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nexedi
linux
Commits
f2bdfda9
Commit
f2bdfda9
authored
Jul 22, 2016
by
Dave Chinner
Browse files
Options
Browse Files
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Plain Diff
Merge branch 'xfs-4.8-misc-fixes-4' into for-next
parents
dc4113d2
72ccbbe1
Changes
11
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Side-by-side
Showing
11 changed files
with
259 additions
and
103 deletions
+259
-103
fs/xfs/libxfs/xfs_da_btree.c
fs/xfs/libxfs/xfs_da_btree.c
+29
-30
fs/xfs/xfs_aops.c
fs/xfs/xfs_aops.c
+26
-3
fs/xfs/xfs_buf_item.c
fs/xfs/xfs_buf_item.c
+1
-0
fs/xfs/xfs_dquot.c
fs/xfs/xfs_dquot.c
+1
-0
fs/xfs/xfs_dquot_item.c
fs/xfs/xfs_dquot_item.c
+2
-0
fs/xfs/xfs_extfree_item.c
fs/xfs/xfs_extfree_item.c
+2
-0
fs/xfs/xfs_file.c
fs/xfs/xfs_file.c
+2
-2
fs/xfs/xfs_inode_item.c
fs/xfs/xfs_inode_item.c
+1
-0
fs/xfs/xfs_log_cil.c
fs/xfs/xfs_log_cil.c
+194
-64
fs/xfs/xfs_super.c
fs/xfs/xfs_super.c
+0
-4
fs/xfs/xfs_trans.h
fs/xfs/xfs_trans.h
+1
-0
No files found.
fs/xfs/libxfs/xfs_da_btree.c
View file @
f2bdfda9
...
@@ -356,7 +356,6 @@ xfs_da3_split(
...
@@ -356,7 +356,6 @@ xfs_da3_split(
struct
xfs_da_state_blk
*
newblk
;
struct
xfs_da_state_blk
*
newblk
;
struct
xfs_da_state_blk
*
addblk
;
struct
xfs_da_state_blk
*
addblk
;
struct
xfs_da_intnode
*
node
;
struct
xfs_da_intnode
*
node
;
struct
xfs_buf
*
bp
;
int
max
;
int
max
;
int
action
=
0
;
int
action
=
0
;
int
error
;
int
error
;
...
@@ -397,7 +396,9 @@ xfs_da3_split(
...
@@ -397,7 +396,9 @@ xfs_da3_split(
break
;
break
;
}
}
/*
/*
* Entry wouldn't fit, split the leaf again.
* Entry wouldn't fit, split the leaf again. The new
* extrablk will be consumed by xfs_da3_node_split if
* the node is split.
*/
*/
state
->
extravalid
=
1
;
state
->
extravalid
=
1
;
if
(
state
->
inleaf
)
{
if
(
state
->
inleaf
)
{
...
@@ -445,6 +446,14 @@ xfs_da3_split(
...
@@ -445,6 +446,14 @@ xfs_da3_split(
if
(
!
addblk
)
if
(
!
addblk
)
return
0
;
return
0
;
/*
* xfs_da3_node_split() should have consumed any extra blocks we added
* during a double leaf split in the attr fork. This is guaranteed as
* we can't be here if the attr fork only has a single leaf block.
*/
ASSERT
(
state
->
extravalid
==
0
||
state
->
path
.
blk
[
max
].
magic
==
XFS_DIR2_LEAFN_MAGIC
);
/*
/*
* Split the root node.
* Split the root node.
*/
*/
...
@@ -457,41 +466,31 @@ xfs_da3_split(
...
@@ -457,41 +466,31 @@ xfs_da3_split(
}
}
/*
/*
* Update pointers to the node which used to be block 0 and
* Update pointers to the node which used to be block 0 and
just got
*
just got bumped because of the addition of a new root node.
*
bumped because of the addition of a new root node. Note that the
*
There might be three blocks involved if a double split occurred,
*
original block 0 could be at any position in the list of blocks in
*
and the original block 0 could be at any position in the list
.
*
the tree
.
*
*
* Note: the magic numbers and sibling pointers are in the same
* Note: the magic numbers and sibling pointers are in the same
physical
* p
hysical place for both v2 and v3 headers (by design). Hence it
* p
lace for both v2 and v3 headers (by design). Hence it doesn't matter
*
doesn't matter which version of the xfs_da_intnode structure we us
e
*
which version of the xfs_da_intnode structure we use here as th
e
*
here as the
result will be the same using either structure.
* result will be the same using either structure.
*/
*/
node
=
oldblk
->
bp
->
b_addr
;
node
=
oldblk
->
bp
->
b_addr
;
if
(
node
->
hdr
.
info
.
forw
)
{
if
(
node
->
hdr
.
info
.
forw
)
{
if
(
be32_to_cpu
(
node
->
hdr
.
info
.
forw
)
==
addblk
->
blkno
)
{
ASSERT
(
be32_to_cpu
(
node
->
hdr
.
info
.
forw
)
==
addblk
->
blkno
);
bp
=
addblk
->
bp
;
node
=
addblk
->
bp
->
b_addr
;
}
else
{
ASSERT
(
state
->
extravalid
);
bp
=
state
->
extrablk
.
bp
;
}
node
=
bp
->
b_addr
;
node
->
hdr
.
info
.
back
=
cpu_to_be32
(
oldblk
->
blkno
);
node
->
hdr
.
info
.
back
=
cpu_to_be32
(
oldblk
->
blkno
);
xfs_trans_log_buf
(
state
->
args
->
trans
,
bp
,
xfs_trans_log_buf
(
state
->
args
->
trans
,
addblk
->
bp
,
XFS_DA_LOGRANGE
(
node
,
&
node
->
hdr
.
info
,
XFS_DA_LOGRANGE
(
node
,
&
node
->
hdr
.
info
,
sizeof
(
node
->
hdr
.
info
)));
sizeof
(
node
->
hdr
.
info
)));
}
}
node
=
oldblk
->
bp
->
b_addr
;
node
=
oldblk
->
bp
->
b_addr
;
if
(
node
->
hdr
.
info
.
back
)
{
if
(
node
->
hdr
.
info
.
back
)
{
if
(
be32_to_cpu
(
node
->
hdr
.
info
.
back
)
==
addblk
->
blkno
)
{
ASSERT
(
be32_to_cpu
(
node
->
hdr
.
info
.
back
)
==
addblk
->
blkno
);
bp
=
addblk
->
bp
;
node
=
addblk
->
bp
->
b_addr
;
}
else
{
ASSERT
(
state
->
extravalid
);
bp
=
state
->
extrablk
.
bp
;
}
node
=
bp
->
b_addr
;
node
->
hdr
.
info
.
forw
=
cpu_to_be32
(
oldblk
->
blkno
);
node
->
hdr
.
info
.
forw
=
cpu_to_be32
(
oldblk
->
blkno
);
xfs_trans_log_buf
(
state
->
args
->
trans
,
bp
,
xfs_trans_log_buf
(
state
->
args
->
trans
,
addblk
->
bp
,
XFS_DA_LOGRANGE
(
node
,
&
node
->
hdr
.
info
,
XFS_DA_LOGRANGE
(
node
,
&
node
->
hdr
.
info
,
sizeof
(
node
->
hdr
.
info
)));
sizeof
(
node
->
hdr
.
info
)));
}
}
...
...
fs/xfs/xfs_aops.c
View file @
f2bdfda9
...
@@ -87,6 +87,12 @@ xfs_find_bdev_for_inode(
...
@@ -87,6 +87,12 @@ xfs_find_bdev_for_inode(
* We're now finished for good with this page. Update the page state via the
* We're now finished for good with this page. Update the page state via the
* associated buffer_heads, paying attention to the start and end offsets that
* associated buffer_heads, paying attention to the start and end offsets that
* we need to process on the page.
* we need to process on the page.
*
* Landmine Warning: bh->b_end_io() will call end_page_writeback() on the last
* buffer in the IO. Once it does this, it is unsafe to access the bufferhead or
* the page at all, as we may be racing with memory reclaim and it can free both
* the bufferhead chain and the page as it will see the page as clean and
* unused.
*/
*/
static
void
static
void
xfs_finish_page_writeback
(
xfs_finish_page_writeback
(
...
@@ -95,8 +101,9 @@ xfs_finish_page_writeback(
...
@@ -95,8 +101,9 @@ xfs_finish_page_writeback(
int
error
)
int
error
)
{
{
unsigned
int
end
=
bvec
->
bv_offset
+
bvec
->
bv_len
-
1
;
unsigned
int
end
=
bvec
->
bv_offset
+
bvec
->
bv_len
-
1
;
struct
buffer_head
*
head
,
*
bh
;
struct
buffer_head
*
head
,
*
bh
,
*
next
;
unsigned
int
off
=
0
;
unsigned
int
off
=
0
;
unsigned
int
bsize
;
ASSERT
(
bvec
->
bv_offset
<
PAGE_SIZE
);
ASSERT
(
bvec
->
bv_offset
<
PAGE_SIZE
);
ASSERT
((
bvec
->
bv_offset
&
((
1
<<
inode
->
i_blkbits
)
-
1
))
==
0
);
ASSERT
((
bvec
->
bv_offset
&
((
1
<<
inode
->
i_blkbits
)
-
1
))
==
0
);
...
@@ -105,15 +112,17 @@ xfs_finish_page_writeback(
...
@@ -105,15 +112,17 @@ xfs_finish_page_writeback(
bh
=
head
=
page_buffers
(
bvec
->
bv_page
);
bh
=
head
=
page_buffers
(
bvec
->
bv_page
);
bsize
=
bh
->
b_size
;
do
{
do
{
next
=
bh
->
b_this_page
;
if
(
off
<
bvec
->
bv_offset
)
if
(
off
<
bvec
->
bv_offset
)
goto
next_bh
;
goto
next_bh
;
if
(
off
>
end
)
if
(
off
>
end
)
break
;
break
;
bh
->
b_end_io
(
bh
,
!
error
);
bh
->
b_end_io
(
bh
,
!
error
);
next_bh:
next_bh:
off
+=
b
h
->
b_
size
;
off
+=
bsize
;
}
while
((
bh
=
bh
->
b_this_page
)
!=
head
);
}
while
((
bh
=
next
)
!=
head
);
}
}
/*
/*
...
@@ -1040,6 +1049,20 @@ xfs_vm_releasepage(
...
@@ -1040,6 +1049,20 @@ xfs_vm_releasepage(
trace_xfs_releasepage
(
page
->
mapping
->
host
,
page
,
0
,
0
);
trace_xfs_releasepage
(
page
->
mapping
->
host
,
page
,
0
,
0
);
/*
* mm accommodates an old ext3 case where clean pages might not have had
* the dirty bit cleared. Thus, it can send actual dirty pages to
* ->releasepage() via shrink_active_list(). Conversely,
* block_invalidatepage() can send pages that are still marked dirty
* but otherwise have invalidated buffers.
*
* We've historically freed buffers on the latter. Instead, quietly
* filter out all dirty pages to avoid spurious buffer state warnings.
* This can likely be removed once shrink_active_list() is fixed.
*/
if
(
PageDirty
(
page
))
return
0
;
xfs_count_page_state
(
page
,
&
delalloc
,
&
unwritten
);
xfs_count_page_state
(
page
,
&
delalloc
,
&
unwritten
);
if
(
WARN_ON_ONCE
(
delalloc
))
if
(
WARN_ON_ONCE
(
delalloc
))
...
...
fs/xfs/xfs_buf_item.c
View file @
f2bdfda9
...
@@ -957,6 +957,7 @@ xfs_buf_item_free(
...
@@ -957,6 +957,7 @@ xfs_buf_item_free(
xfs_buf_log_item_t
*
bip
)
xfs_buf_log_item_t
*
bip
)
{
{
xfs_buf_item_free_format
(
bip
);
xfs_buf_item_free_format
(
bip
);
kmem_free
(
bip
->
bli_item
.
li_lv_shadow
);
kmem_zone_free
(
xfs_buf_item_zone
,
bip
);
kmem_zone_free
(
xfs_buf_item_zone
,
bip
);
}
}
...
...
fs/xfs/xfs_dquot.c
View file @
f2bdfda9
...
@@ -74,6 +74,7 @@ xfs_qm_dqdestroy(
...
@@ -74,6 +74,7 @@ xfs_qm_dqdestroy(
{
{
ASSERT
(
list_empty
(
&
dqp
->
q_lru
));
ASSERT
(
list_empty
(
&
dqp
->
q_lru
));
kmem_free
(
dqp
->
q_logitem
.
qli_item
.
li_lv_shadow
);
mutex_destroy
(
&
dqp
->
q_qlock
);
mutex_destroy
(
&
dqp
->
q_qlock
);
XFS_STATS_DEC
(
dqp
->
q_mount
,
xs_qm_dquot
);
XFS_STATS_DEC
(
dqp
->
q_mount
,
xs_qm_dquot
);
...
...
fs/xfs/xfs_dquot_item.c
View file @
f2bdfda9
...
@@ -370,6 +370,8 @@ xfs_qm_qoffend_logitem_committed(
...
@@ -370,6 +370,8 @@ xfs_qm_qoffend_logitem_committed(
spin_lock
(
&
ailp
->
xa_lock
);
spin_lock
(
&
ailp
->
xa_lock
);
xfs_trans_ail_delete
(
ailp
,
&
qfs
->
qql_item
,
SHUTDOWN_LOG_IO_ERROR
);
xfs_trans_ail_delete
(
ailp
,
&
qfs
->
qql_item
,
SHUTDOWN_LOG_IO_ERROR
);
kmem_free
(
qfs
->
qql_item
.
li_lv_shadow
);
kmem_free
(
lip
->
li_lv_shadow
);
kmem_free
(
qfs
);
kmem_free
(
qfs
);
kmem_free
(
qfe
);
kmem_free
(
qfe
);
return
(
xfs_lsn_t
)
-
1
;
return
(
xfs_lsn_t
)
-
1
;
...
...
fs/xfs/xfs_extfree_item.c
View file @
f2bdfda9
...
@@ -40,6 +40,7 @@ void
...
@@ -40,6 +40,7 @@ void
xfs_efi_item_free
(
xfs_efi_item_free
(
struct
xfs_efi_log_item
*
efip
)
struct
xfs_efi_log_item
*
efip
)
{
{
kmem_free
(
efip
->
efi_item
.
li_lv_shadow
);
if
(
efip
->
efi_format
.
efi_nextents
>
XFS_EFI_MAX_FAST_EXTENTS
)
if
(
efip
->
efi_format
.
efi_nextents
>
XFS_EFI_MAX_FAST_EXTENTS
)
kmem_free
(
efip
);
kmem_free
(
efip
);
else
else
...
@@ -300,6 +301,7 @@ static inline struct xfs_efd_log_item *EFD_ITEM(struct xfs_log_item *lip)
...
@@ -300,6 +301,7 @@ static inline struct xfs_efd_log_item *EFD_ITEM(struct xfs_log_item *lip)
STATIC
void
STATIC
void
xfs_efd_item_free
(
struct
xfs_efd_log_item
*
efdp
)
xfs_efd_item_free
(
struct
xfs_efd_log_item
*
efdp
)
{
{
kmem_free
(
efdp
->
efd_item
.
li_lv_shadow
);
if
(
efdp
->
efd_format
.
efd_nextents
>
XFS_EFD_MAX_FAST_EXTENTS
)
if
(
efdp
->
efd_format
.
efd_nextents
>
XFS_EFD_MAX_FAST_EXTENTS
)
kmem_free
(
efdp
);
kmem_free
(
efdp
);
else
else
...
...
fs/xfs/xfs_file.c
View file @
f2bdfda9
...
@@ -327,7 +327,7 @@ xfs_file_dio_aio_read(
...
@@ -327,7 +327,7 @@ xfs_file_dio_aio_read(
return
ret
;
return
ret
;
}
}
STATIC
ssize_t
static
noinline
ssize_t
xfs_file_dax_read
(
xfs_file_dax_read
(
struct
kiocb
*
iocb
,
struct
kiocb
*
iocb
,
struct
iov_iter
*
to
)
struct
iov_iter
*
to
)
...
@@ -706,7 +706,7 @@ xfs_file_dio_aio_write(
...
@@ -706,7 +706,7 @@ xfs_file_dio_aio_write(
return
ret
;
return
ret
;
}
}
STATIC
ssize_t
static
noinline
ssize_t
xfs_file_dax_write
(
xfs_file_dax_write
(
struct
kiocb
*
iocb
,
struct
kiocb
*
iocb
,
struct
iov_iter
*
from
)
struct
iov_iter
*
from
)
...
...
fs/xfs/xfs_inode_item.c
View file @
f2bdfda9
...
@@ -651,6 +651,7 @@ void
...
@@ -651,6 +651,7 @@ void
xfs_inode_item_destroy
(
xfs_inode_item_destroy
(
xfs_inode_t
*
ip
)
xfs_inode_t
*
ip
)
{
{
kmem_free
(
ip
->
i_itemp
->
ili_item
.
li_lv_shadow
);
kmem_zone_free
(
xfs_ili_zone
,
ip
->
i_itemp
);
kmem_zone_free
(
xfs_ili_zone
,
ip
->
i_itemp
);
}
}
...
...
fs/xfs/xfs_log_cil.c
View file @
f2bdfda9
This diff is collapsed.
Click to expand it.
fs/xfs/xfs_super.c
View file @
f2bdfda9
...
@@ -1573,10 +1573,6 @@ xfs_fs_fill_super(
...
@@ -1573,10 +1573,6 @@ xfs_fs_fill_super(
}
}
}
}
if
(
xfs_sb_version_hassparseinodes
(
&
mp
->
m_sb
))
xfs_alert
(
mp
,
"EXPERIMENTAL sparse inode feature enabled. Use at your own risk!"
);
error
=
xfs_mountfs
(
mp
);
error
=
xfs_mountfs
(
mp
);
if
(
error
)
if
(
error
)
goto
out_filestream_unmount
;
goto
out_filestream_unmount
;
...
...
fs/xfs/xfs_trans.h
View file @
f2bdfda9
...
@@ -52,6 +52,7 @@ typedef struct xfs_log_item {
...
@@ -52,6 +52,7 @@ typedef struct xfs_log_item {
/* delayed logging */
/* delayed logging */
struct
list_head
li_cil
;
/* CIL pointers */
struct
list_head
li_cil
;
/* CIL pointers */
struct
xfs_log_vec
*
li_lv
;
/* active log vector */
struct
xfs_log_vec
*
li_lv
;
/* active log vector */
struct
xfs_log_vec
*
li_lv_shadow
;
/* standby vector */
xfs_lsn_t
li_seq
;
/* CIL commit seq */
xfs_lsn_t
li_seq
;
/* CIL commit seq */
}
xfs_log_item_t
;
}
xfs_log_item_t
;
...
...
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