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/*
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* fs / sysfs / inode . c - basic sysfs inode and dentry operations
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*
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* Copyright ( c ) 2001 - 3 Patrick Mochel
* Copyright ( c ) 2007 SUSE Linux Products GmbH
* Copyright ( c ) 2007 Tejun Heo < teheo @ suse . de >
*
* This file is released under the GPLv2 .
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*
* Please see Documentation / filesystems / sysfs . txt for more information .
*/
# undef DEBUG
# include <linux/pagemap.h>
# include <linux/namei.h>
# include <linux/backing-dev.h>
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# include <linux/capability.h>
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# include <linux/errno.h>
Detach sched.h from mm.h
First thing mm.h does is including sched.h solely for can_do_mlock() inline
function which has "current" dereference inside. By dealing with can_do_mlock()
mm.h can be detached from sched.h which is good. See below, why.
This patch
a) removes unconditional inclusion of sched.h from mm.h
b) makes can_do_mlock() normal function in mm/mlock.c
c) exports can_do_mlock() to not break compilation
d) adds sched.h inclusions back to files that were getting it indirectly.
e) adds less bloated headers to some files (asm/signal.h, jiffies.h) that were
getting them indirectly
Net result is:
a) mm.h users would get less code to open, read, preprocess, parse, ... if
they don't need sched.h
b) sched.h stops being dependency for significant number of files:
on x86_64 allmodconfig touching sched.h results in recompile of 4083 files,
after patch it's only 3744 (-8.3%).
Cross-compile tested on
all arm defconfigs, all mips defconfigs, all powerpc defconfigs,
alpha alpha-up
arm
i386 i386-up i386-defconfig i386-allnoconfig
ia64 ia64-up
m68k
mips
parisc parisc-up
powerpc powerpc-up
s390 s390-up
sparc sparc-up
sparc64 sparc64-up
um-x86_64
x86_64 x86_64-up x86_64-defconfig x86_64-allnoconfig
as well as my two usual configs.
Signed-off-by: Alexey Dobriyan <adobriyan@gmail.com>
Signed-off-by: Linus Torvalds <torvalds@linux-foundation.org>
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# include <linux/sched.h>
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# include "sysfs.h"
extern struct super_block * sysfs_sb ;
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static const struct address_space_operations sysfs_aops = {
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. readpage = simple_readpage ,
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. write_begin = simple_write_begin ,
. write_end = simple_write_end ,
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} ;
static struct backing_dev_info sysfs_backing_dev_info = {
. ra_pages = 0 , /* No readahead */
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. capabilities = BDI_CAP_NO_ACCT_AND_WRITEBACK ,
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} ;
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static const struct inode_operations sysfs_inode_operations = {
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. setattr = sysfs_setattr ,
} ;
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int __init sysfs_inode_init ( void )
{
return bdi_init ( & sysfs_backing_dev_info ) ;
}
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int sysfs_setattr ( struct dentry * dentry , struct iattr * iattr )
{
struct inode * inode = dentry - > d_inode ;
struct sysfs_dirent * sd = dentry - > d_fsdata ;
struct iattr * sd_iattr ;
unsigned int ia_valid = iattr - > ia_valid ;
int error ;
if ( ! sd )
return - EINVAL ;
sd_iattr = sd - > s_iattr ;
error = inode_change_ok ( inode , iattr ) ;
if ( error )
return error ;
error = inode_setattr ( inode , iattr ) ;
if ( error )
return error ;
if ( ! sd_iattr ) {
/* setting attributes for the first time, allocate now */
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sd_iattr = kzalloc ( sizeof ( struct iattr ) , GFP_KERNEL ) ;
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if ( ! sd_iattr )
return - ENOMEM ;
/* assign default attributes */
sd_iattr - > ia_mode = sd - > s_mode ;
sd_iattr - > ia_uid = 0 ;
sd_iattr - > ia_gid = 0 ;
sd_iattr - > ia_atime = sd_iattr - > ia_mtime = sd_iattr - > ia_ctime = CURRENT_TIME ;
sd - > s_iattr = sd_iattr ;
}
/* attributes were changed atleast once in past */
if ( ia_valid & ATTR_UID )
sd_iattr - > ia_uid = iattr - > ia_uid ;
if ( ia_valid & ATTR_GID )
sd_iattr - > ia_gid = iattr - > ia_gid ;
if ( ia_valid & ATTR_ATIME )
sd_iattr - > ia_atime = timespec_trunc ( iattr - > ia_atime ,
inode - > i_sb - > s_time_gran ) ;
if ( ia_valid & ATTR_MTIME )
sd_iattr - > ia_mtime = timespec_trunc ( iattr - > ia_mtime ,
inode - > i_sb - > s_time_gran ) ;
if ( ia_valid & ATTR_CTIME )
sd_iattr - > ia_ctime = timespec_trunc ( iattr - > ia_ctime ,
inode - > i_sb - > s_time_gran ) ;
if ( ia_valid & ATTR_MODE ) {
umode_t mode = iattr - > ia_mode ;
if ( ! in_group_p ( inode - > i_gid ) & & ! capable ( CAP_FSETID ) )
mode & = ~ S_ISGID ;
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sd_iattr - > ia_mode = sd - > s_mode = mode ;
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}
return error ;
}
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static inline void set_default_inode_attr ( struct inode * inode , mode_t mode )
{
inode - > i_mode = mode ;
inode - > i_uid = 0 ;
inode - > i_gid = 0 ;
inode - > i_atime = inode - > i_mtime = inode - > i_ctime = CURRENT_TIME ;
}
static inline void set_inode_attr ( struct inode * inode , struct iattr * iattr )
{
inode - > i_mode = iattr - > ia_mode ;
inode - > i_uid = iattr - > ia_uid ;
inode - > i_gid = iattr - > ia_gid ;
inode - > i_atime = iattr - > ia_atime ;
inode - > i_mtime = iattr - > ia_mtime ;
inode - > i_ctime = iattr - > ia_ctime ;
}
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/*
* sysfs has a different i_mutex lock order behavior for i_mutex than other
* filesystems ; sysfs i_mutex is called in many places with subsystem locks
* held . At the same time , many of the VFS locking rules do not apply to
* sysfs at all ( cross directory rename for example ) . To untangle this mess
* ( which gives false positives in lockdep ) , we ' re giving sysfs inodes their
* own class for i_mutex .
*/
static struct lock_class_key sysfs_inode_imutex_key ;
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static int sysfs_count_nlink ( struct sysfs_dirent * sd )
{
struct sysfs_dirent * child ;
int nr = 0 ;
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for ( child = sd - > s_dir . children ; child ; child = child - > s_sibling )
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if ( sysfs_type ( child ) = = SYSFS_DIR )
nr + + ;
return nr + 2 ;
}
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static void sysfs_init_inode ( struct sysfs_dirent * sd , struct inode * inode )
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{
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struct bin_attribute * bin_attr ;
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inode - > i_blocks = 0 ;
inode - > i_mapping - > a_ops = & sysfs_aops ;
inode - > i_mapping - > backing_dev_info = & sysfs_backing_dev_info ;
inode - > i_op = & sysfs_inode_operations ;
inode - > i_ino = sd - > s_ino ;
lockdep_set_class ( & inode - > i_mutex , & sysfs_inode_imutex_key ) ;
if ( sd - > s_iattr ) {
/* sysfs_dirent has non-default attributes
* get them for the new inode from persistent copy
* in sysfs_dirent
*/
set_inode_attr ( inode , sd - > s_iattr ) ;
} else
set_default_inode_attr ( inode , sd - > s_mode ) ;
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/* initialize inode according to type */
switch ( sysfs_type ( sd ) ) {
case SYSFS_DIR :
inode - > i_op = & sysfs_dir_inode_operations ;
inode - > i_fop = & sysfs_dir_operations ;
inode - > i_nlink = sysfs_count_nlink ( sd ) ;
break ;
case SYSFS_KOBJ_ATTR :
inode - > i_size = PAGE_SIZE ;
inode - > i_fop = & sysfs_file_operations ;
break ;
case SYSFS_KOBJ_BIN_ATTR :
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bin_attr = sd - > s_bin_attr . bin_attr ;
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inode - > i_size = bin_attr - > size ;
inode - > i_fop = & bin_fops ;
break ;
case SYSFS_KOBJ_LINK :
inode - > i_op = & sysfs_symlink_inode_operations ;
break ;
default :
BUG ( ) ;
}
unlock_new_inode ( inode ) ;
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}
/**
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* sysfs_get_inode - get inode for sysfs_dirent
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* @ sd : sysfs_dirent to allocate inode for
*
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* Get inode for @ sd . If such inode doesn ' t exist , a new inode
* is allocated and basics are initialized . New inode is
* returned locked .
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*
* LOCKING :
* Kernel thread context ( may sleep ) .
*
* RETURNS :
* Pointer to allocated inode on success , NULL on failure .
*/
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struct inode * sysfs_get_inode ( struct sysfs_dirent * sd )
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{
struct inode * inode ;
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inode = iget_locked ( sysfs_sb , sd - > s_ino ) ;
if ( inode & & ( inode - > i_state & I_NEW ) )
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sysfs_init_inode ( sd , inode ) ;
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return inode ;
}
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int sysfs_hash_and_remove ( struct sysfs_dirent * dir_sd , const char * name )
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{
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struct sysfs_addrm_cxt acxt ;
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struct sysfs_dirent * sd ;
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if ( ! dir_sd )
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return - ENOENT ;
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sysfs_addrm_start ( & acxt , dir_sd ) ;
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sd = sysfs_find_dirent ( dir_sd , name ) ;
if ( sd )
sysfs_remove_one ( & acxt , sd ) ;
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sysfs_addrm_finish ( & acxt ) ;
if ( sd )
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return 0 ;
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else
return - ENOENT ;
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}