added board support for compex wpj558
[openwrt/openwrt.git] / tools / firmware-utils / src / mkmylofw.c
1 /*
2 * Copyright (C) 2006-2008 Gabor Juhos <juhosg@openwrt.org>
3 *
4 * This program is free software; you can redistribute it and/or
5 * modify it under the terms of the GNU General Public License
6 * as published by the Free Software Foundation; either version 2
7 * of the License, or (at your option) any later version.
8 *
9 * This program is distributed in the hope that it will be useful,
10 * but WITHOUT ANY WARRANTY; without even the implied warranty of
11 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
12 * GNU General Public License for more details.
13 *
14 * You should have received a copy of the GNU General Public License
15 * along with this program; if not, write to the
16 * Free Software Foundation, Inc., 51 Franklin Street, Fifth Floor,
17 * Boston, MA 02110-1301, USA.
18 *
19 */
20
21 #include <stdio.h>
22 #include <stdlib.h>
23 #include <stdint.h>
24 #include <string.h>
25 #include <unistd.h> /* for unlink() */
26 #include <libgen.h>
27 #include <getopt.h> /* for getopt() */
28 #include <stdarg.h>
29 #include <errno.h>
30 #include <sys/stat.h>
31 #include <endian.h> /* for __BYTE_ORDER */
32
33 #if defined(__CYGWIN__)
34 # include <byteswap.h>
35 #endif
36
37 #if (__BYTE_ORDER == __LITTLE_ENDIAN)
38 # define HOST_TO_LE16(x) (x)
39 # define HOST_TO_LE32(x) (x)
40 #else
41 # define HOST_TO_LE16(x) bswap_16(x)
42 # define HOST_TO_LE32(x) bswap_32(x)
43 #endif
44
45 #include "myloader.h"
46
47 #define MAX_FW_BLOCKS 32
48 #define MAX_ARG_COUNT 32
49 #define MAX_ARG_LEN 1024
50 #define FILE_BUF_LEN (16*1024)
51 #define PART_NAME_LEN 32
52
53 struct fw_block {
54 uint32_t addr;
55 uint32_t blocklen; /* length of the block */
56 uint32_t flags;
57
58 char *name; /* name of the file */
59 uint32_t size; /* length of the file */
60 uint32_t crc; /* crc value of the file */
61 };
62
63 struct fw_part {
64 struct mylo_partition mylo;
65 char name[PART_NAME_LEN];
66 };
67
68 #define BLOCK_FLAG_HAVEHDR 0x0001
69
70 struct cpx_board {
71 char *model; /* model number*/
72 char *name; /* model name*/
73 char *desc; /* description */
74 uint16_t vid; /* vendor id */
75 uint16_t did; /* device id */
76 uint16_t svid; /* sub vendor id */
77 uint16_t sdid; /* sub device id */
78 uint32_t flash_size; /* size of flash */
79 uint32_t part_offset; /* offset of the partition_table */
80 uint32_t part_size; /* size of the partition_table */
81 };
82
83 #define BOARD(_vid, _did, _svid, _sdid, _flash, _mod, _name, _desc, _po, _ps) { \
84 .model = _mod, .name = _name, .desc = _desc, \
85 .vid = _vid, .did = _did, .svid = _svid, .sdid = _sdid, \
86 .flash_size = (_flash << 20), \
87 .part_offset = _po, .part_size = _ps }
88
89 #define CPX_BOARD(_did, _flash, _mod, _name, _desc, _po, _ps) \
90 BOARD(VENID_COMPEX, _did, VENID_COMPEX, _did, _flash, _mod, _name, _desc, _po, _ps)
91
92 #define CPX_BOARD_ADM(_did, _flash, _mod, _name, _desc) \
93 CPX_BOARD(_did, _flash, _mod, _name, _desc, 0x10000, 0x10000)
94
95 #define CPX_BOARD_AR71XX(_did, _flash, _mod, _name, _desc) \
96 CPX_BOARD(_did, _flash, _mod, _name, _desc, 0x20000, 0x8000)
97
98 #define CPX_BOARD_AR23XX(_did, _flash, _mod, _name, _desc) \
99 CPX_BOARD(_did, _flash, _mod, _name, _desc, 0x10000, 0x10000)
100
101 #define ALIGN(x,y) ((x)+((y)-1)) & ~((y)-1)
102
103 char *progname;
104 char *ofname = NULL;
105
106 uint32_t flash_size = 0;
107 int fw_num_partitions = 0;
108 int fw_num_blocks = 0;
109 int verblevel = 0;
110
111 struct mylo_fw_header fw_header;
112 struct fw_part fw_parts[MYLO_MAX_PARTITIONS];
113 struct fw_block fw_blocks[MAX_FW_BLOCKS];
114 struct cpx_board *board;
115
116 struct cpx_board boards[] = {
117 CPX_BOARD_ADM(DEVID_COMPEX_NP18A, 4,
118 "NP18A", "Compex NetPassage 18A",
119 "Dualband Wireless A+G Internet Gateway"),
120 CPX_BOARD_ADM(DEVID_COMPEX_NP26G8M, 2,
121 "NP26G8M", "Compex NetPassage 26G (8M)",
122 "Wireless-G Broadband Multimedia Gateway"),
123 CPX_BOARD_ADM(DEVID_COMPEX_NP26G16M, 4,
124 "NP26G16M", "Compex NetPassage 26G (16M)",
125 "Wireless-G Broadband Multimedia Gateway"),
126 CPX_BOARD_ADM(DEVID_COMPEX_NP27G, 4,
127 "NP27G", "Compex NetPassage 27G",
128 "Wireless-G 54Mbps eXtended Range Router"),
129 CPX_BOARD_ADM(DEVID_COMPEX_NP28G, 4,
130 "NP28G", "Compex NetPassage 28G",
131 "Wireless 108Mbps Super-G XR Multimedia Router with 4 USB Ports"),
132 CPX_BOARD_ADM(DEVID_COMPEX_NP28GHS, 4,
133 "NP28GHS", "Compex NetPassage 28G (HotSpot)",
134 "HotSpot Solution"),
135 CPX_BOARD_ADM(DEVID_COMPEX_WP18, 4,
136 "WP18", "Compex NetPassage WP18",
137 "Wireless-G 54Mbps A+G Dualband Access Point"),
138 CPX_BOARD_ADM(DEVID_COMPEX_WP54G, 4,
139 "WP54G", "Compex WP54G",
140 "Wireless-G 54Mbps XR Access Point"),
141 CPX_BOARD_ADM(DEVID_COMPEX_WP54Gv1C, 2,
142 "WP54Gv1C", "Compex WP54G rev.1C",
143 "Wireless-G 54Mbps XR Access Point"),
144 CPX_BOARD_ADM(DEVID_COMPEX_WP54AG, 4,
145 "WP54AG", "Compex WP54AG",
146 "Wireless-AG 54Mbps XR Access Point"),
147 CPX_BOARD_ADM(DEVID_COMPEX_WPP54G, 4,
148 "WPP54G", "Compex WPP54G",
149 "Outdoor Access Point"),
150 CPX_BOARD_ADM(DEVID_COMPEX_WPP54AG, 4,
151 "WPP54AG", "Compex WPP54AG",
152 "Outdoor Access Point"),
153
154 CPX_BOARD_AR71XX(DEVID_COMPEX_WP543, 2,
155 "WP543", "Compex WP543",
156 "BareBoard"),
157 CPX_BOARD_AR71XX(DEVID_COMPEX_WPE72, 8,
158 "WPE72", "Compex WPE72",
159 "BareBoard"),
160 CPX_BOARD_AR71XX(DEVID_COMPEX_WPJ558, 8,
161 "WPJ558", "Compex WPJ558",
162 "BareBoard"),
163
164 CPX_BOARD_AR23XX(DEVID_COMPEX_NP25G, 4,
165 "NP25G", "Compex NetPassage 25G",
166 "Wireless 54Mbps XR Router"),
167 CPX_BOARD_AR23XX(DEVID_COMPEX_WPE53G, 4,
168 "WPE53G", "Compex NetPassage 25G",
169 "Wireless 54Mbps XR Access Point"),
170 {.model = NULL}
171 };
172
173 void
174 errmsgv(int syserr, const char *fmt, va_list arg_ptr)
175 {
176 int save = errno;
177
178 fflush(0);
179 fprintf(stderr, "[%s] Error: ", progname);
180 vfprintf(stderr, fmt, arg_ptr);
181 if (syserr != 0) {
182 fprintf(stderr, ": %s", strerror(save));
183 }
184 fprintf(stderr, "\n");
185 }
186
187 void
188 errmsg(int syserr, const char *fmt, ...)
189 {
190 va_list arg_ptr;
191 va_start(arg_ptr, fmt);
192 errmsgv(syserr, fmt, arg_ptr);
193 va_end(arg_ptr);
194 }
195
196 void
197 dbgmsg(int level, const char *fmt, ...)
198 {
199 va_list arg_ptr;
200 if (verblevel >= level) {
201 fflush(0);
202 va_start(arg_ptr, fmt);
203 vfprintf(stderr, fmt, arg_ptr);
204 fprintf(stderr, "\n");
205 va_end(arg_ptr);
206 }
207 }
208
209
210 void
211 usage(int status)
212 {
213 FILE *stream = (status != EXIT_SUCCESS) ? stderr : stdout;
214 struct cpx_board *board;
215
216 fprintf(stream, "Usage: %s [OPTION...] <file>\n", progname);
217 fprintf(stream,
218 "\n"
219 " <file> write output to the <file>\n"
220 "\n"
221 "Options:\n"
222 " -B <board> create firmware for the board specified with <board>.\n"
223 " This option set vendor id, device id, subvendor id,\n"
224 " subdevice id, and flash size options to the right value.\n"
225 " valid <board> values:\n");
226 for (board = boards; board->model != NULL; board++){
227 fprintf(stream,
228 " %-12s: %s\n",
229 board->model, board->name);
230 };
231 fprintf(stream,
232 " -i <vid>:<did>[:<svid>[:<sdid>]]\n"
233 " create firmware for board with vendor id <vid>, device\n"
234 " id <did>, subvendor id <svid> and subdevice id <sdid>.\n"
235 " -r <rev> set board revision to <rev>.\n"
236 " -s <size> set flash size to <size>\n"
237 " -b <addr>:<len>[:[<flags>]:<file>]\n"
238 " define block at <addr> with length of <len>.\n"
239 " valid <flag> values:\n"
240 " h : add crc header before the file data.\n"
241 " -p <addr>:<len>[:<flags>[:<param>[:<name>[:<file>]]]]\n"
242 " add partition at <addr>, with size of <len> to the\n"
243 " partition table, set partition name to <name>, partition \n"
244 " flags to <flags> and partition parameter to <param>.\n"
245 " If the <file> is specified content of the file will be \n"
246 " added to the firmware image.\n"
247 " valid <flag> values:\n"
248 " a: this is the active partition. The bootloader loads\n"
249 " the firmware from this partition.\n"
250 " h: the partition data have a header.\n"
251 " l: the partition data uses LZMA compression.\n"
252 " p: the bootloader loads data from this partition to\n"
253 " the RAM before decompress it.\n"
254 " -h show this screen\n"
255 );
256
257 exit(status);
258 }
259
260 /*
261 * Code to compute the CRC-32 table. Borrowed from
262 * gzip-1.0.3/makecrc.c.
263 */
264
265 static uint32_t crc_32_tab[256];
266
267 void
268 init_crc_table(void)
269 {
270 /* Not copyrighted 1990 Mark Adler */
271
272 uint32_t c; /* crc shift register */
273 uint32_t e; /* polynomial exclusive-or pattern */
274 int i; /* counter for all possible eight bit values */
275 int k; /* byte being shifted into crc apparatus */
276
277 /* terms of polynomial defining this crc (except x^32): */
278 static const int p[] = {0,1,2,4,5,7,8,10,11,12,16,22,23,26};
279
280 /* Make exclusive-or pattern from polynomial */
281 e = 0;
282 for (i = 0; i < sizeof(p)/sizeof(int); i++)
283 e |= 1L << (31 - p[i]);
284
285 crc_32_tab[0] = 0;
286
287 for (i = 1; i < 256; i++) {
288 c = 0;
289 for (k = i | 256; k != 1; k >>= 1) {
290 c = c & 1 ? (c >> 1) ^ e : c >> 1;
291 if (k & 1)
292 c ^= e;
293 }
294 crc_32_tab[i] = c;
295 }
296 }
297
298
299 void
300 update_crc(uint8_t *p, uint32_t len, uint32_t *crc)
301 {
302 uint32_t t;
303
304 t = *crc ^ 0xFFFFFFFFUL;
305 while (len--) {
306 t = crc_32_tab[(t ^ *p++) & 0xff] ^ (t >> 8);
307 }
308 *crc = t ^ 0xFFFFFFFFUL;
309 }
310
311
312 uint32_t
313 get_crc(uint8_t *p, uint32_t len)
314 {
315 uint32_t crc;
316
317 crc = 0;
318 update_crc(p ,len , &crc);
319 return crc;
320 }
321
322
323 int
324 str2u32(char *arg, uint32_t *val)
325 {
326 char *err = NULL;
327 uint32_t t;
328
329 errno=0;
330 t = strtoul(arg, &err, 0);
331 if (errno || (err==arg) || ((err != NULL) && *err)) {
332 return -1;
333 }
334
335 *val = t;
336 return 0;
337 }
338
339
340 int
341 str2u16(char *arg, uint16_t *val)
342 {
343 char *err = NULL;
344 uint32_t t;
345
346 errno=0;
347 t = strtoul(arg, &err, 0);
348 if (errno || (err==arg) || ((err != NULL) && *err) || (t >= 0x10000)) {
349 return -1;
350 }
351
352 *val = t & 0xFFFF;
353 return 0;
354 }
355
356
357 struct cpx_board *
358 find_board(char *model){
359 struct cpx_board *board;
360 struct cpx_board *tmp;
361
362 board = NULL;
363 for (tmp = boards; tmp->model != NULL; tmp++){
364 if (strcasecmp(model, tmp->model) == 0) {
365 board = tmp;
366 break;
367 }
368 };
369
370 return board;
371 }
372
373
374 int
375 get_file_crc(struct fw_block *ff)
376 {
377 FILE *f;
378 uint8_t buf[FILE_BUF_LEN];
379 uint32_t readlen = sizeof(buf);
380 int res = -1;
381 size_t len;
382
383 if ((ff->flags & BLOCK_FLAG_HAVEHDR) == 0) {
384 res = 0;
385 goto out;
386 }
387
388 errno = 0;
389 f = fopen(ff->name,"r");
390 if (errno) {
391 errmsg(1,"unable to open file %s", ff->name);
392 goto out;
393 }
394
395 ff->crc = 0;
396 len = ff->size;
397 while (len > 0) {
398 if (len < readlen)
399 readlen = len;
400
401 errno = 0;
402 fread(buf, readlen, 1, f);
403 if (errno) {
404 errmsg(1,"unable to read from file %s", ff->name);
405 goto out_close;
406 }
407
408 update_crc(buf, readlen, &ff->crc);
409 len -= readlen;
410 }
411
412 res = 0;
413
414 out_close:
415 fclose(f);
416 out:
417 return res;
418 }
419
420
421 int
422 process_files(void)
423 {
424 struct fw_block *b;
425 struct stat st;
426 int i;
427
428 for (i = 0; i < fw_num_blocks; i++) {
429 b = &fw_blocks[i];
430 if ((b->addr + b->blocklen) > flash_size) {
431 errmsg(0, "block at 0x%08X is too big", b->addr);
432 return -1;
433 }
434 if (b->name == NULL)
435 continue;
436
437 if (stat(b->name, &st) < 0) {
438 errmsg(0, "stat failed on %s",b->name);
439 return -1;
440 }
441 if (b->blocklen == 0) {
442 b->blocklen = flash_size - b->addr;
443 }
444 if (st.st_size > b->blocklen) {
445 errmsg(0,"file %s is too big",b->name);
446 return -1;
447 }
448
449 b->size = st.st_size;
450 }
451
452 return 0;
453 }
454
455
456 int
457 process_partitions(void)
458 {
459 struct mylo_partition *part;
460 int i;
461
462 for (i = 0; i < fw_num_partitions; i++) {
463 part = &fw_parts[i].mylo;
464
465 if (part->addr > flash_size) {
466 errmsg(0, "invalid partition at 0x%08X", part->addr);
467 return -1;
468 }
469
470 if ((part->addr + part->size) > flash_size) {
471 errmsg(0, "partition at 0x%08X is too big", part->addr);
472 return -1;
473 }
474 }
475
476 return 0;
477 }
478
479
480 /*
481 * routines to write data to the output file
482 */
483 int
484 write_out_data(FILE *outfile, uint8_t *data, size_t len, uint32_t *crc)
485 {
486 errno = 0;
487
488 fwrite(data, len, 1, outfile);
489 if (errno) {
490 errmsg(1,"unable to write output file");
491 return -1;
492 }
493
494 if (crc) {
495 update_crc(data, len, crc);
496 }
497
498 return 0;
499 }
500
501
502 int
503 write_out_desc(FILE *outfile, struct mylo_fw_blockdesc *desc, uint32_t *crc)
504 {
505 return write_out_data(outfile, (uint8_t *)desc,
506 sizeof(*desc), crc);
507 }
508
509
510 int
511 write_out_padding(FILE *outfile, size_t len, uint8_t padc, uint32_t *crc)
512 {
513 uint8_t buff[512];
514 size_t buflen = sizeof(buff);
515
516 memset(buff, padc, buflen);
517
518 while (len > 0) {
519 if (len < buflen)
520 buflen = len;
521
522 if (write_out_data(outfile, buff, buflen, crc))
523 return -1;
524
525 len -= buflen;
526 }
527
528 return 0;
529 }
530
531
532 int
533 write_out_file(FILE *outfile, struct fw_block *block, uint32_t *crc)
534 {
535 char buff[FILE_BUF_LEN];
536 size_t buflen = sizeof(buff);
537 FILE *f;
538 size_t len;
539
540 errno = 0;
541
542 if (block->name == NULL) {
543 return 0;
544 }
545
546 if ((block->flags & BLOCK_FLAG_HAVEHDR) != 0) {
547 struct mylo_partition_header ph;
548
549 if (get_file_crc(block) != 0)
550 return -1;
551
552 ph.crc = HOST_TO_LE32(block->crc);
553 ph.len = HOST_TO_LE32(block->size);
554
555 if (write_out_data(outfile, (uint8_t *)&ph, sizeof(ph), crc) != 0)
556 return -1;
557 }
558
559 f = fopen(block->name,"r");
560 if (errno) {
561 errmsg(1,"unable to open file: %s", block->name);
562 return -1;
563 }
564
565 len = block->size;
566 while (len > 0) {
567 if (len < buflen)
568 buflen = len;
569
570 /* read data from source file */
571 errno = 0;
572 fread(buff, buflen, 1, f);
573 if (errno != 0) {
574 errmsg(1,"unable to read from file: %s",block->name);
575 return -1;
576 }
577
578 if (write_out_data(outfile, buff, buflen, crc) != 0)
579 return -1;
580
581 len -= buflen;
582 }
583
584 fclose(f);
585
586 /* align next block on a 4 byte boundary */
587 len = ALIGN(len,4) - block->size;
588 if (write_out_padding(outfile, len, 0xFF, crc))
589 return -1;
590
591 dbgmsg(1,"file %s written out", block->name);
592 return 0;
593 }
594
595
596 int
597 write_out_header(FILE *outfile, uint32_t *crc)
598 {
599 struct mylo_fw_header hdr;
600
601 memset(&hdr, 0, sizeof(hdr));
602
603 hdr.magic = HOST_TO_LE32(MYLO_MAGIC_FIRMWARE);
604 hdr.crc = HOST_TO_LE32(fw_header.crc);
605 hdr.vid = HOST_TO_LE16(fw_header.vid);
606 hdr.did = HOST_TO_LE16(fw_header.did);
607 hdr.svid = HOST_TO_LE16(fw_header.svid);
608 hdr.sdid = HOST_TO_LE16(fw_header.sdid);
609 hdr.rev = HOST_TO_LE32(fw_header.rev);
610 hdr.fwhi = HOST_TO_LE32(fw_header.fwhi);
611 hdr.fwlo = HOST_TO_LE32(fw_header.fwlo);
612 hdr.flags = HOST_TO_LE32(fw_header.flags);
613
614 if (fseek(outfile, 0, SEEK_SET) != 0) {
615 errmsg(1,"fseek failed on output file");
616 return -1;
617 }
618
619 return write_out_data(outfile, (uint8_t *)&hdr, sizeof(hdr), crc);
620 }
621
622
623 int
624 write_out_partitions(FILE *outfile, uint32_t *crc)
625 {
626 struct mylo_partition_table p;
627 char part_names[MYLO_MAX_PARTITIONS][PART_NAME_LEN];
628 int ret;
629 int i;
630
631 if (fw_num_partitions == 0)
632 return 0;
633
634 memset(&p, 0, sizeof(p));
635 memset(part_names, 0, sizeof(part_names));
636
637 p.magic = HOST_TO_LE32(MYLO_MAGIC_PARTITIONS);
638 for (i = 0; i < fw_num_partitions; i++) {
639 struct mylo_partition *mp;
640 struct fw_part *fp;
641
642 mp = &p.partitions[i];
643 fp = &fw_parts[i];
644 mp->flags = HOST_TO_LE16(fp->mylo.flags);
645 mp->type = HOST_TO_LE16(PARTITION_TYPE_USED);
646 mp->addr = HOST_TO_LE32(fp->mylo.addr);
647 mp->size = HOST_TO_LE32(fp->mylo.size);
648 mp->param = HOST_TO_LE32(fp->mylo.param);
649
650 memcpy(part_names[i], fp->name, PART_NAME_LEN);
651 }
652
653 ret = write_out_data(outfile, (uint8_t *)&p, sizeof(p), crc);
654 if (ret)
655 return ret;
656
657 ret = write_out_data(outfile, (uint8_t *)part_names, sizeof(part_names),
658 crc);
659 return ret;
660 }
661
662
663 int
664 write_out_blocks(FILE *outfile, uint32_t *crc)
665 {
666 struct mylo_fw_blockdesc desc;
667 struct fw_block *b;
668 uint32_t dlen;
669 int i;
670
671 /*
672 * if at least one partition specified, write out block descriptor
673 * for the partition table
674 */
675 if (fw_num_partitions > 0) {
676 desc.type = HOST_TO_LE32(FW_DESC_TYPE_USED);
677 desc.addr = HOST_TO_LE32(board->part_offset);
678 desc.dlen = HOST_TO_LE32(sizeof(struct mylo_partition_table) +
679 (MYLO_MAX_PARTITIONS * PART_NAME_LEN));
680 desc.blen = HOST_TO_LE32(board->part_size);
681
682 if (write_out_desc(outfile, &desc, crc) != 0)
683 return -1;
684 }
685
686 /*
687 * write out block descriptors for each files
688 */
689 for (i = 0; i < fw_num_blocks; i++) {
690 b = &fw_blocks[i];
691
692 /* detect block size */
693 dlen = b->size;
694 if ((b->flags & BLOCK_FLAG_HAVEHDR) != 0) {
695 dlen += sizeof(struct mylo_partition_header);
696 }
697
698 /* round up to 4 bytes */
699 dlen = ALIGN(dlen, 4);
700
701 /* setup the descriptor */
702 desc.type = HOST_TO_LE32(FW_DESC_TYPE_USED);
703 desc.addr = HOST_TO_LE32(b->addr);
704 desc.dlen = HOST_TO_LE32(dlen);
705 desc.blen = HOST_TO_LE32(b->blocklen);
706
707 if (write_out_desc(outfile, &desc, crc) != 0)
708 return -1;
709 }
710
711 /*
712 * write out the null block descriptor
713 */
714 memset(&desc, 0, sizeof(desc));
715 if (write_out_desc(outfile, &desc, crc) != 0)
716 return -1;
717
718 if (write_out_partitions(outfile, crc) != 0)
719 return -1;
720
721 /*
722 * write out data for each blocks
723 */
724 for (i = 0; i < fw_num_blocks; i++) {
725 b = &fw_blocks[i];
726 if (write_out_file(outfile, b, crc) != 0)
727 return -1;
728 }
729
730 return 0;
731 }
732
733
734 /*
735 * argument parsing
736 */
737 int
738 parse_arg(char *arg, char *buf, char *argv[])
739 {
740 int res = 0;
741 size_t argl;
742 char *tok;
743 char **ap = &buf;
744 int i;
745
746 if ((arg == NULL)) {
747 /* invalid argument string */
748 return -1;
749 }
750
751 argl = strlen(arg);
752 if (argl == 0) {
753 /* no arguments */
754 return res;
755 }
756
757 if (argl >= MAX_ARG_LEN) {
758 /* argument is too long */
759 argl = MAX_ARG_LEN-1;
760 }
761
762 memset(argv, 0, MAX_ARG_COUNT * sizeof(void *));
763 memcpy(buf, arg, argl);
764 buf[argl] = '\0';
765
766 for (i = 0; i < MAX_ARG_COUNT; i++) {
767 tok = strsep(ap, ":");
768 if (tok == NULL) {
769 break;
770 }
771 #if 0
772 else if (tok[0] == '\0') {
773 break;
774 }
775 #endif
776 argv[i] = tok;
777 res++;
778 }
779
780 return res;
781 }
782
783
784 int
785 required_arg(char c, char *arg)
786 {
787 if ((optarg != NULL) && (*arg == '-')){
788 errmsg(0,"option %c requires an argument\n", c);
789 return -1;
790 }
791
792 return 0;
793 }
794
795
796 int
797 is_empty_arg(char *arg)
798 {
799 int ret = 1;
800 if (arg != NULL) {
801 if (*arg) ret = 0;
802 };
803 return ret;
804 }
805
806
807 int
808 parse_opt_flags(char ch, char *arg)
809 {
810 if (required_arg(ch, arg)) {
811 goto err_out;
812 }
813
814 if (str2u32(arg, &fw_header.flags) != 0) {
815 errmsg(0,"invalid firmware flags: %s", arg);
816 goto err_out;
817 }
818
819 dbgmsg(1, "firmware flags set to %X bytes", fw_header.flags);
820
821 return 0;
822
823 err_out:
824 return -1;
825 }
826
827
828 int
829 parse_opt_size(char ch, char *arg)
830 {
831 if (required_arg(ch, arg)) {
832 goto err_out;
833 }
834
835 if (str2u32(arg, &flash_size) != 0) {
836 errmsg(0,"invalid flash size: %s", arg);
837 goto err_out;
838 }
839
840 dbgmsg(1, "flash size set to %d bytes", flash_size);
841
842 return 0;
843
844 err_out:
845 return -1;
846 }
847
848
849 int
850 parse_opt_id(char ch, char *arg)
851 {
852 char buf[MAX_ARG_LEN];
853 char *argv[MAX_ARG_COUNT];
854 int argc;
855 char *p;
856
857 if (required_arg(ch, arg)) {
858 goto err_out;
859 }
860
861 argc = parse_arg(arg, buf, argv);
862
863 /* processing vendor ID*/
864 p = argv[0];
865 if (is_empty_arg(p)) {
866 errmsg(0,"vendor id is missing from -%c %s",ch, arg);
867 goto err_out;
868 } else if (str2u16(p, &fw_header.vid) != 0) {
869 errmsg(0,"invalid vendor id: %s", p);
870 goto err_out;
871 }
872
873 dbgmsg(1, "vendor id is set to 0x%04X", fw_header.vid);
874
875 /* processing device ID*/
876 p = argv[1];
877 if (is_empty_arg(p)) {
878 errmsg(0,"device id is missing from -%c %s",ch, arg);
879 goto err_out;
880 } else if (str2u16(p, &fw_header.did) != 0) {
881 errmsg(0,"invalid device id: %s", p);
882 goto err_out;
883 }
884
885 dbgmsg(1, "device id is set to 0x%04X", fw_header.did);
886
887 /* processing sub vendor ID*/
888 p = argv[2];
889 if (is_empty_arg(p)) {
890 fw_header.svid = fw_header.vid;
891 } else if (str2u16(p, &fw_header.svid) != 0) {
892 errmsg(0,"invalid sub vendor id: %s", p);
893 goto err_out;
894 }
895
896 dbgmsg(1, "sub vendor id is set to 0x%04X", fw_header.svid);
897
898 /* processing device ID*/
899 p = argv[3];
900 if (is_empty_arg(p)) {
901 fw_header.sdid = fw_header.did;
902 } else if (str2u16(p, &fw_header.sdid) != 0) {
903 errmsg(0,"invalid sub device id: %s", p);
904 goto err_out;
905 }
906
907 dbgmsg(1, "sub device id is set to 0x%04X", fw_header.sdid);
908
909 /* processing revision */
910 p = argv[4];
911 if (is_empty_arg(p)) {
912 fw_header.rev = 0;
913 } else if (str2u32(arg, &fw_header.rev) != 0) {
914 errmsg(0,"invalid revision number: %s", p);
915 goto err_out;
916 }
917
918 dbgmsg(1, "board revision is set to 0x%08X", fw_header.rev);
919
920 return 0;
921
922 err_out:
923 return -1;
924 }
925
926
927 int
928 parse_opt_block(char ch, char *arg)
929 {
930 char buf[MAX_ARG_LEN];
931 char *argv[MAX_ARG_COUNT];
932 int argc;
933 struct fw_block *b;
934 char *p;
935
936 if (required_arg(ch, arg)) {
937 goto err_out;
938 }
939
940 if (fw_num_blocks >= MAX_FW_BLOCKS) {
941 errmsg(0,"too many blocks specified");
942 goto err_out;
943 }
944
945 argc = parse_arg(arg, buf, argv);
946 dbgmsg(1,"processing block option %s, count %d", arg, argc);
947
948 b = &fw_blocks[fw_num_blocks++];
949
950 /* processing block address */
951 p = argv[0];
952 if (is_empty_arg(p)) {
953 errmsg(0,"no block address specified in %s", arg);
954 goto err_out;
955 } else if (str2u32(p, &b->addr) != 0) {
956 errmsg(0,"invalid block address: %s", p);
957 goto err_out;
958 }
959
960 /* processing block length */
961 p = argv[1];
962 if (is_empty_arg(p)) {
963 errmsg(0,"no block length specified in %s", arg);
964 goto err_out;
965 } else if (str2u32(p, &b->blocklen) != 0) {
966 errmsg(0,"invalid block length: %s", p);
967 goto err_out;
968 }
969
970 if (argc < 3) {
971 dbgmsg(1,"empty block %s", arg);
972 goto success;
973 }
974
975 /* processing flags */
976 p = argv[2];
977 if (is_empty_arg(p) == 0) {
978 for ( ; *p != '\0'; p++) {
979 switch (*p) {
980 case 'h':
981 b->flags |= BLOCK_FLAG_HAVEHDR;
982 break;
983 default:
984 errmsg(0, "invalid block flag \"%c\"", *p);
985 goto err_out;
986 }
987 }
988 }
989
990 /* processing file name */
991 p = argv[3];
992 if (is_empty_arg(p)) {
993 errmsg(0,"file name missing in %s", arg);
994 goto err_out;
995 }
996
997 b->name = strdup(p);
998 if (b->name == NULL) {
999 errmsg(0,"not enough memory");
1000 goto err_out;
1001 }
1002
1003 success:
1004
1005 return 0;
1006
1007 err_out:
1008 return -1;
1009 }
1010
1011
1012 int
1013 parse_opt_partition(char ch, char *arg)
1014 {
1015 char buf[MAX_ARG_LEN];
1016 char *argv[MAX_ARG_COUNT];
1017 int argc;
1018 char *p;
1019 struct mylo_partition *part;
1020 struct fw_part *fp;
1021
1022 if (required_arg(ch, arg)) {
1023 goto err_out;
1024 }
1025
1026 if (fw_num_partitions >= MYLO_MAX_PARTITIONS) {
1027 errmsg(0, "too many partitions specified");
1028 goto err_out;
1029 }
1030
1031 fp = &fw_parts[fw_num_partitions++];
1032 part = &fp->mylo;
1033
1034 argc = parse_arg(arg, buf, argv);
1035
1036 /* processing partition address */
1037 p = argv[0];
1038 if (is_empty_arg(p)) {
1039 errmsg(0,"partition address missing in -%c %s",ch, arg);
1040 goto err_out;
1041 } else if (str2u32(p, &part->addr) != 0) {
1042 errmsg(0,"invalid partition address: %s", p);
1043 goto err_out;
1044 }
1045
1046 /* processing partition size */
1047 p = argv[1];
1048 if (is_empty_arg(p)) {
1049 errmsg(0,"partition size missing in -%c %s",ch, arg);
1050 goto err_out;
1051 } else if (str2u32(p, &part->size) != 0) {
1052 errmsg(0,"invalid partition size: %s", p);
1053 goto err_out;
1054 }
1055
1056 /* processing partition flags */
1057 p = argv[2];
1058 if (is_empty_arg(p) == 0) {
1059 for ( ; *p != '\0'; p++) {
1060 switch (*p) {
1061 case 'a':
1062 part->flags |= PARTITION_FLAG_ACTIVE;
1063 break;
1064 case 'p':
1065 part->flags |= PARTITION_FLAG_PRELOAD;
1066 break;
1067 case 'l':
1068 part->flags |= PARTITION_FLAG_LZMA;
1069 break;
1070 case 'h':
1071 part->flags |= PARTITION_FLAG_HAVEHDR;
1072 break;
1073 default:
1074 errmsg(0, "invalid partition flag \"%c\"", *p);
1075 goto err_out;
1076 }
1077 }
1078 }
1079
1080 /* processing partition parameter */
1081 p = argv[3];
1082 if (is_empty_arg(p)) {
1083 /* set default partition parameter */
1084 part->param = 0;
1085 } else if (str2u32(p, &part->param) != 0) {
1086 errmsg(0,"invalid partition parameter: %s", p);
1087 goto err_out;
1088 }
1089
1090 p = argv[4];
1091 if (is_empty_arg(p)) {
1092 /* set default partition parameter */
1093 fp->name[0] = '\0';
1094 } else {
1095 strncpy(fp->name, p, PART_NAME_LEN);
1096 }
1097
1098 #if 1
1099 if (part->size == 0) {
1100 part->size = flash_size - part->addr;
1101 }
1102
1103 /* processing file parameter */
1104 p = argv[5];
1105 if (is_empty_arg(p) == 0) {
1106 struct fw_block *b;
1107
1108 if (fw_num_blocks == MAX_FW_BLOCKS) {
1109 errmsg(0,"too many blocks specified", p);
1110 goto err_out;
1111 }
1112 b = &fw_blocks[fw_num_blocks++];
1113 b->name = strdup(p);
1114 b->addr = part->addr;
1115 b->blocklen = part->size;
1116 if (part->flags & PARTITION_FLAG_HAVEHDR) {
1117 b->flags |= BLOCK_FLAG_HAVEHDR;
1118 }
1119 }
1120 #endif
1121
1122 return 0;
1123
1124 err_out:
1125 return -1;
1126 }
1127
1128
1129 int
1130 parse_opt_board(char ch, char *arg)
1131 {
1132 if (required_arg(ch, arg)) {
1133 goto err_out;
1134 }
1135
1136 board = find_board(arg);
1137 if (board == NULL){
1138 errmsg(0,"invalid/unknown board specified: %s", arg);
1139 goto err_out;
1140 }
1141
1142 fw_header.vid = board->vid;
1143 fw_header.did = board->did;
1144 fw_header.svid = board->svid;
1145 fw_header.sdid = board->sdid;
1146
1147 flash_size = board->flash_size;
1148
1149 return 0;
1150
1151 err_out:
1152 return -1;
1153 }
1154
1155
1156 int
1157 parse_opt_rev(char ch, char *arg)
1158 {
1159 if (required_arg(ch, arg)) {
1160 return -1;
1161 }
1162
1163 if (str2u32(arg, &fw_header.rev) != 0) {
1164 errmsg(0,"invalid revision number: %s", arg);
1165 return -1;
1166 }
1167
1168 return 0;
1169 }
1170
1171
1172 /*
1173 * main
1174 */
1175 int
1176 main(int argc, char *argv[])
1177 {
1178 int optinvalid = 0; /* flag for invalid option */
1179 int c;
1180 int res = EXIT_FAILURE;
1181
1182 FILE *outfile;
1183 uint32_t crc;
1184
1185 progname=basename(argv[0]);
1186
1187 memset(&fw_header, 0, sizeof(fw_header));
1188
1189 /* init header defaults */
1190 fw_header.vid = VENID_COMPEX;
1191 fw_header.did = DEVID_COMPEX_WP54G;
1192 fw_header.svid = VENID_COMPEX;
1193 fw_header.sdid = DEVID_COMPEX_WP54G;
1194 fw_header.fwhi = 0x20000;
1195 fw_header.fwlo = 0x20000;
1196 fw_header.flags = 0;
1197
1198 opterr = 0; /* could not print standard getopt error messages */
1199 while ((c = getopt(argc, argv, "b:B:f:hi:p:r:s:v")) != -1) {
1200 optinvalid = 0;
1201 switch (c) {
1202 case 'b':
1203 optinvalid = parse_opt_block(c,optarg);
1204 break;
1205 case 'B':
1206 optinvalid = parse_opt_board(c,optarg);
1207 break;
1208 case 'f':
1209 optinvalid = parse_opt_flags(c,optarg);
1210 break;
1211 case 'h':
1212 usage(EXIT_SUCCESS);
1213 break;
1214 case 'i':
1215 optinvalid = parse_opt_id(c,optarg);
1216 break;
1217 case 'p':
1218 optinvalid = parse_opt_partition(c,optarg);
1219 break;
1220 case 'r':
1221 optinvalid = parse_opt_rev(c,optarg);
1222 break;
1223 case 's':
1224 optinvalid = parse_opt_size(c,optarg);
1225 break;
1226 case 'v':
1227 verblevel++;
1228 break;
1229 default:
1230 optinvalid = 1;
1231 break;
1232 }
1233 if (optinvalid != 0 ){
1234 errmsg(0, "invalid option: -%c", optopt);
1235 goto out;
1236 }
1237 }
1238
1239 if (optind == argc) {
1240 errmsg(0, "no output file specified");
1241 goto out;
1242 }
1243
1244 ofname = argv[optind++];
1245
1246 if (optind < argc) {
1247 errmsg(0, "invalid option: %s", argv[optind]);
1248 goto out;
1249 }
1250
1251 if (!board) {
1252 errmsg(0, "no board specified");
1253 goto out;
1254 }
1255
1256 if (flash_size == 0) {
1257 errmsg(0, "no flash size specified");
1258 goto out;
1259 }
1260
1261 if (process_files() != 0) {
1262 goto out;
1263 }
1264
1265 if (process_partitions() != 0) {
1266 goto out;
1267 }
1268
1269 outfile = fopen(ofname, "w");
1270 if (outfile == NULL) {
1271 errmsg(1, "could not open \"%s\" for writing", ofname);
1272 goto out;
1273 }
1274
1275 crc = 0;
1276 init_crc_table();
1277
1278 if (write_out_header(outfile, &crc) != 0)
1279 goto out_flush;
1280
1281 if (write_out_blocks(outfile, &crc) != 0)
1282 goto out_flush;
1283
1284 fw_header.crc = crc;
1285 if (write_out_header(outfile, NULL) != 0)
1286 goto out_flush;
1287
1288 dbgmsg(1,"Firmware file %s completed.", ofname);
1289
1290 res = EXIT_SUCCESS;
1291
1292 out_flush:
1293 fflush(outfile);
1294 fclose(outfile);
1295 if (res != EXIT_SUCCESS) {
1296 unlink(ofname);
1297 }
1298 out:
1299 return res;
1300 }