t *) ATMEL_BASE_PIO;
Jens Scharsigaeceb502010-02-03 22:48:09 +0100317
318 if (readl(&pio->piod.odsr) & mask)
319 writel(mask, &pio->piod.codr);
320 else
321 writel(mask, &pio->piod.codr);
322}
323
324void __led_init(led_id_t mask, int state)
325{
Jens Scharsig58aa5632011-02-19 06:17:02 +0000326 at91_pmc_t *pmc = (at91_pmc_t *) ATMEL_BASE_PMC;
327 at91_pio_t *pio = (at91_pio_t *) ATMEL_BASE_PIO;
Jens Scharsigaeceb502010-02-03 22:48:09 +0100328
Jens Scharsig58aa5632011-02-19 06:17:02 +0000329 writel(1 << ATMEL_ID_PIOD, &pmc->pcer); /* Enable PIOB clock */
Jens Scharsigaeceb502010-02-03 22:48:09 +0100330 /* Disable peripherals on LEDs */
331 writel(STATUS_LED_BIT | STATUS_LED_BIT1, &pio->piod.per);
332 /* Enable pins as outputs */
333 writel(STATUS_LED_BIT | STATUS_LED_BIT1, &pio->piod.oer);
334 /* Turn all LEDs OFF */
335 writel(STATUS_LED_BIT | STATUS_LED_BIT1, &pio->piod.sodr);
336
337 __led_set(mask, state);
338}
339
340void __led_set(led_id_t mask, int state)
341{
Jens Scharsig58aa5632011-02-19 06:17:02 +0000342 at91_pio_t *pio = (at91_pio_t *) ATMEL_BASE_PIO;
Jens Scharsigaeceb502010-02-03 22:48:09 +0100343 if (state == STATUS_LED_ON)
344 writel(mask, &pio->piod.codr);
345 else
346 writel(mask, &pio->piod.sodr);
347}
348
349#endif
350
351/*---------------------------------------------------------------------------*/
352
Wolfgang Denk6262d0212010-06-28 22:00:46 +0200353int do_brightness(cmd_tbl_t *cmdtp, int flag, int argc, char * const argv[])
Jens Scharsigaeceb502010-02-03 22:48:09 +0100354{
355 int rcode = 0;
356 ulong side;
357 ulong bright;
358
359 switch (argc) {
360 case 3:
361 side = simple_strtoul(argv[1], NULL, 10);
362 bright = simple_strtoul(argv[2], NULL, 10);
363 if ((side >= 0) && (side <= 3) &&
364 (bright >= 0) && (bright <= 1000)) {
365 vcxk_setbrightness(side, bright);
366 rcode = 0;
367 } else {
368 printf("parameters out of range\n");
369 printf("Usage:\n%s\n", cmdtp->usage);
370 rcode = 1;
371 }
372 break;
373 default:
374 printf("Usage:\n%s\n", cmdtp->usage);
375 rcode = 1;
376 break;
377 }
378 return rcode;
379}
380
381/*---------------------------------------------------------------------------*/
382
383U_BOOT_CMD(
384 bright, 3, 0, do_brightness,
385 "bright - sets the display brightness\n",
386 " <side> <0..1000>\n side: 0/3=both; 1=first; 2=second\n"
387);
388
389/* EOF cpu9k2.c */