16cbd5570SChris Mason /* 26cbd5570SChris Mason * Copyright (C) 2007 Oracle. All rights reserved. 36cbd5570SChris Mason * 46cbd5570SChris Mason * This program is free software; you can redistribute it and/or 56cbd5570SChris Mason * modify it under the terms of the GNU General Public 66cbd5570SChris Mason * License v2 as published by the Free Software Foundation. 76cbd5570SChris Mason * 86cbd5570SChris Mason * This program is distributed in the hope that it will be useful, 96cbd5570SChris Mason * but WITHOUT ANY WARRANTY; without even the implied warranty of 106cbd5570SChris Mason * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU 116cbd5570SChris Mason * General Public License for more details. 126cbd5570SChris Mason * 136cbd5570SChris Mason * You should have received a copy of the GNU General Public 146cbd5570SChris Mason * License along with this program; if not, write to the 156cbd5570SChris Mason * Free Software Foundation, Inc., 59 Temple Place - Suite 330, 166cbd5570SChris Mason * Boston, MA 021110-1307, USA. 176cbd5570SChris Mason */ 186cbd5570SChris Mason 1979154b1bSChris Mason #include <linux/fs.h> 2034088780SChris Mason #include <linux/sched.h> 21d3c2fdcfSChris Mason #include <linux/writeback.h> 225f39d397SChris Mason #include <linux/pagemap.h> 235f2cc086SChris Mason #include <linux/blkdev.h> 2479154b1bSChris Mason #include "ctree.h" 2579154b1bSChris Mason #include "disk-io.h" 2679154b1bSChris Mason #include "transaction.h" 27925baeddSChris Mason #include "locking.h" 28e02119d5SChris Mason #include "tree-log.h" 2979154b1bSChris Mason 300f7d52f4SChris Mason #define BTRFS_ROOT_TRANS_TAG 0 310f7d52f4SChris Mason 3280b6794dSChris Mason static noinline void put_transaction(struct btrfs_transaction *transaction) 3379154b1bSChris Mason { 342c90e5d6SChris Mason WARN_ON(transaction->use_count == 0); 3579154b1bSChris Mason transaction->use_count--; 3678fae27eSChris Mason if (transaction->use_count == 0) { 378fd17795SChris Mason list_del_init(&transaction->list); 382c90e5d6SChris Mason memset(transaction, 0, sizeof(*transaction)); 392c90e5d6SChris Mason kmem_cache_free(btrfs_transaction_cachep, transaction); 4079154b1bSChris Mason } 4178fae27eSChris Mason } 4279154b1bSChris Mason 43817d52f8SJosef Bacik static noinline void switch_commit_root(struct btrfs_root *root) 44817d52f8SJosef Bacik { 45817d52f8SJosef Bacik free_extent_buffer(root->commit_root); 46817d52f8SJosef Bacik root->commit_root = btrfs_root_node(root); 47817d52f8SJosef Bacik } 48817d52f8SJosef Bacik 49d352ac68SChris Mason /* 50d352ac68SChris Mason * either allocate a new transaction or hop into the existing one 51d352ac68SChris Mason */ 5280b6794dSChris Mason static noinline int join_transaction(struct btrfs_root *root) 5379154b1bSChris Mason { 5479154b1bSChris Mason struct btrfs_transaction *cur_trans; 5579154b1bSChris Mason cur_trans = root->fs_info->running_transaction; 5679154b1bSChris Mason if (!cur_trans) { 572c90e5d6SChris Mason cur_trans = kmem_cache_alloc(btrfs_transaction_cachep, 582c90e5d6SChris Mason GFP_NOFS); 5979154b1bSChris Mason BUG_ON(!cur_trans); 600f7d52f4SChris Mason root->fs_info->generation++; 6115ee9bc7SJosef Bacik cur_trans->num_writers = 1; 6215ee9bc7SJosef Bacik cur_trans->num_joined = 0; 630f7d52f4SChris Mason cur_trans->transid = root->fs_info->generation; 6479154b1bSChris Mason init_waitqueue_head(&cur_trans->writer_wait); 6579154b1bSChris Mason init_waitqueue_head(&cur_trans->commit_wait); 6679154b1bSChris Mason cur_trans->in_commit = 0; 67f9295749SChris Mason cur_trans->blocked = 0; 68d5719762SChris Mason cur_trans->use_count = 1; 6979154b1bSChris Mason cur_trans->commit_done = 0; 7008607c1bSChris Mason cur_trans->start_time = get_seconds(); 7156bec294SChris Mason 7256bec294SChris Mason cur_trans->delayed_refs.root.rb_node = NULL; 7356bec294SChris Mason cur_trans->delayed_refs.num_entries = 0; 74c3e69d58SChris Mason cur_trans->delayed_refs.num_heads_ready = 0; 75c3e69d58SChris Mason cur_trans->delayed_refs.num_heads = 0; 7656bec294SChris Mason cur_trans->delayed_refs.flushing = 0; 77c3e69d58SChris Mason cur_trans->delayed_refs.run_delayed_start = 0; 7856bec294SChris Mason spin_lock_init(&cur_trans->delayed_refs.lock); 7956bec294SChris Mason 803063d29fSChris Mason INIT_LIST_HEAD(&cur_trans->pending_snapshots); 818fd17795SChris Mason list_add_tail(&cur_trans->list, &root->fs_info->trans_list); 82d1310b2eSChris Mason extent_io_tree_init(&cur_trans->dirty_pages, 835f39d397SChris Mason root->fs_info->btree_inode->i_mapping, 845f39d397SChris Mason GFP_NOFS); 8548ec2cf8SChris Mason spin_lock(&root->fs_info->new_trans_lock); 8648ec2cf8SChris Mason root->fs_info->running_transaction = cur_trans; 8748ec2cf8SChris Mason spin_unlock(&root->fs_info->new_trans_lock); 8815ee9bc7SJosef Bacik } else { 8979154b1bSChris Mason cur_trans->num_writers++; 9015ee9bc7SJosef Bacik cur_trans->num_joined++; 9115ee9bc7SJosef Bacik } 9215ee9bc7SJosef Bacik 9379154b1bSChris Mason return 0; 9479154b1bSChris Mason } 9579154b1bSChris Mason 96d352ac68SChris Mason /* 97d397712bSChris Mason * this does all the record keeping required to make sure that a reference 98d397712bSChris Mason * counted root is properly recorded in a given transaction. This is required 99d397712bSChris Mason * to make sure the old root from before we joined the transaction is deleted 100d397712bSChris Mason * when the transaction commits 101d352ac68SChris Mason */ 1025d4f98a2SYan Zheng static noinline int record_root_in_trans(struct btrfs_trans_handle *trans, 1035d4f98a2SYan Zheng struct btrfs_root *root) 1046702ed49SChris Mason { 1055d4f98a2SYan Zheng if (root->ref_cows && root->last_trans < trans->transid) { 1066702ed49SChris Mason WARN_ON(root == root->fs_info->extent_root); 1075d4f98a2SYan Zheng WARN_ON(root->commit_root != root->node); 1085d4f98a2SYan Zheng 1096702ed49SChris Mason radix_tree_tag_set(&root->fs_info->fs_roots_radix, 1106702ed49SChris Mason (unsigned long)root->root_key.objectid, 1116702ed49SChris Mason BTRFS_ROOT_TRANS_TAG); 1125d4f98a2SYan Zheng root->last_trans = trans->transid; 1135d4f98a2SYan Zheng btrfs_init_reloc_root(trans, root); 1146702ed49SChris Mason } 1155d4f98a2SYan Zheng return 0; 1166702ed49SChris Mason } 1175d4f98a2SYan Zheng 1185d4f98a2SYan Zheng int btrfs_record_root_in_trans(struct btrfs_trans_handle *trans, 1195d4f98a2SYan Zheng struct btrfs_root *root) 1205d4f98a2SYan Zheng { 1215d4f98a2SYan Zheng if (!root->ref_cows) 1225d4f98a2SYan Zheng return 0; 1235d4f98a2SYan Zheng 1245d4f98a2SYan Zheng mutex_lock(&root->fs_info->trans_mutex); 1255d4f98a2SYan Zheng if (root->last_trans == trans->transid) { 1265d4f98a2SYan Zheng mutex_unlock(&root->fs_info->trans_mutex); 1275d4f98a2SYan Zheng return 0; 1285d4f98a2SYan Zheng } 1295d4f98a2SYan Zheng 1305d4f98a2SYan Zheng record_root_in_trans(trans, root); 1315d4f98a2SYan Zheng mutex_unlock(&root->fs_info->trans_mutex); 1326702ed49SChris Mason return 0; 1336702ed49SChris Mason } 1346702ed49SChris Mason 135d352ac68SChris Mason /* wait for commit against the current transaction to become unblocked 136d352ac68SChris Mason * when this is done, it is safe to start a new transaction, but the current 137d352ac68SChris Mason * transaction might not be fully on disk. 138d352ac68SChris Mason */ 13937d1aeeeSChris Mason static void wait_current_trans(struct btrfs_root *root) 14079154b1bSChris Mason { 141f9295749SChris Mason struct btrfs_transaction *cur_trans; 14279154b1bSChris Mason 143f9295749SChris Mason cur_trans = root->fs_info->running_transaction; 14437d1aeeeSChris Mason if (cur_trans && cur_trans->blocked) { 145f9295749SChris Mason DEFINE_WAIT(wait); 146f9295749SChris Mason cur_trans->use_count++; 147f9295749SChris Mason while (1) { 148f9295749SChris Mason prepare_to_wait(&root->fs_info->transaction_wait, &wait, 149f9295749SChris Mason TASK_UNINTERRUPTIBLE); 150f9295749SChris Mason if (cur_trans->blocked) { 151f9295749SChris Mason mutex_unlock(&root->fs_info->trans_mutex); 152f9295749SChris Mason schedule(); 153f9295749SChris Mason mutex_lock(&root->fs_info->trans_mutex); 154f9295749SChris Mason finish_wait(&root->fs_info->transaction_wait, 155f9295749SChris Mason &wait); 156f9295749SChris Mason } else { 157f9295749SChris Mason finish_wait(&root->fs_info->transaction_wait, 158f9295749SChris Mason &wait); 159f9295749SChris Mason break; 160f9295749SChris Mason } 161f9295749SChris Mason } 162f9295749SChris Mason put_transaction(cur_trans); 163f9295749SChris Mason } 16437d1aeeeSChris Mason } 16537d1aeeeSChris Mason 166e02119d5SChris Mason static struct btrfs_trans_handle *start_transaction(struct btrfs_root *root, 1679ca9ee09SSage Weil int num_blocks, int wait) 16837d1aeeeSChris Mason { 16937d1aeeeSChris Mason struct btrfs_trans_handle *h = 17037d1aeeeSChris Mason kmem_cache_alloc(btrfs_trans_handle_cachep, GFP_NOFS); 17137d1aeeeSChris Mason int ret; 17237d1aeeeSChris Mason 17337d1aeeeSChris Mason mutex_lock(&root->fs_info->trans_mutex); 1744bef0848SChris Mason if (!root->fs_info->log_root_recovering && 1754bef0848SChris Mason ((wait == 1 && !root->fs_info->open_ioctl_trans) || wait == 2)) 17637d1aeeeSChris Mason wait_current_trans(root); 17779154b1bSChris Mason ret = join_transaction(root); 17879154b1bSChris Mason BUG_ON(ret); 1790f7d52f4SChris Mason 1806702ed49SChris Mason h->transid = root->fs_info->running_transaction->transid; 18179154b1bSChris Mason h->transaction = root->fs_info->running_transaction; 18279154b1bSChris Mason h->blocks_reserved = num_blocks; 18379154b1bSChris Mason h->blocks_used = 0; 184d2fb3437SYan Zheng h->block_group = 0; 18526b8003fSChris Mason h->alloc_exclude_nr = 0; 18626b8003fSChris Mason h->alloc_exclude_start = 0; 18756bec294SChris Mason h->delayed_ref_updates = 0; 188b7ec40d7SChris Mason 1899ed74f2dSJosef Bacik if (!current->journal_info) 1909ed74f2dSJosef Bacik current->journal_info = h; 1919ed74f2dSJosef Bacik 19279154b1bSChris Mason root->fs_info->running_transaction->use_count++; 1935d4f98a2SYan Zheng record_root_in_trans(h, root); 19479154b1bSChris Mason mutex_unlock(&root->fs_info->trans_mutex); 19579154b1bSChris Mason return h; 19679154b1bSChris Mason } 19779154b1bSChris Mason 198f9295749SChris Mason struct btrfs_trans_handle *btrfs_start_transaction(struct btrfs_root *root, 199f9295749SChris Mason int num_blocks) 200f9295749SChris Mason { 2019ca9ee09SSage Weil return start_transaction(root, num_blocks, 1); 202f9295749SChris Mason } 203f9295749SChris Mason struct btrfs_trans_handle *btrfs_join_transaction(struct btrfs_root *root, 204f9295749SChris Mason int num_blocks) 205f9295749SChris Mason { 2069ca9ee09SSage Weil return start_transaction(root, num_blocks, 0); 207f9295749SChris Mason } 208f9295749SChris Mason 2099ca9ee09SSage Weil struct btrfs_trans_handle *btrfs_start_ioctl_transaction(struct btrfs_root *r, 2109ca9ee09SSage Weil int num_blocks) 2119ca9ee09SSage Weil { 2129ca9ee09SSage Weil return start_transaction(r, num_blocks, 2); 2139ca9ee09SSage Weil } 2149ca9ee09SSage Weil 215d352ac68SChris Mason /* wait for a transaction commit to be fully complete */ 21689ce8a63SChris Mason static noinline int wait_for_commit(struct btrfs_root *root, 21789ce8a63SChris Mason struct btrfs_transaction *commit) 21889ce8a63SChris Mason { 21989ce8a63SChris Mason DEFINE_WAIT(wait); 22089ce8a63SChris Mason mutex_lock(&root->fs_info->trans_mutex); 22189ce8a63SChris Mason while (!commit->commit_done) { 22289ce8a63SChris Mason prepare_to_wait(&commit->commit_wait, &wait, 22389ce8a63SChris Mason TASK_UNINTERRUPTIBLE); 22489ce8a63SChris Mason if (commit->commit_done) 22589ce8a63SChris Mason break; 22689ce8a63SChris Mason mutex_unlock(&root->fs_info->trans_mutex); 22789ce8a63SChris Mason schedule(); 22889ce8a63SChris Mason mutex_lock(&root->fs_info->trans_mutex); 22989ce8a63SChris Mason } 23089ce8a63SChris Mason mutex_unlock(&root->fs_info->trans_mutex); 23189ce8a63SChris Mason finish_wait(&commit->commit_wait, &wait); 23289ce8a63SChris Mason return 0; 23389ce8a63SChris Mason } 23489ce8a63SChris Mason 2355d4f98a2SYan Zheng #if 0 236d352ac68SChris Mason /* 237d397712bSChris Mason * rate limit against the drop_snapshot code. This helps to slow down new 238d397712bSChris Mason * operations if the drop_snapshot code isn't able to keep up. 239d352ac68SChris Mason */ 24037d1aeeeSChris Mason static void throttle_on_drops(struct btrfs_root *root) 241ab78c84dSChris Mason { 242ab78c84dSChris Mason struct btrfs_fs_info *info = root->fs_info; 2432dd3e67bSChris Mason int harder_count = 0; 244ab78c84dSChris Mason 2452dd3e67bSChris Mason harder: 246ab78c84dSChris Mason if (atomic_read(&info->throttles)) { 247ab78c84dSChris Mason DEFINE_WAIT(wait); 248ab78c84dSChris Mason int thr; 249ab78c84dSChris Mason thr = atomic_read(&info->throttle_gen); 250ab78c84dSChris Mason 251ab78c84dSChris Mason do { 252ab78c84dSChris Mason prepare_to_wait(&info->transaction_throttle, 253ab78c84dSChris Mason &wait, TASK_UNINTERRUPTIBLE); 254ab78c84dSChris Mason if (!atomic_read(&info->throttles)) { 255ab78c84dSChris Mason finish_wait(&info->transaction_throttle, &wait); 256ab78c84dSChris Mason break; 257ab78c84dSChris Mason } 258ab78c84dSChris Mason schedule(); 259ab78c84dSChris Mason finish_wait(&info->transaction_throttle, &wait); 260ab78c84dSChris Mason } while (thr == atomic_read(&info->throttle_gen)); 2612dd3e67bSChris Mason harder_count++; 2622dd3e67bSChris Mason 2632dd3e67bSChris Mason if (root->fs_info->total_ref_cache_size > 1 * 1024 * 1024 && 2642dd3e67bSChris Mason harder_count < 2) 2652dd3e67bSChris Mason goto harder; 2662dd3e67bSChris Mason 2672dd3e67bSChris Mason if (root->fs_info->total_ref_cache_size > 5 * 1024 * 1024 && 2682dd3e67bSChris Mason harder_count < 10) 2692dd3e67bSChris Mason goto harder; 2702dd3e67bSChris Mason 2712dd3e67bSChris Mason if (root->fs_info->total_ref_cache_size > 10 * 1024 * 1024 && 2722dd3e67bSChris Mason harder_count < 20) 2732dd3e67bSChris Mason goto harder; 274ab78c84dSChris Mason } 275ab78c84dSChris Mason } 2765d4f98a2SYan Zheng #endif 277ab78c84dSChris Mason 27837d1aeeeSChris Mason void btrfs_throttle(struct btrfs_root *root) 27937d1aeeeSChris Mason { 28037d1aeeeSChris Mason mutex_lock(&root->fs_info->trans_mutex); 2819ca9ee09SSage Weil if (!root->fs_info->open_ioctl_trans) 28237d1aeeeSChris Mason wait_current_trans(root); 28337d1aeeeSChris Mason mutex_unlock(&root->fs_info->trans_mutex); 28437d1aeeeSChris Mason } 28537d1aeeeSChris Mason 28689ce8a63SChris Mason static int __btrfs_end_transaction(struct btrfs_trans_handle *trans, 28789ce8a63SChris Mason struct btrfs_root *root, int throttle) 28879154b1bSChris Mason { 28979154b1bSChris Mason struct btrfs_transaction *cur_trans; 290ab78c84dSChris Mason struct btrfs_fs_info *info = root->fs_info; 291c3e69d58SChris Mason int count = 0; 292d6e4a428SChris Mason 293c3e69d58SChris Mason while (count < 4) { 294c3e69d58SChris Mason unsigned long cur = trans->delayed_ref_updates; 295c3e69d58SChris Mason trans->delayed_ref_updates = 0; 296c3e69d58SChris Mason if (cur && 297c3e69d58SChris Mason trans->transaction->delayed_refs.num_heads_ready > 64) { 298c3e69d58SChris Mason trans->delayed_ref_updates = 0; 299b7ec40d7SChris Mason 300b7ec40d7SChris Mason /* 301b7ec40d7SChris Mason * do a full flush if the transaction is trying 302b7ec40d7SChris Mason * to close 303b7ec40d7SChris Mason */ 304b7ec40d7SChris Mason if (trans->transaction->delayed_refs.flushing) 305b7ec40d7SChris Mason cur = 0; 306c3e69d58SChris Mason btrfs_run_delayed_refs(trans, root, cur); 307c3e69d58SChris Mason } else { 308c3e69d58SChris Mason break; 309c3e69d58SChris Mason } 310c3e69d58SChris Mason count++; 31156bec294SChris Mason } 31256bec294SChris Mason 313ab78c84dSChris Mason mutex_lock(&info->trans_mutex); 314ab78c84dSChris Mason cur_trans = info->running_transaction; 315ccd467d6SChris Mason WARN_ON(cur_trans != trans->transaction); 316d5719762SChris Mason WARN_ON(cur_trans->num_writers < 1); 317ccd467d6SChris Mason cur_trans->num_writers--; 31889ce8a63SChris Mason 31979154b1bSChris Mason if (waitqueue_active(&cur_trans->writer_wait)) 32079154b1bSChris Mason wake_up(&cur_trans->writer_wait); 32179154b1bSChris Mason put_transaction(cur_trans); 322ab78c84dSChris Mason mutex_unlock(&info->trans_mutex); 3239ed74f2dSJosef Bacik 3249ed74f2dSJosef Bacik if (current->journal_info == trans) 3259ed74f2dSJosef Bacik current->journal_info = NULL; 326d6025579SChris Mason memset(trans, 0, sizeof(*trans)); 3272c90e5d6SChris Mason kmem_cache_free(btrfs_trans_handle_cachep, trans); 328ab78c84dSChris Mason 32979154b1bSChris Mason return 0; 33079154b1bSChris Mason } 33179154b1bSChris Mason 33289ce8a63SChris Mason int btrfs_end_transaction(struct btrfs_trans_handle *trans, 33389ce8a63SChris Mason struct btrfs_root *root) 33489ce8a63SChris Mason { 33589ce8a63SChris Mason return __btrfs_end_transaction(trans, root, 0); 33689ce8a63SChris Mason } 33789ce8a63SChris Mason 33889ce8a63SChris Mason int btrfs_end_transaction_throttle(struct btrfs_trans_handle *trans, 33989ce8a63SChris Mason struct btrfs_root *root) 34089ce8a63SChris Mason { 34189ce8a63SChris Mason return __btrfs_end_transaction(trans, root, 1); 34289ce8a63SChris Mason } 34389ce8a63SChris Mason 344d352ac68SChris Mason /* 345d352ac68SChris Mason * when btree blocks are allocated, they have some corresponding bits set for 346d352ac68SChris Mason * them in one of two extent_io trees. This is used to make sure all of 347*690587d1SChris Mason * those extents are sent to disk but does not wait on them 348d352ac68SChris Mason */ 349*690587d1SChris Mason int btrfs_write_marked_extents(struct btrfs_root *root, 350d0c803c4SChris Mason struct extent_io_tree *dirty_pages) 35179154b1bSChris Mason { 3527c4452b9SChris Mason int ret; 353777e6bd7SChris Mason int err = 0; 3547c4452b9SChris Mason int werr = 0; 3557c4452b9SChris Mason struct page *page; 3567c4452b9SChris Mason struct inode *btree_inode = root->fs_info->btree_inode; 357777e6bd7SChris Mason u64 start = 0; 3585f39d397SChris Mason u64 end; 3595f39d397SChris Mason unsigned long index; 3607c4452b9SChris Mason 3617c4452b9SChris Mason while (1) { 362777e6bd7SChris Mason ret = find_first_extent_bit(dirty_pages, start, &start, &end, 3635f39d397SChris Mason EXTENT_DIRTY); 3645f39d397SChris Mason if (ret) 3657c4452b9SChris Mason break; 3665f39d397SChris Mason while (start <= end) { 367777e6bd7SChris Mason cond_resched(); 368777e6bd7SChris Mason 3695f39d397SChris Mason index = start >> PAGE_CACHE_SHIFT; 37035ebb934SChris Mason start = (u64)(index + 1) << PAGE_CACHE_SHIFT; 3714bef0848SChris Mason page = find_get_page(btree_inode->i_mapping, index); 3727c4452b9SChris Mason if (!page) 3737c4452b9SChris Mason continue; 3744bef0848SChris Mason 3754bef0848SChris Mason btree_lock_page_hook(page); 3764bef0848SChris Mason if (!page->mapping) { 3774bef0848SChris Mason unlock_page(page); 3784bef0848SChris Mason page_cache_release(page); 3794bef0848SChris Mason continue; 3804bef0848SChris Mason } 3814bef0848SChris Mason 3826702ed49SChris Mason if (PageWriteback(page)) { 3836702ed49SChris Mason if (PageDirty(page)) 3846702ed49SChris Mason wait_on_page_writeback(page); 3856702ed49SChris Mason else { 3866702ed49SChris Mason unlock_page(page); 3876702ed49SChris Mason page_cache_release(page); 3886702ed49SChris Mason continue; 3896702ed49SChris Mason } 3906702ed49SChris Mason } 3917c4452b9SChris Mason err = write_one_page(page, 0); 3927c4452b9SChris Mason if (err) 3937c4452b9SChris Mason werr = err; 3947c4452b9SChris Mason page_cache_release(page); 3957c4452b9SChris Mason } 3967c4452b9SChris Mason } 397*690587d1SChris Mason if (err) 398*690587d1SChris Mason werr = err; 399*690587d1SChris Mason return werr; 400*690587d1SChris Mason } 401*690587d1SChris Mason 402*690587d1SChris Mason /* 403*690587d1SChris Mason * when btree blocks are allocated, they have some corresponding bits set for 404*690587d1SChris Mason * them in one of two extent_io trees. This is used to make sure all of 405*690587d1SChris Mason * those extents are on disk for transaction or log commit. We wait 406*690587d1SChris Mason * on all the pages and clear them from the dirty pages state tree 407*690587d1SChris Mason */ 408*690587d1SChris Mason int btrfs_wait_marked_extents(struct btrfs_root *root, 409*690587d1SChris Mason struct extent_io_tree *dirty_pages) 410*690587d1SChris Mason { 411*690587d1SChris Mason int ret; 412*690587d1SChris Mason int err = 0; 413*690587d1SChris Mason int werr = 0; 414*690587d1SChris Mason struct page *page; 415*690587d1SChris Mason struct inode *btree_inode = root->fs_info->btree_inode; 416*690587d1SChris Mason u64 start = 0; 417*690587d1SChris Mason u64 end; 418*690587d1SChris Mason unsigned long index; 419*690587d1SChris Mason 420777e6bd7SChris Mason while (1) { 421777e6bd7SChris Mason ret = find_first_extent_bit(dirty_pages, 0, &start, &end, 422777e6bd7SChris Mason EXTENT_DIRTY); 423777e6bd7SChris Mason if (ret) 424777e6bd7SChris Mason break; 425777e6bd7SChris Mason 426777e6bd7SChris Mason clear_extent_dirty(dirty_pages, start, end, GFP_NOFS); 427777e6bd7SChris Mason while (start <= end) { 428777e6bd7SChris Mason index = start >> PAGE_CACHE_SHIFT; 429777e6bd7SChris Mason start = (u64)(index + 1) << PAGE_CACHE_SHIFT; 430777e6bd7SChris Mason page = find_get_page(btree_inode->i_mapping, index); 431777e6bd7SChris Mason if (!page) 432777e6bd7SChris Mason continue; 433777e6bd7SChris Mason if (PageDirty(page)) { 4344bef0848SChris Mason btree_lock_page_hook(page); 4354bef0848SChris Mason wait_on_page_writeback(page); 436777e6bd7SChris Mason err = write_one_page(page, 0); 437777e6bd7SChris Mason if (err) 438777e6bd7SChris Mason werr = err; 439777e6bd7SChris Mason } 440777e6bd7SChris Mason wait_on_page_writeback(page); 441777e6bd7SChris Mason page_cache_release(page); 442777e6bd7SChris Mason cond_resched(); 443777e6bd7SChris Mason } 444777e6bd7SChris Mason } 4457c4452b9SChris Mason if (err) 4467c4452b9SChris Mason werr = err; 4477c4452b9SChris Mason return werr; 44879154b1bSChris Mason } 44979154b1bSChris Mason 450*690587d1SChris Mason /* 451*690587d1SChris Mason * when btree blocks are allocated, they have some corresponding bits set for 452*690587d1SChris Mason * them in one of two extent_io trees. This is used to make sure all of 453*690587d1SChris Mason * those extents are on disk for transaction or log commit 454*690587d1SChris Mason */ 455*690587d1SChris Mason int btrfs_write_and_wait_marked_extents(struct btrfs_root *root, 456*690587d1SChris Mason struct extent_io_tree *dirty_pages) 457*690587d1SChris Mason { 458*690587d1SChris Mason int ret; 459*690587d1SChris Mason int ret2; 460*690587d1SChris Mason 461*690587d1SChris Mason ret = btrfs_write_marked_extents(root, dirty_pages); 462*690587d1SChris Mason ret2 = btrfs_wait_marked_extents(root, dirty_pages); 463*690587d1SChris Mason return ret || ret2; 464*690587d1SChris Mason } 465*690587d1SChris Mason 466d0c803c4SChris Mason int btrfs_write_and_wait_transaction(struct btrfs_trans_handle *trans, 467d0c803c4SChris Mason struct btrfs_root *root) 468d0c803c4SChris Mason { 469d0c803c4SChris Mason if (!trans || !trans->transaction) { 470d0c803c4SChris Mason struct inode *btree_inode; 471d0c803c4SChris Mason btree_inode = root->fs_info->btree_inode; 472d0c803c4SChris Mason return filemap_write_and_wait(btree_inode->i_mapping); 473d0c803c4SChris Mason } 474d0c803c4SChris Mason return btrfs_write_and_wait_marked_extents(root, 475d0c803c4SChris Mason &trans->transaction->dirty_pages); 476d0c803c4SChris Mason } 477d0c803c4SChris Mason 478d352ac68SChris Mason /* 479d352ac68SChris Mason * this is used to update the root pointer in the tree of tree roots. 480d352ac68SChris Mason * 481d352ac68SChris Mason * But, in the case of the extent allocation tree, updating the root 482d352ac68SChris Mason * pointer may allocate blocks which may change the root of the extent 483d352ac68SChris Mason * allocation tree. 484d352ac68SChris Mason * 485d352ac68SChris Mason * So, this loops and repeats and makes sure the cowonly root didn't 486d352ac68SChris Mason * change while the root pointer was being updated in the metadata. 487d352ac68SChris Mason */ 4880b86a832SChris Mason static int update_cowonly_root(struct btrfs_trans_handle *trans, 48979154b1bSChris Mason struct btrfs_root *root) 49079154b1bSChris Mason { 49179154b1bSChris Mason int ret; 4920b86a832SChris Mason u64 old_root_bytenr; 4930b86a832SChris Mason struct btrfs_root *tree_root = root->fs_info->tree_root; 49479154b1bSChris Mason 4950b86a832SChris Mason btrfs_write_dirty_block_groups(trans, root); 49656bec294SChris Mason 49779154b1bSChris Mason while (1) { 4980b86a832SChris Mason old_root_bytenr = btrfs_root_bytenr(&root->root_item); 4990b86a832SChris Mason if (old_root_bytenr == root->node->start) 50079154b1bSChris Mason break; 50187ef2bb4SChris Mason 5025d4f98a2SYan Zheng btrfs_set_root_node(&root->root_item, root->node); 50379154b1bSChris Mason ret = btrfs_update_root(trans, tree_root, 5040b86a832SChris Mason &root->root_key, 5050b86a832SChris Mason &root->root_item); 50679154b1bSChris Mason BUG_ON(ret); 50756bec294SChris Mason 5084a8c9a62SYan Zheng ret = btrfs_write_dirty_block_groups(trans, root); 50956bec294SChris Mason BUG_ON(ret); 5100b86a832SChris Mason } 511276e680dSYan Zheng 512276e680dSYan Zheng if (root != root->fs_info->extent_root) 513817d52f8SJosef Bacik switch_commit_root(root); 514276e680dSYan Zheng 5150b86a832SChris Mason return 0; 5160b86a832SChris Mason } 5170b86a832SChris Mason 518d352ac68SChris Mason /* 519d352ac68SChris Mason * update all the cowonly tree roots on disk 520d352ac68SChris Mason */ 5215d4f98a2SYan Zheng static noinline int commit_cowonly_roots(struct btrfs_trans_handle *trans, 5220b86a832SChris Mason struct btrfs_root *root) 5230b86a832SChris Mason { 5240b86a832SChris Mason struct btrfs_fs_info *fs_info = root->fs_info; 5250b86a832SChris Mason struct list_head *next; 52684234f3aSYan Zheng struct extent_buffer *eb; 52756bec294SChris Mason int ret; 52884234f3aSYan Zheng 52956bec294SChris Mason ret = btrfs_run_delayed_refs(trans, root, (unsigned long)-1); 53056bec294SChris Mason BUG_ON(ret); 53187ef2bb4SChris Mason 53284234f3aSYan Zheng eb = btrfs_lock_root_node(fs_info->tree_root); 5339fa8cfe7SChris Mason btrfs_cow_block(trans, fs_info->tree_root, eb, NULL, 0, &eb); 53484234f3aSYan Zheng btrfs_tree_unlock(eb); 53584234f3aSYan Zheng free_extent_buffer(eb); 5360b86a832SChris Mason 53756bec294SChris Mason ret = btrfs_run_delayed_refs(trans, root, (unsigned long)-1); 53856bec294SChris Mason BUG_ON(ret); 53987ef2bb4SChris Mason 5400b86a832SChris Mason while (!list_empty(&fs_info->dirty_cowonly_roots)) { 5410b86a832SChris Mason next = fs_info->dirty_cowonly_roots.next; 5420b86a832SChris Mason list_del_init(next); 5430b86a832SChris Mason root = list_entry(next, struct btrfs_root, dirty_list); 54487ef2bb4SChris Mason 5450b86a832SChris Mason update_cowonly_root(trans, root); 54679154b1bSChris Mason } 547276e680dSYan Zheng 548276e680dSYan Zheng down_write(&fs_info->extent_commit_sem); 549276e680dSYan Zheng switch_commit_root(fs_info->extent_root); 550276e680dSYan Zheng up_write(&fs_info->extent_commit_sem); 551276e680dSYan Zheng 55279154b1bSChris Mason return 0; 55379154b1bSChris Mason } 55479154b1bSChris Mason 555d352ac68SChris Mason /* 556d352ac68SChris Mason * dead roots are old snapshots that need to be deleted. This allocates 557d352ac68SChris Mason * a dirty root struct and adds it into the list of dead roots that need to 558d352ac68SChris Mason * be deleted 559d352ac68SChris Mason */ 5605d4f98a2SYan Zheng int btrfs_add_dead_root(struct btrfs_root *root) 5615eda7b5eSChris Mason { 562b48652c1SYan Zheng mutex_lock(&root->fs_info->trans_mutex); 5635d4f98a2SYan Zheng list_add(&root->root_list, &root->fs_info->dead_roots); 564b48652c1SYan Zheng mutex_unlock(&root->fs_info->trans_mutex); 5655eda7b5eSChris Mason return 0; 5665eda7b5eSChris Mason } 5675eda7b5eSChris Mason 568d352ac68SChris Mason /* 5695d4f98a2SYan Zheng * update all the cowonly tree roots on disk 570d352ac68SChris Mason */ 5715d4f98a2SYan Zheng static noinline int commit_fs_roots(struct btrfs_trans_handle *trans, 5725d4f98a2SYan Zheng struct btrfs_root *root) 5730f7d52f4SChris Mason { 5740f7d52f4SChris Mason struct btrfs_root *gang[8]; 5755d4f98a2SYan Zheng struct btrfs_fs_info *fs_info = root->fs_info; 5760f7d52f4SChris Mason int i; 5770f7d52f4SChris Mason int ret; 57854aa1f4dSChris Mason int err = 0; 57954aa1f4dSChris Mason 5800f7d52f4SChris Mason while (1) { 5815d4f98a2SYan Zheng ret = radix_tree_gang_lookup_tag(&fs_info->fs_roots_radix, 5825d4f98a2SYan Zheng (void **)gang, 0, 5830f7d52f4SChris Mason ARRAY_SIZE(gang), 5840f7d52f4SChris Mason BTRFS_ROOT_TRANS_TAG); 5850f7d52f4SChris Mason if (ret == 0) 5860f7d52f4SChris Mason break; 5870f7d52f4SChris Mason for (i = 0; i < ret; i++) { 5880f7d52f4SChris Mason root = gang[i]; 5895d4f98a2SYan Zheng radix_tree_tag_clear(&fs_info->fs_roots_radix, 5902619ba1fSChris Mason (unsigned long)root->root_key.objectid, 5910f7d52f4SChris Mason BTRFS_ROOT_TRANS_TAG); 59231153d81SYan Zheng 593e02119d5SChris Mason btrfs_free_log(trans, root); 5945d4f98a2SYan Zheng btrfs_update_reloc_root(trans, root); 595e02119d5SChris Mason 596978d910dSYan Zheng if (root->commit_root != root->node) { 597817d52f8SJosef Bacik switch_commit_root(root); 598978d910dSYan Zheng btrfs_set_root_node(&root->root_item, 599978d910dSYan Zheng root->node); 600978d910dSYan Zheng } 60131153d81SYan Zheng 6025d4f98a2SYan Zheng err = btrfs_update_root(trans, fs_info->tree_root, 6030f7d52f4SChris Mason &root->root_key, 6040f7d52f4SChris Mason &root->root_item); 60554aa1f4dSChris Mason if (err) 60654aa1f4dSChris Mason break; 6070f7d52f4SChris Mason } 6089f3a7427SChris Mason } 60954aa1f4dSChris Mason return err; 6100f7d52f4SChris Mason } 6110f7d52f4SChris Mason 612d352ac68SChris Mason /* 613d352ac68SChris Mason * defrag a given btree. If cacheonly == 1, this won't read from the disk, 614d352ac68SChris Mason * otherwise every leaf in the btree is read and defragged. 615d352ac68SChris Mason */ 616e9d0b13bSChris Mason int btrfs_defrag_root(struct btrfs_root *root, int cacheonly) 617e9d0b13bSChris Mason { 618e9d0b13bSChris Mason struct btrfs_fs_info *info = root->fs_info; 619e9d0b13bSChris Mason int ret; 620e9d0b13bSChris Mason struct btrfs_trans_handle *trans; 621d3c2fdcfSChris Mason unsigned long nr; 622e9d0b13bSChris Mason 623a2135011SChris Mason smp_mb(); 624e9d0b13bSChris Mason if (root->defrag_running) 625e9d0b13bSChris Mason return 0; 626e9d0b13bSChris Mason trans = btrfs_start_transaction(root, 1); 6276b80053dSChris Mason while (1) { 628e9d0b13bSChris Mason root->defrag_running = 1; 629e9d0b13bSChris Mason ret = btrfs_defrag_leaves(trans, root, cacheonly); 630d3c2fdcfSChris Mason nr = trans->blocks_used; 631e9d0b13bSChris Mason btrfs_end_transaction(trans, root); 632d3c2fdcfSChris Mason btrfs_btree_balance_dirty(info->tree_root, nr); 633e9d0b13bSChris Mason cond_resched(); 634e9d0b13bSChris Mason 635e9d0b13bSChris Mason trans = btrfs_start_transaction(root, 1); 6363f157a2fSChris Mason if (root->fs_info->closing || ret != -EAGAIN) 637e9d0b13bSChris Mason break; 638e9d0b13bSChris Mason } 639e9d0b13bSChris Mason root->defrag_running = 0; 640a2135011SChris Mason smp_mb(); 641e9d0b13bSChris Mason btrfs_end_transaction(trans, root); 642e9d0b13bSChris Mason return 0; 643e9d0b13bSChris Mason } 644e9d0b13bSChris Mason 6452c47e605SYan Zheng #if 0 646d352ac68SChris Mason /* 647b7ec40d7SChris Mason * when dropping snapshots, we generate a ton of delayed refs, and it makes 648b7ec40d7SChris Mason * sense not to join the transaction while it is trying to flush the current 649b7ec40d7SChris Mason * queue of delayed refs out. 650b7ec40d7SChris Mason * 651b7ec40d7SChris Mason * This is used by the drop snapshot code only 652b7ec40d7SChris Mason */ 653b7ec40d7SChris Mason static noinline int wait_transaction_pre_flush(struct btrfs_fs_info *info) 654b7ec40d7SChris Mason { 655b7ec40d7SChris Mason DEFINE_WAIT(wait); 656b7ec40d7SChris Mason 657b7ec40d7SChris Mason mutex_lock(&info->trans_mutex); 658b7ec40d7SChris Mason while (info->running_transaction && 659b7ec40d7SChris Mason info->running_transaction->delayed_refs.flushing) { 660b7ec40d7SChris Mason prepare_to_wait(&info->transaction_wait, &wait, 661b7ec40d7SChris Mason TASK_UNINTERRUPTIBLE); 662b7ec40d7SChris Mason mutex_unlock(&info->trans_mutex); 66359bc5c75SChris Mason 664b7ec40d7SChris Mason schedule(); 66559bc5c75SChris Mason 666b7ec40d7SChris Mason mutex_lock(&info->trans_mutex); 667b7ec40d7SChris Mason finish_wait(&info->transaction_wait, &wait); 668b7ec40d7SChris Mason } 669b7ec40d7SChris Mason mutex_unlock(&info->trans_mutex); 670b7ec40d7SChris Mason return 0; 671b7ec40d7SChris Mason } 672b7ec40d7SChris Mason 673b7ec40d7SChris Mason /* 674d352ac68SChris Mason * Given a list of roots that need to be deleted, call btrfs_drop_snapshot on 675d352ac68SChris Mason * all of them 676d352ac68SChris Mason */ 6775d4f98a2SYan Zheng int btrfs_drop_dead_root(struct btrfs_root *root) 6780f7d52f4SChris Mason { 6790f7d52f4SChris Mason struct btrfs_trans_handle *trans; 6805d4f98a2SYan Zheng struct btrfs_root *tree_root = root->fs_info->tree_root; 681d3c2fdcfSChris Mason unsigned long nr; 6825d4f98a2SYan Zheng int ret; 68358176a96SJosef Bacik 6849f3a7427SChris Mason while (1) { 685b7ec40d7SChris Mason /* 686b7ec40d7SChris Mason * we don't want to jump in and create a bunch of 687b7ec40d7SChris Mason * delayed refs if the transaction is starting to close 688b7ec40d7SChris Mason */ 689b7ec40d7SChris Mason wait_transaction_pre_flush(tree_root->fs_info); 6900f7d52f4SChris Mason trans = btrfs_start_transaction(tree_root, 1); 691b7ec40d7SChris Mason 692b7ec40d7SChris Mason /* 693b7ec40d7SChris Mason * we've joined a transaction, make sure it isn't 694b7ec40d7SChris Mason * closing right now 695b7ec40d7SChris Mason */ 696b7ec40d7SChris Mason if (trans->transaction->delayed_refs.flushing) { 697b7ec40d7SChris Mason btrfs_end_transaction(trans, tree_root); 698b7ec40d7SChris Mason continue; 699b7ec40d7SChris Mason } 700b7ec40d7SChris Mason 7015d4f98a2SYan Zheng ret = btrfs_drop_snapshot(trans, root); 702d397712bSChris Mason if (ret != -EAGAIN) 7039f3a7427SChris Mason break; 70458176a96SJosef Bacik 7055d4f98a2SYan Zheng ret = btrfs_update_root(trans, tree_root, 7065d4f98a2SYan Zheng &root->root_key, 7075d4f98a2SYan Zheng &root->root_item); 7085d4f98a2SYan Zheng if (ret) 70954aa1f4dSChris Mason break; 710bcc63abbSYan 711d3c2fdcfSChris Mason nr = trans->blocks_used; 7120f7d52f4SChris Mason ret = btrfs_end_transaction(trans, tree_root); 7130f7d52f4SChris Mason BUG_ON(ret); 7145eda7b5eSChris Mason 715d3c2fdcfSChris Mason btrfs_btree_balance_dirty(tree_root, nr); 7164dc11904SChris Mason cond_resched(); 7170f7d52f4SChris Mason } 7185d4f98a2SYan Zheng BUG_ON(ret); 7195d4f98a2SYan Zheng 7205d4f98a2SYan Zheng ret = btrfs_del_root(trans, tree_root, &root->root_key); 7215d4f98a2SYan Zheng BUG_ON(ret); 7225d4f98a2SYan Zheng 7235d4f98a2SYan Zheng nr = trans->blocks_used; 7245d4f98a2SYan Zheng ret = btrfs_end_transaction(trans, tree_root); 7255d4f98a2SYan Zheng BUG_ON(ret); 7265d4f98a2SYan Zheng 7275d4f98a2SYan Zheng free_extent_buffer(root->node); 7285d4f98a2SYan Zheng free_extent_buffer(root->commit_root); 7295d4f98a2SYan Zheng kfree(root); 7305d4f98a2SYan Zheng 7315d4f98a2SYan Zheng btrfs_btree_balance_dirty(tree_root, nr); 73254aa1f4dSChris Mason return ret; 7330f7d52f4SChris Mason } 7342c47e605SYan Zheng #endif 7350f7d52f4SChris Mason 736d352ac68SChris Mason /* 737d352ac68SChris Mason * new snapshots need to be created at a very specific time in the 738d352ac68SChris Mason * transaction commit. This does the actual creation 739d352ac68SChris Mason */ 74080b6794dSChris Mason static noinline int create_pending_snapshot(struct btrfs_trans_handle *trans, 7413063d29fSChris Mason struct btrfs_fs_info *fs_info, 7423063d29fSChris Mason struct btrfs_pending_snapshot *pending) 7433063d29fSChris Mason { 7443063d29fSChris Mason struct btrfs_key key; 74580b6794dSChris Mason struct btrfs_root_item *new_root_item; 7463063d29fSChris Mason struct btrfs_root *tree_root = fs_info->tree_root; 7473063d29fSChris Mason struct btrfs_root *root = pending->root; 7483063d29fSChris Mason struct extent_buffer *tmp; 749925baeddSChris Mason struct extent_buffer *old; 7503063d29fSChris Mason int ret; 7513063d29fSChris Mason u64 objectid; 7523063d29fSChris Mason 75380b6794dSChris Mason new_root_item = kmalloc(sizeof(*new_root_item), GFP_NOFS); 75480b6794dSChris Mason if (!new_root_item) { 75580b6794dSChris Mason ret = -ENOMEM; 75680b6794dSChris Mason goto fail; 75780b6794dSChris Mason } 7583063d29fSChris Mason ret = btrfs_find_free_objectid(trans, tree_root, 0, &objectid); 7593063d29fSChris Mason if (ret) 7603063d29fSChris Mason goto fail; 7613063d29fSChris Mason 7625d4f98a2SYan Zheng record_root_in_trans(trans, root); 76380ff3856SYan Zheng btrfs_set_root_last_snapshot(&root->root_item, trans->transid); 76480b6794dSChris Mason memcpy(new_root_item, &root->root_item, sizeof(*new_root_item)); 7653063d29fSChris Mason 7663063d29fSChris Mason key.objectid = objectid; 7671c4850e2SYan, Zheng /* record when the snapshot was created in key.offset */ 7681c4850e2SYan, Zheng key.offset = trans->transid; 7693063d29fSChris Mason btrfs_set_key_type(&key, BTRFS_ROOT_ITEM_KEY); 7703063d29fSChris Mason 771925baeddSChris Mason old = btrfs_lock_root_node(root); 7729fa8cfe7SChris Mason btrfs_cow_block(trans, root, old, NULL, 0, &old); 7735d4f98a2SYan Zheng btrfs_set_lock_blocking(old); 7743063d29fSChris Mason 775925baeddSChris Mason btrfs_copy_root(trans, root, old, &tmp, objectid); 776925baeddSChris Mason btrfs_tree_unlock(old); 777925baeddSChris Mason free_extent_buffer(old); 7783063d29fSChris Mason 7795d4f98a2SYan Zheng btrfs_set_root_node(new_root_item, tmp); 7803063d29fSChris Mason ret = btrfs_insert_root(trans, root->fs_info->tree_root, &key, 78180b6794dSChris Mason new_root_item); 782925baeddSChris Mason btrfs_tree_unlock(tmp); 7833063d29fSChris Mason free_extent_buffer(tmp); 7843063d29fSChris Mason if (ret) 7853063d29fSChris Mason goto fail; 7863063d29fSChris Mason 7873de4586cSChris Mason key.offset = (u64)-1; 7883de4586cSChris Mason memcpy(&pending->root_key, &key, sizeof(key)); 7893de4586cSChris Mason fail: 7903de4586cSChris Mason kfree(new_root_item); 7919ed74f2dSJosef Bacik btrfs_unreserve_metadata_space(root, 6); 7923de4586cSChris Mason return ret; 7933de4586cSChris Mason } 7943de4586cSChris Mason 7953de4586cSChris Mason static noinline int finish_pending_snapshot(struct btrfs_fs_info *fs_info, 7963de4586cSChris Mason struct btrfs_pending_snapshot *pending) 7973de4586cSChris Mason { 7983de4586cSChris Mason int ret; 7993de4586cSChris Mason int namelen; 8003de4586cSChris Mason u64 index = 0; 8013de4586cSChris Mason struct btrfs_trans_handle *trans; 8023de4586cSChris Mason struct inode *parent_inode; 8033de4586cSChris Mason struct inode *inode; 8040660b5afSChris Mason struct btrfs_root *parent_root; 8053de4586cSChris Mason 8063394e160SChris Mason parent_inode = pending->dentry->d_parent->d_inode; 8070660b5afSChris Mason parent_root = BTRFS_I(parent_inode)->root; 808180591bcSYan Zheng trans = btrfs_join_transaction(parent_root, 1); 8093de4586cSChris Mason 8103063d29fSChris Mason /* 8113063d29fSChris Mason * insert the directory item 8123063d29fSChris Mason */ 8133b96362cSSven Wegener namelen = strlen(pending->name); 8143de4586cSChris Mason ret = btrfs_set_inode_index(parent_inode, &index); 8150660b5afSChris Mason ret = btrfs_insert_dir_item(trans, parent_root, 8163b96362cSSven Wegener pending->name, namelen, 8173de4586cSChris Mason parent_inode->i_ino, 8183de4586cSChris Mason &pending->root_key, BTRFS_FT_DIR, index); 8193063d29fSChris Mason 8203063d29fSChris Mason if (ret) 8213063d29fSChris Mason goto fail; 8220660b5afSChris Mason 82352c26179SYan Zheng btrfs_i_size_write(parent_inode, parent_inode->i_size + namelen * 2); 82452c26179SYan Zheng ret = btrfs_update_inode(trans, parent_root, parent_inode); 82552c26179SYan Zheng BUG_ON(ret); 82652c26179SYan Zheng 8270660b5afSChris Mason ret = btrfs_add_root_ref(trans, parent_root->fs_info->tree_root, 8280660b5afSChris Mason pending->root_key.objectid, 8290660b5afSChris Mason parent_root->root_key.objectid, 8300660b5afSChris Mason parent_inode->i_ino, index, pending->name, 8310660b5afSChris Mason namelen); 8320660b5afSChris Mason 8330660b5afSChris Mason BUG_ON(ret); 8340660b5afSChris Mason 8353de4586cSChris Mason inode = btrfs_lookup_dentry(parent_inode, pending->dentry); 8363de4586cSChris Mason d_instantiate(pending->dentry, inode); 8373063d29fSChris Mason fail: 8383de4586cSChris Mason btrfs_end_transaction(trans, fs_info->fs_root); 8393063d29fSChris Mason return ret; 8403063d29fSChris Mason } 8413063d29fSChris Mason 842d352ac68SChris Mason /* 843d352ac68SChris Mason * create all the snapshots we've scheduled for creation 844d352ac68SChris Mason */ 84580b6794dSChris Mason static noinline int create_pending_snapshots(struct btrfs_trans_handle *trans, 8463063d29fSChris Mason struct btrfs_fs_info *fs_info) 8473063d29fSChris Mason { 8483063d29fSChris Mason struct btrfs_pending_snapshot *pending; 8493063d29fSChris Mason struct list_head *head = &trans->transaction->pending_snapshots; 8503de4586cSChris Mason int ret; 8513de4586cSChris Mason 852c6e30871SQinghuang Feng list_for_each_entry(pending, head, list) { 8533de4586cSChris Mason ret = create_pending_snapshot(trans, fs_info, pending); 8543de4586cSChris Mason BUG_ON(ret); 8553de4586cSChris Mason } 8563de4586cSChris Mason return 0; 8573de4586cSChris Mason } 8583de4586cSChris Mason 8593de4586cSChris Mason static noinline int finish_pending_snapshots(struct btrfs_trans_handle *trans, 8603de4586cSChris Mason struct btrfs_fs_info *fs_info) 8613de4586cSChris Mason { 8623de4586cSChris Mason struct btrfs_pending_snapshot *pending; 8633de4586cSChris Mason struct list_head *head = &trans->transaction->pending_snapshots; 8643063d29fSChris Mason int ret; 8653063d29fSChris Mason 8663063d29fSChris Mason while (!list_empty(head)) { 8673063d29fSChris Mason pending = list_entry(head->next, 8683063d29fSChris Mason struct btrfs_pending_snapshot, list); 8693de4586cSChris Mason ret = finish_pending_snapshot(fs_info, pending); 8703063d29fSChris Mason BUG_ON(ret); 8713063d29fSChris Mason list_del(&pending->list); 8723063d29fSChris Mason kfree(pending->name); 8733063d29fSChris Mason kfree(pending); 8743063d29fSChris Mason } 875dc17ff8fSChris Mason return 0; 876dc17ff8fSChris Mason } 877dc17ff8fSChris Mason 8785d4f98a2SYan Zheng static void update_super_roots(struct btrfs_root *root) 8795d4f98a2SYan Zheng { 8805d4f98a2SYan Zheng struct btrfs_root_item *root_item; 8815d4f98a2SYan Zheng struct btrfs_super_block *super; 8825d4f98a2SYan Zheng 8835d4f98a2SYan Zheng super = &root->fs_info->super_copy; 8845d4f98a2SYan Zheng 8855d4f98a2SYan Zheng root_item = &root->fs_info->chunk_root->root_item; 8865d4f98a2SYan Zheng super->chunk_root = root_item->bytenr; 8875d4f98a2SYan Zheng super->chunk_root_generation = root_item->generation; 8885d4f98a2SYan Zheng super->chunk_root_level = root_item->level; 8895d4f98a2SYan Zheng 8905d4f98a2SYan Zheng root_item = &root->fs_info->tree_root->root_item; 8915d4f98a2SYan Zheng super->root = root_item->bytenr; 8925d4f98a2SYan Zheng super->generation = root_item->generation; 8935d4f98a2SYan Zheng super->root_level = root_item->level; 8945d4f98a2SYan Zheng } 8955d4f98a2SYan Zheng 896f36f3042SChris Mason int btrfs_transaction_in_commit(struct btrfs_fs_info *info) 897f36f3042SChris Mason { 898f36f3042SChris Mason int ret = 0; 899f36f3042SChris Mason spin_lock(&info->new_trans_lock); 900f36f3042SChris Mason if (info->running_transaction) 901f36f3042SChris Mason ret = info->running_transaction->in_commit; 902f36f3042SChris Mason spin_unlock(&info->new_trans_lock); 903f36f3042SChris Mason return ret; 904f36f3042SChris Mason } 905f36f3042SChris Mason 90679154b1bSChris Mason int btrfs_commit_transaction(struct btrfs_trans_handle *trans, 90779154b1bSChris Mason struct btrfs_root *root) 90879154b1bSChris Mason { 90915ee9bc7SJosef Bacik unsigned long joined = 0; 91015ee9bc7SJosef Bacik unsigned long timeout = 1; 91179154b1bSChris Mason struct btrfs_transaction *cur_trans; 9128fd17795SChris Mason struct btrfs_transaction *prev_trans = NULL; 91379154b1bSChris Mason DEFINE_WAIT(wait); 91415ee9bc7SJosef Bacik int ret; 91589573b9cSChris Mason int should_grow = 0; 91689573b9cSChris Mason unsigned long now = get_seconds(); 917dccae999SSage Weil int flush_on_commit = btrfs_test_opt(root, FLUSHONCOMMIT); 91879154b1bSChris Mason 9195a3f23d5SChris Mason btrfs_run_ordered_operations(root, 0); 9205a3f23d5SChris Mason 92156bec294SChris Mason /* make a pass through all the delayed refs we have so far 92256bec294SChris Mason * any runnings procs may add more while we are here 92356bec294SChris Mason */ 92456bec294SChris Mason ret = btrfs_run_delayed_refs(trans, root, 0); 92556bec294SChris Mason BUG_ON(ret); 92656bec294SChris Mason 927b7ec40d7SChris Mason cur_trans = trans->transaction; 92856bec294SChris Mason /* 92956bec294SChris Mason * set the flushing flag so procs in this transaction have to 93056bec294SChris Mason * start sending their work down. 93156bec294SChris Mason */ 932b7ec40d7SChris Mason cur_trans->delayed_refs.flushing = 1; 93356bec294SChris Mason 934c3e69d58SChris Mason ret = btrfs_run_delayed_refs(trans, root, 0); 93556bec294SChris Mason BUG_ON(ret); 93656bec294SChris Mason 93779154b1bSChris Mason mutex_lock(&root->fs_info->trans_mutex); 938b7ec40d7SChris Mason if (cur_trans->in_commit) { 939b7ec40d7SChris Mason cur_trans->use_count++; 940ccd467d6SChris Mason mutex_unlock(&root->fs_info->trans_mutex); 94179154b1bSChris Mason btrfs_end_transaction(trans, root); 942ccd467d6SChris Mason 94379154b1bSChris Mason ret = wait_for_commit(root, cur_trans); 94479154b1bSChris Mason BUG_ON(ret); 94515ee9bc7SJosef Bacik 94615ee9bc7SJosef Bacik mutex_lock(&root->fs_info->trans_mutex); 94779154b1bSChris Mason put_transaction(cur_trans); 94815ee9bc7SJosef Bacik mutex_unlock(&root->fs_info->trans_mutex); 94915ee9bc7SJosef Bacik 95079154b1bSChris Mason return 0; 95179154b1bSChris Mason } 9524313b399SChris Mason 9532c90e5d6SChris Mason trans->transaction->in_commit = 1; 954f9295749SChris Mason trans->transaction->blocked = 1; 955ccd467d6SChris Mason if (cur_trans->list.prev != &root->fs_info->trans_list) { 956ccd467d6SChris Mason prev_trans = list_entry(cur_trans->list.prev, 957ccd467d6SChris Mason struct btrfs_transaction, list); 958ccd467d6SChris Mason if (!prev_trans->commit_done) { 959ccd467d6SChris Mason prev_trans->use_count++; 960ccd467d6SChris Mason mutex_unlock(&root->fs_info->trans_mutex); 961ccd467d6SChris Mason 962ccd467d6SChris Mason wait_for_commit(root, prev_trans); 963ccd467d6SChris Mason 964ccd467d6SChris Mason mutex_lock(&root->fs_info->trans_mutex); 96515ee9bc7SJosef Bacik put_transaction(prev_trans); 966ccd467d6SChris Mason } 967ccd467d6SChris Mason } 96815ee9bc7SJosef Bacik 96989573b9cSChris Mason if (now < cur_trans->start_time || now - cur_trans->start_time < 1) 97089573b9cSChris Mason should_grow = 1; 97189573b9cSChris Mason 97215ee9bc7SJosef Bacik do { 9737ea394f1SYan Zheng int snap_pending = 0; 97415ee9bc7SJosef Bacik joined = cur_trans->num_joined; 9757ea394f1SYan Zheng if (!list_empty(&trans->transaction->pending_snapshots)) 9767ea394f1SYan Zheng snap_pending = 1; 9777ea394f1SYan Zheng 9782c90e5d6SChris Mason WARN_ON(cur_trans != trans->transaction); 97915ee9bc7SJosef Bacik prepare_to_wait(&cur_trans->writer_wait, &wait, 98079154b1bSChris Mason TASK_UNINTERRUPTIBLE); 98115ee9bc7SJosef Bacik 98215ee9bc7SJosef Bacik if (cur_trans->num_writers > 1) 98315ee9bc7SJosef Bacik timeout = MAX_SCHEDULE_TIMEOUT; 98489573b9cSChris Mason else if (should_grow) 98515ee9bc7SJosef Bacik timeout = 1; 98615ee9bc7SJosef Bacik 98779154b1bSChris Mason mutex_unlock(&root->fs_info->trans_mutex); 98815ee9bc7SJosef Bacik 989ebecd3d9SSage Weil if (flush_on_commit) { 990dccae999SSage Weil btrfs_start_delalloc_inodes(root); 991ebecd3d9SSage Weil ret = btrfs_wait_ordered_extents(root, 0); 992ebecd3d9SSage Weil BUG_ON(ret); 993ebecd3d9SSage Weil } else if (snap_pending) { 9947ea394f1SYan Zheng ret = btrfs_wait_ordered_extents(root, 1); 9957ea394f1SYan Zheng BUG_ON(ret); 9967ea394f1SYan Zheng } 9977ea394f1SYan Zheng 9985a3f23d5SChris Mason /* 9995a3f23d5SChris Mason * rename don't use btrfs_join_transaction, so, once we 10005a3f23d5SChris Mason * set the transaction to blocked above, we aren't going 10015a3f23d5SChris Mason * to get any new ordered operations. We can safely run 10025a3f23d5SChris Mason * it here and no for sure that nothing new will be added 10035a3f23d5SChris Mason * to the list 10045a3f23d5SChris Mason */ 10055a3f23d5SChris Mason btrfs_run_ordered_operations(root, 1); 10065a3f23d5SChris Mason 100789573b9cSChris Mason smp_mb(); 100889573b9cSChris Mason if (cur_trans->num_writers > 1 || should_grow) 100915ee9bc7SJosef Bacik schedule_timeout(timeout); 101015ee9bc7SJosef Bacik 101179154b1bSChris Mason mutex_lock(&root->fs_info->trans_mutex); 101215ee9bc7SJosef Bacik finish_wait(&cur_trans->writer_wait, &wait); 101315ee9bc7SJosef Bacik } while (cur_trans->num_writers > 1 || 101489573b9cSChris Mason (should_grow && cur_trans->num_joined != joined)); 101515ee9bc7SJosef Bacik 10163063d29fSChris Mason ret = create_pending_snapshots(trans, root->fs_info); 10173063d29fSChris Mason BUG_ON(ret); 10183063d29fSChris Mason 101956bec294SChris Mason ret = btrfs_run_delayed_refs(trans, root, (unsigned long)-1); 102056bec294SChris Mason BUG_ON(ret); 102156bec294SChris Mason 10222c90e5d6SChris Mason WARN_ON(cur_trans != trans->transaction); 1023dc17ff8fSChris Mason 1024e02119d5SChris Mason /* btrfs_commit_tree_roots is responsible for getting the 1025e02119d5SChris Mason * various roots consistent with each other. Every pointer 1026e02119d5SChris Mason * in the tree of tree roots has to point to the most up to date 1027e02119d5SChris Mason * root for every subvolume and other tree. So, we have to keep 1028e02119d5SChris Mason * the tree logging code from jumping in and changing any 1029e02119d5SChris Mason * of the trees. 1030e02119d5SChris Mason * 1031e02119d5SChris Mason * At this point in the commit, there can't be any tree-log 1032e02119d5SChris Mason * writers, but a little lower down we drop the trans mutex 1033e02119d5SChris Mason * and let new people in. By holding the tree_log_mutex 1034e02119d5SChris Mason * from now until after the super is written, we avoid races 1035e02119d5SChris Mason * with the tree-log code. 1036e02119d5SChris Mason */ 1037e02119d5SChris Mason mutex_lock(&root->fs_info->tree_log_mutex); 10381a40e23bSZheng Yan 10395d4f98a2SYan Zheng ret = commit_fs_roots(trans, root); 104054aa1f4dSChris Mason BUG_ON(ret); 104154aa1f4dSChris Mason 10425d4f98a2SYan Zheng /* commit_fs_roots gets rid of all the tree log roots, it is now 1043e02119d5SChris Mason * safe to free the root of tree log roots 1044e02119d5SChris Mason */ 1045e02119d5SChris Mason btrfs_free_log_root_tree(trans, root->fs_info); 1046e02119d5SChris Mason 10475d4f98a2SYan Zheng ret = commit_cowonly_roots(trans, root); 104879154b1bSChris Mason BUG_ON(ret); 104954aa1f4dSChris Mason 105011833d66SYan Zheng btrfs_prepare_extent_commit(trans, root); 105111833d66SYan Zheng 105278fae27eSChris Mason cur_trans = root->fs_info->running_transaction; 1053cee36a03SChris Mason spin_lock(&root->fs_info->new_trans_lock); 105478fae27eSChris Mason root->fs_info->running_transaction = NULL; 1055cee36a03SChris Mason spin_unlock(&root->fs_info->new_trans_lock); 10565f39d397SChris Mason 10575d4f98a2SYan Zheng btrfs_set_root_node(&root->fs_info->tree_root->root_item, 10585d4f98a2SYan Zheng root->fs_info->tree_root->node); 1059817d52f8SJosef Bacik switch_commit_root(root->fs_info->tree_root); 10605d4f98a2SYan Zheng 10615d4f98a2SYan Zheng btrfs_set_root_node(&root->fs_info->chunk_root->root_item, 10625d4f98a2SYan Zheng root->fs_info->chunk_root->node); 1063817d52f8SJosef Bacik switch_commit_root(root->fs_info->chunk_root); 10645d4f98a2SYan Zheng 10655d4f98a2SYan Zheng update_super_roots(root); 1066e02119d5SChris Mason 1067e02119d5SChris Mason if (!root->fs_info->log_root_recovering) { 1068e02119d5SChris Mason btrfs_set_super_log_root(&root->fs_info->super_copy, 0); 1069e02119d5SChris Mason btrfs_set_super_log_root_level(&root->fs_info->super_copy, 0); 1070e02119d5SChris Mason } 1071e02119d5SChris Mason 1072a061fc8dSChris Mason memcpy(&root->fs_info->super_for_commit, &root->fs_info->super_copy, 10734b52dff6SChris Mason sizeof(root->fs_info->super_copy)); 1074ccd467d6SChris Mason 1075f9295749SChris Mason trans->transaction->blocked = 0; 1076b7ec40d7SChris Mason 1077f9295749SChris Mason wake_up(&root->fs_info->transaction_wait); 1078e6dcd2dcSChris Mason 107978fae27eSChris Mason mutex_unlock(&root->fs_info->trans_mutex); 108079154b1bSChris Mason ret = btrfs_write_and_wait_transaction(trans, root); 108179154b1bSChris Mason BUG_ON(ret); 1082a512bbf8SYan Zheng write_ctree_super(trans, root, 0); 10834313b399SChris Mason 1084e02119d5SChris Mason /* 1085e02119d5SChris Mason * the super is written, we can safely allow the tree-loggers 1086e02119d5SChris Mason * to go about their business 1087e02119d5SChris Mason */ 1088e02119d5SChris Mason mutex_unlock(&root->fs_info->tree_log_mutex); 1089e02119d5SChris Mason 109011833d66SYan Zheng btrfs_finish_extent_commit(trans, root); 10914313b399SChris Mason 10923de4586cSChris Mason /* do the directory inserts of any pending snapshot creations */ 10933de4586cSChris Mason finish_pending_snapshots(trans, root->fs_info); 10943de4586cSChris Mason 10951a40e23bSZheng Yan mutex_lock(&root->fs_info->trans_mutex); 10961a40e23bSZheng Yan 10972c90e5d6SChris Mason cur_trans->commit_done = 1; 1098b7ec40d7SChris Mason 109915ee9bc7SJosef Bacik root->fs_info->last_trans_committed = cur_trans->transid; 1100817d52f8SJosef Bacik 11012c90e5d6SChris Mason wake_up(&cur_trans->commit_wait); 11023de4586cSChris Mason 110379154b1bSChris Mason put_transaction(cur_trans); 110478fae27eSChris Mason put_transaction(cur_trans); 110558176a96SJosef Bacik 110678fae27eSChris Mason mutex_unlock(&root->fs_info->trans_mutex); 11073de4586cSChris Mason 11089ed74f2dSJosef Bacik if (current->journal_info == trans) 11099ed74f2dSJosef Bacik current->journal_info = NULL; 11109ed74f2dSJosef Bacik 11112c90e5d6SChris Mason kmem_cache_free(btrfs_trans_handle_cachep, trans); 111279154b1bSChris Mason return ret; 111379154b1bSChris Mason } 111479154b1bSChris Mason 1115d352ac68SChris Mason /* 1116d352ac68SChris Mason * interface function to delete all the snapshots we have scheduled for deletion 1117d352ac68SChris Mason */ 1118e9d0b13bSChris Mason int btrfs_clean_old_snapshots(struct btrfs_root *root) 1119e9d0b13bSChris Mason { 11205d4f98a2SYan Zheng LIST_HEAD(list); 11215d4f98a2SYan Zheng struct btrfs_fs_info *fs_info = root->fs_info; 1122e9d0b13bSChris Mason 11235d4f98a2SYan Zheng mutex_lock(&fs_info->trans_mutex); 11245d4f98a2SYan Zheng list_splice_init(&fs_info->dead_roots, &list); 11255d4f98a2SYan Zheng mutex_unlock(&fs_info->trans_mutex); 11265d4f98a2SYan Zheng 11275d4f98a2SYan Zheng while (!list_empty(&list)) { 11285d4f98a2SYan Zheng root = list_entry(list.next, struct btrfs_root, root_list); 112976dda93cSYan, Zheng list_del(&root->root_list); 113076dda93cSYan, Zheng 113176dda93cSYan, Zheng if (btrfs_header_backref_rev(root->node) < 113276dda93cSYan, Zheng BTRFS_MIXED_BACKREF_REV) 11332c47e605SYan Zheng btrfs_drop_snapshot(root, 0); 113476dda93cSYan, Zheng else 113576dda93cSYan, Zheng btrfs_drop_snapshot(root, 1); 1136e9d0b13bSChris Mason } 1137e9d0b13bSChris Mason return 0; 1138e9d0b13bSChris Mason } 1139