1c1d7c514SDavid Sterba // SPDX-License-Identifier: GPL-2.0 2a542ad1bSJan Schmidt /* 3a542ad1bSJan Schmidt * Copyright (C) 2011 STRATO. All rights reserved. 4a542ad1bSJan Schmidt */ 5a542ad1bSJan Schmidt 6f54de068SDavid Sterba #include <linux/mm.h> 7afce772eSLu Fengqi #include <linux/rbtree.h> 800142756SJeff Mahoney #include <trace/events/btrfs.h> 9a542ad1bSJan Schmidt #include "ctree.h" 10a542ad1bSJan Schmidt #include "disk-io.h" 11a542ad1bSJan Schmidt #include "backref.h" 128da6d581SJan Schmidt #include "ulist.h" 138da6d581SJan Schmidt #include "transaction.h" 148da6d581SJan Schmidt #include "delayed-ref.h" 15b916a59aSJan Schmidt #include "locking.h" 161b60d2ecSQu Wenruo #include "misc.h" 17f3a84ccdSFilipe Manana #include "tree-mod-log.h" 18a542ad1bSJan Schmidt 19dc046b10SJosef Bacik /* Just an arbitrary number so we can be sure this happened */ 20dc046b10SJosef Bacik #define BACKREF_FOUND_SHARED 6 21dc046b10SJosef Bacik 22976b1908SJan Schmidt struct extent_inode_elem { 23976b1908SJan Schmidt u64 inum; 24976b1908SJan Schmidt u64 offset; 25976b1908SJan Schmidt struct extent_inode_elem *next; 26976b1908SJan Schmidt }; 27976b1908SJan Schmidt 2873980becSJeff Mahoney static int check_extent_in_eb(const struct btrfs_key *key, 2973980becSJeff Mahoney const struct extent_buffer *eb, 3073980becSJeff Mahoney const struct btrfs_file_extent_item *fi, 31976b1908SJan Schmidt u64 extent_item_pos, 32c995ab3cSZygo Blaxell struct extent_inode_elem **eie, 33c995ab3cSZygo Blaxell bool ignore_offset) 34976b1908SJan Schmidt { 358ca15e05SJosef Bacik u64 offset = 0; 368ca15e05SJosef Bacik struct extent_inode_elem *e; 378ca15e05SJosef Bacik 38c995ab3cSZygo Blaxell if (!ignore_offset && 39c995ab3cSZygo Blaxell !btrfs_file_extent_compression(eb, fi) && 408ca15e05SJosef Bacik !btrfs_file_extent_encryption(eb, fi) && 418ca15e05SJosef Bacik !btrfs_file_extent_other_encoding(eb, fi)) { 42976b1908SJan Schmidt u64 data_offset; 43976b1908SJan Schmidt u64 data_len; 44976b1908SJan Schmidt 45976b1908SJan Schmidt data_offset = btrfs_file_extent_offset(eb, fi); 46976b1908SJan Schmidt data_len = btrfs_file_extent_num_bytes(eb, fi); 47976b1908SJan Schmidt 48976b1908SJan Schmidt if (extent_item_pos < data_offset || 49976b1908SJan Schmidt extent_item_pos >= data_offset + data_len) 50976b1908SJan Schmidt return 1; 518ca15e05SJosef Bacik offset = extent_item_pos - data_offset; 528ca15e05SJosef Bacik } 53976b1908SJan Schmidt 54976b1908SJan Schmidt e = kmalloc(sizeof(*e), GFP_NOFS); 55976b1908SJan Schmidt if (!e) 56976b1908SJan Schmidt return -ENOMEM; 57976b1908SJan Schmidt 58976b1908SJan Schmidt e->next = *eie; 59976b1908SJan Schmidt e->inum = key->objectid; 608ca15e05SJosef Bacik e->offset = key->offset + offset; 61976b1908SJan Schmidt *eie = e; 62976b1908SJan Schmidt 63976b1908SJan Schmidt return 0; 64976b1908SJan Schmidt } 65976b1908SJan Schmidt 66f05c4746SWang Shilong static void free_inode_elem_list(struct extent_inode_elem *eie) 67f05c4746SWang Shilong { 68f05c4746SWang Shilong struct extent_inode_elem *eie_next; 69f05c4746SWang Shilong 70f05c4746SWang Shilong for (; eie; eie = eie_next) { 71f05c4746SWang Shilong eie_next = eie->next; 72f05c4746SWang Shilong kfree(eie); 73f05c4746SWang Shilong } 74f05c4746SWang Shilong } 75f05c4746SWang Shilong 7673980becSJeff Mahoney static int find_extent_in_eb(const struct extent_buffer *eb, 7773980becSJeff Mahoney u64 wanted_disk_byte, u64 extent_item_pos, 78c995ab3cSZygo Blaxell struct extent_inode_elem **eie, 79c995ab3cSZygo Blaxell bool ignore_offset) 80976b1908SJan Schmidt { 81976b1908SJan Schmidt u64 disk_byte; 82976b1908SJan Schmidt struct btrfs_key key; 83976b1908SJan Schmidt struct btrfs_file_extent_item *fi; 84976b1908SJan Schmidt int slot; 85976b1908SJan Schmidt int nritems; 86976b1908SJan Schmidt int extent_type; 87976b1908SJan Schmidt int ret; 88976b1908SJan Schmidt 89976b1908SJan Schmidt /* 90976b1908SJan Schmidt * from the shared data ref, we only have the leaf but we need 91976b1908SJan Schmidt * the key. thus, we must look into all items and see that we 92976b1908SJan Schmidt * find one (some) with a reference to our extent item. 93976b1908SJan Schmidt */ 94976b1908SJan Schmidt nritems = btrfs_header_nritems(eb); 95976b1908SJan Schmidt for (slot = 0; slot < nritems; ++slot) { 96976b1908SJan Schmidt btrfs_item_key_to_cpu(eb, &key, slot); 97976b1908SJan Schmidt if (key.type != BTRFS_EXTENT_DATA_KEY) 98976b1908SJan Schmidt continue; 99976b1908SJan Schmidt fi = btrfs_item_ptr(eb, slot, struct btrfs_file_extent_item); 100976b1908SJan Schmidt extent_type = btrfs_file_extent_type(eb, fi); 101976b1908SJan Schmidt if (extent_type == BTRFS_FILE_EXTENT_INLINE) 102976b1908SJan Schmidt continue; 103976b1908SJan Schmidt /* don't skip BTRFS_FILE_EXTENT_PREALLOC, we can handle that */ 104976b1908SJan Schmidt disk_byte = btrfs_file_extent_disk_bytenr(eb, fi); 105976b1908SJan Schmidt if (disk_byte != wanted_disk_byte) 106976b1908SJan Schmidt continue; 107976b1908SJan Schmidt 108c995ab3cSZygo Blaxell ret = check_extent_in_eb(&key, eb, fi, extent_item_pos, eie, ignore_offset); 109976b1908SJan Schmidt if (ret < 0) 110976b1908SJan Schmidt return ret; 111976b1908SJan Schmidt } 112976b1908SJan Schmidt 113976b1908SJan Schmidt return 0; 114976b1908SJan Schmidt } 115976b1908SJan Schmidt 11686d5f994SEdmund Nadolski struct preftree { 117ecf160b4SLiu Bo struct rb_root_cached root; 1186c336b21SJeff Mahoney unsigned int count; 11986d5f994SEdmund Nadolski }; 12086d5f994SEdmund Nadolski 121ecf160b4SLiu Bo #define PREFTREE_INIT { .root = RB_ROOT_CACHED, .count = 0 } 12286d5f994SEdmund Nadolski 12386d5f994SEdmund Nadolski struct preftrees { 12486d5f994SEdmund Nadolski struct preftree direct; /* BTRFS_SHARED_[DATA|BLOCK]_REF_KEY */ 12586d5f994SEdmund Nadolski struct preftree indirect; /* BTRFS_[TREE_BLOCK|EXTENT_DATA]_REF_KEY */ 12686d5f994SEdmund Nadolski struct preftree indirect_missing_keys; 12786d5f994SEdmund Nadolski }; 12886d5f994SEdmund Nadolski 1293ec4d323SEdmund Nadolski /* 1303ec4d323SEdmund Nadolski * Checks for a shared extent during backref search. 1313ec4d323SEdmund Nadolski * 1323ec4d323SEdmund Nadolski * The share_count tracks prelim_refs (direct and indirect) having a 1333ec4d323SEdmund Nadolski * ref->count >0: 1343ec4d323SEdmund Nadolski * - incremented when a ref->count transitions to >0 1353ec4d323SEdmund Nadolski * - decremented when a ref->count transitions to <1 1363ec4d323SEdmund Nadolski */ 1373ec4d323SEdmund Nadolski struct share_check { 1383ec4d323SEdmund Nadolski u64 root_objectid; 1393ec4d323SEdmund Nadolski u64 inum; 1403ec4d323SEdmund Nadolski int share_count; 1414fc7b572SFilipe Manana bool have_delayed_delete_refs; 1423ec4d323SEdmund Nadolski }; 1433ec4d323SEdmund Nadolski 1443ec4d323SEdmund Nadolski static inline int extent_is_shared(struct share_check *sc) 1453ec4d323SEdmund Nadolski { 1463ec4d323SEdmund Nadolski return (sc && sc->share_count > 1) ? BACKREF_FOUND_SHARED : 0; 1473ec4d323SEdmund Nadolski } 1483ec4d323SEdmund Nadolski 149b9e9a6cbSWang Shilong static struct kmem_cache *btrfs_prelim_ref_cache; 150b9e9a6cbSWang Shilong 151b9e9a6cbSWang Shilong int __init btrfs_prelim_ref_init(void) 152b9e9a6cbSWang Shilong { 153b9e9a6cbSWang Shilong btrfs_prelim_ref_cache = kmem_cache_create("btrfs_prelim_ref", 154e0c476b1SJeff Mahoney sizeof(struct prelim_ref), 155b9e9a6cbSWang Shilong 0, 156fba4b697SNikolay Borisov SLAB_MEM_SPREAD, 157b9e9a6cbSWang Shilong NULL); 158b9e9a6cbSWang Shilong if (!btrfs_prelim_ref_cache) 159b9e9a6cbSWang Shilong return -ENOMEM; 160b9e9a6cbSWang Shilong return 0; 161b9e9a6cbSWang Shilong } 162b9e9a6cbSWang Shilong 163e67c718bSDavid Sterba void __cold btrfs_prelim_ref_exit(void) 164b9e9a6cbSWang Shilong { 165b9e9a6cbSWang Shilong kmem_cache_destroy(btrfs_prelim_ref_cache); 166b9e9a6cbSWang Shilong } 167b9e9a6cbSWang Shilong 16886d5f994SEdmund Nadolski static void free_pref(struct prelim_ref *ref) 16986d5f994SEdmund Nadolski { 17086d5f994SEdmund Nadolski kmem_cache_free(btrfs_prelim_ref_cache, ref); 17186d5f994SEdmund Nadolski } 17286d5f994SEdmund Nadolski 17386d5f994SEdmund Nadolski /* 17486d5f994SEdmund Nadolski * Return 0 when both refs are for the same block (and can be merged). 17586d5f994SEdmund Nadolski * A -1 return indicates ref1 is a 'lower' block than ref2, while 1 17686d5f994SEdmund Nadolski * indicates a 'higher' block. 17786d5f994SEdmund Nadolski */ 17886d5f994SEdmund Nadolski static int prelim_ref_compare(struct prelim_ref *ref1, 17986d5f994SEdmund Nadolski struct prelim_ref *ref2) 18086d5f994SEdmund Nadolski { 18186d5f994SEdmund Nadolski if (ref1->level < ref2->level) 18286d5f994SEdmund Nadolski return -1; 18386d5f994SEdmund Nadolski if (ref1->level > ref2->level) 18486d5f994SEdmund Nadolski return 1; 18586d5f994SEdmund Nadolski if (ref1->root_id < ref2->root_id) 18686d5f994SEdmund Nadolski return -1; 18786d5f994SEdmund Nadolski if (ref1->root_id > ref2->root_id) 18886d5f994SEdmund Nadolski return 1; 18986d5f994SEdmund Nadolski if (ref1->key_for_search.type < ref2->key_for_search.type) 19086d5f994SEdmund Nadolski return -1; 19186d5f994SEdmund Nadolski if (ref1->key_for_search.type > ref2->key_for_search.type) 19286d5f994SEdmund Nadolski return 1; 19386d5f994SEdmund Nadolski if (ref1->key_for_search.objectid < ref2->key_for_search.objectid) 19486d5f994SEdmund Nadolski return -1; 19586d5f994SEdmund Nadolski if (ref1->key_for_search.objectid > ref2->key_for_search.objectid) 19686d5f994SEdmund Nadolski return 1; 19786d5f994SEdmund Nadolski if (ref1->key_for_search.offset < ref2->key_for_search.offset) 19886d5f994SEdmund Nadolski return -1; 19986d5f994SEdmund Nadolski if (ref1->key_for_search.offset > ref2->key_for_search.offset) 20086d5f994SEdmund Nadolski return 1; 20186d5f994SEdmund Nadolski if (ref1->parent < ref2->parent) 20286d5f994SEdmund Nadolski return -1; 20386d5f994SEdmund Nadolski if (ref1->parent > ref2->parent) 20486d5f994SEdmund Nadolski return 1; 20586d5f994SEdmund Nadolski 20686d5f994SEdmund Nadolski return 0; 20786d5f994SEdmund Nadolski } 20886d5f994SEdmund Nadolski 209ccc8dc75SColin Ian King static void update_share_count(struct share_check *sc, int oldcount, 210ccc8dc75SColin Ian King int newcount) 2113ec4d323SEdmund Nadolski { 2123ec4d323SEdmund Nadolski if ((!sc) || (oldcount == 0 && newcount < 1)) 2133ec4d323SEdmund Nadolski return; 2143ec4d323SEdmund Nadolski 2153ec4d323SEdmund Nadolski if (oldcount > 0 && newcount < 1) 2163ec4d323SEdmund Nadolski sc->share_count--; 2173ec4d323SEdmund Nadolski else if (oldcount < 1 && newcount > 0) 2183ec4d323SEdmund Nadolski sc->share_count++; 2193ec4d323SEdmund Nadolski } 2203ec4d323SEdmund Nadolski 22186d5f994SEdmund Nadolski /* 22286d5f994SEdmund Nadolski * Add @newref to the @root rbtree, merging identical refs. 22386d5f994SEdmund Nadolski * 2243ec4d323SEdmund Nadolski * Callers should assume that newref has been freed after calling. 22586d5f994SEdmund Nadolski */ 22600142756SJeff Mahoney static void prelim_ref_insert(const struct btrfs_fs_info *fs_info, 22700142756SJeff Mahoney struct preftree *preftree, 2283ec4d323SEdmund Nadolski struct prelim_ref *newref, 2293ec4d323SEdmund Nadolski struct share_check *sc) 23086d5f994SEdmund Nadolski { 231ecf160b4SLiu Bo struct rb_root_cached *root; 23286d5f994SEdmund Nadolski struct rb_node **p; 23386d5f994SEdmund Nadolski struct rb_node *parent = NULL; 23486d5f994SEdmund Nadolski struct prelim_ref *ref; 23586d5f994SEdmund Nadolski int result; 236ecf160b4SLiu Bo bool leftmost = true; 23786d5f994SEdmund Nadolski 23886d5f994SEdmund Nadolski root = &preftree->root; 239ecf160b4SLiu Bo p = &root->rb_root.rb_node; 24086d5f994SEdmund Nadolski 24186d5f994SEdmund Nadolski while (*p) { 24286d5f994SEdmund Nadolski parent = *p; 24386d5f994SEdmund Nadolski ref = rb_entry(parent, struct prelim_ref, rbnode); 24486d5f994SEdmund Nadolski result = prelim_ref_compare(ref, newref); 24586d5f994SEdmund Nadolski if (result < 0) { 24686d5f994SEdmund Nadolski p = &(*p)->rb_left; 24786d5f994SEdmund Nadolski } else if (result > 0) { 24886d5f994SEdmund Nadolski p = &(*p)->rb_right; 249ecf160b4SLiu Bo leftmost = false; 25086d5f994SEdmund Nadolski } else { 25186d5f994SEdmund Nadolski /* Identical refs, merge them and free @newref */ 25286d5f994SEdmund Nadolski struct extent_inode_elem *eie = ref->inode_list; 25386d5f994SEdmund Nadolski 25486d5f994SEdmund Nadolski while (eie && eie->next) 25586d5f994SEdmund Nadolski eie = eie->next; 25686d5f994SEdmund Nadolski 25786d5f994SEdmund Nadolski if (!eie) 25886d5f994SEdmund Nadolski ref->inode_list = newref->inode_list; 25986d5f994SEdmund Nadolski else 26086d5f994SEdmund Nadolski eie->next = newref->inode_list; 26100142756SJeff Mahoney trace_btrfs_prelim_ref_merge(fs_info, ref, newref, 26200142756SJeff Mahoney preftree->count); 2633ec4d323SEdmund Nadolski /* 2643ec4d323SEdmund Nadolski * A delayed ref can have newref->count < 0. 2653ec4d323SEdmund Nadolski * The ref->count is updated to follow any 2663ec4d323SEdmund Nadolski * BTRFS_[ADD|DROP]_DELAYED_REF actions. 2673ec4d323SEdmund Nadolski */ 2683ec4d323SEdmund Nadolski update_share_count(sc, ref->count, 2693ec4d323SEdmund Nadolski ref->count + newref->count); 27086d5f994SEdmund Nadolski ref->count += newref->count; 27186d5f994SEdmund Nadolski free_pref(newref); 27286d5f994SEdmund Nadolski return; 27386d5f994SEdmund Nadolski } 27486d5f994SEdmund Nadolski } 27586d5f994SEdmund Nadolski 2763ec4d323SEdmund Nadolski update_share_count(sc, 0, newref->count); 2776c336b21SJeff Mahoney preftree->count++; 27800142756SJeff Mahoney trace_btrfs_prelim_ref_insert(fs_info, newref, NULL, preftree->count); 27986d5f994SEdmund Nadolski rb_link_node(&newref->rbnode, parent, p); 280ecf160b4SLiu Bo rb_insert_color_cached(&newref->rbnode, root, leftmost); 28186d5f994SEdmund Nadolski } 28286d5f994SEdmund Nadolski 28386d5f994SEdmund Nadolski /* 28486d5f994SEdmund Nadolski * Release the entire tree. We don't care about internal consistency so 28586d5f994SEdmund Nadolski * just free everything and then reset the tree root. 28686d5f994SEdmund Nadolski */ 28786d5f994SEdmund Nadolski static void prelim_release(struct preftree *preftree) 28886d5f994SEdmund Nadolski { 28986d5f994SEdmund Nadolski struct prelim_ref *ref, *next_ref; 29086d5f994SEdmund Nadolski 291ecf160b4SLiu Bo rbtree_postorder_for_each_entry_safe(ref, next_ref, 292*92876eecSFilipe Manana &preftree->root.rb_root, rbnode) { 293*92876eecSFilipe Manana free_inode_elem_list(ref->inode_list); 29486d5f994SEdmund Nadolski free_pref(ref); 295*92876eecSFilipe Manana } 29686d5f994SEdmund Nadolski 297ecf160b4SLiu Bo preftree->root = RB_ROOT_CACHED; 2986c336b21SJeff Mahoney preftree->count = 0; 29986d5f994SEdmund Nadolski } 30086d5f994SEdmund Nadolski 301d5c88b73SJan Schmidt /* 302d5c88b73SJan Schmidt * the rules for all callers of this function are: 303d5c88b73SJan Schmidt * - obtaining the parent is the goal 304d5c88b73SJan Schmidt * - if you add a key, you must know that it is a correct key 305d5c88b73SJan Schmidt * - if you cannot add the parent or a correct key, then we will look into the 306d5c88b73SJan Schmidt * block later to set a correct key 307d5c88b73SJan Schmidt * 308d5c88b73SJan Schmidt * delayed refs 309d5c88b73SJan Schmidt * ============ 310d5c88b73SJan Schmidt * backref type | shared | indirect | shared | indirect 311d5c88b73SJan Schmidt * information | tree | tree | data | data 312d5c88b73SJan Schmidt * --------------------+--------+----------+--------+---------- 313d5c88b73SJan Schmidt * parent logical | y | - | - | - 314d5c88b73SJan Schmidt * key to resolve | - | y | y | y 315d5c88b73SJan Schmidt * tree block logical | - | - | - | - 316d5c88b73SJan Schmidt * root for resolving | y | y | y | y 317d5c88b73SJan Schmidt * 318d5c88b73SJan Schmidt * - column 1: we've the parent -> done 319d5c88b73SJan Schmidt * - column 2, 3, 4: we use the key to find the parent 320d5c88b73SJan Schmidt * 321d5c88b73SJan Schmidt * on disk refs (inline or keyed) 322d5c88b73SJan Schmidt * ============================== 323d5c88b73SJan Schmidt * backref type | shared | indirect | shared | indirect 324d5c88b73SJan Schmidt * information | tree | tree | data | data 325d5c88b73SJan Schmidt * --------------------+--------+----------+--------+---------- 326d5c88b73SJan Schmidt * parent logical | y | - | y | - 327d5c88b73SJan Schmidt * key to resolve | - | - | - | y 328d5c88b73SJan Schmidt * tree block logical | y | y | y | y 329d5c88b73SJan Schmidt * root for resolving | - | y | y | y 330d5c88b73SJan Schmidt * 331d5c88b73SJan Schmidt * - column 1, 3: we've the parent -> done 332d5c88b73SJan Schmidt * - column 2: we take the first key from the block to find the parent 333e0c476b1SJeff Mahoney * (see add_missing_keys) 334d5c88b73SJan Schmidt * - column 4: we use the key to find the parent 335d5c88b73SJan Schmidt * 336d5c88b73SJan Schmidt * additional information that's available but not required to find the parent 337d5c88b73SJan Schmidt * block might help in merging entries to gain some speed. 338d5c88b73SJan Schmidt */ 33900142756SJeff Mahoney static int add_prelim_ref(const struct btrfs_fs_info *fs_info, 34000142756SJeff Mahoney struct preftree *preftree, u64 root_id, 341e0c476b1SJeff Mahoney const struct btrfs_key *key, int level, u64 parent, 3423ec4d323SEdmund Nadolski u64 wanted_disk_byte, int count, 3433ec4d323SEdmund Nadolski struct share_check *sc, gfp_t gfp_mask) 3448da6d581SJan Schmidt { 345e0c476b1SJeff Mahoney struct prelim_ref *ref; 3468da6d581SJan Schmidt 34748ec4736SLiu Bo if (root_id == BTRFS_DATA_RELOC_TREE_OBJECTID) 34848ec4736SLiu Bo return 0; 34948ec4736SLiu Bo 350b9e9a6cbSWang Shilong ref = kmem_cache_alloc(btrfs_prelim_ref_cache, gfp_mask); 3518da6d581SJan Schmidt if (!ref) 3528da6d581SJan Schmidt return -ENOMEM; 3538da6d581SJan Schmidt 3548da6d581SJan Schmidt ref->root_id = root_id; 3557ac8b88eSethanwu if (key) 356d5c88b73SJan Schmidt ref->key_for_search = *key; 3577ac8b88eSethanwu else 358d5c88b73SJan Schmidt memset(&ref->key_for_search, 0, sizeof(ref->key_for_search)); 3598da6d581SJan Schmidt 3603301958bSJan Schmidt ref->inode_list = NULL; 3618da6d581SJan Schmidt ref->level = level; 3628da6d581SJan Schmidt ref->count = count; 3638da6d581SJan Schmidt ref->parent = parent; 3648da6d581SJan Schmidt ref->wanted_disk_byte = wanted_disk_byte; 3653ec4d323SEdmund Nadolski prelim_ref_insert(fs_info, preftree, ref, sc); 3663ec4d323SEdmund Nadolski return extent_is_shared(sc); 3678da6d581SJan Schmidt } 3688da6d581SJan Schmidt 36986d5f994SEdmund Nadolski /* direct refs use root == 0, key == NULL */ 37000142756SJeff Mahoney static int add_direct_ref(const struct btrfs_fs_info *fs_info, 37100142756SJeff Mahoney struct preftrees *preftrees, int level, u64 parent, 3723ec4d323SEdmund Nadolski u64 wanted_disk_byte, int count, 3733ec4d323SEdmund Nadolski struct share_check *sc, gfp_t gfp_mask) 37486d5f994SEdmund Nadolski { 37500142756SJeff Mahoney return add_prelim_ref(fs_info, &preftrees->direct, 0, NULL, level, 3763ec4d323SEdmund Nadolski parent, wanted_disk_byte, count, sc, gfp_mask); 37786d5f994SEdmund Nadolski } 37886d5f994SEdmund Nadolski 37986d5f994SEdmund Nadolski /* indirect refs use parent == 0 */ 38000142756SJeff Mahoney static int add_indirect_ref(const struct btrfs_fs_info *fs_info, 38100142756SJeff Mahoney struct preftrees *preftrees, u64 root_id, 38286d5f994SEdmund Nadolski const struct btrfs_key *key, int level, 3833ec4d323SEdmund Nadolski u64 wanted_disk_byte, int count, 3843ec4d323SEdmund Nadolski struct share_check *sc, gfp_t gfp_mask) 38586d5f994SEdmund Nadolski { 38686d5f994SEdmund Nadolski struct preftree *tree = &preftrees->indirect; 38786d5f994SEdmund Nadolski 38886d5f994SEdmund Nadolski if (!key) 38986d5f994SEdmund Nadolski tree = &preftrees->indirect_missing_keys; 39000142756SJeff Mahoney return add_prelim_ref(fs_info, tree, root_id, key, level, 0, 3913ec4d323SEdmund Nadolski wanted_disk_byte, count, sc, gfp_mask); 39286d5f994SEdmund Nadolski } 39386d5f994SEdmund Nadolski 394ed58f2e6Sethanwu static int is_shared_data_backref(struct preftrees *preftrees, u64 bytenr) 395ed58f2e6Sethanwu { 396ed58f2e6Sethanwu struct rb_node **p = &preftrees->direct.root.rb_root.rb_node; 397ed58f2e6Sethanwu struct rb_node *parent = NULL; 398ed58f2e6Sethanwu struct prelim_ref *ref = NULL; 3999c6c723fSArnd Bergmann struct prelim_ref target = {}; 400ed58f2e6Sethanwu int result; 401ed58f2e6Sethanwu 402ed58f2e6Sethanwu target.parent = bytenr; 403ed58f2e6Sethanwu 404ed58f2e6Sethanwu while (*p) { 405ed58f2e6Sethanwu parent = *p; 406ed58f2e6Sethanwu ref = rb_entry(parent, struct prelim_ref, rbnode); 407ed58f2e6Sethanwu result = prelim_ref_compare(ref, &target); 408ed58f2e6Sethanwu 409ed58f2e6Sethanwu if (result < 0) 410ed58f2e6Sethanwu p = &(*p)->rb_left; 411ed58f2e6Sethanwu else if (result > 0) 412ed58f2e6Sethanwu p = &(*p)->rb_right; 413ed58f2e6Sethanwu else 414ed58f2e6Sethanwu return 1; 415ed58f2e6Sethanwu } 416ed58f2e6Sethanwu return 0; 417ed58f2e6Sethanwu } 418ed58f2e6Sethanwu 4198da6d581SJan Schmidt static int add_all_parents(struct btrfs_root *root, struct btrfs_path *path, 420ed58f2e6Sethanwu struct ulist *parents, 421ed58f2e6Sethanwu struct preftrees *preftrees, struct prelim_ref *ref, 42244853868SJosef Bacik int level, u64 time_seq, const u64 *extent_item_pos, 423b25b0b87Sethanwu bool ignore_offset) 4248da6d581SJan Schmidt { 42569bca40dSAlexander Block int ret = 0; 42669bca40dSAlexander Block int slot; 42769bca40dSAlexander Block struct extent_buffer *eb; 42869bca40dSAlexander Block struct btrfs_key key; 4297ef81ac8SJosef Bacik struct btrfs_key *key_for_search = &ref->key_for_search; 4308da6d581SJan Schmidt struct btrfs_file_extent_item *fi; 431ed8c4913SJosef Bacik struct extent_inode_elem *eie = NULL, *old = NULL; 4328da6d581SJan Schmidt u64 disk_byte; 4337ef81ac8SJosef Bacik u64 wanted_disk_byte = ref->wanted_disk_byte; 4347ef81ac8SJosef Bacik u64 count = 0; 4357ac8b88eSethanwu u64 data_offset; 4368da6d581SJan Schmidt 43769bca40dSAlexander Block if (level != 0) { 43869bca40dSAlexander Block eb = path->nodes[level]; 43969bca40dSAlexander Block ret = ulist_add(parents, eb->start, 0, GFP_NOFS); 4403301958bSJan Schmidt if (ret < 0) 4413301958bSJan Schmidt return ret; 4428da6d581SJan Schmidt return 0; 44369bca40dSAlexander Block } 4448da6d581SJan Schmidt 4458da6d581SJan Schmidt /* 446ed58f2e6Sethanwu * 1. We normally enter this function with the path already pointing to 44769bca40dSAlexander Block * the first item to check. But sometimes, we may enter it with 448ed58f2e6Sethanwu * slot == nritems. 449ed58f2e6Sethanwu * 2. We are searching for normal backref but bytenr of this leaf 450ed58f2e6Sethanwu * matches shared data backref 451cfc0eed0Sethanwu * 3. The leaf owner is not equal to the root we are searching 452cfc0eed0Sethanwu * 453ed58f2e6Sethanwu * For these cases, go to the next leaf before we continue. 4548da6d581SJan Schmidt */ 455ed58f2e6Sethanwu eb = path->nodes[0]; 456ed58f2e6Sethanwu if (path->slots[0] >= btrfs_header_nritems(eb) || 457cfc0eed0Sethanwu is_shared_data_backref(preftrees, eb->start) || 458cfc0eed0Sethanwu ref->root_id != btrfs_header_owner(eb)) { 459f3a84ccdSFilipe Manana if (time_seq == BTRFS_SEQ_LAST) 46021633fc6SQu Wenruo ret = btrfs_next_leaf(root, path); 46121633fc6SQu Wenruo else 4623d7806ecSJan Schmidt ret = btrfs_next_old_leaf(root, path, time_seq); 46321633fc6SQu Wenruo } 4648da6d581SJan Schmidt 465b25b0b87Sethanwu while (!ret && count < ref->count) { 4668da6d581SJan Schmidt eb = path->nodes[0]; 46769bca40dSAlexander Block slot = path->slots[0]; 46869bca40dSAlexander Block 46969bca40dSAlexander Block btrfs_item_key_to_cpu(eb, &key, slot); 47069bca40dSAlexander Block 47169bca40dSAlexander Block if (key.objectid != key_for_search->objectid || 47269bca40dSAlexander Block key.type != BTRFS_EXTENT_DATA_KEY) 47369bca40dSAlexander Block break; 47469bca40dSAlexander Block 475ed58f2e6Sethanwu /* 476ed58f2e6Sethanwu * We are searching for normal backref but bytenr of this leaf 477cfc0eed0Sethanwu * matches shared data backref, OR 478cfc0eed0Sethanwu * the leaf owner is not equal to the root we are searching for 479ed58f2e6Sethanwu */ 480cfc0eed0Sethanwu if (slot == 0 && 481cfc0eed0Sethanwu (is_shared_data_backref(preftrees, eb->start) || 482cfc0eed0Sethanwu ref->root_id != btrfs_header_owner(eb))) { 483f3a84ccdSFilipe Manana if (time_seq == BTRFS_SEQ_LAST) 484ed58f2e6Sethanwu ret = btrfs_next_leaf(root, path); 485ed58f2e6Sethanwu else 486ed58f2e6Sethanwu ret = btrfs_next_old_leaf(root, path, time_seq); 487ed58f2e6Sethanwu continue; 488ed58f2e6Sethanwu } 48969bca40dSAlexander Block fi = btrfs_item_ptr(eb, slot, struct btrfs_file_extent_item); 4908da6d581SJan Schmidt disk_byte = btrfs_file_extent_disk_bytenr(eb, fi); 4917ac8b88eSethanwu data_offset = btrfs_file_extent_offset(eb, fi); 49269bca40dSAlexander Block 49369bca40dSAlexander Block if (disk_byte == wanted_disk_byte) { 49469bca40dSAlexander Block eie = NULL; 495ed8c4913SJosef Bacik old = NULL; 4967ac8b88eSethanwu if (ref->key_for_search.offset == key.offset - data_offset) 4977ef81ac8SJosef Bacik count++; 4987ac8b88eSethanwu else 4997ac8b88eSethanwu goto next; 50069bca40dSAlexander Block if (extent_item_pos) { 50169bca40dSAlexander Block ret = check_extent_in_eb(&key, eb, fi, 50269bca40dSAlexander Block *extent_item_pos, 503c995ab3cSZygo Blaxell &eie, ignore_offset); 50469bca40dSAlexander Block if (ret < 0) 50569bca40dSAlexander Block break; 5068da6d581SJan Schmidt } 507ed8c4913SJosef Bacik if (ret > 0) 508ed8c4913SJosef Bacik goto next; 5094eb1f66dSTakashi Iwai ret = ulist_add_merge_ptr(parents, eb->start, 5104eb1f66dSTakashi Iwai eie, (void **)&old, GFP_NOFS); 51169bca40dSAlexander Block if (ret < 0) 51269bca40dSAlexander Block break; 513ed8c4913SJosef Bacik if (!ret && extent_item_pos) { 514ed8c4913SJosef Bacik while (old->next) 515ed8c4913SJosef Bacik old = old->next; 516ed8c4913SJosef Bacik old->next = eie; 51769bca40dSAlexander Block } 518f05c4746SWang Shilong eie = NULL; 51969bca40dSAlexander Block } 520ed8c4913SJosef Bacik next: 521f3a84ccdSFilipe Manana if (time_seq == BTRFS_SEQ_LAST) 52221633fc6SQu Wenruo ret = btrfs_next_item(root, path); 52321633fc6SQu Wenruo else 52469bca40dSAlexander Block ret = btrfs_next_old_item(root, path, time_seq); 5258da6d581SJan Schmidt } 5268da6d581SJan Schmidt 52769bca40dSAlexander Block if (ret > 0) 52869bca40dSAlexander Block ret = 0; 529f05c4746SWang Shilong else if (ret < 0) 530f05c4746SWang Shilong free_inode_elem_list(eie); 53169bca40dSAlexander Block return ret; 5328da6d581SJan Schmidt } 5338da6d581SJan Schmidt 5348da6d581SJan Schmidt /* 5358da6d581SJan Schmidt * resolve an indirect backref in the form (root_id, key, level) 5368da6d581SJan Schmidt * to a logical address 5378da6d581SJan Schmidt */ 538e0c476b1SJeff Mahoney static int resolve_indirect_ref(struct btrfs_fs_info *fs_info, 539da61d31aSJosef Bacik struct btrfs_path *path, u64 time_seq, 540ed58f2e6Sethanwu struct preftrees *preftrees, 541e0c476b1SJeff Mahoney struct prelim_ref *ref, struct ulist *parents, 542b25b0b87Sethanwu const u64 *extent_item_pos, bool ignore_offset) 5438da6d581SJan Schmidt { 5448da6d581SJan Schmidt struct btrfs_root *root; 5458da6d581SJan Schmidt struct extent_buffer *eb; 5468da6d581SJan Schmidt int ret = 0; 5478da6d581SJan Schmidt int root_level; 5488da6d581SJan Schmidt int level = ref->level; 5497ac8b88eSethanwu struct btrfs_key search_key = ref->key_for_search; 5508da6d581SJan Schmidt 55149d11beaSJosef Bacik /* 55249d11beaSJosef Bacik * If we're search_commit_root we could possibly be holding locks on 55349d11beaSJosef Bacik * other tree nodes. This happens when qgroups does backref walks when 55449d11beaSJosef Bacik * adding new delayed refs. To deal with this we need to look in cache 55549d11beaSJosef Bacik * for the root, and if we don't find it then we need to search the 55649d11beaSJosef Bacik * tree_root's commit root, thus the btrfs_get_fs_root_commit_root usage 55749d11beaSJosef Bacik * here. 55849d11beaSJosef Bacik */ 55949d11beaSJosef Bacik if (path->search_commit_root) 56049d11beaSJosef Bacik root = btrfs_get_fs_root_commit_root(fs_info, path, ref->root_id); 56149d11beaSJosef Bacik else 56256e9357aSDavid Sterba root = btrfs_get_fs_root(fs_info, ref->root_id, false); 5638da6d581SJan Schmidt if (IS_ERR(root)) { 5648da6d581SJan Schmidt ret = PTR_ERR(root); 5659326f76fSJosef Bacik goto out_free; 5669326f76fSJosef Bacik } 5679326f76fSJosef Bacik 56839dba873SJosef Bacik if (!path->search_commit_root && 56939dba873SJosef Bacik test_bit(BTRFS_ROOT_DELETING, &root->state)) { 57039dba873SJosef Bacik ret = -ENOENT; 57139dba873SJosef Bacik goto out; 57239dba873SJosef Bacik } 57339dba873SJosef Bacik 574f5ee5c9aSJeff Mahoney if (btrfs_is_testing(fs_info)) { 575d9ee522bSJosef Bacik ret = -ENOENT; 576d9ee522bSJosef Bacik goto out; 577d9ee522bSJosef Bacik } 578d9ee522bSJosef Bacik 5799e351cc8SJosef Bacik if (path->search_commit_root) 5809e351cc8SJosef Bacik root_level = btrfs_header_level(root->commit_root); 581f3a84ccdSFilipe Manana else if (time_seq == BTRFS_SEQ_LAST) 58221633fc6SQu Wenruo root_level = btrfs_header_level(root->node); 5839e351cc8SJosef Bacik else 5845b6602e7SJan Schmidt root_level = btrfs_old_root_level(root, time_seq); 5858da6d581SJan Schmidt 586c75e8394SJosef Bacik if (root_level + 1 == level) 5878da6d581SJan Schmidt goto out; 5888da6d581SJan Schmidt 5897ac8b88eSethanwu /* 5907ac8b88eSethanwu * We can often find data backrefs with an offset that is too large 5917ac8b88eSethanwu * (>= LLONG_MAX, maximum allowed file offset) due to underflows when 5927ac8b88eSethanwu * subtracting a file's offset with the data offset of its 5937ac8b88eSethanwu * corresponding extent data item. This can happen for example in the 5947ac8b88eSethanwu * clone ioctl. 5957ac8b88eSethanwu * 5967ac8b88eSethanwu * So if we detect such case we set the search key's offset to zero to 5977ac8b88eSethanwu * make sure we will find the matching file extent item at 5987ac8b88eSethanwu * add_all_parents(), otherwise we will miss it because the offset 5997ac8b88eSethanwu * taken form the backref is much larger then the offset of the file 6007ac8b88eSethanwu * extent item. This can make us scan a very large number of file 6017ac8b88eSethanwu * extent items, but at least it will not make us miss any. 6027ac8b88eSethanwu * 6037ac8b88eSethanwu * This is an ugly workaround for a behaviour that should have never 6047ac8b88eSethanwu * existed, but it does and a fix for the clone ioctl would touch a lot 6057ac8b88eSethanwu * of places, cause backwards incompatibility and would not fix the 6067ac8b88eSethanwu * problem for extents cloned with older kernels. 6077ac8b88eSethanwu */ 6087ac8b88eSethanwu if (search_key.type == BTRFS_EXTENT_DATA_KEY && 6097ac8b88eSethanwu search_key.offset >= LLONG_MAX) 6107ac8b88eSethanwu search_key.offset = 0; 6118da6d581SJan Schmidt path->lowest_level = level; 612f3a84ccdSFilipe Manana if (time_seq == BTRFS_SEQ_LAST) 6137ac8b88eSethanwu ret = btrfs_search_slot(NULL, root, &search_key, path, 0, 0); 61421633fc6SQu Wenruo else 6157ac8b88eSethanwu ret = btrfs_search_old_slot(root, &search_key, path, time_seq); 616538f72cdSWang Shilong 617ab8d0fc4SJeff Mahoney btrfs_debug(fs_info, 618ab8d0fc4SJeff Mahoney "search slot in root %llu (level %d, ref count %d) returned %d for key (%llu %u %llu)", 619c1c9ff7cSGeert Uytterhoeven ref->root_id, level, ref->count, ret, 620c1c9ff7cSGeert Uytterhoeven ref->key_for_search.objectid, ref->key_for_search.type, 621c1c9ff7cSGeert Uytterhoeven ref->key_for_search.offset); 6228da6d581SJan Schmidt if (ret < 0) 6238da6d581SJan Schmidt goto out; 6248da6d581SJan Schmidt 6258da6d581SJan Schmidt eb = path->nodes[level]; 6269345457fSJan Schmidt while (!eb) { 627fae7f21cSDulshani Gunawardhana if (WARN_ON(!level)) { 6288da6d581SJan Schmidt ret = 1; 6298da6d581SJan Schmidt goto out; 6308da6d581SJan Schmidt } 6319345457fSJan Schmidt level--; 6329345457fSJan Schmidt eb = path->nodes[level]; 6339345457fSJan Schmidt } 6348da6d581SJan Schmidt 635ed58f2e6Sethanwu ret = add_all_parents(root, path, parents, preftrees, ref, level, 636b25b0b87Sethanwu time_seq, extent_item_pos, ignore_offset); 6378da6d581SJan Schmidt out: 63800246528SJosef Bacik btrfs_put_root(root); 6399326f76fSJosef Bacik out_free: 640da61d31aSJosef Bacik path->lowest_level = 0; 641da61d31aSJosef Bacik btrfs_release_path(path); 6428da6d581SJan Schmidt return ret; 6438da6d581SJan Schmidt } 6448da6d581SJan Schmidt 6454dae077aSJeff Mahoney static struct extent_inode_elem * 6464dae077aSJeff Mahoney unode_aux_to_inode_list(struct ulist_node *node) 6474dae077aSJeff Mahoney { 6484dae077aSJeff Mahoney if (!node) 6494dae077aSJeff Mahoney return NULL; 6504dae077aSJeff Mahoney return (struct extent_inode_elem *)(uintptr_t)node->aux; 6514dae077aSJeff Mahoney } 6524dae077aSJeff Mahoney 6535614dc3aSFilipe Manana static void free_leaf_list(struct ulist *ulist) 6545614dc3aSFilipe Manana { 6555614dc3aSFilipe Manana struct ulist_node *node; 6565614dc3aSFilipe Manana struct ulist_iterator uiter; 6575614dc3aSFilipe Manana 6585614dc3aSFilipe Manana ULIST_ITER_INIT(&uiter); 6595614dc3aSFilipe Manana while ((node = ulist_next(ulist, &uiter))) 6605614dc3aSFilipe Manana free_inode_elem_list(unode_aux_to_inode_list(node)); 6615614dc3aSFilipe Manana 6625614dc3aSFilipe Manana ulist_free(ulist); 6635614dc3aSFilipe Manana } 6645614dc3aSFilipe Manana 6658da6d581SJan Schmidt /* 66652042d8eSAndrea Gelmini * We maintain three separate rbtrees: one for direct refs, one for 66786d5f994SEdmund Nadolski * indirect refs which have a key, and one for indirect refs which do not 66886d5f994SEdmund Nadolski * have a key. Each tree does merge on insertion. 66986d5f994SEdmund Nadolski * 67086d5f994SEdmund Nadolski * Once all of the references are located, we iterate over the tree of 67186d5f994SEdmund Nadolski * indirect refs with missing keys. An appropriate key is located and 67286d5f994SEdmund Nadolski * the ref is moved onto the tree for indirect refs. After all missing 67386d5f994SEdmund Nadolski * keys are thus located, we iterate over the indirect ref tree, resolve 67486d5f994SEdmund Nadolski * each reference, and then insert the resolved reference onto the 67586d5f994SEdmund Nadolski * direct tree (merging there too). 67686d5f994SEdmund Nadolski * 67786d5f994SEdmund Nadolski * New backrefs (i.e., for parent nodes) are added to the appropriate 67886d5f994SEdmund Nadolski * rbtree as they are encountered. The new backrefs are subsequently 67986d5f994SEdmund Nadolski * resolved as above. 6808da6d581SJan Schmidt */ 681e0c476b1SJeff Mahoney static int resolve_indirect_refs(struct btrfs_fs_info *fs_info, 682da61d31aSJosef Bacik struct btrfs_path *path, u64 time_seq, 68386d5f994SEdmund Nadolski struct preftrees *preftrees, 684b25b0b87Sethanwu const u64 *extent_item_pos, 685c995ab3cSZygo Blaxell struct share_check *sc, bool ignore_offset) 6868da6d581SJan Schmidt { 6878da6d581SJan Schmidt int err; 6888da6d581SJan Schmidt int ret = 0; 6898da6d581SJan Schmidt struct ulist *parents; 6908da6d581SJan Schmidt struct ulist_node *node; 691cd1b413cSJan Schmidt struct ulist_iterator uiter; 69286d5f994SEdmund Nadolski struct rb_node *rnode; 6938da6d581SJan Schmidt 6948da6d581SJan Schmidt parents = ulist_alloc(GFP_NOFS); 6958da6d581SJan Schmidt if (!parents) 6968da6d581SJan Schmidt return -ENOMEM; 6978da6d581SJan Schmidt 6988da6d581SJan Schmidt /* 69986d5f994SEdmund Nadolski * We could trade memory usage for performance here by iterating 70086d5f994SEdmund Nadolski * the tree, allocating new refs for each insertion, and then 70186d5f994SEdmund Nadolski * freeing the entire indirect tree when we're done. In some test 70286d5f994SEdmund Nadolski * cases, the tree can grow quite large (~200k objects). 7038da6d581SJan Schmidt */ 704ecf160b4SLiu Bo while ((rnode = rb_first_cached(&preftrees->indirect.root))) { 70586d5f994SEdmund Nadolski struct prelim_ref *ref; 70686d5f994SEdmund Nadolski 70786d5f994SEdmund Nadolski ref = rb_entry(rnode, struct prelim_ref, rbnode); 70886d5f994SEdmund Nadolski if (WARN(ref->parent, 70986d5f994SEdmund Nadolski "BUG: direct ref found in indirect tree")) { 71086d5f994SEdmund Nadolski ret = -EINVAL; 71186d5f994SEdmund Nadolski goto out; 71286d5f994SEdmund Nadolski } 71386d5f994SEdmund Nadolski 714ecf160b4SLiu Bo rb_erase_cached(&ref->rbnode, &preftrees->indirect.root); 7156c336b21SJeff Mahoney preftrees->indirect.count--; 71686d5f994SEdmund Nadolski 71786d5f994SEdmund Nadolski if (ref->count == 0) { 71886d5f994SEdmund Nadolski free_pref(ref); 7198da6d581SJan Schmidt continue; 72086d5f994SEdmund Nadolski } 72186d5f994SEdmund Nadolski 7223ec4d323SEdmund Nadolski if (sc && sc->root_objectid && 7233ec4d323SEdmund Nadolski ref->root_id != sc->root_objectid) { 72486d5f994SEdmund Nadolski free_pref(ref); 725dc046b10SJosef Bacik ret = BACKREF_FOUND_SHARED; 726dc046b10SJosef Bacik goto out; 727dc046b10SJosef Bacik } 728ed58f2e6Sethanwu err = resolve_indirect_ref(fs_info, path, time_seq, preftrees, 729ed58f2e6Sethanwu ref, parents, extent_item_pos, 730b25b0b87Sethanwu ignore_offset); 73195def2edSWang Shilong /* 73295def2edSWang Shilong * we can only tolerate ENOENT,otherwise,we should catch error 73395def2edSWang Shilong * and return directly. 73495def2edSWang Shilong */ 73595def2edSWang Shilong if (err == -ENOENT) { 7363ec4d323SEdmund Nadolski prelim_ref_insert(fs_info, &preftrees->direct, ref, 7373ec4d323SEdmund Nadolski NULL); 7388da6d581SJan Schmidt continue; 73995def2edSWang Shilong } else if (err) { 74086d5f994SEdmund Nadolski free_pref(ref); 74195def2edSWang Shilong ret = err; 74295def2edSWang Shilong goto out; 74395def2edSWang Shilong } 7448da6d581SJan Schmidt 7458da6d581SJan Schmidt /* we put the first parent into the ref at hand */ 746cd1b413cSJan Schmidt ULIST_ITER_INIT(&uiter); 747cd1b413cSJan Schmidt node = ulist_next(parents, &uiter); 7488da6d581SJan Schmidt ref->parent = node ? node->val : 0; 7494dae077aSJeff Mahoney ref->inode_list = unode_aux_to_inode_list(node); 7508da6d581SJan Schmidt 75186d5f994SEdmund Nadolski /* Add a prelim_ref(s) for any other parent(s). */ 752cd1b413cSJan Schmidt while ((node = ulist_next(parents, &uiter))) { 75386d5f994SEdmund Nadolski struct prelim_ref *new_ref; 75486d5f994SEdmund Nadolski 755b9e9a6cbSWang Shilong new_ref = kmem_cache_alloc(btrfs_prelim_ref_cache, 756b9e9a6cbSWang Shilong GFP_NOFS); 7578da6d581SJan Schmidt if (!new_ref) { 75886d5f994SEdmund Nadolski free_pref(ref); 7598da6d581SJan Schmidt ret = -ENOMEM; 760e36902d4SWang Shilong goto out; 7618da6d581SJan Schmidt } 7628da6d581SJan Schmidt memcpy(new_ref, ref, sizeof(*ref)); 7638da6d581SJan Schmidt new_ref->parent = node->val; 7644dae077aSJeff Mahoney new_ref->inode_list = unode_aux_to_inode_list(node); 7653ec4d323SEdmund Nadolski prelim_ref_insert(fs_info, &preftrees->direct, 7663ec4d323SEdmund Nadolski new_ref, NULL); 7678da6d581SJan Schmidt } 76886d5f994SEdmund Nadolski 7693ec4d323SEdmund Nadolski /* 77052042d8eSAndrea Gelmini * Now it's a direct ref, put it in the direct tree. We must 7713ec4d323SEdmund Nadolski * do this last because the ref could be merged/freed here. 7723ec4d323SEdmund Nadolski */ 7733ec4d323SEdmund Nadolski prelim_ref_insert(fs_info, &preftrees->direct, ref, NULL); 77486d5f994SEdmund Nadolski 7758da6d581SJan Schmidt ulist_reinit(parents); 7769dd14fd6SEdmund Nadolski cond_resched(); 7778da6d581SJan Schmidt } 778e36902d4SWang Shilong out: 7795614dc3aSFilipe Manana /* 7805614dc3aSFilipe Manana * We may have inode lists attached to refs in the parents ulist, so we 7815614dc3aSFilipe Manana * must free them before freeing the ulist and its refs. 7825614dc3aSFilipe Manana */ 7835614dc3aSFilipe Manana free_leaf_list(parents); 7848da6d581SJan Schmidt return ret; 7858da6d581SJan Schmidt } 7868da6d581SJan Schmidt 787d5c88b73SJan Schmidt /* 788d5c88b73SJan Schmidt * read tree blocks and add keys where required. 789d5c88b73SJan Schmidt */ 790e0c476b1SJeff Mahoney static int add_missing_keys(struct btrfs_fs_info *fs_info, 79138e3eebfSJosef Bacik struct preftrees *preftrees, bool lock) 792d5c88b73SJan Schmidt { 793e0c476b1SJeff Mahoney struct prelim_ref *ref; 794d5c88b73SJan Schmidt struct extent_buffer *eb; 79586d5f994SEdmund Nadolski struct preftree *tree = &preftrees->indirect_missing_keys; 79686d5f994SEdmund Nadolski struct rb_node *node; 797d5c88b73SJan Schmidt 798ecf160b4SLiu Bo while ((node = rb_first_cached(&tree->root))) { 79986d5f994SEdmund Nadolski ref = rb_entry(node, struct prelim_ref, rbnode); 800ecf160b4SLiu Bo rb_erase_cached(node, &tree->root); 80186d5f994SEdmund Nadolski 80286d5f994SEdmund Nadolski BUG_ON(ref->parent); /* should not be a direct ref */ 80386d5f994SEdmund Nadolski BUG_ON(ref->key_for_search.type); 804d5c88b73SJan Schmidt BUG_ON(!ref->wanted_disk_byte); 80586d5f994SEdmund Nadolski 8061b7ec85eSJosef Bacik eb = read_tree_block(fs_info, ref->wanted_disk_byte, 8071b7ec85eSJosef Bacik ref->root_id, 0, ref->level - 1, NULL); 80864c043deSLiu Bo if (IS_ERR(eb)) { 80986d5f994SEdmund Nadolski free_pref(ref); 81064c043deSLiu Bo return PTR_ERR(eb); 8114eb150d6SQu Wenruo } 8124eb150d6SQu Wenruo if (!extent_buffer_uptodate(eb)) { 81386d5f994SEdmund Nadolski free_pref(ref); 814416bc658SJosef Bacik free_extent_buffer(eb); 815416bc658SJosef Bacik return -EIO; 816416bc658SJosef Bacik } 8174eb150d6SQu Wenruo 81838e3eebfSJosef Bacik if (lock) 819d5c88b73SJan Schmidt btrfs_tree_read_lock(eb); 820d5c88b73SJan Schmidt if (btrfs_header_level(eb) == 0) 821d5c88b73SJan Schmidt btrfs_item_key_to_cpu(eb, &ref->key_for_search, 0); 822d5c88b73SJan Schmidt else 823d5c88b73SJan Schmidt btrfs_node_key_to_cpu(eb, &ref->key_for_search, 0); 82438e3eebfSJosef Bacik if (lock) 825d5c88b73SJan Schmidt btrfs_tree_read_unlock(eb); 826d5c88b73SJan Schmidt free_extent_buffer(eb); 8273ec4d323SEdmund Nadolski prelim_ref_insert(fs_info, &preftrees->indirect, ref, NULL); 8289dd14fd6SEdmund Nadolski cond_resched(); 829d5c88b73SJan Schmidt } 830d5c88b73SJan Schmidt return 0; 831d5c88b73SJan Schmidt } 832d5c88b73SJan Schmidt 8338da6d581SJan Schmidt /* 8348da6d581SJan Schmidt * add all currently queued delayed refs from this head whose seq nr is 8358da6d581SJan Schmidt * smaller or equal that seq to the list 8368da6d581SJan Schmidt */ 83700142756SJeff Mahoney static int add_delayed_refs(const struct btrfs_fs_info *fs_info, 83800142756SJeff Mahoney struct btrfs_delayed_ref_head *head, u64 seq, 839b25b0b87Sethanwu struct preftrees *preftrees, struct share_check *sc) 8408da6d581SJan Schmidt { 841c6fc2454SQu Wenruo struct btrfs_delayed_ref_node *node; 842d5c88b73SJan Schmidt struct btrfs_key key; 8430e0adbcfSJosef Bacik struct rb_node *n; 84401747e92SEdmund Nadolski int count; 845b1375d64SJan Schmidt int ret = 0; 8468da6d581SJan Schmidt 847d7df2c79SJosef Bacik spin_lock(&head->lock); 848e3d03965SLiu Bo for (n = rb_first_cached(&head->ref_tree); n; n = rb_next(n)) { 8490e0adbcfSJosef Bacik node = rb_entry(n, struct btrfs_delayed_ref_node, 8500e0adbcfSJosef Bacik ref_node); 8518da6d581SJan Schmidt if (node->seq > seq) 8528da6d581SJan Schmidt continue; 8538da6d581SJan Schmidt 8548da6d581SJan Schmidt switch (node->action) { 8558da6d581SJan Schmidt case BTRFS_ADD_DELAYED_EXTENT: 8568da6d581SJan Schmidt case BTRFS_UPDATE_DELAYED_HEAD: 8578da6d581SJan Schmidt WARN_ON(1); 8588da6d581SJan Schmidt continue; 8598da6d581SJan Schmidt case BTRFS_ADD_DELAYED_REF: 86001747e92SEdmund Nadolski count = node->ref_mod; 8618da6d581SJan Schmidt break; 8628da6d581SJan Schmidt case BTRFS_DROP_DELAYED_REF: 86301747e92SEdmund Nadolski count = node->ref_mod * -1; 8648da6d581SJan Schmidt break; 8658da6d581SJan Schmidt default: 866290342f6SArnd Bergmann BUG(); 8678da6d581SJan Schmidt } 8688da6d581SJan Schmidt switch (node->type) { 8698da6d581SJan Schmidt case BTRFS_TREE_BLOCK_REF_KEY: { 87086d5f994SEdmund Nadolski /* NORMAL INDIRECT METADATA backref */ 8718da6d581SJan Schmidt struct btrfs_delayed_tree_ref *ref; 872943553efSFilipe Manana struct btrfs_key *key_ptr = NULL; 873943553efSFilipe Manana 874943553efSFilipe Manana if (head->extent_op && head->extent_op->update_key) { 875943553efSFilipe Manana btrfs_disk_key_to_cpu(&key, &head->extent_op->key); 876943553efSFilipe Manana key_ptr = &key; 877943553efSFilipe Manana } 8788da6d581SJan Schmidt 8798da6d581SJan Schmidt ref = btrfs_delayed_node_to_tree_ref(node); 88000142756SJeff Mahoney ret = add_indirect_ref(fs_info, preftrees, ref->root, 881943553efSFilipe Manana key_ptr, ref->level + 1, 88201747e92SEdmund Nadolski node->bytenr, count, sc, 88301747e92SEdmund Nadolski GFP_ATOMIC); 8848da6d581SJan Schmidt break; 8858da6d581SJan Schmidt } 8868da6d581SJan Schmidt case BTRFS_SHARED_BLOCK_REF_KEY: { 88786d5f994SEdmund Nadolski /* SHARED DIRECT METADATA backref */ 8888da6d581SJan Schmidt struct btrfs_delayed_tree_ref *ref; 8898da6d581SJan Schmidt 8908da6d581SJan Schmidt ref = btrfs_delayed_node_to_tree_ref(node); 89186d5f994SEdmund Nadolski 89201747e92SEdmund Nadolski ret = add_direct_ref(fs_info, preftrees, ref->level + 1, 89301747e92SEdmund Nadolski ref->parent, node->bytenr, count, 8943ec4d323SEdmund Nadolski sc, GFP_ATOMIC); 8958da6d581SJan Schmidt break; 8968da6d581SJan Schmidt } 8978da6d581SJan Schmidt case BTRFS_EXTENT_DATA_REF_KEY: { 89886d5f994SEdmund Nadolski /* NORMAL INDIRECT DATA backref */ 8998da6d581SJan Schmidt struct btrfs_delayed_data_ref *ref; 9008da6d581SJan Schmidt ref = btrfs_delayed_node_to_data_ref(node); 9018da6d581SJan Schmidt 9028da6d581SJan Schmidt key.objectid = ref->objectid; 9038da6d581SJan Schmidt key.type = BTRFS_EXTENT_DATA_KEY; 9048da6d581SJan Schmidt key.offset = ref->offset; 905dc046b10SJosef Bacik 906dc046b10SJosef Bacik /* 9074fc7b572SFilipe Manana * If we have a share check context and a reference for 9084fc7b572SFilipe Manana * another inode, we can't exit immediately. This is 9094fc7b572SFilipe Manana * because even if this is a BTRFS_ADD_DELAYED_REF 9104fc7b572SFilipe Manana * reference we may find next a BTRFS_DROP_DELAYED_REF 9114fc7b572SFilipe Manana * which cancels out this ADD reference. 9124fc7b572SFilipe Manana * 9134fc7b572SFilipe Manana * If this is a DROP reference and there was no previous 9144fc7b572SFilipe Manana * ADD reference, then we need to signal that when we 9154fc7b572SFilipe Manana * process references from the extent tree (through 9164fc7b572SFilipe Manana * add_inline_refs() and add_keyed_refs()), we should 9174fc7b572SFilipe Manana * not exit early if we find a reference for another 9184fc7b572SFilipe Manana * inode, because one of the delayed DROP references 9194fc7b572SFilipe Manana * may cancel that reference in the extent tree. 920dc046b10SJosef Bacik */ 9214fc7b572SFilipe Manana if (sc && count < 0) 9224fc7b572SFilipe Manana sc->have_delayed_delete_refs = true; 923dc046b10SJosef Bacik 92400142756SJeff Mahoney ret = add_indirect_ref(fs_info, preftrees, ref->root, 92501747e92SEdmund Nadolski &key, 0, node->bytenr, count, sc, 92601747e92SEdmund Nadolski GFP_ATOMIC); 9278da6d581SJan Schmidt break; 9288da6d581SJan Schmidt } 9298da6d581SJan Schmidt case BTRFS_SHARED_DATA_REF_KEY: { 93086d5f994SEdmund Nadolski /* SHARED DIRECT FULL backref */ 9318da6d581SJan Schmidt struct btrfs_delayed_data_ref *ref; 9328da6d581SJan Schmidt 9338da6d581SJan Schmidt ref = btrfs_delayed_node_to_data_ref(node); 93486d5f994SEdmund Nadolski 93501747e92SEdmund Nadolski ret = add_direct_ref(fs_info, preftrees, 0, ref->parent, 93601747e92SEdmund Nadolski node->bytenr, count, sc, 93701747e92SEdmund Nadolski GFP_ATOMIC); 9388da6d581SJan Schmidt break; 9398da6d581SJan Schmidt } 9408da6d581SJan Schmidt default: 9418da6d581SJan Schmidt WARN_ON(1); 9428da6d581SJan Schmidt } 9433ec4d323SEdmund Nadolski /* 9443ec4d323SEdmund Nadolski * We must ignore BACKREF_FOUND_SHARED until all delayed 9453ec4d323SEdmund Nadolski * refs have been checked. 9463ec4d323SEdmund Nadolski */ 9473ec4d323SEdmund Nadolski if (ret && (ret != BACKREF_FOUND_SHARED)) 948d7df2c79SJosef Bacik break; 9498da6d581SJan Schmidt } 9503ec4d323SEdmund Nadolski if (!ret) 9513ec4d323SEdmund Nadolski ret = extent_is_shared(sc); 9524fc7b572SFilipe Manana 953d7df2c79SJosef Bacik spin_unlock(&head->lock); 954d7df2c79SJosef Bacik return ret; 9558da6d581SJan Schmidt } 9568da6d581SJan Schmidt 9578da6d581SJan Schmidt /* 9588da6d581SJan Schmidt * add all inline backrefs for bytenr to the list 9593ec4d323SEdmund Nadolski * 9603ec4d323SEdmund Nadolski * Returns 0 on success, <0 on error, or BACKREF_FOUND_SHARED. 9618da6d581SJan Schmidt */ 96200142756SJeff Mahoney static int add_inline_refs(const struct btrfs_fs_info *fs_info, 96300142756SJeff Mahoney struct btrfs_path *path, u64 bytenr, 96486d5f994SEdmund Nadolski int *info_level, struct preftrees *preftrees, 965b25b0b87Sethanwu struct share_check *sc) 9668da6d581SJan Schmidt { 967b1375d64SJan Schmidt int ret = 0; 9688da6d581SJan Schmidt int slot; 9698da6d581SJan Schmidt struct extent_buffer *leaf; 9708da6d581SJan Schmidt struct btrfs_key key; 971261c84b6SJosef Bacik struct btrfs_key found_key; 9728da6d581SJan Schmidt unsigned long ptr; 9738da6d581SJan Schmidt unsigned long end; 9748da6d581SJan Schmidt struct btrfs_extent_item *ei; 9758da6d581SJan Schmidt u64 flags; 9768da6d581SJan Schmidt u64 item_size; 9778da6d581SJan Schmidt 9788da6d581SJan Schmidt /* 9798da6d581SJan Schmidt * enumerate all inline refs 9808da6d581SJan Schmidt */ 9818da6d581SJan Schmidt leaf = path->nodes[0]; 982dadcaf78SJan Schmidt slot = path->slots[0]; 9838da6d581SJan Schmidt 9843212fa14SJosef Bacik item_size = btrfs_item_size(leaf, slot); 9858da6d581SJan Schmidt BUG_ON(item_size < sizeof(*ei)); 9868da6d581SJan Schmidt 9878da6d581SJan Schmidt ei = btrfs_item_ptr(leaf, slot, struct btrfs_extent_item); 9888da6d581SJan Schmidt flags = btrfs_extent_flags(leaf, ei); 989261c84b6SJosef Bacik btrfs_item_key_to_cpu(leaf, &found_key, slot); 9908da6d581SJan Schmidt 9918da6d581SJan Schmidt ptr = (unsigned long)(ei + 1); 9928da6d581SJan Schmidt end = (unsigned long)ei + item_size; 9938da6d581SJan Schmidt 994261c84b6SJosef Bacik if (found_key.type == BTRFS_EXTENT_ITEM_KEY && 995261c84b6SJosef Bacik flags & BTRFS_EXTENT_FLAG_TREE_BLOCK) { 9968da6d581SJan Schmidt struct btrfs_tree_block_info *info; 9978da6d581SJan Schmidt 9988da6d581SJan Schmidt info = (struct btrfs_tree_block_info *)ptr; 9998da6d581SJan Schmidt *info_level = btrfs_tree_block_level(leaf, info); 10008da6d581SJan Schmidt ptr += sizeof(struct btrfs_tree_block_info); 10018da6d581SJan Schmidt BUG_ON(ptr > end); 1002261c84b6SJosef Bacik } else if (found_key.type == BTRFS_METADATA_ITEM_KEY) { 1003261c84b6SJosef Bacik *info_level = found_key.offset; 10048da6d581SJan Schmidt } else { 10058da6d581SJan Schmidt BUG_ON(!(flags & BTRFS_EXTENT_FLAG_DATA)); 10068da6d581SJan Schmidt } 10078da6d581SJan Schmidt 10088da6d581SJan Schmidt while (ptr < end) { 10098da6d581SJan Schmidt struct btrfs_extent_inline_ref *iref; 10108da6d581SJan Schmidt u64 offset; 10118da6d581SJan Schmidt int type; 10128da6d581SJan Schmidt 10138da6d581SJan Schmidt iref = (struct btrfs_extent_inline_ref *)ptr; 10143de28d57SLiu Bo type = btrfs_get_extent_inline_ref_type(leaf, iref, 10153de28d57SLiu Bo BTRFS_REF_TYPE_ANY); 10163de28d57SLiu Bo if (type == BTRFS_REF_TYPE_INVALID) 1017af431dcbSSu Yue return -EUCLEAN; 10183de28d57SLiu Bo 10198da6d581SJan Schmidt offset = btrfs_extent_inline_ref_offset(leaf, iref); 10208da6d581SJan Schmidt 10218da6d581SJan Schmidt switch (type) { 10228da6d581SJan Schmidt case BTRFS_SHARED_BLOCK_REF_KEY: 102300142756SJeff Mahoney ret = add_direct_ref(fs_info, preftrees, 102400142756SJeff Mahoney *info_level + 1, offset, 10253ec4d323SEdmund Nadolski bytenr, 1, NULL, GFP_NOFS); 10268da6d581SJan Schmidt break; 10278da6d581SJan Schmidt case BTRFS_SHARED_DATA_REF_KEY: { 10288da6d581SJan Schmidt struct btrfs_shared_data_ref *sdref; 10298da6d581SJan Schmidt int count; 10308da6d581SJan Schmidt 10318da6d581SJan Schmidt sdref = (struct btrfs_shared_data_ref *)(iref + 1); 10328da6d581SJan Schmidt count = btrfs_shared_data_ref_count(leaf, sdref); 103386d5f994SEdmund Nadolski 103400142756SJeff Mahoney ret = add_direct_ref(fs_info, preftrees, 0, offset, 10353ec4d323SEdmund Nadolski bytenr, count, sc, GFP_NOFS); 10368da6d581SJan Schmidt break; 10378da6d581SJan Schmidt } 10388da6d581SJan Schmidt case BTRFS_TREE_BLOCK_REF_KEY: 103900142756SJeff Mahoney ret = add_indirect_ref(fs_info, preftrees, offset, 104000142756SJeff Mahoney NULL, *info_level + 1, 10413ec4d323SEdmund Nadolski bytenr, 1, NULL, GFP_NOFS); 10428da6d581SJan Schmidt break; 10438da6d581SJan Schmidt case BTRFS_EXTENT_DATA_REF_KEY: { 10448da6d581SJan Schmidt struct btrfs_extent_data_ref *dref; 10458da6d581SJan Schmidt int count; 10468da6d581SJan Schmidt u64 root; 10478da6d581SJan Schmidt 10488da6d581SJan Schmidt dref = (struct btrfs_extent_data_ref *)(&iref->offset); 10498da6d581SJan Schmidt count = btrfs_extent_data_ref_count(leaf, dref); 10508da6d581SJan Schmidt key.objectid = btrfs_extent_data_ref_objectid(leaf, 10518da6d581SJan Schmidt dref); 10528da6d581SJan Schmidt key.type = BTRFS_EXTENT_DATA_KEY; 10538da6d581SJan Schmidt key.offset = btrfs_extent_data_ref_offset(leaf, dref); 1054dc046b10SJosef Bacik 10554fc7b572SFilipe Manana if (sc && sc->inum && key.objectid != sc->inum && 10564fc7b572SFilipe Manana !sc->have_delayed_delete_refs) { 1057dc046b10SJosef Bacik ret = BACKREF_FOUND_SHARED; 1058dc046b10SJosef Bacik break; 1059dc046b10SJosef Bacik } 1060dc046b10SJosef Bacik 10618da6d581SJan Schmidt root = btrfs_extent_data_ref_root(leaf, dref); 106286d5f994SEdmund Nadolski 106300142756SJeff Mahoney ret = add_indirect_ref(fs_info, preftrees, root, 106400142756SJeff Mahoney &key, 0, bytenr, count, 10653ec4d323SEdmund Nadolski sc, GFP_NOFS); 10664fc7b572SFilipe Manana 10678da6d581SJan Schmidt break; 10688da6d581SJan Schmidt } 10698da6d581SJan Schmidt default: 10708da6d581SJan Schmidt WARN_ON(1); 10718da6d581SJan Schmidt } 10721149ab6bSWang Shilong if (ret) 10731149ab6bSWang Shilong return ret; 10748da6d581SJan Schmidt ptr += btrfs_extent_inline_ref_size(type); 10758da6d581SJan Schmidt } 10768da6d581SJan Schmidt 10778da6d581SJan Schmidt return 0; 10788da6d581SJan Schmidt } 10798da6d581SJan Schmidt 10808da6d581SJan Schmidt /* 10818da6d581SJan Schmidt * add all non-inline backrefs for bytenr to the list 10823ec4d323SEdmund Nadolski * 10833ec4d323SEdmund Nadolski * Returns 0 on success, <0 on error, or BACKREF_FOUND_SHARED. 10848da6d581SJan Schmidt */ 108598cc4222SJosef Bacik static int add_keyed_refs(struct btrfs_root *extent_root, 10868da6d581SJan Schmidt struct btrfs_path *path, u64 bytenr, 108786d5f994SEdmund Nadolski int info_level, struct preftrees *preftrees, 10883ec4d323SEdmund Nadolski struct share_check *sc) 10898da6d581SJan Schmidt { 109098cc4222SJosef Bacik struct btrfs_fs_info *fs_info = extent_root->fs_info; 10918da6d581SJan Schmidt int ret; 10928da6d581SJan Schmidt int slot; 10938da6d581SJan Schmidt struct extent_buffer *leaf; 10948da6d581SJan Schmidt struct btrfs_key key; 10958da6d581SJan Schmidt 10968da6d581SJan Schmidt while (1) { 10978da6d581SJan Schmidt ret = btrfs_next_item(extent_root, path); 10988da6d581SJan Schmidt if (ret < 0) 10998da6d581SJan Schmidt break; 11008da6d581SJan Schmidt if (ret) { 11018da6d581SJan Schmidt ret = 0; 11028da6d581SJan Schmidt break; 11038da6d581SJan Schmidt } 11048da6d581SJan Schmidt 11058da6d581SJan Schmidt slot = path->slots[0]; 11068da6d581SJan Schmidt leaf = path->nodes[0]; 11078da6d581SJan Schmidt btrfs_item_key_to_cpu(leaf, &key, slot); 11088da6d581SJan Schmidt 11098da6d581SJan Schmidt if (key.objectid != bytenr) 11108da6d581SJan Schmidt break; 11118da6d581SJan Schmidt if (key.type < BTRFS_TREE_BLOCK_REF_KEY) 11128da6d581SJan Schmidt continue; 11138da6d581SJan Schmidt if (key.type > BTRFS_SHARED_DATA_REF_KEY) 11148da6d581SJan Schmidt break; 11158da6d581SJan Schmidt 11168da6d581SJan Schmidt switch (key.type) { 11178da6d581SJan Schmidt case BTRFS_SHARED_BLOCK_REF_KEY: 111886d5f994SEdmund Nadolski /* SHARED DIRECT METADATA backref */ 111900142756SJeff Mahoney ret = add_direct_ref(fs_info, preftrees, 112000142756SJeff Mahoney info_level + 1, key.offset, 11213ec4d323SEdmund Nadolski bytenr, 1, NULL, GFP_NOFS); 11228da6d581SJan Schmidt break; 11238da6d581SJan Schmidt case BTRFS_SHARED_DATA_REF_KEY: { 112486d5f994SEdmund Nadolski /* SHARED DIRECT FULL backref */ 11258da6d581SJan Schmidt struct btrfs_shared_data_ref *sdref; 11268da6d581SJan Schmidt int count; 11278da6d581SJan Schmidt 11288da6d581SJan Schmidt sdref = btrfs_item_ptr(leaf, slot, 11298da6d581SJan Schmidt struct btrfs_shared_data_ref); 11308da6d581SJan Schmidt count = btrfs_shared_data_ref_count(leaf, sdref); 113100142756SJeff Mahoney ret = add_direct_ref(fs_info, preftrees, 0, 113200142756SJeff Mahoney key.offset, bytenr, count, 11333ec4d323SEdmund Nadolski sc, GFP_NOFS); 11348da6d581SJan Schmidt break; 11358da6d581SJan Schmidt } 11368da6d581SJan Schmidt case BTRFS_TREE_BLOCK_REF_KEY: 113786d5f994SEdmund Nadolski /* NORMAL INDIRECT METADATA backref */ 113800142756SJeff Mahoney ret = add_indirect_ref(fs_info, preftrees, key.offset, 113900142756SJeff Mahoney NULL, info_level + 1, bytenr, 11403ec4d323SEdmund Nadolski 1, NULL, GFP_NOFS); 11418da6d581SJan Schmidt break; 11428da6d581SJan Schmidt case BTRFS_EXTENT_DATA_REF_KEY: { 114386d5f994SEdmund Nadolski /* NORMAL INDIRECT DATA backref */ 11448da6d581SJan Schmidt struct btrfs_extent_data_ref *dref; 11458da6d581SJan Schmidt int count; 11468da6d581SJan Schmidt u64 root; 11478da6d581SJan Schmidt 11488da6d581SJan Schmidt dref = btrfs_item_ptr(leaf, slot, 11498da6d581SJan Schmidt struct btrfs_extent_data_ref); 11508da6d581SJan Schmidt count = btrfs_extent_data_ref_count(leaf, dref); 11518da6d581SJan Schmidt key.objectid = btrfs_extent_data_ref_objectid(leaf, 11528da6d581SJan Schmidt dref); 11538da6d581SJan Schmidt key.type = BTRFS_EXTENT_DATA_KEY; 11548da6d581SJan Schmidt key.offset = btrfs_extent_data_ref_offset(leaf, dref); 1155dc046b10SJosef Bacik 11564fc7b572SFilipe Manana if (sc && sc->inum && key.objectid != sc->inum && 11574fc7b572SFilipe Manana !sc->have_delayed_delete_refs) { 1158dc046b10SJosef Bacik ret = BACKREF_FOUND_SHARED; 1159dc046b10SJosef Bacik break; 1160dc046b10SJosef Bacik } 1161dc046b10SJosef Bacik 11628da6d581SJan Schmidt root = btrfs_extent_data_ref_root(leaf, dref); 116300142756SJeff Mahoney ret = add_indirect_ref(fs_info, preftrees, root, 116400142756SJeff Mahoney &key, 0, bytenr, count, 11653ec4d323SEdmund Nadolski sc, GFP_NOFS); 11668da6d581SJan Schmidt break; 11678da6d581SJan Schmidt } 11688da6d581SJan Schmidt default: 11698da6d581SJan Schmidt WARN_ON(1); 11708da6d581SJan Schmidt } 11711149ab6bSWang Shilong if (ret) 11721149ab6bSWang Shilong return ret; 11731149ab6bSWang Shilong 11748da6d581SJan Schmidt } 11758da6d581SJan Schmidt 11768da6d581SJan Schmidt return ret; 11778da6d581SJan Schmidt } 11788da6d581SJan Schmidt 11798da6d581SJan Schmidt /* 11808da6d581SJan Schmidt * this adds all existing backrefs (inline backrefs, backrefs and delayed 11818da6d581SJan Schmidt * refs) for the given bytenr to the refs list, merges duplicates and resolves 11828da6d581SJan Schmidt * indirect refs to their parent bytenr. 11838da6d581SJan Schmidt * When roots are found, they're added to the roots list 11848da6d581SJan Schmidt * 1185f3a84ccdSFilipe Manana * If time_seq is set to BTRFS_SEQ_LAST, it will not search delayed_refs, and 1186f3a84ccdSFilipe Manana * behave much like trans == NULL case, the difference only lies in it will not 118721633fc6SQu Wenruo * commit root. 118821633fc6SQu Wenruo * The special case is for qgroup to search roots in commit_transaction(). 118921633fc6SQu Wenruo * 11903ec4d323SEdmund Nadolski * @sc - if !NULL, then immediately return BACKREF_FOUND_SHARED when a 11913ec4d323SEdmund Nadolski * shared extent is detected. 11923ec4d323SEdmund Nadolski * 11933ec4d323SEdmund Nadolski * Otherwise this returns 0 for success and <0 for an error. 11943ec4d323SEdmund Nadolski * 1195c995ab3cSZygo Blaxell * If ignore_offset is set to false, only extent refs whose offsets match 1196c995ab3cSZygo Blaxell * extent_item_pos are returned. If true, every extent ref is returned 1197c995ab3cSZygo Blaxell * and extent_item_pos is ignored. 1198c995ab3cSZygo Blaxell * 11998da6d581SJan Schmidt * FIXME some caching might speed things up 12008da6d581SJan Schmidt */ 12018da6d581SJan Schmidt static int find_parent_nodes(struct btrfs_trans_handle *trans, 12028da6d581SJan Schmidt struct btrfs_fs_info *fs_info, u64 bytenr, 1203097b8a7cSJan Schmidt u64 time_seq, struct ulist *refs, 1204dc046b10SJosef Bacik struct ulist *roots, const u64 *extent_item_pos, 1205c995ab3cSZygo Blaxell struct share_check *sc, bool ignore_offset) 12068da6d581SJan Schmidt { 120729cbcf40SJosef Bacik struct btrfs_root *root = btrfs_extent_root(fs_info, bytenr); 12088da6d581SJan Schmidt struct btrfs_key key; 12098da6d581SJan Schmidt struct btrfs_path *path; 12108da6d581SJan Schmidt struct btrfs_delayed_ref_root *delayed_refs = NULL; 1211d3b01064SLi Zefan struct btrfs_delayed_ref_head *head; 12128da6d581SJan Schmidt int info_level = 0; 12138da6d581SJan Schmidt int ret; 1214e0c476b1SJeff Mahoney struct prelim_ref *ref; 121586d5f994SEdmund Nadolski struct rb_node *node; 1216f05c4746SWang Shilong struct extent_inode_elem *eie = NULL; 121786d5f994SEdmund Nadolski struct preftrees preftrees = { 121886d5f994SEdmund Nadolski .direct = PREFTREE_INIT, 121986d5f994SEdmund Nadolski .indirect = PREFTREE_INIT, 122086d5f994SEdmund Nadolski .indirect_missing_keys = PREFTREE_INIT 122186d5f994SEdmund Nadolski }; 12228da6d581SJan Schmidt 12238da6d581SJan Schmidt key.objectid = bytenr; 12248da6d581SJan Schmidt key.offset = (u64)-1; 1225261c84b6SJosef Bacik if (btrfs_fs_incompat(fs_info, SKINNY_METADATA)) 1226261c84b6SJosef Bacik key.type = BTRFS_METADATA_ITEM_KEY; 1227261c84b6SJosef Bacik else 1228261c84b6SJosef Bacik key.type = BTRFS_EXTENT_ITEM_KEY; 12298da6d581SJan Schmidt 12308da6d581SJan Schmidt path = btrfs_alloc_path(); 12318da6d581SJan Schmidt if (!path) 12328da6d581SJan Schmidt return -ENOMEM; 1233e84752d4SWang Shilong if (!trans) { 1234da61d31aSJosef Bacik path->search_commit_root = 1; 1235e84752d4SWang Shilong path->skip_locking = 1; 1236e84752d4SWang Shilong } 12378da6d581SJan Schmidt 1238f3a84ccdSFilipe Manana if (time_seq == BTRFS_SEQ_LAST) 123921633fc6SQu Wenruo path->skip_locking = 1; 124021633fc6SQu Wenruo 12418da6d581SJan Schmidt again: 1242d3b01064SLi Zefan head = NULL; 1243d3b01064SLi Zefan 124498cc4222SJosef Bacik ret = btrfs_search_slot(NULL, root, &key, path, 0, 0); 12458da6d581SJan Schmidt if (ret < 0) 12468da6d581SJan Schmidt goto out; 1247fcba0120SJosef Bacik if (ret == 0) { 1248fcba0120SJosef Bacik /* This shouldn't happen, indicates a bug or fs corruption. */ 1249fcba0120SJosef Bacik ASSERT(ret != 0); 1250fcba0120SJosef Bacik ret = -EUCLEAN; 1251fcba0120SJosef Bacik goto out; 1252fcba0120SJosef Bacik } 12538da6d581SJan Schmidt 125421633fc6SQu Wenruo if (trans && likely(trans->type != __TRANS_DUMMY) && 1255f3a84ccdSFilipe Manana time_seq != BTRFS_SEQ_LAST) { 12568da6d581SJan Schmidt /* 12579665ebd5SJosef Bacik * We have a specific time_seq we care about and trans which 12589665ebd5SJosef Bacik * means we have the path lock, we need to grab the ref head and 12599665ebd5SJosef Bacik * lock it so we have a consistent view of the refs at the given 12609665ebd5SJosef Bacik * time. 12618da6d581SJan Schmidt */ 12628da6d581SJan Schmidt delayed_refs = &trans->transaction->delayed_refs; 12638da6d581SJan Schmidt spin_lock(&delayed_refs->lock); 1264f72ad18eSLiu Bo head = btrfs_find_delayed_ref_head(delayed_refs, bytenr); 12658da6d581SJan Schmidt if (head) { 12668da6d581SJan Schmidt if (!mutex_trylock(&head->mutex)) { 1267d278850eSJosef Bacik refcount_inc(&head->refs); 12688da6d581SJan Schmidt spin_unlock(&delayed_refs->lock); 12698da6d581SJan Schmidt 12708da6d581SJan Schmidt btrfs_release_path(path); 12718da6d581SJan Schmidt 12728da6d581SJan Schmidt /* 12738da6d581SJan Schmidt * Mutex was contended, block until it's 12748da6d581SJan Schmidt * released and try again 12758da6d581SJan Schmidt */ 12768da6d581SJan Schmidt mutex_lock(&head->mutex); 12778da6d581SJan Schmidt mutex_unlock(&head->mutex); 1278d278850eSJosef Bacik btrfs_put_delayed_ref_head(head); 12798da6d581SJan Schmidt goto again; 12808da6d581SJan Schmidt } 1281d7df2c79SJosef Bacik spin_unlock(&delayed_refs->lock); 128200142756SJeff Mahoney ret = add_delayed_refs(fs_info, head, time_seq, 1283b25b0b87Sethanwu &preftrees, sc); 1284155725c9SJan Schmidt mutex_unlock(&head->mutex); 1285d7df2c79SJosef Bacik if (ret) 12868da6d581SJan Schmidt goto out; 1287d7df2c79SJosef Bacik } else { 12888da6d581SJan Schmidt spin_unlock(&delayed_refs->lock); 12897a3ae2f8SJan Schmidt } 1290d7df2c79SJosef Bacik } 12918da6d581SJan Schmidt 12928da6d581SJan Schmidt if (path->slots[0]) { 12938da6d581SJan Schmidt struct extent_buffer *leaf; 12948da6d581SJan Schmidt int slot; 12958da6d581SJan Schmidt 1296dadcaf78SJan Schmidt path->slots[0]--; 12978da6d581SJan Schmidt leaf = path->nodes[0]; 1298dadcaf78SJan Schmidt slot = path->slots[0]; 12998da6d581SJan Schmidt btrfs_item_key_to_cpu(leaf, &key, slot); 13008da6d581SJan Schmidt if (key.objectid == bytenr && 1301261c84b6SJosef Bacik (key.type == BTRFS_EXTENT_ITEM_KEY || 1302261c84b6SJosef Bacik key.type == BTRFS_METADATA_ITEM_KEY)) { 130300142756SJeff Mahoney ret = add_inline_refs(fs_info, path, bytenr, 1304b25b0b87Sethanwu &info_level, &preftrees, sc); 13058da6d581SJan Schmidt if (ret) 13068da6d581SJan Schmidt goto out; 130798cc4222SJosef Bacik ret = add_keyed_refs(root, path, bytenr, info_level, 13083ec4d323SEdmund Nadolski &preftrees, sc); 13098da6d581SJan Schmidt if (ret) 13108da6d581SJan Schmidt goto out; 13118da6d581SJan Schmidt } 13128da6d581SJan Schmidt } 131386d5f994SEdmund Nadolski 13148da6d581SJan Schmidt btrfs_release_path(path); 13158da6d581SJan Schmidt 131638e3eebfSJosef Bacik ret = add_missing_keys(fs_info, &preftrees, path->skip_locking == 0); 1317d5c88b73SJan Schmidt if (ret) 1318d5c88b73SJan Schmidt goto out; 1319d5c88b73SJan Schmidt 1320ecf160b4SLiu Bo WARN_ON(!RB_EMPTY_ROOT(&preftrees.indirect_missing_keys.root.rb_root)); 13218da6d581SJan Schmidt 132286d5f994SEdmund Nadolski ret = resolve_indirect_refs(fs_info, path, time_seq, &preftrees, 1323b25b0b87Sethanwu extent_item_pos, sc, ignore_offset); 13248da6d581SJan Schmidt if (ret) 13258da6d581SJan Schmidt goto out; 13268da6d581SJan Schmidt 1327ecf160b4SLiu Bo WARN_ON(!RB_EMPTY_ROOT(&preftrees.indirect.root.rb_root)); 13288da6d581SJan Schmidt 132986d5f994SEdmund Nadolski /* 133086d5f994SEdmund Nadolski * This walks the tree of merged and resolved refs. Tree blocks are 133186d5f994SEdmund Nadolski * read in as needed. Unique entries are added to the ulist, and 133286d5f994SEdmund Nadolski * the list of found roots is updated. 133386d5f994SEdmund Nadolski * 133486d5f994SEdmund Nadolski * We release the entire tree in one go before returning. 133586d5f994SEdmund Nadolski */ 1336ecf160b4SLiu Bo node = rb_first_cached(&preftrees.direct.root); 133786d5f994SEdmund Nadolski while (node) { 133886d5f994SEdmund Nadolski ref = rb_entry(node, struct prelim_ref, rbnode); 133986d5f994SEdmund Nadolski node = rb_next(&ref->rbnode); 1340c8195a7bSZygo Blaxell /* 1341c8195a7bSZygo Blaxell * ref->count < 0 can happen here if there are delayed 1342c8195a7bSZygo Blaxell * refs with a node->action of BTRFS_DROP_DELAYED_REF. 1343c8195a7bSZygo Blaxell * prelim_ref_insert() relies on this when merging 1344c8195a7bSZygo Blaxell * identical refs to keep the overall count correct. 1345c8195a7bSZygo Blaxell * prelim_ref_insert() will merge only those refs 1346c8195a7bSZygo Blaxell * which compare identically. Any refs having 1347c8195a7bSZygo Blaxell * e.g. different offsets would not be merged, 1348c8195a7bSZygo Blaxell * and would retain their original ref->count < 0. 1349c8195a7bSZygo Blaxell */ 135098cfee21SWang Shilong if (roots && ref->count && ref->root_id && ref->parent == 0) { 13513ec4d323SEdmund Nadolski if (sc && sc->root_objectid && 13523ec4d323SEdmund Nadolski ref->root_id != sc->root_objectid) { 1353dc046b10SJosef Bacik ret = BACKREF_FOUND_SHARED; 1354dc046b10SJosef Bacik goto out; 1355dc046b10SJosef Bacik } 1356dc046b10SJosef Bacik 13578da6d581SJan Schmidt /* no parent == root of tree */ 13588da6d581SJan Schmidt ret = ulist_add(roots, ref->root_id, 0, GFP_NOFS); 1359f1723939SWang Shilong if (ret < 0) 1360f1723939SWang Shilong goto out; 13618da6d581SJan Schmidt } 13628da6d581SJan Schmidt if (ref->count && ref->parent) { 13638a56457fSJosef Bacik if (extent_item_pos && !ref->inode_list && 13648a56457fSJosef Bacik ref->level == 0) { 1365976b1908SJan Schmidt struct extent_buffer *eb; 1366707e8a07SDavid Sterba 1367581c1760SQu Wenruo eb = read_tree_block(fs_info, ref->parent, 0, 13681b7ec85eSJosef Bacik 0, ref->level, NULL); 136964c043deSLiu Bo if (IS_ERR(eb)) { 137064c043deSLiu Bo ret = PTR_ERR(eb); 137164c043deSLiu Bo goto out; 13724eb150d6SQu Wenruo } 13734eb150d6SQu Wenruo if (!extent_buffer_uptodate(eb)) { 1374416bc658SJosef Bacik free_extent_buffer(eb); 1375c16c2e2eSWang Shilong ret = -EIO; 1376c16c2e2eSWang Shilong goto out; 1377416bc658SJosef Bacik } 137838e3eebfSJosef Bacik 1379ac5887c8SJosef Bacik if (!path->skip_locking) 13806f7ff6d7SFilipe Manana btrfs_tree_read_lock(eb); 1381976b1908SJan Schmidt ret = find_extent_in_eb(eb, bytenr, 1382c995ab3cSZygo Blaxell *extent_item_pos, &eie, ignore_offset); 138338e3eebfSJosef Bacik if (!path->skip_locking) 1384ac5887c8SJosef Bacik btrfs_tree_read_unlock(eb); 1385976b1908SJan Schmidt free_extent_buffer(eb); 1386f5929cd8SFilipe David Borba Manana if (ret < 0) 1387f5929cd8SFilipe David Borba Manana goto out; 1388f5929cd8SFilipe David Borba Manana ref->inode_list = eie; 1389*92876eecSFilipe Manana /* 1390*92876eecSFilipe Manana * We transferred the list ownership to the ref, 1391*92876eecSFilipe Manana * so set to NULL to avoid a double free in case 1392*92876eecSFilipe Manana * an error happens after this. 1393*92876eecSFilipe Manana */ 1394*92876eecSFilipe Manana eie = NULL; 1395976b1908SJan Schmidt } 13964eb1f66dSTakashi Iwai ret = ulist_add_merge_ptr(refs, ref->parent, 13974eb1f66dSTakashi Iwai ref->inode_list, 13984eb1f66dSTakashi Iwai (void **)&eie, GFP_NOFS); 1399f1723939SWang Shilong if (ret < 0) 1400f1723939SWang Shilong goto out; 14013301958bSJan Schmidt if (!ret && extent_item_pos) { 14023301958bSJan Schmidt /* 14039f05c09dSJosef Bacik * We've recorded that parent, so we must extend 14049f05c09dSJosef Bacik * its inode list here. 14059f05c09dSJosef Bacik * 14069f05c09dSJosef Bacik * However if there was corruption we may not 14079f05c09dSJosef Bacik * have found an eie, return an error in this 14089f05c09dSJosef Bacik * case. 14093301958bSJan Schmidt */ 14109f05c09dSJosef Bacik ASSERT(eie); 14119f05c09dSJosef Bacik if (!eie) { 14129f05c09dSJosef Bacik ret = -EUCLEAN; 14139f05c09dSJosef Bacik goto out; 14149f05c09dSJosef Bacik } 14153301958bSJan Schmidt while (eie->next) 14163301958bSJan Schmidt eie = eie->next; 14173301958bSJan Schmidt eie->next = ref->inode_list; 14183301958bSJan Schmidt } 1419f05c4746SWang Shilong eie = NULL; 1420*92876eecSFilipe Manana /* 1421*92876eecSFilipe Manana * We have transferred the inode list ownership from 1422*92876eecSFilipe Manana * this ref to the ref we added to the 'refs' ulist. 1423*92876eecSFilipe Manana * So set this ref's inode list to NULL to avoid 1424*92876eecSFilipe Manana * use-after-free when our caller uses it or double 1425*92876eecSFilipe Manana * frees in case an error happens before we return. 1426*92876eecSFilipe Manana */ 1427*92876eecSFilipe Manana ref->inode_list = NULL; 14288da6d581SJan Schmidt } 14299dd14fd6SEdmund Nadolski cond_resched(); 14308da6d581SJan Schmidt } 14318da6d581SJan Schmidt 14328da6d581SJan Schmidt out: 14338da6d581SJan Schmidt btrfs_free_path(path); 143486d5f994SEdmund Nadolski 143586d5f994SEdmund Nadolski prelim_release(&preftrees.direct); 143686d5f994SEdmund Nadolski prelim_release(&preftrees.indirect); 143786d5f994SEdmund Nadolski prelim_release(&preftrees.indirect_missing_keys); 143886d5f994SEdmund Nadolski 1439f05c4746SWang Shilong if (ret < 0) 1440f05c4746SWang Shilong free_inode_elem_list(eie); 14418da6d581SJan Schmidt return ret; 14428da6d581SJan Schmidt } 14438da6d581SJan Schmidt 14448da6d581SJan Schmidt /* 14458da6d581SJan Schmidt * Finds all leafs with a reference to the specified combination of bytenr and 14468da6d581SJan Schmidt * offset. key_list_head will point to a list of corresponding keys (caller must 14478da6d581SJan Schmidt * free each list element). The leafs will be stored in the leafs ulist, which 14488da6d581SJan Schmidt * must be freed with ulist_free. 14498da6d581SJan Schmidt * 14508da6d581SJan Schmidt * returns 0 on success, <0 on error 14518da6d581SJan Schmidt */ 145219b546d7SQu Wenruo int btrfs_find_all_leafs(struct btrfs_trans_handle *trans, 14538da6d581SJan Schmidt struct btrfs_fs_info *fs_info, u64 bytenr, 1454097b8a7cSJan Schmidt u64 time_seq, struct ulist **leafs, 1455c995ab3cSZygo Blaxell const u64 *extent_item_pos, bool ignore_offset) 14568da6d581SJan Schmidt { 14578da6d581SJan Schmidt int ret; 14588da6d581SJan Schmidt 14598da6d581SJan Schmidt *leafs = ulist_alloc(GFP_NOFS); 146098cfee21SWang Shilong if (!*leafs) 14618da6d581SJan Schmidt return -ENOMEM; 14628da6d581SJan Schmidt 1463afce772eSLu Fengqi ret = find_parent_nodes(trans, fs_info, bytenr, time_seq, 1464c995ab3cSZygo Blaxell *leafs, NULL, extent_item_pos, NULL, ignore_offset); 14658da6d581SJan Schmidt if (ret < 0 && ret != -ENOENT) { 1466976b1908SJan Schmidt free_leaf_list(*leafs); 14678da6d581SJan Schmidt return ret; 14688da6d581SJan Schmidt } 14698da6d581SJan Schmidt 14708da6d581SJan Schmidt return 0; 14718da6d581SJan Schmidt } 14728da6d581SJan Schmidt 14738da6d581SJan Schmidt /* 14748da6d581SJan Schmidt * walk all backrefs for a given extent to find all roots that reference this 14758da6d581SJan Schmidt * extent. Walking a backref means finding all extents that reference this 14768da6d581SJan Schmidt * extent and in turn walk the backrefs of those, too. Naturally this is a 14778da6d581SJan Schmidt * recursive process, but here it is implemented in an iterative fashion: We 14788da6d581SJan Schmidt * find all referencing extents for the extent in question and put them on a 14798da6d581SJan Schmidt * list. In turn, we find all referencing extents for those, further appending 14808da6d581SJan Schmidt * to the list. The way we iterate the list allows adding more elements after 14818da6d581SJan Schmidt * the current while iterating. The process stops when we reach the end of the 14828da6d581SJan Schmidt * list. Found roots are added to the roots list. 14838da6d581SJan Schmidt * 14848da6d581SJan Schmidt * returns 0 on success, < 0 on error. 14858da6d581SJan Schmidt */ 1486e0c476b1SJeff Mahoney static int btrfs_find_all_roots_safe(struct btrfs_trans_handle *trans, 14878da6d581SJan Schmidt struct btrfs_fs_info *fs_info, u64 bytenr, 1488c995ab3cSZygo Blaxell u64 time_seq, struct ulist **roots, 1489c995ab3cSZygo Blaxell bool ignore_offset) 14908da6d581SJan Schmidt { 14918da6d581SJan Schmidt struct ulist *tmp; 14928da6d581SJan Schmidt struct ulist_node *node = NULL; 1493cd1b413cSJan Schmidt struct ulist_iterator uiter; 14948da6d581SJan Schmidt int ret; 14958da6d581SJan Schmidt 14968da6d581SJan Schmidt tmp = ulist_alloc(GFP_NOFS); 14978da6d581SJan Schmidt if (!tmp) 14988da6d581SJan Schmidt return -ENOMEM; 14998da6d581SJan Schmidt *roots = ulist_alloc(GFP_NOFS); 15008da6d581SJan Schmidt if (!*roots) { 15018da6d581SJan Schmidt ulist_free(tmp); 15028da6d581SJan Schmidt return -ENOMEM; 15038da6d581SJan Schmidt } 15048da6d581SJan Schmidt 1505cd1b413cSJan Schmidt ULIST_ITER_INIT(&uiter); 15068da6d581SJan Schmidt while (1) { 1507afce772eSLu Fengqi ret = find_parent_nodes(trans, fs_info, bytenr, time_seq, 1508c995ab3cSZygo Blaxell tmp, *roots, NULL, NULL, ignore_offset); 15098da6d581SJan Schmidt if (ret < 0 && ret != -ENOENT) { 15108da6d581SJan Schmidt ulist_free(tmp); 15118da6d581SJan Schmidt ulist_free(*roots); 1512580c079bSFilipe Manana *roots = NULL; 15138da6d581SJan Schmidt return ret; 15148da6d581SJan Schmidt } 1515cd1b413cSJan Schmidt node = ulist_next(tmp, &uiter); 15168da6d581SJan Schmidt if (!node) 15178da6d581SJan Schmidt break; 15188da6d581SJan Schmidt bytenr = node->val; 1519bca1a290SWang Shilong cond_resched(); 15208da6d581SJan Schmidt } 15218da6d581SJan Schmidt 15228da6d581SJan Schmidt ulist_free(tmp); 15238da6d581SJan Schmidt return 0; 15248da6d581SJan Schmidt } 15258da6d581SJan Schmidt 15269e351cc8SJosef Bacik int btrfs_find_all_roots(struct btrfs_trans_handle *trans, 15279e351cc8SJosef Bacik struct btrfs_fs_info *fs_info, u64 bytenr, 1528c995ab3cSZygo Blaxell u64 time_seq, struct ulist **roots, 1529c7bcbb21SFilipe Manana bool skip_commit_root_sem) 15309e351cc8SJosef Bacik { 15319e351cc8SJosef Bacik int ret; 15329e351cc8SJosef Bacik 15338949b9a1SFilipe Manana if (!trans && !skip_commit_root_sem) 15349e351cc8SJosef Bacik down_read(&fs_info->commit_root_sem); 1535e0c476b1SJeff Mahoney ret = btrfs_find_all_roots_safe(trans, fs_info, bytenr, 1536c7bcbb21SFilipe Manana time_seq, roots, false); 15378949b9a1SFilipe Manana if (!trans && !skip_commit_root_sem) 15389e351cc8SJosef Bacik up_read(&fs_info->commit_root_sem); 15399e351cc8SJosef Bacik return ret; 15409e351cc8SJosef Bacik } 15419e351cc8SJosef Bacik 15428eedaddaSFilipe Manana /* 154312a824dcSFilipe Manana * The caller has joined a transaction or is holding a read lock on the 154412a824dcSFilipe Manana * fs_info->commit_root_sem semaphore, so no need to worry about the root's last 154512a824dcSFilipe Manana * snapshot field changing while updating or checking the cache. 154612a824dcSFilipe Manana */ 154712a824dcSFilipe Manana static bool lookup_backref_shared_cache(struct btrfs_backref_shared_cache *cache, 154812a824dcSFilipe Manana struct btrfs_root *root, 154912a824dcSFilipe Manana u64 bytenr, int level, bool *is_shared) 155012a824dcSFilipe Manana { 155112a824dcSFilipe Manana struct btrfs_backref_shared_cache_entry *entry; 155212a824dcSFilipe Manana 155363c84b46SFilipe Manana if (!cache->use_cache) 155463c84b46SFilipe Manana return false; 155563c84b46SFilipe Manana 155612a824dcSFilipe Manana if (WARN_ON_ONCE(level >= BTRFS_MAX_LEVEL)) 155712a824dcSFilipe Manana return false; 155812a824dcSFilipe Manana 155912a824dcSFilipe Manana /* 156012a824dcSFilipe Manana * Level -1 is used for the data extent, which is not reliable to cache 156112a824dcSFilipe Manana * because its reference count can increase or decrease without us 156212a824dcSFilipe Manana * realizing. We cache results only for extent buffers that lead from 156312a824dcSFilipe Manana * the root node down to the leaf with the file extent item. 156412a824dcSFilipe Manana */ 156512a824dcSFilipe Manana ASSERT(level >= 0); 156612a824dcSFilipe Manana 156712a824dcSFilipe Manana entry = &cache->entries[level]; 156812a824dcSFilipe Manana 156912a824dcSFilipe Manana /* Unused cache entry or being used for some other extent buffer. */ 157012a824dcSFilipe Manana if (entry->bytenr != bytenr) 157112a824dcSFilipe Manana return false; 157212a824dcSFilipe Manana 157312a824dcSFilipe Manana /* 157412a824dcSFilipe Manana * We cached a false result, but the last snapshot generation of the 157512a824dcSFilipe Manana * root changed, so we now have a snapshot. Don't trust the result. 157612a824dcSFilipe Manana */ 157712a824dcSFilipe Manana if (!entry->is_shared && 157812a824dcSFilipe Manana entry->gen != btrfs_root_last_snapshot(&root->root_item)) 157912a824dcSFilipe Manana return false; 158012a824dcSFilipe Manana 158112a824dcSFilipe Manana /* 158212a824dcSFilipe Manana * If we cached a true result and the last generation used for dropping 158312a824dcSFilipe Manana * a root changed, we can not trust the result, because the dropped root 158412a824dcSFilipe Manana * could be a snapshot sharing this extent buffer. 158512a824dcSFilipe Manana */ 158612a824dcSFilipe Manana if (entry->is_shared && 158712a824dcSFilipe Manana entry->gen != btrfs_get_last_root_drop_gen(root->fs_info)) 158812a824dcSFilipe Manana return false; 158912a824dcSFilipe Manana 159012a824dcSFilipe Manana *is_shared = entry->is_shared; 159196dbcc00SFilipe Manana /* 159296dbcc00SFilipe Manana * If the node at this level is shared, than all nodes below are also 159396dbcc00SFilipe Manana * shared. Currently some of the nodes below may be marked as not shared 159496dbcc00SFilipe Manana * because we have just switched from one leaf to another, and switched 159596dbcc00SFilipe Manana * also other nodes above the leaf and below the current level, so mark 159696dbcc00SFilipe Manana * them as shared. 159796dbcc00SFilipe Manana */ 159896dbcc00SFilipe Manana if (*is_shared) { 159996dbcc00SFilipe Manana for (int i = 0; i < level; i++) { 160096dbcc00SFilipe Manana cache->entries[i].is_shared = true; 160196dbcc00SFilipe Manana cache->entries[i].gen = entry->gen; 160296dbcc00SFilipe Manana } 160396dbcc00SFilipe Manana } 160412a824dcSFilipe Manana 160512a824dcSFilipe Manana return true; 160612a824dcSFilipe Manana } 160712a824dcSFilipe Manana 160812a824dcSFilipe Manana /* 160912a824dcSFilipe Manana * The caller has joined a transaction or is holding a read lock on the 161012a824dcSFilipe Manana * fs_info->commit_root_sem semaphore, so no need to worry about the root's last 161112a824dcSFilipe Manana * snapshot field changing while updating or checking the cache. 161212a824dcSFilipe Manana */ 161312a824dcSFilipe Manana static void store_backref_shared_cache(struct btrfs_backref_shared_cache *cache, 161412a824dcSFilipe Manana struct btrfs_root *root, 161512a824dcSFilipe Manana u64 bytenr, int level, bool is_shared) 161612a824dcSFilipe Manana { 161712a824dcSFilipe Manana struct btrfs_backref_shared_cache_entry *entry; 161812a824dcSFilipe Manana u64 gen; 161912a824dcSFilipe Manana 162063c84b46SFilipe Manana if (!cache->use_cache) 162163c84b46SFilipe Manana return; 162263c84b46SFilipe Manana 162312a824dcSFilipe Manana if (WARN_ON_ONCE(level >= BTRFS_MAX_LEVEL)) 162412a824dcSFilipe Manana return; 162512a824dcSFilipe Manana 162612a824dcSFilipe Manana /* 162712a824dcSFilipe Manana * Level -1 is used for the data extent, which is not reliable to cache 162812a824dcSFilipe Manana * because its reference count can increase or decrease without us 162912a824dcSFilipe Manana * realizing. We cache results only for extent buffers that lead from 163012a824dcSFilipe Manana * the root node down to the leaf with the file extent item. 163112a824dcSFilipe Manana */ 163212a824dcSFilipe Manana ASSERT(level >= 0); 163312a824dcSFilipe Manana 163412a824dcSFilipe Manana if (is_shared) 163512a824dcSFilipe Manana gen = btrfs_get_last_root_drop_gen(root->fs_info); 163612a824dcSFilipe Manana else 163712a824dcSFilipe Manana gen = btrfs_root_last_snapshot(&root->root_item); 163812a824dcSFilipe Manana 163912a824dcSFilipe Manana entry = &cache->entries[level]; 164012a824dcSFilipe Manana entry->bytenr = bytenr; 164112a824dcSFilipe Manana entry->is_shared = is_shared; 164212a824dcSFilipe Manana entry->gen = gen; 164312a824dcSFilipe Manana 164412a824dcSFilipe Manana /* 164512a824dcSFilipe Manana * If we found an extent buffer is shared, set the cache result for all 164612a824dcSFilipe Manana * extent buffers below it to true. As nodes in the path are COWed, 164712a824dcSFilipe Manana * their sharedness is moved to their children, and if a leaf is COWed, 164812a824dcSFilipe Manana * then the sharedness of a data extent becomes direct, the refcount of 164912a824dcSFilipe Manana * data extent is increased in the extent item at the extent tree. 165012a824dcSFilipe Manana */ 165112a824dcSFilipe Manana if (is_shared) { 165212a824dcSFilipe Manana for (int i = 0; i < level; i++) { 165312a824dcSFilipe Manana entry = &cache->entries[i]; 165412a824dcSFilipe Manana entry->is_shared = is_shared; 165512a824dcSFilipe Manana entry->gen = gen; 165612a824dcSFilipe Manana } 165712a824dcSFilipe Manana } 165812a824dcSFilipe Manana } 165912a824dcSFilipe Manana 166012a824dcSFilipe Manana /* 16618eedaddaSFilipe Manana * Check if a data extent is shared or not. 16626e353e3bSNikolay Borisov * 1663b8f164e3SFilipe Manana * @root: The root the inode belongs to. 1664b8f164e3SFilipe Manana * @inum: Number of the inode whose extent we are checking. 1665b8f164e3SFilipe Manana * @bytenr: Logical bytenr of the extent we are checking. 1666b8f164e3SFilipe Manana * @extent_gen: Generation of the extent (file extent item) or 0 if it is 1667b8f164e3SFilipe Manana * not known. 1668b8f164e3SFilipe Manana * @roots: List of roots this extent is shared among. 1669b8f164e3SFilipe Manana * @tmp: Temporary list used for iteration. 1670b8f164e3SFilipe Manana * @cache: A backref lookup result cache. 16712c2ed5aaSMark Fasheh * 16728eedaddaSFilipe Manana * btrfs_is_data_extent_shared uses the backref walking code but will short 16732c2ed5aaSMark Fasheh * circuit as soon as it finds a root or inode that doesn't match the 16742c2ed5aaSMark Fasheh * one passed in. This provides a significant performance benefit for 16752c2ed5aaSMark Fasheh * callers (such as fiemap) which want to know whether the extent is 16762c2ed5aaSMark Fasheh * shared but do not need a ref count. 16772c2ed5aaSMark Fasheh * 167803628cdbSFilipe Manana * This attempts to attach to the running transaction in order to account for 167903628cdbSFilipe Manana * delayed refs, but continues on even when no running transaction exists. 1680bb739cf0SEdmund Nadolski * 16812c2ed5aaSMark Fasheh * Return: 0 if extent is not shared, 1 if it is shared, < 0 on error. 16822c2ed5aaSMark Fasheh */ 16838eedaddaSFilipe Manana int btrfs_is_data_extent_shared(struct btrfs_root *root, u64 inum, u64 bytenr, 1684b8f164e3SFilipe Manana u64 extent_gen, 168512a824dcSFilipe Manana struct ulist *roots, struct ulist *tmp, 168612a824dcSFilipe Manana struct btrfs_backref_shared_cache *cache) 1687dc046b10SJosef Bacik { 1688bb739cf0SEdmund Nadolski struct btrfs_fs_info *fs_info = root->fs_info; 1689bb739cf0SEdmund Nadolski struct btrfs_trans_handle *trans; 1690dc046b10SJosef Bacik struct ulist_iterator uiter; 1691dc046b10SJosef Bacik struct ulist_node *node; 1692f3a84ccdSFilipe Manana struct btrfs_seq_list elem = BTRFS_SEQ_LIST_INIT(elem); 1693dc046b10SJosef Bacik int ret = 0; 16943ec4d323SEdmund Nadolski struct share_check shared = { 16954fd786e6SMisono Tomohiro .root_objectid = root->root_key.objectid, 16963ec4d323SEdmund Nadolski .inum = inum, 16973ec4d323SEdmund Nadolski .share_count = 0, 16984fc7b572SFilipe Manana .have_delayed_delete_refs = false, 16993ec4d323SEdmund Nadolski }; 170012a824dcSFilipe Manana int level; 1701dc046b10SJosef Bacik 17025911c8feSDavid Sterba ulist_init(roots); 17035911c8feSDavid Sterba ulist_init(tmp); 1704dc046b10SJosef Bacik 1705a6d155d2SFilipe Manana trans = btrfs_join_transaction_nostart(root); 1706bb739cf0SEdmund Nadolski if (IS_ERR(trans)) { 170703628cdbSFilipe Manana if (PTR_ERR(trans) != -ENOENT && PTR_ERR(trans) != -EROFS) { 170803628cdbSFilipe Manana ret = PTR_ERR(trans); 170903628cdbSFilipe Manana goto out; 171003628cdbSFilipe Manana } 1711bb739cf0SEdmund Nadolski trans = NULL; 1712dc046b10SJosef Bacik down_read(&fs_info->commit_root_sem); 1713bb739cf0SEdmund Nadolski } else { 1714bb739cf0SEdmund Nadolski btrfs_get_tree_mod_seq(fs_info, &elem); 1715bb739cf0SEdmund Nadolski } 1716bb739cf0SEdmund Nadolski 171712a824dcSFilipe Manana /* -1 means we are in the bytenr of the data extent. */ 171812a824dcSFilipe Manana level = -1; 1719dc046b10SJosef Bacik ULIST_ITER_INIT(&uiter); 172063c84b46SFilipe Manana cache->use_cache = true; 1721dc046b10SJosef Bacik while (1) { 172212a824dcSFilipe Manana bool is_shared; 172312a824dcSFilipe Manana bool cached; 172412a824dcSFilipe Manana 1725dc046b10SJosef Bacik ret = find_parent_nodes(trans, fs_info, bytenr, elem.seq, tmp, 1726c995ab3cSZygo Blaxell roots, NULL, &shared, false); 1727dc046b10SJosef Bacik if (ret == BACKREF_FOUND_SHARED) { 17282c2ed5aaSMark Fasheh /* this is the only condition under which we return 1 */ 1729dc046b10SJosef Bacik ret = 1; 173012a824dcSFilipe Manana if (level >= 0) 173112a824dcSFilipe Manana store_backref_shared_cache(cache, root, bytenr, 173212a824dcSFilipe Manana level, true); 1733dc046b10SJosef Bacik break; 1734dc046b10SJosef Bacik } 1735dc046b10SJosef Bacik if (ret < 0 && ret != -ENOENT) 1736dc046b10SJosef Bacik break; 17372c2ed5aaSMark Fasheh ret = 0; 1738b8f164e3SFilipe Manana /* 1739b8f164e3SFilipe Manana * If our data extent is not shared through reflinks and it was 1740b8f164e3SFilipe Manana * created in a generation after the last one used to create a 1741b8f164e3SFilipe Manana * snapshot of the inode's root, then it can not be shared 1742b8f164e3SFilipe Manana * indirectly through subtrees, as that can only happen with 1743b8f164e3SFilipe Manana * snapshots. In this case bail out, no need to check for the 1744b8f164e3SFilipe Manana * sharedness of extent buffers. 1745b8f164e3SFilipe Manana */ 1746b8f164e3SFilipe Manana if (level == -1 && 1747b8f164e3SFilipe Manana extent_gen > btrfs_root_last_snapshot(&root->root_item)) 1748b8f164e3SFilipe Manana break; 1749b8f164e3SFilipe Manana 175063c84b46SFilipe Manana /* 175163c84b46SFilipe Manana * If our data extent was not directly shared (without multiple 175263c84b46SFilipe Manana * reference items), than it might have a single reference item 175363c84b46SFilipe Manana * with a count > 1 for the same offset, which means there are 2 175463c84b46SFilipe Manana * (or more) file extent items that point to the data extent - 175563c84b46SFilipe Manana * this happens when a file extent item needs to be split and 175663c84b46SFilipe Manana * then one item gets moved to another leaf due to a b+tree leaf 175763c84b46SFilipe Manana * split when inserting some item. In this case the file extent 175863c84b46SFilipe Manana * items may be located in different leaves and therefore some 175963c84b46SFilipe Manana * of the leaves may be referenced through shared subtrees while 176063c84b46SFilipe Manana * others are not. Since our extent buffer cache only works for 176163c84b46SFilipe Manana * a single path (by far the most common case and simpler to 176263c84b46SFilipe Manana * deal with), we can not use it if we have multiple leaves 176363c84b46SFilipe Manana * (which implies multiple paths). 176463c84b46SFilipe Manana */ 176563c84b46SFilipe Manana if (level == -1 && tmp->nnodes > 1) 176663c84b46SFilipe Manana cache->use_cache = false; 176763c84b46SFilipe Manana 176812a824dcSFilipe Manana if (level >= 0) 176912a824dcSFilipe Manana store_backref_shared_cache(cache, root, bytenr, 177012a824dcSFilipe Manana level, false); 1771dc046b10SJosef Bacik node = ulist_next(tmp, &uiter); 1772dc046b10SJosef Bacik if (!node) 1773dc046b10SJosef Bacik break; 1774dc046b10SJosef Bacik bytenr = node->val; 177512a824dcSFilipe Manana level++; 177612a824dcSFilipe Manana cached = lookup_backref_shared_cache(cache, root, bytenr, level, 177712a824dcSFilipe Manana &is_shared); 177812a824dcSFilipe Manana if (cached) { 177912a824dcSFilipe Manana ret = (is_shared ? 1 : 0); 178012a824dcSFilipe Manana break; 178112a824dcSFilipe Manana } 178218bf591bSEdmund Nadolski shared.share_count = 0; 17834fc7b572SFilipe Manana shared.have_delayed_delete_refs = false; 1784dc046b10SJosef Bacik cond_resched(); 1785dc046b10SJosef Bacik } 1786bb739cf0SEdmund Nadolski 1787bb739cf0SEdmund Nadolski if (trans) { 1788dc046b10SJosef Bacik btrfs_put_tree_mod_seq(fs_info, &elem); 1789bb739cf0SEdmund Nadolski btrfs_end_transaction(trans); 1790bb739cf0SEdmund Nadolski } else { 1791dc046b10SJosef Bacik up_read(&fs_info->commit_root_sem); 1792bb739cf0SEdmund Nadolski } 179303628cdbSFilipe Manana out: 17945911c8feSDavid Sterba ulist_release(roots); 17955911c8feSDavid Sterba ulist_release(tmp); 1796dc046b10SJosef Bacik return ret; 1797dc046b10SJosef Bacik } 1798dc046b10SJosef Bacik 1799f186373fSMark Fasheh int btrfs_find_one_extref(struct btrfs_root *root, u64 inode_objectid, 1800f186373fSMark Fasheh u64 start_off, struct btrfs_path *path, 1801f186373fSMark Fasheh struct btrfs_inode_extref **ret_extref, 1802f186373fSMark Fasheh u64 *found_off) 1803f186373fSMark Fasheh { 1804f186373fSMark Fasheh int ret, slot; 1805f186373fSMark Fasheh struct btrfs_key key; 1806f186373fSMark Fasheh struct btrfs_key found_key; 1807f186373fSMark Fasheh struct btrfs_inode_extref *extref; 180873980becSJeff Mahoney const struct extent_buffer *leaf; 1809f186373fSMark Fasheh unsigned long ptr; 1810f186373fSMark Fasheh 1811f186373fSMark Fasheh key.objectid = inode_objectid; 1812962a298fSDavid Sterba key.type = BTRFS_INODE_EXTREF_KEY; 1813f186373fSMark Fasheh key.offset = start_off; 1814f186373fSMark Fasheh 1815f186373fSMark Fasheh ret = btrfs_search_slot(NULL, root, &key, path, 0, 0); 1816f186373fSMark Fasheh if (ret < 0) 1817f186373fSMark Fasheh return ret; 1818f186373fSMark Fasheh 1819f186373fSMark Fasheh while (1) { 1820f186373fSMark Fasheh leaf = path->nodes[0]; 1821f186373fSMark Fasheh slot = path->slots[0]; 1822f186373fSMark Fasheh if (slot >= btrfs_header_nritems(leaf)) { 1823f186373fSMark Fasheh /* 1824f186373fSMark Fasheh * If the item at offset is not found, 1825f186373fSMark Fasheh * btrfs_search_slot will point us to the slot 1826f186373fSMark Fasheh * where it should be inserted. In our case 1827f186373fSMark Fasheh * that will be the slot directly before the 1828f186373fSMark Fasheh * next INODE_REF_KEY_V2 item. In the case 1829f186373fSMark Fasheh * that we're pointing to the last slot in a 1830f186373fSMark Fasheh * leaf, we must move one leaf over. 1831f186373fSMark Fasheh */ 1832f186373fSMark Fasheh ret = btrfs_next_leaf(root, path); 1833f186373fSMark Fasheh if (ret) { 1834f186373fSMark Fasheh if (ret >= 1) 1835f186373fSMark Fasheh ret = -ENOENT; 1836f186373fSMark Fasheh break; 1837f186373fSMark Fasheh } 1838f186373fSMark Fasheh continue; 1839f186373fSMark Fasheh } 1840f186373fSMark Fasheh 1841f186373fSMark Fasheh btrfs_item_key_to_cpu(leaf, &found_key, slot); 1842f186373fSMark Fasheh 1843f186373fSMark Fasheh /* 1844f186373fSMark Fasheh * Check that we're still looking at an extended ref key for 1845f186373fSMark Fasheh * this particular objectid. If we have different 1846f186373fSMark Fasheh * objectid or type then there are no more to be found 1847f186373fSMark Fasheh * in the tree and we can exit. 1848f186373fSMark Fasheh */ 1849f186373fSMark Fasheh ret = -ENOENT; 1850f186373fSMark Fasheh if (found_key.objectid != inode_objectid) 1851f186373fSMark Fasheh break; 1852962a298fSDavid Sterba if (found_key.type != BTRFS_INODE_EXTREF_KEY) 1853f186373fSMark Fasheh break; 1854f186373fSMark Fasheh 1855f186373fSMark Fasheh ret = 0; 1856f186373fSMark Fasheh ptr = btrfs_item_ptr_offset(leaf, path->slots[0]); 1857f186373fSMark Fasheh extref = (struct btrfs_inode_extref *)ptr; 1858f186373fSMark Fasheh *ret_extref = extref; 1859f186373fSMark Fasheh if (found_off) 1860f186373fSMark Fasheh *found_off = found_key.offset; 1861f186373fSMark Fasheh break; 1862f186373fSMark Fasheh } 1863f186373fSMark Fasheh 1864f186373fSMark Fasheh return ret; 1865f186373fSMark Fasheh } 1866f186373fSMark Fasheh 186748a3b636SEric Sandeen /* 186848a3b636SEric Sandeen * this iterates to turn a name (from iref/extref) into a full filesystem path. 186948a3b636SEric Sandeen * Elements of the path are separated by '/' and the path is guaranteed to be 187048a3b636SEric Sandeen * 0-terminated. the path is only given within the current file system. 187148a3b636SEric Sandeen * Therefore, it never starts with a '/'. the caller is responsible to provide 187248a3b636SEric Sandeen * "size" bytes in "dest". the dest buffer will be filled backwards. finally, 187348a3b636SEric Sandeen * the start point of the resulting string is returned. this pointer is within 187448a3b636SEric Sandeen * dest, normally. 187548a3b636SEric Sandeen * in case the path buffer would overflow, the pointer is decremented further 187648a3b636SEric Sandeen * as if output was written to the buffer, though no more output is actually 187748a3b636SEric Sandeen * generated. that way, the caller can determine how much space would be 187848a3b636SEric Sandeen * required for the path to fit into the buffer. in that case, the returned 187948a3b636SEric Sandeen * value will be smaller than dest. callers must check this! 188048a3b636SEric Sandeen */ 188196b5bd77SJan Schmidt char *btrfs_ref_to_path(struct btrfs_root *fs_root, struct btrfs_path *path, 1882d24bec3aSMark Fasheh u32 name_len, unsigned long name_off, 1883a542ad1bSJan Schmidt struct extent_buffer *eb_in, u64 parent, 1884a542ad1bSJan Schmidt char *dest, u32 size) 1885a542ad1bSJan Schmidt { 1886a542ad1bSJan Schmidt int slot; 1887a542ad1bSJan Schmidt u64 next_inum; 1888a542ad1bSJan Schmidt int ret; 1889661bec6bSGabriel de Perthuis s64 bytes_left = ((s64)size) - 1; 1890a542ad1bSJan Schmidt struct extent_buffer *eb = eb_in; 1891a542ad1bSJan Schmidt struct btrfs_key found_key; 1892d24bec3aSMark Fasheh struct btrfs_inode_ref *iref; 1893a542ad1bSJan Schmidt 1894a542ad1bSJan Schmidt if (bytes_left >= 0) 1895a542ad1bSJan Schmidt dest[bytes_left] = '\0'; 1896a542ad1bSJan Schmidt 1897a542ad1bSJan Schmidt while (1) { 1898d24bec3aSMark Fasheh bytes_left -= name_len; 1899a542ad1bSJan Schmidt if (bytes_left >= 0) 1900a542ad1bSJan Schmidt read_extent_buffer(eb, dest + bytes_left, 1901d24bec3aSMark Fasheh name_off, name_len); 1902b916a59aSJan Schmidt if (eb != eb_in) { 19030c0fe3b0SFilipe Manana if (!path->skip_locking) 1904ac5887c8SJosef Bacik btrfs_tree_read_unlock(eb); 1905a542ad1bSJan Schmidt free_extent_buffer(eb); 1906b916a59aSJan Schmidt } 1907c234a24dSDavid Sterba ret = btrfs_find_item(fs_root, path, parent, 0, 1908c234a24dSDavid Sterba BTRFS_INODE_REF_KEY, &found_key); 19098f24b496SJan Schmidt if (ret > 0) 19108f24b496SJan Schmidt ret = -ENOENT; 1911a542ad1bSJan Schmidt if (ret) 1912a542ad1bSJan Schmidt break; 1913d24bec3aSMark Fasheh 1914a542ad1bSJan Schmidt next_inum = found_key.offset; 1915a542ad1bSJan Schmidt 1916a542ad1bSJan Schmidt /* regular exit ahead */ 1917a542ad1bSJan Schmidt if (parent == next_inum) 1918a542ad1bSJan Schmidt break; 1919a542ad1bSJan Schmidt 1920a542ad1bSJan Schmidt slot = path->slots[0]; 1921a542ad1bSJan Schmidt eb = path->nodes[0]; 1922a542ad1bSJan Schmidt /* make sure we can use eb after releasing the path */ 1923b916a59aSJan Schmidt if (eb != eb_in) { 19240c0fe3b0SFilipe Manana path->nodes[0] = NULL; 19250c0fe3b0SFilipe Manana path->locks[0] = 0; 1926b916a59aSJan Schmidt } 1927a542ad1bSJan Schmidt btrfs_release_path(path); 1928a542ad1bSJan Schmidt iref = btrfs_item_ptr(eb, slot, struct btrfs_inode_ref); 1929d24bec3aSMark Fasheh 1930d24bec3aSMark Fasheh name_len = btrfs_inode_ref_name_len(eb, iref); 1931d24bec3aSMark Fasheh name_off = (unsigned long)(iref + 1); 1932d24bec3aSMark Fasheh 1933a542ad1bSJan Schmidt parent = next_inum; 1934a542ad1bSJan Schmidt --bytes_left; 1935a542ad1bSJan Schmidt if (bytes_left >= 0) 1936a542ad1bSJan Schmidt dest[bytes_left] = '/'; 1937a542ad1bSJan Schmidt } 1938a542ad1bSJan Schmidt 1939a542ad1bSJan Schmidt btrfs_release_path(path); 1940a542ad1bSJan Schmidt 1941a542ad1bSJan Schmidt if (ret) 1942a542ad1bSJan Schmidt return ERR_PTR(ret); 1943a542ad1bSJan Schmidt 1944a542ad1bSJan Schmidt return dest + bytes_left; 1945a542ad1bSJan Schmidt } 1946a542ad1bSJan Schmidt 1947a542ad1bSJan Schmidt /* 1948a542ad1bSJan Schmidt * this makes the path point to (logical EXTENT_ITEM *) 1949a542ad1bSJan Schmidt * returns BTRFS_EXTENT_FLAG_DATA for data, BTRFS_EXTENT_FLAG_TREE_BLOCK for 1950a542ad1bSJan Schmidt * tree blocks and <0 on error. 1951a542ad1bSJan Schmidt */ 1952a542ad1bSJan Schmidt int extent_from_logical(struct btrfs_fs_info *fs_info, u64 logical, 195369917e43SLiu Bo struct btrfs_path *path, struct btrfs_key *found_key, 195469917e43SLiu Bo u64 *flags_ret) 1955a542ad1bSJan Schmidt { 195629cbcf40SJosef Bacik struct btrfs_root *extent_root = btrfs_extent_root(fs_info, logical); 1957a542ad1bSJan Schmidt int ret; 1958a542ad1bSJan Schmidt u64 flags; 1959261c84b6SJosef Bacik u64 size = 0; 1960a542ad1bSJan Schmidt u32 item_size; 196173980becSJeff Mahoney const struct extent_buffer *eb; 1962a542ad1bSJan Schmidt struct btrfs_extent_item *ei; 1963a542ad1bSJan Schmidt struct btrfs_key key; 1964a542ad1bSJan Schmidt 1965261c84b6SJosef Bacik if (btrfs_fs_incompat(fs_info, SKINNY_METADATA)) 1966261c84b6SJosef Bacik key.type = BTRFS_METADATA_ITEM_KEY; 1967261c84b6SJosef Bacik else 1968a542ad1bSJan Schmidt key.type = BTRFS_EXTENT_ITEM_KEY; 1969a542ad1bSJan Schmidt key.objectid = logical; 1970a542ad1bSJan Schmidt key.offset = (u64)-1; 1971a542ad1bSJan Schmidt 197229cbcf40SJosef Bacik ret = btrfs_search_slot(NULL, extent_root, &key, path, 0, 0); 1973a542ad1bSJan Schmidt if (ret < 0) 1974a542ad1bSJan Schmidt return ret; 1975a542ad1bSJan Schmidt 197629cbcf40SJosef Bacik ret = btrfs_previous_extent_item(extent_root, path, 0); 1977850a8cdfSWang Shilong if (ret) { 1978850a8cdfSWang Shilong if (ret > 0) 1979580f0a67SJosef Bacik ret = -ENOENT; 1980580f0a67SJosef Bacik return ret; 1981580f0a67SJosef Bacik } 1982850a8cdfSWang Shilong btrfs_item_key_to_cpu(path->nodes[0], found_key, path->slots[0]); 1983261c84b6SJosef Bacik if (found_key->type == BTRFS_METADATA_ITEM_KEY) 1984da17066cSJeff Mahoney size = fs_info->nodesize; 1985261c84b6SJosef Bacik else if (found_key->type == BTRFS_EXTENT_ITEM_KEY) 1986261c84b6SJosef Bacik size = found_key->offset; 1987261c84b6SJosef Bacik 1988580f0a67SJosef Bacik if (found_key->objectid > logical || 1989261c84b6SJosef Bacik found_key->objectid + size <= logical) { 1990ab8d0fc4SJeff Mahoney btrfs_debug(fs_info, 1991ab8d0fc4SJeff Mahoney "logical %llu is not within any extent", logical); 1992a542ad1bSJan Schmidt return -ENOENT; 19934692cf58SJan Schmidt } 1994a542ad1bSJan Schmidt 1995a542ad1bSJan Schmidt eb = path->nodes[0]; 19963212fa14SJosef Bacik item_size = btrfs_item_size(eb, path->slots[0]); 1997a542ad1bSJan Schmidt BUG_ON(item_size < sizeof(*ei)); 1998a542ad1bSJan Schmidt 1999a542ad1bSJan Schmidt ei = btrfs_item_ptr(eb, path->slots[0], struct btrfs_extent_item); 2000a542ad1bSJan Schmidt flags = btrfs_extent_flags(eb, ei); 2001a542ad1bSJan Schmidt 2002ab8d0fc4SJeff Mahoney btrfs_debug(fs_info, 2003ab8d0fc4SJeff Mahoney "logical %llu is at position %llu within the extent (%llu EXTENT_ITEM %llu) flags %#llx size %u", 2004c1c9ff7cSGeert Uytterhoeven logical, logical - found_key->objectid, found_key->objectid, 2005c1c9ff7cSGeert Uytterhoeven found_key->offset, flags, item_size); 200669917e43SLiu Bo 200769917e43SLiu Bo WARN_ON(!flags_ret); 200869917e43SLiu Bo if (flags_ret) { 2009a542ad1bSJan Schmidt if (flags & BTRFS_EXTENT_FLAG_TREE_BLOCK) 201069917e43SLiu Bo *flags_ret = BTRFS_EXTENT_FLAG_TREE_BLOCK; 201169917e43SLiu Bo else if (flags & BTRFS_EXTENT_FLAG_DATA) 201269917e43SLiu Bo *flags_ret = BTRFS_EXTENT_FLAG_DATA; 201369917e43SLiu Bo else 2014290342f6SArnd Bergmann BUG(); 201569917e43SLiu Bo return 0; 201669917e43SLiu Bo } 2017a542ad1bSJan Schmidt 2018a542ad1bSJan Schmidt return -EIO; 2019a542ad1bSJan Schmidt } 2020a542ad1bSJan Schmidt 2021a542ad1bSJan Schmidt /* 2022a542ad1bSJan Schmidt * helper function to iterate extent inline refs. ptr must point to a 0 value 2023a542ad1bSJan Schmidt * for the first call and may be modified. it is used to track state. 2024a542ad1bSJan Schmidt * if more refs exist, 0 is returned and the next call to 2025e0c476b1SJeff Mahoney * get_extent_inline_ref must pass the modified ptr parameter to get the 2026a542ad1bSJan Schmidt * next ref. after the last ref was processed, 1 is returned. 2027a542ad1bSJan Schmidt * returns <0 on error 2028a542ad1bSJan Schmidt */ 2029e0c476b1SJeff Mahoney static int get_extent_inline_ref(unsigned long *ptr, 203073980becSJeff Mahoney const struct extent_buffer *eb, 203173980becSJeff Mahoney const struct btrfs_key *key, 203273980becSJeff Mahoney const struct btrfs_extent_item *ei, 203373980becSJeff Mahoney u32 item_size, 2034a542ad1bSJan Schmidt struct btrfs_extent_inline_ref **out_eiref, 2035a542ad1bSJan Schmidt int *out_type) 2036a542ad1bSJan Schmidt { 2037a542ad1bSJan Schmidt unsigned long end; 2038a542ad1bSJan Schmidt u64 flags; 2039a542ad1bSJan Schmidt struct btrfs_tree_block_info *info; 2040a542ad1bSJan Schmidt 2041a542ad1bSJan Schmidt if (!*ptr) { 2042a542ad1bSJan Schmidt /* first call */ 2043a542ad1bSJan Schmidt flags = btrfs_extent_flags(eb, ei); 2044a542ad1bSJan Schmidt if (flags & BTRFS_EXTENT_FLAG_TREE_BLOCK) { 20456eda71d0SLiu Bo if (key->type == BTRFS_METADATA_ITEM_KEY) { 20466eda71d0SLiu Bo /* a skinny metadata extent */ 20476eda71d0SLiu Bo *out_eiref = 20486eda71d0SLiu Bo (struct btrfs_extent_inline_ref *)(ei + 1); 20496eda71d0SLiu Bo } else { 20506eda71d0SLiu Bo WARN_ON(key->type != BTRFS_EXTENT_ITEM_KEY); 2051a542ad1bSJan Schmidt info = (struct btrfs_tree_block_info *)(ei + 1); 2052a542ad1bSJan Schmidt *out_eiref = 2053a542ad1bSJan Schmidt (struct btrfs_extent_inline_ref *)(info + 1); 20546eda71d0SLiu Bo } 2055a542ad1bSJan Schmidt } else { 2056a542ad1bSJan Schmidt *out_eiref = (struct btrfs_extent_inline_ref *)(ei + 1); 2057a542ad1bSJan Schmidt } 2058a542ad1bSJan Schmidt *ptr = (unsigned long)*out_eiref; 2059cd857dd6SLiu Bo if ((unsigned long)(*ptr) >= (unsigned long)ei + item_size) 2060a542ad1bSJan Schmidt return -ENOENT; 2061a542ad1bSJan Schmidt } 2062a542ad1bSJan Schmidt 2063a542ad1bSJan Schmidt end = (unsigned long)ei + item_size; 20646eda71d0SLiu Bo *out_eiref = (struct btrfs_extent_inline_ref *)(*ptr); 20653de28d57SLiu Bo *out_type = btrfs_get_extent_inline_ref_type(eb, *out_eiref, 20663de28d57SLiu Bo BTRFS_REF_TYPE_ANY); 20673de28d57SLiu Bo if (*out_type == BTRFS_REF_TYPE_INVALID) 2068af431dcbSSu Yue return -EUCLEAN; 2069a542ad1bSJan Schmidt 2070a542ad1bSJan Schmidt *ptr += btrfs_extent_inline_ref_size(*out_type); 2071a542ad1bSJan Schmidt WARN_ON(*ptr > end); 2072a542ad1bSJan Schmidt if (*ptr == end) 2073a542ad1bSJan Schmidt return 1; /* last */ 2074a542ad1bSJan Schmidt 2075a542ad1bSJan Schmidt return 0; 2076a542ad1bSJan Schmidt } 2077a542ad1bSJan Schmidt 2078a542ad1bSJan Schmidt /* 2079a542ad1bSJan Schmidt * reads the tree block backref for an extent. tree level and root are returned 2080a542ad1bSJan Schmidt * through out_level and out_root. ptr must point to a 0 value for the first 2081e0c476b1SJeff Mahoney * call and may be modified (see get_extent_inline_ref comment). 2082a542ad1bSJan Schmidt * returns 0 if data was provided, 1 if there was no more data to provide or 2083a542ad1bSJan Schmidt * <0 on error. 2084a542ad1bSJan Schmidt */ 2085a542ad1bSJan Schmidt int tree_backref_for_extent(unsigned long *ptr, struct extent_buffer *eb, 20866eda71d0SLiu Bo struct btrfs_key *key, struct btrfs_extent_item *ei, 20876eda71d0SLiu Bo u32 item_size, u64 *out_root, u8 *out_level) 2088a542ad1bSJan Schmidt { 2089a542ad1bSJan Schmidt int ret; 2090a542ad1bSJan Schmidt int type; 2091a542ad1bSJan Schmidt struct btrfs_extent_inline_ref *eiref; 2092a542ad1bSJan Schmidt 2093a542ad1bSJan Schmidt if (*ptr == (unsigned long)-1) 2094a542ad1bSJan Schmidt return 1; 2095a542ad1bSJan Schmidt 2096a542ad1bSJan Schmidt while (1) { 2097e0c476b1SJeff Mahoney ret = get_extent_inline_ref(ptr, eb, key, ei, item_size, 2098a542ad1bSJan Schmidt &eiref, &type); 2099a542ad1bSJan Schmidt if (ret < 0) 2100a542ad1bSJan Schmidt return ret; 2101a542ad1bSJan Schmidt 2102a542ad1bSJan Schmidt if (type == BTRFS_TREE_BLOCK_REF_KEY || 2103a542ad1bSJan Schmidt type == BTRFS_SHARED_BLOCK_REF_KEY) 2104a542ad1bSJan Schmidt break; 2105a542ad1bSJan Schmidt 2106a542ad1bSJan Schmidt if (ret == 1) 2107a542ad1bSJan Schmidt return 1; 2108a542ad1bSJan Schmidt } 2109a542ad1bSJan Schmidt 2110a542ad1bSJan Schmidt /* we can treat both ref types equally here */ 2111a542ad1bSJan Schmidt *out_root = btrfs_extent_inline_ref_offset(eb, eiref); 2112a1317f45SFilipe Manana 2113a1317f45SFilipe Manana if (key->type == BTRFS_EXTENT_ITEM_KEY) { 2114a1317f45SFilipe Manana struct btrfs_tree_block_info *info; 2115a1317f45SFilipe Manana 2116a1317f45SFilipe Manana info = (struct btrfs_tree_block_info *)(ei + 1); 2117a542ad1bSJan Schmidt *out_level = btrfs_tree_block_level(eb, info); 2118a1317f45SFilipe Manana } else { 2119a1317f45SFilipe Manana ASSERT(key->type == BTRFS_METADATA_ITEM_KEY); 2120a1317f45SFilipe Manana *out_level = (u8)key->offset; 2121a1317f45SFilipe Manana } 2122a542ad1bSJan Schmidt 2123a542ad1bSJan Schmidt if (ret == 1) 2124a542ad1bSJan Schmidt *ptr = (unsigned long)-1; 2125a542ad1bSJan Schmidt 2126a542ad1bSJan Schmidt return 0; 2127a542ad1bSJan Schmidt } 2128a542ad1bSJan Schmidt 2129ab8d0fc4SJeff Mahoney static int iterate_leaf_refs(struct btrfs_fs_info *fs_info, 2130ab8d0fc4SJeff Mahoney struct extent_inode_elem *inode_list, 2131976b1908SJan Schmidt u64 root, u64 extent_item_objectid, 21324692cf58SJan Schmidt iterate_extent_inodes_t *iterate, void *ctx) 2133a542ad1bSJan Schmidt { 2134976b1908SJan Schmidt struct extent_inode_elem *eie; 21354692cf58SJan Schmidt int ret = 0; 2136a542ad1bSJan Schmidt 2137976b1908SJan Schmidt for (eie = inode_list; eie; eie = eie->next) { 2138ab8d0fc4SJeff Mahoney btrfs_debug(fs_info, 2139ab8d0fc4SJeff Mahoney "ref for %llu resolved, key (%llu EXTEND_DATA %llu), root %llu", 2140ab8d0fc4SJeff Mahoney extent_item_objectid, eie->inum, 2141ab8d0fc4SJeff Mahoney eie->offset, root); 2142976b1908SJan Schmidt ret = iterate(eie->inum, eie->offset, root, ctx); 21434692cf58SJan Schmidt if (ret) { 2144ab8d0fc4SJeff Mahoney btrfs_debug(fs_info, 2145ab8d0fc4SJeff Mahoney "stopping iteration for %llu due to ret=%d", 2146976b1908SJan Schmidt extent_item_objectid, ret); 2147a542ad1bSJan Schmidt break; 2148a542ad1bSJan Schmidt } 2149a542ad1bSJan Schmidt } 2150a542ad1bSJan Schmidt 2151a542ad1bSJan Schmidt return ret; 2152a542ad1bSJan Schmidt } 2153a542ad1bSJan Schmidt 2154a542ad1bSJan Schmidt /* 2155a542ad1bSJan Schmidt * calls iterate() for every inode that references the extent identified by 21564692cf58SJan Schmidt * the given parameters. 2157a542ad1bSJan Schmidt * when the iterator function returns a non-zero value, iteration stops. 2158a542ad1bSJan Schmidt */ 2159a542ad1bSJan Schmidt int iterate_extent_inodes(struct btrfs_fs_info *fs_info, 21604692cf58SJan Schmidt u64 extent_item_objectid, u64 extent_item_pos, 21617a3ae2f8SJan Schmidt int search_commit_root, 2162c995ab3cSZygo Blaxell iterate_extent_inodes_t *iterate, void *ctx, 2163c995ab3cSZygo Blaxell bool ignore_offset) 2164a542ad1bSJan Schmidt { 2165a542ad1bSJan Schmidt int ret; 2166da61d31aSJosef Bacik struct btrfs_trans_handle *trans = NULL; 21677a3ae2f8SJan Schmidt struct ulist *refs = NULL; 21687a3ae2f8SJan Schmidt struct ulist *roots = NULL; 21694692cf58SJan Schmidt struct ulist_node *ref_node = NULL; 21704692cf58SJan Schmidt struct ulist_node *root_node = NULL; 2171f3a84ccdSFilipe Manana struct btrfs_seq_list seq_elem = BTRFS_SEQ_LIST_INIT(seq_elem); 2172cd1b413cSJan Schmidt struct ulist_iterator ref_uiter; 2173cd1b413cSJan Schmidt struct ulist_iterator root_uiter; 2174a542ad1bSJan Schmidt 2175ab8d0fc4SJeff Mahoney btrfs_debug(fs_info, "resolving all inodes for extent %llu", 21764692cf58SJan Schmidt extent_item_objectid); 21774692cf58SJan Schmidt 2178da61d31aSJosef Bacik if (!search_commit_root) { 217930a9da5dSJosef Bacik trans = btrfs_attach_transaction(fs_info->tree_root); 2180bfc61c36SFilipe Manana if (IS_ERR(trans)) { 2181bfc61c36SFilipe Manana if (PTR_ERR(trans) != -ENOENT && 2182bfc61c36SFilipe Manana PTR_ERR(trans) != -EROFS) 21837a3ae2f8SJan Schmidt return PTR_ERR(trans); 2184bfc61c36SFilipe Manana trans = NULL; 21857a3ae2f8SJan Schmidt } 2186bfc61c36SFilipe Manana } 2187bfc61c36SFilipe Manana 2188bfc61c36SFilipe Manana if (trans) 2189f3a84ccdSFilipe Manana btrfs_get_tree_mod_seq(fs_info, &seq_elem); 2190bfc61c36SFilipe Manana else 2191bfc61c36SFilipe Manana down_read(&fs_info->commit_root_sem); 21924692cf58SJan Schmidt 21934692cf58SJan Schmidt ret = btrfs_find_all_leafs(trans, fs_info, extent_item_objectid, 2194f3a84ccdSFilipe Manana seq_elem.seq, &refs, 2195c995ab3cSZygo Blaxell &extent_item_pos, ignore_offset); 21964692cf58SJan Schmidt if (ret) 21974692cf58SJan Schmidt goto out; 21984692cf58SJan Schmidt 2199cd1b413cSJan Schmidt ULIST_ITER_INIT(&ref_uiter); 2200cd1b413cSJan Schmidt while (!ret && (ref_node = ulist_next(refs, &ref_uiter))) { 2201e0c476b1SJeff Mahoney ret = btrfs_find_all_roots_safe(trans, fs_info, ref_node->val, 2202f3a84ccdSFilipe Manana seq_elem.seq, &roots, 2203c995ab3cSZygo Blaxell ignore_offset); 22044692cf58SJan Schmidt if (ret) 2205a542ad1bSJan Schmidt break; 2206cd1b413cSJan Schmidt ULIST_ITER_INIT(&root_uiter); 2207cd1b413cSJan Schmidt while (!ret && (root_node = ulist_next(roots, &root_uiter))) { 2208ab8d0fc4SJeff Mahoney btrfs_debug(fs_info, 2209ab8d0fc4SJeff Mahoney "root %llu references leaf %llu, data list %#llx", 2210ab8d0fc4SJeff Mahoney root_node->val, ref_node->val, 2211c1c9ff7cSGeert Uytterhoeven ref_node->aux); 2212ab8d0fc4SJeff Mahoney ret = iterate_leaf_refs(fs_info, 2213ab8d0fc4SJeff Mahoney (struct extent_inode_elem *) 2214995e01b7SJan Schmidt (uintptr_t)ref_node->aux, 2215995e01b7SJan Schmidt root_node->val, 2216995e01b7SJan Schmidt extent_item_objectid, 2217a542ad1bSJan Schmidt iterate, ctx); 22184692cf58SJan Schmidt } 2219976b1908SJan Schmidt ulist_free(roots); 2220a542ad1bSJan Schmidt } 2221a542ad1bSJan Schmidt 2222976b1908SJan Schmidt free_leaf_list(refs); 22234692cf58SJan Schmidt out: 2224bfc61c36SFilipe Manana if (trans) { 2225f3a84ccdSFilipe Manana btrfs_put_tree_mod_seq(fs_info, &seq_elem); 22263a45bb20SJeff Mahoney btrfs_end_transaction(trans); 22279e351cc8SJosef Bacik } else { 22289e351cc8SJosef Bacik up_read(&fs_info->commit_root_sem); 22297a3ae2f8SJan Schmidt } 22307a3ae2f8SJan Schmidt 2231a542ad1bSJan Schmidt return ret; 2232a542ad1bSJan Schmidt } 2233a542ad1bSJan Schmidt 2234e3059ec0SDavid Sterba static int build_ino_list(u64 inum, u64 offset, u64 root, void *ctx) 2235e3059ec0SDavid Sterba { 2236e3059ec0SDavid Sterba struct btrfs_data_container *inodes = ctx; 2237e3059ec0SDavid Sterba const size_t c = 3 * sizeof(u64); 2238e3059ec0SDavid Sterba 2239e3059ec0SDavid Sterba if (inodes->bytes_left >= c) { 2240e3059ec0SDavid Sterba inodes->bytes_left -= c; 2241e3059ec0SDavid Sterba inodes->val[inodes->elem_cnt] = inum; 2242e3059ec0SDavid Sterba inodes->val[inodes->elem_cnt + 1] = offset; 2243e3059ec0SDavid Sterba inodes->val[inodes->elem_cnt + 2] = root; 2244e3059ec0SDavid Sterba inodes->elem_cnt += 3; 2245e3059ec0SDavid Sterba } else { 2246e3059ec0SDavid Sterba inodes->bytes_missing += c - inodes->bytes_left; 2247e3059ec0SDavid Sterba inodes->bytes_left = 0; 2248e3059ec0SDavid Sterba inodes->elem_missed += 3; 2249e3059ec0SDavid Sterba } 2250e3059ec0SDavid Sterba 2251e3059ec0SDavid Sterba return 0; 2252e3059ec0SDavid Sterba } 2253e3059ec0SDavid Sterba 2254a542ad1bSJan Schmidt int iterate_inodes_from_logical(u64 logical, struct btrfs_fs_info *fs_info, 2255a542ad1bSJan Schmidt struct btrfs_path *path, 2256e3059ec0SDavid Sterba void *ctx, bool ignore_offset) 2257a542ad1bSJan Schmidt { 2258a542ad1bSJan Schmidt int ret; 22594692cf58SJan Schmidt u64 extent_item_pos; 226069917e43SLiu Bo u64 flags = 0; 2261a542ad1bSJan Schmidt struct btrfs_key found_key; 22627a3ae2f8SJan Schmidt int search_commit_root = path->search_commit_root; 2263a542ad1bSJan Schmidt 226469917e43SLiu Bo ret = extent_from_logical(fs_info, logical, path, &found_key, &flags); 22654692cf58SJan Schmidt btrfs_release_path(path); 2266a542ad1bSJan Schmidt if (ret < 0) 2267a542ad1bSJan Schmidt return ret; 226869917e43SLiu Bo if (flags & BTRFS_EXTENT_FLAG_TREE_BLOCK) 22693627bf45SStefan Behrens return -EINVAL; 2270a542ad1bSJan Schmidt 22714692cf58SJan Schmidt extent_item_pos = logical - found_key.objectid; 22727a3ae2f8SJan Schmidt ret = iterate_extent_inodes(fs_info, found_key.objectid, 22737a3ae2f8SJan Schmidt extent_item_pos, search_commit_root, 2274e3059ec0SDavid Sterba build_ino_list, ctx, ignore_offset); 2275a542ad1bSJan Schmidt 2276a542ad1bSJan Schmidt return ret; 2277a542ad1bSJan Schmidt } 2278a542ad1bSJan Schmidt 2279ad6240f6SDavid Sterba static int inode_to_path(u64 inum, u32 name_len, unsigned long name_off, 2280875d1daaSDavid Sterba struct extent_buffer *eb, struct inode_fs_paths *ipath); 2281d24bec3aSMark Fasheh 2282875d1daaSDavid Sterba static int iterate_inode_refs(u64 inum, struct inode_fs_paths *ipath) 2283a542ad1bSJan Schmidt { 2284aefc1eb1SJan Schmidt int ret = 0; 2285a542ad1bSJan Schmidt int slot; 2286a542ad1bSJan Schmidt u32 cur; 2287a542ad1bSJan Schmidt u32 len; 2288a542ad1bSJan Schmidt u32 name_len; 2289a542ad1bSJan Schmidt u64 parent = 0; 2290a542ad1bSJan Schmidt int found = 0; 2291875d1daaSDavid Sterba struct btrfs_root *fs_root = ipath->fs_root; 2292875d1daaSDavid Sterba struct btrfs_path *path = ipath->btrfs_path; 2293a542ad1bSJan Schmidt struct extent_buffer *eb; 2294a542ad1bSJan Schmidt struct btrfs_inode_ref *iref; 2295a542ad1bSJan Schmidt struct btrfs_key found_key; 2296a542ad1bSJan Schmidt 2297aefc1eb1SJan Schmidt while (!ret) { 2298c234a24dSDavid Sterba ret = btrfs_find_item(fs_root, path, inum, 2299c234a24dSDavid Sterba parent ? parent + 1 : 0, BTRFS_INODE_REF_KEY, 2300a542ad1bSJan Schmidt &found_key); 2301c234a24dSDavid Sterba 2302a542ad1bSJan Schmidt if (ret < 0) 2303a542ad1bSJan Schmidt break; 2304a542ad1bSJan Schmidt if (ret) { 2305a542ad1bSJan Schmidt ret = found ? 0 : -ENOENT; 2306a542ad1bSJan Schmidt break; 2307a542ad1bSJan Schmidt } 2308a542ad1bSJan Schmidt ++found; 2309a542ad1bSJan Schmidt 2310a542ad1bSJan Schmidt parent = found_key.offset; 2311a542ad1bSJan Schmidt slot = path->slots[0]; 23123fe81ce2SFilipe David Borba Manana eb = btrfs_clone_extent_buffer(path->nodes[0]); 23133fe81ce2SFilipe David Borba Manana if (!eb) { 23143fe81ce2SFilipe David Borba Manana ret = -ENOMEM; 23153fe81ce2SFilipe David Borba Manana break; 23163fe81ce2SFilipe David Borba Manana } 2317a542ad1bSJan Schmidt btrfs_release_path(path); 2318a542ad1bSJan Schmidt 2319a542ad1bSJan Schmidt iref = btrfs_item_ptr(eb, slot, struct btrfs_inode_ref); 2320a542ad1bSJan Schmidt 23213212fa14SJosef Bacik for (cur = 0; cur < btrfs_item_size(eb, slot); cur += len) { 2322a542ad1bSJan Schmidt name_len = btrfs_inode_ref_name_len(eb, iref); 2323a542ad1bSJan Schmidt /* path must be released before calling iterate()! */ 2324ab8d0fc4SJeff Mahoney btrfs_debug(fs_root->fs_info, 2325ab8d0fc4SJeff Mahoney "following ref at offset %u for inode %llu in tree %llu", 23264fd786e6SMisono Tomohiro cur, found_key.objectid, 23274fd786e6SMisono Tomohiro fs_root->root_key.objectid); 2328ad6240f6SDavid Sterba ret = inode_to_path(parent, name_len, 2329875d1daaSDavid Sterba (unsigned long)(iref + 1), eb, ipath); 2330aefc1eb1SJan Schmidt if (ret) 2331a542ad1bSJan Schmidt break; 2332a542ad1bSJan Schmidt len = sizeof(*iref) + name_len; 2333a542ad1bSJan Schmidt iref = (struct btrfs_inode_ref *)((char *)iref + len); 2334a542ad1bSJan Schmidt } 2335a542ad1bSJan Schmidt free_extent_buffer(eb); 2336a542ad1bSJan Schmidt } 2337a542ad1bSJan Schmidt 2338a542ad1bSJan Schmidt btrfs_release_path(path); 2339a542ad1bSJan Schmidt 2340a542ad1bSJan Schmidt return ret; 2341a542ad1bSJan Schmidt } 2342a542ad1bSJan Schmidt 2343875d1daaSDavid Sterba static int iterate_inode_extrefs(u64 inum, struct inode_fs_paths *ipath) 2344d24bec3aSMark Fasheh { 2345d24bec3aSMark Fasheh int ret; 2346d24bec3aSMark Fasheh int slot; 2347d24bec3aSMark Fasheh u64 offset = 0; 2348d24bec3aSMark Fasheh u64 parent; 2349d24bec3aSMark Fasheh int found = 0; 2350875d1daaSDavid Sterba struct btrfs_root *fs_root = ipath->fs_root; 2351875d1daaSDavid Sterba struct btrfs_path *path = ipath->btrfs_path; 2352d24bec3aSMark Fasheh struct extent_buffer *eb; 2353d24bec3aSMark Fasheh struct btrfs_inode_extref *extref; 2354d24bec3aSMark Fasheh u32 item_size; 2355d24bec3aSMark Fasheh u32 cur_offset; 2356d24bec3aSMark Fasheh unsigned long ptr; 2357d24bec3aSMark Fasheh 2358d24bec3aSMark Fasheh while (1) { 2359d24bec3aSMark Fasheh ret = btrfs_find_one_extref(fs_root, inum, offset, path, &extref, 2360d24bec3aSMark Fasheh &offset); 2361d24bec3aSMark Fasheh if (ret < 0) 2362d24bec3aSMark Fasheh break; 2363d24bec3aSMark Fasheh if (ret) { 2364d24bec3aSMark Fasheh ret = found ? 0 : -ENOENT; 2365d24bec3aSMark Fasheh break; 2366d24bec3aSMark Fasheh } 2367d24bec3aSMark Fasheh ++found; 2368d24bec3aSMark Fasheh 2369d24bec3aSMark Fasheh slot = path->slots[0]; 23703fe81ce2SFilipe David Borba Manana eb = btrfs_clone_extent_buffer(path->nodes[0]); 23713fe81ce2SFilipe David Borba Manana if (!eb) { 23723fe81ce2SFilipe David Borba Manana ret = -ENOMEM; 23733fe81ce2SFilipe David Borba Manana break; 23743fe81ce2SFilipe David Borba Manana } 2375d24bec3aSMark Fasheh btrfs_release_path(path); 2376d24bec3aSMark Fasheh 23773212fa14SJosef Bacik item_size = btrfs_item_size(eb, slot); 23782849a854SChris Mason ptr = btrfs_item_ptr_offset(eb, slot); 2379d24bec3aSMark Fasheh cur_offset = 0; 2380d24bec3aSMark Fasheh 2381d24bec3aSMark Fasheh while (cur_offset < item_size) { 2382d24bec3aSMark Fasheh u32 name_len; 2383d24bec3aSMark Fasheh 2384d24bec3aSMark Fasheh extref = (struct btrfs_inode_extref *)(ptr + cur_offset); 2385d24bec3aSMark Fasheh parent = btrfs_inode_extref_parent(eb, extref); 2386d24bec3aSMark Fasheh name_len = btrfs_inode_extref_name_len(eb, extref); 2387ad6240f6SDavid Sterba ret = inode_to_path(parent, name_len, 2388875d1daaSDavid Sterba (unsigned long)&extref->name, eb, ipath); 2389d24bec3aSMark Fasheh if (ret) 2390d24bec3aSMark Fasheh break; 2391d24bec3aSMark Fasheh 23922849a854SChris Mason cur_offset += btrfs_inode_extref_name_len(eb, extref); 2393d24bec3aSMark Fasheh cur_offset += sizeof(*extref); 2394d24bec3aSMark Fasheh } 2395d24bec3aSMark Fasheh free_extent_buffer(eb); 2396d24bec3aSMark Fasheh 2397d24bec3aSMark Fasheh offset++; 2398d24bec3aSMark Fasheh } 2399d24bec3aSMark Fasheh 2400d24bec3aSMark Fasheh btrfs_release_path(path); 2401d24bec3aSMark Fasheh 2402d24bec3aSMark Fasheh return ret; 2403d24bec3aSMark Fasheh } 2404d24bec3aSMark Fasheh 2405a542ad1bSJan Schmidt /* 2406a542ad1bSJan Schmidt * returns 0 if the path could be dumped (probably truncated) 2407a542ad1bSJan Schmidt * returns <0 in case of an error 2408a542ad1bSJan Schmidt */ 2409d24bec3aSMark Fasheh static int inode_to_path(u64 inum, u32 name_len, unsigned long name_off, 2410875d1daaSDavid Sterba struct extent_buffer *eb, struct inode_fs_paths *ipath) 2411a542ad1bSJan Schmidt { 2412a542ad1bSJan Schmidt char *fspath; 2413a542ad1bSJan Schmidt char *fspath_min; 2414a542ad1bSJan Schmidt int i = ipath->fspath->elem_cnt; 2415a542ad1bSJan Schmidt const int s_ptr = sizeof(char *); 2416a542ad1bSJan Schmidt u32 bytes_left; 2417a542ad1bSJan Schmidt 2418a542ad1bSJan Schmidt bytes_left = ipath->fspath->bytes_left > s_ptr ? 2419a542ad1bSJan Schmidt ipath->fspath->bytes_left - s_ptr : 0; 2420a542ad1bSJan Schmidt 2421740c3d22SChris Mason fspath_min = (char *)ipath->fspath->val + (i + 1) * s_ptr; 242296b5bd77SJan Schmidt fspath = btrfs_ref_to_path(ipath->fs_root, ipath->btrfs_path, name_len, 242396b5bd77SJan Schmidt name_off, eb, inum, fspath_min, bytes_left); 2424a542ad1bSJan Schmidt if (IS_ERR(fspath)) 2425a542ad1bSJan Schmidt return PTR_ERR(fspath); 2426a542ad1bSJan Schmidt 2427a542ad1bSJan Schmidt if (fspath > fspath_min) { 2428745c4d8eSJeff Mahoney ipath->fspath->val[i] = (u64)(unsigned long)fspath; 2429a542ad1bSJan Schmidt ++ipath->fspath->elem_cnt; 2430a542ad1bSJan Schmidt ipath->fspath->bytes_left = fspath - fspath_min; 2431a542ad1bSJan Schmidt } else { 2432a542ad1bSJan Schmidt ++ipath->fspath->elem_missed; 2433a542ad1bSJan Schmidt ipath->fspath->bytes_missing += fspath_min - fspath; 2434a542ad1bSJan Schmidt ipath->fspath->bytes_left = 0; 2435a542ad1bSJan Schmidt } 2436a542ad1bSJan Schmidt 2437a542ad1bSJan Schmidt return 0; 2438a542ad1bSJan Schmidt } 2439a542ad1bSJan Schmidt 2440a542ad1bSJan Schmidt /* 2441a542ad1bSJan Schmidt * this dumps all file system paths to the inode into the ipath struct, provided 2442a542ad1bSJan Schmidt * is has been created large enough. each path is zero-terminated and accessed 2443740c3d22SChris Mason * from ipath->fspath->val[i]. 2444a542ad1bSJan Schmidt * when it returns, there are ipath->fspath->elem_cnt number of paths available 2445740c3d22SChris Mason * in ipath->fspath->val[]. when the allocated space wasn't sufficient, the 244601327610SNicholas D Steeves * number of missed paths is recorded in ipath->fspath->elem_missed, otherwise, 2447a542ad1bSJan Schmidt * it's zero. ipath->fspath->bytes_missing holds the number of bytes that would 2448a542ad1bSJan Schmidt * have been needed to return all paths. 2449a542ad1bSJan Schmidt */ 2450a542ad1bSJan Schmidt int paths_from_inode(u64 inum, struct inode_fs_paths *ipath) 2451a542ad1bSJan Schmidt { 2452ad6240f6SDavid Sterba int ret; 2453ad6240f6SDavid Sterba int found_refs = 0; 2454ad6240f6SDavid Sterba 2455875d1daaSDavid Sterba ret = iterate_inode_refs(inum, ipath); 2456ad6240f6SDavid Sterba if (!ret) 2457ad6240f6SDavid Sterba ++found_refs; 2458ad6240f6SDavid Sterba else if (ret != -ENOENT) 2459ad6240f6SDavid Sterba return ret; 2460ad6240f6SDavid Sterba 2461875d1daaSDavid Sterba ret = iterate_inode_extrefs(inum, ipath); 2462ad6240f6SDavid Sterba if (ret == -ENOENT && found_refs) 2463ad6240f6SDavid Sterba return 0; 2464ad6240f6SDavid Sterba 2465ad6240f6SDavid Sterba return ret; 2466a542ad1bSJan Schmidt } 2467a542ad1bSJan Schmidt 2468a542ad1bSJan Schmidt struct btrfs_data_container *init_data_container(u32 total_bytes) 2469a542ad1bSJan Schmidt { 2470a542ad1bSJan Schmidt struct btrfs_data_container *data; 2471a542ad1bSJan Schmidt size_t alloc_bytes; 2472a542ad1bSJan Schmidt 2473a542ad1bSJan Schmidt alloc_bytes = max_t(size_t, total_bytes, sizeof(*data)); 2474f54de068SDavid Sterba data = kvmalloc(alloc_bytes, GFP_KERNEL); 2475a542ad1bSJan Schmidt if (!data) 2476a542ad1bSJan Schmidt return ERR_PTR(-ENOMEM); 2477a542ad1bSJan Schmidt 2478a542ad1bSJan Schmidt if (total_bytes >= sizeof(*data)) { 2479a542ad1bSJan Schmidt data->bytes_left = total_bytes - sizeof(*data); 2480a542ad1bSJan Schmidt data->bytes_missing = 0; 2481a542ad1bSJan Schmidt } else { 2482a542ad1bSJan Schmidt data->bytes_missing = sizeof(*data) - total_bytes; 2483a542ad1bSJan Schmidt data->bytes_left = 0; 2484a542ad1bSJan Schmidt } 2485a542ad1bSJan Schmidt 2486a542ad1bSJan Schmidt data->elem_cnt = 0; 2487a542ad1bSJan Schmidt data->elem_missed = 0; 2488a542ad1bSJan Schmidt 2489a542ad1bSJan Schmidt return data; 2490a542ad1bSJan Schmidt } 2491a542ad1bSJan Schmidt 2492a542ad1bSJan Schmidt /* 2493a542ad1bSJan Schmidt * allocates space to return multiple file system paths for an inode. 2494a542ad1bSJan Schmidt * total_bytes to allocate are passed, note that space usable for actual path 2495a542ad1bSJan Schmidt * information will be total_bytes - sizeof(struct inode_fs_paths). 2496a542ad1bSJan Schmidt * the returned pointer must be freed with free_ipath() in the end. 2497a542ad1bSJan Schmidt */ 2498a542ad1bSJan Schmidt struct inode_fs_paths *init_ipath(s32 total_bytes, struct btrfs_root *fs_root, 2499a542ad1bSJan Schmidt struct btrfs_path *path) 2500a542ad1bSJan Schmidt { 2501a542ad1bSJan Schmidt struct inode_fs_paths *ifp; 2502a542ad1bSJan Schmidt struct btrfs_data_container *fspath; 2503a542ad1bSJan Schmidt 2504a542ad1bSJan Schmidt fspath = init_data_container(total_bytes); 2505a542ad1bSJan Schmidt if (IS_ERR(fspath)) 2506afc6961fSMisono Tomohiro return ERR_CAST(fspath); 2507a542ad1bSJan Schmidt 2508f54de068SDavid Sterba ifp = kmalloc(sizeof(*ifp), GFP_KERNEL); 2509a542ad1bSJan Schmidt if (!ifp) { 2510f54de068SDavid Sterba kvfree(fspath); 2511a542ad1bSJan Schmidt return ERR_PTR(-ENOMEM); 2512a542ad1bSJan Schmidt } 2513a542ad1bSJan Schmidt 2514a542ad1bSJan Schmidt ifp->btrfs_path = path; 2515a542ad1bSJan Schmidt ifp->fspath = fspath; 2516a542ad1bSJan Schmidt ifp->fs_root = fs_root; 2517a542ad1bSJan Schmidt 2518a542ad1bSJan Schmidt return ifp; 2519a542ad1bSJan Schmidt } 2520a542ad1bSJan Schmidt 2521a542ad1bSJan Schmidt void free_ipath(struct inode_fs_paths *ipath) 2522a542ad1bSJan Schmidt { 25234735fb28SJesper Juhl if (!ipath) 25244735fb28SJesper Juhl return; 2525f54de068SDavid Sterba kvfree(ipath->fspath); 2526a542ad1bSJan Schmidt kfree(ipath); 2527a542ad1bSJan Schmidt } 2528a37f232bSQu Wenruo 2529a37f232bSQu Wenruo struct btrfs_backref_iter *btrfs_backref_iter_alloc( 2530a37f232bSQu Wenruo struct btrfs_fs_info *fs_info, gfp_t gfp_flag) 2531a37f232bSQu Wenruo { 2532a37f232bSQu Wenruo struct btrfs_backref_iter *ret; 2533a37f232bSQu Wenruo 2534a37f232bSQu Wenruo ret = kzalloc(sizeof(*ret), gfp_flag); 2535a37f232bSQu Wenruo if (!ret) 2536a37f232bSQu Wenruo return NULL; 2537a37f232bSQu Wenruo 2538a37f232bSQu Wenruo ret->path = btrfs_alloc_path(); 2539c15c2ec0SBoleyn Su if (!ret->path) { 2540a37f232bSQu Wenruo kfree(ret); 2541a37f232bSQu Wenruo return NULL; 2542a37f232bSQu Wenruo } 2543a37f232bSQu Wenruo 2544a37f232bSQu Wenruo /* Current backref iterator only supports iteration in commit root */ 2545a37f232bSQu Wenruo ret->path->search_commit_root = 1; 2546a37f232bSQu Wenruo ret->path->skip_locking = 1; 2547a37f232bSQu Wenruo ret->fs_info = fs_info; 2548a37f232bSQu Wenruo 2549a37f232bSQu Wenruo return ret; 2550a37f232bSQu Wenruo } 2551a37f232bSQu Wenruo 2552a37f232bSQu Wenruo int btrfs_backref_iter_start(struct btrfs_backref_iter *iter, u64 bytenr) 2553a37f232bSQu Wenruo { 2554a37f232bSQu Wenruo struct btrfs_fs_info *fs_info = iter->fs_info; 255529cbcf40SJosef Bacik struct btrfs_root *extent_root = btrfs_extent_root(fs_info, bytenr); 2556a37f232bSQu Wenruo struct btrfs_path *path = iter->path; 2557a37f232bSQu Wenruo struct btrfs_extent_item *ei; 2558a37f232bSQu Wenruo struct btrfs_key key; 2559a37f232bSQu Wenruo int ret; 2560a37f232bSQu Wenruo 2561a37f232bSQu Wenruo key.objectid = bytenr; 2562a37f232bSQu Wenruo key.type = BTRFS_METADATA_ITEM_KEY; 2563a37f232bSQu Wenruo key.offset = (u64)-1; 2564a37f232bSQu Wenruo iter->bytenr = bytenr; 2565a37f232bSQu Wenruo 256629cbcf40SJosef Bacik ret = btrfs_search_slot(NULL, extent_root, &key, path, 0, 0); 2567a37f232bSQu Wenruo if (ret < 0) 2568a37f232bSQu Wenruo return ret; 2569a37f232bSQu Wenruo if (ret == 0) { 2570a37f232bSQu Wenruo ret = -EUCLEAN; 2571a37f232bSQu Wenruo goto release; 2572a37f232bSQu Wenruo } 2573a37f232bSQu Wenruo if (path->slots[0] == 0) { 2574a37f232bSQu Wenruo WARN_ON(IS_ENABLED(CONFIG_BTRFS_DEBUG)); 2575a37f232bSQu Wenruo ret = -EUCLEAN; 2576a37f232bSQu Wenruo goto release; 2577a37f232bSQu Wenruo } 2578a37f232bSQu Wenruo path->slots[0]--; 2579a37f232bSQu Wenruo 2580a37f232bSQu Wenruo btrfs_item_key_to_cpu(path->nodes[0], &key, path->slots[0]); 2581a37f232bSQu Wenruo if ((key.type != BTRFS_EXTENT_ITEM_KEY && 2582a37f232bSQu Wenruo key.type != BTRFS_METADATA_ITEM_KEY) || key.objectid != bytenr) { 2583a37f232bSQu Wenruo ret = -ENOENT; 2584a37f232bSQu Wenruo goto release; 2585a37f232bSQu Wenruo } 2586a37f232bSQu Wenruo memcpy(&iter->cur_key, &key, sizeof(key)); 2587a37f232bSQu Wenruo iter->item_ptr = (u32)btrfs_item_ptr_offset(path->nodes[0], 2588a37f232bSQu Wenruo path->slots[0]); 2589a37f232bSQu Wenruo iter->end_ptr = (u32)(iter->item_ptr + 25903212fa14SJosef Bacik btrfs_item_size(path->nodes[0], path->slots[0])); 2591a37f232bSQu Wenruo ei = btrfs_item_ptr(path->nodes[0], path->slots[0], 2592a37f232bSQu Wenruo struct btrfs_extent_item); 2593a37f232bSQu Wenruo 2594a37f232bSQu Wenruo /* 2595a37f232bSQu Wenruo * Only support iteration on tree backref yet. 2596a37f232bSQu Wenruo * 2597a37f232bSQu Wenruo * This is an extra precaution for non skinny-metadata, where 2598a37f232bSQu Wenruo * EXTENT_ITEM is also used for tree blocks, that we can only use 2599a37f232bSQu Wenruo * extent flags to determine if it's a tree block. 2600a37f232bSQu Wenruo */ 2601a37f232bSQu Wenruo if (btrfs_extent_flags(path->nodes[0], ei) & BTRFS_EXTENT_FLAG_DATA) { 2602a37f232bSQu Wenruo ret = -ENOTSUPP; 2603a37f232bSQu Wenruo goto release; 2604a37f232bSQu Wenruo } 2605a37f232bSQu Wenruo iter->cur_ptr = (u32)(iter->item_ptr + sizeof(*ei)); 2606a37f232bSQu Wenruo 2607a37f232bSQu Wenruo /* If there is no inline backref, go search for keyed backref */ 2608a37f232bSQu Wenruo if (iter->cur_ptr >= iter->end_ptr) { 260929cbcf40SJosef Bacik ret = btrfs_next_item(extent_root, path); 2610a37f232bSQu Wenruo 2611a37f232bSQu Wenruo /* No inline nor keyed ref */ 2612a37f232bSQu Wenruo if (ret > 0) { 2613a37f232bSQu Wenruo ret = -ENOENT; 2614a37f232bSQu Wenruo goto release; 2615a37f232bSQu Wenruo } 2616a37f232bSQu Wenruo if (ret < 0) 2617a37f232bSQu Wenruo goto release; 2618a37f232bSQu Wenruo 2619a37f232bSQu Wenruo btrfs_item_key_to_cpu(path->nodes[0], &iter->cur_key, 2620a37f232bSQu Wenruo path->slots[0]); 2621a37f232bSQu Wenruo if (iter->cur_key.objectid != bytenr || 2622a37f232bSQu Wenruo (iter->cur_key.type != BTRFS_SHARED_BLOCK_REF_KEY && 2623a37f232bSQu Wenruo iter->cur_key.type != BTRFS_TREE_BLOCK_REF_KEY)) { 2624a37f232bSQu Wenruo ret = -ENOENT; 2625a37f232bSQu Wenruo goto release; 2626a37f232bSQu Wenruo } 2627a37f232bSQu Wenruo iter->cur_ptr = (u32)btrfs_item_ptr_offset(path->nodes[0], 2628a37f232bSQu Wenruo path->slots[0]); 2629a37f232bSQu Wenruo iter->item_ptr = iter->cur_ptr; 26303212fa14SJosef Bacik iter->end_ptr = (u32)(iter->item_ptr + btrfs_item_size( 2631a37f232bSQu Wenruo path->nodes[0], path->slots[0])); 2632a37f232bSQu Wenruo } 2633a37f232bSQu Wenruo 2634a37f232bSQu Wenruo return 0; 2635a37f232bSQu Wenruo release: 2636a37f232bSQu Wenruo btrfs_backref_iter_release(iter); 2637a37f232bSQu Wenruo return ret; 2638a37f232bSQu Wenruo } 2639c39c2ddcSQu Wenruo 2640c39c2ddcSQu Wenruo /* 2641c39c2ddcSQu Wenruo * Go to the next backref item of current bytenr, can be either inlined or 2642c39c2ddcSQu Wenruo * keyed. 2643c39c2ddcSQu Wenruo * 2644c39c2ddcSQu Wenruo * Caller needs to check whether it's inline ref or not by iter->cur_key. 2645c39c2ddcSQu Wenruo * 2646c39c2ddcSQu Wenruo * Return 0 if we get next backref without problem. 2647c39c2ddcSQu Wenruo * Return >0 if there is no extra backref for this bytenr. 2648c39c2ddcSQu Wenruo * Return <0 if there is something wrong happened. 2649c39c2ddcSQu Wenruo */ 2650c39c2ddcSQu Wenruo int btrfs_backref_iter_next(struct btrfs_backref_iter *iter) 2651c39c2ddcSQu Wenruo { 2652c39c2ddcSQu Wenruo struct extent_buffer *eb = btrfs_backref_get_eb(iter); 265329cbcf40SJosef Bacik struct btrfs_root *extent_root; 2654c39c2ddcSQu Wenruo struct btrfs_path *path = iter->path; 2655c39c2ddcSQu Wenruo struct btrfs_extent_inline_ref *iref; 2656c39c2ddcSQu Wenruo int ret; 2657c39c2ddcSQu Wenruo u32 size; 2658c39c2ddcSQu Wenruo 2659c39c2ddcSQu Wenruo if (btrfs_backref_iter_is_inline_ref(iter)) { 2660c39c2ddcSQu Wenruo /* We're still inside the inline refs */ 2661c39c2ddcSQu Wenruo ASSERT(iter->cur_ptr < iter->end_ptr); 2662c39c2ddcSQu Wenruo 2663c39c2ddcSQu Wenruo if (btrfs_backref_has_tree_block_info(iter)) { 2664c39c2ddcSQu Wenruo /* First tree block info */ 2665c39c2ddcSQu Wenruo size = sizeof(struct btrfs_tree_block_info); 2666c39c2ddcSQu Wenruo } else { 2667c39c2ddcSQu Wenruo /* Use inline ref type to determine the size */ 2668c39c2ddcSQu Wenruo int type; 2669c39c2ddcSQu Wenruo 2670c39c2ddcSQu Wenruo iref = (struct btrfs_extent_inline_ref *) 2671c39c2ddcSQu Wenruo ((unsigned long)iter->cur_ptr); 2672c39c2ddcSQu Wenruo type = btrfs_extent_inline_ref_type(eb, iref); 2673c39c2ddcSQu Wenruo 2674c39c2ddcSQu Wenruo size = btrfs_extent_inline_ref_size(type); 2675c39c2ddcSQu Wenruo } 2676c39c2ddcSQu Wenruo iter->cur_ptr += size; 2677c39c2ddcSQu Wenruo if (iter->cur_ptr < iter->end_ptr) 2678c39c2ddcSQu Wenruo return 0; 2679c39c2ddcSQu Wenruo 2680c39c2ddcSQu Wenruo /* All inline items iterated, fall through */ 2681c39c2ddcSQu Wenruo } 2682c39c2ddcSQu Wenruo 2683c39c2ddcSQu Wenruo /* We're at keyed items, there is no inline item, go to the next one */ 268429cbcf40SJosef Bacik extent_root = btrfs_extent_root(iter->fs_info, iter->bytenr); 268529cbcf40SJosef Bacik ret = btrfs_next_item(extent_root, iter->path); 2686c39c2ddcSQu Wenruo if (ret) 2687c39c2ddcSQu Wenruo return ret; 2688c39c2ddcSQu Wenruo 2689c39c2ddcSQu Wenruo btrfs_item_key_to_cpu(path->nodes[0], &iter->cur_key, path->slots[0]); 2690c39c2ddcSQu Wenruo if (iter->cur_key.objectid != iter->bytenr || 2691c39c2ddcSQu Wenruo (iter->cur_key.type != BTRFS_TREE_BLOCK_REF_KEY && 2692c39c2ddcSQu Wenruo iter->cur_key.type != BTRFS_SHARED_BLOCK_REF_KEY)) 2693c39c2ddcSQu Wenruo return 1; 2694c39c2ddcSQu Wenruo iter->item_ptr = (u32)btrfs_item_ptr_offset(path->nodes[0], 2695c39c2ddcSQu Wenruo path->slots[0]); 2696c39c2ddcSQu Wenruo iter->cur_ptr = iter->item_ptr; 26973212fa14SJosef Bacik iter->end_ptr = iter->item_ptr + (u32)btrfs_item_size(path->nodes[0], 2698c39c2ddcSQu Wenruo path->slots[0]); 2699c39c2ddcSQu Wenruo return 0; 2700c39c2ddcSQu Wenruo } 2701584fb121SQu Wenruo 2702584fb121SQu Wenruo void btrfs_backref_init_cache(struct btrfs_fs_info *fs_info, 2703584fb121SQu Wenruo struct btrfs_backref_cache *cache, int is_reloc) 2704584fb121SQu Wenruo { 2705584fb121SQu Wenruo int i; 2706584fb121SQu Wenruo 2707584fb121SQu Wenruo cache->rb_root = RB_ROOT; 2708584fb121SQu Wenruo for (i = 0; i < BTRFS_MAX_LEVEL; i++) 2709584fb121SQu Wenruo INIT_LIST_HEAD(&cache->pending[i]); 2710584fb121SQu Wenruo INIT_LIST_HEAD(&cache->changed); 2711584fb121SQu Wenruo INIT_LIST_HEAD(&cache->detached); 2712584fb121SQu Wenruo INIT_LIST_HEAD(&cache->leaves); 2713584fb121SQu Wenruo INIT_LIST_HEAD(&cache->pending_edge); 2714584fb121SQu Wenruo INIT_LIST_HEAD(&cache->useless_node); 2715584fb121SQu Wenruo cache->fs_info = fs_info; 2716584fb121SQu Wenruo cache->is_reloc = is_reloc; 2717584fb121SQu Wenruo } 2718b1818dabSQu Wenruo 2719b1818dabSQu Wenruo struct btrfs_backref_node *btrfs_backref_alloc_node( 2720b1818dabSQu Wenruo struct btrfs_backref_cache *cache, u64 bytenr, int level) 2721b1818dabSQu Wenruo { 2722b1818dabSQu Wenruo struct btrfs_backref_node *node; 2723b1818dabSQu Wenruo 2724b1818dabSQu Wenruo ASSERT(level >= 0 && level < BTRFS_MAX_LEVEL); 2725b1818dabSQu Wenruo node = kzalloc(sizeof(*node), GFP_NOFS); 2726b1818dabSQu Wenruo if (!node) 2727b1818dabSQu Wenruo return node; 2728b1818dabSQu Wenruo 2729b1818dabSQu Wenruo INIT_LIST_HEAD(&node->list); 2730b1818dabSQu Wenruo INIT_LIST_HEAD(&node->upper); 2731b1818dabSQu Wenruo INIT_LIST_HEAD(&node->lower); 2732b1818dabSQu Wenruo RB_CLEAR_NODE(&node->rb_node); 2733b1818dabSQu Wenruo cache->nr_nodes++; 2734b1818dabSQu Wenruo node->level = level; 2735b1818dabSQu Wenruo node->bytenr = bytenr; 2736b1818dabSQu Wenruo 2737b1818dabSQu Wenruo return node; 2738b1818dabSQu Wenruo } 273947254d07SQu Wenruo 274047254d07SQu Wenruo struct btrfs_backref_edge *btrfs_backref_alloc_edge( 274147254d07SQu Wenruo struct btrfs_backref_cache *cache) 274247254d07SQu Wenruo { 274347254d07SQu Wenruo struct btrfs_backref_edge *edge; 274447254d07SQu Wenruo 274547254d07SQu Wenruo edge = kzalloc(sizeof(*edge), GFP_NOFS); 274647254d07SQu Wenruo if (edge) 274747254d07SQu Wenruo cache->nr_edges++; 274847254d07SQu Wenruo return edge; 274947254d07SQu Wenruo } 2750023acb07SQu Wenruo 2751023acb07SQu Wenruo /* 2752023acb07SQu Wenruo * Drop the backref node from cache, also cleaning up all its 2753023acb07SQu Wenruo * upper edges and any uncached nodes in the path. 2754023acb07SQu Wenruo * 2755023acb07SQu Wenruo * This cleanup happens bottom up, thus the node should either 2756023acb07SQu Wenruo * be the lowest node in the cache or a detached node. 2757023acb07SQu Wenruo */ 2758023acb07SQu Wenruo void btrfs_backref_cleanup_node(struct btrfs_backref_cache *cache, 2759023acb07SQu Wenruo struct btrfs_backref_node *node) 2760023acb07SQu Wenruo { 2761023acb07SQu Wenruo struct btrfs_backref_node *upper; 2762023acb07SQu Wenruo struct btrfs_backref_edge *edge; 2763023acb07SQu Wenruo 2764023acb07SQu Wenruo if (!node) 2765023acb07SQu Wenruo return; 2766023acb07SQu Wenruo 2767023acb07SQu Wenruo BUG_ON(!node->lowest && !node->detached); 2768023acb07SQu Wenruo while (!list_empty(&node->upper)) { 2769023acb07SQu Wenruo edge = list_entry(node->upper.next, struct btrfs_backref_edge, 2770023acb07SQu Wenruo list[LOWER]); 2771023acb07SQu Wenruo upper = edge->node[UPPER]; 2772023acb07SQu Wenruo list_del(&edge->list[LOWER]); 2773023acb07SQu Wenruo list_del(&edge->list[UPPER]); 2774023acb07SQu Wenruo btrfs_backref_free_edge(cache, edge); 2775023acb07SQu Wenruo 2776023acb07SQu Wenruo /* 2777023acb07SQu Wenruo * Add the node to leaf node list if no other child block 2778023acb07SQu Wenruo * cached. 2779023acb07SQu Wenruo */ 2780023acb07SQu Wenruo if (list_empty(&upper->lower)) { 2781023acb07SQu Wenruo list_add_tail(&upper->lower, &cache->leaves); 2782023acb07SQu Wenruo upper->lowest = 1; 2783023acb07SQu Wenruo } 2784023acb07SQu Wenruo } 2785023acb07SQu Wenruo 2786023acb07SQu Wenruo btrfs_backref_drop_node(cache, node); 2787023acb07SQu Wenruo } 278813fe1bdbSQu Wenruo 278913fe1bdbSQu Wenruo /* 279013fe1bdbSQu Wenruo * Release all nodes/edges from current cache 279113fe1bdbSQu Wenruo */ 279213fe1bdbSQu Wenruo void btrfs_backref_release_cache(struct btrfs_backref_cache *cache) 279313fe1bdbSQu Wenruo { 279413fe1bdbSQu Wenruo struct btrfs_backref_node *node; 279513fe1bdbSQu Wenruo int i; 279613fe1bdbSQu Wenruo 279713fe1bdbSQu Wenruo while (!list_empty(&cache->detached)) { 279813fe1bdbSQu Wenruo node = list_entry(cache->detached.next, 279913fe1bdbSQu Wenruo struct btrfs_backref_node, list); 280013fe1bdbSQu Wenruo btrfs_backref_cleanup_node(cache, node); 280113fe1bdbSQu Wenruo } 280213fe1bdbSQu Wenruo 280313fe1bdbSQu Wenruo while (!list_empty(&cache->leaves)) { 280413fe1bdbSQu Wenruo node = list_entry(cache->leaves.next, 280513fe1bdbSQu Wenruo struct btrfs_backref_node, lower); 280613fe1bdbSQu Wenruo btrfs_backref_cleanup_node(cache, node); 280713fe1bdbSQu Wenruo } 280813fe1bdbSQu Wenruo 280913fe1bdbSQu Wenruo cache->last_trans = 0; 281013fe1bdbSQu Wenruo 281113fe1bdbSQu Wenruo for (i = 0; i < BTRFS_MAX_LEVEL; i++) 281213fe1bdbSQu Wenruo ASSERT(list_empty(&cache->pending[i])); 281313fe1bdbSQu Wenruo ASSERT(list_empty(&cache->pending_edge)); 281413fe1bdbSQu Wenruo ASSERT(list_empty(&cache->useless_node)); 281513fe1bdbSQu Wenruo ASSERT(list_empty(&cache->changed)); 281613fe1bdbSQu Wenruo ASSERT(list_empty(&cache->detached)); 281713fe1bdbSQu Wenruo ASSERT(RB_EMPTY_ROOT(&cache->rb_root)); 281813fe1bdbSQu Wenruo ASSERT(!cache->nr_nodes); 281913fe1bdbSQu Wenruo ASSERT(!cache->nr_edges); 282013fe1bdbSQu Wenruo } 28211b60d2ecSQu Wenruo 28221b60d2ecSQu Wenruo /* 28231b60d2ecSQu Wenruo * Handle direct tree backref 28241b60d2ecSQu Wenruo * 28251b60d2ecSQu Wenruo * Direct tree backref means, the backref item shows its parent bytenr 28261b60d2ecSQu Wenruo * directly. This is for SHARED_BLOCK_REF backref (keyed or inlined). 28271b60d2ecSQu Wenruo * 28281b60d2ecSQu Wenruo * @ref_key: The converted backref key. 28291b60d2ecSQu Wenruo * For keyed backref, it's the item key. 28301b60d2ecSQu Wenruo * For inlined backref, objectid is the bytenr, 28311b60d2ecSQu Wenruo * type is btrfs_inline_ref_type, offset is 28321b60d2ecSQu Wenruo * btrfs_inline_ref_offset. 28331b60d2ecSQu Wenruo */ 28341b60d2ecSQu Wenruo static int handle_direct_tree_backref(struct btrfs_backref_cache *cache, 28351b60d2ecSQu Wenruo struct btrfs_key *ref_key, 28361b60d2ecSQu Wenruo struct btrfs_backref_node *cur) 28371b60d2ecSQu Wenruo { 28381b60d2ecSQu Wenruo struct btrfs_backref_edge *edge; 28391b60d2ecSQu Wenruo struct btrfs_backref_node *upper; 28401b60d2ecSQu Wenruo struct rb_node *rb_node; 28411b60d2ecSQu Wenruo 28421b60d2ecSQu Wenruo ASSERT(ref_key->type == BTRFS_SHARED_BLOCK_REF_KEY); 28431b60d2ecSQu Wenruo 28441b60d2ecSQu Wenruo /* Only reloc root uses backref pointing to itself */ 28451b60d2ecSQu Wenruo if (ref_key->objectid == ref_key->offset) { 28461b60d2ecSQu Wenruo struct btrfs_root *root; 28471b60d2ecSQu Wenruo 28481b60d2ecSQu Wenruo cur->is_reloc_root = 1; 28491b60d2ecSQu Wenruo /* Only reloc backref cache cares about a specific root */ 28501b60d2ecSQu Wenruo if (cache->is_reloc) { 28511b60d2ecSQu Wenruo root = find_reloc_root(cache->fs_info, cur->bytenr); 2852f78743fbSJosef Bacik if (!root) 28531b60d2ecSQu Wenruo return -ENOENT; 28541b60d2ecSQu Wenruo cur->root = root; 28551b60d2ecSQu Wenruo } else { 28561b60d2ecSQu Wenruo /* 28571b60d2ecSQu Wenruo * For generic purpose backref cache, reloc root node 28581b60d2ecSQu Wenruo * is useless. 28591b60d2ecSQu Wenruo */ 28601b60d2ecSQu Wenruo list_add(&cur->list, &cache->useless_node); 28611b60d2ecSQu Wenruo } 28621b60d2ecSQu Wenruo return 0; 28631b60d2ecSQu Wenruo } 28641b60d2ecSQu Wenruo 28651b60d2ecSQu Wenruo edge = btrfs_backref_alloc_edge(cache); 28661b60d2ecSQu Wenruo if (!edge) 28671b60d2ecSQu Wenruo return -ENOMEM; 28681b60d2ecSQu Wenruo 28691b60d2ecSQu Wenruo rb_node = rb_simple_search(&cache->rb_root, ref_key->offset); 28701b60d2ecSQu Wenruo if (!rb_node) { 28711b60d2ecSQu Wenruo /* Parent node not yet cached */ 28721b60d2ecSQu Wenruo upper = btrfs_backref_alloc_node(cache, ref_key->offset, 28731b60d2ecSQu Wenruo cur->level + 1); 28741b60d2ecSQu Wenruo if (!upper) { 28751b60d2ecSQu Wenruo btrfs_backref_free_edge(cache, edge); 28761b60d2ecSQu Wenruo return -ENOMEM; 28771b60d2ecSQu Wenruo } 28781b60d2ecSQu Wenruo 28791b60d2ecSQu Wenruo /* 28801b60d2ecSQu Wenruo * Backrefs for the upper level block isn't cached, add the 28811b60d2ecSQu Wenruo * block to pending list 28821b60d2ecSQu Wenruo */ 28831b60d2ecSQu Wenruo list_add_tail(&edge->list[UPPER], &cache->pending_edge); 28841b60d2ecSQu Wenruo } else { 28851b60d2ecSQu Wenruo /* Parent node already cached */ 28861b60d2ecSQu Wenruo upper = rb_entry(rb_node, struct btrfs_backref_node, rb_node); 28871b60d2ecSQu Wenruo ASSERT(upper->checked); 28881b60d2ecSQu Wenruo INIT_LIST_HEAD(&edge->list[UPPER]); 28891b60d2ecSQu Wenruo } 28901b60d2ecSQu Wenruo btrfs_backref_link_edge(edge, cur, upper, LINK_LOWER); 28911b60d2ecSQu Wenruo return 0; 28921b60d2ecSQu Wenruo } 28931b60d2ecSQu Wenruo 28941b60d2ecSQu Wenruo /* 28951b60d2ecSQu Wenruo * Handle indirect tree backref 28961b60d2ecSQu Wenruo * 28971b60d2ecSQu Wenruo * Indirect tree backref means, we only know which tree the node belongs to. 28981b60d2ecSQu Wenruo * We still need to do a tree search to find out the parents. This is for 28991b60d2ecSQu Wenruo * TREE_BLOCK_REF backref (keyed or inlined). 29001b60d2ecSQu Wenruo * 29011b60d2ecSQu Wenruo * @ref_key: The same as @ref_key in handle_direct_tree_backref() 29021b60d2ecSQu Wenruo * @tree_key: The first key of this tree block. 29031b60d2ecSQu Wenruo * @path: A clean (released) path, to avoid allocating path every time 29041b60d2ecSQu Wenruo * the function get called. 29051b60d2ecSQu Wenruo */ 29061b60d2ecSQu Wenruo static int handle_indirect_tree_backref(struct btrfs_backref_cache *cache, 29071b60d2ecSQu Wenruo struct btrfs_path *path, 29081b60d2ecSQu Wenruo struct btrfs_key *ref_key, 29091b60d2ecSQu Wenruo struct btrfs_key *tree_key, 29101b60d2ecSQu Wenruo struct btrfs_backref_node *cur) 29111b60d2ecSQu Wenruo { 29121b60d2ecSQu Wenruo struct btrfs_fs_info *fs_info = cache->fs_info; 29131b60d2ecSQu Wenruo struct btrfs_backref_node *upper; 29141b60d2ecSQu Wenruo struct btrfs_backref_node *lower; 29151b60d2ecSQu Wenruo struct btrfs_backref_edge *edge; 29161b60d2ecSQu Wenruo struct extent_buffer *eb; 29171b60d2ecSQu Wenruo struct btrfs_root *root; 29181b60d2ecSQu Wenruo struct rb_node *rb_node; 29191b60d2ecSQu Wenruo int level; 29201b60d2ecSQu Wenruo bool need_check = true; 29211b60d2ecSQu Wenruo int ret; 29221b60d2ecSQu Wenruo 292356e9357aSDavid Sterba root = btrfs_get_fs_root(fs_info, ref_key->offset, false); 29241b60d2ecSQu Wenruo if (IS_ERR(root)) 29251b60d2ecSQu Wenruo return PTR_ERR(root); 292692a7cc42SQu Wenruo if (!test_bit(BTRFS_ROOT_SHAREABLE, &root->state)) 29271b60d2ecSQu Wenruo cur->cowonly = 1; 29281b60d2ecSQu Wenruo 29291b60d2ecSQu Wenruo if (btrfs_root_level(&root->root_item) == cur->level) { 29301b60d2ecSQu Wenruo /* Tree root */ 29311b60d2ecSQu Wenruo ASSERT(btrfs_root_bytenr(&root->root_item) == cur->bytenr); 2932876de781SQu Wenruo /* 2933876de781SQu Wenruo * For reloc backref cache, we may ignore reloc root. But for 2934876de781SQu Wenruo * general purpose backref cache, we can't rely on 2935876de781SQu Wenruo * btrfs_should_ignore_reloc_root() as it may conflict with 2936876de781SQu Wenruo * current running relocation and lead to missing root. 2937876de781SQu Wenruo * 2938876de781SQu Wenruo * For general purpose backref cache, reloc root detection is 2939876de781SQu Wenruo * completely relying on direct backref (key->offset is parent 2940876de781SQu Wenruo * bytenr), thus only do such check for reloc cache. 2941876de781SQu Wenruo */ 2942876de781SQu Wenruo if (btrfs_should_ignore_reloc_root(root) && cache->is_reloc) { 29431b60d2ecSQu Wenruo btrfs_put_root(root); 29441b60d2ecSQu Wenruo list_add(&cur->list, &cache->useless_node); 29451b60d2ecSQu Wenruo } else { 29461b60d2ecSQu Wenruo cur->root = root; 29471b60d2ecSQu Wenruo } 29481b60d2ecSQu Wenruo return 0; 29491b60d2ecSQu Wenruo } 29501b60d2ecSQu Wenruo 29511b60d2ecSQu Wenruo level = cur->level + 1; 29521b60d2ecSQu Wenruo 29531b60d2ecSQu Wenruo /* Search the tree to find parent blocks referring to the block */ 29541b60d2ecSQu Wenruo path->search_commit_root = 1; 29551b60d2ecSQu Wenruo path->skip_locking = 1; 29561b60d2ecSQu Wenruo path->lowest_level = level; 29571b60d2ecSQu Wenruo ret = btrfs_search_slot(NULL, root, tree_key, path, 0, 0); 29581b60d2ecSQu Wenruo path->lowest_level = 0; 29591b60d2ecSQu Wenruo if (ret < 0) { 29601b60d2ecSQu Wenruo btrfs_put_root(root); 29611b60d2ecSQu Wenruo return ret; 29621b60d2ecSQu Wenruo } 29631b60d2ecSQu Wenruo if (ret > 0 && path->slots[level] > 0) 29641b60d2ecSQu Wenruo path->slots[level]--; 29651b60d2ecSQu Wenruo 29661b60d2ecSQu Wenruo eb = path->nodes[level]; 29671b60d2ecSQu Wenruo if (btrfs_node_blockptr(eb, path->slots[level]) != cur->bytenr) { 29681b60d2ecSQu Wenruo btrfs_err(fs_info, 29691b60d2ecSQu Wenruo "couldn't find block (%llu) (level %d) in tree (%llu) with key (%llu %u %llu)", 29701b60d2ecSQu Wenruo cur->bytenr, level - 1, root->root_key.objectid, 29711b60d2ecSQu Wenruo tree_key->objectid, tree_key->type, tree_key->offset); 29721b60d2ecSQu Wenruo btrfs_put_root(root); 29731b60d2ecSQu Wenruo ret = -ENOENT; 29741b60d2ecSQu Wenruo goto out; 29751b60d2ecSQu Wenruo } 29761b60d2ecSQu Wenruo lower = cur; 29771b60d2ecSQu Wenruo 29781b60d2ecSQu Wenruo /* Add all nodes and edges in the path */ 29791b60d2ecSQu Wenruo for (; level < BTRFS_MAX_LEVEL; level++) { 29801b60d2ecSQu Wenruo if (!path->nodes[level]) { 29811b60d2ecSQu Wenruo ASSERT(btrfs_root_bytenr(&root->root_item) == 29821b60d2ecSQu Wenruo lower->bytenr); 2983876de781SQu Wenruo /* Same as previous should_ignore_reloc_root() call */ 2984876de781SQu Wenruo if (btrfs_should_ignore_reloc_root(root) && 2985876de781SQu Wenruo cache->is_reloc) { 29861b60d2ecSQu Wenruo btrfs_put_root(root); 29871b60d2ecSQu Wenruo list_add(&lower->list, &cache->useless_node); 29881b60d2ecSQu Wenruo } else { 29891b60d2ecSQu Wenruo lower->root = root; 29901b60d2ecSQu Wenruo } 29911b60d2ecSQu Wenruo break; 29921b60d2ecSQu Wenruo } 29931b60d2ecSQu Wenruo 29941b60d2ecSQu Wenruo edge = btrfs_backref_alloc_edge(cache); 29951b60d2ecSQu Wenruo if (!edge) { 29961b60d2ecSQu Wenruo btrfs_put_root(root); 29971b60d2ecSQu Wenruo ret = -ENOMEM; 29981b60d2ecSQu Wenruo goto out; 29991b60d2ecSQu Wenruo } 30001b60d2ecSQu Wenruo 30011b60d2ecSQu Wenruo eb = path->nodes[level]; 30021b60d2ecSQu Wenruo rb_node = rb_simple_search(&cache->rb_root, eb->start); 30031b60d2ecSQu Wenruo if (!rb_node) { 30041b60d2ecSQu Wenruo upper = btrfs_backref_alloc_node(cache, eb->start, 30051b60d2ecSQu Wenruo lower->level + 1); 30061b60d2ecSQu Wenruo if (!upper) { 30071b60d2ecSQu Wenruo btrfs_put_root(root); 30081b60d2ecSQu Wenruo btrfs_backref_free_edge(cache, edge); 30091b60d2ecSQu Wenruo ret = -ENOMEM; 30101b60d2ecSQu Wenruo goto out; 30111b60d2ecSQu Wenruo } 30121b60d2ecSQu Wenruo upper->owner = btrfs_header_owner(eb); 301392a7cc42SQu Wenruo if (!test_bit(BTRFS_ROOT_SHAREABLE, &root->state)) 30141b60d2ecSQu Wenruo upper->cowonly = 1; 30151b60d2ecSQu Wenruo 30161b60d2ecSQu Wenruo /* 30171b60d2ecSQu Wenruo * If we know the block isn't shared we can avoid 30181b60d2ecSQu Wenruo * checking its backrefs. 30191b60d2ecSQu Wenruo */ 30201b60d2ecSQu Wenruo if (btrfs_block_can_be_shared(root, eb)) 30211b60d2ecSQu Wenruo upper->checked = 0; 30221b60d2ecSQu Wenruo else 30231b60d2ecSQu Wenruo upper->checked = 1; 30241b60d2ecSQu Wenruo 30251b60d2ecSQu Wenruo /* 30261b60d2ecSQu Wenruo * Add the block to pending list if we need to check its 30271b60d2ecSQu Wenruo * backrefs, we only do this once while walking up a 30281b60d2ecSQu Wenruo * tree as we will catch anything else later on. 30291b60d2ecSQu Wenruo */ 30301b60d2ecSQu Wenruo if (!upper->checked && need_check) { 30311b60d2ecSQu Wenruo need_check = false; 30321b60d2ecSQu Wenruo list_add_tail(&edge->list[UPPER], 30331b60d2ecSQu Wenruo &cache->pending_edge); 30341b60d2ecSQu Wenruo } else { 30351b60d2ecSQu Wenruo if (upper->checked) 30361b60d2ecSQu Wenruo need_check = true; 30371b60d2ecSQu Wenruo INIT_LIST_HEAD(&edge->list[UPPER]); 30381b60d2ecSQu Wenruo } 30391b60d2ecSQu Wenruo } else { 30401b60d2ecSQu Wenruo upper = rb_entry(rb_node, struct btrfs_backref_node, 30411b60d2ecSQu Wenruo rb_node); 30421b60d2ecSQu Wenruo ASSERT(upper->checked); 30431b60d2ecSQu Wenruo INIT_LIST_HEAD(&edge->list[UPPER]); 30441b60d2ecSQu Wenruo if (!upper->owner) 30451b60d2ecSQu Wenruo upper->owner = btrfs_header_owner(eb); 30461b60d2ecSQu Wenruo } 30471b60d2ecSQu Wenruo btrfs_backref_link_edge(edge, lower, upper, LINK_LOWER); 30481b60d2ecSQu Wenruo 30491b60d2ecSQu Wenruo if (rb_node) { 30501b60d2ecSQu Wenruo btrfs_put_root(root); 30511b60d2ecSQu Wenruo break; 30521b60d2ecSQu Wenruo } 30531b60d2ecSQu Wenruo lower = upper; 30541b60d2ecSQu Wenruo upper = NULL; 30551b60d2ecSQu Wenruo } 30561b60d2ecSQu Wenruo out: 30571b60d2ecSQu Wenruo btrfs_release_path(path); 30581b60d2ecSQu Wenruo return ret; 30591b60d2ecSQu Wenruo } 30601b60d2ecSQu Wenruo 30611b60d2ecSQu Wenruo /* 30621b60d2ecSQu Wenruo * Add backref node @cur into @cache. 30631b60d2ecSQu Wenruo * 30641b60d2ecSQu Wenruo * NOTE: Even if the function returned 0, @cur is not yet cached as its upper 30651b60d2ecSQu Wenruo * links aren't yet bi-directional. Needs to finish such links. 3066fc997ed0SQu Wenruo * Use btrfs_backref_finish_upper_links() to finish such linkage. 30671b60d2ecSQu Wenruo * 30681b60d2ecSQu Wenruo * @path: Released path for indirect tree backref lookup 30691b60d2ecSQu Wenruo * @iter: Released backref iter for extent tree search 30701b60d2ecSQu Wenruo * @node_key: The first key of the tree block 30711b60d2ecSQu Wenruo */ 30721b60d2ecSQu Wenruo int btrfs_backref_add_tree_node(struct btrfs_backref_cache *cache, 30731b60d2ecSQu Wenruo struct btrfs_path *path, 30741b60d2ecSQu Wenruo struct btrfs_backref_iter *iter, 30751b60d2ecSQu Wenruo struct btrfs_key *node_key, 30761b60d2ecSQu Wenruo struct btrfs_backref_node *cur) 30771b60d2ecSQu Wenruo { 30781b60d2ecSQu Wenruo struct btrfs_fs_info *fs_info = cache->fs_info; 30791b60d2ecSQu Wenruo struct btrfs_backref_edge *edge; 30801b60d2ecSQu Wenruo struct btrfs_backref_node *exist; 30811b60d2ecSQu Wenruo int ret; 30821b60d2ecSQu Wenruo 30831b60d2ecSQu Wenruo ret = btrfs_backref_iter_start(iter, cur->bytenr); 30841b60d2ecSQu Wenruo if (ret < 0) 30851b60d2ecSQu Wenruo return ret; 30861b60d2ecSQu Wenruo /* 30871b60d2ecSQu Wenruo * We skip the first btrfs_tree_block_info, as we don't use the key 30881b60d2ecSQu Wenruo * stored in it, but fetch it from the tree block 30891b60d2ecSQu Wenruo */ 30901b60d2ecSQu Wenruo if (btrfs_backref_has_tree_block_info(iter)) { 30911b60d2ecSQu Wenruo ret = btrfs_backref_iter_next(iter); 30921b60d2ecSQu Wenruo if (ret < 0) 30931b60d2ecSQu Wenruo goto out; 30941b60d2ecSQu Wenruo /* No extra backref? This means the tree block is corrupted */ 30951b60d2ecSQu Wenruo if (ret > 0) { 30961b60d2ecSQu Wenruo ret = -EUCLEAN; 30971b60d2ecSQu Wenruo goto out; 30981b60d2ecSQu Wenruo } 30991b60d2ecSQu Wenruo } 31001b60d2ecSQu Wenruo WARN_ON(cur->checked); 31011b60d2ecSQu Wenruo if (!list_empty(&cur->upper)) { 31021b60d2ecSQu Wenruo /* 31031b60d2ecSQu Wenruo * The backref was added previously when processing backref of 31041b60d2ecSQu Wenruo * type BTRFS_TREE_BLOCK_REF_KEY 31051b60d2ecSQu Wenruo */ 31061b60d2ecSQu Wenruo ASSERT(list_is_singular(&cur->upper)); 31071b60d2ecSQu Wenruo edge = list_entry(cur->upper.next, struct btrfs_backref_edge, 31081b60d2ecSQu Wenruo list[LOWER]); 31091b60d2ecSQu Wenruo ASSERT(list_empty(&edge->list[UPPER])); 31101b60d2ecSQu Wenruo exist = edge->node[UPPER]; 31111b60d2ecSQu Wenruo /* 31121b60d2ecSQu Wenruo * Add the upper level block to pending list if we need check 31131b60d2ecSQu Wenruo * its backrefs 31141b60d2ecSQu Wenruo */ 31151b60d2ecSQu Wenruo if (!exist->checked) 31161b60d2ecSQu Wenruo list_add_tail(&edge->list[UPPER], &cache->pending_edge); 31171b60d2ecSQu Wenruo } else { 31181b60d2ecSQu Wenruo exist = NULL; 31191b60d2ecSQu Wenruo } 31201b60d2ecSQu Wenruo 31211b60d2ecSQu Wenruo for (; ret == 0; ret = btrfs_backref_iter_next(iter)) { 31221b60d2ecSQu Wenruo struct extent_buffer *eb; 31231b60d2ecSQu Wenruo struct btrfs_key key; 31241b60d2ecSQu Wenruo int type; 31251b60d2ecSQu Wenruo 31261b60d2ecSQu Wenruo cond_resched(); 31271b60d2ecSQu Wenruo eb = btrfs_backref_get_eb(iter); 31281b60d2ecSQu Wenruo 31291b60d2ecSQu Wenruo key.objectid = iter->bytenr; 31301b60d2ecSQu Wenruo if (btrfs_backref_iter_is_inline_ref(iter)) { 31311b60d2ecSQu Wenruo struct btrfs_extent_inline_ref *iref; 31321b60d2ecSQu Wenruo 31331b60d2ecSQu Wenruo /* Update key for inline backref */ 31341b60d2ecSQu Wenruo iref = (struct btrfs_extent_inline_ref *) 31351b60d2ecSQu Wenruo ((unsigned long)iter->cur_ptr); 31361b60d2ecSQu Wenruo type = btrfs_get_extent_inline_ref_type(eb, iref, 31371b60d2ecSQu Wenruo BTRFS_REF_TYPE_BLOCK); 31381b60d2ecSQu Wenruo if (type == BTRFS_REF_TYPE_INVALID) { 31391b60d2ecSQu Wenruo ret = -EUCLEAN; 31401b60d2ecSQu Wenruo goto out; 31411b60d2ecSQu Wenruo } 31421b60d2ecSQu Wenruo key.type = type; 31431b60d2ecSQu Wenruo key.offset = btrfs_extent_inline_ref_offset(eb, iref); 31441b60d2ecSQu Wenruo } else { 31451b60d2ecSQu Wenruo key.type = iter->cur_key.type; 31461b60d2ecSQu Wenruo key.offset = iter->cur_key.offset; 31471b60d2ecSQu Wenruo } 31481b60d2ecSQu Wenruo 31491b60d2ecSQu Wenruo /* 31501b60d2ecSQu Wenruo * Parent node found and matches current inline ref, no need to 31511b60d2ecSQu Wenruo * rebuild this node for this inline ref 31521b60d2ecSQu Wenruo */ 31531b60d2ecSQu Wenruo if (exist && 31541b60d2ecSQu Wenruo ((key.type == BTRFS_TREE_BLOCK_REF_KEY && 31551b60d2ecSQu Wenruo exist->owner == key.offset) || 31561b60d2ecSQu Wenruo (key.type == BTRFS_SHARED_BLOCK_REF_KEY && 31571b60d2ecSQu Wenruo exist->bytenr == key.offset))) { 31581b60d2ecSQu Wenruo exist = NULL; 31591b60d2ecSQu Wenruo continue; 31601b60d2ecSQu Wenruo } 31611b60d2ecSQu Wenruo 31621b60d2ecSQu Wenruo /* SHARED_BLOCK_REF means key.offset is the parent bytenr */ 31631b60d2ecSQu Wenruo if (key.type == BTRFS_SHARED_BLOCK_REF_KEY) { 31641b60d2ecSQu Wenruo ret = handle_direct_tree_backref(cache, &key, cur); 31651b60d2ecSQu Wenruo if (ret < 0) 31661b60d2ecSQu Wenruo goto out; 31671b60d2ecSQu Wenruo continue; 31681b60d2ecSQu Wenruo } else if (unlikely(key.type == BTRFS_EXTENT_REF_V0_KEY)) { 31691b60d2ecSQu Wenruo ret = -EINVAL; 31701b60d2ecSQu Wenruo btrfs_print_v0_err(fs_info); 31711b60d2ecSQu Wenruo btrfs_handle_fs_error(fs_info, ret, NULL); 31721b60d2ecSQu Wenruo goto out; 31731b60d2ecSQu Wenruo } else if (key.type != BTRFS_TREE_BLOCK_REF_KEY) { 31741b60d2ecSQu Wenruo continue; 31751b60d2ecSQu Wenruo } 31761b60d2ecSQu Wenruo 31771b60d2ecSQu Wenruo /* 31781b60d2ecSQu Wenruo * key.type == BTRFS_TREE_BLOCK_REF_KEY, inline ref offset 31791b60d2ecSQu Wenruo * means the root objectid. We need to search the tree to get 31801b60d2ecSQu Wenruo * its parent bytenr. 31811b60d2ecSQu Wenruo */ 31821b60d2ecSQu Wenruo ret = handle_indirect_tree_backref(cache, path, &key, node_key, 31831b60d2ecSQu Wenruo cur); 31841b60d2ecSQu Wenruo if (ret < 0) 31851b60d2ecSQu Wenruo goto out; 31861b60d2ecSQu Wenruo } 31871b60d2ecSQu Wenruo ret = 0; 31881b60d2ecSQu Wenruo cur->checked = 1; 31891b60d2ecSQu Wenruo WARN_ON(exist); 31901b60d2ecSQu Wenruo out: 31911b60d2ecSQu Wenruo btrfs_backref_iter_release(iter); 31921b60d2ecSQu Wenruo return ret; 31931b60d2ecSQu Wenruo } 3194fc997ed0SQu Wenruo 3195fc997ed0SQu Wenruo /* 3196fc997ed0SQu Wenruo * Finish the upwards linkage created by btrfs_backref_add_tree_node() 3197fc997ed0SQu Wenruo */ 3198fc997ed0SQu Wenruo int btrfs_backref_finish_upper_links(struct btrfs_backref_cache *cache, 3199fc997ed0SQu Wenruo struct btrfs_backref_node *start) 3200fc997ed0SQu Wenruo { 3201fc997ed0SQu Wenruo struct list_head *useless_node = &cache->useless_node; 3202fc997ed0SQu Wenruo struct btrfs_backref_edge *edge; 3203fc997ed0SQu Wenruo struct rb_node *rb_node; 3204fc997ed0SQu Wenruo LIST_HEAD(pending_edge); 3205fc997ed0SQu Wenruo 3206fc997ed0SQu Wenruo ASSERT(start->checked); 3207fc997ed0SQu Wenruo 3208fc997ed0SQu Wenruo /* Insert this node to cache if it's not COW-only */ 3209fc997ed0SQu Wenruo if (!start->cowonly) { 3210fc997ed0SQu Wenruo rb_node = rb_simple_insert(&cache->rb_root, start->bytenr, 3211fc997ed0SQu Wenruo &start->rb_node); 3212fc997ed0SQu Wenruo if (rb_node) 3213fc997ed0SQu Wenruo btrfs_backref_panic(cache->fs_info, start->bytenr, 3214fc997ed0SQu Wenruo -EEXIST); 3215fc997ed0SQu Wenruo list_add_tail(&start->lower, &cache->leaves); 3216fc997ed0SQu Wenruo } 3217fc997ed0SQu Wenruo 3218fc997ed0SQu Wenruo /* 3219fc997ed0SQu Wenruo * Use breadth first search to iterate all related edges. 3220fc997ed0SQu Wenruo * 3221fc997ed0SQu Wenruo * The starting points are all the edges of this node 3222fc997ed0SQu Wenruo */ 3223fc997ed0SQu Wenruo list_for_each_entry(edge, &start->upper, list[LOWER]) 3224fc997ed0SQu Wenruo list_add_tail(&edge->list[UPPER], &pending_edge); 3225fc997ed0SQu Wenruo 3226fc997ed0SQu Wenruo while (!list_empty(&pending_edge)) { 3227fc997ed0SQu Wenruo struct btrfs_backref_node *upper; 3228fc997ed0SQu Wenruo struct btrfs_backref_node *lower; 3229fc997ed0SQu Wenruo 3230fc997ed0SQu Wenruo edge = list_first_entry(&pending_edge, 3231fc997ed0SQu Wenruo struct btrfs_backref_edge, list[UPPER]); 3232fc997ed0SQu Wenruo list_del_init(&edge->list[UPPER]); 3233fc997ed0SQu Wenruo upper = edge->node[UPPER]; 3234fc997ed0SQu Wenruo lower = edge->node[LOWER]; 3235fc997ed0SQu Wenruo 3236fc997ed0SQu Wenruo /* Parent is detached, no need to keep any edges */ 3237fc997ed0SQu Wenruo if (upper->detached) { 3238fc997ed0SQu Wenruo list_del(&edge->list[LOWER]); 3239fc997ed0SQu Wenruo btrfs_backref_free_edge(cache, edge); 3240fc997ed0SQu Wenruo 3241fc997ed0SQu Wenruo /* Lower node is orphan, queue for cleanup */ 3242fc997ed0SQu Wenruo if (list_empty(&lower->upper)) 3243fc997ed0SQu Wenruo list_add(&lower->list, useless_node); 3244fc997ed0SQu Wenruo continue; 3245fc997ed0SQu Wenruo } 3246fc997ed0SQu Wenruo 3247fc997ed0SQu Wenruo /* 3248fc997ed0SQu Wenruo * All new nodes added in current build_backref_tree() haven't 3249fc997ed0SQu Wenruo * been linked to the cache rb tree. 3250fc997ed0SQu Wenruo * So if we have upper->rb_node populated, this means a cache 3251fc997ed0SQu Wenruo * hit. We only need to link the edge, as @upper and all its 3252fc997ed0SQu Wenruo * parents have already been linked. 3253fc997ed0SQu Wenruo */ 3254fc997ed0SQu Wenruo if (!RB_EMPTY_NODE(&upper->rb_node)) { 3255fc997ed0SQu Wenruo if (upper->lowest) { 3256fc997ed0SQu Wenruo list_del_init(&upper->lower); 3257fc997ed0SQu Wenruo upper->lowest = 0; 3258fc997ed0SQu Wenruo } 3259fc997ed0SQu Wenruo 3260fc997ed0SQu Wenruo list_add_tail(&edge->list[UPPER], &upper->lower); 3261fc997ed0SQu Wenruo continue; 3262fc997ed0SQu Wenruo } 3263fc997ed0SQu Wenruo 3264fc997ed0SQu Wenruo /* Sanity check, we shouldn't have any unchecked nodes */ 3265fc997ed0SQu Wenruo if (!upper->checked) { 3266fc997ed0SQu Wenruo ASSERT(0); 3267fc997ed0SQu Wenruo return -EUCLEAN; 3268fc997ed0SQu Wenruo } 3269fc997ed0SQu Wenruo 3270fc997ed0SQu Wenruo /* Sanity check, COW-only node has non-COW-only parent */ 3271fc997ed0SQu Wenruo if (start->cowonly != upper->cowonly) { 3272fc997ed0SQu Wenruo ASSERT(0); 3273fc997ed0SQu Wenruo return -EUCLEAN; 3274fc997ed0SQu Wenruo } 3275fc997ed0SQu Wenruo 3276fc997ed0SQu Wenruo /* Only cache non-COW-only (subvolume trees) tree blocks */ 3277fc997ed0SQu Wenruo if (!upper->cowonly) { 3278fc997ed0SQu Wenruo rb_node = rb_simple_insert(&cache->rb_root, upper->bytenr, 3279fc997ed0SQu Wenruo &upper->rb_node); 3280fc997ed0SQu Wenruo if (rb_node) { 3281fc997ed0SQu Wenruo btrfs_backref_panic(cache->fs_info, 3282fc997ed0SQu Wenruo upper->bytenr, -EEXIST); 3283fc997ed0SQu Wenruo return -EUCLEAN; 3284fc997ed0SQu Wenruo } 3285fc997ed0SQu Wenruo } 3286fc997ed0SQu Wenruo 3287fc997ed0SQu Wenruo list_add_tail(&edge->list[UPPER], &upper->lower); 3288fc997ed0SQu Wenruo 3289fc997ed0SQu Wenruo /* 3290fc997ed0SQu Wenruo * Also queue all the parent edges of this uncached node 3291fc997ed0SQu Wenruo * to finish the upper linkage 3292fc997ed0SQu Wenruo */ 3293fc997ed0SQu Wenruo list_for_each_entry(edge, &upper->upper, list[LOWER]) 3294fc997ed0SQu Wenruo list_add_tail(&edge->list[UPPER], &pending_edge); 3295fc997ed0SQu Wenruo } 3296fc997ed0SQu Wenruo return 0; 3297fc997ed0SQu Wenruo } 32981b23ea18SQu Wenruo 32991b23ea18SQu Wenruo void btrfs_backref_error_cleanup(struct btrfs_backref_cache *cache, 33001b23ea18SQu Wenruo struct btrfs_backref_node *node) 33011b23ea18SQu Wenruo { 33021b23ea18SQu Wenruo struct btrfs_backref_node *lower; 33031b23ea18SQu Wenruo struct btrfs_backref_node *upper; 33041b23ea18SQu Wenruo struct btrfs_backref_edge *edge; 33051b23ea18SQu Wenruo 33061b23ea18SQu Wenruo while (!list_empty(&cache->useless_node)) { 33071b23ea18SQu Wenruo lower = list_first_entry(&cache->useless_node, 33081b23ea18SQu Wenruo struct btrfs_backref_node, list); 33091b23ea18SQu Wenruo list_del_init(&lower->list); 33101b23ea18SQu Wenruo } 33111b23ea18SQu Wenruo while (!list_empty(&cache->pending_edge)) { 33121b23ea18SQu Wenruo edge = list_first_entry(&cache->pending_edge, 33131b23ea18SQu Wenruo struct btrfs_backref_edge, list[UPPER]); 33141b23ea18SQu Wenruo list_del(&edge->list[UPPER]); 33151b23ea18SQu Wenruo list_del(&edge->list[LOWER]); 33161b23ea18SQu Wenruo lower = edge->node[LOWER]; 33171b23ea18SQu Wenruo upper = edge->node[UPPER]; 33181b23ea18SQu Wenruo btrfs_backref_free_edge(cache, edge); 33191b23ea18SQu Wenruo 33201b23ea18SQu Wenruo /* 33211b23ea18SQu Wenruo * Lower is no longer linked to any upper backref nodes and 33221b23ea18SQu Wenruo * isn't in the cache, we can free it ourselves. 33231b23ea18SQu Wenruo */ 33241b23ea18SQu Wenruo if (list_empty(&lower->upper) && 33251b23ea18SQu Wenruo RB_EMPTY_NODE(&lower->rb_node)) 33261b23ea18SQu Wenruo list_add(&lower->list, &cache->useless_node); 33271b23ea18SQu Wenruo 33281b23ea18SQu Wenruo if (!RB_EMPTY_NODE(&upper->rb_node)) 33291b23ea18SQu Wenruo continue; 33301b23ea18SQu Wenruo 33311b23ea18SQu Wenruo /* Add this guy's upper edges to the list to process */ 33321b23ea18SQu Wenruo list_for_each_entry(edge, &upper->upper, list[LOWER]) 33331b23ea18SQu Wenruo list_add_tail(&edge->list[UPPER], 33341b23ea18SQu Wenruo &cache->pending_edge); 33351b23ea18SQu Wenruo if (list_empty(&upper->upper)) 33361b23ea18SQu Wenruo list_add(&upper->list, &cache->useless_node); 33371b23ea18SQu Wenruo } 33381b23ea18SQu Wenruo 33391b23ea18SQu Wenruo while (!list_empty(&cache->useless_node)) { 33401b23ea18SQu Wenruo lower = list_first_entry(&cache->useless_node, 33411b23ea18SQu Wenruo struct btrfs_backref_node, list); 33421b23ea18SQu Wenruo list_del_init(&lower->list); 33431b23ea18SQu Wenruo if (lower == node) 33441b23ea18SQu Wenruo node = NULL; 334549ecc679SJosef Bacik btrfs_backref_drop_node(cache, lower); 33461b23ea18SQu Wenruo } 33471b23ea18SQu Wenruo 33481b23ea18SQu Wenruo btrfs_backref_cleanup_node(cache, node); 33491b23ea18SQu Wenruo ASSERT(list_empty(&cache->useless_node) && 33501b23ea18SQu Wenruo list_empty(&cache->pending_edge)); 33511b23ea18SQu Wenruo } 3352