1a542ad1bSJan Schmidt /* 2a542ad1bSJan Schmidt * Copyright (C) 2011 STRATO. All rights reserved. 3a542ad1bSJan Schmidt * 4a542ad1bSJan Schmidt * This program is free software; you can redistribute it and/or 5a542ad1bSJan Schmidt * modify it under the terms of the GNU General Public 6a542ad1bSJan Schmidt * License v2 as published by the Free Software Foundation. 7a542ad1bSJan Schmidt * 8a542ad1bSJan Schmidt * This program is distributed in the hope that it will be useful, 9a542ad1bSJan Schmidt * but WITHOUT ANY WARRANTY; without even the implied warranty of 10a542ad1bSJan Schmidt * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU 11a542ad1bSJan Schmidt * General Public License for more details. 12a542ad1bSJan Schmidt * 13a542ad1bSJan Schmidt * You should have received a copy of the GNU General Public 14a542ad1bSJan Schmidt * License along with this program; if not, write to the 15a542ad1bSJan Schmidt * Free Software Foundation, Inc., 59 Temple Place - Suite 330, 16a542ad1bSJan Schmidt * Boston, MA 021110-1307, USA. 17a542ad1bSJan Schmidt */ 18a542ad1bSJan Schmidt 19425d17a2SLiu Bo #include <linux/vmalloc.h> 20a542ad1bSJan Schmidt #include "ctree.h" 21a542ad1bSJan Schmidt #include "disk-io.h" 22a542ad1bSJan Schmidt #include "backref.h" 238da6d581SJan Schmidt #include "ulist.h" 248da6d581SJan Schmidt #include "transaction.h" 258da6d581SJan Schmidt #include "delayed-ref.h" 26b916a59aSJan Schmidt #include "locking.h" 27a542ad1bSJan Schmidt 28dc046b10SJosef Bacik /* Just an arbitrary number so we can be sure this happened */ 29dc046b10SJosef Bacik #define BACKREF_FOUND_SHARED 6 30dc046b10SJosef Bacik 31976b1908SJan Schmidt struct extent_inode_elem { 32976b1908SJan Schmidt u64 inum; 33976b1908SJan Schmidt u64 offset; 34976b1908SJan Schmidt struct extent_inode_elem *next; 35976b1908SJan Schmidt }; 36976b1908SJan Schmidt 37976b1908SJan Schmidt static int check_extent_in_eb(struct btrfs_key *key, struct extent_buffer *eb, 38976b1908SJan Schmidt struct btrfs_file_extent_item *fi, 39976b1908SJan Schmidt u64 extent_item_pos, 40976b1908SJan Schmidt struct extent_inode_elem **eie) 41976b1908SJan Schmidt { 428ca15e05SJosef Bacik u64 offset = 0; 438ca15e05SJosef Bacik struct extent_inode_elem *e; 448ca15e05SJosef Bacik 458ca15e05SJosef Bacik if (!btrfs_file_extent_compression(eb, fi) && 468ca15e05SJosef Bacik !btrfs_file_extent_encryption(eb, fi) && 478ca15e05SJosef Bacik !btrfs_file_extent_other_encoding(eb, fi)) { 48976b1908SJan Schmidt u64 data_offset; 49976b1908SJan Schmidt u64 data_len; 50976b1908SJan Schmidt 51976b1908SJan Schmidt data_offset = btrfs_file_extent_offset(eb, fi); 52976b1908SJan Schmidt data_len = btrfs_file_extent_num_bytes(eb, fi); 53976b1908SJan Schmidt 54976b1908SJan Schmidt if (extent_item_pos < data_offset || 55976b1908SJan Schmidt extent_item_pos >= data_offset + data_len) 56976b1908SJan Schmidt return 1; 578ca15e05SJosef Bacik offset = extent_item_pos - data_offset; 588ca15e05SJosef Bacik } 59976b1908SJan Schmidt 60976b1908SJan Schmidt e = kmalloc(sizeof(*e), GFP_NOFS); 61976b1908SJan Schmidt if (!e) 62976b1908SJan Schmidt return -ENOMEM; 63976b1908SJan Schmidt 64976b1908SJan Schmidt e->next = *eie; 65976b1908SJan Schmidt e->inum = key->objectid; 668ca15e05SJosef Bacik e->offset = key->offset + offset; 67976b1908SJan Schmidt *eie = e; 68976b1908SJan Schmidt 69976b1908SJan Schmidt return 0; 70976b1908SJan Schmidt } 71976b1908SJan Schmidt 72f05c4746SWang Shilong static void free_inode_elem_list(struct extent_inode_elem *eie) 73f05c4746SWang Shilong { 74f05c4746SWang Shilong struct extent_inode_elem *eie_next; 75f05c4746SWang Shilong 76f05c4746SWang Shilong for (; eie; eie = eie_next) { 77f05c4746SWang Shilong eie_next = eie->next; 78f05c4746SWang Shilong kfree(eie); 79f05c4746SWang Shilong } 80f05c4746SWang Shilong } 81f05c4746SWang Shilong 82976b1908SJan Schmidt static int find_extent_in_eb(struct extent_buffer *eb, u64 wanted_disk_byte, 83976b1908SJan Schmidt u64 extent_item_pos, 84976b1908SJan Schmidt struct extent_inode_elem **eie) 85976b1908SJan Schmidt { 86976b1908SJan Schmidt u64 disk_byte; 87976b1908SJan Schmidt struct btrfs_key key; 88976b1908SJan Schmidt struct btrfs_file_extent_item *fi; 89976b1908SJan Schmidt int slot; 90976b1908SJan Schmidt int nritems; 91976b1908SJan Schmidt int extent_type; 92976b1908SJan Schmidt int ret; 93976b1908SJan Schmidt 94976b1908SJan Schmidt /* 95976b1908SJan Schmidt * from the shared data ref, we only have the leaf but we need 96976b1908SJan Schmidt * the key. thus, we must look into all items and see that we 97976b1908SJan Schmidt * find one (some) with a reference to our extent item. 98976b1908SJan Schmidt */ 99976b1908SJan Schmidt nritems = btrfs_header_nritems(eb); 100976b1908SJan Schmidt for (slot = 0; slot < nritems; ++slot) { 101976b1908SJan Schmidt btrfs_item_key_to_cpu(eb, &key, slot); 102976b1908SJan Schmidt if (key.type != BTRFS_EXTENT_DATA_KEY) 103976b1908SJan Schmidt continue; 104976b1908SJan Schmidt fi = btrfs_item_ptr(eb, slot, struct btrfs_file_extent_item); 105976b1908SJan Schmidt extent_type = btrfs_file_extent_type(eb, fi); 106976b1908SJan Schmidt if (extent_type == BTRFS_FILE_EXTENT_INLINE) 107976b1908SJan Schmidt continue; 108976b1908SJan Schmidt /* don't skip BTRFS_FILE_EXTENT_PREALLOC, we can handle that */ 109976b1908SJan Schmidt disk_byte = btrfs_file_extent_disk_bytenr(eb, fi); 110976b1908SJan Schmidt if (disk_byte != wanted_disk_byte) 111976b1908SJan Schmidt continue; 112976b1908SJan Schmidt 113976b1908SJan Schmidt ret = check_extent_in_eb(&key, eb, fi, extent_item_pos, eie); 114976b1908SJan Schmidt if (ret < 0) 115976b1908SJan Schmidt return ret; 116976b1908SJan Schmidt } 117976b1908SJan Schmidt 118976b1908SJan Schmidt return 0; 119976b1908SJan Schmidt } 120976b1908SJan Schmidt 1218da6d581SJan Schmidt /* 1228da6d581SJan Schmidt * this structure records all encountered refs on the way up to the root 1238da6d581SJan Schmidt */ 1248da6d581SJan Schmidt struct __prelim_ref { 1258da6d581SJan Schmidt struct list_head list; 1268da6d581SJan Schmidt u64 root_id; 127d5c88b73SJan Schmidt struct btrfs_key key_for_search; 1288da6d581SJan Schmidt int level; 1298da6d581SJan Schmidt int count; 1303301958bSJan Schmidt struct extent_inode_elem *inode_list; 1318da6d581SJan Schmidt u64 parent; 1328da6d581SJan Schmidt u64 wanted_disk_byte; 1338da6d581SJan Schmidt }; 1348da6d581SJan Schmidt 135b9e9a6cbSWang Shilong static struct kmem_cache *btrfs_prelim_ref_cache; 136b9e9a6cbSWang Shilong 137b9e9a6cbSWang Shilong int __init btrfs_prelim_ref_init(void) 138b9e9a6cbSWang Shilong { 139b9e9a6cbSWang Shilong btrfs_prelim_ref_cache = kmem_cache_create("btrfs_prelim_ref", 140b9e9a6cbSWang Shilong sizeof(struct __prelim_ref), 141b9e9a6cbSWang Shilong 0, 142b9e9a6cbSWang Shilong SLAB_RECLAIM_ACCOUNT | SLAB_MEM_SPREAD, 143b9e9a6cbSWang Shilong NULL); 144b9e9a6cbSWang Shilong if (!btrfs_prelim_ref_cache) 145b9e9a6cbSWang Shilong return -ENOMEM; 146b9e9a6cbSWang Shilong return 0; 147b9e9a6cbSWang Shilong } 148b9e9a6cbSWang Shilong 149b9e9a6cbSWang Shilong void btrfs_prelim_ref_exit(void) 150b9e9a6cbSWang Shilong { 151b9e9a6cbSWang Shilong if (btrfs_prelim_ref_cache) 152b9e9a6cbSWang Shilong kmem_cache_destroy(btrfs_prelim_ref_cache); 153b9e9a6cbSWang Shilong } 154b9e9a6cbSWang Shilong 155d5c88b73SJan Schmidt /* 156d5c88b73SJan Schmidt * the rules for all callers of this function are: 157d5c88b73SJan Schmidt * - obtaining the parent is the goal 158d5c88b73SJan Schmidt * - if you add a key, you must know that it is a correct key 159d5c88b73SJan Schmidt * - if you cannot add the parent or a correct key, then we will look into the 160d5c88b73SJan Schmidt * block later to set a correct key 161d5c88b73SJan Schmidt * 162d5c88b73SJan Schmidt * delayed refs 163d5c88b73SJan Schmidt * ============ 164d5c88b73SJan Schmidt * backref type | shared | indirect | shared | indirect 165d5c88b73SJan Schmidt * information | tree | tree | data | data 166d5c88b73SJan Schmidt * --------------------+--------+----------+--------+---------- 167d5c88b73SJan Schmidt * parent logical | y | - | - | - 168d5c88b73SJan Schmidt * key to resolve | - | y | y | y 169d5c88b73SJan Schmidt * tree block logical | - | - | - | - 170d5c88b73SJan Schmidt * root for resolving | y | y | y | y 171d5c88b73SJan Schmidt * 172d5c88b73SJan Schmidt * - column 1: we've the parent -> done 173d5c88b73SJan Schmidt * - column 2, 3, 4: we use the key to find the parent 174d5c88b73SJan Schmidt * 175d5c88b73SJan Schmidt * on disk refs (inline or keyed) 176d5c88b73SJan Schmidt * ============================== 177d5c88b73SJan Schmidt * backref type | shared | indirect | shared | indirect 178d5c88b73SJan Schmidt * information | tree | tree | data | data 179d5c88b73SJan Schmidt * --------------------+--------+----------+--------+---------- 180d5c88b73SJan Schmidt * parent logical | y | - | y | - 181d5c88b73SJan Schmidt * key to resolve | - | - | - | y 182d5c88b73SJan Schmidt * tree block logical | y | y | y | y 183d5c88b73SJan Schmidt * root for resolving | - | y | y | y 184d5c88b73SJan Schmidt * 185d5c88b73SJan Schmidt * - column 1, 3: we've the parent -> done 186d5c88b73SJan Schmidt * - column 2: we take the first key from the block to find the parent 187d5c88b73SJan Schmidt * (see __add_missing_keys) 188d5c88b73SJan Schmidt * - column 4: we use the key to find the parent 189d5c88b73SJan Schmidt * 190d5c88b73SJan Schmidt * additional information that's available but not required to find the parent 191d5c88b73SJan Schmidt * block might help in merging entries to gain some speed. 192d5c88b73SJan Schmidt */ 193d5c88b73SJan Schmidt 1948da6d581SJan Schmidt static int __add_prelim_ref(struct list_head *head, u64 root_id, 195d5c88b73SJan Schmidt struct btrfs_key *key, int level, 196742916b8SWang Shilong u64 parent, u64 wanted_disk_byte, int count, 197742916b8SWang Shilong gfp_t gfp_mask) 1988da6d581SJan Schmidt { 1998da6d581SJan Schmidt struct __prelim_ref *ref; 2008da6d581SJan Schmidt 20148ec4736SLiu Bo if (root_id == BTRFS_DATA_RELOC_TREE_OBJECTID) 20248ec4736SLiu Bo return 0; 20348ec4736SLiu Bo 204b9e9a6cbSWang Shilong ref = kmem_cache_alloc(btrfs_prelim_ref_cache, gfp_mask); 2058da6d581SJan Schmidt if (!ref) 2068da6d581SJan Schmidt return -ENOMEM; 2078da6d581SJan Schmidt 2088da6d581SJan Schmidt ref->root_id = root_id; 2098da6d581SJan Schmidt if (key) 210d5c88b73SJan Schmidt ref->key_for_search = *key; 2118da6d581SJan Schmidt else 212d5c88b73SJan Schmidt memset(&ref->key_for_search, 0, sizeof(ref->key_for_search)); 2138da6d581SJan Schmidt 2143301958bSJan Schmidt ref->inode_list = NULL; 2158da6d581SJan Schmidt ref->level = level; 2168da6d581SJan Schmidt ref->count = count; 2178da6d581SJan Schmidt ref->parent = parent; 2188da6d581SJan Schmidt ref->wanted_disk_byte = wanted_disk_byte; 2198da6d581SJan Schmidt list_add_tail(&ref->list, head); 2208da6d581SJan Schmidt 2218da6d581SJan Schmidt return 0; 2228da6d581SJan Schmidt } 2238da6d581SJan Schmidt 2248da6d581SJan Schmidt static int add_all_parents(struct btrfs_root *root, struct btrfs_path *path, 2257ef81ac8SJosef Bacik struct ulist *parents, struct __prelim_ref *ref, 22644853868SJosef Bacik int level, u64 time_seq, const u64 *extent_item_pos, 22744853868SJosef Bacik u64 total_refs) 2288da6d581SJan Schmidt { 22969bca40dSAlexander Block int ret = 0; 23069bca40dSAlexander Block int slot; 23169bca40dSAlexander Block struct extent_buffer *eb; 23269bca40dSAlexander Block struct btrfs_key key; 2337ef81ac8SJosef Bacik struct btrfs_key *key_for_search = &ref->key_for_search; 2348da6d581SJan Schmidt struct btrfs_file_extent_item *fi; 235ed8c4913SJosef Bacik struct extent_inode_elem *eie = NULL, *old = NULL; 2368da6d581SJan Schmidt u64 disk_byte; 2377ef81ac8SJosef Bacik u64 wanted_disk_byte = ref->wanted_disk_byte; 2387ef81ac8SJosef Bacik u64 count = 0; 2398da6d581SJan Schmidt 24069bca40dSAlexander Block if (level != 0) { 24169bca40dSAlexander Block eb = path->nodes[level]; 24269bca40dSAlexander Block ret = ulist_add(parents, eb->start, 0, GFP_NOFS); 2433301958bSJan Schmidt if (ret < 0) 2443301958bSJan Schmidt return ret; 2458da6d581SJan Schmidt return 0; 24669bca40dSAlexander Block } 2478da6d581SJan Schmidt 2488da6d581SJan Schmidt /* 24969bca40dSAlexander Block * We normally enter this function with the path already pointing to 25069bca40dSAlexander Block * the first item to check. But sometimes, we may enter it with 25169bca40dSAlexander Block * slot==nritems. In that case, go to the next leaf before we continue. 2528da6d581SJan Schmidt */ 25369bca40dSAlexander Block if (path->slots[0] >= btrfs_header_nritems(path->nodes[0])) 2543d7806ecSJan Schmidt ret = btrfs_next_old_leaf(root, path, time_seq); 2558da6d581SJan Schmidt 25644853868SJosef Bacik while (!ret && count < total_refs) { 2578da6d581SJan Schmidt eb = path->nodes[0]; 25869bca40dSAlexander Block slot = path->slots[0]; 25969bca40dSAlexander Block 26069bca40dSAlexander Block btrfs_item_key_to_cpu(eb, &key, slot); 26169bca40dSAlexander Block 26269bca40dSAlexander Block if (key.objectid != key_for_search->objectid || 26369bca40dSAlexander Block key.type != BTRFS_EXTENT_DATA_KEY) 26469bca40dSAlexander Block break; 26569bca40dSAlexander Block 26669bca40dSAlexander Block fi = btrfs_item_ptr(eb, slot, struct btrfs_file_extent_item); 2678da6d581SJan Schmidt disk_byte = btrfs_file_extent_disk_bytenr(eb, fi); 26869bca40dSAlexander Block 26969bca40dSAlexander Block if (disk_byte == wanted_disk_byte) { 27069bca40dSAlexander Block eie = NULL; 271ed8c4913SJosef Bacik old = NULL; 2727ef81ac8SJosef Bacik count++; 27369bca40dSAlexander Block if (extent_item_pos) { 27469bca40dSAlexander Block ret = check_extent_in_eb(&key, eb, fi, 27569bca40dSAlexander Block *extent_item_pos, 27669bca40dSAlexander Block &eie); 27769bca40dSAlexander Block if (ret < 0) 27869bca40dSAlexander Block break; 2798da6d581SJan Schmidt } 280ed8c4913SJosef Bacik if (ret > 0) 281ed8c4913SJosef Bacik goto next; 2824eb1f66dSTakashi Iwai ret = ulist_add_merge_ptr(parents, eb->start, 2834eb1f66dSTakashi Iwai eie, (void **)&old, GFP_NOFS); 28469bca40dSAlexander Block if (ret < 0) 28569bca40dSAlexander Block break; 286ed8c4913SJosef Bacik if (!ret && extent_item_pos) { 287ed8c4913SJosef Bacik while (old->next) 288ed8c4913SJosef Bacik old = old->next; 289ed8c4913SJosef Bacik old->next = eie; 29069bca40dSAlexander Block } 291f05c4746SWang Shilong eie = NULL; 29269bca40dSAlexander Block } 293ed8c4913SJosef Bacik next: 29469bca40dSAlexander Block ret = btrfs_next_old_item(root, path, time_seq); 2958da6d581SJan Schmidt } 2968da6d581SJan Schmidt 29769bca40dSAlexander Block if (ret > 0) 29869bca40dSAlexander Block ret = 0; 299f05c4746SWang Shilong else if (ret < 0) 300f05c4746SWang Shilong free_inode_elem_list(eie); 30169bca40dSAlexander Block return ret; 3028da6d581SJan Schmidt } 3038da6d581SJan Schmidt 3048da6d581SJan Schmidt /* 3058da6d581SJan Schmidt * resolve an indirect backref in the form (root_id, key, level) 3068da6d581SJan Schmidt * to a logical address 3078da6d581SJan Schmidt */ 3088da6d581SJan Schmidt static int __resolve_indirect_ref(struct btrfs_fs_info *fs_info, 309da61d31aSJosef Bacik struct btrfs_path *path, u64 time_seq, 3108da6d581SJan Schmidt struct __prelim_ref *ref, 311976b1908SJan Schmidt struct ulist *parents, 31244853868SJosef Bacik const u64 *extent_item_pos, u64 total_refs) 3138da6d581SJan Schmidt { 3148da6d581SJan Schmidt struct btrfs_root *root; 3158da6d581SJan Schmidt struct btrfs_key root_key; 3168da6d581SJan Schmidt struct extent_buffer *eb; 3178da6d581SJan Schmidt int ret = 0; 3188da6d581SJan Schmidt int root_level; 3198da6d581SJan Schmidt int level = ref->level; 320538f72cdSWang Shilong int index; 3218da6d581SJan Schmidt 3228da6d581SJan Schmidt root_key.objectid = ref->root_id; 3238da6d581SJan Schmidt root_key.type = BTRFS_ROOT_ITEM_KEY; 3248da6d581SJan Schmidt root_key.offset = (u64)-1; 325538f72cdSWang Shilong 326538f72cdSWang Shilong index = srcu_read_lock(&fs_info->subvol_srcu); 327538f72cdSWang Shilong 3288da6d581SJan Schmidt root = btrfs_read_fs_root_no_name(fs_info, &root_key); 3298da6d581SJan Schmidt if (IS_ERR(root)) { 330538f72cdSWang Shilong srcu_read_unlock(&fs_info->subvol_srcu, index); 3318da6d581SJan Schmidt ret = PTR_ERR(root); 3328da6d581SJan Schmidt goto out; 3338da6d581SJan Schmidt } 3348da6d581SJan Schmidt 3359e351cc8SJosef Bacik if (path->search_commit_root) 3369e351cc8SJosef Bacik root_level = btrfs_header_level(root->commit_root); 3379e351cc8SJosef Bacik else 3385b6602e7SJan Schmidt root_level = btrfs_old_root_level(root, time_seq); 3398da6d581SJan Schmidt 340538f72cdSWang Shilong if (root_level + 1 == level) { 341538f72cdSWang Shilong srcu_read_unlock(&fs_info->subvol_srcu, index); 3428da6d581SJan Schmidt goto out; 343538f72cdSWang Shilong } 3448da6d581SJan Schmidt 3458da6d581SJan Schmidt path->lowest_level = level; 3468445f61cSJan Schmidt ret = btrfs_search_old_slot(root, &ref->key_for_search, path, time_seq); 347538f72cdSWang Shilong 348538f72cdSWang Shilong /* root node has been locked, we can release @subvol_srcu safely here */ 349538f72cdSWang Shilong srcu_read_unlock(&fs_info->subvol_srcu, index); 350538f72cdSWang Shilong 3518da6d581SJan Schmidt pr_debug("search slot in root %llu (level %d, ref count %d) returned " 3528da6d581SJan Schmidt "%d for key (%llu %u %llu)\n", 353c1c9ff7cSGeert Uytterhoeven ref->root_id, level, ref->count, ret, 354c1c9ff7cSGeert Uytterhoeven ref->key_for_search.objectid, ref->key_for_search.type, 355c1c9ff7cSGeert Uytterhoeven ref->key_for_search.offset); 3568da6d581SJan Schmidt if (ret < 0) 3578da6d581SJan Schmidt goto out; 3588da6d581SJan Schmidt 3598da6d581SJan Schmidt eb = path->nodes[level]; 3609345457fSJan Schmidt while (!eb) { 361fae7f21cSDulshani Gunawardhana if (WARN_ON(!level)) { 3628da6d581SJan Schmidt ret = 1; 3638da6d581SJan Schmidt goto out; 3648da6d581SJan Schmidt } 3659345457fSJan Schmidt level--; 3669345457fSJan Schmidt eb = path->nodes[level]; 3679345457fSJan Schmidt } 3688da6d581SJan Schmidt 3697ef81ac8SJosef Bacik ret = add_all_parents(root, path, parents, ref, level, time_seq, 37044853868SJosef Bacik extent_item_pos, total_refs); 3718da6d581SJan Schmidt out: 372da61d31aSJosef Bacik path->lowest_level = 0; 373da61d31aSJosef Bacik btrfs_release_path(path); 3748da6d581SJan Schmidt return ret; 3758da6d581SJan Schmidt } 3768da6d581SJan Schmidt 3778da6d581SJan Schmidt /* 3788da6d581SJan Schmidt * resolve all indirect backrefs from the list 3798da6d581SJan Schmidt */ 3808da6d581SJan Schmidt static int __resolve_indirect_refs(struct btrfs_fs_info *fs_info, 381da61d31aSJosef Bacik struct btrfs_path *path, u64 time_seq, 382976b1908SJan Schmidt struct list_head *head, 383dc046b10SJosef Bacik const u64 *extent_item_pos, u64 total_refs, 384dc046b10SJosef Bacik u64 root_objectid) 3858da6d581SJan Schmidt { 3868da6d581SJan Schmidt int err; 3878da6d581SJan Schmidt int ret = 0; 3888da6d581SJan Schmidt struct __prelim_ref *ref; 3898da6d581SJan Schmidt struct __prelim_ref *ref_safe; 3908da6d581SJan Schmidt struct __prelim_ref *new_ref; 3918da6d581SJan Schmidt struct ulist *parents; 3928da6d581SJan Schmidt struct ulist_node *node; 393cd1b413cSJan Schmidt struct ulist_iterator uiter; 3948da6d581SJan Schmidt 3958da6d581SJan Schmidt parents = ulist_alloc(GFP_NOFS); 3968da6d581SJan Schmidt if (!parents) 3978da6d581SJan Schmidt return -ENOMEM; 3988da6d581SJan Schmidt 3998da6d581SJan Schmidt /* 4008da6d581SJan Schmidt * _safe allows us to insert directly after the current item without 4018da6d581SJan Schmidt * iterating over the newly inserted items. 4028da6d581SJan Schmidt * we're also allowed to re-assign ref during iteration. 4038da6d581SJan Schmidt */ 4048da6d581SJan Schmidt list_for_each_entry_safe(ref, ref_safe, head, list) { 4058da6d581SJan Schmidt if (ref->parent) /* already direct */ 4068da6d581SJan Schmidt continue; 4078da6d581SJan Schmidt if (ref->count == 0) 4088da6d581SJan Schmidt continue; 409dc046b10SJosef Bacik if (root_objectid && ref->root_id != root_objectid) { 410dc046b10SJosef Bacik ret = BACKREF_FOUND_SHARED; 411dc046b10SJosef Bacik goto out; 412dc046b10SJosef Bacik } 413da61d31aSJosef Bacik err = __resolve_indirect_ref(fs_info, path, time_seq, ref, 41444853868SJosef Bacik parents, extent_item_pos, 41544853868SJosef Bacik total_refs); 41695def2edSWang Shilong /* 41795def2edSWang Shilong * we can only tolerate ENOENT,otherwise,we should catch error 41895def2edSWang Shilong * and return directly. 41995def2edSWang Shilong */ 42095def2edSWang Shilong if (err == -ENOENT) { 4218da6d581SJan Schmidt continue; 42295def2edSWang Shilong } else if (err) { 42395def2edSWang Shilong ret = err; 42495def2edSWang Shilong goto out; 42595def2edSWang Shilong } 4268da6d581SJan Schmidt 4278da6d581SJan Schmidt /* we put the first parent into the ref at hand */ 428cd1b413cSJan Schmidt ULIST_ITER_INIT(&uiter); 429cd1b413cSJan Schmidt node = ulist_next(parents, &uiter); 4308da6d581SJan Schmidt ref->parent = node ? node->val : 0; 431995e01b7SJan Schmidt ref->inode_list = node ? 43235a3621bSStefan Behrens (struct extent_inode_elem *)(uintptr_t)node->aux : NULL; 4338da6d581SJan Schmidt 4348da6d581SJan Schmidt /* additional parents require new refs being added here */ 435cd1b413cSJan Schmidt while ((node = ulist_next(parents, &uiter))) { 436b9e9a6cbSWang Shilong new_ref = kmem_cache_alloc(btrfs_prelim_ref_cache, 437b9e9a6cbSWang Shilong GFP_NOFS); 4388da6d581SJan Schmidt if (!new_ref) { 4398da6d581SJan Schmidt ret = -ENOMEM; 440e36902d4SWang Shilong goto out; 4418da6d581SJan Schmidt } 4428da6d581SJan Schmidt memcpy(new_ref, ref, sizeof(*ref)); 4438da6d581SJan Schmidt new_ref->parent = node->val; 444995e01b7SJan Schmidt new_ref->inode_list = (struct extent_inode_elem *) 445995e01b7SJan Schmidt (uintptr_t)node->aux; 4468da6d581SJan Schmidt list_add(&new_ref->list, &ref->list); 4478da6d581SJan Schmidt } 4488da6d581SJan Schmidt ulist_reinit(parents); 4498da6d581SJan Schmidt } 450e36902d4SWang Shilong out: 4518da6d581SJan Schmidt ulist_free(parents); 4528da6d581SJan Schmidt return ret; 4538da6d581SJan Schmidt } 4548da6d581SJan Schmidt 455d5c88b73SJan Schmidt static inline int ref_for_same_block(struct __prelim_ref *ref1, 456d5c88b73SJan Schmidt struct __prelim_ref *ref2) 457d5c88b73SJan Schmidt { 458d5c88b73SJan Schmidt if (ref1->level != ref2->level) 459d5c88b73SJan Schmidt return 0; 460d5c88b73SJan Schmidt if (ref1->root_id != ref2->root_id) 461d5c88b73SJan Schmidt return 0; 462d5c88b73SJan Schmidt if (ref1->key_for_search.type != ref2->key_for_search.type) 463d5c88b73SJan Schmidt return 0; 464d5c88b73SJan Schmidt if (ref1->key_for_search.objectid != ref2->key_for_search.objectid) 465d5c88b73SJan Schmidt return 0; 466d5c88b73SJan Schmidt if (ref1->key_for_search.offset != ref2->key_for_search.offset) 467d5c88b73SJan Schmidt return 0; 468d5c88b73SJan Schmidt if (ref1->parent != ref2->parent) 469d5c88b73SJan Schmidt return 0; 470d5c88b73SJan Schmidt 471d5c88b73SJan Schmidt return 1; 472d5c88b73SJan Schmidt } 473d5c88b73SJan Schmidt 474d5c88b73SJan Schmidt /* 475d5c88b73SJan Schmidt * read tree blocks and add keys where required. 476d5c88b73SJan Schmidt */ 477d5c88b73SJan Schmidt static int __add_missing_keys(struct btrfs_fs_info *fs_info, 478d5c88b73SJan Schmidt struct list_head *head) 479d5c88b73SJan Schmidt { 480d5c88b73SJan Schmidt struct list_head *pos; 481d5c88b73SJan Schmidt struct extent_buffer *eb; 482d5c88b73SJan Schmidt 483d5c88b73SJan Schmidt list_for_each(pos, head) { 484d5c88b73SJan Schmidt struct __prelim_ref *ref; 485d5c88b73SJan Schmidt ref = list_entry(pos, struct __prelim_ref, list); 486d5c88b73SJan Schmidt 487d5c88b73SJan Schmidt if (ref->parent) 488d5c88b73SJan Schmidt continue; 489d5c88b73SJan Schmidt if (ref->key_for_search.type) 490d5c88b73SJan Schmidt continue; 491d5c88b73SJan Schmidt BUG_ON(!ref->wanted_disk_byte); 492d5c88b73SJan Schmidt eb = read_tree_block(fs_info->tree_root, ref->wanted_disk_byte, 493ce86cd59SDavid Sterba 0); 494416bc658SJosef Bacik if (!eb || !extent_buffer_uptodate(eb)) { 495416bc658SJosef Bacik free_extent_buffer(eb); 496416bc658SJosef Bacik return -EIO; 497416bc658SJosef Bacik } 498d5c88b73SJan Schmidt btrfs_tree_read_lock(eb); 499d5c88b73SJan Schmidt if (btrfs_header_level(eb) == 0) 500d5c88b73SJan Schmidt btrfs_item_key_to_cpu(eb, &ref->key_for_search, 0); 501d5c88b73SJan Schmidt else 502d5c88b73SJan Schmidt btrfs_node_key_to_cpu(eb, &ref->key_for_search, 0); 503d5c88b73SJan Schmidt btrfs_tree_read_unlock(eb); 504d5c88b73SJan Schmidt free_extent_buffer(eb); 505d5c88b73SJan Schmidt } 506d5c88b73SJan Schmidt return 0; 507d5c88b73SJan Schmidt } 508d5c88b73SJan Schmidt 5098da6d581SJan Schmidt /* 5108da6d581SJan Schmidt * merge two lists of backrefs and adjust counts accordingly 5118da6d581SJan Schmidt * 5128da6d581SJan Schmidt * mode = 1: merge identical keys, if key is set 513d5c88b73SJan Schmidt * FIXME: if we add more keys in __add_prelim_ref, we can merge more here. 514d5c88b73SJan Schmidt * additionally, we could even add a key range for the blocks we 515d5c88b73SJan Schmidt * looked into to merge even more (-> replace unresolved refs by those 516d5c88b73SJan Schmidt * having a parent). 5178da6d581SJan Schmidt * mode = 2: merge identical parents 5188da6d581SJan Schmidt */ 519692206b1SWang Shilong static void __merge_refs(struct list_head *head, int mode) 5208da6d581SJan Schmidt { 5218da6d581SJan Schmidt struct list_head *pos1; 5228da6d581SJan Schmidt 5238da6d581SJan Schmidt list_for_each(pos1, head) { 5248da6d581SJan Schmidt struct list_head *n2; 5258da6d581SJan Schmidt struct list_head *pos2; 5268da6d581SJan Schmidt struct __prelim_ref *ref1; 5278da6d581SJan Schmidt 5288da6d581SJan Schmidt ref1 = list_entry(pos1, struct __prelim_ref, list); 5298da6d581SJan Schmidt 5308da6d581SJan Schmidt for (pos2 = pos1->next, n2 = pos2->next; pos2 != head; 5318da6d581SJan Schmidt pos2 = n2, n2 = pos2->next) { 5328da6d581SJan Schmidt struct __prelim_ref *ref2; 533d5c88b73SJan Schmidt struct __prelim_ref *xchg; 5343ef5969cSAlexander Block struct extent_inode_elem *eie; 5358da6d581SJan Schmidt 5368da6d581SJan Schmidt ref2 = list_entry(pos2, struct __prelim_ref, list); 5378da6d581SJan Schmidt 5388da6d581SJan Schmidt if (mode == 1) { 539d5c88b73SJan Schmidt if (!ref_for_same_block(ref1, ref2)) 5408da6d581SJan Schmidt continue; 541d5c88b73SJan Schmidt if (!ref1->parent && ref2->parent) { 542d5c88b73SJan Schmidt xchg = ref1; 543d5c88b73SJan Schmidt ref1 = ref2; 544d5c88b73SJan Schmidt ref2 = xchg; 545d5c88b73SJan Schmidt } 5468da6d581SJan Schmidt } else { 5478da6d581SJan Schmidt if (ref1->parent != ref2->parent) 5488da6d581SJan Schmidt continue; 5498da6d581SJan Schmidt } 5503ef5969cSAlexander Block 5513ef5969cSAlexander Block eie = ref1->inode_list; 5523ef5969cSAlexander Block while (eie && eie->next) 5533ef5969cSAlexander Block eie = eie->next; 5543ef5969cSAlexander Block if (eie) 5553ef5969cSAlexander Block eie->next = ref2->inode_list; 5563ef5969cSAlexander Block else 5573ef5969cSAlexander Block ref1->inode_list = ref2->inode_list; 5583ef5969cSAlexander Block ref1->count += ref2->count; 5593ef5969cSAlexander Block 5608da6d581SJan Schmidt list_del(&ref2->list); 561b9e9a6cbSWang Shilong kmem_cache_free(btrfs_prelim_ref_cache, ref2); 5628da6d581SJan Schmidt } 5638da6d581SJan Schmidt 5648da6d581SJan Schmidt } 5658da6d581SJan Schmidt } 5668da6d581SJan Schmidt 5678da6d581SJan Schmidt /* 5688da6d581SJan Schmidt * add all currently queued delayed refs from this head whose seq nr is 5698da6d581SJan Schmidt * smaller or equal that seq to the list 5708da6d581SJan Schmidt */ 5718da6d581SJan Schmidt static int __add_delayed_refs(struct btrfs_delayed_ref_head *head, u64 seq, 572dc046b10SJosef Bacik struct list_head *prefs, u64 *total_refs, 573dc046b10SJosef Bacik u64 inum) 5748da6d581SJan Schmidt { 5758da6d581SJan Schmidt struct btrfs_delayed_extent_op *extent_op = head->extent_op; 5768da6d581SJan Schmidt struct rb_node *n = &head->node.rb_node; 577d5c88b73SJan Schmidt struct btrfs_key key; 578d5c88b73SJan Schmidt struct btrfs_key op_key = {0}; 5798da6d581SJan Schmidt int sgn; 580b1375d64SJan Schmidt int ret = 0; 5818da6d581SJan Schmidt 5828da6d581SJan Schmidt if (extent_op && extent_op->update_key) 583d5c88b73SJan Schmidt btrfs_disk_key_to_cpu(&op_key, &extent_op->key); 5848da6d581SJan Schmidt 585d7df2c79SJosef Bacik spin_lock(&head->lock); 586d7df2c79SJosef Bacik n = rb_first(&head->ref_root); 587d7df2c79SJosef Bacik while (n) { 5888da6d581SJan Schmidt struct btrfs_delayed_ref_node *node; 5898da6d581SJan Schmidt node = rb_entry(n, struct btrfs_delayed_ref_node, 5908da6d581SJan Schmidt rb_node); 591d7df2c79SJosef Bacik n = rb_next(n); 5928da6d581SJan Schmidt if (node->seq > seq) 5938da6d581SJan Schmidt continue; 5948da6d581SJan Schmidt 5958da6d581SJan Schmidt switch (node->action) { 5968da6d581SJan Schmidt case BTRFS_ADD_DELAYED_EXTENT: 5978da6d581SJan Schmidt case BTRFS_UPDATE_DELAYED_HEAD: 5988da6d581SJan Schmidt WARN_ON(1); 5998da6d581SJan Schmidt continue; 6008da6d581SJan Schmidt case BTRFS_ADD_DELAYED_REF: 6018da6d581SJan Schmidt sgn = 1; 6028da6d581SJan Schmidt break; 6038da6d581SJan Schmidt case BTRFS_DROP_DELAYED_REF: 6048da6d581SJan Schmidt sgn = -1; 6058da6d581SJan Schmidt break; 6068da6d581SJan Schmidt default: 6078da6d581SJan Schmidt BUG_ON(1); 6088da6d581SJan Schmidt } 60944853868SJosef Bacik *total_refs += (node->ref_mod * sgn); 6108da6d581SJan Schmidt switch (node->type) { 6118da6d581SJan Schmidt case BTRFS_TREE_BLOCK_REF_KEY: { 6128da6d581SJan Schmidt struct btrfs_delayed_tree_ref *ref; 6138da6d581SJan Schmidt 6148da6d581SJan Schmidt ref = btrfs_delayed_node_to_tree_ref(node); 615d5c88b73SJan Schmidt ret = __add_prelim_ref(prefs, ref->root, &op_key, 6168da6d581SJan Schmidt ref->level + 1, 0, node->bytenr, 617742916b8SWang Shilong node->ref_mod * sgn, GFP_ATOMIC); 6188da6d581SJan Schmidt break; 6198da6d581SJan Schmidt } 6208da6d581SJan Schmidt case BTRFS_SHARED_BLOCK_REF_KEY: { 6218da6d581SJan Schmidt struct btrfs_delayed_tree_ref *ref; 6228da6d581SJan Schmidt 6238da6d581SJan Schmidt ref = btrfs_delayed_node_to_tree_ref(node); 624d5c88b73SJan Schmidt ret = __add_prelim_ref(prefs, ref->root, NULL, 6258da6d581SJan Schmidt ref->level + 1, ref->parent, 6268da6d581SJan Schmidt node->bytenr, 627742916b8SWang Shilong node->ref_mod * sgn, GFP_ATOMIC); 6288da6d581SJan Schmidt break; 6298da6d581SJan Schmidt } 6308da6d581SJan Schmidt case BTRFS_EXTENT_DATA_REF_KEY: { 6318da6d581SJan Schmidt struct btrfs_delayed_data_ref *ref; 6328da6d581SJan Schmidt ref = btrfs_delayed_node_to_data_ref(node); 6338da6d581SJan Schmidt 6348da6d581SJan Schmidt key.objectid = ref->objectid; 6358da6d581SJan Schmidt key.type = BTRFS_EXTENT_DATA_KEY; 6368da6d581SJan Schmidt key.offset = ref->offset; 637dc046b10SJosef Bacik 638dc046b10SJosef Bacik /* 639dc046b10SJosef Bacik * Found a inum that doesn't match our known inum, we 640dc046b10SJosef Bacik * know it's shared. 641dc046b10SJosef Bacik */ 642dc046b10SJosef Bacik if (inum && ref->objectid != inum) { 643dc046b10SJosef Bacik ret = BACKREF_FOUND_SHARED; 644dc046b10SJosef Bacik break; 645dc046b10SJosef Bacik } 646dc046b10SJosef Bacik 6478da6d581SJan Schmidt ret = __add_prelim_ref(prefs, ref->root, &key, 0, 0, 6488da6d581SJan Schmidt node->bytenr, 649742916b8SWang Shilong node->ref_mod * sgn, GFP_ATOMIC); 6508da6d581SJan Schmidt break; 6518da6d581SJan Schmidt } 6528da6d581SJan Schmidt case BTRFS_SHARED_DATA_REF_KEY: { 6538da6d581SJan Schmidt struct btrfs_delayed_data_ref *ref; 6548da6d581SJan Schmidt 6558da6d581SJan Schmidt ref = btrfs_delayed_node_to_data_ref(node); 6568da6d581SJan Schmidt 6578da6d581SJan Schmidt key.objectid = ref->objectid; 6588da6d581SJan Schmidt key.type = BTRFS_EXTENT_DATA_KEY; 6598da6d581SJan Schmidt key.offset = ref->offset; 6608da6d581SJan Schmidt ret = __add_prelim_ref(prefs, ref->root, &key, 0, 6618da6d581SJan Schmidt ref->parent, node->bytenr, 662742916b8SWang Shilong node->ref_mod * sgn, GFP_ATOMIC); 6638da6d581SJan Schmidt break; 6648da6d581SJan Schmidt } 6658da6d581SJan Schmidt default: 6668da6d581SJan Schmidt WARN_ON(1); 6678da6d581SJan Schmidt } 6681149ab6bSWang Shilong if (ret) 669d7df2c79SJosef Bacik break; 6708da6d581SJan Schmidt } 671d7df2c79SJosef Bacik spin_unlock(&head->lock); 672d7df2c79SJosef Bacik return ret; 6738da6d581SJan Schmidt } 6748da6d581SJan Schmidt 6758da6d581SJan Schmidt /* 6768da6d581SJan Schmidt * add all inline backrefs for bytenr to the list 6778da6d581SJan Schmidt */ 6788da6d581SJan Schmidt static int __add_inline_refs(struct btrfs_fs_info *fs_info, 6798da6d581SJan Schmidt struct btrfs_path *path, u64 bytenr, 68044853868SJosef Bacik int *info_level, struct list_head *prefs, 681dc046b10SJosef Bacik u64 *total_refs, u64 inum) 6828da6d581SJan Schmidt { 683b1375d64SJan Schmidt int ret = 0; 6848da6d581SJan Schmidt int slot; 6858da6d581SJan Schmidt struct extent_buffer *leaf; 6868da6d581SJan Schmidt struct btrfs_key key; 687261c84b6SJosef Bacik struct btrfs_key found_key; 6888da6d581SJan Schmidt unsigned long ptr; 6898da6d581SJan Schmidt unsigned long end; 6908da6d581SJan Schmidt struct btrfs_extent_item *ei; 6918da6d581SJan Schmidt u64 flags; 6928da6d581SJan Schmidt u64 item_size; 6938da6d581SJan Schmidt 6948da6d581SJan Schmidt /* 6958da6d581SJan Schmidt * enumerate all inline refs 6968da6d581SJan Schmidt */ 6978da6d581SJan Schmidt leaf = path->nodes[0]; 698dadcaf78SJan Schmidt slot = path->slots[0]; 6998da6d581SJan Schmidt 7008da6d581SJan Schmidt item_size = btrfs_item_size_nr(leaf, slot); 7018da6d581SJan Schmidt BUG_ON(item_size < sizeof(*ei)); 7028da6d581SJan Schmidt 7038da6d581SJan Schmidt ei = btrfs_item_ptr(leaf, slot, struct btrfs_extent_item); 7048da6d581SJan Schmidt flags = btrfs_extent_flags(leaf, ei); 70544853868SJosef Bacik *total_refs += btrfs_extent_refs(leaf, ei); 706261c84b6SJosef Bacik btrfs_item_key_to_cpu(leaf, &found_key, slot); 7078da6d581SJan Schmidt 7088da6d581SJan Schmidt ptr = (unsigned long)(ei + 1); 7098da6d581SJan Schmidt end = (unsigned long)ei + item_size; 7108da6d581SJan Schmidt 711261c84b6SJosef Bacik if (found_key.type == BTRFS_EXTENT_ITEM_KEY && 712261c84b6SJosef Bacik flags & BTRFS_EXTENT_FLAG_TREE_BLOCK) { 7138da6d581SJan Schmidt struct btrfs_tree_block_info *info; 7148da6d581SJan Schmidt 7158da6d581SJan Schmidt info = (struct btrfs_tree_block_info *)ptr; 7168da6d581SJan Schmidt *info_level = btrfs_tree_block_level(leaf, info); 7178da6d581SJan Schmidt ptr += sizeof(struct btrfs_tree_block_info); 7188da6d581SJan Schmidt BUG_ON(ptr > end); 719261c84b6SJosef Bacik } else if (found_key.type == BTRFS_METADATA_ITEM_KEY) { 720261c84b6SJosef Bacik *info_level = found_key.offset; 7218da6d581SJan Schmidt } else { 7228da6d581SJan Schmidt BUG_ON(!(flags & BTRFS_EXTENT_FLAG_DATA)); 7238da6d581SJan Schmidt } 7248da6d581SJan Schmidt 7258da6d581SJan Schmidt while (ptr < end) { 7268da6d581SJan Schmidt struct btrfs_extent_inline_ref *iref; 7278da6d581SJan Schmidt u64 offset; 7288da6d581SJan Schmidt int type; 7298da6d581SJan Schmidt 7308da6d581SJan Schmidt iref = (struct btrfs_extent_inline_ref *)ptr; 7318da6d581SJan Schmidt type = btrfs_extent_inline_ref_type(leaf, iref); 7328da6d581SJan Schmidt offset = btrfs_extent_inline_ref_offset(leaf, iref); 7338da6d581SJan Schmidt 7348da6d581SJan Schmidt switch (type) { 7358da6d581SJan Schmidt case BTRFS_SHARED_BLOCK_REF_KEY: 736d5c88b73SJan Schmidt ret = __add_prelim_ref(prefs, 0, NULL, 7378da6d581SJan Schmidt *info_level + 1, offset, 738742916b8SWang Shilong bytenr, 1, GFP_NOFS); 7398da6d581SJan Schmidt break; 7408da6d581SJan Schmidt case BTRFS_SHARED_DATA_REF_KEY: { 7418da6d581SJan Schmidt struct btrfs_shared_data_ref *sdref; 7428da6d581SJan Schmidt int count; 7438da6d581SJan Schmidt 7448da6d581SJan Schmidt sdref = (struct btrfs_shared_data_ref *)(iref + 1); 7458da6d581SJan Schmidt count = btrfs_shared_data_ref_count(leaf, sdref); 7468da6d581SJan Schmidt ret = __add_prelim_ref(prefs, 0, NULL, 0, offset, 747742916b8SWang Shilong bytenr, count, GFP_NOFS); 7488da6d581SJan Schmidt break; 7498da6d581SJan Schmidt } 7508da6d581SJan Schmidt case BTRFS_TREE_BLOCK_REF_KEY: 751d5c88b73SJan Schmidt ret = __add_prelim_ref(prefs, offset, NULL, 752d5c88b73SJan Schmidt *info_level + 1, 0, 753742916b8SWang Shilong bytenr, 1, GFP_NOFS); 7548da6d581SJan Schmidt break; 7558da6d581SJan Schmidt case BTRFS_EXTENT_DATA_REF_KEY: { 7568da6d581SJan Schmidt struct btrfs_extent_data_ref *dref; 7578da6d581SJan Schmidt int count; 7588da6d581SJan Schmidt u64 root; 7598da6d581SJan Schmidt 7608da6d581SJan Schmidt dref = (struct btrfs_extent_data_ref *)(&iref->offset); 7618da6d581SJan Schmidt count = btrfs_extent_data_ref_count(leaf, dref); 7628da6d581SJan Schmidt key.objectid = btrfs_extent_data_ref_objectid(leaf, 7638da6d581SJan Schmidt dref); 7648da6d581SJan Schmidt key.type = BTRFS_EXTENT_DATA_KEY; 7658da6d581SJan Schmidt key.offset = btrfs_extent_data_ref_offset(leaf, dref); 766dc046b10SJosef Bacik 767dc046b10SJosef Bacik if (inum && key.objectid != inum) { 768dc046b10SJosef Bacik ret = BACKREF_FOUND_SHARED; 769dc046b10SJosef Bacik break; 770dc046b10SJosef Bacik } 771dc046b10SJosef Bacik 7728da6d581SJan Schmidt root = btrfs_extent_data_ref_root(leaf, dref); 773d5c88b73SJan Schmidt ret = __add_prelim_ref(prefs, root, &key, 0, 0, 774742916b8SWang Shilong bytenr, count, GFP_NOFS); 7758da6d581SJan Schmidt break; 7768da6d581SJan Schmidt } 7778da6d581SJan Schmidt default: 7788da6d581SJan Schmidt WARN_ON(1); 7798da6d581SJan Schmidt } 7801149ab6bSWang Shilong if (ret) 7811149ab6bSWang Shilong return ret; 7828da6d581SJan Schmidt ptr += btrfs_extent_inline_ref_size(type); 7838da6d581SJan Schmidt } 7848da6d581SJan Schmidt 7858da6d581SJan Schmidt return 0; 7868da6d581SJan Schmidt } 7878da6d581SJan Schmidt 7888da6d581SJan Schmidt /* 7898da6d581SJan Schmidt * add all non-inline backrefs for bytenr to the list 7908da6d581SJan Schmidt */ 7918da6d581SJan Schmidt static int __add_keyed_refs(struct btrfs_fs_info *fs_info, 7928da6d581SJan Schmidt struct btrfs_path *path, u64 bytenr, 793dc046b10SJosef Bacik int info_level, struct list_head *prefs, u64 inum) 7948da6d581SJan Schmidt { 7958da6d581SJan Schmidt struct btrfs_root *extent_root = fs_info->extent_root; 7968da6d581SJan Schmidt int ret; 7978da6d581SJan Schmidt int slot; 7988da6d581SJan Schmidt struct extent_buffer *leaf; 7998da6d581SJan Schmidt struct btrfs_key key; 8008da6d581SJan Schmidt 8018da6d581SJan Schmidt while (1) { 8028da6d581SJan Schmidt ret = btrfs_next_item(extent_root, path); 8038da6d581SJan Schmidt if (ret < 0) 8048da6d581SJan Schmidt break; 8058da6d581SJan Schmidt if (ret) { 8068da6d581SJan Schmidt ret = 0; 8078da6d581SJan Schmidt break; 8088da6d581SJan Schmidt } 8098da6d581SJan Schmidt 8108da6d581SJan Schmidt slot = path->slots[0]; 8118da6d581SJan Schmidt leaf = path->nodes[0]; 8128da6d581SJan Schmidt btrfs_item_key_to_cpu(leaf, &key, slot); 8138da6d581SJan Schmidt 8148da6d581SJan Schmidt if (key.objectid != bytenr) 8158da6d581SJan Schmidt break; 8168da6d581SJan Schmidt if (key.type < BTRFS_TREE_BLOCK_REF_KEY) 8178da6d581SJan Schmidt continue; 8188da6d581SJan Schmidt if (key.type > BTRFS_SHARED_DATA_REF_KEY) 8198da6d581SJan Schmidt break; 8208da6d581SJan Schmidt 8218da6d581SJan Schmidt switch (key.type) { 8228da6d581SJan Schmidt case BTRFS_SHARED_BLOCK_REF_KEY: 823d5c88b73SJan Schmidt ret = __add_prelim_ref(prefs, 0, NULL, 8248da6d581SJan Schmidt info_level + 1, key.offset, 825742916b8SWang Shilong bytenr, 1, GFP_NOFS); 8268da6d581SJan Schmidt break; 8278da6d581SJan Schmidt case BTRFS_SHARED_DATA_REF_KEY: { 8288da6d581SJan Schmidt struct btrfs_shared_data_ref *sdref; 8298da6d581SJan Schmidt int count; 8308da6d581SJan Schmidt 8318da6d581SJan Schmidt sdref = btrfs_item_ptr(leaf, slot, 8328da6d581SJan Schmidt struct btrfs_shared_data_ref); 8338da6d581SJan Schmidt count = btrfs_shared_data_ref_count(leaf, sdref); 8348da6d581SJan Schmidt ret = __add_prelim_ref(prefs, 0, NULL, 0, key.offset, 835742916b8SWang Shilong bytenr, count, GFP_NOFS); 8368da6d581SJan Schmidt break; 8378da6d581SJan Schmidt } 8388da6d581SJan Schmidt case BTRFS_TREE_BLOCK_REF_KEY: 839d5c88b73SJan Schmidt ret = __add_prelim_ref(prefs, key.offset, NULL, 840d5c88b73SJan Schmidt info_level + 1, 0, 841742916b8SWang Shilong bytenr, 1, GFP_NOFS); 8428da6d581SJan Schmidt break; 8438da6d581SJan Schmidt case BTRFS_EXTENT_DATA_REF_KEY: { 8448da6d581SJan Schmidt struct btrfs_extent_data_ref *dref; 8458da6d581SJan Schmidt int count; 8468da6d581SJan Schmidt u64 root; 8478da6d581SJan Schmidt 8488da6d581SJan Schmidt dref = btrfs_item_ptr(leaf, slot, 8498da6d581SJan Schmidt struct btrfs_extent_data_ref); 8508da6d581SJan Schmidt count = btrfs_extent_data_ref_count(leaf, dref); 8518da6d581SJan Schmidt key.objectid = btrfs_extent_data_ref_objectid(leaf, 8528da6d581SJan Schmidt dref); 8538da6d581SJan Schmidt key.type = BTRFS_EXTENT_DATA_KEY; 8548da6d581SJan Schmidt key.offset = btrfs_extent_data_ref_offset(leaf, dref); 855dc046b10SJosef Bacik 856dc046b10SJosef Bacik if (inum && key.objectid != inum) { 857dc046b10SJosef Bacik ret = BACKREF_FOUND_SHARED; 858dc046b10SJosef Bacik break; 859dc046b10SJosef Bacik } 860dc046b10SJosef Bacik 8618da6d581SJan Schmidt root = btrfs_extent_data_ref_root(leaf, dref); 8628da6d581SJan Schmidt ret = __add_prelim_ref(prefs, root, &key, 0, 0, 863742916b8SWang Shilong bytenr, count, GFP_NOFS); 8648da6d581SJan Schmidt break; 8658da6d581SJan Schmidt } 8668da6d581SJan Schmidt default: 8678da6d581SJan Schmidt WARN_ON(1); 8688da6d581SJan Schmidt } 8691149ab6bSWang Shilong if (ret) 8701149ab6bSWang Shilong return ret; 8711149ab6bSWang Shilong 8728da6d581SJan Schmidt } 8738da6d581SJan Schmidt 8748da6d581SJan Schmidt return ret; 8758da6d581SJan Schmidt } 8768da6d581SJan Schmidt 8778da6d581SJan Schmidt /* 8788da6d581SJan Schmidt * this adds all existing backrefs (inline backrefs, backrefs and delayed 8798da6d581SJan Schmidt * refs) for the given bytenr to the refs list, merges duplicates and resolves 8808da6d581SJan Schmidt * indirect refs to their parent bytenr. 8818da6d581SJan Schmidt * When roots are found, they're added to the roots list 8828da6d581SJan Schmidt * 8838da6d581SJan Schmidt * FIXME some caching might speed things up 8848da6d581SJan Schmidt */ 8858da6d581SJan Schmidt static int find_parent_nodes(struct btrfs_trans_handle *trans, 8868da6d581SJan Schmidt struct btrfs_fs_info *fs_info, u64 bytenr, 887097b8a7cSJan Schmidt u64 time_seq, struct ulist *refs, 888dc046b10SJosef Bacik struct ulist *roots, const u64 *extent_item_pos, 889dc046b10SJosef Bacik u64 root_objectid, u64 inum) 8908da6d581SJan Schmidt { 8918da6d581SJan Schmidt struct btrfs_key key; 8928da6d581SJan Schmidt struct btrfs_path *path; 8938da6d581SJan Schmidt struct btrfs_delayed_ref_root *delayed_refs = NULL; 894d3b01064SLi Zefan struct btrfs_delayed_ref_head *head; 8958da6d581SJan Schmidt int info_level = 0; 8968da6d581SJan Schmidt int ret; 8978da6d581SJan Schmidt struct list_head prefs_delayed; 8988da6d581SJan Schmidt struct list_head prefs; 8998da6d581SJan Schmidt struct __prelim_ref *ref; 900f05c4746SWang Shilong struct extent_inode_elem *eie = NULL; 90144853868SJosef Bacik u64 total_refs = 0; 9028da6d581SJan Schmidt 9038da6d581SJan Schmidt INIT_LIST_HEAD(&prefs); 9048da6d581SJan Schmidt INIT_LIST_HEAD(&prefs_delayed); 9058da6d581SJan Schmidt 9068da6d581SJan Schmidt key.objectid = bytenr; 9078da6d581SJan Schmidt key.offset = (u64)-1; 908261c84b6SJosef Bacik if (btrfs_fs_incompat(fs_info, SKINNY_METADATA)) 909261c84b6SJosef Bacik key.type = BTRFS_METADATA_ITEM_KEY; 910261c84b6SJosef Bacik else 911261c84b6SJosef Bacik key.type = BTRFS_EXTENT_ITEM_KEY; 9128da6d581SJan Schmidt 9138da6d581SJan Schmidt path = btrfs_alloc_path(); 9148da6d581SJan Schmidt if (!path) 9158da6d581SJan Schmidt return -ENOMEM; 916e84752d4SWang Shilong if (!trans) { 917da61d31aSJosef Bacik path->search_commit_root = 1; 918e84752d4SWang Shilong path->skip_locking = 1; 919e84752d4SWang Shilong } 9208da6d581SJan Schmidt 9218da6d581SJan Schmidt /* 9228da6d581SJan Schmidt * grab both a lock on the path and a lock on the delayed ref head. 9238da6d581SJan Schmidt * We need both to get a consistent picture of how the refs look 9248da6d581SJan Schmidt * at a specified point in time 9258da6d581SJan Schmidt */ 9268da6d581SJan Schmidt again: 927d3b01064SLi Zefan head = NULL; 928d3b01064SLi Zefan 9298da6d581SJan Schmidt ret = btrfs_search_slot(trans, fs_info->extent_root, &key, path, 0, 0); 9308da6d581SJan Schmidt if (ret < 0) 9318da6d581SJan Schmidt goto out; 9328da6d581SJan Schmidt BUG_ON(ret == 0); 9338da6d581SJan Schmidt 934faa2dbf0SJosef Bacik #ifdef CONFIG_BTRFS_FS_RUN_SANITY_TESTS 935faa2dbf0SJosef Bacik if (trans && likely(trans->type != __TRANS_DUMMY)) { 936faa2dbf0SJosef Bacik #else 937da61d31aSJosef Bacik if (trans) { 938faa2dbf0SJosef Bacik #endif 9398da6d581SJan Schmidt /* 9407a3ae2f8SJan Schmidt * look if there are updates for this ref queued and lock the 9417a3ae2f8SJan Schmidt * head 9428da6d581SJan Schmidt */ 9438da6d581SJan Schmidt delayed_refs = &trans->transaction->delayed_refs; 9448da6d581SJan Schmidt spin_lock(&delayed_refs->lock); 9458da6d581SJan Schmidt head = btrfs_find_delayed_ref_head(trans, bytenr); 9468da6d581SJan Schmidt if (head) { 9478da6d581SJan Schmidt if (!mutex_trylock(&head->mutex)) { 9488da6d581SJan Schmidt atomic_inc(&head->node.refs); 9498da6d581SJan Schmidt spin_unlock(&delayed_refs->lock); 9508da6d581SJan Schmidt 9518da6d581SJan Schmidt btrfs_release_path(path); 9528da6d581SJan Schmidt 9538da6d581SJan Schmidt /* 9548da6d581SJan Schmidt * Mutex was contended, block until it's 9558da6d581SJan Schmidt * released and try again 9568da6d581SJan Schmidt */ 9578da6d581SJan Schmidt mutex_lock(&head->mutex); 9588da6d581SJan Schmidt mutex_unlock(&head->mutex); 9598da6d581SJan Schmidt btrfs_put_delayed_ref(&head->node); 9608da6d581SJan Schmidt goto again; 9618da6d581SJan Schmidt } 962d7df2c79SJosef Bacik spin_unlock(&delayed_refs->lock); 963097b8a7cSJan Schmidt ret = __add_delayed_refs(head, time_seq, 964dc046b10SJosef Bacik &prefs_delayed, &total_refs, 965dc046b10SJosef Bacik inum); 966155725c9SJan Schmidt mutex_unlock(&head->mutex); 967d7df2c79SJosef Bacik if (ret) 9688da6d581SJan Schmidt goto out; 969d7df2c79SJosef Bacik } else { 9708da6d581SJan Schmidt spin_unlock(&delayed_refs->lock); 9717a3ae2f8SJan Schmidt } 972d7df2c79SJosef Bacik } 9738da6d581SJan Schmidt 9748da6d581SJan Schmidt if (path->slots[0]) { 9758da6d581SJan Schmidt struct extent_buffer *leaf; 9768da6d581SJan Schmidt int slot; 9778da6d581SJan Schmidt 978dadcaf78SJan Schmidt path->slots[0]--; 9798da6d581SJan Schmidt leaf = path->nodes[0]; 980dadcaf78SJan Schmidt slot = path->slots[0]; 9818da6d581SJan Schmidt btrfs_item_key_to_cpu(leaf, &key, slot); 9828da6d581SJan Schmidt if (key.objectid == bytenr && 983261c84b6SJosef Bacik (key.type == BTRFS_EXTENT_ITEM_KEY || 984261c84b6SJosef Bacik key.type == BTRFS_METADATA_ITEM_KEY)) { 9858da6d581SJan Schmidt ret = __add_inline_refs(fs_info, path, bytenr, 98644853868SJosef Bacik &info_level, &prefs, 987dc046b10SJosef Bacik &total_refs, inum); 9888da6d581SJan Schmidt if (ret) 9898da6d581SJan Schmidt goto out; 990d5c88b73SJan Schmidt ret = __add_keyed_refs(fs_info, path, bytenr, 991dc046b10SJosef Bacik info_level, &prefs, inum); 9928da6d581SJan Schmidt if (ret) 9938da6d581SJan Schmidt goto out; 9948da6d581SJan Schmidt } 9958da6d581SJan Schmidt } 9968da6d581SJan Schmidt btrfs_release_path(path); 9978da6d581SJan Schmidt 9988da6d581SJan Schmidt list_splice_init(&prefs_delayed, &prefs); 9998da6d581SJan Schmidt 1000d5c88b73SJan Schmidt ret = __add_missing_keys(fs_info, &prefs); 1001d5c88b73SJan Schmidt if (ret) 1002d5c88b73SJan Schmidt goto out; 1003d5c88b73SJan Schmidt 1004692206b1SWang Shilong __merge_refs(&prefs, 1); 10058da6d581SJan Schmidt 1006da61d31aSJosef Bacik ret = __resolve_indirect_refs(fs_info, path, time_seq, &prefs, 1007dc046b10SJosef Bacik extent_item_pos, total_refs, 1008dc046b10SJosef Bacik root_objectid); 10098da6d581SJan Schmidt if (ret) 10108da6d581SJan Schmidt goto out; 10118da6d581SJan Schmidt 1012692206b1SWang Shilong __merge_refs(&prefs, 2); 10138da6d581SJan Schmidt 10148da6d581SJan Schmidt while (!list_empty(&prefs)) { 10158da6d581SJan Schmidt ref = list_first_entry(&prefs, struct __prelim_ref, list); 10166c1500f2SJulia Lawall WARN_ON(ref->count < 0); 101798cfee21SWang Shilong if (roots && ref->count && ref->root_id && ref->parent == 0) { 1018dc046b10SJosef Bacik if (root_objectid && ref->root_id != root_objectid) { 1019dc046b10SJosef Bacik ret = BACKREF_FOUND_SHARED; 1020dc046b10SJosef Bacik goto out; 1021dc046b10SJosef Bacik } 1022dc046b10SJosef Bacik 10238da6d581SJan Schmidt /* no parent == root of tree */ 10248da6d581SJan Schmidt ret = ulist_add(roots, ref->root_id, 0, GFP_NOFS); 1025f1723939SWang Shilong if (ret < 0) 1026f1723939SWang Shilong goto out; 10278da6d581SJan Schmidt } 10288da6d581SJan Schmidt if (ref->count && ref->parent) { 10298a56457fSJosef Bacik if (extent_item_pos && !ref->inode_list && 10308a56457fSJosef Bacik ref->level == 0) { 1031976b1908SJan Schmidt struct extent_buffer *eb; 1032707e8a07SDavid Sterba 1033976b1908SJan Schmidt eb = read_tree_block(fs_info->extent_root, 1034ce86cd59SDavid Sterba ref->parent, 0); 1035416bc658SJosef Bacik if (!eb || !extent_buffer_uptodate(eb)) { 1036416bc658SJosef Bacik free_extent_buffer(eb); 1037c16c2e2eSWang Shilong ret = -EIO; 1038c16c2e2eSWang Shilong goto out; 1039416bc658SJosef Bacik } 10406f7ff6d7SFilipe Manana btrfs_tree_read_lock(eb); 10416f7ff6d7SFilipe Manana btrfs_set_lock_blocking_rw(eb, BTRFS_READ_LOCK); 1042976b1908SJan Schmidt ret = find_extent_in_eb(eb, bytenr, 1043976b1908SJan Schmidt *extent_item_pos, &eie); 10446f7ff6d7SFilipe Manana btrfs_tree_read_unlock_blocking(eb); 1045976b1908SJan Schmidt free_extent_buffer(eb); 1046f5929cd8SFilipe David Borba Manana if (ret < 0) 1047f5929cd8SFilipe David Borba Manana goto out; 1048f5929cd8SFilipe David Borba Manana ref->inode_list = eie; 1049976b1908SJan Schmidt } 10504eb1f66dSTakashi Iwai ret = ulist_add_merge_ptr(refs, ref->parent, 10514eb1f66dSTakashi Iwai ref->inode_list, 10524eb1f66dSTakashi Iwai (void **)&eie, GFP_NOFS); 1053f1723939SWang Shilong if (ret < 0) 1054f1723939SWang Shilong goto out; 10553301958bSJan Schmidt if (!ret && extent_item_pos) { 10563301958bSJan Schmidt /* 10573301958bSJan Schmidt * we've recorded that parent, so we must extend 10583301958bSJan Schmidt * its inode list here 10593301958bSJan Schmidt */ 10603301958bSJan Schmidt BUG_ON(!eie); 10613301958bSJan Schmidt while (eie->next) 10623301958bSJan Schmidt eie = eie->next; 10633301958bSJan Schmidt eie->next = ref->inode_list; 10643301958bSJan Schmidt } 1065f05c4746SWang Shilong eie = NULL; 10668da6d581SJan Schmidt } 1067a4fdb61eSWang Shilong list_del(&ref->list); 1068b9e9a6cbSWang Shilong kmem_cache_free(btrfs_prelim_ref_cache, ref); 10698da6d581SJan Schmidt } 10708da6d581SJan Schmidt 10718da6d581SJan Schmidt out: 10728da6d581SJan Schmidt btrfs_free_path(path); 10738da6d581SJan Schmidt while (!list_empty(&prefs)) { 10748da6d581SJan Schmidt ref = list_first_entry(&prefs, struct __prelim_ref, list); 10758da6d581SJan Schmidt list_del(&ref->list); 1076b9e9a6cbSWang Shilong kmem_cache_free(btrfs_prelim_ref_cache, ref); 10778da6d581SJan Schmidt } 10788da6d581SJan Schmidt while (!list_empty(&prefs_delayed)) { 10798da6d581SJan Schmidt ref = list_first_entry(&prefs_delayed, struct __prelim_ref, 10808da6d581SJan Schmidt list); 10818da6d581SJan Schmidt list_del(&ref->list); 1082b9e9a6cbSWang Shilong kmem_cache_free(btrfs_prelim_ref_cache, ref); 10838da6d581SJan Schmidt } 1084f05c4746SWang Shilong if (ret < 0) 1085f05c4746SWang Shilong free_inode_elem_list(eie); 10868da6d581SJan Schmidt return ret; 10878da6d581SJan Schmidt } 10888da6d581SJan Schmidt 1089976b1908SJan Schmidt static void free_leaf_list(struct ulist *blocks) 1090976b1908SJan Schmidt { 1091976b1908SJan Schmidt struct ulist_node *node = NULL; 1092976b1908SJan Schmidt struct extent_inode_elem *eie; 1093976b1908SJan Schmidt struct ulist_iterator uiter; 1094976b1908SJan Schmidt 1095976b1908SJan Schmidt ULIST_ITER_INIT(&uiter); 1096976b1908SJan Schmidt while ((node = ulist_next(blocks, &uiter))) { 1097976b1908SJan Schmidt if (!node->aux) 1098976b1908SJan Schmidt continue; 1099995e01b7SJan Schmidt eie = (struct extent_inode_elem *)(uintptr_t)node->aux; 1100f05c4746SWang Shilong free_inode_elem_list(eie); 1101976b1908SJan Schmidt node->aux = 0; 1102976b1908SJan Schmidt } 1103976b1908SJan Schmidt 1104976b1908SJan Schmidt ulist_free(blocks); 1105976b1908SJan Schmidt } 1106976b1908SJan Schmidt 11078da6d581SJan Schmidt /* 11088da6d581SJan Schmidt * Finds all leafs with a reference to the specified combination of bytenr and 11098da6d581SJan Schmidt * offset. key_list_head will point to a list of corresponding keys (caller must 11108da6d581SJan Schmidt * free each list element). The leafs will be stored in the leafs ulist, which 11118da6d581SJan Schmidt * must be freed with ulist_free. 11128da6d581SJan Schmidt * 11138da6d581SJan Schmidt * returns 0 on success, <0 on error 11148da6d581SJan Schmidt */ 11158da6d581SJan Schmidt static int btrfs_find_all_leafs(struct btrfs_trans_handle *trans, 11168da6d581SJan Schmidt struct btrfs_fs_info *fs_info, u64 bytenr, 1117097b8a7cSJan Schmidt u64 time_seq, struct ulist **leafs, 1118976b1908SJan Schmidt const u64 *extent_item_pos) 11198da6d581SJan Schmidt { 11208da6d581SJan Schmidt int ret; 11218da6d581SJan Schmidt 11228da6d581SJan Schmidt *leafs = ulist_alloc(GFP_NOFS); 112398cfee21SWang Shilong if (!*leafs) 11248da6d581SJan Schmidt return -ENOMEM; 11258da6d581SJan Schmidt 1126097b8a7cSJan Schmidt ret = find_parent_nodes(trans, fs_info, bytenr, 1127dc046b10SJosef Bacik time_seq, *leafs, NULL, extent_item_pos, 0, 0); 11288da6d581SJan Schmidt if (ret < 0 && ret != -ENOENT) { 1129976b1908SJan Schmidt free_leaf_list(*leafs); 11308da6d581SJan Schmidt return ret; 11318da6d581SJan Schmidt } 11328da6d581SJan Schmidt 11338da6d581SJan Schmidt return 0; 11348da6d581SJan Schmidt } 11358da6d581SJan Schmidt 11368da6d581SJan Schmidt /* 11378da6d581SJan Schmidt * walk all backrefs for a given extent to find all roots that reference this 11388da6d581SJan Schmidt * extent. Walking a backref means finding all extents that reference this 11398da6d581SJan Schmidt * extent and in turn walk the backrefs of those, too. Naturally this is a 11408da6d581SJan Schmidt * recursive process, but here it is implemented in an iterative fashion: We 11418da6d581SJan Schmidt * find all referencing extents for the extent in question and put them on a 11428da6d581SJan Schmidt * list. In turn, we find all referencing extents for those, further appending 11438da6d581SJan Schmidt * to the list. The way we iterate the list allows adding more elements after 11448da6d581SJan Schmidt * the current while iterating. The process stops when we reach the end of the 11458da6d581SJan Schmidt * list. Found roots are added to the roots list. 11468da6d581SJan Schmidt * 11478da6d581SJan Schmidt * returns 0 on success, < 0 on error. 11488da6d581SJan Schmidt */ 11499e351cc8SJosef Bacik static int __btrfs_find_all_roots(struct btrfs_trans_handle *trans, 11508da6d581SJan Schmidt struct btrfs_fs_info *fs_info, u64 bytenr, 1151097b8a7cSJan Schmidt u64 time_seq, struct ulist **roots) 11528da6d581SJan Schmidt { 11538da6d581SJan Schmidt struct ulist *tmp; 11548da6d581SJan Schmidt struct ulist_node *node = NULL; 1155cd1b413cSJan Schmidt struct ulist_iterator uiter; 11568da6d581SJan Schmidt int ret; 11578da6d581SJan Schmidt 11588da6d581SJan Schmidt tmp = ulist_alloc(GFP_NOFS); 11598da6d581SJan Schmidt if (!tmp) 11608da6d581SJan Schmidt return -ENOMEM; 11618da6d581SJan Schmidt *roots = ulist_alloc(GFP_NOFS); 11628da6d581SJan Schmidt if (!*roots) { 11638da6d581SJan Schmidt ulist_free(tmp); 11648da6d581SJan Schmidt return -ENOMEM; 11658da6d581SJan Schmidt } 11668da6d581SJan Schmidt 1167cd1b413cSJan Schmidt ULIST_ITER_INIT(&uiter); 11688da6d581SJan Schmidt while (1) { 1169097b8a7cSJan Schmidt ret = find_parent_nodes(trans, fs_info, bytenr, 1170dc046b10SJosef Bacik time_seq, tmp, *roots, NULL, 0, 0); 11718da6d581SJan Schmidt if (ret < 0 && ret != -ENOENT) { 11728da6d581SJan Schmidt ulist_free(tmp); 11738da6d581SJan Schmidt ulist_free(*roots); 11748da6d581SJan Schmidt return ret; 11758da6d581SJan Schmidt } 1176cd1b413cSJan Schmidt node = ulist_next(tmp, &uiter); 11778da6d581SJan Schmidt if (!node) 11788da6d581SJan Schmidt break; 11798da6d581SJan Schmidt bytenr = node->val; 1180bca1a290SWang Shilong cond_resched(); 11818da6d581SJan Schmidt } 11828da6d581SJan Schmidt 11838da6d581SJan Schmidt ulist_free(tmp); 11848da6d581SJan Schmidt return 0; 11858da6d581SJan Schmidt } 11868da6d581SJan Schmidt 11879e351cc8SJosef Bacik int btrfs_find_all_roots(struct btrfs_trans_handle *trans, 11889e351cc8SJosef Bacik struct btrfs_fs_info *fs_info, u64 bytenr, 11899e351cc8SJosef Bacik u64 time_seq, struct ulist **roots) 11909e351cc8SJosef Bacik { 11919e351cc8SJosef Bacik int ret; 11929e351cc8SJosef Bacik 11939e351cc8SJosef Bacik if (!trans) 11949e351cc8SJosef Bacik down_read(&fs_info->commit_root_sem); 11959e351cc8SJosef Bacik ret = __btrfs_find_all_roots(trans, fs_info, bytenr, time_seq, roots); 11969e351cc8SJosef Bacik if (!trans) 11979e351cc8SJosef Bacik up_read(&fs_info->commit_root_sem); 11989e351cc8SJosef Bacik return ret; 11999e351cc8SJosef Bacik } 12009e351cc8SJosef Bacik 1201dc046b10SJosef Bacik int btrfs_check_shared(struct btrfs_trans_handle *trans, 1202dc046b10SJosef Bacik struct btrfs_fs_info *fs_info, u64 root_objectid, 1203dc046b10SJosef Bacik u64 inum, u64 bytenr) 1204dc046b10SJosef Bacik { 1205dc046b10SJosef Bacik struct ulist *tmp = NULL; 1206dc046b10SJosef Bacik struct ulist *roots = NULL; 1207dc046b10SJosef Bacik struct ulist_iterator uiter; 1208dc046b10SJosef Bacik struct ulist_node *node; 1209dc046b10SJosef Bacik struct seq_list elem = {}; 1210dc046b10SJosef Bacik int ret = 0; 1211dc046b10SJosef Bacik 1212dc046b10SJosef Bacik tmp = ulist_alloc(GFP_NOFS); 1213dc046b10SJosef Bacik roots = ulist_alloc(GFP_NOFS); 1214dc046b10SJosef Bacik if (!tmp || !roots) { 1215dc046b10SJosef Bacik ulist_free(tmp); 1216dc046b10SJosef Bacik ulist_free(roots); 1217dc046b10SJosef Bacik return -ENOMEM; 1218dc046b10SJosef Bacik } 1219dc046b10SJosef Bacik 1220dc046b10SJosef Bacik if (trans) 1221dc046b10SJosef Bacik btrfs_get_tree_mod_seq(fs_info, &elem); 1222dc046b10SJosef Bacik else 1223dc046b10SJosef Bacik down_read(&fs_info->commit_root_sem); 1224dc046b10SJosef Bacik ULIST_ITER_INIT(&uiter); 1225dc046b10SJosef Bacik while (1) { 1226dc046b10SJosef Bacik ret = find_parent_nodes(trans, fs_info, bytenr, elem.seq, tmp, 1227dc046b10SJosef Bacik roots, NULL, root_objectid, inum); 1228dc046b10SJosef Bacik if (ret == BACKREF_FOUND_SHARED) { 1229dc046b10SJosef Bacik ret = 1; 1230dc046b10SJosef Bacik break; 1231dc046b10SJosef Bacik } 1232dc046b10SJosef Bacik if (ret < 0 && ret != -ENOENT) 1233dc046b10SJosef Bacik break; 1234dc046b10SJosef Bacik node = ulist_next(tmp, &uiter); 1235dc046b10SJosef Bacik if (!node) 1236dc046b10SJosef Bacik break; 1237dc046b10SJosef Bacik bytenr = node->val; 1238dc046b10SJosef Bacik cond_resched(); 1239dc046b10SJosef Bacik } 1240dc046b10SJosef Bacik if (trans) 1241dc046b10SJosef Bacik btrfs_put_tree_mod_seq(fs_info, &elem); 1242dc046b10SJosef Bacik else 1243dc046b10SJosef Bacik up_read(&fs_info->commit_root_sem); 1244dc046b10SJosef Bacik ulist_free(tmp); 1245dc046b10SJosef Bacik ulist_free(roots); 1246dc046b10SJosef Bacik return ret; 1247dc046b10SJosef Bacik } 1248dc046b10SJosef Bacik 1249a542ad1bSJan Schmidt /* 1250a542ad1bSJan Schmidt * this makes the path point to (inum INODE_ITEM ioff) 1251a542ad1bSJan Schmidt */ 1252a542ad1bSJan Schmidt int inode_item_info(u64 inum, u64 ioff, struct btrfs_root *fs_root, 1253a542ad1bSJan Schmidt struct btrfs_path *path) 1254a542ad1bSJan Schmidt { 1255a542ad1bSJan Schmidt struct btrfs_key key; 1256e33d5c3dSKelley Nielsen return btrfs_find_item(fs_root, path, inum, ioff, 1257e33d5c3dSKelley Nielsen BTRFS_INODE_ITEM_KEY, &key); 1258a542ad1bSJan Schmidt } 1259a542ad1bSJan Schmidt 1260a542ad1bSJan Schmidt static int inode_ref_info(u64 inum, u64 ioff, struct btrfs_root *fs_root, 1261a542ad1bSJan Schmidt struct btrfs_path *path, 1262a542ad1bSJan Schmidt struct btrfs_key *found_key) 1263a542ad1bSJan Schmidt { 1264e33d5c3dSKelley Nielsen return btrfs_find_item(fs_root, path, inum, ioff, 1265e33d5c3dSKelley Nielsen BTRFS_INODE_REF_KEY, found_key); 1266a542ad1bSJan Schmidt } 1267a542ad1bSJan Schmidt 1268f186373fSMark Fasheh int btrfs_find_one_extref(struct btrfs_root *root, u64 inode_objectid, 1269f186373fSMark Fasheh u64 start_off, struct btrfs_path *path, 1270f186373fSMark Fasheh struct btrfs_inode_extref **ret_extref, 1271f186373fSMark Fasheh u64 *found_off) 1272f186373fSMark Fasheh { 1273f186373fSMark Fasheh int ret, slot; 1274f186373fSMark Fasheh struct btrfs_key key; 1275f186373fSMark Fasheh struct btrfs_key found_key; 1276f186373fSMark Fasheh struct btrfs_inode_extref *extref; 1277f186373fSMark Fasheh struct extent_buffer *leaf; 1278f186373fSMark Fasheh unsigned long ptr; 1279f186373fSMark Fasheh 1280f186373fSMark Fasheh key.objectid = inode_objectid; 1281962a298fSDavid Sterba key.type = BTRFS_INODE_EXTREF_KEY; 1282f186373fSMark Fasheh key.offset = start_off; 1283f186373fSMark Fasheh 1284f186373fSMark Fasheh ret = btrfs_search_slot(NULL, root, &key, path, 0, 0); 1285f186373fSMark Fasheh if (ret < 0) 1286f186373fSMark Fasheh return ret; 1287f186373fSMark Fasheh 1288f186373fSMark Fasheh while (1) { 1289f186373fSMark Fasheh leaf = path->nodes[0]; 1290f186373fSMark Fasheh slot = path->slots[0]; 1291f186373fSMark Fasheh if (slot >= btrfs_header_nritems(leaf)) { 1292f186373fSMark Fasheh /* 1293f186373fSMark Fasheh * If the item at offset is not found, 1294f186373fSMark Fasheh * btrfs_search_slot will point us to the slot 1295f186373fSMark Fasheh * where it should be inserted. In our case 1296f186373fSMark Fasheh * that will be the slot directly before the 1297f186373fSMark Fasheh * next INODE_REF_KEY_V2 item. In the case 1298f186373fSMark Fasheh * that we're pointing to the last slot in a 1299f186373fSMark Fasheh * leaf, we must move one leaf over. 1300f186373fSMark Fasheh */ 1301f186373fSMark Fasheh ret = btrfs_next_leaf(root, path); 1302f186373fSMark Fasheh if (ret) { 1303f186373fSMark Fasheh if (ret >= 1) 1304f186373fSMark Fasheh ret = -ENOENT; 1305f186373fSMark Fasheh break; 1306f186373fSMark Fasheh } 1307f186373fSMark Fasheh continue; 1308f186373fSMark Fasheh } 1309f186373fSMark Fasheh 1310f186373fSMark Fasheh btrfs_item_key_to_cpu(leaf, &found_key, slot); 1311f186373fSMark Fasheh 1312f186373fSMark Fasheh /* 1313f186373fSMark Fasheh * Check that we're still looking at an extended ref key for 1314f186373fSMark Fasheh * this particular objectid. If we have different 1315f186373fSMark Fasheh * objectid or type then there are no more to be found 1316f186373fSMark Fasheh * in the tree and we can exit. 1317f186373fSMark Fasheh */ 1318f186373fSMark Fasheh ret = -ENOENT; 1319f186373fSMark Fasheh if (found_key.objectid != inode_objectid) 1320f186373fSMark Fasheh break; 1321962a298fSDavid Sterba if (found_key.type != BTRFS_INODE_EXTREF_KEY) 1322f186373fSMark Fasheh break; 1323f186373fSMark Fasheh 1324f186373fSMark Fasheh ret = 0; 1325f186373fSMark Fasheh ptr = btrfs_item_ptr_offset(leaf, path->slots[0]); 1326f186373fSMark Fasheh extref = (struct btrfs_inode_extref *)ptr; 1327f186373fSMark Fasheh *ret_extref = extref; 1328f186373fSMark Fasheh if (found_off) 1329f186373fSMark Fasheh *found_off = found_key.offset; 1330f186373fSMark Fasheh break; 1331f186373fSMark Fasheh } 1332f186373fSMark Fasheh 1333f186373fSMark Fasheh return ret; 1334f186373fSMark Fasheh } 1335f186373fSMark Fasheh 133648a3b636SEric Sandeen /* 133748a3b636SEric Sandeen * this iterates to turn a name (from iref/extref) into a full filesystem path. 133848a3b636SEric Sandeen * Elements of the path are separated by '/' and the path is guaranteed to be 133948a3b636SEric Sandeen * 0-terminated. the path is only given within the current file system. 134048a3b636SEric Sandeen * Therefore, it never starts with a '/'. the caller is responsible to provide 134148a3b636SEric Sandeen * "size" bytes in "dest". the dest buffer will be filled backwards. finally, 134248a3b636SEric Sandeen * the start point of the resulting string is returned. this pointer is within 134348a3b636SEric Sandeen * dest, normally. 134448a3b636SEric Sandeen * in case the path buffer would overflow, the pointer is decremented further 134548a3b636SEric Sandeen * as if output was written to the buffer, though no more output is actually 134648a3b636SEric Sandeen * generated. that way, the caller can determine how much space would be 134748a3b636SEric Sandeen * required for the path to fit into the buffer. in that case, the returned 134848a3b636SEric Sandeen * value will be smaller than dest. callers must check this! 134948a3b636SEric Sandeen */ 135096b5bd77SJan Schmidt char *btrfs_ref_to_path(struct btrfs_root *fs_root, struct btrfs_path *path, 1351d24bec3aSMark Fasheh u32 name_len, unsigned long name_off, 1352a542ad1bSJan Schmidt struct extent_buffer *eb_in, u64 parent, 1353a542ad1bSJan Schmidt char *dest, u32 size) 1354a542ad1bSJan Schmidt { 1355a542ad1bSJan Schmidt int slot; 1356a542ad1bSJan Schmidt u64 next_inum; 1357a542ad1bSJan Schmidt int ret; 1358661bec6bSGabriel de Perthuis s64 bytes_left = ((s64)size) - 1; 1359a542ad1bSJan Schmidt struct extent_buffer *eb = eb_in; 1360a542ad1bSJan Schmidt struct btrfs_key found_key; 1361b916a59aSJan Schmidt int leave_spinning = path->leave_spinning; 1362d24bec3aSMark Fasheh struct btrfs_inode_ref *iref; 1363a542ad1bSJan Schmidt 1364a542ad1bSJan Schmidt if (bytes_left >= 0) 1365a542ad1bSJan Schmidt dest[bytes_left] = '\0'; 1366a542ad1bSJan Schmidt 1367b916a59aSJan Schmidt path->leave_spinning = 1; 1368a542ad1bSJan Schmidt while (1) { 1369d24bec3aSMark Fasheh bytes_left -= name_len; 1370a542ad1bSJan Schmidt if (bytes_left >= 0) 1371a542ad1bSJan Schmidt read_extent_buffer(eb, dest + bytes_left, 1372d24bec3aSMark Fasheh name_off, name_len); 1373b916a59aSJan Schmidt if (eb != eb_in) { 1374b916a59aSJan Schmidt btrfs_tree_read_unlock_blocking(eb); 1375a542ad1bSJan Schmidt free_extent_buffer(eb); 1376b916a59aSJan Schmidt } 1377a542ad1bSJan Schmidt ret = inode_ref_info(parent, 0, fs_root, path, &found_key); 13788f24b496SJan Schmidt if (ret > 0) 13798f24b496SJan Schmidt ret = -ENOENT; 1380a542ad1bSJan Schmidt if (ret) 1381a542ad1bSJan Schmidt break; 1382d24bec3aSMark Fasheh 1383a542ad1bSJan Schmidt next_inum = found_key.offset; 1384a542ad1bSJan Schmidt 1385a542ad1bSJan Schmidt /* regular exit ahead */ 1386a542ad1bSJan Schmidt if (parent == next_inum) 1387a542ad1bSJan Schmidt break; 1388a542ad1bSJan Schmidt 1389a542ad1bSJan Schmidt slot = path->slots[0]; 1390a542ad1bSJan Schmidt eb = path->nodes[0]; 1391a542ad1bSJan Schmidt /* make sure we can use eb after releasing the path */ 1392b916a59aSJan Schmidt if (eb != eb_in) { 1393a542ad1bSJan Schmidt atomic_inc(&eb->refs); 1394b916a59aSJan Schmidt btrfs_tree_read_lock(eb); 1395b916a59aSJan Schmidt btrfs_set_lock_blocking_rw(eb, BTRFS_READ_LOCK); 1396b916a59aSJan Schmidt } 1397a542ad1bSJan Schmidt btrfs_release_path(path); 1398a542ad1bSJan Schmidt iref = btrfs_item_ptr(eb, slot, struct btrfs_inode_ref); 1399d24bec3aSMark Fasheh 1400d24bec3aSMark Fasheh name_len = btrfs_inode_ref_name_len(eb, iref); 1401d24bec3aSMark Fasheh name_off = (unsigned long)(iref + 1); 1402d24bec3aSMark Fasheh 1403a542ad1bSJan Schmidt parent = next_inum; 1404a542ad1bSJan Schmidt --bytes_left; 1405a542ad1bSJan Schmidt if (bytes_left >= 0) 1406a542ad1bSJan Schmidt dest[bytes_left] = '/'; 1407a542ad1bSJan Schmidt } 1408a542ad1bSJan Schmidt 1409a542ad1bSJan Schmidt btrfs_release_path(path); 1410b916a59aSJan Schmidt path->leave_spinning = leave_spinning; 1411a542ad1bSJan Schmidt 1412a542ad1bSJan Schmidt if (ret) 1413a542ad1bSJan Schmidt return ERR_PTR(ret); 1414a542ad1bSJan Schmidt 1415a542ad1bSJan Schmidt return dest + bytes_left; 1416a542ad1bSJan Schmidt } 1417a542ad1bSJan Schmidt 1418a542ad1bSJan Schmidt /* 1419a542ad1bSJan Schmidt * this makes the path point to (logical EXTENT_ITEM *) 1420a542ad1bSJan Schmidt * returns BTRFS_EXTENT_FLAG_DATA for data, BTRFS_EXTENT_FLAG_TREE_BLOCK for 1421a542ad1bSJan Schmidt * tree blocks and <0 on error. 1422a542ad1bSJan Schmidt */ 1423a542ad1bSJan Schmidt int extent_from_logical(struct btrfs_fs_info *fs_info, u64 logical, 142469917e43SLiu Bo struct btrfs_path *path, struct btrfs_key *found_key, 142569917e43SLiu Bo u64 *flags_ret) 1426a542ad1bSJan Schmidt { 1427a542ad1bSJan Schmidt int ret; 1428a542ad1bSJan Schmidt u64 flags; 1429261c84b6SJosef Bacik u64 size = 0; 1430a542ad1bSJan Schmidt u32 item_size; 1431a542ad1bSJan Schmidt struct extent_buffer *eb; 1432a542ad1bSJan Schmidt struct btrfs_extent_item *ei; 1433a542ad1bSJan Schmidt struct btrfs_key key; 1434a542ad1bSJan Schmidt 1435261c84b6SJosef Bacik if (btrfs_fs_incompat(fs_info, SKINNY_METADATA)) 1436261c84b6SJosef Bacik key.type = BTRFS_METADATA_ITEM_KEY; 1437261c84b6SJosef Bacik else 1438a542ad1bSJan Schmidt key.type = BTRFS_EXTENT_ITEM_KEY; 1439a542ad1bSJan Schmidt key.objectid = logical; 1440a542ad1bSJan Schmidt key.offset = (u64)-1; 1441a542ad1bSJan Schmidt 1442a542ad1bSJan Schmidt ret = btrfs_search_slot(NULL, fs_info->extent_root, &key, path, 0, 0); 1443a542ad1bSJan Schmidt if (ret < 0) 1444a542ad1bSJan Schmidt return ret; 1445a542ad1bSJan Schmidt 1446850a8cdfSWang Shilong ret = btrfs_previous_extent_item(fs_info->extent_root, path, 0); 1447850a8cdfSWang Shilong if (ret) { 1448850a8cdfSWang Shilong if (ret > 0) 1449580f0a67SJosef Bacik ret = -ENOENT; 1450580f0a67SJosef Bacik return ret; 1451580f0a67SJosef Bacik } 1452850a8cdfSWang Shilong btrfs_item_key_to_cpu(path->nodes[0], found_key, path->slots[0]); 1453261c84b6SJosef Bacik if (found_key->type == BTRFS_METADATA_ITEM_KEY) 1454707e8a07SDavid Sterba size = fs_info->extent_root->nodesize; 1455261c84b6SJosef Bacik else if (found_key->type == BTRFS_EXTENT_ITEM_KEY) 1456261c84b6SJosef Bacik size = found_key->offset; 1457261c84b6SJosef Bacik 1458580f0a67SJosef Bacik if (found_key->objectid > logical || 1459261c84b6SJosef Bacik found_key->objectid + size <= logical) { 1460c1c9ff7cSGeert Uytterhoeven pr_debug("logical %llu is not within any extent\n", logical); 1461a542ad1bSJan Schmidt return -ENOENT; 14624692cf58SJan Schmidt } 1463a542ad1bSJan Schmidt 1464a542ad1bSJan Schmidt eb = path->nodes[0]; 1465a542ad1bSJan Schmidt item_size = btrfs_item_size_nr(eb, path->slots[0]); 1466a542ad1bSJan Schmidt BUG_ON(item_size < sizeof(*ei)); 1467a542ad1bSJan Schmidt 1468a542ad1bSJan Schmidt ei = btrfs_item_ptr(eb, path->slots[0], struct btrfs_extent_item); 1469a542ad1bSJan Schmidt flags = btrfs_extent_flags(eb, ei); 1470a542ad1bSJan Schmidt 14714692cf58SJan Schmidt pr_debug("logical %llu is at position %llu within the extent (%llu " 14724692cf58SJan Schmidt "EXTENT_ITEM %llu) flags %#llx size %u\n", 1473c1c9ff7cSGeert Uytterhoeven logical, logical - found_key->objectid, found_key->objectid, 1474c1c9ff7cSGeert Uytterhoeven found_key->offset, flags, item_size); 147569917e43SLiu Bo 147669917e43SLiu Bo WARN_ON(!flags_ret); 147769917e43SLiu Bo if (flags_ret) { 1478a542ad1bSJan Schmidt if (flags & BTRFS_EXTENT_FLAG_TREE_BLOCK) 147969917e43SLiu Bo *flags_ret = BTRFS_EXTENT_FLAG_TREE_BLOCK; 148069917e43SLiu Bo else if (flags & BTRFS_EXTENT_FLAG_DATA) 148169917e43SLiu Bo *flags_ret = BTRFS_EXTENT_FLAG_DATA; 148269917e43SLiu Bo else 148369917e43SLiu Bo BUG_ON(1); 148469917e43SLiu Bo return 0; 148569917e43SLiu Bo } 1486a542ad1bSJan Schmidt 1487a542ad1bSJan Schmidt return -EIO; 1488a542ad1bSJan Schmidt } 1489a542ad1bSJan Schmidt 1490a542ad1bSJan Schmidt /* 1491a542ad1bSJan Schmidt * helper function to iterate extent inline refs. ptr must point to a 0 value 1492a542ad1bSJan Schmidt * for the first call and may be modified. it is used to track state. 1493a542ad1bSJan Schmidt * if more refs exist, 0 is returned and the next call to 1494a542ad1bSJan Schmidt * __get_extent_inline_ref must pass the modified ptr parameter to get the 1495a542ad1bSJan Schmidt * next ref. after the last ref was processed, 1 is returned. 1496a542ad1bSJan Schmidt * returns <0 on error 1497a542ad1bSJan Schmidt */ 1498a542ad1bSJan Schmidt static int __get_extent_inline_ref(unsigned long *ptr, struct extent_buffer *eb, 14996eda71d0SLiu Bo struct btrfs_key *key, 1500a542ad1bSJan Schmidt struct btrfs_extent_item *ei, u32 item_size, 1501a542ad1bSJan Schmidt struct btrfs_extent_inline_ref **out_eiref, 1502a542ad1bSJan Schmidt int *out_type) 1503a542ad1bSJan Schmidt { 1504a542ad1bSJan Schmidt unsigned long end; 1505a542ad1bSJan Schmidt u64 flags; 1506a542ad1bSJan Schmidt struct btrfs_tree_block_info *info; 1507a542ad1bSJan Schmidt 1508a542ad1bSJan Schmidt if (!*ptr) { 1509a542ad1bSJan Schmidt /* first call */ 1510a542ad1bSJan Schmidt flags = btrfs_extent_flags(eb, ei); 1511a542ad1bSJan Schmidt if (flags & BTRFS_EXTENT_FLAG_TREE_BLOCK) { 15126eda71d0SLiu Bo if (key->type == BTRFS_METADATA_ITEM_KEY) { 15136eda71d0SLiu Bo /* a skinny metadata extent */ 15146eda71d0SLiu Bo *out_eiref = 15156eda71d0SLiu Bo (struct btrfs_extent_inline_ref *)(ei + 1); 15166eda71d0SLiu Bo } else { 15176eda71d0SLiu Bo WARN_ON(key->type != BTRFS_EXTENT_ITEM_KEY); 1518a542ad1bSJan Schmidt info = (struct btrfs_tree_block_info *)(ei + 1); 1519a542ad1bSJan Schmidt *out_eiref = 1520a542ad1bSJan Schmidt (struct btrfs_extent_inline_ref *)(info + 1); 15216eda71d0SLiu Bo } 1522a542ad1bSJan Schmidt } else { 1523a542ad1bSJan Schmidt *out_eiref = (struct btrfs_extent_inline_ref *)(ei + 1); 1524a542ad1bSJan Schmidt } 1525a542ad1bSJan Schmidt *ptr = (unsigned long)*out_eiref; 1526cd857dd6SLiu Bo if ((unsigned long)(*ptr) >= (unsigned long)ei + item_size) 1527a542ad1bSJan Schmidt return -ENOENT; 1528a542ad1bSJan Schmidt } 1529a542ad1bSJan Schmidt 1530a542ad1bSJan Schmidt end = (unsigned long)ei + item_size; 15316eda71d0SLiu Bo *out_eiref = (struct btrfs_extent_inline_ref *)(*ptr); 1532a542ad1bSJan Schmidt *out_type = btrfs_extent_inline_ref_type(eb, *out_eiref); 1533a542ad1bSJan Schmidt 1534a542ad1bSJan Schmidt *ptr += btrfs_extent_inline_ref_size(*out_type); 1535a542ad1bSJan Schmidt WARN_ON(*ptr > end); 1536a542ad1bSJan Schmidt if (*ptr == end) 1537a542ad1bSJan Schmidt return 1; /* last */ 1538a542ad1bSJan Schmidt 1539a542ad1bSJan Schmidt return 0; 1540a542ad1bSJan Schmidt } 1541a542ad1bSJan Schmidt 1542a542ad1bSJan Schmidt /* 1543a542ad1bSJan Schmidt * reads the tree block backref for an extent. tree level and root are returned 1544a542ad1bSJan Schmidt * through out_level and out_root. ptr must point to a 0 value for the first 1545a542ad1bSJan Schmidt * call and may be modified (see __get_extent_inline_ref comment). 1546a542ad1bSJan Schmidt * returns 0 if data was provided, 1 if there was no more data to provide or 1547a542ad1bSJan Schmidt * <0 on error. 1548a542ad1bSJan Schmidt */ 1549a542ad1bSJan Schmidt int tree_backref_for_extent(unsigned long *ptr, struct extent_buffer *eb, 15506eda71d0SLiu Bo struct btrfs_key *key, struct btrfs_extent_item *ei, 15516eda71d0SLiu Bo u32 item_size, u64 *out_root, u8 *out_level) 1552a542ad1bSJan Schmidt { 1553a542ad1bSJan Schmidt int ret; 1554a542ad1bSJan Schmidt int type; 1555a542ad1bSJan Schmidt struct btrfs_extent_inline_ref *eiref; 1556a542ad1bSJan Schmidt 1557a542ad1bSJan Schmidt if (*ptr == (unsigned long)-1) 1558a542ad1bSJan Schmidt return 1; 1559a542ad1bSJan Schmidt 1560a542ad1bSJan Schmidt while (1) { 15616eda71d0SLiu Bo ret = __get_extent_inline_ref(ptr, eb, key, ei, item_size, 1562a542ad1bSJan Schmidt &eiref, &type); 1563a542ad1bSJan Schmidt if (ret < 0) 1564a542ad1bSJan Schmidt return ret; 1565a542ad1bSJan Schmidt 1566a542ad1bSJan Schmidt if (type == BTRFS_TREE_BLOCK_REF_KEY || 1567a542ad1bSJan Schmidt type == BTRFS_SHARED_BLOCK_REF_KEY) 1568a542ad1bSJan Schmidt break; 1569a542ad1bSJan Schmidt 1570a542ad1bSJan Schmidt if (ret == 1) 1571a542ad1bSJan Schmidt return 1; 1572a542ad1bSJan Schmidt } 1573a542ad1bSJan Schmidt 1574a542ad1bSJan Schmidt /* we can treat both ref types equally here */ 1575a542ad1bSJan Schmidt *out_root = btrfs_extent_inline_ref_offset(eb, eiref); 1576*a1317f45SFilipe Manana 1577*a1317f45SFilipe Manana if (key->type == BTRFS_EXTENT_ITEM_KEY) { 1578*a1317f45SFilipe Manana struct btrfs_tree_block_info *info; 1579*a1317f45SFilipe Manana 1580*a1317f45SFilipe Manana info = (struct btrfs_tree_block_info *)(ei + 1); 1581a542ad1bSJan Schmidt *out_level = btrfs_tree_block_level(eb, info); 1582*a1317f45SFilipe Manana } else { 1583*a1317f45SFilipe Manana ASSERT(key->type == BTRFS_METADATA_ITEM_KEY); 1584*a1317f45SFilipe Manana *out_level = (u8)key->offset; 1585*a1317f45SFilipe Manana } 1586a542ad1bSJan Schmidt 1587a542ad1bSJan Schmidt if (ret == 1) 1588a542ad1bSJan Schmidt *ptr = (unsigned long)-1; 1589a542ad1bSJan Schmidt 1590a542ad1bSJan Schmidt return 0; 1591a542ad1bSJan Schmidt } 1592a542ad1bSJan Schmidt 1593976b1908SJan Schmidt static int iterate_leaf_refs(struct extent_inode_elem *inode_list, 1594976b1908SJan Schmidt u64 root, u64 extent_item_objectid, 15954692cf58SJan Schmidt iterate_extent_inodes_t *iterate, void *ctx) 1596a542ad1bSJan Schmidt { 1597976b1908SJan Schmidt struct extent_inode_elem *eie; 15984692cf58SJan Schmidt int ret = 0; 1599a542ad1bSJan Schmidt 1600976b1908SJan Schmidt for (eie = inode_list; eie; eie = eie->next) { 16014692cf58SJan Schmidt pr_debug("ref for %llu resolved, key (%llu EXTEND_DATA %llu), " 1602976b1908SJan Schmidt "root %llu\n", extent_item_objectid, 1603976b1908SJan Schmidt eie->inum, eie->offset, root); 1604976b1908SJan Schmidt ret = iterate(eie->inum, eie->offset, root, ctx); 16054692cf58SJan Schmidt if (ret) { 1606976b1908SJan Schmidt pr_debug("stopping iteration for %llu due to ret=%d\n", 1607976b1908SJan Schmidt extent_item_objectid, ret); 1608a542ad1bSJan Schmidt break; 1609a542ad1bSJan Schmidt } 1610a542ad1bSJan Schmidt } 1611a542ad1bSJan Schmidt 1612a542ad1bSJan Schmidt return ret; 1613a542ad1bSJan Schmidt } 1614a542ad1bSJan Schmidt 1615a542ad1bSJan Schmidt /* 1616a542ad1bSJan Schmidt * calls iterate() for every inode that references the extent identified by 16174692cf58SJan Schmidt * the given parameters. 1618a542ad1bSJan Schmidt * when the iterator function returns a non-zero value, iteration stops. 1619a542ad1bSJan Schmidt */ 1620a542ad1bSJan Schmidt int iterate_extent_inodes(struct btrfs_fs_info *fs_info, 16214692cf58SJan Schmidt u64 extent_item_objectid, u64 extent_item_pos, 16227a3ae2f8SJan Schmidt int search_commit_root, 1623a542ad1bSJan Schmidt iterate_extent_inodes_t *iterate, void *ctx) 1624a542ad1bSJan Schmidt { 1625a542ad1bSJan Schmidt int ret; 1626da61d31aSJosef Bacik struct btrfs_trans_handle *trans = NULL; 16277a3ae2f8SJan Schmidt struct ulist *refs = NULL; 16287a3ae2f8SJan Schmidt struct ulist *roots = NULL; 16294692cf58SJan Schmidt struct ulist_node *ref_node = NULL; 16304692cf58SJan Schmidt struct ulist_node *root_node = NULL; 16318445f61cSJan Schmidt struct seq_list tree_mod_seq_elem = {}; 1632cd1b413cSJan Schmidt struct ulist_iterator ref_uiter; 1633cd1b413cSJan Schmidt struct ulist_iterator root_uiter; 1634a542ad1bSJan Schmidt 16354692cf58SJan Schmidt pr_debug("resolving all inodes for extent %llu\n", 16364692cf58SJan Schmidt extent_item_objectid); 16374692cf58SJan Schmidt 1638da61d31aSJosef Bacik if (!search_commit_root) { 16397a3ae2f8SJan Schmidt trans = btrfs_join_transaction(fs_info->extent_root); 16407a3ae2f8SJan Schmidt if (IS_ERR(trans)) 16417a3ae2f8SJan Schmidt return PTR_ERR(trans); 16428445f61cSJan Schmidt btrfs_get_tree_mod_seq(fs_info, &tree_mod_seq_elem); 16439e351cc8SJosef Bacik } else { 16449e351cc8SJosef Bacik down_read(&fs_info->commit_root_sem); 16457a3ae2f8SJan Schmidt } 16464692cf58SJan Schmidt 16474692cf58SJan Schmidt ret = btrfs_find_all_leafs(trans, fs_info, extent_item_objectid, 1648097b8a7cSJan Schmidt tree_mod_seq_elem.seq, &refs, 16498445f61cSJan Schmidt &extent_item_pos); 16504692cf58SJan Schmidt if (ret) 16514692cf58SJan Schmidt goto out; 16524692cf58SJan Schmidt 1653cd1b413cSJan Schmidt ULIST_ITER_INIT(&ref_uiter); 1654cd1b413cSJan Schmidt while (!ret && (ref_node = ulist_next(refs, &ref_uiter))) { 16559e351cc8SJosef Bacik ret = __btrfs_find_all_roots(trans, fs_info, ref_node->val, 16568445f61cSJan Schmidt tree_mod_seq_elem.seq, &roots); 16574692cf58SJan Schmidt if (ret) 1658a542ad1bSJan Schmidt break; 1659cd1b413cSJan Schmidt ULIST_ITER_INIT(&root_uiter); 1660cd1b413cSJan Schmidt while (!ret && (root_node = ulist_next(roots, &root_uiter))) { 1661976b1908SJan Schmidt pr_debug("root %llu references leaf %llu, data list " 166234d73f54SAlexander Block "%#llx\n", root_node->val, ref_node->val, 1663c1c9ff7cSGeert Uytterhoeven ref_node->aux); 1664995e01b7SJan Schmidt ret = iterate_leaf_refs((struct extent_inode_elem *) 1665995e01b7SJan Schmidt (uintptr_t)ref_node->aux, 1666995e01b7SJan Schmidt root_node->val, 1667995e01b7SJan Schmidt extent_item_objectid, 1668a542ad1bSJan Schmidt iterate, ctx); 16694692cf58SJan Schmidt } 1670976b1908SJan Schmidt ulist_free(roots); 1671a542ad1bSJan Schmidt } 1672a542ad1bSJan Schmidt 1673976b1908SJan Schmidt free_leaf_list(refs); 16744692cf58SJan Schmidt out: 16757a3ae2f8SJan Schmidt if (!search_commit_root) { 16768445f61cSJan Schmidt btrfs_put_tree_mod_seq(fs_info, &tree_mod_seq_elem); 16774692cf58SJan Schmidt btrfs_end_transaction(trans, fs_info->extent_root); 16789e351cc8SJosef Bacik } else { 16799e351cc8SJosef Bacik up_read(&fs_info->commit_root_sem); 16807a3ae2f8SJan Schmidt } 16817a3ae2f8SJan Schmidt 1682a542ad1bSJan Schmidt return ret; 1683a542ad1bSJan Schmidt } 1684a542ad1bSJan Schmidt 1685a542ad1bSJan Schmidt int iterate_inodes_from_logical(u64 logical, struct btrfs_fs_info *fs_info, 1686a542ad1bSJan Schmidt struct btrfs_path *path, 1687a542ad1bSJan Schmidt iterate_extent_inodes_t *iterate, void *ctx) 1688a542ad1bSJan Schmidt { 1689a542ad1bSJan Schmidt int ret; 16904692cf58SJan Schmidt u64 extent_item_pos; 169169917e43SLiu Bo u64 flags = 0; 1692a542ad1bSJan Schmidt struct btrfs_key found_key; 16937a3ae2f8SJan Schmidt int search_commit_root = path->search_commit_root; 1694a542ad1bSJan Schmidt 169569917e43SLiu Bo ret = extent_from_logical(fs_info, logical, path, &found_key, &flags); 16964692cf58SJan Schmidt btrfs_release_path(path); 1697a542ad1bSJan Schmidt if (ret < 0) 1698a542ad1bSJan Schmidt return ret; 169969917e43SLiu Bo if (flags & BTRFS_EXTENT_FLAG_TREE_BLOCK) 17003627bf45SStefan Behrens return -EINVAL; 1701a542ad1bSJan Schmidt 17024692cf58SJan Schmidt extent_item_pos = logical - found_key.objectid; 17037a3ae2f8SJan Schmidt ret = iterate_extent_inodes(fs_info, found_key.objectid, 17047a3ae2f8SJan Schmidt extent_item_pos, search_commit_root, 17057a3ae2f8SJan Schmidt iterate, ctx); 1706a542ad1bSJan Schmidt 1707a542ad1bSJan Schmidt return ret; 1708a542ad1bSJan Schmidt } 1709a542ad1bSJan Schmidt 1710d24bec3aSMark Fasheh typedef int (iterate_irefs_t)(u64 parent, u32 name_len, unsigned long name_off, 1711d24bec3aSMark Fasheh struct extent_buffer *eb, void *ctx); 1712d24bec3aSMark Fasheh 1713d24bec3aSMark Fasheh static int iterate_inode_refs(u64 inum, struct btrfs_root *fs_root, 1714a542ad1bSJan Schmidt struct btrfs_path *path, 1715a542ad1bSJan Schmidt iterate_irefs_t *iterate, void *ctx) 1716a542ad1bSJan Schmidt { 1717aefc1eb1SJan Schmidt int ret = 0; 1718a542ad1bSJan Schmidt int slot; 1719a542ad1bSJan Schmidt u32 cur; 1720a542ad1bSJan Schmidt u32 len; 1721a542ad1bSJan Schmidt u32 name_len; 1722a542ad1bSJan Schmidt u64 parent = 0; 1723a542ad1bSJan Schmidt int found = 0; 1724a542ad1bSJan Schmidt struct extent_buffer *eb; 1725a542ad1bSJan Schmidt struct btrfs_item *item; 1726a542ad1bSJan Schmidt struct btrfs_inode_ref *iref; 1727a542ad1bSJan Schmidt struct btrfs_key found_key; 1728a542ad1bSJan Schmidt 1729aefc1eb1SJan Schmidt while (!ret) { 1730a542ad1bSJan Schmidt ret = inode_ref_info(inum, parent ? parent+1 : 0, fs_root, path, 1731a542ad1bSJan Schmidt &found_key); 1732a542ad1bSJan Schmidt if (ret < 0) 1733a542ad1bSJan Schmidt break; 1734a542ad1bSJan Schmidt if (ret) { 1735a542ad1bSJan Schmidt ret = found ? 0 : -ENOENT; 1736a542ad1bSJan Schmidt break; 1737a542ad1bSJan Schmidt } 1738a542ad1bSJan Schmidt ++found; 1739a542ad1bSJan Schmidt 1740a542ad1bSJan Schmidt parent = found_key.offset; 1741a542ad1bSJan Schmidt slot = path->slots[0]; 17423fe81ce2SFilipe David Borba Manana eb = btrfs_clone_extent_buffer(path->nodes[0]); 17433fe81ce2SFilipe David Borba Manana if (!eb) { 17443fe81ce2SFilipe David Borba Manana ret = -ENOMEM; 17453fe81ce2SFilipe David Borba Manana break; 17463fe81ce2SFilipe David Borba Manana } 17473fe81ce2SFilipe David Borba Manana extent_buffer_get(eb); 1748b916a59aSJan Schmidt btrfs_tree_read_lock(eb); 1749b916a59aSJan Schmidt btrfs_set_lock_blocking_rw(eb, BTRFS_READ_LOCK); 1750a542ad1bSJan Schmidt btrfs_release_path(path); 1751a542ad1bSJan Schmidt 1752dd3cc16bSRoss Kirk item = btrfs_item_nr(slot); 1753a542ad1bSJan Schmidt iref = btrfs_item_ptr(eb, slot, struct btrfs_inode_ref); 1754a542ad1bSJan Schmidt 1755a542ad1bSJan Schmidt for (cur = 0; cur < btrfs_item_size(eb, item); cur += len) { 1756a542ad1bSJan Schmidt name_len = btrfs_inode_ref_name_len(eb, iref); 1757a542ad1bSJan Schmidt /* path must be released before calling iterate()! */ 17584692cf58SJan Schmidt pr_debug("following ref at offset %u for inode %llu in " 1759c1c9ff7cSGeert Uytterhoeven "tree %llu\n", cur, found_key.objectid, 1760c1c9ff7cSGeert Uytterhoeven fs_root->objectid); 1761d24bec3aSMark Fasheh ret = iterate(parent, name_len, 1762d24bec3aSMark Fasheh (unsigned long)(iref + 1), eb, ctx); 1763aefc1eb1SJan Schmidt if (ret) 1764a542ad1bSJan Schmidt break; 1765a542ad1bSJan Schmidt len = sizeof(*iref) + name_len; 1766a542ad1bSJan Schmidt iref = (struct btrfs_inode_ref *)((char *)iref + len); 1767a542ad1bSJan Schmidt } 1768b916a59aSJan Schmidt btrfs_tree_read_unlock_blocking(eb); 1769a542ad1bSJan Schmidt free_extent_buffer(eb); 1770a542ad1bSJan Schmidt } 1771a542ad1bSJan Schmidt 1772a542ad1bSJan Schmidt btrfs_release_path(path); 1773a542ad1bSJan Schmidt 1774a542ad1bSJan Schmidt return ret; 1775a542ad1bSJan Schmidt } 1776a542ad1bSJan Schmidt 1777d24bec3aSMark Fasheh static int iterate_inode_extrefs(u64 inum, struct btrfs_root *fs_root, 1778d24bec3aSMark Fasheh struct btrfs_path *path, 1779d24bec3aSMark Fasheh iterate_irefs_t *iterate, void *ctx) 1780d24bec3aSMark Fasheh { 1781d24bec3aSMark Fasheh int ret; 1782d24bec3aSMark Fasheh int slot; 1783d24bec3aSMark Fasheh u64 offset = 0; 1784d24bec3aSMark Fasheh u64 parent; 1785d24bec3aSMark Fasheh int found = 0; 1786d24bec3aSMark Fasheh struct extent_buffer *eb; 1787d24bec3aSMark Fasheh struct btrfs_inode_extref *extref; 1788d24bec3aSMark Fasheh struct extent_buffer *leaf; 1789d24bec3aSMark Fasheh u32 item_size; 1790d24bec3aSMark Fasheh u32 cur_offset; 1791d24bec3aSMark Fasheh unsigned long ptr; 1792d24bec3aSMark Fasheh 1793d24bec3aSMark Fasheh while (1) { 1794d24bec3aSMark Fasheh ret = btrfs_find_one_extref(fs_root, inum, offset, path, &extref, 1795d24bec3aSMark Fasheh &offset); 1796d24bec3aSMark Fasheh if (ret < 0) 1797d24bec3aSMark Fasheh break; 1798d24bec3aSMark Fasheh if (ret) { 1799d24bec3aSMark Fasheh ret = found ? 0 : -ENOENT; 1800d24bec3aSMark Fasheh break; 1801d24bec3aSMark Fasheh } 1802d24bec3aSMark Fasheh ++found; 1803d24bec3aSMark Fasheh 1804d24bec3aSMark Fasheh slot = path->slots[0]; 18053fe81ce2SFilipe David Borba Manana eb = btrfs_clone_extent_buffer(path->nodes[0]); 18063fe81ce2SFilipe David Borba Manana if (!eb) { 18073fe81ce2SFilipe David Borba Manana ret = -ENOMEM; 18083fe81ce2SFilipe David Borba Manana break; 18093fe81ce2SFilipe David Borba Manana } 18103fe81ce2SFilipe David Borba Manana extent_buffer_get(eb); 1811d24bec3aSMark Fasheh 1812d24bec3aSMark Fasheh btrfs_tree_read_lock(eb); 1813d24bec3aSMark Fasheh btrfs_set_lock_blocking_rw(eb, BTRFS_READ_LOCK); 1814d24bec3aSMark Fasheh btrfs_release_path(path); 1815d24bec3aSMark Fasheh 1816d24bec3aSMark Fasheh leaf = path->nodes[0]; 1817e94acd86SValentina Giusti item_size = btrfs_item_size_nr(leaf, slot); 1818e94acd86SValentina Giusti ptr = btrfs_item_ptr_offset(leaf, slot); 1819d24bec3aSMark Fasheh cur_offset = 0; 1820d24bec3aSMark Fasheh 1821d24bec3aSMark Fasheh while (cur_offset < item_size) { 1822d24bec3aSMark Fasheh u32 name_len; 1823d24bec3aSMark Fasheh 1824d24bec3aSMark Fasheh extref = (struct btrfs_inode_extref *)(ptr + cur_offset); 1825d24bec3aSMark Fasheh parent = btrfs_inode_extref_parent(eb, extref); 1826d24bec3aSMark Fasheh name_len = btrfs_inode_extref_name_len(eb, extref); 1827d24bec3aSMark Fasheh ret = iterate(parent, name_len, 1828d24bec3aSMark Fasheh (unsigned long)&extref->name, eb, ctx); 1829d24bec3aSMark Fasheh if (ret) 1830d24bec3aSMark Fasheh break; 1831d24bec3aSMark Fasheh 1832d24bec3aSMark Fasheh cur_offset += btrfs_inode_extref_name_len(leaf, extref); 1833d24bec3aSMark Fasheh cur_offset += sizeof(*extref); 1834d24bec3aSMark Fasheh } 1835d24bec3aSMark Fasheh btrfs_tree_read_unlock_blocking(eb); 1836d24bec3aSMark Fasheh free_extent_buffer(eb); 1837d24bec3aSMark Fasheh 1838d24bec3aSMark Fasheh offset++; 1839d24bec3aSMark Fasheh } 1840d24bec3aSMark Fasheh 1841d24bec3aSMark Fasheh btrfs_release_path(path); 1842d24bec3aSMark Fasheh 1843d24bec3aSMark Fasheh return ret; 1844d24bec3aSMark Fasheh } 1845d24bec3aSMark Fasheh 1846d24bec3aSMark Fasheh static int iterate_irefs(u64 inum, struct btrfs_root *fs_root, 1847d24bec3aSMark Fasheh struct btrfs_path *path, iterate_irefs_t *iterate, 1848d24bec3aSMark Fasheh void *ctx) 1849d24bec3aSMark Fasheh { 1850d24bec3aSMark Fasheh int ret; 1851d24bec3aSMark Fasheh int found_refs = 0; 1852d24bec3aSMark Fasheh 1853d24bec3aSMark Fasheh ret = iterate_inode_refs(inum, fs_root, path, iterate, ctx); 1854d24bec3aSMark Fasheh if (!ret) 1855d24bec3aSMark Fasheh ++found_refs; 1856d24bec3aSMark Fasheh else if (ret != -ENOENT) 1857d24bec3aSMark Fasheh return ret; 1858d24bec3aSMark Fasheh 1859d24bec3aSMark Fasheh ret = iterate_inode_extrefs(inum, fs_root, path, iterate, ctx); 1860d24bec3aSMark Fasheh if (ret == -ENOENT && found_refs) 1861d24bec3aSMark Fasheh return 0; 1862d24bec3aSMark Fasheh 1863d24bec3aSMark Fasheh return ret; 1864d24bec3aSMark Fasheh } 1865d24bec3aSMark Fasheh 1866a542ad1bSJan Schmidt /* 1867a542ad1bSJan Schmidt * returns 0 if the path could be dumped (probably truncated) 1868a542ad1bSJan Schmidt * returns <0 in case of an error 1869a542ad1bSJan Schmidt */ 1870d24bec3aSMark Fasheh static int inode_to_path(u64 inum, u32 name_len, unsigned long name_off, 1871a542ad1bSJan Schmidt struct extent_buffer *eb, void *ctx) 1872a542ad1bSJan Schmidt { 1873a542ad1bSJan Schmidt struct inode_fs_paths *ipath = ctx; 1874a542ad1bSJan Schmidt char *fspath; 1875a542ad1bSJan Schmidt char *fspath_min; 1876a542ad1bSJan Schmidt int i = ipath->fspath->elem_cnt; 1877a542ad1bSJan Schmidt const int s_ptr = sizeof(char *); 1878a542ad1bSJan Schmidt u32 bytes_left; 1879a542ad1bSJan Schmidt 1880a542ad1bSJan Schmidt bytes_left = ipath->fspath->bytes_left > s_ptr ? 1881a542ad1bSJan Schmidt ipath->fspath->bytes_left - s_ptr : 0; 1882a542ad1bSJan Schmidt 1883740c3d22SChris Mason fspath_min = (char *)ipath->fspath->val + (i + 1) * s_ptr; 188496b5bd77SJan Schmidt fspath = btrfs_ref_to_path(ipath->fs_root, ipath->btrfs_path, name_len, 188596b5bd77SJan Schmidt name_off, eb, inum, fspath_min, bytes_left); 1886a542ad1bSJan Schmidt if (IS_ERR(fspath)) 1887a542ad1bSJan Schmidt return PTR_ERR(fspath); 1888a542ad1bSJan Schmidt 1889a542ad1bSJan Schmidt if (fspath > fspath_min) { 1890745c4d8eSJeff Mahoney ipath->fspath->val[i] = (u64)(unsigned long)fspath; 1891a542ad1bSJan Schmidt ++ipath->fspath->elem_cnt; 1892a542ad1bSJan Schmidt ipath->fspath->bytes_left = fspath - fspath_min; 1893a542ad1bSJan Schmidt } else { 1894a542ad1bSJan Schmidt ++ipath->fspath->elem_missed; 1895a542ad1bSJan Schmidt ipath->fspath->bytes_missing += fspath_min - fspath; 1896a542ad1bSJan Schmidt ipath->fspath->bytes_left = 0; 1897a542ad1bSJan Schmidt } 1898a542ad1bSJan Schmidt 1899a542ad1bSJan Schmidt return 0; 1900a542ad1bSJan Schmidt } 1901a542ad1bSJan Schmidt 1902a542ad1bSJan Schmidt /* 1903a542ad1bSJan Schmidt * this dumps all file system paths to the inode into the ipath struct, provided 1904a542ad1bSJan Schmidt * is has been created large enough. each path is zero-terminated and accessed 1905740c3d22SChris Mason * from ipath->fspath->val[i]. 1906a542ad1bSJan Schmidt * when it returns, there are ipath->fspath->elem_cnt number of paths available 1907740c3d22SChris Mason * in ipath->fspath->val[]. when the allocated space wasn't sufficient, the 1908a542ad1bSJan Schmidt * number of missed paths in recored in ipath->fspath->elem_missed, otherwise, 1909a542ad1bSJan Schmidt * it's zero. ipath->fspath->bytes_missing holds the number of bytes that would 1910a542ad1bSJan Schmidt * have been needed to return all paths. 1911a542ad1bSJan Schmidt */ 1912a542ad1bSJan Schmidt int paths_from_inode(u64 inum, struct inode_fs_paths *ipath) 1913a542ad1bSJan Schmidt { 1914a542ad1bSJan Schmidt return iterate_irefs(inum, ipath->fs_root, ipath->btrfs_path, 1915a542ad1bSJan Schmidt inode_to_path, ipath); 1916a542ad1bSJan Schmidt } 1917a542ad1bSJan Schmidt 1918a542ad1bSJan Schmidt struct btrfs_data_container *init_data_container(u32 total_bytes) 1919a542ad1bSJan Schmidt { 1920a542ad1bSJan Schmidt struct btrfs_data_container *data; 1921a542ad1bSJan Schmidt size_t alloc_bytes; 1922a542ad1bSJan Schmidt 1923a542ad1bSJan Schmidt alloc_bytes = max_t(size_t, total_bytes, sizeof(*data)); 1924425d17a2SLiu Bo data = vmalloc(alloc_bytes); 1925a542ad1bSJan Schmidt if (!data) 1926a542ad1bSJan Schmidt return ERR_PTR(-ENOMEM); 1927a542ad1bSJan Schmidt 1928a542ad1bSJan Schmidt if (total_bytes >= sizeof(*data)) { 1929a542ad1bSJan Schmidt data->bytes_left = total_bytes - sizeof(*data); 1930a542ad1bSJan Schmidt data->bytes_missing = 0; 1931a542ad1bSJan Schmidt } else { 1932a542ad1bSJan Schmidt data->bytes_missing = sizeof(*data) - total_bytes; 1933a542ad1bSJan Schmidt data->bytes_left = 0; 1934a542ad1bSJan Schmidt } 1935a542ad1bSJan Schmidt 1936a542ad1bSJan Schmidt data->elem_cnt = 0; 1937a542ad1bSJan Schmidt data->elem_missed = 0; 1938a542ad1bSJan Schmidt 1939a542ad1bSJan Schmidt return data; 1940a542ad1bSJan Schmidt } 1941a542ad1bSJan Schmidt 1942a542ad1bSJan Schmidt /* 1943a542ad1bSJan Schmidt * allocates space to return multiple file system paths for an inode. 1944a542ad1bSJan Schmidt * total_bytes to allocate are passed, note that space usable for actual path 1945a542ad1bSJan Schmidt * information will be total_bytes - sizeof(struct inode_fs_paths). 1946a542ad1bSJan Schmidt * the returned pointer must be freed with free_ipath() in the end. 1947a542ad1bSJan Schmidt */ 1948a542ad1bSJan Schmidt struct inode_fs_paths *init_ipath(s32 total_bytes, struct btrfs_root *fs_root, 1949a542ad1bSJan Schmidt struct btrfs_path *path) 1950a542ad1bSJan Schmidt { 1951a542ad1bSJan Schmidt struct inode_fs_paths *ifp; 1952a542ad1bSJan Schmidt struct btrfs_data_container *fspath; 1953a542ad1bSJan Schmidt 1954a542ad1bSJan Schmidt fspath = init_data_container(total_bytes); 1955a542ad1bSJan Schmidt if (IS_ERR(fspath)) 1956a542ad1bSJan Schmidt return (void *)fspath; 1957a542ad1bSJan Schmidt 1958a542ad1bSJan Schmidt ifp = kmalloc(sizeof(*ifp), GFP_NOFS); 1959a542ad1bSJan Schmidt if (!ifp) { 1960a542ad1bSJan Schmidt kfree(fspath); 1961a542ad1bSJan Schmidt return ERR_PTR(-ENOMEM); 1962a542ad1bSJan Schmidt } 1963a542ad1bSJan Schmidt 1964a542ad1bSJan Schmidt ifp->btrfs_path = path; 1965a542ad1bSJan Schmidt ifp->fspath = fspath; 1966a542ad1bSJan Schmidt ifp->fs_root = fs_root; 1967a542ad1bSJan Schmidt 1968a542ad1bSJan Schmidt return ifp; 1969a542ad1bSJan Schmidt } 1970a542ad1bSJan Schmidt 1971a542ad1bSJan Schmidt void free_ipath(struct inode_fs_paths *ipath) 1972a542ad1bSJan Schmidt { 19734735fb28SJesper Juhl if (!ipath) 19744735fb28SJesper Juhl return; 1975425d17a2SLiu Bo vfree(ipath->fspath); 1976a542ad1bSJan Schmidt kfree(ipath); 1977a542ad1bSJan Schmidt } 1978