blob: 864625d78812862233a52bbf9d9acc67b021a168 [file] [log] [blame]
Tom Rini83d290c2018-05-06 17:58:06 -04001// SPDX-License-Identifier: GPL-2.0+
Prafulla Wadaskaraa0c7a82009-09-07 15:05:02 +05302/*
Stefan Roese4acd2d22014-10-22 12:13:23 +02003 * Image manipulator for Marvell SoCs
Pali Rohár8010f4f2021-09-24 23:07:02 +02004 * supports Kirkwood, Dove, Armada 370, Armada XP, Armada 375, Armada 38x and
5 * Armada 39x
Stefan Roese4acd2d22014-10-22 12:13:23 +02006 *
7 * (C) Copyright 2013 Thomas Petazzoni
8 * <thomas.petazzoni@free-electrons.com>
Prafulla Wadaskaraa0c7a82009-09-07 15:05:02 +05309 */
10
Guilherme Maciel Ferreiraf86ed6a2013-12-01 12:43:10 -070011#include "imagetool.h"
Andreas Bießmanne5f1a582014-10-24 23:39:11 +020012#include <limits.h>
Prafulla Wadaskaraa0c7a82009-09-07 15:05:02 +053013#include <image.h>
Mario Sixa1b6b0a2017-01-11 16:01:00 +010014#include <stdarg.h>
Stefan Roese4acd2d22014-10-22 12:13:23 +020015#include <stdint.h>
Prafulla Wadaskaraa0c7a82009-09-07 15:05:02 +053016#include "kwbimage.h"
17
Jelle van der Waae15843b2017-05-08 21:31:20 +020018#include <openssl/bn.h>
Mario Sixa1b6b0a2017-01-11 16:01:00 +010019#include <openssl/rsa.h>
20#include <openssl/pem.h>
21#include <openssl/err.h>
22#include <openssl/evp.h>
Jelle van der Waae15843b2017-05-08 21:31:20 +020023
Jonathan Graya2d5efd2018-02-21 02:59:01 +110024#if OPENSSL_VERSION_NUMBER < 0x10100000L || \
25 (defined(LIBRESSL_VERSION_NUMBER) && LIBRESSL_VERSION_NUMBER < 0x2070000fL)
Jelle van der Waae15843b2017-05-08 21:31:20 +020026static void RSA_get0_key(const RSA *r,
27 const BIGNUM **n, const BIGNUM **e, const BIGNUM **d)
28{
29 if (n != NULL)
30 *n = r->n;
31 if (e != NULL)
32 *e = r->e;
33 if (d != NULL)
34 *d = r->d;
35}
36
Jonathan Graya2d5efd2018-02-21 02:59:01 +110037#elif !defined(LIBRESSL_VERSION_NUMBER)
Jelle van der Waae15843b2017-05-08 21:31:20 +020038void EVP_MD_CTX_cleanup(EVP_MD_CTX *ctx)
39{
40 EVP_MD_CTX_reset(ctx);
41}
42#endif
Mario Sixa1b6b0a2017-01-11 16:01:00 +010043
Stefan Roese4acd2d22014-10-22 12:13:23 +020044static struct image_cfg_element *image_cfg;
45static int cfgn;
Mario Sixa1b6b0a2017-01-11 16:01:00 +010046static int verbose_mode;
Stefan Roese4acd2d22014-10-22 12:13:23 +020047
48struct boot_mode {
49 unsigned int id;
50 const char *name;
Prafulla Wadaskaraa0c7a82009-09-07 15:05:02 +053051};
52
Mario Sixa1b6b0a2017-01-11 16:01:00 +010053/*
54 * SHA2-256 hash
55 */
56struct hash_v1 {
57 uint8_t hash[32];
58};
59
Stefan Roese4acd2d22014-10-22 12:13:23 +020060struct boot_mode boot_modes[] = {
Pali Roháre515a332021-08-11 10:14:17 +020061 { IBR_HDR_I2C_ID, "i2c" },
62 { IBR_HDR_SPI_ID, "spi" },
63 { IBR_HDR_NAND_ID, "nand" },
64 { IBR_HDR_SATA_ID, "sata" },
65 { IBR_HDR_PEX_ID, "pex" },
66 { IBR_HDR_UART_ID, "uart" },
67 { IBR_HDR_SDIO_ID, "sdio" },
Stefan Roese4acd2d22014-10-22 12:13:23 +020068 {},
69};
70
71struct nand_ecc_mode {
72 unsigned int id;
73 const char *name;
74};
75
76struct nand_ecc_mode nand_ecc_modes[] = {
Pali Roháre515a332021-08-11 10:14:17 +020077 { IBR_HDR_ECC_DEFAULT, "default" },
78 { IBR_HDR_ECC_FORCED_HAMMING, "hamming" },
79 { IBR_HDR_ECC_FORCED_RS, "rs" },
80 { IBR_HDR_ECC_DISABLED, "disabled" },
Stefan Roese4acd2d22014-10-22 12:13:23 +020081 {},
82};
83
84/* Used to identify an undefined execution or destination address */
85#define ADDR_INVALID ((uint32_t)-1)
86
Pali Rohár6c7f1522021-07-23 11:14:07 +020087#define BINARY_MAX_ARGS 255
Stefan Roese4acd2d22014-10-22 12:13:23 +020088
89/* In-memory representation of a line of the configuration file */
Mario Six4991b4f2017-01-11 16:00:59 +010090
91enum image_cfg_type {
92 IMAGE_CFG_VERSION = 0x1,
93 IMAGE_CFG_BOOT_FROM,
94 IMAGE_CFG_DEST_ADDR,
95 IMAGE_CFG_EXEC_ADDR,
96 IMAGE_CFG_NAND_BLKSZ,
97 IMAGE_CFG_NAND_BADBLK_LOCATION,
98 IMAGE_CFG_NAND_ECC_MODE,
99 IMAGE_CFG_NAND_PAGESZ,
100 IMAGE_CFG_BINARY,
Mario Six4991b4f2017-01-11 16:00:59 +0100101 IMAGE_CFG_DATA,
Pali Rohárf63c5832021-07-23 11:14:12 +0200102 IMAGE_CFG_DATA_DELAY,
Mario Six4991b4f2017-01-11 16:00:59 +0100103 IMAGE_CFG_BAUDRATE,
Pali Rohár12f2c032021-11-08 18:12:41 +0100104 IMAGE_CFG_UART_PORT,
105 IMAGE_CFG_UART_MPP,
Mario Six4991b4f2017-01-11 16:00:59 +0100106 IMAGE_CFG_DEBUG,
Mario Sixa1b6b0a2017-01-11 16:01:00 +0100107 IMAGE_CFG_KAK,
108 IMAGE_CFG_CSK,
109 IMAGE_CFG_CSK_INDEX,
110 IMAGE_CFG_JTAG_DELAY,
111 IMAGE_CFG_BOX_ID,
112 IMAGE_CFG_FLASH_ID,
113 IMAGE_CFG_SEC_COMMON_IMG,
114 IMAGE_CFG_SEC_SPECIALIZED_IMG,
115 IMAGE_CFG_SEC_BOOT_DEV,
116 IMAGE_CFG_SEC_FUSE_DUMP,
Mario Six4991b4f2017-01-11 16:00:59 +0100117
118 IMAGE_CFG_COUNT
119} type;
120
121static const char * const id_strs[] = {
122 [IMAGE_CFG_VERSION] = "VERSION",
123 [IMAGE_CFG_BOOT_FROM] = "BOOT_FROM",
124 [IMAGE_CFG_DEST_ADDR] = "DEST_ADDR",
125 [IMAGE_CFG_EXEC_ADDR] = "EXEC_ADDR",
126 [IMAGE_CFG_NAND_BLKSZ] = "NAND_BLKSZ",
127 [IMAGE_CFG_NAND_BADBLK_LOCATION] = "NAND_BADBLK_LOCATION",
128 [IMAGE_CFG_NAND_ECC_MODE] = "NAND_ECC_MODE",
129 [IMAGE_CFG_NAND_PAGESZ] = "NAND_PAGE_SIZE",
130 [IMAGE_CFG_BINARY] = "BINARY",
Mario Six4991b4f2017-01-11 16:00:59 +0100131 [IMAGE_CFG_DATA] = "DATA",
Pali Rohárf63c5832021-07-23 11:14:12 +0200132 [IMAGE_CFG_DATA_DELAY] = "DATA_DELAY",
Mario Six4991b4f2017-01-11 16:00:59 +0100133 [IMAGE_CFG_BAUDRATE] = "BAUDRATE",
Pali Rohár12f2c032021-11-08 18:12:41 +0100134 [IMAGE_CFG_UART_PORT] = "UART_PORT",
135 [IMAGE_CFG_UART_MPP] = "UART_MPP",
Mario Six4991b4f2017-01-11 16:00:59 +0100136 [IMAGE_CFG_DEBUG] = "DEBUG",
Mario Sixa1b6b0a2017-01-11 16:01:00 +0100137 [IMAGE_CFG_KAK] = "KAK",
138 [IMAGE_CFG_CSK] = "CSK",
139 [IMAGE_CFG_CSK_INDEX] = "CSK_INDEX",
140 [IMAGE_CFG_JTAG_DELAY] = "JTAG_DELAY",
141 [IMAGE_CFG_BOX_ID] = "BOX_ID",
142 [IMAGE_CFG_FLASH_ID] = "FLASH_ID",
143 [IMAGE_CFG_SEC_COMMON_IMG] = "SEC_COMMON_IMG",
144 [IMAGE_CFG_SEC_SPECIALIZED_IMG] = "SEC_SPECIALIZED_IMG",
145 [IMAGE_CFG_SEC_BOOT_DEV] = "SEC_BOOT_DEV",
146 [IMAGE_CFG_SEC_FUSE_DUMP] = "SEC_FUSE_DUMP"
Mario Six4991b4f2017-01-11 16:00:59 +0100147};
148
Stefan Roese4acd2d22014-10-22 12:13:23 +0200149struct image_cfg_element {
Mario Six4991b4f2017-01-11 16:00:59 +0100150 enum image_cfg_type type;
Stefan Roese4acd2d22014-10-22 12:13:23 +0200151 union {
152 unsigned int version;
153 unsigned int bootfrom;
154 struct {
155 const char *file;
156 unsigned int args[BINARY_MAX_ARGS];
157 unsigned int nargs;
158 } binary;
Stefan Roese4acd2d22014-10-22 12:13:23 +0200159 unsigned int dstaddr;
160 unsigned int execaddr;
161 unsigned int nandblksz;
162 unsigned int nandbadblklocation;
163 unsigned int nandeccmode;
164 unsigned int nandpagesz;
165 struct ext_hdr_v0_reg regdata;
Pali Rohárf63c5832021-07-23 11:14:12 +0200166 unsigned int regdata_delay;
Chris Packham4bdb5472016-11-09 22:07:45 +1300167 unsigned int baudrate;
Pali Rohár12f2c032021-11-08 18:12:41 +0100168 unsigned int uart_port;
169 unsigned int uart_mpp;
Chris Packham2611c052016-11-09 22:21:45 +1300170 unsigned int debug;
Mario Sixa1b6b0a2017-01-11 16:01:00 +0100171 const char *key_name;
172 int csk_idx;
173 uint8_t jtag_delay;
174 uint32_t boxid;
175 uint32_t flashid;
176 bool sec_specialized_img;
177 unsigned int sec_boot_dev;
178 const char *name;
Stefan Roese4acd2d22014-10-22 12:13:23 +0200179 };
180};
181
182#define IMAGE_CFG_ELEMENT_MAX 256
Prafulla Wadaskaraa0c7a82009-09-07 15:05:02 +0530183
184/*
Stefan Roese4acd2d22014-10-22 12:13:23 +0200185 * Utility functions to manipulate boot mode and ecc modes (convert
186 * them back and forth between description strings and the
187 * corresponding numerical identifiers).
Prafulla Wadaskaraa0c7a82009-09-07 15:05:02 +0530188 */
Stefan Roese4acd2d22014-10-22 12:13:23 +0200189
190static const char *image_boot_mode_name(unsigned int id)
Prafulla Wadaskaraa0c7a82009-09-07 15:05:02 +0530191{
Stefan Roese4acd2d22014-10-22 12:13:23 +0200192 int i;
Mario Six94490a42017-01-11 16:00:54 +0100193
Stefan Roese4acd2d22014-10-22 12:13:23 +0200194 for (i = 0; boot_modes[i].name; i++)
195 if (boot_modes[i].id == id)
196 return boot_modes[i].name;
197 return NULL;
198}
199
200int image_boot_mode_id(const char *boot_mode_name)
201{
202 int i;
Mario Six94490a42017-01-11 16:00:54 +0100203
Stefan Roese4acd2d22014-10-22 12:13:23 +0200204 for (i = 0; boot_modes[i].name; i++)
205 if (!strcmp(boot_modes[i].name, boot_mode_name))
206 return boot_modes[i].id;
207
208 return -1;
209}
210
211int image_nand_ecc_mode_id(const char *nand_ecc_mode_name)
212{
213 int i;
Mario Six94490a42017-01-11 16:00:54 +0100214
Stefan Roese4acd2d22014-10-22 12:13:23 +0200215 for (i = 0; nand_ecc_modes[i].name; i++)
216 if (!strcmp(nand_ecc_modes[i].name, nand_ecc_mode_name))
217 return nand_ecc_modes[i].id;
218 return -1;
219}
220
221static struct image_cfg_element *
222image_find_option(unsigned int optiontype)
223{
224 int i;
225
226 for (i = 0; i < cfgn; i++) {
227 if (image_cfg[i].type == optiontype)
228 return &image_cfg[i];
229 }
230
231 return NULL;
232}
233
234static unsigned int
235image_count_options(unsigned int optiontype)
236{
237 int i;
238 unsigned int count = 0;
239
240 for (i = 0; i < cfgn; i++)
241 if (image_cfg[i].type == optiontype)
242 count++;
243
244 return count;
245}
246
Mario Sixa1b6b0a2017-01-11 16:01:00 +0100247static int image_get_csk_index(void)
248{
249 struct image_cfg_element *e;
250
251 e = image_find_option(IMAGE_CFG_CSK_INDEX);
252 if (!e)
253 return -1;
254
255 return e->csk_idx;
256}
257
258static bool image_get_spezialized_img(void)
259{
260 struct image_cfg_element *e;
261
262 e = image_find_option(IMAGE_CFG_SEC_SPECIALIZED_IMG);
263 if (!e)
264 return false;
265
266 return e->sec_specialized_img;
267}
268
Pali Rohárd1547b32021-11-08 18:12:43 +0100269static int image_get_bootfrom(void)
270{
271 struct image_cfg_element *e;
272
273 e = image_find_option(IMAGE_CFG_BOOT_FROM);
274 if (!e)
275 /* fallback to SPI if no BOOT_FROM is not provided */
276 return IBR_HDR_SPI_ID;
277
278 return e->bootfrom;
279}
280
Stefan Roese4acd2d22014-10-22 12:13:23 +0200281/*
282 * Compute a 8-bit checksum of a memory area. This algorithm follows
283 * the requirements of the Marvell SoC BootROM specifications.
284 */
285static uint8_t image_checksum8(void *start, uint32_t len)
286{
287 uint8_t csum = 0;
288 uint8_t *p = start;
Prafulla Wadaskaraa0c7a82009-09-07 15:05:02 +0530289
290 /* check len and return zero checksum if invalid */
291 if (!len)
292 return 0;
293
294 do {
Stefan Roese4acd2d22014-10-22 12:13:23 +0200295 csum += *p;
Prafulla Wadaskaraa0c7a82009-09-07 15:05:02 +0530296 p++;
297 } while (--len);
Stefan Roese4acd2d22014-10-22 12:13:23 +0200298
299 return csum;
Prafulla Wadaskaraa0c7a82009-09-07 15:05:02 +0530300}
301
Baruch Siachdb7cd4ed2017-07-04 20:23:40 +0300302/*
303 * Verify checksum over a complete header that includes the checksum field.
304 * Return 1 when OK, otherwise 0.
305 */
306static int main_hdr_checksum_ok(void *hdr)
307{
308 /* Offsets of checksum in v0 and v1 headers are the same */
309 struct main_hdr_v0 *main_hdr = (struct main_hdr_v0 *)hdr;
310 uint8_t checksum;
311
Marek Behúnfe2fd732021-09-24 23:07:01 +0200312 checksum = image_checksum8(hdr, kwbheader_size_for_csum(hdr));
Baruch Siachdb7cd4ed2017-07-04 20:23:40 +0300313 /* Calculated checksum includes the header checksum field. Compensate
314 * for that.
315 */
316 checksum -= main_hdr->checksum;
317
318 return checksum == main_hdr->checksum;
319}
320
Stefan Roese4acd2d22014-10-22 12:13:23 +0200321static uint32_t image_checksum32(void *start, uint32_t len)
Prafulla Wadaskaraa0c7a82009-09-07 15:05:02 +0530322{
Stefan Roese4acd2d22014-10-22 12:13:23 +0200323 uint32_t csum = 0;
324 uint32_t *p = start;
Prafulla Wadaskaraa0c7a82009-09-07 15:05:02 +0530325
326 /* check len and return zero checksum if invalid */
327 if (!len)
328 return 0;
329
330 if (len % sizeof(uint32_t)) {
Stefan Roese4acd2d22014-10-22 12:13:23 +0200331 fprintf(stderr, "Length %d is not in multiple of %zu\n",
332 len, sizeof(uint32_t));
Prafulla Wadaskaraa0c7a82009-09-07 15:05:02 +0530333 return 0;
334 }
335
336 do {
Stefan Roese4acd2d22014-10-22 12:13:23 +0200337 csum += *p;
Prafulla Wadaskaraa0c7a82009-09-07 15:05:02 +0530338 p++;
339 len -= sizeof(uint32_t);
340 } while (len > 0);
Stefan Roese4acd2d22014-10-22 12:13:23 +0200341
342 return csum;
Prafulla Wadaskaraa0c7a82009-09-07 15:05:02 +0530343}
344
Chris Packham4bdb5472016-11-09 22:07:45 +1300345static uint8_t baudrate_to_option(unsigned int baudrate)
346{
347 switch (baudrate) {
348 case 2400:
349 return MAIN_HDR_V1_OPT_BAUD_2400;
350 case 4800:
351 return MAIN_HDR_V1_OPT_BAUD_4800;
352 case 9600:
353 return MAIN_HDR_V1_OPT_BAUD_9600;
354 case 19200:
355 return MAIN_HDR_V1_OPT_BAUD_19200;
356 case 38400:
357 return MAIN_HDR_V1_OPT_BAUD_38400;
358 case 57600:
359 return MAIN_HDR_V1_OPT_BAUD_57600;
360 case 115200:
361 return MAIN_HDR_V1_OPT_BAUD_115200;
362 default:
363 return MAIN_HDR_V1_OPT_BAUD_DEFAULT;
364 }
365}
366
Mario Sixa1b6b0a2017-01-11 16:01:00 +0100367static void kwb_msg(const char *fmt, ...)
368{
369 if (verbose_mode) {
370 va_list ap;
371
372 va_start(ap, fmt);
373 vfprintf(stdout, fmt, ap);
374 va_end(ap);
375 }
376}
377
378static int openssl_err(const char *msg)
379{
380 unsigned long ssl_err = ERR_get_error();
381
382 fprintf(stderr, "%s", msg);
383 fprintf(stderr, ": %s\n",
384 ERR_error_string(ssl_err, 0));
385
386 return -1;
387}
388
389static int kwb_load_rsa_key(const char *keydir, const char *name, RSA **p_rsa)
390{
391 char path[PATH_MAX];
392 RSA *rsa;
393 FILE *f;
394
395 if (!keydir)
396 keydir = ".";
397
398 snprintf(path, sizeof(path), "%s/%s.key", keydir, name);
399 f = fopen(path, "r");
400 if (!f) {
401 fprintf(stderr, "Couldn't open RSA private key: '%s': %s\n",
402 path, strerror(errno));
403 return -ENOENT;
404 }
405
406 rsa = PEM_read_RSAPrivateKey(f, 0, NULL, "");
407 if (!rsa) {
408 openssl_err("Failure reading private key");
409 fclose(f);
410 return -EPROTO;
411 }
412 fclose(f);
413 *p_rsa = rsa;
414
415 return 0;
416}
417
418static int kwb_load_cfg_key(struct image_tool_params *params,
419 unsigned int cfg_option, const char *key_name,
420 RSA **p_key)
421{
422 struct image_cfg_element *e_key;
423 RSA *key;
424 int res;
425
426 *p_key = NULL;
427
428 e_key = image_find_option(cfg_option);
429 if (!e_key) {
430 fprintf(stderr, "%s not configured\n", key_name);
431 return -ENOENT;
432 }
433
434 res = kwb_load_rsa_key(params->keydir, e_key->key_name, &key);
435 if (res < 0) {
436 fprintf(stderr, "Failed to load %s\n", key_name);
437 return -ENOENT;
438 }
439
440 *p_key = key;
441
442 return 0;
443}
444
445static int kwb_load_kak(struct image_tool_params *params, RSA **p_kak)
446{
447 return kwb_load_cfg_key(params, IMAGE_CFG_KAK, "KAK", p_kak);
448}
449
450static int kwb_load_csk(struct image_tool_params *params, RSA **p_csk)
451{
452 return kwb_load_cfg_key(params, IMAGE_CFG_CSK, "CSK", p_csk);
453}
454
455static int kwb_compute_pubkey_hash(struct pubkey_der_v1 *pk,
456 struct hash_v1 *hash)
457{
458 EVP_MD_CTX *ctx;
459 unsigned int key_size;
460 unsigned int hash_size;
461 int ret = 0;
462
463 if (!pk || !hash || pk->key[0] != 0x30 || pk->key[1] != 0x82)
464 return -EINVAL;
465
466 key_size = (pk->key[2] << 8) + pk->key[3] + 4;
467
468 ctx = EVP_MD_CTX_create();
469 if (!ctx)
470 return openssl_err("EVP context creation failed");
471
472 EVP_MD_CTX_init(ctx);
473 if (!EVP_DigestInit(ctx, EVP_sha256())) {
474 ret = openssl_err("Digest setup failed");
475 goto hash_err_ctx;
476 }
477
478 if (!EVP_DigestUpdate(ctx, pk->key, key_size)) {
479 ret = openssl_err("Hashing data failed");
480 goto hash_err_ctx;
481 }
482
483 if (!EVP_DigestFinal(ctx, hash->hash, &hash_size)) {
484 ret = openssl_err("Could not obtain hash");
485 goto hash_err_ctx;
486 }
487
488 EVP_MD_CTX_cleanup(ctx);
489
490hash_err_ctx:
491 EVP_MD_CTX_destroy(ctx);
492 return ret;
493}
494
495static int kwb_import_pubkey(RSA **key, struct pubkey_der_v1 *src, char *keyname)
496{
497 RSA *rsa;
498 const unsigned char *ptr;
499
500 if (!key || !src)
501 goto fail;
502
503 ptr = src->key;
504 rsa = d2i_RSAPublicKey(key, &ptr, sizeof(src->key));
505 if (!rsa) {
506 openssl_err("error decoding public key");
507 goto fail;
508 }
509
510 return 0;
511fail:
512 fprintf(stderr, "Failed to decode %s pubkey\n", keyname);
513 return -EINVAL;
514}
515
516static int kwb_export_pubkey(RSA *key, struct pubkey_der_v1 *dst, FILE *hashf,
517 char *keyname)
518{
519 int size_exp, size_mod, size_seq;
Jelle van der Waae15843b2017-05-08 21:31:20 +0200520 const BIGNUM *key_e, *key_n;
Mario Sixa1b6b0a2017-01-11 16:01:00 +0100521 uint8_t *cur;
522 char *errmsg = "Failed to encode %s\n";
523
Jelle van der Waae15843b2017-05-08 21:31:20 +0200524 RSA_get0_key(key, NULL, &key_e, NULL);
525 RSA_get0_key(key, &key_n, NULL, NULL);
526
527 if (!key || !key_e || !key_n || !dst) {
Mario Sixa1b6b0a2017-01-11 16:01:00 +0100528 fprintf(stderr, "export pk failed: (%p, %p, %p, %p)",
Jelle van der Waae15843b2017-05-08 21:31:20 +0200529 key, key_e, key_n, dst);
Mario Sixa1b6b0a2017-01-11 16:01:00 +0100530 fprintf(stderr, errmsg, keyname);
531 return -EINVAL;
532 }
533
534 /*
535 * According to the specs, the key should be PKCS#1 DER encoded.
536 * But unfortunately the really required encoding seems to be different;
537 * it violates DER...! (But it still conformes to BER.)
538 * (Length always in long form w/ 2 byte length code; no leading zero
539 * when MSB of first byte is set...)
540 * So we cannot use the encoding func provided by OpenSSL and have to
541 * do the encoding manually.
542 */
543
Jelle van der Waae15843b2017-05-08 21:31:20 +0200544 size_exp = BN_num_bytes(key_e);
545 size_mod = BN_num_bytes(key_n);
Mario Sixa1b6b0a2017-01-11 16:01:00 +0100546 size_seq = 4 + size_mod + 4 + size_exp;
547
548 if (size_mod > 256) {
549 fprintf(stderr, "export pk failed: wrong mod size: %d\n",
550 size_mod);
551 fprintf(stderr, errmsg, keyname);
552 return -EINVAL;
553 }
554
555 if (4 + size_seq > sizeof(dst->key)) {
Marek Behún3b5da642021-09-24 23:06:38 +0200556 fprintf(stderr, "export pk failed: seq too large (%d, %zu)\n",
Mario Sixa1b6b0a2017-01-11 16:01:00 +0100557 4 + size_seq, sizeof(dst->key));
558 fprintf(stderr, errmsg, keyname);
559 return -ENOBUFS;
560 }
561
562 cur = dst->key;
563
564 /* PKCS#1 (RFC3447) RSAPublicKey structure */
565 *cur++ = 0x30; /* SEQUENCE */
566 *cur++ = 0x82;
567 *cur++ = (size_seq >> 8) & 0xFF;
568 *cur++ = size_seq & 0xFF;
569 /* Modulus */
570 *cur++ = 0x02; /* INTEGER */
571 *cur++ = 0x82;
572 *cur++ = (size_mod >> 8) & 0xFF;
573 *cur++ = size_mod & 0xFF;
Jelle van der Waae15843b2017-05-08 21:31:20 +0200574 BN_bn2bin(key_n, cur);
Mario Sixa1b6b0a2017-01-11 16:01:00 +0100575 cur += size_mod;
576 /* Exponent */
577 *cur++ = 0x02; /* INTEGER */
578 *cur++ = 0x82;
579 *cur++ = (size_exp >> 8) & 0xFF;
580 *cur++ = size_exp & 0xFF;
Jelle van der Waae15843b2017-05-08 21:31:20 +0200581 BN_bn2bin(key_e, cur);
Mario Sixa1b6b0a2017-01-11 16:01:00 +0100582
583 if (hashf) {
584 struct hash_v1 pk_hash;
585 int i;
586 int ret = 0;
587
588 ret = kwb_compute_pubkey_hash(dst, &pk_hash);
589 if (ret < 0) {
590 fprintf(stderr, errmsg, keyname);
591 return ret;
592 }
593
594 fprintf(hashf, "SHA256 = ");
595 for (i = 0 ; i < sizeof(pk_hash.hash); ++i)
596 fprintf(hashf, "%02X", pk_hash.hash[i]);
597 fprintf(hashf, "\n");
598 }
599
600 return 0;
601}
602
603int kwb_sign(RSA *key, void *data, int datasz, struct sig_v1 *sig, char *signame)
604{
605 EVP_PKEY *evp_key;
606 EVP_MD_CTX *ctx;
607 unsigned int sig_size;
608 int size;
609 int ret = 0;
610
611 evp_key = EVP_PKEY_new();
612 if (!evp_key)
613 return openssl_err("EVP_PKEY object creation failed");
614
615 if (!EVP_PKEY_set1_RSA(evp_key, key)) {
616 ret = openssl_err("EVP key setup failed");
617 goto err_key;
618 }
619
620 size = EVP_PKEY_size(evp_key);
621 if (size > sizeof(sig->sig)) {
622 fprintf(stderr, "Buffer to small for signature (%d bytes)\n",
623 size);
624 ret = -ENOBUFS;
625 goto err_key;
626 }
627
628 ctx = EVP_MD_CTX_create();
629 if (!ctx) {
630 ret = openssl_err("EVP context creation failed");
631 goto err_key;
632 }
633 EVP_MD_CTX_init(ctx);
634 if (!EVP_SignInit(ctx, EVP_sha256())) {
635 ret = openssl_err("Signer setup failed");
636 goto err_ctx;
637 }
638
639 if (!EVP_SignUpdate(ctx, data, datasz)) {
640 ret = openssl_err("Signing data failed");
641 goto err_ctx;
642 }
643
644 if (!EVP_SignFinal(ctx, sig->sig, &sig_size, evp_key)) {
645 ret = openssl_err("Could not obtain signature");
646 goto err_ctx;
647 }
648
649 EVP_MD_CTX_cleanup(ctx);
650 EVP_MD_CTX_destroy(ctx);
651 EVP_PKEY_free(evp_key);
652
653 return 0;
654
655err_ctx:
656 EVP_MD_CTX_destroy(ctx);
657err_key:
658 EVP_PKEY_free(evp_key);
659 fprintf(stderr, "Failed to create %s signature\n", signame);
660 return ret;
661}
662
663int kwb_verify(RSA *key, void *data, int datasz, struct sig_v1 *sig,
664 char *signame)
665{
666 EVP_PKEY *evp_key;
667 EVP_MD_CTX *ctx;
668 int size;
669 int ret = 0;
670
671 evp_key = EVP_PKEY_new();
672 if (!evp_key)
673 return openssl_err("EVP_PKEY object creation failed");
674
675 if (!EVP_PKEY_set1_RSA(evp_key, key)) {
676 ret = openssl_err("EVP key setup failed");
677 goto err_key;
678 }
679
680 size = EVP_PKEY_size(evp_key);
681 if (size > sizeof(sig->sig)) {
682 fprintf(stderr, "Invalid signature size (%d bytes)\n",
683 size);
684 ret = -EINVAL;
685 goto err_key;
686 }
687
688 ctx = EVP_MD_CTX_create();
689 if (!ctx) {
690 ret = openssl_err("EVP context creation failed");
691 goto err_key;
692 }
693 EVP_MD_CTX_init(ctx);
694 if (!EVP_VerifyInit(ctx, EVP_sha256())) {
695 ret = openssl_err("Verifier setup failed");
696 goto err_ctx;
697 }
698
699 if (!EVP_VerifyUpdate(ctx, data, datasz)) {
700 ret = openssl_err("Hashing data failed");
701 goto err_ctx;
702 }
703
Young Xiao22515122019-04-17 17:20:24 +0800704 if (EVP_VerifyFinal(ctx, sig->sig, sizeof(sig->sig), evp_key) != 1) {
Mario Sixa1b6b0a2017-01-11 16:01:00 +0100705 ret = openssl_err("Could not verify signature");
706 goto err_ctx;
707 }
708
709 EVP_MD_CTX_cleanup(ctx);
710 EVP_MD_CTX_destroy(ctx);
711 EVP_PKEY_free(evp_key);
712
713 return 0;
714
715err_ctx:
716 EVP_MD_CTX_destroy(ctx);
717err_key:
718 EVP_PKEY_free(evp_key);
719 fprintf(stderr, "Failed to verify %s signature\n", signame);
720 return ret;
721}
722
723int kwb_sign_and_verify(RSA *key, void *data, int datasz, struct sig_v1 *sig,
724 char *signame)
725{
726 if (kwb_sign(key, data, datasz, sig, signame) < 0)
727 return -1;
728
729 if (kwb_verify(key, data, datasz, sig, signame) < 0)
730 return -1;
731
732 return 0;
733}
734
735
736int kwb_dump_fuse_cmds_38x(FILE *out, struct secure_hdr_v1 *sec_hdr)
737{
738 struct hash_v1 kak_pub_hash;
739 struct image_cfg_element *e;
740 unsigned int fuse_line;
741 int i, idx;
742 uint8_t *ptr;
743 uint32_t val;
744 int ret = 0;
745
746 if (!out || !sec_hdr)
747 return -EINVAL;
748
749 ret = kwb_compute_pubkey_hash(&sec_hdr->kak, &kak_pub_hash);
750 if (ret < 0)
751 goto done;
752
753 fprintf(out, "# burn KAK pub key hash\n");
754 ptr = kak_pub_hash.hash;
755 for (fuse_line = 26; fuse_line <= 30; ++fuse_line) {
756 fprintf(out, "fuse prog -y %u 0 ", fuse_line);
757
758 for (i = 4; i-- > 0;)
759 fprintf(out, "%02hx", (ushort)ptr[i]);
760 ptr += 4;
761 fprintf(out, " 00");
762
763 if (fuse_line < 30) {
764 for (i = 3; i-- > 0;)
765 fprintf(out, "%02hx", (ushort)ptr[i]);
766 ptr += 3;
767 } else {
768 fprintf(out, "000000");
769 }
770
771 fprintf(out, " 1\n");
772 }
773
774 fprintf(out, "# burn CSK selection\n");
775
776 idx = image_get_csk_index();
777 if (idx < 0 || idx > 15) {
778 ret = -EINVAL;
779 goto done;
780 }
781 if (idx > 0) {
782 for (fuse_line = 31; fuse_line < 31 + idx; ++fuse_line)
783 fprintf(out, "fuse prog -y %u 0 00000001 00000000 1\n",
784 fuse_line);
785 } else {
786 fprintf(out, "# CSK index is 0; no mods needed\n");
787 }
788
789 e = image_find_option(IMAGE_CFG_BOX_ID);
790 if (e) {
791 fprintf(out, "# set box ID\n");
792 fprintf(out, "fuse prog -y 48 0 %08x 00000000 1\n", e->boxid);
793 }
794
795 e = image_find_option(IMAGE_CFG_FLASH_ID);
796 if (e) {
797 fprintf(out, "# set flash ID\n");
798 fprintf(out, "fuse prog -y 47 0 %08x 00000000 1\n", e->flashid);
799 }
800
801 fprintf(out, "# enable secure mode ");
802 fprintf(out, "(must be the last fuse line written)\n");
803
804 val = 1;
805 e = image_find_option(IMAGE_CFG_SEC_BOOT_DEV);
806 if (!e) {
807 fprintf(stderr, "ERROR: secured mode boot device not given\n");
808 ret = -EINVAL;
809 goto done;
810 }
811
812 if (e->sec_boot_dev > 0xff) {
813 fprintf(stderr, "ERROR: secured mode boot device invalid\n");
814 ret = -EINVAL;
815 goto done;
816 }
817
818 val |= (e->sec_boot_dev << 8);
819
820 fprintf(out, "fuse prog -y 24 0 %08x 0103e0a9 1\n", val);
821
822 fprintf(out, "# lock (unused) fuse lines (0-23)s\n");
823 for (fuse_line = 0; fuse_line < 24; ++fuse_line)
824 fprintf(out, "fuse prog -y %u 2 1\n", fuse_line);
825
826 fprintf(out, "# OK, that's all :-)\n");
827
828done:
829 return ret;
830}
831
832static int kwb_dump_fuse_cmds(struct secure_hdr_v1 *sec_hdr)
833{
834 int ret = 0;
835 struct image_cfg_element *e;
836
837 e = image_find_option(IMAGE_CFG_SEC_FUSE_DUMP);
838 if (!e)
839 return 0;
840
841 if (!strcmp(e->name, "a38x")) {
842 FILE *out = fopen("kwb_fuses_a38x.txt", "w+");
843
Heinrich Schuchardtf858bb22021-08-17 07:03:20 +0200844 if (!out) {
845 fprintf(stderr, "Couldn't open eFuse settings: '%s': %s\n",
846 "kwb_fuses_a38x.txt", strerror(errno));
847 return -ENOENT;
848 }
849
Mario Sixa1b6b0a2017-01-11 16:01:00 +0100850 kwb_dump_fuse_cmds_38x(out, sec_hdr);
851 fclose(out);
852 goto done;
853 }
854
855 ret = -ENOSYS;
856
857done:
858 return ret;
859}
860
Stefan Roese4acd2d22014-10-22 12:13:23 +0200861static void *image_create_v0(size_t *imagesz, struct image_tool_params *params,
862 int payloadsz)
Prafulla Wadaskaraa0c7a82009-09-07 15:05:02 +0530863{
Stefan Roese4acd2d22014-10-22 12:13:23 +0200864 struct image_cfg_element *e;
865 size_t headersz;
866 struct main_hdr_v0 *main_hdr;
Mario Six885fba12017-01-11 16:00:55 +0100867 uint8_t *image;
Stefan Roese4acd2d22014-10-22 12:13:23 +0200868 int has_ext = 0;
Prafulla Wadaskaraa0c7a82009-09-07 15:05:02 +0530869
Stefan Roese4acd2d22014-10-22 12:13:23 +0200870 /*
871 * Calculate the size of the header and the size of the
872 * payload
873 */
874 headersz = sizeof(struct main_hdr_v0);
Prafulla Wadaskaraa0c7a82009-09-07 15:05:02 +0530875
Stefan Roese4acd2d22014-10-22 12:13:23 +0200876 if (image_count_options(IMAGE_CFG_DATA) > 0) {
877 has_ext = 1;
878 headersz += sizeof(struct ext_hdr_v0);
Prafulla Wadaskaraa0c7a82009-09-07 15:05:02 +0530879 }
880
Stefan Roese4acd2d22014-10-22 12:13:23 +0200881 image = malloc(headersz);
882 if (!image) {
883 fprintf(stderr, "Cannot allocate memory for image\n");
884 return NULL;
885 }
Prafulla Wadaskaraa0c7a82009-09-07 15:05:02 +0530886
Stefan Roese4acd2d22014-10-22 12:13:23 +0200887 memset(image, 0, headersz);
Prafulla Wadaskaraa0c7a82009-09-07 15:05:02 +0530888
Mario Six885fba12017-01-11 16:00:55 +0100889 main_hdr = (struct main_hdr_v0 *)image;
Prafulla Wadaskaraa0c7a82009-09-07 15:05:02 +0530890
Stefan Roese4acd2d22014-10-22 12:13:23 +0200891 /* Fill in the main header */
Reinhard Pfaua8840dc2015-11-29 15:48:25 +0100892 main_hdr->blocksize =
Pali Rohár37cb9c12021-07-23 11:13:56 +0200893 cpu_to_le32(payloadsz - headersz);
Reinhard Pfaua8840dc2015-11-29 15:48:25 +0100894 main_hdr->srcaddr = cpu_to_le32(headersz);
Stefan Roese4acd2d22014-10-22 12:13:23 +0200895 main_hdr->ext = has_ext;
Pali Rohár01bdac62021-11-08 18:12:42 +0100896 main_hdr->version = 0;
Reinhard Pfaua8840dc2015-11-29 15:48:25 +0100897 main_hdr->destaddr = cpu_to_le32(params->addr);
898 main_hdr->execaddr = cpu_to_le32(params->ep);
Pali Rohárd1547b32021-11-08 18:12:43 +0100899 main_hdr->blockid = image_get_bootfrom();
Prafulla Wadaskaraa0c7a82009-09-07 15:05:02 +0530900
Stefan Roese4acd2d22014-10-22 12:13:23 +0200901 e = image_find_option(IMAGE_CFG_NAND_ECC_MODE);
902 if (e)
903 main_hdr->nandeccmode = e->nandeccmode;
904 e = image_find_option(IMAGE_CFG_NAND_PAGESZ);
905 if (e)
Reinhard Pfaua8840dc2015-11-29 15:48:25 +0100906 main_hdr->nandpagesize = cpu_to_le16(e->nandpagesz);
Stefan Roese4acd2d22014-10-22 12:13:23 +0200907 main_hdr->checksum = image_checksum8(image,
908 sizeof(struct main_hdr_v0));
Prafulla Wadaskaraa0c7a82009-09-07 15:05:02 +0530909
Stefan Roese4acd2d22014-10-22 12:13:23 +0200910 /* Generate the ext header */
911 if (has_ext) {
Mario Sixe89016c2017-01-11 16:00:56 +0100912 struct ext_hdr_v0 *ext_hdr;
Stefan Roese4acd2d22014-10-22 12:13:23 +0200913 int cfgi, datai;
Prafulla Wadaskaraa0c7a82009-09-07 15:05:02 +0530914
Mario Six885fba12017-01-11 16:00:55 +0100915 ext_hdr = (struct ext_hdr_v0 *)
916 (image + sizeof(struct main_hdr_v0));
Reinhard Pfaua8840dc2015-11-29 15:48:25 +0100917 ext_hdr->offset = cpu_to_le32(0x40);
Prafulla Wadaskaraa0c7a82009-09-07 15:05:02 +0530918
Stefan Roese4acd2d22014-10-22 12:13:23 +0200919 for (cfgi = 0, datai = 0; cfgi < cfgn; cfgi++) {
920 e = &image_cfg[cfgi];
921 if (e->type != IMAGE_CFG_DATA)
922 continue;
923
Reinhard Pfaua8840dc2015-11-29 15:48:25 +0100924 ext_hdr->rcfg[datai].raddr =
925 cpu_to_le32(e->regdata.raddr);
926 ext_hdr->rcfg[datai].rdata =
927 cpu_to_le32(e->regdata.rdata);
Stefan Roese4acd2d22014-10-22 12:13:23 +0200928 datai++;
Prafulla Wadaskaraa0c7a82009-09-07 15:05:02 +0530929 }
Prafulla Wadaskaraa0c7a82009-09-07 15:05:02 +0530930
Stefan Roese4acd2d22014-10-22 12:13:23 +0200931 ext_hdr->checksum = image_checksum8(ext_hdr,
932 sizeof(struct ext_hdr_v0));
Prafulla Wadaskaraa0c7a82009-09-07 15:05:02 +0530933 }
934
Stefan Roese4acd2d22014-10-22 12:13:23 +0200935 *imagesz = headersz;
936 return image;
Prafulla Wadaskaraa0c7a82009-09-07 15:05:02 +0530937}
938
Mario Sixe93cf532017-01-11 16:00:57 +0100939static size_t image_headersz_v1(int *hasext)
Prafulla Wadaskaraa0c7a82009-09-07 15:05:02 +0530940{
Stefan Roese4acd2d22014-10-22 12:13:23 +0200941 struct image_cfg_element *binarye;
Pali Rohár02ba70a2021-07-23 11:14:11 +0200942 unsigned int count;
Stefan Roese4acd2d22014-10-22 12:13:23 +0200943 size_t headersz;
Pali Rohárd9fb82c2021-07-23 11:14:09 +0200944 int cfgi;
Prafulla Wadaskaraa0c7a82009-09-07 15:05:02 +0530945
Stefan Roese4acd2d22014-10-22 12:13:23 +0200946 /*
947 * Calculate the size of the header and the size of the
948 * payload
949 */
950 headersz = sizeof(struct main_hdr_v1);
Prafulla Wadaskaraa0c7a82009-09-07 15:05:02 +0530951
Pali Roháre58f08b2021-10-21 16:46:07 +0200952 if (image_get_csk_index() >= 0) {
953 headersz += sizeof(struct secure_hdr_v1);
954 if (hasext)
955 *hasext = 1;
956 }
957
Pali Rohár02ba70a2021-07-23 11:14:11 +0200958 count = image_count_options(IMAGE_CFG_DATA);
959 if (count > 0)
960 headersz += sizeof(struct register_set_hdr_v1) + 8 * count + 4;
961
Pali Rohárd9fb82c2021-07-23 11:14:09 +0200962 for (cfgi = 0; cfgi < cfgn; cfgi++) {
Mario Sixe89016c2017-01-11 16:00:56 +0100963 int ret;
Stefan Roese4acd2d22014-10-22 12:13:23 +0200964 struct stat s;
965
Pali Rohárd9fb82c2021-07-23 11:14:09 +0200966 binarye = &image_cfg[cfgi];
967 if (binarye->type != IMAGE_CFG_BINARY)
968 continue;
969
Stefan Roese4acd2d22014-10-22 12:13:23 +0200970 ret = stat(binarye->binary.file, &s);
971 if (ret < 0) {
Andreas Bießmanne5f1a582014-10-24 23:39:11 +0200972 char cwd[PATH_MAX];
973 char *dir = cwd;
974
975 memset(cwd, 0, sizeof(cwd));
976 if (!getcwd(cwd, sizeof(cwd))) {
977 dir = "current working directory";
978 perror("getcwd() failed");
979 }
980
Stefan Roese4acd2d22014-10-22 12:13:23 +0200981 fprintf(stderr,
982 "Didn't find the file '%s' in '%s' which is mandatory to generate the image\n"
983 "This file generally contains the DDR3 training code, and should be extracted from an existing bootable\n"
Pali Rohár3d7b93d2021-07-23 11:14:35 +0200984 "image for your board. Use 'dumpimage -T kwbimage -p 0' to extract it from an existing image.\n",
Andreas Bießmanne5f1a582014-10-24 23:39:11 +0200985 binarye->binary.file, dir);
Stefan Roese4acd2d22014-10-22 12:13:23 +0200986 return 0;
987 }
988
Pali Roháre58f08b2021-10-21 16:46:07 +0200989 headersz += sizeof(struct opt_hdr_v1) + sizeof(uint32_t) +
990 (binarye->binary.nargs) * sizeof(uint32_t);
991 headersz = ALIGN(headersz, 16);
992 headersz += ALIGN(s.st_size, 4) + sizeof(uint32_t);
Mario Sixa1b6b0a2017-01-11 16:01:00 +0100993 if (hasext)
994 *hasext = 1;
995 }
Mario Sixa1b6b0a2017-01-11 16:01:00 +0100996
Stefan Roese4acd2d22014-10-22 12:13:23 +0200997 /*
998 * The payload should be aligned on some reasonable
999 * boundary
1000 */
Kever Yange002ee72020-03-30 11:56:20 +08001001 return ALIGN(headersz, 4096);
Stefan Roese4acd2d22014-10-22 12:13:23 +02001002}
1003
Pali Rohárd9fb82c2021-07-23 11:14:09 +02001004int add_binary_header_v1(uint8_t **cur, uint8_t **next_ext,
Pali Roháre58f08b2021-10-21 16:46:07 +02001005 struct image_cfg_element *binarye,
1006 struct main_hdr_v1 *main_hdr)
Mario Six79066ef2017-01-11 16:00:58 +01001007{
Pali Rohárd9fb82c2021-07-23 11:14:09 +02001008 struct opt_hdr_v1 *hdr = (struct opt_hdr_v1 *)*cur;
Pali Roháre58f08b2021-10-21 16:46:07 +02001009 uint32_t add_args;
1010 uint32_t offset;
Mario Six79066ef2017-01-11 16:00:58 +01001011 uint32_t *args;
1012 size_t binhdrsz;
1013 struct stat s;
1014 int argi;
1015 FILE *bin;
1016 int ret;
1017
Mario Six79066ef2017-01-11 16:00:58 +01001018 hdr->headertype = OPT_HDR_V1_BINARY_TYPE;
1019
1020 bin = fopen(binarye->binary.file, "r");
1021 if (!bin) {
1022 fprintf(stderr, "Cannot open binary file %s\n",
1023 binarye->binary.file);
1024 return -1;
1025 }
1026
Mario Six1f6c8a52017-02-13 10:11:55 +01001027 if (fstat(fileno(bin), &s)) {
1028 fprintf(stderr, "Cannot stat binary file %s\n",
1029 binarye->binary.file);
1030 goto err_close;
1031 }
Mario Six79066ef2017-01-11 16:00:58 +01001032
Pali Rohárd9fb82c2021-07-23 11:14:09 +02001033 *cur += sizeof(struct opt_hdr_v1);
Mario Six79066ef2017-01-11 16:00:58 +01001034
Pali Rohárd9fb82c2021-07-23 11:14:09 +02001035 args = (uint32_t *)*cur;
Mario Six79066ef2017-01-11 16:00:58 +01001036 *args = cpu_to_le32(binarye->binary.nargs);
1037 args++;
1038 for (argi = 0; argi < binarye->binary.nargs; argi++)
1039 args[argi] = cpu_to_le32(binarye->binary.args[argi]);
1040
Pali Rohárd9fb82c2021-07-23 11:14:09 +02001041 *cur += (binarye->binary.nargs + 1) * sizeof(uint32_t);
Mario Six79066ef2017-01-11 16:00:58 +01001042
Pali Roháre58f08b2021-10-21 16:46:07 +02001043 /*
1044 * ARM executable code inside the BIN header on some mvebu platforms
1045 * (e.g. A370, AXP) must always be aligned with the 128-bit boundary.
1046 * This requirement can be met by inserting dummy arguments into
1047 * BIN header, if needed.
1048 */
1049 offset = *cur - (uint8_t *)main_hdr;
1050 add_args = ((16 - offset % 16) % 16) / sizeof(uint32_t);
1051 if (add_args) {
1052 *(args - 1) = cpu_to_le32(binarye->binary.nargs + add_args);
1053 *cur += add_args * sizeof(uint32_t);
1054 }
1055
Pali Rohárd9fb82c2021-07-23 11:14:09 +02001056 ret = fread(*cur, s.st_size, 1, bin);
Mario Six79066ef2017-01-11 16:00:58 +01001057 if (ret != 1) {
1058 fprintf(stderr,
1059 "Could not read binary image %s\n",
1060 binarye->binary.file);
Mario Six1f6c8a52017-02-13 10:11:55 +01001061 goto err_close;
Mario Six79066ef2017-01-11 16:00:58 +01001062 }
1063
1064 fclose(bin);
1065
Pali Rohárd9fb82c2021-07-23 11:14:09 +02001066 *cur += ALIGN(s.st_size, 4);
Mario Six79066ef2017-01-11 16:00:58 +01001067
Pali Rohárd9fb82c2021-07-23 11:14:09 +02001068 *((uint32_t *)*cur) = 0x00000000;
1069 **next_ext = 1;
1070 *next_ext = *cur;
Mario Six79066ef2017-01-11 16:00:58 +01001071
Pali Rohárd9fb82c2021-07-23 11:14:09 +02001072 *cur += sizeof(uint32_t);
Mario Six79066ef2017-01-11 16:00:58 +01001073
Pali Roháre58f08b2021-10-21 16:46:07 +02001074 binhdrsz = sizeof(struct opt_hdr_v1) +
1075 (binarye->binary.nargs + add_args + 2) * sizeof(uint32_t) +
1076 ALIGN(s.st_size, 4);
1077 hdr->headersz_lsb = cpu_to_le16(binhdrsz & 0xFFFF);
1078 hdr->headersz_msb = (binhdrsz & 0xFFFF0000) >> 16;
1079
Mario Six79066ef2017-01-11 16:00:58 +01001080 return 0;
Mario Six1f6c8a52017-02-13 10:11:55 +01001081
1082err_close:
1083 fclose(bin);
1084
1085 return -1;
Mario Six79066ef2017-01-11 16:00:58 +01001086}
1087
Mario Sixa1b6b0a2017-01-11 16:01:00 +01001088int export_pub_kak_hash(RSA *kak, struct secure_hdr_v1 *secure_hdr)
1089{
1090 FILE *hashf;
1091 int res;
1092
1093 hashf = fopen("pub_kak_hash.txt", "w");
Heinrich Schuchardtf858bb22021-08-17 07:03:20 +02001094 if (!hashf) {
1095 fprintf(stderr, "Couldn't open hash file: '%s': %s\n",
1096 "pub_kak_hash.txt", strerror(errno));
1097 return 1;
1098 }
Mario Sixa1b6b0a2017-01-11 16:01:00 +01001099
1100 res = kwb_export_pubkey(kak, &secure_hdr->kak, hashf, "KAK");
1101
1102 fclose(hashf);
1103
1104 return res < 0 ? 1 : 0;
1105}
1106
1107int kwb_sign_csk_with_kak(struct image_tool_params *params,
1108 struct secure_hdr_v1 *secure_hdr, RSA *csk)
1109{
1110 RSA *kak = NULL;
1111 RSA *kak_pub = NULL;
1112 int csk_idx = image_get_csk_index();
1113 struct sig_v1 tmp_sig;
1114
Heinrich Schuchardtf0317d72021-08-17 07:11:58 +02001115 if (csk_idx < 0 || csk_idx > 15) {
Mario Sixa1b6b0a2017-01-11 16:01:00 +01001116 fprintf(stderr, "Invalid CSK index %d\n", csk_idx);
1117 return 1;
1118 }
1119
1120 if (kwb_load_kak(params, &kak) < 0)
1121 return 1;
1122
1123 if (export_pub_kak_hash(kak, secure_hdr))
1124 return 1;
1125
1126 if (kwb_import_pubkey(&kak_pub, &secure_hdr->kak, "KAK") < 0)
1127 return 1;
1128
1129 if (kwb_export_pubkey(csk, &secure_hdr->csk[csk_idx], NULL, "CSK") < 0)
1130 return 1;
1131
1132 if (kwb_sign_and_verify(kak, &secure_hdr->csk,
1133 sizeof(secure_hdr->csk) +
1134 sizeof(secure_hdr->csksig),
1135 &tmp_sig, "CSK") < 0)
1136 return 1;
1137
1138 if (kwb_verify(kak_pub, &secure_hdr->csk,
1139 sizeof(secure_hdr->csk) +
1140 sizeof(secure_hdr->csksig),
1141 &tmp_sig, "CSK (2)") < 0)
1142 return 1;
1143
1144 secure_hdr->csksig = tmp_sig;
1145
1146 return 0;
1147}
1148
1149int add_secure_header_v1(struct image_tool_params *params, uint8_t *ptr,
1150 int payloadsz, size_t headersz, uint8_t *image,
1151 struct secure_hdr_v1 *secure_hdr)
1152{
1153 struct image_cfg_element *e_jtagdelay;
1154 struct image_cfg_element *e_boxid;
1155 struct image_cfg_element *e_flashid;
1156 RSA *csk = NULL;
1157 unsigned char *image_ptr;
1158 size_t image_size;
1159 struct sig_v1 tmp_sig;
1160 bool specialized_img = image_get_spezialized_img();
1161
1162 kwb_msg("Create secure header content\n");
1163
1164 e_jtagdelay = image_find_option(IMAGE_CFG_JTAG_DELAY);
1165 e_boxid = image_find_option(IMAGE_CFG_BOX_ID);
1166 e_flashid = image_find_option(IMAGE_CFG_FLASH_ID);
1167
1168 if (kwb_load_csk(params, &csk) < 0)
1169 return 1;
1170
1171 secure_hdr->headertype = OPT_HDR_V1_SECURE_TYPE;
1172 secure_hdr->headersz_msb = 0;
1173 secure_hdr->headersz_lsb = cpu_to_le16(sizeof(struct secure_hdr_v1));
1174 if (e_jtagdelay)
1175 secure_hdr->jtag_delay = e_jtagdelay->jtag_delay;
1176 if (e_boxid && specialized_img)
1177 secure_hdr->boxid = cpu_to_le32(e_boxid->boxid);
1178 if (e_flashid && specialized_img)
1179 secure_hdr->flashid = cpu_to_le32(e_flashid->flashid);
1180
1181 if (kwb_sign_csk_with_kak(params, secure_hdr, csk))
1182 return 1;
1183
1184 image_ptr = ptr + headersz;
1185 image_size = payloadsz - headersz;
1186
1187 if (kwb_sign_and_verify(csk, image_ptr, image_size,
1188 &secure_hdr->imgsig, "image") < 0)
1189 return 1;
1190
1191 if (kwb_sign_and_verify(csk, image, headersz, &tmp_sig, "header") < 0)
1192 return 1;
1193
1194 secure_hdr->hdrsig = tmp_sig;
1195
1196 kwb_dump_fuse_cmds(secure_hdr);
1197
1198 return 0;
1199}
Mario Sixa1b6b0a2017-01-11 16:01:00 +01001200
Stefan Roese4acd2d22014-10-22 12:13:23 +02001201static void *image_create_v1(size_t *imagesz, struct image_tool_params *params,
Mario Sixa1b6b0a2017-01-11 16:01:00 +01001202 uint8_t *ptr, int payloadsz)
Stefan Roese4acd2d22014-10-22 12:13:23 +02001203{
Mario Six79066ef2017-01-11 16:00:58 +01001204 struct image_cfg_element *e;
Stefan Roese4acd2d22014-10-22 12:13:23 +02001205 struct main_hdr_v1 *main_hdr;
Pali Rohár02ba70a2021-07-23 11:14:11 +02001206 struct register_set_hdr_v1 *register_set_hdr;
Mario Sixa1b6b0a2017-01-11 16:01:00 +01001207 struct secure_hdr_v1 *secure_hdr = NULL;
Stefan Roese4acd2d22014-10-22 12:13:23 +02001208 size_t headersz;
Mario Six885fba12017-01-11 16:00:55 +01001209 uint8_t *image, *cur;
Stefan Roese4acd2d22014-10-22 12:13:23 +02001210 int hasext = 0;
Mario Sixa1b6b0a2017-01-11 16:01:00 +01001211 uint8_t *next_ext = NULL;
Pali Rohár02ba70a2021-07-23 11:14:11 +02001212 int cfgi, datai, size;
Stefan Roese4acd2d22014-10-22 12:13:23 +02001213
1214 /*
1215 * Calculate the size of the header and the size of the
1216 * payload
1217 */
Mario Sixe93cf532017-01-11 16:00:57 +01001218 headersz = image_headersz_v1(&hasext);
Stefan Roese4acd2d22014-10-22 12:13:23 +02001219 if (headersz == 0)
1220 return NULL;
1221
1222 image = malloc(headersz);
1223 if (!image) {
1224 fprintf(stderr, "Cannot allocate memory for image\n");
1225 return NULL;
1226 }
1227
1228 memset(image, 0, headersz);
1229
Mario Six885fba12017-01-11 16:00:55 +01001230 main_hdr = (struct main_hdr_v1 *)image;
Mario Sixa1b6b0a2017-01-11 16:01:00 +01001231 cur = image;
1232 cur += sizeof(struct main_hdr_v1);
1233 next_ext = &main_hdr->ext;
Stefan Roese4acd2d22014-10-22 12:13:23 +02001234
1235 /* Fill the main header */
Reinhard Pfaua8840dc2015-11-29 15:48:25 +01001236 main_hdr->blocksize =
Pali Rohár37cb9c12021-07-23 11:13:56 +02001237 cpu_to_le32(payloadsz - headersz);
Reinhard Pfaua8840dc2015-11-29 15:48:25 +01001238 main_hdr->headersz_lsb = cpu_to_le16(headersz & 0xFFFF);
Stefan Roese4acd2d22014-10-22 12:13:23 +02001239 main_hdr->headersz_msb = (headersz & 0xFFFF0000) >> 16;
Pali Rohárcc3443f2021-07-23 11:14:06 +02001240 main_hdr->destaddr = cpu_to_le32(params->addr);
Reinhard Pfaua8840dc2015-11-29 15:48:25 +01001241 main_hdr->execaddr = cpu_to_le32(params->ep);
1242 main_hdr->srcaddr = cpu_to_le32(headersz);
Stefan Roese4acd2d22014-10-22 12:13:23 +02001243 main_hdr->ext = hasext;
1244 main_hdr->version = 1;
Pali Rohárd1547b32021-11-08 18:12:43 +01001245 main_hdr->blockid = image_get_bootfrom();
1246
Stefan Roese4acd2d22014-10-22 12:13:23 +02001247 e = image_find_option(IMAGE_CFG_NAND_BLKSZ);
1248 if (e)
1249 main_hdr->nandblocksize = e->nandblksz / (64 * 1024);
Pali Rohár2fdba4f2021-10-22 12:37:46 +02001250 e = image_find_option(IMAGE_CFG_NAND_PAGESZ);
1251 if (e)
1252 main_hdr->nandpagesize = cpu_to_le16(e->nandpagesz);
Stefan Roese4acd2d22014-10-22 12:13:23 +02001253 e = image_find_option(IMAGE_CFG_NAND_BADBLK_LOCATION);
1254 if (e)
1255 main_hdr->nandbadblklocation = e->nandbadblklocation;
Chris Packham4bdb5472016-11-09 22:07:45 +13001256 e = image_find_option(IMAGE_CFG_BAUDRATE);
1257 if (e)
Pali Rohár12f2c032021-11-08 18:12:41 +01001258 main_hdr->options |= baudrate_to_option(e->baudrate);
1259 e = image_find_option(IMAGE_CFG_UART_PORT);
1260 if (e)
1261 main_hdr->options |= (e->uart_port & 3) << 3;
1262 e = image_find_option(IMAGE_CFG_UART_MPP);
1263 if (e)
1264 main_hdr->options |= (e->uart_mpp & 7) << 5;
Chris Packham2611c052016-11-09 22:21:45 +13001265 e = image_find_option(IMAGE_CFG_DEBUG);
1266 if (e)
1267 main_hdr->flags = e->debug ? 0x1 : 0;
Stefan Roese4acd2d22014-10-22 12:13:23 +02001268
Pali Rohár501a54a2021-07-23 11:13:59 +02001269 /*
1270 * For SATA srcaddr is specified in number of sectors starting from
1271 * sector 0. The main header is stored at sector number 1.
1272 * This expects the sector size to be 512 bytes.
1273 * Header size is already aligned.
1274 */
1275 if (main_hdr->blockid == IBR_HDR_SATA_ID)
1276 main_hdr->srcaddr = cpu_to_le32(headersz / 512 + 1);
1277
1278 /*
1279 * For SDIO srcaddr is specified in number of sectors starting from
1280 * sector 0. The main header is stored at sector number 0.
1281 * This expects sector size to be 512 bytes.
1282 * Header size is already aligned.
1283 */
1284 if (main_hdr->blockid == IBR_HDR_SDIO_ID)
1285 main_hdr->srcaddr = cpu_to_le32(headersz / 512);
1286
1287 /* For PCIe srcaddr is not used and must be set to 0xFFFFFFFF. */
1288 if (main_hdr->blockid == IBR_HDR_PEX_ID)
1289 main_hdr->srcaddr = cpu_to_le32(0xFFFFFFFF);
1290
Mario Sixa1b6b0a2017-01-11 16:01:00 +01001291 if (image_get_csk_index() >= 0) {
1292 /*
1293 * only reserve the space here; we fill the header later since
1294 * we need the header to be complete to compute the signatures
1295 */
1296 secure_hdr = (struct secure_hdr_v1 *)cur;
1297 cur += sizeof(struct secure_hdr_v1);
Pali Rohárd9fb82c2021-07-23 11:14:09 +02001298 *next_ext = 1;
Mario Sixa1b6b0a2017-01-11 16:01:00 +01001299 next_ext = &secure_hdr->next;
1300 }
Mario Sixa1b6b0a2017-01-11 16:01:00 +01001301
Pali Rohár02ba70a2021-07-23 11:14:11 +02001302 datai = 0;
1303 register_set_hdr = (struct register_set_hdr_v1 *)cur;
1304 for (cfgi = 0; cfgi < cfgn; cfgi++) {
1305 e = &image_cfg[cfgi];
Pali Rohárf63c5832021-07-23 11:14:12 +02001306 if (e->type != IMAGE_CFG_DATA &&
1307 e->type != IMAGE_CFG_DATA_DELAY)
Pali Rohár02ba70a2021-07-23 11:14:11 +02001308 continue;
Pali Rohárf63c5832021-07-23 11:14:12 +02001309 if (e->type == IMAGE_CFG_DATA_DELAY) {
1310 size = sizeof(struct register_set_hdr_v1) + 8 * datai + 4;
1311 register_set_hdr->headertype = OPT_HDR_V1_REGISTER_TYPE;
1312 register_set_hdr->headersz_lsb = cpu_to_le16(size & 0xFFFF);
1313 register_set_hdr->headersz_msb = size >> 16;
1314 register_set_hdr->data[datai].last_entry.delay = e->regdata_delay;
1315 cur += size;
1316 *next_ext = 1;
1317 next_ext = &register_set_hdr->data[datai].last_entry.next;
1318 datai = 0;
1319 continue;
1320 }
Pali Rohár02ba70a2021-07-23 11:14:11 +02001321 register_set_hdr->data[datai].entry.address =
1322 cpu_to_le32(e->regdata.raddr);
1323 register_set_hdr->data[datai].entry.value =
1324 cpu_to_le32(e->regdata.rdata);
1325 datai++;
1326 }
1327 if (datai != 0) {
1328 size = sizeof(struct register_set_hdr_v1) + 8 * datai + 4;
1329 register_set_hdr->headertype = OPT_HDR_V1_REGISTER_TYPE;
1330 register_set_hdr->headersz_lsb = cpu_to_le16(size & 0xFFFF);
1331 register_set_hdr->headersz_msb = size >> 16;
1332 /* Set delay to the smallest possible value 1ms. */
1333 register_set_hdr->data[datai].last_entry.delay = 1;
1334 cur += size;
1335 *next_ext = 1;
1336 next_ext = &register_set_hdr->data[datai].last_entry.next;
1337 }
1338
Pali Rohárd9fb82c2021-07-23 11:14:09 +02001339 for (cfgi = 0; cfgi < cfgn; cfgi++) {
1340 e = &image_cfg[cfgi];
1341 if (e->type != IMAGE_CFG_BINARY)
1342 continue;
1343
Pali Roháre58f08b2021-10-21 16:46:07 +02001344 if (add_binary_header_v1(&cur, &next_ext, e, main_hdr))
Pali Rohárd9fb82c2021-07-23 11:14:09 +02001345 return NULL;
1346 }
Stefan Roese4acd2d22014-10-22 12:13:23 +02001347
Mario Sixa1b6b0a2017-01-11 16:01:00 +01001348 if (secure_hdr && add_secure_header_v1(params, ptr, payloadsz,
1349 headersz, image, secure_hdr))
1350 return NULL;
Mario Sixa1b6b0a2017-01-11 16:01:00 +01001351
Stefan Roese4acd2d22014-10-22 12:13:23 +02001352 /* Calculate and set the header checksum */
1353 main_hdr->checksum = image_checksum8(main_hdr, headersz);
1354
1355 *imagesz = headersz;
1356 return image;
1357}
1358
Mario Six4991b4f2017-01-11 16:00:59 +01001359int recognize_keyword(char *keyword)
1360{
1361 int kw_id;
1362
1363 for (kw_id = 1; kw_id < IMAGE_CFG_COUNT; ++kw_id)
1364 if (!strcmp(keyword, id_strs[kw_id]))
1365 return kw_id;
1366
1367 return 0;
1368}
1369
Stefan Roese4acd2d22014-10-22 12:13:23 +02001370static int image_create_config_parse_oneline(char *line,
1371 struct image_cfg_element *el)
1372{
Mario Six4991b4f2017-01-11 16:00:59 +01001373 char *keyword, *saveptr, *value1, *value2;
1374 char delimiters[] = " \t";
1375 int keyword_id, ret, argi;
1376 char *unknown_msg = "Ignoring unknown line '%s'\n";
Stefan Roese4acd2d22014-10-22 12:13:23 +02001377
Mario Six4991b4f2017-01-11 16:00:59 +01001378 keyword = strtok_r(line, delimiters, &saveptr);
1379 keyword_id = recognize_keyword(keyword);
Mario Six94490a42017-01-11 16:00:54 +01001380
Mario Six4991b4f2017-01-11 16:00:59 +01001381 if (!keyword_id) {
1382 fprintf(stderr, unknown_msg, line);
1383 return 0;
1384 }
1385
1386 el->type = keyword_id;
1387
1388 value1 = strtok_r(NULL, delimiters, &saveptr);
1389
1390 if (!value1) {
1391 fprintf(stderr, "Parameter missing in line '%s'\n", line);
1392 return -1;
1393 }
1394
1395 switch (keyword_id) {
1396 case IMAGE_CFG_VERSION:
1397 el->version = atoi(value1);
1398 break;
1399 case IMAGE_CFG_BOOT_FROM:
1400 ret = image_boot_mode_id(value1);
Mario Six94490a42017-01-11 16:00:54 +01001401
Andreas Bießmannf411b8f2014-10-24 23:25:52 +02001402 if (ret < 0) {
Mario Six4991b4f2017-01-11 16:00:59 +01001403 fprintf(stderr, "Invalid boot media '%s'\n", value1);
Stefan Roese4acd2d22014-10-22 12:13:23 +02001404 return -1;
1405 }
Andreas Bießmannf411b8f2014-10-24 23:25:52 +02001406 el->bootfrom = ret;
Mario Six4991b4f2017-01-11 16:00:59 +01001407 break;
1408 case IMAGE_CFG_NAND_BLKSZ:
1409 el->nandblksz = strtoul(value1, NULL, 16);
1410 break;
1411 case IMAGE_CFG_NAND_BADBLK_LOCATION:
1412 el->nandbadblklocation = strtoul(value1, NULL, 16);
1413 break;
1414 case IMAGE_CFG_NAND_ECC_MODE:
1415 ret = image_nand_ecc_mode_id(value1);
Mario Six94490a42017-01-11 16:00:54 +01001416
Andreas Bießmannf411b8f2014-10-24 23:25:52 +02001417 if (ret < 0) {
Mario Six4991b4f2017-01-11 16:00:59 +01001418 fprintf(stderr, "Invalid NAND ECC mode '%s'\n", value1);
Stefan Roese4acd2d22014-10-22 12:13:23 +02001419 return -1;
1420 }
Andreas Bießmannf411b8f2014-10-24 23:25:52 +02001421 el->nandeccmode = ret;
Mario Six4991b4f2017-01-11 16:00:59 +01001422 break;
1423 case IMAGE_CFG_NAND_PAGESZ:
1424 el->nandpagesz = strtoul(value1, NULL, 16);
1425 break;
1426 case IMAGE_CFG_BINARY:
1427 argi = 0;
Mario Six94490a42017-01-11 16:00:54 +01001428
Mario Six4991b4f2017-01-11 16:00:59 +01001429 el->binary.file = strdup(value1);
Stefan Roese4acd2d22014-10-22 12:13:23 +02001430 while (1) {
Mario Six4991b4f2017-01-11 16:00:59 +01001431 char *value = strtok_r(NULL, delimiters, &saveptr);
1432
Stefan Roese4acd2d22014-10-22 12:13:23 +02001433 if (!value)
1434 break;
1435 el->binary.args[argi] = strtoul(value, NULL, 16);
1436 argi++;
1437 if (argi >= BINARY_MAX_ARGS) {
1438 fprintf(stderr,
Mario Six4991b4f2017-01-11 16:00:59 +01001439 "Too many arguments for BINARY\n");
Stefan Roese4acd2d22014-10-22 12:13:23 +02001440 return -1;
1441 }
1442 }
1443 el->binary.nargs = argi;
Mario Six4991b4f2017-01-11 16:00:59 +01001444 break;
1445 case IMAGE_CFG_DATA:
1446 value2 = strtok_r(NULL, delimiters, &saveptr);
Stefan Roese4acd2d22014-10-22 12:13:23 +02001447
1448 if (!value1 || !value2) {
1449 fprintf(stderr,
1450 "Invalid number of arguments for DATA\n");
1451 return -1;
1452 }
1453
Stefan Roese4acd2d22014-10-22 12:13:23 +02001454 el->regdata.raddr = strtoul(value1, NULL, 16);
1455 el->regdata.rdata = strtoul(value2, NULL, 16);
Mario Six4991b4f2017-01-11 16:00:59 +01001456 break;
Pali Rohárf63c5832021-07-23 11:14:12 +02001457 case IMAGE_CFG_DATA_DELAY:
1458 if (!strcmp(value1, "SDRAM_SETUP"))
1459 el->regdata_delay = REGISTER_SET_HDR_OPT_DELAY_SDRAM_SETUP;
1460 else
1461 el->regdata_delay = REGISTER_SET_HDR_OPT_DELAY_MS(strtoul(value1, NULL, 10));
1462 break;
Mario Six4991b4f2017-01-11 16:00:59 +01001463 case IMAGE_CFG_BAUDRATE:
1464 el->baudrate = strtoul(value1, NULL, 10);
1465 break;
Pali Rohár12f2c032021-11-08 18:12:41 +01001466 case IMAGE_CFG_UART_PORT:
1467 el->uart_port = strtoul(value1, NULL, 16);
1468 break;
1469 case IMAGE_CFG_UART_MPP:
1470 el->uart_mpp = strtoul(value1, NULL, 16);
1471 break;
Mario Six4991b4f2017-01-11 16:00:59 +01001472 case IMAGE_CFG_DEBUG:
1473 el->debug = strtoul(value1, NULL, 10);
1474 break;
Mario Sixa1b6b0a2017-01-11 16:01:00 +01001475 case IMAGE_CFG_KAK:
1476 el->key_name = strdup(value1);
1477 break;
1478 case IMAGE_CFG_CSK:
1479 el->key_name = strdup(value1);
1480 break;
1481 case IMAGE_CFG_CSK_INDEX:
1482 el->csk_idx = strtol(value1, NULL, 0);
1483 break;
1484 case IMAGE_CFG_JTAG_DELAY:
1485 el->jtag_delay = strtoul(value1, NULL, 0);
1486 break;
1487 case IMAGE_CFG_BOX_ID:
1488 el->boxid = strtoul(value1, NULL, 0);
1489 break;
1490 case IMAGE_CFG_FLASH_ID:
1491 el->flashid = strtoul(value1, NULL, 0);
1492 break;
1493 case IMAGE_CFG_SEC_SPECIALIZED_IMG:
1494 el->sec_specialized_img = true;
1495 break;
1496 case IMAGE_CFG_SEC_COMMON_IMG:
1497 el->sec_specialized_img = false;
1498 break;
1499 case IMAGE_CFG_SEC_BOOT_DEV:
1500 el->sec_boot_dev = strtoul(value1, NULL, 0);
1501 break;
1502 case IMAGE_CFG_SEC_FUSE_DUMP:
1503 el->name = strdup(value1);
1504 break;
Mario Six4991b4f2017-01-11 16:00:59 +01001505 default:
1506 fprintf(stderr, unknown_msg, line);
Stefan Roese4acd2d22014-10-22 12:13:23 +02001507 }
Prafulla Wadaskaraa0c7a82009-09-07 15:05:02 +05301508
1509 return 0;
1510}
1511
Stefan Roese4acd2d22014-10-22 12:13:23 +02001512/*
1513 * Parse the configuration file 'fcfg' into the array of configuration
1514 * elements 'image_cfg', and return the number of configuration
1515 * elements in 'cfgn'.
1516 */
1517static int image_create_config_parse(FILE *fcfg)
Prafulla Wadaskaraa0c7a82009-09-07 15:05:02 +05301518{
Stefan Roese4acd2d22014-10-22 12:13:23 +02001519 int ret;
1520 int cfgi = 0;
Prafulla Wadaskaraa0c7a82009-09-07 15:05:02 +05301521
Stefan Roese4acd2d22014-10-22 12:13:23 +02001522 /* Parse the configuration file */
1523 while (!feof(fcfg)) {
1524 char *line;
1525 char buf[256];
1526
1527 /* Read the current line */
1528 memset(buf, 0, sizeof(buf));
1529 line = fgets(buf, sizeof(buf), fcfg);
1530 if (!line)
1531 break;
1532
1533 /* Ignore useless lines */
1534 if (line[0] == '\n' || line[0] == '#')
1535 continue;
1536
1537 /* Strip final newline */
1538 if (line[strlen(line) - 1] == '\n')
1539 line[strlen(line) - 1] = 0;
1540
1541 /* Parse the current line */
1542 ret = image_create_config_parse_oneline(line,
1543 &image_cfg[cfgi]);
1544 if (ret)
1545 return ret;
1546
1547 cfgi++;
1548
1549 if (cfgi >= IMAGE_CFG_ELEMENT_MAX) {
1550 fprintf(stderr,
1551 "Too many configuration elements in .cfg file\n");
1552 return -1;
1553 }
1554 }
1555
1556 cfgn = cfgi;
1557 return 0;
Prafulla Wadaskaraa0c7a82009-09-07 15:05:02 +05301558}
1559
Stefan Roese4acd2d22014-10-22 12:13:23 +02001560static int image_get_version(void)
1561{
1562 struct image_cfg_element *e;
1563
1564 e = image_find_option(IMAGE_CFG_VERSION);
1565 if (!e)
1566 return -1;
1567
1568 return e->version;
1569}
1570
Stefan Roese4acd2d22014-10-22 12:13:23 +02001571static void kwbimage_set_header(void *ptr, struct stat *sbuf, int ifd,
1572 struct image_tool_params *params)
1573{
1574 FILE *fcfg;
1575 void *image = NULL;
1576 int version;
Łukasz Majewski93e93712014-11-21 09:22:43 +01001577 size_t headersz = 0;
Stefan Roese4acd2d22014-10-22 12:13:23 +02001578 uint32_t checksum;
1579 int ret;
Stefan Roese4acd2d22014-10-22 12:13:23 +02001580
1581 fcfg = fopen(params->imagename, "r");
1582 if (!fcfg) {
1583 fprintf(stderr, "Could not open input file %s\n",
1584 params->imagename);
1585 exit(EXIT_FAILURE);
1586 }
1587
1588 image_cfg = malloc(IMAGE_CFG_ELEMENT_MAX *
1589 sizeof(struct image_cfg_element));
1590 if (!image_cfg) {
1591 fprintf(stderr, "Cannot allocate memory\n");
1592 fclose(fcfg);
1593 exit(EXIT_FAILURE);
1594 }
1595
1596 memset(image_cfg, 0,
1597 IMAGE_CFG_ELEMENT_MAX * sizeof(struct image_cfg_element));
1598 rewind(fcfg);
1599
1600 ret = image_create_config_parse(fcfg);
1601 fclose(fcfg);
1602 if (ret) {
1603 free(image_cfg);
1604 exit(EXIT_FAILURE);
1605 }
1606
1607 version = image_get_version();
Stefan Roese934a5292014-10-28 11:32:24 +01001608 switch (version) {
1609 /*
1610 * Fallback to version 0 if no version is provided in the
1611 * cfg file
1612 */
1613 case -1:
1614 case 0:
Stefan Roese4acd2d22014-10-22 12:13:23 +02001615 image = image_create_v0(&headersz, params, sbuf->st_size);
Stefan Roese934a5292014-10-28 11:32:24 +01001616 break;
1617
1618 case 1:
Mario Sixa1b6b0a2017-01-11 16:01:00 +01001619 image = image_create_v1(&headersz, params, ptr, sbuf->st_size);
Stefan Roese934a5292014-10-28 11:32:24 +01001620 break;
1621
1622 default:
1623 fprintf(stderr, "Unsupported version %d\n", version);
1624 free(image_cfg);
1625 exit(EXIT_FAILURE);
1626 }
Stefan Roese4acd2d22014-10-22 12:13:23 +02001627
1628 if (!image) {
1629 fprintf(stderr, "Could not create image\n");
1630 free(image_cfg);
1631 exit(EXIT_FAILURE);
1632 }
1633
1634 free(image_cfg);
1635
1636 /* Build and add image checksum header */
Pali Rohár37cb9c12021-07-23 11:13:56 +02001637 checksum = cpu_to_le32(image_checksum32((uint8_t *)ptr + headersz,
1638 sbuf->st_size - headersz - sizeof(uint32_t)));
1639 memcpy((uint8_t *)ptr + sbuf->st_size - sizeof(uint32_t), &checksum,
1640 sizeof(uint32_t));
Stefan Roese4acd2d22014-10-22 12:13:23 +02001641
1642 /* Finally copy the header into the image area */
1643 memcpy(ptr, image, headersz);
1644
1645 free(image);
1646}
1647
1648static void kwbimage_print_header(const void *ptr)
1649{
1650 struct main_hdr_v0 *mhdr = (struct main_hdr_v0 *)ptr;
Marek Behún732c9302021-08-18 00:59:15 +02001651 struct opt_hdr_v1 *ohdr;
Stefan Roese4acd2d22014-10-22 12:13:23 +02001652
1653 printf("Image Type: MVEBU Boot from %s Image\n",
1654 image_boot_mode_name(mhdr->blockid));
Marek Behúnacb0b382021-09-24 23:07:00 +02001655 printf("Image version:%d\n", kwbimage_version(ptr));
Pali Rohár34dcf952021-07-23 11:14:04 +02001656
Marek Behún732c9302021-08-18 00:59:15 +02001657 for_each_opt_hdr_v1 (ohdr, mhdr) {
1658 if (ohdr->headertype == OPT_HDR_V1_BINARY_TYPE) {
1659 printf("BIN Hdr Size: ");
1660 genimg_print_size(opt_hdr_v1_size(ohdr) - 12 -
1661 4 * ohdr->data[0]);
Pali Rohár34dcf952021-07-23 11:14:04 +02001662 }
1663 }
Marek Behún732c9302021-08-18 00:59:15 +02001664
Gerald Kerma26f195c2014-10-31 01:03:27 +01001665 printf("Data Size: ");
Stefan Roese4acd2d22014-10-22 12:13:23 +02001666 genimg_print_size(mhdr->blocksize - sizeof(uint32_t));
1667 printf("Load Address: %08x\n", mhdr->destaddr);
1668 printf("Entry Point: %08x\n", mhdr->execaddr);
1669}
1670
1671static int kwbimage_check_image_types(uint8_t type)
Prafulla Wadaskaraa0c7a82009-09-07 15:05:02 +05301672{
1673 if (type == IH_TYPE_KWBIMAGE)
1674 return EXIT_SUCCESS;
Mario Six94490a42017-01-11 16:00:54 +01001675
1676 return EXIT_FAILURE;
Prafulla Wadaskaraa0c7a82009-09-07 15:05:02 +05301677}
1678
Stefan Roese4acd2d22014-10-22 12:13:23 +02001679static int kwbimage_verify_header(unsigned char *ptr, int image_size,
1680 struct image_tool_params *params)
1681{
Marek Behúnfe2fd732021-09-24 23:07:01 +02001682 size_t header_size = kwbheader_size(ptr);
Pali Rohár700ea982021-11-08 18:12:44 +01001683 uint8_t blockid;
1684 uint32_t offset;
1685 uint32_t size;
Marek Behúnfe2fd732021-09-24 23:07:01 +02001686 uint8_t csum;
Alexander Graf6cd56782018-03-15 11:14:19 +01001687
1688 if (header_size > image_size)
1689 return -FDT_ERR_BADSTRUCTURE;
Stefan Roese4acd2d22014-10-22 12:13:23 +02001690
Baruch Siachdb7cd4ed2017-07-04 20:23:40 +03001691 if (!main_hdr_checksum_ok(ptr))
Stefan Roese4acd2d22014-10-22 12:13:23 +02001692 return -FDT_ERR_BADSTRUCTURE;
1693
1694 /* Only version 0 extended header has checksum */
Marek Behúnacb0b382021-09-24 23:07:00 +02001695 if (kwbimage_version(ptr) == 0) {
Pali Rohárfe2c0e22021-07-23 11:14:01 +02001696 struct main_hdr_v0 *mhdr = (struct main_hdr_v0 *)ptr;
Mario Sixe89016c2017-01-11 16:00:56 +01001697
Pali Rohárfe2c0e22021-07-23 11:14:01 +02001698 if (mhdr->ext & 0x1) {
Marek Behúnfe2fd732021-09-24 23:07:01 +02001699 struct ext_hdr_v0 *ext_hdr = (void *)(mhdr + 1);
Pali Rohárfe2c0e22021-07-23 11:14:01 +02001700
Marek Behúnfe2fd732021-09-24 23:07:01 +02001701 csum = image_checksum8(ext_hdr, sizeof(*ext_hdr) - 1);
1702 if (csum != ext_hdr->checksum)
Pali Rohárfe2c0e22021-07-23 11:14:01 +02001703 return -FDT_ERR_BADSTRUCTURE;
1704 }
Pali Rohár700ea982021-11-08 18:12:44 +01001705
1706 blockid = mhdr->blockid;
1707 offset = le32_to_cpu(mhdr->srcaddr);
1708 size = le32_to_cpu(mhdr->blocksize);
Marek Behúnacb0b382021-09-24 23:07:00 +02001709 } else if (kwbimage_version(ptr) == 1) {
Pali Rohár93804452021-07-23 11:14:02 +02001710 struct main_hdr_v1 *mhdr = (struct main_hdr_v1 *)ptr;
Marek Behún732c9302021-08-18 00:59:15 +02001711 const uint8_t *mhdr_end;
1712 struct opt_hdr_v1 *ohdr;
Pali Rohár93804452021-07-23 11:14:02 +02001713
Marek Behún732c9302021-08-18 00:59:15 +02001714 mhdr_end = (uint8_t *)mhdr + header_size;
1715 for_each_opt_hdr_v1 (ohdr, ptr)
1716 if (!opt_hdr_v1_valid_size(ohdr, mhdr_end))
1717 return -FDT_ERR_BADSTRUCTURE;
Pali Roháre0c243c2021-07-23 11:14:03 +02001718
Pali Rohár700ea982021-11-08 18:12:44 +01001719 blockid = mhdr->blockid;
Pali Roháre0c243c2021-07-23 11:14:03 +02001720 offset = le32_to_cpu(mhdr->srcaddr);
Pali Roháre0c243c2021-07-23 11:14:03 +02001721 size = le32_to_cpu(mhdr->blocksize);
Pali Rohárb9840562021-08-11 10:14:14 +02001722 } else {
1723 return -FDT_ERR_BADSTRUCTURE;
Pali Rohár93804452021-07-23 11:14:02 +02001724 }
1725
Pali Rohár700ea982021-11-08 18:12:44 +01001726 /*
1727 * For SATA srcaddr is specified in number of sectors.
1728 * The main header is must be stored at sector number 1.
1729 * This expects that sector size is 512 bytes and recalculates
1730 * data offset to bytes relative to the main header.
1731 */
1732 if (blockid == IBR_HDR_SATA_ID) {
1733 if (offset < 1)
1734 return -FDT_ERR_BADSTRUCTURE;
1735 offset -= 1;
1736 offset *= 512;
1737 }
1738
1739 /*
1740 * For SDIO srcaddr is specified in number of sectors.
1741 * This expects that sector size is 512 bytes and recalculates
1742 * data offset to bytes.
1743 */
1744 if (blockid == IBR_HDR_SDIO_ID)
1745 offset *= 512;
1746
1747 /*
1748 * For PCIe srcaddr is always set to 0xFFFFFFFF.
1749 * This expects that data starts after all headers.
1750 */
1751 if (blockid == IBR_HDR_PEX_ID && offset == 0xFFFFFFFF)
1752 offset = header_size;
1753
1754 if (offset > image_size || offset % 4 != 0)
1755 return -FDT_ERR_BADSTRUCTURE;
1756
1757 if (size < 4 || offset + size > image_size || size % 4 != 0)
1758 return -FDT_ERR_BADSTRUCTURE;
1759
1760 if (image_checksum32(ptr + offset, size - 4) !=
1761 *(uint32_t *)(ptr + offset + size - 4))
1762 return -FDT_ERR_BADSTRUCTURE;
1763
Stefan Roese4acd2d22014-10-22 12:13:23 +02001764 return 0;
1765}
1766
1767static int kwbimage_generate(struct image_tool_params *params,
1768 struct image_type_params *tparams)
1769{
Patrick Wildt6cbf7ed2017-05-10 22:18:54 +02001770 FILE *fcfg;
Pali Rohár37cb9c12021-07-23 11:13:56 +02001771 struct stat s;
Stefan Roese4acd2d22014-10-22 12:13:23 +02001772 int alloc_len;
Pali Rohárc934aad2021-07-23 11:13:57 +02001773 int bootfrom;
Patrick Wildt6cbf7ed2017-05-10 22:18:54 +02001774 int version;
Stefan Roese4acd2d22014-10-22 12:13:23 +02001775 void *hdr;
Patrick Wildt6cbf7ed2017-05-10 22:18:54 +02001776 int ret;
Stefan Roese4acd2d22014-10-22 12:13:23 +02001777
Patrick Wildt6cbf7ed2017-05-10 22:18:54 +02001778 fcfg = fopen(params->imagename, "r");
1779 if (!fcfg) {
1780 fprintf(stderr, "Could not open input file %s\n",
1781 params->imagename);
1782 exit(EXIT_FAILURE);
1783 }
1784
Pali Rohár37cb9c12021-07-23 11:13:56 +02001785 if (stat(params->datafile, &s)) {
1786 fprintf(stderr, "Could not stat data file %s: %s\n",
1787 params->datafile, strerror(errno));
1788 exit(EXIT_FAILURE);
1789 }
1790
Patrick Wildt6cbf7ed2017-05-10 22:18:54 +02001791 image_cfg = malloc(IMAGE_CFG_ELEMENT_MAX *
1792 sizeof(struct image_cfg_element));
1793 if (!image_cfg) {
1794 fprintf(stderr, "Cannot allocate memory\n");
1795 fclose(fcfg);
1796 exit(EXIT_FAILURE);
1797 }
1798
1799 memset(image_cfg, 0,
1800 IMAGE_CFG_ELEMENT_MAX * sizeof(struct image_cfg_element));
1801 rewind(fcfg);
1802
1803 ret = image_create_config_parse(fcfg);
1804 fclose(fcfg);
1805 if (ret) {
1806 free(image_cfg);
1807 exit(EXIT_FAILURE);
1808 }
1809
Pali Rohárc934aad2021-07-23 11:13:57 +02001810 bootfrom = image_get_bootfrom();
Patrick Wildt6cbf7ed2017-05-10 22:18:54 +02001811 version = image_get_version();
1812 switch (version) {
1813 /*
1814 * Fallback to version 0 if no version is provided in the
1815 * cfg file
1816 */
1817 case -1:
1818 case 0:
Stefan Roese4acd2d22014-10-22 12:13:23 +02001819 alloc_len = sizeof(struct main_hdr_v0) +
1820 sizeof(struct ext_hdr_v0);
Patrick Wildt6cbf7ed2017-05-10 22:18:54 +02001821 break;
1822
1823 case 1:
Mario Sixe93cf532017-01-11 16:00:57 +01001824 alloc_len = image_headersz_v1(NULL);
Patrick Wildt6cbf7ed2017-05-10 22:18:54 +02001825 break;
1826
1827 default:
1828 fprintf(stderr, "Unsupported version %d\n", version);
1829 free(image_cfg);
1830 exit(EXIT_FAILURE);
Stefan Roese4acd2d22014-10-22 12:13:23 +02001831 }
1832
Patrick Wildt6cbf7ed2017-05-10 22:18:54 +02001833 free(image_cfg);
1834
Stefan Roese4acd2d22014-10-22 12:13:23 +02001835 hdr = malloc(alloc_len);
1836 if (!hdr) {
1837 fprintf(stderr, "%s: malloc return failure: %s\n",
1838 params->cmdname, strerror(errno));
1839 exit(EXIT_FAILURE);
1840 }
1841
1842 memset(hdr, 0, alloc_len);
1843 tparams->header_size = alloc_len;
1844 tparams->hdr = hdr;
1845
Stefan Roese77720852015-11-24 09:14:59 +01001846 /*
1847 * The resulting image needs to be 4-byte aligned. At least
1848 * the Marvell hdrparser tool complains if its unaligned.
Pali Rohár37cb9c12021-07-23 11:13:56 +02001849 * After the image data is stored 4-byte checksum.
Pali Rohárc934aad2021-07-23 11:13:57 +02001850 * Final SPI and NAND images must be aligned to 256 bytes.
Pali Rohár501a54a2021-07-23 11:13:59 +02001851 * Final SATA and SDIO images must be aligned to 512 bytes.
Stefan Roese77720852015-11-24 09:14:59 +01001852 */
Pali Rohárc934aad2021-07-23 11:13:57 +02001853 if (bootfrom == IBR_HDR_SPI_ID || bootfrom == IBR_HDR_NAND_ID)
1854 return 4 + (256 - (alloc_len + s.st_size + 4) % 256) % 256;
Pali Rohár501a54a2021-07-23 11:13:59 +02001855 else if (bootfrom == IBR_HDR_SATA_ID || bootfrom == IBR_HDR_SDIO_ID)
1856 return 4 + (512 - (alloc_len + s.st_size + 4) % 512) % 512;
Pali Rohárc934aad2021-07-23 11:13:57 +02001857 else
1858 return 4 + (4 - s.st_size % 4) % 4;
Stefan Roese4acd2d22014-10-22 12:13:23 +02001859}
1860
Pali Roháraa6943c2021-07-23 11:14:34 +02001861static int kwbimage_extract_subimage(void *ptr, struct image_tool_params *params)
1862{
1863 struct main_hdr_v1 *mhdr = (struct main_hdr_v1 *)ptr;
Marek Behúnfe2fd732021-09-24 23:07:01 +02001864 size_t header_size = kwbheader_size(ptr);
Marek Behún732c9302021-08-18 00:59:15 +02001865 struct opt_hdr_v1 *ohdr;
Pali Roháraa6943c2021-07-23 11:14:34 +02001866 int idx = params->pflag;
1867 int cur_idx = 0;
1868 uint32_t offset;
1869 ulong image;
1870 ulong size;
1871
Marek Behún732c9302021-08-18 00:59:15 +02001872 for_each_opt_hdr_v1 (ohdr, ptr) {
1873 if (ohdr->headertype != OPT_HDR_V1_BINARY_TYPE)
1874 continue;
Pali Roháraa6943c2021-07-23 11:14:34 +02001875
Marek Behún732c9302021-08-18 00:59:15 +02001876 if (idx == cur_idx) {
1877 image = (ulong)&ohdr->data[4 + 4 * ohdr->data[0]];
1878 size = opt_hdr_v1_size(ohdr) - 12 - 4 * ohdr->data[0];
1879 goto extract;
Pali Roháraa6943c2021-07-23 11:14:34 +02001880 }
Marek Behún732c9302021-08-18 00:59:15 +02001881
1882 ++cur_idx;
Pali Roháraa6943c2021-07-23 11:14:34 +02001883 }
1884
1885 if (idx != cur_idx) {
1886 printf("Image %d is not present\n", idx);
1887 return -1;
1888 }
1889
1890 offset = le32_to_cpu(mhdr->srcaddr);
1891
1892 if (mhdr->blockid == IBR_HDR_SATA_ID) {
1893 offset -= 1;
1894 offset *= 512;
1895 }
1896
1897 if (mhdr->blockid == IBR_HDR_SDIO_ID)
1898 offset *= 512;
1899
1900 if (mhdr->blockid == IBR_HDR_PEX_ID && offset == 0xFFFFFFFF)
1901 offset = header_size;
1902
1903 image = (ulong)((uint8_t *)ptr + offset);
1904 size = le32_to_cpu(mhdr->blocksize) - 4;
1905
1906extract:
1907 return imagetool_save_subimage(params->outfile, image, size);
1908}
1909
Stefan Roese4acd2d22014-10-22 12:13:23 +02001910/*
1911 * Report Error if xflag is set in addition to default
1912 */
1913static int kwbimage_check_params(struct image_tool_params *params)
1914{
Pali Roháraa6943c2021-07-23 11:14:34 +02001915 if (!params->iflag && (!params->imagename || !strlen(params->imagename))) {
Mario Six94490a42017-01-11 16:00:54 +01001916 char *msg = "Configuration file for kwbimage creation omitted";
1917
1918 fprintf(stderr, "Error:%s - %s\n", params->cmdname, msg);
Pali Rohár56087c12021-11-08 18:12:45 +01001919 return 1;
Stefan Roese4acd2d22014-10-22 12:13:23 +02001920 }
1921
1922 return (params->dflag && (params->fflag || params->lflag)) ||
1923 (params->fflag && (params->dflag || params->lflag)) ||
1924 (params->lflag && (params->dflag || params->fflag)) ||
Pali Roháraa6943c2021-07-23 11:14:34 +02001925 (params->xflag);
Stefan Roese4acd2d22014-10-22 12:13:23 +02001926}
1927
Prafulla Wadaskaraa0c7a82009-09-07 15:05:02 +05301928/*
1929 * kwbimage type parameters definition
1930 */
Guilherme Maciel Ferreiraa93648d2015-01-15 02:48:07 -02001931U_BOOT_IMAGE_TYPE(
1932 kwbimage,
1933 "Marvell MVEBU Boot Image support",
1934 0,
1935 NULL,
1936 kwbimage_check_params,
1937 kwbimage_verify_header,
1938 kwbimage_print_header,
1939 kwbimage_set_header,
Pali Roháraa6943c2021-07-23 11:14:34 +02001940 kwbimage_extract_subimage,
Guilherme Maciel Ferreiraa93648d2015-01-15 02:48:07 -02001941 kwbimage_check_image_types,
1942 NULL,
1943 kwbimage_generate
1944);