1 /***************************************************************************
3 * Open \______ \ ____ ____ | | _\_ |__ _______ ___
4 * Source | _// _ \_/ ___\| |/ /| __ \ / _ \ \/ /
5 * Jukebox | | ( <_> ) \___| < | \_\ ( <_> > < <
6 * Firmware |____|_ /\____/ \___ >__|_ \|___ /\____/__/\_ \
10 * Copyright (C) 2006 by Barry Wardell
12 * Based on Rockbox iriver bootloader by Linus Nielsen Feltzing
13 * and the ipodlinux bootloader by Daniel Palffy and Bernard Leach
15 * All files in this archive are subject to the GNU General Public License.
16 * See the file COPYING in the source tree root for full license agreement.
18 * This software is distributed on an "AS IS" basis, WITHOUT WARRANTY OF ANY
19 * KIND, either express or implied.
21 ****************************************************************************/
34 #include "crc32-mi4.h"
36 #if defined(SANSA_E200)
38 #include "backlight-target.h"
40 #if defined(SANSA_E200) || defined(SANSA_C200)
42 #include "arcotg_udc.h"
46 /* Button definitions */
47 #if CONFIG_KEYPAD == IRIVER_H10_PAD
48 #define BOOTLOADER_BOOT_OF BUTTON_LEFT
50 #elif CONFIG_KEYPAD == SANSA_E200_PAD
51 #define BOOTLOADER_BOOT_OF BUTTON_LEFT
53 #elif CONFIG_KEYPAD == SANSA_C200_PAD
54 #define BOOTLOADER_BOOT_OF BUTTON_LEFT
58 /* Maximum allowed firmware image size. 10MB is more than enough */
59 #define MAX_LOADSIZE (10*1024*1024)
61 /* A buffer to load the original firmware or Rockbox into */
62 unsigned char *loadbuffer
= (unsigned char *)DRAM_START
;
64 /* Bootloader version */
65 char version
[] = APPSVERSION
;
67 /* Locations and sizes in hidden partition on Sansa */
68 #if defined(SANSA_E200) || defined(SANSA_C200)
69 #define PPMI_SECTOR_OFFSET 1024
70 #define PPMI_SECTORS 1
71 #define MI4_HEADER_SECTORS 1
72 #define NUM_PARTITIONS 2
75 #define NUM_PARTITIONS 1
79 #define MI4_HEADER_SIZE 0x200
81 /* mi4 header structure */
83 unsigned char magic
[4];
92 unsigned char type
[4];
93 unsigned char model
[4];
96 /* PPMI header structure */
97 struct ppmi_header_t
{
98 unsigned char magic
[4];
103 inline unsigned int le2int(unsigned char* buf
)
105 int32_t res
= (buf
[3] << 24) | (buf
[2] << 16) | (buf
[1] << 8) | buf
[0];
110 inline void int2le(unsigned int val
, unsigned char* addr
)
112 addr
[0] = val
& 0xFF;
113 addr
[1] = (val
>> 8) & 0xff;
114 addr
[2] = (val
>> 16) & 0xff;
115 addr
[3] = (val
>> 24) & 0xff;
123 #define NUM_KEYS (sizeof(tea_keytable)/sizeof(tea_keytable[0]))
124 struct tea_key tea_keytable
[] = {
125 { "default" , { 0x20d36cc0, 0x10e8c07d, 0xc0e7dcaa, 0x107eb080 } },
126 { "sansa", { 0xe494e96e, 0x3ee32966, 0x6f48512b, 0xa93fbb42 } },
127 { "sansa_gh", { 0xd7b10538, 0xc662945b, 0x1b3fce68, 0xf389c0e6 } },
128 { "sansa_103", { 0x1d29ddc0, 0x2579c2cd, 0xce339e1a, 0x75465dfe } },
129 { "rhapsody", { 0x7aa9c8dc, 0xbed0a82a, 0x16204cc7, 0x5904ef38 } },
130 { "p610", { 0x950e83dc, 0xec4907f9, 0x023734b9, 0x10cfb7c7 } },
131 { "p640", { 0x220c5f23, 0xd04df68e, 0x431b5e25, 0x4dcc1fa1 } },
132 { "virgin", { 0xe83c29a1, 0x04862973, 0xa9b3f0d4, 0x38be2a9c } },
133 { "20gc_eng", { 0x0240772c, 0x6f3329b5, 0x3ec9a6c5, 0xb0c9e493 } },
134 { "20gc_fre", { 0xbede8817, 0xb23bfe4f, 0x80aa682d, 0xd13f598c } },
135 { "elio_p722", { 0x6af3b9f8, 0x777483f5, 0xae8181cc, 0xfa6d8a84 } },
136 { "c200", { 0xbf2d06fa, 0xf0e23d59, 0x29738132, 0xe2d04ca7 } },
137 { "c200_103", { 0x2a7968de, 0x15127979, 0x142e60a7, 0xe49c1893 } },
138 { "c200_106", { 0xa913d139, 0xf842f398, 0x3e03f1a6, 0x060ee012 } },
143 tea_decrypt() from http://en.wikipedia.org/wiki/Tiny_Encryption_Algorithm
145 "Following is an adaptation of the reference encryption and decryption
146 routines in C, released into the public domain by David Wheeler and
151 /* NOTE: The mi4 version of TEA uses a different initial value to sum compared
152 to the reference implementation and the main loop is 8 iterations, not
156 static void tea_decrypt(uint32_t* v0
, uint32_t* v1
, uint32_t* k
) {
157 uint32_t sum
=0xF1BBCDC8, i
; /* set up */
158 uint32_t delta
=0x9E3779B9; /* a key schedule constant */
159 uint32_t k0
=k
[0], k1
=k
[1], k2
=k
[2], k3
=k
[3]; /* cache key */
160 for(i
=0; i
<8; i
++) { /* basic cycle start */
161 *v1
-= ((*v0
<<4) + k2
) ^ (*v0
+ sum
) ^ ((*v0
>>5) + k3
);
162 *v0
-= ((*v1
<<4) + k0
) ^ (*v1
+ sum
) ^ ((*v1
>>5) + k1
);
163 sum
-= delta
; /* end cycle */
167 /* mi4 files are encrypted in 64-bit blocks (two little-endian 32-bit
168 integers) and the key is incremented after each block
171 static void tea_decrypt_buf(unsigned char* src
, unsigned char* dest
, size_t n
, uint32_t * key
)
176 for (i
= 0; i
< (n
/ 8); i
++) {
180 tea_decrypt(&v0
, &v1
, key
);
188 /* Now increment the key */
202 static inline bool tea_test_key(unsigned char magic_enc
[8], uint32_t * key
, int unaligned
)
204 unsigned char magic_dec
[8];
205 tea_decrypt_buf(magic_enc
, magic_dec
, 8, key
);
207 return (le2int(&magic_dec
[4*unaligned
]) == 0xaa55aa55);
210 static int tea_find_key(struct mi4header_t
*mi4header
, int fd
)
216 unsigned char magic_enc
[8];
218 unsigned int magic_location
= mi4header
->length
-4;
221 if ( (magic_location
% 8) != 0 )
227 /* Load encrypted magic 0xaa55aa55 to check key */
228 lseek(fd
, MI4_HEADER_SIZE
+ magic_location
, SEEK_SET
);
229 rc
= read(fd
, magic_enc
, 8);
231 return EREAD_IMAGE_FAILED
;
233 printf("Searching for key:");
235 for (i
=0; i
< NUM_KEYS
&& (key_found
<0) ; i
++) {
236 key
[0] = tea_keytable
[i
].key
[0];
237 key
[1] = tea_keytable
[i
].key
[1];
238 key
[2] = tea_keytable
[i
].key
[2];
239 key
[3] = tea_keytable
[i
].key
[3];
241 /* Now increment the key */
242 for(j
=0; j
<((magic_location
-mi4header
->plaintext
)/8); j
++){
255 if (tea_test_key(magic_enc
,key
,unaligned
))
258 printf("%s...found", tea_keytable
[i
].name
);
260 /* printf("%s...failed", tea_keytable[i].name); */
268 /* Load mi4 format firmware image */
269 int load_mi4(unsigned char* buf
, char* firmware
, unsigned int buffer_size
)
272 struct mi4header_t mi4header
;
275 char filename
[MAX_PATH
];
277 snprintf(filename
,sizeof(filename
),"/.rockbox/%s",firmware
);
278 fd
= open(filename
, O_RDONLY
);
281 snprintf(filename
,sizeof(filename
),"/%s",firmware
);
282 fd
= open(filename
, O_RDONLY
);
284 return EFILE_NOT_FOUND
;
287 read(fd
, &mi4header
, MI4_HEADER_SIZE
);
290 printf("mi4 size: %x", mi4header
.mi4size
);
292 if ((mi4header
.mi4size
-MI4_HEADER_SIZE
) > buffer_size
)
293 return EFILE_TOO_BIG
;
296 printf("CRC32: %x", mi4header
.crc32
);
298 /* Rockbox model id */
299 printf("Model id: %.4s", mi4header
.model
);
301 /* Read binary type (RBOS, RBBL) */
302 printf("Binary type: %.4s", mi4header
.type
);
304 /* Load firmware file */
305 lseek(fd
, MI4_HEADER_SIZE
, SEEK_SET
);
306 rc
= read(fd
, buf
, mi4header
.mi4size
-MI4_HEADER_SIZE
);
307 if(rc
< (int)mi4header
.mi4size
-MI4_HEADER_SIZE
)
308 return EREAD_IMAGE_FAILED
;
310 /* Check CRC32 to see if we have a valid file */
311 sum
= chksum_crc32 (buf
, mi4header
.mi4size
- MI4_HEADER_SIZE
);
313 printf("Calculated CRC32: %x", sum
);
315 if(sum
!= mi4header
.crc32
)
318 if( (mi4header
.plaintext
+ MI4_HEADER_SIZE
) != mi4header
.mi4size
)
320 /* Load encrypted firmware */
321 int key_index
= tea_find_key(&mi4header
, fd
);
324 return EINVALID_FORMAT
;
326 /* Plaintext part is already loaded */
327 buf
+= mi4header
.plaintext
;
329 /* Decrypt in-place */
330 tea_decrypt_buf(buf
, buf
,
331 mi4header
.mi4size
-(mi4header
.plaintext
+MI4_HEADER_SIZE
),
332 tea_keytable
[key_index
].key
);
334 printf("%s key used", tea_keytable
[key_index
].name
);
336 /* Check decryption was successfull */
337 if(le2int(&buf
[mi4header
.length
-mi4header
.plaintext
-4]) != 0xaa55aa55)
339 return EREAD_IMAGE_FAILED
;
346 #if defined(SANSA_E200) || defined(SANSA_C200)
347 /* Load mi4 firmware from a hidden disk partition */
348 int load_mi4_part(unsigned char* buf
, struct partinfo
* pinfo
,
349 unsigned int buffer_size
, bool disable_rebuild
)
351 struct mi4header_t mi4header
;
352 struct ppmi_header_t ppmi_header
;
355 /* Read header to find out how long the mi4 file is. */
356 ata_read_sectors(IF_MV2(0,) pinfo
->start
+ PPMI_SECTOR_OFFSET
,
357 PPMI_SECTORS
, &ppmi_header
);
359 /* The first four characters at 0x80000 (sector 1024) should be PPMI*/
360 if( memcmp(ppmi_header
.magic
, "PPMI", 4) )
361 return EFILE_NOT_FOUND
;
363 printf("BL mi4 size: %x", ppmi_header
.length
);
365 /* Read mi4 header of the OF */
366 ata_read_sectors(IF_MV2(0,) pinfo
->start
+ PPMI_SECTOR_OFFSET
+ PPMI_SECTORS
367 + (ppmi_header
.length
/512), MI4_HEADER_SECTORS
, &mi4header
);
369 /* We don't support encrypted mi4 files yet */
370 if( (mi4header
.plaintext
) != (mi4header
.mi4size
-MI4_HEADER_SIZE
))
371 return EINVALID_FORMAT
;
374 printf("OF mi4 size: %x", mi4header
.mi4size
);
376 if ((mi4header
.mi4size
-MI4_HEADER_SIZE
) > buffer_size
)
377 return EFILE_TOO_BIG
;
380 printf("CRC32: %x", mi4header
.crc32
);
382 /* Rockbox model id */
383 printf("Model id: %.4s", mi4header
.model
);
385 /* Read binary type (RBOS, RBBL) */
386 printf("Binary type: %.4s", mi4header
.type
);
389 ata_read_sectors(IF_MV2(0,) pinfo
->start
+ PPMI_SECTOR_OFFSET
+ PPMI_SECTORS
390 + (ppmi_header
.length
/512) + MI4_HEADER_SECTORS
,
391 (mi4header
.mi4size
-MI4_HEADER_SIZE
)/512, buf
);
393 /* Check CRC32 to see if we have a valid file */
394 sum
= chksum_crc32 (buf
,mi4header
.mi4size
-MI4_HEADER_SIZE
);
396 printf("Calculated CRC32: %x", sum
);
398 if(sum
!= mi4header
.crc32
)
406 printf("Disabling database rebuild");
408 ata_read_sectors(IF_MV2(0,) pinfo
->start
+ 0x3c08, 1, block
);
410 ata_write_sectors(IF_MV2(0,) pinfo
->start
+ 0x3c08, 1, block
);
413 (void) disable_rebuild
;
426 struct partinfo
* pinfo
;
427 #if defined(SANSA_E200) || defined(SANSA_C200)
432 unsigned short* identify_info
;
435 chksum_crc32gentab ();
442 #if defined(SANSA_E200)
447 lcd_set_foreground(LCD_WHITE
);
448 lcd_set_background(LCD_BLACK
);
451 btn
= button_read_device();
452 #if defined(SANSA_E200) || defined(SANSA_C200)
454 while ((UDC_OTGSC
&0x800) && usb_retry
< 5 && !usb
)
458 usb
= (usb_detect() == USB_INSERTED
);
461 btn
|= BOOTLOADER_BOOT_OF
;
463 /* Enable bootloader messages if any button is pressed */
467 lcd_setfont(FONT_SYSFIXED
);
469 printf("Rockbox boot loader");
470 printf("Version: %s", version
);
474 #if !defined(SANSA_E200) && !defined(SANSA_C200)
476 identify_info
=ata_get_identify();
478 for (i
=0; i
< 20; i
++) {
479 ((unsigned short*)buf
)[i
]=htobe16(identify_info
[i
+27]);
482 for (i
=39; i
&& buf
[i
]==' '; i
--) {
492 num_partitions
= disk_mount_all();
493 if (num_partitions
<=0)
495 error(EDISK
,num_partitions
);
498 /* Just list the first 2 partitions since we don't have any devices yet
499 that have more than that */
500 for(i
=0; i
<NUM_PARTITIONS
; i
++)
502 pinfo
= disk_partinfo(i
);
503 printf("Partition %d: 0x%02x %ld MB",
504 i
, pinfo
->type
, pinfo
->size
/ 2048);
507 if(btn
& BOOTLOADER_BOOT_OF
)
509 /* Load original mi4 firmware in to a memory buffer called loadbuffer.
510 The rest of the loading is done in crt0.S.
511 1) First try reading from the hidden partition (on Sansa only).
512 2) Next try a decrypted mi4 file in /System/OF.mi4
513 3) Finally, try a raw firmware binary in /System/OF.mi4. It should be
514 a mi4 firmware decrypted and header stripped using mi4code.
516 printf("Loading original firmware...");
518 #if defined(SANSA_E200) || defined(SANSA_C200)
519 /* First try a (hidden) firmware partition */
520 printf("Trying firmware partition");
521 pinfo
= disk_partinfo(1);
522 if(pinfo
->type
== PARTITION_TYPE_OS2_HIDDEN_C_DRIVE
)
524 rc
= load_mi4_part(loadbuffer
, pinfo
, MAX_LOADSIZE
, usb
);
526 printf("Can't load from partition");
527 printf(strerror(rc
));
529 return (void*)loadbuffer
;
532 printf("No hidden partition found.");
536 printf("Trying /System/OF.mi4");
537 rc
=load_mi4(loadbuffer
, "/System/OF.mi4", MAX_LOADSIZE
);
539 printf("Can't load /System/OF.mi4");
540 printf(strerror(rc
));
542 return (void*)loadbuffer
;
545 printf("Trying /System/OF.bin");
546 rc
=load_raw_firmware(loadbuffer
, "/System/OF.bin", MAX_LOADSIZE
);
548 printf("Can't load /System/OF.bin");
549 printf(strerror(rc
));
551 return (void*)loadbuffer
;
557 #if 0 /* e200: enable to be able to dump the hidden partition */
561 pinfo
= disk_partinfo(1);
562 fd
= open("/part.bin", O_CREAT
|O_RDWR
);
564 for(i
=0; i
<40960; i
++){
567 printf("dumping sector %d", i
);
569 ata_read_sectors(IF_MV2(0,) pinfo
->start
+ i
, 1, sector
);
570 write(fd
,sector
,512);
575 printf("Loading Rockbox...");
576 rc
=load_mi4(loadbuffer
, BOOTFILE
, MAX_LOADSIZE
);
578 printf("Can't load %s:", BOOTFILE
);
579 printf(strerror(rc
));
582 /* Try loading rockbox from old rockbox.e200/rockbox.h10 format */
583 rc
=load_firmware(loadbuffer
, OLD_BOOTFILE
, MAX_LOADSIZE
);
585 printf("Can't load %s:", OLD_BOOTFILE
);
586 error(EBOOTFILE
, rc
);
592 return (void*)loadbuffer
;
595 #if !defined(SANSA_E200) && !defined(SANSA_C200)
596 /* These functions are present in the firmware library, but we reimplement
597 them here because the originals do a lot more than we want */
598 void usb_acknowledge(void)
602 void usb_wait_for_disconnect(void)