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/*
* Simple MTD partitioning layer
*
* ( C ) 2000 Nicolas Pitre < nico @ cam . org >
*
* This code is GPL
*
* 02 - 21 - 2002 Thomas Gleixner < gleixner @ autronix . de >
* added support for read_oob , write_oob
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*/
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# include <linux/module.h>
# include <linux/types.h>
# include <linux/kernel.h>
# include <linux/slab.h>
# include <linux/list.h>
# include <linux/kmod.h>
# include <linux/mtd/mtd.h>
# include <linux/mtd/partitions.h>
# include <linux/mtd/compatmac.h>
/* Our partition linked list */
static LIST_HEAD ( mtd_partitions ) ;
/* Our partition node structure */
struct mtd_part {
struct mtd_info mtd ;
struct mtd_info * master ;
u_int32_t offset ;
int index ;
struct list_head list ;
int registered ;
} ;
/*
* Given a pointer to the MTD object in the mtd_part structure , we can retrieve
* the pointer to that structure with this macro .
*/
# define PART(x) ((struct mtd_part *)(x))
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/*
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* MTD methods which simply translate the effective address and pass through
* to the _real_ device .
*/
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static int part_read ( struct mtd_info * mtd , loff_t from , size_t len ,
size_t * retlen , u_char * buf )
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{
struct mtd_part * part = PART ( mtd ) ;
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int res ;
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if ( from > = mtd - > size )
len = 0 ;
else if ( from + len > mtd - > size )
len = mtd - > size - from ;
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res = part - > master - > read ( part - > master , from + part - > offset ,
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len , retlen , buf ) ;
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if ( unlikely ( res ) ) {
if ( res = = - EUCLEAN )
mtd - > ecc_stats . corrected + + ;
if ( res = = - EBADMSG )
mtd - > ecc_stats . failed + + ;
}
return res ;
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}
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static int part_point ( struct mtd_info * mtd , loff_t from , size_t len ,
size_t * retlen , void * * virt , resource_size_t * phys )
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{
struct mtd_part * part = PART ( mtd ) ;
if ( from > = mtd - > size )
len = 0 ;
else if ( from + len > mtd - > size )
len = mtd - > size - from ;
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return part - > master - > point ( part - > master , from + part - > offset ,
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len , retlen , virt , phys ) ;
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}
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static void part_unpoint ( struct mtd_info * mtd , loff_t from , size_t len )
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{
struct mtd_part * part = PART ( mtd ) ;
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part - > master - > unpoint ( part - > master , from + part - > offset , len ) ;
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}
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static int part_read_oob ( struct mtd_info * mtd , loff_t from ,
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struct mtd_oob_ops * ops )
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{
struct mtd_part * part = PART ( mtd ) ;
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int res ;
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if ( from > = mtd - > size )
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return - EINVAL ;
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if ( ops - > datbuf & & from + ops - > len > mtd - > size )
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return - EINVAL ;
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res = part - > master - > read_oob ( part - > master , from + part - > offset , ops ) ;
if ( unlikely ( res ) ) {
if ( res = = - EUCLEAN )
mtd - > ecc_stats . corrected + + ;
if ( res = = - EBADMSG )
mtd - > ecc_stats . failed + + ;
}
return res ;
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}
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static int part_read_user_prot_reg ( struct mtd_info * mtd , loff_t from ,
size_t len , size_t * retlen , u_char * buf )
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{
struct mtd_part * part = PART ( mtd ) ;
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return part - > master - > read_user_prot_reg ( part - > master , from ,
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len , retlen , buf ) ;
}
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static int part_get_user_prot_info ( struct mtd_info * mtd ,
struct otp_info * buf , size_t len )
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{
struct mtd_part * part = PART ( mtd ) ;
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return part - > master - > get_user_prot_info ( part - > master , buf , len ) ;
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}
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static int part_read_fact_prot_reg ( struct mtd_info * mtd , loff_t from ,
size_t len , size_t * retlen , u_char * buf )
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{
struct mtd_part * part = PART ( mtd ) ;
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return part - > master - > read_fact_prot_reg ( part - > master , from ,
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len , retlen , buf ) ;
}
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static int part_get_fact_prot_info ( struct mtd_info * mtd , struct otp_info * buf ,
size_t len )
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{
struct mtd_part * part = PART ( mtd ) ;
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return part - > master - > get_fact_prot_info ( part - > master , buf , len ) ;
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}
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static int part_write ( struct mtd_info * mtd , loff_t to , size_t len ,
size_t * retlen , const u_char * buf )
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{
struct mtd_part * part = PART ( mtd ) ;
if ( ! ( mtd - > flags & MTD_WRITEABLE ) )
return - EROFS ;
if ( to > = mtd - > size )
len = 0 ;
else if ( to + len > mtd - > size )
len = mtd - > size - to ;
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return part - > master - > write ( part - > master , to + part - > offset ,
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len , retlen , buf ) ;
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}
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static int part_panic_write ( struct mtd_info * mtd , loff_t to , size_t len ,
size_t * retlen , const u_char * buf )
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{
struct mtd_part * part = PART ( mtd ) ;
if ( ! ( mtd - > flags & MTD_WRITEABLE ) )
return - EROFS ;
if ( to > = mtd - > size )
len = 0 ;
else if ( to + len > mtd - > size )
len = mtd - > size - to ;
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return part - > master - > panic_write ( part - > master , to + part - > offset ,
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len , retlen , buf ) ;
}
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static int part_write_oob ( struct mtd_info * mtd , loff_t to ,
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struct mtd_oob_ops * ops )
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{
struct mtd_part * part = PART ( mtd ) ;
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if ( ! ( mtd - > flags & MTD_WRITEABLE ) )
return - EROFS ;
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if ( to > = mtd - > size )
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return - EINVAL ;
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if ( ops - > datbuf & & to + ops - > len > mtd - > size )
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return - EINVAL ;
return part - > master - > write_oob ( part - > master , to + part - > offset , ops ) ;
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}
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static int part_write_user_prot_reg ( struct mtd_info * mtd , loff_t from ,
size_t len , size_t * retlen , u_char * buf )
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{
struct mtd_part * part = PART ( mtd ) ;
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return part - > master - > write_user_prot_reg ( part - > master , from ,
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len , retlen , buf ) ;
}
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static int part_lock_user_prot_reg ( struct mtd_info * mtd , loff_t from ,
size_t len )
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{
struct mtd_part * part = PART ( mtd ) ;
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return part - > master - > lock_user_prot_reg ( part - > master , from , len ) ;
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}
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static int part_writev ( struct mtd_info * mtd , const struct kvec * vecs ,
unsigned long count , loff_t to , size_t * retlen )
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{
struct mtd_part * part = PART ( mtd ) ;
if ( ! ( mtd - > flags & MTD_WRITEABLE ) )
return - EROFS ;
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return part - > master - > writev ( part - > master , vecs , count ,
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to + part - > offset , retlen ) ;
}
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static int part_erase ( struct mtd_info * mtd , struct erase_info * instr )
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{
struct mtd_part * part = PART ( mtd ) ;
int ret ;
if ( ! ( mtd - > flags & MTD_WRITEABLE ) )
return - EROFS ;
if ( instr - > addr > = mtd - > size )
return - EINVAL ;
instr - > addr + = part - > offset ;
ret = part - > master - > erase ( part - > master , instr ) ;
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if ( ret ) {
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if ( instr - > fail_addr ! = MTD_FAIL_ADDR_UNKNOWN )
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instr - > fail_addr - = part - > offset ;
instr - > addr - = part - > offset ;
}
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return ret ;
}
void mtd_erase_callback ( struct erase_info * instr )
{
if ( instr - > mtd - > erase = = part_erase ) {
struct mtd_part * part = PART ( instr - > mtd ) ;
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if ( instr - > fail_addr ! = MTD_FAIL_ADDR_UNKNOWN )
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instr - > fail_addr - = part - > offset ;
instr - > addr - = part - > offset ;
}
if ( instr - > callback )
instr - > callback ( instr ) ;
}
EXPORT_SYMBOL_GPL ( mtd_erase_callback ) ;
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static int part_lock ( struct mtd_info * mtd , loff_t ofs , size_t len )
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{
struct mtd_part * part = PART ( mtd ) ;
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if ( ( len + ofs ) > mtd - > size )
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return - EINVAL ;
return part - > master - > lock ( part - > master , ofs + part - > offset , len ) ;
}
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static int part_unlock ( struct mtd_info * mtd , loff_t ofs , size_t len )
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{
struct mtd_part * part = PART ( mtd ) ;
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if ( ( len + ofs ) > mtd - > size )
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return - EINVAL ;
return part - > master - > unlock ( part - > master , ofs + part - > offset , len ) ;
}
static void part_sync ( struct mtd_info * mtd )
{
struct mtd_part * part = PART ( mtd ) ;
part - > master - > sync ( part - > master ) ;
}
static int part_suspend ( struct mtd_info * mtd )
{
struct mtd_part * part = PART ( mtd ) ;
return part - > master - > suspend ( part - > master ) ;
}
static void part_resume ( struct mtd_info * mtd )
{
struct mtd_part * part = PART ( mtd ) ;
part - > master - > resume ( part - > master ) ;
}
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static int part_block_isbad ( struct mtd_info * mtd , loff_t ofs )
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{
struct mtd_part * part = PART ( mtd ) ;
if ( ofs > = mtd - > size )
return - EINVAL ;
ofs + = part - > offset ;
return part - > master - > block_isbad ( part - > master , ofs ) ;
}
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static int part_block_markbad ( struct mtd_info * mtd , loff_t ofs )
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{
struct mtd_part * part = PART ( mtd ) ;
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int res ;
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if ( ! ( mtd - > flags & MTD_WRITEABLE ) )
return - EROFS ;
if ( ofs > = mtd - > size )
return - EINVAL ;
ofs + = part - > offset ;
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res = part - > master - > block_markbad ( part - > master , ofs ) ;
if ( ! res )
mtd - > ecc_stats . badblocks + + ;
return res ;
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}
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/*
* This function unregisters and destroy all slave MTD objects which are
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* attached to the given master MTD object .
*/
int del_mtd_partitions ( struct mtd_info * master )
{
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struct mtd_part * slave , * next ;
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list_for_each_entry_safe ( slave , next , & mtd_partitions , list )
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if ( slave - > master = = master ) {
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list_del ( & slave - > list ) ;
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if ( slave - > registered )
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del_mtd_device ( & slave - > mtd ) ;
kfree ( slave ) ;
}
return 0 ;
}
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EXPORT_SYMBOL ( del_mtd_partitions ) ;
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static struct mtd_part * add_one_partition ( struct mtd_info * master ,
const struct mtd_partition * part , int partno ,
u_int32_t cur_offset )
{
struct mtd_part * slave ;
/* allocate the partition structure */
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slave = kzalloc ( sizeof ( * slave ) , GFP_KERNEL ) ;
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if ( ! slave ) {
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printk ( KERN_ERR " memory allocation error while creating partitions for \" %s \" \n " ,
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master - > name ) ;
del_mtd_partitions ( master ) ;
return NULL ;
}
list_add ( & slave - > list , & mtd_partitions ) ;
/* set up the MTD object for this partition */
slave - > mtd . type = master - > type ;
slave - > mtd . flags = master - > flags & ~ part - > mask_flags ;
slave - > mtd . size = part - > size ;
slave - > mtd . writesize = master - > writesize ;
slave - > mtd . oobsize = master - > oobsize ;
slave - > mtd . oobavail = master - > oobavail ;
slave - > mtd . subpage_sft = master - > subpage_sft ;
slave - > mtd . name = part - > name ;
slave - > mtd . owner = master - > owner ;
slave - > mtd . read = part_read ;
slave - > mtd . write = part_write ;
if ( master - > panic_write )
slave - > mtd . panic_write = part_panic_write ;
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if ( master - > point & & master - > unpoint ) {
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slave - > mtd . point = part_point ;
slave - > mtd . unpoint = part_unpoint ;
}
if ( master - > read_oob )
slave - > mtd . read_oob = part_read_oob ;
if ( master - > write_oob )
slave - > mtd . write_oob = part_write_oob ;
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if ( master - > read_user_prot_reg )
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slave - > mtd . read_user_prot_reg = part_read_user_prot_reg ;
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if ( master - > read_fact_prot_reg )
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slave - > mtd . read_fact_prot_reg = part_read_fact_prot_reg ;
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if ( master - > write_user_prot_reg )
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slave - > mtd . write_user_prot_reg = part_write_user_prot_reg ;
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if ( master - > lock_user_prot_reg )
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slave - > mtd . lock_user_prot_reg = part_lock_user_prot_reg ;
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if ( master - > get_user_prot_info )
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slave - > mtd . get_user_prot_info = part_get_user_prot_info ;
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if ( master - > get_fact_prot_info )
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slave - > mtd . get_fact_prot_info = part_get_fact_prot_info ;
if ( master - > sync )
slave - > mtd . sync = part_sync ;
if ( ! partno & & master - > suspend & & master - > resume ) {
slave - > mtd . suspend = part_suspend ;
slave - > mtd . resume = part_resume ;
}
if ( master - > writev )
slave - > mtd . writev = part_writev ;
if ( master - > lock )
slave - > mtd . lock = part_lock ;
if ( master - > unlock )
slave - > mtd . unlock = part_unlock ;
if ( master - > block_isbad )
slave - > mtd . block_isbad = part_block_isbad ;
if ( master - > block_markbad )
slave - > mtd . block_markbad = part_block_markbad ;
slave - > mtd . erase = part_erase ;
slave - > master = master ;
slave - > offset = part - > offset ;
slave - > index = partno ;
if ( slave - > offset = = MTDPART_OFS_APPEND )
slave - > offset = cur_offset ;
if ( slave - > offset = = MTDPART_OFS_NXTBLK ) {
slave - > offset = cur_offset ;
if ( ( cur_offset % master - > erasesize ) ! = 0 ) {
/* Round up to next erasesize */
slave - > offset = ( ( cur_offset / master - > erasesize ) + 1 ) * master - > erasesize ;
printk ( KERN_NOTICE " Moving partition %d: "
" 0x%08x -> 0x%08x \n " , partno ,
cur_offset , slave - > offset ) ;
}
}
if ( slave - > mtd . size = = MTDPART_SIZ_FULL )
slave - > mtd . size = master - > size - slave - > offset ;
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printk ( KERN_NOTICE " 0x%08x-0x%08x : \" %s \" \n " , slave - > offset ,
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slave - > offset + slave - > mtd . size , slave - > mtd . name ) ;
/* let's do some sanity checks */
if ( slave - > offset > = master - > size ) {
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/* let's register it anyway to preserve ordering */
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slave - > offset = 0 ;
slave - > mtd . size = 0 ;
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printk ( KERN_ERR " mtd: partition \" %s \" is out of reach -- disabled \n " ,
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part - > name ) ;
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goto out_register ;
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}
if ( slave - > offset + slave - > mtd . size > master - > size ) {
slave - > mtd . size = master - > size - slave - > offset ;
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printk ( KERN_WARNING " mtd: partition \" %s \" extends beyond the end of device \" %s \" -- size truncated to %#x \n " ,
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part - > name , master - > name , slave - > mtd . size ) ;
}
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if ( master - > numeraseregions > 1 ) {
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/* Deal with variable erase size stuff */
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int i , max = master - > numeraseregions ;
u32 end = slave - > offset + slave - > mtd . size ;
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struct mtd_erase_region_info * regions = master - > eraseregions ;
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/* Find the first erase regions which is part of this
* partition . */
for ( i = 0 ; i < max & & regions [ i ] . offset < = slave - > offset ; i + + )
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;
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/* The loop searched for the region _behind_ the first one */
i - - ;
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/* Pick biggest erasesize */
for ( ; i < max & & regions [ i ] . offset < end ; i + + ) {
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if ( slave - > mtd . erasesize < regions [ i ] . erasesize ) {
slave - > mtd . erasesize = regions [ i ] . erasesize ;
}
}
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BUG_ON ( slave - > mtd . erasesize = = 0 ) ;
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} else {
/* Single erase size */
slave - > mtd . erasesize = master - > erasesize ;
}
if ( ( slave - > mtd . flags & MTD_WRITEABLE ) & &
( slave - > offset % slave - > mtd . erasesize ) ) {
/* Doesn't start on a boundary of major erase size */
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/* FIXME: Let it be writable if it is on a boundary of
* _minor_ erase size though */
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slave - > mtd . flags & = ~ MTD_WRITEABLE ;
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printk ( KERN_WARNING " mtd: partition \" %s \" doesn't start on an erase block boundary -- force read-only \n " ,
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part - > name ) ;
}
if ( ( slave - > mtd . flags & MTD_WRITEABLE ) & &
( slave - > mtd . size % slave - > mtd . erasesize ) ) {
slave - > mtd . flags & = ~ MTD_WRITEABLE ;
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printk ( KERN_WARNING " mtd: partition \" %s \" doesn't end on an erase block -- force read-only \n " ,
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part - > name ) ;
}
slave - > mtd . ecclayout = master - > ecclayout ;
if ( master - > block_isbad ) {
uint32_t offs = 0 ;
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while ( offs < slave - > mtd . size ) {
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if ( master - > block_isbad ( master ,
offs + slave - > offset ) )
slave - > mtd . ecc_stats . badblocks + + ;
offs + = slave - > mtd . erasesize ;
}
}
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out_register :
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if ( part - > mtdp ) {
/* store the object pointer (caller may or may not register it*/
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* part - > mtdp = & slave - > mtd ;
slave - > registered = 0 ;
} else {
/* register our partition */
add_mtd_device ( & slave - > mtd ) ;
slave - > registered = 1 ;
}
return slave ;
}
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/*
* This function , given a master MTD object and a partition table , creates
* and registers slave MTD objects which are bound to the master according to
* the partition definitions .
* ( Q : should we register the master MTD object as well ? )
*/
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int add_mtd_partitions ( struct mtd_info * master ,
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const struct mtd_partition * parts ,
int nbparts )
{
struct mtd_part * slave ;
u_int32_t cur_offset = 0 ;
int i ;
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printk ( KERN_NOTICE " Creating %d MTD partitions on \" %s \" : \n " , nbparts , master - > name ) ;
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for ( i = 0 ; i < nbparts ; i + + ) {
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slave = add_one_partition ( master , parts + i , i , cur_offset ) ;
if ( ! slave )
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return - ENOMEM ;
cur_offset = slave - > offset + slave - > mtd . size ;
}
return 0 ;
}
EXPORT_SYMBOL ( add_mtd_partitions ) ;
static DEFINE_SPINLOCK ( part_parser_lock ) ;
static LIST_HEAD ( part_parsers ) ;
static struct mtd_part_parser * get_partition_parser ( const char * name )
{
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struct mtd_part_parser * p , * ret = NULL ;
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spin_lock ( & part_parser_lock ) ;
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list_for_each_entry ( p , & part_parsers , list )
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if ( ! strcmp ( p - > name , name ) & & try_module_get ( p - > owner ) ) {
ret = p ;
break ;
}
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spin_unlock ( & part_parser_lock ) ;
return ret ;
}
int register_mtd_parser ( struct mtd_part_parser * p )
{
spin_lock ( & part_parser_lock ) ;
list_add ( & p - > list , & part_parsers ) ;
spin_unlock ( & part_parser_lock ) ;
return 0 ;
}
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EXPORT_SYMBOL_GPL ( register_mtd_parser ) ;
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int deregister_mtd_parser ( struct mtd_part_parser * p )
{
spin_lock ( & part_parser_lock ) ;
list_del ( & p - > list ) ;
spin_unlock ( & part_parser_lock ) ;
return 0 ;
}
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EXPORT_SYMBOL_GPL ( deregister_mtd_parser ) ;
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int parse_mtd_partitions ( struct mtd_info * master , const char * * types ,
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struct mtd_partition * * pparts , unsigned long origin )
{
struct mtd_part_parser * parser ;
int ret = 0 ;
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for ( ; ret < = 0 & & * types ; types + + ) {
parser = get_partition_parser ( * types ) ;
# ifdef CONFIG_KMOD
if ( ! parser & & ! request_module ( " %s " , * types ) )
parser = get_partition_parser ( * types ) ;
# endif
if ( ! parser ) {
printk ( KERN_NOTICE " %s partition parsing not available \n " ,
* types ) ;
continue ;
}
ret = ( * parser - > parse_fn ) ( master , pparts , origin ) ;
if ( ret > 0 ) {
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printk ( KERN_NOTICE " %d %s partitions found on MTD device %s \n " ,
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ret , parser - > name , master - > name ) ;
}
put_partition_parser ( parser ) ;
}
return ret ;
}
EXPORT_SYMBOL_GPL ( parse_mtd_partitions ) ;