11da177e4SLinus Torvalds /* 27b718769SNathan Scott * Copyright (c) 2000-2002,2005 Silicon Graphics, Inc. 3c7e8f268SDavid Chinner * Copyright (c) 2008 Dave Chinner 47b718769SNathan Scott * All Rights Reserved. 51da177e4SLinus Torvalds * 67b718769SNathan Scott * This program is free software; you can redistribute it and/or 77b718769SNathan Scott * modify it under the terms of the GNU General Public License as 81da177e4SLinus Torvalds * published by the Free Software Foundation. 91da177e4SLinus Torvalds * 107b718769SNathan Scott * This program is distributed in the hope that it would be useful, 117b718769SNathan Scott * but WITHOUT ANY WARRANTY; without even the implied warranty of 127b718769SNathan Scott * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the 137b718769SNathan Scott * GNU General Public License for more details. 141da177e4SLinus Torvalds * 157b718769SNathan Scott * You should have received a copy of the GNU General Public License 167b718769SNathan Scott * along with this program; if not, write the Free Software Foundation, 177b718769SNathan Scott * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA 181da177e4SLinus Torvalds */ 191da177e4SLinus Torvalds #include "xfs.h" 20a844f451SNathan Scott #include "xfs_fs.h" 214fb6e8adSChristoph Hellwig #include "xfs_format.h" 22239880efSDave Chinner #include "xfs_log_format.h" 23239880efSDave Chinner #include "xfs_trans_resv.h" 241da177e4SLinus Torvalds #include "xfs_mount.h" 25239880efSDave Chinner #include "xfs_trans.h" 261da177e4SLinus Torvalds #include "xfs_trans_priv.h" 279e4c109aSChristoph Hellwig #include "xfs_trace.h" 281da177e4SLinus Torvalds #include "xfs_error.h" 29239880efSDave Chinner #include "xfs_log.h" 301da177e4SLinus Torvalds 311da177e4SLinus Torvalds #ifdef DEBUG 32cd4a3c50SDave Chinner /* 33cd4a3c50SDave Chinner * Check that the list is sorted as it should be. 34cd4a3c50SDave Chinner */ 35cd4a3c50SDave Chinner STATIC void 36cd4a3c50SDave Chinner xfs_ail_check( 37cd4a3c50SDave Chinner struct xfs_ail *ailp, 38cd4a3c50SDave Chinner xfs_log_item_t *lip) 39cd4a3c50SDave Chinner { 40cd4a3c50SDave Chinner xfs_log_item_t *prev_lip; 41cd4a3c50SDave Chinner 42cd4a3c50SDave Chinner if (list_empty(&ailp->xa_ail)) 43cd4a3c50SDave Chinner return; 44cd4a3c50SDave Chinner 45cd4a3c50SDave Chinner /* 46cd4a3c50SDave Chinner * Check the next and previous entries are valid. 47cd4a3c50SDave Chinner */ 48cd4a3c50SDave Chinner ASSERT((lip->li_flags & XFS_LI_IN_AIL) != 0); 49cd4a3c50SDave Chinner prev_lip = list_entry(lip->li_ail.prev, xfs_log_item_t, li_ail); 50cd4a3c50SDave Chinner if (&prev_lip->li_ail != &ailp->xa_ail) 51cd4a3c50SDave Chinner ASSERT(XFS_LSN_CMP(prev_lip->li_lsn, lip->li_lsn) <= 0); 52cd4a3c50SDave Chinner 53cd4a3c50SDave Chinner prev_lip = list_entry(lip->li_ail.next, xfs_log_item_t, li_ail); 54cd4a3c50SDave Chinner if (&prev_lip->li_ail != &ailp->xa_ail) 55cd4a3c50SDave Chinner ASSERT(XFS_LSN_CMP(prev_lip->li_lsn, lip->li_lsn) >= 0); 56cd4a3c50SDave Chinner 57cd4a3c50SDave Chinner 58cd4a3c50SDave Chinner } 59cd4a3c50SDave Chinner #else /* !DEBUG */ 60de08dbc1SDavid Chinner #define xfs_ail_check(a,l) 611da177e4SLinus Torvalds #endif /* DEBUG */ 621da177e4SLinus Torvalds 63cd4a3c50SDave Chinner /* 64fd074841SDave Chinner * Return a pointer to the last item in the AIL. If the AIL is empty, then 65fd074841SDave Chinner * return NULL. 66fd074841SDave Chinner */ 67fd074841SDave Chinner static xfs_log_item_t * 68fd074841SDave Chinner xfs_ail_max( 69fd074841SDave Chinner struct xfs_ail *ailp) 70fd074841SDave Chinner { 71fd074841SDave Chinner if (list_empty(&ailp->xa_ail)) 72fd074841SDave Chinner return NULL; 73fd074841SDave Chinner 74fd074841SDave Chinner return list_entry(ailp->xa_ail.prev, xfs_log_item_t, li_ail); 75fd074841SDave Chinner } 76fd074841SDave Chinner 77fd074841SDave Chinner /* 78cd4a3c50SDave Chinner * Return a pointer to the item which follows the given item in the AIL. If 79cd4a3c50SDave Chinner * the given item is the last item in the list, then return NULL. 80cd4a3c50SDave Chinner */ 81cd4a3c50SDave Chinner static xfs_log_item_t * 82cd4a3c50SDave Chinner xfs_ail_next( 83cd4a3c50SDave Chinner struct xfs_ail *ailp, 84cd4a3c50SDave Chinner xfs_log_item_t *lip) 85cd4a3c50SDave Chinner { 86cd4a3c50SDave Chinner if (lip->li_ail.next == &ailp->xa_ail) 87cd4a3c50SDave Chinner return NULL; 88cd4a3c50SDave Chinner 89cd4a3c50SDave Chinner return list_first_entry(&lip->li_ail, xfs_log_item_t, li_ail); 90cd4a3c50SDave Chinner } 91cd4a3c50SDave Chinner 92cd4a3c50SDave Chinner /* 93cd4a3c50SDave Chinner * This is called by the log manager code to determine the LSN of the tail of 94cd4a3c50SDave Chinner * the log. This is exactly the LSN of the first item in the AIL. If the AIL 95cd4a3c50SDave Chinner * is empty, then this function returns 0. 961da177e4SLinus Torvalds * 97cd4a3c50SDave Chinner * We need the AIL lock in order to get a coherent read of the lsn of the last 98cd4a3c50SDave Chinner * item in the AIL. 991da177e4SLinus Torvalds */ 1001da177e4SLinus Torvalds xfs_lsn_t 101fd074841SDave Chinner xfs_ail_min_lsn( 1025b00f14fSDavid Chinner struct xfs_ail *ailp) 1031da177e4SLinus Torvalds { 104cd4a3c50SDave Chinner xfs_lsn_t lsn = 0; 1051da177e4SLinus Torvalds xfs_log_item_t *lip; 1061da177e4SLinus Torvalds 107c7e8f268SDavid Chinner spin_lock(&ailp->xa_lock); 1085b00f14fSDavid Chinner lip = xfs_ail_min(ailp); 109cd4a3c50SDave Chinner if (lip) 1101da177e4SLinus Torvalds lsn = lip->li_lsn; 111c7e8f268SDavid Chinner spin_unlock(&ailp->xa_lock); 1121da177e4SLinus Torvalds 1131da177e4SLinus Torvalds return lsn; 1141da177e4SLinus Torvalds } 1151da177e4SLinus Torvalds 1161da177e4SLinus Torvalds /* 117fd074841SDave Chinner * Return the maximum lsn held in the AIL, or zero if the AIL is empty. 118fd074841SDave Chinner */ 119fd074841SDave Chinner static xfs_lsn_t 120fd074841SDave Chinner xfs_ail_max_lsn( 121fd074841SDave Chinner struct xfs_ail *ailp) 122fd074841SDave Chinner { 123fd074841SDave Chinner xfs_lsn_t lsn = 0; 124fd074841SDave Chinner xfs_log_item_t *lip; 125fd074841SDave Chinner 126fd074841SDave Chinner spin_lock(&ailp->xa_lock); 127fd074841SDave Chinner lip = xfs_ail_max(ailp); 128fd074841SDave Chinner if (lip) 129fd074841SDave Chinner lsn = lip->li_lsn; 130fd074841SDave Chinner spin_unlock(&ailp->xa_lock); 131fd074841SDave Chinner 132fd074841SDave Chinner return lsn; 133fd074841SDave Chinner } 134fd074841SDave Chinner 135fd074841SDave Chinner /* 136af3e4022SDave Chinner * The cursor keeps track of where our current traversal is up to by tracking 137af3e4022SDave Chinner * the next item in the list for us. However, for this to be safe, removing an 138af3e4022SDave Chinner * object from the AIL needs to invalidate any cursor that points to it. hence 139af3e4022SDave Chinner * the traversal cursor needs to be linked to the struct xfs_ail so that 140af3e4022SDave Chinner * deletion can search all the active cursors for invalidation. 14127d8d5feSDavid Chinner */ 1425b00f14fSDavid Chinner STATIC void 14327d8d5feSDavid Chinner xfs_trans_ail_cursor_init( 14427d8d5feSDavid Chinner struct xfs_ail *ailp, 14527d8d5feSDavid Chinner struct xfs_ail_cursor *cur) 14627d8d5feSDavid Chinner { 14727d8d5feSDavid Chinner cur->item = NULL; 148af3e4022SDave Chinner list_add_tail(&cur->list, &ailp->xa_cursors); 14927d8d5feSDavid Chinner } 15027d8d5feSDavid Chinner 15127d8d5feSDavid Chinner /* 152af3e4022SDave Chinner * Get the next item in the traversal and advance the cursor. If the cursor 153af3e4022SDave Chinner * was invalidated (indicated by a lip of 1), restart the traversal. 15427d8d5feSDavid Chinner */ 1555b00f14fSDavid Chinner struct xfs_log_item * 15627d8d5feSDavid Chinner xfs_trans_ail_cursor_next( 15727d8d5feSDavid Chinner struct xfs_ail *ailp, 15827d8d5feSDavid Chinner struct xfs_ail_cursor *cur) 15927d8d5feSDavid Chinner { 16027d8d5feSDavid Chinner struct xfs_log_item *lip = cur->item; 16127d8d5feSDavid Chinner 162db9d67d6SChristoph Hellwig if ((uintptr_t)lip & 1) 16327d8d5feSDavid Chinner lip = xfs_ail_min(ailp); 16416b59029SDave Chinner if (lip) 16516b59029SDave Chinner cur->item = xfs_ail_next(ailp, lip); 16627d8d5feSDavid Chinner return lip; 16727d8d5feSDavid Chinner } 16827d8d5feSDavid Chinner 16927d8d5feSDavid Chinner /* 170af3e4022SDave Chinner * When the traversal is complete, we need to remove the cursor from the list 171af3e4022SDave Chinner * of traversing cursors. 17227d8d5feSDavid Chinner */ 17327d8d5feSDavid Chinner void 17427d8d5feSDavid Chinner xfs_trans_ail_cursor_done( 175af3e4022SDave Chinner struct xfs_ail_cursor *cur) 17627d8d5feSDavid Chinner { 177af3e4022SDave Chinner cur->item = NULL; 178af3e4022SDave Chinner list_del_init(&cur->list); 17927d8d5feSDavid Chinner } 18027d8d5feSDavid Chinner 18127d8d5feSDavid Chinner /* 182af3e4022SDave Chinner * Invalidate any cursor that is pointing to this item. This is called when an 183af3e4022SDave Chinner * item is removed from the AIL. Any cursor pointing to this object is now 184af3e4022SDave Chinner * invalid and the traversal needs to be terminated so it doesn't reference a 185af3e4022SDave Chinner * freed object. We set the low bit of the cursor item pointer so we can 186af3e4022SDave Chinner * distinguish between an invalidation and the end of the list when getting the 187af3e4022SDave Chinner * next item from the cursor. 1885b00f14fSDavid Chinner */ 1895b00f14fSDavid Chinner STATIC void 1905b00f14fSDavid Chinner xfs_trans_ail_cursor_clear( 1915b00f14fSDavid Chinner struct xfs_ail *ailp, 1925b00f14fSDavid Chinner struct xfs_log_item *lip) 1935b00f14fSDavid Chinner { 1945b00f14fSDavid Chinner struct xfs_ail_cursor *cur; 1955b00f14fSDavid Chinner 196af3e4022SDave Chinner list_for_each_entry(cur, &ailp->xa_cursors, list) { 1975b00f14fSDavid Chinner if (cur->item == lip) 1985b00f14fSDavid Chinner cur->item = (struct xfs_log_item *) 199db9d67d6SChristoph Hellwig ((uintptr_t)cur->item | 1); 2005b00f14fSDavid Chinner } 2015b00f14fSDavid Chinner } 2025b00f14fSDavid Chinner 2035b00f14fSDavid Chinner /* 20416b59029SDave Chinner * Find the first item in the AIL with the given @lsn by searching in ascending 20516b59029SDave Chinner * LSN order and initialise the cursor to point to the next item for a 20616b59029SDave Chinner * ascending traversal. Pass a @lsn of zero to initialise the cursor to the 20716b59029SDave Chinner * first item in the AIL. Returns NULL if the list is empty. 208249a8c11SDavid Chinner */ 2095b00f14fSDavid Chinner xfs_log_item_t * 2105b00f14fSDavid Chinner xfs_trans_ail_cursor_first( 21127d8d5feSDavid Chinner struct xfs_ail *ailp, 21227d8d5feSDavid Chinner struct xfs_ail_cursor *cur, 213249a8c11SDavid Chinner xfs_lsn_t lsn) 214249a8c11SDavid Chinner { 215249a8c11SDavid Chinner xfs_log_item_t *lip; 216249a8c11SDavid Chinner 2175b00f14fSDavid Chinner xfs_trans_ail_cursor_init(ailp, cur); 21816b59029SDave Chinner 21916b59029SDave Chinner if (lsn == 0) { 22027d8d5feSDavid Chinner lip = xfs_ail_min(ailp); 2215b00f14fSDavid Chinner goto out; 22216b59029SDave Chinner } 223249a8c11SDavid Chinner 22427d8d5feSDavid Chinner list_for_each_entry(lip, &ailp->xa_ail, li_ail) { 2255b00f14fSDavid Chinner if (XFS_LSN_CMP(lip->li_lsn, lsn) >= 0) 2267ee49acfSDavid Chinner goto out; 2275b00f14fSDavid Chinner } 22816b59029SDave Chinner return NULL; 22916b59029SDave Chinner 2305b00f14fSDavid Chinner out: 23116b59029SDave Chinner if (lip) 23216b59029SDave Chinner cur->item = xfs_ail_next(ailp, lip); 233249a8c11SDavid Chinner return lip; 234249a8c11SDavid Chinner } 235535f6b37SJosef 'Jeff' Sipek 2361d8c95a3SDave Chinner static struct xfs_log_item * 2371d8c95a3SDave Chinner __xfs_trans_ail_cursor_last( 2381d8c95a3SDave Chinner struct xfs_ail *ailp, 2391d8c95a3SDave Chinner xfs_lsn_t lsn) 2401d8c95a3SDave Chinner { 2411d8c95a3SDave Chinner xfs_log_item_t *lip; 2421d8c95a3SDave Chinner 2431d8c95a3SDave Chinner list_for_each_entry_reverse(lip, &ailp->xa_ail, li_ail) { 2441d8c95a3SDave Chinner if (XFS_LSN_CMP(lip->li_lsn, lsn) <= 0) 2451d8c95a3SDave Chinner return lip; 2461d8c95a3SDave Chinner } 2471d8c95a3SDave Chinner return NULL; 2481d8c95a3SDave Chinner } 2491d8c95a3SDave Chinner 2501d8c95a3SDave Chinner /* 25116b59029SDave Chinner * Find the last item in the AIL with the given @lsn by searching in descending 25216b59029SDave Chinner * LSN order and initialise the cursor to point to that item. If there is no 25316b59029SDave Chinner * item with the value of @lsn, then it sets the cursor to the last item with an 25416b59029SDave Chinner * LSN lower than @lsn. Returns NULL if the list is empty. 2551d8c95a3SDave Chinner */ 2561d8c95a3SDave Chinner struct xfs_log_item * 2571d8c95a3SDave Chinner xfs_trans_ail_cursor_last( 2581d8c95a3SDave Chinner struct xfs_ail *ailp, 2591d8c95a3SDave Chinner struct xfs_ail_cursor *cur, 2601d8c95a3SDave Chinner xfs_lsn_t lsn) 2611d8c95a3SDave Chinner { 2621d8c95a3SDave Chinner xfs_trans_ail_cursor_init(ailp, cur); 2631d8c95a3SDave Chinner cur->item = __xfs_trans_ail_cursor_last(ailp, lsn); 2641d8c95a3SDave Chinner return cur->item; 2651d8c95a3SDave Chinner } 2661d8c95a3SDave Chinner 2671d8c95a3SDave Chinner /* 26816b59029SDave Chinner * Splice the log item list into the AIL at the given LSN. We splice to the 2691d8c95a3SDave Chinner * tail of the given LSN to maintain insert order for push traversals. The 2701d8c95a3SDave Chinner * cursor is optional, allowing repeated updates to the same LSN to avoid 271e44f4112SAlex Elder * repeated traversals. This should not be called with an empty list. 272cd4a3c50SDave Chinner */ 273cd4a3c50SDave Chinner static void 274cd4a3c50SDave Chinner xfs_ail_splice( 275cd4a3c50SDave Chinner struct xfs_ail *ailp, 2761d8c95a3SDave Chinner struct xfs_ail_cursor *cur, 277cd4a3c50SDave Chinner struct list_head *list, 278cd4a3c50SDave Chinner xfs_lsn_t lsn) 279cd4a3c50SDave Chinner { 280e44f4112SAlex Elder struct xfs_log_item *lip; 281e44f4112SAlex Elder 282e44f4112SAlex Elder ASSERT(!list_empty(list)); 283cd4a3c50SDave Chinner 2841d8c95a3SDave Chinner /* 285e44f4112SAlex Elder * Use the cursor to determine the insertion point if one is 286e44f4112SAlex Elder * provided. If not, or if the one we got is not valid, 287e44f4112SAlex Elder * find the place in the AIL where the items belong. 2881d8c95a3SDave Chinner */ 289e44f4112SAlex Elder lip = cur ? cur->item : NULL; 290db9d67d6SChristoph Hellwig if (!lip || (uintptr_t)lip & 1) 2911d8c95a3SDave Chinner lip = __xfs_trans_ail_cursor_last(ailp, lsn); 2921d8c95a3SDave Chinner 293e44f4112SAlex Elder /* 294e44f4112SAlex Elder * If a cursor is provided, we know we're processing the AIL 295e44f4112SAlex Elder * in lsn order, and future items to be spliced in will 296e44f4112SAlex Elder * follow the last one being inserted now. Update the 297e44f4112SAlex Elder * cursor to point to that last item, now while we have a 298e44f4112SAlex Elder * reliable pointer to it. 299e44f4112SAlex Elder */ 3001d8c95a3SDave Chinner if (cur) 301e44f4112SAlex Elder cur->item = list_entry(list->prev, struct xfs_log_item, li_ail); 302cd4a3c50SDave Chinner 3031d8c95a3SDave Chinner /* 304e44f4112SAlex Elder * Finally perform the splice. Unless the AIL was empty, 305e44f4112SAlex Elder * lip points to the item in the AIL _after_ which the new 306e44f4112SAlex Elder * items should go. If lip is null the AIL was empty, so 307e44f4112SAlex Elder * the new items go at the head of the AIL. 3081d8c95a3SDave Chinner */ 309e44f4112SAlex Elder if (lip) 3101d8c95a3SDave Chinner list_splice(list, &lip->li_ail); 311e44f4112SAlex Elder else 312e44f4112SAlex Elder list_splice(list, &ailp->xa_ail); 313cd4a3c50SDave Chinner } 314cd4a3c50SDave Chinner 315cd4a3c50SDave Chinner /* 316cd4a3c50SDave Chinner * Delete the given item from the AIL. Return a pointer to the item. 317cd4a3c50SDave Chinner */ 318cd4a3c50SDave Chinner static void 319cd4a3c50SDave Chinner xfs_ail_delete( 320cd4a3c50SDave Chinner struct xfs_ail *ailp, 321cd4a3c50SDave Chinner xfs_log_item_t *lip) 322cd4a3c50SDave Chinner { 323cd4a3c50SDave Chinner xfs_ail_check(ailp, lip); 324cd4a3c50SDave Chinner list_del(&lip->li_ail); 325cd4a3c50SDave Chinner xfs_trans_ail_cursor_clear(ailp, lip); 326cd4a3c50SDave Chinner } 327cd4a3c50SDave Chinner 3280030807cSChristoph Hellwig static long 3290030807cSChristoph Hellwig xfsaild_push( 3300030807cSChristoph Hellwig struct xfs_ail *ailp) 331249a8c11SDavid Chinner { 33282fa9012SDavid Chinner xfs_mount_t *mp = ailp->xa_mount; 333af3e4022SDave Chinner struct xfs_ail_cursor cur; 3349e7004e7SDave Chinner xfs_log_item_t *lip; 3359e7004e7SDave Chinner xfs_lsn_t lsn; 336fe0da767SDave Chinner xfs_lsn_t target; 33743ff2122SChristoph Hellwig long tout; 3389e7004e7SDave Chinner int stuck = 0; 33943ff2122SChristoph Hellwig int flushing = 0; 3409e7004e7SDave Chinner int count = 0; 3411da177e4SLinus Torvalds 342670ce93fSDave Chinner /* 34343ff2122SChristoph Hellwig * If we encountered pinned items or did not finish writing out all 34443ff2122SChristoph Hellwig * buffers the last time we ran, force the log first and wait for it 34543ff2122SChristoph Hellwig * before pushing again. 346670ce93fSDave Chinner */ 34743ff2122SChristoph Hellwig if (ailp->xa_log_flush && ailp->xa_last_pushed_lsn == 0 && 34843ff2122SChristoph Hellwig (!list_empty_careful(&ailp->xa_buf_list) || 34943ff2122SChristoph Hellwig xfs_ail_min_lsn(ailp))) { 350670ce93fSDave Chinner ailp->xa_log_flush = 0; 35143ff2122SChristoph Hellwig 352ff6d6af2SBill O'Donnell XFS_STATS_INC(mp, xs_push_ail_flush); 353670ce93fSDave Chinner xfs_log_force(mp, XFS_LOG_SYNC); 354670ce93fSDave Chinner } 355670ce93fSDave Chinner 35643ff2122SChristoph Hellwig spin_lock(&ailp->xa_lock); 3578375f922SBrian Foster 3588375f922SBrian Foster /* barrier matches the xa_target update in xfs_ail_push() */ 3598375f922SBrian Foster smp_rmb(); 3608375f922SBrian Foster target = ailp->xa_target; 3618375f922SBrian Foster ailp->xa_target_prev = target; 3628375f922SBrian Foster 363af3e4022SDave Chinner lip = xfs_trans_ail_cursor_first(ailp, &cur, ailp->xa_last_pushed_lsn); 364211e4d43SChristoph Hellwig if (!lip) { 3651da177e4SLinus Torvalds /* 36643ff2122SChristoph Hellwig * If the AIL is empty or our push has reached the end we are 36743ff2122SChristoph Hellwig * done now. 3681da177e4SLinus Torvalds */ 369e4a1e29cSEric Sandeen xfs_trans_ail_cursor_done(&cur); 370c7e8f268SDavid Chinner spin_unlock(&ailp->xa_lock); 3719e7004e7SDave Chinner goto out_done; 3721da177e4SLinus Torvalds } 3731da177e4SLinus Torvalds 374ff6d6af2SBill O'Donnell XFS_STATS_INC(mp, xs_push_ail); 3751da177e4SLinus Torvalds 376249a8c11SDavid Chinner lsn = lip->li_lsn; 37750e86686SDave Chinner while ((XFS_LSN_CMP(lip->li_lsn, target) <= 0)) { 378249a8c11SDavid Chinner int lock_result; 37943ff2122SChristoph Hellwig 380249a8c11SDavid Chinner /* 381904c17e6SDave Chinner * Note that iop_push may unlock and reacquire the AIL lock. We 38243ff2122SChristoph Hellwig * rely on the AIL cursor implementation to be able to deal with 38343ff2122SChristoph Hellwig * the dropped lock. 3841da177e4SLinus Torvalds */ 385904c17e6SDave Chinner lock_result = lip->li_ops->iop_push(lip, &ailp->xa_buf_list); 3861da177e4SLinus Torvalds switch (lock_result) { 3871da177e4SLinus Torvalds case XFS_ITEM_SUCCESS: 388ff6d6af2SBill O'Donnell XFS_STATS_INC(mp, xs_push_ail_success); 3899e4c109aSChristoph Hellwig trace_xfs_ail_push(lip); 3909e4c109aSChristoph Hellwig 3910bf6a5bdSDave Chinner ailp->xa_last_pushed_lsn = lsn; 3921da177e4SLinus Torvalds break; 3931da177e4SLinus Torvalds 39443ff2122SChristoph Hellwig case XFS_ITEM_FLUSHING: 39543ff2122SChristoph Hellwig /* 39643ff2122SChristoph Hellwig * The item or its backing buffer is already beeing 39743ff2122SChristoph Hellwig * flushed. The typical reason for that is that an 39843ff2122SChristoph Hellwig * inode buffer is locked because we already pushed the 39943ff2122SChristoph Hellwig * updates to it as part of inode clustering. 40043ff2122SChristoph Hellwig * 40143ff2122SChristoph Hellwig * We do not want to to stop flushing just because lots 40243ff2122SChristoph Hellwig * of items are already beeing flushed, but we need to 40343ff2122SChristoph Hellwig * re-try the flushing relatively soon if most of the 40443ff2122SChristoph Hellwig * AIL is beeing flushed. 40543ff2122SChristoph Hellwig */ 406ff6d6af2SBill O'Donnell XFS_STATS_INC(mp, xs_push_ail_flushing); 40743ff2122SChristoph Hellwig trace_xfs_ail_flushing(lip); 40817b38471SChristoph Hellwig 40943ff2122SChristoph Hellwig flushing++; 4100bf6a5bdSDave Chinner ailp->xa_last_pushed_lsn = lsn; 4111da177e4SLinus Torvalds break; 4121da177e4SLinus Torvalds 4131da177e4SLinus Torvalds case XFS_ITEM_PINNED: 414ff6d6af2SBill O'Donnell XFS_STATS_INC(mp, xs_push_ail_pinned); 4159e4c109aSChristoph Hellwig trace_xfs_ail_pinned(lip); 4169e4c109aSChristoph Hellwig 417249a8c11SDavid Chinner stuck++; 418670ce93fSDave Chinner ailp->xa_log_flush++; 4191da177e4SLinus Torvalds break; 4201da177e4SLinus Torvalds case XFS_ITEM_LOCKED: 421ff6d6af2SBill O'Donnell XFS_STATS_INC(mp, xs_push_ail_locked); 4229e4c109aSChristoph Hellwig trace_xfs_ail_locked(lip); 42343ff2122SChristoph Hellwig 424249a8c11SDavid Chinner stuck++; 4251da177e4SLinus Torvalds break; 4261da177e4SLinus Torvalds default: 4271da177e4SLinus Torvalds ASSERT(0); 4281da177e4SLinus Torvalds break; 4291da177e4SLinus Torvalds } 4301da177e4SLinus Torvalds 431249a8c11SDavid Chinner count++; 432249a8c11SDavid Chinner 433249a8c11SDavid Chinner /* 434249a8c11SDavid Chinner * Are there too many items we can't do anything with? 43543ff2122SChristoph Hellwig * 436249a8c11SDavid Chinner * If we we are skipping too many items because we can't flush 437249a8c11SDavid Chinner * them or they are already being flushed, we back off and 438249a8c11SDavid Chinner * given them time to complete whatever operation is being 439249a8c11SDavid Chinner * done. i.e. remove pressure from the AIL while we can't make 440249a8c11SDavid Chinner * progress so traversals don't slow down further inserts and 441249a8c11SDavid Chinner * removals to/from the AIL. 442249a8c11SDavid Chinner * 443249a8c11SDavid Chinner * The value of 100 is an arbitrary magic number based on 444249a8c11SDavid Chinner * observation. 445249a8c11SDavid Chinner */ 446249a8c11SDavid Chinner if (stuck > 100) 447249a8c11SDavid Chinner break; 448249a8c11SDavid Chinner 449af3e4022SDave Chinner lip = xfs_trans_ail_cursor_next(ailp, &cur); 450249a8c11SDavid Chinner if (lip == NULL) 451249a8c11SDavid Chinner break; 452249a8c11SDavid Chinner lsn = lip->li_lsn; 4531da177e4SLinus Torvalds } 454e4a1e29cSEric Sandeen xfs_trans_ail_cursor_done(&cur); 455c7e8f268SDavid Chinner spin_unlock(&ailp->xa_lock); 4561da177e4SLinus Torvalds 45743ff2122SChristoph Hellwig if (xfs_buf_delwri_submit_nowait(&ailp->xa_buf_list)) 45843ff2122SChristoph Hellwig ailp->xa_log_flush++; 459d808f617SDave Chinner 46043ff2122SChristoph Hellwig if (!count || XFS_LSN_CMP(lsn, target) >= 0) { 4619e7004e7SDave Chinner out_done: 462249a8c11SDavid Chinner /* 46343ff2122SChristoph Hellwig * We reached the target or the AIL is empty, so wait a bit 46443ff2122SChristoph Hellwig * longer for I/O to complete and remove pushed items from the 46543ff2122SChristoph Hellwig * AIL before we start the next scan from the start of the AIL. 466249a8c11SDavid Chinner */ 467453eac8aSDave Chinner tout = 50; 4680bf6a5bdSDave Chinner ailp->xa_last_pushed_lsn = 0; 46943ff2122SChristoph Hellwig } else if (((stuck + flushing) * 100) / count > 90) { 470249a8c11SDavid Chinner /* 47143ff2122SChristoph Hellwig * Either there is a lot of contention on the AIL or we are 47243ff2122SChristoph Hellwig * stuck due to operations in progress. "Stuck" in this case 47343ff2122SChristoph Hellwig * is defined as >90% of the items we tried to push were stuck. 474249a8c11SDavid Chinner * 475249a8c11SDavid Chinner * Backoff a bit more to allow some I/O to complete before 47643ff2122SChristoph Hellwig * restarting from the start of the AIL. This prevents us from 47743ff2122SChristoph Hellwig * spinning on the same items, and if they are pinned will all 47843ff2122SChristoph Hellwig * the restart to issue a log force to unpin the stuck items. 479249a8c11SDavid Chinner */ 480453eac8aSDave Chinner tout = 20; 481670ce93fSDave Chinner ailp->xa_last_pushed_lsn = 0; 48243ff2122SChristoph Hellwig } else { 48343ff2122SChristoph Hellwig /* 48443ff2122SChristoph Hellwig * Assume we have more work to do in a short while. 48543ff2122SChristoph Hellwig */ 48643ff2122SChristoph Hellwig tout = 10; 487453eac8aSDave Chinner } 4881da177e4SLinus Torvalds 4890030807cSChristoph Hellwig return tout; 4900030807cSChristoph Hellwig } 4910030807cSChristoph Hellwig 4920030807cSChristoph Hellwig static int 4930030807cSChristoph Hellwig xfsaild( 4940030807cSChristoph Hellwig void *data) 4950030807cSChristoph Hellwig { 4960030807cSChristoph Hellwig struct xfs_ail *ailp = data; 4970030807cSChristoph Hellwig long tout = 0; /* milliseconds */ 4980030807cSChristoph Hellwig 49943ff2122SChristoph Hellwig current->flags |= PF_MEMALLOC; 50018f1df4eSMichal Hocko set_freezable(); 50143ff2122SChristoph Hellwig 5020030807cSChristoph Hellwig while (!kthread_should_stop()) { 5030030807cSChristoph Hellwig if (tout && tout <= 20) 5040030807cSChristoph Hellwig __set_current_state(TASK_KILLABLE); 5050030807cSChristoph Hellwig else 5060030807cSChristoph Hellwig __set_current_state(TASK_INTERRUPTIBLE); 5078375f922SBrian Foster 5088375f922SBrian Foster spin_lock(&ailp->xa_lock); 5098375f922SBrian Foster 5108375f922SBrian Foster /* 5118375f922SBrian Foster * Idle if the AIL is empty and we are not racing with a target 5128375f922SBrian Foster * update. We check the AIL after we set the task to a sleep 5138375f922SBrian Foster * state to guarantee that we either catch an xa_target update 5148375f922SBrian Foster * or that a wake_up resets the state to TASK_RUNNING. 5158375f922SBrian Foster * Otherwise, we run the risk of sleeping indefinitely. 5168375f922SBrian Foster * 5178375f922SBrian Foster * The barrier matches the xa_target update in xfs_ail_push(). 5188375f922SBrian Foster */ 5198375f922SBrian Foster smp_rmb(); 5208375f922SBrian Foster if (!xfs_ail_min(ailp) && 5218375f922SBrian Foster ailp->xa_target == ailp->xa_target_prev) { 5228375f922SBrian Foster spin_unlock(&ailp->xa_lock); 52318f1df4eSMichal Hocko freezable_schedule(); 5248375f922SBrian Foster tout = 0; 5258375f922SBrian Foster continue; 5268375f922SBrian Foster } 5278375f922SBrian Foster spin_unlock(&ailp->xa_lock); 5288375f922SBrian Foster 5298375f922SBrian Foster if (tout) 53018f1df4eSMichal Hocko freezable_schedule_timeout(msecs_to_jiffies(tout)); 5318375f922SBrian Foster 5328375f922SBrian Foster __set_current_state(TASK_RUNNING); 5330030807cSChristoph Hellwig 5340030807cSChristoph Hellwig try_to_freeze(); 5350030807cSChristoph Hellwig 5360030807cSChristoph Hellwig tout = xfsaild_push(ailp); 5370030807cSChristoph Hellwig } 5380030807cSChristoph Hellwig 5390030807cSChristoph Hellwig return 0; 5400bf6a5bdSDave Chinner } 5410bf6a5bdSDave Chinner 5420bf6a5bdSDave Chinner /* 5430bf6a5bdSDave Chinner * This routine is called to move the tail of the AIL forward. It does this by 5440bf6a5bdSDave Chinner * trying to flush items in the AIL whose lsns are below the given 5450bf6a5bdSDave Chinner * threshold_lsn. 5460bf6a5bdSDave Chinner * 5470bf6a5bdSDave Chinner * The push is run asynchronously in a workqueue, which means the caller needs 5480bf6a5bdSDave Chinner * to handle waiting on the async flush for space to become available. 5490bf6a5bdSDave Chinner * We don't want to interrupt any push that is in progress, hence we only queue 5500bf6a5bdSDave Chinner * work if we set the pushing bit approriately. 5510bf6a5bdSDave Chinner * 5520bf6a5bdSDave Chinner * We do this unlocked - we only need to know whether there is anything in the 5530bf6a5bdSDave Chinner * AIL at the time we are called. We don't need to access the contents of 5540bf6a5bdSDave Chinner * any of the objects, so the lock is not needed. 5550bf6a5bdSDave Chinner */ 5560bf6a5bdSDave Chinner void 557fd074841SDave Chinner xfs_ail_push( 5580bf6a5bdSDave Chinner struct xfs_ail *ailp, 5590bf6a5bdSDave Chinner xfs_lsn_t threshold_lsn) 5600bf6a5bdSDave Chinner { 5610bf6a5bdSDave Chinner xfs_log_item_t *lip; 5620bf6a5bdSDave Chinner 5630bf6a5bdSDave Chinner lip = xfs_ail_min(ailp); 5640bf6a5bdSDave Chinner if (!lip || XFS_FORCED_SHUTDOWN(ailp->xa_mount) || 5650bf6a5bdSDave Chinner XFS_LSN_CMP(threshold_lsn, ailp->xa_target) <= 0) 5660bf6a5bdSDave Chinner return; 5670bf6a5bdSDave Chinner 5680bf6a5bdSDave Chinner /* 5690bf6a5bdSDave Chinner * Ensure that the new target is noticed in push code before it clears 5700bf6a5bdSDave Chinner * the XFS_AIL_PUSHING_BIT. 5710bf6a5bdSDave Chinner */ 5720bf6a5bdSDave Chinner smp_wmb(); 573fe0da767SDave Chinner xfs_trans_ail_copy_lsn(ailp, &ailp->xa_target, &threshold_lsn); 5740030807cSChristoph Hellwig smp_wmb(); 5750030807cSChristoph Hellwig 5760030807cSChristoph Hellwig wake_up_process(ailp->xa_task); 5770bf6a5bdSDave Chinner } 5781da177e4SLinus Torvalds 5791da177e4SLinus Torvalds /* 580fd074841SDave Chinner * Push out all items in the AIL immediately 581fd074841SDave Chinner */ 582fd074841SDave Chinner void 583fd074841SDave Chinner xfs_ail_push_all( 584fd074841SDave Chinner struct xfs_ail *ailp) 585fd074841SDave Chinner { 586fd074841SDave Chinner xfs_lsn_t threshold_lsn = xfs_ail_max_lsn(ailp); 587fd074841SDave Chinner 588fd074841SDave Chinner if (threshold_lsn) 589fd074841SDave Chinner xfs_ail_push(ailp, threshold_lsn); 590fd074841SDave Chinner } 591fd074841SDave Chinner 592fd074841SDave Chinner /* 593211e4d43SChristoph Hellwig * Push out all items in the AIL immediately and wait until the AIL is empty. 594211e4d43SChristoph Hellwig */ 595211e4d43SChristoph Hellwig void 596211e4d43SChristoph Hellwig xfs_ail_push_all_sync( 597211e4d43SChristoph Hellwig struct xfs_ail *ailp) 598211e4d43SChristoph Hellwig { 599211e4d43SChristoph Hellwig struct xfs_log_item *lip; 600211e4d43SChristoph Hellwig DEFINE_WAIT(wait); 601211e4d43SChristoph Hellwig 602211e4d43SChristoph Hellwig spin_lock(&ailp->xa_lock); 603211e4d43SChristoph Hellwig while ((lip = xfs_ail_max(ailp)) != NULL) { 604211e4d43SChristoph Hellwig prepare_to_wait(&ailp->xa_empty, &wait, TASK_UNINTERRUPTIBLE); 605211e4d43SChristoph Hellwig ailp->xa_target = lip->li_lsn; 606211e4d43SChristoph Hellwig wake_up_process(ailp->xa_task); 607211e4d43SChristoph Hellwig spin_unlock(&ailp->xa_lock); 608211e4d43SChristoph Hellwig schedule(); 609211e4d43SChristoph Hellwig spin_lock(&ailp->xa_lock); 610211e4d43SChristoph Hellwig } 611211e4d43SChristoph Hellwig spin_unlock(&ailp->xa_lock); 612211e4d43SChristoph Hellwig 613211e4d43SChristoph Hellwig finish_wait(&ailp->xa_empty, &wait); 614211e4d43SChristoph Hellwig } 615211e4d43SChristoph Hellwig 616211e4d43SChristoph Hellwig /* 6170e57f6a3SDave Chinner * xfs_trans_ail_update - bulk AIL insertion operation. 6180e57f6a3SDave Chinner * 6190e57f6a3SDave Chinner * @xfs_trans_ail_update takes an array of log items that all need to be 6200e57f6a3SDave Chinner * positioned at the same LSN in the AIL. If an item is not in the AIL, it will 6210e57f6a3SDave Chinner * be added. Otherwise, it will be repositioned by removing it and re-adding 6220e57f6a3SDave Chinner * it to the AIL. If we move the first item in the AIL, update the log tail to 6230e57f6a3SDave Chinner * match the new minimum LSN in the AIL. 6240e57f6a3SDave Chinner * 6250e57f6a3SDave Chinner * This function takes the AIL lock once to execute the update operations on 6260e57f6a3SDave Chinner * all the items in the array, and as such should not be called with the AIL 6270e57f6a3SDave Chinner * lock held. As a result, once we have the AIL lock, we need to check each log 6280e57f6a3SDave Chinner * item LSN to confirm it needs to be moved forward in the AIL. 6290e57f6a3SDave Chinner * 6300e57f6a3SDave Chinner * To optimise the insert operation, we delete all the items from the AIL in 6310e57f6a3SDave Chinner * the first pass, moving them into a temporary list, then splice the temporary 6320e57f6a3SDave Chinner * list into the correct position in the AIL. This avoids needing to do an 6330e57f6a3SDave Chinner * insert operation on every item. 6340e57f6a3SDave Chinner * 6350e57f6a3SDave Chinner * This function must be called with the AIL lock held. The lock is dropped 6360e57f6a3SDave Chinner * before returning. 6370e57f6a3SDave Chinner */ 6380e57f6a3SDave Chinner void 6390e57f6a3SDave Chinner xfs_trans_ail_update_bulk( 6400e57f6a3SDave Chinner struct xfs_ail *ailp, 6411d8c95a3SDave Chinner struct xfs_ail_cursor *cur, 6420e57f6a3SDave Chinner struct xfs_log_item **log_items, 6430e57f6a3SDave Chinner int nr_items, 6440e57f6a3SDave Chinner xfs_lsn_t lsn) __releases(ailp->xa_lock) 6450e57f6a3SDave Chinner { 6460e57f6a3SDave Chinner xfs_log_item_t *mlip; 6470e57f6a3SDave Chinner int mlip_changed = 0; 6480e57f6a3SDave Chinner int i; 6490e57f6a3SDave Chinner LIST_HEAD(tmp); 6500e57f6a3SDave Chinner 651e44f4112SAlex Elder ASSERT(nr_items > 0); /* Not required, but true. */ 6520e57f6a3SDave Chinner mlip = xfs_ail_min(ailp); 6530e57f6a3SDave Chinner 6540e57f6a3SDave Chinner for (i = 0; i < nr_items; i++) { 6550e57f6a3SDave Chinner struct xfs_log_item *lip = log_items[i]; 6560e57f6a3SDave Chinner if (lip->li_flags & XFS_LI_IN_AIL) { 6570e57f6a3SDave Chinner /* check if we really need to move the item */ 6580e57f6a3SDave Chinner if (XFS_LSN_CMP(lsn, lip->li_lsn) <= 0) 6590e57f6a3SDave Chinner continue; 6600e57f6a3SDave Chinner 661750b9c90SDave Chinner trace_xfs_ail_move(lip, lip->li_lsn, lsn); 6620e57f6a3SDave Chinner xfs_ail_delete(ailp, lip); 6630e57f6a3SDave Chinner if (mlip == lip) 6640e57f6a3SDave Chinner mlip_changed = 1; 6650e57f6a3SDave Chinner } else { 6660e57f6a3SDave Chinner lip->li_flags |= XFS_LI_IN_AIL; 667750b9c90SDave Chinner trace_xfs_ail_insert(lip, 0, lsn); 6680e57f6a3SDave Chinner } 6690e57f6a3SDave Chinner lip->li_lsn = lsn; 6700e57f6a3SDave Chinner list_add(&lip->li_ail, &tmp); 6710e57f6a3SDave Chinner } 6720e57f6a3SDave Chinner 673e44f4112SAlex Elder if (!list_empty(&tmp)) 6741d8c95a3SDave Chinner xfs_ail_splice(ailp, cur, &tmp, lsn); 6751c304625SChristoph Hellwig 6761c304625SChristoph Hellwig if (mlip_changed) { 6771c304625SChristoph Hellwig if (!XFS_FORCED_SHUTDOWN(ailp->xa_mount)) 6781c304625SChristoph Hellwig xlog_assign_tail_lsn_locked(ailp->xa_mount); 6790e57f6a3SDave Chinner spin_unlock(&ailp->xa_lock); 68009a423a3SChristoph Hellwig 681cfb7cdcaSChristoph Hellwig xfs_log_space_wake(ailp->xa_mount); 6821c304625SChristoph Hellwig } else { 6831c304625SChristoph Hellwig spin_unlock(&ailp->xa_lock); 6840e57f6a3SDave Chinner } 6850e57f6a3SDave Chinner } 6860e57f6a3SDave Chinner 68727af1bbfSChristoph Hellwig bool 68827af1bbfSChristoph Hellwig xfs_ail_delete_one( 68927af1bbfSChristoph Hellwig struct xfs_ail *ailp, 69027af1bbfSChristoph Hellwig struct xfs_log_item *lip) 69127af1bbfSChristoph Hellwig { 69227af1bbfSChristoph Hellwig struct xfs_log_item *mlip = xfs_ail_min(ailp); 69327af1bbfSChristoph Hellwig 69427af1bbfSChristoph Hellwig trace_xfs_ail_delete(lip, mlip->li_lsn, lip->li_lsn); 69527af1bbfSChristoph Hellwig xfs_ail_delete(ailp, lip); 696*d3a304b6SCarlos Maiolino xfs_clear_li_failed(lip); 69727af1bbfSChristoph Hellwig lip->li_flags &= ~XFS_LI_IN_AIL; 69827af1bbfSChristoph Hellwig lip->li_lsn = 0; 69927af1bbfSChristoph Hellwig 70027af1bbfSChristoph Hellwig return mlip == lip; 70127af1bbfSChristoph Hellwig } 70227af1bbfSChristoph Hellwig 70327af1bbfSChristoph Hellwig /** 70427af1bbfSChristoph Hellwig * Remove a log items from the AIL 70530136832SDave Chinner * 70630136832SDave Chinner * @xfs_trans_ail_delete_bulk takes an array of log items that all need to 70730136832SDave Chinner * removed from the AIL. The caller is already holding the AIL lock, and done 70830136832SDave Chinner * all the checks necessary to ensure the items passed in via @log_items are 70930136832SDave Chinner * ready for deletion. This includes checking that the items are in the AIL. 71030136832SDave Chinner * 71130136832SDave Chinner * For each log item to be removed, unlink it from the AIL, clear the IN_AIL 71230136832SDave Chinner * flag from the item and reset the item's lsn to 0. If we remove the first 71330136832SDave Chinner * item in the AIL, update the log tail to match the new minimum LSN in the 71430136832SDave Chinner * AIL. 71530136832SDave Chinner * 71630136832SDave Chinner * This function will not drop the AIL lock until all items are removed from 71730136832SDave Chinner * the AIL to minimise the amount of lock traffic on the AIL. This does not 71830136832SDave Chinner * greatly increase the AIL hold time, but does significantly reduce the amount 71930136832SDave Chinner * of traffic on the lock, especially during IO completion. 72030136832SDave Chinner * 72130136832SDave Chinner * This function must be called with the AIL lock held. The lock is dropped 72230136832SDave Chinner * before returning. 72330136832SDave Chinner */ 72430136832SDave Chinner void 72527af1bbfSChristoph Hellwig xfs_trans_ail_delete( 72630136832SDave Chinner struct xfs_ail *ailp, 72727af1bbfSChristoph Hellwig struct xfs_log_item *lip, 72804913fddSDave Chinner int shutdown_type) __releases(ailp->xa_lock) 72930136832SDave Chinner { 73030136832SDave Chinner struct xfs_mount *mp = ailp->xa_mount; 73127af1bbfSChristoph Hellwig bool mlip_changed; 73230136832SDave Chinner 73327af1bbfSChristoph Hellwig if (!(lip->li_flags & XFS_LI_IN_AIL)) { 73430136832SDave Chinner spin_unlock(&ailp->xa_lock); 73530136832SDave Chinner if (!XFS_FORCED_SHUTDOWN(mp)) { 7366a19d939SDave Chinner xfs_alert_tag(mp, XFS_PTAG_AILDELETE, 73730136832SDave Chinner "%s: attempting to delete a log item that is not in the AIL", 73830136832SDave Chinner __func__); 73904913fddSDave Chinner xfs_force_shutdown(mp, shutdown_type); 74030136832SDave Chinner } 74130136832SDave Chinner return; 74230136832SDave Chinner } 74330136832SDave Chinner 74427af1bbfSChristoph Hellwig mlip_changed = xfs_ail_delete_one(ailp, lip); 7451c304625SChristoph Hellwig if (mlip_changed) { 74627af1bbfSChristoph Hellwig if (!XFS_FORCED_SHUTDOWN(mp)) 74727af1bbfSChristoph Hellwig xlog_assign_tail_lsn_locked(mp); 748211e4d43SChristoph Hellwig if (list_empty(&ailp->xa_ail)) 749211e4d43SChristoph Hellwig wake_up_all(&ailp->xa_empty); 75030136832SDave Chinner } 75127af1bbfSChristoph Hellwig 75227af1bbfSChristoph Hellwig spin_unlock(&ailp->xa_lock); 75327af1bbfSChristoph Hellwig if (mlip_changed) 75427af1bbfSChristoph Hellwig xfs_log_space_wake(ailp->xa_mount); 75530136832SDave Chinner } 7561da177e4SLinus Torvalds 757249a8c11SDavid Chinner int 7581da177e4SLinus Torvalds xfs_trans_ail_init( 7591da177e4SLinus Torvalds xfs_mount_t *mp) 7601da177e4SLinus Torvalds { 76182fa9012SDavid Chinner struct xfs_ail *ailp; 76282fa9012SDavid Chinner 76382fa9012SDavid Chinner ailp = kmem_zalloc(sizeof(struct xfs_ail), KM_MAYFAIL); 76482fa9012SDavid Chinner if (!ailp) 7652451337dSDave Chinner return -ENOMEM; 76682fa9012SDavid Chinner 76782fa9012SDavid Chinner ailp->xa_mount = mp; 76882fa9012SDavid Chinner INIT_LIST_HEAD(&ailp->xa_ail); 769af3e4022SDave Chinner INIT_LIST_HEAD(&ailp->xa_cursors); 770c7e8f268SDavid Chinner spin_lock_init(&ailp->xa_lock); 77143ff2122SChristoph Hellwig INIT_LIST_HEAD(&ailp->xa_buf_list); 772211e4d43SChristoph Hellwig init_waitqueue_head(&ailp->xa_empty); 7730030807cSChristoph Hellwig 7740030807cSChristoph Hellwig ailp->xa_task = kthread_run(xfsaild, ailp, "xfsaild/%s", 7750030807cSChristoph Hellwig ailp->xa_mount->m_fsname); 7760030807cSChristoph Hellwig if (IS_ERR(ailp->xa_task)) 7770030807cSChristoph Hellwig goto out_free_ailp; 7780030807cSChristoph Hellwig 77927d8d5feSDavid Chinner mp->m_ail = ailp; 78027d8d5feSDavid Chinner return 0; 7810030807cSChristoph Hellwig 7820030807cSChristoph Hellwig out_free_ailp: 7830030807cSChristoph Hellwig kmem_free(ailp); 7842451337dSDave Chinner return -ENOMEM; 785249a8c11SDavid Chinner } 786249a8c11SDavid Chinner 787249a8c11SDavid Chinner void 788249a8c11SDavid Chinner xfs_trans_ail_destroy( 789249a8c11SDavid Chinner xfs_mount_t *mp) 790249a8c11SDavid Chinner { 79182fa9012SDavid Chinner struct xfs_ail *ailp = mp->m_ail; 79282fa9012SDavid Chinner 7930030807cSChristoph Hellwig kthread_stop(ailp->xa_task); 79482fa9012SDavid Chinner kmem_free(ailp); 7951da177e4SLinus Torvalds } 796