blob: 3e074e3a1b23f56f058980bdb61fc8e0895e8bb6 [file] [log] [blame]
Aubrey.Li9da597f2007-03-09 13:38:44 +08001/*
2 * U-boot - stamp.c STAMP board specific routines
3 *
4 * Copyright (c) 2005 blackfin.uclinux.org
5 *
6 * (C) Copyright 2000-2004
7 * Wolfgang Denk, DENX Software Engineering, wd@denx.de.
8 *
9 * See file CREDITS for list of people who contributed to this
10 * project.
11 *
12 * This program is free software; you can redistribute it and/or
13 * modify it under the terms of the GNU General Public License as
14 * published by the Free Software Foundation; either version 2 of
15 * the License, or (at your option) any later version.
16 *
17 * This program is distributed in the hope that it will be useful,
18 * but WITHOUT ANY WARRANTY; without even the implied warranty of
19 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
20 * GNU General Public License for more details.
21 *
22 * You should have received a copy of the GNU General Public License
23 * along with this program; if not, write to the Free Software
24 * Foundation, Inc., 59 Temple Place, Suite 330, Boston,
25 * MA 02111-1307 USA
26 */
27
28#include <common.h>
29#include <asm/mem_init.h>
30#include "bf533-stamp.h"
31
32#define STATUS_LED_OFF 0
33#define STATUS_LED_ON 1
34
35#ifdef CONFIG_SHOW_BOOT_PROGRESS
36# define SHOW_BOOT_PROGRESS(arg) show_boot_progress(arg)
37#else
38# define SHOW_BOOT_PROGRESS(arg)
39#endif
40
41int checkboard(void)
42{
43#if (BFIN_CPU == ADSP_BF531)
44 printf("CPU: ADSP BF531 Rev.: 0.%d\n", *pCHIPID >> 28);
45#elif (BFIN_CPU == ADSP_BF532)
46 printf("CPU: ADSP BF532 Rev.: 0.%d\n", *pCHIPID >> 28);
47#else
48 printf("CPU: ADSP BF533 Rev.: 0.%d\n", *pCHIPID >> 28);
49#endif
50 printf("Board: ADI BF533 Stamp board\n");
51 printf(" Support: http://blackfin.uclinux.org/\n");
52 return 0;
53}
54
55long int initdram(int board_type)
56{
57 DECLARE_GLOBAL_DATA_PTR;
58#ifdef DEBUG
59 printf("SDRAM attributes:\n");
60 printf
61 (" tRCD:%d Cycles; tRP:%d Cycles; tRAS:%d Cycles; tWR:%d Cycles; "
62 "CAS Latency:%d cycles\n", (SDRAM_tRCD >> 15), (SDRAM_tRP >> 11),
63 (SDRAM_tRAS >> 6), (SDRAM_tWR >> 19), (SDRAM_CL >> 2));
64 printf("SDRAM Begin: 0x%x\n", CFG_SDRAM_BASE);
65 printf("Bank size = %d MB\n", 128);
66#endif
67 gd->bd->bi_memstart = CFG_SDRAM_BASE;
68 gd->bd->bi_memsize = CFG_MAX_RAM_SIZE;
69 return (gd->bd->bi_memsize);
70}
71
72void swap_to(int device_id)
73{
74
75 if (device_id == ETHERNET) {
76 *pFIO_DIR = PF0;
77 __builtin_bfin_ssync();
78 *pFIO_FLAG_S = PF0;
79 __builtin_bfin_ssync();
80 } else if (device_id == FLASH) {
81 *pFIO_DIR = (PF4 | PF3 | PF2 | PF1 | PF0);
82 *pFIO_FLAG_S = (PF4 | PF3 | PF2);
83 *pFIO_MASKA_D = (PF8 | PF6 | PF5);
84 *pFIO_MASKB_D = (PF7);
85 *pFIO_POLAR = (PF8 | PF6 | PF5);
86 *pFIO_EDGE = (PF8 | PF7 | PF6 | PF5);
87 *pFIO_INEN = (PF8 | PF7 | PF6 | PF5);
88 *pFIO_FLAG_D = (PF4 | PF3 | PF2);
89 __builtin_bfin_ssync();
90 } else {
91 printf("Unknown bank to switch\n");
92 }
93
94 return;
95}
96
97#if defined(CONFIG_MISC_INIT_R)
98/* miscellaneous platform dependent initialisations */
99int misc_init_r(void)
100{
101 int i;
102 int cf_stat = 0;
103
104 /* Check whether CF card is inserted */
105 *pFIO_EDGE = FIO_EDGE_CF_BITS;
106 *pFIO_POLAR = FIO_POLAR_CF_BITS;
107 for (i = 0; i < 0x300; i++)
108 asm("nop;");
109
110 if ((*pFIO_FLAG_S) & CF_STAT_BITS) {
111 cf_stat = 0;
112 } else {
113 cf_stat = 1;
114 }
115
116 *pFIO_EDGE = FIO_EDGE_BITS;
117 *pFIO_POLAR = FIO_POLAR_BITS;
118
119 if (cf_stat) {
120 printf("Booting from COMPACT flash\n");
121
122 /* Set cycle time for CF */
123 *(volatile unsigned long *)ambctl1 = CF_AMBCTL1VAL;
124
125 for (i = 0; i < 0x1000; i++)
126 asm("nop;");
127 for (i = 0; i < 0x1000; i++)
128 asm("nop;");
129 for (i = 0; i < 0x1000; i++)
130 asm("nop;");
131
132 serial_setbrg();
133 ide_init();
134
135 setenv("bootargs", "");
136 setenv("bootcmd",
137 "fatload ide 0:1 0x1000000 uImage-stamp;bootm 0x1000000;bootm 0x20100000");
138 } else {
139 printf("Booting from FLASH\n");
140 }
141
142 return 0;
143}
144#endif
145
146#ifdef CONFIG_STAMP_CF
147
148void cf_outb(unsigned char val, volatile unsigned char *addr)
149{
150 /*
151 * Set PF1 PF0 respectively to 0 1 to divert address
152 * to the expansion memory banks
153 */
154 *pFIO_FLAG_S = CF_PF0;
155 *pFIO_FLAG_C = CF_PF1;
156 __builtin_bfin_ssync();
157
158 *(addr) = val;
159 __builtin_bfin_ssync();
160
161 /* Setback PF1 PF0 to 0 0 to address external
162 * memory banks */
163 *(volatile unsigned short *)pFIO_FLAG_C = CF_PF1_PF0;
164 __builtin_bfin_ssync();
165}
166
167unsigned char cf_inb(volatile unsigned char *addr)
168{
169 volatile unsigned char c;
170
171 *pFIO_FLAG_S = CF_PF0;
172 *pFIO_FLAG_C = CF_PF1;
173 __builtin_bfin_ssync();
174
175 c = *(addr);
176 __builtin_bfin_ssync();
177
178 *pFIO_FLAG_C = CF_PF1_PF0;
179 __builtin_bfin_ssync();
180
181 return c;
182}
183
184void cf_insw(unsigned short *sect_buf, unsigned short *addr, int words)
185{
186 int i;
187
188 *pFIO_FLAG_S = CF_PF0;
189 *pFIO_FLAG_C = CF_PF1;
190 __builtin_bfin_ssync();
191
192 for (i = 0; i < words; i++) {
193 *(sect_buf + i) = *(addr);
194 __builtin_bfin_ssync();
195 }
196
197 *pFIO_FLAG_C = CF_PF1_PF0;
198 __builtin_bfin_ssync();
199}
200
201void cf_outsw(unsigned short *addr, unsigned short *sect_buf, int words)
202{
203 int i;
204
205 *pFIO_FLAG_S = CF_PF0;
206 *pFIO_FLAG_C = CF_PF1;
207 __builtin_bfin_ssync();
208
209 for (i = 0; i < words; i++) {
210 *(addr) = *(sect_buf + i);
211 __builtin_bfin_ssync();
212 }
213
214 *pFIO_FLAG_C = CF_PF1_PF0;
215 __builtin_bfin_ssync();
216}
217#endif
218
219void stamp_led_set(int LED1, int LED2, int LED3)
220{
221 *pFIO_INEN &= ~(PF2 | PF3 | PF4);
222 *pFIO_DIR |= (PF2 | PF3 | PF4);
223
224 if (LED1 == STATUS_LED_OFF)
225 *pFIO_FLAG_S = PF2;
226 else
227 *pFIO_FLAG_C = PF2;
228 if (LED2 == STATUS_LED_OFF)
229 *pFIO_FLAG_S = PF3;
230 else
231 *pFIO_FLAG_C = PF3;
232 if (LED3 == STATUS_LED_OFF)
233 *pFIO_FLAG_S = PF4;
234 else
235 *pFIO_FLAG_C = PF4;
236 __builtin_bfin_ssync();
237}
238
239void show_boot_progress(int status)
240{
241 switch (status) {
242 case 1:
243 stamp_led_set(STATUS_LED_OFF, STATUS_LED_OFF, STATUS_LED_ON);
244 break;
245 case 2:
246 stamp_led_set(STATUS_LED_OFF, STATUS_LED_ON, STATUS_LED_OFF);
247 break;
248 case 3:
249 stamp_led_set(STATUS_LED_OFF, STATUS_LED_ON, STATUS_LED_ON);
250 break;
251 case 4:
252 stamp_led_set(STATUS_LED_ON, STATUS_LED_OFF, STATUS_LED_OFF);
253 break;
254 case 5:
255 case 6:
256 stamp_led_set(STATUS_LED_ON, STATUS_LED_OFF, STATUS_LED_ON);
257 break;
258 case 7:
259 case 8:
260 stamp_led_set(STATUS_LED_ON, STATUS_LED_ON, STATUS_LED_OFF);
261 break;
262 case 9:
263 case 10:
264 case 11:
265 case 12:
266 case 13:
267 case 14:
268 case 15:
269 stamp_led_set(STATUS_LED_OFF, STATUS_LED_OFF, STATUS_LED_OFF);
270 break;
271 default:
272 stamp_led_set(STATUS_LED_ON, STATUS_LED_ON, STATUS_LED_ON);
273 break;
274 }
275}