caf9dd209f
When receiving a DRR_OBJECT record the receive_object() function needs to determine how to handle a spill block associated with the object. It may need to be removed or kept depending on how the object was modified at the source. This determination is currently accomplished using a heuristic which takes in to account the DRR_OBJECT record and the existing object properties. This is a problem because there isn't quite enough information available to do the right thing under all circumstances. For example, when only the block size changes the spill block is removed when it should be kept. What's needed to resolve this is an additional flag in the DRR_OBJECT which indicates if the object being received references a spill block. The DRR_OBJECT_SPILL flag was added for this purpose. When set then the object references a spill block and it must be kept. Either it is update to date, or it will be replaced by a subsequent DRR_SPILL record. Conversely, if the object being received doesn't reference a spill block then any existing spill block should always be removed. Since previous versions of ZFS do not understand this new flag additional DRR_SPILL records will be inserted in to the stream. This has the advantage of being fully backward compatible. Existing ZFS systems receiving this stream will recreate the spill block if it was incorrectly removed. Updated ZFS versions will correctly ignore the additional spill blocks which can be identified by checking for the DRR_SPILL_UNMODIFIED flag. The small downside to this approach is that is may increase the size of the stream and of the received snapshot on previous versions of ZFS. Additionally, when receiving streams generated by previous unpatched versions of ZFS spill blocks may still be lost. OpenZFS-issue: https://www.illumos.org/issues/9952 FreeBSD-issue: https://bugs.freebsd.org/bugzilla/show_bug.cgi?id=233277 Reviewed-by: Paul Dagnelie <pcd@delphix.com> Reviewed-by: Matt Ahrens <mahrens@delphix.com> Reviewed-by: Tom Caputi <tcaputi@datto.com> Signed-off-by: Brian Behlendorf <behlendorf1@llnl.gov> Closes #8668
290 lines
7.6 KiB
C
290 lines
7.6 KiB
C
/*
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* CDDL HEADER START
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*
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* The contents of this file are subject to the terms of the
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* Common Development and Distribution License (the "License").
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* You may not use this file except in compliance with the License.
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*
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* You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE
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* or http://www.opensolaris.org/os/licensing.
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* See the License for the specific language governing permissions
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* and limitations under the License.
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*
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* When distributing Covered Code, include this CDDL HEADER in each
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* file and include the License file at usr/src/OPENSOLARIS.LICENSE.
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* If applicable, add the following below this CDDL HEADER, with the
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* fields enclosed by brackets "[]" replaced with your own identifying
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* information: Portions Copyright [yyyy] [name of copyright owner]
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*
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* CDDL HEADER END
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*/
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/*
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* Copyright 2010 Sun Microsystems, Inc. All rights reserved.
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* Use is subject to license terms.
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*/
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/*
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* Copyright (c) 2012, Joyent, Inc. All rights reserved.
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* Copyright (c) 2013, 2015 by Delphix. All rights reserved.
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*/
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#ifndef _SYS_DMU_IMPL_H
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#define _SYS_DMU_IMPL_H
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#include <sys/txg_impl.h>
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#include <sys/zio.h>
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#include <sys/dnode.h>
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#include <sys/zfs_context.h>
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#include <sys/zfs_ioctl.h>
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#ifdef __cplusplus
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extern "C" {
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#endif
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/*
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* This is the locking strategy for the DMU. Numbers in parenthesis are
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* cases that use that lock order, referenced below:
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*
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* ARC is self-contained
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* bplist is self-contained
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* refcount is self-contained
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* txg is self-contained (hopefully!)
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* zst_lock
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* zf_rwlock
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*
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* XXX try to improve evicting path?
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*
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* dp_config_rwlock > os_obj_lock > dn_struct_rwlock >
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* dn_dbufs_mtx > hash_mutexes > db_mtx > dd_lock > leafs
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*
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* dp_config_rwlock
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* must be held before: everything
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* protects dd namespace changes
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* protects property changes globally
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* held from:
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* dsl_dir_open/r:
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* dsl_dir_create_sync/w:
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* dsl_dir_sync_destroy/w:
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* dsl_dir_rename_sync/w:
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* dsl_prop_changed_notify/r:
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*
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* os_obj_lock
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* must be held before:
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* everything except dp_config_rwlock
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* protects os_obj_next
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* held from:
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* dmu_object_alloc: dn_dbufs_mtx, db_mtx, hash_mutexes, dn_struct_rwlock
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*
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* dn_struct_rwlock
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* must be held before:
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* everything except dp_config_rwlock and os_obj_lock
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* protects structure of dnode (eg. nlevels)
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* db_blkptr can change when syncing out change to nlevels
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* dn_maxblkid
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* dn_nlevels
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* dn_*blksz*
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* phys nlevels, maxblkid, physical blkptr_t's (?)
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* held from:
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* callers of dbuf_read_impl, dbuf_hold[_impl], dbuf_prefetch
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* dmu_object_info_from_dnode: dn_dirty_mtx (dn_datablksz)
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* dbuf_read_impl: db_mtx, dmu_zfetch()
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* dmu_zfetch: zf_rwlock/r, zst_lock, dbuf_prefetch()
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* dbuf_new_size: db_mtx
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* dbuf_dirty: db_mtx
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* dbuf_findbp: (callers, phys? - the real need)
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* dbuf_create: dn_dbufs_mtx, hash_mutexes, db_mtx (phys?)
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* dbuf_prefetch: dn_dirty_mtx, hash_mutexes, db_mtx, dn_dbufs_mtx
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* dbuf_hold_impl: hash_mutexes, db_mtx, dn_dbufs_mtx, dbuf_findbp()
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* dnode_sync/w (increase_indirection): db_mtx (phys)
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* dnode_set_blksz/w: dn_dbufs_mtx (dn_*blksz*)
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* dnode_new_blkid/w: (dn_maxblkid)
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* dnode_free_range/w: dn_dirty_mtx (dn_maxblkid)
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* dnode_next_offset: (phys)
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*
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* dn_dbufs_mtx
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* must be held before:
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* db_mtx, hash_mutexes
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* protects:
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* dn_dbufs
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* dn_evicted
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* held from:
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* dmu_evict_user: db_mtx (dn_dbufs)
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* dbuf_free_range: db_mtx (dn_dbufs)
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* dbuf_remove_ref: db_mtx, callees:
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* dbuf_hash_remove: hash_mutexes, db_mtx
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* dbuf_create: hash_mutexes, db_mtx (dn_dbufs)
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* dnode_set_blksz: (dn_dbufs)
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*
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* hash_mutexes (global)
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* must be held before:
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* db_mtx
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* protects dbuf_hash_table (global) and db_hash_next
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* held from:
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* dbuf_find: db_mtx
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* dbuf_hash_insert: db_mtx
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* dbuf_hash_remove: db_mtx
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*
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* db_mtx (meta-leaf)
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* must be held before:
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* dn_mtx, dn_dirty_mtx, dd_lock (leaf mutexes)
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* protects:
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* db_state
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* db_holds
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* db_buf
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* db_changed
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* db_data_pending
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* db_dirtied
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* db_link
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* db_dirty_node (??)
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* db_dirtycnt
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* db_d.*
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* db.*
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* held from:
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* dbuf_dirty: dn_mtx, dn_dirty_mtx
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* dbuf_dirty->dsl_dir_willuse_space: dd_lock
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* dbuf_dirty->dbuf_new_block->dsl_dataset_block_freeable: dd_lock
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* dbuf_undirty: dn_dirty_mtx (db_d)
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* dbuf_write_done: dn_dirty_mtx (db_state)
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* dbuf_*
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* dmu_buf_update_user: none (db_d)
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* dmu_evict_user: none (db_d) (maybe can eliminate)
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* dbuf_find: none (db_holds)
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* dbuf_hash_insert: none (db_holds)
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* dmu_buf_read_array_impl: none (db_state, db_changed)
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* dmu_sync: none (db_dirty_node, db_d)
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* dnode_reallocate: none (db)
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*
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* dn_mtx (leaf)
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* protects:
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* dn_dirty_dbufs
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* dn_ranges
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* phys accounting
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* dn_allocated_txg
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* dn_free_txg
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* dn_assigned_txg
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* dn_dirty_txg
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* dd_assigned_tx
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* dn_notxholds
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* dn_dirtyctx
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* dn_dirtyctx_firstset
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* (dn_phys copy fields?)
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* (dn_phys contents?)
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* held from:
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* dnode_*
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* dbuf_dirty: none
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* dbuf_sync: none (phys accounting)
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* dbuf_undirty: none (dn_ranges, dn_dirty_dbufs)
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* dbuf_write_done: none (phys accounting)
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* dmu_object_info_from_dnode: none (accounting)
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* dmu_tx_commit: none
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* dmu_tx_hold_object_impl: none
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* dmu_tx_try_assign: dn_notxholds(cv)
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* dmu_tx_unassign: none
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*
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* dd_lock
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* must be held before:
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* ds_lock
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* ancestors' dd_lock
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* protects:
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* dd_prop_cbs
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* dd_sync_*
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* dd_used_bytes
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* dd_tempreserved
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* dd_space_towrite
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* dd_myname
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* dd_phys accounting?
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* held from:
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* dsl_dir_*
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* dsl_prop_changed_notify: none (dd_prop_cbs)
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* dsl_prop_register: none (dd_prop_cbs)
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* dsl_prop_unregister: none (dd_prop_cbs)
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*
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* os_lock (leaf)
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* protects:
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* os_dirty_dnodes
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* os_free_dnodes
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* os_dnodes
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* os_downgraded_dbufs
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* dn_dirtyblksz
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* dn_dirty_link
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* held from:
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* dnode_create: none (os_dnodes)
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* dnode_destroy: none (os_dnodes)
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* dnode_setdirty: none (dn_dirtyblksz, os_*_dnodes)
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* dnode_free: none (dn_dirtyblksz, os_*_dnodes)
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*
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* ds_lock
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* protects:
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* ds_objset
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* ds_open_refcount
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* ds_snapname
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* ds_phys accounting
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* ds_phys userrefs zapobj
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* ds_reserved
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* held from:
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* dsl_dataset_*
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*
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* dr_mtx (leaf)
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* protects:
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* dr_children
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* held from:
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* dbuf_dirty
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* dbuf_undirty
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* dbuf_sync_indirect
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* dnode_new_blkid
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*/
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struct objset;
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struct dmu_pool;
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typedef struct dmu_xuio {
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int next;
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int cnt;
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struct arc_buf **bufs;
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iovec_t *iovp;
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} dmu_xuio_t;
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/*
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* The list of data whose inclusion in a send stream can be pending from
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* one call to backup_cb to another. Multiple calls to dump_free() and
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* dump_freeobjects() can be aggregated into a single DRR_FREE or
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* DRR_FREEOBJECTS replay record.
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*/
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typedef enum {
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PENDING_NONE,
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PENDING_FREE,
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PENDING_FREEOBJECTS
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} dmu_pendop_t;
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typedef struct dmu_sendarg {
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list_node_t dsa_link;
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dmu_replay_record_t *dsa_drr;
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vnode_t *dsa_vp;
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int dsa_outfd;
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proc_t *dsa_proc;
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offset_t *dsa_off;
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objset_t *dsa_os;
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zio_cksum_t dsa_zc;
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uint64_t dsa_toguid;
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uint64_t dsa_fromtxg;
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int dsa_err;
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dmu_pendop_t dsa_pending_op;
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uint64_t dsa_featureflags;
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uint64_t dsa_last_data_object;
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uint64_t dsa_last_data_offset;
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uint64_t dsa_resume_object;
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uint64_t dsa_resume_offset;
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boolean_t dsa_sent_begin;
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boolean_t dsa_sent_end;
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} dmu_sendarg_t;
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void dmu_object_zapify(objset_t *, uint64_t, dmu_object_type_t, dmu_tx_t *);
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void dmu_object_free_zapified(objset_t *, uint64_t, dmu_tx_t *);
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int dmu_buf_hold_noread(objset_t *, uint64_t, uint64_t,
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void *, dmu_buf_t **);
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#ifdef __cplusplus
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}
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#endif
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#endif /* _SYS_DMU_IMPL_H */
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