struct reada_extent {
u64 logical;
struct btrfs_key top;
- u32 blocksize;
int err;
struct list_head extctl;
int refcnt;
blocksize = root->nodesize;
re->logical = logical;
- re->blocksize = blocksize;
re->top = *top;
INIT_LIST_HEAD(&re->extctl);
spin_lock_init(&re->lock);
int mirror_num = 0;
struct extent_buffer *eb = NULL;
u64 logical;
- u32 blocksize;
int ret;
int i;
int need_kick = 0;
spin_unlock(&fs_info->reada_lock);
return 0;
}
- dev->reada_next = re->logical + re->blocksize;
+ dev->reada_next = re->logical + fs_info->tree_root->nodesize;
re->refcnt++;
spin_unlock(&fs_info->reada_lock);
}
}
logical = re->logical;
- blocksize = re->blocksize;
spin_lock(&re->lock);
if (re->scheduled_for == NULL) {
return 0;
atomic_inc(&dev->reada_in_flight);
- ret = reada_tree_block_flagged(fs_info->extent_root, logical, blocksize,
- mirror_num, &eb);
+ ret = reada_tree_block_flagged(fs_info->extent_root, logical,
+ fs_info->tree_root->nodesize, mirror_num, &eb);
if (ret)
__readahead_hook(fs_info->extent_root, NULL, logical, ret);
else if (eb)
break;
printk(KERN_DEBUG
" re: logical %llu size %u empty %d for %lld",
- re->logical, re->blocksize,
+ re->logical, fs_info->tree_root->nodesize,
list_empty(&re->extctl), re->scheduled_for ?
re->scheduled_for->devid : -1);
}
printk(KERN_DEBUG
"re: logical %llu size %u list empty %d for %lld",
- re->logical, re->blocksize, list_empty(&re->extctl),
+ re->logical, fs_info->tree_root->nodesize,
+ list_empty(&re->extctl),
re->scheduled_for ? re->scheduled_for->devid : -1);
for (i = 0; i < re->nzones; ++i) {
printk(KERN_CONT " zone %llu-%llu devs",