Update Linux to v5.10.109
Sourced from [1]
[1] https://cdn.kernel.org/pub/linux/kernel/v5.x/linux-5.10.109.tar.xz
Change-Id: I19bca9fc6762d4e63bcf3e4cba88bbe560d9c76c
Signed-off-by: Olivier Deprez <olivier.deprez@arm.com>
diff --git a/fs/btrfs/ordered-data.c b/fs/btrfs/ordered-data.c
index 00e1ef4..87bac9e 100644
--- a/fs/btrfs/ordered-data.c
+++ b/fs/btrfs/ordered-data.c
@@ -15,14 +15,15 @@
#include "disk-io.h"
#include "compression.h"
#include "delalloc-space.h"
+#include "qgroup.h"
static struct kmem_cache *btrfs_ordered_extent_cache;
static u64 entry_end(struct btrfs_ordered_extent *entry)
{
- if (entry->file_offset + entry->len < entry->file_offset)
+ if (entry->file_offset + entry->num_bytes < entry->file_offset)
return (u64)-1;
- return entry->file_offset + entry->len;
+ return entry->file_offset + entry->num_bytes;
}
/* returns NULL if the insertion worked, or it returns the node it did find
@@ -52,14 +53,6 @@
return NULL;
}
-static void ordered_data_tree_panic(struct inode *inode, int errno,
- u64 offset)
-{
- struct btrfs_fs_info *fs_info = btrfs_sb(inode->i_sb);
- btrfs_panic(fs_info, errno,
- "Inconsistency in ordered tree at offset %llu", offset);
-}
-
/*
* look for a given offset in the tree, and if it can't be found return the
* first lesser offset
@@ -120,7 +113,7 @@
static int offset_in_entry(struct btrfs_ordered_extent *entry, u64 file_offset)
{
if (file_offset < entry->file_offset ||
- entry->file_offset + entry->len <= file_offset)
+ entry->file_offset + entry->num_bytes <= file_offset)
return 0;
return 1;
}
@@ -129,7 +122,7 @@
u64 len)
{
if (file_offset + len <= entry->file_offset ||
- entry->file_offset + entry->len <= file_offset)
+ entry->file_offset + entry->num_bytes <= file_offset)
return 0;
return 1;
}
@@ -160,45 +153,57 @@
return ret;
}
-/* allocate and add a new ordered_extent into the per-inode tree.
- * file_offset is the logical offset in the file
- *
- * start is the disk block number of an extent already reserved in the
- * extent allocation tree
- *
- * len is the length of the extent
+/*
+ * Allocate and add a new ordered_extent into the per-inode tree.
*
* The tree is given a single reference on the ordered extent that was
* inserted.
*/
-static int __btrfs_add_ordered_extent(struct inode *inode, u64 file_offset,
- u64 start, u64 len, u64 disk_len,
- int type, int dio, int compress_type)
+static int __btrfs_add_ordered_extent(struct btrfs_inode *inode, u64 file_offset,
+ u64 disk_bytenr, u64 num_bytes,
+ u64 disk_num_bytes, int type, int dio,
+ int compress_type)
{
- struct btrfs_fs_info *fs_info = btrfs_sb(inode->i_sb);
- struct btrfs_root *root = BTRFS_I(inode)->root;
- struct btrfs_ordered_inode_tree *tree;
+ struct btrfs_root *root = inode->root;
+ struct btrfs_fs_info *fs_info = root->fs_info;
+ struct btrfs_ordered_inode_tree *tree = &inode->ordered_tree;
struct rb_node *node;
struct btrfs_ordered_extent *entry;
+ int ret;
- tree = &BTRFS_I(inode)->ordered_tree;
+ if (type == BTRFS_ORDERED_NOCOW || type == BTRFS_ORDERED_PREALLOC) {
+ /* For nocow write, we can release the qgroup rsv right now */
+ ret = btrfs_qgroup_free_data(inode, NULL, file_offset, num_bytes);
+ if (ret < 0)
+ return ret;
+ ret = 0;
+ } else {
+ /*
+ * The ordered extent has reserved qgroup space, release now
+ * and pass the reserved number for qgroup_record to free.
+ */
+ ret = btrfs_qgroup_release_data(inode, file_offset, num_bytes);
+ if (ret < 0)
+ return ret;
+ }
entry = kmem_cache_zalloc(btrfs_ordered_extent_cache, GFP_NOFS);
if (!entry)
return -ENOMEM;
entry->file_offset = file_offset;
- entry->start = start;
- entry->len = len;
- entry->disk_len = disk_len;
- entry->bytes_left = len;
- entry->inode = igrab(inode);
+ entry->disk_bytenr = disk_bytenr;
+ entry->num_bytes = num_bytes;
+ entry->disk_num_bytes = disk_num_bytes;
+ entry->bytes_left = num_bytes;
+ entry->inode = igrab(&inode->vfs_inode);
entry->compress_type = compress_type;
entry->truncated_len = (u64)-1;
+ entry->qgroup_rsv = ret;
if (type != BTRFS_ORDERED_IO_DONE && type != BTRFS_ORDERED_COMPLETE)
set_bit(type, &entry->flags);
if (dio) {
- percpu_counter_add_batch(&fs_info->dio_bytes, len,
+ percpu_counter_add_batch(&fs_info->dio_bytes, num_bytes,
fs_info->delalloc_batch);
set_bit(BTRFS_ORDERED_DIRECT, &entry->flags);
}
@@ -207,11 +212,10 @@
refcount_set(&entry->refs, 1);
init_waitqueue_head(&entry->wait);
INIT_LIST_HEAD(&entry->list);
+ INIT_LIST_HEAD(&entry->log_list);
INIT_LIST_HEAD(&entry->root_extent_list);
INIT_LIST_HEAD(&entry->work_list);
init_completion(&entry->completion);
- INIT_LIST_HEAD(&entry->log_list);
- INIT_LIST_HEAD(&entry->trans_list);
trace_btrfs_ordered_extent_add(inode, entry);
@@ -219,7 +223,9 @@
node = tree_insert(&tree->tree, file_offset,
&entry->rb_node);
if (node)
- ordered_data_tree_panic(inode, -EEXIST, file_offset);
+ btrfs_panic(fs_info, -EEXIST,
+ "inconsistency in ordered tree at offset %llu",
+ file_offset);
spin_unlock_irq(&tree->lock);
spin_lock(&root->ordered_extent_lock);
@@ -239,35 +245,38 @@
* that work has been done at higher layers, so this is truly the
* smallest the extent is going to get.
*/
- spin_lock(&BTRFS_I(inode)->lock);
- btrfs_mod_outstanding_extents(BTRFS_I(inode), 1);
- spin_unlock(&BTRFS_I(inode)->lock);
+ spin_lock(&inode->lock);
+ btrfs_mod_outstanding_extents(inode, 1);
+ spin_unlock(&inode->lock);
return 0;
}
-int btrfs_add_ordered_extent(struct inode *inode, u64 file_offset,
- u64 start, u64 len, u64 disk_len, int type)
+int btrfs_add_ordered_extent(struct btrfs_inode *inode, u64 file_offset,
+ u64 disk_bytenr, u64 num_bytes, u64 disk_num_bytes,
+ int type)
{
- return __btrfs_add_ordered_extent(inode, file_offset, start, len,
- disk_len, type, 0,
+ return __btrfs_add_ordered_extent(inode, file_offset, disk_bytenr,
+ num_bytes, disk_num_bytes, type, 0,
BTRFS_COMPRESS_NONE);
}
-int btrfs_add_ordered_extent_dio(struct inode *inode, u64 file_offset,
- u64 start, u64 len, u64 disk_len, int type)
+int btrfs_add_ordered_extent_dio(struct btrfs_inode *inode, u64 file_offset,
+ u64 disk_bytenr, u64 num_bytes,
+ u64 disk_num_bytes, int type)
{
- return __btrfs_add_ordered_extent(inode, file_offset, start, len,
- disk_len, type, 1,
+ return __btrfs_add_ordered_extent(inode, file_offset, disk_bytenr,
+ num_bytes, disk_num_bytes, type, 1,
BTRFS_COMPRESS_NONE);
}
-int btrfs_add_ordered_extent_compress(struct inode *inode, u64 file_offset,
- u64 start, u64 len, u64 disk_len,
- int type, int compress_type)
+int btrfs_add_ordered_extent_compress(struct btrfs_inode *inode, u64 file_offset,
+ u64 disk_bytenr, u64 num_bytes,
+ u64 disk_num_bytes, int type,
+ int compress_type)
{
- return __btrfs_add_ordered_extent(inode, file_offset, start, len,
- disk_len, type, 0,
+ return __btrfs_add_ordered_extent(inode, file_offset, disk_bytenr,
+ num_bytes, disk_num_bytes, type, 0,
compress_type);
}
@@ -299,12 +308,12 @@
* file_offset is updated to one byte past the range that is recorded as
* complete. This allows you to walk forward in the file.
*/
-int btrfs_dec_test_first_ordered_pending(struct inode *inode,
+int btrfs_dec_test_first_ordered_pending(struct btrfs_inode *inode,
struct btrfs_ordered_extent **cached,
u64 *file_offset, u64 io_size, int uptodate)
{
- struct btrfs_fs_info *fs_info = btrfs_sb(inode->i_sb);
- struct btrfs_ordered_inode_tree *tree;
+ struct btrfs_fs_info *fs_info = inode->root->fs_info;
+ struct btrfs_ordered_inode_tree *tree = &inode->ordered_tree;
struct rb_node *node;
struct btrfs_ordered_extent *entry = NULL;
int ret;
@@ -313,7 +322,6 @@
u64 dec_start;
u64 to_dec;
- tree = &BTRFS_I(inode)->ordered_tree;
spin_lock_irqsave(&tree->lock, flags);
node = tree_search(tree, *file_offset);
if (!node) {
@@ -328,8 +336,8 @@
}
dec_start = max(*file_offset, entry->file_offset);
- dec_end = min(*file_offset + io_size, entry->file_offset +
- entry->len);
+ dec_end = min(*file_offset + io_size,
+ entry->file_offset + entry->num_bytes);
*file_offset = dec_end;
if (dec_start > dec_end) {
btrfs_crit(fs_info, "bad ordering dec_start %llu end %llu",
@@ -370,17 +378,16 @@
* test_and_set_bit on a flag in the struct btrfs_ordered_extent is used
* to make sure this function only returns 1 once for a given ordered extent.
*/
-int btrfs_dec_test_ordered_pending(struct inode *inode,
+int btrfs_dec_test_ordered_pending(struct btrfs_inode *inode,
struct btrfs_ordered_extent **cached,
u64 file_offset, u64 io_size, int uptodate)
{
- struct btrfs_ordered_inode_tree *tree;
+ struct btrfs_ordered_inode_tree *tree = &inode->ordered_tree;
struct rb_node *node;
struct btrfs_ordered_extent *entry = NULL;
unsigned long flags;
int ret;
- tree = &BTRFS_I(inode)->ordered_tree;
spin_lock_irqsave(&tree->lock, flags);
if (cached && *cached) {
entry = *cached;
@@ -401,7 +408,7 @@
}
if (io_size > entry->bytes_left) {
- btrfs_crit(BTRFS_I(inode)->root->fs_info,
+ btrfs_crit(inode->root->fs_info,
"bad ordered accounting left %llu size %llu",
entry->bytes_left, io_size);
}
@@ -434,12 +441,11 @@
struct list_head *cur;
struct btrfs_ordered_sum *sum;
- trace_btrfs_ordered_extent_put(entry->inode, entry);
+ trace_btrfs_ordered_extent_put(BTRFS_I(entry->inode), entry);
if (refcount_dec_and_test(&entry->refs)) {
- ASSERT(list_empty(&entry->log_list));
- ASSERT(list_empty(&entry->trans_list));
ASSERT(list_empty(&entry->root_extent_list));
+ ASSERT(list_empty(&entry->log_list));
ASSERT(RB_EMPTY_NODE(&entry->rb_node));
if (entry->inode)
btrfs_add_delayed_iput(entry->inode);
@@ -457,24 +463,25 @@
* remove an ordered extent from the tree. No references are dropped
* and waiters are woken up.
*/
-void btrfs_remove_ordered_extent(struct inode *inode,
+void btrfs_remove_ordered_extent(struct btrfs_inode *btrfs_inode,
struct btrfs_ordered_extent *entry)
{
- struct btrfs_fs_info *fs_info = btrfs_sb(inode->i_sb);
struct btrfs_ordered_inode_tree *tree;
- struct btrfs_inode *btrfs_inode = BTRFS_I(inode);
struct btrfs_root *root = btrfs_inode->root;
+ struct btrfs_fs_info *fs_info = root->fs_info;
struct rb_node *node;
+ bool pending;
/* This is paired with btrfs_add_ordered_extent. */
spin_lock(&btrfs_inode->lock);
btrfs_mod_outstanding_extents(btrfs_inode, -1);
spin_unlock(&btrfs_inode->lock);
if (root != fs_info->tree_root)
- btrfs_delalloc_release_metadata(btrfs_inode, entry->len, false);
+ btrfs_delalloc_release_metadata(btrfs_inode, entry->num_bytes,
+ false);
if (test_bit(BTRFS_ORDERED_DIRECT, &entry->flags))
- percpu_counter_add_batch(&fs_info->dio_bytes, -entry->len,
+ percpu_counter_add_batch(&fs_info->dio_bytes, -entry->num_bytes,
fs_info->delalloc_batch);
tree = &btrfs_inode->ordered_tree;
@@ -485,13 +492,41 @@
if (tree->last == node)
tree->last = NULL;
set_bit(BTRFS_ORDERED_COMPLETE, &entry->flags);
+ pending = test_and_clear_bit(BTRFS_ORDERED_PENDING, &entry->flags);
spin_unlock_irq(&tree->lock);
+ /*
+ * The current running transaction is waiting on us, we need to let it
+ * know that we're complete and wake it up.
+ */
+ if (pending) {
+ struct btrfs_transaction *trans;
+
+ /*
+ * The checks for trans are just a formality, it should be set,
+ * but if it isn't we don't want to deref/assert under the spin
+ * lock, so be nice and check if trans is set, but ASSERT() so
+ * if it isn't set a developer will notice.
+ */
+ spin_lock(&fs_info->trans_lock);
+ trans = fs_info->running_transaction;
+ if (trans)
+ refcount_inc(&trans->use_count);
+ spin_unlock(&fs_info->trans_lock);
+
+ ASSERT(trans);
+ if (trans) {
+ if (atomic_dec_and_test(&trans->pending_ordered))
+ wake_up(&trans->pending_wait);
+ btrfs_put_transaction(trans);
+ }
+ }
+
spin_lock(&root->ordered_extent_lock);
list_del_init(&entry->root_extent_list);
root->nr_ordered_extents--;
- trace_btrfs_ordered_extent_remove(inode, entry);
+ trace_btrfs_ordered_extent_remove(btrfs_inode, entry);
if (!root->nr_ordered_extents) {
spin_lock(&fs_info->ordered_root_lock);
@@ -508,7 +543,7 @@
struct btrfs_ordered_extent *ordered;
ordered = container_of(work, struct btrfs_ordered_extent, flush_work);
- btrfs_start_ordered_extent(ordered->inode, ordered, 1);
+ btrfs_start_ordered_extent(ordered, 1);
complete(&ordered->completion);
}
@@ -534,8 +569,8 @@
ordered = list_first_entry(&splice, struct btrfs_ordered_extent,
root_extent_list);
- if (range_end <= ordered->start ||
- ordered->start + ordered->disk_len <= range_start) {
+ if (range_end <= ordered->disk_bytenr ||
+ ordered->disk_bytenr + ordered->disk_num_bytes <= range_start) {
list_move_tail(&ordered->root_extent_list, &skipped);
cond_resched_lock(&root->ordered_extent_lock);
continue;
@@ -572,12 +607,11 @@
return count;
}
-u64 btrfs_wait_ordered_roots(struct btrfs_fs_info *fs_info, u64 nr,
+void btrfs_wait_ordered_roots(struct btrfs_fs_info *fs_info, u64 nr,
const u64 range_start, const u64 range_len)
{
struct btrfs_root *root;
struct list_head splice;
- u64 total_done = 0;
u64 done;
INIT_LIST_HEAD(&splice);
@@ -588,7 +622,7 @@
while (!list_empty(&splice) && nr) {
root = list_first_entry(&splice, struct btrfs_root,
ordered_root);
- root = btrfs_grab_fs_root(root);
+ root = btrfs_grab_root(root);
BUG_ON(!root);
list_move_tail(&root->ordered_root,
&fs_info->ordered_roots);
@@ -596,8 +630,7 @@
done = btrfs_wait_ordered_extents(root, nr,
range_start, range_len);
- btrfs_put_fs_root(root);
- total_done += done;
+ btrfs_put_root(root);
spin_lock(&fs_info->ordered_root_lock);
if (nr != U64_MAX) {
@@ -607,8 +640,6 @@
list_splice_tail(&splice, &fs_info->ordered_roots);
spin_unlock(&fs_info->ordered_root_lock);
mutex_unlock(&fs_info->ordered_operations_mutex);
-
- return total_done;
}
/*
@@ -618,12 +649,11 @@
* in the extent, and it waits on the io completion code to insert
* metadata into the btree corresponding to the extent
*/
-void btrfs_start_ordered_extent(struct inode *inode,
- struct btrfs_ordered_extent *entry,
- int wait)
+void btrfs_start_ordered_extent(struct btrfs_ordered_extent *entry, int wait)
{
u64 start = entry->file_offset;
- u64 end = start + entry->len - 1;
+ u64 end = start + entry->num_bytes - 1;
+ struct btrfs_inode *inode = BTRFS_I(entry->inode);
trace_btrfs_ordered_extent_start(inode, entry);
@@ -633,7 +663,7 @@
* for the flusher thread to find them
*/
if (!test_bit(BTRFS_ORDERED_DIRECT, &entry->flags))
- filemap_fdatawrite_range(inode->i_mapping, start, end);
+ filemap_fdatawrite_range(inode->vfs_inode.i_mapping, start, end);
if (wait) {
wait_event(entry->wait, test_bit(BTRFS_ORDERED_COMPLETE,
&entry->flags));
@@ -677,18 +707,18 @@
end = orig_end;
while (1) {
- ordered = btrfs_lookup_first_ordered_extent(inode, end);
+ ordered = btrfs_lookup_first_ordered_extent(BTRFS_I(inode), end);
if (!ordered)
break;
if (ordered->file_offset > orig_end) {
btrfs_put_ordered_extent(ordered);
break;
}
- if (ordered->file_offset + ordered->len <= start) {
+ if (ordered->file_offset + ordered->num_bytes <= start) {
btrfs_put_ordered_extent(ordered);
break;
}
- btrfs_start_ordered_extent(inode, ordered, 1);
+ btrfs_start_ordered_extent(ordered, 1);
end = ordered->file_offset;
/*
* If the ordered extent had an error save the error but don't
@@ -709,14 +739,14 @@
* find an ordered extent corresponding to file_offset. return NULL if
* nothing is found, otherwise take a reference on the extent and return it
*/
-struct btrfs_ordered_extent *btrfs_lookup_ordered_extent(struct inode *inode,
+struct btrfs_ordered_extent *btrfs_lookup_ordered_extent(struct btrfs_inode *inode,
u64 file_offset)
{
struct btrfs_ordered_inode_tree *tree;
struct rb_node *node;
struct btrfs_ordered_extent *entry = NULL;
- tree = &BTRFS_I(inode)->ordered_tree;
+ tree = &inode->ordered_tree;
spin_lock_irq(&tree->lock);
node = tree_search(tree, file_offset);
if (!node)
@@ -773,17 +803,45 @@
}
/*
+ * Adds all ordered extents to the given list. The list ends up sorted by the
+ * file_offset of the ordered extents.
+ */
+void btrfs_get_ordered_extents_for_logging(struct btrfs_inode *inode,
+ struct list_head *list)
+{
+ struct btrfs_ordered_inode_tree *tree = &inode->ordered_tree;
+ struct rb_node *n;
+
+ ASSERT(inode_is_locked(&inode->vfs_inode));
+
+ spin_lock_irq(&tree->lock);
+ for (n = rb_first(&tree->tree); n; n = rb_next(n)) {
+ struct btrfs_ordered_extent *ordered;
+
+ ordered = rb_entry(n, struct btrfs_ordered_extent, rb_node);
+
+ if (test_bit(BTRFS_ORDERED_LOGGED, &ordered->flags))
+ continue;
+
+ ASSERT(list_empty(&ordered->log_list));
+ list_add_tail(&ordered->log_list, list);
+ refcount_inc(&ordered->refs);
+ }
+ spin_unlock_irq(&tree->lock);
+}
+
+/*
* lookup and return any extent before 'file_offset'. NULL is returned
* if none is found
*/
struct btrfs_ordered_extent *
-btrfs_lookup_first_ordered_extent(struct inode *inode, u64 file_offset)
+btrfs_lookup_first_ordered_extent(struct btrfs_inode *inode, u64 file_offset)
{
struct btrfs_ordered_inode_tree *tree;
struct rb_node *node;
struct btrfs_ordered_extent *entry = NULL;
- tree = &BTRFS_I(inode)->ordered_tree;
+ tree = &inode->ordered_tree;
spin_lock_irq(&tree->lock);
node = tree_search(tree, file_offset);
if (!node)
@@ -797,148 +855,21 @@
}
/*
- * After an extent is done, call this to conditionally update the on disk
- * i_size. i_size is updated to cover any fully written part of the file.
- */
-int btrfs_ordered_update_i_size(struct inode *inode, u64 offset,
- struct btrfs_ordered_extent *ordered)
-{
- struct btrfs_ordered_inode_tree *tree = &BTRFS_I(inode)->ordered_tree;
- u64 disk_i_size;
- u64 new_i_size;
- u64 i_size = i_size_read(inode);
- struct rb_node *node;
- struct rb_node *prev = NULL;
- struct btrfs_ordered_extent *test;
- int ret = 1;
- u64 orig_offset = offset;
-
- spin_lock_irq(&tree->lock);
- if (ordered) {
- offset = entry_end(ordered);
- if (test_bit(BTRFS_ORDERED_TRUNCATED, &ordered->flags))
- offset = min(offset,
- ordered->file_offset +
- ordered->truncated_len);
- } else {
- offset = ALIGN(offset, btrfs_inode_sectorsize(inode));
- }
- disk_i_size = BTRFS_I(inode)->disk_i_size;
-
- /*
- * truncate file.
- * If ordered is not NULL, then this is called from endio and
- * disk_i_size will be updated by either truncate itself or any
- * in-flight IOs which are inside the disk_i_size.
- *
- * Because btrfs_setsize() may set i_size with disk_i_size if truncate
- * fails somehow, we need to make sure we have a precise disk_i_size by
- * updating it as usual.
- *
- */
- if (!ordered && disk_i_size > i_size) {
- BTRFS_I(inode)->disk_i_size = orig_offset;
- ret = 0;
- goto out;
- }
-
- /*
- * if the disk i_size is already at the inode->i_size, or
- * this ordered extent is inside the disk i_size, we're done
- */
- if (disk_i_size == i_size)
- goto out;
-
- /*
- * We still need to update disk_i_size if outstanding_isize is greater
- * than disk_i_size.
- */
- if (offset <= disk_i_size &&
- (!ordered || ordered->outstanding_isize <= disk_i_size))
- goto out;
-
- /*
- * walk backward from this ordered extent to disk_i_size.
- * if we find an ordered extent then we can't update disk i_size
- * yet
- */
- if (ordered) {
- node = rb_prev(&ordered->rb_node);
- } else {
- prev = tree_search(tree, offset);
- /*
- * we insert file extents without involving ordered struct,
- * so there should be no ordered struct cover this offset
- */
- if (prev) {
- test = rb_entry(prev, struct btrfs_ordered_extent,
- rb_node);
- BUG_ON(offset_in_entry(test, offset));
- }
- node = prev;
- }
- for (; node; node = rb_prev(node)) {
- test = rb_entry(node, struct btrfs_ordered_extent, rb_node);
-
- /* We treat this entry as if it doesn't exist */
- if (test_bit(BTRFS_ORDERED_UPDATED_ISIZE, &test->flags))
- continue;
-
- if (entry_end(test) <= disk_i_size)
- break;
- if (test->file_offset >= i_size)
- break;
-
- /*
- * We don't update disk_i_size now, so record this undealt
- * i_size. Or we will not know the real i_size.
- */
- if (test->outstanding_isize < offset)
- test->outstanding_isize = offset;
- if (ordered &&
- ordered->outstanding_isize > test->outstanding_isize)
- test->outstanding_isize = ordered->outstanding_isize;
- goto out;
- }
- new_i_size = min_t(u64, offset, i_size);
-
- /*
- * Some ordered extents may completed before the current one, and
- * we hold the real i_size in ->outstanding_isize.
- */
- if (ordered && ordered->outstanding_isize > new_i_size)
- new_i_size = min_t(u64, ordered->outstanding_isize, i_size);
- BTRFS_I(inode)->disk_i_size = new_i_size;
- ret = 0;
-out:
- /*
- * We need to do this because we can't remove ordered extents until
- * after the i_disk_size has been updated and then the inode has been
- * updated to reflect the change, so we need to tell anybody who finds
- * this ordered extent that we've already done all the real work, we
- * just haven't completed all the other work.
- */
- if (ordered)
- set_bit(BTRFS_ORDERED_UPDATED_ISIZE, &ordered->flags);
- spin_unlock_irq(&tree->lock);
- return ret;
-}
-
-/*
* search the ordered extents for one corresponding to 'offset' and
* try to find a checksum. This is used because we allow pages to
* be reclaimed before their checksum is actually put into the btree
*/
-int btrfs_find_ordered_sum(struct inode *inode, u64 offset, u64 disk_bytenr,
- u8 *sum, int len)
+int btrfs_find_ordered_sum(struct btrfs_inode *inode, u64 offset,
+ u64 disk_bytenr, u8 *sum, int len)
{
- struct btrfs_fs_info *fs_info = btrfs_sb(inode->i_sb);
+ struct btrfs_fs_info *fs_info = inode->root->fs_info;
struct btrfs_ordered_sum *ordered_sum;
struct btrfs_ordered_extent *ordered;
- struct btrfs_ordered_inode_tree *tree = &BTRFS_I(inode)->ordered_tree;
+ struct btrfs_ordered_inode_tree *tree = &inode->ordered_tree;
unsigned long num_sectors;
unsigned long i;
u32 sectorsize = btrfs_inode_sectorsize(inode);
+ const u8 blocksize_bits = inode->vfs_inode.i_sb->s_blocksize_bits;
const u16 csum_size = btrfs_super_csum_size(fs_info->super_copy);
int index = 0;
@@ -950,10 +881,8 @@
list_for_each_entry_reverse(ordered_sum, &ordered->list, list) {
if (disk_bytenr >= ordered_sum->bytenr &&
disk_bytenr < ordered_sum->bytenr + ordered_sum->len) {
- i = (disk_bytenr - ordered_sum->bytenr) >>
- inode->i_sb->s_blocksize_bits;
- num_sectors = ordered_sum->len >>
- inode->i_sb->s_blocksize_bits;
+ i = (disk_bytenr - ordered_sum->bytenr) >> blocksize_bits;
+ num_sectors = ordered_sum->len >> blocksize_bits;
num_sectors = min_t(int, len - index, num_sectors - i);
memcpy(sum + index, ordered_sum->sums + i * csum_size,
num_sectors * csum_size);
@@ -974,7 +903,6 @@
* btrfs_flush_ordered_range - Lock the passed range and ensures all pending
* ordered extents in it are run to completion.
*
- * @tree: IO tree used for locking out other users of the range
* @inode: Inode whose ordered tree is to be searched
* @start: Beginning of range to flush
* @end: Last byte of range to lock
@@ -984,8 +912,7 @@
* This function always returns with the given range locked, ensuring after it's
* called no order extent can be pending.
*/
-void btrfs_lock_and_flush_ordered_range(struct extent_io_tree *tree,
- struct btrfs_inode *inode, u64 start,
+void btrfs_lock_and_flush_ordered_range(struct btrfs_inode *inode, u64 start,
u64 end,
struct extent_state **cached_state)
{
@@ -997,7 +924,7 @@
cachedp = cached_state;
while (1) {
- lock_extent_bits(tree, start, end, cachedp);
+ lock_extent_bits(&inode->io_tree, start, end, cachedp);
ordered = btrfs_lookup_ordered_range(inode, start,
end - start + 1);
if (!ordered) {
@@ -1010,8 +937,8 @@
refcount_dec(&cache->refs);
break;
}
- unlock_extent_cached(tree, start, end, cachedp);
- btrfs_start_ordered_extent(&inode->vfs_inode, ordered, 1);
+ unlock_extent_cached(&inode->io_tree, start, end, cachedp);
+ btrfs_start_ordered_extent(ordered, 1);
btrfs_put_ordered_extent(ordered);
}
}