2 * PS3 flash memory os area.
4 * Copyright (C) 2006 Sony Computer Entertainment Inc.
5 * Copyright 2006 Sony Corp.
7 * This program is free software; you can redistribute it and/or modify
8 * it under the terms of the GNU General Public License as published by
9 * the Free Software Foundation; version 2 of the License.
11 * This program is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 * GNU General Public License for more details.
16 * You should have received a copy of the GNU General Public License
17 * along with this program; if not, write to the Free Software
18 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
21 #include <linux/kernel.h>
23 #include <linux/workqueue.h>
25 #include <linux/syscalls.h>
26 #include <linux/ctype.h>
33 OS_AREA_SEGMENT_SIZE
= 0X200,
36 enum os_area_ldr_format
{
37 HEADER_LDR_FORMAT_RAW
= 0,
38 HEADER_LDR_FORMAT_GZIP
= 1,
41 #define OS_AREA_HEADER_MAGIC_NUM "cell_ext_os_area"
44 * struct os_area_header - os area header segment.
45 * @magic_num: Always 'cell_ext_os_area'.
46 * @hdr_version: Header format version number.
47 * @db_area_offset: Starting segment number of other os database area.
48 * @ldr_area_offset: Starting segment number of bootloader image area.
49 * @ldr_format: HEADER_LDR_FORMAT flag.
50 * @ldr_size: Size of bootloader image in bytes.
52 * Note that the docs refer to area offsets. These are offsets in units of
53 * segments from the start of the os area (top of the header). These are
54 * better thought of as segment numbers. The os area of the os area is
55 * reserved for the os image.
58 struct os_area_header
{
69 enum os_area_boot_flag
{
70 PARAM_BOOT_FLAG_GAME_OS
= 0,
71 PARAM_BOOT_FLAG_OTHER_OS
= 1,
74 enum os_area_ctrl_button
{
75 PARAM_CTRL_BUTTON_O_IS_YES
= 0,
76 PARAM_CTRL_BUTTON_X_IS_YES
= 1,
80 * struct os_area_params - os area params segment.
81 * @boot_flag: User preference of operating system, PARAM_BOOT_FLAG flag.
82 * @num_params: Number of params in this (params) segment.
83 * @rtc_diff: Difference in seconds between 1970 and the ps3 rtc value.
84 * @av_multi_out: User preference of AV output, PARAM_AV_MULTI_OUT flag.
85 * @ctrl_button: User preference of controller button config, PARAM_CTRL_BUTTON
87 * @static_ip_addr: User preference of static IP address.
88 * @network_mask: User preference of static network mask.
89 * @default_gateway: User preference of static default gateway.
90 * @dns_primary: User preference of static primary dns server.
91 * @dns_secondary: User preference of static secondary dns server.
93 * The ps3 rtc maintains a read-only value that approximates seconds since
94 * 2000-01-01 00:00:00 UTC.
96 * User preference of zero for static_ip_addr means use dhcp.
99 struct os_area_params
{
110 u8 static_ip_addr
[4];
112 u8 default_gateway
[4];
120 #define OS_AREA_DB_MAGIC_NUM "-db-"
123 * struct os_area_db - Shared flash memory database.
124 * @magic_num: Always '-db-'.
125 * @version: os_area_db format version number.
126 * @index_64: byte offset of the database id index for 64 bit variables.
127 * @count_64: number of usable 64 bit index entries
128 * @index_32: byte offset of the database id index for 32 bit variables.
129 * @count_32: number of usable 32 bit index entries
130 * @index_16: byte offset of the database id index for 16 bit variables.
131 * @count_16: number of usable 16 bit index entries
133 * Flash rom storage for exclusive use by guests running in the other os lpar.
134 * The current system configuration allocates 1K (two segments) for other os
153 * enum os_area_db_owner - Data owners.
156 enum os_area_db_owner
{
157 OS_AREA_DB_OWNER_ANY
= -1,
158 OS_AREA_DB_OWNER_NONE
= 0,
159 OS_AREA_DB_OWNER_PROTOTYPE
= 1,
160 OS_AREA_DB_OWNER_LINUX
= 2,
161 OS_AREA_DB_OWNER_PETITBOOT
= 3,
162 OS_AREA_DB_OWNER_MAX
= 32,
165 enum os_area_db_key
{
166 OS_AREA_DB_KEY_ANY
= -1,
167 OS_AREA_DB_KEY_NONE
= 0,
168 OS_AREA_DB_KEY_RTC_DIFF
= 1,
169 OS_AREA_DB_KEY_VIDEO_MODE
= 2,
170 OS_AREA_DB_KEY_MAX
= 8,
173 struct os_area_db_id
{
178 static const struct os_area_db_id os_area_db_id_empty
= {
179 .owner
= OS_AREA_DB_OWNER_NONE
,
180 .key
= OS_AREA_DB_KEY_NONE
183 static const struct os_area_db_id os_area_db_id_any
= {
184 .owner
= OS_AREA_DB_OWNER_ANY
,
185 .key
= OS_AREA_DB_KEY_ANY
188 static const struct os_area_db_id os_area_db_id_rtc_diff
= {
189 .owner
= OS_AREA_DB_OWNER_LINUX
,
190 .key
= OS_AREA_DB_KEY_RTC_DIFF
193 static const struct os_area_db_id os_area_db_id_video_mode
= {
194 .owner
= OS_AREA_DB_OWNER_LINUX
,
195 .key
= OS_AREA_DB_KEY_VIDEO_MODE
198 #define SECONDS_FROM_1970_TO_2000 946684800LL
201 * struct saved_params - Static working copies of data from the PS3 'os area'.
203 * The order of preference we use for the rtc_diff source:
204 * 1) The database value.
205 * 2) The game os value.
206 * 3) The number of seconds from 1970 to 2000.
209 struct saved_params
{
212 unsigned int av_multi_out
;
213 } static saved_params
;
215 static struct property property_rtc_diff
= {
216 .name
= "linux,rtc_diff",
217 .length
= sizeof(saved_params
.rtc_diff
),
218 .value
= &saved_params
.rtc_diff
,
221 static struct property property_av_multi_out
= {
222 .name
= "linux,av_multi_out",
223 .length
= sizeof(saved_params
.av_multi_out
),
224 .value
= &saved_params
.av_multi_out
,
228 * os_area_set_property - Add or overwrite a saved_params value to the device tree.
230 * Overwrites an existing property.
233 static void os_area_set_property(struct device_node
*node
,
234 struct property
*prop
)
237 struct property
*tmp
= of_find_property(node
, prop
->name
, NULL
);
240 pr_debug("%s:%d found %s\n", __func__
, __LINE__
, prop
->name
);
241 prom_remove_property(node
, tmp
);
244 result
= prom_add_property(node
, prop
);
247 pr_debug("%s:%d prom_set_property failed\n", __func__
,
252 * os_area_get_property - Get a saved_params value from the device tree.
256 static void __init
os_area_get_property(struct device_node
*node
,
257 struct property
*prop
)
259 const struct property
*tmp
= of_find_property(node
, prop
->name
, NULL
);
262 BUG_ON(prop
->length
!= tmp
->length
);
263 memcpy(prop
->value
, tmp
->value
, prop
->length
);
265 pr_debug("%s:%d not found %s\n", __func__
, __LINE__
,
269 static void dump_field(char *s
, const u8
*field
, int size_of_field
)
274 for (i
= 0; i
< size_of_field
; i
++)
275 s
[i
] = isprint(field
[i
]) ? field
[i
] : '.';
280 #define dump_header(_a) _dump_header(_a, __func__, __LINE__)
281 static void _dump_header(const struct os_area_header
*h
, const char *func
,
284 char str
[sizeof(h
->magic_num
) + 1];
286 dump_field(str
, h
->magic_num
, sizeof(h
->magic_num
));
287 pr_debug("%s:%d: h.magic_num: '%s'\n", func
, line
,
289 pr_debug("%s:%d: h.hdr_version: %u\n", func
, line
,
291 pr_debug("%s:%d: h.db_area_offset: %u\n", func
, line
,
293 pr_debug("%s:%d: h.ldr_area_offset: %u\n", func
, line
,
295 pr_debug("%s:%d: h.ldr_format: %u\n", func
, line
,
297 pr_debug("%s:%d: h.ldr_size: %xh\n", func
, line
,
301 #define dump_params(_a) _dump_params(_a, __func__, __LINE__)
302 static void _dump_params(const struct os_area_params
*p
, const char *func
,
305 pr_debug("%s:%d: p.boot_flag: %u\n", func
, line
, p
->boot_flag
);
306 pr_debug("%s:%d: p.num_params: %u\n", func
, line
, p
->num_params
);
307 pr_debug("%s:%d: p.rtc_diff %ld\n", func
, line
, p
->rtc_diff
);
308 pr_debug("%s:%d: p.av_multi_out %u\n", func
, line
, p
->av_multi_out
);
309 pr_debug("%s:%d: p.ctrl_button: %u\n", func
, line
, p
->ctrl_button
);
310 pr_debug("%s:%d: p.static_ip_addr: %u.%u.%u.%u\n", func
, line
,
311 p
->static_ip_addr
[0], p
->static_ip_addr
[1],
312 p
->static_ip_addr
[2], p
->static_ip_addr
[3]);
313 pr_debug("%s:%d: p.network_mask: %u.%u.%u.%u\n", func
, line
,
314 p
->network_mask
[0], p
->network_mask
[1],
315 p
->network_mask
[2], p
->network_mask
[3]);
316 pr_debug("%s:%d: p.default_gateway: %u.%u.%u.%u\n", func
, line
,
317 p
->default_gateway
[0], p
->default_gateway
[1],
318 p
->default_gateway
[2], p
->default_gateway
[3]);
319 pr_debug("%s:%d: p.dns_primary: %u.%u.%u.%u\n", func
, line
,
320 p
->dns_primary
[0], p
->dns_primary
[1],
321 p
->dns_primary
[2], p
->dns_primary
[3]);
322 pr_debug("%s:%d: p.dns_secondary: %u.%u.%u.%u\n", func
, line
,
323 p
->dns_secondary
[0], p
->dns_secondary
[1],
324 p
->dns_secondary
[2], p
->dns_secondary
[3]);
327 static int verify_header(const struct os_area_header
*header
)
329 if (memcmp(header
->magic_num
, OS_AREA_HEADER_MAGIC_NUM
,
330 sizeof(header
->magic_num
))) {
331 pr_debug("%s:%d magic_num failed\n", __func__
, __LINE__
);
335 if (header
->hdr_version
< 1) {
336 pr_debug("%s:%d hdr_version failed\n", __func__
, __LINE__
);
340 if (header
->db_area_offset
> header
->ldr_area_offset
) {
341 pr_debug("%s:%d offsets failed\n", __func__
, __LINE__
);
348 static int db_verify(const struct os_area_db
*db
)
350 if (memcmp(db
->magic_num
, OS_AREA_DB_MAGIC_NUM
,
351 sizeof(db
->magic_num
))) {
352 pr_debug("%s:%d magic_num failed\n", __func__
, __LINE__
);
356 if (db
->version
!= 1) {
357 pr_debug("%s:%d version failed\n", __func__
, __LINE__
);
370 const struct os_area_db
*db
;
371 struct os_area_db_id match_id
;
372 struct db_index
*idx
;
373 struct db_index
*last_idx
;
381 static unsigned int db_align_up(unsigned int val
, unsigned int size
)
383 return (val
+ (size
- 1)) & (~(size
- 1));
387 * db_for_each_64 - Iterator for 64 bit entries.
389 * A NULL value for id can be used to match all entries.
390 * OS_AREA_DB_OWNER_ANY and OS_AREA_DB_KEY_ANY can be used to match all.
393 static int db_for_each_64(const struct os_area_db
*db
,
394 const struct os_area_db_id
*match_id
, struct db_iterator
*i
)
399 i
->match_id
= match_id
? *match_id
: os_area_db_id_any
;
400 i
->idx
= (void *)db
+ db
->index_64
;
401 i
->last_idx
= i
->idx
+ db
->count_64
;
402 i
->value_64
= (void *)db
+ db
->index_64
403 + db_align_up(db
->count_64
, 8);
409 if (i
->idx
>= i
->last_idx
) {
410 pr_debug("%s:%d: reached end\n", __func__
, __LINE__
);
414 if (i
->match_id
.owner
!= OS_AREA_DB_OWNER_ANY
415 && i
->match_id
.owner
!= (int)i
->idx
->owner
)
417 if (i
->match_id
.key
!= OS_AREA_DB_KEY_ANY
418 && i
->match_id
.key
!= (int)i
->idx
->key
)
424 static int db_delete_64(struct os_area_db
*db
, const struct os_area_db_id
*id
)
426 struct db_iterator i
;
428 for (i
.db
= NULL
; db_for_each_64(db
, id
, &i
); ) {
430 pr_debug("%s:%d: got (%d:%d) %llxh\n", __func__
, __LINE__
,
431 i
.idx
->owner
, i
.idx
->key
,
432 (unsigned long long)*i
.value_64
);
441 static int db_set_64(struct os_area_db
*db
, const struct os_area_db_id
*id
,
444 struct db_iterator i
;
446 pr_debug("%s:%d: (%d:%d) <= %llxh\n", __func__
, __LINE__
,
447 id
->owner
, id
->key
, (unsigned long long)value
);
449 if (!id
->owner
|| id
->owner
== OS_AREA_DB_OWNER_ANY
450 || id
->key
== OS_AREA_DB_KEY_ANY
) {
451 pr_debug("%s:%d: bad id: (%d:%d)\n", __func__
,
452 __LINE__
, id
->owner
, id
->key
);
456 db_delete_64(db
, id
);
459 if (db_for_each_64(db
, &os_area_db_id_empty
, &i
)) {
461 pr_debug("%s:%d: got (%d:%d) %llxh\n", __func__
, __LINE__
,
462 i
.idx
->owner
, i
.idx
->key
,
463 (unsigned long long)*i
.value_64
);
465 i
.idx
->owner
= id
->owner
;
466 i
.idx
->key
= id
->key
;
469 pr_debug("%s:%d: set (%d:%d) <= %llxh\n", __func__
, __LINE__
,
470 i
.idx
->owner
, i
.idx
->key
,
471 (unsigned long long)*i
.value_64
);
474 pr_debug("%s:%d: database full.\n",
479 static int db_get_64(const struct os_area_db
*db
,
480 const struct os_area_db_id
*id
, uint64_t *value
)
482 struct db_iterator i
;
485 if (db_for_each_64(db
, id
, &i
)) {
486 *value
= *i
.value_64
;
487 pr_debug("%s:%d: found %lld\n", __func__
, __LINE__
,
488 (long long int)*i
.value_64
);
491 pr_debug("%s:%d: not found\n", __func__
, __LINE__
);
495 static int db_get_rtc_diff(const struct os_area_db
*db
, int64_t *rtc_diff
)
497 return db_get_64(db
, &os_area_db_id_rtc_diff
, (uint64_t*)rtc_diff
);
500 #define dump_db(a) _dump_db(a, __func__, __LINE__)
501 static void _dump_db(const struct os_area_db
*db
, const char *func
,
504 char str
[sizeof(db
->magic_num
) + 1];
506 dump_field(str
, db
->magic_num
, sizeof(db
->magic_num
));
507 pr_debug("%s:%d: db.magic_num: '%s'\n", func
, line
,
509 pr_debug("%s:%d: db.version: %u\n", func
, line
,
511 pr_debug("%s:%d: db.index_64: %u\n", func
, line
,
513 pr_debug("%s:%d: db.count_64: %u\n", func
, line
,
515 pr_debug("%s:%d: db.index_32: %u\n", func
, line
,
517 pr_debug("%s:%d: db.count_32: %u\n", func
, line
,
519 pr_debug("%s:%d: db.index_16: %u\n", func
, line
,
521 pr_debug("%s:%d: db.count_16: %u\n", func
, line
,
525 static void os_area_db_init(struct os_area_db
*db
)
528 HEADER_SIZE
= offsetof(struct os_area_db
, _db_data
),
530 VALUES_64_COUNT
= 57,
532 VALUES_32_COUNT
= 57,
534 VALUES_16_COUNT
= 57,
537 memset(db
, 0, sizeof(struct os_area_db
));
539 memcpy(db
->magic_num
, OS_AREA_DB_MAGIC_NUM
, sizeof(db
->magic_num
));
541 db
->index_64
= HEADER_SIZE
;
542 db
->count_64
= VALUES_64_COUNT
;
543 db
->index_32
= HEADER_SIZE
544 + INDEX_64_COUNT
* sizeof(struct db_index
)
545 + VALUES_64_COUNT
* sizeof(u64
);
546 db
->count_32
= VALUES_32_COUNT
;
547 db
->index_16
= HEADER_SIZE
548 + INDEX_64_COUNT
* sizeof(struct db_index
)
549 + VALUES_64_COUNT
* sizeof(u64
)
550 + INDEX_32_COUNT
* sizeof(struct db_index
)
551 + VALUES_32_COUNT
* sizeof(u32
);
552 db
->count_16
= VALUES_16_COUNT
;
554 /* Rules to check db layout. */
556 BUILD_BUG_ON(sizeof(struct db_index
) != 1);
557 BUILD_BUG_ON(sizeof(struct os_area_db
) != 2 * OS_AREA_SEGMENT_SIZE
);
558 BUILD_BUG_ON(INDEX_64_COUNT
& 0x7);
559 BUILD_BUG_ON(VALUES_64_COUNT
> INDEX_64_COUNT
);
560 BUILD_BUG_ON(INDEX_32_COUNT
& 0x7);
561 BUILD_BUG_ON(VALUES_32_COUNT
> INDEX_32_COUNT
);
562 BUILD_BUG_ON(INDEX_16_COUNT
& 0x7);
563 BUILD_BUG_ON(VALUES_16_COUNT
> INDEX_16_COUNT
);
564 BUILD_BUG_ON(HEADER_SIZE
565 + INDEX_64_COUNT
* sizeof(struct db_index
)
566 + VALUES_64_COUNT
* sizeof(u64
)
567 + INDEX_32_COUNT
* sizeof(struct db_index
)
568 + VALUES_32_COUNT
* sizeof(u32
)
569 + INDEX_16_COUNT
* sizeof(struct db_index
)
570 + VALUES_16_COUNT
* sizeof(u16
)
571 > sizeof(struct os_area_db
));
575 * update_flash_db - Helper for os_area_queue_work_handler.
579 static void update_flash_db(void)
585 static const unsigned int buf_len
= 8 * OS_AREA_SEGMENT_SIZE
;
586 const struct os_area_header
*header
;
587 struct os_area_db
* db
;
589 /* Read in header and db from flash. */
591 file
= sys_open("/dev/ps3flash", O_RDWR
, 0);
594 pr_debug("%s:%d sys_open failed\n", __func__
, __LINE__
);
598 header
= kmalloc(buf_len
, GFP_KERNEL
);
601 pr_debug("%s:%d kmalloc failed\n", __func__
, __LINE__
);
605 offset
= sys_lseek(file
, 0, SEEK_SET
);
608 pr_debug("%s:%d sys_lseek failed\n", __func__
, __LINE__
);
609 goto fail_header_seek
;
612 count
= sys_read(file
, (char __user
*)header
, buf_len
);
614 result
= count
< OS_AREA_SEGMENT_SIZE
|| verify_header(header
)
615 || count
< header
->db_area_offset
* OS_AREA_SEGMENT_SIZE
;
618 pr_debug("%s:%d verify_header failed\n", __func__
, __LINE__
);
623 /* Now got a good db offset and some maybe good db data. */
625 db
= (void*)header
+ header
->db_area_offset
* OS_AREA_SEGMENT_SIZE
;
627 result
= db_verify(db
);
630 printk(KERN_NOTICE
"%s:%d: Verify of flash database failed, "
631 "formatting.\n", __func__
, __LINE__
);
636 /* Now got good db data. */
638 db_set_64(db
, &os_area_db_id_rtc_diff
, saved_params
.rtc_diff
);
640 offset
= sys_lseek(file
, header
->db_area_offset
* OS_AREA_SEGMENT_SIZE
,
643 if (offset
!= header
->db_area_offset
* OS_AREA_SEGMENT_SIZE
) {
644 pr_debug("%s:%d sys_lseek failed\n", __func__
, __LINE__
);
648 count
= sys_write(file
, (const char __user
*)db
,
649 sizeof(struct os_area_db
));
651 if (count
< sizeof(struct os_area_db
)) {
652 pr_debug("%s:%d sys_write failed\n", __func__
, __LINE__
);
666 * os_area_queue_work_handler - Asynchronous write handler.
668 * An asynchronous write for flash memory and the device tree. Do not
669 * call directly, use os_area_queue_work().
672 static void os_area_queue_work_handler(struct work_struct
*work
)
674 struct device_node
*node
;
676 pr_debug(" -> %s:%d\n", __func__
, __LINE__
);
678 node
= of_find_node_by_path("/");
681 os_area_set_property(node
, &property_rtc_diff
);
684 pr_debug("%s:%d of_find_node_by_path failed\n",
687 #if defined(CONFIG_PS3_FLASH) || defined(CONFIG_PS3_FLASH_MODULE)
690 printk(KERN_WARNING
"%s:%d: No flash rom driver configured.\n",
693 pr_debug(" <- %s:%d\n", __func__
, __LINE__
);
696 static void os_area_queue_work(void)
698 static DECLARE_WORK(q
, os_area_queue_work_handler
);
705 * ps3_os_area_save_params - Copy data from os area mirror to @saved_params.
707 * For the convenience of the guest the HV makes a copy of the os area in
708 * flash to a high address in the boot memory region and then puts that RAM
709 * address and the byte count into the repository for retrieval by the guest.
710 * We copy the data we want into a static variable and allow the memory setup
711 * by the HV to be claimed by the lmb manager.
713 * The os area mirror will not be available to a second stage kernel, and
714 * the header verify will fail. In this case, the saved_params values will
715 * be set from flash memory or the passed in device tree in ps3_os_area_init().
718 void __init
ps3_os_area_save_params(void)
723 struct os_area_header
*header
;
724 struct os_area_params
*params
;
725 struct os_area_db
*db
;
727 pr_debug(" -> %s:%d\n", __func__
, __LINE__
);
729 result
= ps3_repository_read_boot_dat_info(&lpar_addr
, &size
);
732 pr_debug("%s:%d ps3_repository_read_boot_dat_info failed\n",
737 header
= (struct os_area_header
*)__va(lpar_addr
);
738 params
= (struct os_area_params
*)__va(lpar_addr
739 + OS_AREA_SEGMENT_SIZE
);
741 result
= verify_header(header
);
744 /* Second stage kernels exit here. */
745 pr_debug("%s:%d verify_header failed\n", __func__
, __LINE__
);
750 db
= (struct os_area_db
*)__va(lpar_addr
751 + header
->db_area_offset
* OS_AREA_SEGMENT_SIZE
);
757 result
= db_verify(db
) || db_get_rtc_diff(db
, &saved_params
.rtc_diff
);
759 saved_params
.rtc_diff
= params
->rtc_diff
? params
->rtc_diff
760 : SECONDS_FROM_1970_TO_2000
;
761 saved_params
.av_multi_out
= params
->av_multi_out
;
762 saved_params
.valid
= 1;
764 memset(header
, 0, sizeof(*header
));
766 pr_debug(" <- %s:%d\n", __func__
, __LINE__
);
770 * ps3_os_area_init - Setup os area device tree properties as needed.
773 void __init
ps3_os_area_init(void)
775 struct device_node
*node
;
777 pr_debug(" -> %s:%d\n", __func__
, __LINE__
);
779 node
= of_find_node_by_path("/");
781 if (!saved_params
.valid
&& node
) {
782 /* Second stage kernels should have a dt entry. */
783 os_area_get_property(node
, &property_rtc_diff
);
784 os_area_get_property(node
, &property_av_multi_out
);
787 if(!saved_params
.rtc_diff
)
788 saved_params
.rtc_diff
= SECONDS_FROM_1970_TO_2000
;
791 os_area_set_property(node
, &property_rtc_diff
);
792 os_area_set_property(node
, &property_av_multi_out
);
795 pr_debug("%s:%d of_find_node_by_path failed\n",
798 pr_debug(" <- %s:%d\n", __func__
, __LINE__
);
802 * ps3_os_area_get_rtc_diff - Returns the rtc diff value.
805 u64
ps3_os_area_get_rtc_diff(void)
807 return saved_params
.rtc_diff
;
811 * ps3_os_area_set_rtc_diff - Set the rtc diff value.
813 * An asynchronous write is needed to support writing updates from
814 * the timer interrupt context.
817 void ps3_os_area_set_rtc_diff(u64 rtc_diff
)
819 if (saved_params
.rtc_diff
!= rtc_diff
) {
820 saved_params
.rtc_diff
= rtc_diff
;
821 os_area_queue_work();
826 * ps3_os_area_get_av_multi_out - Returns the default video mode.
829 enum ps3_param_av_multi_out
ps3_os_area_get_av_multi_out(void)
831 return saved_params
.av_multi_out
;
833 EXPORT_SYMBOL_GPL(ps3_os_area_get_av_multi_out
);