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wdenk43d96162003-03-06 00:02:04 +00001/*
2 * (C) Copyright 2002
3 * Kyle Harris, Nexus Technologies, Inc. kharris@nexus-tech.net
4 *
5 * (C) Copyright 2002
6 * Sysgo Real-Time Solutions, GmbH <www.elinos.com>
7 * Marius Groeger <mgroeger@sysgo.de>
8 *
9 * (C) Copyright 2002
10 * Robert Schwebel, Pengutronix, <r.schwebel@pengutronix.de>
11 *
12 * See file CREDITS for list of people who contributed to this
13 * project.
14 *
15 * This program is free software; you can redistribute it and/or
16 * modify it under the terms of the GNU General Public License as
17 * published by the Free Software Foundation; either version 2 of
18 * the License, or (at your option) any later version.
19 *
20 * This program is distributed in the hope that it will be useful,
21 * but WITHOUT ANY WARRANTY; without even the implied warranty of
22 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
23 * GNU General Public License for more details.
24 *
25 * You should have received a copy of the GNU General Public License
26 * along with this program; if not, write to the Free Software
27 * Foundation, Inc., 59 Temple Place, Suite 330, Boston,
28 * MA 02111-1307 USA
29 */
30
31#include <common.h>
32#include <asm/arch/pxa-regs.h>
33
34#define FLASH_BANK_SIZE 0x02000000
35#define MAIN_SECT_SIZE 0x40000 /* 2x16 = 256k per sector */
36
37flash_info_t flash_info[CFG_MAX_FLASH_BANKS];
38
39
40/**
41 * flash_init: - initialize data structures for flash chips
42 *
43 * @return: size of the flash
44 */
45
46ulong flash_init(void)
47{
48 int i, j;
49 ulong size = 0;
50
51 for (i = 0; i < CFG_MAX_FLASH_BANKS; i++) {
52 ulong flashbase = 0;
53 flash_info[i].flash_id =
54 (INTEL_MANUFACT & FLASH_VENDMASK) |
55 (INTEL_ID_28F128J3 & FLASH_TYPEMASK);
56 flash_info[i].size = FLASH_BANK_SIZE;
57 flash_info[i].sector_count = CFG_MAX_FLASH_SECT;
58 memset(flash_info[i].protect, 0, CFG_MAX_FLASH_SECT);
59
60 switch (i) {
61 case 0:
62 flashbase = PHYS_FLASH_1;
63 break;
64 default:
65 panic("configured to many flash banks!\n");
66 break;
67 }
68 for (j = 0; j < flash_info[i].sector_count; j++) {
69 flash_info[i].start[j] = flashbase + j*MAIN_SECT_SIZE;
70 }
71 size += flash_info[i].size;
72 }
73
74 /* Protect monitor and environment sectors */
75 flash_protect(FLAG_PROTECT_SET,
76 CFG_FLASH_BASE,
77 CFG_FLASH_BASE + _armboot_end_data - _armboot_start,
78 &flash_info[0]);
79
80#ifdef CFG_ENV_IS_IN_FLASH
81 flash_protect(FLAG_PROTECT_SET,
82 CFG_ENV_ADDR,
83 CFG_ENV_ADDR + CFG_ENV_SIZE - 1,
84 &flash_info[0]);
85#endif
86
87 return size;
88}
89
90
91/**
92 * flash_print_info: - print information about the flash situation
93 *
94 * @param info:
95 */
96
97void flash_print_info (flash_info_t *info)
98{
99 int i, j;
100
101 for (j=0; j<CFG_MAX_FLASH_BANKS; j++) {
102
103 switch (info->flash_id & FLASH_VENDMASK) {
104
105 case (INTEL_MANUFACT & FLASH_VENDMASK):
106 printf("Intel: ");
107 break;
108 default:
109 printf("Unknown Vendor ");
110 break;
111 }
112
113 switch (info->flash_id & FLASH_TYPEMASK) {
114
115 case (INTEL_ID_28F128J3 & FLASH_TYPEMASK):
116 printf("28F128J3 (128Mbit)\n");
117 break;
118 default:
119 printf("Unknown Chip Type\n");
120 return;
121 }
122
123 printf(" Size: %ld MB in %d Sectors\n",
124 info->size >> 20, info->sector_count);
125
126 printf(" Sector Start Addresses:");
127 for (i = 0; i < info->sector_count; i++) {
128 if ((i % 5) == 0) printf ("\n ");
129
130 printf (" %08lX%s", info->start[i],
131 info->protect[i] ? " (RO)" : " ");
132 }
133 printf ("\n");
134 info++;
135 }
136}
137
138
139/**
140 * flash_erase: - erase flash sectors
141 *
142 */
143
144int flash_erase(flash_info_t *info, int s_first, int s_last)
145{
146 int flag, prot, sect;
147 int rc = ERR_OK;
148
149 if (info->flash_id == FLASH_UNKNOWN)
150 return ERR_UNKNOWN_FLASH_TYPE;
151
152 if ((s_first < 0) || (s_first > s_last)) {
153 return ERR_INVAL;
154 }
155
156 if ((info->flash_id & FLASH_VENDMASK) != (INTEL_MANUFACT & FLASH_VENDMASK))
157 return ERR_UNKNOWN_FLASH_VENDOR;
158
159 prot = 0;
160 for (sect=s_first; sect<=s_last; ++sect) {
161 if (info->protect[sect]) prot++;
162 }
163
164 if (prot) return ERR_PROTECTED;
165
166 /*
167 * Disable interrupts which might cause a timeout
168 * here. Remember that our exception vectors are
169 * at address 0 in the flash, and we don't want a
170 * (ticker) exception to happen while the flash
171 * chip is in programming mode.
172 */
173
174 flag = disable_interrupts();
175
176 /* Start erase on unprotected sectors */
177 for (sect = s_first; sect<=s_last && !ctrlc(); sect++) {
178
179 printf("Erasing sector %2d ... ", sect);
180
181 /* arm simple, non interrupt dependent timer */
182 reset_timer_masked();
183
184 if (info->protect[sect] == 0) { /* not protected */
185 u32 * volatile addr = (u32 * volatile)(info->start[sect]);
186
187 /* erase sector: */
188 /* The strata flashs are aligned side by side on */
189 /* the data bus, so we have to write the commands */
190 /* to both chips here: */
191
192 *addr = 0x00200020; /* erase setup */
193 *addr = 0x00D000D0; /* erase confirm */
194
195 while ((*addr & 0x00800080) != 0x00800080) {
196 if (get_timer_masked() > CFG_FLASH_ERASE_TOUT) {
197 *addr = 0x00B000B0; /* suspend erase*/
198 *addr = 0x00FF00FF; /* read mode */
199 rc = ERR_TIMOUT;
200 goto outahere;
201 }
202 }
203
204 *addr = 0x00500050; /* clear status register cmd. */
205 *addr = 0x00FF00FF; /* resest to read mode */
206
207 }
208
209 printf("ok.\n");
210 }
211
212 if (ctrlc()) printf("User Interrupt!\n");
213
214 outahere:
215
216 /* allow flash to settle - wait 10 ms */
217 udelay_masked(10000);
218
219 if (flag) enable_interrupts();
220
221 return rc;
222}
223
224
225/**
226 * write_word: - copy memory to flash
227 *
228 * @param info:
229 * @param dest:
230 * @param data:
231 * @return:
232 */
233
234static int write_word (flash_info_t *info, ulong dest, ushort data)
235{
236 ushort *addr = (ushort *)dest, val;
237 int rc = ERR_OK;
238 int flag;
239
240 /* Check if Flash is (sufficiently) erased */
241 if ((*addr & data) != data) return ERR_NOT_ERASED;
242
243 /*
244 * Disable interrupts which might cause a timeout
245 * here. Remember that our exception vectors are
246 * at address 0 in the flash, and we don't want a
247 * (ticker) exception to happen while the flash
248 * chip is in programming mode.
249 */
250 flag = disable_interrupts();
251
252 /* clear status register command */
253 *addr = 0x50;
254
255 /* program set-up command */
256 *addr = 0x40;
257
258 /* latch address/data */
259 *addr = data;
260
261 /* arm simple, non interrupt dependent timer */
262 reset_timer_masked();
263
264 /* wait while polling the status register */
265 while(((val = *addr) & 0x80) != 0x80) {
266 if (get_timer_masked() > CFG_FLASH_WRITE_TOUT) {
267 rc = ERR_TIMOUT;
268 *addr = 0xB0; /* suspend program command */
269 goto outahere;
270 }
271 }
272
273 if(val & 0x1A) { /* check for error */
274 printf("\nFlash write error %02x at address %08lx\n",
275 (int)val, (unsigned long)dest);
276 if(val & (1<<3)) {
277 printf("Voltage range error.\n");
278 rc = ERR_PROG_ERROR;
279 goto outahere;
280 }
281 if(val & (1<<1)) {
282 printf("Device protect error.\n");
283 rc = ERR_PROTECTED;
284 goto outahere;
285 }
286 if(val & (1<<4)) {
287 printf("Programming error.\n");
288 rc = ERR_PROG_ERROR;
289 goto outahere;
290 }
291 rc = ERR_PROG_ERROR;
292 goto outahere;
293 }
294
295 outahere:
296
297 *addr = 0xFF; /* read array command */
298 if (flag) enable_interrupts();
299
300 return rc;
301}
302
303
304/**
305 * write_buf: - Copy memory to flash.
306 *
307 * @param info:
308 * @param src: source of copy transaction
309 * @param addr: where to copy to
310 * @param cnt: number of bytes to copy
311 *
312 * @return error code
313 */
314
315int write_buff (flash_info_t *info, uchar *src, ulong addr, ulong cnt)
316{
317 ulong cp, wp;
318 ushort data;
319 int l;
320 int i, rc;
321
322 wp = (addr & ~1); /* get lower word aligned address */
323
324 /*
325 * handle unaligned start bytes
326 */
327 if ((l = addr - wp) != 0) {
328 data = 0;
329 for (i=0, cp=wp; i<l; ++i, ++cp) {
330 data = (data >> 8) | (*(uchar *)cp << 8);
331 }
332 for (; i<2 && cnt>0; ++i) {
333 data = (data >> 8) | (*src++ << 8);
334 --cnt;
335 ++cp;
336 }
337 for (; cnt==0 && i<2; ++i, ++cp) {
338 data = (data >> 8) | (*(uchar *)cp << 8);
339 }
340
341 if ((rc = write_word(info, wp, data)) != 0) {
342 return (rc);
343 }
344 wp += 2;
345 }
346
347 /*
348 * handle word aligned part
349 */
350 while (cnt >= 2) {
351 /* data = *((vushort*)src); */
352 data = *((ushort*)src);
353 if ((rc = write_word(info, wp, data)) != 0) {
354 return (rc);
355 }
356 src += 2;
357 wp += 2;
358 cnt -= 2;
359 }
360
361 if (cnt == 0) return ERR_OK;
362
363 /*
364 * handle unaligned tail bytes
365 */
366 data = 0;
367 for (i=0, cp=wp; i<2 && cnt>0; ++i, ++cp) {
368 data = (data >> 8) | (*src++ << 8);
369 --cnt;
370 }
371 for (; i<2; ++i, ++cp) {
372 data = (data >> 8) | (*(uchar *)cp << 8);
373 }
374
375 return write_word(info, wp, data);
376}
377