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wdenkf54ebdf2003-09-17 15:10:32 +00001/*
2 * (C) Copyright 2003
3 * Gary Jennejohn, DENX Software Engineering, gj@denx.de.
4 *
5 * See file CREDITS for list of people who contributed to this
6 * project.
7 *
8 * This program is free software; you can redistribute it and/or
9 * modify it under the terms of the GNU General Public License as
10 * published by the Free Software Foundation; either version 2 of
11 * the License, or (at your option) any later version.
12 *
13 * This program is distributed in the hope that it will be useful,
14 * but WITHOUT ANY WARRANTY; without even the implied warranty of
15 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 * GNU General Public License for more details.
17 *
18 * You should have received a copy of the GNU General Public License
19 * along with this program; if not, write to the Free Software
20 * Foundation, Inc., 59 Temple Place, Suite 330, Boston,
21 * MA 02111-1307 USA
22 */
23
24#include <common.h>
25#include <command.h>
26#include <malloc.h>
27#include <image.h>
28#include <asm/byteorder.h>
29#include <usb.h>
30
31#ifdef CFG_HUSH_PARSER
32#include <hush.h>
33#endif
34
35#ifdef CONFIG_AUTO_UPDATE
36
37#ifndef CONFIG_USB_OHCI
38#error "must define CONFIG_USB_OHCI"
39#endif
40
41#ifndef CONFIG_USB_STORAGE
42#error "must define CONFIG_USB_STORAGE"
43#endif
44
45#ifndef CFG_HUSH_PARSER
46#error "must define CFG_HUSH_PARSER"
47#endif
48
49#if !(CONFIG_COMMANDS & CFG_CMD_FAT)
50#error "must define CFG_CMD_FAT"
51#endif
52
53/*
54 * Check whether a USB memory stick is plugged in.
55 * If one is found:
wdenkb0639ca2003-09-17 22:48:07 +000056 * 1) if prepare.img ist found load it into memory. If it is
57 * valid then run it.
58 * 2) if preinst.img is found load it into memory. If it is
59 * valid then run it. Update the EEPROM.
60 * 3) if firmware.img is found load it into memory. If it is valid,
61 * burn it into FLASH and update the EEPROM.
62 * 4) if kernel.img is found load it into memory. If it is valid,
63 * burn it into FLASH and update the EEPROM.
64 * 5) if app.img is found load it into memory. If it is valid,
65 * burn it into FLASH and update the EEPROM.
66 * 6) if disk.img is found load it into memory. If it is valid,
67 * burn it into FLASH and update the EEPROM.
68 * 7) if postinst.img is found load it into memory. If it is
69 * valid then run it. Update the EEPROM.
wdenkf54ebdf2003-09-17 15:10:32 +000070 */
71
72#undef AU_DEBUG
73
74#undef debug
75#ifdef AU_DEBUG
76#define debug(fmt,args...) printf (fmt ,##args)
77#else
78#define debug(fmt,args...)
79#endif /* AU_DEBUG */
80
81/* possible names of files on the USB stick. */
82#define AU_PREPARE "prepare.img"
83#define AU_PREINST "preinst.img"
84#define AU_FIRMWARE "firmware.img"
85#define AU_KERNEL "kernel.img"
86#define AU_APP "app.img"
87#define AU_DISK "disk.img"
88#define AU_POSTINST "postinst.img"
89
wdenkb0639ca2003-09-17 22:48:07 +000090struct flash_layout
91{
92 long start;
93 long end;
94};
95
wdenkf54ebdf2003-09-17 15:10:32 +000096/* layout of the FLASH. ST = start address, ND = end address. */
wdenkb0639ca2003-09-17 22:48:07 +000097#ifndef CONFIG_FLASH_8MB /* 16 MB Flash, 32 MB RAM */
wdenkf54ebdf2003-09-17 15:10:32 +000098#define AU_FL_FIRMWARE_ST 0x00000000
99#define AU_FL_FIRMWARE_ND 0x0009FFFF
100#define AU_FL_VFD_ST 0x000A0000
101#define AU_FL_VFD_ND 0x000BFFFF
102#define AU_FL_KERNEL_ST 0x000C0000
103#define AU_FL_KERNEL_ND 0x001BFFFF
104#define AU_FL_APP_ST 0x001C0000
105#define AU_FL_APP_ND 0x005BFFFF
106#define AU_FL_DISK_ST 0x005C0000
107#define AU_FL_DISK_ND 0x00FFFFFF
dzu8a42eac2003-09-29 21:55:54 +0000108#else /* 8 MB Flash, 32 MB RAM */
wdenkf54ebdf2003-09-17 15:10:32 +0000109#define AU_FL_FIRMWARE_ST 0x00000000
dzu8a42eac2003-09-29 21:55:54 +0000110#define AU_FL_FIRMWARE_ND 0x0005FFFF
111#define AU_FL_KERNEL_ST 0x00060000
112#define AU_FL_KERNEL_ND 0x0013FFFF
113#define AU_FL_APP_ST 0x00140000
114#define AU_FL_APP_ND 0x0067FFFF
115#define AU_FL_DISK_ST 0x00680000
wdenkf54ebdf2003-09-17 15:10:32 +0000116#define AU_FL_DISK_ND 0x007DFFFF
117#define AU_FL_VFD_ST 0x007E0000
118#define AU_FL_VFD_ND 0x007FFFFF
wdenkb0639ca2003-09-17 22:48:07 +0000119#endif /* CONFIG_FLASH_8MB */
wdenkf54ebdf2003-09-17 15:10:32 +0000120
121/* a structure with the offsets to values in the EEPROM */
122struct eeprom_layout
123{
wdenkb0639ca2003-09-17 22:48:07 +0000124 int time;
125 int size;
126 int dcrc;
wdenkf54ebdf2003-09-17 15:10:32 +0000127};
128
129/* layout of the EEPROM - offset from the start. All entries are 32 bit. */
130#define AU_EEPROM_TIME_PREINST 64
131#define AU_EEPROM_SIZE_PREINST 68
132#define AU_EEPROM_DCRC_PREINST 72
133#define AU_EEPROM_TIME_FIRMWARE 76
134#define AU_EEPROM_SIZE_FIRMWARE 80
135#define AU_EEPROM_DCRC_FIRMWARE 84
136#define AU_EEPROM_TIME_KERNEL 88
137#define AU_EEPROM_SIZE_KERNEL 92
138#define AU_EEPROM_DCRC_KERNEL 96
139#define AU_EEPROM_TIME_APP 100
140#define AU_EEPROM_SIZE_APP 104
141#define AU_EEPROM_DCRC_APP 108
142#define AU_EEPROM_TIME_DISK 112
143#define AU_EEPROM_SIZE_DISK 116
144#define AU_EEPROM_DCRC_DISK 120
145#define AU_EEPROM_TIME_POSTINST 124
146#define AU_EEPROM_SIZE_POSTINST 128
147#define AU_EEPROM_DCRC_POSTINST 132
148
149static int au_usb_stor_curr_dev; /* current device */
wdenkb0639ca2003-09-17 22:48:07 +0000150
151/* index of each file in the following arrays */
152#define IDX_PREPARE 0
153#define IDX_PREINST 1
154#define IDX_FIRMWARE 2
155#define IDX_KERNEL 3
156#define IDX_APP 4
157#define IDX_DISK 5
158#define IDX_POSTINST 6
wdenkf54ebdf2003-09-17 15:10:32 +0000159/* max. number of files which could interest us */
160#define AU_MAXFILES 7
161/* pointers to file names */
162char *aufile[AU_MAXFILES];
163/* sizes of flash areas for each file */
164long ausize[AU_MAXFILES];
165/* offsets into the EEEPROM */
166struct eeprom_layout auee_off[AU_MAXFILES] = { \
167 {0}, \
168 {AU_EEPROM_TIME_PREINST, AU_EEPROM_SIZE_PREINST, AU_EEPROM_DCRC_PREINST,}, \
169 {AU_EEPROM_TIME_FIRMWARE, AU_EEPROM_SIZE_FIRMWARE, AU_EEPROM_DCRC_FIRMWARE,}, \
170 {AU_EEPROM_TIME_KERNEL, AU_EEPROM_SIZE_KERNEL, AU_EEPROM_DCRC_KERNEL,}, \
171 {AU_EEPROM_TIME_APP, AU_EEPROM_SIZE_APP, AU_EEPROM_DCRC_APP,}, \
172 {AU_EEPROM_TIME_DISK, AU_EEPROM_SIZE_DISK, AU_EEPROM_DCRC_DISK,}, \
173 {AU_EEPROM_TIME_POSTINST, AU_EEPROM_SIZE_POSTINST, AU_EEPROM_DCRC_POSTINST,} \
174 };
wdenkb0639ca2003-09-17 22:48:07 +0000175/* array of flash areas start and end addresses */
176struct flash_layout aufl_layout[AU_MAXFILES - 3] = { \
177 {AU_FL_FIRMWARE_ST, AU_FL_FIRMWARE_ND,}, \
178 {AU_FL_KERNEL_ST, AU_FL_KERNEL_ND,}, \
179 {AU_FL_APP_ST, AU_FL_APP_ND,}, \
180 {AU_FL_DISK_ST, AU_FL_DISK_ND,}, \
181};
182/* convert the index into aufile[] to an index into aufl_layout[] */
183#define FIDX_TO_LIDX(idx) ((idx) - 2)
184
wdenkf54ebdf2003-09-17 15:10:32 +0000185/* where to load files into memory */
wdenkb0639ca2003-09-17 22:48:07 +0000186#define LOAD_ADDR ((unsigned char *)0x0C100100)
187/* where to build strings in memory - 256 bytes should be enough */
188#define STRING_ADDR ((char *)0x0C100000)
dzu8a42eac2003-09-29 21:55:54 +0000189/* the app is the largest image */
190#define MAX_LOADSZ ausize[IDX_APP]
wdenkf54ebdf2003-09-17 15:10:32 +0000191
192/* externals */
193extern int fat_register_device(block_dev_desc_t *, int);
194extern int file_fat_detectfs(void);
195extern long file_fat_read(const char *, void *, unsigned long);
196extern int i2c_read (unsigned char, unsigned int, int , unsigned char* , int);
197extern int i2c_write (uchar, uint, int , uchar* , int);
198#ifdef CONFIG_VFD
199extern int trab_vfd (ulong);
200extern int transfer_pic(unsigned char, unsigned char *, int, int);
201#endif
wdenkb0639ca2003-09-17 22:48:07 +0000202/* change char* to void* to shutup the compiler */
203extern int i2c_write_multiple (uchar, uint, int, void *, int);
204extern int i2c_read_multiple (uchar, uint, int, void *, int);
wdenk80369862003-09-18 18:55:25 +0000205extern block_dev_desc_t *get_dev (char*, int);
wdenkf54ebdf2003-09-17 15:10:32 +0000206
207int
208au_check_valid(int idx, long nbytes)
209{
210 image_header_t *hdr;
211 unsigned long checksum;
212 unsigned char buf[4];
213
214 hdr = (image_header_t *)LOAD_ADDR;
215 /* check the easy ones first */
wdenkb0639ca2003-09-17 22:48:07 +0000216#undef CHECK_VALID_DEBUG
wdenkf54ebdf2003-09-17 15:10:32 +0000217#ifdef CHECK_VALID_DEBUG
218 printf("magic %#x %#x ", ntohl(hdr->ih_magic), IH_MAGIC);
219 printf("arch %#x %#x ", hdr->ih_arch, IH_CPU_ARM);
220 printf("size %#x %#lx ", ntohl(hdr->ih_size), nbytes);
221 printf("type %#x %#x ", hdr->ih_type, IH_TYPE_KERNEL);
222#endif
223 if (ntohl(hdr->ih_magic) != IH_MAGIC ||
wdenk80369862003-09-18 18:55:25 +0000224 hdr->ih_arch != IH_CPU_ARM ||
dzu8a42eac2003-09-29 21:55:54 +0000225 nbytes != (sizeof(*hdr) + ntohl(hdr->ih_size)))
wdenk80369862003-09-18 18:55:25 +0000226 {
227 printf ("Image %s bad MAGIC or ARCH or SIZE\n", aufile[idx]);
228 return -1;
wdenkf54ebdf2003-09-17 15:10:32 +0000229 }
230 /* check the hdr CRC */
231 checksum = ntohl(hdr->ih_hcrc);
232 hdr->ih_hcrc = 0;
233
234 if (crc32 (0, (char *)hdr, sizeof(*hdr)) != checksum) {
wdenk80369862003-09-18 18:55:25 +0000235 printf ("Image %s bad header checksum\n", aufile[idx]);
236 return -1;
wdenkf54ebdf2003-09-17 15:10:32 +0000237 }
wdenk80369862003-09-18 18:55:25 +0000238 hdr->ih_hcrc = htonl(checksum);
wdenkf54ebdf2003-09-17 15:10:32 +0000239 /* check the data CRC */
240 checksum = ntohl(hdr->ih_dcrc);
241
242 if (crc32 (0, (char *)(LOAD_ADDR + sizeof(*hdr)), ntohl(hdr->ih_size))
243 != checksum)
244 {
wdenk80369862003-09-18 18:55:25 +0000245 printf ("Image %s bad data checksum\n", aufile[idx]);
246 return -1;
wdenkf54ebdf2003-09-17 15:10:32 +0000247 }
248 /* check the type - could do this all in one gigantic if() */
249 if ((idx == IDX_FIRMWARE) && (hdr->ih_type != IH_TYPE_FIRMWARE)) {
wdenk80369862003-09-18 18:55:25 +0000250 printf ("Image %s wrong type\n", aufile[idx]);
251 return -1;
wdenkf54ebdf2003-09-17 15:10:32 +0000252 }
253 if ((idx == IDX_KERNEL) && (hdr->ih_type != IH_TYPE_KERNEL)) {
wdenk80369862003-09-18 18:55:25 +0000254 printf ("Image %s wrong type\n", aufile[idx]);
255 return -1;
wdenkf54ebdf2003-09-17 15:10:32 +0000256 }
257 if ((idx == IDX_DISK || idx == IDX_APP)
258 && (hdr->ih_type != IH_TYPE_RAMDISK))
259 {
wdenk80369862003-09-18 18:55:25 +0000260 printf ("Image %s wrong type\n", aufile[idx]);
261 return -1;
wdenkf54ebdf2003-09-17 15:10:32 +0000262 }
263 if ((idx == IDX_PREPARE || idx == IDX_PREINST || idx == IDX_POSTINST)
264 && (hdr->ih_type != IH_TYPE_SCRIPT))
265 {
wdenk80369862003-09-18 18:55:25 +0000266 printf ("Image %s wrong type\n", aufile[idx]);
267 return -1;
wdenkf54ebdf2003-09-17 15:10:32 +0000268 }
269 /* special case for prepare.img */
270 if (idx == IDX_PREPARE)
271 return 0;
272 /* check the size does not exceed space in flash */
273 if ((ausize[idx] != 0) && (ausize[idx] < ntohl(hdr->ih_size))) {
wdenk80369862003-09-18 18:55:25 +0000274 printf ("Image %s is bigger than FLASH\n", aufile[idx]);
275 return -1;
wdenkf54ebdf2003-09-17 15:10:32 +0000276 }
277 /* check the time stamp from the EEPROM */
278 /* read it in */
279 i2c_read_multiple(0x54, auee_off[idx].time, 1, buf, sizeof(buf));
280#ifdef CHECK_VALID_DEBUG
wdenk80369862003-09-18 18:55:25 +0000281 printf ("buf[0] %#x buf[1] %#x buf[2] %#x buf[3] %#x "
282 "as int %#x time %#x\n",
283 buf[0], buf[1], buf[2], buf[3],
284 *((unsigned int *)buf), ntohl(hdr->ih_time));
wdenkf54ebdf2003-09-17 15:10:32 +0000285#endif
286 /* check it */
287 if (*((unsigned int *)buf) >= ntohl(hdr->ih_time)) {
wdenk80369862003-09-18 18:55:25 +0000288 printf ("Image %s is too old\n", aufile[idx]);
289 return -1;
wdenkf54ebdf2003-09-17 15:10:32 +0000290 }
291
292 return 0;
293}
294
295/* power control defines */
296#define CPLD_VFD_BK ((volatile char *)0x04038002)
297#define POWER_OFF (1 << 1)
298
299int
wdenk80369862003-09-18 18:55:25 +0000300au_do_update(int idx, long sz, int repeat)
wdenkf54ebdf2003-09-17 15:10:32 +0000301{
302 image_header_t *hdr;
303 char *addr;
wdenkb0639ca2003-09-17 22:48:07 +0000304 long start, end;
305 char *strbuf = STRING_ADDR;
306 int off;
307 uint nbytes;
wdenkf54ebdf2003-09-17 15:10:32 +0000308
309 hdr = (image_header_t *)LOAD_ADDR;
wdenkb0639ca2003-09-17 22:48:07 +0000310
wdenkf54ebdf2003-09-17 15:10:32 +0000311 /* disable the power switch */
312 *CPLD_VFD_BK |= POWER_OFF;
wdenkb0639ca2003-09-17 22:48:07 +0000313
wdenkf54ebdf2003-09-17 15:10:32 +0000314 /* execute a script */
315 if (hdr->ih_type == IH_TYPE_SCRIPT) {
316 addr = (char *)((char *)hdr + sizeof(*hdr) + 8);
317 parse_string_outer(addr,
318 FLAG_PARSE_SEMICOLON | FLAG_EXIT_FROM_LOOP);
319 return 0;
320 }
wdenkb0639ca2003-09-17 22:48:07 +0000321
322 start = aufl_layout[FIDX_TO_LIDX(idx)].start;
323 end = aufl_layout[FIDX_TO_LIDX(idx)].end;
324
325 /* unprotect the address range */
326 /* this assumes that ONLY the firmware is protected! */
327 if (idx == IDX_FIRMWARE) {
328#undef AU_UPDATE_TEST
329#ifdef AU_UPDATE_TEST
330 /* erase it where Linux goes */
331 start = aufl_layout[1].start;
332 end = aufl_layout[1].end;
333#endif
334 debug ("protect off %lx %lx\n", start, end);
335 sprintf(strbuf, "protect off %lx %lx\n", start, end);
336 parse_string_outer(strbuf,
337 FLAG_PARSE_SEMICOLON | FLAG_EXIT_FROM_LOOP);
338 }
339
wdenk80369862003-09-18 18:55:25 +0000340 /*
341 * erase the address range. Multiple erases seem to cause
342 * problems.
343 */
344 if (repeat == 0) {
345 debug ("erase %lx %lx\n", start, end);
346 sprintf(strbuf, "erase %lx %lx\n", start, end);
347 parse_string_outer(strbuf,
348 FLAG_PARSE_SEMICOLON | FLAG_EXIT_FROM_LOOP);
349 }
350 wait_ms(100);
wdenkb0639ca2003-09-17 22:48:07 +0000351 /* strip the header - except for the kernel */
352 if (idx == IDX_FIRMWARE || idx == IDX_DISK || idx == IDX_APP) {
353 addr = (char *)((char *)hdr + sizeof(*hdr));
354#ifdef AU_UPDATE_TEST
355 /* copy it to where Linux goes */
356 if (idx == IDX_FIRMWARE)
357 start = aufl_layout[1].start;
358#endif
359 off = 0;
360 nbytes = ntohl(hdr->ih_size);
361 } else {
362 addr = (char *)hdr;
363 off = sizeof(*hdr);
364 nbytes = sizeof(*hdr) + ntohl(hdr->ih_size);
365 }
366
367 /* copy the data from RAM to FLASH */
368 debug ("cp.b %p %lx %x\n", addr, start, nbytes);
369 sprintf(strbuf, "cp.b %p %lx %x\n", addr, start, nbytes);
370 parse_string_outer(strbuf,
371 FLAG_PARSE_SEMICOLON | FLAG_EXIT_FROM_LOOP);
372
373 /* check the dcrc of the copy */
wdenk80369862003-09-18 18:55:25 +0000374 if (crc32 (0, (char *)(start + off), ntohl(hdr->ih_size)) != ntohl(hdr->ih_dcrc)) {
375 printf ("Image %s Bad Data Checksum After COPY\n", aufile[idx]);
376 return -1;
wdenkb0639ca2003-09-17 22:48:07 +0000377 }
378
379 /* protect the address range */
380 /* this assumes that ONLY the firmware is protected! */
381 if (idx == IDX_FIRMWARE) {
wdenk80369862003-09-18 18:55:25 +0000382 debug ("protect on %lx %lx\n", start, end);
wdenkb0639ca2003-09-17 22:48:07 +0000383 sprintf(strbuf, "protect on %lx %lx\n", start, end);
384 parse_string_outer(strbuf,
385 FLAG_PARSE_SEMICOLON | FLAG_EXIT_FROM_LOOP);
386 }
wdenkf54ebdf2003-09-17 15:10:32 +0000387 return 0;
388}
389
390int
391au_update_eeprom(int idx)
392{
393 image_header_t *hdr;
wdenkb0639ca2003-09-17 22:48:07 +0000394 int off;
395 uint32_t val;
wdenkf54ebdf2003-09-17 15:10:32 +0000396
397 hdr = (image_header_t *)LOAD_ADDR;
wdenkb0639ca2003-09-17 22:48:07 +0000398 /* write the time field into EEPROM */
399 off = auee_off[idx].time;
400 val = ntohl(hdr->ih_time);
401 i2c_write_multiple(0x54, off, 1, &val, sizeof(val));
402 /* write the size field into EEPROM */
403 off = auee_off[idx].size;
404 val = ntohl(hdr->ih_size);
405 i2c_write_multiple(0x54, off, 1, &val, sizeof(val));
406 /* write the dcrc field into EEPROM */
407 off = auee_off[idx].dcrc;
408 val = ntohl(hdr->ih_dcrc);
409 i2c_write_multiple(0x54, off, 1, &val, sizeof(val));
wdenkf54ebdf2003-09-17 15:10:32 +0000410 /* enable the power switch */
411 *CPLD_VFD_BK &= ~POWER_OFF;
412 return 0;
413}
414
415/*
416 * this is called from board_init() after the hardware has been set up
417 * and is usable. That seems like a good time to do this.
418 * Right now the return value is ignored.
419 */
420int
421do_auto_update(void)
422{
423 block_dev_desc_t *stor_dev;
424 long sz;
wdenk80369862003-09-18 18:55:25 +0000425 int i, res, bitmap_first, cnt, old_ctrlc, got_ctrlc;
wdenkf54ebdf2003-09-17 15:10:32 +0000426 char *env;
wdenk80369862003-09-18 18:55:25 +0000427 long start, end;
wdenkf54ebdf2003-09-17 15:10:32 +0000428
wdenkb0639ca2003-09-17 22:48:07 +0000429#undef ERASE_EEPROM
wdenkf54ebdf2003-09-17 15:10:32 +0000430#ifdef ERASE_EEPROM
431 int arr[18];
432 memset(arr, 0, sizeof(arr));
433 i2c_write_multiple(0x54, 64, 1, arr, sizeof(arr));
434#endif
435 au_usb_stor_curr_dev = -1;
436 /* start USB */
437 if (usb_stop() < 0) {
438 debug ("usb_stop failed\n");
439 return -1;
440 }
441 if (usb_init() < 0) {
442 debug ("usb_init failed\n");
443 return -1;
444 }
445 /*
446 * check whether a storage device is attached (assume that it's
447 * a USB memory stick, since nothing else should be attached).
448 */
449 au_usb_stor_curr_dev = usb_stor_scan(1);
450 if (au_usb_stor_curr_dev == -1) {
451 debug ("No device found. Not initialized?\n");
452 return -1;
453 }
454 /* check whether it has a partition table */
wdenk80369862003-09-18 18:55:25 +0000455 stor_dev = get_dev("usb", 0);
456 if (stor_dev == NULL) {
wdenkf54ebdf2003-09-17 15:10:32 +0000457 debug ("uknown device type\n");
458 return -1;
459 }
460 if (fat_register_device(stor_dev, 1) != 0) {
461 debug ("Unable to use USB %d:%d for fatls\n",
462 au_usb_stor_curr_dev, 1);
463 return -1;
464 }
465 if (file_fat_detectfs() != 0) {
466 debug ("file_fat_detectfs failed\n");
467 }
wdenkb0639ca2003-09-17 22:48:07 +0000468
wdenkf54ebdf2003-09-17 15:10:32 +0000469 /* initialize the array of file names */
470 memset(aufile, 0, sizeof(aufile));
471 aufile[IDX_PREPARE] = AU_PREPARE;
472 aufile[IDX_PREINST] = AU_PREINST;
473 aufile[IDX_FIRMWARE] = AU_FIRMWARE;
474 aufile[IDX_KERNEL] = AU_KERNEL;
475 aufile[IDX_APP] = AU_APP;
476 aufile[IDX_DISK] = AU_DISK;
477 aufile[IDX_POSTINST] = AU_POSTINST;
478 /* initialize the array of flash sizes */
479 memset(ausize, 0, sizeof(ausize));
480 ausize[IDX_FIRMWARE] = (AU_FL_FIRMWARE_ND + 1) - AU_FL_FIRMWARE_ST;
481 ausize[IDX_KERNEL] = (AU_FL_KERNEL_ND + 1) - AU_FL_KERNEL_ST;
482 ausize[IDX_APP] = (AU_FL_APP_ND + 1) - AU_FL_APP_ST;
483 ausize[IDX_DISK] = (AU_FL_DISK_ND + 1) - AU_FL_DISK_ST;
wdenk80369862003-09-18 18:55:25 +0000484 /*
485 * now check whether start and end are defined using environment
486 * variables.
487 */
wdenk1d704682003-09-19 08:29:25 +0000488 start = -1;
489 end = 0;
wdenk80369862003-09-18 18:55:25 +0000490 env = getenv("firmware_st");
491 if (env != NULL)
492 start = simple_strtoul(env, NULL, 16);
493 env = getenv("firmware_nd");
494 if (env != NULL)
495 end = simple_strtoul(env, NULL, 16);
wdenk1d704682003-09-19 08:29:25 +0000496 if (start >= 0 && end && end > start)
wdenk80369862003-09-18 18:55:25 +0000497 ausize[IDX_FIRMWARE] = (end + 1) - start;
wdenk1d704682003-09-19 08:29:25 +0000498 start = -1;
499 end = 0;
wdenk80369862003-09-18 18:55:25 +0000500 env = getenv("kernel_st");
501 if (env != NULL)
502 start = simple_strtoul(env, NULL, 16);
503 env = getenv("kernel_nd");
504 if (env != NULL)
505 end = simple_strtoul(env, NULL, 16);
wdenk1d704682003-09-19 08:29:25 +0000506 if (start >= 0 && end && end > start)
wdenk80369862003-09-18 18:55:25 +0000507 ausize[IDX_KERNEL] = (end + 1) - start;
wdenk1d704682003-09-19 08:29:25 +0000508 start = -1;
509 end = 0;
wdenk80369862003-09-18 18:55:25 +0000510 env = getenv("app_st");
511 if (env != NULL)
512 start = simple_strtoul(env, NULL, 16);
513 env = getenv("app_nd");
514 if (env != NULL)
515 end = simple_strtoul(env, NULL, 16);
wdenk1d704682003-09-19 08:29:25 +0000516 if (start >= 0 && end && end > start)
wdenk80369862003-09-18 18:55:25 +0000517 ausize[IDX_APP] = (end + 1) - start;
wdenk1d704682003-09-19 08:29:25 +0000518 start = -1;
519 end = 0;
wdenk80369862003-09-18 18:55:25 +0000520 env = getenv("disk_st");
521 if (env != NULL)
522 start = simple_strtoul(env, NULL, 16);
523 env = getenv("disk_nd");
524 if (env != NULL)
525 end = simple_strtoul(env, NULL, 16);
wdenk1d704682003-09-19 08:29:25 +0000526 if (start >= 0 && end && end > start)
wdenk80369862003-09-18 18:55:25 +0000527 ausize[IDX_DISK] = (end + 1) - start;
528 /* make sure that we see CTRL-C and save the old state */
529 old_ctrlc = disable_ctrlc(0);
530
wdenkf54ebdf2003-09-17 15:10:32 +0000531 bitmap_first = 0;
532 /* just loop thru all the possible files */
533 for (i = 0; i < AU_MAXFILES; i++) {
534 sz = file_fat_read(aufile[i], LOAD_ADDR, MAX_LOADSZ);
535 debug ("read %s sz %ld hdr %d\n",
536 aufile[i], sz, sizeof(image_header_t));
537 if (sz <= 0 || sz <= sizeof(image_header_t)) {
538 debug ("%s not found\n", aufile[i]);
539 continue;
540 }
541 if (au_check_valid(i, sz) < 0) {
542 debug ("%s not valid\n", aufile[i]);
543 continue;
544 }
545#ifdef CONFIG_VFD
546 /* now that we have a valid file we can display the */
547 /* bitmap. */
548 if (bitmap_first == 0) {
549 env = getenv("bitmap2");
550 if (env == NULL) {
551 trab_vfd(0);
552 } else {
553 /* not so simple - bitmap2 is supposed to */
554 /* contain the address of the bitmap */
555 env = (char *)simple_strtoul(env, NULL, 16);
556/* NOTE: these are taken from vfd_logo.h. If that file changes then */
557/* these defines MUST also be updated! These may be wrong for bitmap2. */
558#define VFD_LOGO_WIDTH 112
559#define VFD_LOGO_HEIGHT 72
560 /* must call transfer_pic directly */
561 transfer_pic(3, env, VFD_LOGO_HEIGHT, VFD_LOGO_WIDTH);
562 }
563 bitmap_first = 1;
564 }
565#endif
566 /* this is really not a good idea, but it's what the */
567 /* customer wants. */
wdenkb0639ca2003-09-17 22:48:07 +0000568 cnt = 0;
wdenk80369862003-09-18 18:55:25 +0000569 got_ctrlc = 0;
wdenkf54ebdf2003-09-17 15:10:32 +0000570 do {
wdenk80369862003-09-18 18:55:25 +0000571 res = au_do_update(i, sz, cnt);
572 /* let the user break out of the loop */
573 if (ctrlc() || had_ctrlc()) {
574 clear_ctrlc();
575 if (res < 0)
576 got_ctrlc = 1;
577 break;
578 }
wdenkb0639ca2003-09-17 22:48:07 +0000579 cnt++;
wdenk80369862003-09-18 18:55:25 +0000580#ifdef AU_TEST_ONLY
wdenkb0639ca2003-09-17 22:48:07 +0000581 } while (res < 0 && cnt < 3);
582 if (cnt < 3)
583#else
wdenkf54ebdf2003-09-17 15:10:32 +0000584 } while (res < 0);
wdenkb0639ca2003-09-17 22:48:07 +0000585#endif
wdenk80369862003-09-18 18:55:25 +0000586 /*
587 * it doesn't make sense to update the EEPROM if the
588 * update was interrupted by the user due to errors.
589 */
590 if (got_ctrlc == 0)
591 au_update_eeprom(i);
dzu8a42eac2003-09-29 21:55:54 +0000592 else
593 /* enable the power switch */
594 *CPLD_VFD_BK &= ~POWER_OFF;
wdenkf54ebdf2003-09-17 15:10:32 +0000595 }
wdenkb0639ca2003-09-17 22:48:07 +0000596 usb_stop();
wdenk80369862003-09-18 18:55:25 +0000597 /* restore the old state */
598 disable_ctrlc(old_ctrlc);
wdenkf54ebdf2003-09-17 15:10:32 +0000599 return 0;
600}
601#endif /* CONFIG_AUTO_UPDATE */